1 //===- ExprEngine.cpp - Path-Sensitive Expression-Level Dataflow ----------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 // 9 // This file defines a meta-engine for path-sensitive dataflow analysis that 10 // is built on CoreEngine, but provides the boilerplate to execute transfer 11 // functions and build the ExplodedGraph at the expression level. 12 // 13 //===----------------------------------------------------------------------===// 14 15 #include "clang/StaticAnalyzer/Core/PathSensitive/ExprEngine.h" 16 #include "PrettyStackTraceLocationContext.h" 17 #include "clang/AST/ASTContext.h" 18 #include "clang/AST/Decl.h" 19 #include "clang/AST/DeclBase.h" 20 #include "clang/AST/DeclCXX.h" 21 #include "clang/AST/DeclObjC.h" 22 #include "clang/AST/Expr.h" 23 #include "clang/AST/ExprCXX.h" 24 #include "clang/AST/ExprObjC.h" 25 #include "clang/AST/ParentMap.h" 26 #include "clang/AST/PrettyPrinter.h" 27 #include "clang/AST/Stmt.h" 28 #include "clang/AST/StmtCXX.h" 29 #include "clang/AST/StmtObjC.h" 30 #include "clang/AST/Type.h" 31 #include "clang/Analysis/AnalysisDeclContext.h" 32 #include "clang/Analysis/CFG.h" 33 #include "clang/Analysis/ConstructionContext.h" 34 #include "clang/Analysis/ProgramPoint.h" 35 #include "clang/Basic/IdentifierTable.h" 36 #include "clang/Basic/JsonSupport.h" 37 #include "clang/Basic/LLVM.h" 38 #include "clang/Basic/LangOptions.h" 39 #include "clang/Basic/PrettyStackTrace.h" 40 #include "clang/Basic/SourceLocation.h" 41 #include "clang/Basic/SourceManager.h" 42 #include "clang/Basic/Specifiers.h" 43 #include "clang/StaticAnalyzer/Core/AnalyzerOptions.h" 44 #include "clang/StaticAnalyzer/Core/BugReporter/BugReporter.h" 45 #include "clang/StaticAnalyzer/Core/BugReporter/BugType.h" 46 #include "clang/StaticAnalyzer/Core/CheckerManager.h" 47 #include "clang/StaticAnalyzer/Core/PathSensitive/AnalysisManager.h" 48 #include "clang/StaticAnalyzer/Core/PathSensitive/CallEvent.h" 49 #include "clang/StaticAnalyzer/Core/PathSensitive/ConstraintManager.h" 50 #include "clang/StaticAnalyzer/Core/PathSensitive/CoreEngine.h" 51 #include "clang/StaticAnalyzer/Core/PathSensitive/ExplodedGraph.h" 52 #include "clang/StaticAnalyzer/Core/PathSensitive/LoopUnrolling.h" 53 #include "clang/StaticAnalyzer/Core/PathSensitive/LoopWidening.h" 54 #include "clang/StaticAnalyzer/Core/PathSensitive/MemRegion.h" 55 #include "clang/StaticAnalyzer/Core/PathSensitive/ProgramState.h" 56 #include "clang/StaticAnalyzer/Core/PathSensitive/ProgramStateTrait.h" 57 #include "clang/StaticAnalyzer/Core/PathSensitive/ProgramState_Fwd.h" 58 #include "clang/StaticAnalyzer/Core/PathSensitive/SValBuilder.h" 59 #include "clang/StaticAnalyzer/Core/PathSensitive/SVals.h" 60 #include "clang/StaticAnalyzer/Core/PathSensitive/Store.h" 61 #include "clang/StaticAnalyzer/Core/PathSensitive/SymExpr.h" 62 #include "clang/StaticAnalyzer/Core/PathSensitive/SymbolManager.h" 63 #include "llvm/ADT/APSInt.h" 64 #include "llvm/ADT/DenseMap.h" 65 #include "llvm/ADT/ImmutableMap.h" 66 #include "llvm/ADT/ImmutableSet.h" 67 #include "llvm/ADT/Optional.h" 68 #include "llvm/ADT/SmallVector.h" 69 #include "llvm/ADT/Statistic.h" 70 #include "llvm/Support/Casting.h" 71 #include "llvm/Support/Compiler.h" 72 #include "llvm/Support/DOTGraphTraits.h" 73 #include "llvm/Support/ErrorHandling.h" 74 #include "llvm/Support/GraphWriter.h" 75 #include "llvm/Support/SaveAndRestore.h" 76 #include "llvm/Support/raw_ostream.h" 77 #include <cassert> 78 #include <cstdint> 79 #include <memory> 80 #include <string> 81 #include <tuple> 82 #include <utility> 83 #include <vector> 84 85 using namespace clang; 86 using namespace ento; 87 88 #define DEBUG_TYPE "ExprEngine" 89 90 STATISTIC(NumRemoveDeadBindings, 91 "The # of times RemoveDeadBindings is called"); 92 STATISTIC(NumMaxBlockCountReached, 93 "The # of aborted paths due to reaching the maximum block count in " 94 "a top level function"); 95 STATISTIC(NumMaxBlockCountReachedInInlined, 96 "The # of aborted paths due to reaching the maximum block count in " 97 "an inlined function"); 98 STATISTIC(NumTimesRetriedWithoutInlining, 99 "The # of times we re-evaluated a call without inlining"); 100 101 //===----------------------------------------------------------------------===// 102 // Internal program state traits. 103 //===----------------------------------------------------------------------===// 104 105 namespace { 106 107 // When modeling a C++ constructor, for a variety of reasons we need to track 108 // the location of the object for the duration of its ConstructionContext. 109 // ObjectsUnderConstruction maps statements within the construction context 110 // to the object's location, so that on every such statement the location 111 // could have been retrieved. 112 113 /// ConstructedObjectKey is used for being able to find the path-sensitive 114 /// memory region of a freshly constructed object while modeling the AST node 115 /// that syntactically represents the object that is being constructed. 116 /// Semantics of such nodes may sometimes require access to the region that's 117 /// not otherwise present in the program state, or to the very fact that 118 /// the construction context was present and contained references to these 119 /// AST nodes. 120 class ConstructedObjectKey { 121 using ConstructedObjectKeyImpl = 122 std::pair<ConstructionContextItem, const LocationContext *>; 123 const ConstructedObjectKeyImpl Impl; 124 125 public: 126 explicit ConstructedObjectKey(const ConstructionContextItem &Item, 127 const LocationContext *LC) 128 : Impl(Item, LC) {} 129 130 const ConstructionContextItem &getItem() const { return Impl.first; } 131 const LocationContext *getLocationContext() const { return Impl.second; } 132 133 ASTContext &getASTContext() const { 134 return getLocationContext()->getDecl()->getASTContext(); 135 } 136 137 void printJson(llvm::raw_ostream &Out, PrinterHelper *Helper, 138 PrintingPolicy &PP) const { 139 const Stmt *S = getItem().getStmtOrNull(); 140 const CXXCtorInitializer *I = nullptr; 141 if (!S) 142 I = getItem().getCXXCtorInitializer(); 143 144 if (S) 145 Out << "\"stmt_id\": " << S->getID(getASTContext()); 146 else 147 Out << "\"init_id\": " << I->getID(getASTContext()); 148 149 // Kind 150 Out << ", \"kind\": \"" << getItem().getKindAsString() 151 << "\", \"argument_index\": "; 152 153 if (getItem().getKind() == ConstructionContextItem::ArgumentKind) 154 Out << getItem().getIndex(); 155 else 156 Out << "null"; 157 158 // Pretty-print 159 Out << ", \"pretty\": "; 160 161 if (S) { 162 S->printJson(Out, Helper, PP, /*AddQuotes=*/true); 163 } else { 164 Out << '\"' << I->getAnyMember()->getDeclName() << '\"'; 165 } 166 } 167 168 void Profile(llvm::FoldingSetNodeID &ID) const { 169 ID.Add(Impl.first); 170 ID.AddPointer(Impl.second); 171 } 172 173 bool operator==(const ConstructedObjectKey &RHS) const { 174 return Impl == RHS.Impl; 175 } 176 177 bool operator<(const ConstructedObjectKey &RHS) const { 178 return Impl < RHS.Impl; 179 } 180 }; 181 } // namespace 182 183 typedef llvm::ImmutableMap<ConstructedObjectKey, SVal> 184 ObjectsUnderConstructionMap; 185 REGISTER_TRAIT_WITH_PROGRAMSTATE(ObjectsUnderConstruction, 186 ObjectsUnderConstructionMap) 187 188 //===----------------------------------------------------------------------===// 189 // Engine construction and deletion. 190 //===----------------------------------------------------------------------===// 191 192 static const char* TagProviderName = "ExprEngine"; 193 194 ExprEngine::ExprEngine(cross_tu::CrossTranslationUnitContext &CTU, 195 AnalysisManager &mgr, SetOfConstDecls *VisitedCalleesIn, 196 FunctionSummariesTy *FS, InliningModes HowToInlineIn) 197 : CTU(CTU), IsCTUEnabled(mgr.getAnalyzerOptions().IsNaiveCTUEnabled), 198 AMgr(mgr), AnalysisDeclContexts(mgr.getAnalysisDeclContextManager()), 199 Engine(*this, FS, mgr.getAnalyzerOptions()), G(Engine.getGraph()), 200 StateMgr(getContext(), mgr.getStoreManagerCreator(), 201 mgr.getConstraintManagerCreator(), G.getAllocator(), this), 202 SymMgr(StateMgr.getSymbolManager()), MRMgr(StateMgr.getRegionManager()), 203 svalBuilder(StateMgr.getSValBuilder()), ObjCNoRet(mgr.getASTContext()), 204 BR(mgr, *this), VisitedCallees(VisitedCalleesIn), 205 HowToInline(HowToInlineIn) { 206 unsigned TrimInterval = mgr.options.GraphTrimInterval; 207 if (TrimInterval != 0) { 208 // Enable eager node reclamation when constructing the ExplodedGraph. 209 G.enableNodeReclamation(TrimInterval); 210 } 211 } 212 213 //===----------------------------------------------------------------------===// 214 // Utility methods. 215 //===----------------------------------------------------------------------===// 216 217 ProgramStateRef ExprEngine::getInitialState(const LocationContext *InitLoc) { 218 ProgramStateRef state = StateMgr.getInitialState(InitLoc); 219 const Decl *D = InitLoc->getDecl(); 220 221 // Preconditions. 222 // FIXME: It would be nice if we had a more general mechanism to add 223 // such preconditions. Some day. 224 do { 225 if (const auto *FD = dyn_cast<FunctionDecl>(D)) { 226 // Precondition: the first argument of 'main' is an integer guaranteed 227 // to be > 0. 228 const IdentifierInfo *II = FD->getIdentifier(); 229 if (!II || !(II->getName() == "main" && FD->getNumParams() > 0)) 230 break; 231 232 const ParmVarDecl *PD = FD->getParamDecl(0); 233 QualType T = PD->getType(); 234 const auto *BT = dyn_cast<BuiltinType>(T); 235 if (!BT || !BT->isInteger()) 236 break; 237 238 const MemRegion *R = state->getRegion(PD, InitLoc); 239 if (!R) 240 break; 241 242 SVal V = state->getSVal(loc::MemRegionVal(R)); 243 SVal Constraint_untested = evalBinOp(state, BO_GT, V, 244 svalBuilder.makeZeroVal(T), 245 svalBuilder.getConditionType()); 246 247 Optional<DefinedOrUnknownSVal> Constraint = 248 Constraint_untested.getAs<DefinedOrUnknownSVal>(); 249 250 if (!Constraint) 251 break; 252 253 if (ProgramStateRef newState = state->assume(*Constraint, true)) 254 state = newState; 255 } 256 break; 257 } 258 while (false); 259 260 if (const auto *MD = dyn_cast<ObjCMethodDecl>(D)) { 261 // Precondition: 'self' is always non-null upon entry to an Objective-C 262 // method. 263 const ImplicitParamDecl *SelfD = MD->getSelfDecl(); 264 const MemRegion *R = state->getRegion(SelfD, InitLoc); 265 SVal V = state->getSVal(loc::MemRegionVal(R)); 266 267 if (Optional<Loc> LV = V.getAs<Loc>()) { 268 // Assume that the pointer value in 'self' is non-null. 269 state = state->assume(*LV, true); 270 assert(state && "'self' cannot be null"); 271 } 272 } 273 274 if (const auto *MD = dyn_cast<CXXMethodDecl>(D)) { 275 if (!MD->isStatic()) { 276 // Precondition: 'this' is always non-null upon entry to the 277 // top-level function. This is our starting assumption for 278 // analyzing an "open" program. 279 const StackFrameContext *SFC = InitLoc->getStackFrame(); 280 if (SFC->getParent() == nullptr) { 281 loc::MemRegionVal L = svalBuilder.getCXXThis(MD, SFC); 282 SVal V = state->getSVal(L); 283 if (Optional<Loc> LV = V.getAs<Loc>()) { 284 state = state->assume(*LV, true); 285 assert(state && "'this' cannot be null"); 286 } 287 } 288 } 289 } 290 291 return state; 292 } 293 294 ProgramStateRef ExprEngine::createTemporaryRegionIfNeeded( 295 ProgramStateRef State, const LocationContext *LC, 296 const Expr *InitWithAdjustments, const Expr *Result, 297 const SubRegion **OutRegionWithAdjustments) { 298 // FIXME: This function is a hack that works around the quirky AST 299 // we're often having with respect to C++ temporaries. If only we modelled 300 // the actual execution order of statements properly in the CFG, 301 // all the hassle with adjustments would not be necessary, 302 // and perhaps the whole function would be removed. 303 SVal InitValWithAdjustments = State->getSVal(InitWithAdjustments, LC); 304 if (!Result) { 305 // If we don't have an explicit result expression, we're in "if needed" 306 // mode. Only create a region if the current value is a NonLoc. 307 if (!isa<NonLoc>(InitValWithAdjustments)) { 308 if (OutRegionWithAdjustments) 309 *OutRegionWithAdjustments = nullptr; 310 return State; 311 } 312 Result = InitWithAdjustments; 313 } else { 314 // We need to create a region no matter what. Make sure we don't try to 315 // stuff a Loc into a non-pointer temporary region. 316 assert(!isa<Loc>(InitValWithAdjustments) || 317 Loc::isLocType(Result->getType()) || 318 Result->getType()->isMemberPointerType()); 319 } 320 321 ProgramStateManager &StateMgr = State->getStateManager(); 322 MemRegionManager &MRMgr = StateMgr.getRegionManager(); 323 StoreManager &StoreMgr = StateMgr.getStoreManager(); 324 325 // MaterializeTemporaryExpr may appear out of place, after a few field and 326 // base-class accesses have been made to the object, even though semantically 327 // it is the whole object that gets materialized and lifetime-extended. 328 // 329 // For example: 330 // 331 // `-MaterializeTemporaryExpr 332 // `-MemberExpr 333 // `-CXXTemporaryObjectExpr 334 // 335 // instead of the more natural 336 // 337 // `-MemberExpr 338 // `-MaterializeTemporaryExpr 339 // `-CXXTemporaryObjectExpr 340 // 341 // Use the usual methods for obtaining the expression of the base object, 342 // and record the adjustments that we need to make to obtain the sub-object 343 // that the whole expression 'Ex' refers to. This trick is usual, 344 // in the sense that CodeGen takes a similar route. 345 346 SmallVector<const Expr *, 2> CommaLHSs; 347 SmallVector<SubobjectAdjustment, 2> Adjustments; 348 349 const Expr *Init = InitWithAdjustments->skipRValueSubobjectAdjustments( 350 CommaLHSs, Adjustments); 351 352 // Take the region for Init, i.e. for the whole object. If we do not remember 353 // the region in which the object originally was constructed, come up with 354 // a new temporary region out of thin air and copy the contents of the object 355 // (which are currently present in the Environment, because Init is an rvalue) 356 // into that region. This is not correct, but it is better than nothing. 357 const TypedValueRegion *TR = nullptr; 358 if (const auto *MT = dyn_cast<MaterializeTemporaryExpr>(Result)) { 359 if (Optional<SVal> V = getObjectUnderConstruction(State, MT, LC)) { 360 State = finishObjectConstruction(State, MT, LC); 361 State = State->BindExpr(Result, LC, *V); 362 return State; 363 } else { 364 StorageDuration SD = MT->getStorageDuration(); 365 // If this object is bound to a reference with static storage duration, we 366 // put it in a different region to prevent "address leakage" warnings. 367 if (SD == SD_Static || SD == SD_Thread) { 368 TR = MRMgr.getCXXStaticTempObjectRegion(Init); 369 } else { 370 TR = MRMgr.getCXXTempObjectRegion(Init, LC); 371 } 372 } 373 } else { 374 TR = MRMgr.getCXXTempObjectRegion(Init, LC); 375 } 376 377 SVal Reg = loc::MemRegionVal(TR); 378 SVal BaseReg = Reg; 379 380 // Make the necessary adjustments to obtain the sub-object. 381 for (const SubobjectAdjustment &Adj : llvm::reverse(Adjustments)) { 382 switch (Adj.Kind) { 383 case SubobjectAdjustment::DerivedToBaseAdjustment: 384 Reg = StoreMgr.evalDerivedToBase(Reg, Adj.DerivedToBase.BasePath); 385 break; 386 case SubobjectAdjustment::FieldAdjustment: 387 Reg = StoreMgr.getLValueField(Adj.Field, Reg); 388 break; 389 case SubobjectAdjustment::MemberPointerAdjustment: 390 // FIXME: Unimplemented. 391 State = State->invalidateRegions(Reg, InitWithAdjustments, 392 currBldrCtx->blockCount(), LC, true, 393 nullptr, nullptr, nullptr); 394 return State; 395 } 396 } 397 398 // What remains is to copy the value of the object to the new region. 399 // FIXME: In other words, what we should always do is copy value of the 400 // Init expression (which corresponds to the bigger object) to the whole 401 // temporary region TR. However, this value is often no longer present 402 // in the Environment. If it has disappeared, we instead invalidate TR. 403 // Still, what we can do is assign the value of expression Ex (which 404 // corresponds to the sub-object) to the TR's sub-region Reg. At least, 405 // values inside Reg would be correct. 406 SVal InitVal = State->getSVal(Init, LC); 407 if (InitVal.isUnknown()) { 408 InitVal = getSValBuilder().conjureSymbolVal(Result, LC, Init->getType(), 409 currBldrCtx->blockCount()); 410 State = State->bindLoc(BaseReg.castAs<Loc>(), InitVal, LC, false); 411 412 // Then we'd need to take the value that certainly exists and bind it 413 // over. 414 if (InitValWithAdjustments.isUnknown()) { 415 // Try to recover some path sensitivity in case we couldn't 416 // compute the value. 417 InitValWithAdjustments = getSValBuilder().conjureSymbolVal( 418 Result, LC, InitWithAdjustments->getType(), 419 currBldrCtx->blockCount()); 420 } 421 State = 422 State->bindLoc(Reg.castAs<Loc>(), InitValWithAdjustments, LC, false); 423 } else { 424 State = State->bindLoc(BaseReg.castAs<Loc>(), InitVal, LC, false); 425 } 426 427 // The result expression would now point to the correct sub-region of the 428 // newly created temporary region. Do this last in order to getSVal of Init 429 // correctly in case (Result == Init). 430 if (Result->isGLValue()) { 431 State = State->BindExpr(Result, LC, Reg); 432 } else { 433 State = State->BindExpr(Result, LC, InitValWithAdjustments); 434 } 435 436 // Notify checkers once for two bindLoc()s. 437 State = processRegionChange(State, TR, LC); 438 439 if (OutRegionWithAdjustments) 440 *OutRegionWithAdjustments = cast<SubRegion>(Reg.getAsRegion()); 441 return State; 442 } 443 444 ProgramStateRef 445 ExprEngine::addObjectUnderConstruction(ProgramStateRef State, 446 const ConstructionContextItem &Item, 447 const LocationContext *LC, SVal V) { 448 ConstructedObjectKey Key(Item, LC->getStackFrame()); 449 // FIXME: Currently the state might already contain the marker due to 450 // incorrect handling of temporaries bound to default parameters. 451 assert(!State->get<ObjectsUnderConstruction>(Key) || 452 Key.getItem().getKind() == 453 ConstructionContextItem::TemporaryDestructorKind); 454 return State->set<ObjectsUnderConstruction>(Key, V); 455 } 456 457 Optional<SVal> 458 ExprEngine::getObjectUnderConstruction(ProgramStateRef State, 459 const ConstructionContextItem &Item, 460 const LocationContext *LC) { 461 ConstructedObjectKey Key(Item, LC->getStackFrame()); 462 return Optional<SVal>::create(State->get<ObjectsUnderConstruction>(Key)); 463 } 464 465 ProgramStateRef 466 ExprEngine::finishObjectConstruction(ProgramStateRef State, 467 const ConstructionContextItem &Item, 468 const LocationContext *LC) { 469 ConstructedObjectKey Key(Item, LC->getStackFrame()); 470 assert(State->contains<ObjectsUnderConstruction>(Key)); 471 return State->remove<ObjectsUnderConstruction>(Key); 472 } 473 474 ProgramStateRef ExprEngine::elideDestructor(ProgramStateRef State, 475 const CXXBindTemporaryExpr *BTE, 476 const LocationContext *LC) { 477 ConstructedObjectKey Key({BTE, /*IsElided=*/true}, LC); 478 // FIXME: Currently the state might already contain the marker due to 479 // incorrect handling of temporaries bound to default parameters. 480 return State->set<ObjectsUnderConstruction>(Key, UnknownVal()); 481 } 482 483 ProgramStateRef 484 ExprEngine::cleanupElidedDestructor(ProgramStateRef State, 485 const CXXBindTemporaryExpr *BTE, 486 const LocationContext *LC) { 487 ConstructedObjectKey Key({BTE, /*IsElided=*/true}, LC); 488 assert(State->contains<ObjectsUnderConstruction>(Key)); 489 return State->remove<ObjectsUnderConstruction>(Key); 490 } 491 492 bool ExprEngine::isDestructorElided(ProgramStateRef State, 493 const CXXBindTemporaryExpr *BTE, 494 const LocationContext *LC) { 495 ConstructedObjectKey Key({BTE, /*IsElided=*/true}, LC); 496 return State->contains<ObjectsUnderConstruction>(Key); 497 } 498 499 bool ExprEngine::areAllObjectsFullyConstructed(ProgramStateRef State, 500 const LocationContext *FromLC, 501 const LocationContext *ToLC) { 502 const LocationContext *LC = FromLC; 503 while (LC != ToLC) { 504 assert(LC && "ToLC must be a parent of FromLC!"); 505 for (auto I : State->get<ObjectsUnderConstruction>()) 506 if (I.first.getLocationContext() == LC) 507 return false; 508 509 LC = LC->getParent(); 510 } 511 return true; 512 } 513 514 515 //===----------------------------------------------------------------------===// 516 // Top-level transfer function logic (Dispatcher). 517 //===----------------------------------------------------------------------===// 518 519 /// evalAssume - Called by ConstraintManager. Used to call checker-specific 520 /// logic for handling assumptions on symbolic values. 521 ProgramStateRef ExprEngine::processAssume(ProgramStateRef state, 522 SVal cond, bool assumption) { 523 return getCheckerManager().runCheckersForEvalAssume(state, cond, assumption); 524 } 525 526 ProgramStateRef 527 ExprEngine::processRegionChanges(ProgramStateRef state, 528 const InvalidatedSymbols *invalidated, 529 ArrayRef<const MemRegion *> Explicits, 530 ArrayRef<const MemRegion *> Regions, 531 const LocationContext *LCtx, 532 const CallEvent *Call) { 533 return getCheckerManager().runCheckersForRegionChanges(state, invalidated, 534 Explicits, Regions, 535 LCtx, Call); 536 } 537 538 static void 539 printObjectsUnderConstructionJson(raw_ostream &Out, ProgramStateRef State, 540 const char *NL, const LocationContext *LCtx, 541 unsigned int Space = 0, bool IsDot = false) { 542 PrintingPolicy PP = 543 LCtx->getAnalysisDeclContext()->getASTContext().getPrintingPolicy(); 544 545 ++Space; 546 bool HasItem = false; 547 548 // Store the last key. 549 const ConstructedObjectKey *LastKey = nullptr; 550 for (const auto &I : State->get<ObjectsUnderConstruction>()) { 551 const ConstructedObjectKey &Key = I.first; 552 if (Key.getLocationContext() != LCtx) 553 continue; 554 555 if (!HasItem) { 556 Out << "[" << NL; 557 HasItem = true; 558 } 559 560 LastKey = &Key; 561 } 562 563 for (const auto &I : State->get<ObjectsUnderConstruction>()) { 564 const ConstructedObjectKey &Key = I.first; 565 SVal Value = I.second; 566 if (Key.getLocationContext() != LCtx) 567 continue; 568 569 Indent(Out, Space, IsDot) << "{ "; 570 Key.printJson(Out, nullptr, PP); 571 Out << ", \"value\": \"" << Value << "\" }"; 572 573 if (&Key != LastKey) 574 Out << ','; 575 Out << NL; 576 } 577 578 if (HasItem) 579 Indent(Out, --Space, IsDot) << ']'; // End of "location_context". 580 else { 581 Out << "null "; 582 } 583 } 584 585 void ExprEngine::printJson(raw_ostream &Out, ProgramStateRef State, 586 const LocationContext *LCtx, const char *NL, 587 unsigned int Space, bool IsDot) const { 588 Indent(Out, Space, IsDot) << "\"constructing_objects\": "; 589 590 if (LCtx && !State->get<ObjectsUnderConstruction>().isEmpty()) { 591 ++Space; 592 Out << '[' << NL; 593 LCtx->printJson(Out, NL, Space, IsDot, [&](const LocationContext *LC) { 594 printObjectsUnderConstructionJson(Out, State, NL, LC, Space, IsDot); 595 }); 596 597 --Space; 598 Indent(Out, Space, IsDot) << "]," << NL; // End of "constructing_objects". 599 } else { 600 Out << "null," << NL; 601 } 602 603 getCheckerManager().runCheckersForPrintStateJson(Out, State, NL, Space, 604 IsDot); 605 } 606 607 void ExprEngine::processEndWorklist() { 608 // This prints the name of the top-level function if we crash. 609 PrettyStackTraceLocationContext CrashInfo(getRootLocationContext()); 610 getCheckerManager().runCheckersForEndAnalysis(G, BR, *this); 611 } 612 613 void ExprEngine::processCFGElement(const CFGElement E, ExplodedNode *Pred, 614 unsigned StmtIdx, NodeBuilderContext *Ctx) { 615 PrettyStackTraceLocationContext CrashInfo(Pred->getLocationContext()); 616 currStmtIdx = StmtIdx; 617 currBldrCtx = Ctx; 618 619 switch (E.getKind()) { 620 case CFGElement::Statement: 621 case CFGElement::Constructor: 622 case CFGElement::CXXRecordTypedCall: 623 ProcessStmt(E.castAs<CFGStmt>().getStmt(), Pred); 624 return; 625 case CFGElement::Initializer: 626 ProcessInitializer(E.castAs<CFGInitializer>(), Pred); 627 return; 628 case CFGElement::NewAllocator: 629 ProcessNewAllocator(E.castAs<CFGNewAllocator>().getAllocatorExpr(), 630 Pred); 631 return; 632 case CFGElement::AutomaticObjectDtor: 633 case CFGElement::DeleteDtor: 634 case CFGElement::BaseDtor: 635 case CFGElement::MemberDtor: 636 case CFGElement::TemporaryDtor: 637 ProcessImplicitDtor(E.castAs<CFGImplicitDtor>(), Pred); 638 return; 639 case CFGElement::LoopExit: 640 ProcessLoopExit(E.castAs<CFGLoopExit>().getLoopStmt(), Pred); 641 return; 642 case CFGElement::LifetimeEnds: 643 case CFGElement::ScopeBegin: 644 case CFGElement::ScopeEnd: 645 return; 646 } 647 } 648 649 static bool shouldRemoveDeadBindings(AnalysisManager &AMgr, 650 const Stmt *S, 651 const ExplodedNode *Pred, 652 const LocationContext *LC) { 653 // Are we never purging state values? 654 if (AMgr.options.AnalysisPurgeOpt == PurgeNone) 655 return false; 656 657 // Is this the beginning of a basic block? 658 if (Pred->getLocation().getAs<BlockEntrance>()) 659 return true; 660 661 // Is this on a non-expression? 662 if (!isa<Expr>(S)) 663 return true; 664 665 // Run before processing a call. 666 if (CallEvent::isCallStmt(S)) 667 return true; 668 669 // Is this an expression that is consumed by another expression? If so, 670 // postpone cleaning out the state. 671 ParentMap &PM = LC->getAnalysisDeclContext()->getParentMap(); 672 return !PM.isConsumedExpr(cast<Expr>(S)); 673 } 674 675 void ExprEngine::removeDead(ExplodedNode *Pred, ExplodedNodeSet &Out, 676 const Stmt *ReferenceStmt, 677 const LocationContext *LC, 678 const Stmt *DiagnosticStmt, 679 ProgramPoint::Kind K) { 680 assert((K == ProgramPoint::PreStmtPurgeDeadSymbolsKind || 681 ReferenceStmt == nullptr || isa<ReturnStmt>(ReferenceStmt)) 682 && "PostStmt is not generally supported by the SymbolReaper yet"); 683 assert(LC && "Must pass the current (or expiring) LocationContext"); 684 685 if (!DiagnosticStmt) { 686 DiagnosticStmt = ReferenceStmt; 687 assert(DiagnosticStmt && "Required for clearing a LocationContext"); 688 } 689 690 NumRemoveDeadBindings++; 691 ProgramStateRef CleanedState = Pred->getState(); 692 693 // LC is the location context being destroyed, but SymbolReaper wants a 694 // location context that is still live. (If this is the top-level stack 695 // frame, this will be null.) 696 if (!ReferenceStmt) { 697 assert(K == ProgramPoint::PostStmtPurgeDeadSymbolsKind && 698 "Use PostStmtPurgeDeadSymbolsKind for clearing a LocationContext"); 699 LC = LC->getParent(); 700 } 701 702 const StackFrameContext *SFC = LC ? LC->getStackFrame() : nullptr; 703 SymbolReaper SymReaper(SFC, ReferenceStmt, SymMgr, getStoreManager()); 704 705 for (auto I : CleanedState->get<ObjectsUnderConstruction>()) { 706 if (SymbolRef Sym = I.second.getAsSymbol()) 707 SymReaper.markLive(Sym); 708 if (const MemRegion *MR = I.second.getAsRegion()) 709 SymReaper.markLive(MR); 710 } 711 712 getCheckerManager().runCheckersForLiveSymbols(CleanedState, SymReaper); 713 714 // Create a state in which dead bindings are removed from the environment 715 // and the store. TODO: The function should just return new env and store, 716 // not a new state. 717 CleanedState = StateMgr.removeDeadBindingsFromEnvironmentAndStore( 718 CleanedState, SFC, SymReaper); 719 720 // Process any special transfer function for dead symbols. 721 // A tag to track convenience transitions, which can be removed at cleanup. 722 static SimpleProgramPointTag cleanupTag(TagProviderName, "Clean Node"); 723 // Call checkers with the non-cleaned state so that they could query the 724 // values of the soon to be dead symbols. 725 ExplodedNodeSet CheckedSet; 726 getCheckerManager().runCheckersForDeadSymbols(CheckedSet, Pred, SymReaper, 727 DiagnosticStmt, *this, K); 728 729 // For each node in CheckedSet, generate CleanedNodes that have the 730 // environment, the store, and the constraints cleaned up but have the 731 // user-supplied states as the predecessors. 732 StmtNodeBuilder Bldr(CheckedSet, Out, *currBldrCtx); 733 for (const auto I : CheckedSet) { 734 ProgramStateRef CheckerState = I->getState(); 735 736 // The constraint manager has not been cleaned up yet, so clean up now. 737 CheckerState = 738 getConstraintManager().removeDeadBindings(CheckerState, SymReaper); 739 740 assert(StateMgr.haveEqualEnvironments(CheckerState, Pred->getState()) && 741 "Checkers are not allowed to modify the Environment as a part of " 742 "checkDeadSymbols processing."); 743 assert(StateMgr.haveEqualStores(CheckerState, Pred->getState()) && 744 "Checkers are not allowed to modify the Store as a part of " 745 "checkDeadSymbols processing."); 746 747 // Create a state based on CleanedState with CheckerState GDM and 748 // generate a transition to that state. 749 ProgramStateRef CleanedCheckerSt = 750 StateMgr.getPersistentStateWithGDM(CleanedState, CheckerState); 751 Bldr.generateNode(DiagnosticStmt, I, CleanedCheckerSt, &cleanupTag, K); 752 } 753 } 754 755 void ExprEngine::ProcessStmt(const Stmt *currStmt, ExplodedNode *Pred) { 756 // Reclaim any unnecessary nodes in the ExplodedGraph. 757 G.reclaimRecentlyAllocatedNodes(); 758 759 PrettyStackTraceLoc CrashInfo(getContext().getSourceManager(), 760 currStmt->getBeginLoc(), 761 "Error evaluating statement"); 762 763 // Remove dead bindings and symbols. 764 ExplodedNodeSet CleanedStates; 765 if (shouldRemoveDeadBindings(AMgr, currStmt, Pred, 766 Pred->getLocationContext())) { 767 removeDead(Pred, CleanedStates, currStmt, 768 Pred->getLocationContext()); 769 } else 770 CleanedStates.Add(Pred); 771 772 // Visit the statement. 773 ExplodedNodeSet Dst; 774 for (const auto I : CleanedStates) { 775 ExplodedNodeSet DstI; 776 // Visit the statement. 777 Visit(currStmt, I, DstI); 778 Dst.insert(DstI); 779 } 780 781 // Enqueue the new nodes onto the work list. 782 Engine.enqueue(Dst, currBldrCtx->getBlock(), currStmtIdx); 783 } 784 785 void ExprEngine::ProcessLoopExit(const Stmt* S, ExplodedNode *Pred) { 786 PrettyStackTraceLoc CrashInfo(getContext().getSourceManager(), 787 S->getBeginLoc(), 788 "Error evaluating end of the loop"); 789 ExplodedNodeSet Dst; 790 Dst.Add(Pred); 791 NodeBuilder Bldr(Pred, Dst, *currBldrCtx); 792 ProgramStateRef NewState = Pred->getState(); 793 794 if(AMgr.options.ShouldUnrollLoops) 795 NewState = processLoopEnd(S, NewState); 796 797 LoopExit PP(S, Pred->getLocationContext()); 798 Bldr.generateNode(PP, NewState, Pred); 799 // Enqueue the new nodes onto the work list. 800 Engine.enqueue(Dst, currBldrCtx->getBlock(), currStmtIdx); 801 } 802 803 void ExprEngine::ProcessInitializer(const CFGInitializer CFGInit, 804 ExplodedNode *Pred) { 805 const CXXCtorInitializer *BMI = CFGInit.getInitializer(); 806 const Expr *Init = BMI->getInit()->IgnoreImplicit(); 807 const LocationContext *LC = Pred->getLocationContext(); 808 809 PrettyStackTraceLoc CrashInfo(getContext().getSourceManager(), 810 BMI->getSourceLocation(), 811 "Error evaluating initializer"); 812 813 // We don't clean up dead bindings here. 814 const auto *stackFrame = cast<StackFrameContext>(Pred->getLocationContext()); 815 const auto *decl = cast<CXXConstructorDecl>(stackFrame->getDecl()); 816 817 ProgramStateRef State = Pred->getState(); 818 SVal thisVal = State->getSVal(svalBuilder.getCXXThis(decl, stackFrame)); 819 820 ExplodedNodeSet Tmp; 821 SVal FieldLoc; 822 823 // Evaluate the initializer, if necessary 824 if (BMI->isAnyMemberInitializer()) { 825 // Constructors build the object directly in the field, 826 // but non-objects must be copied in from the initializer. 827 if (getObjectUnderConstruction(State, BMI, LC)) { 828 // The field was directly constructed, so there is no need to bind. 829 // But we still need to stop tracking the object under construction. 830 State = finishObjectConstruction(State, BMI, LC); 831 NodeBuilder Bldr(Pred, Tmp, *currBldrCtx); 832 PostStore PS(Init, LC, /*Loc*/ nullptr, /*tag*/ nullptr); 833 Bldr.generateNode(PS, State, Pred); 834 } else { 835 const ValueDecl *Field; 836 if (BMI->isIndirectMemberInitializer()) { 837 Field = BMI->getIndirectMember(); 838 FieldLoc = State->getLValue(BMI->getIndirectMember(), thisVal); 839 } else { 840 Field = BMI->getMember(); 841 FieldLoc = State->getLValue(BMI->getMember(), thisVal); 842 } 843 844 SVal InitVal; 845 if (Init->getType()->isArrayType()) { 846 // Handle arrays of trivial type. We can represent this with a 847 // primitive load/copy from the base array region. 848 const ArraySubscriptExpr *ASE; 849 while ((ASE = dyn_cast<ArraySubscriptExpr>(Init))) 850 Init = ASE->getBase()->IgnoreImplicit(); 851 852 SVal LValue = State->getSVal(Init, stackFrame); 853 if (!Field->getType()->isReferenceType()) 854 if (Optional<Loc> LValueLoc = LValue.getAs<Loc>()) 855 InitVal = State->getSVal(*LValueLoc); 856 857 // If we fail to get the value for some reason, use a symbolic value. 858 if (InitVal.isUnknownOrUndef()) { 859 SValBuilder &SVB = getSValBuilder(); 860 InitVal = SVB.conjureSymbolVal(BMI->getInit(), stackFrame, 861 Field->getType(), 862 currBldrCtx->blockCount()); 863 } 864 } else { 865 InitVal = State->getSVal(BMI->getInit(), stackFrame); 866 } 867 868 PostInitializer PP(BMI, FieldLoc.getAsRegion(), stackFrame); 869 evalBind(Tmp, Init, Pred, FieldLoc, InitVal, /*isInit=*/true, &PP); 870 } 871 } else { 872 assert(BMI->isBaseInitializer() || BMI->isDelegatingInitializer()); 873 Tmp.insert(Pred); 874 // We already did all the work when visiting the CXXConstructExpr. 875 } 876 877 // Construct PostInitializer nodes whether the state changed or not, 878 // so that the diagnostics don't get confused. 879 PostInitializer PP(BMI, FieldLoc.getAsRegion(), stackFrame); 880 ExplodedNodeSet Dst; 881 NodeBuilder Bldr(Tmp, Dst, *currBldrCtx); 882 for (const auto I : Tmp) { 883 ProgramStateRef State = I->getState(); 884 Bldr.generateNode(PP, State, I); 885 } 886 887 // Enqueue the new nodes onto the work list. 888 Engine.enqueue(Dst, currBldrCtx->getBlock(), currStmtIdx); 889 } 890 891 void ExprEngine::ProcessImplicitDtor(const CFGImplicitDtor D, 892 ExplodedNode *Pred) { 893 ExplodedNodeSet Dst; 894 switch (D.getKind()) { 895 case CFGElement::AutomaticObjectDtor: 896 ProcessAutomaticObjDtor(D.castAs<CFGAutomaticObjDtor>(), Pred, Dst); 897 break; 898 case CFGElement::BaseDtor: 899 ProcessBaseDtor(D.castAs<CFGBaseDtor>(), Pred, Dst); 900 break; 901 case CFGElement::MemberDtor: 902 ProcessMemberDtor(D.castAs<CFGMemberDtor>(), Pred, Dst); 903 break; 904 case CFGElement::TemporaryDtor: 905 ProcessTemporaryDtor(D.castAs<CFGTemporaryDtor>(), Pred, Dst); 906 break; 907 case CFGElement::DeleteDtor: 908 ProcessDeleteDtor(D.castAs<CFGDeleteDtor>(), Pred, Dst); 909 break; 910 default: 911 llvm_unreachable("Unexpected dtor kind."); 912 } 913 914 // Enqueue the new nodes onto the work list. 915 Engine.enqueue(Dst, currBldrCtx->getBlock(), currStmtIdx); 916 } 917 918 void ExprEngine::ProcessNewAllocator(const CXXNewExpr *NE, 919 ExplodedNode *Pred) { 920 ExplodedNodeSet Dst; 921 AnalysisManager &AMgr = getAnalysisManager(); 922 AnalyzerOptions &Opts = AMgr.options; 923 // TODO: We're not evaluating allocators for all cases just yet as 924 // we're not handling the return value correctly, which causes false 925 // positives when the alpha.cplusplus.NewDeleteLeaks check is on. 926 if (Opts.MayInlineCXXAllocator) 927 VisitCXXNewAllocatorCall(NE, Pred, Dst); 928 else { 929 NodeBuilder Bldr(Pred, Dst, *currBldrCtx); 930 const LocationContext *LCtx = Pred->getLocationContext(); 931 PostImplicitCall PP(NE->getOperatorNew(), NE->getBeginLoc(), LCtx); 932 Bldr.generateNode(PP, Pred->getState(), Pred); 933 } 934 Engine.enqueue(Dst, currBldrCtx->getBlock(), currStmtIdx); 935 } 936 937 void ExprEngine::ProcessAutomaticObjDtor(const CFGAutomaticObjDtor Dtor, 938 ExplodedNode *Pred, 939 ExplodedNodeSet &Dst) { 940 const VarDecl *varDecl = Dtor.getVarDecl(); 941 QualType varType = varDecl->getType(); 942 943 ProgramStateRef state = Pred->getState(); 944 SVal dest = state->getLValue(varDecl, Pred->getLocationContext()); 945 const MemRegion *Region = dest.castAs<loc::MemRegionVal>().getRegion(); 946 947 if (varType->isReferenceType()) { 948 const MemRegion *ValueRegion = state->getSVal(Region).getAsRegion(); 949 if (!ValueRegion) { 950 // FIXME: This should not happen. The language guarantees a presence 951 // of a valid initializer here, so the reference shall not be undefined. 952 // It seems that we're calling destructors over variables that 953 // were not initialized yet. 954 return; 955 } 956 Region = ValueRegion->getBaseRegion(); 957 varType = cast<TypedValueRegion>(Region)->getValueType(); 958 } 959 960 // FIXME: We need to run the same destructor on every element of the array. 961 // This workaround will just run the first destructor (which will still 962 // invalidate the entire array). 963 EvalCallOptions CallOpts; 964 Region = makeZeroElementRegion(state, loc::MemRegionVal(Region), varType, 965 CallOpts.IsArrayCtorOrDtor).getAsRegion(); 966 967 VisitCXXDestructor(varType, Region, Dtor.getTriggerStmt(), 968 /*IsBase=*/false, Pred, Dst, CallOpts); 969 } 970 971 void ExprEngine::ProcessDeleteDtor(const CFGDeleteDtor Dtor, 972 ExplodedNode *Pred, 973 ExplodedNodeSet &Dst) { 974 ProgramStateRef State = Pred->getState(); 975 const LocationContext *LCtx = Pred->getLocationContext(); 976 const CXXDeleteExpr *DE = Dtor.getDeleteExpr(); 977 const Stmt *Arg = DE->getArgument(); 978 QualType DTy = DE->getDestroyedType(); 979 SVal ArgVal = State->getSVal(Arg, LCtx); 980 981 // If the argument to delete is known to be a null value, 982 // don't run destructor. 983 if (State->isNull(ArgVal).isConstrainedTrue()) { 984 QualType BTy = getContext().getBaseElementType(DTy); 985 const CXXRecordDecl *RD = BTy->getAsCXXRecordDecl(); 986 const CXXDestructorDecl *Dtor = RD->getDestructor(); 987 988 PostImplicitCall PP(Dtor, DE->getBeginLoc(), LCtx); 989 NodeBuilder Bldr(Pred, Dst, *currBldrCtx); 990 Bldr.generateNode(PP, Pred->getState(), Pred); 991 return; 992 } 993 994 EvalCallOptions CallOpts; 995 const MemRegion *ArgR = ArgVal.getAsRegion(); 996 if (DE->isArrayForm()) { 997 // FIXME: We need to run the same destructor on every element of the array. 998 // This workaround will just run the first destructor (which will still 999 // invalidate the entire array). 1000 CallOpts.IsArrayCtorOrDtor = true; 1001 // Yes, it may even be a multi-dimensional array. 1002 while (const auto *AT = getContext().getAsArrayType(DTy)) 1003 DTy = AT->getElementType(); 1004 if (ArgR) 1005 ArgR = getStoreManager().GetElementZeroRegion(cast<SubRegion>(ArgR), DTy); 1006 } 1007 1008 VisitCXXDestructor(DTy, ArgR, DE, /*IsBase=*/false, Pred, Dst, CallOpts); 1009 } 1010 1011 void ExprEngine::ProcessBaseDtor(const CFGBaseDtor D, 1012 ExplodedNode *Pred, ExplodedNodeSet &Dst) { 1013 const LocationContext *LCtx = Pred->getLocationContext(); 1014 1015 const auto *CurDtor = cast<CXXDestructorDecl>(LCtx->getDecl()); 1016 Loc ThisPtr = getSValBuilder().getCXXThis(CurDtor, 1017 LCtx->getStackFrame()); 1018 SVal ThisVal = Pred->getState()->getSVal(ThisPtr); 1019 1020 // Create the base object region. 1021 const CXXBaseSpecifier *Base = D.getBaseSpecifier(); 1022 QualType BaseTy = Base->getType(); 1023 SVal BaseVal = getStoreManager().evalDerivedToBase(ThisVal, BaseTy, 1024 Base->isVirtual()); 1025 1026 EvalCallOptions CallOpts; 1027 VisitCXXDestructor(BaseTy, BaseVal.getAsRegion(), CurDtor->getBody(), 1028 /*IsBase=*/true, Pred, Dst, CallOpts); 1029 } 1030 1031 void ExprEngine::ProcessMemberDtor(const CFGMemberDtor D, 1032 ExplodedNode *Pred, ExplodedNodeSet &Dst) { 1033 const FieldDecl *Member = D.getFieldDecl(); 1034 QualType T = Member->getType(); 1035 ProgramStateRef State = Pred->getState(); 1036 const LocationContext *LCtx = Pred->getLocationContext(); 1037 1038 const auto *CurDtor = cast<CXXDestructorDecl>(LCtx->getDecl()); 1039 Loc ThisStorageLoc = 1040 getSValBuilder().getCXXThis(CurDtor, LCtx->getStackFrame()); 1041 Loc ThisLoc = State->getSVal(ThisStorageLoc).castAs<Loc>(); 1042 SVal FieldVal = State->getLValue(Member, ThisLoc); 1043 1044 // FIXME: We need to run the same destructor on every element of the array. 1045 // This workaround will just run the first destructor (which will still 1046 // invalidate the entire array). 1047 EvalCallOptions CallOpts; 1048 FieldVal = makeZeroElementRegion(State, FieldVal, T, 1049 CallOpts.IsArrayCtorOrDtor); 1050 1051 VisitCXXDestructor(T, FieldVal.getAsRegion(), CurDtor->getBody(), 1052 /*IsBase=*/false, Pred, Dst, CallOpts); 1053 } 1054 1055 void ExprEngine::ProcessTemporaryDtor(const CFGTemporaryDtor D, 1056 ExplodedNode *Pred, 1057 ExplodedNodeSet &Dst) { 1058 const CXXBindTemporaryExpr *BTE = D.getBindTemporaryExpr(); 1059 ProgramStateRef State = Pred->getState(); 1060 const LocationContext *LC = Pred->getLocationContext(); 1061 const MemRegion *MR = nullptr; 1062 1063 if (Optional<SVal> V = 1064 getObjectUnderConstruction(State, D.getBindTemporaryExpr(), 1065 Pred->getLocationContext())) { 1066 // FIXME: Currently we insert temporary destructors for default parameters, 1067 // but we don't insert the constructors, so the entry in 1068 // ObjectsUnderConstruction may be missing. 1069 State = finishObjectConstruction(State, D.getBindTemporaryExpr(), 1070 Pred->getLocationContext()); 1071 MR = V->getAsRegion(); 1072 } 1073 1074 // If copy elision has occurred, and the constructor corresponding to the 1075 // destructor was elided, we need to skip the destructor as well. 1076 if (isDestructorElided(State, BTE, LC)) { 1077 State = cleanupElidedDestructor(State, BTE, LC); 1078 NodeBuilder Bldr(Pred, Dst, *currBldrCtx); 1079 PostImplicitCall PP(D.getDestructorDecl(getContext()), 1080 D.getBindTemporaryExpr()->getBeginLoc(), 1081 Pred->getLocationContext()); 1082 Bldr.generateNode(PP, State, Pred); 1083 return; 1084 } 1085 1086 ExplodedNodeSet CleanDtorState; 1087 StmtNodeBuilder StmtBldr(Pred, CleanDtorState, *currBldrCtx); 1088 StmtBldr.generateNode(D.getBindTemporaryExpr(), Pred, State); 1089 1090 QualType T = D.getBindTemporaryExpr()->getSubExpr()->getType(); 1091 // FIXME: Currently CleanDtorState can be empty here due to temporaries being 1092 // bound to default parameters. 1093 assert(CleanDtorState.size() <= 1); 1094 ExplodedNode *CleanPred = 1095 CleanDtorState.empty() ? Pred : *CleanDtorState.begin(); 1096 1097 EvalCallOptions CallOpts; 1098 CallOpts.IsTemporaryCtorOrDtor = true; 1099 if (!MR) { 1100 // If we have no MR, we still need to unwrap the array to avoid destroying 1101 // the whole array at once. Regardless, we'd eventually need to model array 1102 // destructors properly, element-by-element. 1103 while (const ArrayType *AT = getContext().getAsArrayType(T)) { 1104 T = AT->getElementType(); 1105 CallOpts.IsArrayCtorOrDtor = true; 1106 } 1107 } else { 1108 // We'd eventually need to makeZeroElementRegion() trick here, 1109 // but for now we don't have the respective construction contexts, 1110 // so MR would always be null in this case. Do nothing for now. 1111 } 1112 VisitCXXDestructor(T, MR, D.getBindTemporaryExpr(), 1113 /*IsBase=*/false, CleanPred, Dst, CallOpts); 1114 } 1115 1116 void ExprEngine::processCleanupTemporaryBranch(const CXXBindTemporaryExpr *BTE, 1117 NodeBuilderContext &BldCtx, 1118 ExplodedNode *Pred, 1119 ExplodedNodeSet &Dst, 1120 const CFGBlock *DstT, 1121 const CFGBlock *DstF) { 1122 BranchNodeBuilder TempDtorBuilder(Pred, Dst, BldCtx, DstT, DstF); 1123 ProgramStateRef State = Pred->getState(); 1124 const LocationContext *LC = Pred->getLocationContext(); 1125 if (getObjectUnderConstruction(State, BTE, LC)) { 1126 TempDtorBuilder.markInfeasible(false); 1127 TempDtorBuilder.generateNode(State, true, Pred); 1128 } else { 1129 TempDtorBuilder.markInfeasible(true); 1130 TempDtorBuilder.generateNode(State, false, Pred); 1131 } 1132 } 1133 1134 void ExprEngine::VisitCXXBindTemporaryExpr(const CXXBindTemporaryExpr *BTE, 1135 ExplodedNodeSet &PreVisit, 1136 ExplodedNodeSet &Dst) { 1137 // This is a fallback solution in case we didn't have a construction 1138 // context when we were constructing the temporary. Otherwise the map should 1139 // have been populated there. 1140 if (!getAnalysisManager().options.ShouldIncludeTemporaryDtorsInCFG) { 1141 // In case we don't have temporary destructors in the CFG, do not mark 1142 // the initialization - we would otherwise never clean it up. 1143 Dst = PreVisit; 1144 return; 1145 } 1146 StmtNodeBuilder StmtBldr(PreVisit, Dst, *currBldrCtx); 1147 for (ExplodedNode *Node : PreVisit) { 1148 ProgramStateRef State = Node->getState(); 1149 const LocationContext *LC = Node->getLocationContext(); 1150 if (!getObjectUnderConstruction(State, BTE, LC)) { 1151 // FIXME: Currently the state might also already contain the marker due to 1152 // incorrect handling of temporaries bound to default parameters; for 1153 // those, we currently skip the CXXBindTemporaryExpr but rely on adding 1154 // temporary destructor nodes. 1155 State = addObjectUnderConstruction(State, BTE, LC, UnknownVal()); 1156 } 1157 StmtBldr.generateNode(BTE, Node, State); 1158 } 1159 } 1160 1161 ProgramStateRef ExprEngine::escapeValues(ProgramStateRef State, 1162 ArrayRef<SVal> Vs, 1163 PointerEscapeKind K, 1164 const CallEvent *Call) const { 1165 class CollectReachableSymbolsCallback final : public SymbolVisitor { 1166 InvalidatedSymbols &Symbols; 1167 1168 public: 1169 explicit CollectReachableSymbolsCallback(InvalidatedSymbols &Symbols) 1170 : Symbols(Symbols) {} 1171 1172 const InvalidatedSymbols &getSymbols() const { return Symbols; } 1173 1174 bool VisitSymbol(SymbolRef Sym) override { 1175 Symbols.insert(Sym); 1176 return true; 1177 } 1178 }; 1179 InvalidatedSymbols Symbols; 1180 CollectReachableSymbolsCallback CallBack(Symbols); 1181 for (SVal V : Vs) 1182 State->scanReachableSymbols(V, CallBack); 1183 1184 return getCheckerManager().runCheckersForPointerEscape( 1185 State, CallBack.getSymbols(), Call, K, nullptr); 1186 } 1187 1188 void ExprEngine::Visit(const Stmt *S, ExplodedNode *Pred, 1189 ExplodedNodeSet &DstTop) { 1190 PrettyStackTraceLoc CrashInfo(getContext().getSourceManager(), 1191 S->getBeginLoc(), "Error evaluating statement"); 1192 ExplodedNodeSet Dst; 1193 StmtNodeBuilder Bldr(Pred, DstTop, *currBldrCtx); 1194 1195 assert(!isa<Expr>(S) || S == cast<Expr>(S)->IgnoreParens()); 1196 1197 switch (S->getStmtClass()) { 1198 // C++, OpenMP and ARC stuff we don't support yet. 1199 case Stmt::CXXDependentScopeMemberExprClass: 1200 case Stmt::CXXTryStmtClass: 1201 case Stmt::CXXTypeidExprClass: 1202 case Stmt::CXXUuidofExprClass: 1203 case Stmt::CXXFoldExprClass: 1204 case Stmt::MSPropertyRefExprClass: 1205 case Stmt::MSPropertySubscriptExprClass: 1206 case Stmt::CXXUnresolvedConstructExprClass: 1207 case Stmt::DependentScopeDeclRefExprClass: 1208 case Stmt::ArrayTypeTraitExprClass: 1209 case Stmt::ExpressionTraitExprClass: 1210 case Stmt::UnresolvedLookupExprClass: 1211 case Stmt::UnresolvedMemberExprClass: 1212 case Stmt::TypoExprClass: 1213 case Stmt::RecoveryExprClass: 1214 case Stmt::CXXNoexceptExprClass: 1215 case Stmt::PackExpansionExprClass: 1216 case Stmt::SubstNonTypeTemplateParmPackExprClass: 1217 case Stmt::FunctionParmPackExprClass: 1218 case Stmt::CoroutineBodyStmtClass: 1219 case Stmt::CoawaitExprClass: 1220 case Stmt::DependentCoawaitExprClass: 1221 case Stmt::CoreturnStmtClass: 1222 case Stmt::CoyieldExprClass: 1223 case Stmt::SEHTryStmtClass: 1224 case Stmt::SEHExceptStmtClass: 1225 case Stmt::SEHLeaveStmtClass: 1226 case Stmt::SEHFinallyStmtClass: 1227 case Stmt::OMPCanonicalLoopClass: 1228 case Stmt::OMPParallelDirectiveClass: 1229 case Stmt::OMPSimdDirectiveClass: 1230 case Stmt::OMPForDirectiveClass: 1231 case Stmt::OMPForSimdDirectiveClass: 1232 case Stmt::OMPSectionsDirectiveClass: 1233 case Stmt::OMPSectionDirectiveClass: 1234 case Stmt::OMPSingleDirectiveClass: 1235 case Stmt::OMPMasterDirectiveClass: 1236 case Stmt::OMPCriticalDirectiveClass: 1237 case Stmt::OMPParallelForDirectiveClass: 1238 case Stmt::OMPParallelForSimdDirectiveClass: 1239 case Stmt::OMPParallelSectionsDirectiveClass: 1240 case Stmt::OMPParallelMasterDirectiveClass: 1241 case Stmt::OMPParallelMaskedDirectiveClass: 1242 case Stmt::OMPTaskDirectiveClass: 1243 case Stmt::OMPTaskyieldDirectiveClass: 1244 case Stmt::OMPBarrierDirectiveClass: 1245 case Stmt::OMPTaskwaitDirectiveClass: 1246 case Stmt::OMPTaskgroupDirectiveClass: 1247 case Stmt::OMPFlushDirectiveClass: 1248 case Stmt::OMPDepobjDirectiveClass: 1249 case Stmt::OMPScanDirectiveClass: 1250 case Stmt::OMPOrderedDirectiveClass: 1251 case Stmt::OMPAtomicDirectiveClass: 1252 case Stmt::OMPTargetDirectiveClass: 1253 case Stmt::OMPTargetDataDirectiveClass: 1254 case Stmt::OMPTargetEnterDataDirectiveClass: 1255 case Stmt::OMPTargetExitDataDirectiveClass: 1256 case Stmt::OMPTargetParallelDirectiveClass: 1257 case Stmt::OMPTargetParallelForDirectiveClass: 1258 case Stmt::OMPTargetUpdateDirectiveClass: 1259 case Stmt::OMPTeamsDirectiveClass: 1260 case Stmt::OMPCancellationPointDirectiveClass: 1261 case Stmt::OMPCancelDirectiveClass: 1262 case Stmt::OMPTaskLoopDirectiveClass: 1263 case Stmt::OMPTaskLoopSimdDirectiveClass: 1264 case Stmt::OMPMasterTaskLoopDirectiveClass: 1265 case Stmt::OMPMasterTaskLoopSimdDirectiveClass: 1266 case Stmt::OMPParallelMasterTaskLoopDirectiveClass: 1267 case Stmt::OMPParallelMasterTaskLoopSimdDirectiveClass: 1268 case Stmt::OMPDistributeDirectiveClass: 1269 case Stmt::OMPDistributeParallelForDirectiveClass: 1270 case Stmt::OMPDistributeParallelForSimdDirectiveClass: 1271 case Stmt::OMPDistributeSimdDirectiveClass: 1272 case Stmt::OMPTargetParallelForSimdDirectiveClass: 1273 case Stmt::OMPTargetSimdDirectiveClass: 1274 case Stmt::OMPTeamsDistributeDirectiveClass: 1275 case Stmt::OMPTeamsDistributeSimdDirectiveClass: 1276 case Stmt::OMPTeamsDistributeParallelForSimdDirectiveClass: 1277 case Stmt::OMPTeamsDistributeParallelForDirectiveClass: 1278 case Stmt::OMPTargetTeamsDirectiveClass: 1279 case Stmt::OMPTargetTeamsDistributeDirectiveClass: 1280 case Stmt::OMPTargetTeamsDistributeParallelForDirectiveClass: 1281 case Stmt::OMPTargetTeamsDistributeParallelForSimdDirectiveClass: 1282 case Stmt::OMPTargetTeamsDistributeSimdDirectiveClass: 1283 case Stmt::OMPTileDirectiveClass: 1284 case Stmt::OMPInteropDirectiveClass: 1285 case Stmt::OMPDispatchDirectiveClass: 1286 case Stmt::OMPMaskedDirectiveClass: 1287 case Stmt::OMPGenericLoopDirectiveClass: 1288 case Stmt::OMPTeamsGenericLoopDirectiveClass: 1289 case Stmt::OMPTargetTeamsGenericLoopDirectiveClass: 1290 case Stmt::OMPParallelGenericLoopDirectiveClass: 1291 case Stmt::OMPTargetParallelGenericLoopDirectiveClass: 1292 case Stmt::CapturedStmtClass: 1293 case Stmt::OMPUnrollDirectiveClass: 1294 case Stmt::OMPMetaDirectiveClass: { 1295 const ExplodedNode *node = Bldr.generateSink(S, Pred, Pred->getState()); 1296 Engine.addAbortedBlock(node, currBldrCtx->getBlock()); 1297 break; 1298 } 1299 1300 case Stmt::ParenExprClass: 1301 llvm_unreachable("ParenExprs already handled."); 1302 case Stmt::GenericSelectionExprClass: 1303 llvm_unreachable("GenericSelectionExprs already handled."); 1304 // Cases that should never be evaluated simply because they shouldn't 1305 // appear in the CFG. 1306 case Stmt::BreakStmtClass: 1307 case Stmt::CaseStmtClass: 1308 case Stmt::CompoundStmtClass: 1309 case Stmt::ContinueStmtClass: 1310 case Stmt::CXXForRangeStmtClass: 1311 case Stmt::DefaultStmtClass: 1312 case Stmt::DoStmtClass: 1313 case Stmt::ForStmtClass: 1314 case Stmt::GotoStmtClass: 1315 case Stmt::IfStmtClass: 1316 case Stmt::IndirectGotoStmtClass: 1317 case Stmt::LabelStmtClass: 1318 case Stmt::NoStmtClass: 1319 case Stmt::NullStmtClass: 1320 case Stmt::SwitchStmtClass: 1321 case Stmt::WhileStmtClass: 1322 case Expr::MSDependentExistsStmtClass: 1323 llvm_unreachable("Stmt should not be in analyzer evaluation loop"); 1324 case Stmt::ImplicitValueInitExprClass: 1325 // These nodes are shared in the CFG and would case caching out. 1326 // Moreover, no additional evaluation required for them, the 1327 // analyzer can reconstruct these values from the AST. 1328 llvm_unreachable("Should be pruned from CFG"); 1329 1330 case Stmt::ObjCSubscriptRefExprClass: 1331 case Stmt::ObjCPropertyRefExprClass: 1332 llvm_unreachable("These are handled by PseudoObjectExpr"); 1333 1334 case Stmt::GNUNullExprClass: { 1335 // GNU __null is a pointer-width integer, not an actual pointer. 1336 ProgramStateRef state = Pred->getState(); 1337 state = state->BindExpr( 1338 S, Pred->getLocationContext(), 1339 svalBuilder.makeIntValWithWidth(getContext().VoidPtrTy, 0)); 1340 Bldr.generateNode(S, Pred, state); 1341 break; 1342 } 1343 1344 case Stmt::ObjCAtSynchronizedStmtClass: 1345 Bldr.takeNodes(Pred); 1346 VisitObjCAtSynchronizedStmt(cast<ObjCAtSynchronizedStmt>(S), Pred, Dst); 1347 Bldr.addNodes(Dst); 1348 break; 1349 1350 case Expr::ConstantExprClass: 1351 case Stmt::ExprWithCleanupsClass: 1352 // Handled due to fully linearised CFG. 1353 break; 1354 1355 case Stmt::CXXBindTemporaryExprClass: { 1356 Bldr.takeNodes(Pred); 1357 ExplodedNodeSet PreVisit; 1358 getCheckerManager().runCheckersForPreStmt(PreVisit, Pred, S, *this); 1359 ExplodedNodeSet Next; 1360 VisitCXXBindTemporaryExpr(cast<CXXBindTemporaryExpr>(S), PreVisit, Next); 1361 getCheckerManager().runCheckersForPostStmt(Dst, Next, S, *this); 1362 Bldr.addNodes(Dst); 1363 break; 1364 } 1365 1366 // Cases not handled yet; but will handle some day. 1367 case Stmt::DesignatedInitExprClass: 1368 case Stmt::DesignatedInitUpdateExprClass: 1369 case Stmt::ArrayInitLoopExprClass: 1370 case Stmt::ArrayInitIndexExprClass: 1371 case Stmt::ExtVectorElementExprClass: 1372 case Stmt::ImaginaryLiteralClass: 1373 case Stmt::ObjCAtCatchStmtClass: 1374 case Stmt::ObjCAtFinallyStmtClass: 1375 case Stmt::ObjCAtTryStmtClass: 1376 case Stmt::ObjCAutoreleasePoolStmtClass: 1377 case Stmt::ObjCEncodeExprClass: 1378 case Stmt::ObjCIsaExprClass: 1379 case Stmt::ObjCProtocolExprClass: 1380 case Stmt::ObjCSelectorExprClass: 1381 case Stmt::ParenListExprClass: 1382 case Stmt::ShuffleVectorExprClass: 1383 case Stmt::ConvertVectorExprClass: 1384 case Stmt::VAArgExprClass: 1385 case Stmt::CUDAKernelCallExprClass: 1386 case Stmt::OpaqueValueExprClass: 1387 case Stmt::AsTypeExprClass: 1388 case Stmt::ConceptSpecializationExprClass: 1389 case Stmt::CXXRewrittenBinaryOperatorClass: 1390 case Stmt::RequiresExprClass: 1391 // Fall through. 1392 1393 // Cases we intentionally don't evaluate, since they don't need 1394 // to be explicitly evaluated. 1395 case Stmt::PredefinedExprClass: 1396 case Stmt::AddrLabelExprClass: 1397 case Stmt::AttributedStmtClass: 1398 case Stmt::IntegerLiteralClass: 1399 case Stmt::FixedPointLiteralClass: 1400 case Stmt::CharacterLiteralClass: 1401 case Stmt::CXXScalarValueInitExprClass: 1402 case Stmt::CXXBoolLiteralExprClass: 1403 case Stmt::ObjCBoolLiteralExprClass: 1404 case Stmt::ObjCAvailabilityCheckExprClass: 1405 case Stmt::FloatingLiteralClass: 1406 case Stmt::NoInitExprClass: 1407 case Stmt::SizeOfPackExprClass: 1408 case Stmt::StringLiteralClass: 1409 case Stmt::SourceLocExprClass: 1410 case Stmt::ObjCStringLiteralClass: 1411 case Stmt::CXXPseudoDestructorExprClass: 1412 case Stmt::SubstNonTypeTemplateParmExprClass: 1413 case Stmt::CXXNullPtrLiteralExprClass: 1414 case Stmt::OMPArraySectionExprClass: 1415 case Stmt::OMPArrayShapingExprClass: 1416 case Stmt::OMPIteratorExprClass: 1417 case Stmt::SYCLUniqueStableNameExprClass: 1418 case Stmt::TypeTraitExprClass: { 1419 Bldr.takeNodes(Pred); 1420 ExplodedNodeSet preVisit; 1421 getCheckerManager().runCheckersForPreStmt(preVisit, Pred, S, *this); 1422 getCheckerManager().runCheckersForPostStmt(Dst, preVisit, S, *this); 1423 Bldr.addNodes(Dst); 1424 break; 1425 } 1426 1427 case Stmt::CXXDefaultArgExprClass: 1428 case Stmt::CXXDefaultInitExprClass: { 1429 Bldr.takeNodes(Pred); 1430 ExplodedNodeSet PreVisit; 1431 getCheckerManager().runCheckersForPreStmt(PreVisit, Pred, S, *this); 1432 1433 ExplodedNodeSet Tmp; 1434 StmtNodeBuilder Bldr2(PreVisit, Tmp, *currBldrCtx); 1435 1436 const Expr *ArgE; 1437 if (const auto *DefE = dyn_cast<CXXDefaultArgExpr>(S)) 1438 ArgE = DefE->getExpr(); 1439 else if (const auto *DefE = dyn_cast<CXXDefaultInitExpr>(S)) 1440 ArgE = DefE->getExpr(); 1441 else 1442 llvm_unreachable("unknown constant wrapper kind"); 1443 1444 bool IsTemporary = false; 1445 if (const auto *MTE = dyn_cast<MaterializeTemporaryExpr>(ArgE)) { 1446 ArgE = MTE->getSubExpr(); 1447 IsTemporary = true; 1448 } 1449 1450 Optional<SVal> ConstantVal = svalBuilder.getConstantVal(ArgE); 1451 if (!ConstantVal) 1452 ConstantVal = UnknownVal(); 1453 1454 const LocationContext *LCtx = Pred->getLocationContext(); 1455 for (const auto I : PreVisit) { 1456 ProgramStateRef State = I->getState(); 1457 State = State->BindExpr(S, LCtx, *ConstantVal); 1458 if (IsTemporary) 1459 State = createTemporaryRegionIfNeeded(State, LCtx, 1460 cast<Expr>(S), 1461 cast<Expr>(S)); 1462 Bldr2.generateNode(S, I, State); 1463 } 1464 1465 getCheckerManager().runCheckersForPostStmt(Dst, Tmp, S, *this); 1466 Bldr.addNodes(Dst); 1467 break; 1468 } 1469 1470 // Cases we evaluate as opaque expressions, conjuring a symbol. 1471 case Stmt::CXXStdInitializerListExprClass: 1472 case Expr::ObjCArrayLiteralClass: 1473 case Expr::ObjCDictionaryLiteralClass: 1474 case Expr::ObjCBoxedExprClass: { 1475 Bldr.takeNodes(Pred); 1476 1477 ExplodedNodeSet preVisit; 1478 getCheckerManager().runCheckersForPreStmt(preVisit, Pred, S, *this); 1479 1480 ExplodedNodeSet Tmp; 1481 StmtNodeBuilder Bldr2(preVisit, Tmp, *currBldrCtx); 1482 1483 const auto *Ex = cast<Expr>(S); 1484 QualType resultType = Ex->getType(); 1485 1486 for (const auto N : preVisit) { 1487 const LocationContext *LCtx = N->getLocationContext(); 1488 SVal result = svalBuilder.conjureSymbolVal(nullptr, Ex, LCtx, 1489 resultType, 1490 currBldrCtx->blockCount()); 1491 ProgramStateRef State = N->getState()->BindExpr(Ex, LCtx, result); 1492 1493 // Escape pointers passed into the list, unless it's an ObjC boxed 1494 // expression which is not a boxable C structure. 1495 if (!(isa<ObjCBoxedExpr>(Ex) && 1496 !cast<ObjCBoxedExpr>(Ex)->getSubExpr() 1497 ->getType()->isRecordType())) 1498 for (auto Child : Ex->children()) { 1499 assert(Child); 1500 SVal Val = State->getSVal(Child, LCtx); 1501 State = escapeValues(State, Val, PSK_EscapeOther); 1502 } 1503 1504 Bldr2.generateNode(S, N, State); 1505 } 1506 1507 getCheckerManager().runCheckersForPostStmt(Dst, Tmp, S, *this); 1508 Bldr.addNodes(Dst); 1509 break; 1510 } 1511 1512 case Stmt::ArraySubscriptExprClass: 1513 Bldr.takeNodes(Pred); 1514 VisitArraySubscriptExpr(cast<ArraySubscriptExpr>(S), Pred, Dst); 1515 Bldr.addNodes(Dst); 1516 break; 1517 1518 case Stmt::MatrixSubscriptExprClass: 1519 llvm_unreachable("Support for MatrixSubscriptExpr is not implemented."); 1520 break; 1521 1522 case Stmt::GCCAsmStmtClass: 1523 Bldr.takeNodes(Pred); 1524 VisitGCCAsmStmt(cast<GCCAsmStmt>(S), Pred, Dst); 1525 Bldr.addNodes(Dst); 1526 break; 1527 1528 case Stmt::MSAsmStmtClass: 1529 Bldr.takeNodes(Pred); 1530 VisitMSAsmStmt(cast<MSAsmStmt>(S), Pred, Dst); 1531 Bldr.addNodes(Dst); 1532 break; 1533 1534 case Stmt::BlockExprClass: 1535 Bldr.takeNodes(Pred); 1536 VisitBlockExpr(cast<BlockExpr>(S), Pred, Dst); 1537 Bldr.addNodes(Dst); 1538 break; 1539 1540 case Stmt::LambdaExprClass: 1541 if (AMgr.options.ShouldInlineLambdas) { 1542 Bldr.takeNodes(Pred); 1543 VisitLambdaExpr(cast<LambdaExpr>(S), Pred, Dst); 1544 Bldr.addNodes(Dst); 1545 } else { 1546 const ExplodedNode *node = Bldr.generateSink(S, Pred, Pred->getState()); 1547 Engine.addAbortedBlock(node, currBldrCtx->getBlock()); 1548 } 1549 break; 1550 1551 case Stmt::BinaryOperatorClass: { 1552 const auto *B = cast<BinaryOperator>(S); 1553 if (B->isLogicalOp()) { 1554 Bldr.takeNodes(Pred); 1555 VisitLogicalExpr(B, Pred, Dst); 1556 Bldr.addNodes(Dst); 1557 break; 1558 } 1559 else if (B->getOpcode() == BO_Comma) { 1560 ProgramStateRef state = Pred->getState(); 1561 Bldr.generateNode(B, Pred, 1562 state->BindExpr(B, Pred->getLocationContext(), 1563 state->getSVal(B->getRHS(), 1564 Pred->getLocationContext()))); 1565 break; 1566 } 1567 1568 Bldr.takeNodes(Pred); 1569 1570 if (AMgr.options.ShouldEagerlyAssume && 1571 (B->isRelationalOp() || B->isEqualityOp())) { 1572 ExplodedNodeSet Tmp; 1573 VisitBinaryOperator(cast<BinaryOperator>(S), Pred, Tmp); 1574 evalEagerlyAssumeBinOpBifurcation(Dst, Tmp, cast<Expr>(S)); 1575 } 1576 else 1577 VisitBinaryOperator(cast<BinaryOperator>(S), Pred, Dst); 1578 1579 Bldr.addNodes(Dst); 1580 break; 1581 } 1582 1583 case Stmt::CXXOperatorCallExprClass: { 1584 const auto *OCE = cast<CXXOperatorCallExpr>(S); 1585 1586 // For instance method operators, make sure the 'this' argument has a 1587 // valid region. 1588 const Decl *Callee = OCE->getCalleeDecl(); 1589 if (const auto *MD = dyn_cast_or_null<CXXMethodDecl>(Callee)) { 1590 if (MD->isInstance()) { 1591 ProgramStateRef State = Pred->getState(); 1592 const LocationContext *LCtx = Pred->getLocationContext(); 1593 ProgramStateRef NewState = 1594 createTemporaryRegionIfNeeded(State, LCtx, OCE->getArg(0)); 1595 if (NewState != State) { 1596 Pred = Bldr.generateNode(OCE, Pred, NewState, /*tag=*/nullptr, 1597 ProgramPoint::PreStmtKind); 1598 // Did we cache out? 1599 if (!Pred) 1600 break; 1601 } 1602 } 1603 } 1604 // FALLTHROUGH 1605 LLVM_FALLTHROUGH; 1606 } 1607 1608 case Stmt::CallExprClass: 1609 case Stmt::CXXMemberCallExprClass: 1610 case Stmt::UserDefinedLiteralClass: 1611 Bldr.takeNodes(Pred); 1612 VisitCallExpr(cast<CallExpr>(S), Pred, Dst); 1613 Bldr.addNodes(Dst); 1614 break; 1615 1616 case Stmt::CXXCatchStmtClass: 1617 Bldr.takeNodes(Pred); 1618 VisitCXXCatchStmt(cast<CXXCatchStmt>(S), Pred, Dst); 1619 Bldr.addNodes(Dst); 1620 break; 1621 1622 case Stmt::CXXTemporaryObjectExprClass: 1623 case Stmt::CXXConstructExprClass: 1624 Bldr.takeNodes(Pred); 1625 VisitCXXConstructExpr(cast<CXXConstructExpr>(S), Pred, Dst); 1626 Bldr.addNodes(Dst); 1627 break; 1628 1629 case Stmt::CXXInheritedCtorInitExprClass: 1630 Bldr.takeNodes(Pred); 1631 VisitCXXInheritedCtorInitExpr(cast<CXXInheritedCtorInitExpr>(S), Pred, 1632 Dst); 1633 Bldr.addNodes(Dst); 1634 break; 1635 1636 case Stmt::CXXNewExprClass: { 1637 Bldr.takeNodes(Pred); 1638 1639 ExplodedNodeSet PreVisit; 1640 getCheckerManager().runCheckersForPreStmt(PreVisit, Pred, S, *this); 1641 1642 ExplodedNodeSet PostVisit; 1643 for (const auto i : PreVisit) 1644 VisitCXXNewExpr(cast<CXXNewExpr>(S), i, PostVisit); 1645 1646 getCheckerManager().runCheckersForPostStmt(Dst, PostVisit, S, *this); 1647 Bldr.addNodes(Dst); 1648 break; 1649 } 1650 1651 case Stmt::CXXDeleteExprClass: { 1652 Bldr.takeNodes(Pred); 1653 ExplodedNodeSet PreVisit; 1654 const auto *CDE = cast<CXXDeleteExpr>(S); 1655 getCheckerManager().runCheckersForPreStmt(PreVisit, Pred, S, *this); 1656 ExplodedNodeSet PostVisit; 1657 getCheckerManager().runCheckersForPostStmt(PostVisit, PreVisit, S, *this); 1658 1659 for (const auto i : PostVisit) 1660 VisitCXXDeleteExpr(CDE, i, Dst); 1661 1662 Bldr.addNodes(Dst); 1663 break; 1664 } 1665 // FIXME: ChooseExpr is really a constant. We need to fix 1666 // the CFG do not model them as explicit control-flow. 1667 1668 case Stmt::ChooseExprClass: { // __builtin_choose_expr 1669 Bldr.takeNodes(Pred); 1670 const auto *C = cast<ChooseExpr>(S); 1671 VisitGuardedExpr(C, C->getLHS(), C->getRHS(), Pred, Dst); 1672 Bldr.addNodes(Dst); 1673 break; 1674 } 1675 1676 case Stmt::CompoundAssignOperatorClass: 1677 Bldr.takeNodes(Pred); 1678 VisitBinaryOperator(cast<BinaryOperator>(S), Pred, Dst); 1679 Bldr.addNodes(Dst); 1680 break; 1681 1682 case Stmt::CompoundLiteralExprClass: 1683 Bldr.takeNodes(Pred); 1684 VisitCompoundLiteralExpr(cast<CompoundLiteralExpr>(S), Pred, Dst); 1685 Bldr.addNodes(Dst); 1686 break; 1687 1688 case Stmt::BinaryConditionalOperatorClass: 1689 case Stmt::ConditionalOperatorClass: { // '?' operator 1690 Bldr.takeNodes(Pred); 1691 const auto *C = cast<AbstractConditionalOperator>(S); 1692 VisitGuardedExpr(C, C->getTrueExpr(), C->getFalseExpr(), Pred, Dst); 1693 Bldr.addNodes(Dst); 1694 break; 1695 } 1696 1697 case Stmt::CXXThisExprClass: 1698 Bldr.takeNodes(Pred); 1699 VisitCXXThisExpr(cast<CXXThisExpr>(S), Pred, Dst); 1700 Bldr.addNodes(Dst); 1701 break; 1702 1703 case Stmt::DeclRefExprClass: { 1704 Bldr.takeNodes(Pred); 1705 const auto *DE = cast<DeclRefExpr>(S); 1706 VisitCommonDeclRefExpr(DE, DE->getDecl(), Pred, Dst); 1707 Bldr.addNodes(Dst); 1708 break; 1709 } 1710 1711 case Stmt::DeclStmtClass: 1712 Bldr.takeNodes(Pred); 1713 VisitDeclStmt(cast<DeclStmt>(S), Pred, Dst); 1714 Bldr.addNodes(Dst); 1715 break; 1716 1717 case Stmt::ImplicitCastExprClass: 1718 case Stmt::CStyleCastExprClass: 1719 case Stmt::CXXStaticCastExprClass: 1720 case Stmt::CXXDynamicCastExprClass: 1721 case Stmt::CXXReinterpretCastExprClass: 1722 case Stmt::CXXConstCastExprClass: 1723 case Stmt::CXXFunctionalCastExprClass: 1724 case Stmt::BuiltinBitCastExprClass: 1725 case Stmt::ObjCBridgedCastExprClass: 1726 case Stmt::CXXAddrspaceCastExprClass: { 1727 Bldr.takeNodes(Pred); 1728 const auto *C = cast<CastExpr>(S); 1729 ExplodedNodeSet dstExpr; 1730 VisitCast(C, C->getSubExpr(), Pred, dstExpr); 1731 1732 // Handle the postvisit checks. 1733 getCheckerManager().runCheckersForPostStmt(Dst, dstExpr, C, *this); 1734 Bldr.addNodes(Dst); 1735 break; 1736 } 1737 1738 case Expr::MaterializeTemporaryExprClass: { 1739 Bldr.takeNodes(Pred); 1740 const auto *MTE = cast<MaterializeTemporaryExpr>(S); 1741 ExplodedNodeSet dstPrevisit; 1742 getCheckerManager().runCheckersForPreStmt(dstPrevisit, Pred, MTE, *this); 1743 ExplodedNodeSet dstExpr; 1744 for (const auto i : dstPrevisit) 1745 CreateCXXTemporaryObject(MTE, i, dstExpr); 1746 getCheckerManager().runCheckersForPostStmt(Dst, dstExpr, MTE, *this); 1747 Bldr.addNodes(Dst); 1748 break; 1749 } 1750 1751 case Stmt::InitListExprClass: 1752 Bldr.takeNodes(Pred); 1753 VisitInitListExpr(cast<InitListExpr>(S), Pred, Dst); 1754 Bldr.addNodes(Dst); 1755 break; 1756 1757 case Stmt::MemberExprClass: 1758 Bldr.takeNodes(Pred); 1759 VisitMemberExpr(cast<MemberExpr>(S), Pred, Dst); 1760 Bldr.addNodes(Dst); 1761 break; 1762 1763 case Stmt::AtomicExprClass: 1764 Bldr.takeNodes(Pred); 1765 VisitAtomicExpr(cast<AtomicExpr>(S), Pred, Dst); 1766 Bldr.addNodes(Dst); 1767 break; 1768 1769 case Stmt::ObjCIvarRefExprClass: 1770 Bldr.takeNodes(Pred); 1771 VisitLvalObjCIvarRefExpr(cast<ObjCIvarRefExpr>(S), Pred, Dst); 1772 Bldr.addNodes(Dst); 1773 break; 1774 1775 case Stmt::ObjCForCollectionStmtClass: 1776 Bldr.takeNodes(Pred); 1777 VisitObjCForCollectionStmt(cast<ObjCForCollectionStmt>(S), Pred, Dst); 1778 Bldr.addNodes(Dst); 1779 break; 1780 1781 case Stmt::ObjCMessageExprClass: 1782 Bldr.takeNodes(Pred); 1783 VisitObjCMessage(cast<ObjCMessageExpr>(S), Pred, Dst); 1784 Bldr.addNodes(Dst); 1785 break; 1786 1787 case Stmt::ObjCAtThrowStmtClass: 1788 case Stmt::CXXThrowExprClass: 1789 // FIXME: This is not complete. We basically treat @throw as 1790 // an abort. 1791 Bldr.generateSink(S, Pred, Pred->getState()); 1792 break; 1793 1794 case Stmt::ReturnStmtClass: 1795 Bldr.takeNodes(Pred); 1796 VisitReturnStmt(cast<ReturnStmt>(S), Pred, Dst); 1797 Bldr.addNodes(Dst); 1798 break; 1799 1800 case Stmt::OffsetOfExprClass: { 1801 Bldr.takeNodes(Pred); 1802 ExplodedNodeSet PreVisit; 1803 getCheckerManager().runCheckersForPreStmt(PreVisit, Pred, S, *this); 1804 1805 ExplodedNodeSet PostVisit; 1806 for (const auto Node : PreVisit) 1807 VisitOffsetOfExpr(cast<OffsetOfExpr>(S), Node, PostVisit); 1808 1809 getCheckerManager().runCheckersForPostStmt(Dst, PostVisit, S, *this); 1810 Bldr.addNodes(Dst); 1811 break; 1812 } 1813 1814 case Stmt::UnaryExprOrTypeTraitExprClass: 1815 Bldr.takeNodes(Pred); 1816 VisitUnaryExprOrTypeTraitExpr(cast<UnaryExprOrTypeTraitExpr>(S), 1817 Pred, Dst); 1818 Bldr.addNodes(Dst); 1819 break; 1820 1821 case Stmt::StmtExprClass: { 1822 const auto *SE = cast<StmtExpr>(S); 1823 1824 if (SE->getSubStmt()->body_empty()) { 1825 // Empty statement expression. 1826 assert(SE->getType() == getContext().VoidTy 1827 && "Empty statement expression must have void type."); 1828 break; 1829 } 1830 1831 if (const auto *LastExpr = 1832 dyn_cast<Expr>(*SE->getSubStmt()->body_rbegin())) { 1833 ProgramStateRef state = Pred->getState(); 1834 Bldr.generateNode(SE, Pred, 1835 state->BindExpr(SE, Pred->getLocationContext(), 1836 state->getSVal(LastExpr, 1837 Pred->getLocationContext()))); 1838 } 1839 break; 1840 } 1841 1842 case Stmt::UnaryOperatorClass: { 1843 Bldr.takeNodes(Pred); 1844 const auto *U = cast<UnaryOperator>(S); 1845 if (AMgr.options.ShouldEagerlyAssume && (U->getOpcode() == UO_LNot)) { 1846 ExplodedNodeSet Tmp; 1847 VisitUnaryOperator(U, Pred, Tmp); 1848 evalEagerlyAssumeBinOpBifurcation(Dst, Tmp, U); 1849 } 1850 else 1851 VisitUnaryOperator(U, Pred, Dst); 1852 Bldr.addNodes(Dst); 1853 break; 1854 } 1855 1856 case Stmt::PseudoObjectExprClass: { 1857 Bldr.takeNodes(Pred); 1858 ProgramStateRef state = Pred->getState(); 1859 const auto *PE = cast<PseudoObjectExpr>(S); 1860 if (const Expr *Result = PE->getResultExpr()) { 1861 SVal V = state->getSVal(Result, Pred->getLocationContext()); 1862 Bldr.generateNode(S, Pred, 1863 state->BindExpr(S, Pred->getLocationContext(), V)); 1864 } 1865 else 1866 Bldr.generateNode(S, Pred, 1867 state->BindExpr(S, Pred->getLocationContext(), 1868 UnknownVal())); 1869 1870 Bldr.addNodes(Dst); 1871 break; 1872 } 1873 1874 case Expr::ObjCIndirectCopyRestoreExprClass: { 1875 // ObjCIndirectCopyRestoreExpr implies passing a temporary for 1876 // correctness of lifetime management. Due to limited analysis 1877 // of ARC, this is implemented as direct arg passing. 1878 Bldr.takeNodes(Pred); 1879 ProgramStateRef state = Pred->getState(); 1880 const auto *OIE = cast<ObjCIndirectCopyRestoreExpr>(S); 1881 const Expr *E = OIE->getSubExpr(); 1882 SVal V = state->getSVal(E, Pred->getLocationContext()); 1883 Bldr.generateNode(S, Pred, 1884 state->BindExpr(S, Pred->getLocationContext(), V)); 1885 Bldr.addNodes(Dst); 1886 break; 1887 } 1888 } 1889 } 1890 1891 bool ExprEngine::replayWithoutInlining(ExplodedNode *N, 1892 const LocationContext *CalleeLC) { 1893 const StackFrameContext *CalleeSF = CalleeLC->getStackFrame(); 1894 const StackFrameContext *CallerSF = CalleeSF->getParent()->getStackFrame(); 1895 assert(CalleeSF && CallerSF); 1896 ExplodedNode *BeforeProcessingCall = nullptr; 1897 const Stmt *CE = CalleeSF->getCallSite(); 1898 1899 // Find the first node before we started processing the call expression. 1900 while (N) { 1901 ProgramPoint L = N->getLocation(); 1902 BeforeProcessingCall = N; 1903 N = N->pred_empty() ? nullptr : *(N->pred_begin()); 1904 1905 // Skip the nodes corresponding to the inlined code. 1906 if (L.getStackFrame() != CallerSF) 1907 continue; 1908 // We reached the caller. Find the node right before we started 1909 // processing the call. 1910 if (L.isPurgeKind()) 1911 continue; 1912 if (L.getAs<PreImplicitCall>()) 1913 continue; 1914 if (L.getAs<CallEnter>()) 1915 continue; 1916 if (Optional<StmtPoint> SP = L.getAs<StmtPoint>()) 1917 if (SP->getStmt() == CE) 1918 continue; 1919 break; 1920 } 1921 1922 if (!BeforeProcessingCall) 1923 return false; 1924 1925 // TODO: Clean up the unneeded nodes. 1926 1927 // Build an Epsilon node from which we will restart the analyzes. 1928 // Note that CE is permitted to be NULL! 1929 ProgramPoint NewNodeLoc = 1930 EpsilonPoint(BeforeProcessingCall->getLocationContext(), CE); 1931 // Add the special flag to GDM to signal retrying with no inlining. 1932 // Note, changing the state ensures that we are not going to cache out. 1933 ProgramStateRef NewNodeState = BeforeProcessingCall->getState(); 1934 NewNodeState = 1935 NewNodeState->set<ReplayWithoutInlining>(const_cast<Stmt *>(CE)); 1936 1937 // Make the new node a successor of BeforeProcessingCall. 1938 bool IsNew = false; 1939 ExplodedNode *NewNode = G.getNode(NewNodeLoc, NewNodeState, false, &IsNew); 1940 // We cached out at this point. Caching out is common due to us backtracking 1941 // from the inlined function, which might spawn several paths. 1942 if (!IsNew) 1943 return true; 1944 1945 NewNode->addPredecessor(BeforeProcessingCall, G); 1946 1947 // Add the new node to the work list. 1948 Engine.enqueueStmtNode(NewNode, CalleeSF->getCallSiteBlock(), 1949 CalleeSF->getIndex()); 1950 NumTimesRetriedWithoutInlining++; 1951 return true; 1952 } 1953 1954 /// Block entrance. (Update counters). 1955 void ExprEngine::processCFGBlockEntrance(const BlockEdge &L, 1956 NodeBuilderWithSinks &nodeBuilder, 1957 ExplodedNode *Pred) { 1958 PrettyStackTraceLocationContext CrashInfo(Pred->getLocationContext()); 1959 // If we reach a loop which has a known bound (and meets 1960 // other constraints) then consider completely unrolling it. 1961 if(AMgr.options.ShouldUnrollLoops) { 1962 unsigned maxBlockVisitOnPath = AMgr.options.maxBlockVisitOnPath; 1963 const Stmt *Term = nodeBuilder.getContext().getBlock()->getTerminatorStmt(); 1964 if (Term) { 1965 ProgramStateRef NewState = updateLoopStack(Term, AMgr.getASTContext(), 1966 Pred, maxBlockVisitOnPath); 1967 if (NewState != Pred->getState()) { 1968 ExplodedNode *UpdatedNode = nodeBuilder.generateNode(NewState, Pred); 1969 if (!UpdatedNode) 1970 return; 1971 Pred = UpdatedNode; 1972 } 1973 } 1974 // Is we are inside an unrolled loop then no need the check the counters. 1975 if(isUnrolledState(Pred->getState())) 1976 return; 1977 } 1978 1979 // If this block is terminated by a loop and it has already been visited the 1980 // maximum number of times, widen the loop. 1981 unsigned int BlockCount = nodeBuilder.getContext().blockCount(); 1982 if (BlockCount == AMgr.options.maxBlockVisitOnPath - 1 && 1983 AMgr.options.ShouldWidenLoops) { 1984 const Stmt *Term = nodeBuilder.getContext().getBlock()->getTerminatorStmt(); 1985 if (!isa_and_nonnull<ForStmt, WhileStmt, DoStmt>(Term)) 1986 return; 1987 // Widen. 1988 const LocationContext *LCtx = Pred->getLocationContext(); 1989 ProgramStateRef WidenedState = 1990 getWidenedLoopState(Pred->getState(), LCtx, BlockCount, Term); 1991 nodeBuilder.generateNode(WidenedState, Pred); 1992 return; 1993 } 1994 1995 // FIXME: Refactor this into a checker. 1996 if (BlockCount >= AMgr.options.maxBlockVisitOnPath) { 1997 static SimpleProgramPointTag tag(TagProviderName, "Block count exceeded"); 1998 const ExplodedNode *Sink = 1999 nodeBuilder.generateSink(Pred->getState(), Pred, &tag); 2000 2001 // Check if we stopped at the top level function or not. 2002 // Root node should have the location context of the top most function. 2003 const LocationContext *CalleeLC = Pred->getLocation().getLocationContext(); 2004 const LocationContext *CalleeSF = CalleeLC->getStackFrame(); 2005 const LocationContext *RootLC = 2006 (*G.roots_begin())->getLocation().getLocationContext(); 2007 if (RootLC->getStackFrame() != CalleeSF) { 2008 Engine.FunctionSummaries->markReachedMaxBlockCount(CalleeSF->getDecl()); 2009 2010 // Re-run the call evaluation without inlining it, by storing the 2011 // no-inlining policy in the state and enqueuing the new work item on 2012 // the list. Replay should almost never fail. Use the stats to catch it 2013 // if it does. 2014 if ((!AMgr.options.NoRetryExhausted && 2015 replayWithoutInlining(Pred, CalleeLC))) 2016 return; 2017 NumMaxBlockCountReachedInInlined++; 2018 } else 2019 NumMaxBlockCountReached++; 2020 2021 // Make sink nodes as exhausted(for stats) only if retry failed. 2022 Engine.blocksExhausted.push_back(std::make_pair(L, Sink)); 2023 } 2024 } 2025 2026 //===----------------------------------------------------------------------===// 2027 // Branch processing. 2028 //===----------------------------------------------------------------------===// 2029 2030 /// RecoverCastedSymbol - A helper function for ProcessBranch that is used 2031 /// to try to recover some path-sensitivity for casts of symbolic 2032 /// integers that promote their values (which are currently not tracked well). 2033 /// This function returns the SVal bound to Condition->IgnoreCasts if all the 2034 // cast(s) did was sign-extend the original value. 2035 static SVal RecoverCastedSymbol(ProgramStateRef state, 2036 const Stmt *Condition, 2037 const LocationContext *LCtx, 2038 ASTContext &Ctx) { 2039 2040 const auto *Ex = dyn_cast<Expr>(Condition); 2041 if (!Ex) 2042 return UnknownVal(); 2043 2044 uint64_t bits = 0; 2045 bool bitsInit = false; 2046 2047 while (const auto *CE = dyn_cast<CastExpr>(Ex)) { 2048 QualType T = CE->getType(); 2049 2050 if (!T->isIntegralOrEnumerationType()) 2051 return UnknownVal(); 2052 2053 uint64_t newBits = Ctx.getTypeSize(T); 2054 if (!bitsInit || newBits < bits) { 2055 bitsInit = true; 2056 bits = newBits; 2057 } 2058 2059 Ex = CE->getSubExpr(); 2060 } 2061 2062 // We reached a non-cast. Is it a symbolic value? 2063 QualType T = Ex->getType(); 2064 2065 if (!bitsInit || !T->isIntegralOrEnumerationType() || 2066 Ctx.getTypeSize(T) > bits) 2067 return UnknownVal(); 2068 2069 return state->getSVal(Ex, LCtx); 2070 } 2071 2072 #ifndef NDEBUG 2073 static const Stmt *getRightmostLeaf(const Stmt *Condition) { 2074 while (Condition) { 2075 const auto *BO = dyn_cast<BinaryOperator>(Condition); 2076 if (!BO || !BO->isLogicalOp()) { 2077 return Condition; 2078 } 2079 Condition = BO->getRHS()->IgnoreParens(); 2080 } 2081 return nullptr; 2082 } 2083 #endif 2084 2085 // Returns the condition the branch at the end of 'B' depends on and whose value 2086 // has been evaluated within 'B'. 2087 // In most cases, the terminator condition of 'B' will be evaluated fully in 2088 // the last statement of 'B'; in those cases, the resolved condition is the 2089 // given 'Condition'. 2090 // If the condition of the branch is a logical binary operator tree, the CFG is 2091 // optimized: in that case, we know that the expression formed by all but the 2092 // rightmost leaf of the logical binary operator tree must be true, and thus 2093 // the branch condition is at this point equivalent to the truth value of that 2094 // rightmost leaf; the CFG block thus only evaluates this rightmost leaf 2095 // expression in its final statement. As the full condition in that case was 2096 // not evaluated, and is thus not in the SVal cache, we need to use that leaf 2097 // expression to evaluate the truth value of the condition in the current state 2098 // space. 2099 static const Stmt *ResolveCondition(const Stmt *Condition, 2100 const CFGBlock *B) { 2101 if (const auto *Ex = dyn_cast<Expr>(Condition)) 2102 Condition = Ex->IgnoreParens(); 2103 2104 const auto *BO = dyn_cast<BinaryOperator>(Condition); 2105 if (!BO || !BO->isLogicalOp()) 2106 return Condition; 2107 2108 assert(B->getTerminator().isStmtBranch() && 2109 "Other kinds of branches are handled separately!"); 2110 2111 // For logical operations, we still have the case where some branches 2112 // use the traditional "merge" approach and others sink the branch 2113 // directly into the basic blocks representing the logical operation. 2114 // We need to distinguish between those two cases here. 2115 2116 // The invariants are still shifting, but it is possible that the 2117 // last element in a CFGBlock is not a CFGStmt. Look for the last 2118 // CFGStmt as the value of the condition. 2119 CFGBlock::const_reverse_iterator I = B->rbegin(), E = B->rend(); 2120 for (; I != E; ++I) { 2121 CFGElement Elem = *I; 2122 Optional<CFGStmt> CS = Elem.getAs<CFGStmt>(); 2123 if (!CS) 2124 continue; 2125 const Stmt *LastStmt = CS->getStmt(); 2126 assert(LastStmt == Condition || LastStmt == getRightmostLeaf(Condition)); 2127 return LastStmt; 2128 } 2129 llvm_unreachable("could not resolve condition"); 2130 } 2131 2132 using ObjCForLctxPair = 2133 std::pair<const ObjCForCollectionStmt *, const LocationContext *>; 2134 2135 REGISTER_MAP_WITH_PROGRAMSTATE(ObjCForHasMoreIterations, ObjCForLctxPair, bool) 2136 2137 ProgramStateRef ExprEngine::setWhetherHasMoreIteration( 2138 ProgramStateRef State, const ObjCForCollectionStmt *O, 2139 const LocationContext *LC, bool HasMoreIteraton) { 2140 assert(!State->contains<ObjCForHasMoreIterations>({O, LC})); 2141 return State->set<ObjCForHasMoreIterations>({O, LC}, HasMoreIteraton); 2142 } 2143 2144 ProgramStateRef 2145 ExprEngine::removeIterationState(ProgramStateRef State, 2146 const ObjCForCollectionStmt *O, 2147 const LocationContext *LC) { 2148 assert(State->contains<ObjCForHasMoreIterations>({O, LC})); 2149 return State->remove<ObjCForHasMoreIterations>({O, LC}); 2150 } 2151 2152 bool ExprEngine::hasMoreIteration(ProgramStateRef State, 2153 const ObjCForCollectionStmt *O, 2154 const LocationContext *LC) { 2155 assert(State->contains<ObjCForHasMoreIterations>({O, LC})); 2156 return *State->get<ObjCForHasMoreIterations>({O, LC}); 2157 } 2158 2159 /// Split the state on whether there are any more iterations left for this loop. 2160 /// Returns a (HasMoreIteration, HasNoMoreIteration) pair, or None when the 2161 /// acquisition of the loop condition value failed. 2162 static Optional<std::pair<ProgramStateRef, ProgramStateRef>> 2163 assumeCondition(const Stmt *Condition, ExplodedNode *N) { 2164 ProgramStateRef State = N->getState(); 2165 if (const auto *ObjCFor = dyn_cast<ObjCForCollectionStmt>(Condition)) { 2166 bool HasMoreIteraton = 2167 ExprEngine::hasMoreIteration(State, ObjCFor, N->getLocationContext()); 2168 // Checkers have already ran on branch conditions, so the current 2169 // information as to whether the loop has more iteration becomes outdated 2170 // after this point. 2171 State = ExprEngine::removeIterationState(State, ObjCFor, 2172 N->getLocationContext()); 2173 if (HasMoreIteraton) 2174 return std::pair<ProgramStateRef, ProgramStateRef>{State, nullptr}; 2175 else 2176 return std::pair<ProgramStateRef, ProgramStateRef>{nullptr, State}; 2177 } 2178 SVal X = State->getSVal(Condition, N->getLocationContext()); 2179 2180 if (X.isUnknownOrUndef()) { 2181 // Give it a chance to recover from unknown. 2182 if (const auto *Ex = dyn_cast<Expr>(Condition)) { 2183 if (Ex->getType()->isIntegralOrEnumerationType()) { 2184 // Try to recover some path-sensitivity. Right now casts of symbolic 2185 // integers that promote their values are currently not tracked well. 2186 // If 'Condition' is such an expression, try and recover the 2187 // underlying value and use that instead. 2188 SVal recovered = 2189 RecoverCastedSymbol(State, Condition, N->getLocationContext(), 2190 N->getState()->getStateManager().getContext()); 2191 2192 if (!recovered.isUnknown()) { 2193 X = recovered; 2194 } 2195 } 2196 } 2197 } 2198 2199 // If the condition is still unknown, give up. 2200 if (X.isUnknownOrUndef()) 2201 return None; 2202 2203 DefinedSVal V = X.castAs<DefinedSVal>(); 2204 2205 ProgramStateRef StTrue, StFalse; 2206 return State->assume(V); 2207 } 2208 2209 void ExprEngine::processBranch(const Stmt *Condition, 2210 NodeBuilderContext& BldCtx, 2211 ExplodedNode *Pred, 2212 ExplodedNodeSet &Dst, 2213 const CFGBlock *DstT, 2214 const CFGBlock *DstF) { 2215 assert((!Condition || !isa<CXXBindTemporaryExpr>(Condition)) && 2216 "CXXBindTemporaryExprs are handled by processBindTemporary."); 2217 const LocationContext *LCtx = Pred->getLocationContext(); 2218 PrettyStackTraceLocationContext StackCrashInfo(LCtx); 2219 currBldrCtx = &BldCtx; 2220 2221 // Check for NULL conditions; e.g. "for(;;)" 2222 if (!Condition) { 2223 BranchNodeBuilder NullCondBldr(Pred, Dst, BldCtx, DstT, DstF); 2224 NullCondBldr.markInfeasible(false); 2225 NullCondBldr.generateNode(Pred->getState(), true, Pred); 2226 return; 2227 } 2228 2229 if (const auto *Ex = dyn_cast<Expr>(Condition)) 2230 Condition = Ex->IgnoreParens(); 2231 2232 Condition = ResolveCondition(Condition, BldCtx.getBlock()); 2233 PrettyStackTraceLoc CrashInfo(getContext().getSourceManager(), 2234 Condition->getBeginLoc(), 2235 "Error evaluating branch"); 2236 2237 ExplodedNodeSet CheckersOutSet; 2238 getCheckerManager().runCheckersForBranchCondition(Condition, CheckersOutSet, 2239 Pred, *this); 2240 // We generated only sinks. 2241 if (CheckersOutSet.empty()) 2242 return; 2243 2244 BranchNodeBuilder builder(CheckersOutSet, Dst, BldCtx, DstT, DstF); 2245 for (ExplodedNode *PredN : CheckersOutSet) { 2246 if (PredN->isSink()) 2247 continue; 2248 2249 ProgramStateRef PrevState = PredN->getState(); 2250 2251 ProgramStateRef StTrue, StFalse; 2252 if (const auto KnownCondValueAssumption = assumeCondition(Condition, PredN)) 2253 std::tie(StTrue, StFalse) = *KnownCondValueAssumption; 2254 else { 2255 assert(!isa<ObjCForCollectionStmt>(Condition)); 2256 builder.generateNode(PrevState, true, PredN); 2257 builder.generateNode(PrevState, false, PredN); 2258 continue; 2259 } 2260 if (StTrue && StFalse) 2261 assert(!isa<ObjCForCollectionStmt>(Condition)); 2262 2263 // Process the true branch. 2264 if (builder.isFeasible(true)) { 2265 if (StTrue) 2266 builder.generateNode(StTrue, true, PredN); 2267 else 2268 builder.markInfeasible(true); 2269 } 2270 2271 // Process the false branch. 2272 if (builder.isFeasible(false)) { 2273 if (StFalse) 2274 builder.generateNode(StFalse, false, PredN); 2275 else 2276 builder.markInfeasible(false); 2277 } 2278 } 2279 currBldrCtx = nullptr; 2280 } 2281 2282 /// The GDM component containing the set of global variables which have been 2283 /// previously initialized with explicit initializers. 2284 REGISTER_TRAIT_WITH_PROGRAMSTATE(InitializedGlobalsSet, 2285 llvm::ImmutableSet<const VarDecl *>) 2286 2287 void ExprEngine::processStaticInitializer(const DeclStmt *DS, 2288 NodeBuilderContext &BuilderCtx, 2289 ExplodedNode *Pred, 2290 ExplodedNodeSet &Dst, 2291 const CFGBlock *DstT, 2292 const CFGBlock *DstF) { 2293 PrettyStackTraceLocationContext CrashInfo(Pred->getLocationContext()); 2294 currBldrCtx = &BuilderCtx; 2295 2296 const auto *VD = cast<VarDecl>(DS->getSingleDecl()); 2297 ProgramStateRef state = Pred->getState(); 2298 bool initHasRun = state->contains<InitializedGlobalsSet>(VD); 2299 BranchNodeBuilder builder(Pred, Dst, BuilderCtx, DstT, DstF); 2300 2301 if (!initHasRun) { 2302 state = state->add<InitializedGlobalsSet>(VD); 2303 } 2304 2305 builder.generateNode(state, initHasRun, Pred); 2306 builder.markInfeasible(!initHasRun); 2307 2308 currBldrCtx = nullptr; 2309 } 2310 2311 /// processIndirectGoto - Called by CoreEngine. Used to generate successor 2312 /// nodes by processing the 'effects' of a computed goto jump. 2313 void ExprEngine::processIndirectGoto(IndirectGotoNodeBuilder &builder) { 2314 ProgramStateRef state = builder.getState(); 2315 SVal V = state->getSVal(builder.getTarget(), builder.getLocationContext()); 2316 2317 // Three possibilities: 2318 // 2319 // (1) We know the computed label. 2320 // (2) The label is NULL (or some other constant), or Undefined. 2321 // (3) We have no clue about the label. Dispatch to all targets. 2322 // 2323 2324 using iterator = IndirectGotoNodeBuilder::iterator; 2325 2326 if (Optional<loc::GotoLabel> LV = V.getAs<loc::GotoLabel>()) { 2327 const LabelDecl *L = LV->getLabel(); 2328 2329 for (iterator I = builder.begin(), E = builder.end(); I != E; ++I) { 2330 if (I.getLabel() == L) { 2331 builder.generateNode(I, state); 2332 return; 2333 } 2334 } 2335 2336 llvm_unreachable("No block with label."); 2337 } 2338 2339 if (isa<UndefinedVal, loc::ConcreteInt>(V)) { 2340 // Dispatch to the first target and mark it as a sink. 2341 //ExplodedNode* N = builder.generateNode(builder.begin(), state, true); 2342 // FIXME: add checker visit. 2343 // UndefBranches.insert(N); 2344 return; 2345 } 2346 2347 // This is really a catch-all. We don't support symbolics yet. 2348 // FIXME: Implement dispatch for symbolic pointers. 2349 2350 for (iterator I = builder.begin(), E = builder.end(); I != E; ++I) 2351 builder.generateNode(I, state); 2352 } 2353 2354 void ExprEngine::processBeginOfFunction(NodeBuilderContext &BC, 2355 ExplodedNode *Pred, 2356 ExplodedNodeSet &Dst, 2357 const BlockEdge &L) { 2358 SaveAndRestore<const NodeBuilderContext *> NodeContextRAII(currBldrCtx, &BC); 2359 getCheckerManager().runCheckersForBeginFunction(Dst, L, Pred, *this); 2360 } 2361 2362 /// ProcessEndPath - Called by CoreEngine. Used to generate end-of-path 2363 /// nodes when the control reaches the end of a function. 2364 void ExprEngine::processEndOfFunction(NodeBuilderContext& BC, 2365 ExplodedNode *Pred, 2366 const ReturnStmt *RS) { 2367 ProgramStateRef State = Pred->getState(); 2368 2369 if (!Pred->getStackFrame()->inTopFrame()) 2370 State = finishArgumentConstruction( 2371 State, *getStateManager().getCallEventManager().getCaller( 2372 Pred->getStackFrame(), Pred->getState())); 2373 2374 // FIXME: We currently cannot assert that temporaries are clear, because 2375 // lifetime extended temporaries are not always modelled correctly. In some 2376 // cases when we materialize the temporary, we do 2377 // createTemporaryRegionIfNeeded(), and the region changes, and also the 2378 // respective destructor becomes automatic from temporary. So for now clean up 2379 // the state manually before asserting. Ideally, this braced block of code 2380 // should go away. 2381 { 2382 const LocationContext *FromLC = Pred->getLocationContext(); 2383 const LocationContext *ToLC = FromLC->getStackFrame()->getParent(); 2384 const LocationContext *LC = FromLC; 2385 while (LC != ToLC) { 2386 assert(LC && "ToLC must be a parent of FromLC!"); 2387 for (auto I : State->get<ObjectsUnderConstruction>()) 2388 if (I.first.getLocationContext() == LC) { 2389 // The comment above only pardons us for not cleaning up a 2390 // temporary destructor. If any other statements are found here, 2391 // it must be a separate problem. 2392 assert(I.first.getItem().getKind() == 2393 ConstructionContextItem::TemporaryDestructorKind || 2394 I.first.getItem().getKind() == 2395 ConstructionContextItem::ElidedDestructorKind); 2396 State = State->remove<ObjectsUnderConstruction>(I.first); 2397 } 2398 LC = LC->getParent(); 2399 } 2400 } 2401 2402 // Perform the transition with cleanups. 2403 if (State != Pred->getState()) { 2404 ExplodedNodeSet PostCleanup; 2405 NodeBuilder Bldr(Pred, PostCleanup, BC); 2406 Pred = Bldr.generateNode(Pred->getLocation(), State, Pred); 2407 if (!Pred) { 2408 // The node with clean temporaries already exists. We might have reached 2409 // it on a path on which we initialize different temporaries. 2410 return; 2411 } 2412 } 2413 2414 assert(areAllObjectsFullyConstructed(Pred->getState(), 2415 Pred->getLocationContext(), 2416 Pred->getStackFrame()->getParent())); 2417 2418 PrettyStackTraceLocationContext CrashInfo(Pred->getLocationContext()); 2419 2420 ExplodedNodeSet Dst; 2421 if (Pred->getLocationContext()->inTopFrame()) { 2422 // Remove dead symbols. 2423 ExplodedNodeSet AfterRemovedDead; 2424 removeDeadOnEndOfFunction(BC, Pred, AfterRemovedDead); 2425 2426 // Notify checkers. 2427 for (const auto I : AfterRemovedDead) 2428 getCheckerManager().runCheckersForEndFunction(BC, Dst, I, *this, RS); 2429 } else { 2430 getCheckerManager().runCheckersForEndFunction(BC, Dst, Pred, *this, RS); 2431 } 2432 2433 Engine.enqueueEndOfFunction(Dst, RS); 2434 } 2435 2436 /// ProcessSwitch - Called by CoreEngine. Used to generate successor 2437 /// nodes by processing the 'effects' of a switch statement. 2438 void ExprEngine::processSwitch(SwitchNodeBuilder& builder) { 2439 using iterator = SwitchNodeBuilder::iterator; 2440 2441 ProgramStateRef state = builder.getState(); 2442 const Expr *CondE = builder.getCondition(); 2443 SVal CondV_untested = state->getSVal(CondE, builder.getLocationContext()); 2444 2445 if (CondV_untested.isUndef()) { 2446 //ExplodedNode* N = builder.generateDefaultCaseNode(state, true); 2447 // FIXME: add checker 2448 //UndefBranches.insert(N); 2449 2450 return; 2451 } 2452 DefinedOrUnknownSVal CondV = CondV_untested.castAs<DefinedOrUnknownSVal>(); 2453 2454 ProgramStateRef DefaultSt = state; 2455 2456 iterator I = builder.begin(), EI = builder.end(); 2457 bool defaultIsFeasible = I == EI; 2458 2459 for ( ; I != EI; ++I) { 2460 // Successor may be pruned out during CFG construction. 2461 if (!I.getBlock()) 2462 continue; 2463 2464 const CaseStmt *Case = I.getCase(); 2465 2466 // Evaluate the LHS of the case value. 2467 llvm::APSInt V1 = Case->getLHS()->EvaluateKnownConstInt(getContext()); 2468 assert(V1.getBitWidth() == getContext().getIntWidth(CondE->getType())); 2469 2470 // Get the RHS of the case, if it exists. 2471 llvm::APSInt V2; 2472 if (const Expr *E = Case->getRHS()) 2473 V2 = E->EvaluateKnownConstInt(getContext()); 2474 else 2475 V2 = V1; 2476 2477 ProgramStateRef StateCase; 2478 if (Optional<NonLoc> NL = CondV.getAs<NonLoc>()) 2479 std::tie(StateCase, DefaultSt) = 2480 DefaultSt->assumeInclusiveRange(*NL, V1, V2); 2481 else // UnknownVal 2482 StateCase = DefaultSt; 2483 2484 if (StateCase) 2485 builder.generateCaseStmtNode(I, StateCase); 2486 2487 // Now "assume" that the case doesn't match. Add this state 2488 // to the default state (if it is feasible). 2489 if (DefaultSt) 2490 defaultIsFeasible = true; 2491 else { 2492 defaultIsFeasible = false; 2493 break; 2494 } 2495 } 2496 2497 if (!defaultIsFeasible) 2498 return; 2499 2500 // If we have switch(enum value), the default branch is not 2501 // feasible if all of the enum constants not covered by 'case:' statements 2502 // are not feasible values for the switch condition. 2503 // 2504 // Note that this isn't as accurate as it could be. Even if there isn't 2505 // a case for a particular enum value as long as that enum value isn't 2506 // feasible then it shouldn't be considered for making 'default:' reachable. 2507 const SwitchStmt *SS = builder.getSwitch(); 2508 const Expr *CondExpr = SS->getCond()->IgnoreParenImpCasts(); 2509 if (CondExpr->getType()->getAs<EnumType>()) { 2510 if (SS->isAllEnumCasesCovered()) 2511 return; 2512 } 2513 2514 builder.generateDefaultCaseNode(DefaultSt); 2515 } 2516 2517 //===----------------------------------------------------------------------===// 2518 // Transfer functions: Loads and stores. 2519 //===----------------------------------------------------------------------===// 2520 2521 void ExprEngine::VisitCommonDeclRefExpr(const Expr *Ex, const NamedDecl *D, 2522 ExplodedNode *Pred, 2523 ExplodedNodeSet &Dst) { 2524 StmtNodeBuilder Bldr(Pred, Dst, *currBldrCtx); 2525 2526 ProgramStateRef state = Pred->getState(); 2527 const LocationContext *LCtx = Pred->getLocationContext(); 2528 2529 if (const auto *VD = dyn_cast<VarDecl>(D)) { 2530 // C permits "extern void v", and if you cast the address to a valid type, 2531 // you can even do things with it. We simply pretend 2532 assert(Ex->isGLValue() || VD->getType()->isVoidType()); 2533 const LocationContext *LocCtxt = Pred->getLocationContext(); 2534 const Decl *D = LocCtxt->getDecl(); 2535 const auto *MD = dyn_cast_or_null<CXXMethodDecl>(D); 2536 const auto *DeclRefEx = dyn_cast<DeclRefExpr>(Ex); 2537 Optional<std::pair<SVal, QualType>> VInfo; 2538 2539 if (AMgr.options.ShouldInlineLambdas && DeclRefEx && 2540 DeclRefEx->refersToEnclosingVariableOrCapture() && MD && 2541 MD->getParent()->isLambda()) { 2542 // Lookup the field of the lambda. 2543 const CXXRecordDecl *CXXRec = MD->getParent(); 2544 llvm::DenseMap<const VarDecl *, FieldDecl *> LambdaCaptureFields; 2545 FieldDecl *LambdaThisCaptureField; 2546 CXXRec->getCaptureFields(LambdaCaptureFields, LambdaThisCaptureField); 2547 2548 // Sema follows a sequence of complex rules to determine whether the 2549 // variable should be captured. 2550 if (const FieldDecl *FD = LambdaCaptureFields[VD]) { 2551 Loc CXXThis = 2552 svalBuilder.getCXXThis(MD, LocCtxt->getStackFrame()); 2553 SVal CXXThisVal = state->getSVal(CXXThis); 2554 VInfo = std::make_pair(state->getLValue(FD, CXXThisVal), FD->getType()); 2555 } 2556 } 2557 2558 if (!VInfo) 2559 VInfo = std::make_pair(state->getLValue(VD, LocCtxt), VD->getType()); 2560 2561 SVal V = VInfo->first; 2562 bool IsReference = VInfo->second->isReferenceType(); 2563 2564 // For references, the 'lvalue' is the pointer address stored in the 2565 // reference region. 2566 if (IsReference) { 2567 if (const MemRegion *R = V.getAsRegion()) 2568 V = state->getSVal(R); 2569 else 2570 V = UnknownVal(); 2571 } 2572 2573 Bldr.generateNode(Ex, Pred, state->BindExpr(Ex, LCtx, V), nullptr, 2574 ProgramPoint::PostLValueKind); 2575 return; 2576 } 2577 if (const auto *ED = dyn_cast<EnumConstantDecl>(D)) { 2578 assert(!Ex->isGLValue()); 2579 SVal V = svalBuilder.makeIntVal(ED->getInitVal()); 2580 Bldr.generateNode(Ex, Pred, state->BindExpr(Ex, LCtx, V)); 2581 return; 2582 } 2583 if (const auto *FD = dyn_cast<FunctionDecl>(D)) { 2584 SVal V = svalBuilder.getFunctionPointer(FD); 2585 Bldr.generateNode(Ex, Pred, state->BindExpr(Ex, LCtx, V), nullptr, 2586 ProgramPoint::PostLValueKind); 2587 return; 2588 } 2589 if (isa<FieldDecl, IndirectFieldDecl>(D)) { 2590 // Delegate all work related to pointer to members to the surrounding 2591 // operator&. 2592 return; 2593 } 2594 if (const auto *BD = dyn_cast<BindingDecl>(D)) { 2595 const auto *DD = cast<DecompositionDecl>(BD->getDecomposedDecl()); 2596 2597 if (const auto *ME = dyn_cast<MemberExpr>(BD->getBinding())) { 2598 const auto *Field = cast<FieldDecl>(ME->getMemberDecl()); 2599 2600 SVal Base = state->getLValue(DD, LCtx); 2601 if (DD->getType()->isReferenceType()) { 2602 Base = state->getSVal(Base.getAsRegion()); 2603 } 2604 2605 SVal V = state->getLValue(Field, Base); 2606 2607 Bldr.generateNode(Ex, Pred, state->BindExpr(Ex, LCtx, V)); 2608 } 2609 2610 return; 2611 } 2612 2613 llvm_unreachable("Support for this Decl not implemented."); 2614 } 2615 2616 /// VisitArraySubscriptExpr - Transfer function for array accesses 2617 void ExprEngine::VisitArraySubscriptExpr(const ArraySubscriptExpr *A, 2618 ExplodedNode *Pred, 2619 ExplodedNodeSet &Dst){ 2620 const Expr *Base = A->getBase()->IgnoreParens(); 2621 const Expr *Idx = A->getIdx()->IgnoreParens(); 2622 2623 ExplodedNodeSet CheckerPreStmt; 2624 getCheckerManager().runCheckersForPreStmt(CheckerPreStmt, Pred, A, *this); 2625 2626 ExplodedNodeSet EvalSet; 2627 StmtNodeBuilder Bldr(CheckerPreStmt, EvalSet, *currBldrCtx); 2628 2629 bool IsVectorType = A->getBase()->getType()->isVectorType(); 2630 2631 // The "like" case is for situations where C standard prohibits the type to 2632 // be an lvalue, e.g. taking the address of a subscript of an expression of 2633 // type "void *". 2634 bool IsGLValueLike = A->isGLValue() || 2635 (A->getType().isCForbiddenLValueType() && !AMgr.getLangOpts().CPlusPlus); 2636 2637 for (auto *Node : CheckerPreStmt) { 2638 const LocationContext *LCtx = Node->getLocationContext(); 2639 ProgramStateRef state = Node->getState(); 2640 2641 if (IsGLValueLike) { 2642 QualType T = A->getType(); 2643 2644 // One of the forbidden LValue types! We still need to have sensible 2645 // symbolic locations to represent this stuff. Note that arithmetic on 2646 // void pointers is a GCC extension. 2647 if (T->isVoidType()) 2648 T = getContext().CharTy; 2649 2650 SVal V = state->getLValue(T, 2651 state->getSVal(Idx, LCtx), 2652 state->getSVal(Base, LCtx)); 2653 Bldr.generateNode(A, Node, state->BindExpr(A, LCtx, V), nullptr, 2654 ProgramPoint::PostLValueKind); 2655 } else if (IsVectorType) { 2656 // FIXME: non-glvalue vector reads are not modelled. 2657 Bldr.generateNode(A, Node, state, nullptr); 2658 } else { 2659 llvm_unreachable("Array subscript should be an lValue when not \ 2660 a vector and not a forbidden lvalue type"); 2661 } 2662 } 2663 2664 getCheckerManager().runCheckersForPostStmt(Dst, EvalSet, A, *this); 2665 } 2666 2667 /// VisitMemberExpr - Transfer function for member expressions. 2668 void ExprEngine::VisitMemberExpr(const MemberExpr *M, ExplodedNode *Pred, 2669 ExplodedNodeSet &Dst) { 2670 // FIXME: Prechecks eventually go in ::Visit(). 2671 ExplodedNodeSet CheckedSet; 2672 getCheckerManager().runCheckersForPreStmt(CheckedSet, Pred, M, *this); 2673 2674 ExplodedNodeSet EvalSet; 2675 ValueDecl *Member = M->getMemberDecl(); 2676 2677 // Handle static member variables and enum constants accessed via 2678 // member syntax. 2679 if (isa<VarDecl, EnumConstantDecl>(Member)) { 2680 for (const auto I : CheckedSet) 2681 VisitCommonDeclRefExpr(M, Member, I, EvalSet); 2682 } else { 2683 StmtNodeBuilder Bldr(CheckedSet, EvalSet, *currBldrCtx); 2684 ExplodedNodeSet Tmp; 2685 2686 for (const auto I : CheckedSet) { 2687 ProgramStateRef state = I->getState(); 2688 const LocationContext *LCtx = I->getLocationContext(); 2689 Expr *BaseExpr = M->getBase(); 2690 2691 // Handle C++ method calls. 2692 if (const auto *MD = dyn_cast<CXXMethodDecl>(Member)) { 2693 if (MD->isInstance()) 2694 state = createTemporaryRegionIfNeeded(state, LCtx, BaseExpr); 2695 2696 SVal MDVal = svalBuilder.getFunctionPointer(MD); 2697 state = state->BindExpr(M, LCtx, MDVal); 2698 2699 Bldr.generateNode(M, I, state); 2700 continue; 2701 } 2702 2703 // Handle regular struct fields / member variables. 2704 const SubRegion *MR = nullptr; 2705 state = createTemporaryRegionIfNeeded(state, LCtx, BaseExpr, 2706 /*Result=*/nullptr, 2707 /*OutRegionWithAdjustments=*/&MR); 2708 SVal baseExprVal = 2709 MR ? loc::MemRegionVal(MR) : state->getSVal(BaseExpr, LCtx); 2710 2711 const auto *field = cast<FieldDecl>(Member); 2712 SVal L = state->getLValue(field, baseExprVal); 2713 2714 if (M->isGLValue() || M->getType()->isArrayType()) { 2715 // We special-case rvalues of array type because the analyzer cannot 2716 // reason about them, since we expect all regions to be wrapped in Locs. 2717 // We instead treat these as lvalues and assume that they will decay to 2718 // pointers as soon as they are used. 2719 if (!M->isGLValue()) { 2720 assert(M->getType()->isArrayType()); 2721 const auto *PE = 2722 dyn_cast<ImplicitCastExpr>(I->getParentMap().getParentIgnoreParens(M)); 2723 if (!PE || PE->getCastKind() != CK_ArrayToPointerDecay) { 2724 llvm_unreachable("should always be wrapped in ArrayToPointerDecay"); 2725 } 2726 } 2727 2728 if (field->getType()->isReferenceType()) { 2729 if (const MemRegion *R = L.getAsRegion()) 2730 L = state->getSVal(R); 2731 else 2732 L = UnknownVal(); 2733 } 2734 2735 Bldr.generateNode(M, I, state->BindExpr(M, LCtx, L), nullptr, 2736 ProgramPoint::PostLValueKind); 2737 } else { 2738 Bldr.takeNodes(I); 2739 evalLoad(Tmp, M, M, I, state, L); 2740 Bldr.addNodes(Tmp); 2741 } 2742 } 2743 } 2744 2745 getCheckerManager().runCheckersForPostStmt(Dst, EvalSet, M, *this); 2746 } 2747 2748 void ExprEngine::VisitAtomicExpr(const AtomicExpr *AE, ExplodedNode *Pred, 2749 ExplodedNodeSet &Dst) { 2750 ExplodedNodeSet AfterPreSet; 2751 getCheckerManager().runCheckersForPreStmt(AfterPreSet, Pred, AE, *this); 2752 2753 // For now, treat all the arguments to C11 atomics as escaping. 2754 // FIXME: Ideally we should model the behavior of the atomics precisely here. 2755 2756 ExplodedNodeSet AfterInvalidateSet; 2757 StmtNodeBuilder Bldr(AfterPreSet, AfterInvalidateSet, *currBldrCtx); 2758 2759 for (const auto I : AfterPreSet) { 2760 ProgramStateRef State = I->getState(); 2761 const LocationContext *LCtx = I->getLocationContext(); 2762 2763 SmallVector<SVal, 8> ValuesToInvalidate; 2764 for (unsigned SI = 0, Count = AE->getNumSubExprs(); SI != Count; SI++) { 2765 const Expr *SubExpr = AE->getSubExprs()[SI]; 2766 SVal SubExprVal = State->getSVal(SubExpr, LCtx); 2767 ValuesToInvalidate.push_back(SubExprVal); 2768 } 2769 2770 State = State->invalidateRegions(ValuesToInvalidate, AE, 2771 currBldrCtx->blockCount(), 2772 LCtx, 2773 /*CausedByPointerEscape*/true, 2774 /*Symbols=*/nullptr); 2775 2776 SVal ResultVal = UnknownVal(); 2777 State = State->BindExpr(AE, LCtx, ResultVal); 2778 Bldr.generateNode(AE, I, State, nullptr, 2779 ProgramPoint::PostStmtKind); 2780 } 2781 2782 getCheckerManager().runCheckersForPostStmt(Dst, AfterInvalidateSet, AE, *this); 2783 } 2784 2785 // A value escapes in four possible cases: 2786 // (1) We are binding to something that is not a memory region. 2787 // (2) We are binding to a MemRegion that does not have stack storage. 2788 // (3) We are binding to a top-level parameter region with a non-trivial 2789 // destructor. We won't see the destructor during analysis, but it's there. 2790 // (4) We are binding to a MemRegion with stack storage that the store 2791 // does not understand. 2792 ProgramStateRef ExprEngine::processPointerEscapedOnBind( 2793 ProgramStateRef State, ArrayRef<std::pair<SVal, SVal>> LocAndVals, 2794 const LocationContext *LCtx, PointerEscapeKind Kind, 2795 const CallEvent *Call) { 2796 SmallVector<SVal, 8> Escaped; 2797 for (const std::pair<SVal, SVal> &LocAndVal : LocAndVals) { 2798 // Cases (1) and (2). 2799 const MemRegion *MR = LocAndVal.first.getAsRegion(); 2800 if (!MR || !MR->hasStackStorage()) { 2801 Escaped.push_back(LocAndVal.second); 2802 continue; 2803 } 2804 2805 // Case (3). 2806 if (const auto *VR = dyn_cast<VarRegion>(MR->getBaseRegion())) 2807 if (VR->hasStackParametersStorage() && VR->getStackFrame()->inTopFrame()) 2808 if (const auto *RD = VR->getValueType()->getAsCXXRecordDecl()) 2809 if (!RD->hasTrivialDestructor()) { 2810 Escaped.push_back(LocAndVal.second); 2811 continue; 2812 } 2813 2814 // Case (4): in order to test that, generate a new state with the binding 2815 // added. If it is the same state, then it escapes (since the store cannot 2816 // represent the binding). 2817 // Do this only if we know that the store is not supposed to generate the 2818 // same state. 2819 SVal StoredVal = State->getSVal(MR); 2820 if (StoredVal != LocAndVal.second) 2821 if (State == 2822 (State->bindLoc(loc::MemRegionVal(MR), LocAndVal.second, LCtx))) 2823 Escaped.push_back(LocAndVal.second); 2824 } 2825 2826 if (Escaped.empty()) 2827 return State; 2828 2829 return escapeValues(State, Escaped, Kind, Call); 2830 } 2831 2832 ProgramStateRef 2833 ExprEngine::processPointerEscapedOnBind(ProgramStateRef State, SVal Loc, 2834 SVal Val, const LocationContext *LCtx) { 2835 std::pair<SVal, SVal> LocAndVal(Loc, Val); 2836 return processPointerEscapedOnBind(State, LocAndVal, LCtx, PSK_EscapeOnBind, 2837 nullptr); 2838 } 2839 2840 ProgramStateRef 2841 ExprEngine::notifyCheckersOfPointerEscape(ProgramStateRef State, 2842 const InvalidatedSymbols *Invalidated, 2843 ArrayRef<const MemRegion *> ExplicitRegions, 2844 const CallEvent *Call, 2845 RegionAndSymbolInvalidationTraits &ITraits) { 2846 if (!Invalidated || Invalidated->empty()) 2847 return State; 2848 2849 if (!Call) 2850 return getCheckerManager().runCheckersForPointerEscape(State, 2851 *Invalidated, 2852 nullptr, 2853 PSK_EscapeOther, 2854 &ITraits); 2855 2856 // If the symbols were invalidated by a call, we want to find out which ones 2857 // were invalidated directly due to being arguments to the call. 2858 InvalidatedSymbols SymbolsDirectlyInvalidated; 2859 for (const auto I : ExplicitRegions) { 2860 if (const SymbolicRegion *R = I->StripCasts()->getAs<SymbolicRegion>()) 2861 SymbolsDirectlyInvalidated.insert(R->getSymbol()); 2862 } 2863 2864 InvalidatedSymbols SymbolsIndirectlyInvalidated; 2865 for (const auto &sym : *Invalidated) { 2866 if (SymbolsDirectlyInvalidated.count(sym)) 2867 continue; 2868 SymbolsIndirectlyInvalidated.insert(sym); 2869 } 2870 2871 if (!SymbolsDirectlyInvalidated.empty()) 2872 State = getCheckerManager().runCheckersForPointerEscape(State, 2873 SymbolsDirectlyInvalidated, Call, PSK_DirectEscapeOnCall, &ITraits); 2874 2875 // Notify about the symbols that get indirectly invalidated by the call. 2876 if (!SymbolsIndirectlyInvalidated.empty()) 2877 State = getCheckerManager().runCheckersForPointerEscape(State, 2878 SymbolsIndirectlyInvalidated, Call, PSK_IndirectEscapeOnCall, &ITraits); 2879 2880 return State; 2881 } 2882 2883 /// evalBind - Handle the semantics of binding a value to a specific location. 2884 /// This method is used by evalStore and (soon) VisitDeclStmt, and others. 2885 void ExprEngine::evalBind(ExplodedNodeSet &Dst, const Stmt *StoreE, 2886 ExplodedNode *Pred, 2887 SVal location, SVal Val, 2888 bool atDeclInit, const ProgramPoint *PP) { 2889 const LocationContext *LC = Pred->getLocationContext(); 2890 PostStmt PS(StoreE, LC); 2891 if (!PP) 2892 PP = &PS; 2893 2894 // Do a previsit of the bind. 2895 ExplodedNodeSet CheckedSet; 2896 getCheckerManager().runCheckersForBind(CheckedSet, Pred, location, Val, 2897 StoreE, *this, *PP); 2898 2899 StmtNodeBuilder Bldr(CheckedSet, Dst, *currBldrCtx); 2900 2901 // If the location is not a 'Loc', it will already be handled by 2902 // the checkers. There is nothing left to do. 2903 if (!isa<Loc>(location)) { 2904 const ProgramPoint L = PostStore(StoreE, LC, /*Loc*/nullptr, 2905 /*tag*/nullptr); 2906 ProgramStateRef state = Pred->getState(); 2907 state = processPointerEscapedOnBind(state, location, Val, LC); 2908 Bldr.generateNode(L, state, Pred); 2909 return; 2910 } 2911 2912 for (const auto PredI : CheckedSet) { 2913 ProgramStateRef state = PredI->getState(); 2914 2915 state = processPointerEscapedOnBind(state, location, Val, LC); 2916 2917 // When binding the value, pass on the hint that this is a initialization. 2918 // For initializations, we do not need to inform clients of region 2919 // changes. 2920 state = state->bindLoc(location.castAs<Loc>(), 2921 Val, LC, /* notifyChanges = */ !atDeclInit); 2922 2923 const MemRegion *LocReg = nullptr; 2924 if (Optional<loc::MemRegionVal> LocRegVal = 2925 location.getAs<loc::MemRegionVal>()) { 2926 LocReg = LocRegVal->getRegion(); 2927 } 2928 2929 const ProgramPoint L = PostStore(StoreE, LC, LocReg, nullptr); 2930 Bldr.generateNode(L, state, PredI); 2931 } 2932 } 2933 2934 /// evalStore - Handle the semantics of a store via an assignment. 2935 /// @param Dst The node set to store generated state nodes 2936 /// @param AssignE The assignment expression if the store happens in an 2937 /// assignment. 2938 /// @param LocationE The location expression that is stored to. 2939 /// @param state The current simulation state 2940 /// @param location The location to store the value 2941 /// @param Val The value to be stored 2942 void ExprEngine::evalStore(ExplodedNodeSet &Dst, const Expr *AssignE, 2943 const Expr *LocationE, 2944 ExplodedNode *Pred, 2945 ProgramStateRef state, SVal location, SVal Val, 2946 const ProgramPointTag *tag) { 2947 // Proceed with the store. We use AssignE as the anchor for the PostStore 2948 // ProgramPoint if it is non-NULL, and LocationE otherwise. 2949 const Expr *StoreE = AssignE ? AssignE : LocationE; 2950 2951 // Evaluate the location (checks for bad dereferences). 2952 ExplodedNodeSet Tmp; 2953 evalLocation(Tmp, AssignE, LocationE, Pred, state, location, false); 2954 2955 if (Tmp.empty()) 2956 return; 2957 2958 if (location.isUndef()) 2959 return; 2960 2961 for (const auto I : Tmp) 2962 evalBind(Dst, StoreE, I, location, Val, false); 2963 } 2964 2965 void ExprEngine::evalLoad(ExplodedNodeSet &Dst, 2966 const Expr *NodeEx, 2967 const Expr *BoundEx, 2968 ExplodedNode *Pred, 2969 ProgramStateRef state, 2970 SVal location, 2971 const ProgramPointTag *tag, 2972 QualType LoadTy) { 2973 assert(!isa<NonLoc>(location) && "location cannot be a NonLoc."); 2974 assert(NodeEx); 2975 assert(BoundEx); 2976 // Evaluate the location (checks for bad dereferences). 2977 ExplodedNodeSet Tmp; 2978 evalLocation(Tmp, NodeEx, BoundEx, Pred, state, location, true); 2979 if (Tmp.empty()) 2980 return; 2981 2982 StmtNodeBuilder Bldr(Tmp, Dst, *currBldrCtx); 2983 if (location.isUndef()) 2984 return; 2985 2986 // Proceed with the load. 2987 for (const auto I : Tmp) { 2988 state = I->getState(); 2989 const LocationContext *LCtx = I->getLocationContext(); 2990 2991 SVal V = UnknownVal(); 2992 if (location.isValid()) { 2993 if (LoadTy.isNull()) 2994 LoadTy = BoundEx->getType(); 2995 V = state->getSVal(location.castAs<Loc>(), LoadTy); 2996 } 2997 2998 Bldr.generateNode(NodeEx, I, state->BindExpr(BoundEx, LCtx, V), tag, 2999 ProgramPoint::PostLoadKind); 3000 } 3001 } 3002 3003 void ExprEngine::evalLocation(ExplodedNodeSet &Dst, 3004 const Stmt *NodeEx, 3005 const Stmt *BoundEx, 3006 ExplodedNode *Pred, 3007 ProgramStateRef state, 3008 SVal location, 3009 bool isLoad) { 3010 StmtNodeBuilder BldrTop(Pred, Dst, *currBldrCtx); 3011 // Early checks for performance reason. 3012 if (location.isUnknown()) { 3013 return; 3014 } 3015 3016 ExplodedNodeSet Src; 3017 BldrTop.takeNodes(Pred); 3018 StmtNodeBuilder Bldr(Pred, Src, *currBldrCtx); 3019 if (Pred->getState() != state) { 3020 // Associate this new state with an ExplodedNode. 3021 // FIXME: If I pass null tag, the graph is incorrect, e.g for 3022 // int *p; 3023 // p = 0; 3024 // *p = 0xDEADBEEF; 3025 // "p = 0" is not noted as "Null pointer value stored to 'p'" but 3026 // instead "int *p" is noted as 3027 // "Variable 'p' initialized to a null pointer value" 3028 3029 static SimpleProgramPointTag tag(TagProviderName, "Location"); 3030 Bldr.generateNode(NodeEx, Pred, state, &tag); 3031 } 3032 ExplodedNodeSet Tmp; 3033 getCheckerManager().runCheckersForLocation(Tmp, Src, location, isLoad, 3034 NodeEx, BoundEx, *this); 3035 BldrTop.addNodes(Tmp); 3036 } 3037 3038 std::pair<const ProgramPointTag *, const ProgramPointTag*> 3039 ExprEngine::geteagerlyAssumeBinOpBifurcationTags() { 3040 static SimpleProgramPointTag 3041 eagerlyAssumeBinOpBifurcationTrue(TagProviderName, 3042 "Eagerly Assume True"), 3043 eagerlyAssumeBinOpBifurcationFalse(TagProviderName, 3044 "Eagerly Assume False"); 3045 return std::make_pair(&eagerlyAssumeBinOpBifurcationTrue, 3046 &eagerlyAssumeBinOpBifurcationFalse); 3047 } 3048 3049 void ExprEngine::evalEagerlyAssumeBinOpBifurcation(ExplodedNodeSet &Dst, 3050 ExplodedNodeSet &Src, 3051 const Expr *Ex) { 3052 StmtNodeBuilder Bldr(Src, Dst, *currBldrCtx); 3053 3054 for (const auto Pred : Src) { 3055 // Test if the previous node was as the same expression. This can happen 3056 // when the expression fails to evaluate to anything meaningful and 3057 // (as an optimization) we don't generate a node. 3058 ProgramPoint P = Pred->getLocation(); 3059 if (!P.getAs<PostStmt>() || P.castAs<PostStmt>().getStmt() != Ex) { 3060 continue; 3061 } 3062 3063 ProgramStateRef state = Pred->getState(); 3064 SVal V = state->getSVal(Ex, Pred->getLocationContext()); 3065 Optional<nonloc::SymbolVal> SEV = V.getAs<nonloc::SymbolVal>(); 3066 if (SEV && SEV->isExpression()) { 3067 const std::pair<const ProgramPointTag *, const ProgramPointTag*> &tags = 3068 geteagerlyAssumeBinOpBifurcationTags(); 3069 3070 ProgramStateRef StateTrue, StateFalse; 3071 std::tie(StateTrue, StateFalse) = state->assume(*SEV); 3072 3073 // First assume that the condition is true. 3074 if (StateTrue) { 3075 SVal Val = svalBuilder.makeIntVal(1U, Ex->getType()); 3076 StateTrue = StateTrue->BindExpr(Ex, Pred->getLocationContext(), Val); 3077 Bldr.generateNode(Ex, Pred, StateTrue, tags.first); 3078 } 3079 3080 // Next, assume that the condition is false. 3081 if (StateFalse) { 3082 SVal Val = svalBuilder.makeIntVal(0U, Ex->getType()); 3083 StateFalse = StateFalse->BindExpr(Ex, Pred->getLocationContext(), Val); 3084 Bldr.generateNode(Ex, Pred, StateFalse, tags.second); 3085 } 3086 } 3087 } 3088 } 3089 3090 void ExprEngine::VisitGCCAsmStmt(const GCCAsmStmt *A, ExplodedNode *Pred, 3091 ExplodedNodeSet &Dst) { 3092 StmtNodeBuilder Bldr(Pred, Dst, *currBldrCtx); 3093 // We have processed both the inputs and the outputs. All of the outputs 3094 // should evaluate to Locs. Nuke all of their values. 3095 3096 // FIXME: Some day in the future it would be nice to allow a "plug-in" 3097 // which interprets the inline asm and stores proper results in the 3098 // outputs. 3099 3100 ProgramStateRef state = Pred->getState(); 3101 3102 for (const Expr *O : A->outputs()) { 3103 SVal X = state->getSVal(O, Pred->getLocationContext()); 3104 assert(!isa<NonLoc>(X)); // Should be an Lval, or unknown, undef. 3105 3106 if (Optional<Loc> LV = X.getAs<Loc>()) 3107 state = state->bindLoc(*LV, UnknownVal(), Pred->getLocationContext()); 3108 } 3109 3110 Bldr.generateNode(A, Pred, state); 3111 } 3112 3113 void ExprEngine::VisitMSAsmStmt(const MSAsmStmt *A, ExplodedNode *Pred, 3114 ExplodedNodeSet &Dst) { 3115 StmtNodeBuilder Bldr(Pred, Dst, *currBldrCtx); 3116 Bldr.generateNode(A, Pred, Pred->getState()); 3117 } 3118 3119 //===----------------------------------------------------------------------===// 3120 // Visualization. 3121 //===----------------------------------------------------------------------===// 3122 3123 namespace llvm { 3124 3125 template<> 3126 struct DOTGraphTraits<ExplodedGraph*> : public DefaultDOTGraphTraits { 3127 DOTGraphTraits (bool isSimple = false) : DefaultDOTGraphTraits(isSimple) {} 3128 3129 static bool nodeHasBugReport(const ExplodedNode *N) { 3130 BugReporter &BR = static_cast<ExprEngine &>( 3131 N->getState()->getStateManager().getOwningEngine()).getBugReporter(); 3132 3133 const auto EQClasses = 3134 llvm::make_range(BR.EQClasses_begin(), BR.EQClasses_end()); 3135 3136 for (const auto &EQ : EQClasses) { 3137 for (const auto &I : EQ.getReports()) { 3138 const auto *PR = dyn_cast<PathSensitiveBugReport>(I.get()); 3139 if (!PR) 3140 continue; 3141 const ExplodedNode *EN = PR->getErrorNode(); 3142 if (EN->getState() == N->getState() && 3143 EN->getLocation() == N->getLocation()) 3144 return true; 3145 } 3146 } 3147 return false; 3148 } 3149 3150 /// \p PreCallback: callback before break. 3151 /// \p PostCallback: callback after break. 3152 /// \p Stop: stop iteration if returns @c true 3153 /// \return Whether @c Stop ever returned @c true. 3154 static bool traverseHiddenNodes( 3155 const ExplodedNode *N, 3156 llvm::function_ref<void(const ExplodedNode *)> PreCallback, 3157 llvm::function_ref<void(const ExplodedNode *)> PostCallback, 3158 llvm::function_ref<bool(const ExplodedNode *)> Stop) { 3159 while (true) { 3160 PreCallback(N); 3161 if (Stop(N)) 3162 return true; 3163 3164 if (N->succ_size() != 1 || !isNodeHidden(N->getFirstSucc(), nullptr)) 3165 break; 3166 PostCallback(N); 3167 3168 N = N->getFirstSucc(); 3169 } 3170 return false; 3171 } 3172 3173 static bool isNodeHidden(const ExplodedNode *N, const ExplodedGraph *G) { 3174 return N->isTrivial(); 3175 } 3176 3177 static std::string getNodeLabel(const ExplodedNode *N, ExplodedGraph *G){ 3178 std::string Buf; 3179 llvm::raw_string_ostream Out(Buf); 3180 3181 const bool IsDot = true; 3182 const unsigned int Space = 1; 3183 ProgramStateRef State = N->getState(); 3184 3185 Out << "{ \"state_id\": " << State->getID() 3186 << ",\\l"; 3187 3188 Indent(Out, Space, IsDot) << "\"program_points\": [\\l"; 3189 3190 // Dump program point for all the previously skipped nodes. 3191 traverseHiddenNodes( 3192 N, 3193 [&](const ExplodedNode *OtherNode) { 3194 Indent(Out, Space + 1, IsDot) << "{ "; 3195 OtherNode->getLocation().printJson(Out, /*NL=*/"\\l"); 3196 Out << ", \"tag\": "; 3197 if (const ProgramPointTag *Tag = OtherNode->getLocation().getTag()) 3198 Out << '\"' << Tag->getTagDescription() << "\""; 3199 else 3200 Out << "null"; 3201 Out << ", \"node_id\": " << OtherNode->getID() << 3202 ", \"is_sink\": " << OtherNode->isSink() << 3203 ", \"has_report\": " << nodeHasBugReport(OtherNode) << " }"; 3204 }, 3205 // Adds a comma and a new-line between each program point. 3206 [&](const ExplodedNode *) { Out << ",\\l"; }, 3207 [&](const ExplodedNode *) { return false; }); 3208 3209 Out << "\\l"; // Adds a new-line to the last program point. 3210 Indent(Out, Space, IsDot) << "],\\l"; 3211 3212 State->printDOT(Out, N->getLocationContext(), Space); 3213 3214 Out << "\\l}\\l"; 3215 return Out.str(); 3216 } 3217 }; 3218 3219 } // namespace llvm 3220 3221 void ExprEngine::ViewGraph(bool trim) { 3222 std::string Filename = DumpGraph(trim); 3223 llvm::DisplayGraph(Filename, false, llvm::GraphProgram::DOT); 3224 } 3225 3226 void ExprEngine::ViewGraph(ArrayRef<const ExplodedNode *> Nodes) { 3227 std::string Filename = DumpGraph(Nodes); 3228 llvm::DisplayGraph(Filename, false, llvm::GraphProgram::DOT); 3229 } 3230 3231 std::string ExprEngine::DumpGraph(bool trim, StringRef Filename) { 3232 if (trim) { 3233 std::vector<const ExplodedNode *> Src; 3234 3235 // Iterate through the reports and get their nodes. 3236 for (BugReporter::EQClasses_iterator 3237 EI = BR.EQClasses_begin(), EE = BR.EQClasses_end(); EI != EE; ++EI) { 3238 const auto *R = 3239 dyn_cast<PathSensitiveBugReport>(EI->getReports()[0].get()); 3240 if (!R) 3241 continue; 3242 const auto *N = const_cast<ExplodedNode *>(R->getErrorNode()); 3243 Src.push_back(N); 3244 } 3245 return DumpGraph(Src, Filename); 3246 } 3247 3248 return llvm::WriteGraph(&G, "ExprEngine", /*ShortNames=*/false, 3249 /*Title=*/"Exploded Graph", 3250 /*Filename=*/std::string(Filename)); 3251 } 3252 3253 std::string ExprEngine::DumpGraph(ArrayRef<const ExplodedNode *> Nodes, 3254 StringRef Filename) { 3255 std::unique_ptr<ExplodedGraph> TrimmedG(G.trim(Nodes)); 3256 3257 if (!TrimmedG.get()) { 3258 llvm::errs() << "warning: Trimmed ExplodedGraph is empty.\n"; 3259 return ""; 3260 } 3261 3262 return llvm::WriteGraph(TrimmedG.get(), "TrimmedExprEngine", 3263 /*ShortNames=*/false, 3264 /*Title=*/"Trimmed Exploded Graph", 3265 /*Filename=*/std::string(Filename)); 3266 } 3267 3268 void *ProgramStateTrait<ReplayWithoutInlining>::GDMIndex() { 3269 static int index = 0; 3270 return &index; 3271 } 3272 3273 void ExprEngine::anchor() { } 3274