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Invariant start/end intrinsics overloaded for address space
Summary: The llvm.invariant.start and llvm.invariant.end intrinsics currently support specifying invariant memory objects only in the default address space. With this change, these intrinsics are overloaded for any adddress space for memory objects and we can use these llvm invariant intrinsics in non-default address spaces. Example: llvm.invariant.start.p1i8(i64 4, i8 addrspace(1)* %ptr) This overloaded intrinsic is needed for representing final or invariant memory in managed languages. Reviewers: tstellarAMD, reames, apilipenko Subscribers: llvm-commits Differential Revision: https://reviews.llvm.org/D22519 llvm-svn: 276316
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@ -11842,10 +11842,11 @@ object following this intrinsic may be removed as dead.
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Syntax:
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"""""""
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This is an overloaded intrinsic. The memory object can belong to any address space.
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::
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declare {}* @llvm.invariant.start(i64 <size>, i8* nocapture <ptr>)
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declare {}* @llvm.invariant.start.p0i8(i64 <size>, i8* nocapture <ptr>)
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Overview:
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"""""""""
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@ -11872,10 +11873,11 @@ unchanging.
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Syntax:
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"""""""
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This is an overloaded intrinsic. The memory object can belong to any address space.
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::
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declare void @llvm.invariant.end({}* <start>, i64 <size>, i8* nocapture <ptr>)
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declare void @llvm.invariant.end.p0i8({}* <start>, i64 <size>, i8* nocapture <ptr>)
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Overview:
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"""""""""
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@ -554,11 +554,11 @@ def int_lifetime_end : Intrinsic<[],
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[llvm_i64_ty, llvm_ptr_ty],
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[IntrArgMemOnly, NoCapture<1>]>;
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def int_invariant_start : Intrinsic<[llvm_descriptor_ty],
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[llvm_i64_ty, llvm_ptr_ty],
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[llvm_i64_ty, llvm_anyptr_ty],
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[IntrArgMemOnly, NoCapture<1>]>;
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def int_invariant_end : Intrinsic<[],
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[llvm_descriptor_ty, llvm_i64_ty,
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llvm_ptr_ty],
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llvm_anyptr_ty],
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[IntrArgMemOnly, NoCapture<2>]>;
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def int_invariant_group_barrier : Intrinsic<[llvm_ptr_ty],
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@ -148,7 +148,31 @@ static bool UpgradeIntrinsicFunction1(Function *F, Function *&NewFn) {
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}
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break;
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}
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case 'i': {
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if (Name.startswith("invariant.start")) {
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auto Args = F->getFunctionType()->params();
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Type* ObjectPtr = Args[1];
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if (F->getName() !=
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Intrinsic::getName(Intrinsic::invariant_start, ObjectPtr)) {
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F->setName(Name + ".old");
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NewFn = Intrinsic::getDeclaration(
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F->getParent(), Intrinsic::invariant_start, ObjectPtr);
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return true;
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}
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}
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if (Name.startswith("invariant.end")) {
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auto Args = F->getFunctionType()->params();
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Type* ObjectPtr = Args[2];
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if (F->getName() !=
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Intrinsic::getName(Intrinsic::invariant_end, ObjectPtr)) {
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F->setName(Name + ".old");
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NewFn = Intrinsic::getDeclaration(F->getParent(),
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Intrinsic::invariant_end, ObjectPtr);
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return true;
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}
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}
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break;
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}
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case 'm': {
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if (Name.startswith("masked.load.")) {
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Type *Tys[] = { F->getReturnType(), F->arg_begin()->getType() };
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@ -1339,6 +1363,8 @@ void llvm::UpgradeIntrinsicCall(CallInst *CI, Function *NewFn) {
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return;
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}
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case Intrinsic::invariant_start:
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case Intrinsic::invariant_end:
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case Intrinsic::masked_load:
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case Intrinsic::masked_store: {
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SmallVector<Value *, 4> Args(CI->arg_operands().begin(),
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@ -76,6 +76,21 @@ define void @tests.masked.store(<2 x double>* %ptr, <2 x i1> %mask, <2 x double>
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ret void
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}
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declare {}* @llvm.invariant.start(i64, i8* nocapture) nounwind readonly
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declare void @llvm.invariant.end({}*, i64, i8* nocapture) nounwind
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define void @tests.invariant.start.end() {
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; CHECK-LABEL: @tests.invariant.start.end(
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%a = alloca i8
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%i = call {}* @llvm.invariant.start(i64 1, i8* %a)
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; CHECK: call {}* @llvm.invariant.start.p0i8
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store i8 0, i8* %a
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call void @llvm.invariant.end({}* %i, i64 1, i8* %a)
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; CHECK: call void @llvm.invariant.end.p0i8
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ret void
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}
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@__stack_chk_guard = external global i8*
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declare void @llvm.stackprotectorcheck(i8**)
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@ -1,7 +1,7 @@
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; RUN: llc -march=amdgcn -mattr=+promote-alloca -verify-machineinstrs < %s | FileCheck -check-prefix=GCN %s
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declare {}* @llvm.invariant.start(i64, i8* nocapture) #0
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declare void @llvm.invariant.end({}*, i64, i8* nocapture) #0
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declare {}* @llvm.invariant.start.p0i8(i64, i8* nocapture) #0
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declare void @llvm.invariant.end.p0i8({}*, i64, i8* nocapture) #0
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declare i8* @llvm.invariant.group.barrier(i8*) #1
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; GCN-LABEL: {{^}}use_invariant_promotable_lds:
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@ -14,8 +14,8 @@ bb:
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%tmp2 = getelementptr inbounds i32, i32 addrspace(1)* %arg, i64 1
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%tmp3 = load i32, i32 addrspace(1)* %tmp2
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store i32 %tmp3, i32* %tmp
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%tmp4 = call {}* @llvm.invariant.start(i64 4, i8* %tmp1) #0
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call void @llvm.invariant.end({}* %tmp4, i64 4, i8* %tmp1) #0
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%tmp4 = call {}* @llvm.invariant.start.p0i8(i64 4, i8* %tmp1) #0
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call void @llvm.invariant.end.p0i8({}* %tmp4, i64 4, i8* %tmp1) #0
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%tmp5 = call i8* @llvm.invariant.group.barrier(i8* %tmp1) #1
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ret void
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}
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@ -6,8 +6,8 @@ declare void @_Z3barRKi(i32*)
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declare void @llvm.lifetime.start(i64, i8* nocapture) nounwind
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declare void @llvm.lifetime.end(i64, i8* nocapture) nounwind
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declare {}* @llvm.invariant.start(i64, i8* nocapture) readonly nounwind
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declare void @llvm.invariant.end({}*, i64, i8* nocapture) nounwind
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declare {}* @llvm.invariant.start.p0i8(i64, i8* nocapture) readonly nounwind
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declare void @llvm.invariant.end.p0i8({}*, i64, i8* nocapture) nounwind
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define i32 @_Z4foo2v() nounwind {
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entry:
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@ -24,12 +24,12 @@ entry:
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store i32 5, i32* %1, align 4
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;; Constructor has finished here.
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%inv = call {}* @llvm.invariant.start(i64 8, i8* %y)
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%inv = call {}* @llvm.invariant.start.p0i8(i64 8, i8* %y)
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call void @_Z3barRKi(i32* %0) nounwind
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%2 = load i32, i32* %0, align 8
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;; Destructor is run here.
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call void @llvm.invariant.end({}* %inv, i64 8, i8* %y)
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call void @llvm.invariant.end.p0i8({}* %inv, i64 8, i8* %y)
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;; Destructor is done here.
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call void @llvm.lifetime.end(i64 8, i8* %y)
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ret i32 %2
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@ -1,14 +1,14 @@
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; RUN: opt -globalopt -S -o - < %s | FileCheck %s
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; The check here is that it doesn't crash.
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declare {}* @llvm.invariant.start(i64 %size, i8* nocapture %ptr)
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declare {}* @llvm.invariant.start.p0i8(i64 %size, i8* nocapture %ptr)
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@object1 = global { i32, i32 } zeroinitializer
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; CHECK: @object1 = global { i32, i32 } zeroinitializer
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define void @ctor1() {
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%ptr = bitcast {i32, i32}* @object1 to i8*
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call {}* @llvm.invariant.start(i64 4, i8* %ptr)
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call {}* @llvm.invariant.start.p0i8(i64 4, i8* %ptr)
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ret void
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}
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@ -3,10 +3,10 @@
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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-v64:64:64-v128:128:128-a0:0:64-s0:64:64-f80:128:128-n8:16:32:64-S128"
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target triple = "x86_64-unknown-linux-gnu"
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declare {}* @llvm.invariant.start(i64 %size, i8* nocapture %ptr)
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declare {}* @llvm.invariant.start.p0i8(i64 %size, i8* nocapture %ptr)
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define void @test1(i8* %ptr) {
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call {}* @llvm.invariant.start(i64 4, i8* %ptr)
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call {}* @llvm.invariant.start.p0i8(i64 4, i8* %ptr)
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ret void
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}
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@ -25,7 +25,7 @@ define void @ctor1() {
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define void @ctor2() {
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store i32 -1, i32* @object2
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%A = bitcast i32* @object2 to i8*
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%B = call {}* @llvm.invariant.start(i64 4, i8* %A)
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%B = call {}* @llvm.invariant.start.p0i8(i64 4, i8* %A)
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%C = bitcast {}* %B to i8*
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ret void
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}
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@ -36,7 +36,7 @@ define void @ctor2() {
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define void @ctor3() {
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store i32 -1, i32* @object3
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%A = bitcast i32* @object3 to i8*
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call {}* @llvm.invariant.start(i64 3, i8* %A)
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call {}* @llvm.invariant.start.p0i8(i64 3, i8* %A)
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ret void
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}
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@ -46,7 +46,7 @@ define void @ctor3() {
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define void @ctor4() {
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store i32 -1, i32* @object4
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%A = bitcast i32* @object4 to i8*
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call {}* @llvm.invariant.start(i64 -1, i8* %A)
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call {}* @llvm.invariant.start.p0i8(i64 -1, i8* %A)
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ret void
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}
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@ -2,15 +2,27 @@
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; RUN: opt < %s -instcombine -S | FileCheck %s
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declare void @g(i8*)
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declare void @g_addr1(i8 addrspace(1)*)
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declare {}* @llvm.invariant.start(i64, i8* nocapture) nounwind readonly
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declare {}* @llvm.invariant.start.p0i8(i64, i8* nocapture) nounwind readonly
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declare {}* @llvm.invariant.start.p1i8(i64, i8 addrspace(1)* nocapture) nounwind readonly
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define i8 @f() {
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%a = alloca i8 ; <i8*> [#uses=4]
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store i8 0, i8* %a
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%i = call {}* @llvm.invariant.start(i64 1, i8* %a) ; <{}*> [#uses=0]
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; CHECK: call {}* @llvm.invariant.start
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%i = call {}* @llvm.invariant.start.p0i8(i64 1, i8* %a) ; <{}*> [#uses=0]
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; CHECK: call {}* @llvm.invariant.start.p0i8
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call void @g(i8* %a)
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%r = load i8, i8* %a ; <i8> [#uses=1]
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ret i8 %r
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}
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; make sure llvm.invariant.call in non-default addrspace are also not eliminated.
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define i8 @f_addrspace1(i8 addrspace(1)* %a) {
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store i8 0, i8 addrspace(1)* %a
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%i = call {}* @llvm.invariant.start.p1i8(i64 1, i8 addrspace(1)* %a) ; <{}*> [#uses=0]
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; CHECK: call {}* @llvm.invariant.start.p1i8
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call void @g_addr1(i8 addrspace(1)* %a)
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%r = load i8, i8 addrspace(1)* %a ; <i8> [#uses=1]
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ret i8 %r
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}
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