blob: c068b4b4df84caa6519113a6eee4148644c004c2 [file] [log] [blame]
Ted Kremenek61f3e052008-04-03 04:42:52 +00001// BugReporter.cpp - Generate PathDiagnostics for Bugs ------------*- C++ -*--//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file defines BugReporter, a utility class for generating
11// PathDiagnostics for analyses based on GRSimpleVals.
12//
13//===----------------------------------------------------------------------===//
14
15#include "clang/Analysis/PathSensitive/BugReporter.h"
Ted Kremenek50a6d0c2008-04-09 21:41:14 +000016#include "clang/Analysis/PathSensitive/GRExprEngine.h"
Ted Kremenek61f3e052008-04-03 04:42:52 +000017#include "clang/Basic/SourceManager.h"
18#include "clang/Basic/SourceLocation.h"
19#include "clang/AST/ASTContext.h"
20#include "clang/AST/CFG.h"
21#include "clang/AST/Expr.h"
Ted Kremenek00605e02009-03-27 20:55:39 +000022#include "clang/AST/ParentMap.h"
Ted Kremenek61f3e052008-04-03 04:42:52 +000023#include "clang/Analysis/ProgramPoint.h"
24#include "clang/Analysis/PathDiagnostic.h"
Chris Lattner405674c2008-08-23 22:23:37 +000025#include "llvm/Support/raw_ostream.h"
Ted Kremenek331b0ac2008-06-18 05:34:07 +000026#include "llvm/ADT/DenseMap.h"
Ted Kremenekcf118d42009-02-04 23:49:09 +000027#include "llvm/ADT/STLExtras.h"
Ted Kremenek00605e02009-03-27 20:55:39 +000028#include "llvm/ADT/OwningPtr.h"
Ted Kremenek10aa5542009-03-12 23:41:59 +000029#include <queue>
Ted Kremenek61f3e052008-04-03 04:42:52 +000030
31using namespace clang;
32
Ted Kremenekcf118d42009-02-04 23:49:09 +000033//===----------------------------------------------------------------------===//
Ted Kremenek31061982009-03-31 23:00:32 +000034// Helper routines for walking the ExplodedGraph and fetching statements.
Ted Kremenekcf118d42009-02-04 23:49:09 +000035//===----------------------------------------------------------------------===//
Ted Kremenek61f3e052008-04-03 04:42:52 +000036
Ted Kremenekb697b102009-02-23 22:44:26 +000037static inline Stmt* GetStmt(ProgramPoint P) {
38 if (const PostStmt* PS = dyn_cast<PostStmt>(&P))
Ted Kremenek61f3e052008-04-03 04:42:52 +000039 return PS->getStmt();
Ted Kremenekb697b102009-02-23 22:44:26 +000040 else if (const BlockEdge* BE = dyn_cast<BlockEdge>(&P))
Ted Kremenek61f3e052008-04-03 04:42:52 +000041 return BE->getSrc()->getTerminator();
Ted Kremenek61f3e052008-04-03 04:42:52 +000042
Ted Kremenekb697b102009-02-23 22:44:26 +000043 return 0;
Ted Kremenek706e3cf2008-04-07 23:35:17 +000044}
45
Ted Kremenek3148eb42009-01-24 00:55:43 +000046static inline const ExplodedNode<GRState>*
Ted Kremenekb697b102009-02-23 22:44:26 +000047GetPredecessorNode(const ExplodedNode<GRState>* N) {
Ted Kremenekbd7efa82008-04-17 23:44:37 +000048 return N->pred_empty() ? NULL : *(N->pred_begin());
49}
Ted Kremenek2673c9f2008-04-25 19:01:27 +000050
Ted Kremenekb697b102009-02-23 22:44:26 +000051static inline const ExplodedNode<GRState>*
52GetSuccessorNode(const ExplodedNode<GRState>* N) {
53 return N->succ_empty() ? NULL : *(N->succ_begin());
Ted Kremenekbd7efa82008-04-17 23:44:37 +000054}
55
Ted Kremenekb697b102009-02-23 22:44:26 +000056static Stmt* GetPreviousStmt(const ExplodedNode<GRState>* N) {
57 for (N = GetPredecessorNode(N); N; N = GetPredecessorNode(N))
58 if (Stmt *S = GetStmt(N->getLocation()))
59 return S;
60
61 return 0;
Ted Kremenek3148eb42009-01-24 00:55:43 +000062}
63
Ted Kremenekb697b102009-02-23 22:44:26 +000064static Stmt* GetNextStmt(const ExplodedNode<GRState>* N) {
65 for (N = GetSuccessorNode(N); N; N = GetSuccessorNode(N))
Ted Kremenekf5ab8e62009-03-28 17:33:57 +000066 if (Stmt *S = GetStmt(N->getLocation())) {
67 // Check if the statement is '?' or '&&'/'||'. These are "merges",
68 // not actual statement points.
69 switch (S->getStmtClass()) {
70 case Stmt::ChooseExprClass:
71 case Stmt::ConditionalOperatorClass: continue;
72 case Stmt::BinaryOperatorClass: {
73 BinaryOperator::Opcode Op = cast<BinaryOperator>(S)->getOpcode();
74 if (Op == BinaryOperator::LAnd || Op == BinaryOperator::LOr)
75 continue;
76 break;
77 }
78 default:
79 break;
80 }
Ted Kremenekb697b102009-02-23 22:44:26 +000081 return S;
Ted Kremenekf5ab8e62009-03-28 17:33:57 +000082 }
Ted Kremenekb697b102009-02-23 22:44:26 +000083
84 return 0;
85}
86
87static inline Stmt* GetCurrentOrPreviousStmt(const ExplodedNode<GRState>* N) {
88 if (Stmt *S = GetStmt(N->getLocation()))
89 return S;
90
91 return GetPreviousStmt(N);
92}
93
94static inline Stmt* GetCurrentOrNextStmt(const ExplodedNode<GRState>* N) {
95 if (Stmt *S = GetStmt(N->getLocation()))
96 return S;
97
98 return GetNextStmt(N);
99}
100
101//===----------------------------------------------------------------------===//
Ted Kremenek31061982009-03-31 23:00:32 +0000102// PathDiagnosticBuilder and its associated routines and helper objects.
Ted Kremenekb697b102009-02-23 22:44:26 +0000103//===----------------------------------------------------------------------===//
Ted Kremenekb479dad2009-02-23 23:13:51 +0000104
Ted Kremenek7dc86642009-03-31 20:22:36 +0000105typedef llvm::DenseMap<const ExplodedNode<GRState>*,
106const ExplodedNode<GRState>*> NodeBackMap;
107
Ted Kremenekbabdd7b2009-03-27 05:06:10 +0000108namespace {
Ted Kremenek7dc86642009-03-31 20:22:36 +0000109class VISIBILITY_HIDDEN NodeMapClosure : public BugReport::NodeResolver {
110 NodeBackMap& M;
111public:
112 NodeMapClosure(NodeBackMap *m) : M(*m) {}
113 ~NodeMapClosure() {}
114
115 const ExplodedNode<GRState>* getOriginalNode(const ExplodedNode<GRState>* N) {
116 NodeBackMap::iterator I = M.find(N);
117 return I == M.end() ? 0 : I->second;
118 }
119};
120
Ted Kremenekbabdd7b2009-03-27 05:06:10 +0000121class VISIBILITY_HIDDEN PathDiagnosticBuilder {
Ted Kremenek7dc86642009-03-31 20:22:36 +0000122 GRBugReporter &BR;
Ted Kremenekbabdd7b2009-03-27 05:06:10 +0000123 SourceManager &SMgr;
Ted Kremenek7dc86642009-03-31 20:22:36 +0000124 ExplodedGraph<GRState> *ReportGraph;
125 BugReport *R;
Ted Kremenekbabdd7b2009-03-27 05:06:10 +0000126 const Decl& CodeDecl;
127 PathDiagnosticClient *PDC;
Ted Kremenek00605e02009-03-27 20:55:39 +0000128 llvm::OwningPtr<ParentMap> PM;
Ted Kremenek7dc86642009-03-31 20:22:36 +0000129 NodeMapClosure NMC;
Ted Kremenekbabdd7b2009-03-27 05:06:10 +0000130public:
Ted Kremenek7dc86642009-03-31 20:22:36 +0000131 PathDiagnosticBuilder(GRBugReporter &br, ExplodedGraph<GRState> *reportGraph,
132 BugReport *r, NodeBackMap *Backmap,
133 const Decl& codedecl, PathDiagnosticClient *pdc)
134 : BR(br), SMgr(BR.getSourceManager()), ReportGraph(reportGraph), R(r),
135 CodeDecl(codedecl), PDC(pdc), NMC(Backmap) {}
Ted Kremenekbabdd7b2009-03-27 05:06:10 +0000136
Ted Kremenek00605e02009-03-27 20:55:39 +0000137 PathDiagnosticLocation ExecutionContinues(const ExplodedNode<GRState>* N);
Ted Kremenekbabdd7b2009-03-27 05:06:10 +0000138
Ted Kremenek00605e02009-03-27 20:55:39 +0000139 PathDiagnosticLocation ExecutionContinues(llvm::raw_string_ostream& os,
140 const ExplodedNode<GRState>* N);
141
142 ParentMap& getParentMap() {
143 if (PM.get() == 0) PM.reset(new ParentMap(CodeDecl.getBody()));
144 return *PM.get();
145 }
Ted Kremenekbabdd7b2009-03-27 05:06:10 +0000146
Ted Kremenekc3f83ad2009-04-01 17:18:21 +0000147 const Stmt *getParent(const Stmt *S) {
148 return getParentMap().getParent(S);
149 }
150
Ted Kremenek51a735c2009-04-01 17:52:26 +0000151 const CFG& getCFG() {
152 return *BR.getCFG();
153 }
154
155 const Decl& getCodeDecl() {
156 return BR.getStateManager().getCodeDecl();
157 }
158
Ted Kremenek7dc86642009-03-31 20:22:36 +0000159 ExplodedGraph<GRState>& getGraph() { return *ReportGraph; }
160 NodeMapClosure& getNodeMapClosure() { return NMC; }
161 ASTContext& getContext() { return BR.getContext(); }
162 SourceManager& getSourceManager() { return SMgr; }
163 BugReport& getReport() { return *R; }
164 GRBugReporter& getBugReporter() { return BR; }
165 GRStateManager& getStateManager() { return BR.getStateManager(); }
166
Ted Kremenekd8c938b2009-03-27 21:16:25 +0000167 PathDiagnosticLocation getEnclosingStmtLocation(const Stmt *S);
168
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +0000169 PathDiagnosticLocation
170 getEnclosingStmtLocation(const PathDiagnosticLocation &L) {
171 if (const Stmt *S = L.asStmt())
172 return getEnclosingStmtLocation(S);
173
174 return L;
175 }
176
Ted Kremenek7dc86642009-03-31 20:22:36 +0000177 PathDiagnosticClient::PathGenerationScheme getGenerationScheme() const {
178 return PDC ? PDC->getGenerationScheme() : PathDiagnosticClient::Extensive;
179 }
180
Ted Kremenekbabdd7b2009-03-27 05:06:10 +0000181 bool supportsLogicalOpControlFlow() const {
182 return PDC ? PDC->supportsLogicalOpControlFlow() : true;
183 }
184};
185} // end anonymous namespace
186
Ted Kremenek00605e02009-03-27 20:55:39 +0000187PathDiagnosticLocation
188PathDiagnosticBuilder::ExecutionContinues(const ExplodedNode<GRState>* N) {
189 if (Stmt *S = GetNextStmt(N))
190 return PathDiagnosticLocation(S, SMgr);
191
192 return FullSourceLoc(CodeDecl.getBody()->getRBracLoc(), SMgr);
Ted Kremenek082cb8d2009-03-12 18:41:53 +0000193}
194
Ted Kremenek00605e02009-03-27 20:55:39 +0000195PathDiagnosticLocation
Ted Kremenekbabdd7b2009-03-27 05:06:10 +0000196PathDiagnosticBuilder::ExecutionContinues(llvm::raw_string_ostream& os,
197 const ExplodedNode<GRState>* N) {
198
Ted Kremenek143ca222008-05-06 18:11:09 +0000199 // Slow, but probably doesn't matter.
Ted Kremenekb697b102009-02-23 22:44:26 +0000200 if (os.str().empty())
201 os << ' ';
Ted Kremenek143ca222008-05-06 18:11:09 +0000202
Ted Kremenek00605e02009-03-27 20:55:39 +0000203 const PathDiagnosticLocation &Loc = ExecutionContinues(N);
Ted Kremenek082cb8d2009-03-12 18:41:53 +0000204
Ted Kremenek00605e02009-03-27 20:55:39 +0000205 if (Loc.asStmt())
Ted Kremenekb697b102009-02-23 22:44:26 +0000206 os << "Execution continues on line "
Ted Kremenek00605e02009-03-27 20:55:39 +0000207 << SMgr.getInstantiationLineNumber(Loc.asLocation()) << '.';
Ted Kremenekb697b102009-02-23 22:44:26 +0000208 else
Ted Kremenekb479dad2009-02-23 23:13:51 +0000209 os << "Execution jumps to the end of the "
Ted Kremenekbabdd7b2009-03-27 05:06:10 +0000210 << (isa<ObjCMethodDecl>(CodeDecl) ? "method" : "function") << '.';
Ted Kremenek082cb8d2009-03-12 18:41:53 +0000211
212 return Loc;
Ted Kremenek143ca222008-05-06 18:11:09 +0000213}
214
Ted Kremenekd8c938b2009-03-27 21:16:25 +0000215PathDiagnosticLocation
216PathDiagnosticBuilder::getEnclosingStmtLocation(const Stmt *S) {
217 assert(S && "Null Stmt* passed to getEnclosingStmtLocation");
218 ParentMap &P = getParentMap();
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +0000219
220 while (isa<DeclStmt>(S) || isa<Expr>(S)) {
Ted Kremenekd8c938b2009-03-27 21:16:25 +0000221 const Stmt *Parent = P.getParent(S);
222
Ted Kremenekaf3e3d52009-03-28 03:37:59 +0000223 if (!Parent)
224 break;
Ted Kremenekd8c938b2009-03-27 21:16:25 +0000225
Ted Kremenekaf3e3d52009-03-28 03:37:59 +0000226 switch (Parent->getStmtClass()) {
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +0000227 case Stmt::BinaryOperatorClass: {
228 const BinaryOperator *B = cast<BinaryOperator>(Parent);
229 if (B->isLogicalOp())
230 return PathDiagnosticLocation(S, SMgr);
231 break;
232 }
233
Ted Kremenekaf3e3d52009-03-28 03:37:59 +0000234 case Stmt::CompoundStmtClass:
235 case Stmt::StmtExprClass:
Ted Kremenek1d9a23a2009-03-28 04:08:14 +0000236 return PathDiagnosticLocation(S, SMgr);
237 case Stmt::ChooseExprClass:
238 // Similar to '?' if we are referring to condition, just have the edge
239 // point to the entire choose expression.
240 if (cast<ChooseExpr>(Parent)->getCond() == S)
241 return PathDiagnosticLocation(Parent, SMgr);
242 else
243 return PathDiagnosticLocation(S, SMgr);
244 case Stmt::ConditionalOperatorClass:
245 // For '?', if we are referring to condition, just have the edge point
246 // to the entire '?' expression.
247 if (cast<ConditionalOperator>(Parent)->getCond() == S)
248 return PathDiagnosticLocation(Parent, SMgr);
249 else
250 return PathDiagnosticLocation(S, SMgr);
Ted Kremenekaf3e3d52009-03-28 03:37:59 +0000251 case Stmt::DoStmtClass:
252 if (cast<DoStmt>(Parent)->getCond() != S)
253 return PathDiagnosticLocation(S, SMgr);
254 break;
255 case Stmt::ForStmtClass:
256 if (cast<ForStmt>(Parent)->getBody() == S)
257 return PathDiagnosticLocation(S, SMgr);
258 break;
259 case Stmt::IfStmtClass:
260 if (cast<IfStmt>(Parent)->getCond() != S)
261 return PathDiagnosticLocation(S, SMgr);
262 break;
263 case Stmt::ObjCForCollectionStmtClass:
264 if (cast<ObjCForCollectionStmt>(Parent)->getBody() == S)
265 return PathDiagnosticLocation(S, SMgr);
266 break;
267 case Stmt::WhileStmtClass:
268 if (cast<WhileStmt>(Parent)->getCond() != S)
269 return PathDiagnosticLocation(S, SMgr);
270 break;
271 default:
272 break;
273 }
274
Ted Kremenekd8c938b2009-03-27 21:16:25 +0000275 S = Parent;
276 }
277
278 assert(S && "Cannot have null Stmt for PathDiagnosticLocation");
279 return PathDiagnosticLocation(S, SMgr);
280}
281
Ted Kremenekcf118d42009-02-04 23:49:09 +0000282//===----------------------------------------------------------------------===//
Ted Kremenek31061982009-03-31 23:00:32 +0000283// ScanNotableSymbols: closure-like callback for scanning Store bindings.
284//===----------------------------------------------------------------------===//
285
286static const VarDecl*
287GetMostRecentVarDeclBinding(const ExplodedNode<GRState>* N,
288 GRStateManager& VMgr, SVal X) {
289
290 for ( ; N ; N = N->pred_empty() ? 0 : *N->pred_begin()) {
291
292 ProgramPoint P = N->getLocation();
293
294 if (!isa<PostStmt>(P))
295 continue;
296
297 DeclRefExpr* DR = dyn_cast<DeclRefExpr>(cast<PostStmt>(P).getStmt());
298
299 if (!DR)
300 continue;
301
302 SVal Y = VMgr.GetSVal(N->getState(), DR);
303
304 if (X != Y)
305 continue;
306
307 VarDecl* VD = dyn_cast<VarDecl>(DR->getDecl());
308
309 if (!VD)
310 continue;
311
312 return VD;
313 }
314
315 return 0;
316}
317
318namespace {
319class VISIBILITY_HIDDEN NotableSymbolHandler
320: public StoreManager::BindingsHandler {
321
322 SymbolRef Sym;
323 const GRState* PrevSt;
324 const Stmt* S;
325 GRStateManager& VMgr;
326 const ExplodedNode<GRState>* Pred;
327 PathDiagnostic& PD;
328 BugReporter& BR;
329
330public:
331
332 NotableSymbolHandler(SymbolRef sym, const GRState* prevst, const Stmt* s,
333 GRStateManager& vmgr, const ExplodedNode<GRState>* pred,
334 PathDiagnostic& pd, BugReporter& br)
335 : Sym(sym), PrevSt(prevst), S(s), VMgr(vmgr), Pred(pred), PD(pd), BR(br) {}
336
337 bool HandleBinding(StoreManager& SMgr, Store store, const MemRegion* R,
338 SVal V) {
339
340 SymbolRef ScanSym = V.getAsSymbol();
341
342 if (ScanSym != Sym)
343 return true;
344
345 // Check if the previous state has this binding.
346 SVal X = VMgr.GetSVal(PrevSt, loc::MemRegionVal(R));
347
348 if (X == V) // Same binding?
349 return true;
350
351 // Different binding. Only handle assignments for now. We don't pull
352 // this check out of the loop because we will eventually handle other
353 // cases.
354
355 VarDecl *VD = 0;
356
357 if (const BinaryOperator* B = dyn_cast<BinaryOperator>(S)) {
358 if (!B->isAssignmentOp())
359 return true;
360
361 // What variable did we assign to?
362 DeclRefExpr* DR = dyn_cast<DeclRefExpr>(B->getLHS()->IgnoreParenCasts());
363
364 if (!DR)
365 return true;
366
367 VD = dyn_cast<VarDecl>(DR->getDecl());
368 }
369 else if (const DeclStmt* DS = dyn_cast<DeclStmt>(S)) {
370 // FIXME: Eventually CFGs won't have DeclStmts. Right now we
371 // assume that each DeclStmt has a single Decl. This invariant
372 // holds by contruction in the CFG.
373 VD = dyn_cast<VarDecl>(*DS->decl_begin());
374 }
375
376 if (!VD)
377 return true;
378
379 // What is the most recently referenced variable with this binding?
380 const VarDecl* MostRecent = GetMostRecentVarDeclBinding(Pred, VMgr, V);
381
382 if (!MostRecent)
383 return true;
384
385 // Create the diagnostic.
386 FullSourceLoc L(S->getLocStart(), BR.getSourceManager());
387
388 if (Loc::IsLocType(VD->getType())) {
389 std::string msg = "'" + std::string(VD->getNameAsString()) +
390 "' now aliases '" + MostRecent->getNameAsString() + "'";
391
392 PD.push_front(new PathDiagnosticEventPiece(L, msg));
393 }
394
395 return true;
396 }
397};
398}
399
400static void HandleNotableSymbol(const ExplodedNode<GRState>* N,
401 const Stmt* S,
402 SymbolRef Sym, BugReporter& BR,
403 PathDiagnostic& PD) {
404
405 const ExplodedNode<GRState>* Pred = N->pred_empty() ? 0 : *N->pred_begin();
406 const GRState* PrevSt = Pred ? Pred->getState() : 0;
407
408 if (!PrevSt)
409 return;
410
411 // Look at the region bindings of the current state that map to the
412 // specified symbol. Are any of them not in the previous state?
413 GRStateManager& VMgr = cast<GRBugReporter>(BR).getStateManager();
414 NotableSymbolHandler H(Sym, PrevSt, S, VMgr, Pred, PD, BR);
415 cast<GRBugReporter>(BR).getStateManager().iterBindings(N->getState(), H);
416}
417
418namespace {
419class VISIBILITY_HIDDEN ScanNotableSymbols
420: public StoreManager::BindingsHandler {
421
422 llvm::SmallSet<SymbolRef, 10> AlreadyProcessed;
423 const ExplodedNode<GRState>* N;
424 Stmt* S;
425 GRBugReporter& BR;
426 PathDiagnostic& PD;
427
428public:
429 ScanNotableSymbols(const ExplodedNode<GRState>* n, Stmt* s, GRBugReporter& br,
430 PathDiagnostic& pd)
431 : N(n), S(s), BR(br), PD(pd) {}
432
433 bool HandleBinding(StoreManager& SMgr, Store store,
434 const MemRegion* R, SVal V) {
435
436 SymbolRef ScanSym = V.getAsSymbol();
437
438 if (!ScanSym)
439 return true;
440
441 if (!BR.isNotable(ScanSym))
442 return true;
443
444 if (AlreadyProcessed.count(ScanSym))
445 return true;
446
447 AlreadyProcessed.insert(ScanSym);
448
449 HandleNotableSymbol(N, S, ScanSym, BR, PD);
450 return true;
451 }
452};
453} // end anonymous namespace
454
455//===----------------------------------------------------------------------===//
456// "Minimal" path diagnostic generation algorithm.
457//===----------------------------------------------------------------------===//
458
Ted Kremenek14856d72009-04-06 23:06:54 +0000459static void CompactPathDiagnostic(PathDiagnostic &PD, const SourceManager& SM);
460
Ted Kremenek31061982009-03-31 23:00:32 +0000461static void GenerateMinimalPathDiagnostic(PathDiagnostic& PD,
462 PathDiagnosticBuilder &PDB,
463 const ExplodedNode<GRState> *N) {
464 ASTContext& Ctx = PDB.getContext();
465 SourceManager& SMgr = PDB.getSourceManager();
466 const ExplodedNode<GRState>* NextNode = N->pred_empty()
467 ? NULL : *(N->pred_begin());
468 while (NextNode) {
469 N = NextNode;
470 NextNode = GetPredecessorNode(N);
471
472 ProgramPoint P = N->getLocation();
473
474 if (const BlockEdge* BE = dyn_cast<BlockEdge>(&P)) {
475 CFGBlock* Src = BE->getSrc();
476 CFGBlock* Dst = BE->getDst();
477 Stmt* T = Src->getTerminator();
478
479 if (!T)
480 continue;
481
482 FullSourceLoc Start(T->getLocStart(), SMgr);
483
484 switch (T->getStmtClass()) {
485 default:
486 break;
487
488 case Stmt::GotoStmtClass:
489 case Stmt::IndirectGotoStmtClass: {
490 Stmt* S = GetNextStmt(N);
491
492 if (!S)
493 continue;
494
495 std::string sbuf;
496 llvm::raw_string_ostream os(sbuf);
497 const PathDiagnosticLocation &End = PDB.getEnclosingStmtLocation(S);
498
499 os << "Control jumps to line "
500 << End.asLocation().getInstantiationLineNumber();
501 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
502 os.str()));
503 break;
504 }
505
506 case Stmt::SwitchStmtClass: {
507 // Figure out what case arm we took.
508 std::string sbuf;
509 llvm::raw_string_ostream os(sbuf);
510
511 if (Stmt* S = Dst->getLabel()) {
512 PathDiagnosticLocation End(S, SMgr);
513
514 switch (S->getStmtClass()) {
515 default:
516 os << "No cases match in the switch statement. "
517 "Control jumps to line "
518 << End.asLocation().getInstantiationLineNumber();
519 break;
520 case Stmt::DefaultStmtClass:
521 os << "Control jumps to the 'default' case at line "
522 << End.asLocation().getInstantiationLineNumber();
523 break;
524
525 case Stmt::CaseStmtClass: {
526 os << "Control jumps to 'case ";
527 CaseStmt* Case = cast<CaseStmt>(S);
528 Expr* LHS = Case->getLHS()->IgnoreParenCasts();
529
530 // Determine if it is an enum.
531 bool GetRawInt = true;
532
533 if (DeclRefExpr* DR = dyn_cast<DeclRefExpr>(LHS)) {
534 // FIXME: Maybe this should be an assertion. Are there cases
535 // were it is not an EnumConstantDecl?
536 EnumConstantDecl* D =
537 dyn_cast<EnumConstantDecl>(DR->getDecl());
538
539 if (D) {
540 GetRawInt = false;
541 os << D->getNameAsString();
542 }
543 }
544
545 if (GetRawInt) {
546
547 // Not an enum.
548 Expr* CondE = cast<SwitchStmt>(T)->getCond();
549 unsigned bits = Ctx.getTypeSize(CondE->getType());
550 llvm::APSInt V(bits, false);
551
552 if (!LHS->isIntegerConstantExpr(V, Ctx, 0, true)) {
553 assert (false && "Case condition must be constant.");
554 continue;
555 }
556
557 os << V;
558 }
559
560 os << ":' at line "
561 << End.asLocation().getInstantiationLineNumber();
562 break;
563 }
564 }
565 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
566 os.str()));
567 }
568 else {
569 os << "'Default' branch taken. ";
570 const PathDiagnosticLocation &End = PDB.ExecutionContinues(os, N);
571 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
572 os.str()));
573 }
574
575 break;
576 }
577
578 case Stmt::BreakStmtClass:
579 case Stmt::ContinueStmtClass: {
580 std::string sbuf;
581 llvm::raw_string_ostream os(sbuf);
582 PathDiagnosticLocation End = PDB.ExecutionContinues(os, N);
583 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
584 os.str()));
585 break;
586 }
587
588 // Determine control-flow for ternary '?'.
589 case Stmt::ConditionalOperatorClass: {
590 std::string sbuf;
591 llvm::raw_string_ostream os(sbuf);
592 os << "'?' condition is ";
593
594 if (*(Src->succ_begin()+1) == Dst)
595 os << "false";
596 else
597 os << "true";
598
599 PathDiagnosticLocation End = PDB.ExecutionContinues(N);
600
601 if (const Stmt *S = End.asStmt())
602 End = PDB.getEnclosingStmtLocation(S);
603
604 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
605 os.str()));
606 break;
607 }
608
609 // Determine control-flow for short-circuited '&&' and '||'.
610 case Stmt::BinaryOperatorClass: {
611 if (!PDB.supportsLogicalOpControlFlow())
612 break;
613
614 BinaryOperator *B = cast<BinaryOperator>(T);
615 std::string sbuf;
616 llvm::raw_string_ostream os(sbuf);
617 os << "Left side of '";
618
619 if (B->getOpcode() == BinaryOperator::LAnd) {
620 os << "&&" << "' is ";
621
622 if (*(Src->succ_begin()+1) == Dst) {
623 os << "false";
624 PathDiagnosticLocation End(B->getLHS(), SMgr);
625 PathDiagnosticLocation Start(B->getOperatorLoc(), SMgr);
626 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
627 os.str()));
628 }
629 else {
630 os << "true";
631 PathDiagnosticLocation Start(B->getLHS(), SMgr);
632 PathDiagnosticLocation End = PDB.ExecutionContinues(N);
633 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
634 os.str()));
635 }
636 }
637 else {
638 assert(B->getOpcode() == BinaryOperator::LOr);
639 os << "||" << "' is ";
640
641 if (*(Src->succ_begin()+1) == Dst) {
642 os << "false";
643 PathDiagnosticLocation Start(B->getLHS(), SMgr);
644 PathDiagnosticLocation End = PDB.ExecutionContinues(N);
645 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
646 os.str()));
647 }
648 else {
649 os << "true";
650 PathDiagnosticLocation End(B->getLHS(), SMgr);
651 PathDiagnosticLocation Start(B->getOperatorLoc(), SMgr);
652 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
653 os.str()));
654 }
655 }
656
657 break;
658 }
659
660 case Stmt::DoStmtClass: {
661 if (*(Src->succ_begin()) == Dst) {
662 std::string sbuf;
663 llvm::raw_string_ostream os(sbuf);
664
665 os << "Loop condition is true. ";
666 PathDiagnosticLocation End = PDB.ExecutionContinues(os, N);
667
668 if (const Stmt *S = End.asStmt())
669 End = PDB.getEnclosingStmtLocation(S);
670
671 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
672 os.str()));
673 }
674 else {
675 PathDiagnosticLocation End = PDB.ExecutionContinues(N);
676
677 if (const Stmt *S = End.asStmt())
678 End = PDB.getEnclosingStmtLocation(S);
679
680 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
681 "Loop condition is false. Exiting loop"));
682 }
683
684 break;
685 }
686
687 case Stmt::WhileStmtClass:
688 case Stmt::ForStmtClass: {
689 if (*(Src->succ_begin()+1) == Dst) {
690 std::string sbuf;
691 llvm::raw_string_ostream os(sbuf);
692
693 os << "Loop condition is false. ";
694 PathDiagnosticLocation End = PDB.ExecutionContinues(os, N);
695 if (const Stmt *S = End.asStmt())
696 End = PDB.getEnclosingStmtLocation(S);
697
698 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
699 os.str()));
700 }
701 else {
702 PathDiagnosticLocation End = PDB.ExecutionContinues(N);
703 if (const Stmt *S = End.asStmt())
704 End = PDB.getEnclosingStmtLocation(S);
705
706 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +0000707 "Loop condition is true. Entering loop body"));
Ted Kremenek31061982009-03-31 23:00:32 +0000708 }
709
710 break;
711 }
712
713 case Stmt::IfStmtClass: {
714 PathDiagnosticLocation End = PDB.ExecutionContinues(N);
715
716 if (const Stmt *S = End.asStmt())
717 End = PDB.getEnclosingStmtLocation(S);
718
719 if (*(Src->succ_begin()+1) == Dst)
720 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +0000721 "Taking false branch"));
Ted Kremenek31061982009-03-31 23:00:32 +0000722 else
723 PD.push_front(new PathDiagnosticControlFlowPiece(Start, End,
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +0000724 "Taking true branch"));
Ted Kremenek31061982009-03-31 23:00:32 +0000725
726 break;
727 }
728 }
729 }
730
731 if (PathDiagnosticPiece* p =
732 PDB.getReport().VisitNode(N, NextNode, PDB.getGraph(),
733 PDB.getBugReporter(),
734 PDB.getNodeMapClosure())) {
735 PD.push_front(p);
736 }
737
738 if (const PostStmt* PS = dyn_cast<PostStmt>(&P)) {
739 // Scan the region bindings, and see if a "notable" symbol has a new
740 // lval binding.
741 ScanNotableSymbols SNS(N, PS->getStmt(), PDB.getBugReporter(), PD);
742 PDB.getStateManager().iterBindings(N->getState(), SNS);
743 }
744 }
Ted Kremenek14856d72009-04-06 23:06:54 +0000745
746 // After constructing the full PathDiagnostic, do a pass over it to compact
747 // PathDiagnosticPieces that occur within a macro.
748 CompactPathDiagnostic(PD, PDB.getSourceManager());
Ted Kremenek31061982009-03-31 23:00:32 +0000749}
750
751//===----------------------------------------------------------------------===//
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +0000752// "Extensive" PathDiagnostic generation.
753//===----------------------------------------------------------------------===//
754
755static bool IsControlFlowExpr(const Stmt *S) {
756 const Expr *E = dyn_cast<Expr>(S);
Ted Kremenek14856d72009-04-06 23:06:54 +0000757
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +0000758 if (!E)
759 return false;
760
761 E = E->IgnoreParenCasts();
762
763 if (isa<ConditionalOperator>(E))
764 return true;
765
766 if (const BinaryOperator *B = dyn_cast<BinaryOperator>(E))
767 if (B->isLogicalOp())
768 return true;
769
770 return false;
771}
772
Ted Kremenek14856d72009-04-06 23:06:54 +0000773#if 1
774
775namespace {
776class VISIBILITY_HIDDEN EdgeBuilder {
777 std::vector<PathDiagnosticLocation> CLocs;
778 typedef std::vector<PathDiagnosticLocation>::iterator iterator;
779 PathDiagnostic &PD;
780 PathDiagnosticBuilder &PDB;
781 PathDiagnosticLocation PrevLoc;
782
783 bool containsLocation(const PathDiagnosticLocation &Container,
784 const PathDiagnosticLocation &Containee);
785
786 PathDiagnosticLocation getContextLocation(const PathDiagnosticLocation &L);
787 void rawAddEdge(PathDiagnosticLocation NewLoc);
788
789 void popLocation() {
790 rawAddEdge(CLocs.back());
791 CLocs.pop_back();
792 }
793
794 PathDiagnosticLocation IgnoreParens(const PathDiagnosticLocation &L);
795
796public:
797 EdgeBuilder(PathDiagnostic &pd, PathDiagnosticBuilder &pdb)
798 : PD(pd), PDB(pdb) {
799 CLocs.push_back(PathDiagnosticLocation(&PDB.getCodeDecl(),
800 PDB.getSourceManager()));
801 if (!PD.empty()) {
802 PrevLoc = PD.begin()->getLocation();
803
804 if (const Stmt *S = PrevLoc.asStmt())
805 addContext(PDB.getEnclosingStmtLocation(S).asStmt());
806 }
807 }
808
809 ~EdgeBuilder() {
810 while (!CLocs.empty()) popLocation();
811 }
812
813 void addEdge(PathDiagnosticLocation NewLoc, bool alwaysAdd = false);
814
815 void addEdge(const Stmt *S, bool alwaysAdd = false) {
816 addEdge(PathDiagnosticLocation(S, PDB.getSourceManager()), alwaysAdd);
817 }
818
819 void addContext(const Stmt *S);
820};
821} // end anonymous namespace
822
823
824PathDiagnosticLocation
825EdgeBuilder::getContextLocation(const PathDiagnosticLocation &L) {
826 if (const Stmt *S = L.asStmt()) {
827 if (IsControlFlowExpr(S))
828 return L;
829
830 return PDB.getEnclosingStmtLocation(S);
831 }
832
833 return L;
834}
835
836bool EdgeBuilder::containsLocation(const PathDiagnosticLocation &Container,
837 const PathDiagnosticLocation &Containee) {
838
839 if (Container == Containee)
840 return true;
841
842 if (Container.asDecl())
843 return true;
844
845 if (const Stmt *S = Containee.asStmt())
846 if (const Stmt *ContainerS = Container.asStmt()) {
847 while (S) {
848 if (S == ContainerS)
849 return true;
850 S = PDB.getParent(S);
851 }
852 return false;
853 }
854
855 // Less accurate: compare using source ranges.
856 SourceRange ContainerR = Container.asRange();
857 SourceRange ContaineeR = Containee.asRange();
858
859 SourceManager &SM = PDB.getSourceManager();
860 SourceLocation ContainerRBeg = SM.getInstantiationLoc(ContainerR.getBegin());
861 SourceLocation ContainerREnd = SM.getInstantiationLoc(ContainerR.getEnd());
862 SourceLocation ContaineeRBeg = SM.getInstantiationLoc(ContaineeR.getBegin());
863 SourceLocation ContaineeREnd = SM.getInstantiationLoc(ContaineeR.getEnd());
864
865 unsigned ContainerBegLine = SM.getInstantiationLineNumber(ContainerRBeg);
866 unsigned ContainerEndLine = SM.getInstantiationLineNumber(ContainerREnd);
867 unsigned ContaineeBegLine = SM.getInstantiationLineNumber(ContaineeRBeg);
868 unsigned ContaineeEndLine = SM.getInstantiationLineNumber(ContaineeREnd);
869
870 assert(ContainerBegLine <= ContainerEndLine);
871 assert(ContaineeBegLine <= ContaineeEndLine);
872
873 return (ContainerBegLine <= ContaineeBegLine &&
874 ContainerEndLine >= ContaineeEndLine &&
875 (ContainerBegLine != ContaineeBegLine ||
876 SM.getInstantiationColumnNumber(ContainerRBeg) <=
877 SM.getInstantiationColumnNumber(ContaineeRBeg)) &&
878 (ContainerEndLine != ContaineeEndLine ||
879 SM.getInstantiationColumnNumber(ContainerREnd) >=
880 SM.getInstantiationColumnNumber(ContainerREnd)));
881}
882
883PathDiagnosticLocation
884EdgeBuilder::IgnoreParens(const PathDiagnosticLocation &L) {
885 if (const Expr* E = dyn_cast_or_null<Expr>(L.asStmt()))
886 return PathDiagnosticLocation(E->IgnoreParenCasts(),
887 PDB.getSourceManager());
888 return L;
889}
890
891void EdgeBuilder::rawAddEdge(PathDiagnosticLocation NewLoc) {
892 if (!PrevLoc.isValid()) {
893 PrevLoc = NewLoc;
894 return;
895 }
896
897 if (NewLoc.asLocation() == PrevLoc.asLocation())
898 return;
899
900 // FIXME: Ignore intra-macro edges for now.
901 if (NewLoc.asLocation().getInstantiationLoc() ==
902 PrevLoc.asLocation().getInstantiationLoc())
903 return;
904
905 PD.push_front(new PathDiagnosticControlFlowPiece(NewLoc, PrevLoc));
906 PrevLoc = NewLoc;
907}
908
909void EdgeBuilder::addEdge(PathDiagnosticLocation NewLoc, bool alwaysAdd) {
910 const PathDiagnosticLocation &CLoc = getContextLocation(NewLoc);
911
912 while (!CLocs.empty()) {
913 const PathDiagnosticLocation &TopContextLoc = CLocs.back();
914
915 // Is the top location context the same as the one for the new location?
916 if (TopContextLoc == CLoc) {
917 if (alwaysAdd && NewLoc.asLocation() != CLoc.asLocation())
918 rawAddEdge(NewLoc);
919
920 return;
921 }
922
923 if (containsLocation(TopContextLoc, CLoc)) {
924 if (alwaysAdd)
925 rawAddEdge(NewLoc);
926
927 CLocs.push_back(CLoc);
928 return;
929 }
930
931 // Context does not contain the location. Flush it.
932 popLocation();
933 }
934
935 assert(0 && "addEdge should never pop the top context");
936}
937
938void EdgeBuilder::addContext(const Stmt *S) {
939 if (!S)
940 return;
941
942 PathDiagnosticLocation L(S, PDB.getSourceManager());
943
944 while (!CLocs.empty()) {
945 const PathDiagnosticLocation &TopContextLoc = CLocs.back();
946
947 // Is the top location context the same as the one for the new location?
948 if (TopContextLoc == L)
949 return;
950
951 if (containsLocation(TopContextLoc, L)) {
952 // if (const Stmt *S = L.asStmt())
953 // if (isa<Expr>(S))
954 // if (const Stmt *P = PDB.getParent(S))
955 // addContext(PDB.getEnclosingStmtLocation(P).asStmt());
956
957 CLocs.push_back(L);
958 return;
959 }
960
961 // Context does not contain the location. Flush it.
962 popLocation();
963 }
964
965 CLocs.push_back(L);
966}
967
968static void GenerateExtensivePathDiagnostic(PathDiagnostic& PD,
969 PathDiagnosticBuilder &PDB,
970 const ExplodedNode<GRState> *N) {
971
972
973 EdgeBuilder EB(PD, PDB);
974
975 const ExplodedNode<GRState>* NextNode = N->pred_empty()
976 ? NULL : *(N->pred_begin());
977
978 while (NextNode) {
979 N = NextNode;
980 NextNode = GetPredecessorNode(N);
981 ProgramPoint P = N->getLocation();
982
983 // Block edges.
984 if (const BlockEdge *BE = dyn_cast<BlockEdge>(&P)) {
985 const CFGBlock &Blk = *BE->getSrc();
986
987 if (const Stmt *Term = Blk.getTerminator())
988 EB.addContext(Term);
989
990 // Only handle blocks with more than 1 statement here, as the blocks
991 // with one statement are handled at BlockEntrances.
992 if (Blk.size() > 1) {
993 const Stmt *S = *Blk.rbegin();
994 EB.addEdge(S);
995 }
996
997 continue;
998 }
999
1000 if (const BlockEntrance *BE = dyn_cast<BlockEntrance>(&P)) {
1001 if (const Stmt* S = BE->getFirstStmt()) {
1002 if (IsControlFlowExpr(S))
1003 EB.addContext(S);
1004 else
1005 EB.addEdge(S);
1006 }
1007
1008 continue;
1009 }
1010
1011 PathDiagnosticPiece* p =
1012 PDB.getReport().VisitNode(N, NextNode, PDB.getGraph(),
1013 PDB.getBugReporter(), PDB.getNodeMapClosure());
1014
1015 if (p) {
1016 EB.addEdge(p->getLocation(), true);
1017 PD.push_front(p);
1018 }
1019 }
1020}
1021
1022
1023#else
1024
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001025static void GenExtAddEdge(PathDiagnostic& PD,
1026 PathDiagnosticBuilder &PDB,
1027 PathDiagnosticLocation NewLoc,
1028 PathDiagnosticLocation &PrevLoc,
Ted Kremenekc3f83ad2009-04-01 17:18:21 +00001029 bool allowBlockJump = false) {
Ted Kremenek14856d72009-04-06 23:06:54 +00001030
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001031 if (const Stmt *S = NewLoc.asStmt()) {
1032 if (IsControlFlowExpr(S))
1033 return;
1034 }
1035
1036
1037 if (!PrevLoc.isValid()) {
1038 PrevLoc = NewLoc;
1039 return;
1040 }
1041
1042 if (NewLoc == PrevLoc)
1043 return;
Ted Kremenek14856d72009-04-06 23:06:54 +00001044
Ted Kremenek0dc65be2009-04-01 19:43:28 +00001045 // Are we jumping between statements within the same compound statement?
Ted Kremenekc3f83ad2009-04-01 17:18:21 +00001046 if (!allowBlockJump)
1047 if (const Stmt *PS = PrevLoc.asStmt())
1048 if (const Stmt *NS = NewLoc.asStmt()) {
1049 const Stmt *parentPS = PDB.getParent(PS);
Ted Kremenek28de78b2009-04-02 03:30:55 +00001050 if (parentPS && isa<CompoundStmt>(parentPS) &&
1051 parentPS == PDB.getParent(NS))
Ted Kremenekc3f83ad2009-04-01 17:18:21 +00001052 return;
1053 }
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001054
Ted Kremenek9e2d98d2009-04-01 21:12:06 +00001055 // Add an extra edge when jumping between contexts.
1056 while (1) {
1057 if (const Stmt *PS = PrevLoc.asStmt())
1058 if (const Stmt *NS = NewLoc.asStmt()) {
1059 PathDiagnosticLocation X = PDB.getEnclosingStmtLocation(PS);
1060 // FIXME: We need a version of getParent that ignores '()' and casts.
1061 const Stmt *parentX = PDB.getParent(X.asStmt());
Ted Kremenek14856d72009-04-06 23:06:54 +00001062
Ted Kremenek9e2d98d2009-04-01 21:12:06 +00001063 const PathDiagnosticLocation &Y = PDB.getEnclosingStmtLocation(NS);
1064 // FIXME: We need a version of getParent that ignores '()' and casts.
1065 const Stmt *parentY = PDB.getParent(Y.asStmt());
Ted Kremenek14856d72009-04-06 23:06:54 +00001066
Ted Kremenek0ddaff32009-04-02 03:44:00 +00001067 if (parentX && IsControlFlowExpr(parentX)) {
1068 if (parentX == parentY)
Ted Kremenek9e2d98d2009-04-01 21:12:06 +00001069 break;
Ted Kremenek9e2d98d2009-04-01 21:12:06 +00001070 else {
Ted Kremenek0ddaff32009-04-02 03:44:00 +00001071 if (const Stmt *grandparentX = PDB.getParent(parentX)) {
1072 const PathDiagnosticLocation &W =
Ted Kremenek14856d72009-04-06 23:06:54 +00001073 PDB.getEnclosingStmtLocation(grandparentX);
Ted Kremenek0ddaff32009-04-02 03:44:00 +00001074
1075 if (W != Y) X = W;
1076 }
Ted Kremenek9e2d98d2009-04-01 21:12:06 +00001077 }
1078 }
1079
1080 if (X != Y && PrevLoc.asLocation() != X.asLocation()) {
1081 PD.push_front(new PathDiagnosticControlFlowPiece(X, PrevLoc));
1082 PrevLoc = X;
1083 }
1084 }
1085 break;
1086 }
1087
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001088 PD.push_front(new PathDiagnosticControlFlowPiece(NewLoc, PrevLoc));
Ted Kremenekc3f83ad2009-04-01 17:18:21 +00001089 PrevLoc = NewLoc;
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001090}
1091
1092static bool IsNestedDeclStmt(const Stmt *S, ParentMap &PM) {
1093 const DeclStmt *DS = dyn_cast<DeclStmt>(S);
Ted Kremenek14856d72009-04-06 23:06:54 +00001094
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001095 if (!DS)
1096 return false;
1097
1098 const Stmt *Parent = PM.getParent(DS);
1099 if (!Parent)
1100 return false;
1101
1102 if (const ForStmt *FS = dyn_cast<ForStmt>(Parent))
1103 return FS->getInit() == DS;
Ted Kremenek14856d72009-04-06 23:06:54 +00001104
Ted Kremeneka42c4c92009-04-01 18:48:52 +00001105 // FIXME: In the future IfStmt/WhileStmt may contain DeclStmts in their
1106 // condition.
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001107
1108 return false;
1109}
1110
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001111static void GenerateExtensivePathDiagnostic(PathDiagnostic& PD,
1112 PathDiagnosticBuilder &PDB,
1113 const ExplodedNode<GRState> *N) {
Ted Kremenek14856d72009-04-06 23:06:54 +00001114
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001115 SourceManager& SMgr = PDB.getSourceManager();
1116 const ExplodedNode<GRState>* NextNode = N->pred_empty()
Ted Kremenek14856d72009-04-06 23:06:54 +00001117 ? NULL : *(N->pred_begin());
1118
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001119 PathDiagnosticLocation PrevLoc;
1120
1121 while (NextNode) {
1122 N = NextNode;
1123 NextNode = GetPredecessorNode(N);
1124 ProgramPoint P = N->getLocation();
1125
1126 // Block edges.
1127 if (const BlockEdge *BE = dyn_cast<BlockEdge>(&P)) {
1128 const CFGBlock &Blk = *BE->getSrc();
Ted Kremenek14856d72009-04-06 23:06:54 +00001129
Ted Kremenek51a735c2009-04-01 17:52:26 +00001130 // Add a special edge for the entrance into the function/method.
1131 if (&Blk == &PDB.getCFG().getEntry()) {
1132 FullSourceLoc L = FullSourceLoc(PDB.getCodeDecl().getLocation(), SMgr);
1133 GenExtAddEdge(PD, PDB, L.getSpellingLoc(), PrevLoc);
1134 continue;
1135 }
1136
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001137 if (const Stmt *Term = Blk.getTerminator()) {
Ted Kremeneka42c4c92009-04-01 18:48:52 +00001138 const Stmt *Cond = Blk.getTerminatorCondition();
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001139 if (!Cond || !IsControlFlowExpr(Cond)) {
Ted Kremeneka42c4c92009-04-01 18:48:52 +00001140 // For terminators that are control-flow expressions like '&&', '?',
1141 // have the condition be the anchor point for the control-flow edge
1142 // instead of the terminator.
1143 const Stmt *X = isa<Expr>(Term) ? (Cond ? Cond : Term) : Term;
1144 GenExtAddEdge(PD, PDB, PathDiagnosticLocation(X, SMgr), PrevLoc,true);
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001145 continue;
1146 }
1147 }
1148
1149 // Only handle blocks with more than 1 statement here, as the blocks
1150 // with one statement are handled at BlockEntrances.
1151 if (Blk.size() > 1) {
1152 const Stmt *S = *Blk.rbegin();
1153
1154 // We don't add control-flow edges for DeclStmt's that appear in
1155 // the condition of if/while/for or are control-flow merge expressions.
1156 if (!IsControlFlowExpr(S) && !IsNestedDeclStmt(S, PDB.getParentMap())) {
1157 GenExtAddEdge(PD, PDB, PathDiagnosticLocation(S, SMgr), PrevLoc);
1158 }
1159 }
Ted Kremenek14856d72009-04-06 23:06:54 +00001160
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001161 continue;
1162 }
1163
1164 if (const BlockEntrance *BE = dyn_cast<BlockEntrance>(&P)) {
1165 if (const Stmt* S = BE->getFirstStmt()) {
1166 if (!IsControlFlowExpr(S) && !IsNestedDeclStmt(S, PDB.getParentMap())) {
Ted Kremenekc3f83ad2009-04-01 17:18:21 +00001167 if (PrevLoc.isValid()) {
Ted Kremenek51a735c2009-04-01 17:52:26 +00001168 // Are we jumping within the same enclosing statement?
Ted Kremenekc3f83ad2009-04-01 17:18:21 +00001169 if (PDB.getEnclosingStmtLocation(S) ==
1170 PDB.getEnclosingStmtLocation(PrevLoc))
Ted Kremenek14856d72009-04-06 23:06:54 +00001171 continue;
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001172 }
1173
1174 GenExtAddEdge(PD, PDB, PDB.getEnclosingStmtLocation(S), PrevLoc);
1175 }
1176 }
1177
1178 continue;
1179 }
Ted Kremenek14856d72009-04-06 23:06:54 +00001180
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001181 PathDiagnosticPiece* p =
Ted Kremenek14856d72009-04-06 23:06:54 +00001182 PDB.getReport().VisitNode(N, NextNode, PDB.getGraph(),
1183 PDB.getBugReporter(), PDB.getNodeMapClosure());
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001184
1185 if (p) {
Ted Kremeneka42c4c92009-04-01 18:48:52 +00001186 GenExtAddEdge(PD, PDB, p->getLocation(), PrevLoc, true);
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001187 PD.push_front(p);
1188 }
1189 }
1190}
Ted Kremenek14856d72009-04-06 23:06:54 +00001191#endif
1192
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001193//===----------------------------------------------------------------------===//
Ted Kremenekcf118d42009-02-04 23:49:09 +00001194// Methods for BugType and subclasses.
1195//===----------------------------------------------------------------------===//
1196BugType::~BugType() {}
1197void BugType::FlushReports(BugReporter &BR) {}
Ted Kremenekbb77e9b2008-05-01 22:50:36 +00001198
Ted Kremenekcf118d42009-02-04 23:49:09 +00001199//===----------------------------------------------------------------------===//
1200// Methods for BugReport and subclasses.
1201//===----------------------------------------------------------------------===//
1202BugReport::~BugReport() {}
1203RangedBugReport::~RangedBugReport() {}
1204
1205Stmt* BugReport::getStmt(BugReporter& BR) const {
Ted Kremenek200ed922008-05-02 23:21:21 +00001206 ProgramPoint ProgP = EndNode->getLocation();
Ted Kremenekbd7efa82008-04-17 23:44:37 +00001207 Stmt *S = NULL;
1208
Ted Kremenekcf118d42009-02-04 23:49:09 +00001209 if (BlockEntrance* BE = dyn_cast<BlockEntrance>(&ProgP)) {
Ted Kremenekb697b102009-02-23 22:44:26 +00001210 if (BE->getBlock() == &BR.getCFG()->getExit()) S = GetPreviousStmt(EndNode);
Ted Kremenekcf118d42009-02-04 23:49:09 +00001211 }
1212 if (!S) S = GetStmt(ProgP);
1213
Ted Kremenekbb77e9b2008-05-01 22:50:36 +00001214 return S;
1215}
1216
1217PathDiagnosticPiece*
1218BugReport::getEndPath(BugReporter& BR,
Ted Kremenek3148eb42009-01-24 00:55:43 +00001219 const ExplodedNode<GRState>* EndPathNode) {
Ted Kremenekbb77e9b2008-05-01 22:50:36 +00001220
1221 Stmt* S = getStmt(BR);
Ted Kremenek61f3e052008-04-03 04:42:52 +00001222
1223 if (!S)
1224 return NULL;
1225
Ted Kremenekc9fa2f72008-05-01 23:13:35 +00001226 FullSourceLoc L(S->getLocStart(), BR.getContext().getSourceManager());
Ted Kremenek1fbfd5b2009-03-06 23:58:11 +00001227 PathDiagnosticPiece* P = new PathDiagnosticEventPiece(L, getDescription());
Ted Kremenek61f3e052008-04-03 04:42:52 +00001228
Ted Kremenekde7161f2008-04-03 18:00:37 +00001229 const SourceRange *Beg, *End;
Ted Kremenekbb77e9b2008-05-01 22:50:36 +00001230 getRanges(BR, Beg, End);
Ted Kremenekcf118d42009-02-04 23:49:09 +00001231
Ted Kremenekbb77e9b2008-05-01 22:50:36 +00001232 for (; Beg != End; ++Beg)
1233 P->addRange(*Beg);
Ted Kremenek61f3e052008-04-03 04:42:52 +00001234
1235 return P;
1236}
1237
Ted Kremenekbb77e9b2008-05-01 22:50:36 +00001238void BugReport::getRanges(BugReporter& BR, const SourceRange*& beg,
1239 const SourceRange*& end) {
1240
1241 if (Expr* E = dyn_cast_or_null<Expr>(getStmt(BR))) {
1242 R = E->getSourceRange();
Ted Kremenek9b5e5052009-02-27 20:05:10 +00001243 assert(R.isValid());
Ted Kremenekbb77e9b2008-05-01 22:50:36 +00001244 beg = &R;
1245 end = beg+1;
1246 }
1247 else
1248 beg = end = 0;
Ted Kremenekf1ae7052008-04-03 17:57:38 +00001249}
1250
Ted Kremenekcf118d42009-02-04 23:49:09 +00001251SourceLocation BugReport::getLocation() const {
1252 if (EndNode)
Ted Kremenek9b5e5052009-02-27 20:05:10 +00001253 if (Stmt* S = GetCurrentOrPreviousStmt(EndNode)) {
1254 // For member expressions, return the location of the '.' or '->'.
1255 if (MemberExpr* ME = dyn_cast<MemberExpr>(S))
1256 return ME->getMemberLoc();
1257
Ted Kremenekcf118d42009-02-04 23:49:09 +00001258 return S->getLocStart();
Ted Kremenek9b5e5052009-02-27 20:05:10 +00001259 }
Ted Kremenekcf118d42009-02-04 23:49:09 +00001260
1261 return FullSourceLoc();
Ted Kremenekd2f642b2008-04-14 17:39:48 +00001262}
1263
Ted Kremenek3148eb42009-01-24 00:55:43 +00001264PathDiagnosticPiece* BugReport::VisitNode(const ExplodedNode<GRState>* N,
1265 const ExplodedNode<GRState>* PrevN,
1266 const ExplodedGraph<GRState>& G,
Ted Kremenekfe9e5432009-02-18 03:48:14 +00001267 BugReporter& BR,
1268 NodeResolver &NR) {
Ted Kremenek50a6d0c2008-04-09 21:41:14 +00001269 return NULL;
1270}
1271
Ted Kremenekcf118d42009-02-04 23:49:09 +00001272//===----------------------------------------------------------------------===//
1273// Methods for BugReporter and subclasses.
1274//===----------------------------------------------------------------------===//
1275
1276BugReportEquivClass::~BugReportEquivClass() {
1277 for (iterator I=begin(), E=end(); I!=E; ++I) delete *I;
1278}
1279
1280GRBugReporter::~GRBugReporter() { FlushReports(); }
1281BugReporterData::~BugReporterData() {}
1282
1283ExplodedGraph<GRState>&
1284GRBugReporter::getGraph() { return Eng.getGraph(); }
1285
1286GRStateManager&
1287GRBugReporter::getStateManager() { return Eng.getStateManager(); }
1288
1289BugReporter::~BugReporter() { FlushReports(); }
1290
1291void BugReporter::FlushReports() {
1292 if (BugTypes.isEmpty())
1293 return;
1294
1295 // First flush the warnings for each BugType. This may end up creating new
1296 // warnings and new BugTypes. Because ImmutableSet is a functional data
1297 // structure, we do not need to worry about the iterators being invalidated.
1298 for (BugTypesTy::iterator I=BugTypes.begin(), E=BugTypes.end(); I!=E; ++I)
1299 const_cast<BugType*>(*I)->FlushReports(*this);
1300
1301 // Iterate through BugTypes a second time. BugTypes may have been updated
1302 // with new BugType objects and new warnings.
1303 for (BugTypesTy::iterator I=BugTypes.begin(), E=BugTypes.end(); I!=E; ++I) {
1304 BugType *BT = const_cast<BugType*>(*I);
1305
1306 typedef llvm::FoldingSet<BugReportEquivClass> SetTy;
1307 SetTy& EQClasses = BT->EQClasses;
1308
1309 for (SetTy::iterator EI=EQClasses.begin(), EE=EQClasses.end(); EI!=EE;++EI){
1310 BugReportEquivClass& EQ = *EI;
1311 FlushReport(EQ);
1312 }
Ted Kremeneka43a1eb2008-04-23 23:02:12 +00001313
Ted Kremenekcf118d42009-02-04 23:49:09 +00001314 // Delete the BugType object. This will also delete the equivalence
1315 // classes.
1316 delete BT;
Ted Kremenek94826a72008-04-03 04:59:14 +00001317 }
Ted Kremenekcf118d42009-02-04 23:49:09 +00001318
1319 // Remove all references to the BugType objects.
1320 BugTypes = F.GetEmptySet();
1321}
1322
1323//===----------------------------------------------------------------------===//
1324// PathDiagnostics generation.
1325//===----------------------------------------------------------------------===//
1326
Ted Kremenekfe9e5432009-02-18 03:48:14 +00001327static std::pair<std::pair<ExplodedGraph<GRState>*, NodeBackMap*>,
Ted Kremenekcf118d42009-02-04 23:49:09 +00001328 std::pair<ExplodedNode<GRState>*, unsigned> >
1329MakeReportGraph(const ExplodedGraph<GRState>* G,
1330 const ExplodedNode<GRState>** NStart,
1331 const ExplodedNode<GRState>** NEnd) {
Ted Kremenek94826a72008-04-03 04:59:14 +00001332
Ted Kremenekcf118d42009-02-04 23:49:09 +00001333 // Create the trimmed graph. It will contain the shortest paths from the
1334 // error nodes to the root. In the new graph we should only have one
1335 // error node unless there are two or more error nodes with the same minimum
1336 // path length.
1337 ExplodedGraph<GRState>* GTrim;
1338 InterExplodedGraphMap<GRState>* NMap;
Ted Kremenekfe9e5432009-02-18 03:48:14 +00001339
1340 llvm::DenseMap<const void*, const void*> InverseMap;
1341 llvm::tie(GTrim, NMap) = G->Trim(NStart, NEnd, &InverseMap);
Ted Kremenekcf118d42009-02-04 23:49:09 +00001342
1343 // Create owning pointers for GTrim and NMap just to ensure that they are
1344 // released when this function exists.
1345 llvm::OwningPtr<ExplodedGraph<GRState> > AutoReleaseGTrim(GTrim);
1346 llvm::OwningPtr<InterExplodedGraphMap<GRState> > AutoReleaseNMap(NMap);
1347
1348 // Find the (first) error node in the trimmed graph. We just need to consult
1349 // the node map (NMap) which maps from nodes in the original graph to nodes
1350 // in the new graph.
1351 const ExplodedNode<GRState>* N = 0;
1352 unsigned NodeIndex = 0;
1353
1354 for (const ExplodedNode<GRState>** I = NStart; I != NEnd; ++I)
1355 if ((N = NMap->getMappedNode(*I))) {
1356 NodeIndex = (I - NStart) / sizeof(*I);
1357 break;
1358 }
1359
1360 assert(N && "No error node found in the trimmed graph.");
1361
1362 // Create a new (third!) graph with a single path. This is the graph
1363 // that will be returned to the caller.
Ted Kremenek3148eb42009-01-24 00:55:43 +00001364 ExplodedGraph<GRState> *GNew =
Ted Kremenekfe9e5432009-02-18 03:48:14 +00001365 new ExplodedGraph<GRState>(GTrim->getCFG(), GTrim->getCodeDecl(),
1366 GTrim->getContext());
Ted Kremenekcf118d42009-02-04 23:49:09 +00001367
Ted Kremenek10aa5542009-03-12 23:41:59 +00001368 // Sometimes the trimmed graph can contain a cycle. Perform a reverse BFS
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001369 // to the root node, and then construct a new graph that contains only
1370 // a single path.
Ted Kremenek3148eb42009-01-24 00:55:43 +00001371 llvm::DenseMap<const void*,unsigned> Visited;
Ted Kremenek10aa5542009-03-12 23:41:59 +00001372 std::queue<const ExplodedNode<GRState>*> WS;
1373 WS.push(N);
1374
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001375 unsigned cnt = 0;
Ted Kremenek3148eb42009-01-24 00:55:43 +00001376 const ExplodedNode<GRState>* Root = 0;
Ted Kremenekc1da4412008-06-17 19:14:06 +00001377
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001378 while (!WS.empty()) {
Ted Kremenek10aa5542009-03-12 23:41:59 +00001379 const ExplodedNode<GRState>* Node = WS.front();
1380 WS.pop();
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001381
1382 if (Visited.find(Node) != Visited.end())
1383 continue;
1384
1385 Visited[Node] = cnt++;
1386
1387 if (Node->pred_empty()) {
1388 Root = Node;
1389 break;
1390 }
1391
Ted Kremenek3148eb42009-01-24 00:55:43 +00001392 for (ExplodedNode<GRState>::const_pred_iterator I=Node->pred_begin(),
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001393 E=Node->pred_end(); I!=E; ++I)
Ted Kremenek10aa5542009-03-12 23:41:59 +00001394 WS.push(*I);
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001395 }
Ted Kremenekcf118d42009-02-04 23:49:09 +00001396
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001397 assert (Root);
1398
Ted Kremenek10aa5542009-03-12 23:41:59 +00001399 // Now walk from the root down the BFS path, always taking the successor
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001400 // with the lowest number.
Ted Kremenek4adc81e2008-08-13 04:27:00 +00001401 ExplodedNode<GRState> *Last = 0, *First = 0;
Ted Kremenekfe9e5432009-02-18 03:48:14 +00001402 NodeBackMap *BM = new NodeBackMap();
Ted Kremenekcf118d42009-02-04 23:49:09 +00001403
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001404 for ( N = Root ;;) {
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001405 // Lookup the number associated with the current node.
Ted Kremenek3148eb42009-01-24 00:55:43 +00001406 llvm::DenseMap<const void*,unsigned>::iterator I = Visited.find(N);
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001407 assert (I != Visited.end());
1408
1409 // Create the equivalent node in the new graph with the same state
1410 // and location.
Ted Kremenek4adc81e2008-08-13 04:27:00 +00001411 ExplodedNode<GRState>* NewN =
Ted Kremenekfe9e5432009-02-18 03:48:14 +00001412 GNew->getNode(N->getLocation(), N->getState());
1413
1414 // Store the mapping to the original node.
1415 llvm::DenseMap<const void*, const void*>::iterator IMitr=InverseMap.find(N);
1416 assert(IMitr != InverseMap.end() && "No mapping to original node.");
1417 (*BM)[NewN] = (const ExplodedNode<GRState>*) IMitr->second;
Ted Kremenekcf118d42009-02-04 23:49:09 +00001418
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001419 // Link up the new node with the previous node.
1420 if (Last)
1421 NewN->addPredecessor(Last);
Ted Kremeneka43a1eb2008-04-23 23:02:12 +00001422
1423 Last = NewN;
Ted Kremenekcf118d42009-02-04 23:49:09 +00001424
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001425 // Are we at the final node?
1426 if (I->second == 0) {
1427 First = NewN;
Ted Kremenekc1da4412008-06-17 19:14:06 +00001428 break;
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001429 }
Ted Kremenekcf118d42009-02-04 23:49:09 +00001430
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001431 // Find the next successor node. We choose the node that is marked
1432 // with the lowest DFS number.
Ted Kremenek3148eb42009-01-24 00:55:43 +00001433 ExplodedNode<GRState>::const_succ_iterator SI = N->succ_begin();
1434 ExplodedNode<GRState>::const_succ_iterator SE = N->succ_end();
Ted Kremenekc1da4412008-06-17 19:14:06 +00001435 N = 0;
1436
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001437 for (unsigned MinVal = 0; SI != SE; ++SI) {
Ted Kremenekcf118d42009-02-04 23:49:09 +00001438
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001439 I = Visited.find(*SI);
1440
1441 if (I == Visited.end())
1442 continue;
1443
1444 if (!N || I->second < MinVal) {
1445 N = *SI;
1446 MinVal = I->second;
Ted Kremenekc1da4412008-06-17 19:14:06 +00001447 }
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001448 }
Ted Kremenekcf118d42009-02-04 23:49:09 +00001449
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001450 assert (N);
Ted Kremeneka43a1eb2008-04-23 23:02:12 +00001451 }
Ted Kremenekcf118d42009-02-04 23:49:09 +00001452
Ted Kremenek331b0ac2008-06-18 05:34:07 +00001453 assert (First);
Ted Kremenekfe9e5432009-02-18 03:48:14 +00001454 return std::make_pair(std::make_pair(GNew, BM),
1455 std::make_pair(First, NodeIndex));
Ted Kremeneka43a1eb2008-04-23 23:02:12 +00001456}
1457
Ted Kremenek0e5c8d42009-03-10 05:16:17 +00001458/// CompactPathDiagnostic - This function postprocesses a PathDiagnostic object
1459/// and collapses PathDiagosticPieces that are expanded by macros.
1460static void CompactPathDiagnostic(PathDiagnostic &PD, const SourceManager& SM) {
1461 typedef std::vector<std::pair<PathDiagnosticMacroPiece*, SourceLocation> >
1462 MacroStackTy;
1463
1464 typedef std::vector<PathDiagnosticPiece*>
1465 PiecesTy;
1466
1467 MacroStackTy MacroStack;
1468 PiecesTy Pieces;
1469
1470 for (PathDiagnostic::iterator I = PD.begin(), E = PD.end(); I!=E; ++I) {
1471 // Get the location of the PathDiagnosticPiece.
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001472 const FullSourceLoc Loc = I->getLocation().asLocation();
Ted Kremenek0e5c8d42009-03-10 05:16:17 +00001473
1474 // Determine the instantiation location, which is the location we group
1475 // related PathDiagnosticPieces.
1476 SourceLocation InstantiationLoc = Loc.isMacroID() ?
1477 SM.getInstantiationLoc(Loc) :
1478 SourceLocation();
1479
1480 if (Loc.isFileID()) {
1481 MacroStack.clear();
1482 Pieces.push_back(&*I);
1483 continue;
1484 }
1485
1486 assert(Loc.isMacroID());
1487
1488 // Is the PathDiagnosticPiece within the same macro group?
1489 if (!MacroStack.empty() && InstantiationLoc == MacroStack.back().second) {
1490 MacroStack.back().first->push_back(&*I);
1491 continue;
1492 }
1493
1494 // We aren't in the same group. Are we descending into a new macro
1495 // or are part of an old one?
1496 PathDiagnosticMacroPiece *MacroGroup = 0;
1497
1498 SourceLocation ParentInstantiationLoc = InstantiationLoc.isMacroID() ?
1499 SM.getInstantiationLoc(Loc) :
1500 SourceLocation();
1501
1502 // Walk the entire macro stack.
1503 while (!MacroStack.empty()) {
1504 if (InstantiationLoc == MacroStack.back().second) {
1505 MacroGroup = MacroStack.back().first;
1506 break;
1507 }
1508
1509 if (ParentInstantiationLoc == MacroStack.back().second) {
1510 MacroGroup = MacroStack.back().first;
1511 break;
1512 }
1513
1514 MacroStack.pop_back();
1515 }
1516
1517 if (!MacroGroup || ParentInstantiationLoc == MacroStack.back().second) {
1518 // Create a new macro group and add it to the stack.
1519 PathDiagnosticMacroPiece *NewGroup = new PathDiagnosticMacroPiece(Loc);
1520
1521 if (MacroGroup)
1522 MacroGroup->push_back(NewGroup);
1523 else {
1524 assert(InstantiationLoc.isFileID());
1525 Pieces.push_back(NewGroup);
1526 }
1527
1528 MacroGroup = NewGroup;
1529 MacroStack.push_back(std::make_pair(MacroGroup, InstantiationLoc));
1530 }
1531
1532 // Finally, add the PathDiagnosticPiece to the group.
1533 MacroGroup->push_back(&*I);
1534 }
1535
1536 // Now take the pieces and construct a new PathDiagnostic.
1537 PD.resetPath(false);
1538
1539 for (PiecesTy::iterator I=Pieces.begin(), E=Pieces.end(); I!=E; ++I) {
1540 if (PathDiagnosticMacroPiece *MP=dyn_cast<PathDiagnosticMacroPiece>(*I))
1541 if (!MP->containsEvent()) {
1542 delete MP;
1543 continue;
1544 }
1545
1546 PD.push_back(*I);
1547 }
1548}
1549
Ted Kremenek7dc86642009-03-31 20:22:36 +00001550void GRBugReporter::GeneratePathDiagnostic(PathDiagnostic& PD,
1551 BugReportEquivClass& EQ) {
1552
1553 std::vector<const ExplodedNode<GRState>*> Nodes;
1554
Ted Kremenekcf118d42009-02-04 23:49:09 +00001555 for (BugReportEquivClass::iterator I=EQ.begin(), E=EQ.end(); I!=E; ++I) {
1556 const ExplodedNode<GRState>* N = I->getEndNode();
1557 if (N) Nodes.push_back(N);
1558 }
1559
1560 if (Nodes.empty())
1561 return;
Ted Kremeneka43a1eb2008-04-23 23:02:12 +00001562
1563 // Construct a new graph that contains only a single path from the error
Ted Kremenekcf118d42009-02-04 23:49:09 +00001564 // node to a root.
Ted Kremenekfe9e5432009-02-18 03:48:14 +00001565 const std::pair<std::pair<ExplodedGraph<GRState>*, NodeBackMap*>,
Ted Kremenek7dc86642009-03-31 20:22:36 +00001566 std::pair<ExplodedNode<GRState>*, unsigned> >&
1567 GPair = MakeReportGraph(&getGraph(), &Nodes[0], &Nodes[0] + Nodes.size());
Ted Kremeneka43a1eb2008-04-23 23:02:12 +00001568
Ted Kremenekcf118d42009-02-04 23:49:09 +00001569 // Find the BugReport with the original location.
1570 BugReport *R = 0;
1571 unsigned i = 0;
1572 for (BugReportEquivClass::iterator I=EQ.begin(), E=EQ.end(); I!=E; ++I, ++i)
1573 if (i == GPair.second.second) { R = *I; break; }
1574
1575 assert(R && "No original report found for sliced graph.");
Ted Kremeneka43a1eb2008-04-23 23:02:12 +00001576
Ted Kremenekfe9e5432009-02-18 03:48:14 +00001577 llvm::OwningPtr<ExplodedGraph<GRState> > ReportGraph(GPair.first.first);
1578 llvm::OwningPtr<NodeBackMap> BackMap(GPair.first.second);
Ted Kremenekcf118d42009-02-04 23:49:09 +00001579 const ExplodedNode<GRState> *N = GPair.second.first;
Ted Kremenek7dc86642009-03-31 20:22:36 +00001580
Ted Kremenekcf118d42009-02-04 23:49:09 +00001581 // Start building the path diagnostic...
1582 if (PathDiagnosticPiece* Piece = R->getEndPath(*this, N))
Ted Kremenekbd7efa82008-04-17 23:44:37 +00001583 PD.push_back(Piece);
1584 else
1585 return;
Ted Kremenek7dc86642009-03-31 20:22:36 +00001586
1587 PathDiagnosticBuilder PDB(*this, ReportGraph.get(), R, BackMap.get(),
1588 getStateManager().getCodeDecl(),
Ted Kremenekbabdd7b2009-03-27 05:06:10 +00001589 getPathDiagnosticClient());
Ted Kremenekbd7efa82008-04-17 23:44:37 +00001590
Ted Kremenek7dc86642009-03-31 20:22:36 +00001591 switch (PDB.getGenerationScheme()) {
1592 case PathDiagnosticClient::Extensive:
Ted Kremenek5fb5dfb2009-04-01 06:13:56 +00001593 GenerateExtensivePathDiagnostic(PD,PDB, N);
1594 break;
Ted Kremenek7dc86642009-03-31 20:22:36 +00001595 case PathDiagnosticClient::Minimal:
1596 GenerateMinimalPathDiagnostic(PD, PDB, N);
1597 break;
1598 }
Ted Kremenek7dc86642009-03-31 20:22:36 +00001599}
1600
Ted Kremenekcf118d42009-02-04 23:49:09 +00001601void BugReporter::Register(BugType *BT) {
1602 BugTypes = F.Add(BugTypes, BT);
Ted Kremenek76d90c82008-05-16 18:33:14 +00001603}
1604
Ted Kremenekcf118d42009-02-04 23:49:09 +00001605void BugReporter::EmitReport(BugReport* R) {
1606 // Compute the bug report's hash to determine its equivalence class.
1607 llvm::FoldingSetNodeID ID;
1608 R->Profile(ID);
Ted Kremenek61f3e052008-04-03 04:42:52 +00001609
Ted Kremenekcf118d42009-02-04 23:49:09 +00001610 // Lookup the equivance class. If there isn't one, create it.
1611 BugType& BT = R->getBugType();
1612 Register(&BT);
1613 void *InsertPos;
1614 BugReportEquivClass* EQ = BT.EQClasses.FindNodeOrInsertPos(ID, InsertPos);
1615
1616 if (!EQ) {
1617 EQ = new BugReportEquivClass(R);
1618 BT.EQClasses.InsertNode(EQ, InsertPos);
1619 }
1620 else
1621 EQ->AddReport(R);
Ted Kremenek61f3e052008-04-03 04:42:52 +00001622}
1623
Ted Kremenekcf118d42009-02-04 23:49:09 +00001624void BugReporter::FlushReport(BugReportEquivClass& EQ) {
1625 assert(!EQ.Reports.empty());
1626 BugReport &R = **EQ.begin();
1627
1628 // FIXME: Make sure we use the 'R' for the path that was actually used.
1629 // Probably doesn't make a difference in practice.
1630 BugType& BT = R.getBugType();
1631
1632 llvm::OwningPtr<PathDiagnostic> D(new PathDiagnostic(R.getBugType().getName(),
1633 R.getDescription(),
1634 BT.getCategory()));
1635 GeneratePathDiagnostic(*D.get(), EQ);
Ted Kremenek072192b2008-04-30 23:47:44 +00001636
1637 // Get the meta data.
Ted Kremenek072192b2008-04-30 23:47:44 +00001638 std::pair<const char**, const char**> Meta = R.getExtraDescriptiveText();
Ted Kremenek3148eb42009-01-24 00:55:43 +00001639 for (const char** s = Meta.first; s != Meta.second; ++s) D->addMeta(*s);
Ted Kremenek75840e12008-04-18 01:56:37 +00001640
Ted Kremenek3148eb42009-01-24 00:55:43 +00001641 // Emit a summary diagnostic to the regular Diagnostics engine.
Ted Kremenekc0959972008-07-02 21:24:01 +00001642 PathDiagnosticClient* PD = getPathDiagnosticClient();
Ted Kremenek3148eb42009-01-24 00:55:43 +00001643 const SourceRange *Beg = 0, *End = 0;
1644 R.getRanges(*this, Beg, End);
1645 Diagnostic& Diag = getDiagnostic();
Ted Kremenekcf118d42009-02-04 23:49:09 +00001646 FullSourceLoc L(R.getLocation(), getSourceManager());
Ted Kremenekd90e7082009-02-07 22:36:41 +00001647 unsigned ErrorDiag = Diag.getCustomDiagID(Diagnostic::Warning,
1648 R.getDescription().c_str());
Ted Kremenek57202072008-07-14 17:40:50 +00001649
Ted Kremenek3148eb42009-01-24 00:55:43 +00001650 switch (End-Beg) {
Chris Lattner0a14eee2008-11-18 07:04:44 +00001651 default: assert(0 && "Don't handle this many ranges yet!");
1652 case 0: Diag.Report(L, ErrorDiag); break;
1653 case 1: Diag.Report(L, ErrorDiag) << Beg[0]; break;
1654 case 2: Diag.Report(L, ErrorDiag) << Beg[0] << Beg[1]; break;
1655 case 3: Diag.Report(L, ErrorDiag) << Beg[0] << Beg[1] << Beg[2]; break;
Ted Kremenek2f0e89e2008-04-18 22:56:53 +00001656 }
Ted Kremenek3148eb42009-01-24 00:55:43 +00001657
1658 // Emit a full diagnostic for the path if we have a PathDiagnosticClient.
1659 if (!PD)
1660 return;
1661
1662 if (D->empty()) {
Ted Kremenek1fbfd5b2009-03-06 23:58:11 +00001663 PathDiagnosticPiece* piece =
1664 new PathDiagnosticEventPiece(L, R.getDescription());
1665
Ted Kremenek3148eb42009-01-24 00:55:43 +00001666 for ( ; Beg != End; ++Beg) piece->addRange(*Beg);
1667 D->push_back(piece);
1668 }
1669
1670 PD->HandlePathDiagnostic(D.take());
Ted Kremenek61f3e052008-04-03 04:42:52 +00001671}
Ted Kremenek57202072008-07-14 17:40:50 +00001672
Ted Kremenek8c036c72008-09-20 04:23:38 +00001673void BugReporter::EmitBasicReport(const char* name, const char* str,
1674 SourceLocation Loc,
1675 SourceRange* RBeg, unsigned NumRanges) {
1676 EmitBasicReport(name, "", str, Loc, RBeg, NumRanges);
1677}
Ted Kremenekcf118d42009-02-04 23:49:09 +00001678
Ted Kremenek8c036c72008-09-20 04:23:38 +00001679void BugReporter::EmitBasicReport(const char* name, const char* category,
1680 const char* str, SourceLocation Loc,
1681 SourceRange* RBeg, unsigned NumRanges) {
1682
Ted Kremenekcf118d42009-02-04 23:49:09 +00001683 // 'BT' will be owned by BugReporter as soon as we call 'EmitReport'.
1684 BugType *BT = new BugType(name, category);
Chris Lattner0a14eee2008-11-18 07:04:44 +00001685 FullSourceLoc L = getContext().getFullLoc(Loc);
Ted Kremenekcf118d42009-02-04 23:49:09 +00001686 RangedBugReport *R = new DiagBugReport(*BT, str, L);
1687 for ( ; NumRanges > 0 ; --NumRanges, ++RBeg) R->addRange(*RBeg);
1688 EmitReport(R);
Ted Kremenek57202072008-07-14 17:40:50 +00001689}