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Ted Kremenek6f400242012-07-14 05:04:01 +00001 //===--- CFG.cpp - Classes for representing and building CFGs----*- C++ -*-===//
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00002//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner5b12ab82007-12-29 19:59:25 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file defines the CFG and CFGBuilder classes for representing and
11// building Control-Flow Graphs (CFGs) from ASTs.
12//
13//===----------------------------------------------------------------------===//
14
Ted Kremenek6796fbd2009-07-16 18:13:04 +000015#include "clang/Analysis/CFG.h"
Benjamin Kramer1ea8e092012-07-04 17:04:04 +000016#include "clang/AST/ASTContext.h"
Benjamin Kramerea70eb32012-12-01 15:09:41 +000017#include "clang/AST/Attr.h"
Ted Kremenek1a241d12011-02-23 05:11:46 +000018#include "clang/AST/CharUnits.h"
Benjamin Kramerea70eb32012-12-01 15:09:41 +000019#include "clang/AST/DeclCXX.h"
20#include "clang/AST/PrettyPrinter.h"
21#include "clang/AST/StmtVisitor.h"
Jordan Rose5374c072013-08-19 16:27:28 +000022#include "clang/Basic/Builtins.h"
Benjamin Kramerea70eb32012-12-01 15:09:41 +000023#include "llvm/ADT/DenseMap.h"
Ahmed Charlesdfca6f92014-03-09 11:36:40 +000024#include <memory>
Benjamin Kramerea70eb32012-12-01 15:09:41 +000025#include "llvm/ADT/SmallPtrSet.h"
Benjamin Kramer89b422c2009-08-23 12:08:50 +000026#include "llvm/Support/Allocator.h"
27#include "llvm/Support/Format.h"
Benjamin Kramerea70eb32012-12-01 15:09:41 +000028#include "llvm/Support/GraphWriter.h"
29#include "llvm/Support/SaveAndRestore.h"
Ted Kremeneke5ccf9a2008-01-11 00:40:29 +000030
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +000031using namespace clang;
32
33namespace {
34
Ted Kremenek5ef32db2011-08-12 23:37:29 +000035static SourceLocation GetEndLoc(Decl *D) {
36 if (VarDecl *VD = dyn_cast<VarDecl>(D))
37 if (Expr *Ex = VD->getInit())
Ted Kremenek8889bb32008-08-06 23:20:50 +000038 return Ex->getSourceRange().getEnd();
Mike Stump31feda52009-07-17 01:31:16 +000039 return D->getLocation();
Ted Kremenek8889bb32008-08-06 23:20:50 +000040}
Ted Kremenekdc03bd02010-08-02 23:46:59 +000041
Ted Kremenek7c58d352011-03-10 01:14:11 +000042class CFGBuilder;
43
Zhanyong Wanb5d11c12010-11-24 03:28:53 +000044/// The CFG builder uses a recursive algorithm to build the CFG. When
45/// we process an expression, sometimes we know that we must add the
46/// subexpressions as block-level expressions. For example:
47///
48/// exp1 || exp2
49///
50/// When processing the '||' expression, we know that exp1 and exp2
51/// need to be added as block-level expressions, even though they
52/// might not normally need to be. AddStmtChoice records this
53/// contextual information. If AddStmtChoice is 'NotAlwaysAdd', then
54/// the builder has an option not to add a subexpression as a
55/// block-level expression.
56///
Ted Kremenek4cad5fc2009-12-16 03:18:58 +000057class AddStmtChoice {
58public:
Ted Kremenek8219b822010-12-16 07:46:53 +000059 enum Kind { NotAlwaysAdd = 0, AlwaysAdd = 1 };
Ted Kremenek5d2bb1b2010-03-02 21:43:54 +000060
Zhanyong Wanb5d11c12010-11-24 03:28:53 +000061 AddStmtChoice(Kind a_kind = NotAlwaysAdd) : kind(a_kind) {}
Ted Kremenek5d2bb1b2010-03-02 21:43:54 +000062
Ted Kremenek7c58d352011-03-10 01:14:11 +000063 bool alwaysAdd(CFGBuilder &builder,
64 const Stmt *stmt) const;
Zhanyong Wanb5d11c12010-11-24 03:28:53 +000065
66 /// Return a copy of this object, except with the 'always-add' bit
67 /// set as specified.
68 AddStmtChoice withAlwaysAdd(bool alwaysAdd) const {
Ted Kremenek7c58d352011-03-10 01:14:11 +000069 return AddStmtChoice(alwaysAdd ? AlwaysAdd : NotAlwaysAdd);
Zhanyong Wanb5d11c12010-11-24 03:28:53 +000070 }
71
Ted Kremenek4cad5fc2009-12-16 03:18:58 +000072private:
Zhanyong Wanb5d11c12010-11-24 03:28:53 +000073 Kind kind;
Ted Kremenek4cad5fc2009-12-16 03:18:58 +000074};
Mike Stump31feda52009-07-17 01:31:16 +000075
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +000076/// LocalScope - Node in tree of local scopes created for C++ implicit
77/// destructor calls generation. It contains list of automatic variables
78/// declared in the scope and link to position in previous scope this scope
79/// began in.
80///
81/// The process of creating local scopes is as follows:
82/// - Init CFGBuilder::ScopePos with invalid position (equivalent for null),
83/// - Before processing statements in scope (e.g. CompoundStmt) create
84/// LocalScope object using CFGBuilder::ScopePos as link to previous scope
85/// and set CFGBuilder::ScopePos to the end of new scope,
Marcin Swiderskie9862ce2010-09-30 22:42:32 +000086/// - On every occurrence of VarDecl increase CFGBuilder::ScopePos if it points
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +000087/// at this VarDecl,
88/// - For every normal (without jump) end of scope add to CFGBlock destructors
89/// for objects in the current scope,
90/// - For every jump add to CFGBlock destructors for objects
91/// between CFGBuilder::ScopePos and local scope position saved for jump
92/// target. Thanks to C++ restrictions on goto jumps we can be sure that
93/// jump target position will be on the path to root from CFGBuilder::ScopePos
94/// (adding any variable that doesn't need constructor to be called to
95/// LocalScope can break this assumption),
96///
97class LocalScope {
98public:
Ted Kremenekc7bfdcd2011-02-15 02:47:45 +000099 typedef BumpVector<VarDecl*> AutomaticVarsTy;
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000100
101 /// const_iterator - Iterates local scope backwards and jumps to previous
Marcin Swiderskie9862ce2010-09-30 22:42:32 +0000102 /// scope on reaching the beginning of currently iterated scope.
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000103 class const_iterator {
104 const LocalScope* Scope;
105
106 /// VarIter is guaranteed to be greater then 0 for every valid iterator.
107 /// Invalid iterator (with null Scope) has VarIter equal to 0.
108 unsigned VarIter;
109
110 public:
111 /// Create invalid iterator. Dereferencing invalid iterator is not allowed.
112 /// Incrementing invalid iterator is allowed and will result in invalid
113 /// iterator.
114 const_iterator()
115 : Scope(NULL), VarIter(0) {}
116
117 /// Create valid iterator. In case when S.Prev is an invalid iterator and
118 /// I is equal to 0, this will create invalid iterator.
119 const_iterator(const LocalScope& S, unsigned I)
120 : Scope(&S), VarIter(I) {
121 // Iterator to "end" of scope is not allowed. Handle it by going up
122 // in scopes tree possibly up to invalid iterator in the root.
123 if (VarIter == 0 && Scope)
124 *this = Scope->Prev;
125 }
126
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000127 VarDecl *const* operator->() const {
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000128 assert (Scope && "Dereferencing invalid iterator is not allowed");
129 assert (VarIter != 0 && "Iterator has invalid value of VarIter member");
130 return &Scope->Vars[VarIter - 1];
131 }
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000132 VarDecl *operator*() const {
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000133 return *this->operator->();
134 }
135
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000136 const_iterator &operator++() {
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000137 if (!Scope)
138 return *this;
139
140 assert (VarIter != 0 && "Iterator has invalid value of VarIter member");
141 --VarIter;
142 if (VarIter == 0)
143 *this = Scope->Prev;
144 return *this;
145 }
Marcin Swiderskie9862ce2010-09-30 22:42:32 +0000146 const_iterator operator++(int) {
147 const_iterator P = *this;
148 ++*this;
149 return P;
150 }
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000151
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000152 bool operator==(const const_iterator &rhs) const {
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000153 return Scope == rhs.Scope && VarIter == rhs.VarIter;
154 }
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000155 bool operator!=(const const_iterator &rhs) const {
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000156 return !(*this == rhs);
157 }
Marcin Swiderskie9862ce2010-09-30 22:42:32 +0000158
David Blaikie7d170102013-05-15 07:37:26 +0000159 LLVM_EXPLICIT operator bool() const {
Marcin Swiderskie9862ce2010-09-30 22:42:32 +0000160 return *this != const_iterator();
161 }
162
163 int distance(const_iterator L);
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000164 };
165
166 friend class const_iterator;
167
168private:
Ted Kremenekc7bfdcd2011-02-15 02:47:45 +0000169 BumpVectorContext ctx;
170
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000171 /// Automatic variables in order of declaration.
172 AutomaticVarsTy Vars;
173 /// Iterator to variable in previous scope that was declared just before
174 /// begin of this scope.
175 const_iterator Prev;
176
177public:
178 /// Constructs empty scope linked to previous scope in specified place.
Ted Kremenekc7bfdcd2011-02-15 02:47:45 +0000179 LocalScope(BumpVectorContext &ctx, const_iterator P)
180 : ctx(ctx), Vars(ctx, 4), Prev(P) {}
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000181
182 /// Begin of scope in direction of CFG building (backwards).
183 const_iterator begin() const { return const_iterator(*this, Vars.size()); }
Marcin Swiderskie9862ce2010-09-30 22:42:32 +0000184
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000185 void addVar(VarDecl *VD) {
Ted Kremenekc7bfdcd2011-02-15 02:47:45 +0000186 Vars.push_back(VD, ctx);
Marcin Swiderskie9862ce2010-09-30 22:42:32 +0000187 }
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000188};
189
Marcin Swiderskie9862ce2010-09-30 22:42:32 +0000190/// distance - Calculates distance from this to L. L must be reachable from this
191/// (with use of ++ operator). Cost of calculating the distance is linear w.r.t.
192/// number of scopes between this and L.
193int LocalScope::const_iterator::distance(LocalScope::const_iterator L) {
194 int D = 0;
195 const_iterator F = *this;
196 while (F.Scope != L.Scope) {
Ted Kremenek50aa2d42011-08-12 14:41:23 +0000197 assert (F != const_iterator()
198 && "L iterator is not reachable from F iterator.");
Marcin Swiderskie9862ce2010-09-30 22:42:32 +0000199 D += F.VarIter;
200 F = F.Scope->Prev;
201 }
202 D += F.VarIter - L.VarIter;
203 return D;
204}
205
206/// BlockScopePosPair - Structure for specifying position in CFG during its
207/// build process. It consists of CFGBlock that specifies position in CFG graph
208/// and LocalScope::const_iterator that specifies position in LocalScope graph.
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000209struct BlockScopePosPair {
Ted Kremenekef81e9e2011-01-07 19:37:16 +0000210 BlockScopePosPair() : block(0) {}
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000211 BlockScopePosPair(CFGBlock *b, LocalScope::const_iterator scopePos)
Ted Kremenekef81e9e2011-01-07 19:37:16 +0000212 : block(b), scopePosition(scopePos) {}
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000213
Ted Kremenekef81e9e2011-01-07 19:37:16 +0000214 CFGBlock *block;
215 LocalScope::const_iterator scopePosition;
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000216};
217
Ted Kremenekeff9a7f2011-03-01 23:12:55 +0000218/// TryResult - a class representing a variant over the values
219/// 'true', 'false', or 'unknown'. This is returned by tryEvaluateBool,
220/// and is used by the CFGBuilder to decide if a branch condition
221/// can be decided up front during CFG construction.
222class TryResult {
223 int X;
224public:
225 TryResult(bool b) : X(b ? 1 : 0) {}
226 TryResult() : X(-1) {}
227
228 bool isTrue() const { return X == 1; }
229 bool isFalse() const { return X == 0; }
230 bool isKnown() const { return X >= 0; }
231 void negate() {
232 assert(isKnown());
233 X ^= 0x1;
234 }
235};
236
Ted Kremenek8ae67872013-02-05 22:00:19 +0000237class reverse_children {
238 llvm::SmallVector<Stmt *, 12> childrenBuf;
239 ArrayRef<Stmt*> children;
240public:
241 reverse_children(Stmt *S);
242
243 typedef ArrayRef<Stmt*>::reverse_iterator iterator;
244 iterator begin() const { return children.rbegin(); }
245 iterator end() const { return children.rend(); }
246};
247
248
249reverse_children::reverse_children(Stmt *S) {
250 if (CallExpr *CE = dyn_cast<CallExpr>(S)) {
251 children = CE->getRawSubExprs();
252 return;
253 }
254 switch (S->getStmtClass()) {
Ted Kremenek7d86b9c2013-02-05 22:03:14 +0000255 // Note: Fill in this switch with more cases we want to optimize.
Ted Kremenek8ae67872013-02-05 22:00:19 +0000256 case Stmt::InitListExprClass: {
257 InitListExpr *IE = cast<InitListExpr>(S);
258 children = llvm::makeArrayRef(reinterpret_cast<Stmt**>(IE->getInits()),
259 IE->getNumInits());
260 return;
261 }
262 default:
263 break;
264 }
265
266 // Default case for all other statements.
267 for (Stmt::child_range I = S->children(); I; ++I) {
268 childrenBuf.push_back(*I);
269 }
270
271 // This needs to be done *after* childrenBuf has been populated.
272 children = childrenBuf;
273}
274
Ted Kremenekbe9b33b2008-08-04 22:51:42 +0000275/// CFGBuilder - This class implements CFG construction from an AST.
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +0000276/// The builder is stateful: an instance of the builder should be used to only
277/// construct a single CFG.
278///
279/// Example usage:
280///
281/// CFGBuilder builder;
282/// CFG* cfg = builder.BuildAST(stmt1);
283///
Mike Stump31feda52009-07-17 01:31:16 +0000284/// CFG construction is done via a recursive walk of an AST. We actually parse
285/// the AST in reverse order so that the successor of a basic block is
286/// constructed prior to its predecessor. This allows us to nicely capture
287/// implicit fall-throughs without extra basic blocks.
Ted Kremenek1b8ac852007-08-21 22:06:14 +0000288///
Kovarththanan Rajaratnam65c65662009-11-28 06:07:30 +0000289class CFGBuilder {
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000290 typedef BlockScopePosPair JumpTarget;
291 typedef BlockScopePosPair JumpSource;
292
Mike Stump0d76d072009-07-20 23:24:15 +0000293 ASTContext *Context;
Ahmed Charlesb8984322014-03-07 20:03:18 +0000294 std::unique_ptr<CFG> cfg;
Ted Kremenek289ae4f2009-10-12 20:55:07 +0000295
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000296 CFGBlock *Block;
297 CFGBlock *Succ;
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000298 JumpTarget ContinueJumpTarget;
299 JumpTarget BreakJumpTarget;
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000300 CFGBlock *SwitchTerminatedBlock;
301 CFGBlock *DefaultCaseBlock;
302 CFGBlock *TryTerminatedBlock;
Ted Kremenekeff9a7f2011-03-01 23:12:55 +0000303
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000304 // Current position in local scope.
305 LocalScope::const_iterator ScopePos;
306
307 // LabelMap records the mapping from Label expressions to their jump targets.
Chris Lattnerc8e630e2011-02-17 07:39:24 +0000308 typedef llvm::DenseMap<LabelDecl*, JumpTarget> LabelMapTy;
Ted Kremenek8a632182007-08-21 23:26:17 +0000309 LabelMapTy LabelMap;
Mike Stump31feda52009-07-17 01:31:16 +0000310
311 // A list of blocks that end with a "goto" that must be backpatched to their
312 // resolved targets upon completion of CFG construction.
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000313 typedef std::vector<JumpSource> BackpatchBlocksTy;
Ted Kremenek8a632182007-08-21 23:26:17 +0000314 BackpatchBlocksTy BackpatchBlocks;
Mike Stump31feda52009-07-17 01:31:16 +0000315
Ted Kremenekeda180e22007-08-28 19:26:49 +0000316 // A list of labels whose address has been taken (for indirect gotos).
Chris Lattnerc8e630e2011-02-17 07:39:24 +0000317 typedef llvm::SmallPtrSet<LabelDecl*, 5> LabelSetTy;
Ted Kremenekeda180e22007-08-28 19:26:49 +0000318 LabelSetTy AddressTakenLabels;
Mike Stump31feda52009-07-17 01:31:16 +0000319
Zhongxing Xud38fb842010-09-16 03:28:18 +0000320 bool badCFG;
Ted Kremenekf9d82902011-03-10 01:14:05 +0000321 const CFG::BuildOptions &BuildOpts;
Ted Kremenekeff9a7f2011-03-01 23:12:55 +0000322
323 // State to track for building switch statements.
324 bool switchExclusivelyCovered;
Ted Kremenekbe528712011-03-04 01:03:41 +0000325 Expr::EvalResult *switchCond;
Ted Kremeneka099c592011-03-10 03:50:34 +0000326
327 CFG::BuildOptions::ForcedBlkExprs::value_type *cachedEntry;
Ted Kremenekdcc4c382011-03-23 21:33:21 +0000328 const Stmt *lastLookup;
Zhongxing Xud38fb842010-09-16 03:28:18 +0000329
Argyrios Kyrtzidis5f172a32012-03-23 00:59:17 +0000330 // Caches boolean evaluations of expressions to avoid multiple re-evaluations
331 // during construction of branches for chained logical operators.
NAKAMURA Takumie9ca55e2012-03-25 06:30:37 +0000332 typedef llvm::DenseMap<Expr *, TryResult> CachedBoolEvalsTy;
333 CachedBoolEvalsTy CachedBoolEvals;
Argyrios Kyrtzidis5f172a32012-03-23 00:59:17 +0000334
Mike Stump31feda52009-07-17 01:31:16 +0000335public:
Ted Kremenekf9d82902011-03-10 01:14:05 +0000336 explicit CFGBuilder(ASTContext *astContext,
337 const CFG::BuildOptions &buildOpts)
338 : Context(astContext), cfg(new CFG()), // crew a new CFG
339 Block(NULL), Succ(NULL),
340 SwitchTerminatedBlock(NULL), DefaultCaseBlock(NULL),
341 TryTerminatedBlock(NULL), badCFG(false), BuildOpts(buildOpts),
Ted Kremeneka099c592011-03-10 03:50:34 +0000342 switchExclusivelyCovered(false), switchCond(0),
Ted Kremenekdcc4c382011-03-23 21:33:21 +0000343 cachedEntry(0), lastLookup(0) {}
Mike Stump31feda52009-07-17 01:31:16 +0000344
Ted Kremenek9aae5132007-08-23 21:42:29 +0000345 // buildCFG - Used by external clients to construct the CFG.
Ted Kremenekf9d82902011-03-10 01:14:05 +0000346 CFG* buildCFG(const Decl *D, Stmt *Statement);
Mike Stump31feda52009-07-17 01:31:16 +0000347
Ted Kremeneka099c592011-03-10 03:50:34 +0000348 bool alwaysAdd(const Stmt *stmt);
349
Ted Kremenek93668002009-07-17 22:18:43 +0000350private:
351 // Visitors to walk an AST and construct the CFG.
Ted Kremenek4cad5fc2009-12-16 03:18:58 +0000352 CFGBlock *VisitAddrLabelExpr(AddrLabelExpr *A, AddStmtChoice asc);
353 CFGBlock *VisitBinaryOperator(BinaryOperator *B, AddStmtChoice asc);
Ted Kremenek93668002009-07-17 22:18:43 +0000354 CFGBlock *VisitBreakStmt(BreakStmt *B);
Ted Kremenek4cad5fc2009-12-16 03:18:58 +0000355 CFGBlock *VisitCallExpr(CallExpr *C, AddStmtChoice asc);
Ted Kremenek93668002009-07-17 22:18:43 +0000356 CFGBlock *VisitCaseStmt(CaseStmt *C);
Ted Kremenek4cad5fc2009-12-16 03:18:58 +0000357 CFGBlock *VisitChooseExpr(ChooseExpr *C, AddStmtChoice asc);
Ted Kremenek21822592009-07-17 18:20:32 +0000358 CFGBlock *VisitCompoundStmt(CompoundStmt *C);
John McCallc07a0c72011-02-17 10:25:35 +0000359 CFGBlock *VisitConditionalOperator(AbstractConditionalOperator *C,
360 AddStmtChoice asc);
Ted Kremenek21822592009-07-17 18:20:32 +0000361 CFGBlock *VisitContinueStmt(ContinueStmt *C);
Ted Kremenek6f400242012-07-14 05:04:01 +0000362 CFGBlock *VisitCXXBindTemporaryExpr(CXXBindTemporaryExpr *E,
363 AddStmtChoice asc);
364 CFGBlock *VisitCXXCatchStmt(CXXCatchStmt *S);
365 CFGBlock *VisitCXXConstructExpr(CXXConstructExpr *C, AddStmtChoice asc);
Jordan Rosec9176072014-01-13 17:59:19 +0000366 CFGBlock *VisitCXXNewExpr(CXXNewExpr *DE, AddStmtChoice asc);
Jordan Rosed2f40792013-09-03 17:00:57 +0000367 CFGBlock *VisitCXXDeleteExpr(CXXDeleteExpr *DE, AddStmtChoice asc);
Ted Kremenek6f400242012-07-14 05:04:01 +0000368 CFGBlock *VisitCXXForRangeStmt(CXXForRangeStmt *S);
369 CFGBlock *VisitCXXFunctionalCastExpr(CXXFunctionalCastExpr *E,
370 AddStmtChoice asc);
371 CFGBlock *VisitCXXTemporaryObjectExpr(CXXTemporaryObjectExpr *C,
372 AddStmtChoice asc);
373 CFGBlock *VisitCXXThrowExpr(CXXThrowExpr *T);
374 CFGBlock *VisitCXXTryStmt(CXXTryStmt *S);
Ted Kremenek93668002009-07-17 22:18:43 +0000375 CFGBlock *VisitDeclStmt(DeclStmt *DS);
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000376 CFGBlock *VisitDeclSubExpr(DeclStmt *DS);
Ted Kremenek21822592009-07-17 18:20:32 +0000377 CFGBlock *VisitDefaultStmt(DefaultStmt *D);
378 CFGBlock *VisitDoStmt(DoStmt *D);
Ted Kremenek6f400242012-07-14 05:04:01 +0000379 CFGBlock *VisitExprWithCleanups(ExprWithCleanups *E, AddStmtChoice asc);
Ted Kremenek21822592009-07-17 18:20:32 +0000380 CFGBlock *VisitForStmt(ForStmt *F);
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000381 CFGBlock *VisitGotoStmt(GotoStmt *G);
Ted Kremenek93668002009-07-17 22:18:43 +0000382 CFGBlock *VisitIfStmt(IfStmt *I);
Zhongxing Xue1dbeb22010-11-01 13:04:58 +0000383 CFGBlock *VisitImplicitCastExpr(ImplicitCastExpr *E, AddStmtChoice asc);
Ted Kremenek93668002009-07-17 22:18:43 +0000384 CFGBlock *VisitIndirectGotoStmt(IndirectGotoStmt *I);
385 CFGBlock *VisitLabelStmt(LabelStmt *L);
Ted Kremenek6f400242012-07-14 05:04:01 +0000386 CFGBlock *VisitLambdaExpr(LambdaExpr *E, AddStmtChoice asc);
Ted Kremeneka16436f2012-07-14 05:04:06 +0000387 CFGBlock *VisitLogicalOperator(BinaryOperator *B);
Ted Kremenekb50e7162012-07-14 05:04:10 +0000388 std::pair<CFGBlock *, CFGBlock *> VisitLogicalOperator(BinaryOperator *B,
389 Stmt *Term,
390 CFGBlock *TrueBlock,
391 CFGBlock *FalseBlock);
Ted Kremenek5868ec62010-04-11 17:02:10 +0000392 CFGBlock *VisitMemberExpr(MemberExpr *M, AddStmtChoice asc);
Ted Kremenek93668002009-07-17 22:18:43 +0000393 CFGBlock *VisitObjCAtCatchStmt(ObjCAtCatchStmt *S);
394 CFGBlock *VisitObjCAtSynchronizedStmt(ObjCAtSynchronizedStmt *S);
395 CFGBlock *VisitObjCAtThrowStmt(ObjCAtThrowStmt *S);
396 CFGBlock *VisitObjCAtTryStmt(ObjCAtTryStmt *S);
Ted Kremenek6f400242012-07-14 05:04:01 +0000397 CFGBlock *VisitObjCAutoreleasePoolStmt(ObjCAutoreleasePoolStmt *S);
Ted Kremenek93668002009-07-17 22:18:43 +0000398 CFGBlock *VisitObjCForCollectionStmt(ObjCForCollectionStmt *S);
John McCallfe96e0b2011-11-06 09:01:30 +0000399 CFGBlock *VisitPseudoObjectExpr(PseudoObjectExpr *E);
Ted Kremenek6f400242012-07-14 05:04:01 +0000400 CFGBlock *VisitReturnStmt(ReturnStmt *R);
Ted Kremenek4cad5fc2009-12-16 03:18:58 +0000401 CFGBlock *VisitStmtExpr(StmtExpr *S, AddStmtChoice asc);
Ted Kremenek93668002009-07-17 22:18:43 +0000402 CFGBlock *VisitSwitchStmt(SwitchStmt *S);
Ted Kremenek6f400242012-07-14 05:04:01 +0000403 CFGBlock *VisitUnaryExprOrTypeTraitExpr(UnaryExprOrTypeTraitExpr *E,
404 AddStmtChoice asc);
Zhanyong Wan6dace612010-11-22 08:45:56 +0000405 CFGBlock *VisitUnaryOperator(UnaryOperator *U, AddStmtChoice asc);
Ted Kremenek93668002009-07-17 22:18:43 +0000406 CFGBlock *VisitWhileStmt(WhileStmt *W);
Mike Stump48871a22009-07-17 01:04:31 +0000407
Ted Kremenek4cad5fc2009-12-16 03:18:58 +0000408 CFGBlock *Visit(Stmt *S, AddStmtChoice asc = AddStmtChoice::NotAlwaysAdd);
409 CFGBlock *VisitStmt(Stmt *S, AddStmtChoice asc);
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000410 CFGBlock *VisitChildren(Stmt *S);
Ted Kremeneke2499842012-04-12 20:03:44 +0000411 CFGBlock *VisitNoRecurse(Expr *E, AddStmtChoice asc);
Mike Stump48871a22009-07-17 01:04:31 +0000412
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +0000413 // Visitors to walk an AST and generate destructors of temporaries in
414 // full expression.
415 CFGBlock *VisitForTemporaryDtors(Stmt *E, bool BindToTemporary = false);
416 CFGBlock *VisitChildrenForTemporaryDtors(Stmt *E);
417 CFGBlock *VisitBinaryOperatorForTemporaryDtors(BinaryOperator *E);
418 CFGBlock *VisitCXXBindTemporaryExprForTemporaryDtors(CXXBindTemporaryExpr *E,
419 bool BindToTemporary);
John McCallc07a0c72011-02-17 10:25:35 +0000420 CFGBlock *
421 VisitConditionalOperatorForTemporaryDtors(AbstractConditionalOperator *E,
422 bool BindToTemporary);
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +0000423
Ted Kremenek6065ef62008-04-28 18:00:46 +0000424 // NYS == Not Yet Supported
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000425 CFGBlock *NYS() {
Ted Kremenekb64d1832008-03-13 03:04:22 +0000426 badCFG = true;
427 return Block;
428 }
Mike Stump31feda52009-07-17 01:31:16 +0000429
Ted Kremenek93668002009-07-17 22:18:43 +0000430 void autoCreateBlock() { if (!Block) Block = createBlock(); }
431 CFGBlock *createBlock(bool add_successor = true);
Chandler Carrutha70991b2011-09-13 09:13:49 +0000432 CFGBlock *createNoReturnBlock();
Zhongxing Xu33dfc072010-09-06 07:32:31 +0000433
Zhongxing Xuea9fcff2010-06-03 06:43:23 +0000434 CFGBlock *addStmt(Stmt *S) {
435 return Visit(S, AddStmtChoice::AlwaysAdd);
Ted Kremenek4cad5fc2009-12-16 03:18:58 +0000436 }
Alexis Hunt1d792652011-01-08 20:30:50 +0000437 CFGBlock *addInitializer(CXXCtorInitializer *I);
Zhongxing Xu6d372f72010-10-01 03:22:39 +0000438 void addAutomaticObjDtors(LocalScope::const_iterator B,
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000439 LocalScope::const_iterator E, Stmt *S);
Marcin Swiderski20b88732010-10-05 05:37:00 +0000440 void addImplicitDtorsForDestructor(const CXXDestructorDecl *DD);
Ted Kremenekdc03bd02010-08-02 23:46:59 +0000441
Marcin Swiderski5e415732010-09-30 23:05:00 +0000442 // Local scopes creation.
443 LocalScope* createOrReuseLocalScope(LocalScope* Scope);
444
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000445 void addLocalScopeForStmt(Stmt *S);
446 LocalScope* addLocalScopeForDeclStmt(DeclStmt *DS, LocalScope* Scope = NULL);
447 LocalScope* addLocalScopeForVarDecl(VarDecl *VD, LocalScope* Scope = NULL);
Marcin Swiderski5e415732010-09-30 23:05:00 +0000448
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000449 void addLocalScopeAndDtors(Stmt *S);
Marcin Swiderski5e415732010-09-30 23:05:00 +0000450
451 // Interface to CFGBlock - adding CFGElements.
Ted Kremenek37881932011-04-04 23:29:12 +0000452 void appendStmt(CFGBlock *B, const Stmt *S) {
Ted Kremenek8b46c002011-07-19 14:18:43 +0000453 if (alwaysAdd(S) && cachedEntry)
Ted Kremeneka099c592011-03-10 03:50:34 +0000454 cachedEntry->second = B;
Ted Kremeneka099c592011-03-10 03:50:34 +0000455
Jordy Rose17347372011-06-10 08:49:37 +0000456 // All block-level expressions should have already been IgnoreParens()ed.
457 assert(!isa<Expr>(S) || cast<Expr>(S)->IgnoreParens() == S);
Ted Kremenek37881932011-04-04 23:29:12 +0000458 B->appendStmt(const_cast<Stmt*>(S), cfg->getBumpVectorContext());
Ted Kremenek289ae4f2009-10-12 20:55:07 +0000459 }
Alexis Hunt1d792652011-01-08 20:30:50 +0000460 void appendInitializer(CFGBlock *B, CXXCtorInitializer *I) {
Marcin Swiderski87b1bb62010-10-04 03:38:22 +0000461 B->appendInitializer(I, cfg->getBumpVectorContext());
462 }
Jordan Rosec9176072014-01-13 17:59:19 +0000463 void appendNewAllocator(CFGBlock *B, CXXNewExpr *NE) {
464 B->appendNewAllocator(NE, cfg->getBumpVectorContext());
465 }
Marcin Swiderski20b88732010-10-05 05:37:00 +0000466 void appendBaseDtor(CFGBlock *B, const CXXBaseSpecifier *BS) {
467 B->appendBaseDtor(BS, cfg->getBumpVectorContext());
468 }
469 void appendMemberDtor(CFGBlock *B, FieldDecl *FD) {
470 B->appendMemberDtor(FD, cfg->getBumpVectorContext());
471 }
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +0000472 void appendTemporaryDtor(CFGBlock *B, CXXBindTemporaryExpr *E) {
473 B->appendTemporaryDtor(E, cfg->getBumpVectorContext());
474 }
Chandler Carruthad747252011-09-13 06:09:01 +0000475 void appendAutomaticObjDtor(CFGBlock *B, VarDecl *VD, Stmt *S) {
476 B->appendAutomaticObjDtor(VD, S, cfg->getBumpVectorContext());
477 }
Ted Kremenekdc03bd02010-08-02 23:46:59 +0000478
Jordan Rosed2f40792013-09-03 17:00:57 +0000479 void appendDeleteDtor(CFGBlock *B, CXXRecordDecl *RD, CXXDeleteExpr *DE) {
480 B->appendDeleteDtor(RD, DE, cfg->getBumpVectorContext());
481 }
482
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000483 void prependAutomaticObjDtorsWithTerminator(CFGBlock *Blk,
Marcin Swiderski321a7072010-09-30 22:54:37 +0000484 LocalScope::const_iterator B, LocalScope::const_iterator E);
485
Ted Kremenek4b6fee62014-02-27 00:24:00 +0000486 void addSuccessor(CFGBlock *B, CFGBlock *S, bool IsReachable = true) {
487 B->addSuccessor(CFGBlock::AdjacentBlock(S, IsReachable),
488 cfg->getBumpVectorContext());
489 }
490
491 /// Add a reachable successor to a block, with the alternate variant that is
492 /// unreachable.
493 void addSuccessor(CFGBlock *B, CFGBlock *ReachableBlock, CFGBlock *AltBlock) {
494 B->addSuccessor(CFGBlock::AdjacentBlock(ReachableBlock, AltBlock),
495 cfg->getBumpVectorContext());
Ted Kremenek289ae4f2009-10-12 20:55:07 +0000496 }
Mike Stump11289f42009-09-09 15:08:12 +0000497
Richard Trieuf935b562014-04-05 05:17:01 +0000498 /// \brief Find a relational comparison with an expression evaluating to a
499 /// boolean and a constant other than 0 and 1.
500 /// e.g. if ((x < y) == 10)
501 TryResult checkIncorrectRelationalOperator(const BinaryOperator *B) {
502 const Expr *LHSExpr = B->getLHS()->IgnoreParens();
503 const Expr *RHSExpr = B->getRHS()->IgnoreParens();
504
505 const IntegerLiteral *IntLiteral = dyn_cast<IntegerLiteral>(LHSExpr);
506 const Expr *BoolExpr = RHSExpr;
507 bool IntFirst = true;
508 if (!IntLiteral) {
509 IntLiteral = dyn_cast<IntegerLiteral>(RHSExpr);
510 BoolExpr = LHSExpr;
511 IntFirst = false;
512 }
513
514 if (!IntLiteral || !BoolExpr->isKnownToHaveBooleanValue())
515 return TryResult();
516
517 llvm::APInt IntValue = IntLiteral->getValue();
518 if ((IntValue == 1) || (IntValue == 0))
519 return TryResult();
520
521 bool IntLarger = IntLiteral->getType()->isUnsignedIntegerType() ||
522 !IntValue.isNegative();
523
524 BinaryOperatorKind Bok = B->getOpcode();
525 if (Bok == BO_GT || Bok == BO_GE) {
526 // Always true for 10 > bool and bool > -1
527 // Always false for -1 > bool and bool > 10
528 return TryResult(IntFirst == IntLarger);
529 } else {
530 // Always true for -1 < bool and bool < 10
531 // Always false for 10 < bool and bool < -1
532 return TryResult(IntFirst != IntLarger);
533 }
534 }
535
536 /// Find a equality comparison with an expression evaluating to a boolean and
537 /// a constant other than 0 and 1.
538 /// e.g. if (!x == 10)
539 TryResult checkIncorrectEqualityOperator(const BinaryOperator *B) {
540 const Expr *LHSExpr = B->getLHS()->IgnoreParens();
541 const Expr *RHSExpr = B->getRHS()->IgnoreParens();
542
543 const IntegerLiteral *IntLiteral = dyn_cast<IntegerLiteral>(LHSExpr);
544 const Expr *BoolExpr = RHSExpr;
545
546 if (!IntLiteral) {
547 IntLiteral = dyn_cast<IntegerLiteral>(RHSExpr);
548 BoolExpr = LHSExpr;
549 }
550
551 if (!IntLiteral || !BoolExpr->isKnownToHaveBooleanValue())
552 return TryResult();
553
554 llvm::APInt IntValue = IntLiteral->getValue();
555 if ((IntValue == 1) || (IntValue == 0)) {
556 return TryResult();
557 }
558
559 return TryResult(B->getOpcode() != BO_EQ);
560 }
561
562 TryResult analyzeLogicOperatorCondition(BinaryOperatorKind Relation,
563 const llvm::APSInt &Value1,
564 const llvm::APSInt &Value2) {
565 assert(Value1.isSigned() == Value2.isSigned());
566 switch (Relation) {
567 default:
568 return TryResult();
569 case BO_EQ:
570 return TryResult(Value1 == Value2);
571 case BO_NE:
572 return TryResult(Value1 != Value2);
573 case BO_LT:
574 return TryResult(Value1 < Value2);
575 case BO_LE:
576 return TryResult(Value1 <= Value2);
577 case BO_GT:
578 return TryResult(Value1 > Value2);
579 case BO_GE:
580 return TryResult(Value1 >= Value2);
581 }
582 }
583
584 /// \brief Find a pair of comparison expressions with or without parentheses
585 /// with a shared variable and constants and a logical operator between them
586 /// that always evaluates to either true or false.
587 /// e.g. if (x != 3 || x != 4)
588 TryResult checkIncorrectLogicOperator(const BinaryOperator *B) {
589 assert(B->isLogicalOp());
590 const BinaryOperator *LHS =
591 dyn_cast<BinaryOperator>(B->getLHS()->IgnoreParens());
592 const BinaryOperator *RHS =
593 dyn_cast<BinaryOperator>(B->getRHS()->IgnoreParens());
594 if (!LHS || !RHS)
595 return TryResult();
596
597 if (!LHS->isComparisonOp() || !RHS->isComparisonOp())
598 return TryResult();
599
600 BinaryOperatorKind BO1 = LHS->getOpcode();
601 const DeclRefExpr *Decl1 =
602 dyn_cast<DeclRefExpr>(LHS->getLHS()->IgnoreParenImpCasts());
603 const IntegerLiteral *Literal1 =
604 dyn_cast<IntegerLiteral>(LHS->getRHS()->IgnoreParens());
605 if (!Decl1 && !Literal1) {
606 if (BO1 == BO_GT)
607 BO1 = BO_LT;
608 else if (BO1 == BO_GE)
609 BO1 = BO_LE;
610 else if (BO1 == BO_LT)
611 BO1 = BO_GT;
612 else if (BO1 == BO_LE)
613 BO1 = BO_GE;
614 Decl1 = dyn_cast<DeclRefExpr>(LHS->getRHS()->IgnoreParenImpCasts());
615 Literal1 = dyn_cast<IntegerLiteral>(LHS->getLHS()->IgnoreParens());
616 }
617
618 if (!Decl1 || !Literal1)
619 return TryResult();
620
621 BinaryOperatorKind BO2 = RHS->getOpcode();
622 const DeclRefExpr *Decl2 =
623 dyn_cast<DeclRefExpr>(RHS->getLHS()->IgnoreParenImpCasts());
624 const IntegerLiteral *Literal2 =
625 dyn_cast<IntegerLiteral>(RHS->getRHS()->IgnoreParens());
626 if (!Decl2 && !Literal2) {
627 if (BO2 == BO_GT)
628 BO2 = BO_LT;
629 else if (BO2 == BO_GE)
630 BO2 = BO_LE;
631 else if (BO2 == BO_LT)
632 BO2 = BO_GT;
633 else if (BO2 == BO_LE)
634 BO2 = BO_GE;
635 Decl2 = dyn_cast<DeclRefExpr>(RHS->getRHS()->IgnoreParenImpCasts());
636 Literal2 = dyn_cast<IntegerLiteral>(RHS->getLHS()->IgnoreParens());
637 }
638
639 if (!Decl2 || !Literal2)
640 return TryResult();
641
642 // Check that it is the same variable on both sides.
643 if (Decl1->getDecl() != Decl2->getDecl())
644 return TryResult();
645
646 llvm::APSInt L1, L2;
647
648 if (!Literal1->EvaluateAsInt(L1, *Context) ||
649 !Literal2->EvaluateAsInt(L2, *Context))
650 return TryResult();
651
652 // Can't compare signed with unsigned or with different bit width.
653 if (L1.isSigned() != L2.isSigned() || L1.getBitWidth() != L2.getBitWidth())
654 return TryResult();
655
656 // Values that will be used to determine if result of logical
657 // operator is always true/false
658 const llvm::APSInt Values[] = {
659 // Value less than both Value1 and Value2
660 llvm::APSInt::getMinValue(L1.getBitWidth(), L1.isUnsigned()),
661 // L1
662 L1,
663 // Value between Value1 and Value2
664 ((L1 < L2) ? L1 : L2) + llvm::APSInt(llvm::APInt(L1.getBitWidth(), 1),
665 L1.isUnsigned()),
666 // L2
667 L2,
668 // Value greater than both Value1 and Value2
669 llvm::APSInt::getMaxValue(L1.getBitWidth(), L1.isUnsigned()),
670 };
671
672 // Check whether expression is always true/false by evaluating the following
673 // * variable x is less than the smallest literal.
674 // * variable x is equal to the smallest literal.
675 // * Variable x is between smallest and largest literal.
676 // * Variable x is equal to the largest literal.
677 // * Variable x is greater than largest literal.
678 bool AlwaysTrue = true, AlwaysFalse = true;
679 for (unsigned int ValueIndex = 0;
680 ValueIndex < sizeof(Values) / sizeof(Values[0]);
681 ++ValueIndex) {
682 llvm::APSInt Value = Values[ValueIndex];
683 TryResult Res1, Res2;
684 Res1 = analyzeLogicOperatorCondition(BO1, Value, L1);
685 Res2 = analyzeLogicOperatorCondition(BO2, Value, L2);
686
687 if (!Res1.isKnown() || !Res2.isKnown())
688 return TryResult();
689
690 if (B->getOpcode() == BO_LAnd) {
691 AlwaysTrue &= (Res1.isTrue() && Res2.isTrue());
692 AlwaysFalse &= !(Res1.isTrue() && Res2.isTrue());
693 } else {
694 AlwaysTrue &= (Res1.isTrue() || Res2.isTrue());
695 AlwaysFalse &= !(Res1.isTrue() || Res2.isTrue());
696 }
697 }
698
699 if (AlwaysTrue || AlwaysFalse) {
700 if (BuildOpts.Observer)
701 BuildOpts.Observer->compareAlwaysTrue(B, AlwaysTrue);
702 return TryResult(AlwaysTrue);
703 }
704 return TryResult();
705 }
706
Ted Kremenekeff9a7f2011-03-01 23:12:55 +0000707 /// Try and evaluate an expression to an integer constant.
708 bool tryEvaluate(Expr *S, Expr::EvalResult &outResult) {
709 if (!BuildOpts.PruneTriviallyFalseEdges)
710 return false;
711 return !S->isTypeDependent() &&
Ted Kremenek352a7082011-04-04 20:30:58 +0000712 !S->isValueDependent() &&
Richard Smith7b553f12011-10-29 00:50:52 +0000713 S->EvaluateAsRValue(outResult, *Context);
Ted Kremenekeff9a7f2011-03-01 23:12:55 +0000714 }
Mike Stump11289f42009-09-09 15:08:12 +0000715
Ted Kremenek3a9a2a52010-12-17 04:44:39 +0000716 /// tryEvaluateBool - Try and evaluate the Stmt and return 0 or 1
Mike Stump773582d2009-07-23 23:25:26 +0000717 /// if we can evaluate to a known value, otherwise return -1.
Ted Kremenek3a9a2a52010-12-17 04:44:39 +0000718 TryResult tryEvaluateBool(Expr *S) {
Richard Smithfaa32a92011-10-14 20:22:00 +0000719 if (!BuildOpts.PruneTriviallyFalseEdges ||
Argyrios Kyrtzidis5f172a32012-03-23 00:59:17 +0000720 S->isTypeDependent() || S->isValueDependent())
Ted Kremenekeff9a7f2011-03-01 23:12:55 +0000721 return TryResult();
Argyrios Kyrtzidis5f172a32012-03-23 00:59:17 +0000722
723 if (BinaryOperator *Bop = dyn_cast<BinaryOperator>(S)) {
724 if (Bop->isLogicalOp()) {
725 // Check the cache first.
NAKAMURA Takumie9ca55e2012-03-25 06:30:37 +0000726 CachedBoolEvalsTy::iterator I = CachedBoolEvals.find(S);
727 if (I != CachedBoolEvals.end())
Argyrios Kyrtzidis5f172a32012-03-23 00:59:17 +0000728 return I->second; // already in map;
NAKAMURA Takumif0434b02012-03-25 06:30:32 +0000729
730 // Retrieve result at first, or the map might be updated.
731 TryResult Result = evaluateAsBooleanConditionNoCache(S);
732 CachedBoolEvals[S] = Result; // update or insert
733 return Result;
Argyrios Kyrtzidis5f172a32012-03-23 00:59:17 +0000734 }
Ted Kremenek64fea5f2012-08-24 07:42:09 +0000735 else {
736 switch (Bop->getOpcode()) {
737 default: break;
738 // For 'x & 0' and 'x * 0', we can determine that
739 // the value is always false.
740 case BO_Mul:
741 case BO_And: {
742 // If either operand is zero, we know the value
743 // must be false.
744 llvm::APSInt IntVal;
745 if (Bop->getLHS()->EvaluateAsInt(IntVal, *Context)) {
746 if (IntVal.getBoolValue() == false) {
747 return TryResult(false);
748 }
749 }
750 if (Bop->getRHS()->EvaluateAsInt(IntVal, *Context)) {
751 if (IntVal.getBoolValue() == false) {
752 return TryResult(false);
753 }
754 }
755 }
756 break;
757 }
758 }
Argyrios Kyrtzidis5f172a32012-03-23 00:59:17 +0000759 }
760
761 return evaluateAsBooleanConditionNoCache(S);
762 }
763
764 /// \brief Evaluate as boolean \param E without using the cache.
765 TryResult evaluateAsBooleanConditionNoCache(Expr *E) {
766 if (BinaryOperator *Bop = dyn_cast<BinaryOperator>(E)) {
767 if (Bop->isLogicalOp()) {
768 TryResult LHS = tryEvaluateBool(Bop->getLHS());
769 if (LHS.isKnown()) {
770 // We were able to evaluate the LHS, see if we can get away with not
771 // evaluating the RHS: 0 && X -> 0, 1 || X -> 1
772 if (LHS.isTrue() == (Bop->getOpcode() == BO_LOr))
773 return LHS.isTrue();
774
775 TryResult RHS = tryEvaluateBool(Bop->getRHS());
776 if (RHS.isKnown()) {
777 if (Bop->getOpcode() == BO_LOr)
778 return LHS.isTrue() || RHS.isTrue();
779 else
780 return LHS.isTrue() && RHS.isTrue();
781 }
782 } else {
783 TryResult RHS = tryEvaluateBool(Bop->getRHS());
784 if (RHS.isKnown()) {
785 // We can't evaluate the LHS; however, sometimes the result
786 // is determined by the RHS: X && 0 -> 0, X || 1 -> 1.
787 if (RHS.isTrue() == (Bop->getOpcode() == BO_LOr))
788 return RHS.isTrue();
Richard Trieuf935b562014-04-05 05:17:01 +0000789 } else {
790 TryResult BopRes = checkIncorrectLogicOperator(Bop);
791 if (BopRes.isKnown())
792 return BopRes.isTrue();
Argyrios Kyrtzidis5f172a32012-03-23 00:59:17 +0000793 }
794 }
795
796 return TryResult();
Richard Trieuf935b562014-04-05 05:17:01 +0000797 } else if (Bop->isEqualityOp()) {
798 TryResult BopRes = checkIncorrectEqualityOperator(Bop);
799 if (BopRes.isKnown())
800 return BopRes.isTrue();
801 } else if (Bop->isRelationalOp()) {
802 TryResult BopRes = checkIncorrectRelationalOperator(Bop);
803 if (BopRes.isKnown())
804 return BopRes.isTrue();
Argyrios Kyrtzidis5f172a32012-03-23 00:59:17 +0000805 }
806 }
807
808 bool Result;
809 if (E->EvaluateAsBooleanCondition(Result, *Context))
810 return Result;
811
812 return TryResult();
Mike Stump773582d2009-07-23 23:25:26 +0000813 }
Ted Kremenekeff9a7f2011-03-01 23:12:55 +0000814
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +0000815};
Mike Stump31feda52009-07-17 01:31:16 +0000816
Ted Kremeneka099c592011-03-10 03:50:34 +0000817inline bool AddStmtChoice::alwaysAdd(CFGBuilder &builder,
818 const Stmt *stmt) const {
819 return builder.alwaysAdd(stmt) || kind == AlwaysAdd;
820}
Ted Kremenekdcc4c382011-03-23 21:33:21 +0000821
Ted Kremeneka099c592011-03-10 03:50:34 +0000822bool CFGBuilder::alwaysAdd(const Stmt *stmt) {
Ted Kremenek8b46c002011-07-19 14:18:43 +0000823 bool shouldAdd = BuildOpts.alwaysAdd(stmt);
824
Ted Kremeneka099c592011-03-10 03:50:34 +0000825 if (!BuildOpts.forcedBlkExprs)
Ted Kremenek8b46c002011-07-19 14:18:43 +0000826 return shouldAdd;
Ted Kremenekdcc4c382011-03-23 21:33:21 +0000827
828 if (lastLookup == stmt) {
829 if (cachedEntry) {
830 assert(cachedEntry->first == stmt);
831 return true;
832 }
Ted Kremenek8b46c002011-07-19 14:18:43 +0000833 return shouldAdd;
Ted Kremenekdcc4c382011-03-23 21:33:21 +0000834 }
Ted Kremeneka099c592011-03-10 03:50:34 +0000835
Ted Kremenekdcc4c382011-03-23 21:33:21 +0000836 lastLookup = stmt;
837
838 // Perform the lookup!
Ted Kremeneka099c592011-03-10 03:50:34 +0000839 CFG::BuildOptions::ForcedBlkExprs *fb = *BuildOpts.forcedBlkExprs;
840
Ted Kremenekdcc4c382011-03-23 21:33:21 +0000841 if (!fb) {
842 // No need to update 'cachedEntry', since it will always be null.
843 assert(cachedEntry == 0);
Ted Kremenek8b46c002011-07-19 14:18:43 +0000844 return shouldAdd;
Ted Kremenekdcc4c382011-03-23 21:33:21 +0000845 }
Ted Kremeneka099c592011-03-10 03:50:34 +0000846
847 CFG::BuildOptions::ForcedBlkExprs::iterator itr = fb->find(stmt);
Ted Kremenekdcc4c382011-03-23 21:33:21 +0000848 if (itr == fb->end()) {
849 cachedEntry = 0;
Ted Kremenek8b46c002011-07-19 14:18:43 +0000850 return shouldAdd;
Ted Kremenekdcc4c382011-03-23 21:33:21 +0000851 }
852
Ted Kremeneka099c592011-03-10 03:50:34 +0000853 cachedEntry = &*itr;
854 return true;
Ted Kremenek7c58d352011-03-10 01:14:11 +0000855}
856
Douglas Gregor4619e432008-12-05 23:32:09 +0000857// FIXME: Add support for dependent-sized array types in C++?
858// Does it even make sense to build a CFG for an uninstantiated template?
John McCall424cec92011-01-19 06:33:43 +0000859static const VariableArrayType *FindVA(const Type *t) {
860 while (const ArrayType *vt = dyn_cast<ArrayType>(t)) {
861 if (const VariableArrayType *vat = dyn_cast<VariableArrayType>(vt))
Ted Kremenekd86d39c2008-09-26 22:58:57 +0000862 if (vat->getSizeExpr())
863 return vat;
Mike Stump31feda52009-07-17 01:31:16 +0000864
Ted Kremenekd86d39c2008-09-26 22:58:57 +0000865 t = vt->getElementType().getTypePtr();
866 }
Mike Stump31feda52009-07-17 01:31:16 +0000867
Ted Kremenekd86d39c2008-09-26 22:58:57 +0000868 return 0;
869}
Mike Stump31feda52009-07-17 01:31:16 +0000870
871/// BuildCFG - Constructs a CFG from an AST (a Stmt*). The AST can represent an
872/// arbitrary statement. Examples include a single expression or a function
873/// body (compound statement). The ownership of the returned CFG is
874/// transferred to the caller. If CFG construction fails, this method returns
875/// NULL.
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000876CFG* CFGBuilder::buildCFG(const Decl *D, Stmt *Statement) {
Ted Kremenek8aed4902009-10-20 23:46:25 +0000877 assert(cfg.get());
Ted Kremenek93668002009-07-17 22:18:43 +0000878 if (!Statement)
879 return NULL;
Ted Kremenek9aae5132007-08-23 21:42:29 +0000880
Mike Stump31feda52009-07-17 01:31:16 +0000881 // Create an empty block that will serve as the exit block for the CFG. Since
882 // this is the first block added to the CFG, it will be implicitly registered
883 // as the exit block.
Ted Kremenek81e14852007-08-27 19:46:09 +0000884 Succ = createBlock();
Ted Kremenek289ae4f2009-10-12 20:55:07 +0000885 assert(Succ == &cfg->getExit());
Ted Kremenek81e14852007-08-27 19:46:09 +0000886 Block = NULL; // the EXIT block is empty. Create all other blocks lazily.
Mike Stump31feda52009-07-17 01:31:16 +0000887
Marcin Swiderski20b88732010-10-05 05:37:00 +0000888 if (BuildOpts.AddImplicitDtors)
889 if (const CXXDestructorDecl *DD = dyn_cast_or_null<CXXDestructorDecl>(D))
890 addImplicitDtorsForDestructor(DD);
891
Ted Kremenek9aae5132007-08-23 21:42:29 +0000892 // Visit the statements and create the CFG.
Zhongxing Xub1e10aa2010-09-06 07:04:06 +0000893 CFGBlock *B = addStmt(Statement);
894
895 if (badCFG)
896 return NULL;
897
Marcin Swiderski87b1bb62010-10-04 03:38:22 +0000898 // For C++ constructor add initializers to CFG.
899 if (const CXXConstructorDecl *CD = dyn_cast_or_null<CXXConstructorDecl>(D)) {
900 for (CXXConstructorDecl::init_const_reverse_iterator I = CD->init_rbegin(),
901 E = CD->init_rend(); I != E; ++I) {
902 B = addInitializer(*I);
903 if (badCFG)
904 return NULL;
905 }
906 }
907
Zhongxing Xub1e10aa2010-09-06 07:04:06 +0000908 if (B)
909 Succ = B;
Mike Stump6bf1c082010-01-21 02:21:40 +0000910
Zhongxing Xub1e10aa2010-09-06 07:04:06 +0000911 // Backpatch the gotos whose label -> block mappings we didn't know when we
912 // encountered them.
913 for (BackpatchBlocksTy::iterator I = BackpatchBlocks.begin(),
914 E = BackpatchBlocks.end(); I != E; ++I ) {
Mike Stump31feda52009-07-17 01:31:16 +0000915
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000916 CFGBlock *B = I->block;
Rafael Espindola210de572013-03-27 15:37:54 +0000917 const GotoStmt *G = cast<GotoStmt>(B->getTerminator());
Zhongxing Xub1e10aa2010-09-06 07:04:06 +0000918 LabelMapTy::iterator LI = LabelMap.find(G->getLabel());
Mike Stump31feda52009-07-17 01:31:16 +0000919
Zhongxing Xub1e10aa2010-09-06 07:04:06 +0000920 // If there is no target for the goto, then we are looking at an
921 // incomplete AST. Handle this by not registering a successor.
922 if (LI == LabelMap.end()) continue;
Ted Kremenek9aae5132007-08-23 21:42:29 +0000923
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +0000924 JumpTarget JT = LI->second;
Ted Kremenekef81e9e2011-01-07 19:37:16 +0000925 prependAutomaticObjDtorsWithTerminator(B, I->scopePosition,
926 JT.scopePosition);
927 addSuccessor(B, JT.block);
Zhongxing Xub1e10aa2010-09-06 07:04:06 +0000928 }
929
930 // Add successors to the Indirect Goto Dispatch block (if we have one).
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000931 if (CFGBlock *B = cfg->getIndirectGotoBlock())
Zhongxing Xub1e10aa2010-09-06 07:04:06 +0000932 for (LabelSetTy::iterator I = AddressTakenLabels.begin(),
933 E = AddressTakenLabels.end(); I != E; ++I ) {
934
935 // Lookup the target block.
936 LabelMapTy::iterator LI = LabelMap.find(*I);
937
938 // If there is no target block that contains label, then we are looking
939 // at an incomplete AST. Handle this by not registering a successor.
Ted Kremenek9aae5132007-08-23 21:42:29 +0000940 if (LI == LabelMap.end()) continue;
Zhongxing Xub1e10aa2010-09-06 07:04:06 +0000941
Ted Kremenekef81e9e2011-01-07 19:37:16 +0000942 addSuccessor(B, LI->second.block);
Ted Kremenekeda180e22007-08-28 19:26:49 +0000943 }
Mike Stump31feda52009-07-17 01:31:16 +0000944
Mike Stump31feda52009-07-17 01:31:16 +0000945 // Create an empty entry block that has no predecessors.
Ted Kremenek5c50fd12007-09-26 21:23:31 +0000946 cfg->setEntry(createBlock());
Mike Stump31feda52009-07-17 01:31:16 +0000947
Ahmed Charles9a16beb2014-03-07 19:33:25 +0000948 return cfg.release();
Ted Kremenek9aae5132007-08-23 21:42:29 +0000949}
Mike Stump31feda52009-07-17 01:31:16 +0000950
Ted Kremenek9aae5132007-08-23 21:42:29 +0000951/// createBlock - Used to lazily create blocks that are connected
952/// to the current (global) succcessor.
Ted Kremenek5ef32db2011-08-12 23:37:29 +0000953CFGBlock *CFGBuilder::createBlock(bool add_successor) {
954 CFGBlock *B = cfg->createBlock();
Ted Kremenek93668002009-07-17 22:18:43 +0000955 if (add_successor && Succ)
Ted Kremenek3a9a2a52010-12-17 04:44:39 +0000956 addSuccessor(B, Succ);
Ted Kremenek9aae5132007-08-23 21:42:29 +0000957 return B;
958}
Mike Stump31feda52009-07-17 01:31:16 +0000959
Chandler Carrutha70991b2011-09-13 09:13:49 +0000960/// createNoReturnBlock - Used to create a block is a 'noreturn' point in the
961/// CFG. It is *not* connected to the current (global) successor, and instead
962/// directly tied to the exit block in order to be reachable.
963CFGBlock *CFGBuilder::createNoReturnBlock() {
964 CFGBlock *B = createBlock(false);
Chandler Carruth75d78232011-09-13 09:53:55 +0000965 B->setHasNoReturnElement();
Ted Kremenekf3539192014-02-27 00:24:05 +0000966 addSuccessor(B, &cfg->getExit(), Succ);
Chandler Carrutha70991b2011-09-13 09:13:49 +0000967 return B;
968}
969
Marcin Swiderski87b1bb62010-10-04 03:38:22 +0000970/// addInitializer - Add C++ base or member initializer element to CFG.
Alexis Hunt1d792652011-01-08 20:30:50 +0000971CFGBlock *CFGBuilder::addInitializer(CXXCtorInitializer *I) {
Marcin Swiderski87b1bb62010-10-04 03:38:22 +0000972 if (!BuildOpts.AddInitializers)
973 return Block;
974
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +0000975 bool IsReference = false;
976 bool HasTemporaries = false;
977
978 // Destructors of temporaries in initialization expression should be called
979 // after initialization finishes.
980 Expr *Init = I->getInit();
981 if (Init) {
Francois Pichetd583da02010-12-04 09:14:42 +0000982 if (FieldDecl *FD = I->getAnyMember())
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +0000983 IsReference = FD->getType()->isReferenceType();
John McCall5d413782010-12-06 08:20:24 +0000984 HasTemporaries = isa<ExprWithCleanups>(Init);
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +0000985
Jordan Rose6d671cc2012-09-05 22:55:23 +0000986 if (BuildOpts.AddTemporaryDtors && HasTemporaries) {
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +0000987 // Generate destructors for temporaries in initialization expression.
John McCall5d413782010-12-06 08:20:24 +0000988 VisitForTemporaryDtors(cast<ExprWithCleanups>(Init)->getSubExpr(),
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +0000989 IsReference);
990 }
991 }
992
Marcin Swiderski87b1bb62010-10-04 03:38:22 +0000993 autoCreateBlock();
994 appendInitializer(Block, I);
995
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +0000996 if (Init) {
Ted Kremenek8219b822010-12-16 07:46:53 +0000997 if (HasTemporaries) {
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +0000998 // For expression with temporaries go directly to subexpression to omit
999 // generating destructors for the second time.
Ted Kremenek8219b822010-12-16 07:46:53 +00001000 return Visit(cast<ExprWithCleanups>(Init)->getSubExpr());
1001 }
1002 return Visit(Init);
Marcin Swiderski87b1bb62010-10-04 03:38:22 +00001003 }
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001004
Marcin Swiderski87b1bb62010-10-04 03:38:22 +00001005 return Block;
1006}
1007
Douglas Gregor6c8f07f2011-11-15 15:29:30 +00001008/// \brief Retrieve the type of the temporary object whose lifetime was
1009/// extended by a local reference with the given initializer.
1010static QualType getReferenceInitTemporaryType(ASTContext &Context,
1011 const Expr *Init) {
1012 while (true) {
1013 // Skip parentheses.
1014 Init = Init->IgnoreParens();
1015
1016 // Skip through cleanups.
1017 if (const ExprWithCleanups *EWC = dyn_cast<ExprWithCleanups>(Init)) {
1018 Init = EWC->getSubExpr();
1019 continue;
1020 }
1021
1022 // Skip through the temporary-materialization expression.
1023 if (const MaterializeTemporaryExpr *MTE
1024 = dyn_cast<MaterializeTemporaryExpr>(Init)) {
1025 Init = MTE->GetTemporaryExpr();
1026 continue;
1027 }
1028
1029 // Skip derived-to-base and no-op casts.
1030 if (const CastExpr *CE = dyn_cast<CastExpr>(Init)) {
1031 if ((CE->getCastKind() == CK_DerivedToBase ||
1032 CE->getCastKind() == CK_UncheckedDerivedToBase ||
1033 CE->getCastKind() == CK_NoOp) &&
1034 Init->getType()->isRecordType()) {
1035 Init = CE->getSubExpr();
1036 continue;
1037 }
1038 }
1039
1040 // Skip member accesses into rvalues.
1041 if (const MemberExpr *ME = dyn_cast<MemberExpr>(Init)) {
1042 if (!ME->isArrow() && ME->getBase()->isRValue()) {
1043 Init = ME->getBase();
1044 continue;
1045 }
1046 }
1047
1048 break;
1049 }
1050
1051 return Init->getType();
1052}
1053
Marcin Swiderski5e415732010-09-30 23:05:00 +00001054/// addAutomaticObjDtors - Add to current block automatic objects destructors
1055/// for objects in range of local scope positions. Use S as trigger statement
1056/// for destructors.
Zhongxing Xu6d372f72010-10-01 03:22:39 +00001057void CFGBuilder::addAutomaticObjDtors(LocalScope::const_iterator B,
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001058 LocalScope::const_iterator E, Stmt *S) {
Marcin Swiderski5e415732010-09-30 23:05:00 +00001059 if (!BuildOpts.AddImplicitDtors)
Zhongxing Xu6d372f72010-10-01 03:22:39 +00001060 return;
1061
Marcin Swiderski5e415732010-09-30 23:05:00 +00001062 if (B == E)
Zhongxing Xu6d372f72010-10-01 03:22:39 +00001063 return;
Marcin Swiderski5e415732010-09-30 23:05:00 +00001064
Chandler Carruthad747252011-09-13 06:09:01 +00001065 // We need to append the destructors in reverse order, but any one of them
1066 // may be a no-return destructor which changes the CFG. As a result, buffer
1067 // this sequence up and replay them in reverse order when appending onto the
1068 // CFGBlock(s).
1069 SmallVector<VarDecl*, 10> Decls;
1070 Decls.reserve(B.distance(E));
1071 for (LocalScope::const_iterator I = B; I != E; ++I)
1072 Decls.push_back(*I);
1073
1074 for (SmallVectorImpl<VarDecl*>::reverse_iterator I = Decls.rbegin(),
1075 E = Decls.rend();
1076 I != E; ++I) {
1077 // If this destructor is marked as a no-return destructor, we need to
1078 // create a new block for the destructor which does not have as a successor
1079 // anything built thus far: control won't flow out of this block.
Ted Kremenek3d617732012-07-18 04:57:57 +00001080 QualType Ty = (*I)->getType();
1081 if (Ty->isReferenceType()) {
Douglas Gregor6c8f07f2011-11-15 15:29:30 +00001082 Ty = getReferenceInitTemporaryType(*Context, (*I)->getInit());
Douglas Gregor6c8f07f2011-11-15 15:29:30 +00001083 }
Ted Kremenek3d617732012-07-18 04:57:57 +00001084 Ty = Context->getBaseElementType(Ty);
1085
Chandler Carruthad747252011-09-13 06:09:01 +00001086 const CXXDestructorDecl *Dtor = Ty->getAsCXXRecordDecl()->getDestructor();
Richard Smith10876ef2013-01-17 01:30:42 +00001087 if (Dtor->isNoReturn())
Chandler Carrutha70991b2011-09-13 09:13:49 +00001088 Block = createNoReturnBlock();
1089 else
Chandler Carruthad747252011-09-13 06:09:01 +00001090 autoCreateBlock();
Chandler Carruthad747252011-09-13 06:09:01 +00001091
1092 appendAutomaticObjDtor(Block, *I, S);
1093 }
Marcin Swiderski5e415732010-09-30 23:05:00 +00001094}
1095
Marcin Swiderski20b88732010-10-05 05:37:00 +00001096/// addImplicitDtorsForDestructor - Add implicit destructors generated for
1097/// base and member objects in destructor.
1098void CFGBuilder::addImplicitDtorsForDestructor(const CXXDestructorDecl *DD) {
1099 assert (BuildOpts.AddImplicitDtors
1100 && "Can be called only when dtors should be added");
1101 const CXXRecordDecl *RD = DD->getParent();
1102
1103 // At the end destroy virtual base objects.
Aaron Ballman445a9392014-03-13 16:15:17 +00001104 for (const auto &VI : RD->vbases()) {
1105 const CXXRecordDecl *CD = VI.getType()->getAsCXXRecordDecl();
Marcin Swiderski20b88732010-10-05 05:37:00 +00001106 if (!CD->hasTrivialDestructor()) {
1107 autoCreateBlock();
Aaron Ballman445a9392014-03-13 16:15:17 +00001108 appendBaseDtor(Block, &VI);
Marcin Swiderski20b88732010-10-05 05:37:00 +00001109 }
1110 }
1111
1112 // Before virtual bases destroy direct base objects.
Aaron Ballman574705e2014-03-13 15:41:46 +00001113 for (const auto &BI : RD->bases()) {
1114 if (!BI.isVirtual()) {
1115 const CXXRecordDecl *CD = BI.getType()->getAsCXXRecordDecl();
David Blaikie0f2ae782012-01-24 04:51:48 +00001116 if (!CD->hasTrivialDestructor()) {
1117 autoCreateBlock();
Aaron Ballman574705e2014-03-13 15:41:46 +00001118 appendBaseDtor(Block, &BI);
David Blaikie0f2ae782012-01-24 04:51:48 +00001119 }
1120 }
Marcin Swiderski20b88732010-10-05 05:37:00 +00001121 }
1122
1123 // First destroy member objects.
Aaron Ballmane8a8bae2014-03-08 20:12:42 +00001124 for (auto *FI : RD->fields()) {
Marcin Swiderski01769902010-10-25 07:05:54 +00001125 // Check for constant size array. Set type to array element type.
1126 QualType QT = FI->getType();
1127 if (const ConstantArrayType *AT = Context->getAsConstantArrayType(QT)) {
1128 if (AT->getSize() == 0)
1129 continue;
1130 QT = AT->getElementType();
1131 }
1132
1133 if (const CXXRecordDecl *CD = QT->getAsCXXRecordDecl())
Marcin Swiderski20b88732010-10-05 05:37:00 +00001134 if (!CD->hasTrivialDestructor()) {
1135 autoCreateBlock();
Aaron Ballmane8a8bae2014-03-08 20:12:42 +00001136 appendMemberDtor(Block, FI);
Marcin Swiderski20b88732010-10-05 05:37:00 +00001137 }
1138 }
1139}
1140
Marcin Swiderski5e415732010-09-30 23:05:00 +00001141/// createOrReuseLocalScope - If Scope is NULL create new LocalScope. Either
1142/// way return valid LocalScope object.
1143LocalScope* CFGBuilder::createOrReuseLocalScope(LocalScope* Scope) {
1144 if (!Scope) {
Ted Kremenekc7bfdcd2011-02-15 02:47:45 +00001145 llvm::BumpPtrAllocator &alloc = cfg->getAllocator();
1146 Scope = alloc.Allocate<LocalScope>();
1147 BumpVectorContext ctx(alloc);
1148 new (Scope) LocalScope(ctx, ScopePos);
Marcin Swiderski5e415732010-09-30 23:05:00 +00001149 }
1150 return Scope;
1151}
1152
1153/// addLocalScopeForStmt - Add LocalScope to local scopes tree for statement
Zhongxing Xu81714f22010-10-01 03:00:16 +00001154/// that should create implicit scope (e.g. if/else substatements).
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001155void CFGBuilder::addLocalScopeForStmt(Stmt *S) {
Marcin Swiderski5e415732010-09-30 23:05:00 +00001156 if (!BuildOpts.AddImplicitDtors)
Zhongxing Xu81714f22010-10-01 03:00:16 +00001157 return;
1158
1159 LocalScope *Scope = 0;
Marcin Swiderski5e415732010-09-30 23:05:00 +00001160
1161 // For compound statement we will be creating explicit scope.
Chris Lattnerc8e630e2011-02-17 07:39:24 +00001162 if (CompoundStmt *CS = dyn_cast<CompoundStmt>(S)) {
Aaron Ballmanc7e4e212014-03-17 14:19:37 +00001163 for (auto *BI : CS->body()) {
1164 Stmt *SI = BI->stripLabelLikeStatements();
Chris Lattnerc8e630e2011-02-17 07:39:24 +00001165 if (DeclStmt *DS = dyn_cast<DeclStmt>(SI))
Marcin Swiderski5e415732010-09-30 23:05:00 +00001166 Scope = addLocalScopeForDeclStmt(DS, Scope);
1167 }
Zhongxing Xu81714f22010-10-01 03:00:16 +00001168 return;
Marcin Swiderski5e415732010-09-30 23:05:00 +00001169 }
1170
1171 // For any other statement scope will be implicit and as such will be
1172 // interesting only for DeclStmt.
Chandler Carrutha626d642011-09-10 00:02:34 +00001173 if (DeclStmt *DS = dyn_cast<DeclStmt>(S->stripLabelLikeStatements()))
Zhongxing Xu307701e2010-10-01 03:09:09 +00001174 addLocalScopeForDeclStmt(DS);
Marcin Swiderski5e415732010-09-30 23:05:00 +00001175}
1176
1177/// addLocalScopeForDeclStmt - Add LocalScope for declaration statement. Will
1178/// reuse Scope if not NULL.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001179LocalScope* CFGBuilder::addLocalScopeForDeclStmt(DeclStmt *DS,
Zhongxing Xu307701e2010-10-01 03:09:09 +00001180 LocalScope* Scope) {
Marcin Swiderski5e415732010-09-30 23:05:00 +00001181 if (!BuildOpts.AddImplicitDtors)
1182 return Scope;
1183
Aaron Ballman535bbcc2014-03-14 17:01:24 +00001184 for (auto *DI : DS->decls())
1185 if (VarDecl *VD = dyn_cast<VarDecl>(DI))
Marcin Swiderski5e415732010-09-30 23:05:00 +00001186 Scope = addLocalScopeForVarDecl(VD, Scope);
Marcin Swiderski5e415732010-09-30 23:05:00 +00001187 return Scope;
1188}
1189
1190/// addLocalScopeForVarDecl - Add LocalScope for variable declaration. It will
1191/// create add scope for automatic objects and temporary objects bound to
1192/// const reference. Will reuse Scope if not NULL.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001193LocalScope* CFGBuilder::addLocalScopeForVarDecl(VarDecl *VD,
Zhongxing Xu307701e2010-10-01 03:09:09 +00001194 LocalScope* Scope) {
Marcin Swiderski5e415732010-09-30 23:05:00 +00001195 if (!BuildOpts.AddImplicitDtors)
1196 return Scope;
1197
1198 // Check if variable is local.
1199 switch (VD->getStorageClass()) {
1200 case SC_None:
1201 case SC_Auto:
1202 case SC_Register:
1203 break;
1204 default: return Scope;
1205 }
1206
1207 // Check for const references bound to temporary. Set type to pointee.
1208 QualType QT = VD->getType();
Douglas Gregor6c8f07f2011-11-15 15:29:30 +00001209 if (QT.getTypePtr()->isReferenceType()) {
Richard Smith5a0ef782013-06-27 21:43:17 +00001210 // Attempt to determine whether this declaration lifetime-extends a
1211 // temporary.
1212 //
1213 // FIXME: This is incorrect. Non-reference declarations can lifetime-extend
1214 // temporaries, and a single declaration can extend multiple temporaries.
1215 // We should look at the storage duration on each nested
1216 // MaterializeTemporaryExpr instead.
1217 const Expr *Init = VD->getInit();
1218 if (!Init)
1219 return Scope;
1220 if (const ExprWithCleanups *EWC = dyn_cast<ExprWithCleanups>(Init))
1221 Init = EWC->getSubExpr();
1222 if (!isa<MaterializeTemporaryExpr>(Init))
Marcin Swiderski5e415732010-09-30 23:05:00 +00001223 return Scope;
Douglas Gregor6c8f07f2011-11-15 15:29:30 +00001224
Richard Smith5a0ef782013-06-27 21:43:17 +00001225 // Lifetime-extending a temporary.
1226 QT = getReferenceInitTemporaryType(*Context, Init);
Marcin Swiderski5e415732010-09-30 23:05:00 +00001227 }
1228
Marcin Swiderski52e4bc12010-10-25 07:00:40 +00001229 // Check for constant size array. Set type to array element type.
Douglas Gregor6c8f07f2011-11-15 15:29:30 +00001230 while (const ConstantArrayType *AT = Context->getAsConstantArrayType(QT)) {
Marcin Swiderski52e4bc12010-10-25 07:00:40 +00001231 if (AT->getSize() == 0)
1232 return Scope;
1233 QT = AT->getElementType();
1234 }
Zhongxing Xu614e17d2010-10-05 08:38:06 +00001235
Marcin Swiderski52e4bc12010-10-25 07:00:40 +00001236 // Check if type is a C++ class with non-trivial destructor.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001237 if (const CXXRecordDecl *CD = QT->getAsCXXRecordDecl())
David Blaikie0f2ae782012-01-24 04:51:48 +00001238 if (!CD->hasTrivialDestructor()) {
Zhongxing Xu614e17d2010-10-05 08:38:06 +00001239 // Add the variable to scope
1240 Scope = createOrReuseLocalScope(Scope);
1241 Scope->addVar(VD);
1242 ScopePos = Scope->begin();
1243 }
Marcin Swiderski5e415732010-09-30 23:05:00 +00001244 return Scope;
1245}
1246
1247/// addLocalScopeAndDtors - For given statement add local scope for it and
1248/// add destructors that will cleanup the scope. Will reuse Scope if not NULL.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001249void CFGBuilder::addLocalScopeAndDtors(Stmt *S) {
Marcin Swiderski5e415732010-09-30 23:05:00 +00001250 if (!BuildOpts.AddImplicitDtors)
1251 return;
1252
1253 LocalScope::const_iterator scopeBeginPos = ScopePos;
Zhongxing Xu81714f22010-10-01 03:00:16 +00001254 addLocalScopeForStmt(S);
Marcin Swiderski5e415732010-09-30 23:05:00 +00001255 addAutomaticObjDtors(ScopePos, scopeBeginPos, S);
1256}
1257
Marcin Swiderski321a7072010-09-30 22:54:37 +00001258/// prependAutomaticObjDtorsWithTerminator - Prepend destructor CFGElements for
1259/// variables with automatic storage duration to CFGBlock's elements vector.
1260/// Elements will be prepended to physical beginning of the vector which
1261/// happens to be logical end. Use blocks terminator as statement that specifies
1262/// destructors call site.
Chandler Carruthad747252011-09-13 06:09:01 +00001263/// FIXME: This mechanism for adding automatic destructors doesn't handle
1264/// no-return destructors properly.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001265void CFGBuilder::prependAutomaticObjDtorsWithTerminator(CFGBlock *Blk,
Marcin Swiderski321a7072010-09-30 22:54:37 +00001266 LocalScope::const_iterator B, LocalScope::const_iterator E) {
Chandler Carruthad747252011-09-13 06:09:01 +00001267 BumpVectorContext &C = cfg->getBumpVectorContext();
1268 CFGBlock::iterator InsertPos
1269 = Blk->beginAutomaticObjDtorsInsert(Blk->end(), B.distance(E), C);
1270 for (LocalScope::const_iterator I = B; I != E; ++I)
1271 InsertPos = Blk->insertAutomaticObjDtor(InsertPos, *I,
1272 Blk->getTerminator());
Marcin Swiderski321a7072010-09-30 22:54:37 +00001273}
1274
Ted Kremenek93668002009-07-17 22:18:43 +00001275/// Visit - Walk the subtree of a statement and add extra
Mike Stump31feda52009-07-17 01:31:16 +00001276/// blocks for ternary operators, &&, and ||. We also process "," and
1277/// DeclStmts (which may contain nested control-flow).
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001278CFGBlock *CFGBuilder::Visit(Stmt * S, AddStmtChoice asc) {
Ted Kremenekbc1416d2010-04-30 22:25:53 +00001279 if (!S) {
1280 badCFG = true;
1281 return 0;
1282 }
Jordy Rose17347372011-06-10 08:49:37 +00001283
1284 if (Expr *E = dyn_cast<Expr>(S))
1285 S = E->IgnoreParens();
1286
Ted Kremenek93668002009-07-17 22:18:43 +00001287 switch (S->getStmtClass()) {
1288 default:
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00001289 return VisitStmt(S, asc);
Ted Kremenek93668002009-07-17 22:18:43 +00001290
1291 case Stmt::AddrLabelExprClass:
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00001292 return VisitAddrLabelExpr(cast<AddrLabelExpr>(S), asc);
Mike Stump11289f42009-09-09 15:08:12 +00001293
John McCallc07a0c72011-02-17 10:25:35 +00001294 case Stmt::BinaryConditionalOperatorClass:
1295 return VisitConditionalOperator(cast<BinaryConditionalOperator>(S), asc);
1296
Ted Kremenek93668002009-07-17 22:18:43 +00001297 case Stmt::BinaryOperatorClass:
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00001298 return VisitBinaryOperator(cast<BinaryOperator>(S), asc);
Mike Stump11289f42009-09-09 15:08:12 +00001299
Ted Kremenek93668002009-07-17 22:18:43 +00001300 case Stmt::BlockExprClass:
Ted Kremeneke2499842012-04-12 20:03:44 +00001301 return VisitNoRecurse(cast<Expr>(S), asc);
Ted Kremenek93668002009-07-17 22:18:43 +00001302
Ted Kremenek93668002009-07-17 22:18:43 +00001303 case Stmt::BreakStmtClass:
1304 return VisitBreakStmt(cast<BreakStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001305
Ted Kremenek93668002009-07-17 22:18:43 +00001306 case Stmt::CallExprClass:
Ted Kremenek128d04d2010-08-31 18:47:34 +00001307 case Stmt::CXXOperatorCallExprClass:
John McCallc67067f2011-05-11 07:19:11 +00001308 case Stmt::CXXMemberCallExprClass:
Richard Smithc67fdd42012-03-07 08:35:16 +00001309 case Stmt::UserDefinedLiteralClass:
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00001310 return VisitCallExpr(cast<CallExpr>(S), asc);
Mike Stump11289f42009-09-09 15:08:12 +00001311
Ted Kremenek93668002009-07-17 22:18:43 +00001312 case Stmt::CaseStmtClass:
1313 return VisitCaseStmt(cast<CaseStmt>(S));
1314
1315 case Stmt::ChooseExprClass:
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00001316 return VisitChooseExpr(cast<ChooseExpr>(S), asc);
Mike Stump11289f42009-09-09 15:08:12 +00001317
Ted Kremenek93668002009-07-17 22:18:43 +00001318 case Stmt::CompoundStmtClass:
1319 return VisitCompoundStmt(cast<CompoundStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001320
Ted Kremenek93668002009-07-17 22:18:43 +00001321 case Stmt::ConditionalOperatorClass:
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00001322 return VisitConditionalOperator(cast<ConditionalOperator>(S), asc);
Mike Stump11289f42009-09-09 15:08:12 +00001323
Ted Kremenek93668002009-07-17 22:18:43 +00001324 case Stmt::ContinueStmtClass:
1325 return VisitContinueStmt(cast<ContinueStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001326
Ted Kremenekb27378c2010-01-19 20:40:33 +00001327 case Stmt::CXXCatchStmtClass:
1328 return VisitCXXCatchStmt(cast<CXXCatchStmt>(S));
1329
John McCall5d413782010-12-06 08:20:24 +00001330 case Stmt::ExprWithCleanupsClass:
1331 return VisitExprWithCleanups(cast<ExprWithCleanups>(S), asc);
Ted Kremenek82bfc862010-08-28 00:19:02 +00001332
Jordan Rosee5d53932012-08-23 18:10:53 +00001333 case Stmt::CXXDefaultArgExprClass:
Richard Smith852c9db2013-04-20 22:23:05 +00001334 case Stmt::CXXDefaultInitExprClass:
Jordan Rosee5d53932012-08-23 18:10:53 +00001335 // FIXME: The expression inside a CXXDefaultArgExpr is owned by the
1336 // called function's declaration, not by the caller. If we simply add
1337 // this expression to the CFG, we could end up with the same Expr
1338 // appearing multiple times.
1339 // PR13385 / <rdar://problem/12156507>
Richard Smith852c9db2013-04-20 22:23:05 +00001340 //
1341 // It's likewise possible for multiple CXXDefaultInitExprs for the same
1342 // expression to be used in the same function (through aggregate
1343 // initialization).
Jordan Rosee5d53932012-08-23 18:10:53 +00001344 return VisitStmt(S, asc);
1345
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00001346 case Stmt::CXXBindTemporaryExprClass:
1347 return VisitCXXBindTemporaryExpr(cast<CXXBindTemporaryExpr>(S), asc);
1348
Zhongxing Xu0b51d4d2010-11-01 06:46:05 +00001349 case Stmt::CXXConstructExprClass:
1350 return VisitCXXConstructExpr(cast<CXXConstructExpr>(S), asc);
1351
Jordan Rosec9176072014-01-13 17:59:19 +00001352 case Stmt::CXXNewExprClass:
1353 return VisitCXXNewExpr(cast<CXXNewExpr>(S), asc);
1354
Jordan Rosed2f40792013-09-03 17:00:57 +00001355 case Stmt::CXXDeleteExprClass:
1356 return VisitCXXDeleteExpr(cast<CXXDeleteExpr>(S), asc);
1357
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00001358 case Stmt::CXXFunctionalCastExprClass:
1359 return VisitCXXFunctionalCastExpr(cast<CXXFunctionalCastExpr>(S), asc);
1360
Zhongxing Xu0b51d4d2010-11-01 06:46:05 +00001361 case Stmt::CXXTemporaryObjectExprClass:
1362 return VisitCXXTemporaryObjectExpr(cast<CXXTemporaryObjectExpr>(S), asc);
1363
Ted Kremenekb27378c2010-01-19 20:40:33 +00001364 case Stmt::CXXThrowExprClass:
1365 return VisitCXXThrowExpr(cast<CXXThrowExpr>(S));
Ted Kremenekdc03bd02010-08-02 23:46:59 +00001366
Ted Kremenekb27378c2010-01-19 20:40:33 +00001367 case Stmt::CXXTryStmtClass:
1368 return VisitCXXTryStmt(cast<CXXTryStmt>(S));
Ted Kremenekdc03bd02010-08-02 23:46:59 +00001369
Richard Smith02e85f32011-04-14 22:09:26 +00001370 case Stmt::CXXForRangeStmtClass:
1371 return VisitCXXForRangeStmt(cast<CXXForRangeStmt>(S));
1372
Ted Kremenek93668002009-07-17 22:18:43 +00001373 case Stmt::DeclStmtClass:
1374 return VisitDeclStmt(cast<DeclStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001375
Ted Kremenek93668002009-07-17 22:18:43 +00001376 case Stmt::DefaultStmtClass:
1377 return VisitDefaultStmt(cast<DefaultStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001378
Ted Kremenek93668002009-07-17 22:18:43 +00001379 case Stmt::DoStmtClass:
1380 return VisitDoStmt(cast<DoStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001381
Ted Kremenek93668002009-07-17 22:18:43 +00001382 case Stmt::ForStmtClass:
1383 return VisitForStmt(cast<ForStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001384
Ted Kremenek93668002009-07-17 22:18:43 +00001385 case Stmt::GotoStmtClass:
1386 return VisitGotoStmt(cast<GotoStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001387
Ted Kremenek93668002009-07-17 22:18:43 +00001388 case Stmt::IfStmtClass:
1389 return VisitIfStmt(cast<IfStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001390
Ted Kremenek8219b822010-12-16 07:46:53 +00001391 case Stmt::ImplicitCastExprClass:
1392 return VisitImplicitCastExpr(cast<ImplicitCastExpr>(S), asc);
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00001393
Ted Kremenek93668002009-07-17 22:18:43 +00001394 case Stmt::IndirectGotoStmtClass:
1395 return VisitIndirectGotoStmt(cast<IndirectGotoStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001396
Ted Kremenek93668002009-07-17 22:18:43 +00001397 case Stmt::LabelStmtClass:
1398 return VisitLabelStmt(cast<LabelStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001399
Ted Kremenekda76a942012-04-12 20:34:52 +00001400 case Stmt::LambdaExprClass:
1401 return VisitLambdaExpr(cast<LambdaExpr>(S), asc);
1402
Ted Kremenek5868ec62010-04-11 17:02:10 +00001403 case Stmt::MemberExprClass:
1404 return VisitMemberExpr(cast<MemberExpr>(S), asc);
1405
Ted Kremenek04268232011-11-05 00:10:15 +00001406 case Stmt::NullStmtClass:
1407 return Block;
1408
Ted Kremenek93668002009-07-17 22:18:43 +00001409 case Stmt::ObjCAtCatchStmtClass:
Mike Stump11289f42009-09-09 15:08:12 +00001410 return VisitObjCAtCatchStmt(cast<ObjCAtCatchStmt>(S));
1411
Ted Kremenek5022f1d2012-03-06 23:40:47 +00001412 case Stmt::ObjCAutoreleasePoolStmtClass:
1413 return VisitObjCAutoreleasePoolStmt(cast<ObjCAutoreleasePoolStmt>(S));
1414
Ted Kremenek93668002009-07-17 22:18:43 +00001415 case Stmt::ObjCAtSynchronizedStmtClass:
1416 return VisitObjCAtSynchronizedStmt(cast<ObjCAtSynchronizedStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001417
Ted Kremenek93668002009-07-17 22:18:43 +00001418 case Stmt::ObjCAtThrowStmtClass:
1419 return VisitObjCAtThrowStmt(cast<ObjCAtThrowStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001420
Ted Kremenek93668002009-07-17 22:18:43 +00001421 case Stmt::ObjCAtTryStmtClass:
1422 return VisitObjCAtTryStmt(cast<ObjCAtTryStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001423
Ted Kremenek93668002009-07-17 22:18:43 +00001424 case Stmt::ObjCForCollectionStmtClass:
1425 return VisitObjCForCollectionStmt(cast<ObjCForCollectionStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001426
Ted Kremenek04268232011-11-05 00:10:15 +00001427 case Stmt::OpaqueValueExprClass:
Ted Kremenek93668002009-07-17 22:18:43 +00001428 return Block;
Mike Stump11289f42009-09-09 15:08:12 +00001429
John McCallfe96e0b2011-11-06 09:01:30 +00001430 case Stmt::PseudoObjectExprClass:
1431 return VisitPseudoObjectExpr(cast<PseudoObjectExpr>(S));
1432
Ted Kremenek93668002009-07-17 22:18:43 +00001433 case Stmt::ReturnStmtClass:
1434 return VisitReturnStmt(cast<ReturnStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001435
Peter Collingbournee190dee2011-03-11 19:24:49 +00001436 case Stmt::UnaryExprOrTypeTraitExprClass:
1437 return VisitUnaryExprOrTypeTraitExpr(cast<UnaryExprOrTypeTraitExpr>(S),
1438 asc);
Mike Stump11289f42009-09-09 15:08:12 +00001439
Ted Kremenek93668002009-07-17 22:18:43 +00001440 case Stmt::StmtExprClass:
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00001441 return VisitStmtExpr(cast<StmtExpr>(S), asc);
Mike Stump11289f42009-09-09 15:08:12 +00001442
Ted Kremenek93668002009-07-17 22:18:43 +00001443 case Stmt::SwitchStmtClass:
1444 return VisitSwitchStmt(cast<SwitchStmt>(S));
Mike Stump11289f42009-09-09 15:08:12 +00001445
Zhanyong Wan6dace612010-11-22 08:45:56 +00001446 case Stmt::UnaryOperatorClass:
1447 return VisitUnaryOperator(cast<UnaryOperator>(S), asc);
1448
Ted Kremenek93668002009-07-17 22:18:43 +00001449 case Stmt::WhileStmtClass:
1450 return VisitWhileStmt(cast<WhileStmt>(S));
1451 }
1452}
Mike Stump11289f42009-09-09 15:08:12 +00001453
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00001454CFGBlock *CFGBuilder::VisitStmt(Stmt *S, AddStmtChoice asc) {
Ted Kremenek7c58d352011-03-10 01:14:11 +00001455 if (asc.alwaysAdd(*this, S)) {
Ted Kremenek93668002009-07-17 22:18:43 +00001456 autoCreateBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00001457 appendStmt(Block, S);
Mike Stump31feda52009-07-17 01:31:16 +00001458 }
Mike Stump11289f42009-09-09 15:08:12 +00001459
Ted Kremenek93668002009-07-17 22:18:43 +00001460 return VisitChildren(S);
Ted Kremenek9e248872007-08-27 21:27:44 +00001461}
Mike Stump31feda52009-07-17 01:31:16 +00001462
Ted Kremenek93668002009-07-17 22:18:43 +00001463/// VisitChildren - Visit the children of a Stmt.
Ted Kremenek8ae67872013-02-05 22:00:19 +00001464CFGBlock *CFGBuilder::VisitChildren(Stmt *S) {
1465 CFGBlock *B = Block;
Ted Kremenek828f6312011-02-21 22:11:26 +00001466
Ted Kremenek8ae67872013-02-05 22:00:19 +00001467 // Visit the children in their reverse order so that they appear in
1468 // left-to-right (natural) order in the CFG.
1469 reverse_children RChildren(S);
1470 for (reverse_children::iterator I = RChildren.begin(), E = RChildren.end();
1471 I != E; ++I) {
1472 if (Stmt *Child = *I)
1473 if (CFGBlock *R = Visit(Child))
1474 B = R;
1475 }
1476 return B;
Ted Kremenek9e248872007-08-27 21:27:44 +00001477}
Mike Stump11289f42009-09-09 15:08:12 +00001478
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00001479CFGBlock *CFGBuilder::VisitAddrLabelExpr(AddrLabelExpr *A,
1480 AddStmtChoice asc) {
Ted Kremenek93668002009-07-17 22:18:43 +00001481 AddressTakenLabels.insert(A->getLabel());
Ted Kremenek9e248872007-08-27 21:27:44 +00001482
Ted Kremenek7c58d352011-03-10 01:14:11 +00001483 if (asc.alwaysAdd(*this, A)) {
Ted Kremenek93668002009-07-17 22:18:43 +00001484 autoCreateBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00001485 appendStmt(Block, A);
Ted Kremenek93668002009-07-17 22:18:43 +00001486 }
Ted Kremenek81e14852007-08-27 19:46:09 +00001487
Ted Kremenek9aae5132007-08-23 21:42:29 +00001488 return Block;
1489}
Mike Stump11289f42009-09-09 15:08:12 +00001490
Zhanyong Wan6dace612010-11-22 08:45:56 +00001491CFGBlock *CFGBuilder::VisitUnaryOperator(UnaryOperator *U,
Ted Kremenek8219b822010-12-16 07:46:53 +00001492 AddStmtChoice asc) {
Ted Kremenek7c58d352011-03-10 01:14:11 +00001493 if (asc.alwaysAdd(*this, U)) {
Zhanyong Wan6dace612010-11-22 08:45:56 +00001494 autoCreateBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00001495 appendStmt(Block, U);
Zhanyong Wan6dace612010-11-22 08:45:56 +00001496 }
1497
Ted Kremenek8219b822010-12-16 07:46:53 +00001498 return Visit(U->getSubExpr(), AddStmtChoice());
Zhanyong Wan6dace612010-11-22 08:45:56 +00001499}
1500
Ted Kremeneka16436f2012-07-14 05:04:06 +00001501CFGBlock *CFGBuilder::VisitLogicalOperator(BinaryOperator *B) {
1502 CFGBlock *ConfluenceBlock = Block ? Block : createBlock();
1503 appendStmt(ConfluenceBlock, B);
Mike Stump11289f42009-09-09 15:08:12 +00001504
Ted Kremeneka16436f2012-07-14 05:04:06 +00001505 if (badCFG)
1506 return 0;
1507
Ted Kremenekb50e7162012-07-14 05:04:10 +00001508 return VisitLogicalOperator(B, 0, ConfluenceBlock, ConfluenceBlock).first;
1509}
1510
1511std::pair<CFGBlock*, CFGBlock*>
1512CFGBuilder::VisitLogicalOperator(BinaryOperator *B,
1513 Stmt *Term,
1514 CFGBlock *TrueBlock,
1515 CFGBlock *FalseBlock) {
1516
1517 // Introspect the RHS. If it is a nested logical operation, we recursively
1518 // build the CFG using this function. Otherwise, resort to default
1519 // CFG construction behavior.
1520 Expr *RHS = B->getRHS()->IgnoreParens();
1521 CFGBlock *RHSBlock, *ExitBlock;
1522
1523 do {
1524 if (BinaryOperator *B_RHS = dyn_cast<BinaryOperator>(RHS))
1525 if (B_RHS->isLogicalOp()) {
Benjamin Kramer867ea1d2014-03-02 13:01:17 +00001526 std::tie(RHSBlock, ExitBlock) =
Ted Kremenekb50e7162012-07-14 05:04:10 +00001527 VisitLogicalOperator(B_RHS, Term, TrueBlock, FalseBlock);
1528 break;
1529 }
1530
1531 // The RHS is not a nested logical operation. Don't push the terminator
1532 // down further, but instead visit RHS and construct the respective
1533 // pieces of the CFG, and link up the RHSBlock with the terminator
1534 // we have been provided.
1535 ExitBlock = RHSBlock = createBlock(false);
1536
1537 if (!Term) {
1538 assert(TrueBlock == FalseBlock);
1539 addSuccessor(RHSBlock, TrueBlock);
1540 }
1541 else {
1542 RHSBlock->setTerminator(Term);
1543 TryResult KnownVal = tryEvaluateBool(RHS);
Richard Trieuf935b562014-04-05 05:17:01 +00001544 if (!KnownVal.isKnown())
1545 KnownVal = tryEvaluateBool(B);
Ted Kremenek782f0032014-03-07 02:25:53 +00001546 addSuccessor(RHSBlock, TrueBlock, !KnownVal.isFalse());
1547 addSuccessor(RHSBlock, FalseBlock, !KnownVal.isTrue());
Ted Kremenekb50e7162012-07-14 05:04:10 +00001548 }
1549
1550 Block = RHSBlock;
1551 RHSBlock = addStmt(RHS);
1552 }
1553 while (false);
1554
1555 if (badCFG)
1556 return std::make_pair((CFGBlock*)0, (CFGBlock*)0);
1557
1558 // Generate the blocks for evaluating the LHS.
1559 Expr *LHS = B->getLHS()->IgnoreParens();
1560
1561 if (BinaryOperator *B_LHS = dyn_cast<BinaryOperator>(LHS))
1562 if (B_LHS->isLogicalOp()) {
1563 if (B->getOpcode() == BO_LOr)
1564 FalseBlock = RHSBlock;
1565 else
1566 TrueBlock = RHSBlock;
1567
1568 // For the LHS, treat 'B' as the terminator that we want to sink
1569 // into the nested branch. The RHS always gets the top-most
1570 // terminator.
1571 return VisitLogicalOperator(B_LHS, B, TrueBlock, FalseBlock);
1572 }
1573
1574 // Create the block evaluating the LHS.
1575 // This contains the '&&' or '||' as the terminator.
Ted Kremeneka16436f2012-07-14 05:04:06 +00001576 CFGBlock *LHSBlock = createBlock(false);
1577 LHSBlock->setTerminator(B);
1578
Ted Kremeneka16436f2012-07-14 05:04:06 +00001579 Block = LHSBlock;
Ted Kremenekb50e7162012-07-14 05:04:10 +00001580 CFGBlock *EntryLHSBlock = addStmt(LHS);
1581
1582 if (badCFG)
1583 return std::make_pair((CFGBlock*)0, (CFGBlock*)0);
Ted Kremeneka16436f2012-07-14 05:04:06 +00001584
1585 // See if this is a known constant.
Ted Kremenekb50e7162012-07-14 05:04:10 +00001586 TryResult KnownVal = tryEvaluateBool(LHS);
Ted Kremeneka16436f2012-07-14 05:04:06 +00001587
1588 // Now link the LHSBlock with RHSBlock.
1589 if (B->getOpcode() == BO_LOr) {
Ted Kremenek782f0032014-03-07 02:25:53 +00001590 addSuccessor(LHSBlock, TrueBlock, !KnownVal.isFalse());
1591 addSuccessor(LHSBlock, RHSBlock, !KnownVal.isTrue());
Ted Kremeneka16436f2012-07-14 05:04:06 +00001592 } else {
1593 assert(B->getOpcode() == BO_LAnd);
Ted Kremenek782f0032014-03-07 02:25:53 +00001594 addSuccessor(LHSBlock, RHSBlock, !KnownVal.isFalse());
1595 addSuccessor(LHSBlock, FalseBlock, !KnownVal.isTrue());
Ted Kremeneka16436f2012-07-14 05:04:06 +00001596 }
1597
Ted Kremenekb50e7162012-07-14 05:04:10 +00001598 return std::make_pair(EntryLHSBlock, ExitBlock);
Ted Kremeneka16436f2012-07-14 05:04:06 +00001599}
1600
Ted Kremenekb50e7162012-07-14 05:04:10 +00001601
Ted Kremeneka16436f2012-07-14 05:04:06 +00001602CFGBlock *CFGBuilder::VisitBinaryOperator(BinaryOperator *B,
1603 AddStmtChoice asc) {
1604 // && or ||
1605 if (B->isLogicalOp())
1606 return VisitLogicalOperator(B);
1607
Zhanyong Wan59f09c72010-11-22 19:32:14 +00001608 if (B->getOpcode() == BO_Comma) { // ,
Ted Kremenekfe9b7682009-07-17 22:57:50 +00001609 autoCreateBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00001610 appendStmt(Block, B);
Ted Kremenek93668002009-07-17 22:18:43 +00001611 addStmt(B->getRHS());
1612 return addStmt(B->getLHS());
1613 }
Zhanyong Wan59f09c72010-11-22 19:32:14 +00001614
1615 if (B->isAssignmentOp()) {
Ted Kremenek7c58d352011-03-10 01:14:11 +00001616 if (asc.alwaysAdd(*this, B)) {
Zhongxing Xu41cdf582010-06-03 06:23:18 +00001617 autoCreateBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00001618 appendStmt(Block, B);
Zhongxing Xu41cdf582010-06-03 06:23:18 +00001619 }
Ted Kremenek8219b822010-12-16 07:46:53 +00001620 Visit(B->getLHS());
Marcin Swiderski77232492010-10-24 08:21:40 +00001621 return Visit(B->getRHS());
Zhongxing Xu41cdf582010-06-03 06:23:18 +00001622 }
Mike Stump11289f42009-09-09 15:08:12 +00001623
Ted Kremenek7c58d352011-03-10 01:14:11 +00001624 if (asc.alwaysAdd(*this, B)) {
Marcin Swiderski77232492010-10-24 08:21:40 +00001625 autoCreateBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00001626 appendStmt(Block, B);
Marcin Swiderski77232492010-10-24 08:21:40 +00001627 }
1628
Zhongxing Xud95ccd52010-10-27 03:23:10 +00001629 CFGBlock *RBlock = Visit(B->getRHS());
1630 CFGBlock *LBlock = Visit(B->getLHS());
1631 // If visiting RHS causes us to finish 'Block', e.g. the RHS is a StmtExpr
1632 // containing a DoStmt, and the LHS doesn't create a new block, then we should
1633 // return RBlock. Otherwise we'll incorrectly return NULL.
1634 return (LBlock ? LBlock : RBlock);
Ted Kremenek93668002009-07-17 22:18:43 +00001635}
1636
Ted Kremeneke2499842012-04-12 20:03:44 +00001637CFGBlock *CFGBuilder::VisitNoRecurse(Expr *E, AddStmtChoice asc) {
Ted Kremenek7c58d352011-03-10 01:14:11 +00001638 if (asc.alwaysAdd(*this, E)) {
Ted Kremenek470bfa42009-11-25 01:34:30 +00001639 autoCreateBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00001640 appendStmt(Block, E);
Ted Kremenek470bfa42009-11-25 01:34:30 +00001641 }
1642 return Block;
Ted Kremenek93668002009-07-17 22:18:43 +00001643}
1644
Ted Kremenek93668002009-07-17 22:18:43 +00001645CFGBlock *CFGBuilder::VisitBreakStmt(BreakStmt *B) {
1646 // "break" is a control-flow statement. Thus we stop processing the current
1647 // block.
Zhongxing Xu33dfc072010-09-06 07:32:31 +00001648 if (badCFG)
1649 return 0;
Mike Stump11289f42009-09-09 15:08:12 +00001650
Ted Kremenek93668002009-07-17 22:18:43 +00001651 // Now create a new block that ends with the break statement.
1652 Block = createBlock(false);
1653 Block->setTerminator(B);
Mike Stump11289f42009-09-09 15:08:12 +00001654
Ted Kremenek93668002009-07-17 22:18:43 +00001655 // If there is no target for the break, then we are looking at an incomplete
1656 // AST. This means that the CFG cannot be constructed.
Ted Kremenekef81e9e2011-01-07 19:37:16 +00001657 if (BreakJumpTarget.block) {
1658 addAutomaticObjDtors(ScopePos, BreakJumpTarget.scopePosition, B);
1659 addSuccessor(Block, BreakJumpTarget.block);
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00001660 } else
Ted Kremenek93668002009-07-17 22:18:43 +00001661 badCFG = true;
Mike Stump11289f42009-09-09 15:08:12 +00001662
1663
Ted Kremenek9aae5132007-08-23 21:42:29 +00001664 return Block;
1665}
Mike Stump11289f42009-09-09 15:08:12 +00001666
Sebastian Redl31ad7542011-03-13 17:09:40 +00001667static bool CanThrow(Expr *E, ASTContext &Ctx) {
Mike Stump04c68512010-01-21 15:20:48 +00001668 QualType Ty = E->getType();
1669 if (Ty->isFunctionPointerType())
1670 Ty = Ty->getAs<PointerType>()->getPointeeType();
1671 else if (Ty->isBlockPointerType())
1672 Ty = Ty->getAs<BlockPointerType>()->getPointeeType();
Ted Kremenekdc03bd02010-08-02 23:46:59 +00001673
Mike Stump04c68512010-01-21 15:20:48 +00001674 const FunctionType *FT = Ty->getAs<FunctionType>();
1675 if (FT) {
1676 if (const FunctionProtoType *Proto = dyn_cast<FunctionProtoType>(FT))
Richard Smithd3b5c9082012-07-27 04:22:15 +00001677 if (!isUnresolvedExceptionSpec(Proto->getExceptionSpecType()) &&
Richard Smithf623c962012-04-17 00:58:00 +00001678 Proto->isNothrow(Ctx))
Mike Stump04c68512010-01-21 15:20:48 +00001679 return false;
1680 }
1681 return true;
1682}
1683
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00001684CFGBlock *CFGBuilder::VisitCallExpr(CallExpr *C, AddStmtChoice asc) {
John McCallc67067f2011-05-11 07:19:11 +00001685 // Compute the callee type.
1686 QualType calleeType = C->getCallee()->getType();
1687 if (calleeType == Context->BoundMemberTy) {
1688 QualType boundType = Expr::findBoundMemberType(C->getCallee());
1689
1690 // We should only get a null bound type if processing a dependent
1691 // CFG. Recover by assuming nothing.
1692 if (!boundType.isNull()) calleeType = boundType;
Ted Kremenek93668002009-07-17 22:18:43 +00001693 }
Mike Stump8c5d7992009-07-25 21:26:53 +00001694
John McCallc67067f2011-05-11 07:19:11 +00001695 // If this is a call to a no-return function, this stops the block here.
1696 bool NoReturn = getFunctionExtInfo(*calleeType).getNoReturn();
1697
Mike Stump04c68512010-01-21 15:20:48 +00001698 bool AddEHEdge = false;
Mike Stump92244b02010-01-19 22:00:14 +00001699
1700 // Languages without exceptions are assumed to not throw.
David Blaikiebbafb8a2012-03-11 07:00:24 +00001701 if (Context->getLangOpts().Exceptions) {
Ted Kremeneke97b1eb2010-09-14 23:41:16 +00001702 if (BuildOpts.AddEHEdges)
Mike Stump04c68512010-01-21 15:20:48 +00001703 AddEHEdge = true;
Mike Stump92244b02010-01-19 22:00:14 +00001704 }
1705
Jordan Rose5374c072013-08-19 16:27:28 +00001706 // If this is a call to a builtin function, it might not actually evaluate
1707 // its arguments. Don't add them to the CFG if this is the case.
1708 bool OmitArguments = false;
1709
Mike Stump92244b02010-01-19 22:00:14 +00001710 if (FunctionDecl *FD = C->getDirectCallee()) {
Richard Smith10876ef2013-01-17 01:30:42 +00001711 if (FD->isNoReturn())
Mike Stump8c5d7992009-07-25 21:26:53 +00001712 NoReturn = true;
Mike Stump92244b02010-01-19 22:00:14 +00001713 if (FD->hasAttr<NoThrowAttr>())
Mike Stump04c68512010-01-21 15:20:48 +00001714 AddEHEdge = false;
Jordan Rose5374c072013-08-19 16:27:28 +00001715 if (FD->getBuiltinID() == Builtin::BI__builtin_object_size)
1716 OmitArguments = true;
Mike Stump92244b02010-01-19 22:00:14 +00001717 }
Mike Stump8c5d7992009-07-25 21:26:53 +00001718
Sebastian Redl31ad7542011-03-13 17:09:40 +00001719 if (!CanThrow(C->getCallee(), *Context))
Mike Stump04c68512010-01-21 15:20:48 +00001720 AddEHEdge = false;
1721
Jordan Rose5374c072013-08-19 16:27:28 +00001722 if (OmitArguments) {
1723 assert(!NoReturn && "noreturn calls with unevaluated args not implemented");
1724 assert(!AddEHEdge && "EH calls with unevaluated args not implemented");
1725 autoCreateBlock();
1726 appendStmt(Block, C);
1727 return Visit(C->getCallee());
1728 }
1729
1730 if (!NoReturn && !AddEHEdge) {
Zhanyong Wanb5d11c12010-11-24 03:28:53 +00001731 return VisitStmt(C, asc.withAlwaysAdd(true));
Jordan Rose5374c072013-08-19 16:27:28 +00001732 }
Mike Stump11289f42009-09-09 15:08:12 +00001733
Mike Stump92244b02010-01-19 22:00:14 +00001734 if (Block) {
1735 Succ = Block;
Zhongxing Xu33dfc072010-09-06 07:32:31 +00001736 if (badCFG)
Mike Stump92244b02010-01-19 22:00:14 +00001737 return 0;
1738 }
Mike Stump11289f42009-09-09 15:08:12 +00001739
Chandler Carrutha70991b2011-09-13 09:13:49 +00001740 if (NoReturn)
1741 Block = createNoReturnBlock();
1742 else
1743 Block = createBlock();
1744
Ted Kremenek2866bab2011-03-10 01:14:08 +00001745 appendStmt(Block, C);
Mike Stump8c5d7992009-07-25 21:26:53 +00001746
Mike Stump04c68512010-01-21 15:20:48 +00001747 if (AddEHEdge) {
Mike Stump92244b02010-01-19 22:00:14 +00001748 // Add exceptional edges.
1749 if (TryTerminatedBlock)
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00001750 addSuccessor(Block, TryTerminatedBlock);
Mike Stump92244b02010-01-19 22:00:14 +00001751 else
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00001752 addSuccessor(Block, &cfg->getExit());
Mike Stump92244b02010-01-19 22:00:14 +00001753 }
Mike Stump11289f42009-09-09 15:08:12 +00001754
Mike Stump8c5d7992009-07-25 21:26:53 +00001755 return VisitChildren(C);
Ted Kremenek93668002009-07-17 22:18:43 +00001756}
Ted Kremenek9aae5132007-08-23 21:42:29 +00001757
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00001758CFGBlock *CFGBuilder::VisitChooseExpr(ChooseExpr *C,
1759 AddStmtChoice asc) {
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001760 CFGBlock *ConfluenceBlock = Block ? Block : createBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00001761 appendStmt(ConfluenceBlock, C);
Zhongxing Xu33dfc072010-09-06 07:32:31 +00001762 if (badCFG)
Ted Kremenek21822592009-07-17 18:20:32 +00001763 return 0;
Mike Stump11289f42009-09-09 15:08:12 +00001764
Zhanyong Wanb5d11c12010-11-24 03:28:53 +00001765 AddStmtChoice alwaysAdd = asc.withAlwaysAdd(true);
Ted Kremenek21822592009-07-17 18:20:32 +00001766 Succ = ConfluenceBlock;
1767 Block = NULL;
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001768 CFGBlock *LHSBlock = Visit(C->getLHS(), alwaysAdd);
Zhongxing Xu33dfc072010-09-06 07:32:31 +00001769 if (badCFG)
Ted Kremenek21822592009-07-17 18:20:32 +00001770 return 0;
Mike Stump11289f42009-09-09 15:08:12 +00001771
Ted Kremenek21822592009-07-17 18:20:32 +00001772 Succ = ConfluenceBlock;
1773 Block = NULL;
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001774 CFGBlock *RHSBlock = Visit(C->getRHS(), alwaysAdd);
Zhongxing Xu33dfc072010-09-06 07:32:31 +00001775 if (badCFG)
Ted Kremenek21822592009-07-17 18:20:32 +00001776 return 0;
Mike Stump11289f42009-09-09 15:08:12 +00001777
Ted Kremenek21822592009-07-17 18:20:32 +00001778 Block = createBlock(false);
Mike Stump773582d2009-07-23 23:25:26 +00001779 // See if this is a known constant.
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00001780 const TryResult& KnownVal = tryEvaluateBool(C->getCond());
1781 addSuccessor(Block, KnownVal.isFalse() ? NULL : LHSBlock);
1782 addSuccessor(Block, KnownVal.isTrue() ? NULL : RHSBlock);
Ted Kremenek21822592009-07-17 18:20:32 +00001783 Block->setTerminator(C);
Mike Stump11289f42009-09-09 15:08:12 +00001784 return addStmt(C->getCond());
Ted Kremenek21822592009-07-17 18:20:32 +00001785}
Mike Stump11289f42009-09-09 15:08:12 +00001786
1787
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001788CFGBlock *CFGBuilder::VisitCompoundStmt(CompoundStmt *C) {
Marcin Swiderski667ffec2010-10-01 00:23:17 +00001789 addLocalScopeAndDtors(C);
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001790 CFGBlock *LastBlock = Block;
Ted Kremenek93668002009-07-17 22:18:43 +00001791
1792 for (CompoundStmt::reverse_body_iterator I=C->body_rbegin(), E=C->body_rend();
1793 I != E; ++I ) {
Ted Kremenek4f2ab5a2010-08-17 21:00:06 +00001794 // If we hit a segment of code just containing ';' (NullStmts), we can
1795 // get a null block back. In such cases, just use the LastBlock
1796 if (CFGBlock *newBlock = addStmt(*I))
1797 LastBlock = newBlock;
Mike Stump11289f42009-09-09 15:08:12 +00001798
Ted Kremenekce499c22009-08-27 23:16:26 +00001799 if (badCFG)
1800 return NULL;
Mike Stump11289f42009-09-09 15:08:12 +00001801 }
Mike Stump92244b02010-01-19 22:00:14 +00001802
Ted Kremenek93668002009-07-17 22:18:43 +00001803 return LastBlock;
1804}
Mike Stump11289f42009-09-09 15:08:12 +00001805
John McCallc07a0c72011-02-17 10:25:35 +00001806CFGBlock *CFGBuilder::VisitConditionalOperator(AbstractConditionalOperator *C,
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00001807 AddStmtChoice asc) {
John McCallc07a0c72011-02-17 10:25:35 +00001808 const BinaryConditionalOperator *BCO = dyn_cast<BinaryConditionalOperator>(C);
1809 const OpaqueValueExpr *opaqueValue = (BCO ? BCO->getOpaqueValue() : NULL);
1810
Ted Kremenek51d40b02009-07-17 18:15:54 +00001811 // Create the confluence block that will "merge" the results of the ternary
1812 // expression.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001813 CFGBlock *ConfluenceBlock = Block ? Block : createBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00001814 appendStmt(ConfluenceBlock, C);
Zhongxing Xu33dfc072010-09-06 07:32:31 +00001815 if (badCFG)
Ted Kremenek51d40b02009-07-17 18:15:54 +00001816 return 0;
Mike Stump11289f42009-09-09 15:08:12 +00001817
Zhanyong Wanb5d11c12010-11-24 03:28:53 +00001818 AddStmtChoice alwaysAdd = asc.withAlwaysAdd(true);
Ted Kremenek5868ec62010-04-11 17:02:10 +00001819
Ted Kremenek51d40b02009-07-17 18:15:54 +00001820 // Create a block for the LHS expression if there is an LHS expression. A
1821 // GCC extension allows LHS to be NULL, causing the condition to be the
1822 // value that is returned instead.
1823 // e.g: x ?: y is shorthand for: x ? x : y;
1824 Succ = ConfluenceBlock;
1825 Block = NULL;
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001826 CFGBlock *LHSBlock = 0;
John McCallc07a0c72011-02-17 10:25:35 +00001827 const Expr *trueExpr = C->getTrueExpr();
1828 if (trueExpr != opaqueValue) {
1829 LHSBlock = Visit(C->getTrueExpr(), alwaysAdd);
Zhongxing Xu33dfc072010-09-06 07:32:31 +00001830 if (badCFG)
Ted Kremenek51d40b02009-07-17 18:15:54 +00001831 return 0;
1832 Block = NULL;
1833 }
Ted Kremenekd8138012011-02-24 03:09:15 +00001834 else
1835 LHSBlock = ConfluenceBlock;
Mike Stump11289f42009-09-09 15:08:12 +00001836
Ted Kremenek51d40b02009-07-17 18:15:54 +00001837 // Create the block for the RHS expression.
1838 Succ = ConfluenceBlock;
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001839 CFGBlock *RHSBlock = Visit(C->getFalseExpr(), alwaysAdd);
Zhongxing Xu33dfc072010-09-06 07:32:31 +00001840 if (badCFG)
Ted Kremenek51d40b02009-07-17 18:15:54 +00001841 return 0;
Mike Stump11289f42009-09-09 15:08:12 +00001842
Richard Smithf676e452012-07-24 21:02:14 +00001843 // If the condition is a logical '&&' or '||', build a more accurate CFG.
1844 if (BinaryOperator *Cond =
1845 dyn_cast<BinaryOperator>(C->getCond()->IgnoreParens()))
1846 if (Cond->isLogicalOp())
1847 return VisitLogicalOperator(Cond, C, LHSBlock, RHSBlock).first;
1848
Ted Kremenek51d40b02009-07-17 18:15:54 +00001849 // Create the block that will contain the condition.
1850 Block = createBlock(false);
Mike Stump11289f42009-09-09 15:08:12 +00001851
Mike Stump773582d2009-07-23 23:25:26 +00001852 // See if this is a known constant.
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00001853 const TryResult& KnownVal = tryEvaluateBool(C->getCond());
Ted Kremenek5a095272014-03-04 21:53:26 +00001854 addSuccessor(Block, LHSBlock, !KnownVal.isFalse());
1855 addSuccessor(Block, RHSBlock, !KnownVal.isTrue());
Ted Kremenek51d40b02009-07-17 18:15:54 +00001856 Block->setTerminator(C);
John McCallc07a0c72011-02-17 10:25:35 +00001857 Expr *condExpr = C->getCond();
John McCall68cc3352011-02-19 03:13:26 +00001858
Ted Kremenekd8138012011-02-24 03:09:15 +00001859 if (opaqueValue) {
1860 // Run the condition expression if it's not trivially expressed in
1861 // terms of the opaque value (or if there is no opaque value).
1862 if (condExpr != opaqueValue)
1863 addStmt(condExpr);
John McCall68cc3352011-02-19 03:13:26 +00001864
Ted Kremenekd8138012011-02-24 03:09:15 +00001865 // Before that, run the common subexpression if there was one.
1866 // At least one of this or the above will be run.
1867 return addStmt(BCO->getCommon());
1868 }
1869
1870 return addStmt(condExpr);
Ted Kremenek51d40b02009-07-17 18:15:54 +00001871}
1872
Ted Kremenek93668002009-07-17 22:18:43 +00001873CFGBlock *CFGBuilder::VisitDeclStmt(DeclStmt *DS) {
Ted Kremenek6878c362011-05-10 18:42:15 +00001874 // Check if the Decl is for an __label__. If so, elide it from the
1875 // CFG entirely.
1876 if (isa<LabelDecl>(*DS->decl_begin()))
1877 return Block;
1878
Ted Kremenek3a601142011-05-24 20:41:31 +00001879 // This case also handles static_asserts.
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001880 if (DS->isSingleDecl())
1881 return VisitDeclSubExpr(DS);
Mike Stump11289f42009-09-09 15:08:12 +00001882
Ted Kremenek93668002009-07-17 22:18:43 +00001883 CFGBlock *B = 0;
Mike Stump11289f42009-09-09 15:08:12 +00001884
Jordan Rose8c6c8a92012-07-20 18:50:48 +00001885 // Build an individual DeclStmt for each decl.
1886 for (DeclStmt::reverse_decl_iterator I = DS->decl_rbegin(),
1887 E = DS->decl_rend();
1888 I != E; ++I) {
Ted Kremenek93668002009-07-17 22:18:43 +00001889 // Get the alignment of the new DeclStmt, padding out to >=8 bytes.
1890 unsigned A = llvm::AlignOf<DeclStmt>::Alignment < 8
1891 ? 8 : llvm::AlignOf<DeclStmt>::Alignment;
Mike Stump11289f42009-09-09 15:08:12 +00001892
Ted Kremenek93668002009-07-17 22:18:43 +00001893 // Allocate the DeclStmt using the BumpPtrAllocator. It will get
1894 // automatically freed with the CFG.
1895 DeclGroupRef DG(*I);
1896 Decl *D = *I;
Mike Stump11289f42009-09-09 15:08:12 +00001897 void *Mem = cfg->getAllocator().Allocate(sizeof(DeclStmt), A);
Ted Kremenek93668002009-07-17 22:18:43 +00001898 DeclStmt *DSNew = new (Mem) DeclStmt(DG, D->getLocation(), GetEndLoc(D));
Jordan Rosecf10ea82013-06-06 21:53:45 +00001899 cfg->addSyntheticDeclStmt(DSNew, DS);
Mike Stump11289f42009-09-09 15:08:12 +00001900
Ted Kremenek93668002009-07-17 22:18:43 +00001901 // Append the fake DeclStmt to block.
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001902 B = VisitDeclSubExpr(DSNew);
Ted Kremenek93668002009-07-17 22:18:43 +00001903 }
Mike Stump11289f42009-09-09 15:08:12 +00001904
1905 return B;
Ted Kremenek93668002009-07-17 22:18:43 +00001906}
Mike Stump11289f42009-09-09 15:08:12 +00001907
Ted Kremenek93668002009-07-17 22:18:43 +00001908/// VisitDeclSubExpr - Utility method to add block-level expressions for
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001909/// DeclStmts and initializers in them.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001910CFGBlock *CFGBuilder::VisitDeclSubExpr(DeclStmt *DS) {
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001911 assert(DS->isSingleDecl() && "Can handle single declarations only.");
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001912 VarDecl *VD = dyn_cast<VarDecl>(DS->getSingleDecl());
Mike Stump11289f42009-09-09 15:08:12 +00001913
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001914 if (!VD) {
Jordan Rose5250b872013-06-03 22:59:41 +00001915 // Of everything that can be declared in a DeclStmt, only VarDecls impact
1916 // runtime semantics.
Ted Kremenek93668002009-07-17 22:18:43 +00001917 return Block;
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001918 }
Mike Stump11289f42009-09-09 15:08:12 +00001919
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001920 bool IsReference = false;
1921 bool HasTemporaries = false;
1922
Ted Kremenek0dd8fee2013-03-28 18:43:15 +00001923 // Guard static initializers under a branch.
Ted Kremenekf82d5782013-03-29 00:42:56 +00001924 CFGBlock *blockAfterStaticInit = 0;
1925
1926 if (BuildOpts.AddStaticInitBranches && VD->isStaticLocal()) {
1927 // For static variables, we need to create a branch to track
1928 // whether or not they are initialized.
1929 if (Block) {
1930 Succ = Block;
1931 Block = 0;
1932 if (badCFG)
1933 return 0;
1934 }
1935 blockAfterStaticInit = Succ;
1936 }
Ted Kremenek0dd8fee2013-03-28 18:43:15 +00001937
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001938 // Destructors of temporaries in initialization expression should be called
1939 // after initialization finishes.
Ted Kremenek93668002009-07-17 22:18:43 +00001940 Expr *Init = VD->getInit();
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001941 if (Init) {
1942 IsReference = VD->getType()->isReferenceType();
John McCall5d413782010-12-06 08:20:24 +00001943 HasTemporaries = isa<ExprWithCleanups>(Init);
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001944
Jordan Rose6d671cc2012-09-05 22:55:23 +00001945 if (BuildOpts.AddTemporaryDtors && HasTemporaries) {
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001946 // Generate destructors for temporaries in initialization expression.
John McCall5d413782010-12-06 08:20:24 +00001947 VisitForTemporaryDtors(cast<ExprWithCleanups>(Init)->getSubExpr(),
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001948 IsReference);
1949 }
1950 }
1951
1952 autoCreateBlock();
Ted Kremenek8219b822010-12-16 07:46:53 +00001953 appendStmt(Block, DS);
Ted Kremenek213d0532012-03-22 05:57:43 +00001954
1955 // Keep track of the last non-null block, as 'Block' can be nulled out
1956 // if the initializer expression is something like a 'while' in a
1957 // statement-expression.
1958 CFGBlock *LastBlock = Block;
Mike Stump11289f42009-09-09 15:08:12 +00001959
Ted Kremenek93668002009-07-17 22:18:43 +00001960 if (Init) {
Ted Kremenek213d0532012-03-22 05:57:43 +00001961 if (HasTemporaries) {
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00001962 // For expression with temporaries go directly to subexpression to omit
1963 // generating destructors for the second time.
Ted Kremenek213d0532012-03-22 05:57:43 +00001964 ExprWithCleanups *EC = cast<ExprWithCleanups>(Init);
1965 if (CFGBlock *newBlock = Visit(EC->getSubExpr()))
1966 LastBlock = newBlock;
1967 }
1968 else {
1969 if (CFGBlock *newBlock = Visit(Init))
1970 LastBlock = newBlock;
1971 }
Ted Kremenek93668002009-07-17 22:18:43 +00001972 }
Mike Stump11289f42009-09-09 15:08:12 +00001973
Ted Kremenek93668002009-07-17 22:18:43 +00001974 // If the type of VD is a VLA, then we must process its size expressions.
John McCall424cec92011-01-19 06:33:43 +00001975 for (const VariableArrayType* VA = FindVA(VD->getType().getTypePtr());
Ted Kremeneke6ee6712012-11-13 00:12:13 +00001976 VA != 0; VA = FindVA(VA->getElementType().getTypePtr())) {
1977 if (CFGBlock *newBlock = addStmt(VA->getSizeExpr()))
1978 LastBlock = newBlock;
1979 }
Mike Stump11289f42009-09-09 15:08:12 +00001980
Marcin Swiderski667ffec2010-10-01 00:23:17 +00001981 // Remove variable from local scope.
1982 if (ScopePos && VD == *ScopePos)
1983 ++ScopePos;
1984
Ted Kremenek338c3aa2013-03-29 00:09:28 +00001985 CFGBlock *B = LastBlock;
Ted Kremenekf82d5782013-03-29 00:42:56 +00001986 if (blockAfterStaticInit) {
Ted Kremenek0dd8fee2013-03-28 18:43:15 +00001987 Succ = B;
Ted Kremenek338c3aa2013-03-29 00:09:28 +00001988 Block = createBlock(false);
1989 Block->setTerminator(DS);
Ted Kremenekf82d5782013-03-29 00:42:56 +00001990 addSuccessor(Block, blockAfterStaticInit);
Ted Kremenek338c3aa2013-03-29 00:09:28 +00001991 addSuccessor(Block, B);
1992 B = Block;
Ted Kremenek0dd8fee2013-03-28 18:43:15 +00001993 }
1994
1995 return B;
Ted Kremenek9aae5132007-08-23 21:42:29 +00001996}
1997
Ted Kremenek5ef32db2011-08-12 23:37:29 +00001998CFGBlock *CFGBuilder::VisitIfStmt(IfStmt *I) {
Mike Stump31feda52009-07-17 01:31:16 +00001999 // We may see an if statement in the middle of a basic block, or it may be the
2000 // first statement we are processing. In either case, we create a new basic
2001 // block. First, we create the blocks for the then...else statements, and
2002 // then we create the block containing the if statement. If we were in the
Ted Kremenek0868eea2009-09-24 18:45:41 +00002003 // middle of a block, we stop processing that block. That block is then the
2004 // implicit successor for the "then" and "else" clauses.
Mike Stump31feda52009-07-17 01:31:16 +00002005
Marcin Swiderskif883ade2010-10-01 00:52:17 +00002006 // Save local scope position because in case of condition variable ScopePos
2007 // won't be restored when traversing AST.
2008 SaveAndRestore<LocalScope::const_iterator> save_scope_pos(ScopePos);
2009
2010 // Create local scope for possible condition variable.
2011 // Store scope position. Add implicit destructor.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002012 if (VarDecl *VD = I->getConditionVariable()) {
Marcin Swiderskif883ade2010-10-01 00:52:17 +00002013 LocalScope::const_iterator BeginScopePos = ScopePos;
2014 addLocalScopeForVarDecl(VD);
2015 addAutomaticObjDtors(ScopePos, BeginScopePos, I);
2016 }
2017
Chris Lattner57540c52011-04-15 05:22:18 +00002018 // The block we were processing is now finished. Make it the successor
Mike Stump31feda52009-07-17 01:31:16 +00002019 // block.
2020 if (Block) {
Ted Kremenek9aae5132007-08-23 21:42:29 +00002021 Succ = Block;
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002022 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002023 return 0;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002024 }
Mike Stump31feda52009-07-17 01:31:16 +00002025
Ted Kremenek0bcdc982009-07-17 18:04:55 +00002026 // Process the false branch.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002027 CFGBlock *ElseBlock = Succ;
Mike Stump31feda52009-07-17 01:31:16 +00002028
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002029 if (Stmt *Else = I->getElse()) {
Ted Kremenek9aae5132007-08-23 21:42:29 +00002030 SaveAndRestore<CFGBlock*> sv(Succ);
Mike Stump31feda52009-07-17 01:31:16 +00002031
Ted Kremenek9aae5132007-08-23 21:42:29 +00002032 // NULL out Block so that the recursive call to Visit will
Mike Stump31feda52009-07-17 01:31:16 +00002033 // create a new basic block.
Ted Kremenek9aae5132007-08-23 21:42:29 +00002034 Block = NULL;
Marcin Swiderskif883ade2010-10-01 00:52:17 +00002035
2036 // If branch is not a compound statement create implicit scope
2037 // and add destructors.
2038 if (!isa<CompoundStmt>(Else))
2039 addLocalScopeAndDtors(Else);
2040
Ted Kremenek93668002009-07-17 22:18:43 +00002041 ElseBlock = addStmt(Else);
Mike Stump31feda52009-07-17 01:31:16 +00002042
Ted Kremenekbbad8ce2007-08-30 18:13:31 +00002043 if (!ElseBlock) // Can occur when the Else body has all NullStmts.
2044 ElseBlock = sv.get();
Ted Kremenek55957a82009-05-02 00:13:27 +00002045 else if (Block) {
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002046 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002047 return 0;
2048 }
Ted Kremenek9aae5132007-08-23 21:42:29 +00002049 }
Mike Stump31feda52009-07-17 01:31:16 +00002050
Ted Kremenek0bcdc982009-07-17 18:04:55 +00002051 // Process the true branch.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002052 CFGBlock *ThenBlock;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002053 {
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002054 Stmt *Then = I->getThen();
Ted Kremenek1362b8b2010-01-19 20:46:35 +00002055 assert(Then);
Ted Kremenek9aae5132007-08-23 21:42:29 +00002056 SaveAndRestore<CFGBlock*> sv(Succ);
Mike Stump31feda52009-07-17 01:31:16 +00002057 Block = NULL;
Marcin Swiderskif883ade2010-10-01 00:52:17 +00002058
2059 // If branch is not a compound statement create implicit scope
2060 // and add destructors.
2061 if (!isa<CompoundStmt>(Then))
2062 addLocalScopeAndDtors(Then);
2063
Ted Kremenek93668002009-07-17 22:18:43 +00002064 ThenBlock = addStmt(Then);
Mike Stump31feda52009-07-17 01:31:16 +00002065
Ted Kremenek1b379512009-04-01 03:52:47 +00002066 if (!ThenBlock) {
2067 // We can reach here if the "then" body has all NullStmts.
2068 // Create an empty block so we can distinguish between true and false
2069 // branches in path-sensitive analyses.
2070 ThenBlock = createBlock(false);
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00002071 addSuccessor(ThenBlock, sv.get());
Mike Stump31feda52009-07-17 01:31:16 +00002072 } else if (Block) {
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002073 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002074 return 0;
Mike Stump31feda52009-07-17 01:31:16 +00002075 }
Ted Kremenek9aae5132007-08-23 21:42:29 +00002076 }
2077
Ted Kremenekb50e7162012-07-14 05:04:10 +00002078 // Specially handle "if (expr1 || ...)" and "if (expr1 && ...)" by
2079 // having these handle the actual control-flow jump. Note that
2080 // if we introduce a condition variable, e.g. "if (int x = exp1 || exp2)"
2081 // we resort to the old control-flow behavior. This special handling
2082 // removes infeasible paths from the control-flow graph by having the
2083 // control-flow transfer of '&&' or '||' go directly into the then/else
2084 // blocks directly.
2085 if (!I->getConditionVariable())
Richard Smithf676e452012-07-24 21:02:14 +00002086 if (BinaryOperator *Cond =
2087 dyn_cast<BinaryOperator>(I->getCond()->IgnoreParens()))
Ted Kremenekb50e7162012-07-14 05:04:10 +00002088 if (Cond->isLogicalOp())
2089 return VisitLogicalOperator(Cond, I, ThenBlock, ElseBlock).first;
2090
Mike Stump31feda52009-07-17 01:31:16 +00002091 // Now create a new block containing the if statement.
Ted Kremenek9aae5132007-08-23 21:42:29 +00002092 Block = createBlock(false);
Mike Stump31feda52009-07-17 01:31:16 +00002093
Ted Kremenek9aae5132007-08-23 21:42:29 +00002094 // Set the terminator of the new block to the If statement.
2095 Block->setTerminator(I);
Mike Stump31feda52009-07-17 01:31:16 +00002096
Mike Stump773582d2009-07-23 23:25:26 +00002097 // See if this is a known constant.
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00002098 const TryResult &KnownVal = tryEvaluateBool(I->getCond());
Mike Stump773582d2009-07-23 23:25:26 +00002099
Ted Kremenekf3898612014-02-27 00:24:03 +00002100 // Add the successors. If we know that specific branches are
2101 // unreachable, inform addSuccessor() of that knowledge.
2102 addSuccessor(Block, ThenBlock, /* isReachable = */ !KnownVal.isFalse());
2103 addSuccessor(Block, ElseBlock, /* isReachable = */ !KnownVal.isTrue());
Mike Stump31feda52009-07-17 01:31:16 +00002104
2105 // Add the condition as the last statement in the new block. This may create
2106 // new blocks as the condition may contain control-flow. Any newly created
2107 // blocks will be pointed to be "Block".
Ted Kremeneke6ee6712012-11-13 00:12:13 +00002108 CFGBlock *LastBlock = addStmt(I->getCond());
Ted Kremenekdc03bd02010-08-02 23:46:59 +00002109
Ted Kremeneka7bcbde2009-12-23 04:49:01 +00002110 // Finally, if the IfStmt contains a condition variable, add both the IfStmt
2111 // and the condition variable initialization to the CFG.
2112 if (VarDecl *VD = I->getConditionVariable()) {
2113 if (Expr *Init = VD->getInit()) {
2114 autoCreateBlock();
Ted Kremenek37881932011-04-04 23:29:12 +00002115 appendStmt(Block, I->getConditionVariableDeclStmt());
Ted Kremeneke6ee6712012-11-13 00:12:13 +00002116 LastBlock = addStmt(Init);
Ted Kremeneka7bcbde2009-12-23 04:49:01 +00002117 }
2118 }
Ted Kremenekdc03bd02010-08-02 23:46:59 +00002119
Ted Kremeneke6ee6712012-11-13 00:12:13 +00002120 return LastBlock;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002121}
Mike Stump31feda52009-07-17 01:31:16 +00002122
2123
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002124CFGBlock *CFGBuilder::VisitReturnStmt(ReturnStmt *R) {
Ted Kremenek0868eea2009-09-24 18:45:41 +00002125 // If we were in the middle of a block we stop processing that block.
Ted Kremenek9aae5132007-08-23 21:42:29 +00002126 //
Mike Stump31feda52009-07-17 01:31:16 +00002127 // NOTE: If a "return" appears in the middle of a block, this means that the
2128 // code afterwards is DEAD (unreachable). We still keep a basic block
2129 // for that code; a simple "mark-and-sweep" from the entry block will be
2130 // able to report such dead blocks.
Ted Kremenek9aae5132007-08-23 21:42:29 +00002131
2132 // Create the new block.
2133 Block = createBlock(false);
Mike Stump31feda52009-07-17 01:31:16 +00002134
Marcin Swiderski667ffec2010-10-01 00:23:17 +00002135 addAutomaticObjDtors(ScopePos, LocalScope::const_iterator(), R);
Pavel Labath921e7652013-09-06 08:12:48 +00002136
2137 // If the one of the destructors does not return, we already have the Exit
2138 // block as a successor.
2139 if (!Block->hasNoReturnElement())
2140 addSuccessor(Block, &cfg->getExit());
Mike Stump31feda52009-07-17 01:31:16 +00002141
2142 // Add the return statement to the block. This may create new blocks if R
2143 // contains control-flow (short-circuit operations).
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00002144 return VisitStmt(R, AddStmtChoice::AlwaysAdd);
Ted Kremenek9aae5132007-08-23 21:42:29 +00002145}
2146
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002147CFGBlock *CFGBuilder::VisitLabelStmt(LabelStmt *L) {
Ted Kremenek9aae5132007-08-23 21:42:29 +00002148 // Get the block of the labeled statement. Add it to our map.
Ted Kremenek93668002009-07-17 22:18:43 +00002149 addStmt(L->getSubStmt());
Chris Lattnerc8e630e2011-02-17 07:39:24 +00002150 CFGBlock *LabelBlock = Block;
Mike Stump31feda52009-07-17 01:31:16 +00002151
Ted Kremenek93668002009-07-17 22:18:43 +00002152 if (!LabelBlock) // This can happen when the body is empty, i.e.
2153 LabelBlock = createBlock(); // scopes that only contains NullStmts.
Mike Stump31feda52009-07-17 01:31:16 +00002154
Chris Lattnerc8e630e2011-02-17 07:39:24 +00002155 assert(LabelMap.find(L->getDecl()) == LabelMap.end() &&
2156 "label already in map");
2157 LabelMap[L->getDecl()] = JumpTarget(LabelBlock, ScopePos);
Mike Stump31feda52009-07-17 01:31:16 +00002158
2159 // Labels partition blocks, so this is the end of the basic block we were
2160 // processing (L is the block's label). Because this is label (and we have
2161 // already processed the substatement) there is no extra control-flow to worry
2162 // about.
Ted Kremenek71eca012007-08-29 23:20:49 +00002163 LabelBlock->setLabel(L);
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002164 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002165 return 0;
Mike Stump31feda52009-07-17 01:31:16 +00002166
2167 // We set Block to NULL to allow lazy creation of a new block (if necessary);
Ted Kremenek9aae5132007-08-23 21:42:29 +00002168 Block = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00002169
Ted Kremenek9aae5132007-08-23 21:42:29 +00002170 // This block is now the implicit successor of other blocks.
2171 Succ = LabelBlock;
Mike Stump31feda52009-07-17 01:31:16 +00002172
Ted Kremenek9aae5132007-08-23 21:42:29 +00002173 return LabelBlock;
2174}
2175
Ted Kremenekda76a942012-04-12 20:34:52 +00002176CFGBlock *CFGBuilder::VisitLambdaExpr(LambdaExpr *E, AddStmtChoice asc) {
2177 CFGBlock *LastBlock = VisitNoRecurse(E, asc);
2178 for (LambdaExpr::capture_init_iterator it = E->capture_init_begin(),
2179 et = E->capture_init_end(); it != et; ++it) {
2180 if (Expr *Init = *it) {
2181 CFGBlock *Tmp = Visit(Init);
2182 if (Tmp != 0)
2183 LastBlock = Tmp;
2184 }
2185 }
2186 return LastBlock;
2187}
2188
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002189CFGBlock *CFGBuilder::VisitGotoStmt(GotoStmt *G) {
Mike Stump31feda52009-07-17 01:31:16 +00002190 // Goto is a control-flow statement. Thus we stop processing the current
2191 // block and create a new one.
Ted Kremenek93668002009-07-17 22:18:43 +00002192
Ted Kremenek9aae5132007-08-23 21:42:29 +00002193 Block = createBlock(false);
2194 Block->setTerminator(G);
Mike Stump31feda52009-07-17 01:31:16 +00002195
2196 // If we already know the mapping to the label block add the successor now.
Ted Kremenek9aae5132007-08-23 21:42:29 +00002197 LabelMapTy::iterator I = LabelMap.find(G->getLabel());
Mike Stump31feda52009-07-17 01:31:16 +00002198
Ted Kremenek9aae5132007-08-23 21:42:29 +00002199 if (I == LabelMap.end())
2200 // We will need to backpatch this block later.
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002201 BackpatchBlocks.push_back(JumpSource(Block, ScopePos));
2202 else {
2203 JumpTarget JT = I->second;
Ted Kremenekef81e9e2011-01-07 19:37:16 +00002204 addAutomaticObjDtors(ScopePos, JT.scopePosition, G);
2205 addSuccessor(Block, JT.block);
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002206 }
Ted Kremenek9aae5132007-08-23 21:42:29 +00002207
Mike Stump31feda52009-07-17 01:31:16 +00002208 return Block;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002209}
2210
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002211CFGBlock *CFGBuilder::VisitForStmt(ForStmt *F) {
2212 CFGBlock *LoopSuccessor = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00002213
Marcin Swiderski6d5ee0c2010-10-01 01:38:14 +00002214 // Save local scope position because in case of condition variable ScopePos
2215 // won't be restored when traversing AST.
2216 SaveAndRestore<LocalScope::const_iterator> save_scope_pos(ScopePos);
2217
2218 // Create local scope for init statement and possible condition variable.
2219 // Add destructor for init statement and condition variable.
2220 // Store scope position for continue statement.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002221 if (Stmt *Init = F->getInit())
Marcin Swiderski6d5ee0c2010-10-01 01:38:14 +00002222 addLocalScopeForStmt(Init);
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002223 LocalScope::const_iterator LoopBeginScopePos = ScopePos;
2224
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002225 if (VarDecl *VD = F->getConditionVariable())
Marcin Swiderski6d5ee0c2010-10-01 01:38:14 +00002226 addLocalScopeForVarDecl(VD);
2227 LocalScope::const_iterator ContinueScopePos = ScopePos;
2228
2229 addAutomaticObjDtors(ScopePos, save_scope_pos.get(), F);
2230
Mike Stump014b3ea2009-07-21 01:12:51 +00002231 // "for" is a control-flow statement. Thus we stop processing the current
2232 // block.
Ted Kremenek9aae5132007-08-23 21:42:29 +00002233 if (Block) {
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002234 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002235 return 0;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002236 LoopSuccessor = Block;
Ted Kremenek93668002009-07-17 22:18:43 +00002237 } else
2238 LoopSuccessor = Succ;
Mike Stump31feda52009-07-17 01:31:16 +00002239
Ted Kremenek304a9532010-05-21 20:30:15 +00002240 // Save the current value for the break targets.
2241 // All breaks should go to the code following the loop.
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002242 SaveAndRestore<JumpTarget> save_break(BreakJumpTarget);
Marcin Swiderski6d5ee0c2010-10-01 01:38:14 +00002243 BreakJumpTarget = JumpTarget(LoopSuccessor, ScopePos);
Ted Kremenek304a9532010-05-21 20:30:15 +00002244
Ted Kremenekb50e7162012-07-14 05:04:10 +00002245 CFGBlock *BodyBlock = 0, *TransitionBlock = 0;
Mike Stump773582d2009-07-23 23:25:26 +00002246
Ted Kremenek9aae5132007-08-23 21:42:29 +00002247 // Now create the loop body.
2248 {
Ted Kremenek1362b8b2010-01-19 20:46:35 +00002249 assert(F->getBody());
Mike Stump31feda52009-07-17 01:31:16 +00002250
Ted Kremenekb50e7162012-07-14 05:04:10 +00002251 // Save the current values for Block, Succ, continue and break targets.
2252 SaveAndRestore<CFGBlock*> save_Block(Block), save_Succ(Succ);
2253 SaveAndRestore<JumpTarget> save_continue(ContinueJumpTarget);
Mike Stump31feda52009-07-17 01:31:16 +00002254
Ted Kremenekb50e7162012-07-14 05:04:10 +00002255 // Create an empty block to represent the transition block for looping back
2256 // to the head of the loop. If we have increment code, it will
2257 // go in this block as well.
2258 Block = Succ = TransitionBlock = createBlock(false);
2259 TransitionBlock->setLoopTarget(F);
Mike Stump31feda52009-07-17 01:31:16 +00002260
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002261 if (Stmt *I = F->getInc()) {
Mike Stump31feda52009-07-17 01:31:16 +00002262 // Generate increment code in its own basic block. This is the target of
2263 // continue statements.
Ted Kremenek93668002009-07-17 22:18:43 +00002264 Succ = addStmt(I);
Ted Kremenekb0746ca2008-09-04 21:48:47 +00002265 }
Mike Stump31feda52009-07-17 01:31:16 +00002266
Ted Kremenek902393b2009-04-28 00:51:56 +00002267 // Finish up the increment (or empty) block if it hasn't been already.
2268 if (Block) {
2269 assert(Block == Succ);
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002270 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002271 return 0;
Ted Kremenek902393b2009-04-28 00:51:56 +00002272 Block = 0;
2273 }
Mike Stump31feda52009-07-17 01:31:16 +00002274
Ted Kremenekb50e7162012-07-14 05:04:10 +00002275 // The starting block for the loop increment is the block that should
2276 // represent the 'loop target' for looping back to the start of the loop.
2277 ContinueJumpTarget = JumpTarget(Succ, ContinueScopePos);
2278 ContinueJumpTarget.block->setLoopTarget(F);
Mike Stump31feda52009-07-17 01:31:16 +00002279
Ted Kremenekb50e7162012-07-14 05:04:10 +00002280 // Loop body should end with destructor of Condition variable (if any).
2281 addAutomaticObjDtors(ScopePos, LoopBeginScopePos, F);
Ted Kremenek902393b2009-04-28 00:51:56 +00002282
Marcin Swiderski6d5ee0c2010-10-01 01:38:14 +00002283 // If body is not a compound statement create implicit scope
2284 // and add destructors.
2285 if (!isa<CompoundStmt>(F->getBody()))
2286 addLocalScopeAndDtors(F->getBody());
2287
Mike Stump31feda52009-07-17 01:31:16 +00002288 // Now populate the body block, and in the process create new blocks as we
2289 // walk the body of the loop.
Ted Kremenekb50e7162012-07-14 05:04:10 +00002290 BodyBlock = addStmt(F->getBody());
Ted Kremeneke9610502007-08-30 18:39:40 +00002291
Ted Kremenekb50e7162012-07-14 05:04:10 +00002292 if (!BodyBlock) {
2293 // In the case of "for (...;...;...);" we can have a null BodyBlock.
2294 // Use the continue jump target as the proxy for the body.
2295 BodyBlock = ContinueJumpTarget.block;
2296 }
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002297 else if (badCFG)
Ted Kremenek30754282009-07-24 04:47:11 +00002298 return 0;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002299 }
Ted Kremenekb50e7162012-07-14 05:04:10 +00002300
2301 // Because of short-circuit evaluation, the condition of the loop can span
2302 // multiple basic blocks. Thus we need the "Entry" and "Exit" blocks that
2303 // evaluate the condition.
2304 CFGBlock *EntryConditionBlock = 0, *ExitConditionBlock = 0;
Mike Stump31feda52009-07-17 01:31:16 +00002305
Ted Kremenekb50e7162012-07-14 05:04:10 +00002306 do {
2307 Expr *C = F->getCond();
2308
2309 // Specially handle logical operators, which have a slightly
2310 // more optimal CFG representation.
Richard Smithf676e452012-07-24 21:02:14 +00002311 if (BinaryOperator *Cond =
2312 dyn_cast_or_null<BinaryOperator>(C ? C->IgnoreParens() : 0))
Ted Kremenekb50e7162012-07-14 05:04:10 +00002313 if (Cond->isLogicalOp()) {
Benjamin Kramer867ea1d2014-03-02 13:01:17 +00002314 std::tie(EntryConditionBlock, ExitConditionBlock) =
Ted Kremenekb50e7162012-07-14 05:04:10 +00002315 VisitLogicalOperator(Cond, F, BodyBlock, LoopSuccessor);
2316 break;
2317 }
2318
2319 // The default case when not handling logical operators.
2320 EntryConditionBlock = ExitConditionBlock = createBlock(false);
2321 ExitConditionBlock->setTerminator(F);
2322
2323 // See if this is a known constant.
2324 TryResult KnownVal(true);
2325
2326 if (C) {
2327 // Now add the actual condition to the condition block.
2328 // Because the condition itself may contain control-flow, new blocks may
2329 // be created. Thus we update "Succ" after adding the condition.
2330 Block = ExitConditionBlock;
2331 EntryConditionBlock = addStmt(C);
2332
2333 // If this block contains a condition variable, add both the condition
2334 // variable and initializer to the CFG.
2335 if (VarDecl *VD = F->getConditionVariable()) {
2336 if (Expr *Init = VD->getInit()) {
2337 autoCreateBlock();
2338 appendStmt(Block, F->getConditionVariableDeclStmt());
2339 EntryConditionBlock = addStmt(Init);
2340 assert(Block == EntryConditionBlock);
2341 }
2342 }
2343
2344 if (Block && badCFG)
2345 return 0;
2346
2347 KnownVal = tryEvaluateBool(C);
2348 }
2349
2350 // Add the loop body entry as a successor to the condition.
2351 addSuccessor(ExitConditionBlock, KnownVal.isFalse() ? NULL : BodyBlock);
2352 // Link up the condition block with the code that follows the loop. (the
2353 // false branch).
2354 addSuccessor(ExitConditionBlock, KnownVal.isTrue() ? NULL : LoopSuccessor);
2355
2356 } while (false);
2357
2358 // Link up the loop-back block to the entry condition block.
2359 addSuccessor(TransitionBlock, EntryConditionBlock);
2360
2361 // The condition block is the implicit successor for any code above the loop.
2362 Succ = EntryConditionBlock;
Mike Stump31feda52009-07-17 01:31:16 +00002363
Ted Kremenek9aae5132007-08-23 21:42:29 +00002364 // If the loop contains initialization, create a new block for those
Mike Stump31feda52009-07-17 01:31:16 +00002365 // statements. This block can also contain statements that precede the loop.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002366 if (Stmt *I = F->getInit()) {
Ted Kremenek9aae5132007-08-23 21:42:29 +00002367 Block = createBlock();
Ted Kremenek81e14852007-08-27 19:46:09 +00002368 return addStmt(I);
Ted Kremenek9aae5132007-08-23 21:42:29 +00002369 }
Zhanyong Wan59f09c72010-11-22 19:32:14 +00002370
2371 // There is no loop initialization. We are thus basically a while loop.
2372 // NULL out Block to force lazy block construction.
2373 Block = NULL;
2374 Succ = EntryConditionBlock;
2375 return EntryConditionBlock;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002376}
2377
Ted Kremenek5868ec62010-04-11 17:02:10 +00002378CFGBlock *CFGBuilder::VisitMemberExpr(MemberExpr *M, AddStmtChoice asc) {
Ted Kremenek7c58d352011-03-10 01:14:11 +00002379 if (asc.alwaysAdd(*this, M)) {
Ted Kremenek5868ec62010-04-11 17:02:10 +00002380 autoCreateBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00002381 appendStmt(Block, M);
Ted Kremenek5868ec62010-04-11 17:02:10 +00002382 }
Ted Kremenek8219b822010-12-16 07:46:53 +00002383 return Visit(M->getBase());
Ted Kremenek5868ec62010-04-11 17:02:10 +00002384}
2385
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002386CFGBlock *CFGBuilder::VisitObjCForCollectionStmt(ObjCForCollectionStmt *S) {
Ted Kremenek9d56e642008-11-11 17:10:00 +00002387 // Objective-C fast enumeration 'for' statements:
2388 // http://developer.apple.com/documentation/Cocoa/Conceptual/ObjectiveC
2389 //
2390 // for ( Type newVariable in collection_expression ) { statements }
2391 //
2392 // becomes:
2393 //
2394 // prologue:
2395 // 1. collection_expression
2396 // T. jump to loop_entry
2397 // loop_entry:
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00002398 // 1. side-effects of element expression
Ted Kremenek9d56e642008-11-11 17:10:00 +00002399 // 1. ObjCForCollectionStmt [performs binding to newVariable]
2400 // T. ObjCForCollectionStmt TB, FB [jumps to TB if newVariable != nil]
2401 // TB:
2402 // statements
2403 // T. jump to loop_entry
2404 // FB:
2405 // what comes after
2406 //
2407 // and
2408 //
2409 // Type existingItem;
2410 // for ( existingItem in expression ) { statements }
2411 //
2412 // becomes:
2413 //
Mike Stump31feda52009-07-17 01:31:16 +00002414 // the same with newVariable replaced with existingItem; the binding works
2415 // the same except that for one ObjCForCollectionStmt::getElement() returns
2416 // a DeclStmt and the other returns a DeclRefExpr.
Ted Kremenek9d56e642008-11-11 17:10:00 +00002417 //
Mike Stump31feda52009-07-17 01:31:16 +00002418
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002419 CFGBlock *LoopSuccessor = 0;
Mike Stump31feda52009-07-17 01:31:16 +00002420
Ted Kremenek9d56e642008-11-11 17:10:00 +00002421 if (Block) {
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002422 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002423 return 0;
Ted Kremenek9d56e642008-11-11 17:10:00 +00002424 LoopSuccessor = Block;
2425 Block = 0;
Ted Kremenek93668002009-07-17 22:18:43 +00002426 } else
2427 LoopSuccessor = Succ;
Mike Stump31feda52009-07-17 01:31:16 +00002428
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00002429 // Build the condition blocks.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002430 CFGBlock *ExitConditionBlock = createBlock(false);
Mike Stump31feda52009-07-17 01:31:16 +00002431
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00002432 // Set the terminator for the "exit" condition block.
Mike Stump31feda52009-07-17 01:31:16 +00002433 ExitConditionBlock->setTerminator(S);
2434
2435 // The last statement in the block should be the ObjCForCollectionStmt, which
2436 // performs the actual binding to 'element' and determines if there are any
2437 // more items in the collection.
Ted Kremenek8219b822010-12-16 07:46:53 +00002438 appendStmt(ExitConditionBlock, S);
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00002439 Block = ExitConditionBlock;
Mike Stump31feda52009-07-17 01:31:16 +00002440
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00002441 // Walk the 'element' expression to see if there are any side-effects. We
Chris Lattner57540c52011-04-15 05:22:18 +00002442 // generate new blocks as necessary. We DON'T add the statement by default to
Mike Stump31feda52009-07-17 01:31:16 +00002443 // the CFG unless it contains control-flow.
Ted Kremenekc14efa72011-08-17 21:04:19 +00002444 CFGBlock *EntryConditionBlock = Visit(S->getElement(),
2445 AddStmtChoice::NotAlwaysAdd);
Mike Stump31feda52009-07-17 01:31:16 +00002446 if (Block) {
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002447 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002448 return 0;
2449 Block = 0;
2450 }
Mike Stump31feda52009-07-17 01:31:16 +00002451
2452 // The condition block is the implicit successor for the loop body as well as
2453 // any code above the loop.
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00002454 Succ = EntryConditionBlock;
Mike Stump31feda52009-07-17 01:31:16 +00002455
Ted Kremenek9d56e642008-11-11 17:10:00 +00002456 // Now create the true branch.
Mike Stump31feda52009-07-17 01:31:16 +00002457 {
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00002458 // Save the current values for Succ, continue and break targets.
Anna Zaks56b49752013-06-22 00:23:20 +00002459 SaveAndRestore<CFGBlock*> save_Block(Block), save_Succ(Succ);
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002460 SaveAndRestore<JumpTarget> save_continue(ContinueJumpTarget),
Anna Zaks56b49752013-06-22 00:23:20 +00002461 save_break(BreakJumpTarget);
Mike Stump31feda52009-07-17 01:31:16 +00002462
Anna Zaks56b49752013-06-22 00:23:20 +00002463 // Add an intermediate block between the BodyBlock and the
2464 // EntryConditionBlock to represent the "loop back" transition, for looping
2465 // back to the head of the loop.
2466 CFGBlock *LoopBackBlock = 0;
2467 Succ = LoopBackBlock = createBlock();
2468 LoopBackBlock->setLoopTarget(S);
2469
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002470 BreakJumpTarget = JumpTarget(LoopSuccessor, ScopePos);
Anna Zaks56b49752013-06-22 00:23:20 +00002471 ContinueJumpTarget = JumpTarget(Succ, ScopePos);
Mike Stump31feda52009-07-17 01:31:16 +00002472
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002473 CFGBlock *BodyBlock = addStmt(S->getBody());
Mike Stump31feda52009-07-17 01:31:16 +00002474
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00002475 if (!BodyBlock)
Anna Zaks56b49752013-06-22 00:23:20 +00002476 BodyBlock = ContinueJumpTarget.block; // can happen for "for (X in Y) ;"
Ted Kremenek55957a82009-05-02 00:13:27 +00002477 else if (Block) {
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002478 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002479 return 0;
2480 }
Mike Stump31feda52009-07-17 01:31:16 +00002481
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00002482 // This new body block is a successor to our "exit" condition block.
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00002483 addSuccessor(ExitConditionBlock, BodyBlock);
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00002484 }
Mike Stump31feda52009-07-17 01:31:16 +00002485
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00002486 // Link up the condition block with the code that follows the loop.
2487 // (the false branch).
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00002488 addSuccessor(ExitConditionBlock, LoopSuccessor);
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00002489
Ted Kremenek9d56e642008-11-11 17:10:00 +00002490 // Now create a prologue block to contain the collection expression.
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00002491 Block = createBlock();
Ted Kremenek9d56e642008-11-11 17:10:00 +00002492 return addStmt(S->getCollection());
Mike Stump31feda52009-07-17 01:31:16 +00002493}
2494
Ted Kremenek5022f1d2012-03-06 23:40:47 +00002495CFGBlock *CFGBuilder::VisitObjCAutoreleasePoolStmt(ObjCAutoreleasePoolStmt *S) {
2496 // Inline the body.
2497 return addStmt(S->getSubStmt());
2498 // TODO: consider adding cleanups for the end of @autoreleasepool scope.
2499}
2500
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002501CFGBlock *CFGBuilder::VisitObjCAtSynchronizedStmt(ObjCAtSynchronizedStmt *S) {
Ted Kremenek49805452009-05-02 01:49:13 +00002502 // FIXME: Add locking 'primitives' to CFG for @synchronized.
Mike Stump31feda52009-07-17 01:31:16 +00002503
Ted Kremenek49805452009-05-02 01:49:13 +00002504 // Inline the body.
Ted Kremenek93668002009-07-17 22:18:43 +00002505 CFGBlock *SyncBlock = addStmt(S->getSynchBody());
Mike Stump31feda52009-07-17 01:31:16 +00002506
Ted Kremenekb3c657b2009-05-05 23:11:51 +00002507 // The sync body starts its own basic block. This makes it a little easier
2508 // for diagnostic clients.
2509 if (SyncBlock) {
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002510 if (badCFG)
Ted Kremenekb3c657b2009-05-05 23:11:51 +00002511 return 0;
Mike Stump31feda52009-07-17 01:31:16 +00002512
Ted Kremenekb3c657b2009-05-05 23:11:51 +00002513 Block = 0;
Ted Kremenekecc31c92010-05-13 16:38:08 +00002514 Succ = SyncBlock;
Ted Kremenekb3c657b2009-05-05 23:11:51 +00002515 }
Mike Stump31feda52009-07-17 01:31:16 +00002516
Ted Kremeneked12f1b2010-09-10 03:05:33 +00002517 // Add the @synchronized to the CFG.
2518 autoCreateBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00002519 appendStmt(Block, S);
Ted Kremeneked12f1b2010-09-10 03:05:33 +00002520
Ted Kremenek49805452009-05-02 01:49:13 +00002521 // Inline the sync expression.
Ted Kremenek93668002009-07-17 22:18:43 +00002522 return addStmt(S->getSynchExpr());
Ted Kremenek49805452009-05-02 01:49:13 +00002523}
Mike Stump31feda52009-07-17 01:31:16 +00002524
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002525CFGBlock *CFGBuilder::VisitObjCAtTryStmt(ObjCAtTryStmt *S) {
Ted Kremenek93668002009-07-17 22:18:43 +00002526 // FIXME
Ted Kremenek89be6522009-04-07 04:26:02 +00002527 return NYS();
Ted Kremenek89cc8ea2009-03-30 22:29:21 +00002528}
Ted Kremenek9d56e642008-11-11 17:10:00 +00002529
John McCallfe96e0b2011-11-06 09:01:30 +00002530CFGBlock *CFGBuilder::VisitPseudoObjectExpr(PseudoObjectExpr *E) {
2531 autoCreateBlock();
2532
2533 // Add the PseudoObject as the last thing.
2534 appendStmt(Block, E);
2535
2536 CFGBlock *lastBlock = Block;
2537
2538 // Before that, evaluate all of the semantics in order. In
2539 // CFG-land, that means appending them in reverse order.
2540 for (unsigned i = E->getNumSemanticExprs(); i != 0; ) {
2541 Expr *Semantic = E->getSemanticExpr(--i);
2542
2543 // If the semantic is an opaque value, we're being asked to bind
2544 // it to its source expression.
2545 if (OpaqueValueExpr *OVE = dyn_cast<OpaqueValueExpr>(Semantic))
2546 Semantic = OVE->getSourceExpr();
2547
2548 if (CFGBlock *B = Visit(Semantic))
2549 lastBlock = B;
2550 }
2551
2552 return lastBlock;
2553}
2554
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002555CFGBlock *CFGBuilder::VisitWhileStmt(WhileStmt *W) {
2556 CFGBlock *LoopSuccessor = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00002557
Marcin Swiderski1f4e15c2010-10-01 01:14:17 +00002558 // Save local scope position because in case of condition variable ScopePos
2559 // won't be restored when traversing AST.
2560 SaveAndRestore<LocalScope::const_iterator> save_scope_pos(ScopePos);
2561
2562 // Create local scope for possible condition variable.
2563 // Store scope position for continue statement.
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002564 LocalScope::const_iterator LoopBeginScopePos = ScopePos;
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002565 if (VarDecl *VD = W->getConditionVariable()) {
Marcin Swiderski1f4e15c2010-10-01 01:14:17 +00002566 addLocalScopeForVarDecl(VD);
2567 addAutomaticObjDtors(ScopePos, LoopBeginScopePos, W);
2568 }
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002569
Mike Stump014b3ea2009-07-21 01:12:51 +00002570 // "while" is a control-flow statement. Thus we stop processing the current
2571 // block.
Ted Kremenek9aae5132007-08-23 21:42:29 +00002572 if (Block) {
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002573 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002574 return 0;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002575 LoopSuccessor = Block;
Ted Kremenek828f6312011-02-21 22:11:26 +00002576 Block = 0;
Ted Kremenekb50e7162012-07-14 05:04:10 +00002577 } else {
Ted Kremenek93668002009-07-17 22:18:43 +00002578 LoopSuccessor = Succ;
Ted Kremenek81e14852007-08-27 19:46:09 +00002579 }
Mike Stump31feda52009-07-17 01:31:16 +00002580
Ted Kremenekb50e7162012-07-14 05:04:10 +00002581 CFGBlock *BodyBlock = 0, *TransitionBlock = 0;
Mike Stump773582d2009-07-23 23:25:26 +00002582
Ted Kremenek9aae5132007-08-23 21:42:29 +00002583 // Process the loop body.
2584 {
Ted Kremenek49936f72009-04-28 03:09:44 +00002585 assert(W->getBody());
Ted Kremenek9aae5132007-08-23 21:42:29 +00002586
Ted Kremenekb50e7162012-07-14 05:04:10 +00002587 // Save the current values for Block, Succ, continue and break targets.
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002588 SaveAndRestore<CFGBlock*> save_Block(Block), save_Succ(Succ);
2589 SaveAndRestore<JumpTarget> save_continue(ContinueJumpTarget),
Ted Kremenekb50e7162012-07-14 05:04:10 +00002590 save_break(BreakJumpTarget);
Ted Kremenek49936f72009-04-28 03:09:44 +00002591
Mike Stump31feda52009-07-17 01:31:16 +00002592 // Create an empty block to represent the transition block for looping back
2593 // to the head of the loop.
Ted Kremenekb50e7162012-07-14 05:04:10 +00002594 Succ = TransitionBlock = createBlock(false);
2595 TransitionBlock->setLoopTarget(W);
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002596 ContinueJumpTarget = JumpTarget(Succ, LoopBeginScopePos);
Mike Stump31feda52009-07-17 01:31:16 +00002597
Ted Kremenek9aae5132007-08-23 21:42:29 +00002598 // All breaks should go to the code following the loop.
Marcin Swiderski1f4e15c2010-10-01 01:14:17 +00002599 BreakJumpTarget = JumpTarget(LoopSuccessor, ScopePos);
Mike Stump31feda52009-07-17 01:31:16 +00002600
Marcin Swiderski1f4e15c2010-10-01 01:14:17 +00002601 // Loop body should end with destructor of Condition variable (if any).
2602 addAutomaticObjDtors(ScopePos, LoopBeginScopePos, W);
2603
2604 // If body is not a compound statement create implicit scope
2605 // and add destructors.
2606 if (!isa<CompoundStmt>(W->getBody()))
2607 addLocalScopeAndDtors(W->getBody());
2608
Ted Kremenek9aae5132007-08-23 21:42:29 +00002609 // Create the body. The returned block is the entry to the loop body.
Ted Kremenekb50e7162012-07-14 05:04:10 +00002610 BodyBlock = addStmt(W->getBody());
Mike Stump31feda52009-07-17 01:31:16 +00002611
Ted Kremeneke9610502007-08-30 18:39:40 +00002612 if (!BodyBlock)
Ted Kremenekef81e9e2011-01-07 19:37:16 +00002613 BodyBlock = ContinueJumpTarget.block; // can happen for "while(...) ;"
Ted Kremenekb50e7162012-07-14 05:04:10 +00002614 else if (Block && badCFG)
2615 return 0;
2616 }
2617
2618 // Because of short-circuit evaluation, the condition of the loop can span
2619 // multiple basic blocks. Thus we need the "Entry" and "Exit" blocks that
2620 // evaluate the condition.
2621 CFGBlock *EntryConditionBlock = 0, *ExitConditionBlock = 0;
2622
2623 do {
2624 Expr *C = W->getCond();
2625
2626 // Specially handle logical operators, which have a slightly
2627 // more optimal CFG representation.
Richard Smithf676e452012-07-24 21:02:14 +00002628 if (BinaryOperator *Cond = dyn_cast<BinaryOperator>(C->IgnoreParens()))
Ted Kremenekb50e7162012-07-14 05:04:10 +00002629 if (Cond->isLogicalOp()) {
Benjamin Kramer867ea1d2014-03-02 13:01:17 +00002630 std::tie(EntryConditionBlock, ExitConditionBlock) =
2631 VisitLogicalOperator(Cond, W, BodyBlock, LoopSuccessor);
Ted Kremenekb50e7162012-07-14 05:04:10 +00002632 break;
2633 }
2634
2635 // The default case when not handling logical operators.
Ted Kremenek451c4d52012-10-12 22:56:26 +00002636 ExitConditionBlock = createBlock(false);
Ted Kremenekb50e7162012-07-14 05:04:10 +00002637 ExitConditionBlock->setTerminator(W);
2638
2639 // Now add the actual condition to the condition block.
2640 // Because the condition itself may contain control-flow, new blocks may
2641 // be created. Thus we update "Succ" after adding the condition.
2642 Block = ExitConditionBlock;
2643 Block = EntryConditionBlock = addStmt(C);
2644
2645 // If this block contains a condition variable, add both the condition
2646 // variable and initializer to the CFG.
2647 if (VarDecl *VD = W->getConditionVariable()) {
2648 if (Expr *Init = VD->getInit()) {
2649 autoCreateBlock();
2650 appendStmt(Block, W->getConditionVariableDeclStmt());
2651 EntryConditionBlock = addStmt(Init);
2652 assert(Block == EntryConditionBlock);
2653 }
Ted Kremenek55957a82009-05-02 00:13:27 +00002654 }
Mike Stump31feda52009-07-17 01:31:16 +00002655
Ted Kremenekb50e7162012-07-14 05:04:10 +00002656 if (Block && badCFG)
2657 return 0;
2658
2659 // See if this is a known constant.
2660 const TryResult& KnownVal = tryEvaluateBool(C);
2661
Ted Kremenek30754282009-07-24 04:47:11 +00002662 // Add the loop body entry as a successor to the condition.
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00002663 addSuccessor(ExitConditionBlock, KnownVal.isFalse() ? NULL : BodyBlock);
Ted Kremenekb50e7162012-07-14 05:04:10 +00002664 // Link up the condition block with the code that follows the loop. (the
2665 // false branch).
2666 addSuccessor(ExitConditionBlock, KnownVal.isTrue() ? NULL : LoopSuccessor);
Mike Stump31feda52009-07-17 01:31:16 +00002667
Ted Kremenekb50e7162012-07-14 05:04:10 +00002668 } while(false);
2669
2670 // Link up the loop-back block to the entry condition block.
2671 addSuccessor(TransitionBlock, EntryConditionBlock);
Mike Stump31feda52009-07-17 01:31:16 +00002672
2673 // There can be no more statements in the condition block since we loop back
2674 // to this block. NULL out Block to force lazy creation of another block.
Ted Kremenek9aae5132007-08-23 21:42:29 +00002675 Block = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00002676
Ted Kremenek1ce53c42009-12-24 01:34:10 +00002677 // Return the condition block, which is the dominating block for the loop.
Ted Kremeneka1523a32008-02-27 07:20:00 +00002678 Succ = EntryConditionBlock;
Ted Kremenek81e14852007-08-27 19:46:09 +00002679 return EntryConditionBlock;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002680}
Mike Stump11289f42009-09-09 15:08:12 +00002681
2682
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002683CFGBlock *CFGBuilder::VisitObjCAtCatchStmt(ObjCAtCatchStmt *S) {
Ted Kremenek93668002009-07-17 22:18:43 +00002684 // FIXME: For now we pretend that @catch and the code it contains does not
2685 // exit.
2686 return Block;
2687}
Mike Stump31feda52009-07-17 01:31:16 +00002688
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002689CFGBlock *CFGBuilder::VisitObjCAtThrowStmt(ObjCAtThrowStmt *S) {
Ted Kremenek93041ba2008-12-09 20:20:09 +00002690 // FIXME: This isn't complete. We basically treat @throw like a return
2691 // statement.
Mike Stump31feda52009-07-17 01:31:16 +00002692
Ted Kremenek0868eea2009-09-24 18:45:41 +00002693 // If we were in the middle of a block we stop processing that block.
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002694 if (badCFG)
Ted Kremenek93668002009-07-17 22:18:43 +00002695 return 0;
Mike Stump31feda52009-07-17 01:31:16 +00002696
Ted Kremenek93041ba2008-12-09 20:20:09 +00002697 // Create the new block.
2698 Block = createBlock(false);
Mike Stump31feda52009-07-17 01:31:16 +00002699
Ted Kremenek93041ba2008-12-09 20:20:09 +00002700 // The Exit block is the only successor.
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00002701 addSuccessor(Block, &cfg->getExit());
Mike Stump31feda52009-07-17 01:31:16 +00002702
2703 // Add the statement to the block. This may create new blocks if S contains
2704 // control-flow (short-circuit operations).
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00002705 return VisitStmt(S, AddStmtChoice::AlwaysAdd);
Ted Kremenek93041ba2008-12-09 20:20:09 +00002706}
Ted Kremenek9aae5132007-08-23 21:42:29 +00002707
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002708CFGBlock *CFGBuilder::VisitCXXThrowExpr(CXXThrowExpr *T) {
Ted Kremenek0868eea2009-09-24 18:45:41 +00002709 // If we were in the middle of a block we stop processing that block.
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002710 if (badCFG)
Mike Stump8dd1b6b2009-07-22 22:56:04 +00002711 return 0;
2712
2713 // Create the new block.
2714 Block = createBlock(false);
2715
Mike Stumpbbf5ba62010-01-19 02:20:09 +00002716 if (TryTerminatedBlock)
2717 // The current try statement is the only successor.
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00002718 addSuccessor(Block, TryTerminatedBlock);
Ted Kremenekdc03bd02010-08-02 23:46:59 +00002719 else
Mike Stumpbbf5ba62010-01-19 02:20:09 +00002720 // otherwise the Exit block is the only successor.
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00002721 addSuccessor(Block, &cfg->getExit());
Mike Stump8dd1b6b2009-07-22 22:56:04 +00002722
2723 // Add the statement to the block. This may create new blocks if S contains
2724 // control-flow (short-circuit operations).
Ted Kremenek4cad5fc2009-12-16 03:18:58 +00002725 return VisitStmt(T, AddStmtChoice::AlwaysAdd);
Mike Stump8dd1b6b2009-07-22 22:56:04 +00002726}
2727
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002728CFGBlock *CFGBuilder::VisitDoStmt(DoStmt *D) {
2729 CFGBlock *LoopSuccessor = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00002730
Mike Stump8d50b6a2009-07-21 01:27:50 +00002731 // "do...while" is a control-flow statement. Thus we stop processing the
2732 // current block.
Ted Kremenek9aae5132007-08-23 21:42:29 +00002733 if (Block) {
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002734 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002735 return 0;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002736 LoopSuccessor = Block;
Ted Kremenek93668002009-07-17 22:18:43 +00002737 } else
2738 LoopSuccessor = Succ;
Mike Stump31feda52009-07-17 01:31:16 +00002739
2740 // Because of short-circuit evaluation, the condition of the loop can span
2741 // multiple basic blocks. Thus we need the "Entry" and "Exit" blocks that
2742 // evaluate the condition.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002743 CFGBlock *ExitConditionBlock = createBlock(false);
2744 CFGBlock *EntryConditionBlock = ExitConditionBlock;
Mike Stump31feda52009-07-17 01:31:16 +00002745
Ted Kremenek81e14852007-08-27 19:46:09 +00002746 // Set the terminator for the "exit" condition block.
Mike Stump31feda52009-07-17 01:31:16 +00002747 ExitConditionBlock->setTerminator(D);
2748
2749 // Now add the actual condition to the condition block. Because the condition
2750 // itself may contain control-flow, new blocks may be created.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002751 if (Stmt *C = D->getCond()) {
Ted Kremenek81e14852007-08-27 19:46:09 +00002752 Block = ExitConditionBlock;
2753 EntryConditionBlock = addStmt(C);
Ted Kremenek55957a82009-05-02 00:13:27 +00002754 if (Block) {
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002755 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002756 return 0;
2757 }
Ted Kremenek81e14852007-08-27 19:46:09 +00002758 }
Mike Stump31feda52009-07-17 01:31:16 +00002759
Ted Kremeneka1523a32008-02-27 07:20:00 +00002760 // The condition block is the implicit successor for the loop body.
Ted Kremenek81e14852007-08-27 19:46:09 +00002761 Succ = EntryConditionBlock;
2762
Mike Stump773582d2009-07-23 23:25:26 +00002763 // See if this is a known constant.
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00002764 const TryResult &KnownVal = tryEvaluateBool(D->getCond());
Mike Stump773582d2009-07-23 23:25:26 +00002765
Ted Kremenek9aae5132007-08-23 21:42:29 +00002766 // Process the loop body.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002767 CFGBlock *BodyBlock = NULL;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002768 {
Ted Kremenek1362b8b2010-01-19 20:46:35 +00002769 assert(D->getBody());
Mike Stump31feda52009-07-17 01:31:16 +00002770
Ted Kremenek9aae5132007-08-23 21:42:29 +00002771 // Save the current values for Block, Succ, and continue and break targets
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002772 SaveAndRestore<CFGBlock*> save_Block(Block), save_Succ(Succ);
2773 SaveAndRestore<JumpTarget> save_continue(ContinueJumpTarget),
2774 save_break(BreakJumpTarget);
Mike Stump31feda52009-07-17 01:31:16 +00002775
Ted Kremenek9aae5132007-08-23 21:42:29 +00002776 // All continues within this loop should go to the condition block
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002777 ContinueJumpTarget = JumpTarget(EntryConditionBlock, ScopePos);
Mike Stump31feda52009-07-17 01:31:16 +00002778
Ted Kremenek9aae5132007-08-23 21:42:29 +00002779 // All breaks should go to the code following the loop.
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002780 BreakJumpTarget = JumpTarget(LoopSuccessor, ScopePos);
Mike Stump31feda52009-07-17 01:31:16 +00002781
Ted Kremenek9aae5132007-08-23 21:42:29 +00002782 // NULL out Block to force lazy instantiation of blocks for the body.
2783 Block = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00002784
Marcin Swiderski1f4e15c2010-10-01 01:14:17 +00002785 // If body is not a compound statement create implicit scope
2786 // and add destructors.
2787 if (!isa<CompoundStmt>(D->getBody()))
2788 addLocalScopeAndDtors(D->getBody());
2789
Ted Kremenek9aae5132007-08-23 21:42:29 +00002790 // Create the body. The returned block is the entry to the loop body.
Ted Kremenek93668002009-07-17 22:18:43 +00002791 BodyBlock = addStmt(D->getBody());
Mike Stump31feda52009-07-17 01:31:16 +00002792
Ted Kremeneke9610502007-08-30 18:39:40 +00002793 if (!BodyBlock)
Ted Kremenek39321aa2008-02-27 00:28:17 +00002794 BodyBlock = EntryConditionBlock; // can happen for "do ; while(...)"
Ted Kremenek55957a82009-05-02 00:13:27 +00002795 else if (Block) {
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002796 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002797 return 0;
2798 }
Mike Stump31feda52009-07-17 01:31:16 +00002799
Ted Kremenek110974d2010-08-17 20:59:56 +00002800 if (!KnownVal.isFalse()) {
2801 // Add an intermediate block between the BodyBlock and the
2802 // ExitConditionBlock to represent the "loop back" transition. Create an
2803 // empty block to represent the transition block for looping back to the
2804 // head of the loop.
2805 // FIXME: Can we do this more efficiently without adding another block?
2806 Block = NULL;
2807 Succ = BodyBlock;
2808 CFGBlock *LoopBackBlock = createBlock();
2809 LoopBackBlock->setLoopTarget(D);
Mike Stump31feda52009-07-17 01:31:16 +00002810
Ted Kremenek110974d2010-08-17 20:59:56 +00002811 // Add the loop body entry as a successor to the condition.
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00002812 addSuccessor(ExitConditionBlock, LoopBackBlock);
Ted Kremenek110974d2010-08-17 20:59:56 +00002813 }
2814 else
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00002815 addSuccessor(ExitConditionBlock, NULL);
Ted Kremenek9aae5132007-08-23 21:42:29 +00002816 }
Mike Stump31feda52009-07-17 01:31:16 +00002817
Ted Kremenek30754282009-07-24 04:47:11 +00002818 // Link up the condition block with the code that follows the loop.
2819 // (the false branch).
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00002820 addSuccessor(ExitConditionBlock, KnownVal.isTrue() ? NULL : LoopSuccessor);
Mike Stump31feda52009-07-17 01:31:16 +00002821
2822 // There can be no more statements in the body block(s) since we loop back to
2823 // the body. NULL out Block to force lazy creation of another block.
Ted Kremenek9aae5132007-08-23 21:42:29 +00002824 Block = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00002825
Ted Kremenek9aae5132007-08-23 21:42:29 +00002826 // Return the loop body, which is the dominating block for the loop.
Ted Kremeneka1523a32008-02-27 07:20:00 +00002827 Succ = BodyBlock;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002828 return BodyBlock;
2829}
2830
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002831CFGBlock *CFGBuilder::VisitContinueStmt(ContinueStmt *C) {
Ted Kremenek9aae5132007-08-23 21:42:29 +00002832 // "continue" is a control-flow statement. Thus we stop processing the
2833 // current block.
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002834 if (badCFG)
2835 return 0;
Mike Stump31feda52009-07-17 01:31:16 +00002836
Ted Kremenek9aae5132007-08-23 21:42:29 +00002837 // Now create a new block that ends with the continue statement.
2838 Block = createBlock(false);
2839 Block->setTerminator(C);
Mike Stump31feda52009-07-17 01:31:16 +00002840
Ted Kremenek9aae5132007-08-23 21:42:29 +00002841 // If there is no target for the continue, then we are looking at an
Ted Kremenek882cf062009-04-07 18:53:24 +00002842 // incomplete AST. This means the CFG cannot be constructed.
Ted Kremenekef81e9e2011-01-07 19:37:16 +00002843 if (ContinueJumpTarget.block) {
2844 addAutomaticObjDtors(ScopePos, ContinueJumpTarget.scopePosition, C);
2845 addSuccessor(Block, ContinueJumpTarget.block);
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002846 } else
Ted Kremenek882cf062009-04-07 18:53:24 +00002847 badCFG = true;
Mike Stump31feda52009-07-17 01:31:16 +00002848
Ted Kremenek9aae5132007-08-23 21:42:29 +00002849 return Block;
2850}
Mike Stump11289f42009-09-09 15:08:12 +00002851
Peter Collingbournee190dee2011-03-11 19:24:49 +00002852CFGBlock *CFGBuilder::VisitUnaryExprOrTypeTraitExpr(UnaryExprOrTypeTraitExpr *E,
2853 AddStmtChoice asc) {
Ted Kremenek0747de62009-07-18 00:47:21 +00002854
Ted Kremenek7c58d352011-03-10 01:14:11 +00002855 if (asc.alwaysAdd(*this, E)) {
Ted Kremenek0747de62009-07-18 00:47:21 +00002856 autoCreateBlock();
Ted Kremenek8219b822010-12-16 07:46:53 +00002857 appendStmt(Block, E);
Ted Kremenek0747de62009-07-18 00:47:21 +00002858 }
Mike Stump11289f42009-09-09 15:08:12 +00002859
Ted Kremenek93668002009-07-17 22:18:43 +00002860 // VLA types have expressions that must be evaluated.
Ted Kremenek9eb0b7d2011-04-14 01:50:50 +00002861 CFGBlock *lastBlock = Block;
2862
Ted Kremenek93668002009-07-17 22:18:43 +00002863 if (E->isArgumentType()) {
John McCall424cec92011-01-19 06:33:43 +00002864 for (const VariableArrayType *VA =FindVA(E->getArgumentType().getTypePtr());
Ted Kremenek93668002009-07-17 22:18:43 +00002865 VA != 0; VA = FindVA(VA->getElementType().getTypePtr()))
Ted Kremenek9eb0b7d2011-04-14 01:50:50 +00002866 lastBlock = addStmt(VA->getSizeExpr());
Ted Kremenek84a1ca52011-08-06 00:30:00 +00002867 }
Ted Kremenek9eb0b7d2011-04-14 01:50:50 +00002868 return lastBlock;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002869}
Mike Stump11289f42009-09-09 15:08:12 +00002870
Ted Kremenek93668002009-07-17 22:18:43 +00002871/// VisitStmtExpr - Utility method to handle (nested) statement
2872/// expressions (a GCC extension).
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002873CFGBlock *CFGBuilder::VisitStmtExpr(StmtExpr *SE, AddStmtChoice asc) {
Ted Kremenek7c58d352011-03-10 01:14:11 +00002874 if (asc.alwaysAdd(*this, SE)) {
Ted Kremenek0747de62009-07-18 00:47:21 +00002875 autoCreateBlock();
Ted Kremenek8219b822010-12-16 07:46:53 +00002876 appendStmt(Block, SE);
Ted Kremenek0747de62009-07-18 00:47:21 +00002877 }
Ted Kremenek93668002009-07-17 22:18:43 +00002878 return VisitCompoundStmt(SE->getSubStmt());
2879}
Ted Kremenek9aae5132007-08-23 21:42:29 +00002880
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002881CFGBlock *CFGBuilder::VisitSwitchStmt(SwitchStmt *Terminator) {
Mike Stump31feda52009-07-17 01:31:16 +00002882 // "switch" is a control-flow statement. Thus we stop processing the current
2883 // block.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002884 CFGBlock *SwitchSuccessor = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00002885
Marcin Swiderskie407a3b2010-10-01 01:24:41 +00002886 // Save local scope position because in case of condition variable ScopePos
2887 // won't be restored when traversing AST.
2888 SaveAndRestore<LocalScope::const_iterator> save_scope_pos(ScopePos);
2889
2890 // Create local scope for possible condition variable.
2891 // Store scope position. Add implicit destructor.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00002892 if (VarDecl *VD = Terminator->getConditionVariable()) {
Marcin Swiderskie407a3b2010-10-01 01:24:41 +00002893 LocalScope::const_iterator SwitchBeginScopePos = ScopePos;
2894 addLocalScopeForVarDecl(VD);
2895 addAutomaticObjDtors(ScopePos, SwitchBeginScopePos, Terminator);
2896 }
2897
Ted Kremenek9aae5132007-08-23 21:42:29 +00002898 if (Block) {
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002899 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002900 return 0;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002901 SwitchSuccessor = Block;
Mike Stump31feda52009-07-17 01:31:16 +00002902 } else SwitchSuccessor = Succ;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002903
2904 // Save the current "switch" context.
2905 SaveAndRestore<CFGBlock*> save_switch(SwitchTerminatedBlock),
Ted Kremenek654c78f2008-02-13 22:05:39 +00002906 save_default(DefaultCaseBlock);
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002907 SaveAndRestore<JumpTarget> save_break(BreakJumpTarget);
Ted Kremenek654c78f2008-02-13 22:05:39 +00002908
Mike Stump31feda52009-07-17 01:31:16 +00002909 // Set the "default" case to be the block after the switch statement. If the
2910 // switch statement contains a "default:", this value will be overwritten with
2911 // the block for that code.
Ted Kremenek654c78f2008-02-13 22:05:39 +00002912 DefaultCaseBlock = SwitchSuccessor;
Mike Stump31feda52009-07-17 01:31:16 +00002913
Ted Kremenek9aae5132007-08-23 21:42:29 +00002914 // Create a new block that will contain the switch statement.
2915 SwitchTerminatedBlock = createBlock(false);
Mike Stump31feda52009-07-17 01:31:16 +00002916
Ted Kremenek9aae5132007-08-23 21:42:29 +00002917 // Now process the switch body. The code after the switch is the implicit
2918 // successor.
2919 Succ = SwitchSuccessor;
Marcin Swiderski8b99b8a2010-09-25 11:05:21 +00002920 BreakJumpTarget = JumpTarget(SwitchSuccessor, ScopePos);
Mike Stump31feda52009-07-17 01:31:16 +00002921
2922 // When visiting the body, the case statements should automatically get linked
2923 // up to the switch. We also don't keep a pointer to the body, since all
2924 // control-flow from the switch goes to case/default statements.
Ted Kremenek1362b8b2010-01-19 20:46:35 +00002925 assert(Terminator->getBody() && "switch must contain a non-NULL body");
Ted Kremenek81e14852007-08-27 19:46:09 +00002926 Block = NULL;
Marcin Swiderskie407a3b2010-10-01 01:24:41 +00002927
Ted Kremenekeff9a7f2011-03-01 23:12:55 +00002928 // For pruning unreachable case statements, save the current state
2929 // for tracking the condition value.
2930 SaveAndRestore<bool> save_switchExclusivelyCovered(switchExclusivelyCovered,
2931 false);
Ted Kremenekbe528712011-03-04 01:03:41 +00002932
Ted Kremenekeff9a7f2011-03-01 23:12:55 +00002933 // Determine if the switch condition can be explicitly evaluated.
2934 assert(Terminator->getCond() && "switch condition must be non-NULL");
Ted Kremenekbe528712011-03-04 01:03:41 +00002935 Expr::EvalResult result;
Ted Kremenek53e65382011-03-13 03:48:04 +00002936 bool b = tryEvaluate(Terminator->getCond(), result);
2937 SaveAndRestore<Expr::EvalResult*> save_switchCond(switchCond,
2938 b ? &result : 0);
Ted Kremenekbe528712011-03-04 01:03:41 +00002939
Marcin Swiderskie407a3b2010-10-01 01:24:41 +00002940 // If body is not a compound statement create implicit scope
2941 // and add destructors.
2942 if (!isa<CompoundStmt>(Terminator->getBody()))
2943 addLocalScopeAndDtors(Terminator->getBody());
2944
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002945 addStmt(Terminator->getBody());
Ted Kremenek55957a82009-05-02 00:13:27 +00002946 if (Block) {
Zhongxing Xu33dfc072010-09-06 07:32:31 +00002947 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00002948 return 0;
2949 }
Ted Kremenek81e14852007-08-27 19:46:09 +00002950
Mike Stump31feda52009-07-17 01:31:16 +00002951 // If we have no "default:" case, the default transition is to the code
Ted Kremenek35c70f62011-03-16 04:32:01 +00002952 // following the switch body. Moreover, take into account if all the
2953 // cases of a switch are covered (e.g., switching on an enum value).
David Majnemerf69ce862013-06-04 17:38:44 +00002954 //
2955 // Note: We add a successor to a switch that is considered covered yet has no
2956 // case statements if the enumeration has no enumerators.
2957 bool SwitchAlwaysHasSuccessor = false;
2958 SwitchAlwaysHasSuccessor |= switchExclusivelyCovered;
2959 SwitchAlwaysHasSuccessor |= Terminator->isAllEnumCasesCovered() &&
2960 Terminator->getSwitchCaseList();
Ted Kremenek9238c5c2014-02-27 21:56:44 +00002961 addSuccessor(SwitchTerminatedBlock, DefaultCaseBlock,
2962 !SwitchAlwaysHasSuccessor);
Mike Stump31feda52009-07-17 01:31:16 +00002963
Ted Kremenek81e14852007-08-27 19:46:09 +00002964 // Add the terminator and condition in the switch block.
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002965 SwitchTerminatedBlock->setTerminator(Terminator);
Ted Kremenek9aae5132007-08-23 21:42:29 +00002966 Block = SwitchTerminatedBlock;
Ted Kremeneke6ee6712012-11-13 00:12:13 +00002967 CFGBlock *LastBlock = addStmt(Terminator->getCond());
Ted Kremenekdc03bd02010-08-02 23:46:59 +00002968
Ted Kremenek8b5dc122009-12-24 00:39:26 +00002969 // Finally, if the SwitchStmt contains a condition variable, add both the
2970 // SwitchStmt and the condition variable initialization to the CFG.
2971 if (VarDecl *VD = Terminator->getConditionVariable()) {
2972 if (Expr *Init = VD->getInit()) {
2973 autoCreateBlock();
Ted Kremenek37881932011-04-04 23:29:12 +00002974 appendStmt(Block, Terminator->getConditionVariableDeclStmt());
Ted Kremeneke6ee6712012-11-13 00:12:13 +00002975 LastBlock = addStmt(Init);
Ted Kremenek8b5dc122009-12-24 00:39:26 +00002976 }
2977 }
Ted Kremenekdc03bd02010-08-02 23:46:59 +00002978
Ted Kremeneke6ee6712012-11-13 00:12:13 +00002979 return LastBlock;
Ted Kremenek9aae5132007-08-23 21:42:29 +00002980}
Ted Kremenekeff9a7f2011-03-01 23:12:55 +00002981
2982static bool shouldAddCase(bool &switchExclusivelyCovered,
Ted Kremenek53e65382011-03-13 03:48:04 +00002983 const Expr::EvalResult *switchCond,
Ted Kremenekeff9a7f2011-03-01 23:12:55 +00002984 const CaseStmt *CS,
2985 ASTContext &Ctx) {
Ted Kremenek53e65382011-03-13 03:48:04 +00002986 if (!switchCond)
2987 return true;
2988
Ted Kremenekeff9a7f2011-03-01 23:12:55 +00002989 bool addCase = false;
Ted Kremenekbe528712011-03-04 01:03:41 +00002990
Ted Kremenekeff9a7f2011-03-01 23:12:55 +00002991 if (!switchExclusivelyCovered) {
Ted Kremenek53e65382011-03-13 03:48:04 +00002992 if (switchCond->Val.isInt()) {
Ted Kremenekeff9a7f2011-03-01 23:12:55 +00002993 // Evaluate the LHS of the case value.
Richard Smithfaa32a92011-10-14 20:22:00 +00002994 const llvm::APSInt &lhsInt = CS->getLHS()->EvaluateKnownConstInt(Ctx);
Ted Kremenek53e65382011-03-13 03:48:04 +00002995 const llvm::APSInt &condInt = switchCond->Val.getInt();
Ted Kremenekeff9a7f2011-03-01 23:12:55 +00002996
2997 if (condInt == lhsInt) {
2998 addCase = true;
2999 switchExclusivelyCovered = true;
3000 }
3001 else if (condInt < lhsInt) {
3002 if (const Expr *RHS = CS->getRHS()) {
3003 // Evaluate the RHS of the case value.
Richard Smithfaa32a92011-10-14 20:22:00 +00003004 const llvm::APSInt &V2 = RHS->EvaluateKnownConstInt(Ctx);
3005 if (V2 <= condInt) {
Ted Kremenekeff9a7f2011-03-01 23:12:55 +00003006 addCase = true;
3007 switchExclusivelyCovered = true;
3008 }
3009 }
3010 }
3011 }
3012 else
3013 addCase = true;
3014 }
3015 return addCase;
3016}
Ted Kremenek9aae5132007-08-23 21:42:29 +00003017
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003018CFGBlock *CFGBuilder::VisitCaseStmt(CaseStmt *CS) {
Mike Stump31feda52009-07-17 01:31:16 +00003019 // CaseStmts are essentially labels, so they are the first statement in a
3020 // block.
Ted Kremenek60fa6572010-08-04 23:54:30 +00003021 CFGBlock *TopBlock = 0, *LastBlock = 0;
Ted Kremenekbe528712011-03-04 01:03:41 +00003022
Ted Kremenek60fa6572010-08-04 23:54:30 +00003023 if (Stmt *Sub = CS->getSubStmt()) {
3024 // For deeply nested chains of CaseStmts, instead of doing a recursion
3025 // (which can blow out the stack), manually unroll and create blocks
3026 // along the way.
3027 while (isa<CaseStmt>(Sub)) {
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003028 CFGBlock *currentBlock = createBlock(false);
3029 currentBlock->setLabel(CS);
Ted Kremenek55e91e82007-08-30 18:48:11 +00003030
Ted Kremenek60fa6572010-08-04 23:54:30 +00003031 if (TopBlock)
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003032 addSuccessor(LastBlock, currentBlock);
Ted Kremenek60fa6572010-08-04 23:54:30 +00003033 else
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003034 TopBlock = currentBlock;
Ted Kremenek60fa6572010-08-04 23:54:30 +00003035
Ted Kremenekeff9a7f2011-03-01 23:12:55 +00003036 addSuccessor(SwitchTerminatedBlock,
Ted Kremenek53e65382011-03-13 03:48:04 +00003037 shouldAddCase(switchExclusivelyCovered, switchCond,
Ted Kremenekeff9a7f2011-03-01 23:12:55 +00003038 CS, *Context)
3039 ? currentBlock : 0);
Ted Kremenek60fa6572010-08-04 23:54:30 +00003040
Ted Kremenekeff9a7f2011-03-01 23:12:55 +00003041 LastBlock = currentBlock;
Ted Kremenek60fa6572010-08-04 23:54:30 +00003042 CS = cast<CaseStmt>(Sub);
3043 Sub = CS->getSubStmt();
3044 }
3045
3046 addStmt(Sub);
3047 }
Mike Stump11289f42009-09-09 15:08:12 +00003048
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003049 CFGBlock *CaseBlock = Block;
Ted Kremenek93668002009-07-17 22:18:43 +00003050 if (!CaseBlock)
3051 CaseBlock = createBlock();
Mike Stump31feda52009-07-17 01:31:16 +00003052
3053 // Cases statements partition blocks, so this is the top of the basic block we
3054 // were processing (the "case XXX:" is the label).
Ted Kremenek93668002009-07-17 22:18:43 +00003055 CaseBlock->setLabel(CS);
3056
Zhongxing Xu33dfc072010-09-06 07:32:31 +00003057 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00003058 return 0;
Mike Stump31feda52009-07-17 01:31:16 +00003059
3060 // Add this block to the list of successors for the block with the switch
3061 // statement.
Ted Kremenek93668002009-07-17 22:18:43 +00003062 assert(SwitchTerminatedBlock);
Ted Kremenek9238c5c2014-02-27 21:56:44 +00003063 addSuccessor(SwitchTerminatedBlock, CaseBlock,
Ted Kremenek53e65382011-03-13 03:48:04 +00003064 shouldAddCase(switchExclusivelyCovered, switchCond,
Ted Kremenek9238c5c2014-02-27 21:56:44 +00003065 CS, *Context));
Mike Stump31feda52009-07-17 01:31:16 +00003066
Ted Kremenek9aae5132007-08-23 21:42:29 +00003067 // We set Block to NULL to allow lazy creation of a new block (if necessary)
3068 Block = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00003069
Ted Kremenek60fa6572010-08-04 23:54:30 +00003070 if (TopBlock) {
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003071 addSuccessor(LastBlock, CaseBlock);
Ted Kremenek60fa6572010-08-04 23:54:30 +00003072 Succ = TopBlock;
Zhanyong Wan59f09c72010-11-22 19:32:14 +00003073 } else {
Ted Kremenek60fa6572010-08-04 23:54:30 +00003074 // This block is now the implicit successor of other blocks.
3075 Succ = CaseBlock;
3076 }
Mike Stump31feda52009-07-17 01:31:16 +00003077
Ted Kremenek60fa6572010-08-04 23:54:30 +00003078 return Succ;
Ted Kremenek9aae5132007-08-23 21:42:29 +00003079}
Mike Stump31feda52009-07-17 01:31:16 +00003080
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003081CFGBlock *CFGBuilder::VisitDefaultStmt(DefaultStmt *Terminator) {
Ted Kremenek93668002009-07-17 22:18:43 +00003082 if (Terminator->getSubStmt())
3083 addStmt(Terminator->getSubStmt());
Mike Stump11289f42009-09-09 15:08:12 +00003084
Ted Kremenek654c78f2008-02-13 22:05:39 +00003085 DefaultCaseBlock = Block;
Ted Kremenek93668002009-07-17 22:18:43 +00003086
3087 if (!DefaultCaseBlock)
3088 DefaultCaseBlock = createBlock();
Mike Stump31feda52009-07-17 01:31:16 +00003089
3090 // Default statements partition blocks, so this is the top of the basic block
3091 // we were processing (the "default:" is the label).
Ted Kremenekc1f9a282008-04-16 21:10:48 +00003092 DefaultCaseBlock->setLabel(Terminator);
Mike Stump11289f42009-09-09 15:08:12 +00003093
Zhongxing Xu33dfc072010-09-06 07:32:31 +00003094 if (badCFG)
Ted Kremenek55957a82009-05-02 00:13:27 +00003095 return 0;
Ted Kremenek654c78f2008-02-13 22:05:39 +00003096
Mike Stump31feda52009-07-17 01:31:16 +00003097 // Unlike case statements, we don't add the default block to the successors
3098 // for the switch statement immediately. This is done when we finish
3099 // processing the switch statement. This allows for the default case
3100 // (including a fall-through to the code after the switch statement) to always
3101 // be the last successor of a switch-terminated block.
3102
Ted Kremenek654c78f2008-02-13 22:05:39 +00003103 // We set Block to NULL to allow lazy creation of a new block (if necessary)
3104 Block = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00003105
Ted Kremenek654c78f2008-02-13 22:05:39 +00003106 // This block is now the implicit successor of other blocks.
3107 Succ = DefaultCaseBlock;
Mike Stump31feda52009-07-17 01:31:16 +00003108
3109 return DefaultCaseBlock;
Ted Kremenek9682be12008-02-13 21:46:34 +00003110}
Ted Kremenek9aae5132007-08-23 21:42:29 +00003111
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003112CFGBlock *CFGBuilder::VisitCXXTryStmt(CXXTryStmt *Terminator) {
3113 // "try"/"catch" is a control-flow statement. Thus we stop processing the
3114 // current block.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003115 CFGBlock *TrySuccessor = NULL;
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003116
3117 if (Block) {
Zhongxing Xu33dfc072010-09-06 07:32:31 +00003118 if (badCFG)
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003119 return 0;
3120 TrySuccessor = Block;
3121 } else TrySuccessor = Succ;
3122
Mike Stump0bdba6c2010-01-20 01:15:34 +00003123 CFGBlock *PrevTryTerminatedBlock = TryTerminatedBlock;
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003124
3125 // Create a new block that will contain the try statement.
Mike Stump845384a2010-01-20 01:30:58 +00003126 CFGBlock *NewTryTerminatedBlock = createBlock(false);
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003127 // Add the terminator in the try block.
Mike Stump845384a2010-01-20 01:30:58 +00003128 NewTryTerminatedBlock->setTerminator(Terminator);
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003129
Mike Stump0bdba6c2010-01-20 01:15:34 +00003130 bool HasCatchAll = false;
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003131 for (unsigned h = 0; h <Terminator->getNumHandlers(); ++h) {
3132 // The code after the try is the implicit successor.
3133 Succ = TrySuccessor;
3134 CXXCatchStmt *CS = Terminator->getHandler(h);
Mike Stump0bdba6c2010-01-20 01:15:34 +00003135 if (CS->getExceptionDecl() == 0) {
3136 HasCatchAll = true;
3137 }
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003138 Block = NULL;
3139 CFGBlock *CatchBlock = VisitCXXCatchStmt(CS);
3140 if (CatchBlock == 0)
3141 return 0;
3142 // Add this block to the list of successors for the block with the try
3143 // statement.
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003144 addSuccessor(NewTryTerminatedBlock, CatchBlock);
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003145 }
Mike Stump0bdba6c2010-01-20 01:15:34 +00003146 if (!HasCatchAll) {
3147 if (PrevTryTerminatedBlock)
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003148 addSuccessor(NewTryTerminatedBlock, PrevTryTerminatedBlock);
Mike Stump0bdba6c2010-01-20 01:15:34 +00003149 else
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003150 addSuccessor(NewTryTerminatedBlock, &cfg->getExit());
Mike Stump0bdba6c2010-01-20 01:15:34 +00003151 }
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003152
3153 // The code after the try is the implicit successor.
3154 Succ = TrySuccessor;
3155
Mike Stump845384a2010-01-20 01:30:58 +00003156 // Save the current "try" context.
Ted Kremenek6b9964d2011-08-23 23:05:07 +00003157 SaveAndRestore<CFGBlock*> save_try(TryTerminatedBlock, NewTryTerminatedBlock);
3158 cfg->addTryDispatchBlock(TryTerminatedBlock);
Mike Stump845384a2010-01-20 01:30:58 +00003159
Ted Kremenek1362b8b2010-01-19 20:46:35 +00003160 assert(Terminator->getTryBlock() && "try must contain a non-NULL body");
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003161 Block = NULL;
Ted Kremeneke6ee6712012-11-13 00:12:13 +00003162 return addStmt(Terminator->getTryBlock());
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003163}
3164
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003165CFGBlock *CFGBuilder::VisitCXXCatchStmt(CXXCatchStmt *CS) {
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003166 // CXXCatchStmt are treated like labels, so they are the first statement in a
3167 // block.
3168
Marcin Swiderski3546b1a2010-10-01 01:46:52 +00003169 // Save local scope position because in case of exception variable ScopePos
3170 // won't be restored when traversing AST.
3171 SaveAndRestore<LocalScope::const_iterator> save_scope_pos(ScopePos);
3172
3173 // Create local scope for possible exception variable.
3174 // Store scope position. Add implicit destructor.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003175 if (VarDecl *VD = CS->getExceptionDecl()) {
Marcin Swiderski3546b1a2010-10-01 01:46:52 +00003176 LocalScope::const_iterator BeginScopePos = ScopePos;
3177 addLocalScopeForVarDecl(VD);
3178 addAutomaticObjDtors(ScopePos, BeginScopePos, CS);
3179 }
3180
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003181 if (CS->getHandlerBlock())
3182 addStmt(CS->getHandlerBlock());
3183
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003184 CFGBlock *CatchBlock = Block;
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003185 if (!CatchBlock)
3186 CatchBlock = createBlock();
Ted Kremenek8fdb59f2012-03-10 01:34:17 +00003187
3188 // CXXCatchStmt is more than just a label. They have semantic meaning
3189 // as well, as they implicitly "initialize" the catch variable. Add
3190 // it to the CFG as a CFGElement so that the control-flow of these
3191 // semantics gets captured.
3192 appendStmt(CatchBlock, CS);
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003193
Ted Kremenek8fdb59f2012-03-10 01:34:17 +00003194 // Also add the CXXCatchStmt as a label, to mirror handling of regular
3195 // labels.
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003196 CatchBlock->setLabel(CS);
3197
Ted Kremenek8fdb59f2012-03-10 01:34:17 +00003198 // Bail out if the CFG is bad.
Zhongxing Xu33dfc072010-09-06 07:32:31 +00003199 if (badCFG)
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003200 return 0;
3201
3202 // We set Block to NULL to allow lazy creation of a new block (if necessary)
3203 Block = NULL;
3204
3205 return CatchBlock;
3206}
3207
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003208CFGBlock *CFGBuilder::VisitCXXForRangeStmt(CXXForRangeStmt *S) {
Richard Smith02e85f32011-04-14 22:09:26 +00003209 // C++0x for-range statements are specified as [stmt.ranged]:
3210 //
3211 // {
3212 // auto && __range = range-init;
3213 // for ( auto __begin = begin-expr,
3214 // __end = end-expr;
3215 // __begin != __end;
3216 // ++__begin ) {
3217 // for-range-declaration = *__begin;
3218 // statement
3219 // }
3220 // }
3221
3222 // Save local scope position before the addition of the implicit variables.
3223 SaveAndRestore<LocalScope::const_iterator> save_scope_pos(ScopePos);
3224
3225 // Create local scopes and destructors for range, begin and end variables.
3226 if (Stmt *Range = S->getRangeStmt())
3227 addLocalScopeForStmt(Range);
3228 if (Stmt *BeginEnd = S->getBeginEndStmt())
3229 addLocalScopeForStmt(BeginEnd);
3230 addAutomaticObjDtors(ScopePos, save_scope_pos.get(), S);
3231
3232 LocalScope::const_iterator ContinueScopePos = ScopePos;
3233
3234 // "for" is a control-flow statement. Thus we stop processing the current
3235 // block.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003236 CFGBlock *LoopSuccessor = NULL;
Richard Smith02e85f32011-04-14 22:09:26 +00003237 if (Block) {
3238 if (badCFG)
3239 return 0;
3240 LoopSuccessor = Block;
3241 } else
3242 LoopSuccessor = Succ;
3243
3244 // Save the current value for the break targets.
3245 // All breaks should go to the code following the loop.
3246 SaveAndRestore<JumpTarget> save_break(BreakJumpTarget);
3247 BreakJumpTarget = JumpTarget(LoopSuccessor, ScopePos);
3248
3249 // The block for the __begin != __end expression.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003250 CFGBlock *ConditionBlock = createBlock(false);
Richard Smith02e85f32011-04-14 22:09:26 +00003251 ConditionBlock->setTerminator(S);
3252
3253 // Now add the actual condition to the condition block.
3254 if (Expr *C = S->getCond()) {
3255 Block = ConditionBlock;
3256 CFGBlock *BeginConditionBlock = addStmt(C);
3257 if (badCFG)
3258 return 0;
3259 assert(BeginConditionBlock == ConditionBlock &&
3260 "condition block in for-range was unexpectedly complex");
3261 (void)BeginConditionBlock;
3262 }
3263
3264 // The condition block is the implicit successor for the loop body as well as
3265 // any code above the loop.
3266 Succ = ConditionBlock;
3267
3268 // See if this is a known constant.
3269 TryResult KnownVal(true);
3270
3271 if (S->getCond())
3272 KnownVal = tryEvaluateBool(S->getCond());
3273
3274 // Now create the loop body.
3275 {
3276 assert(S->getBody());
3277
3278 // Save the current values for Block, Succ, and continue targets.
3279 SaveAndRestore<CFGBlock*> save_Block(Block), save_Succ(Succ);
3280 SaveAndRestore<JumpTarget> save_continue(ContinueJumpTarget);
3281
3282 // Generate increment code in its own basic block. This is the target of
3283 // continue statements.
3284 Block = 0;
3285 Succ = addStmt(S->getInc());
3286 ContinueJumpTarget = JumpTarget(Succ, ContinueScopePos);
3287
3288 // The starting block for the loop increment is the block that should
3289 // represent the 'loop target' for looping back to the start of the loop.
3290 ContinueJumpTarget.block->setLoopTarget(S);
3291
3292 // Finish up the increment block and prepare to start the loop body.
3293 assert(Block);
3294 if (badCFG)
3295 return 0;
3296 Block = 0;
3297
3298
3299 // Add implicit scope and dtors for loop variable.
3300 addLocalScopeAndDtors(S->getLoopVarStmt());
3301
3302 // Populate a new block to contain the loop body and loop variable.
Ted Kremeneke6ee6712012-11-13 00:12:13 +00003303 addStmt(S->getBody());
Richard Smith02e85f32011-04-14 22:09:26 +00003304 if (badCFG)
3305 return 0;
Ted Kremeneke6ee6712012-11-13 00:12:13 +00003306 CFGBlock *LoopVarStmtBlock = addStmt(S->getLoopVarStmt());
Richard Smith02e85f32011-04-14 22:09:26 +00003307 if (badCFG)
3308 return 0;
3309
3310 // This new body block is a successor to our condition block.
Ted Kremeneke6ee6712012-11-13 00:12:13 +00003311 addSuccessor(ConditionBlock, KnownVal.isFalse() ? 0 : LoopVarStmtBlock);
Richard Smith02e85f32011-04-14 22:09:26 +00003312 }
3313
3314 // Link up the condition block with the code that follows the loop (the
3315 // false branch).
3316 addSuccessor(ConditionBlock, KnownVal.isTrue() ? 0 : LoopSuccessor);
3317
3318 // Add the initialization statements.
3319 Block = createBlock();
Richard Smith0c502d22011-04-18 15:49:25 +00003320 addStmt(S->getBeginEndStmt());
3321 return addStmt(S->getRangeStmt());
Richard Smith02e85f32011-04-14 22:09:26 +00003322}
3323
John McCall5d413782010-12-06 08:20:24 +00003324CFGBlock *CFGBuilder::VisitExprWithCleanups(ExprWithCleanups *E,
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003325 AddStmtChoice asc) {
Jordan Rose6d671cc2012-09-05 22:55:23 +00003326 if (BuildOpts.AddTemporaryDtors) {
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003327 // If adding implicit destructors visit the full expression for adding
3328 // destructors of temporaries.
3329 VisitForTemporaryDtors(E->getSubExpr());
3330
3331 // Full expression has to be added as CFGStmt so it will be sequenced
3332 // before destructors of it's temporaries.
Zhanyong Wanb5d11c12010-11-24 03:28:53 +00003333 asc = asc.withAlwaysAdd(true);
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003334 }
3335 return Visit(E->getSubExpr(), asc);
3336}
3337
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00003338CFGBlock *CFGBuilder::VisitCXXBindTemporaryExpr(CXXBindTemporaryExpr *E,
3339 AddStmtChoice asc) {
Ted Kremenek7c58d352011-03-10 01:14:11 +00003340 if (asc.alwaysAdd(*this, E)) {
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00003341 autoCreateBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00003342 appendStmt(Block, E);
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00003343
3344 // We do not want to propagate the AlwaysAdd property.
Zhanyong Wanb5d11c12010-11-24 03:28:53 +00003345 asc = asc.withAlwaysAdd(false);
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00003346 }
3347 return Visit(E->getSubExpr(), asc);
3348}
3349
Zhongxing Xu0b51d4d2010-11-01 06:46:05 +00003350CFGBlock *CFGBuilder::VisitCXXConstructExpr(CXXConstructExpr *C,
3351 AddStmtChoice asc) {
Zhongxing Xu0b51d4d2010-11-01 06:46:05 +00003352 autoCreateBlock();
Zhongxing Xuf0cb43f2012-01-11 02:39:07 +00003353 appendStmt(Block, C);
Zhanyong Wanb5d11c12010-11-24 03:28:53 +00003354
Zhongxing Xu0b51d4d2010-11-01 06:46:05 +00003355 return VisitChildren(C);
3356}
3357
Jordan Rosec9176072014-01-13 17:59:19 +00003358CFGBlock *CFGBuilder::VisitCXXNewExpr(CXXNewExpr *NE,
3359 AddStmtChoice asc) {
3360
3361 autoCreateBlock();
3362 appendStmt(Block, NE);
Jordan Rose6f5f7192014-01-14 17:29:12 +00003363
Jordan Rosec9176072014-01-13 17:59:19 +00003364 if (NE->getInitializer())
Jordan Rose6f5f7192014-01-14 17:29:12 +00003365 Block = Visit(NE->getInitializer());
Jordan Rosec9176072014-01-13 17:59:19 +00003366 if (BuildOpts.AddCXXNewAllocator)
3367 appendNewAllocator(Block, NE);
3368 if (NE->isArray())
Jordan Rose6f5f7192014-01-14 17:29:12 +00003369 Block = Visit(NE->getArraySize());
Jordan Rosec9176072014-01-13 17:59:19 +00003370 for (CXXNewExpr::arg_iterator I = NE->placement_arg_begin(),
3371 E = NE->placement_arg_end(); I != E; ++I)
Jordan Rose6f5f7192014-01-14 17:29:12 +00003372 Block = Visit(*I);
Jordan Rosec9176072014-01-13 17:59:19 +00003373 return Block;
3374}
Jordan Rosed2f40792013-09-03 17:00:57 +00003375
3376CFGBlock *CFGBuilder::VisitCXXDeleteExpr(CXXDeleteExpr *DE,
3377 AddStmtChoice asc) {
3378 autoCreateBlock();
3379 appendStmt(Block, DE);
3380 QualType DTy = DE->getDestroyedType();
3381 DTy = DTy.getNonReferenceType();
3382 CXXRecordDecl *RD = Context->getBaseElementType(DTy)->getAsCXXRecordDecl();
3383 if (RD) {
Matt Beaumont-Gay093f2402013-09-09 21:07:58 +00003384 if (RD->isCompleteDefinition() && !RD->hasTrivialDestructor())
Jordan Rosed2f40792013-09-03 17:00:57 +00003385 appendDeleteDtor(Block, RD, DE);
3386 }
3387
3388 return VisitChildren(DE);
3389}
3390
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00003391CFGBlock *CFGBuilder::VisitCXXFunctionalCastExpr(CXXFunctionalCastExpr *E,
3392 AddStmtChoice asc) {
Ted Kremenek7c58d352011-03-10 01:14:11 +00003393 if (asc.alwaysAdd(*this, E)) {
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00003394 autoCreateBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00003395 appendStmt(Block, E);
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00003396 // We do not want to propagate the AlwaysAdd property.
Zhanyong Wanb5d11c12010-11-24 03:28:53 +00003397 asc = asc.withAlwaysAdd(false);
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00003398 }
3399 return Visit(E->getSubExpr(), asc);
3400}
3401
Zhongxing Xu0b51d4d2010-11-01 06:46:05 +00003402CFGBlock *CFGBuilder::VisitCXXTemporaryObjectExpr(CXXTemporaryObjectExpr *C,
3403 AddStmtChoice asc) {
Zhongxing Xu0b51d4d2010-11-01 06:46:05 +00003404 autoCreateBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00003405 appendStmt(Block, C);
Zhongxing Xu0b51d4d2010-11-01 06:46:05 +00003406 return VisitChildren(C);
3407}
3408
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00003409CFGBlock *CFGBuilder::VisitImplicitCastExpr(ImplicitCastExpr *E,
3410 AddStmtChoice asc) {
Ted Kremenek7c58d352011-03-10 01:14:11 +00003411 if (asc.alwaysAdd(*this, E)) {
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00003412 autoCreateBlock();
Ted Kremenek2866bab2011-03-10 01:14:08 +00003413 appendStmt(Block, E);
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00003414 }
Ted Kremenek8219b822010-12-16 07:46:53 +00003415 return Visit(E->getSubExpr(), AddStmtChoice());
Zhongxing Xue1dbeb22010-11-01 13:04:58 +00003416}
3417
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003418CFGBlock *CFGBuilder::VisitIndirectGotoStmt(IndirectGotoStmt *I) {
Mike Stump31feda52009-07-17 01:31:16 +00003419 // Lazily create the indirect-goto dispatch block if there isn't one already.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003420 CFGBlock *IBlock = cfg->getIndirectGotoBlock();
Mike Stump31feda52009-07-17 01:31:16 +00003421
Ted Kremenekeda180e22007-08-28 19:26:49 +00003422 if (!IBlock) {
3423 IBlock = createBlock(false);
3424 cfg->setIndirectGotoBlock(IBlock);
3425 }
Mike Stump31feda52009-07-17 01:31:16 +00003426
Ted Kremenekeda180e22007-08-28 19:26:49 +00003427 // IndirectGoto is a control-flow statement. Thus we stop processing the
3428 // current block and create a new one.
Zhongxing Xu33dfc072010-09-06 07:32:31 +00003429 if (badCFG)
Ted Kremenek93668002009-07-17 22:18:43 +00003430 return 0;
3431
Ted Kremenekeda180e22007-08-28 19:26:49 +00003432 Block = createBlock(false);
3433 Block->setTerminator(I);
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003434 addSuccessor(Block, IBlock);
Ted Kremenekeda180e22007-08-28 19:26:49 +00003435 return addStmt(I->getTarget());
3436}
3437
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003438CFGBlock *CFGBuilder::VisitForTemporaryDtors(Stmt *E, bool BindToTemporary) {
Jordan Rose6d671cc2012-09-05 22:55:23 +00003439 assert(BuildOpts.AddImplicitDtors && BuildOpts.AddTemporaryDtors);
3440
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003441tryAgain:
3442 if (!E) {
3443 badCFG = true;
3444 return NULL;
3445 }
3446 switch (E->getStmtClass()) {
3447 default:
3448 return VisitChildrenForTemporaryDtors(E);
3449
3450 case Stmt::BinaryOperatorClass:
3451 return VisitBinaryOperatorForTemporaryDtors(cast<BinaryOperator>(E));
3452
3453 case Stmt::CXXBindTemporaryExprClass:
3454 return VisitCXXBindTemporaryExprForTemporaryDtors(
3455 cast<CXXBindTemporaryExpr>(E), BindToTemporary);
3456
John McCallc07a0c72011-02-17 10:25:35 +00003457 case Stmt::BinaryConditionalOperatorClass:
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003458 case Stmt::ConditionalOperatorClass:
3459 return VisitConditionalOperatorForTemporaryDtors(
John McCallc07a0c72011-02-17 10:25:35 +00003460 cast<AbstractConditionalOperator>(E), BindToTemporary);
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003461
3462 case Stmt::ImplicitCastExprClass:
3463 // For implicit cast we want BindToTemporary to be passed further.
3464 E = cast<CastExpr>(E)->getSubExpr();
3465 goto tryAgain;
3466
3467 case Stmt::ParenExprClass:
3468 E = cast<ParenExpr>(E)->getSubExpr();
3469 goto tryAgain;
Douglas Gregorfe314812011-06-21 17:03:29 +00003470
3471 case Stmt::MaterializeTemporaryExprClass:
3472 E = cast<MaterializeTemporaryExpr>(E)->GetTemporaryExpr();
3473 goto tryAgain;
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003474 }
3475}
3476
3477CFGBlock *CFGBuilder::VisitChildrenForTemporaryDtors(Stmt *E) {
3478 // When visiting children for destructors we want to visit them in reverse
Ted Kremenek8ae67872013-02-05 22:00:19 +00003479 // order that they will appear in the CFG. Because the CFG is built
3480 // bottom-up, this means we visit them in their natural order, which
3481 // reverses them in the CFG.
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003482 CFGBlock *B = Block;
Ted Kremenek8ae67872013-02-05 22:00:19 +00003483 for (Stmt::child_range I = E->children(); I; ++I) {
3484 if (Stmt *Child = *I)
3485 if (CFGBlock *R = VisitForTemporaryDtors(Child))
3486 B = R;
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003487 }
3488 return B;
3489}
3490
3491CFGBlock *CFGBuilder::VisitBinaryOperatorForTemporaryDtors(BinaryOperator *E) {
3492 if (E->isLogicalOp()) {
3493 // Destructors for temporaries in LHS expression should be called after
3494 // those for RHS expression. Even if this will unnecessarily create a block,
3495 // this block will be used at least by the full expression.
3496 autoCreateBlock();
3497 CFGBlock *ConfluenceBlock = VisitForTemporaryDtors(E->getLHS());
3498 if (badCFG)
3499 return NULL;
3500
3501 Succ = ConfluenceBlock;
3502 Block = NULL;
3503 CFGBlock *RHSBlock = VisitForTemporaryDtors(E->getRHS());
3504
3505 if (RHSBlock) {
3506 if (badCFG)
3507 return NULL;
3508
3509 // If RHS expression did produce destructors we need to connect created
3510 // blocks to CFG in same manner as for binary operator itself.
3511 CFGBlock *LHSBlock = createBlock(false);
3512 LHSBlock->setTerminator(CFGTerminator(E, true));
3513
3514 // For binary operator LHS block is before RHS in list of predecessors
3515 // of ConfluenceBlock.
3516 std::reverse(ConfluenceBlock->pred_begin(),
3517 ConfluenceBlock->pred_end());
3518
3519 // See if this is a known constant.
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003520 TryResult KnownVal = tryEvaluateBool(E->getLHS());
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003521 if (KnownVal.isKnown() && (E->getOpcode() == BO_LOr))
3522 KnownVal.negate();
3523
3524 // Link LHSBlock with RHSBlock exactly the same way as for binary operator
3525 // itself.
3526 if (E->getOpcode() == BO_LOr) {
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003527 addSuccessor(LHSBlock, KnownVal.isTrue() ? NULL : ConfluenceBlock);
3528 addSuccessor(LHSBlock, KnownVal.isFalse() ? NULL : RHSBlock);
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003529 } else {
3530 assert (E->getOpcode() == BO_LAnd);
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003531 addSuccessor(LHSBlock, KnownVal.isFalse() ? NULL : RHSBlock);
3532 addSuccessor(LHSBlock, KnownVal.isTrue() ? NULL : ConfluenceBlock);
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003533 }
3534
3535 Block = LHSBlock;
3536 return LHSBlock;
3537 }
3538
3539 Block = ConfluenceBlock;
3540 return ConfluenceBlock;
3541 }
3542
Zhanyong Wan59f09c72010-11-22 19:32:14 +00003543 if (E->isAssignmentOp()) {
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003544 // For assignment operator (=) LHS expression is visited
3545 // before RHS expression. For destructors visit them in reverse order.
3546 CFGBlock *RHSBlock = VisitForTemporaryDtors(E->getRHS());
3547 CFGBlock *LHSBlock = VisitForTemporaryDtors(E->getLHS());
3548 return LHSBlock ? LHSBlock : RHSBlock;
3549 }
3550
3551 // For any other binary operator RHS expression is visited before
3552 // LHS expression (order of children). For destructors visit them in reverse
3553 // order.
3554 CFGBlock *LHSBlock = VisitForTemporaryDtors(E->getLHS());
3555 CFGBlock *RHSBlock = VisitForTemporaryDtors(E->getRHS());
3556 return RHSBlock ? RHSBlock : LHSBlock;
3557}
3558
3559CFGBlock *CFGBuilder::VisitCXXBindTemporaryExprForTemporaryDtors(
3560 CXXBindTemporaryExpr *E, bool BindToTemporary) {
3561 // First add destructors for temporaries in subexpression.
3562 CFGBlock *B = VisitForTemporaryDtors(E->getSubExpr());
Zhongxing Xufee455f2010-11-14 15:23:50 +00003563 if (!BindToTemporary) {
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003564 // If lifetime of temporary is not prolonged (by assigning to constant
3565 // reference) add destructor for it.
Chandler Carruthad747252011-09-13 06:09:01 +00003566
3567 // If the destructor is marked as a no-return destructor, we need to create
3568 // a new block for the destructor which does not have as a successor
3569 // anything built thus far. Control won't flow out of this block.
3570 const CXXDestructorDecl *Dtor = E->getTemporary()->getDestructor();
Ted Kremenekff909f92014-03-08 02:22:25 +00003571 if (Dtor->isNoReturn()) {
3572 Succ = B;
Chandler Carrutha70991b2011-09-13 09:13:49 +00003573 Block = createNoReturnBlock();
Ted Kremenekff909f92014-03-08 02:22:25 +00003574 } else {
Chandler Carruthad747252011-09-13 06:09:01 +00003575 autoCreateBlock();
Ted Kremenekff909f92014-03-08 02:22:25 +00003576 }
Chandler Carruthad747252011-09-13 06:09:01 +00003577
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003578 appendTemporaryDtor(Block, E);
3579 B = Block;
3580 }
3581 return B;
3582}
3583
3584CFGBlock *CFGBuilder::VisitConditionalOperatorForTemporaryDtors(
John McCallc07a0c72011-02-17 10:25:35 +00003585 AbstractConditionalOperator *E, bool BindToTemporary) {
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003586 // First add destructors for condition expression. Even if this will
3587 // unnecessarily create a block, this block will be used at least by the full
3588 // expression.
3589 autoCreateBlock();
3590 CFGBlock *ConfluenceBlock = VisitForTemporaryDtors(E->getCond());
3591 if (badCFG)
3592 return NULL;
John McCallc07a0c72011-02-17 10:25:35 +00003593 if (BinaryConditionalOperator *BCO
3594 = dyn_cast<BinaryConditionalOperator>(E)) {
3595 ConfluenceBlock = VisitForTemporaryDtors(BCO->getCommon());
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003596 if (badCFG)
3597 return NULL;
3598 }
3599
John McCallc07a0c72011-02-17 10:25:35 +00003600 // Try to add block with destructors for LHS expression.
3601 CFGBlock *LHSBlock = NULL;
3602 Succ = ConfluenceBlock;
3603 Block = NULL;
3604 LHSBlock = VisitForTemporaryDtors(E->getTrueExpr(), BindToTemporary);
3605 if (badCFG)
3606 return NULL;
3607
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003608 // Try to add block with destructors for RHS expression;
3609 Succ = ConfluenceBlock;
3610 Block = NULL;
John McCallc07a0c72011-02-17 10:25:35 +00003611 CFGBlock *RHSBlock = VisitForTemporaryDtors(E->getFalseExpr(),
3612 BindToTemporary);
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003613 if (badCFG)
3614 return NULL;
3615
3616 if (!RHSBlock && !LHSBlock) {
3617 // If neither LHS nor RHS expression had temporaries to destroy don't create
3618 // more blocks.
3619 Block = ConfluenceBlock;
3620 return Block;
3621 }
3622
3623 Block = createBlock(false);
3624 Block->setTerminator(CFGTerminator(E, true));
Ted Kremenekfcc14172014-03-08 02:22:29 +00003625 assert(Block->getTerminator().isTemporaryDtorsBranch());
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003626
3627 // See if this is a known constant.
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003628 const TryResult &KnownVal = tryEvaluateBool(E->getCond());
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003629
3630 if (LHSBlock) {
Ted Kremenek5a095272014-03-04 21:53:26 +00003631 addSuccessor(Block, LHSBlock, !KnownVal.isFalse());
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003632 } else if (KnownVal.isFalse()) {
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003633 addSuccessor(Block, NULL);
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003634 } else {
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003635 addSuccessor(Block, ConfluenceBlock);
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003636 std::reverse(ConfluenceBlock->pred_begin(), ConfluenceBlock->pred_end());
3637 }
3638
3639 if (!RHSBlock)
3640 RHSBlock = ConfluenceBlock;
Ted Kremenek5a095272014-03-04 21:53:26 +00003641
3642 addSuccessor(Block, RHSBlock, !KnownVal.isTrue());
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00003643
3644 return Block;
3645}
3646
Ted Kremenek04cca642007-08-23 21:26:19 +00003647} // end anonymous namespace
Ted Kremenek889073f2007-08-23 16:51:22 +00003648
Mike Stump31feda52009-07-17 01:31:16 +00003649/// createBlock - Constructs and adds a new CFGBlock to the CFG. The block has
3650/// no successors or predecessors. If this is the first block created in the
3651/// CFG, it is automatically set to be the Entry and Exit of the CFG.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003652CFGBlock *CFG::createBlock() {
Ted Kremenek889073f2007-08-23 16:51:22 +00003653 bool first_block = begin() == end();
3654
3655 // Create the block.
Ted Kremenek289ae4f2009-10-12 20:55:07 +00003656 CFGBlock *Mem = getAllocator().Allocate<CFGBlock>();
Anna Zaks02a1fc12011-12-05 21:33:11 +00003657 new (Mem) CFGBlock(NumBlockIDs++, BlkBVC, this);
Ted Kremenek289ae4f2009-10-12 20:55:07 +00003658 Blocks.push_back(Mem, BlkBVC);
Ted Kremenek889073f2007-08-23 16:51:22 +00003659
3660 // If this is the first block, set it as the Entry and Exit.
Ted Kremenek289ae4f2009-10-12 20:55:07 +00003661 if (first_block)
3662 Entry = Exit = &back();
Ted Kremenek889073f2007-08-23 16:51:22 +00003663
3664 // Return the block.
Ted Kremenek289ae4f2009-10-12 20:55:07 +00003665 return &back();
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00003666}
3667
Ted Kremenek889073f2007-08-23 16:51:22 +00003668/// buildCFG - Constructs a CFG from an AST. Ownership of the returned
3669/// CFG is returned to the caller.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003670CFG* CFG::buildCFG(const Decl *D, Stmt *Statement, ASTContext *C,
Ted Kremenekf9d82902011-03-10 01:14:05 +00003671 const BuildOptions &BO) {
3672 CFGBuilder Builder(C, BO);
3673 return Builder.buildCFG(D, Statement);
Ted Kremenek889073f2007-08-23 16:51:22 +00003674}
3675
Ted Kremenek8cfe2072011-03-03 01:21:32 +00003676const CXXDestructorDecl *
3677CFGImplicitDtor::getDestructorDecl(ASTContext &astContext) const {
Ted Kremeneke06a55c2011-03-02 20:32:29 +00003678 switch (getKind()) {
Ted Kremeneke06a55c2011-03-02 20:32:29 +00003679 case CFGElement::Statement:
3680 case CFGElement::Initializer:
Jordan Rosec9176072014-01-13 17:59:19 +00003681 case CFGElement::NewAllocator:
Ted Kremeneke06a55c2011-03-02 20:32:29 +00003682 llvm_unreachable("getDestructorDecl should only be used with "
3683 "ImplicitDtors");
3684 case CFGElement::AutomaticObjectDtor: {
David Blaikie2a01f5d2013-02-21 20:58:29 +00003685 const VarDecl *var = castAs<CFGAutomaticObjDtor>().getVarDecl();
Ted Kremeneke06a55c2011-03-02 20:32:29 +00003686 QualType ty = var->getType();
Ted Kremenek1676a042011-03-03 01:01:03 +00003687 ty = ty.getNonReferenceType();
Ted Kremeneke7d78882012-03-19 23:48:41 +00003688 while (const ArrayType *arrayType = astContext.getAsArrayType(ty)) {
Ted Kremenek8cfe2072011-03-03 01:21:32 +00003689 ty = arrayType->getElementType();
3690 }
Ted Kremeneke06a55c2011-03-02 20:32:29 +00003691 const RecordType *recordType = ty->getAs<RecordType>();
3692 const CXXRecordDecl *classDecl =
Ted Kremenek1676a042011-03-03 01:01:03 +00003693 cast<CXXRecordDecl>(recordType->getDecl());
Ted Kremeneke06a55c2011-03-02 20:32:29 +00003694 return classDecl->getDestructor();
3695 }
Jordan Rosed2f40792013-09-03 17:00:57 +00003696 case CFGElement::DeleteDtor: {
3697 const CXXDeleteExpr *DE = castAs<CFGDeleteDtor>().getDeleteExpr();
3698 QualType DTy = DE->getDestroyedType();
3699 DTy = DTy.getNonReferenceType();
3700 const CXXRecordDecl *classDecl =
3701 astContext.getBaseElementType(DTy)->getAsCXXRecordDecl();
3702 return classDecl->getDestructor();
3703 }
Ted Kremeneke06a55c2011-03-02 20:32:29 +00003704 case CFGElement::TemporaryDtor: {
3705 const CXXBindTemporaryExpr *bindExpr =
David Blaikie2a01f5d2013-02-21 20:58:29 +00003706 castAs<CFGTemporaryDtor>().getBindTemporaryExpr();
Ted Kremeneke06a55c2011-03-02 20:32:29 +00003707 const CXXTemporary *temp = bindExpr->getTemporary();
3708 return temp->getDestructor();
3709 }
3710 case CFGElement::BaseDtor:
3711 case CFGElement::MemberDtor:
3712
3713 // Not yet supported.
3714 return 0;
3715 }
Ted Kremenek1676a042011-03-03 01:01:03 +00003716 llvm_unreachable("getKind() returned bogus value");
Ted Kremeneke06a55c2011-03-02 20:32:29 +00003717}
3718
Ted Kremenek8cfe2072011-03-03 01:21:32 +00003719bool CFGImplicitDtor::isNoReturn(ASTContext &astContext) const {
Richard Smith10876ef2013-01-17 01:30:42 +00003720 if (const CXXDestructorDecl *DD = getDestructorDecl(astContext))
3721 return DD->isNoReturn();
Ted Kremeneke06a55c2011-03-02 20:32:29 +00003722 return false;
Ted Kremenek96a7a592011-03-01 03:15:10 +00003723}
3724
Ted Kremenekf2d4372b2007-10-01 19:33:33 +00003725//===----------------------------------------------------------------------===//
Ted Kremenek4b6fee62014-02-27 00:24:00 +00003726// CFGBlock operations.
Ted Kremenekb0371852010-09-09 00:06:04 +00003727//===----------------------------------------------------------------------===//
3728
Ted Kremenek4b6fee62014-02-27 00:24:00 +00003729CFGBlock::AdjacentBlock::AdjacentBlock(CFGBlock *B, bool IsReachable)
3730 : ReachableBlock(IsReachable ? B : 0),
3731 UnreachableBlock(!IsReachable ? B : 0,
3732 B && IsReachable ? AB_Normal : AB_Unreachable) {}
3733
3734CFGBlock::AdjacentBlock::AdjacentBlock(CFGBlock *B, CFGBlock *AlternateBlock)
3735 : ReachableBlock(B),
3736 UnreachableBlock(B == AlternateBlock ? 0 : AlternateBlock,
3737 B == AlternateBlock ? AB_Alternate : AB_Normal) {}
3738
3739void CFGBlock::addSuccessor(AdjacentBlock Succ,
3740 BumpVectorContext &C) {
3741 if (CFGBlock *B = Succ.getReachableBlock())
David Blaikie9afd5da2014-03-04 23:39:18 +00003742 B->Preds.push_back(AdjacentBlock(this, Succ.isReachable()), C);
Ted Kremenek4b6fee62014-02-27 00:24:00 +00003743
3744 if (CFGBlock *UnreachableB = Succ.getPossiblyUnreachableBlock())
David Blaikie9afd5da2014-03-04 23:39:18 +00003745 UnreachableB->Preds.push_back(AdjacentBlock(this, false), C);
Ted Kremenek4b6fee62014-02-27 00:24:00 +00003746
3747 Succs.push_back(Succ, C);
3748}
3749
Ted Kremenekb0371852010-09-09 00:06:04 +00003750bool CFGBlock::FilterEdge(const CFGBlock::FilterOptions &F,
Ted Kremenekf146cd12010-09-09 02:57:48 +00003751 const CFGBlock *From, const CFGBlock *To) {
Ted Kremenekb0371852010-09-09 00:06:04 +00003752
Ted Kremenek4b6fee62014-02-27 00:24:00 +00003753 if (F.IgnoreNullPredecessors && !From)
3754 return true;
3755
3756 if (To && From && F.IgnoreDefaultsWithCoveredEnums) {
Ted Kremenekb0371852010-09-09 00:06:04 +00003757 // If the 'To' has no label or is labeled but the label isn't a
3758 // CaseStmt then filter this edge.
3759 if (const SwitchStmt *S =
Ted Kremenek89794742011-03-07 22:04:39 +00003760 dyn_cast_or_null<SwitchStmt>(From->getTerminator().getStmt())) {
Ted Kremenekb0371852010-09-09 00:06:04 +00003761 if (S->isAllEnumCasesCovered()) {
Ted Kremenek89794742011-03-07 22:04:39 +00003762 const Stmt *L = To->getLabel();
3763 if (!L || !isa<CaseStmt>(L))
3764 return true;
Ted Kremenekb0371852010-09-09 00:06:04 +00003765 }
3766 }
3767 }
3768
3769 return false;
3770}
3771
3772//===----------------------------------------------------------------------===//
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00003773// CFG pretty printing
3774//===----------------------------------------------------------------------===//
3775
Ted Kremenek7e776b12007-08-22 18:22:34 +00003776namespace {
3777
Kovarththanan Rajaratnam65c65662009-11-28 06:07:30 +00003778class StmtPrinterHelper : public PrinterHelper {
Ted Kremenek96a7a592011-03-01 03:15:10 +00003779 typedef llvm::DenseMap<const Stmt*,std::pair<unsigned,unsigned> > StmtMapTy;
3780 typedef llvm::DenseMap<const Decl*,std::pair<unsigned,unsigned> > DeclMapTy;
Ted Kremenek04f3cee2007-08-31 21:30:12 +00003781 StmtMapTy StmtMap;
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00003782 DeclMapTy DeclMap;
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003783 signed currentBlock;
Ted Kremenekd94854a2012-08-22 06:26:15 +00003784 unsigned currStmt;
Chris Lattnerc61089a2009-06-30 01:26:17 +00003785 const LangOptions &LangOpts;
Ted Kremenek9aae5132007-08-23 21:42:29 +00003786public:
Ted Kremenekf8b50e92007-08-31 22:26:13 +00003787
Chris Lattnerc61089a2009-06-30 01:26:17 +00003788 StmtPrinterHelper(const CFG* cfg, const LangOptions &LO)
Ted Kremenekd94854a2012-08-22 06:26:15 +00003789 : currentBlock(0), currStmt(0), LangOpts(LO)
Ted Kremenek96a7a592011-03-01 03:15:10 +00003790 {
Ted Kremenek04f3cee2007-08-31 21:30:12 +00003791 for (CFG::const_iterator I = cfg->begin(), E = cfg->end(); I != E; ++I ) {
3792 unsigned j = 1;
Ted Kremenek289ae4f2009-10-12 20:55:07 +00003793 for (CFGBlock::const_iterator BI = (*I)->begin(), BEnd = (*I)->end() ;
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00003794 BI != BEnd; ++BI, ++j ) {
David Blaikie00be69a2013-02-23 00:29:34 +00003795 if (Optional<CFGStmt> SE = BI->getAs<CFGStmt>()) {
3796 const Stmt *stmt= SE->getStmt();
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00003797 std::pair<unsigned, unsigned> P((*I)->getBlockID(), j);
Ted Kremenek96a7a592011-03-01 03:15:10 +00003798 StmtMap[stmt] = P;
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00003799
Ted Kremenek96a7a592011-03-01 03:15:10 +00003800 switch (stmt->getStmtClass()) {
3801 case Stmt::DeclStmtClass:
3802 DeclMap[cast<DeclStmt>(stmt)->getSingleDecl()] = P;
3803 break;
3804 case Stmt::IfStmtClass: {
3805 const VarDecl *var = cast<IfStmt>(stmt)->getConditionVariable();
3806 if (var)
3807 DeclMap[var] = P;
3808 break;
3809 }
3810 case Stmt::ForStmtClass: {
3811 const VarDecl *var = cast<ForStmt>(stmt)->getConditionVariable();
3812 if (var)
3813 DeclMap[var] = P;
3814 break;
3815 }
3816 case Stmt::WhileStmtClass: {
3817 const VarDecl *var =
3818 cast<WhileStmt>(stmt)->getConditionVariable();
3819 if (var)
3820 DeclMap[var] = P;
3821 break;
3822 }
3823 case Stmt::SwitchStmtClass: {
3824 const VarDecl *var =
3825 cast<SwitchStmt>(stmt)->getConditionVariable();
3826 if (var)
3827 DeclMap[var] = P;
3828 break;
3829 }
3830 case Stmt::CXXCatchStmtClass: {
3831 const VarDecl *var =
3832 cast<CXXCatchStmt>(stmt)->getExceptionDecl();
3833 if (var)
3834 DeclMap[var] = P;
3835 break;
3836 }
3837 default:
3838 break;
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00003839 }
3840 }
Ted Kremenek04f3cee2007-08-31 21:30:12 +00003841 }
Zhongxing Xu2cd7a782010-09-16 01:25:47 +00003842 }
Ted Kremenek04f3cee2007-08-31 21:30:12 +00003843 }
Ted Kremenek96a7a592011-03-01 03:15:10 +00003844
Mike Stump31feda52009-07-17 01:31:16 +00003845
Ted Kremenek04f3cee2007-08-31 21:30:12 +00003846 virtual ~StmtPrinterHelper() {}
Mike Stump31feda52009-07-17 01:31:16 +00003847
Chris Lattnerc61089a2009-06-30 01:26:17 +00003848 const LangOptions &getLangOpts() const { return LangOpts; }
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003849 void setBlockID(signed i) { currentBlock = i; }
Ted Kremenekd94854a2012-08-22 06:26:15 +00003850 void setStmtID(unsigned i) { currStmt = i; }
Mike Stump31feda52009-07-17 01:31:16 +00003851
Craig Topperb45acb82014-03-14 06:02:07 +00003852 bool handledStmt(Stmt *S, raw_ostream &OS) override {
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00003853 StmtMapTy::iterator I = StmtMap.find(S);
Ted Kremenek04f3cee2007-08-31 21:30:12 +00003854
3855 if (I == StmtMap.end())
3856 return false;
Mike Stump31feda52009-07-17 01:31:16 +00003857
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003858 if (currentBlock >= 0 && I->second.first == (unsigned) currentBlock
Ted Kremenekd94854a2012-08-22 06:26:15 +00003859 && I->second.second == currStmt) {
Ted Kremenek04f3cee2007-08-31 21:30:12 +00003860 return false;
Ted Kremenek60983dc2010-01-19 20:52:05 +00003861 }
Mike Stump31feda52009-07-17 01:31:16 +00003862
Ted Kremenek60983dc2010-01-19 20:52:05 +00003863 OS << "[B" << I->second.first << "." << I->second.second << "]";
Ted Kremenekf8b50e92007-08-31 22:26:13 +00003864 return true;
Ted Kremenek04f3cee2007-08-31 21:30:12 +00003865 }
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00003866
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003867 bool handleDecl(const Decl *D, raw_ostream &OS) {
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00003868 DeclMapTy::iterator I = DeclMap.find(D);
3869
3870 if (I == DeclMap.end())
3871 return false;
3872
Ted Kremenek3a9a2a52010-12-17 04:44:39 +00003873 if (currentBlock >= 0 && I->second.first == (unsigned) currentBlock
Ted Kremenekd94854a2012-08-22 06:26:15 +00003874 && I->second.second == currStmt) {
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00003875 return false;
3876 }
3877
3878 OS << "[B" << I->second.first << "." << I->second.second << "]";
3879 return true;
3880 }
Ted Kremenek04f3cee2007-08-31 21:30:12 +00003881};
Chris Lattnerc61089a2009-06-30 01:26:17 +00003882} // end anonymous namespace
Ted Kremenek04f3cee2007-08-31 21:30:12 +00003883
Chris Lattnerc61089a2009-06-30 01:26:17 +00003884
3885namespace {
Kovarththanan Rajaratnam65c65662009-11-28 06:07:30 +00003886class CFGBlockTerminatorPrint
Ted Kremenek83ebcef2008-01-08 18:15:10 +00003887 : public StmtVisitor<CFGBlockTerminatorPrint,void> {
Mike Stump31feda52009-07-17 01:31:16 +00003888
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003889 raw_ostream &OS;
Ted Kremenek04f3cee2007-08-31 21:30:12 +00003890 StmtPrinterHelper* Helper;
Douglas Gregor7de59662009-05-29 20:38:28 +00003891 PrintingPolicy Policy;
Ted Kremenek04f3cee2007-08-31 21:30:12 +00003892public:
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003893 CFGBlockTerminatorPrint(raw_ostream &os, StmtPrinterHelper* helper,
Chris Lattnerc61089a2009-06-30 01:26:17 +00003894 const PrintingPolicy &Policy)
Ted Kremenek5d0fb1e2013-12-11 23:44:05 +00003895 : OS(os), Helper(helper), Policy(Policy) {
3896 this->Policy.IncludeNewlines = false;
3897 }
Mike Stump31feda52009-07-17 01:31:16 +00003898
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003899 void VisitIfStmt(IfStmt *I) {
Ted Kremenek9aae5132007-08-23 21:42:29 +00003900 OS << "if ";
Douglas Gregor7de59662009-05-29 20:38:28 +00003901 I->getCond()->printPretty(OS,Helper,Policy);
Ted Kremenek9aae5132007-08-23 21:42:29 +00003902 }
Mike Stump31feda52009-07-17 01:31:16 +00003903
Ted Kremenek9aae5132007-08-23 21:42:29 +00003904 // Default case.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003905 void VisitStmt(Stmt *Terminator) {
Mike Stump31feda52009-07-17 01:31:16 +00003906 Terminator->printPretty(OS, Helper, Policy);
3907 }
3908
Ted Kremenek0dd8fee2013-03-28 18:43:15 +00003909 void VisitDeclStmt(DeclStmt *DS) {
3910 VarDecl *VD = cast<VarDecl>(DS->getSingleDecl());
3911 OS << "static init " << VD->getName();
3912 }
3913
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003914 void VisitForStmt(ForStmt *F) {
Ted Kremenek9aae5132007-08-23 21:42:29 +00003915 OS << "for (" ;
Ted Kremenek60983dc2010-01-19 20:52:05 +00003916 if (F->getInit())
3917 OS << "...";
Ted Kremenekfc7aafc2007-08-30 21:28:02 +00003918 OS << "; ";
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003919 if (Stmt *C = F->getCond())
Ted Kremenek60983dc2010-01-19 20:52:05 +00003920 C->printPretty(OS, Helper, Policy);
Ted Kremenekfc7aafc2007-08-30 21:28:02 +00003921 OS << "; ";
Ted Kremenek60983dc2010-01-19 20:52:05 +00003922 if (F->getInc())
3923 OS << "...";
Ted Kremenek15647632008-01-30 23:02:42 +00003924 OS << ")";
Ted Kremenek9aae5132007-08-23 21:42:29 +00003925 }
Mike Stump31feda52009-07-17 01:31:16 +00003926
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003927 void VisitWhileStmt(WhileStmt *W) {
Ted Kremenek9aae5132007-08-23 21:42:29 +00003928 OS << "while " ;
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003929 if (Stmt *C = W->getCond())
Ted Kremenek60983dc2010-01-19 20:52:05 +00003930 C->printPretty(OS, Helper, Policy);
Ted Kremenek9aae5132007-08-23 21:42:29 +00003931 }
Mike Stump31feda52009-07-17 01:31:16 +00003932
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003933 void VisitDoStmt(DoStmt *D) {
Ted Kremenek9aae5132007-08-23 21:42:29 +00003934 OS << "do ... while ";
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003935 if (Stmt *C = D->getCond())
Ted Kremenek60983dc2010-01-19 20:52:05 +00003936 C->printPretty(OS, Helper, Policy);
Ted Kremenek9e248872007-08-27 21:27:44 +00003937 }
Mike Stump31feda52009-07-17 01:31:16 +00003938
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003939 void VisitSwitchStmt(SwitchStmt *Terminator) {
Ted Kremenek9e248872007-08-27 21:27:44 +00003940 OS << "switch ";
Douglas Gregor7de59662009-05-29 20:38:28 +00003941 Terminator->getCond()->printPretty(OS, Helper, Policy);
Ted Kremenek9e248872007-08-27 21:27:44 +00003942 }
Mike Stump31feda52009-07-17 01:31:16 +00003943
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003944 void VisitCXXTryStmt(CXXTryStmt *CS) {
Mike Stumpbbf5ba62010-01-19 02:20:09 +00003945 OS << "try ...";
3946 }
3947
John McCallc07a0c72011-02-17 10:25:35 +00003948 void VisitAbstractConditionalOperator(AbstractConditionalOperator* C) {
Douglas Gregor7de59662009-05-29 20:38:28 +00003949 C->getCond()->printPretty(OS, Helper, Policy);
Mike Stump31feda52009-07-17 01:31:16 +00003950 OS << " ? ... : ...";
Ted Kremenek7f7dd762007-08-31 21:49:40 +00003951 }
Mike Stump31feda52009-07-17 01:31:16 +00003952
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003953 void VisitChooseExpr(ChooseExpr *C) {
Ted Kremenek391f94a2007-08-31 22:29:13 +00003954 OS << "__builtin_choose_expr( ";
Douglas Gregor7de59662009-05-29 20:38:28 +00003955 C->getCond()->printPretty(OS, Helper, Policy);
Ted Kremenek15647632008-01-30 23:02:42 +00003956 OS << " )";
Ted Kremenek391f94a2007-08-31 22:29:13 +00003957 }
Mike Stump31feda52009-07-17 01:31:16 +00003958
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003959 void VisitIndirectGotoStmt(IndirectGotoStmt *I) {
Ted Kremenekf8b50e92007-08-31 22:26:13 +00003960 OS << "goto *";
Douglas Gregor7de59662009-05-29 20:38:28 +00003961 I->getTarget()->printPretty(OS, Helper, Policy);
Ted Kremenekf8b50e92007-08-31 22:26:13 +00003962 }
Mike Stump31feda52009-07-17 01:31:16 +00003963
Ted Kremenek7f7dd762007-08-31 21:49:40 +00003964 void VisitBinaryOperator(BinaryOperator* B) {
3965 if (!B->isLogicalOp()) {
3966 VisitExpr(B);
3967 return;
3968 }
Mike Stump31feda52009-07-17 01:31:16 +00003969
Douglas Gregor7de59662009-05-29 20:38:28 +00003970 B->getLHS()->printPretty(OS, Helper, Policy);
Mike Stump31feda52009-07-17 01:31:16 +00003971
Ted Kremenek7f7dd762007-08-31 21:49:40 +00003972 switch (B->getOpcode()) {
John McCalle3027922010-08-25 11:45:40 +00003973 case BO_LOr:
Ted Kremenek15647632008-01-30 23:02:42 +00003974 OS << " || ...";
Ted Kremenek7f7dd762007-08-31 21:49:40 +00003975 return;
John McCalle3027922010-08-25 11:45:40 +00003976 case BO_LAnd:
Ted Kremenek15647632008-01-30 23:02:42 +00003977 OS << " && ...";
Ted Kremenek7f7dd762007-08-31 21:49:40 +00003978 return;
3979 default:
David Blaikie83d382b2011-09-23 05:06:16 +00003980 llvm_unreachable("Invalid logical operator.");
Mike Stump31feda52009-07-17 01:31:16 +00003981 }
Ted Kremenek7f7dd762007-08-31 21:49:40 +00003982 }
Mike Stump31feda52009-07-17 01:31:16 +00003983
Ted Kremenek5ef32db2011-08-12 23:37:29 +00003984 void VisitExpr(Expr *E) {
Douglas Gregor7de59662009-05-29 20:38:28 +00003985 E->printPretty(OS, Helper, Policy);
Mike Stump31feda52009-07-17 01:31:16 +00003986 }
Ted Kremenekfcc14172014-03-08 02:22:29 +00003987
3988public:
3989 void print(CFGTerminator T) {
3990 if (T.isTemporaryDtorsBranch())
3991 OS << "(Temp Dtor) ";
3992 Visit(T.getStmt());
3993 }
Ted Kremenek9aae5132007-08-23 21:42:29 +00003994};
Chris Lattnerc61089a2009-06-30 01:26:17 +00003995} // end anonymous namespace
3996
Aaron Ballmanff924b02013-11-18 20:11:50 +00003997static void print_elem(raw_ostream &OS, StmtPrinterHelper &Helper,
Mike Stump92244b02010-01-19 22:00:14 +00003998 const CFGElement &E) {
David Blaikie00be69a2013-02-23 00:29:34 +00003999 if (Optional<CFGStmt> CS = E.getAs<CFGStmt>()) {
4000 const Stmt *S = CS->getStmt();
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00004001
Aaron Ballmanff924b02013-11-18 20:11:50 +00004002 // special printing for statement-expressions.
4003 if (const StmtExpr *SE = dyn_cast<StmtExpr>(S)) {
4004 const CompoundStmt *Sub = SE->getSubStmt();
Mike Stump31feda52009-07-17 01:31:16 +00004005
Aaron Ballmanff924b02013-11-18 20:11:50 +00004006 if (Sub->children()) {
4007 OS << "({ ... ; ";
4008 Helper.handledStmt(*SE->getSubStmt()->body_rbegin(),OS);
4009 OS << " })\n";
4010 return;
Ted Kremenekf8b50e92007-08-31 22:26:13 +00004011 }
4012 }
Aaron Ballmanff924b02013-11-18 20:11:50 +00004013 // special printing for comma expressions.
4014 if (const BinaryOperator* B = dyn_cast<BinaryOperator>(S)) {
4015 if (B->getOpcode() == BO_Comma) {
4016 OS << "... , ";
4017 Helper.handledStmt(B->getRHS(),OS);
4018 OS << '\n';
4019 return;
4020 }
4021 }
4022 S->printPretty(OS, &Helper, PrintingPolicy(Helper.getLangOpts()));
Mike Stump31feda52009-07-17 01:31:16 +00004023
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00004024 if (isa<CXXOperatorCallExpr>(S)) {
Zhanyong Wan59f09c72010-11-22 19:32:14 +00004025 OS << " (OperatorCall)";
Ted Kremenek0ffba932011-12-21 19:32:38 +00004026 }
4027 else if (isa<CXXBindTemporaryExpr>(S)) {
Zhanyong Wan59f09c72010-11-22 19:32:14 +00004028 OS << " (BindTemporary)";
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00004029 }
Ted Kremenek1a7648b2011-12-21 19:39:59 +00004030 else if (const CXXConstructExpr *CCE = dyn_cast<CXXConstructExpr>(S)) {
4031 OS << " (CXXConstructExpr, " << CCE->getType().getAsString() << ")";
4032 }
Ted Kremenek0ffba932011-12-21 19:32:38 +00004033 else if (const CastExpr *CE = dyn_cast<CastExpr>(S)) {
4034 OS << " (" << CE->getStmtClassName() << ", "
4035 << CE->getCastKindName()
4036 << ", " << CE->getType().getAsString()
4037 << ")";
4038 }
Mike Stump31feda52009-07-17 01:31:16 +00004039
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00004040 // Expressions need a newline.
4041 if (isa<Expr>(S))
4042 OS << '\n';
Ted Kremenek0f5d8bc2010-08-31 18:47:37 +00004043
David Blaikie00be69a2013-02-23 00:29:34 +00004044 } else if (Optional<CFGInitializer> IE = E.getAs<CFGInitializer>()) {
4045 const CXXCtorInitializer *I = IE->getInitializer();
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00004046 if (I->isBaseInitializer())
4047 OS << I->getBaseClass()->getAsCXXRecordDecl()->getName();
Jordan Rose69d0aed2013-10-22 23:19:47 +00004048 else if (I->isDelegatingInitializer())
4049 OS << I->getTypeSourceInfo()->getType()->getAsCXXRecordDecl()->getName();
Francois Pichetd583da02010-12-04 09:14:42 +00004050 else OS << I->getAnyMember()->getName();
Mike Stump31feda52009-07-17 01:31:16 +00004051
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00004052 OS << "(";
Ted Kremenek5ef32db2011-08-12 23:37:29 +00004053 if (Expr *IE = I->getInit())
Aaron Ballmanff924b02013-11-18 20:11:50 +00004054 IE->printPretty(OS, &Helper, PrintingPolicy(Helper.getLangOpts()));
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00004055 OS << ")";
4056
4057 if (I->isBaseInitializer())
4058 OS << " (Base initializer)\n";
Jordan Rose69d0aed2013-10-22 23:19:47 +00004059 else if (I->isDelegatingInitializer())
4060 OS << " (Delegating initializer)\n";
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00004061 else OS << " (Member initializer)\n";
4062
David Blaikie00be69a2013-02-23 00:29:34 +00004063 } else if (Optional<CFGAutomaticObjDtor> DE =
4064 E.getAs<CFGAutomaticObjDtor>()) {
4065 const VarDecl *VD = DE->getVarDecl();
Aaron Ballmanff924b02013-11-18 20:11:50 +00004066 Helper.handleDecl(VD, OS);
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00004067
Marcin Swiderski52e4bc12010-10-25 07:00:40 +00004068 const Type* T = VD->getType().getTypePtr();
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00004069 if (const ReferenceType* RT = T->getAs<ReferenceType>())
4070 T = RT->getPointeeType().getTypePtr();
Richard Smithf676e452012-07-24 21:02:14 +00004071 T = T->getBaseElementTypeUnsafe();
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00004072
4073 OS << ".~" << T->getAsCXXRecordDecl()->getName().str() << "()";
4074 OS << " (Implicit destructor)\n";
Marcin Swiderski20b88732010-10-05 05:37:00 +00004075
Jordan Rosec9176072014-01-13 17:59:19 +00004076 } else if (Optional<CFGNewAllocator> NE = E.getAs<CFGNewAllocator>()) {
4077 OS << "CFGNewAllocator(";
4078 if (const CXXNewExpr *AllocExpr = NE->getAllocatorExpr())
4079 AllocExpr->getType().print(OS, PrintingPolicy(Helper.getLangOpts()));
4080 OS << ")\n";
Jordan Rosed2f40792013-09-03 17:00:57 +00004081 } else if (Optional<CFGDeleteDtor> DE = E.getAs<CFGDeleteDtor>()) {
4082 const CXXRecordDecl *RD = DE->getCXXRecordDecl();
4083 if (!RD)
4084 return;
4085 CXXDeleteExpr *DelExpr =
4086 const_cast<CXXDeleteExpr*>(DE->getDeleteExpr());
Aaron Ballmanff924b02013-11-18 20:11:50 +00004087 Helper.handledStmt(cast<Stmt>(DelExpr->getArgument()), OS);
Jordan Rosed2f40792013-09-03 17:00:57 +00004088 OS << "->~" << RD->getName().str() << "()";
4089 OS << " (Implicit destructor)\n";
David Blaikie00be69a2013-02-23 00:29:34 +00004090 } else if (Optional<CFGBaseDtor> BE = E.getAs<CFGBaseDtor>()) {
4091 const CXXBaseSpecifier *BS = BE->getBaseSpecifier();
Marcin Swiderski20b88732010-10-05 05:37:00 +00004092 OS << "~" << BS->getType()->getAsCXXRecordDecl()->getName() << "()";
Zhongxing Xu614e17d2010-10-05 08:38:06 +00004093 OS << " (Base object destructor)\n";
Marcin Swiderski20b88732010-10-05 05:37:00 +00004094
David Blaikie00be69a2013-02-23 00:29:34 +00004095 } else if (Optional<CFGMemberDtor> ME = E.getAs<CFGMemberDtor>()) {
4096 const FieldDecl *FD = ME->getFieldDecl();
Richard Smithf676e452012-07-24 21:02:14 +00004097 const Type *T = FD->getType()->getBaseElementTypeUnsafe();
Marcin Swiderski20b88732010-10-05 05:37:00 +00004098 OS << "this->" << FD->getName();
Marcin Swiderski01769902010-10-25 07:05:54 +00004099 OS << ".~" << T->getAsCXXRecordDecl()->getName() << "()";
Zhongxing Xu614e17d2010-10-05 08:38:06 +00004100 OS << " (Member object destructor)\n";
Marcin Swiderski3ab17ad2010-11-03 06:19:35 +00004101
David Blaikie00be69a2013-02-23 00:29:34 +00004102 } else if (Optional<CFGTemporaryDtor> TE = E.getAs<CFGTemporaryDtor>()) {
4103 const CXXBindTemporaryExpr *BT = TE->getBindTemporaryExpr();
Pavel Labathd527cf82013-09-02 09:09:15 +00004104 OS << "~";
Aaron Ballmanff924b02013-11-18 20:11:50 +00004105 BT->getType().print(OS, PrintingPolicy(Helper.getLangOpts()));
Pavel Labathd527cf82013-09-02 09:09:15 +00004106 OS << "() (Temporary object destructor)\n";
Marcin Swiderskic0ca7312010-09-21 05:58:15 +00004107 }
Zhongxing Xu0b51d4d2010-11-01 06:46:05 +00004108}
Mike Stump31feda52009-07-17 01:31:16 +00004109
Ted Kremenek5ef32db2011-08-12 23:37:29 +00004110static void print_block(raw_ostream &OS, const CFG* cfg,
4111 const CFGBlock &B,
Aaron Ballmanff924b02013-11-18 20:11:50 +00004112 StmtPrinterHelper &Helper, bool print_edges,
Ted Kremenek72be32a2011-12-22 23:33:52 +00004113 bool ShowColors) {
Mike Stump31feda52009-07-17 01:31:16 +00004114
Aaron Ballmanff924b02013-11-18 20:11:50 +00004115 Helper.setBlockID(B.getBlockID());
Mike Stump31feda52009-07-17 01:31:16 +00004116
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00004117 // Print the header.
Ted Kremenek72be32a2011-12-22 23:33:52 +00004118 if (ShowColors)
4119 OS.changeColor(raw_ostream::YELLOW, true);
4120
4121 OS << "\n [B" << B.getBlockID();
Mike Stump31feda52009-07-17 01:31:16 +00004122
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004123 if (&B == &cfg->getEntry())
Ted Kremenek72be32a2011-12-22 23:33:52 +00004124 OS << " (ENTRY)]\n";
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004125 else if (&B == &cfg->getExit())
Ted Kremenek72be32a2011-12-22 23:33:52 +00004126 OS << " (EXIT)]\n";
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004127 else if (&B == cfg->getIndirectGotoBlock())
Ted Kremenek72be32a2011-12-22 23:33:52 +00004128 OS << " (INDIRECT GOTO DISPATCH)]\n";
Jordan Rose398fb002014-04-01 16:39:33 +00004129 else if (B.hasNoReturnElement())
4130 OS << " (NORETURN)]\n";
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004131 else
Ted Kremenek72be32a2011-12-22 23:33:52 +00004132 OS << "]\n";
4133
4134 if (ShowColors)
4135 OS.resetColor();
Mike Stump31feda52009-07-17 01:31:16 +00004136
Ted Kremenek71eca012007-08-29 23:20:49 +00004137 // Print the label of this block.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00004138 if (Stmt *Label = const_cast<Stmt*>(B.getLabel())) {
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004139
4140 if (print_edges)
Ted Kremenek72be32a2011-12-22 23:33:52 +00004141 OS << " ";
Mike Stump31feda52009-07-17 01:31:16 +00004142
Ted Kremenek5ef32db2011-08-12 23:37:29 +00004143 if (LabelStmt *L = dyn_cast<LabelStmt>(Label))
Ted Kremenek71eca012007-08-29 23:20:49 +00004144 OS << L->getName();
Ted Kremenek5ef32db2011-08-12 23:37:29 +00004145 else if (CaseStmt *C = dyn_cast<CaseStmt>(Label)) {
Ted Kremenek71eca012007-08-29 23:20:49 +00004146 OS << "case ";
Aaron Ballmanff924b02013-11-18 20:11:50 +00004147 C->getLHS()->printPretty(OS, &Helper,
4148 PrintingPolicy(Helper.getLangOpts()));
Ted Kremenek71eca012007-08-29 23:20:49 +00004149 if (C->getRHS()) {
4150 OS << " ... ";
Aaron Ballmanff924b02013-11-18 20:11:50 +00004151 C->getRHS()->printPretty(OS, &Helper,
4152 PrintingPolicy(Helper.getLangOpts()));
Ted Kremenek71eca012007-08-29 23:20:49 +00004153 }
Mike Stump92244b02010-01-19 22:00:14 +00004154 } else if (isa<DefaultStmt>(Label))
Ted Kremenek71eca012007-08-29 23:20:49 +00004155 OS << "default";
Mike Stump92244b02010-01-19 22:00:14 +00004156 else if (CXXCatchStmt *CS = dyn_cast<CXXCatchStmt>(Label)) {
Mike Stumpbbf5ba62010-01-19 02:20:09 +00004157 OS << "catch (";
Mike Stump0bdba6c2010-01-20 01:15:34 +00004158 if (CS->getExceptionDecl())
Aaron Ballmanff924b02013-11-18 20:11:50 +00004159 CS->getExceptionDecl()->print(OS, PrintingPolicy(Helper.getLangOpts()),
Mike Stump0bdba6c2010-01-20 01:15:34 +00004160 0);
4161 else
4162 OS << "...";
Mike Stumpbbf5ba62010-01-19 02:20:09 +00004163 OS << ")";
4164
4165 } else
David Blaikie83d382b2011-09-23 05:06:16 +00004166 llvm_unreachable("Invalid label statement in CFGBlock.");
Mike Stump31feda52009-07-17 01:31:16 +00004167
Ted Kremenek71eca012007-08-29 23:20:49 +00004168 OS << ":\n";
4169 }
Mike Stump31feda52009-07-17 01:31:16 +00004170
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00004171 // Iterate through the statements in the block and print them.
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00004172 unsigned j = 1;
Mike Stump31feda52009-07-17 01:31:16 +00004173
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004174 for (CFGBlock::const_iterator I = B.begin(), E = B.end() ;
4175 I != E ; ++I, ++j ) {
Mike Stump31feda52009-07-17 01:31:16 +00004176
Ted Kremenek71eca012007-08-29 23:20:49 +00004177 // Print the statement # in the basic block and the statement itself.
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004178 if (print_edges)
Ted Kremenek72be32a2011-12-22 23:33:52 +00004179 OS << " ";
Mike Stump31feda52009-07-17 01:31:16 +00004180
Ted Kremenek2d470fc2008-09-13 05:16:45 +00004181 OS << llvm::format("%3d", j) << ": ";
Mike Stump31feda52009-07-17 01:31:16 +00004182
Aaron Ballmanff924b02013-11-18 20:11:50 +00004183 Helper.setStmtID(j);
Mike Stump31feda52009-07-17 01:31:16 +00004184
Ted Kremenek72be32a2011-12-22 23:33:52 +00004185 print_elem(OS, Helper, *I);
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00004186 }
Mike Stump31feda52009-07-17 01:31:16 +00004187
Ted Kremenek71eca012007-08-29 23:20:49 +00004188 // Print the terminator of this block.
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004189 if (B.getTerminator()) {
Ted Kremenek72be32a2011-12-22 23:33:52 +00004190 if (ShowColors)
4191 OS.changeColor(raw_ostream::GREEN);
Mike Stump31feda52009-07-17 01:31:16 +00004192
Ted Kremenek72be32a2011-12-22 23:33:52 +00004193 OS << " T: ";
Mike Stump31feda52009-07-17 01:31:16 +00004194
Aaron Ballmanff924b02013-11-18 20:11:50 +00004195 Helper.setBlockID(-1);
Mike Stump31feda52009-07-17 01:31:16 +00004196
Aaron Ballmanff924b02013-11-18 20:11:50 +00004197 PrintingPolicy PP(Helper.getLangOpts());
4198 CFGBlockTerminatorPrint TPrinter(OS, &Helper, PP);
Ted Kremenekfcc14172014-03-08 02:22:29 +00004199 TPrinter.print(B.getTerminator());
Ted Kremenek15647632008-01-30 23:02:42 +00004200 OS << '\n';
Ted Kremenek72be32a2011-12-22 23:33:52 +00004201
4202 if (ShowColors)
4203 OS.resetColor();
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00004204 }
Mike Stump31feda52009-07-17 01:31:16 +00004205
Ted Kremenek71eca012007-08-29 23:20:49 +00004206 if (print_edges) {
4207 // Print the predecessors of this block.
Ted Kremenek72be32a2011-12-22 23:33:52 +00004208 if (!B.pred_empty()) {
4209 const raw_ostream::Colors Color = raw_ostream::BLUE;
4210 if (ShowColors)
4211 OS.changeColor(Color);
4212 OS << " Preds " ;
4213 if (ShowColors)
4214 OS.resetColor();
4215 OS << '(' << B.pred_size() << "):";
4216 unsigned i = 0;
Ted Kremenek71eca012007-08-29 23:20:49 +00004217
Ted Kremenek72be32a2011-12-22 23:33:52 +00004218 if (ShowColors)
4219 OS.changeColor(Color);
4220
4221 for (CFGBlock::const_pred_iterator I = B.pred_begin(), E = B.pred_end();
4222 I != E; ++I, ++i) {
Mike Stump31feda52009-07-17 01:31:16 +00004223
Will Dietzdf9a2bb2013-01-07 09:51:17 +00004224 if (i % 10 == 8)
Ted Kremenek72be32a2011-12-22 23:33:52 +00004225 OS << "\n ";
Mike Stump31feda52009-07-17 01:31:16 +00004226
Ted Kremenek4b6fee62014-02-27 00:24:00 +00004227 CFGBlock *B = *I;
4228 bool Reachable = true;
4229 if (!B) {
4230 Reachable = false;
4231 B = I->getPossiblyUnreachableBlock();
4232 }
4233
4234 OS << " B" << B->getBlockID();
4235 if (!Reachable)
4236 OS << "(Unreachable)";
Ted Kremenek72be32a2011-12-22 23:33:52 +00004237 }
4238
4239 if (ShowColors)
4240 OS.resetColor();
4241
4242 OS << '\n';
Ted Kremenek71eca012007-08-29 23:20:49 +00004243 }
Mike Stump31feda52009-07-17 01:31:16 +00004244
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004245 // Print the successors of this block.
Ted Kremenek72be32a2011-12-22 23:33:52 +00004246 if (!B.succ_empty()) {
4247 const raw_ostream::Colors Color = raw_ostream::MAGENTA;
4248 if (ShowColors)
4249 OS.changeColor(Color);
4250 OS << " Succs ";
4251 if (ShowColors)
4252 OS.resetColor();
4253 OS << '(' << B.succ_size() << "):";
4254 unsigned i = 0;
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004255
Ted Kremenek72be32a2011-12-22 23:33:52 +00004256 if (ShowColors)
4257 OS.changeColor(Color);
Mike Stump31feda52009-07-17 01:31:16 +00004258
Ted Kremenek72be32a2011-12-22 23:33:52 +00004259 for (CFGBlock::const_succ_iterator I = B.succ_begin(), E = B.succ_end();
4260 I != E; ++I, ++i) {
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004261
Will Dietzdf9a2bb2013-01-07 09:51:17 +00004262 if (i % 10 == 8)
Ted Kremenek72be32a2011-12-22 23:33:52 +00004263 OS << "\n ";
4264
Ted Kremenek9238c5c2014-02-27 21:56:44 +00004265 CFGBlock *B = *I;
4266
4267 bool Reachable = true;
4268 if (!B) {
4269 Reachable = false;
4270 B = I->getPossiblyUnreachableBlock();
4271 }
4272
4273 if (B) {
4274 OS << " B" << B->getBlockID();
4275 if (!Reachable)
4276 OS << "(Unreachable)";
4277 }
4278 else {
4279 OS << " NULL";
4280 }
Ted Kremenek72be32a2011-12-22 23:33:52 +00004281 }
Ted Kremenek9238c5c2014-02-27 21:56:44 +00004282
Ted Kremenek72be32a2011-12-22 23:33:52 +00004283 if (ShowColors)
4284 OS.resetColor();
4285 OS << '\n';
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004286 }
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00004287 }
Mike Stump31feda52009-07-17 01:31:16 +00004288}
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004289
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004290
4291/// dump - A simple pretty printer of a CFG that outputs to stderr.
Ted Kremenek72be32a2011-12-22 23:33:52 +00004292void CFG::dump(const LangOptions &LO, bool ShowColors) const {
4293 print(llvm::errs(), LO, ShowColors);
4294}
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004295
4296/// print - A simple pretty printer of a CFG that outputs to an ostream.
Ted Kremenek72be32a2011-12-22 23:33:52 +00004297void CFG::print(raw_ostream &OS, const LangOptions &LO, bool ShowColors) const {
Chris Lattnerc61089a2009-06-30 01:26:17 +00004298 StmtPrinterHelper Helper(this, LO);
Mike Stump31feda52009-07-17 01:31:16 +00004299
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004300 // Print the entry block.
Aaron Ballmanff924b02013-11-18 20:11:50 +00004301 print_block(OS, this, getEntry(), Helper, true, ShowColors);
Mike Stump31feda52009-07-17 01:31:16 +00004302
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004303 // Iterate through the CFGBlocks and print them one by one.
4304 for (const_iterator I = Blocks.begin(), E = Blocks.end() ; I != E ; ++I) {
4305 // Skip the entry block, because we already printed it.
Ted Kremenek289ae4f2009-10-12 20:55:07 +00004306 if (&(**I) == &getEntry() || &(**I) == &getExit())
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004307 continue;
Mike Stump31feda52009-07-17 01:31:16 +00004308
Aaron Ballmanff924b02013-11-18 20:11:50 +00004309 print_block(OS, this, **I, Helper, true, ShowColors);
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004310 }
Mike Stump31feda52009-07-17 01:31:16 +00004311
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004312 // Print the exit block.
Aaron Ballmanff924b02013-11-18 20:11:50 +00004313 print_block(OS, this, getExit(), Helper, true, ShowColors);
Ted Kremenek72be32a2011-12-22 23:33:52 +00004314 OS << '\n';
Ted Kremeneke03879b2008-11-24 20:50:24 +00004315 OS.flush();
Mike Stump31feda52009-07-17 01:31:16 +00004316}
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004317
4318/// dump - A simply pretty printer of a CFGBlock that outputs to stderr.
Ted Kremenek72be32a2011-12-22 23:33:52 +00004319void CFGBlock::dump(const CFG* cfg, const LangOptions &LO,
4320 bool ShowColors) const {
4321 print(llvm::errs(), cfg, LO, ShowColors);
Chris Lattnerc61089a2009-06-30 01:26:17 +00004322}
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004323
4324/// print - A simple pretty printer of a CFGBlock that outputs to an ostream.
4325/// Generally this will only be called from CFG::print.
Ted Kremenek5ef32db2011-08-12 23:37:29 +00004326void CFGBlock::print(raw_ostream &OS, const CFG* cfg,
Ted Kremenek72be32a2011-12-22 23:33:52 +00004327 const LangOptions &LO, bool ShowColors) const {
Chris Lattnerc61089a2009-06-30 01:26:17 +00004328 StmtPrinterHelper Helper(cfg, LO);
Aaron Ballmanff924b02013-11-18 20:11:50 +00004329 print_block(OS, cfg, *this, Helper, true, ShowColors);
Ted Kremenek72be32a2011-12-22 23:33:52 +00004330 OS << '\n';
Ted Kremenek889073f2007-08-23 16:51:22 +00004331}
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00004332
Ted Kremenek15647632008-01-30 23:02:42 +00004333/// printTerminator - A simple pretty printer of the terminator of a CFGBlock.
Chris Lattner0e62c1c2011-07-23 10:55:15 +00004334void CFGBlock::printTerminator(raw_ostream &OS,
Mike Stump31feda52009-07-17 01:31:16 +00004335 const LangOptions &LO) const {
Chris Lattnerc61089a2009-06-30 01:26:17 +00004336 CFGBlockTerminatorPrint TPrinter(OS, NULL, PrintingPolicy(LO));
Ted Kremenekfcc14172014-03-08 02:22:29 +00004337 TPrinter.print(getTerminator());
Ted Kremenek15647632008-01-30 23:02:42 +00004338}
4339
Ted Kremenekec3bbf42014-03-29 00:35:20 +00004340Stmt *CFGBlock::getTerminatorCondition(bool StripParens) {
Marcin Swiderskia7d84a72010-10-29 05:21:47 +00004341 Stmt *Terminator = this->Terminator;
Ted Kremenekc1f9a282008-04-16 21:10:48 +00004342 if (!Terminator)
4343 return NULL;
Mike Stump31feda52009-07-17 01:31:16 +00004344
Ted Kremenek5ef32db2011-08-12 23:37:29 +00004345 Expr *E = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00004346
Ted Kremenekc1f9a282008-04-16 21:10:48 +00004347 switch (Terminator->getStmtClass()) {
4348 default:
4349 break;
Mike Stump31feda52009-07-17 01:31:16 +00004350
Jordan Rosecf10ea82013-06-06 21:53:45 +00004351 case Stmt::CXXForRangeStmtClass:
4352 E = cast<CXXForRangeStmt>(Terminator)->getCond();
4353 break;
4354
Ted Kremenekc1f9a282008-04-16 21:10:48 +00004355 case Stmt::ForStmtClass:
4356 E = cast<ForStmt>(Terminator)->getCond();
4357 break;
Mike Stump31feda52009-07-17 01:31:16 +00004358
Ted Kremenekc1f9a282008-04-16 21:10:48 +00004359 case Stmt::WhileStmtClass:
4360 E = cast<WhileStmt>(Terminator)->getCond();
4361 break;
Mike Stump31feda52009-07-17 01:31:16 +00004362
Ted Kremenekc1f9a282008-04-16 21:10:48 +00004363 case Stmt::DoStmtClass:
4364 E = cast<DoStmt>(Terminator)->getCond();
4365 break;
Mike Stump31feda52009-07-17 01:31:16 +00004366
Ted Kremenekc1f9a282008-04-16 21:10:48 +00004367 case Stmt::IfStmtClass:
4368 E = cast<IfStmt>(Terminator)->getCond();
4369 break;
Mike Stump31feda52009-07-17 01:31:16 +00004370
Ted Kremenekc1f9a282008-04-16 21:10:48 +00004371 case Stmt::ChooseExprClass:
4372 E = cast<ChooseExpr>(Terminator)->getCond();
4373 break;
Mike Stump31feda52009-07-17 01:31:16 +00004374
Ted Kremenekc1f9a282008-04-16 21:10:48 +00004375 case Stmt::IndirectGotoStmtClass:
4376 E = cast<IndirectGotoStmt>(Terminator)->getTarget();
4377 break;
Mike Stump31feda52009-07-17 01:31:16 +00004378
Ted Kremenekc1f9a282008-04-16 21:10:48 +00004379 case Stmt::SwitchStmtClass:
4380 E = cast<SwitchStmt>(Terminator)->getCond();
4381 break;
Mike Stump31feda52009-07-17 01:31:16 +00004382
John McCallc07a0c72011-02-17 10:25:35 +00004383 case Stmt::BinaryConditionalOperatorClass:
4384 E = cast<BinaryConditionalOperator>(Terminator)->getCond();
4385 break;
4386
Ted Kremenekc1f9a282008-04-16 21:10:48 +00004387 case Stmt::ConditionalOperatorClass:
4388 E = cast<ConditionalOperator>(Terminator)->getCond();
4389 break;
Mike Stump31feda52009-07-17 01:31:16 +00004390
Ted Kremenekc1f9a282008-04-16 21:10:48 +00004391 case Stmt::BinaryOperatorClass: // '&&' and '||'
4392 E = cast<BinaryOperator>(Terminator)->getLHS();
Ted Kremenek6d8b46e2008-11-12 21:11:49 +00004393 break;
Mike Stump31feda52009-07-17 01:31:16 +00004394
Ted Kremenek6d8b46e2008-11-12 21:11:49 +00004395 case Stmt::ObjCForCollectionStmtClass:
Mike Stump31feda52009-07-17 01:31:16 +00004396 return Terminator;
Ted Kremenekc1f9a282008-04-16 21:10:48 +00004397 }
Mike Stump31feda52009-07-17 01:31:16 +00004398
Ted Kremenekec3bbf42014-03-29 00:35:20 +00004399 if (!StripParens)
4400 return E;
4401
Ted Kremenekc1f9a282008-04-16 21:10:48 +00004402 return E ? E->IgnoreParens() : NULL;
4403}
4404
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00004405//===----------------------------------------------------------------------===//
4406// CFG Graphviz Visualization
4407//===----------------------------------------------------------------------===//
4408
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004409
4410#ifndef NDEBUG
Mike Stump31feda52009-07-17 01:31:16 +00004411static StmtPrinterHelper* GraphHelper;
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004412#endif
4413
Chris Lattnerc61089a2009-06-30 01:26:17 +00004414void CFG::viewCFG(const LangOptions &LO) const {
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004415#ifndef NDEBUG
Chris Lattnerc61089a2009-06-30 01:26:17 +00004416 StmtPrinterHelper H(this, LO);
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004417 GraphHelper = &H;
4418 llvm::ViewGraph(this,"CFG");
4419 GraphHelper = NULL;
Ted Kremenek04f3cee2007-08-31 21:30:12 +00004420#endif
4421}
4422
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00004423namespace llvm {
4424template<>
4425struct DOTGraphTraits<const CFG*> : public DefaultDOTGraphTraits {
Tobias Grosser9fc223a2009-11-30 14:16:05 +00004426
4427 DOTGraphTraits (bool isSimple=false) : DefaultDOTGraphTraits(isSimple) {}
4428
Ted Kremenek5ef32db2011-08-12 23:37:29 +00004429 static std::string getNodeLabel(const CFGBlock *Node, const CFG* Graph) {
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00004430
Hartmut Kaiser04bd2ef2007-09-16 00:28:28 +00004431#ifndef NDEBUG
Ted Kremenek2d470fc2008-09-13 05:16:45 +00004432 std::string OutSStr;
4433 llvm::raw_string_ostream Out(OutSStr);
Aaron Ballmanff924b02013-11-18 20:11:50 +00004434 print_block(Out,Graph, *Node, *GraphHelper, false, false);
Ted Kremenek2d470fc2008-09-13 05:16:45 +00004435 std::string& OutStr = Out.str();
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00004436
4437 if (OutStr[0] == '\n') OutStr.erase(OutStr.begin());
4438
4439 // Process string output to make it nicer...
4440 for (unsigned i = 0; i != OutStr.length(); ++i)
4441 if (OutStr[i] == '\n') { // Left justify
4442 OutStr[i] = '\\';
4443 OutStr.insert(OutStr.begin()+i+1, 'l');
4444 }
Mike Stump31feda52009-07-17 01:31:16 +00004445
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00004446 return OutStr;
Hartmut Kaiser04bd2ef2007-09-16 00:28:28 +00004447#else
4448 return "";
4449#endif
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00004450 }
4451};
4452} // end namespace llvm