1 //=-- ExprEngine.cpp - Path-Sensitive Expression-Level Dataflow ---*- C++ -*-=
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 //
10 //  This file defines a meta-engine for path-sensitive dataflow analysis that
11 //  is built on GREngine, but provides the boilerplate to execute transfer
12 //  functions and build the ExplodedGraph at the expression level.
13 //
14 //===----------------------------------------------------------------------===//
15 
16 #include "clang/StaticAnalyzer/Core/PathSensitive/ExprEngine.h"
17 #include "PrettyStackTraceLocationContext.h"
18 #include "clang/AST/CharUnits.h"
19 #include "clang/AST/ParentMap.h"
20 #include "clang/AST/StmtCXX.h"
21 #include "clang/AST/StmtObjC.h"
22 #include "clang/Basic/Builtins.h"
23 #include "clang/Basic/PrettyStackTrace.h"
24 #include "clang/Basic/SourceManager.h"
25 #include "clang/StaticAnalyzer/Core/BugReporter/BugType.h"
26 #include "clang/StaticAnalyzer/Core/CheckerManager.h"
27 #include "clang/StaticAnalyzer/Core/PathSensitive/AnalysisManager.h"
28 #include "clang/StaticAnalyzer/Core/PathSensitive/CallEvent.h"
29 #include "llvm/ADT/ImmutableList.h"
30 #include "llvm/ADT/Statistic.h"
31 #include "llvm/Support/raw_ostream.h"
32 
33 #ifndef NDEBUG
34 #include "llvm/Support/GraphWriter.h"
35 #endif
36 
37 using namespace clang;
38 using namespace ento;
39 using llvm::APSInt;
40 
41 #define DEBUG_TYPE "ExprEngine"
42 
43 STATISTIC(NumRemoveDeadBindings,
44             "The # of times RemoveDeadBindings is called");
45 STATISTIC(NumMaxBlockCountReached,
46             "The # of aborted paths due to reaching the maximum block count in "
47             "a top level function");
48 STATISTIC(NumMaxBlockCountReachedInInlined,
49             "The # of aborted paths due to reaching the maximum block count in "
50             "an inlined function");
51 STATISTIC(NumTimesRetriedWithoutInlining,
52             "The # of times we re-evaluated a call without inlining");
53 
54 typedef std::pair<const CXXBindTemporaryExpr *, const StackFrameContext *>
55     CXXBindTemporaryContext;
56 
57 // Keeps track of whether CXXBindTemporaryExpr nodes have been evaluated.
58 // The StackFrameContext assures that nested calls due to inlined recursive
59 // functions do not interfere.
60 REGISTER_TRAIT_WITH_PROGRAMSTATE(InitializedTemporariesSet,
61                                  llvm::ImmutableSet<CXXBindTemporaryContext>)
62 
63 //===----------------------------------------------------------------------===//
64 // Engine construction and deletion.
65 //===----------------------------------------------------------------------===//
66 
67 static const char* TagProviderName = "ExprEngine";
68 
69 ExprEngine::ExprEngine(AnalysisManager &mgr, bool gcEnabled,
70                        SetOfConstDecls *VisitedCalleesIn,
71                        FunctionSummariesTy *FS,
72                        InliningModes HowToInlineIn)
73   : AMgr(mgr),
74     AnalysisDeclContexts(mgr.getAnalysisDeclContextManager()),
75     Engine(*this, FS),
76     G(Engine.getGraph()),
77     StateMgr(getContext(), mgr.getStoreManagerCreator(),
78              mgr.getConstraintManagerCreator(), G.getAllocator(),
79              this),
80     SymMgr(StateMgr.getSymbolManager()),
81     svalBuilder(StateMgr.getSValBuilder()),
82     currStmtIdx(0), currBldrCtx(nullptr),
83     ObjCNoRet(mgr.getASTContext()),
84     ObjCGCEnabled(gcEnabled), BR(mgr, *this),
85     VisitedCallees(VisitedCalleesIn),
86     HowToInline(HowToInlineIn)
87 {
88   unsigned TrimInterval = mgr.options.getGraphTrimInterval();
89   if (TrimInterval != 0) {
90     // Enable eager node reclaimation when constructing the ExplodedGraph.
91     G.enableNodeReclamation(TrimInterval);
92   }
93 }
94 
95 ExprEngine::~ExprEngine() {
96   BR.FlushReports();
97 }
98 
99 //===----------------------------------------------------------------------===//
100 // Utility methods.
101 //===----------------------------------------------------------------------===//
102 
103 ProgramStateRef ExprEngine::getInitialState(const LocationContext *InitLoc) {
104   ProgramStateRef state = StateMgr.getInitialState(InitLoc);
105   const Decl *D = InitLoc->getDecl();
106 
107   // Preconditions.
108   // FIXME: It would be nice if we had a more general mechanism to add
109   // such preconditions.  Some day.
110   do {
111 
112     if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) {
113       // Precondition: the first argument of 'main' is an integer guaranteed
114       //  to be > 0.
115       const IdentifierInfo *II = FD->getIdentifier();
116       if (!II || !(II->getName() == "main" && FD->getNumParams() > 0))
117         break;
118 
119       const ParmVarDecl *PD = FD->getParamDecl(0);
120       QualType T = PD->getType();
121       const BuiltinType *BT = dyn_cast<BuiltinType>(T);
122       if (!BT || !BT->isInteger())
123         break;
124 
125       const MemRegion *R = state->getRegion(PD, InitLoc);
126       if (!R)
127         break;
128 
129       SVal V = state->getSVal(loc::MemRegionVal(R));
130       SVal Constraint_untested = evalBinOp(state, BO_GT, V,
131                                            svalBuilder.makeZeroVal(T),
132                                            svalBuilder.getConditionType());
133 
134       Optional<DefinedOrUnknownSVal> Constraint =
135           Constraint_untested.getAs<DefinedOrUnknownSVal>();
136 
137       if (!Constraint)
138         break;
139 
140       if (ProgramStateRef newState = state->assume(*Constraint, true))
141         state = newState;
142     }
143     break;
144   }
145   while (0);
146 
147   if (const ObjCMethodDecl *MD = dyn_cast<ObjCMethodDecl>(D)) {
148     // Precondition: 'self' is always non-null upon entry to an Objective-C
149     // method.
150     const ImplicitParamDecl *SelfD = MD->getSelfDecl();
151     const MemRegion *R = state->getRegion(SelfD, InitLoc);
152     SVal V = state->getSVal(loc::MemRegionVal(R));
153 
154     if (Optional<Loc> LV = V.getAs<Loc>()) {
155       // Assume that the pointer value in 'self' is non-null.
156       state = state->assume(*LV, true);
157       assert(state && "'self' cannot be null");
158     }
159   }
160 
161   if (const CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(D)) {
162     if (!MD->isStatic()) {
163       // Precondition: 'this' is always non-null upon entry to the
164       // top-level function.  This is our starting assumption for
165       // analyzing an "open" program.
166       const StackFrameContext *SFC = InitLoc->getCurrentStackFrame();
167       if (SFC->getParent() == nullptr) {
168         loc::MemRegionVal L = svalBuilder.getCXXThis(MD, SFC);
169         SVal V = state->getSVal(L);
170         if (Optional<Loc> LV = V.getAs<Loc>()) {
171           state = state->assume(*LV, true);
172           assert(state && "'this' cannot be null");
173         }
174       }
175     }
176   }
177 
178   return state;
179 }
180 
181 ProgramStateRef
182 ExprEngine::createTemporaryRegionIfNeeded(ProgramStateRef State,
183                                           const LocationContext *LC,
184                                           const Expr *Ex,
185                                           const Expr *Result) {
186   SVal V = State->getSVal(Ex, LC);
187   if (!Result) {
188     // If we don't have an explicit result expression, we're in "if needed"
189     // mode. Only create a region if the current value is a NonLoc.
190     if (!V.getAs<NonLoc>())
191       return State;
192     Result = Ex;
193   } else {
194     // We need to create a region no matter what. For sanity, make sure we don't
195     // try to stuff a Loc into a non-pointer temporary region.
196     assert(!V.getAs<Loc>() || Loc::isLocType(Result->getType()) ||
197            Result->getType()->isMemberPointerType());
198   }
199 
200   ProgramStateManager &StateMgr = State->getStateManager();
201   MemRegionManager &MRMgr = StateMgr.getRegionManager();
202   StoreManager &StoreMgr = StateMgr.getStoreManager();
203 
204   // We need to be careful about treating a derived type's value as
205   // bindings for a base type. Unless we're creating a temporary pointer region,
206   // start by stripping and recording base casts.
207   SmallVector<const CastExpr *, 4> Casts;
208   const Expr *Inner = Ex->IgnoreParens();
209   if (!Loc::isLocType(Result->getType())) {
210     while (const CastExpr *CE = dyn_cast<CastExpr>(Inner)) {
211       if (CE->getCastKind() == CK_DerivedToBase ||
212           CE->getCastKind() == CK_UncheckedDerivedToBase)
213         Casts.push_back(CE);
214       else if (CE->getCastKind() != CK_NoOp)
215         break;
216 
217       Inner = CE->getSubExpr()->IgnoreParens();
218     }
219   }
220 
221   // Create a temporary object region for the inner expression (which may have
222   // a more derived type) and bind the value into it.
223   const TypedValueRegion *TR = nullptr;
224   if (const MaterializeTemporaryExpr *MT =
225           dyn_cast<MaterializeTemporaryExpr>(Result)) {
226     StorageDuration SD = MT->getStorageDuration();
227     // If this object is bound to a reference with static storage duration, we
228     // put it in a different region to prevent "address leakage" warnings.
229     if (SD == SD_Static || SD == SD_Thread)
230         TR = MRMgr.getCXXStaticTempObjectRegion(Inner);
231   }
232   if (!TR)
233     TR = MRMgr.getCXXTempObjectRegion(Inner, LC);
234 
235   SVal Reg = loc::MemRegionVal(TR);
236 
237   if (V.isUnknown())
238     V = getSValBuilder().conjureSymbolVal(Result, LC, TR->getValueType(),
239                                           currBldrCtx->blockCount());
240   State = State->bindLoc(Reg, V);
241 
242   // Re-apply the casts (from innermost to outermost) for type sanity.
243   for (SmallVectorImpl<const CastExpr *>::reverse_iterator I = Casts.rbegin(),
244                                                            E = Casts.rend();
245        I != E; ++I) {
246     Reg = StoreMgr.evalDerivedToBase(Reg, *I);
247   }
248 
249   State = State->BindExpr(Result, LC, Reg);
250   return State;
251 }
252 
253 //===----------------------------------------------------------------------===//
254 // Top-level transfer function logic (Dispatcher).
255 //===----------------------------------------------------------------------===//
256 
257 /// evalAssume - Called by ConstraintManager. Used to call checker-specific
258 ///  logic for handling assumptions on symbolic values.
259 ProgramStateRef ExprEngine::processAssume(ProgramStateRef state,
260                                               SVal cond, bool assumption) {
261   return getCheckerManager().runCheckersForEvalAssume(state, cond, assumption);
262 }
263 
264 bool ExprEngine::wantsRegionChangeUpdate(ProgramStateRef state) {
265   return getCheckerManager().wantsRegionChangeUpdate(state);
266 }
267 
268 ProgramStateRef
269 ExprEngine::processRegionChanges(ProgramStateRef state,
270                                  const InvalidatedSymbols *invalidated,
271                                  ArrayRef<const MemRegion *> Explicits,
272                                  ArrayRef<const MemRegion *> Regions,
273                                  const CallEvent *Call) {
274   return getCheckerManager().runCheckersForRegionChanges(state, invalidated,
275                                                       Explicits, Regions, Call);
276 }
277 
278 void ExprEngine::printState(raw_ostream &Out, ProgramStateRef State,
279                             const char *NL, const char *Sep) {
280   getCheckerManager().runCheckersForPrintState(Out, State, NL, Sep);
281 }
282 
283 void ExprEngine::processEndWorklist(bool hasWorkRemaining) {
284   getCheckerManager().runCheckersForEndAnalysis(G, BR, *this);
285 }
286 
287 void ExprEngine::processCFGElement(const CFGElement E, ExplodedNode *Pred,
288                                    unsigned StmtIdx, NodeBuilderContext *Ctx) {
289   PrettyStackTraceLocationContext CrashInfo(Pred->getLocationContext());
290   currStmtIdx = StmtIdx;
291   currBldrCtx = Ctx;
292 
293   switch (E.getKind()) {
294     case CFGElement::Statement:
295       ProcessStmt(const_cast<Stmt*>(E.castAs<CFGStmt>().getStmt()), Pred);
296       return;
297     case CFGElement::Initializer:
298       ProcessInitializer(E.castAs<CFGInitializer>().getInitializer(), Pred);
299       return;
300     case CFGElement::NewAllocator:
301       ProcessNewAllocator(E.castAs<CFGNewAllocator>().getAllocatorExpr(),
302                           Pred);
303       return;
304     case CFGElement::AutomaticObjectDtor:
305     case CFGElement::DeleteDtor:
306     case CFGElement::BaseDtor:
307     case CFGElement::MemberDtor:
308     case CFGElement::TemporaryDtor:
309       ProcessImplicitDtor(E.castAs<CFGImplicitDtor>(), Pred);
310       return;
311   }
312 }
313 
314 static bool shouldRemoveDeadBindings(AnalysisManager &AMgr,
315                                      const CFGStmt S,
316                                      const ExplodedNode *Pred,
317                                      const LocationContext *LC) {
318 
319   // Are we never purging state values?
320   if (AMgr.options.AnalysisPurgeOpt == PurgeNone)
321     return false;
322 
323   // Is this the beginning of a basic block?
324   if (Pred->getLocation().getAs<BlockEntrance>())
325     return true;
326 
327   // Is this on a non-expression?
328   if (!isa<Expr>(S.getStmt()))
329     return true;
330 
331   // Run before processing a call.
332   if (CallEvent::isCallStmt(S.getStmt()))
333     return true;
334 
335   // Is this an expression that is consumed by another expression?  If so,
336   // postpone cleaning out the state.
337   ParentMap &PM = LC->getAnalysisDeclContext()->getParentMap();
338   return !PM.isConsumedExpr(cast<Expr>(S.getStmt()));
339 }
340 
341 void ExprEngine::removeDead(ExplodedNode *Pred, ExplodedNodeSet &Out,
342                             const Stmt *ReferenceStmt,
343                             const LocationContext *LC,
344                             const Stmt *DiagnosticStmt,
345                             ProgramPoint::Kind K) {
346   assert((K == ProgramPoint::PreStmtPurgeDeadSymbolsKind ||
347           ReferenceStmt == nullptr || isa<ReturnStmt>(ReferenceStmt))
348           && "PostStmt is not generally supported by the SymbolReaper yet");
349   assert(LC && "Must pass the current (or expiring) LocationContext");
350 
351   if (!DiagnosticStmt) {
352     DiagnosticStmt = ReferenceStmt;
353     assert(DiagnosticStmt && "Required for clearing a LocationContext");
354   }
355 
356   NumRemoveDeadBindings++;
357   ProgramStateRef CleanedState = Pred->getState();
358 
359   // LC is the location context being destroyed, but SymbolReaper wants a
360   // location context that is still live. (If this is the top-level stack
361   // frame, this will be null.)
362   if (!ReferenceStmt) {
363     assert(K == ProgramPoint::PostStmtPurgeDeadSymbolsKind &&
364            "Use PostStmtPurgeDeadSymbolsKind for clearing a LocationContext");
365     LC = LC->getParent();
366   }
367 
368   const StackFrameContext *SFC = LC ? LC->getCurrentStackFrame() : nullptr;
369   SymbolReaper SymReaper(SFC, ReferenceStmt, SymMgr, getStoreManager());
370 
371   getCheckerManager().runCheckersForLiveSymbols(CleanedState, SymReaper);
372 
373   // Create a state in which dead bindings are removed from the environment
374   // and the store. TODO: The function should just return new env and store,
375   // not a new state.
376   CleanedState = StateMgr.removeDeadBindings(CleanedState, SFC, SymReaper);
377 
378   // Process any special transfer function for dead symbols.
379   // A tag to track convenience transitions, which can be removed at cleanup.
380   static SimpleProgramPointTag cleanupTag(TagProviderName, "Clean Node");
381   if (!SymReaper.hasDeadSymbols()) {
382     // Generate a CleanedNode that has the environment and store cleaned
383     // up. Since no symbols are dead, we can optimize and not clean out
384     // the constraint manager.
385     StmtNodeBuilder Bldr(Pred, Out, *currBldrCtx);
386     Bldr.generateNode(DiagnosticStmt, Pred, CleanedState, &cleanupTag, K);
387 
388   } else {
389     // Call checkers with the non-cleaned state so that they could query the
390     // values of the soon to be dead symbols.
391     ExplodedNodeSet CheckedSet;
392     getCheckerManager().runCheckersForDeadSymbols(CheckedSet, Pred, SymReaper,
393                                                   DiagnosticStmt, *this, K);
394 
395     // For each node in CheckedSet, generate CleanedNodes that have the
396     // environment, the store, and the constraints cleaned up but have the
397     // user-supplied states as the predecessors.
398     StmtNodeBuilder Bldr(CheckedSet, Out, *currBldrCtx);
399     for (ExplodedNodeSet::const_iterator
400           I = CheckedSet.begin(), E = CheckedSet.end(); I != E; ++I) {
401       ProgramStateRef CheckerState = (*I)->getState();
402 
403       // The constraint manager has not been cleaned up yet, so clean up now.
404       CheckerState = getConstraintManager().removeDeadBindings(CheckerState,
405                                                                SymReaper);
406 
407       assert(StateMgr.haveEqualEnvironments(CheckerState, Pred->getState()) &&
408         "Checkers are not allowed to modify the Environment as a part of "
409         "checkDeadSymbols processing.");
410       assert(StateMgr.haveEqualStores(CheckerState, Pred->getState()) &&
411         "Checkers are not allowed to modify the Store as a part of "
412         "checkDeadSymbols processing.");
413 
414       // Create a state based on CleanedState with CheckerState GDM and
415       // generate a transition to that state.
416       ProgramStateRef CleanedCheckerSt =
417         StateMgr.getPersistentStateWithGDM(CleanedState, CheckerState);
418       Bldr.generateNode(DiagnosticStmt, *I, CleanedCheckerSt, &cleanupTag, K);
419     }
420   }
421 }
422 
423 void ExprEngine::ProcessStmt(const CFGStmt S,
424                              ExplodedNode *Pred) {
425   // Reclaim any unnecessary nodes in the ExplodedGraph.
426   G.reclaimRecentlyAllocatedNodes();
427 
428   const Stmt *currStmt = S.getStmt();
429   PrettyStackTraceLoc CrashInfo(getContext().getSourceManager(),
430                                 currStmt->getLocStart(),
431                                 "Error evaluating statement");
432 
433   // Remove dead bindings and symbols.
434   ExplodedNodeSet CleanedStates;
435   if (shouldRemoveDeadBindings(AMgr, S, Pred, Pred->getLocationContext())){
436     removeDead(Pred, CleanedStates, currStmt, Pred->getLocationContext());
437   } else
438     CleanedStates.Add(Pred);
439 
440   // Visit the statement.
441   ExplodedNodeSet Dst;
442   for (ExplodedNodeSet::iterator I = CleanedStates.begin(),
443                                  E = CleanedStates.end(); I != E; ++I) {
444     ExplodedNodeSet DstI;
445     // Visit the statement.
446     Visit(currStmt, *I, DstI);
447     Dst.insert(DstI);
448   }
449 
450   // Enqueue the new nodes onto the work list.
451   Engine.enqueue(Dst, currBldrCtx->getBlock(), currStmtIdx);
452 }
453 
454 void ExprEngine::ProcessInitializer(const CFGInitializer Init,
455                                     ExplodedNode *Pred) {
456   const CXXCtorInitializer *BMI = Init.getInitializer();
457 
458   PrettyStackTraceLoc CrashInfo(getContext().getSourceManager(),
459                                 BMI->getSourceLocation(),
460                                 "Error evaluating initializer");
461 
462   // We don't clean up dead bindings here.
463   const StackFrameContext *stackFrame =
464                            cast<StackFrameContext>(Pred->getLocationContext());
465   const CXXConstructorDecl *decl =
466                            cast<CXXConstructorDecl>(stackFrame->getDecl());
467 
468   ProgramStateRef State = Pred->getState();
469   SVal thisVal = State->getSVal(svalBuilder.getCXXThis(decl, stackFrame));
470 
471   ExplodedNodeSet Tmp(Pred);
472   SVal FieldLoc;
473 
474   // Evaluate the initializer, if necessary
475   if (BMI->isAnyMemberInitializer()) {
476     // Constructors build the object directly in the field,
477     // but non-objects must be copied in from the initializer.
478     const Expr *Init = BMI->getInit()->IgnoreImplicit();
479     if (!isa<CXXConstructExpr>(Init)) {
480       const ValueDecl *Field;
481       if (BMI->isIndirectMemberInitializer()) {
482         Field = BMI->getIndirectMember();
483         FieldLoc = State->getLValue(BMI->getIndirectMember(), thisVal);
484       } else {
485         Field = BMI->getMember();
486         FieldLoc = State->getLValue(BMI->getMember(), thisVal);
487       }
488 
489       SVal InitVal;
490       if (BMI->getNumArrayIndices() > 0) {
491         // Handle arrays of trivial type. We can represent this with a
492         // primitive load/copy from the base array region.
493         const ArraySubscriptExpr *ASE;
494         while ((ASE = dyn_cast<ArraySubscriptExpr>(Init)))
495           Init = ASE->getBase()->IgnoreImplicit();
496 
497         SVal LValue = State->getSVal(Init, stackFrame);
498         if (Optional<Loc> LValueLoc = LValue.getAs<Loc>())
499           InitVal = State->getSVal(*LValueLoc);
500 
501         // If we fail to get the value for some reason, use a symbolic value.
502         if (InitVal.isUnknownOrUndef()) {
503           SValBuilder &SVB = getSValBuilder();
504           InitVal = SVB.conjureSymbolVal(BMI->getInit(), stackFrame,
505                                          Field->getType(),
506                                          currBldrCtx->blockCount());
507         }
508       } else {
509         InitVal = State->getSVal(BMI->getInit(), stackFrame);
510       }
511 
512       assert(Tmp.size() == 1 && "have not generated any new nodes yet");
513       assert(*Tmp.begin() == Pred && "have not generated any new nodes yet");
514       Tmp.clear();
515 
516       PostInitializer PP(BMI, FieldLoc.getAsRegion(), stackFrame);
517       evalBind(Tmp, Init, Pred, FieldLoc, InitVal, /*isInit=*/true, &PP);
518     }
519   } else {
520     assert(BMI->isBaseInitializer() || BMI->isDelegatingInitializer());
521     // We already did all the work when visiting the CXXConstructExpr.
522   }
523 
524   // Construct PostInitializer nodes whether the state changed or not,
525   // so that the diagnostics don't get confused.
526   PostInitializer PP(BMI, FieldLoc.getAsRegion(), stackFrame);
527   ExplodedNodeSet Dst;
528   NodeBuilder Bldr(Tmp, Dst, *currBldrCtx);
529   for (ExplodedNodeSet::iterator I = Tmp.begin(), E = Tmp.end(); I != E; ++I) {
530     ExplodedNode *N = *I;
531     Bldr.generateNode(PP, N->getState(), N);
532   }
533 
534   // Enqueue the new nodes onto the work list.
535   Engine.enqueue(Dst, currBldrCtx->getBlock(), currStmtIdx);
536 }
537 
538 void ExprEngine::ProcessImplicitDtor(const CFGImplicitDtor D,
539                                      ExplodedNode *Pred) {
540   ExplodedNodeSet Dst;
541   switch (D.getKind()) {
542   case CFGElement::AutomaticObjectDtor:
543     ProcessAutomaticObjDtor(D.castAs<CFGAutomaticObjDtor>(), Pred, Dst);
544     break;
545   case CFGElement::BaseDtor:
546     ProcessBaseDtor(D.castAs<CFGBaseDtor>(), Pred, Dst);
547     break;
548   case CFGElement::MemberDtor:
549     ProcessMemberDtor(D.castAs<CFGMemberDtor>(), Pred, Dst);
550     break;
551   case CFGElement::TemporaryDtor:
552     ProcessTemporaryDtor(D.castAs<CFGTemporaryDtor>(), Pred, Dst);
553     break;
554   case CFGElement::DeleteDtor:
555     ProcessDeleteDtor(D.castAs<CFGDeleteDtor>(), Pred, Dst);
556     break;
557   default:
558     llvm_unreachable("Unexpected dtor kind.");
559   }
560 
561   // Enqueue the new nodes onto the work list.
562   Engine.enqueue(Dst, currBldrCtx->getBlock(), currStmtIdx);
563 }
564 
565 void ExprEngine::ProcessNewAllocator(const CXXNewExpr *NE,
566                                      ExplodedNode *Pred) {
567   ExplodedNodeSet Dst;
568   AnalysisManager &AMgr = getAnalysisManager();
569   AnalyzerOptions &Opts = AMgr.options;
570   // TODO: We're not evaluating allocators for all cases just yet as
571   // we're not handling the return value correctly, which causes false
572   // positives when the alpha.cplusplus.NewDeleteLeaks check is on.
573   if (Opts.mayInlineCXXAllocator())
574     VisitCXXNewAllocatorCall(NE, Pred, Dst);
575   else {
576     NodeBuilder Bldr(Pred, Dst, *currBldrCtx);
577     const LocationContext *LCtx = Pred->getLocationContext();
578     PostImplicitCall PP(NE->getOperatorNew(), NE->getLocStart(), LCtx);
579     Bldr.generateNode(PP, Pred->getState(), Pred);
580   }
581   Engine.enqueue(Dst, currBldrCtx->getBlock(), currStmtIdx);
582 }
583 
584 void ExprEngine::ProcessAutomaticObjDtor(const CFGAutomaticObjDtor Dtor,
585                                          ExplodedNode *Pred,
586                                          ExplodedNodeSet &Dst) {
587   const VarDecl *varDecl = Dtor.getVarDecl();
588   QualType varType = varDecl->getType();
589 
590   ProgramStateRef state = Pred->getState();
591   SVal dest = state->getLValue(varDecl, Pred->getLocationContext());
592   const MemRegion *Region = dest.castAs<loc::MemRegionVal>().getRegion();
593 
594   if (const ReferenceType *refType = varType->getAs<ReferenceType>()) {
595     varType = refType->getPointeeType();
596     Region = state->getSVal(Region).getAsRegion();
597   }
598 
599   VisitCXXDestructor(varType, Region, Dtor.getTriggerStmt(), /*IsBase=*/ false,
600                      Pred, Dst);
601 }
602 
603 void ExprEngine::ProcessDeleteDtor(const CFGDeleteDtor Dtor,
604                                    ExplodedNode *Pred,
605                                    ExplodedNodeSet &Dst) {
606   ProgramStateRef State = Pred->getState();
607   const LocationContext *LCtx = Pred->getLocationContext();
608   const CXXDeleteExpr *DE = Dtor.getDeleteExpr();
609   const Stmt *Arg = DE->getArgument();
610   SVal ArgVal = State->getSVal(Arg, LCtx);
611 
612   // If the argument to delete is known to be a null value,
613   // don't run destructor.
614   if (State->isNull(ArgVal).isConstrainedTrue()) {
615     QualType DTy = DE->getDestroyedType();
616     QualType BTy = getContext().getBaseElementType(DTy);
617     const CXXRecordDecl *RD = BTy->getAsCXXRecordDecl();
618     const CXXDestructorDecl *Dtor = RD->getDestructor();
619 
620     PostImplicitCall PP(Dtor, DE->getLocStart(), LCtx);
621     NodeBuilder Bldr(Pred, Dst, *currBldrCtx);
622     Bldr.generateNode(PP, Pred->getState(), Pred);
623     return;
624   }
625 
626   VisitCXXDestructor(DE->getDestroyedType(),
627                      ArgVal.getAsRegion(),
628                      DE, /*IsBase=*/ false,
629                      Pred, Dst);
630 }
631 
632 void ExprEngine::ProcessBaseDtor(const CFGBaseDtor D,
633                                  ExplodedNode *Pred, ExplodedNodeSet &Dst) {
634   const LocationContext *LCtx = Pred->getLocationContext();
635 
636   const CXXDestructorDecl *CurDtor = cast<CXXDestructorDecl>(LCtx->getDecl());
637   Loc ThisPtr = getSValBuilder().getCXXThis(CurDtor,
638                                             LCtx->getCurrentStackFrame());
639   SVal ThisVal = Pred->getState()->getSVal(ThisPtr);
640 
641   // Create the base object region.
642   const CXXBaseSpecifier *Base = D.getBaseSpecifier();
643   QualType BaseTy = Base->getType();
644   SVal BaseVal = getStoreManager().evalDerivedToBase(ThisVal, BaseTy,
645                                                      Base->isVirtual());
646 
647   VisitCXXDestructor(BaseTy, BaseVal.castAs<loc::MemRegionVal>().getRegion(),
648                      CurDtor->getBody(), /*IsBase=*/ true, Pred, Dst);
649 }
650 
651 void ExprEngine::ProcessMemberDtor(const CFGMemberDtor D,
652                                    ExplodedNode *Pred, ExplodedNodeSet &Dst) {
653   const FieldDecl *Member = D.getFieldDecl();
654   ProgramStateRef State = Pred->getState();
655   const LocationContext *LCtx = Pred->getLocationContext();
656 
657   const CXXDestructorDecl *CurDtor = cast<CXXDestructorDecl>(LCtx->getDecl());
658   Loc ThisVal = getSValBuilder().getCXXThis(CurDtor,
659                                             LCtx->getCurrentStackFrame());
660   SVal FieldVal =
661       State->getLValue(Member, State->getSVal(ThisVal).castAs<Loc>());
662 
663   VisitCXXDestructor(Member->getType(),
664                      FieldVal.castAs<loc::MemRegionVal>().getRegion(),
665                      CurDtor->getBody(), /*IsBase=*/false, Pred, Dst);
666 }
667 
668 void ExprEngine::ProcessTemporaryDtor(const CFGTemporaryDtor D,
669                                       ExplodedNode *Pred,
670                                       ExplodedNodeSet &Dst) {
671   ExplodedNodeSet CleanDtorState;
672   StmtNodeBuilder StmtBldr(Pred, CleanDtorState, *currBldrCtx);
673   ProgramStateRef State = Pred->getState();
674   if (State->contains<InitializedTemporariesSet>(
675       std::make_pair(D.getBindTemporaryExpr(), Pred->getStackFrame()))) {
676     // FIXME: Currently we insert temporary destructors for default parameters,
677     // but we don't insert the constructors.
678     State = State->remove<InitializedTemporariesSet>(
679         std::make_pair(D.getBindTemporaryExpr(), Pred->getStackFrame()));
680   }
681   StmtBldr.generateNode(D.getBindTemporaryExpr(), Pred, State);
682 
683   QualType varType = D.getBindTemporaryExpr()->getSubExpr()->getType();
684   // FIXME: Currently CleanDtorState can be empty here due to temporaries being
685   // bound to default parameters.
686   assert(CleanDtorState.size() <= 1);
687   ExplodedNode *CleanPred =
688       CleanDtorState.empty() ? Pred : *CleanDtorState.begin();
689   // FIXME: Inlining of temporary destructors is not supported yet anyway, so
690   // we just put a NULL region for now. This will need to be changed later.
691   VisitCXXDestructor(varType, nullptr, D.getBindTemporaryExpr(),
692                      /*IsBase=*/false, CleanPred, Dst);
693 }
694 
695 void ExprEngine::processCleanupTemporaryBranch(const CXXBindTemporaryExpr *BTE,
696                                                NodeBuilderContext &BldCtx,
697                                                ExplodedNode *Pred,
698                                                ExplodedNodeSet &Dst,
699                                                const CFGBlock *DstT,
700                                                const CFGBlock *DstF) {
701   BranchNodeBuilder TempDtorBuilder(Pred, Dst, BldCtx, DstT, DstF);
702   if (Pred->getState()->contains<InitializedTemporariesSet>(
703           std::make_pair(BTE, Pred->getStackFrame()))) {
704     TempDtorBuilder.markInfeasible(false);
705     TempDtorBuilder.generateNode(Pred->getState(), true, Pred);
706   } else {
707     TempDtorBuilder.markInfeasible(true);
708     TempDtorBuilder.generateNode(Pred->getState(), false, Pred);
709   }
710 }
711 
712 void ExprEngine::VisitCXXBindTemporaryExpr(const CXXBindTemporaryExpr *BTE,
713                                            ExplodedNodeSet &PreVisit,
714                                            ExplodedNodeSet &Dst) {
715   if (!getAnalysisManager().options.includeTemporaryDtorsInCFG()) {
716     // In case we don't have temporary destructors in the CFG, do not mark
717     // the initialization - we would otherwise never clean it up.
718     Dst = PreVisit;
719     return;
720   }
721   StmtNodeBuilder StmtBldr(PreVisit, Dst, *currBldrCtx);
722   for (ExplodedNode *Node : PreVisit) {
723     ProgramStateRef State = Node->getState();
724 
725     if (!State->contains<InitializedTemporariesSet>(
726             std::make_pair(BTE, Node->getStackFrame()))) {
727       // FIXME: Currently the state might already contain the marker due to
728       // incorrect handling of temporaries bound to default parameters; for
729       // those, we currently skip the CXXBindTemporaryExpr but rely on adding
730       // temporary destructor nodes.
731       State = State->add<InitializedTemporariesSet>(
732           std::make_pair(BTE, Node->getStackFrame()));
733     }
734     StmtBldr.generateNode(BTE, Node, State);
735   }
736 }
737 
738 void ExprEngine::Visit(const Stmt *S, ExplodedNode *Pred,
739                        ExplodedNodeSet &DstTop) {
740   PrettyStackTraceLoc CrashInfo(getContext().getSourceManager(),
741                                 S->getLocStart(),
742                                 "Error evaluating statement");
743   ExplodedNodeSet Dst;
744   StmtNodeBuilder Bldr(Pred, DstTop, *currBldrCtx);
745 
746   assert(!isa<Expr>(S) || S == cast<Expr>(S)->IgnoreParens());
747 
748   switch (S->getStmtClass()) {
749     // C++ and ARC stuff we don't support yet.
750     case Expr::ObjCIndirectCopyRestoreExprClass:
751     case Stmt::CXXDependentScopeMemberExprClass:
752     case Stmt::CXXTryStmtClass:
753     case Stmt::CXXTypeidExprClass:
754     case Stmt::CXXUuidofExprClass:
755     case Stmt::CXXFoldExprClass:
756     case Stmt::MSPropertyRefExprClass:
757     case Stmt::CXXUnresolvedConstructExprClass:
758     case Stmt::DependentScopeDeclRefExprClass:
759     case Stmt::ArrayTypeTraitExprClass:
760     case Stmt::ExpressionTraitExprClass:
761     case Stmt::UnresolvedLookupExprClass:
762     case Stmt::UnresolvedMemberExprClass:
763     case Stmt::TypoExprClass:
764     case Stmt::CXXNoexceptExprClass:
765     case Stmt::PackExpansionExprClass:
766     case Stmt::SubstNonTypeTemplateParmPackExprClass:
767     case Stmt::FunctionParmPackExprClass:
768     case Stmt::SEHTryStmtClass:
769     case Stmt::SEHExceptStmtClass:
770     case Stmt::SEHLeaveStmtClass:
771     case Stmt::SEHFinallyStmtClass: {
772       const ExplodedNode *node = Bldr.generateSink(S, Pred, Pred->getState());
773       Engine.addAbortedBlock(node, currBldrCtx->getBlock());
774       break;
775     }
776 
777     case Stmt::ParenExprClass:
778       llvm_unreachable("ParenExprs already handled.");
779     case Stmt::GenericSelectionExprClass:
780       llvm_unreachable("GenericSelectionExprs already handled.");
781     // Cases that should never be evaluated simply because they shouldn't
782     // appear in the CFG.
783     case Stmt::BreakStmtClass:
784     case Stmt::CaseStmtClass:
785     case Stmt::CompoundStmtClass:
786     case Stmt::ContinueStmtClass:
787     case Stmt::CXXForRangeStmtClass:
788     case Stmt::DefaultStmtClass:
789     case Stmt::DoStmtClass:
790     case Stmt::ForStmtClass:
791     case Stmt::GotoStmtClass:
792     case Stmt::IfStmtClass:
793     case Stmt::IndirectGotoStmtClass:
794     case Stmt::LabelStmtClass:
795     case Stmt::NoStmtClass:
796     case Stmt::NullStmtClass:
797     case Stmt::SwitchStmtClass:
798     case Stmt::WhileStmtClass:
799     case Expr::MSDependentExistsStmtClass:
800     case Stmt::CapturedStmtClass:
801     case Stmt::OMPParallelDirectiveClass:
802     case Stmt::OMPSimdDirectiveClass:
803     case Stmt::OMPForDirectiveClass:
804     case Stmt::OMPForSimdDirectiveClass:
805     case Stmt::OMPSectionsDirectiveClass:
806     case Stmt::OMPSectionDirectiveClass:
807     case Stmt::OMPSingleDirectiveClass:
808     case Stmt::OMPMasterDirectiveClass:
809     case Stmt::OMPCriticalDirectiveClass:
810     case Stmt::OMPParallelForDirectiveClass:
811     case Stmt::OMPParallelForSimdDirectiveClass:
812     case Stmt::OMPParallelSectionsDirectiveClass:
813     case Stmt::OMPTaskDirectiveClass:
814     case Stmt::OMPTaskyieldDirectiveClass:
815     case Stmt::OMPBarrierDirectiveClass:
816     case Stmt::OMPTaskwaitDirectiveClass:
817     case Stmt::OMPTaskgroupDirectiveClass:
818     case Stmt::OMPFlushDirectiveClass:
819     case Stmt::OMPOrderedDirectiveClass:
820     case Stmt::OMPAtomicDirectiveClass:
821     case Stmt::OMPTargetDirectiveClass:
822     case Stmt::OMPTargetDataDirectiveClass:
823     case Stmt::OMPTeamsDirectiveClass:
824     case Stmt::OMPCancellationPointDirectiveClass:
825     case Stmt::OMPCancelDirectiveClass:
826       llvm_unreachable("Stmt should not be in analyzer evaluation loop");
827 
828     case Stmt::ObjCSubscriptRefExprClass:
829     case Stmt::ObjCPropertyRefExprClass:
830       llvm_unreachable("These are handled by PseudoObjectExpr");
831 
832     case Stmt::GNUNullExprClass: {
833       // GNU __null is a pointer-width integer, not an actual pointer.
834       ProgramStateRef state = Pred->getState();
835       state = state->BindExpr(S, Pred->getLocationContext(),
836                               svalBuilder.makeIntValWithPtrWidth(0, false));
837       Bldr.generateNode(S, Pred, state);
838       break;
839     }
840 
841     case Stmt::ObjCAtSynchronizedStmtClass:
842       Bldr.takeNodes(Pred);
843       VisitObjCAtSynchronizedStmt(cast<ObjCAtSynchronizedStmt>(S), Pred, Dst);
844       Bldr.addNodes(Dst);
845       break;
846 
847     case Stmt::ExprWithCleanupsClass:
848       // Handled due to fully linearised CFG.
849       break;
850 
851     case Stmt::CXXBindTemporaryExprClass: {
852       Bldr.takeNodes(Pred);
853       ExplodedNodeSet PreVisit;
854       getCheckerManager().runCheckersForPreStmt(PreVisit, Pred, S, *this);
855       ExplodedNodeSet Next;
856       VisitCXXBindTemporaryExpr(cast<CXXBindTemporaryExpr>(S), PreVisit, Next);
857       getCheckerManager().runCheckersForPostStmt(Dst, Next, S, *this);
858       Bldr.addNodes(Dst);
859       break;
860     }
861 
862     // Cases not handled yet; but will handle some day.
863     case Stmt::DesignatedInitExprClass:
864     case Stmt::DesignatedInitUpdateExprClass:
865     case Stmt::ExtVectorElementExprClass:
866     case Stmt::ImaginaryLiteralClass:
867     case Stmt::ObjCAtCatchStmtClass:
868     case Stmt::ObjCAtFinallyStmtClass:
869     case Stmt::ObjCAtTryStmtClass:
870     case Stmt::ObjCAutoreleasePoolStmtClass:
871     case Stmt::ObjCEncodeExprClass:
872     case Stmt::ObjCIsaExprClass:
873     case Stmt::ObjCProtocolExprClass:
874     case Stmt::ObjCSelectorExprClass:
875     case Stmt::ParenListExprClass:
876     case Stmt::ShuffleVectorExprClass:
877     case Stmt::ConvertVectorExprClass:
878     case Stmt::VAArgExprClass:
879     case Stmt::CUDAKernelCallExprClass:
880     case Stmt::OpaqueValueExprClass:
881     case Stmt::AsTypeExprClass:
882     case Stmt::AtomicExprClass:
883       // Fall through.
884 
885     // Cases we intentionally don't evaluate, since they don't need
886     // to be explicitly evaluated.
887     case Stmt::PredefinedExprClass:
888     case Stmt::AddrLabelExprClass:
889     case Stmt::AttributedStmtClass:
890     case Stmt::IntegerLiteralClass:
891     case Stmt::CharacterLiteralClass:
892     case Stmt::ImplicitValueInitExprClass:
893     case Stmt::CXXScalarValueInitExprClass:
894     case Stmt::CXXBoolLiteralExprClass:
895     case Stmt::ObjCBoolLiteralExprClass:
896     case Stmt::FloatingLiteralClass:
897     case Stmt::NoInitExprClass:
898     case Stmt::SizeOfPackExprClass:
899     case Stmt::StringLiteralClass:
900     case Stmt::ObjCStringLiteralClass:
901     case Stmt::CXXPseudoDestructorExprClass:
902     case Stmt::SubstNonTypeTemplateParmExprClass:
903     case Stmt::CXXNullPtrLiteralExprClass:
904     case Stmt::OMPArraySectionExprClass:
905     case Stmt::TypeTraitExprClass: {
906       Bldr.takeNodes(Pred);
907       ExplodedNodeSet preVisit;
908       getCheckerManager().runCheckersForPreStmt(preVisit, Pred, S, *this);
909       getCheckerManager().runCheckersForPostStmt(Dst, preVisit, S, *this);
910       Bldr.addNodes(Dst);
911       break;
912     }
913 
914     case Stmt::CXXDefaultArgExprClass:
915     case Stmt::CXXDefaultInitExprClass: {
916       Bldr.takeNodes(Pred);
917       ExplodedNodeSet PreVisit;
918       getCheckerManager().runCheckersForPreStmt(PreVisit, Pred, S, *this);
919 
920       ExplodedNodeSet Tmp;
921       StmtNodeBuilder Bldr2(PreVisit, Tmp, *currBldrCtx);
922 
923       const Expr *ArgE;
924       if (const CXXDefaultArgExpr *DefE = dyn_cast<CXXDefaultArgExpr>(S))
925         ArgE = DefE->getExpr();
926       else if (const CXXDefaultInitExpr *DefE = dyn_cast<CXXDefaultInitExpr>(S))
927         ArgE = DefE->getExpr();
928       else
929         llvm_unreachable("unknown constant wrapper kind");
930 
931       bool IsTemporary = false;
932       if (const MaterializeTemporaryExpr *MTE =
933             dyn_cast<MaterializeTemporaryExpr>(ArgE)) {
934         ArgE = MTE->GetTemporaryExpr();
935         IsTemporary = true;
936       }
937 
938       Optional<SVal> ConstantVal = svalBuilder.getConstantVal(ArgE);
939       if (!ConstantVal)
940         ConstantVal = UnknownVal();
941 
942       const LocationContext *LCtx = Pred->getLocationContext();
943       for (ExplodedNodeSet::iterator I = PreVisit.begin(), E = PreVisit.end();
944            I != E; ++I) {
945         ProgramStateRef State = (*I)->getState();
946         State = State->BindExpr(S, LCtx, *ConstantVal);
947         if (IsTemporary)
948           State = createTemporaryRegionIfNeeded(State, LCtx,
949                                                 cast<Expr>(S),
950                                                 cast<Expr>(S));
951         Bldr2.generateNode(S, *I, State);
952       }
953 
954       getCheckerManager().runCheckersForPostStmt(Dst, Tmp, S, *this);
955       Bldr.addNodes(Dst);
956       break;
957     }
958 
959     // Cases we evaluate as opaque expressions, conjuring a symbol.
960     case Stmt::CXXStdInitializerListExprClass:
961     case Expr::ObjCArrayLiteralClass:
962     case Expr::ObjCDictionaryLiteralClass:
963     case Expr::ObjCBoxedExprClass: {
964       Bldr.takeNodes(Pred);
965 
966       ExplodedNodeSet preVisit;
967       getCheckerManager().runCheckersForPreStmt(preVisit, Pred, S, *this);
968 
969       ExplodedNodeSet Tmp;
970       StmtNodeBuilder Bldr2(preVisit, Tmp, *currBldrCtx);
971 
972       const Expr *Ex = cast<Expr>(S);
973       QualType resultType = Ex->getType();
974 
975       for (ExplodedNodeSet::iterator it = preVisit.begin(), et = preVisit.end();
976            it != et; ++it) {
977         ExplodedNode *N = *it;
978         const LocationContext *LCtx = N->getLocationContext();
979         SVal result = svalBuilder.conjureSymbolVal(nullptr, Ex, LCtx,
980                                                    resultType,
981                                                    currBldrCtx->blockCount());
982         ProgramStateRef state = N->getState()->BindExpr(Ex, LCtx, result);
983         Bldr2.generateNode(S, N, state);
984       }
985 
986       getCheckerManager().runCheckersForPostStmt(Dst, Tmp, S, *this);
987       Bldr.addNodes(Dst);
988       break;
989     }
990 
991     case Stmt::ArraySubscriptExprClass:
992       Bldr.takeNodes(Pred);
993       VisitLvalArraySubscriptExpr(cast<ArraySubscriptExpr>(S), Pred, Dst);
994       Bldr.addNodes(Dst);
995       break;
996 
997     case Stmt::GCCAsmStmtClass:
998       Bldr.takeNodes(Pred);
999       VisitGCCAsmStmt(cast<GCCAsmStmt>(S), Pred, Dst);
1000       Bldr.addNodes(Dst);
1001       break;
1002 
1003     case Stmt::MSAsmStmtClass:
1004       Bldr.takeNodes(Pred);
1005       VisitMSAsmStmt(cast<MSAsmStmt>(S), Pred, Dst);
1006       Bldr.addNodes(Dst);
1007       break;
1008 
1009     case Stmt::BlockExprClass:
1010       Bldr.takeNodes(Pred);
1011       VisitBlockExpr(cast<BlockExpr>(S), Pred, Dst);
1012       Bldr.addNodes(Dst);
1013       break;
1014 
1015     case Stmt::LambdaExprClass:
1016       if (AMgr.options.shouldInlineLambdas()) {
1017         Bldr.takeNodes(Pred);
1018         VisitLambdaExpr(cast<LambdaExpr>(S), Pred, Dst);
1019         Bldr.addNodes(Dst);
1020       } else {
1021         const ExplodedNode *node = Bldr.generateSink(S, Pred, Pred->getState());
1022         Engine.addAbortedBlock(node, currBldrCtx->getBlock());
1023       }
1024       break;
1025 
1026     case Stmt::BinaryOperatorClass: {
1027       const BinaryOperator* B = cast<BinaryOperator>(S);
1028       if (B->isLogicalOp()) {
1029         Bldr.takeNodes(Pred);
1030         VisitLogicalExpr(B, Pred, Dst);
1031         Bldr.addNodes(Dst);
1032         break;
1033       }
1034       else if (B->getOpcode() == BO_Comma) {
1035         ProgramStateRef state = Pred->getState();
1036         Bldr.generateNode(B, Pred,
1037                           state->BindExpr(B, Pred->getLocationContext(),
1038                                           state->getSVal(B->getRHS(),
1039                                                   Pred->getLocationContext())));
1040         break;
1041       }
1042 
1043       Bldr.takeNodes(Pred);
1044 
1045       if (AMgr.options.eagerlyAssumeBinOpBifurcation &&
1046           (B->isRelationalOp() || B->isEqualityOp())) {
1047         ExplodedNodeSet Tmp;
1048         VisitBinaryOperator(cast<BinaryOperator>(S), Pred, Tmp);
1049         evalEagerlyAssumeBinOpBifurcation(Dst, Tmp, cast<Expr>(S));
1050       }
1051       else
1052         VisitBinaryOperator(cast<BinaryOperator>(S), Pred, Dst);
1053 
1054       Bldr.addNodes(Dst);
1055       break;
1056     }
1057 
1058     case Stmt::CXXOperatorCallExprClass: {
1059       const CXXOperatorCallExpr *OCE = cast<CXXOperatorCallExpr>(S);
1060 
1061       // For instance method operators, make sure the 'this' argument has a
1062       // valid region.
1063       const Decl *Callee = OCE->getCalleeDecl();
1064       if (const CXXMethodDecl *MD = dyn_cast_or_null<CXXMethodDecl>(Callee)) {
1065         if (MD->isInstance()) {
1066           ProgramStateRef State = Pred->getState();
1067           const LocationContext *LCtx = Pred->getLocationContext();
1068           ProgramStateRef NewState =
1069             createTemporaryRegionIfNeeded(State, LCtx, OCE->getArg(0));
1070           if (NewState != State) {
1071             Pred = Bldr.generateNode(OCE, Pred, NewState, /*Tag=*/nullptr,
1072                                      ProgramPoint::PreStmtKind);
1073             // Did we cache out?
1074             if (!Pred)
1075               break;
1076           }
1077         }
1078       }
1079       // FALLTHROUGH
1080     }
1081     case Stmt::CallExprClass:
1082     case Stmt::CXXMemberCallExprClass:
1083     case Stmt::UserDefinedLiteralClass: {
1084       Bldr.takeNodes(Pred);
1085       VisitCallExpr(cast<CallExpr>(S), Pred, Dst);
1086       Bldr.addNodes(Dst);
1087       break;
1088     }
1089 
1090     case Stmt::CXXCatchStmtClass: {
1091       Bldr.takeNodes(Pred);
1092       VisitCXXCatchStmt(cast<CXXCatchStmt>(S), Pred, Dst);
1093       Bldr.addNodes(Dst);
1094       break;
1095     }
1096 
1097     case Stmt::CXXTemporaryObjectExprClass:
1098     case Stmt::CXXConstructExprClass: {
1099       Bldr.takeNodes(Pred);
1100       VisitCXXConstructExpr(cast<CXXConstructExpr>(S), Pred, Dst);
1101       Bldr.addNodes(Dst);
1102       break;
1103     }
1104 
1105     case Stmt::CXXNewExprClass: {
1106       Bldr.takeNodes(Pred);
1107       ExplodedNodeSet PostVisit;
1108       VisitCXXNewExpr(cast<CXXNewExpr>(S), Pred, PostVisit);
1109       getCheckerManager().runCheckersForPostStmt(Dst, PostVisit, S, *this);
1110       Bldr.addNodes(Dst);
1111       break;
1112     }
1113 
1114     case Stmt::CXXDeleteExprClass: {
1115       Bldr.takeNodes(Pred);
1116       ExplodedNodeSet PreVisit;
1117       const CXXDeleteExpr *CDE = cast<CXXDeleteExpr>(S);
1118       getCheckerManager().runCheckersForPreStmt(PreVisit, Pred, S, *this);
1119 
1120       for (ExplodedNodeSet::iterator i = PreVisit.begin(),
1121                                      e = PreVisit.end(); i != e ; ++i)
1122         VisitCXXDeleteExpr(CDE, *i, Dst);
1123 
1124       Bldr.addNodes(Dst);
1125       break;
1126     }
1127       // FIXME: ChooseExpr is really a constant.  We need to fix
1128       //        the CFG do not model them as explicit control-flow.
1129 
1130     case Stmt::ChooseExprClass: { // __builtin_choose_expr
1131       Bldr.takeNodes(Pred);
1132       const ChooseExpr *C = cast<ChooseExpr>(S);
1133       VisitGuardedExpr(C, C->getLHS(), C->getRHS(), Pred, Dst);
1134       Bldr.addNodes(Dst);
1135       break;
1136     }
1137 
1138     case Stmt::CompoundAssignOperatorClass:
1139       Bldr.takeNodes(Pred);
1140       VisitBinaryOperator(cast<BinaryOperator>(S), Pred, Dst);
1141       Bldr.addNodes(Dst);
1142       break;
1143 
1144     case Stmt::CompoundLiteralExprClass:
1145       Bldr.takeNodes(Pred);
1146       VisitCompoundLiteralExpr(cast<CompoundLiteralExpr>(S), Pred, Dst);
1147       Bldr.addNodes(Dst);
1148       break;
1149 
1150     case Stmt::BinaryConditionalOperatorClass:
1151     case Stmt::ConditionalOperatorClass: { // '?' operator
1152       Bldr.takeNodes(Pred);
1153       const AbstractConditionalOperator *C
1154         = cast<AbstractConditionalOperator>(S);
1155       VisitGuardedExpr(C, C->getTrueExpr(), C->getFalseExpr(), Pred, Dst);
1156       Bldr.addNodes(Dst);
1157       break;
1158     }
1159 
1160     case Stmt::CXXThisExprClass:
1161       Bldr.takeNodes(Pred);
1162       VisitCXXThisExpr(cast<CXXThisExpr>(S), Pred, Dst);
1163       Bldr.addNodes(Dst);
1164       break;
1165 
1166     case Stmt::DeclRefExprClass: {
1167       Bldr.takeNodes(Pred);
1168       const DeclRefExpr *DE = cast<DeclRefExpr>(S);
1169       VisitCommonDeclRefExpr(DE, DE->getDecl(), Pred, Dst);
1170       Bldr.addNodes(Dst);
1171       break;
1172     }
1173 
1174     case Stmt::DeclStmtClass:
1175       Bldr.takeNodes(Pred);
1176       VisitDeclStmt(cast<DeclStmt>(S), Pred, Dst);
1177       Bldr.addNodes(Dst);
1178       break;
1179 
1180     case Stmt::ImplicitCastExprClass:
1181     case Stmt::CStyleCastExprClass:
1182     case Stmt::CXXStaticCastExprClass:
1183     case Stmt::CXXDynamicCastExprClass:
1184     case Stmt::CXXReinterpretCastExprClass:
1185     case Stmt::CXXConstCastExprClass:
1186     case Stmt::CXXFunctionalCastExprClass:
1187     case Stmt::ObjCBridgedCastExprClass: {
1188       Bldr.takeNodes(Pred);
1189       const CastExpr *C = cast<CastExpr>(S);
1190       // Handle the previsit checks.
1191       ExplodedNodeSet dstPrevisit;
1192       getCheckerManager().runCheckersForPreStmt(dstPrevisit, Pred, C, *this);
1193 
1194       // Handle the expression itself.
1195       ExplodedNodeSet dstExpr;
1196       for (ExplodedNodeSet::iterator i = dstPrevisit.begin(),
1197                                      e = dstPrevisit.end(); i != e ; ++i) {
1198         VisitCast(C, C->getSubExpr(), *i, dstExpr);
1199       }
1200 
1201       // Handle the postvisit checks.
1202       getCheckerManager().runCheckersForPostStmt(Dst, dstExpr, C, *this);
1203       Bldr.addNodes(Dst);
1204       break;
1205     }
1206 
1207     case Expr::MaterializeTemporaryExprClass: {
1208       Bldr.takeNodes(Pred);
1209       const MaterializeTemporaryExpr *MTE = cast<MaterializeTemporaryExpr>(S);
1210       CreateCXXTemporaryObject(MTE, Pred, Dst);
1211       Bldr.addNodes(Dst);
1212       break;
1213     }
1214 
1215     case Stmt::InitListExprClass:
1216       Bldr.takeNodes(Pred);
1217       VisitInitListExpr(cast<InitListExpr>(S), Pred, Dst);
1218       Bldr.addNodes(Dst);
1219       break;
1220 
1221     case Stmt::MemberExprClass:
1222       Bldr.takeNodes(Pred);
1223       VisitMemberExpr(cast<MemberExpr>(S), Pred, Dst);
1224       Bldr.addNodes(Dst);
1225       break;
1226 
1227     case Stmt::ObjCIvarRefExprClass:
1228       Bldr.takeNodes(Pred);
1229       VisitLvalObjCIvarRefExpr(cast<ObjCIvarRefExpr>(S), Pred, Dst);
1230       Bldr.addNodes(Dst);
1231       break;
1232 
1233     case Stmt::ObjCForCollectionStmtClass:
1234       Bldr.takeNodes(Pred);
1235       VisitObjCForCollectionStmt(cast<ObjCForCollectionStmt>(S), Pred, Dst);
1236       Bldr.addNodes(Dst);
1237       break;
1238 
1239     case Stmt::ObjCMessageExprClass:
1240       Bldr.takeNodes(Pred);
1241       VisitObjCMessage(cast<ObjCMessageExpr>(S), Pred, Dst);
1242       Bldr.addNodes(Dst);
1243       break;
1244 
1245     case Stmt::ObjCAtThrowStmtClass:
1246     case Stmt::CXXThrowExprClass:
1247       // FIXME: This is not complete.  We basically treat @throw as
1248       // an abort.
1249       Bldr.generateSink(S, Pred, Pred->getState());
1250       break;
1251 
1252     case Stmt::ReturnStmtClass:
1253       Bldr.takeNodes(Pred);
1254       VisitReturnStmt(cast<ReturnStmt>(S), Pred, Dst);
1255       Bldr.addNodes(Dst);
1256       break;
1257 
1258     case Stmt::OffsetOfExprClass:
1259       Bldr.takeNodes(Pred);
1260       VisitOffsetOfExpr(cast<OffsetOfExpr>(S), Pred, Dst);
1261       Bldr.addNodes(Dst);
1262       break;
1263 
1264     case Stmt::UnaryExprOrTypeTraitExprClass:
1265       Bldr.takeNodes(Pred);
1266       VisitUnaryExprOrTypeTraitExpr(cast<UnaryExprOrTypeTraitExpr>(S),
1267                                     Pred, Dst);
1268       Bldr.addNodes(Dst);
1269       break;
1270 
1271     case Stmt::StmtExprClass: {
1272       const StmtExpr *SE = cast<StmtExpr>(S);
1273 
1274       if (SE->getSubStmt()->body_empty()) {
1275         // Empty statement expression.
1276         assert(SE->getType() == getContext().VoidTy
1277                && "Empty statement expression must have void type.");
1278         break;
1279       }
1280 
1281       if (Expr *LastExpr = dyn_cast<Expr>(*SE->getSubStmt()->body_rbegin())) {
1282         ProgramStateRef state = Pred->getState();
1283         Bldr.generateNode(SE, Pred,
1284                           state->BindExpr(SE, Pred->getLocationContext(),
1285                                           state->getSVal(LastExpr,
1286                                                   Pred->getLocationContext())));
1287       }
1288       break;
1289     }
1290 
1291     case Stmt::UnaryOperatorClass: {
1292       Bldr.takeNodes(Pred);
1293       const UnaryOperator *U = cast<UnaryOperator>(S);
1294       if (AMgr.options.eagerlyAssumeBinOpBifurcation && (U->getOpcode() == UO_LNot)) {
1295         ExplodedNodeSet Tmp;
1296         VisitUnaryOperator(U, Pred, Tmp);
1297         evalEagerlyAssumeBinOpBifurcation(Dst, Tmp, U);
1298       }
1299       else
1300         VisitUnaryOperator(U, Pred, Dst);
1301       Bldr.addNodes(Dst);
1302       break;
1303     }
1304 
1305     case Stmt::PseudoObjectExprClass: {
1306       Bldr.takeNodes(Pred);
1307       ProgramStateRef state = Pred->getState();
1308       const PseudoObjectExpr *PE = cast<PseudoObjectExpr>(S);
1309       if (const Expr *Result = PE->getResultExpr()) {
1310         SVal V = state->getSVal(Result, Pred->getLocationContext());
1311         Bldr.generateNode(S, Pred,
1312                           state->BindExpr(S, Pred->getLocationContext(), V));
1313       }
1314       else
1315         Bldr.generateNode(S, Pred,
1316                           state->BindExpr(S, Pred->getLocationContext(),
1317                                                    UnknownVal()));
1318 
1319       Bldr.addNodes(Dst);
1320       break;
1321     }
1322   }
1323 }
1324 
1325 bool ExprEngine::replayWithoutInlining(ExplodedNode *N,
1326                                        const LocationContext *CalleeLC) {
1327   const StackFrameContext *CalleeSF = CalleeLC->getCurrentStackFrame();
1328   const StackFrameContext *CallerSF = CalleeSF->getParent()->getCurrentStackFrame();
1329   assert(CalleeSF && CallerSF);
1330   ExplodedNode *BeforeProcessingCall = nullptr;
1331   const Stmt *CE = CalleeSF->getCallSite();
1332 
1333   // Find the first node before we started processing the call expression.
1334   while (N) {
1335     ProgramPoint L = N->getLocation();
1336     BeforeProcessingCall = N;
1337     N = N->pred_empty() ? nullptr : *(N->pred_begin());
1338 
1339     // Skip the nodes corresponding to the inlined code.
1340     if (L.getLocationContext()->getCurrentStackFrame() != CallerSF)
1341       continue;
1342     // We reached the caller. Find the node right before we started
1343     // processing the call.
1344     if (L.isPurgeKind())
1345       continue;
1346     if (L.getAs<PreImplicitCall>())
1347       continue;
1348     if (L.getAs<CallEnter>())
1349       continue;
1350     if (Optional<StmtPoint> SP = L.getAs<StmtPoint>())
1351       if (SP->getStmt() == CE)
1352         continue;
1353     break;
1354   }
1355 
1356   if (!BeforeProcessingCall)
1357     return false;
1358 
1359   // TODO: Clean up the unneeded nodes.
1360 
1361   // Build an Epsilon node from which we will restart the analyzes.
1362   // Note that CE is permitted to be NULL!
1363   ProgramPoint NewNodeLoc =
1364                EpsilonPoint(BeforeProcessingCall->getLocationContext(), CE);
1365   // Add the special flag to GDM to signal retrying with no inlining.
1366   // Note, changing the state ensures that we are not going to cache out.
1367   ProgramStateRef NewNodeState = BeforeProcessingCall->getState();
1368   NewNodeState =
1369     NewNodeState->set<ReplayWithoutInlining>(const_cast<Stmt *>(CE));
1370 
1371   // Make the new node a successor of BeforeProcessingCall.
1372   bool IsNew = false;
1373   ExplodedNode *NewNode = G.getNode(NewNodeLoc, NewNodeState, false, &IsNew);
1374   // We cached out at this point. Caching out is common due to us backtracking
1375   // from the inlined function, which might spawn several paths.
1376   if (!IsNew)
1377     return true;
1378 
1379   NewNode->addPredecessor(BeforeProcessingCall, G);
1380 
1381   // Add the new node to the work list.
1382   Engine.enqueueStmtNode(NewNode, CalleeSF->getCallSiteBlock(),
1383                                   CalleeSF->getIndex());
1384   NumTimesRetriedWithoutInlining++;
1385   return true;
1386 }
1387 
1388 /// Block entrance.  (Update counters).
1389 void ExprEngine::processCFGBlockEntrance(const BlockEdge &L,
1390                                          NodeBuilderWithSinks &nodeBuilder,
1391                                          ExplodedNode *Pred) {
1392   PrettyStackTraceLocationContext CrashInfo(Pred->getLocationContext());
1393 
1394   // FIXME: Refactor this into a checker.
1395   if (nodeBuilder.getContext().blockCount() >= AMgr.options.maxBlockVisitOnPath) {
1396     static SimpleProgramPointTag tag(TagProviderName, "Block count exceeded");
1397     const ExplodedNode *Sink =
1398                    nodeBuilder.generateSink(Pred->getState(), Pred, &tag);
1399 
1400     // Check if we stopped at the top level function or not.
1401     // Root node should have the location context of the top most function.
1402     const LocationContext *CalleeLC = Pred->getLocation().getLocationContext();
1403     const LocationContext *CalleeSF = CalleeLC->getCurrentStackFrame();
1404     const LocationContext *RootLC =
1405                         (*G.roots_begin())->getLocation().getLocationContext();
1406     if (RootLC->getCurrentStackFrame() != CalleeSF) {
1407       Engine.FunctionSummaries->markReachedMaxBlockCount(CalleeSF->getDecl());
1408 
1409       // Re-run the call evaluation without inlining it, by storing the
1410       // no-inlining policy in the state and enqueuing the new work item on
1411       // the list. Replay should almost never fail. Use the stats to catch it
1412       // if it does.
1413       if ((!AMgr.options.NoRetryExhausted &&
1414            replayWithoutInlining(Pred, CalleeLC)))
1415         return;
1416       NumMaxBlockCountReachedInInlined++;
1417     } else
1418       NumMaxBlockCountReached++;
1419 
1420     // Make sink nodes as exhausted(for stats) only if retry failed.
1421     Engine.blocksExhausted.push_back(std::make_pair(L, Sink));
1422   }
1423 }
1424 
1425 //===----------------------------------------------------------------------===//
1426 // Branch processing.
1427 //===----------------------------------------------------------------------===//
1428 
1429 /// RecoverCastedSymbol - A helper function for ProcessBranch that is used
1430 /// to try to recover some path-sensitivity for casts of symbolic
1431 /// integers that promote their values (which are currently not tracked well).
1432 /// This function returns the SVal bound to Condition->IgnoreCasts if all the
1433 //  cast(s) did was sign-extend the original value.
1434 static SVal RecoverCastedSymbol(ProgramStateManager& StateMgr,
1435                                 ProgramStateRef state,
1436                                 const Stmt *Condition,
1437                                 const LocationContext *LCtx,
1438                                 ASTContext &Ctx) {
1439 
1440   const Expr *Ex = dyn_cast<Expr>(Condition);
1441   if (!Ex)
1442     return UnknownVal();
1443 
1444   uint64_t bits = 0;
1445   bool bitsInit = false;
1446 
1447   while (const CastExpr *CE = dyn_cast<CastExpr>(Ex)) {
1448     QualType T = CE->getType();
1449 
1450     if (!T->isIntegralOrEnumerationType())
1451       return UnknownVal();
1452 
1453     uint64_t newBits = Ctx.getTypeSize(T);
1454     if (!bitsInit || newBits < bits) {
1455       bitsInit = true;
1456       bits = newBits;
1457     }
1458 
1459     Ex = CE->getSubExpr();
1460   }
1461 
1462   // We reached a non-cast.  Is it a symbolic value?
1463   QualType T = Ex->getType();
1464 
1465   if (!bitsInit || !T->isIntegralOrEnumerationType() ||
1466       Ctx.getTypeSize(T) > bits)
1467     return UnknownVal();
1468 
1469   return state->getSVal(Ex, LCtx);
1470 }
1471 
1472 #ifndef NDEBUG
1473 static const Stmt *getRightmostLeaf(const Stmt *Condition) {
1474   while (Condition) {
1475     const BinaryOperator *BO = dyn_cast<BinaryOperator>(Condition);
1476     if (!BO || !BO->isLogicalOp()) {
1477       return Condition;
1478     }
1479     Condition = BO->getRHS()->IgnoreParens();
1480   }
1481   return nullptr;
1482 }
1483 #endif
1484 
1485 // Returns the condition the branch at the end of 'B' depends on and whose value
1486 // has been evaluated within 'B'.
1487 // In most cases, the terminator condition of 'B' will be evaluated fully in
1488 // the last statement of 'B'; in those cases, the resolved condition is the
1489 // given 'Condition'.
1490 // If the condition of the branch is a logical binary operator tree, the CFG is
1491 // optimized: in that case, we know that the expression formed by all but the
1492 // rightmost leaf of the logical binary operator tree must be true, and thus
1493 // the branch condition is at this point equivalent to the truth value of that
1494 // rightmost leaf; the CFG block thus only evaluates this rightmost leaf
1495 // expression in its final statement. As the full condition in that case was
1496 // not evaluated, and is thus not in the SVal cache, we need to use that leaf
1497 // expression to evaluate the truth value of the condition in the current state
1498 // space.
1499 static const Stmt *ResolveCondition(const Stmt *Condition,
1500                                     const CFGBlock *B) {
1501   if (const Expr *Ex = dyn_cast<Expr>(Condition))
1502     Condition = Ex->IgnoreParens();
1503 
1504   const BinaryOperator *BO = dyn_cast<BinaryOperator>(Condition);
1505   if (!BO || !BO->isLogicalOp())
1506     return Condition;
1507 
1508   assert(!B->getTerminator().isTemporaryDtorsBranch() &&
1509          "Temporary destructor branches handled by processBindTemporary.");
1510 
1511   // For logical operations, we still have the case where some branches
1512   // use the traditional "merge" approach and others sink the branch
1513   // directly into the basic blocks representing the logical operation.
1514   // We need to distinguish between those two cases here.
1515 
1516   // The invariants are still shifting, but it is possible that the
1517   // last element in a CFGBlock is not a CFGStmt.  Look for the last
1518   // CFGStmt as the value of the condition.
1519   CFGBlock::const_reverse_iterator I = B->rbegin(), E = B->rend();
1520   for (; I != E; ++I) {
1521     CFGElement Elem = *I;
1522     Optional<CFGStmt> CS = Elem.getAs<CFGStmt>();
1523     if (!CS)
1524       continue;
1525     const Stmt *LastStmt = CS->getStmt();
1526     assert(LastStmt == Condition || LastStmt == getRightmostLeaf(Condition));
1527     return LastStmt;
1528   }
1529   llvm_unreachable("could not resolve condition");
1530 }
1531 
1532 void ExprEngine::processBranch(const Stmt *Condition, const Stmt *Term,
1533                                NodeBuilderContext& BldCtx,
1534                                ExplodedNode *Pred,
1535                                ExplodedNodeSet &Dst,
1536                                const CFGBlock *DstT,
1537                                const CFGBlock *DstF) {
1538   assert((!Condition || !isa<CXXBindTemporaryExpr>(Condition)) &&
1539          "CXXBindTemporaryExprs are handled by processBindTemporary.");
1540   const LocationContext *LCtx = Pred->getLocationContext();
1541   PrettyStackTraceLocationContext StackCrashInfo(LCtx);
1542   currBldrCtx = &BldCtx;
1543 
1544   // Check for NULL conditions; e.g. "for(;;)"
1545   if (!Condition) {
1546     BranchNodeBuilder NullCondBldr(Pred, Dst, BldCtx, DstT, DstF);
1547     NullCondBldr.markInfeasible(false);
1548     NullCondBldr.generateNode(Pred->getState(), true, Pred);
1549     return;
1550   }
1551 
1552 
1553   if (const Expr *Ex = dyn_cast<Expr>(Condition))
1554     Condition = Ex->IgnoreParens();
1555 
1556   Condition = ResolveCondition(Condition, BldCtx.getBlock());
1557   PrettyStackTraceLoc CrashInfo(getContext().getSourceManager(),
1558                                 Condition->getLocStart(),
1559                                 "Error evaluating branch");
1560 
1561   ExplodedNodeSet CheckersOutSet;
1562   getCheckerManager().runCheckersForBranchCondition(Condition, CheckersOutSet,
1563                                                     Pred, *this);
1564   // We generated only sinks.
1565   if (CheckersOutSet.empty())
1566     return;
1567 
1568   BranchNodeBuilder builder(CheckersOutSet, Dst, BldCtx, DstT, DstF);
1569   for (NodeBuilder::iterator I = CheckersOutSet.begin(),
1570                              E = CheckersOutSet.end(); E != I; ++I) {
1571     ExplodedNode *PredI = *I;
1572 
1573     if (PredI->isSink())
1574       continue;
1575 
1576     ProgramStateRef PrevState = PredI->getState();
1577     SVal X = PrevState->getSVal(Condition, PredI->getLocationContext());
1578 
1579     if (X.isUnknownOrUndef()) {
1580       // Give it a chance to recover from unknown.
1581       if (const Expr *Ex = dyn_cast<Expr>(Condition)) {
1582         if (Ex->getType()->isIntegralOrEnumerationType()) {
1583           // Try to recover some path-sensitivity.  Right now casts of symbolic
1584           // integers that promote their values are currently not tracked well.
1585           // If 'Condition' is such an expression, try and recover the
1586           // underlying value and use that instead.
1587           SVal recovered = RecoverCastedSymbol(getStateManager(),
1588                                                PrevState, Condition,
1589                                                PredI->getLocationContext(),
1590                                                getContext());
1591 
1592           if (!recovered.isUnknown()) {
1593             X = recovered;
1594           }
1595         }
1596       }
1597     }
1598 
1599     // If the condition is still unknown, give up.
1600     if (X.isUnknownOrUndef()) {
1601       builder.generateNode(PrevState, true, PredI);
1602       builder.generateNode(PrevState, false, PredI);
1603       continue;
1604     }
1605 
1606     DefinedSVal V = X.castAs<DefinedSVal>();
1607 
1608     ProgramStateRef StTrue, StFalse;
1609     std::tie(StTrue, StFalse) = PrevState->assume(V);
1610 
1611     // Process the true branch.
1612     if (builder.isFeasible(true)) {
1613       if (StTrue)
1614         builder.generateNode(StTrue, true, PredI);
1615       else
1616         builder.markInfeasible(true);
1617     }
1618 
1619     // Process the false branch.
1620     if (builder.isFeasible(false)) {
1621       if (StFalse)
1622         builder.generateNode(StFalse, false, PredI);
1623       else
1624         builder.markInfeasible(false);
1625     }
1626   }
1627   currBldrCtx = nullptr;
1628 }
1629 
1630 /// The GDM component containing the set of global variables which have been
1631 /// previously initialized with explicit initializers.
1632 REGISTER_TRAIT_WITH_PROGRAMSTATE(InitializedGlobalsSet,
1633                                  llvm::ImmutableSet<const VarDecl *>)
1634 
1635 void ExprEngine::processStaticInitializer(const DeclStmt *DS,
1636                                           NodeBuilderContext &BuilderCtx,
1637                                           ExplodedNode *Pred,
1638                                           clang::ento::ExplodedNodeSet &Dst,
1639                                           const CFGBlock *DstT,
1640                                           const CFGBlock *DstF) {
1641   PrettyStackTraceLocationContext CrashInfo(Pred->getLocationContext());
1642   currBldrCtx = &BuilderCtx;
1643 
1644   const VarDecl *VD = cast<VarDecl>(DS->getSingleDecl());
1645   ProgramStateRef state = Pred->getState();
1646   bool initHasRun = state->contains<InitializedGlobalsSet>(VD);
1647   BranchNodeBuilder builder(Pred, Dst, BuilderCtx, DstT, DstF);
1648 
1649   if (!initHasRun) {
1650     state = state->add<InitializedGlobalsSet>(VD);
1651   }
1652 
1653   builder.generateNode(state, initHasRun, Pred);
1654   builder.markInfeasible(!initHasRun);
1655 
1656   currBldrCtx = nullptr;
1657 }
1658 
1659 /// processIndirectGoto - Called by CoreEngine.  Used to generate successor
1660 ///  nodes by processing the 'effects' of a computed goto jump.
1661 void ExprEngine::processIndirectGoto(IndirectGotoNodeBuilder &builder) {
1662 
1663   ProgramStateRef state = builder.getState();
1664   SVal V = state->getSVal(builder.getTarget(), builder.getLocationContext());
1665 
1666   // Three possibilities:
1667   //
1668   //   (1) We know the computed label.
1669   //   (2) The label is NULL (or some other constant), or Undefined.
1670   //   (3) We have no clue about the label.  Dispatch to all targets.
1671   //
1672 
1673   typedef IndirectGotoNodeBuilder::iterator iterator;
1674 
1675   if (Optional<loc::GotoLabel> LV = V.getAs<loc::GotoLabel>()) {
1676     const LabelDecl *L = LV->getLabel();
1677 
1678     for (iterator I = builder.begin(), E = builder.end(); I != E; ++I) {
1679       if (I.getLabel() == L) {
1680         builder.generateNode(I, state);
1681         return;
1682       }
1683     }
1684 
1685     llvm_unreachable("No block with label.");
1686   }
1687 
1688   if (V.getAs<loc::ConcreteInt>() || V.getAs<UndefinedVal>()) {
1689     // Dispatch to the first target and mark it as a sink.
1690     //ExplodedNode* N = builder.generateNode(builder.begin(), state, true);
1691     // FIXME: add checker visit.
1692     //    UndefBranches.insert(N);
1693     return;
1694   }
1695 
1696   // This is really a catch-all.  We don't support symbolics yet.
1697   // FIXME: Implement dispatch for symbolic pointers.
1698 
1699   for (iterator I=builder.begin(), E=builder.end(); I != E; ++I)
1700     builder.generateNode(I, state);
1701 }
1702 
1703 #if 0
1704 static bool stackFrameDoesNotContainInitializedTemporaries(ExplodedNode &Pred) {
1705   const StackFrameContext* Frame = Pred.getStackFrame();
1706   const llvm::ImmutableSet<CXXBindTemporaryContext> &Set =
1707       Pred.getState()->get<InitializedTemporariesSet>();
1708   return std::find_if(Set.begin(), Set.end(),
1709                       [&](const CXXBindTemporaryContext &Ctx) {
1710                         if (Ctx.second == Frame) {
1711                           Ctx.first->dump();
1712                           llvm::errs() << "\n";
1713                         }
1714            return Ctx.second == Frame;
1715          }) == Set.end();
1716 }
1717 #endif
1718 
1719 /// ProcessEndPath - Called by CoreEngine.  Used to generate end-of-path
1720 ///  nodes when the control reaches the end of a function.
1721 void ExprEngine::processEndOfFunction(NodeBuilderContext& BC,
1722                                       ExplodedNode *Pred) {
1723   // FIXME: Assert that stackFrameDoesNotContainInitializedTemporaries(*Pred)).
1724   // We currently cannot enable this assert, as lifetime extended temporaries
1725   // are not modelled correctly.
1726   PrettyStackTraceLocationContext CrashInfo(Pred->getLocationContext());
1727   StateMgr.EndPath(Pred->getState());
1728 
1729   ExplodedNodeSet Dst;
1730   if (Pred->getLocationContext()->inTopFrame()) {
1731     // Remove dead symbols.
1732     ExplodedNodeSet AfterRemovedDead;
1733     removeDeadOnEndOfFunction(BC, Pred, AfterRemovedDead);
1734 
1735     // Notify checkers.
1736     for (ExplodedNodeSet::iterator I = AfterRemovedDead.begin(),
1737         E = AfterRemovedDead.end(); I != E; ++I) {
1738       getCheckerManager().runCheckersForEndFunction(BC, Dst, *I, *this);
1739     }
1740   } else {
1741     getCheckerManager().runCheckersForEndFunction(BC, Dst, Pred, *this);
1742   }
1743 
1744   Engine.enqueueEndOfFunction(Dst);
1745 }
1746 
1747 /// ProcessSwitch - Called by CoreEngine.  Used to generate successor
1748 ///  nodes by processing the 'effects' of a switch statement.
1749 void ExprEngine::processSwitch(SwitchNodeBuilder& builder) {
1750   typedef SwitchNodeBuilder::iterator iterator;
1751   ProgramStateRef state = builder.getState();
1752   const Expr *CondE = builder.getCondition();
1753   SVal  CondV_untested = state->getSVal(CondE, builder.getLocationContext());
1754 
1755   if (CondV_untested.isUndef()) {
1756     //ExplodedNode* N = builder.generateDefaultCaseNode(state, true);
1757     // FIXME: add checker
1758     //UndefBranches.insert(N);
1759 
1760     return;
1761   }
1762   DefinedOrUnknownSVal CondV = CondV_untested.castAs<DefinedOrUnknownSVal>();
1763 
1764   ProgramStateRef DefaultSt = state;
1765 
1766   iterator I = builder.begin(), EI = builder.end();
1767   bool defaultIsFeasible = I == EI;
1768 
1769   for ( ; I != EI; ++I) {
1770     // Successor may be pruned out during CFG construction.
1771     if (!I.getBlock())
1772       continue;
1773 
1774     const CaseStmt *Case = I.getCase();
1775 
1776     // Evaluate the LHS of the case value.
1777     llvm::APSInt V1 = Case->getLHS()->EvaluateKnownConstInt(getContext());
1778     assert(V1.getBitWidth() == getContext().getTypeSize(CondE->getType()));
1779 
1780     // Get the RHS of the case, if it exists.
1781     llvm::APSInt V2;
1782     if (const Expr *E = Case->getRHS())
1783       V2 = E->EvaluateKnownConstInt(getContext());
1784     else
1785       V2 = V1;
1786 
1787     ProgramStateRef StateCase;
1788     if (Optional<NonLoc> NL = CondV.getAs<NonLoc>())
1789       std::tie(StateCase, DefaultSt) =
1790           DefaultSt->assumeWithinInclusiveRange(*NL, V1, V2);
1791     else // UnknownVal
1792       StateCase = DefaultSt;
1793 
1794     if (StateCase)
1795       builder.generateCaseStmtNode(I, StateCase);
1796 
1797     // Now "assume" that the case doesn't match.  Add this state
1798     // to the default state (if it is feasible).
1799     if (DefaultSt)
1800       defaultIsFeasible = true;
1801     else {
1802       defaultIsFeasible = false;
1803       break;
1804     }
1805   }
1806 
1807   if (!defaultIsFeasible)
1808     return;
1809 
1810   // If we have switch(enum value), the default branch is not
1811   // feasible if all of the enum constants not covered by 'case:' statements
1812   // are not feasible values for the switch condition.
1813   //
1814   // Note that this isn't as accurate as it could be.  Even if there isn't
1815   // a case for a particular enum value as long as that enum value isn't
1816   // feasible then it shouldn't be considered for making 'default:' reachable.
1817   const SwitchStmt *SS = builder.getSwitch();
1818   const Expr *CondExpr = SS->getCond()->IgnoreParenImpCasts();
1819   if (CondExpr->getType()->getAs<EnumType>()) {
1820     if (SS->isAllEnumCasesCovered())
1821       return;
1822   }
1823 
1824   builder.generateDefaultCaseNode(DefaultSt);
1825 }
1826 
1827 //===----------------------------------------------------------------------===//
1828 // Transfer functions: Loads and stores.
1829 //===----------------------------------------------------------------------===//
1830 
1831 void ExprEngine::VisitCommonDeclRefExpr(const Expr *Ex, const NamedDecl *D,
1832                                         ExplodedNode *Pred,
1833                                         ExplodedNodeSet &Dst) {
1834   StmtNodeBuilder Bldr(Pred, Dst, *currBldrCtx);
1835 
1836   ProgramStateRef state = Pred->getState();
1837   const LocationContext *LCtx = Pred->getLocationContext();
1838 
1839   if (const VarDecl *VD = dyn_cast<VarDecl>(D)) {
1840     // C permits "extern void v", and if you cast the address to a valid type,
1841     // you can even do things with it. We simply pretend
1842     assert(Ex->isGLValue() || VD->getType()->isVoidType());
1843     const LocationContext *LocCtxt = Pred->getLocationContext();
1844     const Decl *D = LocCtxt->getDecl();
1845     const auto *MD = D ? dyn_cast<CXXMethodDecl>(D) : nullptr;
1846     const auto *DeclRefEx = dyn_cast<DeclRefExpr>(Ex);
1847     SVal V;
1848     bool CaptureByReference = false;
1849     if (AMgr.options.shouldInlineLambdas() && DeclRefEx &&
1850         DeclRefEx->refersToEnclosingVariableOrCapture() && MD &&
1851         MD->getParent()->isLambda()) {
1852       // Lookup the field of the lambda.
1853       const CXXRecordDecl *CXXRec = MD->getParent();
1854       llvm::DenseMap<const VarDecl *, FieldDecl *> LambdaCaptureFields;
1855       FieldDecl *LambdaThisCaptureField;
1856       CXXRec->getCaptureFields(LambdaCaptureFields, LambdaThisCaptureField);
1857       const FieldDecl *FD = LambdaCaptureFields[VD];
1858       Loc CXXThis =
1859           svalBuilder.getCXXThis(MD, LocCtxt->getCurrentStackFrame());
1860       SVal CXXThisVal = state->getSVal(CXXThis);
1861       V = state->getLValue(FD, CXXThisVal);
1862       if (FD->getType()->isReferenceType() &&
1863           !VD->getType()->isReferenceType())
1864         CaptureByReference = true;
1865     } else {
1866       V = state->getLValue(VD, LocCtxt);
1867     }
1868 
1869     // For references, the 'lvalue' is the pointer address stored in the
1870     // reference region.
1871     if (VD->getType()->isReferenceType() || CaptureByReference) {
1872       if (const MemRegion *R = V.getAsRegion())
1873         V = state->getSVal(R);
1874       else
1875         V = UnknownVal();
1876     }
1877 
1878     Bldr.generateNode(Ex, Pred, state->BindExpr(Ex, LCtx, V), nullptr,
1879                       ProgramPoint::PostLValueKind);
1880     return;
1881   }
1882   if (const EnumConstantDecl *ED = dyn_cast<EnumConstantDecl>(D)) {
1883     assert(!Ex->isGLValue());
1884     SVal V = svalBuilder.makeIntVal(ED->getInitVal());
1885     Bldr.generateNode(Ex, Pred, state->BindExpr(Ex, LCtx, V));
1886     return;
1887   }
1888   if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) {
1889     SVal V = svalBuilder.getFunctionPointer(FD);
1890     Bldr.generateNode(Ex, Pred, state->BindExpr(Ex, LCtx, V), nullptr,
1891                       ProgramPoint::PostLValueKind);
1892     return;
1893   }
1894   if (isa<FieldDecl>(D)) {
1895     // FIXME: Compute lvalue of field pointers-to-member.
1896     // Right now we just use a non-null void pointer, so that it gives proper
1897     // results in boolean contexts.
1898     SVal V = svalBuilder.conjureSymbolVal(Ex, LCtx, getContext().VoidPtrTy,
1899                                           currBldrCtx->blockCount());
1900     state = state->assume(V.castAs<DefinedOrUnknownSVal>(), true);
1901     Bldr.generateNode(Ex, Pred, state->BindExpr(Ex, LCtx, V), nullptr,
1902 		      ProgramPoint::PostLValueKind);
1903     return;
1904   }
1905 
1906   llvm_unreachable("Support for this Decl not implemented.");
1907 }
1908 
1909 /// VisitArraySubscriptExpr - Transfer function for array accesses
1910 void ExprEngine::VisitLvalArraySubscriptExpr(const ArraySubscriptExpr *A,
1911                                              ExplodedNode *Pred,
1912                                              ExplodedNodeSet &Dst){
1913 
1914   const Expr *Base = A->getBase()->IgnoreParens();
1915   const Expr *Idx  = A->getIdx()->IgnoreParens();
1916 
1917 
1918   ExplodedNodeSet checkerPreStmt;
1919   getCheckerManager().runCheckersForPreStmt(checkerPreStmt, Pred, A, *this);
1920 
1921   StmtNodeBuilder Bldr(checkerPreStmt, Dst, *currBldrCtx);
1922   assert(A->isGLValue() ||
1923           (!AMgr.getLangOpts().CPlusPlus &&
1924            A->getType().isCForbiddenLValueType()));
1925 
1926   for (ExplodedNodeSet::iterator it = checkerPreStmt.begin(),
1927                                  ei = checkerPreStmt.end(); it != ei; ++it) {
1928     const LocationContext *LCtx = (*it)->getLocationContext();
1929     ProgramStateRef state = (*it)->getState();
1930     SVal V = state->getLValue(A->getType(),
1931                               state->getSVal(Idx, LCtx),
1932                               state->getSVal(Base, LCtx));
1933     Bldr.generateNode(A, *it, state->BindExpr(A, LCtx, V), nullptr,
1934                       ProgramPoint::PostLValueKind);
1935   }
1936 }
1937 
1938 /// VisitMemberExpr - Transfer function for member expressions.
1939 void ExprEngine::VisitMemberExpr(const MemberExpr *M, ExplodedNode *Pred,
1940                                  ExplodedNodeSet &Dst) {
1941 
1942   // FIXME: Prechecks eventually go in ::Visit().
1943   ExplodedNodeSet CheckedSet;
1944   getCheckerManager().runCheckersForPreStmt(CheckedSet, Pred, M, *this);
1945 
1946   ExplodedNodeSet EvalSet;
1947   ValueDecl *Member = M->getMemberDecl();
1948 
1949   // Handle static member variables and enum constants accessed via
1950   // member syntax.
1951   if (isa<VarDecl>(Member) || isa<EnumConstantDecl>(Member)) {
1952     ExplodedNodeSet Dst;
1953     for (ExplodedNodeSet::iterator I = CheckedSet.begin(), E = CheckedSet.end();
1954          I != E; ++I) {
1955       VisitCommonDeclRefExpr(M, Member, Pred, EvalSet);
1956     }
1957   } else {
1958     StmtNodeBuilder Bldr(CheckedSet, EvalSet, *currBldrCtx);
1959     ExplodedNodeSet Tmp;
1960 
1961     for (ExplodedNodeSet::iterator I = CheckedSet.begin(), E = CheckedSet.end();
1962          I != E; ++I) {
1963       ProgramStateRef state = (*I)->getState();
1964       const LocationContext *LCtx = (*I)->getLocationContext();
1965       Expr *BaseExpr = M->getBase();
1966 
1967       // Handle C++ method calls.
1968       if (const CXXMethodDecl *MD = dyn_cast<CXXMethodDecl>(Member)) {
1969         if (MD->isInstance())
1970           state = createTemporaryRegionIfNeeded(state, LCtx, BaseExpr);
1971 
1972         SVal MDVal = svalBuilder.getFunctionPointer(MD);
1973         state = state->BindExpr(M, LCtx, MDVal);
1974 
1975         Bldr.generateNode(M, *I, state);
1976         continue;
1977       }
1978 
1979       // Handle regular struct fields / member variables.
1980       state = createTemporaryRegionIfNeeded(state, LCtx, BaseExpr);
1981       SVal baseExprVal = state->getSVal(BaseExpr, LCtx);
1982 
1983       FieldDecl *field = cast<FieldDecl>(Member);
1984       SVal L = state->getLValue(field, baseExprVal);
1985 
1986       if (M->isGLValue() || M->getType()->isArrayType()) {
1987         // We special-case rvalues of array type because the analyzer cannot
1988         // reason about them, since we expect all regions to be wrapped in Locs.
1989         // We instead treat these as lvalues and assume that they will decay to
1990         // pointers as soon as they are used.
1991         if (!M->isGLValue()) {
1992           assert(M->getType()->isArrayType());
1993           const ImplicitCastExpr *PE =
1994             dyn_cast<ImplicitCastExpr>((*I)->getParentMap().getParent(M));
1995           if (!PE || PE->getCastKind() != CK_ArrayToPointerDecay) {
1996             llvm_unreachable("should always be wrapped in ArrayToPointerDecay");
1997           }
1998         }
1999 
2000         if (field->getType()->isReferenceType()) {
2001           if (const MemRegion *R = L.getAsRegion())
2002             L = state->getSVal(R);
2003           else
2004             L = UnknownVal();
2005         }
2006 
2007         Bldr.generateNode(M, *I, state->BindExpr(M, LCtx, L), nullptr,
2008                           ProgramPoint::PostLValueKind);
2009       } else {
2010         Bldr.takeNodes(*I);
2011         evalLoad(Tmp, M, M, *I, state, L);
2012         Bldr.addNodes(Tmp);
2013       }
2014     }
2015   }
2016 
2017   getCheckerManager().runCheckersForPostStmt(Dst, EvalSet, M, *this);
2018 }
2019 
2020 namespace {
2021 class CollectReachableSymbolsCallback final : public SymbolVisitor {
2022   InvalidatedSymbols Symbols;
2023 public:
2024   CollectReachableSymbolsCallback(ProgramStateRef State) {}
2025   const InvalidatedSymbols &getSymbols() const { return Symbols; }
2026 
2027   bool VisitSymbol(SymbolRef Sym) override {
2028     Symbols.insert(Sym);
2029     return true;
2030   }
2031 };
2032 } // end anonymous namespace
2033 
2034 // A value escapes in three possible cases:
2035 // (1) We are binding to something that is not a memory region.
2036 // (2) We are binding to a MemrRegion that does not have stack storage.
2037 // (3) We are binding to a MemRegion with stack storage that the store
2038 //     does not understand.
2039 ProgramStateRef ExprEngine::processPointerEscapedOnBind(ProgramStateRef State,
2040                                                         SVal Loc, SVal Val) {
2041   // Are we storing to something that causes the value to "escape"?
2042   bool escapes = true;
2043 
2044   // TODO: Move to StoreManager.
2045   if (Optional<loc::MemRegionVal> regionLoc = Loc.getAs<loc::MemRegionVal>()) {
2046     escapes = !regionLoc->getRegion()->hasStackStorage();
2047 
2048     if (!escapes) {
2049       // To test (3), generate a new state with the binding added.  If it is
2050       // the same state, then it escapes (since the store cannot represent
2051       // the binding).
2052       // Do this only if we know that the store is not supposed to generate the
2053       // same state.
2054       SVal StoredVal = State->getSVal(regionLoc->getRegion());
2055       if (StoredVal != Val)
2056         escapes = (State == (State->bindLoc(*regionLoc, Val)));
2057     }
2058   }
2059 
2060   // If our store can represent the binding and we aren't storing to something
2061   // that doesn't have local storage then just return and have the simulation
2062   // state continue as is.
2063   if (!escapes)
2064     return State;
2065 
2066   // Otherwise, find all symbols referenced by 'val' that we are tracking
2067   // and stop tracking them.
2068   CollectReachableSymbolsCallback Scanner =
2069       State->scanReachableSymbols<CollectReachableSymbolsCallback>(Val);
2070   const InvalidatedSymbols &EscapedSymbols = Scanner.getSymbols();
2071   State = getCheckerManager().runCheckersForPointerEscape(State,
2072                                                           EscapedSymbols,
2073                                                           /*CallEvent*/ nullptr,
2074                                                           PSK_EscapeOnBind,
2075                                                           nullptr);
2076 
2077   return State;
2078 }
2079 
2080 ProgramStateRef
2081 ExprEngine::notifyCheckersOfPointerEscape(ProgramStateRef State,
2082     const InvalidatedSymbols *Invalidated,
2083     ArrayRef<const MemRegion *> ExplicitRegions,
2084     ArrayRef<const MemRegion *> Regions,
2085     const CallEvent *Call,
2086     RegionAndSymbolInvalidationTraits &ITraits) {
2087 
2088   if (!Invalidated || Invalidated->empty())
2089     return State;
2090 
2091   if (!Call)
2092     return getCheckerManager().runCheckersForPointerEscape(State,
2093                                                            *Invalidated,
2094                                                            nullptr,
2095                                                            PSK_EscapeOther,
2096                                                            &ITraits);
2097 
2098   // If the symbols were invalidated by a call, we want to find out which ones
2099   // were invalidated directly due to being arguments to the call.
2100   InvalidatedSymbols SymbolsDirectlyInvalidated;
2101   for (ArrayRef<const MemRegion *>::iterator I = ExplicitRegions.begin(),
2102       E = ExplicitRegions.end(); I != E; ++I) {
2103     if (const SymbolicRegion *R = (*I)->StripCasts()->getAs<SymbolicRegion>())
2104       SymbolsDirectlyInvalidated.insert(R->getSymbol());
2105   }
2106 
2107   InvalidatedSymbols SymbolsIndirectlyInvalidated;
2108   for (InvalidatedSymbols::const_iterator I=Invalidated->begin(),
2109       E = Invalidated->end(); I!=E; ++I) {
2110     SymbolRef sym = *I;
2111     if (SymbolsDirectlyInvalidated.count(sym))
2112       continue;
2113     SymbolsIndirectlyInvalidated.insert(sym);
2114   }
2115 
2116   if (!SymbolsDirectlyInvalidated.empty())
2117     State = getCheckerManager().runCheckersForPointerEscape(State,
2118         SymbolsDirectlyInvalidated, Call, PSK_DirectEscapeOnCall, &ITraits);
2119 
2120   // Notify about the symbols that get indirectly invalidated by the call.
2121   if (!SymbolsIndirectlyInvalidated.empty())
2122     State = getCheckerManager().runCheckersForPointerEscape(State,
2123         SymbolsIndirectlyInvalidated, Call, PSK_IndirectEscapeOnCall, &ITraits);
2124 
2125   return State;
2126 }
2127 
2128 /// evalBind - Handle the semantics of binding a value to a specific location.
2129 ///  This method is used by evalStore and (soon) VisitDeclStmt, and others.
2130 void ExprEngine::evalBind(ExplodedNodeSet &Dst, const Stmt *StoreE,
2131                           ExplodedNode *Pred,
2132                           SVal location, SVal Val,
2133                           bool atDeclInit, const ProgramPoint *PP) {
2134 
2135   const LocationContext *LC = Pred->getLocationContext();
2136   PostStmt PS(StoreE, LC);
2137   if (!PP)
2138     PP = &PS;
2139 
2140   // Do a previsit of the bind.
2141   ExplodedNodeSet CheckedSet;
2142   getCheckerManager().runCheckersForBind(CheckedSet, Pred, location, Val,
2143                                          StoreE, *this, *PP);
2144 
2145 
2146   StmtNodeBuilder Bldr(CheckedSet, Dst, *currBldrCtx);
2147 
2148   // If the location is not a 'Loc', it will already be handled by
2149   // the checkers.  There is nothing left to do.
2150   if (!location.getAs<Loc>()) {
2151     const ProgramPoint L = PostStore(StoreE, LC, /*Loc*/nullptr,
2152                                      /*tag*/nullptr);
2153     ProgramStateRef state = Pred->getState();
2154     state = processPointerEscapedOnBind(state, location, Val);
2155     Bldr.generateNode(L, state, Pred);
2156     return;
2157   }
2158 
2159 
2160   for (ExplodedNodeSet::iterator I = CheckedSet.begin(), E = CheckedSet.end();
2161        I!=E; ++I) {
2162     ExplodedNode *PredI = *I;
2163     ProgramStateRef state = PredI->getState();
2164 
2165     state = processPointerEscapedOnBind(state, location, Val);
2166 
2167     // When binding the value, pass on the hint that this is a initialization.
2168     // For initializations, we do not need to inform clients of region
2169     // changes.
2170     state = state->bindLoc(location.castAs<Loc>(),
2171                            Val, /* notifyChanges = */ !atDeclInit);
2172 
2173     const MemRegion *LocReg = nullptr;
2174     if (Optional<loc::MemRegionVal> LocRegVal =
2175             location.getAs<loc::MemRegionVal>()) {
2176       LocReg = LocRegVal->getRegion();
2177     }
2178 
2179     const ProgramPoint L = PostStore(StoreE, LC, LocReg, nullptr);
2180     Bldr.generateNode(L, state, PredI);
2181   }
2182 }
2183 
2184 /// evalStore - Handle the semantics of a store via an assignment.
2185 ///  @param Dst The node set to store generated state nodes
2186 ///  @param AssignE The assignment expression if the store happens in an
2187 ///         assignment.
2188 ///  @param LocationE The location expression that is stored to.
2189 ///  @param state The current simulation state
2190 ///  @param location The location to store the value
2191 ///  @param Val The value to be stored
2192 void ExprEngine::evalStore(ExplodedNodeSet &Dst, const Expr *AssignE,
2193                              const Expr *LocationE,
2194                              ExplodedNode *Pred,
2195                              ProgramStateRef state, SVal location, SVal Val,
2196                              const ProgramPointTag *tag) {
2197   // Proceed with the store.  We use AssignE as the anchor for the PostStore
2198   // ProgramPoint if it is non-NULL, and LocationE otherwise.
2199   const Expr *StoreE = AssignE ? AssignE : LocationE;
2200 
2201   // Evaluate the location (checks for bad dereferences).
2202   ExplodedNodeSet Tmp;
2203   evalLocation(Tmp, AssignE, LocationE, Pred, state, location, tag, false);
2204 
2205   if (Tmp.empty())
2206     return;
2207 
2208   if (location.isUndef())
2209     return;
2210 
2211   for (ExplodedNodeSet::iterator NI=Tmp.begin(), NE=Tmp.end(); NI!=NE; ++NI)
2212     evalBind(Dst, StoreE, *NI, location, Val, false);
2213 }
2214 
2215 void ExprEngine::evalLoad(ExplodedNodeSet &Dst,
2216                           const Expr *NodeEx,
2217                           const Expr *BoundEx,
2218                           ExplodedNode *Pred,
2219                           ProgramStateRef state,
2220                           SVal location,
2221                           const ProgramPointTag *tag,
2222                           QualType LoadTy)
2223 {
2224   assert(!location.getAs<NonLoc>() && "location cannot be a NonLoc.");
2225 
2226   // Are we loading from a region?  This actually results in two loads; one
2227   // to fetch the address of the referenced value and one to fetch the
2228   // referenced value.
2229   if (const TypedValueRegion *TR =
2230         dyn_cast_or_null<TypedValueRegion>(location.getAsRegion())) {
2231 
2232     QualType ValTy = TR->getValueType();
2233     if (const ReferenceType *RT = ValTy->getAs<ReferenceType>()) {
2234       static SimpleProgramPointTag
2235              loadReferenceTag(TagProviderName, "Load Reference");
2236       ExplodedNodeSet Tmp;
2237       evalLoadCommon(Tmp, NodeEx, BoundEx, Pred, state,
2238                      location, &loadReferenceTag,
2239                      getContext().getPointerType(RT->getPointeeType()));
2240 
2241       // Perform the load from the referenced value.
2242       for (ExplodedNodeSet::iterator I=Tmp.begin(), E=Tmp.end() ; I!=E; ++I) {
2243         state = (*I)->getState();
2244         location = state->getSVal(BoundEx, (*I)->getLocationContext());
2245         evalLoadCommon(Dst, NodeEx, BoundEx, *I, state, location, tag, LoadTy);
2246       }
2247       return;
2248     }
2249   }
2250 
2251   evalLoadCommon(Dst, NodeEx, BoundEx, Pred, state, location, tag, LoadTy);
2252 }
2253 
2254 void ExprEngine::evalLoadCommon(ExplodedNodeSet &Dst,
2255                                 const Expr *NodeEx,
2256                                 const Expr *BoundEx,
2257                                 ExplodedNode *Pred,
2258                                 ProgramStateRef state,
2259                                 SVal location,
2260                                 const ProgramPointTag *tag,
2261                                 QualType LoadTy) {
2262   assert(NodeEx);
2263   assert(BoundEx);
2264   // Evaluate the location (checks for bad dereferences).
2265   ExplodedNodeSet Tmp;
2266   evalLocation(Tmp, NodeEx, BoundEx, Pred, state, location, tag, true);
2267   if (Tmp.empty())
2268     return;
2269 
2270   StmtNodeBuilder Bldr(Tmp, Dst, *currBldrCtx);
2271   if (location.isUndef())
2272     return;
2273 
2274   // Proceed with the load.
2275   for (ExplodedNodeSet::iterator NI=Tmp.begin(), NE=Tmp.end(); NI!=NE; ++NI) {
2276     state = (*NI)->getState();
2277     const LocationContext *LCtx = (*NI)->getLocationContext();
2278 
2279     SVal V = UnknownVal();
2280     if (location.isValid()) {
2281       if (LoadTy.isNull())
2282         LoadTy = BoundEx->getType();
2283       V = state->getSVal(location.castAs<Loc>(), LoadTy);
2284     }
2285 
2286     Bldr.generateNode(NodeEx, *NI, state->BindExpr(BoundEx, LCtx, V), tag,
2287                       ProgramPoint::PostLoadKind);
2288   }
2289 }
2290 
2291 void ExprEngine::evalLocation(ExplodedNodeSet &Dst,
2292                               const Stmt *NodeEx,
2293                               const Stmt *BoundEx,
2294                               ExplodedNode *Pred,
2295                               ProgramStateRef state,
2296                               SVal location,
2297                               const ProgramPointTag *tag,
2298                               bool isLoad) {
2299   StmtNodeBuilder BldrTop(Pred, Dst, *currBldrCtx);
2300   // Early checks for performance reason.
2301   if (location.isUnknown()) {
2302     return;
2303   }
2304 
2305   ExplodedNodeSet Src;
2306   BldrTop.takeNodes(Pred);
2307   StmtNodeBuilder Bldr(Pred, Src, *currBldrCtx);
2308   if (Pred->getState() != state) {
2309     // Associate this new state with an ExplodedNode.
2310     // FIXME: If I pass null tag, the graph is incorrect, e.g for
2311     //   int *p;
2312     //   p = 0;
2313     //   *p = 0xDEADBEEF;
2314     // "p = 0" is not noted as "Null pointer value stored to 'p'" but
2315     // instead "int *p" is noted as
2316     // "Variable 'p' initialized to a null pointer value"
2317 
2318     static SimpleProgramPointTag tag(TagProviderName, "Location");
2319     Bldr.generateNode(NodeEx, Pred, state, &tag);
2320   }
2321   ExplodedNodeSet Tmp;
2322   getCheckerManager().runCheckersForLocation(Tmp, Src, location, isLoad,
2323                                              NodeEx, BoundEx, *this);
2324   BldrTop.addNodes(Tmp);
2325 }
2326 
2327 std::pair<const ProgramPointTag *, const ProgramPointTag*>
2328 ExprEngine::geteagerlyAssumeBinOpBifurcationTags() {
2329   static SimpleProgramPointTag
2330          eagerlyAssumeBinOpBifurcationTrue(TagProviderName,
2331                                            "Eagerly Assume True"),
2332          eagerlyAssumeBinOpBifurcationFalse(TagProviderName,
2333                                             "Eagerly Assume False");
2334   return std::make_pair(&eagerlyAssumeBinOpBifurcationTrue,
2335                         &eagerlyAssumeBinOpBifurcationFalse);
2336 }
2337 
2338 void ExprEngine::evalEagerlyAssumeBinOpBifurcation(ExplodedNodeSet &Dst,
2339                                                    ExplodedNodeSet &Src,
2340                                                    const Expr *Ex) {
2341   StmtNodeBuilder Bldr(Src, Dst, *currBldrCtx);
2342 
2343   for (ExplodedNodeSet::iterator I=Src.begin(), E=Src.end(); I!=E; ++I) {
2344     ExplodedNode *Pred = *I;
2345     // Test if the previous node was as the same expression.  This can happen
2346     // when the expression fails to evaluate to anything meaningful and
2347     // (as an optimization) we don't generate a node.
2348     ProgramPoint P = Pred->getLocation();
2349     if (!P.getAs<PostStmt>() || P.castAs<PostStmt>().getStmt() != Ex) {
2350       continue;
2351     }
2352 
2353     ProgramStateRef state = Pred->getState();
2354     SVal V = state->getSVal(Ex, Pred->getLocationContext());
2355     Optional<nonloc::SymbolVal> SEV = V.getAs<nonloc::SymbolVal>();
2356     if (SEV && SEV->isExpression()) {
2357       const std::pair<const ProgramPointTag *, const ProgramPointTag*> &tags =
2358         geteagerlyAssumeBinOpBifurcationTags();
2359 
2360       ProgramStateRef StateTrue, StateFalse;
2361       std::tie(StateTrue, StateFalse) = state->assume(*SEV);
2362 
2363       // First assume that the condition is true.
2364       if (StateTrue) {
2365         SVal Val = svalBuilder.makeIntVal(1U, Ex->getType());
2366         StateTrue = StateTrue->BindExpr(Ex, Pred->getLocationContext(), Val);
2367         Bldr.generateNode(Ex, Pred, StateTrue, tags.first);
2368       }
2369 
2370       // Next, assume that the condition is false.
2371       if (StateFalse) {
2372         SVal Val = svalBuilder.makeIntVal(0U, Ex->getType());
2373         StateFalse = StateFalse->BindExpr(Ex, Pred->getLocationContext(), Val);
2374         Bldr.generateNode(Ex, Pred, StateFalse, tags.second);
2375       }
2376     }
2377   }
2378 }
2379 
2380 void ExprEngine::VisitGCCAsmStmt(const GCCAsmStmt *A, ExplodedNode *Pred,
2381                                  ExplodedNodeSet &Dst) {
2382   StmtNodeBuilder Bldr(Pred, Dst, *currBldrCtx);
2383   // We have processed both the inputs and the outputs.  All of the outputs
2384   // should evaluate to Locs.  Nuke all of their values.
2385 
2386   // FIXME: Some day in the future it would be nice to allow a "plug-in"
2387   // which interprets the inline asm and stores proper results in the
2388   // outputs.
2389 
2390   ProgramStateRef state = Pred->getState();
2391 
2392   for (const Expr *O : A->outputs()) {
2393     SVal X = state->getSVal(O, Pred->getLocationContext());
2394     assert (!X.getAs<NonLoc>());  // Should be an Lval, or unknown, undef.
2395 
2396     if (Optional<Loc> LV = X.getAs<Loc>())
2397       state = state->bindLoc(*LV, UnknownVal());
2398   }
2399 
2400   Bldr.generateNode(A, Pred, state);
2401 }
2402 
2403 void ExprEngine::VisitMSAsmStmt(const MSAsmStmt *A, ExplodedNode *Pred,
2404                                 ExplodedNodeSet &Dst) {
2405   StmtNodeBuilder Bldr(Pred, Dst, *currBldrCtx);
2406   Bldr.generateNode(A, Pred, Pred->getState());
2407 }
2408 
2409 //===----------------------------------------------------------------------===//
2410 // Visualization.
2411 //===----------------------------------------------------------------------===//
2412 
2413 #ifndef NDEBUG
2414 static ExprEngine* GraphPrintCheckerState;
2415 static SourceManager* GraphPrintSourceManager;
2416 
2417 namespace llvm {
2418 template<>
2419 struct DOTGraphTraits<ExplodedNode*> :
2420   public DefaultDOTGraphTraits {
2421 
2422   DOTGraphTraits (bool isSimple=false) : DefaultDOTGraphTraits(isSimple) {}
2423 
2424   // FIXME: Since we do not cache error nodes in ExprEngine now, this does not
2425   // work.
2426   static std::string getNodeAttributes(const ExplodedNode *N, void*) {
2427 
2428 #if 0
2429       // FIXME: Replace with a general scheme to tell if the node is
2430       // an error node.
2431     if (GraphPrintCheckerState->isImplicitNullDeref(N) ||
2432         GraphPrintCheckerState->isExplicitNullDeref(N) ||
2433         GraphPrintCheckerState->isUndefDeref(N) ||
2434         GraphPrintCheckerState->isUndefStore(N) ||
2435         GraphPrintCheckerState->isUndefControlFlow(N) ||
2436         GraphPrintCheckerState->isUndefResult(N) ||
2437         GraphPrintCheckerState->isBadCall(N) ||
2438         GraphPrintCheckerState->isUndefArg(N))
2439       return "color=\"red\",style=\"filled\"";
2440 
2441     if (GraphPrintCheckerState->isNoReturnCall(N))
2442       return "color=\"blue\",style=\"filled\"";
2443 #endif
2444     return "";
2445   }
2446 
2447   static void printLocation(raw_ostream &Out, SourceLocation SLoc) {
2448     if (SLoc.isFileID()) {
2449       Out << "\\lline="
2450         << GraphPrintSourceManager->getExpansionLineNumber(SLoc)
2451         << " col="
2452         << GraphPrintSourceManager->getExpansionColumnNumber(SLoc)
2453         << "\\l";
2454     }
2455   }
2456 
2457   static std::string getNodeLabel(const ExplodedNode *N, void*){
2458 
2459     std::string sbuf;
2460     llvm::raw_string_ostream Out(sbuf);
2461 
2462     // Program Location.
2463     ProgramPoint Loc = N->getLocation();
2464 
2465     switch (Loc.getKind()) {
2466       case ProgramPoint::BlockEntranceKind: {
2467         Out << "Block Entrance: B"
2468             << Loc.castAs<BlockEntrance>().getBlock()->getBlockID();
2469         if (const NamedDecl *ND =
2470                     dyn_cast<NamedDecl>(Loc.getLocationContext()->getDecl())) {
2471           Out << " (";
2472           ND->printName(Out);
2473           Out << ")";
2474         }
2475         break;
2476       }
2477 
2478       case ProgramPoint::BlockExitKind:
2479         assert (false);
2480         break;
2481 
2482       case ProgramPoint::CallEnterKind:
2483         Out << "CallEnter";
2484         break;
2485 
2486       case ProgramPoint::CallExitBeginKind:
2487         Out << "CallExitBegin";
2488         break;
2489 
2490       case ProgramPoint::CallExitEndKind:
2491         Out << "CallExitEnd";
2492         break;
2493 
2494       case ProgramPoint::PostStmtPurgeDeadSymbolsKind:
2495         Out << "PostStmtPurgeDeadSymbols";
2496         break;
2497 
2498       case ProgramPoint::PreStmtPurgeDeadSymbolsKind:
2499         Out << "PreStmtPurgeDeadSymbols";
2500         break;
2501 
2502       case ProgramPoint::EpsilonKind:
2503         Out << "Epsilon Point";
2504         break;
2505 
2506       case ProgramPoint::PreImplicitCallKind: {
2507         ImplicitCallPoint PC = Loc.castAs<ImplicitCallPoint>();
2508         Out << "PreCall: ";
2509 
2510         // FIXME: Get proper printing options.
2511         PC.getDecl()->print(Out, LangOptions());
2512         printLocation(Out, PC.getLocation());
2513         break;
2514       }
2515 
2516       case ProgramPoint::PostImplicitCallKind: {
2517         ImplicitCallPoint PC = Loc.castAs<ImplicitCallPoint>();
2518         Out << "PostCall: ";
2519 
2520         // FIXME: Get proper printing options.
2521         PC.getDecl()->print(Out, LangOptions());
2522         printLocation(Out, PC.getLocation());
2523         break;
2524       }
2525 
2526       case ProgramPoint::PostInitializerKind: {
2527         Out << "PostInitializer: ";
2528         const CXXCtorInitializer *Init =
2529           Loc.castAs<PostInitializer>().getInitializer();
2530         if (const FieldDecl *FD = Init->getAnyMember())
2531           Out << *FD;
2532         else {
2533           QualType Ty = Init->getTypeSourceInfo()->getType();
2534           Ty = Ty.getLocalUnqualifiedType();
2535           LangOptions LO; // FIXME.
2536           Ty.print(Out, LO);
2537         }
2538         break;
2539       }
2540 
2541       case ProgramPoint::BlockEdgeKind: {
2542         const BlockEdge &E = Loc.castAs<BlockEdge>();
2543         Out << "Edge: (B" << E.getSrc()->getBlockID() << ", B"
2544             << E.getDst()->getBlockID()  << ')';
2545 
2546         if (const Stmt *T = E.getSrc()->getTerminator()) {
2547           SourceLocation SLoc = T->getLocStart();
2548 
2549           Out << "\\|Terminator: ";
2550           LangOptions LO; // FIXME.
2551           E.getSrc()->printTerminator(Out, LO);
2552 
2553           if (SLoc.isFileID()) {
2554             Out << "\\lline="
2555               << GraphPrintSourceManager->getExpansionLineNumber(SLoc)
2556               << " col="
2557               << GraphPrintSourceManager->getExpansionColumnNumber(SLoc);
2558           }
2559 
2560           if (isa<SwitchStmt>(T)) {
2561             const Stmt *Label = E.getDst()->getLabel();
2562 
2563             if (Label) {
2564               if (const CaseStmt *C = dyn_cast<CaseStmt>(Label)) {
2565                 Out << "\\lcase ";
2566                 LangOptions LO; // FIXME.
2567                 if (C->getLHS())
2568                   C->getLHS()->printPretty(Out, nullptr, PrintingPolicy(LO));
2569 
2570                 if (const Stmt *RHS = C->getRHS()) {
2571                   Out << " .. ";
2572                   RHS->printPretty(Out, nullptr, PrintingPolicy(LO));
2573                 }
2574 
2575                 Out << ":";
2576               }
2577               else {
2578                 assert (isa<DefaultStmt>(Label));
2579                 Out << "\\ldefault:";
2580               }
2581             }
2582             else
2583               Out << "\\l(implicit) default:";
2584           }
2585           else if (isa<IndirectGotoStmt>(T)) {
2586             // FIXME
2587           }
2588           else {
2589             Out << "\\lCondition: ";
2590             if (*E.getSrc()->succ_begin() == E.getDst())
2591               Out << "true";
2592             else
2593               Out << "false";
2594           }
2595 
2596           Out << "\\l";
2597         }
2598 
2599 #if 0
2600           // FIXME: Replace with a general scheme to determine
2601           // the name of the check.
2602         if (GraphPrintCheckerState->isUndefControlFlow(N)) {
2603           Out << "\\|Control-flow based on\\lUndefined value.\\l";
2604         }
2605 #endif
2606         break;
2607       }
2608 
2609       default: {
2610         const Stmt *S = Loc.castAs<StmtPoint>().getStmt();
2611         assert(S != nullptr && "Expecting non-null Stmt");
2612 
2613         Out << S->getStmtClassName() << ' ' << (const void*) S << ' ';
2614         LangOptions LO; // FIXME.
2615         S->printPretty(Out, nullptr, PrintingPolicy(LO));
2616         printLocation(Out, S->getLocStart());
2617 
2618         if (Loc.getAs<PreStmt>())
2619           Out << "\\lPreStmt\\l;";
2620         else if (Loc.getAs<PostLoad>())
2621           Out << "\\lPostLoad\\l;";
2622         else if (Loc.getAs<PostStore>())
2623           Out << "\\lPostStore\\l";
2624         else if (Loc.getAs<PostLValue>())
2625           Out << "\\lPostLValue\\l";
2626 
2627 #if 0
2628           // FIXME: Replace with a general scheme to determine
2629           // the name of the check.
2630         if (GraphPrintCheckerState->isImplicitNullDeref(N))
2631           Out << "\\|Implicit-Null Dereference.\\l";
2632         else if (GraphPrintCheckerState->isExplicitNullDeref(N))
2633           Out << "\\|Explicit-Null Dereference.\\l";
2634         else if (GraphPrintCheckerState->isUndefDeref(N))
2635           Out << "\\|Dereference of undefialied value.\\l";
2636         else if (GraphPrintCheckerState->isUndefStore(N))
2637           Out << "\\|Store to Undefined Loc.";
2638         else if (GraphPrintCheckerState->isUndefResult(N))
2639           Out << "\\|Result of operation is undefined.";
2640         else if (GraphPrintCheckerState->isNoReturnCall(N))
2641           Out << "\\|Call to function marked \"noreturn\".";
2642         else if (GraphPrintCheckerState->isBadCall(N))
2643           Out << "\\|Call to NULL/Undefined.";
2644         else if (GraphPrintCheckerState->isUndefArg(N))
2645           Out << "\\|Argument in call is undefined";
2646 #endif
2647 
2648         break;
2649       }
2650     }
2651 
2652     ProgramStateRef state = N->getState();
2653     Out << "\\|StateID: " << (const void*) state.get()
2654         << " NodeID: " << (const void*) N << "\\|";
2655     state->printDOT(Out);
2656 
2657     Out << "\\l";
2658 
2659     if (const ProgramPointTag *tag = Loc.getTag()) {
2660       Out << "\\|Tag: " << tag->getTagDescription();
2661       Out << "\\l";
2662     }
2663     return Out.str();
2664   }
2665 };
2666 } // end llvm namespace
2667 #endif
2668 
2669 void ExprEngine::ViewGraph(bool trim) {
2670 #ifndef NDEBUG
2671   if (trim) {
2672     std::vector<const ExplodedNode*> Src;
2673 
2674     // Flush any outstanding reports to make sure we cover all the nodes.
2675     // This does not cause them to get displayed.
2676     for (BugReporter::iterator I=BR.begin(), E=BR.end(); I!=E; ++I)
2677       const_cast<BugType*>(*I)->FlushReports(BR);
2678 
2679     // Iterate through the reports and get their nodes.
2680     for (BugReporter::EQClasses_iterator
2681            EI = BR.EQClasses_begin(), EE = BR.EQClasses_end(); EI != EE; ++EI) {
2682       ExplodedNode *N = const_cast<ExplodedNode*>(EI->begin()->getErrorNode());
2683       if (N) Src.push_back(N);
2684     }
2685 
2686     ViewGraph(Src);
2687   }
2688   else {
2689     GraphPrintCheckerState = this;
2690     GraphPrintSourceManager = &getContext().getSourceManager();
2691 
2692     llvm::ViewGraph(*G.roots_begin(), "ExprEngine");
2693 
2694     GraphPrintCheckerState = nullptr;
2695     GraphPrintSourceManager = nullptr;
2696   }
2697 #endif
2698 }
2699 
2700 void ExprEngine::ViewGraph(ArrayRef<const ExplodedNode*> Nodes) {
2701 #ifndef NDEBUG
2702   GraphPrintCheckerState = this;
2703   GraphPrintSourceManager = &getContext().getSourceManager();
2704 
2705   std::unique_ptr<ExplodedGraph> TrimmedG(G.trim(Nodes));
2706 
2707   if (!TrimmedG.get())
2708     llvm::errs() << "warning: Trimmed ExplodedGraph is empty.\n";
2709   else
2710     llvm::ViewGraph(*TrimmedG->roots_begin(), "TrimmedExprEngine");
2711 
2712   GraphPrintCheckerState = nullptr;
2713   GraphPrintSourceManager = nullptr;
2714 #endif
2715 }
2716