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Ted Kremenek77349cb2008-02-14 22:13:12 +00001//=-- GRExprEngine.cpp - Path-Sensitive Expression-Level Dataflow ---*- C++ -*-=
Ted Kremenek64924852008-01-31 02:35:41 +00002//
Ted Kremenek4af84312008-01-31 06:49:09 +00003// The LLVM Compiler Infrastructure
Ted Kremenekd27f8162008-01-15 23:55:06 +00004//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
Ted Kremenek77349cb2008-02-14 22:13:12 +000010// This file defines a meta-engine for path-sensitive dataflow analysis that
11// is built on GREngine, but provides the boilerplate to execute transfer
12// functions and build the ExplodedGraph at the expression level.
Ted Kremenekd27f8162008-01-15 23:55:06 +000013//
14//===----------------------------------------------------------------------===//
15
Ted Kremenek77349cb2008-02-14 22:13:12 +000016#include "clang/Analysis/PathSensitive/GRExprEngine.h"
Ted Kremeneke01c9872008-02-14 22:36:46 +000017#include "llvm/Support/Streams.h"
Ted Kremenekb387a3f2008-02-14 22:16:04 +000018
Ted Kremenek0f5f0592008-02-27 06:07:00 +000019#ifndef NDEBUG
20#include "llvm/Support/GraphWriter.h"
21#include <sstream>
22#endif
23
Ted Kremenekb387a3f2008-02-14 22:16:04 +000024using namespace clang;
25using llvm::dyn_cast;
26using llvm::cast;
27using llvm::APSInt;
Ted Kremenekab2b8c52008-01-23 19:59:44 +000028
Ted Kremenek07932632008-02-27 06:47:26 +000029GRExprEngine::StateTy GRExprEngine::getInitialState() {
30
31 // The LiveVariables information already has a compilation of all VarDecls
32 // used in the function. Iterate through this set, and "symbolicate"
33 // any VarDecl whose value originally comes from outside the function.
34
35 typedef LiveVariables::AnalysisDataTy LVDataTy;
36 LVDataTy& D = Liveness.getAnalysisData();
37
38 ValueStateImpl StateImpl = *StateMgr.getInitialState().getImpl();
39
40 for (LVDataTy::decl_iterator I=D.begin_decl(), E=D.end_decl(); I != E; ++I) {
41
42 VarDecl* VD = cast<VarDecl>(const_cast<ScopedDecl*>(I->first));
43
44 if (VD->hasGlobalStorage() || isa<ParmVarDecl>(VD)) {
45 RVal X = RVal::GetSymbolValue(SymMgr, VD);
46 StateMgr.BindVar(StateImpl, VD, X);
47 }
48 }
49
50 return StateMgr.getPersistentState(StateImpl);
51}
52
Ted Kremenek4d4dd852008-02-13 17:41:41 +000053GRExprEngine::StateTy
Ted Kremenekaa1c4e52008-02-21 18:02:17 +000054GRExprEngine::SetRVal(StateTy St, Expr* Ex, const RVal& V) {
Ted Kremenek3271f8d2008-02-07 04:16:04 +000055
Ted Kremeneke070a1d2008-02-04 21:59:01 +000056 if (!StateCleaned) {
57 St = RemoveDeadBindings(CurrentStmt, St);
58 StateCleaned = true;
59 }
Ted Kremenek3271f8d2008-02-07 04:16:04 +000060
Ted Kremeneke070a1d2008-02-04 21:59:01 +000061 bool isBlkExpr = false;
Ted Kremenek3271f8d2008-02-07 04:16:04 +000062
Ted Kremenekaa1c4e52008-02-21 18:02:17 +000063 if (Ex == CurrentStmt) {
64 isBlkExpr = getCFG().isBlkExpr(Ex);
Ted Kremeneke070a1d2008-02-04 21:59:01 +000065
66 if (!isBlkExpr)
67 return St;
68 }
Ted Kremenek3271f8d2008-02-07 04:16:04 +000069
Ted Kremenek5a7b3822008-02-26 23:37:01 +000070 return StateMgr.SetRVal(St, Ex, V, isBlkExpr, false);
Ted Kremeneke070a1d2008-02-04 21:59:01 +000071}
72
Ted Kremenek4d4dd852008-02-13 17:41:41 +000073const GRExprEngine::StateTy::BufferTy&
Ted Kremenekaa1c4e52008-02-21 18:02:17 +000074GRExprEngine::SetRVal(StateTy St, Expr* Ex, const RVal::BufferTy& RB,
Ted Kremenekcba2e432008-02-05 19:35:18 +000075 StateTy::BufferTy& RetBuf) {
76
77 assert (RetBuf.empty());
78
Ted Kremenekaa1c4e52008-02-21 18:02:17 +000079 for (RVal::BufferTy::const_iterator I = RB.begin(), E = RB.end(); I!=E; ++I)
80 RetBuf.push_back(SetRVal(St, Ex, *I));
Ted Kremenekcba2e432008-02-05 19:35:18 +000081
82 return RetBuf;
83}
84
Ted Kremenek4d4dd852008-02-13 17:41:41 +000085GRExprEngine::StateTy
Ted Kremenekaa1c4e52008-02-21 18:02:17 +000086GRExprEngine::SetRVal(StateTy St, const LVal& LV, const RVal& RV) {
Ted Kremeneke070a1d2008-02-04 21:59:01 +000087
88 if (!StateCleaned) {
89 St = RemoveDeadBindings(CurrentStmt, St);
90 StateCleaned = true;
91 }
92
Ted Kremenekaa1c4e52008-02-21 18:02:17 +000093 return StateMgr.SetRVal(St, LV, RV);
Ted Kremeneke070a1d2008-02-04 21:59:01 +000094}
95
Ted Kremenek05a23782008-02-26 19:05:15 +000096GRExprEngine::StateTy
97GRExprEngine::MarkBranch(StateTy St, Stmt* Terminator, bool branchTaken) {
98
99 switch (Terminator->getStmtClass()) {
100 default:
101 return St;
102
103 case Stmt::BinaryOperatorClass: { // '&&' and '||'
104
105 BinaryOperator* B = cast<BinaryOperator>(Terminator);
106 BinaryOperator::Opcode Op = B->getOpcode();
107
108 assert (Op == BinaryOperator::LAnd || Op == BinaryOperator::LOr);
109
110 // For &&, if we take the true branch, then the value of the whole
111 // expression is that of the RHS expression.
112 //
113 // For ||, if we take the false branch, then the value of the whole
114 // expression is that of the RHS expression.
115
116 Expr* Ex = (Op == BinaryOperator::LAnd && branchTaken) ||
117 (Op == BinaryOperator::LOr && !branchTaken)
118 ? B->getRHS() : B->getLHS();
119
120 return SetBlkExprRVal(St, B, UninitializedVal(Ex));
121 }
122
123 case Stmt::ConditionalOperatorClass: { // ?:
124
125 ConditionalOperator* C = cast<ConditionalOperator>(Terminator);
126
127 // For ?, if branchTaken == true then the value is either the LHS or
128 // the condition itself. (GNU extension).
129
130 Expr* Ex;
131
132 if (branchTaken)
133 Ex = C->getLHS() ? C->getLHS() : C->getCond();
134 else
135 Ex = C->getRHS();
136
137 return SetBlkExprRVal(St, C, UninitializedVal(Ex));
138 }
139
140 case Stmt::ChooseExprClass: { // ?:
141
142 ChooseExpr* C = cast<ChooseExpr>(Terminator);
143
144 Expr* Ex = branchTaken ? C->getLHS() : C->getRHS();
145 return SetBlkExprRVal(St, C, UninitializedVal(Ex));
146 }
147 }
148}
149
Ted Kremenek4d4dd852008-02-13 17:41:41 +0000150void GRExprEngine::ProcessBranch(Expr* Condition, Stmt* Term,
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000151 BranchNodeBuilder& builder) {
Ted Kremenekb38911f2008-01-30 23:03:39 +0000152
Ted Kremeneke7d22112008-02-11 19:21:59 +0000153 // Remove old bindings for subexpressions.
154 StateTy PrevState = StateMgr.RemoveSubExprBindings(builder.getState());
Ted Kremenekf233d482008-02-05 00:26:40 +0000155
Ted Kremenekb2331832008-02-15 22:29:00 +0000156 // Check for NULL conditions; e.g. "for(;;)"
157 if (!Condition) {
158 builder.markInfeasible(false);
159
160 // Get the current block counter.
161 GRBlockCounter BC = builder.getBlockCounter();
162 unsigned BlockID = builder.getTargetBlock(true)->getBlockID();
163 unsigned NumVisited = BC.getNumVisited(BlockID);
164
165 if (NumVisited < 1) builder.generateNode(PrevState, true);
166 else builder.markInfeasible(true);
167
168 return;
169 }
170
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000171 RVal V = GetRVal(PrevState, Condition);
Ted Kremenekb38911f2008-01-30 23:03:39 +0000172
173 switch (V.getBaseKind()) {
174 default:
175 break;
176
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000177 case RVal::UnknownKind:
Ted Kremenek58b33212008-02-26 19:40:44 +0000178 builder.generateNode(MarkBranch(PrevState, Term, true), true);
179 builder.generateNode(MarkBranch(PrevState, Term, false), false);
Ted Kremenekb38911f2008-01-30 23:03:39 +0000180 return;
181
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000182 case RVal::UninitializedKind: {
Ted Kremenekb38911f2008-01-30 23:03:39 +0000183 NodeTy* N = builder.generateNode(PrevState, true);
184
185 if (N) {
186 N->markAsSink();
187 UninitBranches.insert(N);
188 }
189
190 builder.markInfeasible(false);
191 return;
192 }
193 }
Ted Kremenekb2331832008-02-15 22:29:00 +0000194
Ted Kremenek8e49dd62008-02-12 18:08:17 +0000195 // Get the current block counter.
196 GRBlockCounter BC = builder.getBlockCounter();
Ted Kremenekd9435bf2008-02-12 19:49:57 +0000197 unsigned BlockID = builder.getTargetBlock(true)->getBlockID();
198 unsigned NumVisited = BC.getNumVisited(BlockID);
Ted Kremenekf233d482008-02-05 00:26:40 +0000199
Ted Kremenek8e49dd62008-02-12 18:08:17 +0000200 if (isa<nonlval::ConcreteInt>(V) ||
201 BC.getNumVisited(builder.getTargetBlock(true)->getBlockID()) < 1) {
202
203 // Process the true branch.
Ted Kremenekb38911f2008-01-30 23:03:39 +0000204
Ted Kremenek8e49dd62008-02-12 18:08:17 +0000205 bool isFeasible = true;
206
207 StateTy St = Assume(PrevState, V, true, isFeasible);
208
209 if (isFeasible)
Ted Kremenek05a23782008-02-26 19:05:15 +0000210 builder.generateNode(MarkBranch(St, Term, true), true);
Ted Kremenek8e49dd62008-02-12 18:08:17 +0000211 else
212 builder.markInfeasible(true);
Ted Kremenekb38911f2008-01-30 23:03:39 +0000213 }
Ted Kremenek8e49dd62008-02-12 18:08:17 +0000214 else
215 builder.markInfeasible(true);
Ted Kremenekb38911f2008-01-30 23:03:39 +0000216
Ted Kremenekd9435bf2008-02-12 19:49:57 +0000217 BlockID = builder.getTargetBlock(false)->getBlockID();
218 NumVisited = BC.getNumVisited(BlockID);
Ted Kremenekb38911f2008-01-30 23:03:39 +0000219
Ted Kremenek8e49dd62008-02-12 18:08:17 +0000220 if (isa<nonlval::ConcreteInt>(V) ||
221 BC.getNumVisited(builder.getTargetBlock(false)->getBlockID()) < 1) {
222
223 // Process the false branch.
224
225 bool isFeasible = false;
226
227 StateTy St = Assume(PrevState, V, false, isFeasible);
228
229 if (isFeasible)
Ted Kremenek05a23782008-02-26 19:05:15 +0000230 builder.generateNode(MarkBranch(St, Term, false), false);
Ted Kremenek8e49dd62008-02-12 18:08:17 +0000231 else
232 builder.markInfeasible(false);
233 }
Ted Kremenekf233d482008-02-05 00:26:40 +0000234 else
235 builder.markInfeasible(false);
Ted Kremenek71c29bd2008-01-29 23:32:35 +0000236}
237
Ted Kremenek4d4dd852008-02-13 17:41:41 +0000238/// ProcessIndirectGoto - Called by GRCoreEngine. Used to generate successor
Ted Kremenek754607e2008-02-13 00:24:44 +0000239/// nodes by processing the 'effects' of a computed goto jump.
Ted Kremenek4d4dd852008-02-13 17:41:41 +0000240void GRExprEngine::ProcessIndirectGoto(IndirectGotoNodeBuilder& builder) {
Ted Kremenek754607e2008-02-13 00:24:44 +0000241
242 StateTy St = builder.getState();
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000243 RVal V = GetRVal(St, builder.getTarget());
Ted Kremenek754607e2008-02-13 00:24:44 +0000244
245 // Three possibilities:
246 //
247 // (1) We know the computed label.
248 // (2) The label is NULL (or some other constant), or Uninitialized.
249 // (3) We have no clue about the label. Dispatch to all targets.
250 //
251
252 typedef IndirectGotoNodeBuilder::iterator iterator;
253
254 if (isa<lval::GotoLabel>(V)) {
255 LabelStmt* L = cast<lval::GotoLabel>(V).getLabel();
256
257 for (iterator I=builder.begin(), E=builder.end(); I != E; ++I) {
Ted Kremenek24f1a962008-02-13 17:27:37 +0000258 if (I.getLabel() == L) {
259 builder.generateNode(I, St);
Ted Kremenek754607e2008-02-13 00:24:44 +0000260 return;
261 }
262 }
263
264 assert (false && "No block with label.");
265 return;
266 }
267
268 if (isa<lval::ConcreteInt>(V) || isa<UninitializedVal>(V)) {
269 // Dispatch to the first target and mark it as a sink.
Ted Kremenek24f1a962008-02-13 17:27:37 +0000270 NodeTy* N = builder.generateNode(builder.begin(), St, true);
Ted Kremenek754607e2008-02-13 00:24:44 +0000271 UninitBranches.insert(N);
272 return;
273 }
274
275 // This is really a catch-all. We don't support symbolics yet.
276
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000277 assert (V.isUnknown());
Ted Kremenek754607e2008-02-13 00:24:44 +0000278
279 for (iterator I=builder.begin(), E=builder.end(); I != E; ++I)
Ted Kremenek24f1a962008-02-13 17:27:37 +0000280 builder.generateNode(I, St);
Ted Kremenek754607e2008-02-13 00:24:44 +0000281}
Ted Kremenekf233d482008-02-05 00:26:40 +0000282
Ted Kremenekdaeb9a72008-02-13 23:08:21 +0000283/// ProcessSwitch - Called by GRCoreEngine. Used to generate successor
284/// nodes by processing the 'effects' of a switch statement.
285void GRExprEngine::ProcessSwitch(SwitchNodeBuilder& builder) {
286
287 typedef SwitchNodeBuilder::iterator iterator;
288
289 StateTy St = builder.getState();
Ted Kremenek692416c2008-02-18 22:57:02 +0000290 Expr* CondE = builder.getCondition();
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000291 RVal CondV = GetRVal(St, CondE);
Ted Kremenekdaeb9a72008-02-13 23:08:21 +0000292
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000293 if (CondV.isUninit()) {
Ted Kremenekdaeb9a72008-02-13 23:08:21 +0000294 NodeTy* N = builder.generateDefaultCaseNode(St, true);
295 UninitBranches.insert(N);
296 return;
297 }
298
299 StateTy DefaultSt = St;
300
301 // While most of this can be assumed (such as the signedness), having it
302 // just computed makes sure everything makes the same assumptions end-to-end.
Ted Kremenek692416c2008-02-18 22:57:02 +0000303
304 unsigned bits = getContext().getTypeSize(CondE->getType(),
305 CondE->getExprLoc());
306
Ted Kremenekdaeb9a72008-02-13 23:08:21 +0000307 APSInt V1(bits, false);
308 APSInt V2 = V1;
309
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000310 for (iterator I = builder.begin(), EI = builder.end(); I != EI; ++I) {
Ted Kremenekdaeb9a72008-02-13 23:08:21 +0000311
312 CaseStmt* Case = cast<CaseStmt>(I.getCase());
313
314 // Evaluate the case.
315 if (!Case->getLHS()->isIntegerConstantExpr(V1, getContext(), 0, true)) {
316 assert (false && "Case condition must evaluate to an integer constant.");
317 return;
318 }
319
320 // Get the RHS of the case, if it exists.
321
322 if (Expr* E = Case->getRHS()) {
323 if (!E->isIntegerConstantExpr(V2, getContext(), 0, true)) {
324 assert (false &&
325 "Case condition (RHS) must evaluate to an integer constant.");
326 return ;
327 }
328
329 assert (V1 <= V2);
330 }
331 else V2 = V1;
332
333 // FIXME: Eventually we should replace the logic below with a range
334 // comparison, rather than concretize the values within the range.
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000335 // This should be easy once we have "ranges" for NonLVals.
Ted Kremenekdaeb9a72008-02-13 23:08:21 +0000336
337 do {
338 nonlval::ConcreteInt CaseVal(ValMgr.getValue(V1));
339
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000340 RVal Res = EvalBinOp(BinaryOperator::EQ, CondV, CaseVal);
Ted Kremenekdaeb9a72008-02-13 23:08:21 +0000341
342 // Now "assume" that the case matches.
Ted Kremenek692416c2008-02-18 22:57:02 +0000343 bool isFeasible = false;
Ted Kremenekdaeb9a72008-02-13 23:08:21 +0000344
Ted Kremenek6cb0b542008-02-14 19:37:24 +0000345 StateTy StNew = Assume(St, Res, true, isFeasible);
Ted Kremenekdaeb9a72008-02-13 23:08:21 +0000346
347 if (isFeasible) {
348 builder.generateCaseStmtNode(I, StNew);
349
350 // If CondV evaluates to a constant, then we know that this
351 // is the *only* case that we can take, so stop evaluating the
352 // others.
353 if (isa<nonlval::ConcreteInt>(CondV))
354 return;
355 }
356
357 // Now "assume" that the case doesn't match. Add this state
358 // to the default state (if it is feasible).
359
Ted Kremenek6cb0b542008-02-14 19:37:24 +0000360 StNew = Assume(DefaultSt, Res, false, isFeasible);
Ted Kremenekdaeb9a72008-02-13 23:08:21 +0000361
362 if (isFeasible)
363 DefaultSt = StNew;
364
365 // Concretize the next value in the range.
366 ++V1;
367
368 } while (V1 < V2);
369 }
370
371 // If we reach here, than we know that the default branch is
372 // possible.
373 builder.generateDefaultCaseNode(DefaultSt);
374}
375
376
Ted Kremenek4d4dd852008-02-13 17:41:41 +0000377void GRExprEngine::VisitLogicalExpr(BinaryOperator* B, NodeTy* Pred,
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000378 NodeSet& Dst) {
Ted Kremenek9dca0622008-02-19 00:22:37 +0000379
Ted Kremenek05a23782008-02-26 19:05:15 +0000380 assert (B->getOpcode() == BinaryOperator::LAnd ||
381 B->getOpcode() == BinaryOperator::LOr);
382
383 assert (B == CurrentStmt && getCFG().isBlkExpr(B));
384
385 StateTy St = Pred->getState();
386 RVal X = GetBlkExprRVal(St, B);
387
388 assert (X.isUninit());
389
390 Expr* Ex = (Expr*) cast<UninitializedVal>(X).getData();
391
392 assert (Ex);
393
394 if (Ex == B->getRHS()) {
395
396 X = GetBlkExprRVal(St, Ex);
397
Ted Kremenek58b33212008-02-26 19:40:44 +0000398 // Handle uninitialized values.
399
400 if (X.isUninit()) {
401 Nodify(Dst, B, Pred, SetBlkExprRVal(St, B, X));
402 return;
403 }
404
Ted Kremenek05a23782008-02-26 19:05:15 +0000405 // We took the RHS. Because the value of the '&&' or '||' expression must
406 // evaluate to 0 or 1, we must assume the value of the RHS evaluates to 0
407 // or 1. Alternatively, we could take a lazy approach, and calculate this
408 // value later when necessary. We don't have the machinery in place for
409 // this right now, and since most logical expressions are used for branches,
410 // the payoff is not likely to be large. Instead, we do eager evaluation.
411
412 bool isFeasible = false;
413 StateTy NewState = Assume(St, X, true, isFeasible);
414
415 if (isFeasible)
416 Nodify(Dst, B, Pred, SetBlkExprRVal(NewState, B, MakeConstantVal(1U, B)));
417
418 isFeasible = false;
419 NewState = Assume(St, X, false, isFeasible);
420
421 if (isFeasible)
422 Nodify(Dst, B, Pred, SetBlkExprRVal(NewState, B, MakeConstantVal(0U, B)));
Ted Kremenekf233d482008-02-05 00:26:40 +0000423 }
424 else {
Ted Kremenek05a23782008-02-26 19:05:15 +0000425 // We took the LHS expression. Depending on whether we are '&&' or
426 // '||' we know what the value of the expression is via properties of
427 // the short-circuiting.
428
429 X = MakeConstantVal( B->getOpcode() == BinaryOperator::LAnd ? 0U : 1U, B);
430 Nodify(Dst, B, Pred, SetBlkExprRVal(St, B, X));
Ted Kremenekf233d482008-02-05 00:26:40 +0000431 }
Ted Kremenekf233d482008-02-05 00:26:40 +0000432}
Ted Kremenek05a23782008-02-26 19:05:15 +0000433
Ted Kremenekf233d482008-02-05 00:26:40 +0000434
Ted Kremenek4d4dd852008-02-13 17:41:41 +0000435void GRExprEngine::ProcessStmt(Stmt* S, StmtNodeBuilder& builder) {
Ted Kremenekab2b8c52008-01-23 19:59:44 +0000436
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000437 Builder = &builder;
Ted Kremenekab2b8c52008-01-23 19:59:44 +0000438 StmtEntryNode = builder.getLastNode();
439 CurrentStmt = S;
440 NodeSet Dst;
441 StateCleaned = false;
442
443 Visit(S, StmtEntryNode, Dst);
444
445 // If no nodes were generated, generate a new node that has all the
446 // dead mappings removed.
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000447
Ted Kremenekab2b8c52008-01-23 19:59:44 +0000448 if (Dst.size() == 1 && *Dst.begin() == StmtEntryNode) {
449 StateTy St = RemoveDeadBindings(S, StmtEntryNode->getState());
450 builder.generateNode(S, St, StmtEntryNode);
451 }
Ted Kremenekf84469b2008-01-18 00:41:32 +0000452
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000453 // For safety, NULL out these variables.
454
Ted Kremenekab2b8c52008-01-23 19:59:44 +0000455 CurrentStmt = NULL;
456 StmtEntryNode = NULL;
457 Builder = NULL;
Ted Kremenekd27f8162008-01-15 23:55:06 +0000458}
459
Ted Kremenek4d4dd852008-02-13 17:41:41 +0000460GRExprEngine::NodeTy*
461GRExprEngine::Nodify(NodeSet& Dst, Stmt* S, NodeTy* Pred, StateTy St) {
Ted Kremenekab2b8c52008-01-23 19:59:44 +0000462
463 // If the state hasn't changed, don't generate a new node.
Ted Kremenek7e593362008-02-07 15:20:13 +0000464 if (St == Pred->getState())
Ted Kremenekd131c4f2008-02-07 05:48:01 +0000465 return NULL;
Ted Kremenekcb448ca2008-01-16 00:53:15 +0000466
Ted Kremenekd131c4f2008-02-07 05:48:01 +0000467 NodeTy* N = Builder->generateNode(S, St, Pred);
468 Dst.Add(N);
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000469
Ted Kremenekd131c4f2008-02-07 05:48:01 +0000470 return N;
Ted Kremenekcb448ca2008-01-16 00:53:15 +0000471}
Ted Kremenekd27f8162008-01-15 23:55:06 +0000472
Ted Kremenek4d4dd852008-02-13 17:41:41 +0000473void GRExprEngine::Nodify(NodeSet& Dst, Stmt* S, NodeTy* Pred,
Ted Kremenekcba2e432008-02-05 19:35:18 +0000474 const StateTy::BufferTy& SB) {
475
476 for (StateTy::BufferTy::const_iterator I=SB.begin(), E=SB.end(); I!=E; ++I)
477 Nodify(Dst, S, Pred, *I);
478}
479
Ted Kremenek44842c22008-02-13 18:06:44 +0000480void GRExprEngine::VisitDeclRefExpr(DeclRefExpr* D, NodeTy* Pred, NodeSet& Dst){
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000481
Ted Kremenek3271f8d2008-02-07 04:16:04 +0000482 if (D != CurrentStmt) {
483 Dst.Add(Pred); // No-op. Simply propagate the current state unchanged.
484 return;
485 }
486
487 // If we are here, we are loading the value of the decl and binding
488 // it to the block-level expression.
489
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000490 StateTy St = Pred->getState();
491 Nodify(Dst, D, Pred, SetRVal(St, D, GetRVal(St, D)));
Ted Kremenek3271f8d2008-02-07 04:16:04 +0000492}
493
Ted Kremenekde434242008-02-19 01:44:53 +0000494void GRExprEngine::VisitCall(CallExpr* CE, NodeTy* Pred,
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000495 CallExpr::arg_iterator AI,
496 CallExpr::arg_iterator AE,
Ted Kremenekde434242008-02-19 01:44:53 +0000497 NodeSet& Dst) {
498
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000499 // Process the arguments.
500
501 if (AI != AE) {
Ted Kremenekde434242008-02-19 01:44:53 +0000502
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000503 NodeSet DstTmp;
Ted Kremeneka6fbe802008-02-27 00:44:11 +0000504
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000505 Visit(*AI, Pred, DstTmp);
Ted Kremeneka6fbe802008-02-27 00:44:11 +0000506 if (DstTmp.empty()) DstTmp.Add(Pred);
507
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000508 ++AI;
509
510 for (NodeSet::iterator DI=DstTmp.begin(), DE=DstTmp.end(); DI != DE; ++DI)
511 VisitCall(CE, *DI, AI, AE, Dst);
Ted Kremenekde434242008-02-19 01:44:53 +0000512
513 return;
514 }
515
516 // If we reach here we have processed all of the arguments. Evaluate
517 // the callee expression.
Ted Kremenek994a09b2008-02-25 21:16:03 +0000518 NodeSet DstTmp;
519 Expr* Callee = CE->getCallee()->IgnoreParenCasts();
520
521 VisitLVal(Callee, Pred, DstTmp);
Ted Kremenek3ef15122008-02-27 00:46:25 +0000522 if (DstTmp.empty()) DstTmp.Add(Pred);
Ted Kremenekde434242008-02-19 01:44:53 +0000523
524 // Finally, evaluate the function call.
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000525 for (NodeSet::iterator DI = DstTmp.begin(), DE = DstTmp.end(); DI!=DE; ++DI) {
526
Ted Kremenekde434242008-02-19 01:44:53 +0000527 StateTy St = (*DI)->getState();
Ted Kremenek994a09b2008-02-25 21:16:03 +0000528 RVal L = GetLVal(St, Callee);
Ted Kremenekde434242008-02-19 01:44:53 +0000529
530 // Check for uninitialized control-flow.
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000531
532 if (L.isUninit()) {
533
Ted Kremenekde434242008-02-19 01:44:53 +0000534 NodeTy* N = Builder->generateNode(CE, St, *DI);
535 N->markAsSink();
536 UninitBranches.insert(N);
537 continue;
538 }
539
Ted Kremenek03da0d72008-02-21 19:46:04 +0000540 if (L.isUnknown()) {
541 // Invalidate all arguments passed in by reference (LVals).
542 for (CallExpr::arg_iterator I = CE->arg_begin(), E = CE->arg_end();
543 I != E; ++I) {
544 RVal V = GetRVal(St, *I);
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000545
Ted Kremenek03da0d72008-02-21 19:46:04 +0000546 if (isa<LVal>(V))
547 St = SetRVal(St, cast<LVal>(V), UnknownVal());
548 }
549 }
550 else
551 St = EvalCall(CE, cast<LVal>(L), (*DI)->getState());
552
553 Nodify(Dst, CE, *DI, St);
Ted Kremenekde434242008-02-19 01:44:53 +0000554 }
555}
556
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000557void GRExprEngine::VisitCast(Expr* CastE, Expr* Ex, NodeTy* Pred, NodeSet& Dst){
Ted Kremenek874d63f2008-01-24 02:02:54 +0000558
Ted Kremenek5d3003a2008-02-19 18:52:54 +0000559 NodeSet S1;
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000560 Visit(Ex, Pred, S1);
Ted Kremenek874d63f2008-01-24 02:02:54 +0000561
Ted Kremenek5d3003a2008-02-19 18:52:54 +0000562 QualType T = CastE->getType();
563
Ted Kremenek402563b2008-02-19 18:47:04 +0000564 // Check for redundant casts or casting to "void"
565 if (T->isVoidType() ||
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000566 Ex->getType() == T ||
567 (T->isPointerType() && Ex->getType()->isFunctionType())) {
Ted Kremenek5d3003a2008-02-19 18:52:54 +0000568
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000569 for (NodeSet::iterator I1 = S1.begin(), E1 = S1.end(); I1 != E1; ++I1)
Ted Kremenek5d3003a2008-02-19 18:52:54 +0000570 Dst.Add(*I1);
571
Ted Kremenek874d63f2008-01-24 02:02:54 +0000572 return;
573 }
574
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000575 for (NodeSet::iterator I1 = S1.begin(), E1 = S1.end(); I1 != E1; ++I1) {
Ted Kremenek874d63f2008-01-24 02:02:54 +0000576 NodeTy* N = *I1;
577 StateTy St = N->getState();
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000578 RVal V = GetRVal(St, Ex);
Ted Kremenek9ef1ec92008-02-21 18:43:30 +0000579 Nodify(Dst, CastE, N, SetRVal(St, CastE, EvalCast(V, CastE->getType())));
Ted Kremenek874d63f2008-01-24 02:02:54 +0000580 }
Ted Kremenek9de04c42008-01-24 20:55:43 +0000581}
582
Ted Kremenek4d4dd852008-02-13 17:41:41 +0000583void GRExprEngine::VisitDeclStmt(DeclStmt* DS, GRExprEngine::NodeTy* Pred,
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000584 GRExprEngine::NodeSet& Dst) {
Ted Kremenek9de04c42008-01-24 20:55:43 +0000585
586 StateTy St = Pred->getState();
587
588 for (const ScopedDecl* D = DS->getDecl(); D; D = D->getNextDeclarator())
Ted Kremenek403c1812008-01-28 22:51:57 +0000589 if (const VarDecl* VD = dyn_cast<VarDecl>(D)) {
Ted Kremenekc2c95b02008-02-19 00:29:51 +0000590
591 // FIXME: Add support for local arrays.
592 if (VD->getType()->isArrayType())
593 continue;
594
Ted Kremenekb0ab2122008-02-27 19:21:33 +0000595 const Expr* Ex = VD->getInit();
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000596
Ted Kremenekb0ab2122008-02-27 19:21:33 +0000597 if (!VD->hasGlobalStorage() || VD->getStorageClass() == VarDecl::Static) {
598
599 // In this context, Static => Local variable.
600
601 assert (!VD->getStorageClass() == VarDecl::Static ||
602 !isa<FileVarDecl>(VD));
603
604 // If there is no initializer, set the value of the
605 // variable to "Uninitialized".
606 //
607 // FIXME: static variables may have an initializer, but the second
608 // time a function is called those values may not be current.
609
610 St = SetRVal(St, lval::DeclVal(VD),
611 Ex ? GetRVal(St, Ex) : UninitializedVal());
612 }
Ted Kremenek403c1812008-01-28 22:51:57 +0000613 }
Ted Kremenek9de04c42008-01-24 20:55:43 +0000614
615 Nodify(Dst, DS, Pred, St);
616
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000617 if (Dst.empty()) { Dst.Add(Pred); }
Ted Kremenek9de04c42008-01-24 20:55:43 +0000618}
Ted Kremenek874d63f2008-01-24 02:02:54 +0000619
Ted Kremenekf233d482008-02-05 00:26:40 +0000620
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000621void GRExprEngine::VisitGuardedExpr(Expr* Ex, Expr* L, Expr* R,
Ted Kremenekf233d482008-02-05 00:26:40 +0000622 NodeTy* Pred, NodeSet& Dst) {
623
Ted Kremenek05a23782008-02-26 19:05:15 +0000624 assert (Ex == CurrentStmt && getCFG().isBlkExpr(Ex));
625
Ted Kremenekf233d482008-02-05 00:26:40 +0000626 StateTy St = Pred->getState();
Ted Kremenek05a23782008-02-26 19:05:15 +0000627 RVal X = GetBlkExprRVal(St, Ex);
Ted Kremenekf233d482008-02-05 00:26:40 +0000628
Ted Kremenek05a23782008-02-26 19:05:15 +0000629 assert (X.isUninit());
Ted Kremenekf233d482008-02-05 00:26:40 +0000630
Ted Kremenek05a23782008-02-26 19:05:15 +0000631 Expr* SE = (Expr*) cast<UninitializedVal>(X).getData();
632
633 assert (SE);
634
635 X = GetBlkExprRVal(St, SE);
Ted Kremenek5a7b3822008-02-26 23:37:01 +0000636
637 // Make sure that we invalidate the previous binding.
638 Nodify(Dst, Ex, Pred, StateMgr.SetRVal(St, Ex, X, true, true));
Ted Kremenekf233d482008-02-05 00:26:40 +0000639}
640
Ted Kremenekd9435bf2008-02-12 19:49:57 +0000641/// VisitSizeOfAlignOfTypeExpr - Transfer function for sizeof(type).
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000642void GRExprEngine::VisitSizeOfAlignOfTypeExpr(SizeOfAlignOfTypeExpr* Ex,
643 NodeTy* Pred,
644 NodeSet& Dst) {
Ted Kremenek9ef1ec92008-02-21 18:43:30 +0000645
646 assert (Ex->isSizeOf() && "FIXME: AlignOf(Expr) not yet implemented.");
Ted Kremenekd9435bf2008-02-12 19:49:57 +0000647
648 // 6.5.3.4 sizeof: "The result type is an integer."
649
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000650 QualType T = Ex->getArgumentType();
Ted Kremenek9ef1ec92008-02-21 18:43:30 +0000651
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000652
Ted Kremenek297d0d72008-02-21 18:15:29 +0000653 // FIXME: Add support for VLAs.
Eli Friedmand8688562008-02-15 12:28:27 +0000654 if (!T.getTypePtr()->isConstantSizeType())
Ted Kremenekd9435bf2008-02-12 19:49:57 +0000655 return;
656
Ted Kremenek297d0d72008-02-21 18:15:29 +0000657
658 uint64_t size = 1; // Handle sizeof(void)
659
660 if (T != getContext().VoidTy) {
661 SourceLocation Loc = Ex->getExprLoc();
662 size = getContext().getTypeSize(T, Loc) / 8;
663 }
Ted Kremenekd9435bf2008-02-12 19:49:57 +0000664
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000665 Nodify(Dst, Ex, Pred,
666 SetRVal(Pred->getState(), Ex,
Ted Kremenek297d0d72008-02-21 18:15:29 +0000667 NonLVal::MakeVal(ValMgr, size, Ex->getType())));
Ted Kremenekd9435bf2008-02-12 19:49:57 +0000668
669}
670
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000671void GRExprEngine::VisitDeref(UnaryOperator* U, NodeTy* Pred, NodeSet& Dst) {
672
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000673 Expr* Ex = U->getSubExpr()->IgnoreParens();
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000674
675 NodeSet DstTmp;
676
Ted Kremenek018c15f2008-02-26 03:44:25 +0000677 if (isa<DeclRefExpr>(Ex))
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000678 DstTmp.Add(Pred);
679 else
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000680 Visit(Ex, Pred, DstTmp);
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000681
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000682 for (NodeSet::iterator I = DstTmp.begin(), DE = DstTmp.end(); I != DE; ++I) {
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000683
684 NodeTy* N = *I;
685 StateTy St = N->getState();
686
687 // FIXME: Bifurcate when dereferencing a symbolic with no constraints?
688
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000689 RVal V = GetRVal(St, Ex);
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000690
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000691 // Check for dereferences of uninitialized values.
692
693 if (V.isUninit()) {
694
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000695 NodeTy* Succ = Builder->generateNode(U, St, N);
696
697 if (Succ) {
698 Succ->markAsSink();
699 UninitDeref.insert(Succ);
700 }
701
702 continue;
703 }
704
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000705 // Check for dereferences of unknown values. Treat as No-Ops.
706
707 if (V.isUnknown()) {
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000708 Dst.Add(N);
709 continue;
710 }
711
712 // After a dereference, one of two possible situations arise:
713 // (1) A crash, because the pointer was NULL.
714 // (2) The pointer is not NULL, and the dereference works.
715 //
716 // We add these assumptions.
717
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000718 LVal LV = cast<LVal>(V);
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000719 bool isFeasibleNotNull;
720
721 // "Assume" that the pointer is Not-NULL.
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000722
723 StateTy StNotNull = Assume(St, LV, true, isFeasibleNotNull);
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000724
725 if (isFeasibleNotNull) {
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000726
727 // FIXME: Currently symbolic analysis "generates" new symbols
728 // for the contents of values. We need a better approach.
729
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000730 Nodify(Dst, U, N, SetRVal(StNotNull, U,
731 GetRVal(StNotNull, LV, U->getType())));
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000732 }
733
734 bool isFeasibleNull;
735
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000736 // Now "assume" that the pointer is NULL.
737
738 StateTy StNull = Assume(St, LV, false, isFeasibleNull);
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000739
740 if (isFeasibleNull) {
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000741
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000742 // We don't use "Nodify" here because the node will be a sink
743 // and we have no intention of processing it later.
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000744
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000745 NodeTy* NullNode = Builder->generateNode(U, StNull, N);
746
747 if (NullNode) {
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000748
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000749 NullNode->markAsSink();
750
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000751 if (isFeasibleNotNull) ImplicitNullDeref.insert(NullNode);
752 else ExplicitNullDeref.insert(NullNode);
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000753 }
754 }
755 }
756}
757
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000758void GRExprEngine::VisitUnaryOperator(UnaryOperator* U, NodeTy* Pred,
759 NodeSet& Dst) {
Ted Kremenek3271f8d2008-02-07 04:16:04 +0000760
Ted Kremenek7b8009a2008-01-24 02:28:56 +0000761 NodeSet S1;
Ted Kremenek3271f8d2008-02-07 04:16:04 +0000762
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000763 assert (U->getOpcode() != UnaryOperator::Deref);
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000764 assert (U->getOpcode() != UnaryOperator::SizeOf);
765 assert (U->getOpcode() != UnaryOperator::AlignOf);
766
767 bool use_GetLVal = false;
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000768
769 switch (U->getOpcode()) {
770 case UnaryOperator::PostInc:
771 case UnaryOperator::PostDec:
772 case UnaryOperator::PreInc:
773 case UnaryOperator::PreDec:
774 case UnaryOperator::AddrOf:
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000775 // Evalue subexpression as an LVal.
776 use_GetLVal = true;
777 VisitLVal(U->getSubExpr(), Pred, S1);
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000778 break;
779
780 default:
781 Visit(U->getSubExpr(), Pred, S1);
782 break;
783 }
784
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000785 for (NodeSet::iterator I1 = S1.begin(), E1 = S1.end(); I1 != E1; ++I1) {
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000786
Ted Kremenek7b8009a2008-01-24 02:28:56 +0000787 NodeTy* N1 = *I1;
788 StateTy St = N1->getState();
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000789
790 RVal SubV = use_GetLVal ? GetLVal(St, U->getSubExpr()) :
791 GetRVal(St, U->getSubExpr());
792
793 if (SubV.isUnknown()) {
794 Dst.Add(N1);
795 continue;
796 }
797
798 if (SubV.isUninit()) {
799 Nodify(Dst, U, N1, SetRVal(St, U, SubV));
800 continue;
801 }
Ted Kremenek7b8009a2008-01-24 02:28:56 +0000802
Ted Kremenek50d0ac22008-02-15 22:09:30 +0000803 if (U->isIncrementDecrementOp()) {
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000804
805 // Handle ++ and -- (both pre- and post-increment).
806
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000807 LVal SubLV = cast<LVal>(SubV);
808 RVal V = GetRVal(St, SubLV, U->getType());
809
Ted Kremenek89063af2008-02-21 19:15:37 +0000810 if (V.isUnknown()) {
811 Dst.Add(N1);
812 continue;
813 }
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000814
815 // Propagate uninitialized values.
816 if (V.isUninit()) {
817 Nodify(Dst, U, N1, SetRVal(St, U, V));
818 continue;
819 }
820
Ted Kremenek443003b2008-02-21 19:29:23 +0000821 // Handle all other values.
Ted Kremenek50d0ac22008-02-15 22:09:30 +0000822
823 BinaryOperator::Opcode Op = U->isIncrementOp() ? BinaryOperator::Add
824 : BinaryOperator::Sub;
825
Ted Kremenek443003b2008-02-21 19:29:23 +0000826 RVal Result = EvalBinOp(Op, V, MakeConstantVal(1U, U));
Ted Kremenek50d0ac22008-02-15 22:09:30 +0000827
828 if (U->isPostfix())
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000829 St = SetRVal(SetRVal(St, U, V), SubLV, Result);
Ted Kremenek50d0ac22008-02-15 22:09:30 +0000830 else
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000831 St = SetRVal(SetRVal(St, U, Result), SubLV, Result);
Ted Kremenek50d0ac22008-02-15 22:09:30 +0000832
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000833 Nodify(Dst, U, N1, St);
Ted Kremenek50d0ac22008-02-15 22:09:30 +0000834 continue;
835 }
836
837 // Handle all other unary operators.
838
Ted Kremenek7b8009a2008-01-24 02:28:56 +0000839 switch (U->getOpcode()) {
Ted Kremenekcf78b6a2008-02-06 22:50:25 +0000840
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000841 case UnaryOperator::Minus:
842 St = SetRVal(St, U, EvalMinus(U, cast<NonLVal>(SubV)));
Ted Kremenekdacbb4f2008-01-24 08:20:02 +0000843 break;
Ted Kremenekdacbb4f2008-01-24 08:20:02 +0000844
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000845 case UnaryOperator::Not:
846 St = SetRVal(St, U, EvalComplement(cast<NonLVal>(SubV)));
Ted Kremenek90e42032008-02-20 04:12:31 +0000847 break;
Ted Kremenek90e42032008-02-20 04:12:31 +0000848
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000849 case UnaryOperator::LNot:
Ted Kremenekc5d3b4c2008-02-04 16:58:30 +0000850
Ted Kremenekc60f0f72008-02-06 17:56:00 +0000851 // C99 6.5.3.3: "The expression !E is equivalent to (0==E)."
852 //
853 // Note: technically we do "E == 0", but this is the same in the
854 // transfer functions as "0 == E".
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000855
856 if (isa<LVal>(SubV)) {
857 lval::ConcreteInt V(ValMgr.getZeroWithPtrWidth());
858 RVal Result = EvalBinOp(BinaryOperator::EQ, cast<LVal>(SubV), V);
859 St = SetRVal(St, U, Result);
Ted Kremenekc60f0f72008-02-06 17:56:00 +0000860 }
861 else {
Ted Kremenekf7ca6962008-02-22 00:42:36 +0000862 Expr* Ex = U->getSubExpr();
863 nonlval::ConcreteInt V(ValMgr.getValue(0, Ex->getType()));
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000864 RVal Result = EvalBinOp(BinaryOperator::EQ, cast<NonLVal>(SubV), V);
865 St = SetRVal(St, U, Result);
Ted Kremenekc60f0f72008-02-06 17:56:00 +0000866 }
867
868 break;
Ted Kremenekc60f0f72008-02-06 17:56:00 +0000869
Ted Kremenek64924852008-01-31 02:35:41 +0000870 case UnaryOperator::AddrOf: {
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000871 assert (isa<LVal>(SubV));
872 St = SetRVal(St, U, SubV);
Ted Kremenek64924852008-01-31 02:35:41 +0000873 break;
874 }
Ted Kremenekd131c4f2008-02-07 05:48:01 +0000875
Ted Kremenek7b8009a2008-01-24 02:28:56 +0000876 default: ;
877 assert (false && "Not implemented.");
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000878 }
879
880 Nodify(Dst, U, N1, St);
Ted Kremenek7b8009a2008-01-24 02:28:56 +0000881 }
882}
883
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000884void GRExprEngine::VisitSizeOfExpr(UnaryOperator* U, NodeTy* Pred,
885 NodeSet& Dst) {
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000886
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000887 QualType T = U->getSubExpr()->getType();
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000888
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000889 // FIXME: Add support for VLAs.
890 if (!T.getTypePtr()->isConstantSizeType())
891 return;
892
893 SourceLocation Loc = U->getExprLoc();
894 uint64_t size = getContext().getTypeSize(T, Loc) / 8;
895 StateTy St = Pred->getState();
896 St = SetRVal(St, U, NonLVal::MakeVal(ValMgr, size, U->getType(), Loc));
897
898 Nodify(Dst, U, Pred, St);
899}
900
901void GRExprEngine::VisitLVal(Expr* Ex, NodeTy* Pred, NodeSet& Dst) {
Ted Kremenek2ad88682008-02-27 07:04:16 +0000902
903 if (Ex != CurrentStmt && getCFG().isBlkExpr(Ex)) {
904 Dst.Add(Pred);
905 return;
906 }
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000907
908 Ex = Ex->IgnoreParens();
909
Ted Kremenek07932632008-02-27 06:47:26 +0000910 if (isa<DeclRefExpr>(Ex)) {
Ted Kremenek3271f8d2008-02-07 04:16:04 +0000911 Dst.Add(Pred);
Ted Kremenek5b6dc2d2008-02-07 01:08:27 +0000912 return;
Ted Kremenek3271f8d2008-02-07 04:16:04 +0000913 }
Ted Kremenek5b6dc2d2008-02-07 01:08:27 +0000914
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000915 if (UnaryOperator* U = dyn_cast<UnaryOperator>(Ex)) {
Ted Kremenek5b6dc2d2008-02-07 01:08:27 +0000916 if (U->getOpcode() == UnaryOperator::Deref) {
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000917 Ex = U->getSubExpr()->IgnoreParens();
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000918
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000919 if (isa<DeclRefExpr>(Ex))
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000920 Dst.Add(Pred);
921 else
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000922 Visit(Ex, Pred, Dst);
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +0000923
Ted Kremenek5b6dc2d2008-02-07 01:08:27 +0000924 return;
925 }
926 }
927
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000928 Visit(Ex, Pred, Dst);
Ted Kremenek5b6dc2d2008-02-07 01:08:27 +0000929}
930
Ted Kremenek4d4dd852008-02-13 17:41:41 +0000931void GRExprEngine::VisitBinaryOperator(BinaryOperator* B,
Ted Kremenekdaeb9a72008-02-13 23:08:21 +0000932 GRExprEngine::NodeTy* Pred,
933 GRExprEngine::NodeSet& Dst) {
Ted Kremenekab2b8c52008-01-23 19:59:44 +0000934 NodeSet S1;
Ted Kremenek5b6dc2d2008-02-07 01:08:27 +0000935
936 if (B->isAssignmentOp())
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000937 VisitLVal(B->getLHS(), Pred, S1);
Ted Kremenek5b6dc2d2008-02-07 01:08:27 +0000938 else
939 Visit(B->getLHS(), Pred, S1);
Ted Kremenekcb448ca2008-01-16 00:53:15 +0000940
Ted Kremenekab2b8c52008-01-23 19:59:44 +0000941 for (NodeSet::iterator I1=S1.begin(), E1=S1.end(); I1 != E1; ++I1) {
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000942
Ted Kremenekab2b8c52008-01-23 19:59:44 +0000943 NodeTy* N1 = *I1;
Ted Kremeneke00fe3f2008-01-17 00:52:48 +0000944
Ted Kremenekab2b8c52008-01-23 19:59:44 +0000945 // When getting the value for the LHS, check if we are in an assignment.
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000946 // In such cases, we want to (initially) treat the LHS as an LVal,
947 // so we use GetLVal instead of GetRVal so that DeclRefExpr's are
948 // evaluated to LValDecl's instead of to an NonLVal.
949
950 RVal LeftV = B->isAssignmentOp() ? GetLVal(N1->getState(), B->getLHS())
951 : GetRVal(N1->getState(), B->getLHS());
Ted Kremenekcb448ca2008-01-16 00:53:15 +0000952
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000953 // Visit the RHS...
954
955 NodeSet S2;
Ted Kremenekab2b8c52008-01-23 19:59:44 +0000956 Visit(B->getRHS(), N1, S2);
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000957
958 // Process the binary operator.
Ted Kremenekab2b8c52008-01-23 19:59:44 +0000959
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000960 for (NodeSet::iterator I2 = S2.begin(), E2 = S2.end(); I2 != E2; ++I2) {
Ted Kremenekcf78b6a2008-02-06 22:50:25 +0000961
Ted Kremenekab2b8c52008-01-23 19:59:44 +0000962 NodeTy* N2 = *I2;
Ted Kremenekaa1c4e52008-02-21 18:02:17 +0000963 StateTy St = N2->getState();
Ted Kremenek3c8d0c52008-02-25 18:42:54 +0000964 Expr* RHS = B->getRHS();
965 RVal RightV = GetRVal(St, RHS);
Ted Kremenekab2b8c52008-01-23 19:59:44 +0000966
Ted Kremenekcf78b6a2008-02-06 22:50:25 +0000967 BinaryOperator::Opcode Op = B->getOpcode();
968
Ted Kremenek3c8d0c52008-02-25 18:42:54 +0000969 if ((Op == BinaryOperator::Div || Op == BinaryOperator::Rem)
970 && RHS->getType()->isIntegerType()) {
Ted Kremenekd763eb92008-02-26 02:15:56 +0000971
972 // Check if the denominator is uninitialized.
Ted Kremenek3c8d0c52008-02-25 18:42:54 +0000973
Ted Kremenek00155412008-02-26 22:27:51 +0000974 if (!RightV.isUnknown()) {
975
976 if (RightV.isUninit()) {
977 NodeTy* DivUninit = Builder->generateNode(B, St, N2);
978
979 if (DivUninit) {
980 DivUninit->markAsSink();
981 BadDivides.insert(DivUninit);
982 }
983
984 continue;
985 }
986
987 // Check for divide/remainder-by-zero.
988 //
989 // First, "assume" that the denominator is 0 or uninitialized.
Ted Kremenekd763eb92008-02-26 02:15:56 +0000990
Ted Kremenek00155412008-02-26 22:27:51 +0000991 bool isFeasible = false;
992 StateTy ZeroSt = Assume(St, RightV, false, isFeasible);
993
994 if (isFeasible) {
995 NodeTy* DivZeroNode = Builder->generateNode(B, ZeroSt, N2);
996
997 if (DivZeroNode) {
998 DivZeroNode->markAsSink();
999 BadDivides.insert(DivZeroNode);
1000 }
Ted Kremenekd763eb92008-02-26 02:15:56 +00001001 }
1002
Ted Kremenek00155412008-02-26 22:27:51 +00001003 // Second, "assume" that the denominator cannot be 0.
Ted Kremenekd763eb92008-02-26 02:15:56 +00001004
Ted Kremenek00155412008-02-26 22:27:51 +00001005 isFeasible = false;
1006 St = Assume(St, RightV, true, isFeasible);
Ted Kremenek07d83aa2008-02-25 17:51:31 +00001007
Ted Kremenek00155412008-02-26 22:27:51 +00001008 if (!isFeasible)
1009 continue;
Ted Kremenek07d83aa2008-02-25 17:51:31 +00001010 }
1011
Ted Kremenek07d83aa2008-02-25 17:51:31 +00001012 // Fall-through. The logic below processes the divide.
1013 }
1014
Ted Kremenekcf78b6a2008-02-06 22:50:25 +00001015 if (Op <= BinaryOperator::Or) {
1016
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001017 // Process non-assignements except commas or short-circuited
1018 // logical expressions (LAnd and LOr).
1019
1020 RVal Result = EvalBinOp(Op, LeftV, RightV);
1021
1022 if (Result.isUnknown()) {
1023 Dst.Add(N2);
Ted Kremenek5b6dc2d2008-02-07 01:08:27 +00001024 continue;
1025 }
1026
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001027 Nodify(Dst, B, N2, SetRVal(St, B, Result));
Ted Kremenekcf78b6a2008-02-06 22:50:25 +00001028 continue;
1029 }
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001030
1031 // Process assignments.
1032
1033 switch (Op) {
1034
Ted Kremenekab2b8c52008-01-23 19:59:44 +00001035 case BinaryOperator::Assign: {
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001036
1037 // Simple assignments.
Ted Kremenek9dca0622008-02-19 00:22:37 +00001038
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001039 if (LeftV.isUninit()) {
Ted Kremenek9dca0622008-02-19 00:22:37 +00001040 HandleUninitializedStore(B, N2);
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001041 continue;
1042 }
1043
1044 if (LeftV.isUnknown()) {
1045 St = SetRVal(St, B, RightV);
1046 break;
1047 }
Ted Kremenek9dca0622008-02-19 00:22:37 +00001048
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001049 St = SetRVal(SetRVal(St, B, RightV), cast<LVal>(LeftV), RightV);
Ted Kremenekab2b8c52008-01-23 19:59:44 +00001050 break;
1051 }
1052
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001053 // Compound assignment operators.
Ted Kremenek687af802008-01-29 19:43:15 +00001054
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001055 default: {
Ted Kremenek9dca0622008-02-19 00:22:37 +00001056
Ted Kremenek00155412008-02-26 22:27:51 +00001057 assert (B->isCompoundAssignmentOp());
1058
1059 if (Op >= BinaryOperator::AndAssign)
1060 ((int&) Op) -= (BinaryOperator::AndAssign - BinaryOperator::And);
1061 else
1062 ((int&) Op) -= BinaryOperator::MulAssign;
1063
1064 // Check if the LHS is uninitialized.
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001065
1066 if (LeftV.isUninit()) {
Ted Kremenek9dca0622008-02-19 00:22:37 +00001067 HandleUninitializedStore(B, N2);
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001068 continue;
1069 }
1070
1071 if (LeftV.isUnknown()) {
1072
1073 // While we do not know the location to store RightV,
1074 // the entire expression does evaluate to RightV.
1075
1076 if (RightV.isUnknown()) {
1077 Dst.Add(N2);
1078 continue;
1079 }
1080
1081 St = SetRVal(St, B, RightV);
Ted Kremenek9dca0622008-02-19 00:22:37 +00001082 break;
1083 }
1084
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001085 // At this pointer we know that the LHS evaluates to an LVal
1086 // that is neither "Unknown" or "Unintialized."
1087
1088 LVal LeftLV = cast<LVal>(LeftV);
1089
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001090 // Fetch the value of the LHS (the value of the variable, etc.).
1091
1092 RVal V = GetRVal(N1->getState(), LeftLV, B->getLHS()->getType());
1093
Ted Kremenek00155412008-02-26 22:27:51 +00001094 // Propagate uninitialized value (left-side). We
1095 // propogate uninitialized values for the RHS below when
1096 // we also check for divide-by-zero.
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001097
1098 if (V.isUninit()) {
1099 St = SetRVal(St, B, V);
1100 break;
1101 }
1102
1103 // Propagate unknown values.
1104
Ted Kremenek89063af2008-02-21 19:15:37 +00001105 if (V.isUnknown()) {
1106 Dst.Add(N2);
1107 continue;
1108 }
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001109
1110 if (RightV.isUnknown()) {
1111 St = SetRVal(SetRVal(St, LeftLV, RightV), B, RightV);
1112 break;
1113 }
1114
Ted Kremenek00155412008-02-26 22:27:51 +00001115 // At this point:
1116 //
1117 // The LHS is not Uninit/Unknown.
1118 // The RHS is not Unknown.
Ted Kremenekcf78b6a2008-02-06 22:50:25 +00001119
Ted Kremenek9ef1ec92008-02-21 18:43:30 +00001120 // Get the computation type.
1121 QualType CTy = cast<CompoundAssignOperator>(B)->getComputationType();
1122
1123 // Perform promotions.
1124 V = EvalCast(V, CTy);
Ted Kremenek61e090c2008-02-21 18:46:24 +00001125 RightV = EvalCast(RightV, CTy);
Ted Kremenek9ef1ec92008-02-21 18:43:30 +00001126
1127 // Evaluate operands and promote to result type.
Ted Kremenek07d83aa2008-02-25 17:51:31 +00001128
Ted Kremenek3c8d0c52008-02-25 18:42:54 +00001129 if ((Op == BinaryOperator::Div || Op == BinaryOperator::Rem)
1130 && RHS->getType()->isIntegerType()) {
1131
Ted Kremenekd763eb92008-02-26 02:15:56 +00001132 // Check if the denominator is uninitialized.
1133
1134 if (RightV.isUninit()) {
1135 NodeTy* DivUninit = Builder->generateNode(B, St, N2);
1136
1137 if (DivUninit) {
1138 DivUninit->markAsSink();
1139 BadDivides.insert(DivUninit);
1140 }
1141
1142 continue;
1143 }
Ted Kremenek00155412008-02-26 22:27:51 +00001144
Ted Kremenek07d83aa2008-02-25 17:51:31 +00001145 // First, "assume" that the denominator is 0.
1146
1147 bool isFeasible = false;
1148 StateTy ZeroSt = Assume(St, RightV, false, isFeasible);
1149
1150 if (isFeasible) {
1151 NodeTy* DivZeroNode = Builder->generateNode(B, ZeroSt, N2);
1152
1153 if (DivZeroNode) {
1154 DivZeroNode->markAsSink();
Ted Kremenekd763eb92008-02-26 02:15:56 +00001155 BadDivides.insert(DivZeroNode);
Ted Kremenek07d83aa2008-02-25 17:51:31 +00001156 }
1157 }
1158
1159 // Second, "assume" that the denominator cannot be 0.
1160
1161 isFeasible = false;
1162 St = Assume(St, RightV, true, isFeasible);
1163
1164 if (!isFeasible)
1165 continue;
1166
1167 // Fall-through. The logic below processes the divide.
1168 }
Ted Kremenek00155412008-02-26 22:27:51 +00001169 else {
1170
1171 // Propagate uninitialized values (right-side).
1172
1173 if (RightV.isUninit()) {
1174 St = SetRVal(SetRVal(St, B, RightV), LeftLV, RightV);
1175 break;
1176 }
1177
1178 }
Ted Kremenek07d83aa2008-02-25 17:51:31 +00001179
Ted Kremenek9ef1ec92008-02-21 18:43:30 +00001180 RVal Result = EvalCast(EvalBinOp(Op, V, RightV), B->getType());
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001181 St = SetRVal(SetRVal(St, B, Result), LeftLV, Result);
Ted Kremenekcf78b6a2008-02-06 22:50:25 +00001182 }
Ted Kremenekab2b8c52008-01-23 19:59:44 +00001183 }
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001184
1185 Nodify(Dst, B, N2, St);
Ted Kremenekcb448ca2008-01-16 00:53:15 +00001186 }
Ted Kremenekd27f8162008-01-15 23:55:06 +00001187 }
Ted Kremenekd27f8162008-01-15 23:55:06 +00001188}
Ted Kremenekee985462008-01-16 18:18:48 +00001189
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001190void GRExprEngine::HandleUninitializedStore(Stmt* S, NodeTy* Pred) {
Ted Kremenek9dca0622008-02-19 00:22:37 +00001191 NodeTy* N = Builder->generateNode(S, Pred->getState(), Pred);
1192 N->markAsSink();
1193 UninitStores.insert(N);
1194}
Ted Kremenek1ccd31c2008-01-16 19:42:59 +00001195
Ted Kremenek9dca0622008-02-19 00:22:37 +00001196void GRExprEngine::Visit(Stmt* S, NodeTy* Pred, NodeSet& Dst) {
Ted Kremenekab2b8c52008-01-23 19:59:44 +00001197
1198 // FIXME: add metadata to the CFG so that we can disable
1199 // this check when we KNOW that there is no block-level subexpression.
1200 // The motivation is that this check requires a hashtable lookup.
1201
1202 if (S != CurrentStmt && getCFG().isBlkExpr(S)) {
1203 Dst.Add(Pred);
1204 return;
1205 }
1206
1207 switch (S->getStmtClass()) {
Ted Kremenek230aaab2008-02-12 21:37:25 +00001208
1209 default:
1210 // Cases we intentionally have "default" handle:
Ted Kremenek189c3052008-02-26 19:17:09 +00001211 // AddrLabelExpr, IntegerLiteral, CharacterLiteral
Ted Kremenek230aaab2008-02-12 21:37:25 +00001212
1213 Dst.Add(Pred); // No-op. Simply propagate the current state unchanged.
1214 break;
1215
Ted Kremenekd70b62e2008-02-08 20:29:23 +00001216 case Stmt::BinaryOperatorClass: {
1217 BinaryOperator* B = cast<BinaryOperator>(S);
Ted Kremenekf233d482008-02-05 00:26:40 +00001218
Ted Kremenekd70b62e2008-02-08 20:29:23 +00001219 if (B->isLogicalOp()) {
1220 VisitLogicalExpr(B, Pred, Dst);
Ted Kremenekf233d482008-02-05 00:26:40 +00001221 break;
1222 }
Ted Kremenekd70b62e2008-02-08 20:29:23 +00001223 else if (B->getOpcode() == BinaryOperator::Comma) {
Ted Kremenekda9bd092008-02-08 07:05:39 +00001224 StateTy St = Pred->getState();
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001225 Nodify(Dst, B, Pred, SetRVal(St, B, GetRVal(St, B->getRHS())));
Ted Kremenekda9bd092008-02-08 07:05:39 +00001226 break;
1227 }
Ted Kremenekd9435bf2008-02-12 19:49:57 +00001228
1229 VisitBinaryOperator(cast<BinaryOperator>(S), Pred, Dst);
1230 break;
1231 }
Ted Kremenekde434242008-02-19 01:44:53 +00001232
1233 case Stmt::CallExprClass: {
1234 CallExpr* C = cast<CallExpr>(S);
1235 VisitCall(C, Pred, C->arg_begin(), C->arg_end(), Dst);
1236 break;
1237 }
Ted Kremenekd9435bf2008-02-12 19:49:57 +00001238
1239 case Stmt::CastExprClass: {
1240 CastExpr* C = cast<CastExpr>(S);
1241 VisitCast(C, C->getSubExpr(), Pred, Dst);
1242 break;
Ted Kremenekd70b62e2008-02-08 20:29:23 +00001243 }
Ted Kremenek189c3052008-02-26 19:17:09 +00001244
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001245 // FIXME: ChooseExpr is really a constant. We need to fix
1246 // the CFG do not model them as explicit control-flow.
1247
Ted Kremenekd9435bf2008-02-12 19:49:57 +00001248 case Stmt::ChooseExprClass: { // __builtin_choose_expr
1249 ChooseExpr* C = cast<ChooseExpr>(S);
1250 VisitGuardedExpr(C, C->getLHS(), C->getRHS(), Pred, Dst);
1251 break;
1252 }
Ted Kremenekf233d482008-02-05 00:26:40 +00001253
Ted Kremenekb4ae33f2008-01-23 23:38:00 +00001254 case Stmt::CompoundAssignOperatorClass:
Ted Kremenekab2b8c52008-01-23 19:59:44 +00001255 VisitBinaryOperator(cast<BinaryOperator>(S), Pred, Dst);
1256 break;
1257
Ted Kremenekd9435bf2008-02-12 19:49:57 +00001258 case Stmt::ConditionalOperatorClass: { // '?' operator
1259 ConditionalOperator* C = cast<ConditionalOperator>(S);
1260 VisitGuardedExpr(C, C->getLHS(), C->getRHS(), Pred, Dst);
1261 break;
1262 }
1263
1264 case Stmt::DeclRefExprClass:
1265 VisitDeclRefExpr(cast<DeclRefExpr>(S), Pred, Dst);
1266 break;
1267
1268 case Stmt::DeclStmtClass:
1269 VisitDeclStmt(cast<DeclStmt>(S), Pred, Dst);
1270 break;
1271
1272 case Stmt::ImplicitCastExprClass: {
1273 ImplicitCastExpr* C = cast<ImplicitCastExpr>(S);
1274 VisitCast(C, C->getSubExpr(), Pred, Dst);
1275 break;
1276 }
1277
1278 case Stmt::ParenExprClass:
1279 Visit(cast<ParenExpr>(S)->getSubExpr(), Pred, Dst);
1280 break;
1281
1282 case Stmt::SizeOfAlignOfTypeExprClass:
1283 VisitSizeOfAlignOfTypeExpr(cast<SizeOfAlignOfTypeExpr>(S), Pred, Dst);
1284 break;
1285
Ted Kremenekda9bd092008-02-08 07:05:39 +00001286 case Stmt::StmtExprClass: {
Ted Kremenekd70b62e2008-02-08 20:29:23 +00001287 StmtExpr* SE = cast<StmtExpr>(S);
1288
Ted Kremenekda9bd092008-02-08 07:05:39 +00001289 StateTy St = Pred->getState();
Ted Kremenekd70b62e2008-02-08 20:29:23 +00001290 Expr* LastExpr = cast<Expr>(*SE->getSubStmt()->body_rbegin());
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001291 Nodify(Dst, SE, Pred, SetRVal(St, SE, GetRVal(St, LastExpr)));
Ted Kremenekda9bd092008-02-08 07:05:39 +00001292 break;
1293 }
1294
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001295 // FIXME: We may wish to always bind state to ReturnStmts so
1296 // that users can quickly query what was the state at the
1297 // exit points of a function.
1298
Ted Kremenekd9435bf2008-02-12 19:49:57 +00001299 case Stmt::ReturnStmtClass: {
Ted Kremenek5b6dc2d2008-02-07 01:08:27 +00001300 if (Expr* R = cast<ReturnStmt>(S)->getRetValue())
1301 Visit(R, Pred, Dst);
1302 else
1303 Dst.Add(Pred);
1304
1305 break;
Ted Kremenekd9435bf2008-02-12 19:49:57 +00001306 }
Ted Kremenek5b6dc2d2008-02-07 01:08:27 +00001307
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +00001308 case Stmt::UnaryOperatorClass: {
1309 UnaryOperator* U = cast<UnaryOperator>(S);
1310
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001311 switch (U->getOpcode()) {
1312 case UnaryOperator::Deref: VisitDeref(U, Pred, Dst); break;
1313 case UnaryOperator::Plus: Visit(U->getSubExpr(), Pred, Dst); break;
1314 case UnaryOperator::SizeOf: VisitSizeOfExpr(U, Pred, Dst); break;
1315 default: VisitUnaryOperator(U, Pred, Dst); break;
1316 }
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +00001317
Ted Kremenek9de04c42008-01-24 20:55:43 +00001318 break;
Ted Kremenekd8e9f0d2008-02-20 04:02:35 +00001319 }
Ted Kremenek79649df2008-01-17 18:25:22 +00001320 }
Ted Kremenek1ccd31c2008-01-16 19:42:59 +00001321}
1322
Ted Kremenekee985462008-01-16 18:18:48 +00001323//===----------------------------------------------------------------------===//
Ted Kremenekb38911f2008-01-30 23:03:39 +00001324// "Assume" logic.
1325//===----------------------------------------------------------------------===//
1326
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001327GRExprEngine::StateTy GRExprEngine::Assume(StateTy St, LVal Cond,
Ted Kremenek692416c2008-02-18 22:57:02 +00001328 bool Assumption,
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001329 bool& isFeasible) {
Ted Kremeneka6e4d212008-02-01 06:36:40 +00001330 switch (Cond.getSubKind()) {
1331 default:
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001332 assert (false && "'Assume' not implemented for this LVal.");
Ted Kremeneka6e4d212008-02-01 06:36:40 +00001333 return St;
1334
Ted Kremenek862d5bb2008-02-06 00:54:14 +00001335 case lval::SymbolValKind:
1336 if (Assumption)
1337 return AssumeSymNE(St, cast<lval::SymbolVal>(Cond).getSymbol(),
1338 ValMgr.getZeroWithPtrWidth(), isFeasible);
1339 else
1340 return AssumeSymEQ(St, cast<lval::SymbolVal>(Cond).getSymbol(),
1341 ValMgr.getZeroWithPtrWidth(), isFeasible);
1342
Ted Kremenek08b66252008-02-06 04:31:33 +00001343
Ted Kremenek329f8542008-02-05 21:52:21 +00001344 case lval::DeclValKind:
Ted Kremenekdc3936b2008-02-22 00:54:56 +00001345 case lval::FuncValKind:
1346 case lval::GotoLabelKind:
Ted Kremeneka6e4d212008-02-01 06:36:40 +00001347 isFeasible = Assumption;
1348 return St;
Ted Kremenek862d5bb2008-02-06 00:54:14 +00001349
Ted Kremenek329f8542008-02-05 21:52:21 +00001350 case lval::ConcreteIntKind: {
1351 bool b = cast<lval::ConcreteInt>(Cond).getValue() != 0;
Ted Kremeneka6e4d212008-02-01 06:36:40 +00001352 isFeasible = b ? Assumption : !Assumption;
1353 return St;
1354 }
1355 }
Ted Kremenekb38911f2008-01-30 23:03:39 +00001356}
1357
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001358GRExprEngine::StateTy GRExprEngine::Assume(StateTy St, NonLVal Cond,
Ted Kremenek862d5bb2008-02-06 00:54:14 +00001359 bool Assumption,
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001360 bool& isFeasible) {
Ted Kremenekb38911f2008-01-30 23:03:39 +00001361 switch (Cond.getSubKind()) {
1362 default:
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001363 assert (false && "'Assume' not implemented for this NonLVal.");
Ted Kremenekb38911f2008-01-30 23:03:39 +00001364 return St;
1365
Ted Kremenekfeb01f62008-02-06 17:32:17 +00001366
1367 case nonlval::SymbolValKind: {
Ted Kremenek230aaab2008-02-12 21:37:25 +00001368 nonlval::SymbolVal& SV = cast<nonlval::SymbolVal>(Cond);
Ted Kremenekfeb01f62008-02-06 17:32:17 +00001369 SymbolID sym = SV.getSymbol();
1370
1371 if (Assumption)
1372 return AssumeSymNE(St, sym, ValMgr.getValue(0, SymMgr.getType(sym)),
1373 isFeasible);
1374 else
1375 return AssumeSymEQ(St, sym, ValMgr.getValue(0, SymMgr.getType(sym)),
1376 isFeasible);
1377 }
1378
Ted Kremenek08b66252008-02-06 04:31:33 +00001379 case nonlval::SymIntConstraintValKind:
1380 return
1381 AssumeSymInt(St, Assumption,
1382 cast<nonlval::SymIntConstraintVal>(Cond).getConstraint(),
1383 isFeasible);
1384
Ted Kremenek329f8542008-02-05 21:52:21 +00001385 case nonlval::ConcreteIntKind: {
1386 bool b = cast<nonlval::ConcreteInt>(Cond).getValue() != 0;
Ted Kremenekb38911f2008-01-30 23:03:39 +00001387 isFeasible = b ? Assumption : !Assumption;
1388 return St;
1389 }
1390 }
1391}
1392
Ted Kremenek4d4dd852008-02-13 17:41:41 +00001393GRExprEngine::StateTy
1394GRExprEngine::AssumeSymNE(StateTy St, SymbolID sym,
Ted Kremenek862d5bb2008-02-06 00:54:14 +00001395 const llvm::APSInt& V, bool& isFeasible) {
Ted Kremenek692416c2008-02-18 22:57:02 +00001396
Ted Kremenek862d5bb2008-02-06 00:54:14 +00001397 // First, determine if sym == X, where X != V.
1398 if (const llvm::APSInt* X = St.getSymVal(sym)) {
1399 isFeasible = *X != V;
1400 return St;
1401 }
1402
1403 // Second, determine if sym != V.
1404 if (St.isNotEqual(sym, V)) {
1405 isFeasible = true;
1406 return St;
1407 }
1408
1409 // If we reach here, sym is not a constant and we don't know if it is != V.
1410 // Make that assumption.
1411
1412 isFeasible = true;
1413 return StateMgr.AddNE(St, sym, V);
1414}
1415
Ted Kremenek4d4dd852008-02-13 17:41:41 +00001416GRExprEngine::StateTy
1417GRExprEngine::AssumeSymEQ(StateTy St, SymbolID sym,
Ted Kremenek862d5bb2008-02-06 00:54:14 +00001418 const llvm::APSInt& V, bool& isFeasible) {
1419
1420 // First, determine if sym == X, where X != V.
1421 if (const llvm::APSInt* X = St.getSymVal(sym)) {
1422 isFeasible = *X == V;
1423 return St;
1424 }
1425
1426 // Second, determine if sym != V.
1427 if (St.isNotEqual(sym, V)) {
1428 isFeasible = false;
1429 return St;
1430 }
1431
1432 // If we reach here, sym is not a constant and we don't know if it is == V.
1433 // Make that assumption.
1434
1435 isFeasible = true;
1436 return StateMgr.AddEQ(St, sym, V);
1437}
Ted Kremenekb38911f2008-01-30 23:03:39 +00001438
Ted Kremenek4d4dd852008-02-13 17:41:41 +00001439GRExprEngine::StateTy
1440GRExprEngine::AssumeSymInt(StateTy St, bool Assumption,
Ted Kremenek08b66252008-02-06 04:31:33 +00001441 const SymIntConstraint& C, bool& isFeasible) {
1442
1443 switch (C.getOpcode()) {
1444 default:
1445 // No logic yet for other operators.
1446 return St;
1447
1448 case BinaryOperator::EQ:
1449 if (Assumption)
1450 return AssumeSymEQ(St, C.getSymbol(), C.getInt(), isFeasible);
1451 else
1452 return AssumeSymNE(St, C.getSymbol(), C.getInt(), isFeasible);
1453
1454 case BinaryOperator::NE:
1455 if (Assumption)
1456 return AssumeSymNE(St, C.getSymbol(), C.getInt(), isFeasible);
1457 else
1458 return AssumeSymEQ(St, C.getSymbol(), C.getInt(), isFeasible);
1459 }
1460}
1461
Ted Kremenekb38911f2008-01-30 23:03:39 +00001462//===----------------------------------------------------------------------===//
Ted Kremeneke01c9872008-02-14 22:36:46 +00001463// Visualization.
Ted Kremenekee985462008-01-16 18:18:48 +00001464//===----------------------------------------------------------------------===//
1465
Ted Kremenekaa66a322008-01-16 21:46:15 +00001466#ifndef NDEBUG
Ted Kremenek4d4dd852008-02-13 17:41:41 +00001467static GRExprEngine* GraphPrintCheckerState;
Ted Kremenek3b4f6702008-01-30 23:24:39 +00001468
Ted Kremenekaa66a322008-01-16 21:46:15 +00001469namespace llvm {
1470template<>
Ted Kremenek4d4dd852008-02-13 17:41:41 +00001471struct VISIBILITY_HIDDEN DOTGraphTraits<GRExprEngine::NodeTy*> :
Ted Kremenekaa66a322008-01-16 21:46:15 +00001472 public DefaultDOTGraphTraits {
Ted Kremenek016f52f2008-02-08 21:10:02 +00001473
Ted Kremenek4d4dd852008-02-13 17:41:41 +00001474 static void PrintVarBindings(std::ostream& Out, GRExprEngine::StateTy St) {
Ted Kremenek016f52f2008-02-08 21:10:02 +00001475
1476 Out << "Variables:\\l";
1477
Ted Kremenek9ff731d2008-01-24 22:27:20 +00001478 bool isFirst = true;
1479
Ted Kremenek4d4dd852008-02-13 17:41:41 +00001480 for (GRExprEngine::StateTy::vb_iterator I=St.vb_begin(),
Ted Kremenek016f52f2008-02-08 21:10:02 +00001481 E=St.vb_end(); I!=E;++I) {
1482
1483 if (isFirst)
1484 isFirst = false;
1485 else
1486 Out << "\\l";
1487
1488 Out << ' ' << I.getKey()->getName() << " : ";
1489 I.getData().print(Out);
1490 }
1491
1492 }
1493
Ted Kremeneke7d22112008-02-11 19:21:59 +00001494
Ted Kremenek44842c22008-02-13 18:06:44 +00001495 static void PrintSubExprBindings(std::ostream& Out, GRExprEngine::StateTy St){
Ted Kremeneke7d22112008-02-11 19:21:59 +00001496
1497 bool isFirst = true;
1498
Ted Kremenek4d4dd852008-02-13 17:41:41 +00001499 for (GRExprEngine::StateTy::seb_iterator I=St.seb_begin(), E=St.seb_end();
Ted Kremeneke7d22112008-02-11 19:21:59 +00001500 I != E;++I) {
1501
1502 if (isFirst) {
1503 Out << "\\l\\lSub-Expressions:\\l";
1504 isFirst = false;
1505 }
1506 else
1507 Out << "\\l";
1508
1509 Out << " (" << (void*) I.getKey() << ") ";
1510 I.getKey()->printPretty(Out);
1511 Out << " : ";
1512 I.getData().print(Out);
1513 }
1514 }
1515
Ted Kremenek44842c22008-02-13 18:06:44 +00001516 static void PrintBlkExprBindings(std::ostream& Out, GRExprEngine::StateTy St){
Ted Kremeneke7d22112008-02-11 19:21:59 +00001517
Ted Kremenek016f52f2008-02-08 21:10:02 +00001518 bool isFirst = true;
1519
Ted Kremenek4d4dd852008-02-13 17:41:41 +00001520 for (GRExprEngine::StateTy::beb_iterator I=St.beb_begin(), E=St.beb_end();
Ted Kremeneke7d22112008-02-11 19:21:59 +00001521 I != E; ++I) {
Ted Kremenek9ff731d2008-01-24 22:27:20 +00001522 if (isFirst) {
Ted Kremeneke7d22112008-02-11 19:21:59 +00001523 Out << "\\l\\lBlock-level Expressions:\\l";
Ted Kremenek9ff731d2008-01-24 22:27:20 +00001524 isFirst = false;
1525 }
1526 else
1527 Out << "\\l";
Ted Kremenek016f52f2008-02-08 21:10:02 +00001528
Ted Kremeneke7d22112008-02-11 19:21:59 +00001529 Out << " (" << (void*) I.getKey() << ") ";
1530 I.getKey()->printPretty(Out);
Ted Kremenek9ff731d2008-01-24 22:27:20 +00001531 Out << " : ";
1532 I.getData().print(Out);
1533 }
1534 }
1535
Ted Kremenek4d4dd852008-02-13 17:41:41 +00001536 static void PrintEQ(std::ostream& Out, GRExprEngine::StateTy St) {
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001537 ValueState::ConstEqTy CE = St.getImpl()->ConstEq;
Ted Kremeneked4de312008-02-06 03:56:15 +00001538
1539 if (CE.isEmpty())
1540 return;
1541
1542 Out << "\\l\\|'==' constraints:";
1543
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001544 for (ValueState::ConstEqTy::iterator I=CE.begin(), E=CE.end(); I!=E;++I)
Ted Kremeneked4de312008-02-06 03:56:15 +00001545 Out << "\\l $" << I.getKey() << " : " << I.getData()->toString();
1546 }
1547
Ted Kremenek4d4dd852008-02-13 17:41:41 +00001548 static void PrintNE(std::ostream& Out, GRExprEngine::StateTy St) {
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001549 ValueState::ConstNotEqTy NE = St.getImpl()->ConstNotEq;
Ted Kremeneked4de312008-02-06 03:56:15 +00001550
1551 if (NE.isEmpty())
1552 return;
1553
1554 Out << "\\l\\|'!=' constraints:";
1555
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001556 for (ValueState::ConstNotEqTy::iterator I=NE.begin(), EI=NE.end();
Ted Kremeneked4de312008-02-06 03:56:15 +00001557 I != EI; ++I){
1558
1559 Out << "\\l $" << I.getKey() << " : ";
1560 bool isFirst = true;
1561
1562 ValueState::IntSetTy::iterator J=I.getData().begin(),
1563 EJ=I.getData().end();
1564 for ( ; J != EJ; ++J) {
1565 if (isFirst) isFirst = false;
1566 else Out << ", ";
1567
1568 Out << (*J)->toString();
1569 }
1570 }
Ted Kremeneka3fadfc2008-02-14 22:54:53 +00001571 }
1572
1573 static std::string getNodeAttributes(const GRExprEngine::NodeTy* N, void*) {
1574
1575 if (GraphPrintCheckerState->isImplicitNullDeref(N) ||
Ted Kremenek9dca0622008-02-19 00:22:37 +00001576 GraphPrintCheckerState->isExplicitNullDeref(N) ||
Ted Kremenekb5339122008-02-19 20:53:06 +00001577 GraphPrintCheckerState->isUninitDeref(N) ||
Ted Kremenek9dca0622008-02-19 00:22:37 +00001578 GraphPrintCheckerState->isUninitStore(N) ||
Ted Kremenekd87a3212008-02-26 21:31:18 +00001579 GraphPrintCheckerState->isUninitControlFlow(N) ||
1580 GraphPrintCheckerState->isBadDivide(N))
Ted Kremeneka3fadfc2008-02-14 22:54:53 +00001581 return "color=\"red\",style=\"filled\"";
1582
1583 return "";
1584 }
Ted Kremeneked4de312008-02-06 03:56:15 +00001585
Ted Kremenek4d4dd852008-02-13 17:41:41 +00001586 static std::string getNodeLabel(const GRExprEngine::NodeTy* N, void*) {
Ted Kremenekaa66a322008-01-16 21:46:15 +00001587 std::ostringstream Out;
Ted Kremenek803c9ed2008-01-23 22:30:44 +00001588
1589 // Program Location.
Ted Kremenekaa66a322008-01-16 21:46:15 +00001590 ProgramPoint Loc = N->getLocation();
1591
1592 switch (Loc.getKind()) {
1593 case ProgramPoint::BlockEntranceKind:
1594 Out << "Block Entrance: B"
1595 << cast<BlockEntrance>(Loc).getBlock()->getBlockID();
1596 break;
1597
1598 case ProgramPoint::BlockExitKind:
1599 assert (false);
1600 break;
1601
1602 case ProgramPoint::PostStmtKind: {
1603 const PostStmt& L = cast<PostStmt>(Loc);
Ted Kremenek9ff731d2008-01-24 22:27:20 +00001604 Out << L.getStmt()->getStmtClassName() << ':'
1605 << (void*) L.getStmt() << ' ';
1606
Ted Kremenekaa66a322008-01-16 21:46:15 +00001607 L.getStmt()->printPretty(Out);
Ted Kremenekd131c4f2008-02-07 05:48:01 +00001608
1609 if (GraphPrintCheckerState->isImplicitNullDeref(N)) {
1610 Out << "\\|Implicit-Null Dereference.\\l";
1611 }
Ted Kremenek63a4f692008-02-07 06:04:18 +00001612 else if (GraphPrintCheckerState->isExplicitNullDeref(N)) {
1613 Out << "\\|Explicit-Null Dereference.\\l";
1614 }
Ted Kremenekb5339122008-02-19 20:53:06 +00001615 else if (GraphPrintCheckerState->isUninitDeref(N)) {
1616 Out << "\\|Dereference of uninitialied value.\\l";
1617 }
Ted Kremenek9dca0622008-02-19 00:22:37 +00001618 else if (GraphPrintCheckerState->isUninitStore(N)) {
Ted Kremenekaa1c4e52008-02-21 18:02:17 +00001619 Out << "\\|Store to Uninitialized LVal.";
Ted Kremenek9dca0622008-02-19 00:22:37 +00001620 }
Ted Kremenekd87a3212008-02-26 21:31:18 +00001621 else if (GraphPrintCheckerState->isBadDivide(N)) {
1622 Out << "\\|Divide-by zero or uninitialized value.";
1623 }
Ted Kremenekd131c4f2008-02-07 05:48:01 +00001624
Ted Kremenekaa66a322008-01-16 21:46:15 +00001625 break;
1626 }
1627
1628 default: {
1629 const BlockEdge& E = cast<BlockEdge>(Loc);
1630 Out << "Edge: (B" << E.getSrc()->getBlockID() << ", B"
1631 << E.getDst()->getBlockID() << ')';
Ted Kremenekb38911f2008-01-30 23:03:39 +00001632
1633 if (Stmt* T = E.getSrc()->getTerminator()) {
1634 Out << "\\|Terminator: ";
1635 E.getSrc()->printTerminator(Out);
1636
Ted Kremenekdaeb9a72008-02-13 23:08:21 +00001637 if (isa<SwitchStmt>(T)) {
1638 Stmt* Label = E.getDst()->getLabel();
1639
1640 if (Label) {
1641 if (CaseStmt* C = dyn_cast<CaseStmt>(Label)) {
1642 Out << "\\lcase ";
1643 C->getLHS()->printPretty(Out);
1644
1645 if (Stmt* RHS = C->getRHS()) {
1646 Out << " .. ";
1647 RHS->printPretty(Out);
1648 }
1649
1650 Out << ":";
1651 }
1652 else {
1653 assert (isa<DefaultStmt>(Label));
1654 Out << "\\ldefault:";
1655 }
1656 }
1657 else
1658 Out << "\\l(implicit) default:";
1659 }
1660 else if (isa<IndirectGotoStmt>(T)) {
Ted Kremenekb38911f2008-01-30 23:03:39 +00001661 // FIXME
1662 }
1663 else {
1664 Out << "\\lCondition: ";
1665 if (*E.getSrc()->succ_begin() == E.getDst())
1666 Out << "true";
1667 else
1668 Out << "false";
1669 }
1670
1671 Out << "\\l";
1672 }
Ted Kremenek3b4f6702008-01-30 23:24:39 +00001673
1674 if (GraphPrintCheckerState->isUninitControlFlow(N)) {
1675 Out << "\\|Control-flow based on\\lUninitialized value.\\l";
1676 }
Ted Kremenekaa66a322008-01-16 21:46:15 +00001677 }
1678 }
1679
Ted Kremenek9153f732008-02-05 07:17:49 +00001680 Out << "\\|StateID: " << (void*) N->getState().getImpl() << "\\|";
Ted Kremenek016f52f2008-02-08 21:10:02 +00001681
Ted Kremeneke7d22112008-02-11 19:21:59 +00001682 N->getState().printDOT(Out);
Ted Kremenek803c9ed2008-01-23 22:30:44 +00001683
Ted Kremenek803c9ed2008-01-23 22:30:44 +00001684 Out << "\\l";
Ted Kremenekaa66a322008-01-16 21:46:15 +00001685 return Out.str();
1686 }
1687};
1688} // end llvm namespace
1689#endif
1690
Ted Kremeneke01c9872008-02-14 22:36:46 +00001691void GRExprEngine::ViewGraph() {
Ted Kremenekaa66a322008-01-16 21:46:15 +00001692#ifndef NDEBUG
Ted Kremeneke01c9872008-02-14 22:36:46 +00001693 GraphPrintCheckerState = this;
1694 llvm::ViewGraph(*G.roots_begin(), "GRExprEngine");
Ted Kremenek3b4f6702008-01-30 23:24:39 +00001695 GraphPrintCheckerState = NULL;
Ted Kremeneke01c9872008-02-14 22:36:46 +00001696#endif
Ted Kremenekee985462008-01-16 18:18:48 +00001697}