1 //===- ExprEngineCXX.cpp - ExprEngine support for C++ -----------*- C++ -*-===// 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 the C++ expression evaluation engine. 10 // 11 //===----------------------------------------------------------------------===// 12 13 #include "clang/StaticAnalyzer/Core/PathSensitive/ExprEngine.h" 14 #include "clang/Analysis/ConstructionContext.h" 15 #include "clang/AST/DeclCXX.h" 16 #include "clang/AST/StmtCXX.h" 17 #include "clang/AST/ParentMap.h" 18 #include "clang/Basic/PrettyStackTrace.h" 19 #include "clang/StaticAnalyzer/Core/CheckerManager.h" 20 #include "clang/StaticAnalyzer/Core/PathSensitive/AnalysisManager.h" 21 #include "clang/StaticAnalyzer/Core/PathSensitive/CallEvent.h" 22 23 using namespace clang; 24 using namespace ento; 25 26 void ExprEngine::CreateCXXTemporaryObject(const MaterializeTemporaryExpr *ME, 27 ExplodedNode *Pred, 28 ExplodedNodeSet &Dst) { 29 StmtNodeBuilder Bldr(Pred, Dst, *currBldrCtx); 30 const Expr *tempExpr = ME->GetTemporaryExpr()->IgnoreParens(); 31 ProgramStateRef state = Pred->getState(); 32 const LocationContext *LCtx = Pred->getLocationContext(); 33 34 state = createTemporaryRegionIfNeeded(state, LCtx, tempExpr, ME); 35 Bldr.generateNode(ME, Pred, state); 36 } 37 38 // FIXME: This is the sort of code that should eventually live in a Core 39 // checker rather than as a special case in ExprEngine. 40 void ExprEngine::performTrivialCopy(NodeBuilder &Bldr, ExplodedNode *Pred, 41 const CallEvent &Call) { 42 SVal ThisVal; 43 bool AlwaysReturnsLValue; 44 const CXXRecordDecl *ThisRD = nullptr; 45 if (const CXXConstructorCall *Ctor = dyn_cast<CXXConstructorCall>(&Call)) { 46 assert(Ctor->getDecl()->isTrivial()); 47 assert(Ctor->getDecl()->isCopyOrMoveConstructor()); 48 ThisVal = Ctor->getCXXThisVal(); 49 ThisRD = Ctor->getDecl()->getParent(); 50 AlwaysReturnsLValue = false; 51 } else { 52 assert(cast<CXXMethodDecl>(Call.getDecl())->isTrivial()); 53 assert(cast<CXXMethodDecl>(Call.getDecl())->getOverloadedOperator() == 54 OO_Equal); 55 ThisVal = cast<CXXInstanceCall>(Call).getCXXThisVal(); 56 ThisRD = cast<CXXMethodDecl>(Call.getDecl())->getParent(); 57 AlwaysReturnsLValue = true; 58 } 59 60 assert(ThisRD); 61 if (ThisRD->isEmpty()) { 62 // Do nothing for empty classes. Otherwise it'd retrieve an UnknownVal 63 // and bind it and RegionStore would think that the actual value 64 // in this region at this offset is unknown. 65 return; 66 } 67 68 const LocationContext *LCtx = Pred->getLocationContext(); 69 70 ExplodedNodeSet Dst; 71 Bldr.takeNodes(Pred); 72 73 SVal V = Call.getArgSVal(0); 74 75 // If the value being copied is not unknown, load from its location to get 76 // an aggregate rvalue. 77 if (Optional<Loc> L = V.getAs<Loc>()) 78 V = Pred->getState()->getSVal(*L); 79 else 80 assert(V.isUnknownOrUndef()); 81 82 const Expr *CallExpr = Call.getOriginExpr(); 83 evalBind(Dst, CallExpr, Pred, ThisVal, V, true); 84 85 PostStmt PS(CallExpr, LCtx); 86 for (ExplodedNodeSet::iterator I = Dst.begin(), E = Dst.end(); 87 I != E; ++I) { 88 ProgramStateRef State = (*I)->getState(); 89 if (AlwaysReturnsLValue) 90 State = State->BindExpr(CallExpr, LCtx, ThisVal); 91 else 92 State = bindReturnValue(Call, LCtx, State); 93 Bldr.generateNode(PS, State, *I); 94 } 95 } 96 97 98 SVal ExprEngine::makeZeroElementRegion(ProgramStateRef State, SVal LValue, 99 QualType &Ty, bool &IsArray) { 100 SValBuilder &SVB = State->getStateManager().getSValBuilder(); 101 ASTContext &Ctx = SVB.getContext(); 102 103 while (const ArrayType *AT = Ctx.getAsArrayType(Ty)) { 104 Ty = AT->getElementType(); 105 LValue = State->getLValue(Ty, SVB.makeZeroArrayIndex(), LValue); 106 IsArray = true; 107 } 108 109 return LValue; 110 } 111 112 std::pair<ProgramStateRef, SVal> ExprEngine::prepareForObjectConstruction( 113 const Expr *E, ProgramStateRef State, const LocationContext *LCtx, 114 const ConstructionContext *CC, EvalCallOptions &CallOpts) { 115 SValBuilder &SVB = getSValBuilder(); 116 MemRegionManager &MRMgr = SVB.getRegionManager(); 117 ASTContext &ACtx = SVB.getContext(); 118 119 // See if we're constructing an existing region by looking at the 120 // current construction context. 121 if (CC) { 122 switch (CC->getKind()) { 123 case ConstructionContext::CXX17ElidedCopyVariableKind: 124 case ConstructionContext::SimpleVariableKind: { 125 const auto *DSCC = cast<VariableConstructionContext>(CC); 126 const auto *DS = DSCC->getDeclStmt(); 127 const auto *Var = cast<VarDecl>(DS->getSingleDecl()); 128 SVal LValue = State->getLValue(Var, LCtx); 129 QualType Ty = Var->getType(); 130 LValue = 131 makeZeroElementRegion(State, LValue, Ty, CallOpts.IsArrayCtorOrDtor); 132 State = 133 addObjectUnderConstruction(State, DSCC->getDeclStmt(), LCtx, LValue); 134 return std::make_pair(State, LValue); 135 } 136 case ConstructionContext::CXX17ElidedCopyConstructorInitializerKind: 137 case ConstructionContext::SimpleConstructorInitializerKind: { 138 const auto *ICC = cast<ConstructorInitializerConstructionContext>(CC); 139 const auto *Init = ICC->getCXXCtorInitializer(); 140 assert(Init->isAnyMemberInitializer()); 141 const CXXMethodDecl *CurCtor = cast<CXXMethodDecl>(LCtx->getDecl()); 142 Loc ThisPtr = 143 SVB.getCXXThis(CurCtor, LCtx->getStackFrame()); 144 SVal ThisVal = State->getSVal(ThisPtr); 145 146 const ValueDecl *Field; 147 SVal FieldVal; 148 if (Init->isIndirectMemberInitializer()) { 149 Field = Init->getIndirectMember(); 150 FieldVal = State->getLValue(Init->getIndirectMember(), ThisVal); 151 } else { 152 Field = Init->getMember(); 153 FieldVal = State->getLValue(Init->getMember(), ThisVal); 154 } 155 156 QualType Ty = Field->getType(); 157 FieldVal = makeZeroElementRegion(State, FieldVal, Ty, 158 CallOpts.IsArrayCtorOrDtor); 159 State = addObjectUnderConstruction(State, Init, LCtx, FieldVal); 160 return std::make_pair(State, FieldVal); 161 } 162 case ConstructionContext::NewAllocatedObjectKind: { 163 if (AMgr.getAnalyzerOptions().MayInlineCXXAllocator) { 164 const auto *NECC = cast<NewAllocatedObjectConstructionContext>(CC); 165 const auto *NE = NECC->getCXXNewExpr(); 166 SVal V = *getObjectUnderConstruction(State, NE, LCtx); 167 if (const SubRegion *MR = 168 dyn_cast_or_null<SubRegion>(V.getAsRegion())) { 169 if (NE->isArray()) { 170 // TODO: In fact, we need to call the constructor for every 171 // allocated element, not just the first one! 172 CallOpts.IsArrayCtorOrDtor = true; 173 return std::make_pair( 174 State, loc::MemRegionVal(getStoreManager().GetElementZeroRegion( 175 MR, NE->getType()->getPointeeType()))); 176 } 177 return std::make_pair(State, V); 178 } 179 // TODO: Detect when the allocator returns a null pointer. 180 // Constructor shall not be called in this case. 181 } 182 break; 183 } 184 case ConstructionContext::SimpleReturnedValueKind: 185 case ConstructionContext::CXX17ElidedCopyReturnedValueKind: { 186 // The temporary is to be managed by the parent stack frame. 187 // So build it in the parent stack frame if we're not in the 188 // top frame of the analysis. 189 const StackFrameContext *SFC = LCtx->getStackFrame(); 190 if (const LocationContext *CallerLCtx = SFC->getParent()) { 191 auto RTC = (*SFC->getCallSiteBlock())[SFC->getIndex()] 192 .getAs<CFGCXXRecordTypedCall>(); 193 if (!RTC) { 194 // We were unable to find the correct construction context for the 195 // call in the parent stack frame. This is equivalent to not being 196 // able to find construction context at all. 197 break; 198 } 199 if (isa<BlockInvocationContext>(CallerLCtx)) { 200 // Unwrap block invocation contexts. They're mostly part of 201 // the current stack frame. 202 CallerLCtx = CallerLCtx->getParent(); 203 assert(!isa<BlockInvocationContext>(CallerLCtx)); 204 } 205 return prepareForObjectConstruction( 206 cast<Expr>(SFC->getCallSite()), State, CallerLCtx, 207 RTC->getConstructionContext(), CallOpts); 208 } else { 209 // We are on the top frame of the analysis. We do not know where is the 210 // object returned to. Conjure a symbolic region for the return value. 211 // TODO: We probably need a new MemRegion kind to represent the storage 212 // of that SymbolicRegion, so that we cound produce a fancy symbol 213 // instead of an anonymous conjured symbol. 214 // TODO: Do we need to track the region to avoid having it dead 215 // too early? It does die too early, at least in C++17, but because 216 // putting anything into a SymbolicRegion causes an immediate escape, 217 // it doesn't cause any leak false positives. 218 const auto *RCC = cast<ReturnedValueConstructionContext>(CC); 219 // Make sure that this doesn't coincide with any other symbol 220 // conjured for the returned expression. 221 static const int TopLevelSymRegionTag = 0; 222 const Expr *RetE = RCC->getReturnStmt()->getRetValue(); 223 assert(RetE && "Void returns should not have a construction context"); 224 QualType ReturnTy = RetE->getType(); 225 QualType RegionTy = ACtx.getPointerType(ReturnTy); 226 SVal V = SVB.conjureSymbolVal(&TopLevelSymRegionTag, RetE, SFC, 227 RegionTy, currBldrCtx->blockCount()); 228 return std::make_pair(State, V); 229 } 230 llvm_unreachable("Unhandled return value construction context!"); 231 } 232 case ConstructionContext::ElidedTemporaryObjectKind: { 233 assert(AMgr.getAnalyzerOptions().ShouldElideConstructors); 234 const auto *TCC = cast<ElidedTemporaryObjectConstructionContext>(CC); 235 const CXXBindTemporaryExpr *BTE = TCC->getCXXBindTemporaryExpr(); 236 const MaterializeTemporaryExpr *MTE = TCC->getMaterializedTemporaryExpr(); 237 const CXXConstructExpr *CE = TCC->getConstructorAfterElision(); 238 239 // Support pre-C++17 copy elision. We'll have the elidable copy 240 // constructor in the AST and in the CFG, but we'll skip it 241 // and construct directly into the final object. This call 242 // also sets the CallOpts flags for us. 243 SVal V; 244 // If the elided copy/move constructor is not supported, there's still 245 // benefit in trying to model the non-elided constructor. 246 // Stash our state before trying to elide, as it'll get overwritten. 247 ProgramStateRef PreElideState = State; 248 EvalCallOptions PreElideCallOpts = CallOpts; 249 250 std::tie(State, V) = prepareForObjectConstruction( 251 CE, State, LCtx, TCC->getConstructionContextAfterElision(), CallOpts); 252 253 // FIXME: This definition of "copy elision has not failed" is unreliable. 254 // It doesn't indicate that the constructor will actually be inlined 255 // later; it is still up to evalCall() to decide. 256 if (!CallOpts.IsCtorOrDtorWithImproperlyModeledTargetRegion) { 257 // Remember that we've elided the constructor. 258 State = addObjectUnderConstruction(State, CE, LCtx, V); 259 260 // Remember that we've elided the destructor. 261 if (BTE) 262 State = elideDestructor(State, BTE, LCtx); 263 264 // Instead of materialization, shamelessly return 265 // the final object destination. 266 if (MTE) 267 State = addObjectUnderConstruction(State, MTE, LCtx, V); 268 269 return std::make_pair(State, V); 270 } else { 271 // Copy elision failed. Revert the changes and proceed as if we have 272 // a simple temporary. 273 State = PreElideState; 274 CallOpts = PreElideCallOpts; 275 } 276 LLVM_FALLTHROUGH; 277 } 278 case ConstructionContext::SimpleTemporaryObjectKind: { 279 const auto *TCC = cast<TemporaryObjectConstructionContext>(CC); 280 const CXXBindTemporaryExpr *BTE = TCC->getCXXBindTemporaryExpr(); 281 const MaterializeTemporaryExpr *MTE = TCC->getMaterializedTemporaryExpr(); 282 SVal V = UnknownVal(); 283 284 if (MTE) { 285 if (const ValueDecl *VD = MTE->getExtendingDecl()) { 286 assert(MTE->getStorageDuration() != SD_FullExpression); 287 if (!VD->getType()->isReferenceType()) { 288 // We're lifetime-extended by a surrounding aggregate. 289 // Automatic destructors aren't quite working in this case 290 // on the CFG side. We should warn the caller about that. 291 // FIXME: Is there a better way to retrieve this information from 292 // the MaterializeTemporaryExpr? 293 CallOpts.IsTemporaryLifetimeExtendedViaAggregate = true; 294 } 295 } 296 297 if (MTE->getStorageDuration() == SD_Static || 298 MTE->getStorageDuration() == SD_Thread) 299 V = loc::MemRegionVal(MRMgr.getCXXStaticTempObjectRegion(E)); 300 } 301 302 if (V.isUnknown()) 303 V = loc::MemRegionVal(MRMgr.getCXXTempObjectRegion(E, LCtx)); 304 305 if (BTE) 306 State = addObjectUnderConstruction(State, BTE, LCtx, V); 307 308 if (MTE) 309 State = addObjectUnderConstruction(State, MTE, LCtx, V); 310 311 CallOpts.IsTemporaryCtorOrDtor = true; 312 return std::make_pair(State, V); 313 } 314 case ConstructionContext::ArgumentKind: { 315 // Arguments are technically temporaries. 316 CallOpts.IsTemporaryCtorOrDtor = true; 317 318 const auto *ACC = cast<ArgumentConstructionContext>(CC); 319 const Expr *E = ACC->getCallLikeExpr(); 320 unsigned Idx = ACC->getIndex(); 321 const CXXBindTemporaryExpr *BTE = ACC->getCXXBindTemporaryExpr(); 322 323 CallEventManager &CEMgr = getStateManager().getCallEventManager(); 324 SVal V = UnknownVal(); 325 auto getArgLoc = [&](CallEventRef<> Caller) -> Optional<SVal> { 326 const LocationContext *FutureSFC = Caller->getCalleeStackFrame(); 327 // Return early if we are unable to reliably foresee 328 // the future stack frame. 329 if (!FutureSFC) 330 return None; 331 332 // This should be equivalent to Caller->getDecl() for now, but 333 // FutureSFC->getDecl() is likely to support better stuff (like 334 // virtual functions) earlier. 335 const Decl *CalleeD = FutureSFC->getDecl(); 336 337 // FIXME: Support for variadic arguments is not implemented here yet. 338 if (CallEvent::isVariadic(CalleeD)) 339 return None; 340 341 // Operator arguments do not correspond to operator parameters 342 // because this-argument is implemented as a normal argument in 343 // operator call expressions but not in operator declarations. 344 const VarRegion *VR = Caller->getParameterLocation( 345 *Caller->getAdjustedParameterIndex(Idx)); 346 if (!VR) 347 return None; 348 349 return loc::MemRegionVal(VR); 350 }; 351 352 if (const auto *CE = dyn_cast<CallExpr>(E)) { 353 CallEventRef<> Caller = CEMgr.getSimpleCall(CE, State, LCtx); 354 if (auto OptV = getArgLoc(Caller)) 355 V = *OptV; 356 else 357 break; 358 State = addObjectUnderConstruction(State, {CE, Idx}, LCtx, V); 359 } else if (const auto *CCE = dyn_cast<CXXConstructExpr>(E)) { 360 // Don't bother figuring out the target region for the future 361 // constructor because we won't need it. 362 CallEventRef<> Caller = 363 CEMgr.getCXXConstructorCall(CCE, /*Target=*/nullptr, State, LCtx); 364 if (auto OptV = getArgLoc(Caller)) 365 V = *OptV; 366 else 367 break; 368 State = addObjectUnderConstruction(State, {CCE, Idx}, LCtx, V); 369 } else if (const auto *ME = dyn_cast<ObjCMessageExpr>(E)) { 370 CallEventRef<> Caller = CEMgr.getObjCMethodCall(ME, State, LCtx); 371 if (auto OptV = getArgLoc(Caller)) 372 V = *OptV; 373 else 374 break; 375 State = addObjectUnderConstruction(State, {ME, Idx}, LCtx, V); 376 } 377 378 assert(!V.isUnknown()); 379 380 if (BTE) 381 State = addObjectUnderConstruction(State, BTE, LCtx, V); 382 383 return std::make_pair(State, V); 384 } 385 } 386 } 387 // If we couldn't find an existing region to construct into, assume we're 388 // constructing a temporary. Notify the caller of our failure. 389 CallOpts.IsCtorOrDtorWithImproperlyModeledTargetRegion = true; 390 return std::make_pair( 391 State, loc::MemRegionVal(MRMgr.getCXXTempObjectRegion(E, LCtx))); 392 } 393 394 void ExprEngine::VisitCXXConstructExpr(const CXXConstructExpr *CE, 395 ExplodedNode *Pred, 396 ExplodedNodeSet &destNodes) { 397 const LocationContext *LCtx = Pred->getLocationContext(); 398 ProgramStateRef State = Pred->getState(); 399 400 SVal Target = UnknownVal(); 401 402 if (Optional<SVal> ElidedTarget = 403 getObjectUnderConstruction(State, CE, LCtx)) { 404 // We've previously modeled an elidable constructor by pretending that it in 405 // fact constructs into the correct target. This constructor can therefore 406 // be skipped. 407 Target = *ElidedTarget; 408 StmtNodeBuilder Bldr(Pred, destNodes, *currBldrCtx); 409 State = finishObjectConstruction(State, CE, LCtx); 410 if (auto L = Target.getAs<Loc>()) 411 State = State->BindExpr(CE, LCtx, State->getSVal(*L, CE->getType())); 412 Bldr.generateNode(CE, Pred, State); 413 return; 414 } 415 416 // FIXME: Handle arrays, which run the same constructor for every element. 417 // For now, we just run the first constructor (which should still invalidate 418 // the entire array). 419 420 EvalCallOptions CallOpts; 421 auto C = getCurrentCFGElement().getAs<CFGConstructor>(); 422 assert(C || getCurrentCFGElement().getAs<CFGStmt>()); 423 const ConstructionContext *CC = C ? C->getConstructionContext() : nullptr; 424 425 switch (CE->getConstructionKind()) { 426 case CXXConstructExpr::CK_Complete: { 427 std::tie(State, Target) = 428 prepareForObjectConstruction(CE, State, LCtx, CC, CallOpts); 429 break; 430 } 431 case CXXConstructExpr::CK_VirtualBase: 432 // Make sure we are not calling virtual base class initializers twice. 433 // Only the most-derived object should initialize virtual base classes. 434 if (const Stmt *Outer = LCtx->getStackFrame()->getCallSite()) { 435 const CXXConstructExpr *OuterCtor = dyn_cast<CXXConstructExpr>(Outer); 436 if (OuterCtor) { 437 switch (OuterCtor->getConstructionKind()) { 438 case CXXConstructExpr::CK_NonVirtualBase: 439 case CXXConstructExpr::CK_VirtualBase: 440 // Bail out! 441 destNodes.Add(Pred); 442 return; 443 case CXXConstructExpr::CK_Complete: 444 case CXXConstructExpr::CK_Delegating: 445 break; 446 } 447 } 448 } 449 LLVM_FALLTHROUGH; 450 case CXXConstructExpr::CK_NonVirtualBase: 451 // In C++17, classes with non-virtual bases may be aggregates, so they would 452 // be initialized as aggregates without a constructor call, so we may have 453 // a base class constructed directly into an initializer list without 454 // having the derived-class constructor call on the previous stack frame. 455 // Initializer lists may be nested into more initializer lists that 456 // correspond to surrounding aggregate initializations. 457 // FIXME: For now this code essentially bails out. We need to find the 458 // correct target region and set it. 459 // FIXME: Instead of relying on the ParentMap, we should have the 460 // trigger-statement (InitListExpr in this case) passed down from CFG or 461 // otherwise always available during construction. 462 if (dyn_cast_or_null<InitListExpr>(LCtx->getParentMap().getParent(CE))) { 463 MemRegionManager &MRMgr = getSValBuilder().getRegionManager(); 464 Target = loc::MemRegionVal(MRMgr.getCXXTempObjectRegion(CE, LCtx)); 465 CallOpts.IsCtorOrDtorWithImproperlyModeledTargetRegion = true; 466 break; 467 } 468 LLVM_FALLTHROUGH; 469 case CXXConstructExpr::CK_Delegating: { 470 const CXXMethodDecl *CurCtor = cast<CXXMethodDecl>(LCtx->getDecl()); 471 Loc ThisPtr = getSValBuilder().getCXXThis(CurCtor, 472 LCtx->getStackFrame()); 473 SVal ThisVal = State->getSVal(ThisPtr); 474 475 if (CE->getConstructionKind() == CXXConstructExpr::CK_Delegating) { 476 Target = ThisVal; 477 } else { 478 // Cast to the base type. 479 bool IsVirtual = 480 (CE->getConstructionKind() == CXXConstructExpr::CK_VirtualBase); 481 SVal BaseVal = getStoreManager().evalDerivedToBase(ThisVal, CE->getType(), 482 IsVirtual); 483 Target = BaseVal; 484 } 485 break; 486 } 487 } 488 489 if (State != Pred->getState()) { 490 static SimpleProgramPointTag T("ExprEngine", 491 "Prepare for object construction"); 492 ExplodedNodeSet DstPrepare; 493 StmtNodeBuilder BldrPrepare(Pred, DstPrepare, *currBldrCtx); 494 BldrPrepare.generateNode(CE, Pred, State, &T, ProgramPoint::PreStmtKind); 495 assert(DstPrepare.size() <= 1); 496 if (DstPrepare.size() == 0) 497 return; 498 Pred = *BldrPrepare.begin(); 499 } 500 501 CallEventManager &CEMgr = getStateManager().getCallEventManager(); 502 CallEventRef<CXXConstructorCall> Call = 503 CEMgr.getCXXConstructorCall(CE, Target.getAsRegion(), State, LCtx); 504 505 ExplodedNodeSet DstPreVisit; 506 getCheckerManager().runCheckersForPreStmt(DstPreVisit, Pred, CE, *this); 507 508 // FIXME: Is it possible and/or useful to do this before PreStmt? 509 ExplodedNodeSet PreInitialized; 510 { 511 StmtNodeBuilder Bldr(DstPreVisit, PreInitialized, *currBldrCtx); 512 for (ExplodedNodeSet::iterator I = DstPreVisit.begin(), 513 E = DstPreVisit.end(); 514 I != E; ++I) { 515 ProgramStateRef State = (*I)->getState(); 516 if (CE->requiresZeroInitialization()) { 517 // FIXME: Once we properly handle constructors in new-expressions, we'll 518 // need to invalidate the region before setting a default value, to make 519 // sure there aren't any lingering bindings around. This probably needs 520 // to happen regardless of whether or not the object is zero-initialized 521 // to handle random fields of a placement-initialized object picking up 522 // old bindings. We might only want to do it when we need to, though. 523 // FIXME: This isn't actually correct for arrays -- we need to zero- 524 // initialize the entire array, not just the first element -- but our 525 // handling of arrays everywhere else is weak as well, so this shouldn't 526 // actually make things worse. Placement new makes this tricky as well, 527 // since it's then possible to be initializing one part of a multi- 528 // dimensional array. 529 State = State->bindDefaultZero(Target, LCtx); 530 } 531 532 Bldr.generateNode(CE, *I, State, /*tag=*/nullptr, 533 ProgramPoint::PreStmtKind); 534 } 535 } 536 537 ExplodedNodeSet DstPreCall; 538 getCheckerManager().runCheckersForPreCall(DstPreCall, PreInitialized, 539 *Call, *this); 540 541 ExplodedNodeSet DstEvaluated; 542 StmtNodeBuilder Bldr(DstPreCall, DstEvaluated, *currBldrCtx); 543 544 if (CE->getConstructor()->isTrivial() && 545 CE->getConstructor()->isCopyOrMoveConstructor() && 546 !CallOpts.IsArrayCtorOrDtor) { 547 // FIXME: Handle other kinds of trivial constructors as well. 548 for (ExplodedNodeSet::iterator I = DstPreCall.begin(), E = DstPreCall.end(); 549 I != E; ++I) 550 performTrivialCopy(Bldr, *I, *Call); 551 552 } else { 553 for (ExplodedNodeSet::iterator I = DstPreCall.begin(), E = DstPreCall.end(); 554 I != E; ++I) 555 defaultEvalCall(Bldr, *I, *Call, CallOpts); 556 } 557 558 // If the CFG was constructed without elements for temporary destructors 559 // and the just-called constructor created a temporary object then 560 // stop exploration if the temporary object has a noreturn constructor. 561 // This can lose coverage because the destructor, if it were present 562 // in the CFG, would be called at the end of the full expression or 563 // later (for life-time extended temporaries) -- but avoids infeasible 564 // paths when no-return temporary destructors are used for assertions. 565 const AnalysisDeclContext *ADC = LCtx->getAnalysisDeclContext(); 566 if (!ADC->getCFGBuildOptions().AddTemporaryDtors) { 567 const MemRegion *Target = Call->getCXXThisVal().getAsRegion(); 568 if (Target && isa<CXXTempObjectRegion>(Target) && 569 Call->getDecl()->getParent()->isAnyDestructorNoReturn()) { 570 571 // If we've inlined the constructor, then DstEvaluated would be empty. 572 // In this case we still want a sink, which could be implemented 573 // in processCallExit. But we don't have that implemented at the moment, 574 // so if you hit this assertion, see if you can avoid inlining 575 // the respective constructor when analyzer-config cfg-temporary-dtors 576 // is set to false. 577 // Otherwise there's nothing wrong with inlining such constructor. 578 assert(!DstEvaluated.empty() && 579 "We should not have inlined this constructor!"); 580 581 for (ExplodedNode *N : DstEvaluated) { 582 Bldr.generateSink(CE, N, N->getState()); 583 } 584 585 // There is no need to run the PostCall and PostStmt checker 586 // callbacks because we just generated sinks on all nodes in th 587 // frontier. 588 return; 589 } 590 } 591 592 ExplodedNodeSet DstPostArgumentCleanup; 593 for (auto I : DstEvaluated) 594 finishArgumentConstruction(DstPostArgumentCleanup, I, *Call); 595 596 // If there were other constructors called for object-type arguments 597 // of this constructor, clean them up. 598 ExplodedNodeSet DstPostCall; 599 getCheckerManager().runCheckersForPostCall(DstPostCall, 600 DstPostArgumentCleanup, 601 *Call, *this); 602 getCheckerManager().runCheckersForPostStmt(destNodes, DstPostCall, CE, *this); 603 } 604 605 void ExprEngine::VisitCXXDestructor(QualType ObjectType, 606 const MemRegion *Dest, 607 const Stmt *S, 608 bool IsBaseDtor, 609 ExplodedNode *Pred, 610 ExplodedNodeSet &Dst, 611 const EvalCallOptions &CallOpts) { 612 assert(S && "A destructor without a trigger!"); 613 const LocationContext *LCtx = Pred->getLocationContext(); 614 ProgramStateRef State = Pred->getState(); 615 616 const CXXRecordDecl *RecordDecl = ObjectType->getAsCXXRecordDecl(); 617 assert(RecordDecl && "Only CXXRecordDecls should have destructors"); 618 const CXXDestructorDecl *DtorDecl = RecordDecl->getDestructor(); 619 620 // FIXME: There should always be a Decl, otherwise the destructor call 621 // shouldn't have been added to the CFG in the first place. 622 if (!DtorDecl) { 623 // Skip the invalid destructor. We cannot simply return because 624 // it would interrupt the analysis instead. 625 static SimpleProgramPointTag T("ExprEngine", "SkipInvalidDestructor"); 626 // FIXME: PostImplicitCall with a null decl may crash elsewhere anyway. 627 PostImplicitCall PP(/*Decl=*/nullptr, S->getEndLoc(), LCtx, &T); 628 NodeBuilder Bldr(Pred, Dst, *currBldrCtx); 629 Bldr.generateNode(PP, Pred->getState(), Pred); 630 return; 631 } 632 633 CallEventManager &CEMgr = getStateManager().getCallEventManager(); 634 CallEventRef<CXXDestructorCall> Call = 635 CEMgr.getCXXDestructorCall(DtorDecl, S, Dest, IsBaseDtor, State, LCtx); 636 637 PrettyStackTraceLoc CrashInfo(getContext().getSourceManager(), 638 Call->getSourceRange().getBegin(), 639 "Error evaluating destructor"); 640 641 ExplodedNodeSet DstPreCall; 642 getCheckerManager().runCheckersForPreCall(DstPreCall, Pred, 643 *Call, *this); 644 645 ExplodedNodeSet DstInvalidated; 646 StmtNodeBuilder Bldr(DstPreCall, DstInvalidated, *currBldrCtx); 647 for (ExplodedNodeSet::iterator I = DstPreCall.begin(), E = DstPreCall.end(); 648 I != E; ++I) 649 defaultEvalCall(Bldr, *I, *Call, CallOpts); 650 651 getCheckerManager().runCheckersForPostCall(Dst, DstInvalidated, 652 *Call, *this); 653 } 654 655 void ExprEngine::VisitCXXNewAllocatorCall(const CXXNewExpr *CNE, 656 ExplodedNode *Pred, 657 ExplodedNodeSet &Dst) { 658 ProgramStateRef State = Pred->getState(); 659 const LocationContext *LCtx = Pred->getLocationContext(); 660 PrettyStackTraceLoc CrashInfo(getContext().getSourceManager(), 661 CNE->getBeginLoc(), 662 "Error evaluating New Allocator Call"); 663 CallEventManager &CEMgr = getStateManager().getCallEventManager(); 664 CallEventRef<CXXAllocatorCall> Call = 665 CEMgr.getCXXAllocatorCall(CNE, State, LCtx); 666 667 ExplodedNodeSet DstPreCall; 668 getCheckerManager().runCheckersForPreCall(DstPreCall, Pred, 669 *Call, *this); 670 671 ExplodedNodeSet DstPostCall; 672 StmtNodeBuilder CallBldr(DstPreCall, DstPostCall, *currBldrCtx); 673 for (auto I : DstPreCall) { 674 // FIXME: Provide evalCall for checkers? 675 defaultEvalCall(CallBldr, I, *Call); 676 } 677 // If the call is inlined, DstPostCall will be empty and we bail out now. 678 679 // Store return value of operator new() for future use, until the actual 680 // CXXNewExpr gets processed. 681 ExplodedNodeSet DstPostValue; 682 StmtNodeBuilder ValueBldr(DstPostCall, DstPostValue, *currBldrCtx); 683 for (auto I : DstPostCall) { 684 // FIXME: Because CNE serves as the "call site" for the allocator (due to 685 // lack of a better expression in the AST), the conjured return value symbol 686 // is going to be of the same type (C++ object pointer type). Technically 687 // this is not correct because the operator new's prototype always says that 688 // it returns a 'void *'. So we should change the type of the symbol, 689 // and then evaluate the cast over the symbolic pointer from 'void *' to 690 // the object pointer type. But without changing the symbol's type it 691 // is breaking too much to evaluate the no-op symbolic cast over it, so we 692 // skip it for now. 693 ProgramStateRef State = I->getState(); 694 SVal RetVal = State->getSVal(CNE, LCtx); 695 696 // If this allocation function is not declared as non-throwing, failures 697 // /must/ be signalled by exceptions, and thus the return value will never 698 // be NULL. -fno-exceptions does not influence this semantics. 699 // FIXME: GCC has a -fcheck-new option, which forces it to consider the case 700 // where new can return NULL. If we end up supporting that option, we can 701 // consider adding a check for it here. 702 // C++11 [basic.stc.dynamic.allocation]p3. 703 if (const FunctionDecl *FD = CNE->getOperatorNew()) { 704 QualType Ty = FD->getType(); 705 if (const auto *ProtoType = Ty->getAs<FunctionProtoType>()) 706 if (!ProtoType->isNothrow()) 707 State = State->assume(RetVal.castAs<DefinedOrUnknownSVal>(), true); 708 } 709 710 ValueBldr.generateNode( 711 CNE, I, addObjectUnderConstruction(State, CNE, LCtx, RetVal)); 712 } 713 714 ExplodedNodeSet DstPostPostCallCallback; 715 getCheckerManager().runCheckersForPostCall(DstPostPostCallCallback, 716 DstPostValue, *Call, *this); 717 for (auto I : DstPostPostCallCallback) { 718 getCheckerManager().runCheckersForNewAllocator( 719 CNE, *getObjectUnderConstruction(I->getState(), CNE, LCtx), Dst, I, 720 *this); 721 } 722 } 723 724 void ExprEngine::VisitCXXNewExpr(const CXXNewExpr *CNE, ExplodedNode *Pred, 725 ExplodedNodeSet &Dst) { 726 // FIXME: Much of this should eventually migrate to CXXAllocatorCall. 727 // Also, we need to decide how allocators actually work -- they're not 728 // really part of the CXXNewExpr because they happen BEFORE the 729 // CXXConstructExpr subexpression. See PR12014 for some discussion. 730 731 unsigned blockCount = currBldrCtx->blockCount(); 732 const LocationContext *LCtx = Pred->getLocationContext(); 733 SVal symVal = UnknownVal(); 734 FunctionDecl *FD = CNE->getOperatorNew(); 735 736 bool IsStandardGlobalOpNewFunction = 737 FD->isReplaceableGlobalAllocationFunction(); 738 739 ProgramStateRef State = Pred->getState(); 740 741 // Retrieve the stored operator new() return value. 742 if (AMgr.getAnalyzerOptions().MayInlineCXXAllocator) { 743 symVal = *getObjectUnderConstruction(State, CNE, LCtx); 744 State = finishObjectConstruction(State, CNE, LCtx); 745 } 746 747 // We assume all standard global 'operator new' functions allocate memory in 748 // heap. We realize this is an approximation that might not correctly model 749 // a custom global allocator. 750 if (symVal.isUnknown()) { 751 if (IsStandardGlobalOpNewFunction) 752 symVal = svalBuilder.getConjuredHeapSymbolVal(CNE, LCtx, blockCount); 753 else 754 symVal = svalBuilder.conjureSymbolVal(nullptr, CNE, LCtx, CNE->getType(), 755 blockCount); 756 } 757 758 CallEventManager &CEMgr = getStateManager().getCallEventManager(); 759 CallEventRef<CXXAllocatorCall> Call = 760 CEMgr.getCXXAllocatorCall(CNE, State, LCtx); 761 762 if (!AMgr.getAnalyzerOptions().MayInlineCXXAllocator) { 763 // Invalidate placement args. 764 // FIXME: Once we figure out how we want allocators to work, 765 // we should be using the usual pre-/(default-)eval-/post-call checks here. 766 State = Call->invalidateRegions(blockCount); 767 if (!State) 768 return; 769 770 // If this allocation function is not declared as non-throwing, failures 771 // /must/ be signalled by exceptions, and thus the return value will never 772 // be NULL. -fno-exceptions does not influence this semantics. 773 // FIXME: GCC has a -fcheck-new option, which forces it to consider the case 774 // where new can return NULL. If we end up supporting that option, we can 775 // consider adding a check for it here. 776 // C++11 [basic.stc.dynamic.allocation]p3. 777 if (FD) { 778 QualType Ty = FD->getType(); 779 if (const auto *ProtoType = Ty->getAs<FunctionProtoType>()) 780 if (!ProtoType->isNothrow()) 781 if (auto dSymVal = symVal.getAs<DefinedOrUnknownSVal>()) 782 State = State->assume(*dSymVal, true); 783 } 784 } 785 786 StmtNodeBuilder Bldr(Pred, Dst, *currBldrCtx); 787 788 SVal Result = symVal; 789 790 if (CNE->isArray()) { 791 // FIXME: allocating an array requires simulating the constructors. 792 // For now, just return a symbolicated region. 793 if (const SubRegion *NewReg = 794 dyn_cast_or_null<SubRegion>(symVal.getAsRegion())) { 795 QualType ObjTy = CNE->getType()->getAs<PointerType>()->getPointeeType(); 796 const ElementRegion *EleReg = 797 getStoreManager().GetElementZeroRegion(NewReg, ObjTy); 798 Result = loc::MemRegionVal(EleReg); 799 } 800 State = State->BindExpr(CNE, Pred->getLocationContext(), Result); 801 Bldr.generateNode(CNE, Pred, State); 802 return; 803 } 804 805 // FIXME: Once we have proper support for CXXConstructExprs inside 806 // CXXNewExpr, we need to make sure that the constructed object is not 807 // immediately invalidated here. (The placement call should happen before 808 // the constructor call anyway.) 809 if (FD && FD->isReservedGlobalPlacementOperator()) { 810 // Non-array placement new should always return the placement location. 811 SVal PlacementLoc = State->getSVal(CNE->getPlacementArg(0), LCtx); 812 Result = svalBuilder.evalCast(PlacementLoc, CNE->getType(), 813 CNE->getPlacementArg(0)->getType()); 814 } 815 816 // Bind the address of the object, then check to see if we cached out. 817 State = State->BindExpr(CNE, LCtx, Result); 818 ExplodedNode *NewN = Bldr.generateNode(CNE, Pred, State); 819 if (!NewN) 820 return; 821 822 // If the type is not a record, we won't have a CXXConstructExpr as an 823 // initializer. Copy the value over. 824 if (const Expr *Init = CNE->getInitializer()) { 825 if (!isa<CXXConstructExpr>(Init)) { 826 assert(Bldr.getResults().size() == 1); 827 Bldr.takeNodes(NewN); 828 evalBind(Dst, CNE, NewN, Result, State->getSVal(Init, LCtx), 829 /*FirstInit=*/IsStandardGlobalOpNewFunction); 830 } 831 } 832 } 833 834 void ExprEngine::VisitCXXDeleteExpr(const CXXDeleteExpr *CDE, 835 ExplodedNode *Pred, ExplodedNodeSet &Dst) { 836 StmtNodeBuilder Bldr(Pred, Dst, *currBldrCtx); 837 ProgramStateRef state = Pred->getState(); 838 Bldr.generateNode(CDE, Pred, state); 839 } 840 841 void ExprEngine::VisitCXXCatchStmt(const CXXCatchStmt *CS, 842 ExplodedNode *Pred, 843 ExplodedNodeSet &Dst) { 844 const VarDecl *VD = CS->getExceptionDecl(); 845 if (!VD) { 846 Dst.Add(Pred); 847 return; 848 } 849 850 const LocationContext *LCtx = Pred->getLocationContext(); 851 SVal V = svalBuilder.conjureSymbolVal(CS, LCtx, VD->getType(), 852 currBldrCtx->blockCount()); 853 ProgramStateRef state = Pred->getState(); 854 state = state->bindLoc(state->getLValue(VD, LCtx), V, LCtx); 855 856 StmtNodeBuilder Bldr(Pred, Dst, *currBldrCtx); 857 Bldr.generateNode(CS, Pred, state); 858 } 859 860 void ExprEngine::VisitCXXThisExpr(const CXXThisExpr *TE, ExplodedNode *Pred, 861 ExplodedNodeSet &Dst) { 862 StmtNodeBuilder Bldr(Pred, Dst, *currBldrCtx); 863 864 // Get the this object region from StoreManager. 865 const LocationContext *LCtx = Pred->getLocationContext(); 866 const MemRegion *R = 867 svalBuilder.getRegionManager().getCXXThisRegion( 868 getContext().getCanonicalType(TE->getType()), 869 LCtx); 870 871 ProgramStateRef state = Pred->getState(); 872 SVal V = state->getSVal(loc::MemRegionVal(R)); 873 Bldr.generateNode(TE, Pred, state->BindExpr(TE, LCtx, V)); 874 } 875 876 void ExprEngine::VisitLambdaExpr(const LambdaExpr *LE, ExplodedNode *Pred, 877 ExplodedNodeSet &Dst) { 878 const LocationContext *LocCtxt = Pred->getLocationContext(); 879 880 // Get the region of the lambda itself. 881 const MemRegion *R = svalBuilder.getRegionManager().getCXXTempObjectRegion( 882 LE, LocCtxt); 883 SVal V = loc::MemRegionVal(R); 884 885 ProgramStateRef State = Pred->getState(); 886 887 // If we created a new MemRegion for the lambda, we should explicitly bind 888 // the captures. 889 CXXRecordDecl::field_iterator CurField = LE->getLambdaClass()->field_begin(); 890 for (LambdaExpr::const_capture_init_iterator i = LE->capture_init_begin(), 891 e = LE->capture_init_end(); 892 i != e; ++i, ++CurField) { 893 FieldDecl *FieldForCapture = *CurField; 894 SVal FieldLoc = State->getLValue(FieldForCapture, V); 895 896 SVal InitVal; 897 if (!FieldForCapture->hasCapturedVLAType()) { 898 Expr *InitExpr = *i; 899 assert(InitExpr && "Capture missing initialization expression"); 900 InitVal = State->getSVal(InitExpr, LocCtxt); 901 } else { 902 // The field stores the length of a captured variable-length array. 903 // These captures don't have initialization expressions; instead we 904 // get the length from the VLAType size expression. 905 Expr *SizeExpr = FieldForCapture->getCapturedVLAType()->getSizeExpr(); 906 InitVal = State->getSVal(SizeExpr, LocCtxt); 907 } 908 909 State = State->bindLoc(FieldLoc, InitVal, LocCtxt); 910 } 911 912 // Decay the Loc into an RValue, because there might be a 913 // MaterializeTemporaryExpr node above this one which expects the bound value 914 // to be an RValue. 915 SVal LambdaRVal = State->getSVal(R); 916 917 ExplodedNodeSet Tmp; 918 StmtNodeBuilder Bldr(Pred, Tmp, *currBldrCtx); 919 // FIXME: is this the right program point kind? 920 Bldr.generateNode(LE, Pred, 921 State->BindExpr(LE, LocCtxt, LambdaRVal), 922 nullptr, ProgramPoint::PostLValueKind); 923 924 // FIXME: Move all post/pre visits to ::Visit(). 925 getCheckerManager().runCheckersForPostStmt(Dst, Tmp, LE, *this); 926 } 927