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Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00001//===--- CFG.cpp - Classes for representing and building CFGs----*- C++ -*-===//
2//
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"
Ted Kremenek1b8ac852007-08-21 22:06:14 +000016#include "clang/AST/StmtVisitor.h"
Ted Kremenek04f3cee2007-08-31 21:30:12 +000017#include "clang/AST/PrettyPrinter.h"
Ted Kremenek8a632182007-08-21 23:26:17 +000018#include "llvm/ADT/DenseMap.h"
Ted Kremenekeda180e22007-08-28 19:26:49 +000019#include "llvm/ADT/SmallPtrSet.h"
Ted Kremenek4e5f99d2007-08-29 21:56:09 +000020#include "llvm/Support/GraphWriter.h"
Ted Kremeneka59e0062007-12-17 19:35:20 +000021#include "llvm/Support/Streams.h"
Ted Kremenek83ebcef2008-01-08 18:15:10 +000022#include "llvm/Support/Compiler.h"
Ted Kremenek6065ef62008-04-28 18:00:46 +000023#include <llvm/Support/Allocator.h>
Ted Kremenek2d470fc2008-09-13 05:16:45 +000024#include <llvm/Support/Format.h>
Ted Kremeneke5ccf9a2008-01-11 00:40:29 +000025
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +000026using namespace clang;
27
28namespace {
29
Ted Kremenek04cca642007-08-23 21:26:19 +000030// SaveAndRestore - A utility class that uses RIIA to save and restore
31// the value of a variable.
32template<typename T>
Ted Kremenek83ebcef2008-01-08 18:15:10 +000033struct VISIBILITY_HIDDEN SaveAndRestore {
Ted Kremenek04cca642007-08-23 21:26:19 +000034 SaveAndRestore(T& x) : X(x), old_value(x) {}
35 ~SaveAndRestore() { X = old_value; }
Ted Kremenekbbad8ce2007-08-30 18:13:31 +000036 T get() { return old_value; }
37
Ted Kremenek04cca642007-08-23 21:26:19 +000038 T& X;
39 T old_value;
40};
Mike Stump31feda52009-07-17 01:31:16 +000041
Douglas Gregor6e6ad602009-01-20 01:17:11 +000042static SourceLocation GetEndLoc(Decl* D) {
Ted Kremenek8889bb32008-08-06 23:20:50 +000043 if (VarDecl* VD = dyn_cast<VarDecl>(D))
44 if (Expr* Ex = VD->getInit())
45 return Ex->getSourceRange().getEnd();
Mike Stump31feda52009-07-17 01:31:16 +000046
47 return D->getLocation();
Ted Kremenek8889bb32008-08-06 23:20:50 +000048}
Mike Stump31feda52009-07-17 01:31:16 +000049
Ted Kremenekbe9b33b2008-08-04 22:51:42 +000050/// CFGBuilder - This class implements CFG construction from an AST.
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +000051/// The builder is stateful: an instance of the builder should be used to only
52/// construct a single CFG.
53///
54/// Example usage:
55///
56/// CFGBuilder builder;
57/// CFG* cfg = builder.BuildAST(stmt1);
58///
Mike Stump31feda52009-07-17 01:31:16 +000059/// CFG construction is done via a recursive walk of an AST. We actually parse
60/// the AST in reverse order so that the successor of a basic block is
61/// constructed prior to its predecessor. This allows us to nicely capture
62/// implicit fall-throughs without extra basic blocks.
Ted Kremenek1b8ac852007-08-21 22:06:14 +000063///
Ted Kremenek93668002009-07-17 22:18:43 +000064class VISIBILITY_HIDDEN CFGBuilder {
Mike Stump0d76d072009-07-20 23:24:15 +000065 ASTContext *Context;
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +000066 CFG* cfg;
67 CFGBlock* Block;
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +000068 CFGBlock* Succ;
Ted Kremenek1aebee02007-08-22 21:36:54 +000069 CFGBlock* ContinueTargetBlock;
Ted Kremeneke1810de2007-08-22 21:51:58 +000070 CFGBlock* BreakTargetBlock;
Ted Kremenek879d8e12007-08-23 18:43:24 +000071 CFGBlock* SwitchTerminatedBlock;
Ted Kremenek654c78f2008-02-13 22:05:39 +000072 CFGBlock* DefaultCaseBlock;
Mike Stump31feda52009-07-17 01:31:16 +000073
Ted Kremenekeda180e22007-08-28 19:26:49 +000074 // LabelMap records the mapping from Label expressions to their blocks.
Ted Kremenek8a632182007-08-21 23:26:17 +000075 typedef llvm::DenseMap<LabelStmt*,CFGBlock*> LabelMapTy;
76 LabelMapTy LabelMap;
Mike Stump31feda52009-07-17 01:31:16 +000077
78 // A list of blocks that end with a "goto" that must be backpatched to their
79 // resolved targets upon completion of CFG construction.
Ted Kremenekde979ae2007-08-22 15:40:58 +000080 typedef std::vector<CFGBlock*> BackpatchBlocksTy;
Ted Kremenek8a632182007-08-21 23:26:17 +000081 BackpatchBlocksTy BackpatchBlocks;
Mike Stump31feda52009-07-17 01:31:16 +000082
Ted Kremenekeda180e22007-08-28 19:26:49 +000083 // A list of labels whose address has been taken (for indirect gotos).
84 typedef llvm::SmallPtrSet<LabelStmt*,5> LabelSetTy;
85 LabelSetTy AddressTakenLabels;
Mike Stump31feda52009-07-17 01:31:16 +000086
87public:
Ted Kremenek889073f2007-08-23 16:51:22 +000088 explicit CFGBuilder() : cfg(NULL), Block(NULL), Succ(NULL),
Ted Kremeneke1810de2007-08-22 21:51:58 +000089 ContinueTargetBlock(NULL), BreakTargetBlock(NULL),
Ted Kremenek654c78f2008-02-13 22:05:39 +000090 SwitchTerminatedBlock(NULL), DefaultCaseBlock(NULL) {
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +000091 // Create an empty CFG.
Mike Stump31feda52009-07-17 01:31:16 +000092 cfg = new CFG();
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +000093 }
Mike Stump31feda52009-07-17 01:31:16 +000094
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +000095 ~CFGBuilder() { delete cfg; }
Mike Stump31feda52009-07-17 01:31:16 +000096
Ted Kremenek9aae5132007-08-23 21:42:29 +000097 // buildCFG - Used by external clients to construct the CFG.
Mike Stump0d76d072009-07-20 23:24:15 +000098 CFG* buildCFG(Stmt *Statement, ASTContext *C);
Mike Stump31feda52009-07-17 01:31:16 +000099
Ted Kremenek93668002009-07-17 22:18:43 +0000100private:
101 // Visitors to walk an AST and construct the CFG.
102 CFGBlock *VisitAddrLabelExpr(AddrLabelExpr *A, bool alwaysAdd);
103 CFGBlock *VisitBinaryOperator(BinaryOperator *B, bool alwaysAdd);
Ted Kremenek0747de62009-07-18 00:47:21 +0000104 CFGBlock *VisitBlockExpr(BlockExpr* E, bool alwaysAdd);
105 CFGBlock *VisitBlockDeclRefExpr(BlockDeclRefExpr* E, bool alwaysAdd);
Ted Kremenek93668002009-07-17 22:18:43 +0000106 CFGBlock *VisitBreakStmt(BreakStmt *B);
107 CFGBlock *VisitCallExpr(CallExpr *C, bool alwaysAdd);
108 CFGBlock *VisitCaseStmt(CaseStmt *C);
Ted Kremenek21822592009-07-17 18:20:32 +0000109 CFGBlock *VisitChooseExpr(ChooseExpr *C);
110 CFGBlock *VisitCompoundStmt(CompoundStmt *C);
111 CFGBlock *VisitConditionalOperator(ConditionalOperator *C);
112 CFGBlock *VisitContinueStmt(ContinueStmt *C);
Ted Kremenek93668002009-07-17 22:18:43 +0000113 CFGBlock *VisitDeclStmt(DeclStmt *DS);
114 CFGBlock *VisitDeclSubExpr(Decl* D);
Ted Kremenek21822592009-07-17 18:20:32 +0000115 CFGBlock *VisitDefaultStmt(DefaultStmt *D);
116 CFGBlock *VisitDoStmt(DoStmt *D);
117 CFGBlock *VisitForStmt(ForStmt *F);
Ted Kremenek93668002009-07-17 22:18:43 +0000118 CFGBlock *VisitGotoStmt(GotoStmt* G);
119 CFGBlock *VisitIfStmt(IfStmt *I);
120 CFGBlock *VisitIndirectGotoStmt(IndirectGotoStmt *I);
121 CFGBlock *VisitLabelStmt(LabelStmt *L);
122 CFGBlock *VisitObjCAtCatchStmt(ObjCAtCatchStmt *S);
123 CFGBlock *VisitObjCAtSynchronizedStmt(ObjCAtSynchronizedStmt *S);
124 CFGBlock *VisitObjCAtThrowStmt(ObjCAtThrowStmt *S);
125 CFGBlock *VisitObjCAtTryStmt(ObjCAtTryStmt *S);
126 CFGBlock *VisitObjCForCollectionStmt(ObjCForCollectionStmt *S);
127 CFGBlock *VisitReturnStmt(ReturnStmt* R);
Ted Kremenek0747de62009-07-18 00:47:21 +0000128 CFGBlock *VisitSizeOfAlignOfExpr(SizeOfAlignOfExpr *E, bool alwaysAdd);
129 CFGBlock *VisitStmtExpr(StmtExpr *S, bool alwaysAdd);
Ted Kremenek93668002009-07-17 22:18:43 +0000130 CFGBlock *VisitSwitchStmt(SwitchStmt *S);
131 CFGBlock *VisitWhileStmt(WhileStmt *W);
Mike Stump48871a22009-07-17 01:04:31 +0000132
Ted Kremenek93668002009-07-17 22:18:43 +0000133 CFGBlock *Visit(Stmt *S, bool alwaysAdd = false);
134 CFGBlock *VisitStmt(Stmt *S, bool alwaysAdd);
135 CFGBlock *VisitChildren(Stmt* S);
Mike Stump48871a22009-07-17 01:04:31 +0000136
Ted Kremenek6065ef62008-04-28 18:00:46 +0000137 // NYS == Not Yet Supported
138 CFGBlock* NYS() {
Ted Kremenekb64d1832008-03-13 03:04:22 +0000139 badCFG = true;
140 return Block;
141 }
Mike Stump31feda52009-07-17 01:31:16 +0000142
Ted Kremenek93668002009-07-17 22:18:43 +0000143 void autoCreateBlock() { if (!Block) Block = createBlock(); }
144 CFGBlock *createBlock(bool add_successor = true);
Ted Kremenek55957a82009-05-02 00:13:27 +0000145 bool FinishBlock(CFGBlock* B);
Ted Kremenek93668002009-07-17 22:18:43 +0000146 CFGBlock *addStmt(Stmt *S) { return Visit(S, true); }
147
Ted Kremenekb64d1832008-03-13 03:04:22 +0000148 bool badCFG;
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +0000149};
Mike Stump31feda52009-07-17 01:31:16 +0000150
Douglas Gregor4619e432008-12-05 23:32:09 +0000151// FIXME: Add support for dependent-sized array types in C++?
152// Does it even make sense to build a CFG for an uninstantiated template?
Ted Kremenekd86d39c2008-09-26 22:58:57 +0000153static VariableArrayType* FindVA(Type* t) {
154 while (ArrayType* vt = dyn_cast<ArrayType>(t)) {
155 if (VariableArrayType* vat = dyn_cast<VariableArrayType>(vt))
156 if (vat->getSizeExpr())
157 return vat;
Mike Stump31feda52009-07-17 01:31:16 +0000158
Ted Kremenekd86d39c2008-09-26 22:58:57 +0000159 t = vt->getElementType().getTypePtr();
160 }
Mike Stump31feda52009-07-17 01:31:16 +0000161
Ted Kremenekd86d39c2008-09-26 22:58:57 +0000162 return 0;
163}
Mike Stump31feda52009-07-17 01:31:16 +0000164
165/// BuildCFG - Constructs a CFG from an AST (a Stmt*). The AST can represent an
166/// arbitrary statement. Examples include a single expression or a function
167/// body (compound statement). The ownership of the returned CFG is
168/// transferred to the caller. If CFG construction fails, this method returns
169/// NULL.
Mike Stump0d76d072009-07-20 23:24:15 +0000170CFG* CFGBuilder::buildCFG(Stmt* Statement, ASTContext* C) {
171 Context = C;
Ted Kremenek93668002009-07-17 22:18:43 +0000172 assert(cfg);
173 if (!Statement)
174 return NULL;
Ted Kremenek9aae5132007-08-23 21:42:29 +0000175
Ted Kremenekb64d1832008-03-13 03:04:22 +0000176 badCFG = false;
Mike Stump31feda52009-07-17 01:31:16 +0000177
178 // Create an empty block that will serve as the exit block for the CFG. Since
179 // this is the first block added to the CFG, it will be implicitly registered
180 // as the exit block.
Ted Kremenek81e14852007-08-27 19:46:09 +0000181 Succ = createBlock();
182 assert (Succ == &cfg->getExit());
183 Block = NULL; // the EXIT block is empty. Create all other blocks lazily.
Mike Stump31feda52009-07-17 01:31:16 +0000184
Ted Kremenek9aae5132007-08-23 21:42:29 +0000185 // Visit the statements and create the CFG.
Ted Kremenek93668002009-07-17 22:18:43 +0000186 CFGBlock* B = addStmt(Statement);
Ted Kremenek40d87632008-02-27 17:33:02 +0000187 if (!B) B = Succ;
Mike Stump31feda52009-07-17 01:31:16 +0000188
Ted Kremenek40d87632008-02-27 17:33:02 +0000189 if (B) {
Mike Stump31feda52009-07-17 01:31:16 +0000190 // Finalize the last constructed block. This usually involves reversing the
191 // order of the statements in the block.
Ted Kremenek81e14852007-08-27 19:46:09 +0000192 if (Block) FinishBlock(B);
Mike Stump31feda52009-07-17 01:31:16 +0000193
194 // Backpatch the gotos whose label -> block mappings we didn't know when we
195 // encountered them.
196 for (BackpatchBlocksTy::iterator I = BackpatchBlocks.begin(),
Ted Kremenek9aae5132007-08-23 21:42:29 +0000197 E = BackpatchBlocks.end(); I != E; ++I ) {
Mike Stump31feda52009-07-17 01:31:16 +0000198
Ted Kremenek9aae5132007-08-23 21:42:29 +0000199 CFGBlock* B = *I;
200 GotoStmt* G = cast<GotoStmt>(B->getTerminator());
201 LabelMapTy::iterator LI = LabelMap.find(G->getLabel());
202
203 // If there is no target for the goto, then we are looking at an
204 // incomplete AST. Handle this by not registering a successor.
205 if (LI == LabelMap.end()) continue;
Mike Stump31feda52009-07-17 01:31:16 +0000206
207 B->addSuccessor(LI->second);
Ted Kremenekeda180e22007-08-28 19:26:49 +0000208 }
Mike Stump31feda52009-07-17 01:31:16 +0000209
Ted Kremenekeda180e22007-08-28 19:26:49 +0000210 // Add successors to the Indirect Goto Dispatch block (if we have one).
211 if (CFGBlock* B = cfg->getIndirectGotoBlock())
212 for (LabelSetTy::iterator I = AddressTakenLabels.begin(),
213 E = AddressTakenLabels.end(); I != E; ++I ) {
214
215 // Lookup the target block.
216 LabelMapTy::iterator LI = LabelMap.find(*I);
217
218 // If there is no target block that contains label, then we are looking
219 // at an incomplete AST. Handle this by not registering a successor.
220 if (LI == LabelMap.end()) continue;
Mike Stump31feda52009-07-17 01:31:16 +0000221
222 B->addSuccessor(LI->second);
Ted Kremenekeda180e22007-08-28 19:26:49 +0000223 }
Mike Stump31feda52009-07-17 01:31:16 +0000224
Ted Kremenekcdc0bc42007-09-17 16:18:02 +0000225 Succ = B;
Ted Kremenek5c50fd12007-09-26 21:23:31 +0000226 }
Mike Stump31feda52009-07-17 01:31:16 +0000227
228 // Create an empty entry block that has no predecessors.
Ted Kremenek5c50fd12007-09-26 21:23:31 +0000229 cfg->setEntry(createBlock());
Mike Stump31feda52009-07-17 01:31:16 +0000230
Ted Kremenekb64d1832008-03-13 03:04:22 +0000231 if (badCFG) {
232 delete cfg;
233 cfg = NULL;
234 return NULL;
235 }
Mike Stump31feda52009-07-17 01:31:16 +0000236
237 // NULL out cfg so that repeated calls to the builder will fail and that the
238 // ownership of the constructed CFG is passed to the caller.
Ted Kremenek5c50fd12007-09-26 21:23:31 +0000239 CFG* t = cfg;
240 cfg = NULL;
241 return t;
Ted Kremenek9aae5132007-08-23 21:42:29 +0000242}
Mike Stump31feda52009-07-17 01:31:16 +0000243
Ted Kremenek9aae5132007-08-23 21:42:29 +0000244/// createBlock - Used to lazily create blocks that are connected
245/// to the current (global) succcessor.
Mike Stump31feda52009-07-17 01:31:16 +0000246CFGBlock* CFGBuilder::createBlock(bool add_successor) {
Ted Kremenek813dd672007-09-05 20:02:05 +0000247 CFGBlock* B = cfg->createBlock();
Ted Kremenek93668002009-07-17 22:18:43 +0000248 if (add_successor && Succ)
249 B->addSuccessor(Succ);
Ted Kremenek9aae5132007-08-23 21:42:29 +0000250 return B;
251}
Mike Stump31feda52009-07-17 01:31:16 +0000252
253/// FinishBlock - When the last statement has been added to the block, we must
254/// reverse the statements because they have been inserted in reverse order.
Ted Kremenek55957a82009-05-02 00:13:27 +0000255bool CFGBuilder::FinishBlock(CFGBlock* B) {
256 if (badCFG)
257 return false;
258
Ted Kremenek93668002009-07-17 22:18:43 +0000259 assert(B);
Ted Kremenek81e14852007-08-27 19:46:09 +0000260 B->reverseStmts();
Ted Kremenek55957a82009-05-02 00:13:27 +0000261 return true;
Ted Kremenek9aae5132007-08-23 21:42:29 +0000262}
263
Ted Kremenek93668002009-07-17 22:18:43 +0000264/// Visit - Walk the subtree of a statement and add extra
Mike Stump31feda52009-07-17 01:31:16 +0000265/// blocks for ternary operators, &&, and ||. We also process "," and
266/// DeclStmts (which may contain nested control-flow).
Ted Kremenek93668002009-07-17 22:18:43 +0000267CFGBlock* CFGBuilder::Visit(Stmt * S, bool alwaysAdd) {
268tryAgain:
269 switch (S->getStmtClass()) {
270 default:
271 return VisitStmt(S, alwaysAdd);
272
273 case Stmt::AddrLabelExprClass:
274 return VisitAddrLabelExpr(cast<AddrLabelExpr>(S), alwaysAdd);
275
276 case Stmt::BinaryOperatorClass:
277 return VisitBinaryOperator(cast<BinaryOperator>(S), alwaysAdd);
278
279 case Stmt::BlockExprClass:
Ted Kremenek0747de62009-07-18 00:47:21 +0000280 return VisitBlockExpr(cast<BlockExpr>(S), alwaysAdd);
Ted Kremenek93668002009-07-17 22:18:43 +0000281
282 case Stmt::BlockDeclRefExprClass:
Ted Kremenek0747de62009-07-18 00:47:21 +0000283 return VisitBlockDeclRefExpr(cast<BlockDeclRefExpr>(S), alwaysAdd);
Ted Kremenek93668002009-07-17 22:18:43 +0000284
285 case Stmt::BreakStmtClass:
286 return VisitBreakStmt(cast<BreakStmt>(S));
287
288 case Stmt::CallExprClass:
289 return VisitCallExpr(cast<CallExpr>(S), alwaysAdd);
290
291 case Stmt::CaseStmtClass:
292 return VisitCaseStmt(cast<CaseStmt>(S));
293
294 case Stmt::ChooseExprClass:
295 return VisitChooseExpr(cast<ChooseExpr>(S));
296
297 case Stmt::CompoundStmtClass:
298 return VisitCompoundStmt(cast<CompoundStmt>(S));
299
300 case Stmt::ConditionalOperatorClass:
301 return VisitConditionalOperator(cast<ConditionalOperator>(S));
302
303 case Stmt::ContinueStmtClass:
304 return VisitContinueStmt(cast<ContinueStmt>(S));
305
306 case Stmt::DeclStmtClass:
307 return VisitDeclStmt(cast<DeclStmt>(S));
308
309 case Stmt::DefaultStmtClass:
310 return VisitDefaultStmt(cast<DefaultStmt>(S));
311
312 case Stmt::DoStmtClass:
313 return VisitDoStmt(cast<DoStmt>(S));
314
315 case Stmt::ForStmtClass:
316 return VisitForStmt(cast<ForStmt>(S));
317
318 case Stmt::GotoStmtClass:
319 return VisitGotoStmt(cast<GotoStmt>(S));
320
321 case Stmt::IfStmtClass:
322 return VisitIfStmt(cast<IfStmt>(S));
323
324 case Stmt::IndirectGotoStmtClass:
325 return VisitIndirectGotoStmt(cast<IndirectGotoStmt>(S));
326
327 case Stmt::LabelStmtClass:
328 return VisitLabelStmt(cast<LabelStmt>(S));
329
330 case Stmt::ObjCAtCatchStmtClass:
331 return VisitObjCAtCatchStmt(cast<ObjCAtCatchStmt>(S));
332
333 case Stmt::ObjCAtSynchronizedStmtClass:
334 return VisitObjCAtSynchronizedStmt(cast<ObjCAtSynchronizedStmt>(S));
335
336 case Stmt::ObjCAtThrowStmtClass:
337 return VisitObjCAtThrowStmt(cast<ObjCAtThrowStmt>(S));
338
339 case Stmt::ObjCAtTryStmtClass:
340 return VisitObjCAtTryStmt(cast<ObjCAtTryStmt>(S));
341
342 case Stmt::ObjCForCollectionStmtClass:
343 return VisitObjCForCollectionStmt(cast<ObjCForCollectionStmt>(S));
344
345 case Stmt::ParenExprClass:
346 S = cast<ParenExpr>(S)->getSubExpr();
347 goto tryAgain;
348
349 case Stmt::NullStmtClass:
350 return Block;
351
352 case Stmt::ReturnStmtClass:
353 return VisitReturnStmt(cast<ReturnStmt>(S));
354
355 case Stmt::SizeOfAlignOfExprClass:
Ted Kremenek0747de62009-07-18 00:47:21 +0000356 return VisitSizeOfAlignOfExpr(cast<SizeOfAlignOfExpr>(S), alwaysAdd);
Ted Kremenek93668002009-07-17 22:18:43 +0000357
358 case Stmt::StmtExprClass:
Ted Kremenek0747de62009-07-18 00:47:21 +0000359 return VisitStmtExpr(cast<StmtExpr>(S), alwaysAdd);
Ted Kremenek93668002009-07-17 22:18:43 +0000360
361 case Stmt::SwitchStmtClass:
362 return VisitSwitchStmt(cast<SwitchStmt>(S));
363
364 case Stmt::WhileStmtClass:
365 return VisitWhileStmt(cast<WhileStmt>(S));
366 }
367}
Ted Kremenek51d40b02009-07-17 18:15:54 +0000368
Ted Kremenek93668002009-07-17 22:18:43 +0000369CFGBlock *CFGBuilder::VisitStmt(Stmt *S, bool alwaysAdd) {
370 if (alwaysAdd) {
371 autoCreateBlock();
372 Block->appendStmt(S);
Mike Stump31feda52009-07-17 01:31:16 +0000373 }
Ted Kremenek93668002009-07-17 22:18:43 +0000374
375 return VisitChildren(S);
Ted Kremenek9e248872007-08-27 21:27:44 +0000376}
Mike Stump31feda52009-07-17 01:31:16 +0000377
Ted Kremenek93668002009-07-17 22:18:43 +0000378/// VisitChildren - Visit the children of a Stmt.
379CFGBlock *CFGBuilder::VisitChildren(Stmt* Terminator) {
380 CFGBlock *B = Block;
Mike Stumpd8ba7a22009-02-26 08:00:25 +0000381 for (Stmt::child_iterator I = Terminator->child_begin(),
Ted Kremenek93668002009-07-17 22:18:43 +0000382 E = Terminator->child_end(); I != E; ++I) {
383 if (*I) B = Visit(*I);
384 }
Ted Kremenek9e248872007-08-27 21:27:44 +0000385 return B;
386}
Ted Kremenek93668002009-07-17 22:18:43 +0000387
388CFGBlock *CFGBuilder::VisitAddrLabelExpr(AddrLabelExpr *A, bool alwaysAdd) {
389 AddressTakenLabels.insert(A->getLabel());
Ted Kremenek9e248872007-08-27 21:27:44 +0000390
Ted Kremenek93668002009-07-17 22:18:43 +0000391 if (alwaysAdd) {
392 autoCreateBlock();
393 Block->appendStmt(A);
394 }
Ted Kremenek81e14852007-08-27 19:46:09 +0000395
Ted Kremenek9aae5132007-08-23 21:42:29 +0000396 return Block;
397}
Ted Kremenek93668002009-07-17 22:18:43 +0000398
399CFGBlock *CFGBuilder::VisitBinaryOperator(BinaryOperator *B, bool alwaysAdd) {
400 if (B->isLogicalOp()) { // && or ||
Ted Kremenek9aae5132007-08-23 21:42:29 +0000401
Mike Stump0d76d072009-07-20 23:24:15 +0000402 // See if this is a known constant.
403 bool KnownTrue = false;
404 bool KnownFalse = false;
405 Expr::EvalResult Result;
406 if (B->getLHS()->Evaluate(Result, *Context)
407 && Result.Val.isInt()) {
408 if ((B->getOpcode() == BinaryOperator::LAnd)
409 == Result.Val.getInt().getBoolValue())
410 KnownTrue = true;
411 else
412 KnownFalse = true;
413 }
414
Ted Kremenek93668002009-07-17 22:18:43 +0000415 CFGBlock* ConfluenceBlock = Block ? Block : createBlock();
416 ConfluenceBlock->appendStmt(B);
417
418 if (!FinishBlock(ConfluenceBlock))
419 return 0;
420
421 // create the block evaluating the LHS
422 CFGBlock* LHSBlock = createBlock(false);
423 LHSBlock->setTerminator(B);
424
425 // create the block evaluating the RHS
426 Succ = ConfluenceBlock;
427 Block = NULL;
428 CFGBlock* RHSBlock = addStmt(B->getRHS());
429 if (!FinishBlock(RHSBlock))
430 return 0;
431
432 // Now link the LHSBlock with RHSBlock.
433 if (B->getOpcode() == BinaryOperator::LOr) {
Mike Stump0d76d072009-07-20 23:24:15 +0000434 if (KnownTrue)
435 LHSBlock->addSuccessor(0);
436 else
437 LHSBlock->addSuccessor(ConfluenceBlock);
438 if (KnownFalse)
439 LHSBlock->addSuccessor(0);
440 else
441 LHSBlock->addSuccessor(RHSBlock);
Ted Kremenek93668002009-07-17 22:18:43 +0000442 } else {
443 assert (B->getOpcode() == BinaryOperator::LAnd);
Mike Stump0d76d072009-07-20 23:24:15 +0000444 if (KnownFalse)
445 LHSBlock->addSuccessor(0);
446 else
447 LHSBlock->addSuccessor(RHSBlock);
448 if (KnownTrue)
449 LHSBlock->addSuccessor(0);
450 else
451 LHSBlock->addSuccessor(ConfluenceBlock);
Ted Kremenek93668002009-07-17 22:18:43 +0000452 }
453
454 // Generate the blocks for evaluating the LHS.
455 Block = LHSBlock;
456 return addStmt(B->getLHS());
457 }
458 else if (B->getOpcode() == BinaryOperator::Comma) { // ,
Ted Kremenekfe9b7682009-07-17 22:57:50 +0000459 autoCreateBlock();
Ted Kremenek93668002009-07-17 22:18:43 +0000460 Block->appendStmt(B);
461 addStmt(B->getRHS());
462 return addStmt(B->getLHS());
463 }
464
465 return VisitStmt(B, alwaysAdd);
466}
467
Ted Kremenek0747de62009-07-18 00:47:21 +0000468CFGBlock *CFGBuilder::VisitBlockExpr(BlockExpr* E, bool alwaysAdd) {
Ted Kremenek93668002009-07-17 22:18:43 +0000469 // FIXME
470 return NYS();
471}
472
Ted Kremenek0747de62009-07-18 00:47:21 +0000473CFGBlock *CFGBuilder::VisitBlockDeclRefExpr(BlockDeclRefExpr* E,
474 bool alwaysAdd) {
Ted Kremenek93668002009-07-17 22:18:43 +0000475 // FIXME
476 return NYS();
477}
478
479CFGBlock *CFGBuilder::VisitBreakStmt(BreakStmt *B) {
480 // "break" is a control-flow statement. Thus we stop processing the current
481 // block.
482 if (Block && !FinishBlock(Block))
483 return 0;
484
485 // Now create a new block that ends with the break statement.
486 Block = createBlock(false);
487 Block->setTerminator(B);
488
489 // If there is no target for the break, then we are looking at an incomplete
490 // AST. This means that the CFG cannot be constructed.
491 if (BreakTargetBlock)
492 Block->addSuccessor(BreakTargetBlock);
493 else
494 badCFG = true;
495
496
Ted Kremenek9aae5132007-08-23 21:42:29 +0000497 return Block;
498}
Ted Kremenek93668002009-07-17 22:18:43 +0000499
500CFGBlock *CFGBuilder::VisitCallExpr(CallExpr *C, bool alwaysAdd) {
501 // If this is a call to a no-return function, this stops the block here.
502 if (FunctionDecl *FD = C->getDirectCallee()) {
503
504 if (!FD->hasAttr<NoReturnAttr>())
505 return VisitStmt(C, alwaysAdd);
506
507 if (Block && !FinishBlock(Block))
508 return 0;
509
510 // Create new block with no successor for the remaining pieces.
511 Block = createBlock(false);
512 Block->appendStmt(C);
513
514 // Wire this to the exit block directly.
515 Block->addSuccessor(&cfg->getExit());
516
517 return VisitChildren(C);
518 }
519
520 return VisitStmt(C, alwaysAdd);
521}
Ted Kremenek9aae5132007-08-23 21:42:29 +0000522
Ted Kremenek21822592009-07-17 18:20:32 +0000523CFGBlock *CFGBuilder::VisitChooseExpr(ChooseExpr *C) {
524 CFGBlock* ConfluenceBlock = Block ? Block : createBlock();
525 ConfluenceBlock->appendStmt(C);
526 if (!FinishBlock(ConfluenceBlock))
527 return 0;
528
529 Succ = ConfluenceBlock;
530 Block = NULL;
Ted Kremenek93668002009-07-17 22:18:43 +0000531 CFGBlock* LHSBlock = addStmt(C->getLHS());
Ted Kremenek21822592009-07-17 18:20:32 +0000532 if (!FinishBlock(LHSBlock))
533 return 0;
534
535 Succ = ConfluenceBlock;
536 Block = NULL;
Ted Kremenek93668002009-07-17 22:18:43 +0000537 CFGBlock* RHSBlock = addStmt(C->getRHS());
Ted Kremenek21822592009-07-17 18:20:32 +0000538 if (!FinishBlock(RHSBlock))
539 return 0;
540
541 Block = createBlock(false);
542 Block->addSuccessor(LHSBlock);
543 Block->addSuccessor(RHSBlock);
544 Block->setTerminator(C);
545 return addStmt(C->getCond());
546}
Ted Kremenek51d40b02009-07-17 18:15:54 +0000547
Ted Kremenek93668002009-07-17 22:18:43 +0000548
549CFGBlock* CFGBuilder::VisitCompoundStmt(CompoundStmt* C) {
550 CFGBlock* LastBlock = Block;
551
552 for (CompoundStmt::reverse_body_iterator I=C->body_rbegin(), E=C->body_rend();
553 I != E; ++I ) {
554 LastBlock = addStmt(*I);
555 }
556 return LastBlock;
557}
558
Ted Kremenek51d40b02009-07-17 18:15:54 +0000559CFGBlock *CFGBuilder::VisitConditionalOperator(ConditionalOperator *C) {
Mike Stump0d76d072009-07-20 23:24:15 +0000560 // See if this is a known constant.
561 bool KnownTrue = false;
562 bool KnownFalse = false;
563 Expr::EvalResult Result;
564 if (C->getCond()->Evaluate(Result, *Context)
565 && Result.Val.isInt()) {
566 if (Result.Val.getInt().getBoolValue())
567 KnownTrue = true;
568 else
569 KnownFalse = true;
570 }
571
Ted Kremenek51d40b02009-07-17 18:15:54 +0000572 // Create the confluence block that will "merge" the results of the ternary
573 // expression.
574 CFGBlock* ConfluenceBlock = Block ? Block : createBlock();
575 ConfluenceBlock->appendStmt(C);
576 if (!FinishBlock(ConfluenceBlock))
577 return 0;
578
579 // Create a block for the LHS expression if there is an LHS expression. A
580 // GCC extension allows LHS to be NULL, causing the condition to be the
581 // value that is returned instead.
582 // e.g: x ?: y is shorthand for: x ? x : y;
583 Succ = ConfluenceBlock;
584 Block = NULL;
585 CFGBlock* LHSBlock = NULL;
586 if (C->getLHS()) {
Ted Kremenek93668002009-07-17 22:18:43 +0000587 LHSBlock = addStmt(C->getLHS());
Ted Kremenek51d40b02009-07-17 18:15:54 +0000588 if (!FinishBlock(LHSBlock))
589 return 0;
590 Block = NULL;
591 }
592
593 // Create the block for the RHS expression.
594 Succ = ConfluenceBlock;
Ted Kremenek93668002009-07-17 22:18:43 +0000595 CFGBlock* RHSBlock = addStmt(C->getRHS());
Ted Kremenek51d40b02009-07-17 18:15:54 +0000596 if (!FinishBlock(RHSBlock))
597 return 0;
598
599 // Create the block that will contain the condition.
600 Block = createBlock(false);
601
Mike Stump0d76d072009-07-20 23:24:15 +0000602 if (LHSBlock) {
603 if (KnownFalse)
604 Block->addSuccessor(0);
605 else
606 Block->addSuccessor(LHSBlock);
607 } else {
608 if (KnownFalse) {
609 // If we know the condition is false, add NULL as the successor for
610 // the block containing the condition. In this case, the confluence
611 // block will have just one predecessor.
612 Block->addSuccessor(0);
613 assert (ConfluenceBlock->pred_size() == 1);
614 } else {
615 // If we have no LHS expression, add the ConfluenceBlock as a direct
616 // successor for the block containing the condition. Moreover, we need to
617 // reverse the order of the predecessors in the ConfluenceBlock because
618 // the RHSBlock will have been added to the succcessors already, and we
619 // want the first predecessor to the the block containing the expression
620 // for the case when the ternary expression evaluates to true.
621 Block->addSuccessor(ConfluenceBlock);
622 assert (ConfluenceBlock->pred_size() == 2);
623 std::reverse(ConfluenceBlock->pred_begin(),
624 ConfluenceBlock->pred_end());
625 }
Ted Kremenek51d40b02009-07-17 18:15:54 +0000626 }
627
Mike Stump0d76d072009-07-20 23:24:15 +0000628 if (KnownTrue)
629 Block->addSuccessor(0);
630 else
631 Block->addSuccessor(RHSBlock);
Ted Kremenek51d40b02009-07-17 18:15:54 +0000632
633 Block->setTerminator(C);
634 return addStmt(C->getCond());
635}
636
Ted Kremenek93668002009-07-17 22:18:43 +0000637CFGBlock *CFGBuilder::VisitDeclStmt(DeclStmt *DS) {
638 autoCreateBlock();
Mike Stump31feda52009-07-17 01:31:16 +0000639
Ted Kremenek93668002009-07-17 22:18:43 +0000640 if (DS->isSingleDecl()) {
641 Block->appendStmt(DS);
642 return VisitDeclSubExpr(DS->getSingleDecl());
Ted Kremenekf6998822008-02-26 00:22:58 +0000643 }
Ted Kremenek93668002009-07-17 22:18:43 +0000644
645 CFGBlock *B = 0;
646
647 // FIXME: Add a reverse iterator for DeclStmt to avoid this extra copy.
648 typedef llvm::SmallVector<Decl*,10> BufTy;
649 BufTy Buf(DS->decl_begin(), DS->decl_end());
650
651 for (BufTy::reverse_iterator I = Buf.rbegin(), E = Buf.rend(); I != E; ++I) {
652 // Get the alignment of the new DeclStmt, padding out to >=8 bytes.
653 unsigned A = llvm::AlignOf<DeclStmt>::Alignment < 8
654 ? 8 : llvm::AlignOf<DeclStmt>::Alignment;
655
656 // Allocate the DeclStmt using the BumpPtrAllocator. It will get
657 // automatically freed with the CFG.
658 DeclGroupRef DG(*I);
659 Decl *D = *I;
660 void *Mem = cfg->getAllocator().Allocate(sizeof(DeclStmt), A);
661 DeclStmt *DSNew = new (Mem) DeclStmt(DG, D->getLocation(), GetEndLoc(D));
662
663 // Append the fake DeclStmt to block.
664 Block->appendStmt(DSNew);
665 B = VisitDeclSubExpr(D);
666 }
667
668 return B;
669}
670
671/// VisitDeclSubExpr - Utility method to add block-level expressions for
672/// initializers in Decls.
673CFGBlock *CFGBuilder::VisitDeclSubExpr(Decl* D) {
674 assert(Block);
Ted Kremenekf6998822008-02-26 00:22:58 +0000675
Ted Kremenek93668002009-07-17 22:18:43 +0000676 VarDecl *VD = dyn_cast<VarDecl>(D);
677
678 if (!VD)
679 return Block;
680
681 Expr *Init = VD->getInit();
682
683 if (Init) {
684 // Optimization: Don't create separate block-level statements for literals.
685 switch (Init->getStmtClass()) {
686 case Stmt::IntegerLiteralClass:
687 case Stmt::CharacterLiteralClass:
688 case Stmt::StringLiteralClass:
689 break;
690 default:
691 Block = addStmt(Init);
692 }
693 }
694
695 // If the type of VD is a VLA, then we must process its size expressions.
696 for (VariableArrayType* VA = FindVA(VD->getType().getTypePtr()); VA != 0;
697 VA = FindVA(VA->getElementType().getTypePtr()))
698 Block = addStmt(VA->getSizeExpr());
699
700 return Block;
Ted Kremenek9aae5132007-08-23 21:42:29 +0000701}
702
703CFGBlock* CFGBuilder::VisitIfStmt(IfStmt* I) {
Mike Stump23a443b2009-07-21 00:38:52 +0000704 // See if this is a known constant.
Mike Stump0d76d072009-07-20 23:24:15 +0000705 bool KnownTrue = false;
706 bool KnownFalse = false;
707 Expr::EvalResult Result;
708 if (I->getCond()->Evaluate(Result, *Context)
709 && Result.Val.isInt()) {
710 if (Result.Val.getInt().getBoolValue())
711 KnownTrue = true;
712 else
713 KnownFalse = true;
714 }
715
Mike Stump31feda52009-07-17 01:31:16 +0000716 // We may see an if statement in the middle of a basic block, or it may be the
717 // first statement we are processing. In either case, we create a new basic
718 // block. First, we create the blocks for the then...else statements, and
719 // then we create the block containing the if statement. If we were in the
720 // middle of a block, we stop processing that block and reverse its
721 // statements. That block is then the implicit successor for the "then" and
722 // "else" clauses.
723
724 // The block we were proccessing is now finished. Make it the successor
725 // block.
726 if (Block) {
Ted Kremenek9aae5132007-08-23 21:42:29 +0000727 Succ = Block;
Ted Kremenek55957a82009-05-02 00:13:27 +0000728 if (!FinishBlock(Block))
729 return 0;
Ted Kremenek9aae5132007-08-23 21:42:29 +0000730 }
Mike Stump31feda52009-07-17 01:31:16 +0000731
Ted Kremenek0bcdc982009-07-17 18:04:55 +0000732 // Process the false branch.
Ted Kremenek9aae5132007-08-23 21:42:29 +0000733 CFGBlock* ElseBlock = Succ;
Mike Stump31feda52009-07-17 01:31:16 +0000734
Ted Kremenek9aae5132007-08-23 21:42:29 +0000735 if (Stmt* Else = I->getElse()) {
736 SaveAndRestore<CFGBlock*> sv(Succ);
Mike Stump31feda52009-07-17 01:31:16 +0000737
Ted Kremenek9aae5132007-08-23 21:42:29 +0000738 // NULL out Block so that the recursive call to Visit will
Mike Stump31feda52009-07-17 01:31:16 +0000739 // create a new basic block.
Ted Kremenek9aae5132007-08-23 21:42:29 +0000740 Block = NULL;
Ted Kremenek93668002009-07-17 22:18:43 +0000741 ElseBlock = addStmt(Else);
Mike Stump31feda52009-07-17 01:31:16 +0000742
Ted Kremenekbbad8ce2007-08-30 18:13:31 +0000743 if (!ElseBlock) // Can occur when the Else body has all NullStmts.
744 ElseBlock = sv.get();
Ted Kremenek55957a82009-05-02 00:13:27 +0000745 else if (Block) {
746 if (!FinishBlock(ElseBlock))
747 return 0;
748 }
Ted Kremenek9aae5132007-08-23 21:42:29 +0000749 }
Mike Stump31feda52009-07-17 01:31:16 +0000750
Ted Kremenek0bcdc982009-07-17 18:04:55 +0000751 // Process the true branch.
Ted Kremenek9aae5132007-08-23 21:42:29 +0000752 CFGBlock* ThenBlock;
753 {
754 Stmt* Then = I->getThen();
755 assert (Then);
756 SaveAndRestore<CFGBlock*> sv(Succ);
Mike Stump31feda52009-07-17 01:31:16 +0000757 Block = NULL;
Ted Kremenek93668002009-07-17 22:18:43 +0000758 ThenBlock = addStmt(Then);
Mike Stump31feda52009-07-17 01:31:16 +0000759
Ted Kremenek1b379512009-04-01 03:52:47 +0000760 if (!ThenBlock) {
761 // We can reach here if the "then" body has all NullStmts.
762 // Create an empty block so we can distinguish between true and false
763 // branches in path-sensitive analyses.
764 ThenBlock = createBlock(false);
765 ThenBlock->addSuccessor(sv.get());
Mike Stump31feda52009-07-17 01:31:16 +0000766 } else if (Block) {
Ted Kremenek55957a82009-05-02 00:13:27 +0000767 if (!FinishBlock(ThenBlock))
768 return 0;
Mike Stump31feda52009-07-17 01:31:16 +0000769 }
Ted Kremenek9aae5132007-08-23 21:42:29 +0000770 }
771
Mike Stump31feda52009-07-17 01:31:16 +0000772 // Now create a new block containing the if statement.
Ted Kremenek9aae5132007-08-23 21:42:29 +0000773 Block = createBlock(false);
Mike Stump31feda52009-07-17 01:31:16 +0000774
Ted Kremenek9aae5132007-08-23 21:42:29 +0000775 // Set the terminator of the new block to the If statement.
776 Block->setTerminator(I);
Mike Stump31feda52009-07-17 01:31:16 +0000777
Ted Kremenek9aae5132007-08-23 21:42:29 +0000778 // Now add the successors.
Mike Stump0d76d072009-07-20 23:24:15 +0000779 if (KnownFalse)
780 Block->addSuccessor(0);
781 else
782 Block->addSuccessor(ThenBlock);
783 if (KnownTrue)
784 Block->addSuccessor(0);
785 else
786 Block->addSuccessor(ElseBlock);
Mike Stump31feda52009-07-17 01:31:16 +0000787
788 // Add the condition as the last statement in the new block. This may create
789 // new blocks as the condition may contain control-flow. Any newly created
790 // blocks will be pointed to be "Block".
Ted Kremenek93668002009-07-17 22:18:43 +0000791 return addStmt(I->getCond());
Ted Kremenek9aae5132007-08-23 21:42:29 +0000792}
Mike Stump31feda52009-07-17 01:31:16 +0000793
794
Ted Kremenek9aae5132007-08-23 21:42:29 +0000795CFGBlock* CFGBuilder::VisitReturnStmt(ReturnStmt* R) {
Mike Stump31feda52009-07-17 01:31:16 +0000796 // If we were in the middle of a block we stop processing that block and
797 // reverse its statements.
Ted Kremenek9aae5132007-08-23 21:42:29 +0000798 //
Mike Stump31feda52009-07-17 01:31:16 +0000799 // NOTE: If a "return" appears in the middle of a block, this means that the
800 // code afterwards is DEAD (unreachable). We still keep a basic block
801 // for that code; a simple "mark-and-sweep" from the entry block will be
802 // able to report such dead blocks.
Ted Kremenek9aae5132007-08-23 21:42:29 +0000803 if (Block) FinishBlock(Block);
804
805 // Create the new block.
806 Block = createBlock(false);
Mike Stump31feda52009-07-17 01:31:16 +0000807
Ted Kremenek9aae5132007-08-23 21:42:29 +0000808 // The Exit block is the only successor.
809 Block->addSuccessor(&cfg->getExit());
Mike Stump31feda52009-07-17 01:31:16 +0000810
811 // Add the return statement to the block. This may create new blocks if R
812 // contains control-flow (short-circuit operations).
Ted Kremenek93668002009-07-17 22:18:43 +0000813 return VisitStmt(R, true);
Ted Kremenek9aae5132007-08-23 21:42:29 +0000814}
815
816CFGBlock* CFGBuilder::VisitLabelStmt(LabelStmt* L) {
817 // Get the block of the labeled statement. Add it to our map.
Ted Kremenek93668002009-07-17 22:18:43 +0000818 addStmt(L->getSubStmt());
Ted Kremenekcab47bd2008-03-15 07:45:02 +0000819 CFGBlock* LabelBlock = Block;
Mike Stump31feda52009-07-17 01:31:16 +0000820
Ted Kremenek93668002009-07-17 22:18:43 +0000821 if (!LabelBlock) // This can happen when the body is empty, i.e.
822 LabelBlock = createBlock(); // scopes that only contains NullStmts.
Mike Stump31feda52009-07-17 01:31:16 +0000823
Ted Kremenek93668002009-07-17 22:18:43 +0000824 assert(LabelMap.find(L) == LabelMap.end() && "label already in map");
Ted Kremenek9aae5132007-08-23 21:42:29 +0000825 LabelMap[ L ] = LabelBlock;
Mike Stump31feda52009-07-17 01:31:16 +0000826
827 // Labels partition blocks, so this is the end of the basic block we were
828 // processing (L is the block's label). Because this is label (and we have
829 // already processed the substatement) there is no extra control-flow to worry
830 // about.
Ted Kremenek71eca012007-08-29 23:20:49 +0000831 LabelBlock->setLabel(L);
Ted Kremenek55957a82009-05-02 00:13:27 +0000832 if (!FinishBlock(LabelBlock))
833 return 0;
Mike Stump31feda52009-07-17 01:31:16 +0000834
835 // We set Block to NULL to allow lazy creation of a new block (if necessary);
Ted Kremenek9aae5132007-08-23 21:42:29 +0000836 Block = NULL;
Mike Stump31feda52009-07-17 01:31:16 +0000837
Ted Kremenek9aae5132007-08-23 21:42:29 +0000838 // This block is now the implicit successor of other blocks.
839 Succ = LabelBlock;
Mike Stump31feda52009-07-17 01:31:16 +0000840
Ted Kremenek9aae5132007-08-23 21:42:29 +0000841 return LabelBlock;
842}
843
844CFGBlock* CFGBuilder::VisitGotoStmt(GotoStmt* G) {
Mike Stump31feda52009-07-17 01:31:16 +0000845 // Goto is a control-flow statement. Thus we stop processing the current
846 // block and create a new one.
Ted Kremenek93668002009-07-17 22:18:43 +0000847 if (Block)
848 FinishBlock(Block);
849
Ted Kremenek9aae5132007-08-23 21:42:29 +0000850 Block = createBlock(false);
851 Block->setTerminator(G);
Mike Stump31feda52009-07-17 01:31:16 +0000852
853 // If we already know the mapping to the label block add the successor now.
Ted Kremenek9aae5132007-08-23 21:42:29 +0000854 LabelMapTy::iterator I = LabelMap.find(G->getLabel());
Mike Stump31feda52009-07-17 01:31:16 +0000855
Ted Kremenek9aae5132007-08-23 21:42:29 +0000856 if (I == LabelMap.end())
857 // We will need to backpatch this block later.
858 BackpatchBlocks.push_back(Block);
859 else
860 Block->addSuccessor(I->second);
861
Mike Stump31feda52009-07-17 01:31:16 +0000862 return Block;
Ted Kremenek9aae5132007-08-23 21:42:29 +0000863}
864
865CFGBlock* CFGBuilder::VisitForStmt(ForStmt* F) {
Mike Stump014b3ea2009-07-21 01:12:51 +0000866 // See if this is a known constant.
867 bool KnownTrue = false;
868 bool KnownFalse = false;
869 Expr::EvalResult Result;
870 if (F->getCond() && F->getCond()->Evaluate(Result, *Context)
871 && Result.Val.isInt()) {
872 if (Result.Val.getInt().getBoolValue())
873 KnownTrue = true;
874 else
875 KnownFalse = true;
876 }
877 if (F->getCond() == 0)
878 KnownTrue = true;
879
Ted Kremenek9aae5132007-08-23 21:42:29 +0000880 CFGBlock* LoopSuccessor = NULL;
Mike Stump31feda52009-07-17 01:31:16 +0000881
Mike Stump014b3ea2009-07-21 01:12:51 +0000882 // "for" is a control-flow statement. Thus we stop processing the current
883 // block.
Ted Kremenek9aae5132007-08-23 21:42:29 +0000884 if (Block) {
Ted Kremenek55957a82009-05-02 00:13:27 +0000885 if (!FinishBlock(Block))
886 return 0;
Ted Kremenek9aae5132007-08-23 21:42:29 +0000887 LoopSuccessor = Block;
Ted Kremenek93668002009-07-17 22:18:43 +0000888 } else
889 LoopSuccessor = Succ;
Mike Stump31feda52009-07-17 01:31:16 +0000890
891 // Because of short-circuit evaluation, the condition of the loop can span
892 // multiple basic blocks. Thus we need the "Entry" and "Exit" blocks that
893 // evaluate the condition.
Ted Kremenek81e14852007-08-27 19:46:09 +0000894 CFGBlock* ExitConditionBlock = createBlock(false);
895 CFGBlock* EntryConditionBlock = ExitConditionBlock;
Mike Stump31feda52009-07-17 01:31:16 +0000896
Ted Kremenek81e14852007-08-27 19:46:09 +0000897 // Set the terminator for the "exit" condition block.
Mike Stump31feda52009-07-17 01:31:16 +0000898 ExitConditionBlock->setTerminator(F);
899
900 // Now add the actual condition to the condition block. Because the condition
901 // itself may contain control-flow, new blocks may be created.
Ted Kremenek81e14852007-08-27 19:46:09 +0000902 if (Stmt* C = F->getCond()) {
903 Block = ExitConditionBlock;
904 EntryConditionBlock = addStmt(C);
Ted Kremenek55957a82009-05-02 00:13:27 +0000905 if (Block) {
906 if (!FinishBlock(EntryConditionBlock))
907 return 0;
908 }
Ted Kremenek81e14852007-08-27 19:46:09 +0000909 }
Ted Kremenek9aae5132007-08-23 21:42:29 +0000910
Mike Stump31feda52009-07-17 01:31:16 +0000911 // The condition block is the implicit successor for the loop body as well as
912 // any code above the loop.
Ted Kremenek81e14852007-08-27 19:46:09 +0000913 Succ = EntryConditionBlock;
Mike Stump31feda52009-07-17 01:31:16 +0000914
Ted Kremenek9aae5132007-08-23 21:42:29 +0000915 // Now create the loop body.
916 {
917 assert (F->getBody());
Mike Stump31feda52009-07-17 01:31:16 +0000918
Ted Kremenek9aae5132007-08-23 21:42:29 +0000919 // Save the current values for Block, Succ, and continue and break targets
920 SaveAndRestore<CFGBlock*> save_Block(Block), save_Succ(Succ),
921 save_continue(ContinueTargetBlock),
Mike Stump31feda52009-07-17 01:31:16 +0000922 save_break(BreakTargetBlock);
923
Ted Kremeneke9610502007-08-30 18:39:40 +0000924 // Create a new block to contain the (bottom) of the loop body.
925 Block = NULL;
Mike Stump31feda52009-07-17 01:31:16 +0000926
Ted Kremenekb0746ca2008-09-04 21:48:47 +0000927 if (Stmt* I = F->getInc()) {
Mike Stump31feda52009-07-17 01:31:16 +0000928 // Generate increment code in its own basic block. This is the target of
929 // continue statements.
Ted Kremenek93668002009-07-17 22:18:43 +0000930 Succ = addStmt(I);
Mike Stump31feda52009-07-17 01:31:16 +0000931 } else {
932 // No increment code. Create a special, empty, block that is used as the
933 // target block for "looping back" to the start of the loop.
Ted Kremenek902393b2009-04-28 00:51:56 +0000934 assert(Succ == EntryConditionBlock);
935 Succ = createBlock();
Ted Kremenekb0746ca2008-09-04 21:48:47 +0000936 }
Mike Stump31feda52009-07-17 01:31:16 +0000937
Ted Kremenek902393b2009-04-28 00:51:56 +0000938 // Finish up the increment (or empty) block if it hasn't been already.
939 if (Block) {
940 assert(Block == Succ);
Ted Kremenek55957a82009-05-02 00:13:27 +0000941 if (!FinishBlock(Block))
942 return 0;
Ted Kremenek902393b2009-04-28 00:51:56 +0000943 Block = 0;
944 }
Mike Stump31feda52009-07-17 01:31:16 +0000945
Ted Kremenek902393b2009-04-28 00:51:56 +0000946 ContinueTargetBlock = Succ;
Mike Stump31feda52009-07-17 01:31:16 +0000947
Ted Kremenek902393b2009-04-28 00:51:56 +0000948 // The starting block for the loop increment is the block that should
949 // represent the 'loop target' for looping back to the start of the loop.
950 ContinueTargetBlock->setLoopTarget(F);
951
Ted Kremenekb0746ca2008-09-04 21:48:47 +0000952 // All breaks should go to the code following the loop.
Mike Stump31feda52009-07-17 01:31:16 +0000953 BreakTargetBlock = LoopSuccessor;
954
955 // Now populate the body block, and in the process create new blocks as we
956 // walk the body of the loop.
Ted Kremenek93668002009-07-17 22:18:43 +0000957 CFGBlock* BodyBlock = addStmt(F->getBody());
Ted Kremeneke9610502007-08-30 18:39:40 +0000958
959 if (!BodyBlock)
Ted Kremenek39321aa2008-02-27 00:28:17 +0000960 BodyBlock = EntryConditionBlock; // can happen for "for (...;...; ) ;"
Ted Kremenek55957a82009-05-02 00:13:27 +0000961 else if (Block) {
962 if (!FinishBlock(BodyBlock))
963 return 0;
Mike Stump31feda52009-07-17 01:31:16 +0000964 }
965
Mike Stump014b3ea2009-07-21 01:12:51 +0000966 if (KnownFalse)
967 ExitConditionBlock->addSuccessor(0);
968 else {
969 // This new body block is a successor to our "exit" condition block.
970 ExitConditionBlock->addSuccessor(BodyBlock);
971 }
Ted Kremenek9aae5132007-08-23 21:42:29 +0000972 }
Mike Stump31feda52009-07-17 01:31:16 +0000973
Mike Stump014b3ea2009-07-21 01:12:51 +0000974 if (KnownTrue)
975 ExitConditionBlock->addSuccessor(0);
976 else {
977 // Link up the condition block with the code that follows the loop. (the
978 // false branch).
979 ExitConditionBlock->addSuccessor(LoopSuccessor);
980 }
Mike Stump31feda52009-07-17 01:31:16 +0000981
Ted Kremenek9aae5132007-08-23 21:42:29 +0000982 // If the loop contains initialization, create a new block for those
Mike Stump31feda52009-07-17 01:31:16 +0000983 // statements. This block can also contain statements that precede the loop.
Ted Kremenek9aae5132007-08-23 21:42:29 +0000984 if (Stmt* I = F->getInit()) {
985 Block = createBlock();
Ted Kremenek81e14852007-08-27 19:46:09 +0000986 return addStmt(I);
Mike Stump31feda52009-07-17 01:31:16 +0000987 } else {
988 // There is no loop initialization. We are thus basically a while loop.
989 // NULL out Block to force lazy block construction.
Ted Kremenek9aae5132007-08-23 21:42:29 +0000990 Block = NULL;
Ted Kremeneka1523a32008-02-27 07:20:00 +0000991 Succ = EntryConditionBlock;
Ted Kremenek81e14852007-08-27 19:46:09 +0000992 return EntryConditionBlock;
Ted Kremenek9aae5132007-08-23 21:42:29 +0000993 }
994}
995
Ted Kremenek9d56e642008-11-11 17:10:00 +0000996CFGBlock* CFGBuilder::VisitObjCForCollectionStmt(ObjCForCollectionStmt* S) {
997 // Objective-C fast enumeration 'for' statements:
998 // http://developer.apple.com/documentation/Cocoa/Conceptual/ObjectiveC
999 //
1000 // for ( Type newVariable in collection_expression ) { statements }
1001 //
1002 // becomes:
1003 //
1004 // prologue:
1005 // 1. collection_expression
1006 // T. jump to loop_entry
1007 // loop_entry:
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00001008 // 1. side-effects of element expression
Ted Kremenek9d56e642008-11-11 17:10:00 +00001009 // 1. ObjCForCollectionStmt [performs binding to newVariable]
1010 // T. ObjCForCollectionStmt TB, FB [jumps to TB if newVariable != nil]
1011 // TB:
1012 // statements
1013 // T. jump to loop_entry
1014 // FB:
1015 // what comes after
1016 //
1017 // and
1018 //
1019 // Type existingItem;
1020 // for ( existingItem in expression ) { statements }
1021 //
1022 // becomes:
1023 //
Mike Stump31feda52009-07-17 01:31:16 +00001024 // the same with newVariable replaced with existingItem; the binding works
1025 // the same except that for one ObjCForCollectionStmt::getElement() returns
1026 // a DeclStmt and the other returns a DeclRefExpr.
Ted Kremenek9d56e642008-11-11 17:10:00 +00001027 //
Mike Stump31feda52009-07-17 01:31:16 +00001028
Ted Kremenek9d56e642008-11-11 17:10:00 +00001029 CFGBlock* LoopSuccessor = 0;
Mike Stump31feda52009-07-17 01:31:16 +00001030
Ted Kremenek9d56e642008-11-11 17:10:00 +00001031 if (Block) {
Ted Kremenek55957a82009-05-02 00:13:27 +00001032 if (!FinishBlock(Block))
1033 return 0;
Ted Kremenek9d56e642008-11-11 17:10:00 +00001034 LoopSuccessor = Block;
1035 Block = 0;
Ted Kremenek93668002009-07-17 22:18:43 +00001036 } else
1037 LoopSuccessor = Succ;
Mike Stump31feda52009-07-17 01:31:16 +00001038
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00001039 // Build the condition blocks.
1040 CFGBlock* ExitConditionBlock = createBlock(false);
1041 CFGBlock* EntryConditionBlock = ExitConditionBlock;
Mike Stump31feda52009-07-17 01:31:16 +00001042
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00001043 // Set the terminator for the "exit" condition block.
Mike Stump31feda52009-07-17 01:31:16 +00001044 ExitConditionBlock->setTerminator(S);
1045
1046 // The last statement in the block should be the ObjCForCollectionStmt, which
1047 // performs the actual binding to 'element' and determines if there are any
1048 // more items in the collection.
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00001049 ExitConditionBlock->appendStmt(S);
1050 Block = ExitConditionBlock;
Mike Stump31feda52009-07-17 01:31:16 +00001051
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00001052 // Walk the 'element' expression to see if there are any side-effects. We
Mike Stump31feda52009-07-17 01:31:16 +00001053 // generate new blocks as necesary. We DON'T add the statement by default to
1054 // the CFG unless it contains control-flow.
Ted Kremenek93668002009-07-17 22:18:43 +00001055 EntryConditionBlock = Visit(S->getElement(), false);
Mike Stump31feda52009-07-17 01:31:16 +00001056 if (Block) {
Ted Kremenek55957a82009-05-02 00:13:27 +00001057 if (!FinishBlock(EntryConditionBlock))
1058 return 0;
1059 Block = 0;
1060 }
Mike Stump31feda52009-07-17 01:31:16 +00001061
1062 // The condition block is the implicit successor for the loop body as well as
1063 // any code above the loop.
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00001064 Succ = EntryConditionBlock;
Mike Stump31feda52009-07-17 01:31:16 +00001065
Ted Kremenek9d56e642008-11-11 17:10:00 +00001066 // Now create the true branch.
Mike Stump31feda52009-07-17 01:31:16 +00001067 {
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00001068 // Save the current values for Succ, continue and break targets.
1069 SaveAndRestore<CFGBlock*> save_Succ(Succ),
Mike Stump31feda52009-07-17 01:31:16 +00001070 save_continue(ContinueTargetBlock), save_break(BreakTargetBlock);
1071
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00001072 BreakTargetBlock = LoopSuccessor;
Mike Stump31feda52009-07-17 01:31:16 +00001073 ContinueTargetBlock = EntryConditionBlock;
1074
Ted Kremenek93668002009-07-17 22:18:43 +00001075 CFGBlock* BodyBlock = addStmt(S->getBody());
Mike Stump31feda52009-07-17 01:31:16 +00001076
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00001077 if (!BodyBlock)
1078 BodyBlock = EntryConditionBlock; // can happen for "for (X in Y) ;"
Ted Kremenek55957a82009-05-02 00:13:27 +00001079 else if (Block) {
1080 if (!FinishBlock(BodyBlock))
1081 return 0;
1082 }
Mike Stump31feda52009-07-17 01:31:16 +00001083
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00001084 // This new body block is a successor to our "exit" condition block.
1085 ExitConditionBlock->addSuccessor(BodyBlock);
1086 }
Mike Stump31feda52009-07-17 01:31:16 +00001087
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00001088 // Link up the condition block with the code that follows the loop.
1089 // (the false branch).
1090 ExitConditionBlock->addSuccessor(LoopSuccessor);
1091
Ted Kremenek9d56e642008-11-11 17:10:00 +00001092 // Now create a prologue block to contain the collection expression.
Ted Kremenek5cf87ff2008-11-14 01:57:41 +00001093 Block = createBlock();
Ted Kremenek9d56e642008-11-11 17:10:00 +00001094 return addStmt(S->getCollection());
Mike Stump31feda52009-07-17 01:31:16 +00001095}
1096
Ted Kremenek49805452009-05-02 01:49:13 +00001097CFGBlock* CFGBuilder::VisitObjCAtSynchronizedStmt(ObjCAtSynchronizedStmt* S) {
1098 // FIXME: Add locking 'primitives' to CFG for @synchronized.
Mike Stump31feda52009-07-17 01:31:16 +00001099
Ted Kremenek49805452009-05-02 01:49:13 +00001100 // Inline the body.
Ted Kremenek93668002009-07-17 22:18:43 +00001101 CFGBlock *SyncBlock = addStmt(S->getSynchBody());
Mike Stump31feda52009-07-17 01:31:16 +00001102
Ted Kremenekb3c657b2009-05-05 23:11:51 +00001103 // The sync body starts its own basic block. This makes it a little easier
1104 // for diagnostic clients.
1105 if (SyncBlock) {
1106 if (!FinishBlock(SyncBlock))
1107 return 0;
Mike Stump31feda52009-07-17 01:31:16 +00001108
Ted Kremenekb3c657b2009-05-05 23:11:51 +00001109 Block = 0;
1110 }
Mike Stump31feda52009-07-17 01:31:16 +00001111
Ted Kremenekb3c657b2009-05-05 23:11:51 +00001112 Succ = SyncBlock;
Mike Stump31feda52009-07-17 01:31:16 +00001113
Ted Kremenek49805452009-05-02 01:49:13 +00001114 // Inline the sync expression.
Ted Kremenek93668002009-07-17 22:18:43 +00001115 return addStmt(S->getSynchExpr());
Ted Kremenek49805452009-05-02 01:49:13 +00001116}
Mike Stump31feda52009-07-17 01:31:16 +00001117
Ted Kremenek89cc8ea2009-03-30 22:29:21 +00001118CFGBlock* CFGBuilder::VisitObjCAtTryStmt(ObjCAtTryStmt* S) {
Ted Kremenek93668002009-07-17 22:18:43 +00001119 // FIXME
Ted Kremenek89be6522009-04-07 04:26:02 +00001120 return NYS();
Ted Kremenek89cc8ea2009-03-30 22:29:21 +00001121}
Ted Kremenek9d56e642008-11-11 17:10:00 +00001122
Ted Kremenek9aae5132007-08-23 21:42:29 +00001123CFGBlock* CFGBuilder::VisitWhileStmt(WhileStmt* W) {
Mike Stump23a443b2009-07-21 00:38:52 +00001124 // See if this is a known constant.
1125 bool KnownTrue = false;
1126 bool KnownFalse = false;
1127 Expr::EvalResult Result;
1128 if (W->getCond()->Evaluate(Result, *Context)
1129 && Result.Val.isInt()) {
1130 if (Result.Val.getInt().getBoolValue())
1131 KnownTrue = true;
1132 else
1133 KnownFalse = true;
1134 }
1135
Ted Kremenek9aae5132007-08-23 21:42:29 +00001136 CFGBlock* LoopSuccessor = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00001137
Mike Stump014b3ea2009-07-21 01:12:51 +00001138 // "while" is a control-flow statement. Thus we stop processing the current
1139 // block.
Ted Kremenek9aae5132007-08-23 21:42:29 +00001140 if (Block) {
Ted Kremenek55957a82009-05-02 00:13:27 +00001141 if (!FinishBlock(Block))
1142 return 0;
Ted Kremenek9aae5132007-08-23 21:42:29 +00001143 LoopSuccessor = Block;
Ted Kremenek93668002009-07-17 22:18:43 +00001144 } else
1145 LoopSuccessor = Succ;
Mike Stump31feda52009-07-17 01:31:16 +00001146
1147 // Because of short-circuit evaluation, the condition of the loop can span
1148 // multiple basic blocks. Thus we need the "Entry" and "Exit" blocks that
1149 // evaluate the condition.
Ted Kremenek81e14852007-08-27 19:46:09 +00001150 CFGBlock* ExitConditionBlock = createBlock(false);
1151 CFGBlock* EntryConditionBlock = ExitConditionBlock;
Mike Stump31feda52009-07-17 01:31:16 +00001152
Ted Kremenek81e14852007-08-27 19:46:09 +00001153 // Set the terminator for the "exit" condition block.
1154 ExitConditionBlock->setTerminator(W);
Mike Stump31feda52009-07-17 01:31:16 +00001155
1156 // Now add the actual condition to the condition block. Because the condition
1157 // itself may contain control-flow, new blocks may be created. Thus we update
1158 // "Succ" after adding the condition.
Ted Kremenek81e14852007-08-27 19:46:09 +00001159 if (Stmt* C = W->getCond()) {
1160 Block = ExitConditionBlock;
1161 EntryConditionBlock = addStmt(C);
Ted Kremenek49936f72009-04-28 03:09:44 +00001162 assert(Block == EntryConditionBlock);
Ted Kremenek55957a82009-05-02 00:13:27 +00001163 if (Block) {
1164 if (!FinishBlock(EntryConditionBlock))
1165 return 0;
1166 }
Ted Kremenek81e14852007-08-27 19:46:09 +00001167 }
Mike Stump31feda52009-07-17 01:31:16 +00001168
1169 // The condition block is the implicit successor for the loop body as well as
1170 // any code above the loop.
Ted Kremenek81e14852007-08-27 19:46:09 +00001171 Succ = EntryConditionBlock;
Mike Stump31feda52009-07-17 01:31:16 +00001172
Ted Kremenek9aae5132007-08-23 21:42:29 +00001173 // Process the loop body.
1174 {
Ted Kremenek49936f72009-04-28 03:09:44 +00001175 assert(W->getBody());
Ted Kremenek9aae5132007-08-23 21:42:29 +00001176
1177 // Save the current values for Block, Succ, and continue and break targets
1178 SaveAndRestore<CFGBlock*> save_Block(Block), save_Succ(Succ),
1179 save_continue(ContinueTargetBlock),
1180 save_break(BreakTargetBlock);
Ted Kremenek49936f72009-04-28 03:09:44 +00001181
Mike Stump31feda52009-07-17 01:31:16 +00001182 // Create an empty block to represent the transition block for looping back
1183 // to the head of the loop.
Ted Kremenek49936f72009-04-28 03:09:44 +00001184 Block = 0;
1185 assert(Succ == EntryConditionBlock);
1186 Succ = createBlock();
1187 Succ->setLoopTarget(W);
Mike Stump31feda52009-07-17 01:31:16 +00001188 ContinueTargetBlock = Succ;
1189
Ted Kremenek9aae5132007-08-23 21:42:29 +00001190 // All breaks should go to the code following the loop.
1191 BreakTargetBlock = LoopSuccessor;
Mike Stump31feda52009-07-17 01:31:16 +00001192
Ted Kremenek9aae5132007-08-23 21:42:29 +00001193 // NULL out Block to force lazy instantiation of blocks for the body.
1194 Block = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00001195
Ted Kremenek9aae5132007-08-23 21:42:29 +00001196 // Create the body. The returned block is the entry to the loop body.
Ted Kremenek93668002009-07-17 22:18:43 +00001197 CFGBlock* BodyBlock = addStmt(W->getBody());
Mike Stump31feda52009-07-17 01:31:16 +00001198
Ted Kremeneke9610502007-08-30 18:39:40 +00001199 if (!BodyBlock)
Ted Kremenek39321aa2008-02-27 00:28:17 +00001200 BodyBlock = EntryConditionBlock; // can happen for "while(...) ;"
Ted Kremenek55957a82009-05-02 00:13:27 +00001201 else if (Block) {
1202 if (!FinishBlock(BodyBlock))
1203 return 0;
1204 }
Mike Stump31feda52009-07-17 01:31:16 +00001205
Mike Stump23a443b2009-07-21 00:38:52 +00001206 if (KnownFalse)
1207 ExitConditionBlock->addSuccessor(0);
1208 else {
1209 // Add the loop body entry as a successor to the condition.
1210 ExitConditionBlock->addSuccessor(BodyBlock);
1211 }
Ted Kremenek9aae5132007-08-23 21:42:29 +00001212 }
Mike Stump31feda52009-07-17 01:31:16 +00001213
Mike Stump23a443b2009-07-21 00:38:52 +00001214 if (KnownTrue)
1215 ExitConditionBlock->addSuccessor(0);
1216 else {
1217 // Link up the condition block with the code that follows the loop. (the
1218 // false branch).
1219 ExitConditionBlock->addSuccessor(LoopSuccessor);
1220 }
Mike Stump31feda52009-07-17 01:31:16 +00001221
1222 // There can be no more statements in the condition block since we loop back
1223 // to this block. NULL out Block to force lazy creation of another block.
Ted Kremenek9aae5132007-08-23 21:42:29 +00001224 Block = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00001225
Ted Kremenek9aae5132007-08-23 21:42:29 +00001226 // Return the condition block, which is the dominating block for the loop.
Ted Kremeneka1523a32008-02-27 07:20:00 +00001227 Succ = EntryConditionBlock;
Ted Kremenek81e14852007-08-27 19:46:09 +00001228 return EntryConditionBlock;
Ted Kremenek9aae5132007-08-23 21:42:29 +00001229}
Ted Kremenek93668002009-07-17 22:18:43 +00001230
1231
1232CFGBlock *CFGBuilder::VisitObjCAtCatchStmt(ObjCAtCatchStmt* S) {
1233 // FIXME: For now we pretend that @catch and the code it contains does not
1234 // exit.
1235 return Block;
1236}
Mike Stump31feda52009-07-17 01:31:16 +00001237
Ted Kremenek93041ba2008-12-09 20:20:09 +00001238CFGBlock* CFGBuilder::VisitObjCAtThrowStmt(ObjCAtThrowStmt* S) {
1239 // FIXME: This isn't complete. We basically treat @throw like a return
1240 // statement.
Mike Stump31feda52009-07-17 01:31:16 +00001241
1242 // If we were in the middle of a block we stop processing that block and
1243 // reverse its statements.
Ted Kremenek93668002009-07-17 22:18:43 +00001244 if (Block && !FinishBlock(Block))
1245 return 0;
Mike Stump31feda52009-07-17 01:31:16 +00001246
Ted Kremenek93041ba2008-12-09 20:20:09 +00001247 // Create the new block.
1248 Block = createBlock(false);
Mike Stump31feda52009-07-17 01:31:16 +00001249
Ted Kremenek93041ba2008-12-09 20:20:09 +00001250 // The Exit block is the only successor.
1251 Block->addSuccessor(&cfg->getExit());
Mike Stump31feda52009-07-17 01:31:16 +00001252
1253 // Add the statement to the block. This may create new blocks if S contains
1254 // control-flow (short-circuit operations).
Ted Kremenek93668002009-07-17 22:18:43 +00001255 return VisitStmt(S, true);
Ted Kremenek93041ba2008-12-09 20:20:09 +00001256}
Ted Kremenek9aae5132007-08-23 21:42:29 +00001257
Ted Kremenek93668002009-07-17 22:18:43 +00001258CFGBlock *CFGBuilder::VisitDoStmt(DoStmt* D) {
Mike Stump8d50b6a2009-07-21 01:27:50 +00001259 // See if this is a known constant.
1260 bool KnownTrue = false;
1261 bool KnownFalse = false;
1262 Expr::EvalResult Result;
1263 if (D->getCond()->Evaluate(Result, *Context)
1264 && Result.Val.isInt()) {
1265 if (Result.Val.getInt().getBoolValue())
1266 KnownTrue = true;
1267 else
1268 KnownFalse = true;
1269 }
Mike Stump31feda52009-07-17 01:31:16 +00001270
Ted Kremenek9aae5132007-08-23 21:42:29 +00001271 CFGBlock* LoopSuccessor = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00001272
Mike Stump8d50b6a2009-07-21 01:27:50 +00001273 // "do...while" is a control-flow statement. Thus we stop processing the
1274 // current block.
Ted Kremenek9aae5132007-08-23 21:42:29 +00001275 if (Block) {
Ted Kremenek55957a82009-05-02 00:13:27 +00001276 if (!FinishBlock(Block))
1277 return 0;
Ted Kremenek9aae5132007-08-23 21:42:29 +00001278 LoopSuccessor = Block;
Ted Kremenek93668002009-07-17 22:18:43 +00001279 } else
1280 LoopSuccessor = Succ;
Mike Stump31feda52009-07-17 01:31:16 +00001281
1282 // Because of short-circuit evaluation, the condition of the loop can span
1283 // multiple basic blocks. Thus we need the "Entry" and "Exit" blocks that
1284 // evaluate the condition.
Ted Kremenek81e14852007-08-27 19:46:09 +00001285 CFGBlock* ExitConditionBlock = createBlock(false);
1286 CFGBlock* EntryConditionBlock = ExitConditionBlock;
Mike Stump31feda52009-07-17 01:31:16 +00001287
Ted Kremenek81e14852007-08-27 19:46:09 +00001288 // Set the terminator for the "exit" condition block.
Mike Stump31feda52009-07-17 01:31:16 +00001289 ExitConditionBlock->setTerminator(D);
1290
1291 // Now add the actual condition to the condition block. Because the condition
1292 // itself may contain control-flow, new blocks may be created.
Ted Kremenek81e14852007-08-27 19:46:09 +00001293 if (Stmt* C = D->getCond()) {
1294 Block = ExitConditionBlock;
1295 EntryConditionBlock = addStmt(C);
Ted Kremenek55957a82009-05-02 00:13:27 +00001296 if (Block) {
1297 if (!FinishBlock(EntryConditionBlock))
1298 return 0;
1299 }
Ted Kremenek81e14852007-08-27 19:46:09 +00001300 }
Mike Stump31feda52009-07-17 01:31:16 +00001301
Ted Kremeneka1523a32008-02-27 07:20:00 +00001302 // The condition block is the implicit successor for the loop body.
Ted Kremenek81e14852007-08-27 19:46:09 +00001303 Succ = EntryConditionBlock;
1304
Ted Kremenek9aae5132007-08-23 21:42:29 +00001305 // Process the loop body.
Ted Kremenek81e14852007-08-27 19:46:09 +00001306 CFGBlock* BodyBlock = NULL;
Ted Kremenek9aae5132007-08-23 21:42:29 +00001307 {
1308 assert (D->getBody());
Mike Stump31feda52009-07-17 01:31:16 +00001309
Ted Kremenek9aae5132007-08-23 21:42:29 +00001310 // Save the current values for Block, Succ, and continue and break targets
1311 SaveAndRestore<CFGBlock*> save_Block(Block), save_Succ(Succ),
1312 save_continue(ContinueTargetBlock),
1313 save_break(BreakTargetBlock);
Mike Stump31feda52009-07-17 01:31:16 +00001314
Ted Kremenek9aae5132007-08-23 21:42:29 +00001315 // All continues within this loop should go to the condition block
Ted Kremenek81e14852007-08-27 19:46:09 +00001316 ContinueTargetBlock = EntryConditionBlock;
Mike Stump31feda52009-07-17 01:31:16 +00001317
Ted Kremenek9aae5132007-08-23 21:42:29 +00001318 // All breaks should go to the code following the loop.
1319 BreakTargetBlock = LoopSuccessor;
Mike Stump31feda52009-07-17 01:31:16 +00001320
Ted Kremenek9aae5132007-08-23 21:42:29 +00001321 // NULL out Block to force lazy instantiation of blocks for the body.
1322 Block = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00001323
Ted Kremenek9aae5132007-08-23 21:42:29 +00001324 // Create the body. The returned block is the entry to the loop body.
Ted Kremenek93668002009-07-17 22:18:43 +00001325 BodyBlock = addStmt(D->getBody());
Mike Stump31feda52009-07-17 01:31:16 +00001326
Ted Kremeneke9610502007-08-30 18:39:40 +00001327 if (!BodyBlock)
Ted Kremenek39321aa2008-02-27 00:28:17 +00001328 BodyBlock = EntryConditionBlock; // can happen for "do ; while(...)"
Ted Kremenek55957a82009-05-02 00:13:27 +00001329 else if (Block) {
1330 if (!FinishBlock(BodyBlock))
1331 return 0;
1332 }
Mike Stump31feda52009-07-17 01:31:16 +00001333
Ted Kremenekcb37bb02009-04-28 04:22:00 +00001334 // Add an intermediate block between the BodyBlock and the
Mike Stump31feda52009-07-17 01:31:16 +00001335 // ExitConditionBlock to represent the "loop back" transition. Create an
1336 // empty block to represent the transition block for looping back to the
1337 // head of the loop.
Ted Kremenekcb37bb02009-04-28 04:22:00 +00001338 // FIXME: Can we do this more efficiently without adding another block?
1339 Block = NULL;
1340 Succ = BodyBlock;
1341 CFGBlock *LoopBackBlock = createBlock();
1342 LoopBackBlock->setLoopTarget(D);
Mike Stump31feda52009-07-17 01:31:16 +00001343
Mike Stump8d50b6a2009-07-21 01:27:50 +00001344 if (KnownFalse)
1345 ExitConditionBlock->addSuccessor(0);
1346 else {
1347 // Add the loop body entry as a successor to the condition.
1348 ExitConditionBlock->addSuccessor(LoopBackBlock);
1349 }
Ted Kremenek9aae5132007-08-23 21:42:29 +00001350 }
Mike Stump31feda52009-07-17 01:31:16 +00001351
Mike Stump8d50b6a2009-07-21 01:27:50 +00001352 if (KnownTrue)
1353 ExitConditionBlock->addSuccessor(0);
1354 else {
1355 // Link up the condition block with the code that follows the loop. (the
1356 // false branch).
1357 ExitConditionBlock->addSuccessor(LoopSuccessor);
1358 }
Mike Stump31feda52009-07-17 01:31:16 +00001359
1360 // There can be no more statements in the body block(s) since we loop back to
1361 // the body. NULL out Block to force lazy creation of another block.
Ted Kremenek9aae5132007-08-23 21:42:29 +00001362 Block = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00001363
Ted Kremenek9aae5132007-08-23 21:42:29 +00001364 // Return the loop body, which is the dominating block for the loop.
Ted Kremeneka1523a32008-02-27 07:20:00 +00001365 Succ = BodyBlock;
Ted Kremenek9aae5132007-08-23 21:42:29 +00001366 return BodyBlock;
1367}
1368
1369CFGBlock* CFGBuilder::VisitContinueStmt(ContinueStmt* C) {
1370 // "continue" is a control-flow statement. Thus we stop processing the
1371 // current block.
Ted Kremenek93668002009-07-17 22:18:43 +00001372 if (Block && !FinishBlock(Block))
Ted Kremenek55957a82009-05-02 00:13:27 +00001373 return 0;
Mike Stump31feda52009-07-17 01:31:16 +00001374
Ted Kremenek9aae5132007-08-23 21:42:29 +00001375 // Now create a new block that ends with the continue statement.
1376 Block = createBlock(false);
1377 Block->setTerminator(C);
Mike Stump31feda52009-07-17 01:31:16 +00001378
Ted Kremenek9aae5132007-08-23 21:42:29 +00001379 // If there is no target for the continue, then we are looking at an
Ted Kremenek882cf062009-04-07 18:53:24 +00001380 // incomplete AST. This means the CFG cannot be constructed.
1381 if (ContinueTargetBlock)
1382 Block->addSuccessor(ContinueTargetBlock);
1383 else
1384 badCFG = true;
Mike Stump31feda52009-07-17 01:31:16 +00001385
Ted Kremenek9aae5132007-08-23 21:42:29 +00001386 return Block;
1387}
Ted Kremenek93668002009-07-17 22:18:43 +00001388
Ted Kremenek0747de62009-07-18 00:47:21 +00001389CFGBlock *CFGBuilder::VisitSizeOfAlignOfExpr(SizeOfAlignOfExpr *E,
1390 bool alwaysAdd) {
1391
1392 if (alwaysAdd) {
1393 autoCreateBlock();
1394 Block->appendStmt(E);
1395 }
1396
Ted Kremenek93668002009-07-17 22:18:43 +00001397 // VLA types have expressions that must be evaluated.
1398 if (E->isArgumentType()) {
1399 for (VariableArrayType* VA = FindVA(E->getArgumentType().getTypePtr());
1400 VA != 0; VA = FindVA(VA->getElementType().getTypePtr()))
1401 addStmt(VA->getSizeExpr());
Ted Kremenek55957a82009-05-02 00:13:27 +00001402 }
Ted Kremenek93668002009-07-17 22:18:43 +00001403
Mike Stump31feda52009-07-17 01:31:16 +00001404 return Block;
Ted Kremenek9aae5132007-08-23 21:42:29 +00001405}
Ted Kremenek93668002009-07-17 22:18:43 +00001406
1407/// VisitStmtExpr - Utility method to handle (nested) statement
1408/// expressions (a GCC extension).
Ted Kremenek0747de62009-07-18 00:47:21 +00001409CFGBlock* CFGBuilder::VisitStmtExpr(StmtExpr *SE, bool alwaysAdd) {
1410 if (alwaysAdd) {
1411 autoCreateBlock();
1412 Block->appendStmt(SE);
1413 }
Ted Kremenek93668002009-07-17 22:18:43 +00001414 return VisitCompoundStmt(SE->getSubStmt());
1415}
Ted Kremenek9aae5132007-08-23 21:42:29 +00001416
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001417CFGBlock* CFGBuilder::VisitSwitchStmt(SwitchStmt* Terminator) {
Mike Stump31feda52009-07-17 01:31:16 +00001418 // "switch" is a control-flow statement. Thus we stop processing the current
1419 // block.
Ted Kremenek9aae5132007-08-23 21:42:29 +00001420 CFGBlock* SwitchSuccessor = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00001421
Ted Kremenek9aae5132007-08-23 21:42:29 +00001422 if (Block) {
Ted Kremenek55957a82009-05-02 00:13:27 +00001423 if (!FinishBlock(Block))
1424 return 0;
Ted Kremenek9aae5132007-08-23 21:42:29 +00001425 SwitchSuccessor = Block;
Mike Stump31feda52009-07-17 01:31:16 +00001426 } else SwitchSuccessor = Succ;
Ted Kremenek9aae5132007-08-23 21:42:29 +00001427
1428 // Save the current "switch" context.
1429 SaveAndRestore<CFGBlock*> save_switch(SwitchTerminatedBlock),
Ted Kremenek654c78f2008-02-13 22:05:39 +00001430 save_break(BreakTargetBlock),
1431 save_default(DefaultCaseBlock);
1432
Mike Stump31feda52009-07-17 01:31:16 +00001433 // Set the "default" case to be the block after the switch statement. If the
1434 // switch statement contains a "default:", this value will be overwritten with
1435 // the block for that code.
Ted Kremenek654c78f2008-02-13 22:05:39 +00001436 DefaultCaseBlock = SwitchSuccessor;
Mike Stump31feda52009-07-17 01:31:16 +00001437
Ted Kremenek9aae5132007-08-23 21:42:29 +00001438 // Create a new block that will contain the switch statement.
1439 SwitchTerminatedBlock = createBlock(false);
Mike Stump31feda52009-07-17 01:31:16 +00001440
Ted Kremenek9aae5132007-08-23 21:42:29 +00001441 // Now process the switch body. The code after the switch is the implicit
1442 // successor.
1443 Succ = SwitchSuccessor;
1444 BreakTargetBlock = SwitchSuccessor;
Mike Stump31feda52009-07-17 01:31:16 +00001445
1446 // When visiting the body, the case statements should automatically get linked
1447 // up to the switch. We also don't keep a pointer to the body, since all
1448 // control-flow from the switch goes to case/default statements.
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001449 assert (Terminator->getBody() && "switch must contain a non-NULL body");
Ted Kremenek81e14852007-08-27 19:46:09 +00001450 Block = NULL;
Ted Kremenek93668002009-07-17 22:18:43 +00001451 CFGBlock *BodyBlock = addStmt(Terminator->getBody());
Ted Kremenek55957a82009-05-02 00:13:27 +00001452 if (Block) {
1453 if (!FinishBlock(BodyBlock))
1454 return 0;
1455 }
Ted Kremenek81e14852007-08-27 19:46:09 +00001456
Mike Stump31feda52009-07-17 01:31:16 +00001457 // If we have no "default:" case, the default transition is to the code
1458 // following the switch body.
Ted Kremenek654c78f2008-02-13 22:05:39 +00001459 SwitchTerminatedBlock->addSuccessor(DefaultCaseBlock);
Mike Stump31feda52009-07-17 01:31:16 +00001460
Ted Kremenek81e14852007-08-27 19:46:09 +00001461 // Add the terminator and condition in the switch block.
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001462 SwitchTerminatedBlock->setTerminator(Terminator);
1463 assert (Terminator->getCond() && "switch condition must be non-NULL");
Ted Kremenek9aae5132007-08-23 21:42:29 +00001464 Block = SwitchTerminatedBlock;
Mike Stump31feda52009-07-17 01:31:16 +00001465
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001466 return addStmt(Terminator->getCond());
Ted Kremenek9aae5132007-08-23 21:42:29 +00001467}
1468
Ted Kremenek93668002009-07-17 22:18:43 +00001469CFGBlock* CFGBuilder::VisitCaseStmt(CaseStmt* CS) {
Mike Stump31feda52009-07-17 01:31:16 +00001470 // CaseStmts are essentially labels, so they are the first statement in a
1471 // block.
Ted Kremenek55e91e82007-08-30 18:48:11 +00001472
Ted Kremenek93668002009-07-17 22:18:43 +00001473 if (CS->getSubStmt())
1474 addStmt(CS->getSubStmt());
1475
Ted Kremenek55e91e82007-08-30 18:48:11 +00001476 CFGBlock* CaseBlock = Block;
Ted Kremenek93668002009-07-17 22:18:43 +00001477 if (!CaseBlock)
1478 CaseBlock = createBlock();
Mike Stump31feda52009-07-17 01:31:16 +00001479
1480 // Cases statements partition blocks, so this is the top of the basic block we
1481 // were processing (the "case XXX:" is the label).
Ted Kremenek93668002009-07-17 22:18:43 +00001482 CaseBlock->setLabel(CS);
1483
Ted Kremenek55957a82009-05-02 00:13:27 +00001484 if (!FinishBlock(CaseBlock))
1485 return 0;
Mike Stump31feda52009-07-17 01:31:16 +00001486
1487 // Add this block to the list of successors for the block with the switch
1488 // statement.
Ted Kremenek93668002009-07-17 22:18:43 +00001489 assert(SwitchTerminatedBlock);
Ted Kremenek654c78f2008-02-13 22:05:39 +00001490 SwitchTerminatedBlock->addSuccessor(CaseBlock);
Mike Stump31feda52009-07-17 01:31:16 +00001491
Ted Kremenek9aae5132007-08-23 21:42:29 +00001492 // We set Block to NULL to allow lazy creation of a new block (if necessary)
1493 Block = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00001494
Ted Kremenek9aae5132007-08-23 21:42:29 +00001495 // This block is now the implicit successor of other blocks.
1496 Succ = CaseBlock;
Mike Stump31feda52009-07-17 01:31:16 +00001497
Ted Kremenekcab47bd2008-03-15 07:45:02 +00001498 return CaseBlock;
Ted Kremenek9aae5132007-08-23 21:42:29 +00001499}
Mike Stump31feda52009-07-17 01:31:16 +00001500
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001501CFGBlock* CFGBuilder::VisitDefaultStmt(DefaultStmt* Terminator) {
Ted Kremenek93668002009-07-17 22:18:43 +00001502 if (Terminator->getSubStmt())
1503 addStmt(Terminator->getSubStmt());
1504
Ted Kremenek654c78f2008-02-13 22:05:39 +00001505 DefaultCaseBlock = Block;
Ted Kremenek93668002009-07-17 22:18:43 +00001506
1507 if (!DefaultCaseBlock)
1508 DefaultCaseBlock = createBlock();
Mike Stump31feda52009-07-17 01:31:16 +00001509
1510 // Default statements partition blocks, so this is the top of the basic block
1511 // we were processing (the "default:" is the label).
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001512 DefaultCaseBlock->setLabel(Terminator);
Ted Kremenek93668002009-07-17 22:18:43 +00001513
Ted Kremenek55957a82009-05-02 00:13:27 +00001514 if (!FinishBlock(DefaultCaseBlock))
1515 return 0;
Ted Kremenek654c78f2008-02-13 22:05:39 +00001516
Mike Stump31feda52009-07-17 01:31:16 +00001517 // Unlike case statements, we don't add the default block to the successors
1518 // for the switch statement immediately. This is done when we finish
1519 // processing the switch statement. This allows for the default case
1520 // (including a fall-through to the code after the switch statement) to always
1521 // be the last successor of a switch-terminated block.
1522
Ted Kremenek654c78f2008-02-13 22:05:39 +00001523 // We set Block to NULL to allow lazy creation of a new block (if necessary)
1524 Block = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00001525
Ted Kremenek654c78f2008-02-13 22:05:39 +00001526 // This block is now the implicit successor of other blocks.
1527 Succ = DefaultCaseBlock;
Mike Stump31feda52009-07-17 01:31:16 +00001528
1529 return DefaultCaseBlock;
Ted Kremenek9682be12008-02-13 21:46:34 +00001530}
Ted Kremenek9aae5132007-08-23 21:42:29 +00001531
Ted Kremenekeda180e22007-08-28 19:26:49 +00001532CFGBlock* CFGBuilder::VisitIndirectGotoStmt(IndirectGotoStmt* I) {
Mike Stump31feda52009-07-17 01:31:16 +00001533 // Lazily create the indirect-goto dispatch block if there isn't one already.
Ted Kremenekeda180e22007-08-28 19:26:49 +00001534 CFGBlock* IBlock = cfg->getIndirectGotoBlock();
Mike Stump31feda52009-07-17 01:31:16 +00001535
Ted Kremenekeda180e22007-08-28 19:26:49 +00001536 if (!IBlock) {
1537 IBlock = createBlock(false);
1538 cfg->setIndirectGotoBlock(IBlock);
1539 }
Mike Stump31feda52009-07-17 01:31:16 +00001540
Ted Kremenekeda180e22007-08-28 19:26:49 +00001541 // IndirectGoto is a control-flow statement. Thus we stop processing the
1542 // current block and create a new one.
Ted Kremenek93668002009-07-17 22:18:43 +00001543 if (Block && !FinishBlock(Block))
1544 return 0;
1545
Ted Kremenekeda180e22007-08-28 19:26:49 +00001546 Block = createBlock(false);
1547 Block->setTerminator(I);
1548 Block->addSuccessor(IBlock);
1549 return addStmt(I->getTarget());
1550}
1551
Ted Kremenek04cca642007-08-23 21:26:19 +00001552} // end anonymous namespace
Ted Kremenek889073f2007-08-23 16:51:22 +00001553
Mike Stump31feda52009-07-17 01:31:16 +00001554/// createBlock - Constructs and adds a new CFGBlock to the CFG. The block has
1555/// no successors or predecessors. If this is the first block created in the
1556/// CFG, it is automatically set to be the Entry and Exit of the CFG.
Ted Kremenek813dd672007-09-05 20:02:05 +00001557CFGBlock* CFG::createBlock() {
Ted Kremenek889073f2007-08-23 16:51:22 +00001558 bool first_block = begin() == end();
1559
1560 // Create the block.
Ted Kremenek813dd672007-09-05 20:02:05 +00001561 Blocks.push_front(CFGBlock(NumBlockIDs++));
Ted Kremenek889073f2007-08-23 16:51:22 +00001562
1563 // If this is the first block, set it as the Entry and Exit.
1564 if (first_block) Entry = Exit = &front();
1565
1566 // Return the block.
1567 return &front();
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00001568}
1569
Ted Kremenek889073f2007-08-23 16:51:22 +00001570/// buildCFG - Constructs a CFG from an AST. Ownership of the returned
1571/// CFG is returned to the caller.
Mike Stump0d76d072009-07-20 23:24:15 +00001572CFG* CFG::buildCFG(Stmt* Statement, ASTContext *C) {
Ted Kremenek889073f2007-08-23 16:51:22 +00001573 CFGBuilder Builder;
Mike Stump0d76d072009-07-20 23:24:15 +00001574 return Builder.buildCFG(Statement, C);
Ted Kremenek889073f2007-08-23 16:51:22 +00001575}
1576
1577/// reverseStmts - Reverses the orders of statements within a CFGBlock.
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00001578void CFGBlock::reverseStmts() { std::reverse(Stmts.begin(),Stmts.end()); }
1579
Ted Kremenekf2d4372b2007-10-01 19:33:33 +00001580//===----------------------------------------------------------------------===//
1581// CFG: Queries for BlkExprs.
1582//===----------------------------------------------------------------------===//
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00001583
Ted Kremenekf2d4372b2007-10-01 19:33:33 +00001584namespace {
Ted Kremenek85be7cf2008-01-17 20:48:37 +00001585 typedef llvm::DenseMap<const Stmt*,unsigned> BlkExprMapTy;
Ted Kremenekf2d4372b2007-10-01 19:33:33 +00001586}
1587
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001588static void FindSubExprAssignments(Stmt* Terminator, llvm::SmallPtrSet<Expr*,50>& Set) {
1589 if (!Terminator)
Ted Kremenek95a123c2008-01-26 00:03:27 +00001590 return;
Mike Stump31feda52009-07-17 01:31:16 +00001591
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001592 for (Stmt::child_iterator I=Terminator->child_begin(), E=Terminator->child_end(); I!=E; ++I) {
Ted Kremenek95a123c2008-01-26 00:03:27 +00001593 if (!*I) continue;
Mike Stump31feda52009-07-17 01:31:16 +00001594
Ted Kremenek95a123c2008-01-26 00:03:27 +00001595 if (BinaryOperator* B = dyn_cast<BinaryOperator>(*I))
1596 if (B->isAssignmentOp()) Set.insert(B);
Mike Stump31feda52009-07-17 01:31:16 +00001597
Ted Kremenek95a123c2008-01-26 00:03:27 +00001598 FindSubExprAssignments(*I, Set);
1599 }
1600}
1601
Ted Kremenekf2d4372b2007-10-01 19:33:33 +00001602static BlkExprMapTy* PopulateBlkExprMap(CFG& cfg) {
1603 BlkExprMapTy* M = new BlkExprMapTy();
Mike Stump31feda52009-07-17 01:31:16 +00001604
1605 // Look for assignments that are used as subexpressions. These are the only
1606 // assignments that we want to *possibly* register as a block-level
1607 // expression. Basically, if an assignment occurs both in a subexpression and
1608 // at the block-level, it is a block-level expression.
Ted Kremenek95a123c2008-01-26 00:03:27 +00001609 llvm::SmallPtrSet<Expr*,50> SubExprAssignments;
Mike Stump31feda52009-07-17 01:31:16 +00001610
Ted Kremenekf2d4372b2007-10-01 19:33:33 +00001611 for (CFG::iterator I=cfg.begin(), E=cfg.end(); I != E; ++I)
1612 for (CFGBlock::iterator BI=I->begin(), EI=I->end(); BI != EI; ++BI)
Ted Kremenek95a123c2008-01-26 00:03:27 +00001613 FindSubExprAssignments(*BI, SubExprAssignments);
Ted Kremenek85be7cf2008-01-17 20:48:37 +00001614
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001615 for (CFG::iterator I=cfg.begin(), E=cfg.end(); I != E; ++I) {
Mike Stump31feda52009-07-17 01:31:16 +00001616
1617 // Iterate over the statements again on identify the Expr* and Stmt* at the
1618 // block-level that are block-level expressions.
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001619
Ted Kremenek95a123c2008-01-26 00:03:27 +00001620 for (CFGBlock::iterator BI=I->begin(), EI=I->end(); BI != EI; ++BI)
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001621 if (Expr* Exp = dyn_cast<Expr>(*BI)) {
Mike Stump31feda52009-07-17 01:31:16 +00001622
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001623 if (BinaryOperator* B = dyn_cast<BinaryOperator>(Exp)) {
Ted Kremenek95a123c2008-01-26 00:03:27 +00001624 // Assignment expressions that are not nested within another
Mike Stump31feda52009-07-17 01:31:16 +00001625 // expression are really "statements" whose value is never used by
1626 // another expression.
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001627 if (B->isAssignmentOp() && !SubExprAssignments.count(Exp))
Ted Kremenek95a123c2008-01-26 00:03:27 +00001628 continue;
Mike Stump31feda52009-07-17 01:31:16 +00001629 } else if (const StmtExpr* Terminator = dyn_cast<StmtExpr>(Exp)) {
1630 // Special handling for statement expressions. The last statement in
1631 // the statement expression is also a block-level expr.
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001632 const CompoundStmt* C = Terminator->getSubStmt();
Ted Kremenek85be7cf2008-01-17 20:48:37 +00001633 if (!C->body_empty()) {
Ted Kremenek95a123c2008-01-26 00:03:27 +00001634 unsigned x = M->size();
Ted Kremenek85be7cf2008-01-17 20:48:37 +00001635 (*M)[C->body_back()] = x;
1636 }
1637 }
Ted Kremenek0cb1ba22008-01-25 23:22:27 +00001638
Ted Kremenek95a123c2008-01-26 00:03:27 +00001639 unsigned x = M->size();
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001640 (*M)[Exp] = x;
Ted Kremenek95a123c2008-01-26 00:03:27 +00001641 }
Mike Stump31feda52009-07-17 01:31:16 +00001642
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001643 // Look at terminators. The condition is a block-level expression.
Mike Stump31feda52009-07-17 01:31:16 +00001644
Ted Kremenek6d8b46e2008-11-12 21:11:49 +00001645 Stmt* S = I->getTerminatorCondition();
Mike Stump31feda52009-07-17 01:31:16 +00001646
Ted Kremenek6d8b46e2008-11-12 21:11:49 +00001647 if (S && M->find(S) == M->end()) {
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001648 unsigned x = M->size();
Ted Kremenek6d8b46e2008-11-12 21:11:49 +00001649 (*M)[S] = x;
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001650 }
1651 }
Mike Stump31feda52009-07-17 01:31:16 +00001652
Ted Kremenekf2d4372b2007-10-01 19:33:33 +00001653 return M;
1654}
1655
Ted Kremenek85be7cf2008-01-17 20:48:37 +00001656CFG::BlkExprNumTy CFG::getBlkExprNum(const Stmt* S) {
1657 assert(S != NULL);
Ted Kremenekf2d4372b2007-10-01 19:33:33 +00001658 if (!BlkExprMap) { BlkExprMap = (void*) PopulateBlkExprMap(*this); }
Mike Stump31feda52009-07-17 01:31:16 +00001659
Ted Kremenekf2d4372b2007-10-01 19:33:33 +00001660 BlkExprMapTy* M = reinterpret_cast<BlkExprMapTy*>(BlkExprMap);
Ted Kremenek85be7cf2008-01-17 20:48:37 +00001661 BlkExprMapTy::iterator I = M->find(S);
Mike Stump31feda52009-07-17 01:31:16 +00001662
Ted Kremenekf2d4372b2007-10-01 19:33:33 +00001663 if (I == M->end()) return CFG::BlkExprNumTy();
1664 else return CFG::BlkExprNumTy(I->second);
1665}
1666
1667unsigned CFG::getNumBlkExprs() {
1668 if (const BlkExprMapTy* M = reinterpret_cast<const BlkExprMapTy*>(BlkExprMap))
1669 return M->size();
1670 else {
1671 // We assume callers interested in the number of BlkExprs will want
1672 // the map constructed if it doesn't already exist.
1673 BlkExprMap = (void*) PopulateBlkExprMap(*this);
1674 return reinterpret_cast<BlkExprMapTy*>(BlkExprMap)->size();
1675 }
1676}
1677
Ted Kremenek6065ef62008-04-28 18:00:46 +00001678//===----------------------------------------------------------------------===//
Ted Kremenek6065ef62008-04-28 18:00:46 +00001679// Cleanup: CFG dstor.
1680//===----------------------------------------------------------------------===//
1681
Ted Kremenekf2d4372b2007-10-01 19:33:33 +00001682CFG::~CFG() {
1683 delete reinterpret_cast<const BlkExprMapTy*>(BlkExprMap);
1684}
Mike Stump31feda52009-07-17 01:31:16 +00001685
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00001686//===----------------------------------------------------------------------===//
1687// CFG pretty printing
1688//===----------------------------------------------------------------------===//
1689
Ted Kremenek7e776b12007-08-22 18:22:34 +00001690namespace {
1691
Ted Kremenek83ebcef2008-01-08 18:15:10 +00001692class VISIBILITY_HIDDEN StmtPrinterHelper : public PrinterHelper {
Mike Stump31feda52009-07-17 01:31:16 +00001693
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001694 typedef llvm::DenseMap<Stmt*,std::pair<unsigned,unsigned> > StmtMapTy;
1695 StmtMapTy StmtMap;
1696 signed CurrentBlock;
1697 unsigned CurrentStmt;
Chris Lattnerc61089a2009-06-30 01:26:17 +00001698 const LangOptions &LangOpts;
Ted Kremenek9aae5132007-08-23 21:42:29 +00001699public:
Ted Kremenekf8b50e92007-08-31 22:26:13 +00001700
Chris Lattnerc61089a2009-06-30 01:26:17 +00001701 StmtPrinterHelper(const CFG* cfg, const LangOptions &LO)
1702 : CurrentBlock(0), CurrentStmt(0), LangOpts(LO) {
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001703 for (CFG::const_iterator I = cfg->begin(), E = cfg->end(); I != E; ++I ) {
1704 unsigned j = 1;
1705 for (CFGBlock::const_iterator BI = I->begin(), BEnd = I->end() ;
1706 BI != BEnd; ++BI, ++j )
1707 StmtMap[*BI] = std::make_pair(I->getBlockID(),j);
1708 }
1709 }
Mike Stump31feda52009-07-17 01:31:16 +00001710
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001711 virtual ~StmtPrinterHelper() {}
Mike Stump31feda52009-07-17 01:31:16 +00001712
Chris Lattnerc61089a2009-06-30 01:26:17 +00001713 const LangOptions &getLangOpts() const { return LangOpts; }
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001714 void setBlockID(signed i) { CurrentBlock = i; }
1715 void setStmtID(unsigned i) { CurrentStmt = i; }
Mike Stump31feda52009-07-17 01:31:16 +00001716
Ted Kremenek2d470fc2008-09-13 05:16:45 +00001717 virtual bool handledStmt(Stmt* Terminator, llvm::raw_ostream& OS) {
Mike Stump31feda52009-07-17 01:31:16 +00001718
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001719 StmtMapTy::iterator I = StmtMap.find(Terminator);
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001720
1721 if (I == StmtMap.end())
1722 return false;
Mike Stump31feda52009-07-17 01:31:16 +00001723
1724 if (CurrentBlock >= 0 && I->second.first == (unsigned) CurrentBlock
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001725 && I->second.second == CurrentStmt)
1726 return false;
Mike Stump31feda52009-07-17 01:31:16 +00001727
Ted Kremenekf8b50e92007-08-31 22:26:13 +00001728 OS << "[B" << I->second.first << "." << I->second.second << "]";
1729 return true;
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001730 }
1731};
Chris Lattnerc61089a2009-06-30 01:26:17 +00001732} // end anonymous namespace
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001733
Chris Lattnerc61089a2009-06-30 01:26:17 +00001734
1735namespace {
Ted Kremenek83ebcef2008-01-08 18:15:10 +00001736class VISIBILITY_HIDDEN CFGBlockTerminatorPrint
1737 : public StmtVisitor<CFGBlockTerminatorPrint,void> {
Mike Stump31feda52009-07-17 01:31:16 +00001738
Ted Kremenek2d470fc2008-09-13 05:16:45 +00001739 llvm::raw_ostream& OS;
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001740 StmtPrinterHelper* Helper;
Douglas Gregor7de59662009-05-29 20:38:28 +00001741 PrintingPolicy Policy;
1742
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001743public:
Douglas Gregor7de59662009-05-29 20:38:28 +00001744 CFGBlockTerminatorPrint(llvm::raw_ostream& os, StmtPrinterHelper* helper,
Chris Lattnerc61089a2009-06-30 01:26:17 +00001745 const PrintingPolicy &Policy)
Douglas Gregor7de59662009-05-29 20:38:28 +00001746 : OS(os), Helper(helper), Policy(Policy) {}
Mike Stump31feda52009-07-17 01:31:16 +00001747
Ted Kremenek9aae5132007-08-23 21:42:29 +00001748 void VisitIfStmt(IfStmt* I) {
1749 OS << "if ";
Douglas Gregor7de59662009-05-29 20:38:28 +00001750 I->getCond()->printPretty(OS,Helper,Policy);
Ted Kremenek9aae5132007-08-23 21:42:29 +00001751 }
Mike Stump31feda52009-07-17 01:31:16 +00001752
Ted Kremenek9aae5132007-08-23 21:42:29 +00001753 // Default case.
Mike Stump31feda52009-07-17 01:31:16 +00001754 void VisitStmt(Stmt* Terminator) {
1755 Terminator->printPretty(OS, Helper, Policy);
1756 }
1757
Ted Kremenek9aae5132007-08-23 21:42:29 +00001758 void VisitForStmt(ForStmt* F) {
1759 OS << "for (" ;
Ted Kremenekfc7aafc2007-08-30 21:28:02 +00001760 if (F->getInit()) OS << "...";
1761 OS << "; ";
Douglas Gregor7de59662009-05-29 20:38:28 +00001762 if (Stmt* C = F->getCond()) C->printPretty(OS, Helper, Policy);
Ted Kremenekfc7aafc2007-08-30 21:28:02 +00001763 OS << "; ";
1764 if (F->getInc()) OS << "...";
Ted Kremenek15647632008-01-30 23:02:42 +00001765 OS << ")";
Ted Kremenek9aae5132007-08-23 21:42:29 +00001766 }
Mike Stump31feda52009-07-17 01:31:16 +00001767
Ted Kremenek9aae5132007-08-23 21:42:29 +00001768 void VisitWhileStmt(WhileStmt* W) {
1769 OS << "while " ;
Douglas Gregor7de59662009-05-29 20:38:28 +00001770 if (Stmt* C = W->getCond()) C->printPretty(OS, Helper, Policy);
Ted Kremenek9aae5132007-08-23 21:42:29 +00001771 }
Mike Stump31feda52009-07-17 01:31:16 +00001772
Ted Kremenek9aae5132007-08-23 21:42:29 +00001773 void VisitDoStmt(DoStmt* D) {
1774 OS << "do ... while ";
Douglas Gregor7de59662009-05-29 20:38:28 +00001775 if (Stmt* C = D->getCond()) C->printPretty(OS, Helper, Policy);
Ted Kremenek9e248872007-08-27 21:27:44 +00001776 }
Mike Stump31feda52009-07-17 01:31:16 +00001777
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001778 void VisitSwitchStmt(SwitchStmt* Terminator) {
Ted Kremenek9e248872007-08-27 21:27:44 +00001779 OS << "switch ";
Douglas Gregor7de59662009-05-29 20:38:28 +00001780 Terminator->getCond()->printPretty(OS, Helper, Policy);
Ted Kremenek9e248872007-08-27 21:27:44 +00001781 }
Mike Stump31feda52009-07-17 01:31:16 +00001782
Ted Kremenek7f7dd762007-08-31 21:49:40 +00001783 void VisitConditionalOperator(ConditionalOperator* C) {
Douglas Gregor7de59662009-05-29 20:38:28 +00001784 C->getCond()->printPretty(OS, Helper, Policy);
Mike Stump31feda52009-07-17 01:31:16 +00001785 OS << " ? ... : ...";
Ted Kremenek7f7dd762007-08-31 21:49:40 +00001786 }
Mike Stump31feda52009-07-17 01:31:16 +00001787
Ted Kremenek391f94a2007-08-31 22:29:13 +00001788 void VisitChooseExpr(ChooseExpr* C) {
1789 OS << "__builtin_choose_expr( ";
Douglas Gregor7de59662009-05-29 20:38:28 +00001790 C->getCond()->printPretty(OS, Helper, Policy);
Ted Kremenek15647632008-01-30 23:02:42 +00001791 OS << " )";
Ted Kremenek391f94a2007-08-31 22:29:13 +00001792 }
Mike Stump31feda52009-07-17 01:31:16 +00001793
Ted Kremenekf8b50e92007-08-31 22:26:13 +00001794 void VisitIndirectGotoStmt(IndirectGotoStmt* I) {
1795 OS << "goto *";
Douglas Gregor7de59662009-05-29 20:38:28 +00001796 I->getTarget()->printPretty(OS, Helper, Policy);
Ted Kremenekf8b50e92007-08-31 22:26:13 +00001797 }
Mike Stump31feda52009-07-17 01:31:16 +00001798
Ted Kremenek7f7dd762007-08-31 21:49:40 +00001799 void VisitBinaryOperator(BinaryOperator* B) {
1800 if (!B->isLogicalOp()) {
1801 VisitExpr(B);
1802 return;
1803 }
Mike Stump31feda52009-07-17 01:31:16 +00001804
Douglas Gregor7de59662009-05-29 20:38:28 +00001805 B->getLHS()->printPretty(OS, Helper, Policy);
Mike Stump31feda52009-07-17 01:31:16 +00001806
Ted Kremenek7f7dd762007-08-31 21:49:40 +00001807 switch (B->getOpcode()) {
1808 case BinaryOperator::LOr:
Ted Kremenek15647632008-01-30 23:02:42 +00001809 OS << " || ...";
Ted Kremenek7f7dd762007-08-31 21:49:40 +00001810 return;
1811 case BinaryOperator::LAnd:
Ted Kremenek15647632008-01-30 23:02:42 +00001812 OS << " && ...";
Ted Kremenek7f7dd762007-08-31 21:49:40 +00001813 return;
1814 default:
1815 assert(false && "Invalid logical operator.");
Mike Stump31feda52009-07-17 01:31:16 +00001816 }
Ted Kremenek7f7dd762007-08-31 21:49:40 +00001817 }
Mike Stump31feda52009-07-17 01:31:16 +00001818
Ted Kremenek12687ff2007-08-27 21:54:41 +00001819 void VisitExpr(Expr* E) {
Douglas Gregor7de59662009-05-29 20:38:28 +00001820 E->printPretty(OS, Helper, Policy);
Mike Stump31feda52009-07-17 01:31:16 +00001821 }
Ted Kremenek9aae5132007-08-23 21:42:29 +00001822};
Chris Lattnerc61089a2009-06-30 01:26:17 +00001823} // end anonymous namespace
1824
Mike Stump31feda52009-07-17 01:31:16 +00001825
Chris Lattnerc61089a2009-06-30 01:26:17 +00001826static void print_stmt(llvm::raw_ostream &OS, StmtPrinterHelper* Helper,
1827 Stmt* Terminator) {
Ted Kremenekf8b50e92007-08-31 22:26:13 +00001828 if (Helper) {
1829 // special printing for statement-expressions.
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001830 if (StmtExpr* SE = dyn_cast<StmtExpr>(Terminator)) {
Ted Kremenekf8b50e92007-08-31 22:26:13 +00001831 CompoundStmt* Sub = SE->getSubStmt();
Mike Stump31feda52009-07-17 01:31:16 +00001832
Ted Kremenekf8b50e92007-08-31 22:26:13 +00001833 if (Sub->child_begin() != Sub->child_end()) {
Ted Kremenekcc778062007-08-31 22:47:06 +00001834 OS << "({ ... ; ";
Ted Kremenek6d845f02007-10-29 20:41:04 +00001835 Helper->handledStmt(*SE->getSubStmt()->body_rbegin(),OS);
Ted Kremenekcc778062007-08-31 22:47:06 +00001836 OS << " })\n";
Ted Kremenekf8b50e92007-08-31 22:26:13 +00001837 return;
1838 }
1839 }
Mike Stump31feda52009-07-17 01:31:16 +00001840
Ted Kremenekf8b50e92007-08-31 22:26:13 +00001841 // special printing for comma expressions.
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001842 if (BinaryOperator* B = dyn_cast<BinaryOperator>(Terminator)) {
Ted Kremenekf8b50e92007-08-31 22:26:13 +00001843 if (B->getOpcode() == BinaryOperator::Comma) {
1844 OS << "... , ";
1845 Helper->handledStmt(B->getRHS(),OS);
1846 OS << '\n';
1847 return;
Mike Stump31feda52009-07-17 01:31:16 +00001848 }
1849 }
Ted Kremenekf8b50e92007-08-31 22:26:13 +00001850 }
Mike Stump31feda52009-07-17 01:31:16 +00001851
Chris Lattnerc61089a2009-06-30 01:26:17 +00001852 Terminator->printPretty(OS, Helper, PrintingPolicy(Helper->getLangOpts()));
Mike Stump31feda52009-07-17 01:31:16 +00001853
Ted Kremenekf8b50e92007-08-31 22:26:13 +00001854 // Expressions need a newline.
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001855 if (isa<Expr>(Terminator)) OS << '\n';
Ted Kremenekf8b50e92007-08-31 22:26:13 +00001856}
Mike Stump31feda52009-07-17 01:31:16 +00001857
Chris Lattnerc61089a2009-06-30 01:26:17 +00001858static void print_block(llvm::raw_ostream& OS, const CFG* cfg,
1859 const CFGBlock& B,
1860 StmtPrinterHelper* Helper, bool print_edges) {
Mike Stump31feda52009-07-17 01:31:16 +00001861
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001862 if (Helper) Helper->setBlockID(B.getBlockID());
Mike Stump31feda52009-07-17 01:31:16 +00001863
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00001864 // Print the header.
Mike Stump31feda52009-07-17 01:31:16 +00001865 OS << "\n [ B" << B.getBlockID();
1866
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001867 if (&B == &cfg->getEntry())
1868 OS << " (ENTRY) ]\n";
1869 else if (&B == &cfg->getExit())
1870 OS << " (EXIT) ]\n";
1871 else if (&B == cfg->getIndirectGotoBlock())
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00001872 OS << " (INDIRECT GOTO DISPATCH) ]\n";
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001873 else
1874 OS << " ]\n";
Mike Stump31feda52009-07-17 01:31:16 +00001875
Ted Kremenek71eca012007-08-29 23:20:49 +00001876 // Print the label of this block.
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001877 if (Stmt* Terminator = const_cast<Stmt*>(B.getLabel())) {
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001878
1879 if (print_edges)
1880 OS << " ";
Mike Stump31feda52009-07-17 01:31:16 +00001881
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001882 if (LabelStmt* L = dyn_cast<LabelStmt>(Terminator))
Ted Kremenek71eca012007-08-29 23:20:49 +00001883 OS << L->getName();
Ted Kremenekc1f9a282008-04-16 21:10:48 +00001884 else if (CaseStmt* C = dyn_cast<CaseStmt>(Terminator)) {
Ted Kremenek71eca012007-08-29 23:20:49 +00001885 OS << "case ";
Chris Lattnerc61089a2009-06-30 01:26:17 +00001886 C->getLHS()->printPretty(OS, Helper,
1887 PrintingPolicy(Helper->getLangOpts()));
Ted Kremenek71eca012007-08-29 23:20:49 +00001888 if (C->getRHS()) {
1889 OS << " ... ";
Chris Lattnerc61089a2009-06-30 01:26:17 +00001890 C->getRHS()->printPretty(OS, Helper,
1891 PrintingPolicy(Helper->getLangOpts()));
Ted Kremenek71eca012007-08-29 23:20:49 +00001892 }
Mike Stump31feda52009-07-17 01:31:16 +00001893 } else if (isa<DefaultStmt>(Terminator))
Ted Kremenek71eca012007-08-29 23:20:49 +00001894 OS << "default";
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001895 else
1896 assert(false && "Invalid label statement in CFGBlock.");
Mike Stump31feda52009-07-17 01:31:16 +00001897
Ted Kremenek71eca012007-08-29 23:20:49 +00001898 OS << ":\n";
1899 }
Mike Stump31feda52009-07-17 01:31:16 +00001900
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00001901 // Iterate through the statements in the block and print them.
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00001902 unsigned j = 1;
Mike Stump31feda52009-07-17 01:31:16 +00001903
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001904 for (CFGBlock::const_iterator I = B.begin(), E = B.end() ;
1905 I != E ; ++I, ++j ) {
Mike Stump31feda52009-07-17 01:31:16 +00001906
Ted Kremenek71eca012007-08-29 23:20:49 +00001907 // Print the statement # in the basic block and the statement itself.
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001908 if (print_edges)
1909 OS << " ";
Mike Stump31feda52009-07-17 01:31:16 +00001910
Ted Kremenek2d470fc2008-09-13 05:16:45 +00001911 OS << llvm::format("%3d", j) << ": ";
Mike Stump31feda52009-07-17 01:31:16 +00001912
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001913 if (Helper)
1914 Helper->setStmtID(j);
Mike Stump31feda52009-07-17 01:31:16 +00001915
Ted Kremenekf8b50e92007-08-31 22:26:13 +00001916 print_stmt(OS,Helper,*I);
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00001917 }
Mike Stump31feda52009-07-17 01:31:16 +00001918
Ted Kremenek71eca012007-08-29 23:20:49 +00001919 // Print the terminator of this block.
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001920 if (B.getTerminator()) {
1921 if (print_edges)
1922 OS << " ";
Mike Stump31feda52009-07-17 01:31:16 +00001923
Ted Kremenek71eca012007-08-29 23:20:49 +00001924 OS << " T: ";
Mike Stump31feda52009-07-17 01:31:16 +00001925
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001926 if (Helper) Helper->setBlockID(-1);
Mike Stump31feda52009-07-17 01:31:16 +00001927
Chris Lattnerc61089a2009-06-30 01:26:17 +00001928 CFGBlockTerminatorPrint TPrinter(OS, Helper,
1929 PrintingPolicy(Helper->getLangOpts()));
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001930 TPrinter.Visit(const_cast<Stmt*>(B.getTerminator()));
Ted Kremenek15647632008-01-30 23:02:42 +00001931 OS << '\n';
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00001932 }
Mike Stump31feda52009-07-17 01:31:16 +00001933
Ted Kremenek71eca012007-08-29 23:20:49 +00001934 if (print_edges) {
1935 // Print the predecessors of this block.
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001936 OS << " Predecessors (" << B.pred_size() << "):";
Ted Kremenek71eca012007-08-29 23:20:49 +00001937 unsigned i = 0;
Ted Kremenek71eca012007-08-29 23:20:49 +00001938
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001939 for (CFGBlock::const_pred_iterator I = B.pred_begin(), E = B.pred_end();
1940 I != E; ++I, ++i) {
Mike Stump31feda52009-07-17 01:31:16 +00001941
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001942 if (i == 8 || (i-8) == 0)
1943 OS << "\n ";
Mike Stump31feda52009-07-17 01:31:16 +00001944
Ted Kremenek71eca012007-08-29 23:20:49 +00001945 OS << " B" << (*I)->getBlockID();
1946 }
Mike Stump31feda52009-07-17 01:31:16 +00001947
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001948 OS << '\n';
Mike Stump31feda52009-07-17 01:31:16 +00001949
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001950 // Print the successors of this block.
1951 OS << " Successors (" << B.succ_size() << "):";
1952 i = 0;
1953
1954 for (CFGBlock::const_succ_iterator I = B.succ_begin(), E = B.succ_end();
1955 I != E; ++I, ++i) {
Mike Stump31feda52009-07-17 01:31:16 +00001956
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001957 if (i == 8 || (i-8) % 10 == 0)
1958 OS << "\n ";
1959
Mike Stump0d76d072009-07-20 23:24:15 +00001960 if (*I)
1961 OS << " B" << (*I)->getBlockID();
1962 else
1963 OS << " NULL";
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001964 }
Mike Stump31feda52009-07-17 01:31:16 +00001965
Ted Kremenek71eca012007-08-29 23:20:49 +00001966 OS << '\n';
Ted Kremenek4aa1e8b2007-08-21 21:42:03 +00001967 }
Mike Stump31feda52009-07-17 01:31:16 +00001968}
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001969
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001970
1971/// dump - A simple pretty printer of a CFG that outputs to stderr.
Chris Lattnerc61089a2009-06-30 01:26:17 +00001972void CFG::dump(const LangOptions &LO) const { print(llvm::errs(), LO); }
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001973
1974/// print - A simple pretty printer of a CFG that outputs to an ostream.
Chris Lattnerc61089a2009-06-30 01:26:17 +00001975void CFG::print(llvm::raw_ostream &OS, const LangOptions &LO) const {
1976 StmtPrinterHelper Helper(this, LO);
Mike Stump31feda52009-07-17 01:31:16 +00001977
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001978 // Print the entry block.
1979 print_block(OS, this, getEntry(), &Helper, true);
Mike Stump31feda52009-07-17 01:31:16 +00001980
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001981 // Iterate through the CFGBlocks and print them one by one.
1982 for (const_iterator I = Blocks.begin(), E = Blocks.end() ; I != E ; ++I) {
1983 // Skip the entry block, because we already printed it.
1984 if (&(*I) == &getEntry() || &(*I) == &getExit())
1985 continue;
Mike Stump31feda52009-07-17 01:31:16 +00001986
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001987 print_block(OS, this, *I, &Helper, true);
1988 }
Mike Stump31feda52009-07-17 01:31:16 +00001989
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001990 // Print the exit block.
1991 print_block(OS, this, getExit(), &Helper, true);
Ted Kremeneke03879b2008-11-24 20:50:24 +00001992 OS.flush();
Mike Stump31feda52009-07-17 01:31:16 +00001993}
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001994
1995/// dump - A simply pretty printer of a CFGBlock that outputs to stderr.
Chris Lattnerc61089a2009-06-30 01:26:17 +00001996void CFGBlock::dump(const CFG* cfg, const LangOptions &LO) const {
1997 print(llvm::errs(), cfg, LO);
1998}
Ted Kremenek04f3cee2007-08-31 21:30:12 +00001999
2000/// print - A simple pretty printer of a CFGBlock that outputs to an ostream.
2001/// Generally this will only be called from CFG::print.
Chris Lattnerc61089a2009-06-30 01:26:17 +00002002void CFGBlock::print(llvm::raw_ostream& OS, const CFG* cfg,
2003 const LangOptions &LO) const {
2004 StmtPrinterHelper Helper(cfg, LO);
Ted Kremenek04f3cee2007-08-31 21:30:12 +00002005 print_block(OS, cfg, *this, &Helper, true);
Ted Kremenek889073f2007-08-23 16:51:22 +00002006}
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00002007
Ted Kremenek15647632008-01-30 23:02:42 +00002008/// printTerminator - A simple pretty printer of the terminator of a CFGBlock.
Chris Lattnerc61089a2009-06-30 01:26:17 +00002009void CFGBlock::printTerminator(llvm::raw_ostream &OS,
Mike Stump31feda52009-07-17 01:31:16 +00002010 const LangOptions &LO) const {
Chris Lattnerc61089a2009-06-30 01:26:17 +00002011 CFGBlockTerminatorPrint TPrinter(OS, NULL, PrintingPolicy(LO));
Ted Kremenek15647632008-01-30 23:02:42 +00002012 TPrinter.Visit(const_cast<Stmt*>(getTerminator()));
2013}
2014
Ted Kremenek6d8b46e2008-11-12 21:11:49 +00002015Stmt* CFGBlock::getTerminatorCondition() {
Mike Stump31feda52009-07-17 01:31:16 +00002016
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002017 if (!Terminator)
2018 return NULL;
Mike Stump31feda52009-07-17 01:31:16 +00002019
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002020 Expr* E = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00002021
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002022 switch (Terminator->getStmtClass()) {
2023 default:
2024 break;
Mike Stump31feda52009-07-17 01:31:16 +00002025
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002026 case Stmt::ForStmtClass:
2027 E = cast<ForStmt>(Terminator)->getCond();
2028 break;
Mike Stump31feda52009-07-17 01:31:16 +00002029
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002030 case Stmt::WhileStmtClass:
2031 E = cast<WhileStmt>(Terminator)->getCond();
2032 break;
Mike Stump31feda52009-07-17 01:31:16 +00002033
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002034 case Stmt::DoStmtClass:
2035 E = cast<DoStmt>(Terminator)->getCond();
2036 break;
Mike Stump31feda52009-07-17 01:31:16 +00002037
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002038 case Stmt::IfStmtClass:
2039 E = cast<IfStmt>(Terminator)->getCond();
2040 break;
Mike Stump31feda52009-07-17 01:31:16 +00002041
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002042 case Stmt::ChooseExprClass:
2043 E = cast<ChooseExpr>(Terminator)->getCond();
2044 break;
Mike Stump31feda52009-07-17 01:31:16 +00002045
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002046 case Stmt::IndirectGotoStmtClass:
2047 E = cast<IndirectGotoStmt>(Terminator)->getTarget();
2048 break;
Mike Stump31feda52009-07-17 01:31:16 +00002049
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002050 case Stmt::SwitchStmtClass:
2051 E = cast<SwitchStmt>(Terminator)->getCond();
2052 break;
Mike Stump31feda52009-07-17 01:31:16 +00002053
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002054 case Stmt::ConditionalOperatorClass:
2055 E = cast<ConditionalOperator>(Terminator)->getCond();
2056 break;
Mike Stump31feda52009-07-17 01:31:16 +00002057
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002058 case Stmt::BinaryOperatorClass: // '&&' and '||'
2059 E = cast<BinaryOperator>(Terminator)->getLHS();
Ted Kremenek6d8b46e2008-11-12 21:11:49 +00002060 break;
Mike Stump31feda52009-07-17 01:31:16 +00002061
Ted Kremenek6d8b46e2008-11-12 21:11:49 +00002062 case Stmt::ObjCForCollectionStmtClass:
Mike Stump31feda52009-07-17 01:31:16 +00002063 return Terminator;
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002064 }
Mike Stump31feda52009-07-17 01:31:16 +00002065
Ted Kremenekc1f9a282008-04-16 21:10:48 +00002066 return E ? E->IgnoreParens() : NULL;
2067}
2068
Ted Kremenek92137a32008-05-16 16:06:00 +00002069bool CFGBlock::hasBinaryBranchTerminator() const {
Mike Stump31feda52009-07-17 01:31:16 +00002070
Ted Kremenek92137a32008-05-16 16:06:00 +00002071 if (!Terminator)
2072 return false;
Mike Stump31feda52009-07-17 01:31:16 +00002073
Ted Kremenek92137a32008-05-16 16:06:00 +00002074 Expr* E = NULL;
Mike Stump31feda52009-07-17 01:31:16 +00002075
Ted Kremenek92137a32008-05-16 16:06:00 +00002076 switch (Terminator->getStmtClass()) {
2077 default:
2078 return false;
Mike Stump31feda52009-07-17 01:31:16 +00002079
2080 case Stmt::ForStmtClass:
Ted Kremenek92137a32008-05-16 16:06:00 +00002081 case Stmt::WhileStmtClass:
2082 case Stmt::DoStmtClass:
2083 case Stmt::IfStmtClass:
2084 case Stmt::ChooseExprClass:
2085 case Stmt::ConditionalOperatorClass:
2086 case Stmt::BinaryOperatorClass:
Mike Stump31feda52009-07-17 01:31:16 +00002087 return true;
Ted Kremenek92137a32008-05-16 16:06:00 +00002088 }
Mike Stump31feda52009-07-17 01:31:16 +00002089
Ted Kremenek92137a32008-05-16 16:06:00 +00002090 return E ? E->IgnoreParens() : NULL;
2091}
2092
Ted Kremenek15647632008-01-30 23:02:42 +00002093
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00002094//===----------------------------------------------------------------------===//
2095// CFG Graphviz Visualization
2096//===----------------------------------------------------------------------===//
2097
Ted Kremenek04f3cee2007-08-31 21:30:12 +00002098
2099#ifndef NDEBUG
Mike Stump31feda52009-07-17 01:31:16 +00002100static StmtPrinterHelper* GraphHelper;
Ted Kremenek04f3cee2007-08-31 21:30:12 +00002101#endif
2102
Chris Lattnerc61089a2009-06-30 01:26:17 +00002103void CFG::viewCFG(const LangOptions &LO) const {
Ted Kremenek04f3cee2007-08-31 21:30:12 +00002104#ifndef NDEBUG
Chris Lattnerc61089a2009-06-30 01:26:17 +00002105 StmtPrinterHelper H(this, LO);
Ted Kremenek04f3cee2007-08-31 21:30:12 +00002106 GraphHelper = &H;
2107 llvm::ViewGraph(this,"CFG");
2108 GraphHelper = NULL;
Ted Kremenek04f3cee2007-08-31 21:30:12 +00002109#endif
2110}
2111
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00002112namespace llvm {
2113template<>
2114struct DOTGraphTraits<const CFG*> : public DefaultDOTGraphTraits {
Owen Anderson4d9e93c2009-06-24 17:37:55 +00002115 static std::string getNodeLabel(const CFGBlock* Node, const CFG* Graph,
2116 bool ShortNames) {
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00002117
Hartmut Kaiser04bd2ef2007-09-16 00:28:28 +00002118#ifndef NDEBUG
Ted Kremenek2d470fc2008-09-13 05:16:45 +00002119 std::string OutSStr;
2120 llvm::raw_string_ostream Out(OutSStr);
Ted Kremenek04f3cee2007-08-31 21:30:12 +00002121 print_block(Out,Graph, *Node, GraphHelper, false);
Ted Kremenek2d470fc2008-09-13 05:16:45 +00002122 std::string& OutStr = Out.str();
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00002123
2124 if (OutStr[0] == '\n') OutStr.erase(OutStr.begin());
2125
2126 // Process string output to make it nicer...
2127 for (unsigned i = 0; i != OutStr.length(); ++i)
2128 if (OutStr[i] == '\n') { // Left justify
2129 OutStr[i] = '\\';
2130 OutStr.insert(OutStr.begin()+i+1, 'l');
2131 }
Mike Stump31feda52009-07-17 01:31:16 +00002132
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00002133 return OutStr;
Hartmut Kaiser04bd2ef2007-09-16 00:28:28 +00002134#else
2135 return "";
2136#endif
Ted Kremenek4e5f99d2007-08-29 21:56:09 +00002137 }
2138};
2139} // end namespace llvm