forked from OSchip/llvm-project
[asan] Avoid lifetime analysis for allocas with can be in ambiguous state
Summary: C allows to jump over variables declaration so lifetime.start can be avoid before variable usage. To avoid false-positives on such rare cases we detect them and remove from lifetime analysis. PR27453 PR28267 Reviewers: eugenis Subscribers: llvm-commits Differential Revision: https://reviews.llvm.org/D24321 llvm-svn: 280907
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@ -833,6 +833,77 @@ struct FunctionStackPoisoner : public InstVisitor<FunctionStackPoisoner> {
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Instruction *ThenTerm, Value *ValueIfFalse);
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};
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// Performs depth-first search on the control flow graph of block and checks if
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// we can get into the same block with different lifetime state.
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class AllocaLifetimeChecker {
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// Contains values of the last lifetime intrinsics in the block.
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// true: llvm.lifetime.start, false: llvm.lifetime.end
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DenseMap<const BasicBlock *, bool> Markers;
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// Contains the lifetime state we detected doing depth-first search on the
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// control flow graph. We expect all future hits will have the same value.
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// true: llvm.lifetime.start, false: llvm.lifetime.end
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DenseMap<const BasicBlock *, bool> InboundState;
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bool Processed = false;
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bool CollisionDetected = false;
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bool FindCollision(const std::pair<const BasicBlock *, bool> &BlockState) {
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auto Ins = InboundState.insert(BlockState);
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if (!Ins.second) {
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// Already there. Return collision if they are different.
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return BlockState.second != Ins.first->second;
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}
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// Use marker for successors if block contains any.
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auto M = Markers.find(BlockState.first);
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bool NewState = (M != Markers.end() ? M->second : BlockState.second);
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for (const BasicBlock *SB : successors(BlockState.first))
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// We may get into EHPad with any lifetime state, so ignore them.
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if (!SB->isEHPad() && FindCollision({SB, NewState}))
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return true;
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return false;
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}
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public:
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// Assume that markers of the same block will be added in the same order as
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// the order of corresponding intrinsics, so in the end we will keep only
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// value of the last intrinsic.
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void AddMarker(const BasicBlock *BB, bool start) {
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assert(!Processed);
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Markers[BB] = start;
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}
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bool HasAmbiguousLifetime() {
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if (!Processed) {
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Processed = true;
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const Function *F = Markers.begin()->first->getParent();
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CollisionDetected = FindCollision({&F->getEntryBlock(), false});
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}
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return CollisionDetected;
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}
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};
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// Removes allocas for which exists at least one block simultaneously
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// reachable in both states: allocas is inside the scope, and alloca is outside
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// of the scope. We don't have enough information to validate access to such
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// variable, so we just remove such allocas from lifetime analysis.
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// This is workaround for PR28267.
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void removeAllocasWithAmbiguousLifetime(
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SmallVectorImpl<FunctionStackPoisoner::AllocaPoisonCall> &PoisonCallVec) {
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DenseMap<const AllocaInst *, AllocaLifetimeChecker> Checkers;
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for (const auto &APC : PoisonCallVec)
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Checkers[APC.AI].AddMarker(APC.InsBefore->getParent(), !APC.DoPoison);
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auto IsAmbiguous =
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[&Checkers](const FunctionStackPoisoner::AllocaPoisonCall &APC) {
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return Checkers[APC.AI].HasAmbiguousLifetime();
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};
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PoisonCallVec.erase(
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std::remove_if(PoisonCallVec.begin(), PoisonCallVec.end(), IsAmbiguous),
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PoisonCallVec.end());
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}
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} // anonymous namespace
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char AddressSanitizer::ID = 0;
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@ -2110,6 +2181,8 @@ void FunctionStackPoisoner::processDynamicAllocas() {
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return;
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}
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removeAllocasWithAmbiguousLifetime(DynamicAllocaPoisonCallVec);
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// Insert poison calls for lifetime intrinsics for dynamic allocas.
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for (const auto &APC : DynamicAllocaPoisonCallVec) {
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assert(APC.InsBefore);
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@ -2137,6 +2210,8 @@ void FunctionStackPoisoner::processStaticAllocas() {
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return;
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}
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removeAllocasWithAmbiguousLifetime(StaticAllocaPoisonCallVec);
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int StackMallocIdx = -1;
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DebugLoc EntryDebugLocation;
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if (auto SP = F.getSubprogram())
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@ -97,6 +97,47 @@ define void @lifetime() sanitize_address {
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ret void
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}
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; Case of lifetime depends on how we get into the block.
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define void @ambiguous_lifetime(i1 %x) sanitize_address {
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; CHECK-LABEL: define void @ambiguous_lifetime
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entry:
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; Regular variable lifetime intrinsics.
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%i = alloca i8, align 4 ; Good
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%j = alloca i8, align 4 ; Bad
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call void @llvm.lifetime.start(i64 1, i8* %i)
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; CHECK: store i8 1, i8* %{{[0-9]+}}
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; CHECK-NEXT: call void @llvm.lifetime.start
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br i1 %x, label %bb0, label %bb1
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bb0:
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; CHECK-LABEL: bb0:
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call void @llvm.lifetime.start(i64 1, i8* %j)
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; CHECK-NOT: store i8 1, i8* %{{[0-9]+}}
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; CHECK-NEXT: call void @llvm.lifetime.start
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br label %bb1
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bb1:
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; CHECK-LABEL: bb1:
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store volatile i8 0, i8* %i
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store volatile i8 0, i8* %j
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call void @llvm.lifetime.end(i64 1, i8* %i)
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; CHECK: store i8 -8, i8* %{{[0-9]+}}
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; CHECK-NEXT: call void @llvm.lifetime.end
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call void @llvm.lifetime.end(i64 1, i8* %j)
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; CHECK-NOT: store i8 -8, i8* %{{[0-9]+}}
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; CHECK-NEXT: call void @llvm.lifetime.end
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ret void
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}
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; Check that arguments of lifetime may come from phi nodes.
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define void @phi_args(i1 %x) sanitize_address {
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; CHECK-LABEL: define void @phi_args(i1 %x)
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