forked from OSchip/llvm-project
452 lines
14 KiB
C++
452 lines
14 KiB
C++
//== BasicStore.cpp - Basic map from Locations to Values --------*- C++ -*--==//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file defined the BasicStore and BasicStoreManager classes.
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//
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//===----------------------------------------------------------------------===//
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#include "clang/Analysis/Analyses/LiveVariables.h"
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#include "clang/Analysis/PathSensitive/GRState.h"
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#include "llvm/ADT/ImmutableMap.h"
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#include "llvm/Support/Compiler.h"
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#include "llvm/Support/Streams.h"
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using namespace clang;
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typedef llvm::ImmutableMap<const VarDecl*,SVal> VarBindingsTy;
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namespace {
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class VISIBILITY_HIDDEN BasicStoreManager : public StoreManager {
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VarBindingsTy::Factory VBFactory;
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GRStateManager& StateMgr;
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MemRegionManager MRMgr;
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const MemRegion* SelfRegion;
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public:
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BasicStoreManager(GRStateManager& mgr)
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: VBFactory(mgr.getAllocator()),
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StateMgr(mgr),
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MRMgr(StateMgr.getAllocator()),
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SelfRegion(0) {}
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~BasicStoreManager() {}
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SVal Retrieve(Store St, Loc LV, QualType T);
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Store Bind(Store St, Loc LV, SVal V);
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Store Remove(Store St, Loc LV);
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Store getInitialStore();
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MemRegionManager& getRegionManager() { return MRMgr; }
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// FIXME: Investigate what is using this. This method should be removed.
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virtual Loc getLoc(const VarDecl* VD) {
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return loc::MemRegionVal(MRMgr.getVarRegion(VD));
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}
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Store BindCompoundLiteral(Store store, const CompoundLiteralExpr* CL,
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SVal V) {
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return store;
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}
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SVal getLValueVar(const GRState* St, const VarDecl* VD);
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SVal getLValueString(const GRState* St, const StringLiteral* S);
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SVal getLValueCompoundLiteral(const GRState* St,
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const CompoundLiteralExpr* CL);
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SVal getLValueIvar(const GRState* St, const ObjCIvarDecl* D, SVal Base);
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SVal getLValueField(const GRState* St, SVal Base, const FieldDecl* D);
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SVal getLValueElement(const GRState* St, SVal Base, SVal Offset);
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/// ArrayToPointer - Used by GRExprEngine::VistCast to handle implicit
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/// conversions between arrays and pointers.
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SVal ArrayToPointer(SVal Array) { return Array; }
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std::pair<const GRState*, SVal>
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CastRegion(const GRState* St, SVal VoidPtr, QualType CastToTy, Stmt* CastE) {
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return std::pair<const GRState*, SVal>(St, UnknownVal());
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}
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/// getSelfRegion - Returns the region for the 'self' (Objective-C) or
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/// 'this' object (C++). When used when analyzing a normal function this
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/// method returns NULL.
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const MemRegion* getSelfRegion(Store) {
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return SelfRegion;
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}
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Store RemoveDeadBindings(Store store, Stmt* Loc, const LiveVariables& Live,
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llvm::SmallVectorImpl<const MemRegion*>& RegionRoots,
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LiveSymbolsTy& LSymbols, DeadSymbolsTy& DSymbols);
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void iterBindings(Store store, BindingsHandler& f);
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Store BindDecl(Store store, const VarDecl* VD, SVal* InitVal, unsigned Count);
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static inline VarBindingsTy GetVarBindings(Store store) {
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return VarBindingsTy(static_cast<const VarBindingsTy::TreeTy*>(store));
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}
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void print(Store store, std::ostream& Out, const char* nl, const char *sep);
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};
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} // end anonymous namespace
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StoreManager* clang::CreateBasicStoreManager(GRStateManager& StMgr) {
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return new BasicStoreManager(StMgr);
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}
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SVal BasicStoreManager::getLValueVar(const GRState* St, const VarDecl* VD) {
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return loc::MemRegionVal(MRMgr.getVarRegion(VD));
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}
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SVal BasicStoreManager::getLValueString(const GRState* St,
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const StringLiteral* S) {
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return loc::MemRegionVal(MRMgr.getStringRegion(S));
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}
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SVal BasicStoreManager::getLValueCompoundLiteral(const GRState* St,
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const CompoundLiteralExpr* CL){
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return loc::MemRegionVal(MRMgr.getCompoundLiteralRegion(CL));
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}
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SVal BasicStoreManager::getLValueIvar(const GRState* St, const ObjCIvarDecl* D,
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SVal Base) {
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return UnknownVal();
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}
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SVal BasicStoreManager::getLValueField(const GRState* St, SVal Base,
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const FieldDecl* D) {
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if (Base.isUnknownOrUndef())
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return Base;
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Loc BaseL = cast<Loc>(Base);
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const MemRegion* BaseR = 0;
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switch(BaseL.getSubKind()) {
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case loc::SymbolValKind:
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BaseR = MRMgr.getSymbolicRegion(cast<loc::SymbolVal>(&BaseL)->getSymbol());
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break;
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case loc::GotoLabelKind:
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case loc::FuncValKind:
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// Technically we can get here if people do funny things with casts.
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return UndefinedVal();
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case loc::MemRegionKind:
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BaseR = cast<loc::MemRegionVal>(BaseL).getRegion();
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break;
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case loc::ConcreteIntKind:
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// While these seem funny, this can happen through casts.
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// FIXME: What we should return is the field offset. For example,
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// add the field offset to the integer value. That way funny things
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// like this work properly: &(((struct foo *) 0xa)->f)
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return Base;
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default:
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assert ("Unhandled Base.");
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return Base;
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}
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return loc::MemRegionVal(MRMgr.getFieldRegion(D, BaseR));
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}
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SVal BasicStoreManager::getLValueElement(const GRState* St, SVal Base,
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SVal Offset) {
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// Total hack: Just return "Base" for now.
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return Base;
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}
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SVal BasicStoreManager::Retrieve(Store St, Loc LV, QualType T) {
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if (isa<UnknownVal>(LV))
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return UnknownVal();
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assert (!isa<UndefinedVal>(LV));
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switch (LV.getSubKind()) {
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case loc::MemRegionKind: {
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const VarRegion* R =
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dyn_cast<VarRegion>(cast<loc::MemRegionVal>(LV).getRegion());
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if (!R)
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return UnknownVal();
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VarBindingsTy B(static_cast<const VarBindingsTy::TreeTy*>(St));
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VarBindingsTy::data_type* T = B.lookup(R->getDecl());
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return T ? *T : UnknownVal();
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}
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case loc::SymbolValKind:
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return UnknownVal();
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case loc::ConcreteIntKind:
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// Some clients may call GetSVal with such an option simply because
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// they are doing a quick scan through their Locs (potentially to
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// invalidate their bindings). Just return Undefined.
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return UndefinedVal();
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case loc::FuncValKind:
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return LV;
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default:
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assert (false && "Invalid Loc.");
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break;
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}
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return UnknownVal();
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}
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Store BasicStoreManager::Bind(Store store, Loc LV, SVal V) {
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switch (LV.getSubKind()) {
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case loc::MemRegionKind: {
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const VarRegion* R =
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dyn_cast<VarRegion>(cast<loc::MemRegionVal>(LV).getRegion());
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if (!R)
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return store;
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VarBindingsTy B = GetVarBindings(store);
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return V.isUnknown()
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? VBFactory.Remove(B, R->getDecl()).getRoot()
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: VBFactory.Add(B, R->getDecl(), V).getRoot();
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}
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default:
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assert ("SetSVal for given Loc type not yet implemented.");
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return store;
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}
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}
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Store BasicStoreManager::Remove(Store store, Loc LV) {
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switch (LV.getSubKind()) {
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case loc::MemRegionKind: {
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const VarRegion* R =
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dyn_cast<VarRegion>(cast<loc::MemRegionVal>(LV).getRegion());
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if (!R)
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return store;
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VarBindingsTy B = GetVarBindings(store);
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return VBFactory.Remove(B,R->getDecl()).getRoot();
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}
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default:
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assert ("Remove for given Loc type not yet implemented.");
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return store;
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}
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}
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Store
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BasicStoreManager::RemoveDeadBindings(Store store, Stmt* Loc,
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const LiveVariables& Liveness,
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llvm::SmallVectorImpl<const MemRegion*>& RegionRoots,
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LiveSymbolsTy& LSymbols, DeadSymbolsTy& DSymbols) {
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VarBindingsTy B = GetVarBindings(store);
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typedef SVal::symbol_iterator symbol_iterator;
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// Iterate over the variable bindings.
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for (VarBindingsTy::iterator I=B.begin(), E=B.end(); I!=E ; ++I)
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if (Liveness.isLive(Loc, I.getKey())) {
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RegionRoots.push_back(MRMgr.getVarRegion(I.getKey()));
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SVal X = I.getData();
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for (symbol_iterator SI=X.symbol_begin(), SE=X.symbol_end(); SI!=SE; ++SI)
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LSymbols.insert(*SI);
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}
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// Scan for live variables and live symbols.
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llvm::SmallPtrSet<const VarRegion*, 10> Marked;
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while (!RegionRoots.empty()) {
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const MemRegion* MR = RegionRoots.back();
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RegionRoots.pop_back();
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while (MR) {
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if (const SymbolicRegion* SymR = dyn_cast<SymbolicRegion>(MR)) {
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LSymbols.insert(SymR->getSymbol());
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break;
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}
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else if (const VarRegion* R = dyn_cast<VarRegion>(MR)) {
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if (Marked.count(R))
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break;
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Marked.insert(R);
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SVal X = GetRegionSVal(store, R);
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// FIXME: We need to handle symbols nested in region definitions.
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for (symbol_iterator SI=X.symbol_begin(), SE=X.symbol_end(); SI!=SE; ++SI)
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LSymbols.insert(*SI);
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if (!isa<loc::MemRegionVal>(X))
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break;
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const loc::MemRegionVal& LVD = cast<loc::MemRegionVal>(X);
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RegionRoots.push_back(LVD.getRegion());
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break;
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}
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else if (const SubRegion* R = dyn_cast<SubRegion>(MR))
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MR = R->getSuperRegion();
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else
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break;
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}
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}
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// Remove dead variable bindings.
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for (VarBindingsTy::iterator I=B.begin(), E=B.end(); I!=E ; ++I) {
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const VarRegion* R = cast<VarRegion>(MRMgr.getVarRegion(I.getKey()));
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if (!Marked.count(R)) {
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store = Remove(store, loc::MemRegionVal(R));
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SVal X = I.getData();
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for (symbol_iterator SI=X.symbol_begin(), SE=X.symbol_end(); SI!=SE; ++SI)
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if (!LSymbols.count(*SI)) DSymbols.insert(*SI);
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}
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}
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return store;
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}
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Store BasicStoreManager::getInitialStore() {
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// The LiveVariables information already has a compilation of all VarDecls
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// used in the function. Iterate through this set, and "symbolicate"
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// any VarDecl whose value originally comes from outside the function.
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typedef LiveVariables::AnalysisDataTy LVDataTy;
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LVDataTy& D = StateMgr.getLiveVariables().getAnalysisData();
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Store St = VBFactory.GetEmptyMap().getRoot();
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for (LVDataTy::decl_iterator I=D.begin_decl(), E=D.end_decl(); I != E; ++I) {
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NamedDecl* ND = const_cast<NamedDecl*>(I->first);
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// Handle implicit parameters.
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if (ImplicitParamDecl* PD = dyn_cast<ImplicitParamDecl>(ND)) {
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const Decl& CD = StateMgr.getCodeDecl();
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if (const ObjCMethodDecl* MD = dyn_cast<ObjCMethodDecl>(&CD)) {
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if (MD->getSelfDecl() == PD) {
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// Create a region for "self".
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assert (SelfRegion == 0);
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SelfRegion = MRMgr.getObjCObjectRegion(MD->getClassInterface(),
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MRMgr.getHeapRegion());
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St = Bind(St, loc::MemRegionVal(MRMgr.getVarRegion(PD)),
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loc::MemRegionVal(SelfRegion));
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}
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}
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}
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else if (VarDecl* VD = dyn_cast<VarDecl>(ND)) {
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// Punt on static variables for now.
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if (VD->getStorageClass() == VarDecl::Static)
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continue;
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// Only handle pointers and integers for now.
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QualType T = VD->getType();
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if (Loc::IsLocType(T) || T->isIntegerType()) {
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// Initialize globals and parameters to symbolic values.
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// Initialize local variables to undefined.
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SVal X = (VD->hasGlobalStorage() || isa<ParmVarDecl>(VD) ||
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isa<ImplicitParamDecl>(VD))
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? SVal::GetSymbolValue(StateMgr.getSymbolManager(), VD)
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: UndefinedVal();
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St = Bind(St, loc::MemRegionVal(MRMgr.getVarRegion(VD)), X);
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}
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}
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}
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return St;
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}
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Store BasicStoreManager::BindDecl(Store store, const VarDecl* VD,
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SVal* InitVal, unsigned Count) {
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BasicValueFactory& BasicVals = StateMgr.getBasicVals();
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// BasicStore does not model arrays and structs.
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if (VD->getType()->isArrayType() || VD->getType()->isStructureType())
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return store;
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if (VD->hasGlobalStorage()) {
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// Handle variables with global storage: extern, static, PrivateExtern.
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// FIXME:: static variables may have an initializer, but the second time a
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// function is called those values may not be current. Currently, a function
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// will not be called more than once.
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// Static global variables should not be visited here.
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assert(!(VD->getStorageClass() == VarDecl::Static &&
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VD->isFileVarDecl()));
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// Process static variables.
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if (VD->getStorageClass() == VarDecl::Static) {
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// C99: 6.7.8 Initialization
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// If an object that has static storage duration is not initialized
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// explicitly, then:
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// —if it has pointer type, it is initialized to a null pointer;
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// —if it has arithmetic type, it is initialized to (positive or
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// unsigned) zero;
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if (!InitVal) {
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QualType T = VD->getType();
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if (Loc::IsLocType(T))
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store = Bind(store, getLoc(VD),
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loc::ConcreteInt(BasicVals.getValue(0, T)));
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else if (T->isIntegerType())
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store = Bind(store, getLoc(VD),
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nonloc::ConcreteInt(BasicVals.getValue(0, T)));
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else {
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// assert(0 && "ignore other types of variables");
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}
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} else {
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store = Bind(store, getLoc(VD), *InitVal);
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}
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}
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} else {
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// Process local scalar variables.
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QualType T = VD->getType();
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if (Loc::IsLocType(T) || T->isIntegerType()) {
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SVal V = InitVal ? *InitVal : UndefinedVal();
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store = Bind(store, getLoc(VD), V);
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}
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}
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return store;
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}
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void BasicStoreManager::print(Store store, std::ostream& Out,
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const char* nl, const char *sep) {
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VarBindingsTy B = GetVarBindings(store);
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Out << "Variables:" << nl;
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bool isFirst = true;
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for (VarBindingsTy::iterator I=B.begin(), E=B.end(); I != E; ++I) {
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if (isFirst) isFirst = false;
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else Out << nl;
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Out << ' ' << I.getKey()->getName() << " : ";
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I.getData().print(Out);
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}
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}
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void BasicStoreManager::iterBindings(Store store, BindingsHandler& f) {
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VarBindingsTy B = GetVarBindings(store);
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for (VarBindingsTy::iterator I=B.begin(), E=B.end(); I != E; ++I) {
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f.HandleBinding(*this, store, MRMgr.getVarRegion(I.getKey()),I.getData());
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}
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}
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StoreManager::BindingsHandler::~BindingsHandler() {}
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