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Ted Kremenek7296de92010-02-23 02:39:16 +00001//=- ReachableCodePathInsensitive.cpp ---------------------------*- C++ --*-==//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements a flow-sensitive, path-insensitive analysis of
11// determining reachable blocks within a CFG.
12//
13//===----------------------------------------------------------------------===//
14
Chandler Carruth3a022472012-12-04 09:13:33 +000015#include "clang/Analysis/Analyses/ReachableCode.h"
Ted Kremenek2dd810a2014-03-09 08:13:49 +000016#include "clang/Lex/Preprocessor.h"
Ted Kremenek552eeaa2010-02-23 05:59:20 +000017#include "clang/AST/Expr.h"
18#include "clang/AST/ExprCXX.h"
John McCall31168b02011-06-15 23:02:42 +000019#include "clang/AST/ExprObjC.h"
Ted Kremenek552eeaa2010-02-23 05:59:20 +000020#include "clang/AST/StmtCXX.h"
Ted Kremenekf3c93bb2014-03-20 06:07:30 +000021#include "clang/AST/ParentMap.h"
Ted Kremenek552eeaa2010-02-23 05:59:20 +000022#include "clang/Analysis/AnalysisContext.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000023#include "clang/Analysis/CFG.h"
Ted Kremenek552eeaa2010-02-23 05:59:20 +000024#include "clang/Basic/SourceManager.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000025#include "llvm/ADT/BitVector.h"
26#include "llvm/ADT/SmallVector.h"
Ted Kremenek7296de92010-02-23 02:39:16 +000027
28using namespace clang;
29
Ted Kremenek7d47cac2014-03-07 07:14:36 +000030//===----------------------------------------------------------------------===//
31// Core Reachability Analysis routines.
32//===----------------------------------------------------------------------===//
Ted Kremenek552eeaa2010-02-23 05:59:20 +000033
Ted Kremenek5441c182014-02-27 06:32:32 +000034static bool isEnumConstant(const Expr *Ex) {
35 const DeclRefExpr *DR = dyn_cast<DeclRefExpr>(Ex);
36 if (!DR)
37 return false;
38 return isa<EnumConstantDecl>(DR->getDecl());
39}
40
41static bool isTrivialExpression(const Expr *Ex) {
Ted Kremenek0a69cab2014-03-05 23:46:07 +000042 Ex = Ex->IgnoreParenCasts();
Ted Kremenek5441c182014-02-27 06:32:32 +000043 return isa<IntegerLiteral>(Ex) || isa<StringLiteral>(Ex) ||
Ted Kremenekc10830b2014-03-07 02:25:50 +000044 isa<CXXBoolLiteralExpr>(Ex) || isa<ObjCBoolLiteralExpr>(Ex) ||
45 isa<CharacterLiteral>(Ex) ||
Ted Kremenek5441c182014-02-27 06:32:32 +000046 isEnumConstant(Ex);
47}
48
Ted Kremenekad8753c2014-03-15 05:47:06 +000049static bool isTrivialDoWhile(const CFGBlock *B, const Stmt *S) {
Ted Kremenek1de2e142014-03-06 00:17:44 +000050 // Check if the block ends with a do...while() and see if 'S' is the
51 // condition.
52 if (const Stmt *Term = B->getTerminator()) {
Ted Kremenek1a8641c2014-03-15 01:26:32 +000053 if (const DoStmt *DS = dyn_cast<DoStmt>(Term)) {
54 const Expr *Cond = DS->getCond();
55 return Cond == S && isTrivialExpression(Cond);
56 }
Ted Kremenek1de2e142014-03-06 00:17:44 +000057 }
Ted Kremenekad8753c2014-03-15 05:47:06 +000058 return false;
59}
Ted Kremenek1de2e142014-03-06 00:17:44 +000060
Ted Kremenekf3c93bb2014-03-20 06:07:30 +000061static bool isDeadReturn(const CFGBlock *B, const Stmt *S) {
Ted Kremenek5441c182014-02-27 06:32:32 +000062 // Look to see if the block ends with a 'return', and see if 'S'
63 // is a substatement. The 'return' may not be the last element in
64 // the block because of destructors.
Ted Kremenek5441c182014-02-27 06:32:32 +000065 for (CFGBlock::const_reverse_iterator I = B->rbegin(), E = B->rend();
66 I != E; ++I) {
67 if (Optional<CFGStmt> CS = I->getAs<CFGStmt>()) {
68 if (const ReturnStmt *RS = dyn_cast<ReturnStmt>(CS->getStmt())) {
Ted Kremenekad8753c2014-03-15 05:47:06 +000069 if (RS == S)
70 return true;
71 if (const Expr *RE = RS->getRetValue()) {
Ted Kremenekf3c93bb2014-03-20 06:07:30 +000072 RE = RE->IgnoreParenCasts();
73 if (RE == S)
74 return true;
75 ParentMap PM(const_cast<Expr*>(RE));
76 // If 'S' is in the ParentMap, it is a subexpression of
77 // the return statement. Note also that we are restricting
78 // to looking at return statements in the same CFGBlock,
79 // so this will intentionally not catch cases where the
80 // return statement contains nested control-flow.
81 return PM.getParent(S);
Ted Kremenek1a8641c2014-03-15 01:26:32 +000082 }
Ted Kremenek5441c182014-02-27 06:32:32 +000083 }
Ted Kremenek7549f0f2014-03-06 01:09:45 +000084 break;
Ted Kremenek5441c182014-02-27 06:32:32 +000085 }
86 }
Ted Kremenek0a69cab2014-03-05 23:46:07 +000087 return false;
Ted Kremenekcc893382014-02-27 00:24:08 +000088}
89
Ted Kremenek2dd810a2014-03-09 08:13:49 +000090static SourceLocation getTopMostMacro(SourceLocation Loc, SourceManager &SM) {
91 assert(Loc.isMacroID());
92 SourceLocation Last;
93 while (Loc.isMacroID()) {
94 Last = Loc;
95 Loc = SM.getImmediateMacroCallerLoc(Loc);
96 }
97 return Last;
98}
99
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000100/// Returns true if the statement is expanded from a configuration macro.
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000101static bool isExpandedFromConfigurationMacro(const Stmt *S,
102 Preprocessor &PP,
103 bool IgnoreYES_NO = false) {
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000104 // FIXME: This is not very precise. Here we just check to see if the
105 // value comes from a macro, but we can do much better. This is likely
106 // to be over conservative. This logic is factored into a separate function
107 // so that we can refine it later.
108 SourceLocation L = S->getLocStart();
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000109 if (L.isMacroID()) {
110 if (IgnoreYES_NO) {
111 // The Objective-C constant 'YES' and 'NO'
112 // are defined as macros. Do not treat them
113 // as configuration values.
114 SourceManager &SM = PP.getSourceManager();
115 SourceLocation TopL = getTopMostMacro(L, SM);
116 StringRef MacroName = PP.getImmediateMacroName(TopL);
117 if (MacroName == "YES" || MacroName == "NO")
118 return false;
119 }
120 return true;
121 }
122 return false;
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000123}
124
Ted Kremenekf5ae0bc2014-03-20 06:44:35 +0000125static bool isConfigurationValue(const ValueDecl *D, Preprocessor &PP);
126
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000127/// Returns true if the statement represents a configuration value.
128///
129/// A configuration value is something usually determined at compile-time
130/// to conditionally always execute some branch. Such guards are for
131/// "sometimes unreachable" code. Such code is usually not interesting
132/// to report as unreachable, and may mask truly unreachable code within
133/// those blocks.
Ted Kremenekc980afc2014-03-08 23:20:11 +0000134static bool isConfigurationValue(const Stmt *S,
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000135 Preprocessor &PP,
Ted Kremenekc980afc2014-03-08 23:20:11 +0000136 bool IncludeIntegers = true) {
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000137 if (!S)
138 return false;
139
140 if (const Expr *Ex = dyn_cast<Expr>(S))
141 S = Ex->IgnoreParenCasts();
142
143 switch (S->getStmtClass()) {
Ted Kremenek2766ad22014-03-20 06:07:35 +0000144 case Stmt::CallExprClass: {
145 const FunctionDecl *Callee =
146 dyn_cast_or_null<FunctionDecl>(cast<CallExpr>(S)->getCalleeDecl());
147 return Callee ? Callee->isConstexpr() : false;
148 }
Ted Kremenekf5ae0bc2014-03-20 06:44:35 +0000149 case Stmt::DeclRefExprClass:
150 return isConfigurationValue(cast<DeclRefExpr>(S)->getDecl(), PP);
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000151 case Stmt::IntegerLiteralClass:
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000152 return IncludeIntegers ? isExpandedFromConfigurationMacro(S, PP)
Ted Kremenekc980afc2014-03-08 23:20:11 +0000153 : false;
Ted Kremenekf5ae0bc2014-03-20 06:44:35 +0000154 case Stmt::MemberExprClass:
155 return isConfigurationValue(cast<MemberExpr>(S)->getMemberDecl(), PP);
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000156 case Stmt::ObjCBoolLiteralExprClass:
157 return isExpandedFromConfigurationMacro(S, PP, /* IgnoreYES_NO */ true);
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000158 case Stmt::UnaryExprOrTypeTraitExprClass:
159 return true;
160 case Stmt::BinaryOperatorClass: {
161 const BinaryOperator *B = cast<BinaryOperator>(S);
Ted Kremenekc980afc2014-03-08 23:20:11 +0000162 // Only include raw integers (not enums) as configuration
163 // values if they are used in a logical or comparison operator
164 // (not arithmetic).
165 IncludeIntegers &= (B->isLogicalOp() || B->isComparisonOp());
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000166 return isConfigurationValue(B->getLHS(), PP, IncludeIntegers) ||
167 isConfigurationValue(B->getRHS(), PP, IncludeIntegers);
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000168 }
169 case Stmt::UnaryOperatorClass: {
170 const UnaryOperator *UO = cast<UnaryOperator>(S);
171 return UO->getOpcode() == UO_LNot &&
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000172 isConfigurationValue(UO->getSubExpr(), PP);
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000173 }
174 default:
175 return false;
176 }
177}
178
Ted Kremenekf5ae0bc2014-03-20 06:44:35 +0000179static bool isConfigurationValue(const ValueDecl *D, Preprocessor &PP) {
180 if (const EnumConstantDecl *ED = dyn_cast<EnumConstantDecl>(D))
181 return isConfigurationValue(ED->getInitExpr(), PP);
182 if (const VarDecl *VD = dyn_cast<VarDecl>(D)) {
183 // As a heuristic, treat globals as configuration values. Note
184 // that we only will get here if Sema evaluated this
185 // condition to a constant expression, which means the global
186 // had to be declared in a way to be a truly constant value.
187 // We could generalize this to local variables, but it isn't
188 // clear if those truly represent configuration values that
189 // gate unreachable code.
190 if (!VD->hasLocalStorage())
191 return true;
192
193 // As a heuristic, locals that have been marked 'const' explicitly
194 // can be treated as configuration values as well.
195 return VD->getType().isLocalConstQualified();
196 }
197 return false;
198}
199
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000200/// Returns true if we should always explore all successors of a block.
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000201static bool shouldTreatSuccessorsAsReachable(const CFGBlock *B,
202 Preprocessor &PP) {
Ted Kremenek782f0032014-03-07 02:25:53 +0000203 if (const Stmt *Term = B->getTerminator()) {
Ted Kremenek6999d022014-03-06 08:09:00 +0000204 if (isa<SwitchStmt>(Term))
205 return true;
Ted Kremenek782f0032014-03-07 02:25:53 +0000206 // Specially handle '||' and '&&'.
207 if (isa<BinaryOperator>(Term))
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000208 return isConfigurationValue(Term, PP);
Ted Kremenek782f0032014-03-07 02:25:53 +0000209 }
Ted Kremenek6999d022014-03-06 08:09:00 +0000210
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000211 return isConfigurationValue(B->getTerminatorCondition(), PP);
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000212}
213
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000214static unsigned scanFromBlock(const CFGBlock *Start,
215 llvm::BitVector &Reachable,
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000216 Preprocessor *PP,
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000217 bool IncludeSometimesUnreachableEdges) {
Ted Kremenek552eeaa2010-02-23 05:59:20 +0000218 unsigned count = 0;
Ted Kremenekbd913712011-08-23 23:05:11 +0000219
Nico Webercc2b8712011-04-02 19:45:15 +0000220 // Prep work queue
Ted Kremenekbd913712011-08-23 23:05:11 +0000221 SmallVector<const CFGBlock*, 32> WL;
222
223 // The entry block may have already been marked reachable
224 // by the caller.
225 if (!Reachable[Start->getBlockID()]) {
226 ++count;
227 Reachable[Start->getBlockID()] = true;
228 }
229
230 WL.push_back(Start);
231
Ted Kremenekf2b0a1b2010-09-09 00:06:10 +0000232 // Find the reachable blocks from 'Start'.
Ted Kremenek552eeaa2010-02-23 05:59:20 +0000233 while (!WL.empty()) {
Ted Kremenekbd913712011-08-23 23:05:11 +0000234 const CFGBlock *item = WL.pop_back_val();
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000235
236 // There are cases where we want to treat all successors as reachable.
237 // The idea is that some "sometimes unreachable" code is not interesting,
238 // and that we should forge ahead and explore those branches anyway.
239 // This allows us to potentially uncover some "always unreachable" code
240 // within the "sometimes unreachable" code.
Ted Kremenekbd913712011-08-23 23:05:11 +0000241 // Look at the successors and mark then reachable.
Ted Kremenek782f0032014-03-07 02:25:53 +0000242 Optional<bool> TreatAllSuccessorsAsReachable;
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000243 if (!IncludeSometimesUnreachableEdges)
244 TreatAllSuccessorsAsReachable = false;
Ted Kremenek782f0032014-03-07 02:25:53 +0000245
Ted Kremenekbd913712011-08-23 23:05:11 +0000246 for (CFGBlock::const_succ_iterator I = item->succ_begin(),
Ted Kremenek08da9782014-02-27 21:56:47 +0000247 E = item->succ_end(); I != E; ++I) {
248 const CFGBlock *B = *I;
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000249 if (!B) do {
250 const CFGBlock *UB = I->getPossiblyUnreachableBlock();
251 if (!UB)
252 break;
253
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000254 if (!TreatAllSuccessorsAsReachable.hasValue()) {
255 assert(PP);
Ted Kremenek782f0032014-03-07 02:25:53 +0000256 TreatAllSuccessorsAsReachable =
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000257 shouldTreatSuccessorsAsReachable(item, *PP);
258 }
Ted Kremenek782f0032014-03-07 02:25:53 +0000259
260 if (TreatAllSuccessorsAsReachable.getValue()) {
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000261 B = UB;
262 break;
263 }
Ted Kremenek08da9782014-02-27 21:56:47 +0000264 }
Ted Kremenek6d9bb562014-03-05 00:01:17 +0000265 while (false);
266
Ted Kremenek08da9782014-02-27 21:56:47 +0000267 if (B) {
Ted Kremenek7296de92010-02-23 02:39:16 +0000268 unsigned blockID = B->getBlockID();
269 if (!Reachable[blockID]) {
270 Reachable.set(blockID);
Ted Kremenek7296de92010-02-23 02:39:16 +0000271 WL.push_back(B);
Ted Kremenekbd913712011-08-23 23:05:11 +0000272 ++count;
Ted Kremenek7296de92010-02-23 02:39:16 +0000273 }
274 }
Ted Kremenek08da9782014-02-27 21:56:47 +0000275 }
Ted Kremenek7296de92010-02-23 02:39:16 +0000276 }
277 return count;
278}
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000279
280static unsigned scanMaybeReachableFromBlock(const CFGBlock *Start,
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000281 Preprocessor &PP,
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000282 llvm::BitVector &Reachable) {
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000283 return scanFromBlock(Start, Reachable, &PP, true);
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000284}
285
286//===----------------------------------------------------------------------===//
287// Dead Code Scanner.
288//===----------------------------------------------------------------------===//
289
290namespace {
291 class DeadCodeScan {
292 llvm::BitVector Visited;
293 llvm::BitVector &Reachable;
294 SmallVector<const CFGBlock *, 10> WorkList;
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000295 Preprocessor &PP;
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000296
297 typedef SmallVector<std::pair<const CFGBlock *, const Stmt *>, 12>
298 DeferredLocsTy;
299
300 DeferredLocsTy DeferredLocs;
301
302 public:
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000303 DeadCodeScan(llvm::BitVector &reachable, Preprocessor &PP)
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000304 : Visited(reachable.size()),
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000305 Reachable(reachable),
306 PP(PP) {}
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000307
308 void enqueue(const CFGBlock *block);
309 unsigned scanBackwards(const CFGBlock *Start,
310 clang::reachable_code::Callback &CB);
311
312 bool isDeadCodeRoot(const CFGBlock *Block);
313
314 const Stmt *findDeadCode(const CFGBlock *Block);
315
316 void reportDeadCode(const CFGBlock *B,
317 const Stmt *S,
318 clang::reachable_code::Callback &CB);
319 };
320}
321
322void DeadCodeScan::enqueue(const CFGBlock *block) {
323 unsigned blockID = block->getBlockID();
324 if (Reachable[blockID] || Visited[blockID])
325 return;
326 Visited[blockID] = true;
327 WorkList.push_back(block);
328}
329
330bool DeadCodeScan::isDeadCodeRoot(const clang::CFGBlock *Block) {
331 bool isDeadRoot = true;
332
333 for (CFGBlock::const_pred_iterator I = Block->pred_begin(),
334 E = Block->pred_end(); I != E; ++I) {
335 if (const CFGBlock *PredBlock = *I) {
336 unsigned blockID = PredBlock->getBlockID();
337 if (Visited[blockID]) {
338 isDeadRoot = false;
339 continue;
340 }
341 if (!Reachable[blockID]) {
342 isDeadRoot = false;
343 Visited[blockID] = true;
344 WorkList.push_back(PredBlock);
345 continue;
346 }
347 }
348 }
349
350 return isDeadRoot;
351}
352
353static bool isValidDeadStmt(const Stmt *S) {
354 if (S->getLocStart().isInvalid())
355 return false;
356 if (const BinaryOperator *BO = dyn_cast<BinaryOperator>(S))
357 return BO->getOpcode() != BO_Comma;
358 return true;
359}
360
361const Stmt *DeadCodeScan::findDeadCode(const clang::CFGBlock *Block) {
362 for (CFGBlock::const_iterator I = Block->begin(), E = Block->end(); I!=E; ++I)
363 if (Optional<CFGStmt> CS = I->getAs<CFGStmt>()) {
364 const Stmt *S = CS->getStmt();
365 if (isValidDeadStmt(S))
366 return S;
367 }
368
369 if (CFGTerminator T = Block->getTerminator()) {
Ted Kremenekefea6342014-03-08 02:22:32 +0000370 if (!T.isTemporaryDtorsBranch()) {
371 const Stmt *S = T.getStmt();
372 if (isValidDeadStmt(S))
373 return S;
374 }
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000375 }
376
377 return 0;
378}
379
Benjamin Kramer4cadf292014-03-07 21:51:58 +0000380static int SrcCmp(const std::pair<const CFGBlock *, const Stmt *> *p1,
381 const std::pair<const CFGBlock *, const Stmt *> *p2) {
382 if (p1->second->getLocStart() < p2->second->getLocStart())
383 return -1;
384 if (p2->second->getLocStart() < p1->second->getLocStart())
385 return 1;
386 return 0;
387}
388
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000389unsigned DeadCodeScan::scanBackwards(const clang::CFGBlock *Start,
390 clang::reachable_code::Callback &CB) {
391
392 unsigned count = 0;
393 enqueue(Start);
394
395 while (!WorkList.empty()) {
396 const CFGBlock *Block = WorkList.pop_back_val();
397
398 // It is possible that this block has been marked reachable after
399 // it was enqueued.
400 if (Reachable[Block->getBlockID()])
401 continue;
402
403 // Look for any dead code within the block.
404 const Stmt *S = findDeadCode(Block);
405
406 if (!S) {
407 // No dead code. Possibly an empty block. Look at dead predecessors.
408 for (CFGBlock::const_pred_iterator I = Block->pred_begin(),
409 E = Block->pred_end(); I != E; ++I) {
410 if (const CFGBlock *predBlock = *I)
411 enqueue(predBlock);
412 }
413 continue;
414 }
415
416 // Specially handle macro-expanded code.
417 if (S->getLocStart().isMacroID()) {
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000418 count += scanMaybeReachableFromBlock(Block, PP, Reachable);
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000419 continue;
420 }
421
422 if (isDeadCodeRoot(Block)) {
423 reportDeadCode(Block, S, CB);
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000424 count += scanMaybeReachableFromBlock(Block, PP, Reachable);
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000425 }
426 else {
427 // Record this statement as the possibly best location in a
428 // strongly-connected component of dead code for emitting a
429 // warning.
430 DeferredLocs.push_back(std::make_pair(Block, S));
431 }
432 }
433
434 // If we didn't find a dead root, then report the dead code with the
435 // earliest location.
436 if (!DeferredLocs.empty()) {
Benjamin Kramer4cadf292014-03-07 21:51:58 +0000437 llvm::array_pod_sort(DeferredLocs.begin(), DeferredLocs.end(), SrcCmp);
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000438 for (DeferredLocsTy::iterator I = DeferredLocs.begin(),
439 E = DeferredLocs.end(); I != E; ++I) {
440 const CFGBlock *Block = I->first;
441 if (Reachable[Block->getBlockID()])
442 continue;
443 reportDeadCode(Block, I->second, CB);
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000444 count += scanMaybeReachableFromBlock(Block, PP, Reachable);
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000445 }
446 }
447
448 return count;
449}
450
451static SourceLocation GetUnreachableLoc(const Stmt *S,
452 SourceRange &R1,
453 SourceRange &R2) {
454 R1 = R2 = SourceRange();
455
456 if (const Expr *Ex = dyn_cast<Expr>(S))
457 S = Ex->IgnoreParenImpCasts();
458
459 switch (S->getStmtClass()) {
460 case Expr::BinaryOperatorClass: {
461 const BinaryOperator *BO = cast<BinaryOperator>(S);
462 return BO->getOperatorLoc();
463 }
464 case Expr::UnaryOperatorClass: {
465 const UnaryOperator *UO = cast<UnaryOperator>(S);
466 R1 = UO->getSubExpr()->getSourceRange();
467 return UO->getOperatorLoc();
468 }
469 case Expr::CompoundAssignOperatorClass: {
470 const CompoundAssignOperator *CAO = cast<CompoundAssignOperator>(S);
471 R1 = CAO->getLHS()->getSourceRange();
472 R2 = CAO->getRHS()->getSourceRange();
473 return CAO->getOperatorLoc();
474 }
475 case Expr::BinaryConditionalOperatorClass:
476 case Expr::ConditionalOperatorClass: {
477 const AbstractConditionalOperator *CO =
478 cast<AbstractConditionalOperator>(S);
479 return CO->getQuestionLoc();
480 }
481 case Expr::MemberExprClass: {
482 const MemberExpr *ME = cast<MemberExpr>(S);
483 R1 = ME->getSourceRange();
484 return ME->getMemberLoc();
485 }
486 case Expr::ArraySubscriptExprClass: {
487 const ArraySubscriptExpr *ASE = cast<ArraySubscriptExpr>(S);
488 R1 = ASE->getLHS()->getSourceRange();
489 R2 = ASE->getRHS()->getSourceRange();
490 return ASE->getRBracketLoc();
491 }
492 case Expr::CStyleCastExprClass: {
493 const CStyleCastExpr *CSC = cast<CStyleCastExpr>(S);
494 R1 = CSC->getSubExpr()->getSourceRange();
495 return CSC->getLParenLoc();
496 }
497 case Expr::CXXFunctionalCastExprClass: {
498 const CXXFunctionalCastExpr *CE = cast <CXXFunctionalCastExpr>(S);
499 R1 = CE->getSubExpr()->getSourceRange();
500 return CE->getLocStart();
501 }
502 case Stmt::CXXTryStmtClass: {
503 return cast<CXXTryStmt>(S)->getHandler(0)->getCatchLoc();
504 }
505 case Expr::ObjCBridgedCastExprClass: {
506 const ObjCBridgedCastExpr *CSC = cast<ObjCBridgedCastExpr>(S);
507 R1 = CSC->getSubExpr()->getSourceRange();
508 return CSC->getLParenLoc();
509 }
510 default: ;
511 }
512 R1 = S->getSourceRange();
513 return S->getLocStart();
514}
515
516void DeadCodeScan::reportDeadCode(const CFGBlock *B,
517 const Stmt *S,
518 clang::reachable_code::Callback &CB) {
Ted Kremenekf3c93bb2014-03-20 06:07:30 +0000519 // Classify the unreachable code found, or suppress it in some cases.
Ted Kremenek1a8641c2014-03-15 01:26:32 +0000520 reachable_code::UnreachableKind UK = reachable_code::UK_Other;
521
Ted Kremenekf3c93bb2014-03-20 06:07:30 +0000522 if (isa<BreakStmt>(S)) {
523 UK = reachable_code::UK_Break;
524 }
525 else if (isTrivialDoWhile(B, S)) {
526 return;
527 }
528 else if (isDeadReturn(B, S)) {
529 UK = reachable_code::UK_Return;
530 }
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000531
532 SourceRange R1, R2;
533 SourceLocation Loc = GetUnreachableLoc(S, R1, R2);
Ted Kremenek1a8641c2014-03-15 01:26:32 +0000534 CB.HandleUnreachable(UK, Loc, R1, R2);
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000535}
536
537//===----------------------------------------------------------------------===//
538// Reachability APIs.
539//===----------------------------------------------------------------------===//
540
541namespace clang { namespace reachable_code {
542
543void Callback::anchor() { }
544
545unsigned ScanReachableFromBlock(const CFGBlock *Start,
546 llvm::BitVector &Reachable) {
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000547 return scanFromBlock(Start, Reachable, /* SourceManager* */ 0, false);
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000548}
549
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000550void FindUnreachableCode(AnalysisDeclContext &AC, Preprocessor &PP,
551 Callback &CB) {
552
Ted Kremenek552eeaa2010-02-23 05:59:20 +0000553 CFG *cfg = AC.getCFG();
554 if (!cfg)
555 return;
556
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000557 // Scan for reachable blocks from the entrance of the CFG.
Ted Kremenekbd913712011-08-23 23:05:11 +0000558 // If there are no unreachable blocks, we're done.
Ted Kremenek552eeaa2010-02-23 05:59:20 +0000559 llvm::BitVector reachable(cfg->getNumBlockIDs());
Ted Kremenek7d47cac2014-03-07 07:14:36 +0000560 unsigned numReachable =
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000561 scanMaybeReachableFromBlock(&cfg->getEntry(), PP, reachable);
Ted Kremenek552eeaa2010-02-23 05:59:20 +0000562 if (numReachable == cfg->getNumBlockIDs())
563 return;
Ted Kremenekbd913712011-08-23 23:05:11 +0000564
565 // If there aren't explicit EH edges, we should include the 'try' dispatch
566 // blocks as roots.
567 if (!AC.getCFGBuildOptions().AddEHEdges) {
568 for (CFG::try_block_iterator I = cfg->try_blocks_begin(),
569 E = cfg->try_blocks_end() ; I != E; ++I) {
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000570 numReachable += scanMaybeReachableFromBlock(*I, PP, reachable);
Ted Kremenekbd913712011-08-23 23:05:11 +0000571 }
572 if (numReachable == cfg->getNumBlockIDs())
573 return;
574 }
Ted Kremenek552eeaa2010-02-23 05:59:20 +0000575
Ted Kremenekbd913712011-08-23 23:05:11 +0000576 // There are some unreachable blocks. We need to find the root blocks that
577 // contain code that should be considered unreachable.
Ted Kremenek552eeaa2010-02-23 05:59:20 +0000578 for (CFG::iterator I = cfg->begin(), E = cfg->end(); I != E; ++I) {
Ted Kremenekbd913712011-08-23 23:05:11 +0000579 const CFGBlock *block = *I;
580 // A block may have been marked reachable during this loop.
581 if (reachable[block->getBlockID()])
582 continue;
583
Ted Kremenek2dd810a2014-03-09 08:13:49 +0000584 DeadCodeScan DS(reachable, PP);
Ted Kremenekbd913712011-08-23 23:05:11 +0000585 numReachable += DS.scanBackwards(block, CB);
586
587 if (numReachable == cfg->getNumBlockIDs())
588 return;
Ted Kremenek552eeaa2010-02-23 05:59:20 +0000589 }
Ted Kremenek552eeaa2010-02-23 05:59:20 +0000590}
591
592}} // end namespace clang::reachable_code