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Alexander Kornienko04970842015-08-19 09:11:46 +00001//===--- LoopConvertUtils.cpp - clang-tidy --------------------------------===//
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#include "LoopConvertUtils.h"
11
12using namespace clang::ast_matchers;
13using namespace clang::tooling;
14using namespace clang;
15using namespace llvm;
16
17namespace clang {
18namespace tidy {
19namespace modernize {
20
21/// \brief Tracks a stack of parent statements during traversal.
22///
23/// All this really does is inject push_back() before running
24/// RecursiveASTVisitor::TraverseStmt() and pop_back() afterwards. The Stmt atop
25/// the stack is the parent of the current statement (NULL for the topmost
26/// statement).
27bool StmtAncestorASTVisitor::TraverseStmt(Stmt *Statement) {
28 StmtAncestors.insert(std::make_pair(Statement, StmtStack.back()));
29 StmtStack.push_back(Statement);
30 RecursiveASTVisitor<StmtAncestorASTVisitor>::TraverseStmt(Statement);
31 StmtStack.pop_back();
32 return true;
33}
34
35/// \brief Keep track of the DeclStmt associated with each VarDecl.
36///
37/// Combined with StmtAncestors, this provides roughly the same information as
38/// Scope, as we can map a VarDecl to its DeclStmt, then walk up the parent tree
39/// using StmtAncestors.
40bool StmtAncestorASTVisitor::VisitDeclStmt(DeclStmt *Decls) {
41 for (const auto *decl : Decls->decls()) {
42 if (const auto *V = dyn_cast<VarDecl>(decl))
43 DeclParents.insert(std::make_pair(V, Decls));
44 }
45 return true;
46}
47
48/// \brief record the DeclRefExpr as part of the parent expression.
49bool ComponentFinderASTVisitor::VisitDeclRefExpr(DeclRefExpr *E) {
50 Components.push_back(E);
51 return true;
52}
53
54/// \brief record the MemberExpr as part of the parent expression.
55bool ComponentFinderASTVisitor::VisitMemberExpr(MemberExpr *Member) {
56 Components.push_back(Member);
57 return true;
58}
59
60/// \brief Forward any DeclRefExprs to a check on the referenced variable
61/// declaration.
62bool DependencyFinderASTVisitor::VisitDeclRefExpr(DeclRefExpr *DeclRef) {
63 if (auto *V = dyn_cast_or_null<VarDecl>(DeclRef->getDecl()))
64 return VisitVarDecl(V);
65 return true;
66}
67
68/// \brief Determine if any this variable is declared inside the ContainingStmt.
69bool DependencyFinderASTVisitor::VisitVarDecl(VarDecl *V) {
70 const Stmt *Curr = DeclParents->lookup(V);
71 // First, see if the variable was declared within an inner scope of the loop.
72 while (Curr != nullptr) {
73 if (Curr == ContainingStmt) {
74 DependsOnInsideVariable = true;
75 return false;
76 }
77 Curr = StmtParents->lookup(Curr);
78 }
79
80 // Next, check if the variable was removed from existence by an earlier
81 // iteration.
82 for (const auto &I : *ReplacedVars) {
83 if (I.second == V) {
84 DependsOnInsideVariable = true;
85 return false;
86 }
87 }
88 return true;
89}
90
91/// \brief If we already created a variable for TheLoop, check to make sure
92/// that the name was not already taken.
93bool DeclFinderASTVisitor::VisitForStmt(ForStmt *TheLoop) {
94 StmtGeneratedVarNameMap::const_iterator I = GeneratedDecls->find(TheLoop);
95 if (I != GeneratedDecls->end() && I->second == Name) {
96 Found = true;
97 return false;
98 }
99 return true;
100}
101
102/// \brief If any named declaration within the AST subtree has the same name,
103/// then consider Name already taken.
104bool DeclFinderASTVisitor::VisitNamedDecl(NamedDecl *D) {
105 const IdentifierInfo *Ident = D->getIdentifier();
106 if (Ident && Ident->getName() == Name) {
107 Found = true;
108 return false;
109 }
110 return true;
111}
112
113/// \brief Forward any declaration references to the actual check on the
114/// referenced declaration.
115bool DeclFinderASTVisitor::VisitDeclRefExpr(DeclRefExpr *DeclRef) {
116 if (auto *D = dyn_cast<NamedDecl>(DeclRef->getDecl()))
117 return VisitNamedDecl(D);
118 return true;
119}
120
121/// \brief If the new variable name conflicts with any type used in the loop,
122/// then we mark that variable name as taken.
123bool DeclFinderASTVisitor::VisitTypeLoc(TypeLoc TL) {
124 QualType QType = TL.getType();
125
126 // Check if our name conflicts with a type, to handle for typedefs.
127 if (QType.getAsString() == Name) {
128 Found = true;
129 return false;
130 }
131 // Check for base type conflicts. For example, when a struct is being
132 // referenced in the body of the loop, the above getAsString() will return the
133 // whole type (ex. "struct s"), but will be caught here.
134 if (const IdentifierInfo *Ident = QType.getBaseTypeIdentifier()) {
135 if (Ident->getName() == Name) {
136 Found = true;
137 return false;
138 }
139 }
140 return true;
141}
142
143/// \brief Look through conversion/copy constructors to find the explicit
144/// initialization expression, returning it is found.
145///
146/// The main idea is that given
147/// vector<int> v;
148/// we consider either of these initializations
149/// vector<int>::iterator it = v.begin();
150/// vector<int>::iterator it(v.begin());
151/// and retrieve `v.begin()` as the expression used to initialize `it` but do
152/// not include
153/// vector<int>::iterator it;
154/// vector<int>::iterator it(v.begin(), 0); // if this constructor existed
155/// as being initialized from `v.begin()`
156const Expr *digThroughConstructors(const Expr *E) {
157 if (!E)
158 return nullptr;
159 E = E->IgnoreParenImpCasts();
160 if (const auto *ConstructExpr = dyn_cast<CXXConstructExpr>(E)) {
161 // The initial constructor must take exactly one parameter, but base class
162 // and deferred constructors can take more.
163 if (ConstructExpr->getNumArgs() != 1 ||
164 ConstructExpr->getConstructionKind() != CXXConstructExpr::CK_Complete)
165 return nullptr;
166 E = ConstructExpr->getArg(0);
167 if (const auto *Temp = dyn_cast<MaterializeTemporaryExpr>(E))
168 E = Temp->GetTemporaryExpr();
169 return digThroughConstructors(E);
170 }
171 return E;
172}
173
174/// \brief Returns true when two Exprs are equivalent.
175bool areSameExpr(ASTContext *Context, const Expr *First, const Expr *Second) {
176 if (!First || !Second)
177 return false;
178
179 llvm::FoldingSetNodeID FirstID, SecondID;
180 First->Profile(FirstID, *Context, true);
181 Second->Profile(SecondID, *Context, true);
182 return FirstID == SecondID;
183}
184
185/// \brief Returns the DeclRefExpr represented by E, or NULL if there isn't one.
186const DeclRefExpr *getDeclRef(const Expr *E) {
187 return dyn_cast<DeclRefExpr>(E->IgnoreParenImpCasts());
188}
189
190/// \brief Returns true when two ValueDecls are the same variable.
191bool areSameVariable(const ValueDecl *First, const ValueDecl *Second) {
192 return First && Second &&
193 First->getCanonicalDecl() == Second->getCanonicalDecl();
194}
195
196/// \brief Determines if an expression is a declaration reference to a
197/// particular variable.
198static bool exprReferencesVariable(const ValueDecl *Target, const Expr *E) {
199 if (!Target || !E)
200 return false;
201 const DeclRefExpr *Decl = getDeclRef(E);
202 return Decl && areSameVariable(Target, Decl->getDecl());
203}
204
205/// \brief If the expression is a dereference or call to operator*(), return the
206/// operand. Otherwise, return NULL.
207static const Expr *getDereferenceOperand(const Expr *E) {
208 if (const auto *Uop = dyn_cast<UnaryOperator>(E))
209 return Uop->getOpcode() == UO_Deref ? Uop->getSubExpr() : nullptr;
210
211 if (const auto *OpCall = dyn_cast<CXXOperatorCallExpr>(E)) {
212 return OpCall->getOperator() == OO_Star && OpCall->getNumArgs() == 1
213 ? OpCall->getArg(0)
214 : nullptr;
215 }
216
217 return nullptr;
218}
219
220/// \brief Returns true when the Container contains an Expr equivalent to E.
221template <typename ContainerT>
222static bool containsExpr(ASTContext *Context, const ContainerT *Container,
223 const Expr *E) {
224 llvm::FoldingSetNodeID ID;
225 E->Profile(ID, *Context, true);
226 for (const auto &I : *Container) {
227 if (ID == I.second)
228 return true;
229 }
230 return false;
231}
232
233/// \brief Returns true when the index expression is a declaration reference to
234/// IndexVar.
235///
236/// If the index variable is `index`, this function returns true on
237/// arrayExpression[index];
238/// containerExpression[index];
239/// but not
240/// containerExpression[notIndex];
241static bool isIndexInSubscriptExpr(const Expr *IndexExpr,
242 const VarDecl *IndexVar) {
243 const DeclRefExpr *Idx = getDeclRef(IndexExpr);
244 return Idx && Idx->getType()->isIntegerType() &&
245 areSameVariable(IndexVar, Idx->getDecl());
246}
247
248/// \brief Returns true when the index expression is a declaration reference to
249/// IndexVar, Obj is the same expression as SourceExpr after all parens and
250/// implicit casts are stripped off.
251///
252/// If PermitDeref is true, IndexExpression may
253/// be a dereference (overloaded or builtin operator*).
254///
255/// This function is intended for array-like containers, as it makes sure that
256/// both the container and the index match.
257/// If the loop has index variable `index` and iterates over `container`, then
258/// isIndexInSubscriptExpr returns true for
259/// \code
260/// container[index]
261/// container.at(index)
262/// container->at(index)
263/// \endcode
264/// but not for
265/// \code
266/// container[notIndex]
267/// notContainer[index]
268/// \endcode
269/// If PermitDeref is true, then isIndexInSubscriptExpr additionally returns
270/// true on these expressions:
271/// \code
272/// (*container)[index]
273/// (*container).at(index)
274/// \endcode
275static bool isIndexInSubscriptExpr(ASTContext *Context, const Expr *IndexExpr,
276 const VarDecl *IndexVar, const Expr *Obj,
277 const Expr *SourceExpr, bool PermitDeref) {
278 if (!SourceExpr || !Obj || !isIndexInSubscriptExpr(IndexExpr, IndexVar))
279 return false;
280
281 if (areSameExpr(Context, SourceExpr->IgnoreParenImpCasts(),
282 Obj->IgnoreParenImpCasts()))
283 return true;
284
285 if (const Expr *InnerObj = getDereferenceOperand(Obj->IgnoreParenImpCasts()))
286 if (PermitDeref && areSameExpr(Context, SourceExpr->IgnoreParenImpCasts(),
287 InnerObj->IgnoreParenImpCasts()))
288 return true;
289
290 return false;
291}
292
293/// \brief Returns true when Opcall is a call a one-parameter dereference of
294/// IndexVar.
295///
296/// For example, if the index variable is `index`, returns true for
297/// *index
298/// but not
299/// index
300/// *notIndex
301static bool isDereferenceOfOpCall(const CXXOperatorCallExpr *OpCall,
302 const VarDecl *IndexVar) {
303 return OpCall->getOperator() == OO_Star && OpCall->getNumArgs() == 1 &&
304 exprReferencesVariable(IndexVar, OpCall->getArg(0));
305}
306
307/// \brief Returns true when Uop is a dereference of IndexVar.
308///
309/// For example, if the index variable is `index`, returns true for
310/// *index
311/// but not
312/// index
313/// *notIndex
314static bool isDereferenceOfUop(const UnaryOperator *Uop,
315 const VarDecl *IndexVar) {
316 return Uop->getOpcode() == UO_Deref &&
317 exprReferencesVariable(IndexVar, Uop->getSubExpr());
318}
319
320/// \brief Determines whether the given Decl defines a variable initialized to
321/// the loop object.
322///
323/// This is intended to find cases such as
324/// \code
325/// for (int i = 0; i < arraySize(arr); ++i) {
326/// T t = arr[i];
327/// // use t, do not use i
328/// }
329/// \endcode
330/// and
331/// \code
332/// for (iterator i = container.begin(), e = container.end(); i != e; ++i) {
333/// T t = *i;
334/// // use t, do not use i
335/// }
336/// \endcode
Angel Garcia Gomez8d017722015-09-03 12:28:11 +0000337static bool isAliasDecl(ASTContext *Context, const Decl *TheDecl,
338 const VarDecl *IndexVar) {
Alexander Kornienko04970842015-08-19 09:11:46 +0000339 const auto *VDecl = dyn_cast<VarDecl>(TheDecl);
340 if (!VDecl)
341 return false;
342 if (!VDecl->hasInit())
343 return false;
344
345 const Expr *Init =
346 digThroughConstructors(VDecl->getInit()->IgnoreParenImpCasts());
347 if (!Init)
348 return false;
349
Angel Garcia Gomez8d017722015-09-03 12:28:11 +0000350 // Check that the declared type is the same as (or a reference to) the
351 // container type.
Angel Garcia Gomez8d017722015-09-03 12:28:11 +0000352 QualType InitType = Init->getType();
Angel Garcia Gomezd930ef72015-09-08 09:01:21 +0000353 QualType DeclarationType = VDecl->getType();
354 if (!DeclarationType.isNull() && DeclarationType->isReferenceType())
355 DeclarationType = DeclarationType.getNonReferenceType();
356
357 if (InitType.isNull() || DeclarationType.isNull() ||
358 !Context->hasSameUnqualifiedType(DeclarationType, InitType))
Angel Garcia Gomez8d017722015-09-03 12:28:11 +0000359 return false;
360
Alexander Kornienko04970842015-08-19 09:11:46 +0000361 switch (Init->getStmtClass()) {
362 case Stmt::ArraySubscriptExprClass: {
363 const auto *E = cast<ArraySubscriptExpr>(Init);
364 // We don't really care which array is used here. We check to make sure
365 // it was the correct one later, since the AST will traverse it next.
366 return isIndexInSubscriptExpr(E->getIdx(), IndexVar);
367 }
368
369 case Stmt::UnaryOperatorClass:
370 return isDereferenceOfUop(cast<UnaryOperator>(Init), IndexVar);
371
372 case Stmt::CXXOperatorCallExprClass: {
373 const auto *OpCall = cast<CXXOperatorCallExpr>(Init);
374 if (OpCall->getOperator() == OO_Star)
375 return isDereferenceOfOpCall(OpCall, IndexVar);
376 if (OpCall->getOperator() == OO_Subscript) {
377 assert(OpCall->getNumArgs() == 2);
Angel Garcia Gomez446fe8d2015-08-26 14:51:11 +0000378 return isIndexInSubscriptExpr(OpCall->getArg(1), IndexVar);
Alexander Kornienko04970842015-08-19 09:11:46 +0000379 }
380 break;
381 }
382
Angel Garcia Gomez8409e882015-08-26 17:08:24 +0000383 case Stmt::CXXMemberCallExprClass: {
384 const auto *MemCall = cast<CXXMemberCallExpr>(Init);
Angel Garcia Gomez84754662015-09-02 14:25:08 +0000385 // This check is needed because getMethodDecl can return nullptr if the
386 // callee is a member function pointer.
387 if (MemCall->getMethodDecl() &&
388 MemCall->getMethodDecl()->getName() == "at") {
Angel Garcia Gomez8409e882015-08-26 17:08:24 +0000389 assert(MemCall->getNumArgs() == 1);
390 return isIndexInSubscriptExpr(MemCall->getArg(0), IndexVar);
391 }
392 return false;
393 }
Alexander Kornienko04970842015-08-19 09:11:46 +0000394
395 default:
396 break;
397 }
398 return false;
399}
400
401/// \brief Determines whether the bound of a for loop condition expression is
402/// the same as the statically computable size of ArrayType.
403///
404/// Given
405/// \code
406/// const int N = 5;
407/// int arr[N];
408/// \endcode
409/// This is intended to permit
410/// \code
411/// for (int i = 0; i < N; ++i) { /* use arr[i] */ }
412/// for (int i = 0; i < arraysize(arr); ++i) { /* use arr[i] */ }
413/// \endcode
414static bool arrayMatchesBoundExpr(ASTContext *Context,
415 const QualType &ArrayType,
416 const Expr *ConditionExpr) {
417 if (!ConditionExpr || ConditionExpr->isValueDependent())
418 return false;
419 const ConstantArrayType *ConstType =
420 Context->getAsConstantArrayType(ArrayType);
421 if (!ConstType)
422 return false;
423 llvm::APSInt ConditionSize;
424 if (!ConditionExpr->isIntegerConstantExpr(ConditionSize, *Context))
425 return false;
426 llvm::APSInt ArraySize(ConstType->getSize());
427 return llvm::APSInt::isSameValue(ConditionSize, ArraySize);
428}
429
430ForLoopIndexUseVisitor::ForLoopIndexUseVisitor(ASTContext *Context,
431 const VarDecl *IndexVar,
432 const VarDecl *EndVar,
433 const Expr *ContainerExpr,
434 const Expr *ArrayBoundExpr,
435 bool ContainerNeedsDereference)
436 : Context(Context), IndexVar(IndexVar), EndVar(EndVar),
437 ContainerExpr(ContainerExpr), ArrayBoundExpr(ArrayBoundExpr),
438 ContainerNeedsDereference(ContainerNeedsDereference),
439 OnlyUsedAsIndex(true), AliasDecl(nullptr),
440 ConfidenceLevel(Confidence::CL_Safe), NextStmtParent(nullptr),
441 CurrStmtParent(nullptr), ReplaceWithAliasUse(false),
442 AliasFromForInit(false) {
Angel Garcia Gomez692cbb52015-09-01 15:05:15 +0000443 if (ContainerExpr)
Alexander Kornienko04970842015-08-19 09:11:46 +0000444 addComponent(ContainerExpr);
Alexander Kornienko04970842015-08-19 09:11:46 +0000445}
446
447bool ForLoopIndexUseVisitor::findAndVerifyUsages(const Stmt *Body) {
448 TraverseStmt(const_cast<Stmt *>(Body));
449 return OnlyUsedAsIndex && ContainerExpr;
450}
451
452void ForLoopIndexUseVisitor::addComponents(const ComponentVector &Components) {
453 // FIXME: add sort(on ID)+unique to avoid extra work.
454 for (const auto &I : Components)
455 addComponent(I);
456}
457
458void ForLoopIndexUseVisitor::addComponent(const Expr *E) {
459 FoldingSetNodeID ID;
460 const Expr *Node = E->IgnoreParenImpCasts();
461 Node->Profile(ID, *Context, true);
462 DependentExprs.push_back(std::make_pair(Node, ID));
463}
464
Angel Garcia Gomezbd0ec692015-09-04 21:37:05 +0000465void ForLoopIndexUseVisitor::addUsage(const Usage &U) {
466 SourceLocation Begin = U.Range.getBegin();
467 if (Begin.isMacroID())
468 Begin = Context->getSourceManager().getSpellingLoc(Begin);
469
470 if (UsageLocations.insert(Begin).second)
471 Usages.push_back(U);
472}
473
Alexander Kornienko04970842015-08-19 09:11:46 +0000474/// \brief If the unary operator is a dereference of IndexVar, include it
475/// as a valid usage and prune the traversal.
476///
477/// For example, if container.begin() and container.end() both return pointers
478/// to int, this makes sure that the initialization for `k` is not counted as an
479/// unconvertible use of the iterator `i`.
480/// \code
481/// for (int *i = container.begin(), *e = container.end(); i != e; ++i) {
482/// int k = *i + 2;
483/// }
484/// \endcode
485bool ForLoopIndexUseVisitor::TraverseUnaryDeref(UnaryOperator *Uop) {
486 // If we dereference an iterator that's actually a pointer, count the
487 // occurrence.
488 if (isDereferenceOfUop(Uop, IndexVar)) {
Angel Garcia Gomezbd0ec692015-09-04 21:37:05 +0000489 addUsage(Usage(Uop));
Alexander Kornienko04970842015-08-19 09:11:46 +0000490 return true;
491 }
492
493 return VisitorBase::TraverseUnaryOperator(Uop);
494}
495
496/// \brief If the member expression is operator-> (overloaded or not) on
497/// IndexVar, include it as a valid usage and prune the traversal.
498///
499/// For example, given
500/// \code
501/// struct Foo { int bar(); int x; };
502/// vector<Foo> v;
503/// \endcode
504/// the following uses will be considered convertible:
505/// \code
506/// for (vector<Foo>::iterator i = v.begin(), e = v.end(); i != e; ++i) {
507/// int b = i->bar();
508/// int k = i->x + 1;
509/// }
510/// \endcode
511/// though
512/// \code
513/// for (vector<Foo>::iterator i = v.begin(), e = v.end(); i != e; ++i) {
514/// int k = i.insert(1);
515/// }
516/// for (vector<Foo>::iterator i = v.begin(), e = v.end(); i != e; ++i) {
517/// int b = e->bar();
518/// }
519/// \endcode
520/// will not.
521bool ForLoopIndexUseVisitor::TraverseMemberExpr(MemberExpr *Member) {
522 const Expr *Base = Member->getBase();
523 const DeclRefExpr *Obj = getDeclRef(Base);
524 const Expr *ResultExpr = Member;
525 QualType ExprType;
526 if (const auto *Call =
527 dyn_cast<CXXOperatorCallExpr>(Base->IgnoreParenImpCasts())) {
528 // If operator->() is a MemberExpr containing a CXXOperatorCallExpr, then
529 // the MemberExpr does not have the expression we want. We therefore catch
530 // that instance here.
531 // For example, if vector<Foo>::iterator defines operator->(), then the
532 // example `i->bar()` at the top of this function is a CXXMemberCallExpr
533 // referring to `i->` as the member function called. We want just `i`, so
534 // we take the argument to operator->() as the base object.
535 if (Call->getOperator() == OO_Arrow) {
536 assert(Call->getNumArgs() == 1 &&
537 "Operator-> takes more than one argument");
538 Obj = getDeclRef(Call->getArg(0));
539 ResultExpr = Obj;
540 ExprType = Call->getCallReturnType(*Context);
541 }
542 }
543
Angel Garcia Gomez692cbb52015-09-01 15:05:15 +0000544 if (Obj && exprReferencesVariable(IndexVar, Obj)) {
545 // Member calls on the iterator with '.' are not allowed.
546 if (!Member->isArrow()) {
547 OnlyUsedAsIndex = false;
548 return true;
549 }
550
Alexander Kornienko04970842015-08-19 09:11:46 +0000551 if (ExprType.isNull())
552 ExprType = Obj->getType();
553
554 assert(ExprType->isPointerType() && "Operator-> returned non-pointer type");
555 // FIXME: This works around not having the location of the arrow operator.
556 // Consider adding OperatorLoc to MemberExpr?
557 SourceLocation ArrowLoc = Lexer::getLocForEndOfToken(
558 Base->getExprLoc(), 0, Context->getSourceManager(),
559 Context->getLangOpts());
560 // If something complicated is happening (i.e. the next token isn't an
561 // arrow), give up on making this work.
562 if (!ArrowLoc.isInvalid()) {
Angel Garcia Gomezbd0ec692015-09-04 21:37:05 +0000563 addUsage(Usage(ResultExpr, /*IsArrow=*/true,
564 SourceRange(Base->getExprLoc(), ArrowLoc)));
Alexander Kornienko04970842015-08-19 09:11:46 +0000565 return true;
566 }
567 }
Angel Garcia Gomez692cbb52015-09-01 15:05:15 +0000568 return VisitorBase::TraverseMemberExpr(Member);
Alexander Kornienko04970842015-08-19 09:11:46 +0000569}
570
571/// \brief If a member function call is the at() accessor on the container with
572/// IndexVar as the single argument, include it as a valid usage and prune
573/// the traversal.
574///
575/// Member calls on other objects will not be permitted.
576/// Calls on the iterator object are not permitted, unless done through
577/// operator->(). The one exception is allowing vector::at() for pseudoarrays.
578bool ForLoopIndexUseVisitor::TraverseCXXMemberCallExpr(
579 CXXMemberCallExpr *MemberCall) {
580 auto *Member =
581 dyn_cast<MemberExpr>(MemberCall->getCallee()->IgnoreParenImpCasts());
582 if (!Member)
583 return VisitorBase::TraverseCXXMemberCallExpr(MemberCall);
584
585 // We specifically allow an accessor named "at" to let STL in, though
586 // this is restricted to pseudo-arrays by requiring a single, integer
587 // argument.
588 const IdentifierInfo *Ident = Member->getMemberDecl()->getIdentifier();
589 if (Ident && Ident->isStr("at") && MemberCall->getNumArgs() == 1) {
590 if (isIndexInSubscriptExpr(Context, MemberCall->getArg(0), IndexVar,
591 Member->getBase(), ContainerExpr,
592 ContainerNeedsDereference)) {
Angel Garcia Gomezbd0ec692015-09-04 21:37:05 +0000593 addUsage(Usage(MemberCall));
Alexander Kornienko04970842015-08-19 09:11:46 +0000594 return true;
595 }
596 }
597
598 if (containsExpr(Context, &DependentExprs, Member->getBase()))
599 ConfidenceLevel.lowerTo(Confidence::CL_Risky);
600
601 return VisitorBase::TraverseCXXMemberCallExpr(MemberCall);
602}
603
604/// \brief If an overloaded operator call is a dereference of IndexVar or
Angel Garcia Gomez692cbb52015-09-01 15:05:15 +0000605/// a subscript of the container with IndexVar as the single argument,
Alexander Kornienko04970842015-08-19 09:11:46 +0000606/// include it as a valid usage and prune the traversal.
607///
608/// For example, given
609/// \code
610/// struct Foo { int bar(); int x; };
611/// vector<Foo> v;
612/// void f(Foo);
613/// \endcode
614/// the following uses will be considered convertible:
615/// \code
616/// for (vector<Foo>::iterator i = v.begin(), e = v.end(); i != e; ++i) {
617/// f(*i);
618/// }
619/// for (int i = 0; i < v.size(); ++i) {
620/// int i = v[i] + 1;
621/// }
622/// \endcode
623bool ForLoopIndexUseVisitor::TraverseCXXOperatorCallExpr(
624 CXXOperatorCallExpr *OpCall) {
625 switch (OpCall->getOperator()) {
626 case OO_Star:
627 if (isDereferenceOfOpCall(OpCall, IndexVar)) {
Angel Garcia Gomezbd0ec692015-09-04 21:37:05 +0000628 addUsage(Usage(OpCall));
Alexander Kornienko04970842015-08-19 09:11:46 +0000629 return true;
630 }
631 break;
632
633 case OO_Subscript:
634 if (OpCall->getNumArgs() != 2)
635 break;
636 if (isIndexInSubscriptExpr(Context, OpCall->getArg(1), IndexVar,
637 OpCall->getArg(0), ContainerExpr,
638 ContainerNeedsDereference)) {
Angel Garcia Gomezbd0ec692015-09-04 21:37:05 +0000639 addUsage(Usage(OpCall));
Alexander Kornienko04970842015-08-19 09:11:46 +0000640 return true;
641 }
642 break;
643
644 default:
645 break;
646 }
647 return VisitorBase::TraverseCXXOperatorCallExpr(OpCall);
648}
649
650/// \brief If we encounter an array with IndexVar as the index of an
651/// ArraySubsriptExpression, note it as a consistent usage and prune the
652/// AST traversal.
653///
654/// For example, given
655/// \code
656/// const int N = 5;
657/// int arr[N];
658/// \endcode
659/// This is intended to permit
660/// \code
661/// for (int i = 0; i < N; ++i) { /* use arr[i] */ }
662/// \endcode
663/// but not
664/// \code
665/// for (int i = 0; i < N; ++i) { /* use notArr[i] */ }
666/// \endcode
667/// and further checking needs to be done later to ensure that exactly one array
668/// is referenced.
669bool ForLoopIndexUseVisitor::TraverseArraySubscriptExpr(ArraySubscriptExpr *E) {
670 Expr *Arr = E->getBase();
671 if (!isIndexInSubscriptExpr(E->getIdx(), IndexVar))
672 return VisitorBase::TraverseArraySubscriptExpr(E);
673
674 if ((ContainerExpr &&
675 !areSameExpr(Context, Arr->IgnoreParenImpCasts(),
676 ContainerExpr->IgnoreParenImpCasts())) ||
677 !arrayMatchesBoundExpr(Context, Arr->IgnoreImpCasts()->getType(),
678 ArrayBoundExpr)) {
679 // If we have already discovered the array being indexed and this isn't it
680 // or this array doesn't match, mark this loop as unconvertible.
681 OnlyUsedAsIndex = false;
682 return VisitorBase::TraverseArraySubscriptExpr(E);
683 }
684
685 if (!ContainerExpr)
686 ContainerExpr = Arr;
687
Angel Garcia Gomezbd0ec692015-09-04 21:37:05 +0000688 addUsage(Usage(E));
Alexander Kornienko04970842015-08-19 09:11:46 +0000689 return true;
690}
691
692/// \brief If we encounter a reference to IndexVar in an unpruned branch of the
693/// traversal, mark this loop as unconvertible.
694///
695/// This implements the whitelist for convertible loops: any usages of IndexVar
696/// not explicitly considered convertible by this traversal will be caught by
697/// this function.
698///
699/// Additionally, if the container expression is more complex than just a
700/// DeclRefExpr, and some part of it is appears elsewhere in the loop, lower
701/// our confidence in the transformation.
702///
703/// For example, these are not permitted:
704/// \code
705/// for (int i = 0; i < N; ++i) { printf("arr[%d] = %d", i, arr[i]); }
706/// for (vector<int>::iterator i = container.begin(), e = container.end();
707/// i != e; ++i)
708/// i.insert(0);
709/// for (vector<int>::iterator i = container.begin(), e = container.end();
710/// i != e; ++i)
Alexander Kornienko04970842015-08-19 09:11:46 +0000711/// if (i + 1 != e)
712/// printf("%d", *i);
713/// \endcode
714///
715/// And these will raise the risk level:
716/// \code
717/// int arr[10][20];
718/// int l = 5;
719/// for (int j = 0; j < 20; ++j)
720/// int k = arr[l][j] + l; // using l outside arr[l] is considered risky
721/// for (int i = 0; i < obj.getVector().size(); ++i)
722/// obj.foo(10); // using `obj` is considered risky
723/// \endcode
724bool ForLoopIndexUseVisitor::VisitDeclRefExpr(DeclRefExpr *E) {
725 const ValueDecl *TheDecl = E->getDecl();
Angel Garcia Gomez692cbb52015-09-01 15:05:15 +0000726 if (areSameVariable(IndexVar, TheDecl) ||
727 exprReferencesVariable(IndexVar, E) || areSameVariable(EndVar, TheDecl) ||
728 exprReferencesVariable(EndVar, E))
Alexander Kornienko04970842015-08-19 09:11:46 +0000729 OnlyUsedAsIndex = false;
730 if (containsExpr(Context, &DependentExprs, E))
731 ConfidenceLevel.lowerTo(Confidence::CL_Risky);
732 return true;
733}
734
Angel Garcia Gomez8d017722015-09-03 12:28:11 +0000735/// \brief If the loop index is captured by a lambda, replace this capture
736/// by the range-for loop variable.
737///
738/// For example:
739/// \code
740/// for (int i = 0; i < N; ++i) {
741/// auto f = [v, i](int k) {
742/// printf("%d\n", v[i] + k);
743/// };
744/// f(v[i]);
745/// }
746/// \endcode
747///
748/// Will be replaced by:
749/// \code
750/// for (auto & elem : v) {
751/// auto f = [v, elem](int k) {
752/// printf("%d\n", elem + k);
753/// };
754/// f(elem);
755/// }
756/// \endcode
757bool ForLoopIndexUseVisitor::TraverseLambdaCapture(LambdaExpr *LE,
758 const LambdaCapture *C) {
759 if (C->capturesVariable()) {
Angel Garcia Gomezbd0ec692015-09-04 21:37:05 +0000760 const VarDecl *VDecl = C->getCapturedVar();
Angel Garcia Gomez8d017722015-09-03 12:28:11 +0000761 if (areSameVariable(IndexVar, cast<ValueDecl>(VDecl))) {
762 // FIXME: if the index is captured, it will count as an usage and the
763 // alias (if any) won't work, because it is only used in case of having
764 // exactly one usage.
Angel Garcia Gomezbd0ec692015-09-04 21:37:05 +0000765 addUsage(Usage(nullptr, false, C->getLocation()));
Angel Garcia Gomez8d017722015-09-03 12:28:11 +0000766 }
767 }
768 return VisitorBase::TraverseLambdaCapture(LE, C);
769}
770
Alexander Kornienko04970842015-08-19 09:11:46 +0000771/// \brief If we find that another variable is created just to refer to the loop
772/// element, note it for reuse as the loop variable.
773///
774/// See the comments for isAliasDecl.
775bool ForLoopIndexUseVisitor::VisitDeclStmt(DeclStmt *S) {
776 if (!AliasDecl && S->isSingleDecl() &&
Angel Garcia Gomez8d017722015-09-03 12:28:11 +0000777 isAliasDecl(Context, S->getSingleDecl(), IndexVar)) {
Alexander Kornienko04970842015-08-19 09:11:46 +0000778 AliasDecl = S;
779 if (CurrStmtParent) {
780 if (isa<IfStmt>(CurrStmtParent) || isa<WhileStmt>(CurrStmtParent) ||
781 isa<SwitchStmt>(CurrStmtParent))
782 ReplaceWithAliasUse = true;
783 else if (isa<ForStmt>(CurrStmtParent)) {
784 if (cast<ForStmt>(CurrStmtParent)->getConditionVariableDeclStmt() == S)
785 ReplaceWithAliasUse = true;
786 else
787 // It's assumed S came the for loop's init clause.
788 AliasFromForInit = true;
789 }
790 }
791 }
792
793 return true;
794}
795
796bool ForLoopIndexUseVisitor::TraverseStmt(Stmt *S) {
797 // All this pointer swapping is a mechanism for tracking immediate parentage
798 // of Stmts.
799 const Stmt *OldNextParent = NextStmtParent;
800 CurrStmtParent = NextStmtParent;
801 NextStmtParent = S;
802 bool Result = VisitorBase::TraverseStmt(S);
803 NextStmtParent = OldNextParent;
804 return Result;
805}
806
807std::string VariableNamer::createIndexName() {
808 // FIXME: Add in naming conventions to handle:
809 // - Uppercase/lowercase indices.
810 // - How to handle conflicts.
811 // - An interactive process for naming.
812 std::string IteratorName;
813 std::string ContainerName;
814 if (TheContainer)
815 ContainerName = TheContainer->getName().str();
816
817 size_t Len = ContainerName.length();
818 if (Len > 1 && ContainerName[Len - 1] == 's')
819 IteratorName = ContainerName.substr(0, Len - 1);
820 else
821 IteratorName = "elem";
822
823 if (!declarationExists(IteratorName))
824 return IteratorName;
825
826 IteratorName = ContainerName + "_" + OldIndex->getName().str();
827 if (!declarationExists(IteratorName))
828 return IteratorName;
829
830 IteratorName = ContainerName + "_elem";
831 if (!declarationExists(IteratorName))
832 return IteratorName;
833
834 IteratorName += "_elem";
835 if (!declarationExists(IteratorName))
836 return IteratorName;
837
838 IteratorName = "_elem_";
839
840 // Someone defeated my naming scheme...
841 while (declarationExists(IteratorName))
842 IteratorName += "i";
843 return IteratorName;
844}
845
846/// \brief Determines whether or not the the name \a Symbol conflicts with
847/// language keywords or defined macros. Also checks if the name exists in
848/// LoopContext, any of its parent contexts, or any of its child statements.
849///
850/// We also check to see if the same identifier was generated by this loop
851/// converter in a loop nested within SourceStmt.
852bool VariableNamer::declarationExists(StringRef Symbol) {
853 assert(Context != nullptr && "Expected an ASTContext");
854 IdentifierInfo &Ident = Context->Idents.get(Symbol);
855
856 // Check if the symbol is not an identifier (ie. is a keyword or alias).
857 if (!isAnyIdentifier(Ident.getTokenID()))
858 return true;
859
860 // Check for conflicting macro definitions.
861 if (Ident.hasMacroDefinition())
862 return true;
863
864 // Determine if the symbol was generated in a parent context.
865 for (const Stmt *S = SourceStmt; S != nullptr; S = ReverseAST->lookup(S)) {
866 StmtGeneratedVarNameMap::const_iterator I = GeneratedDecls->find(S);
867 if (I != GeneratedDecls->end() && I->second == Symbol)
868 return true;
869 }
870
871 // FIXME: Rather than detecting conflicts at their usages, we should check the
872 // parent context.
873 // For some reason, lookup() always returns the pair (NULL, NULL) because its
874 // StoredDeclsMap is not initialized (i.e. LookupPtr.getInt() is false inside
875 // of DeclContext::lookup()). Why is this?
876
877 // Finally, determine if the symbol was used in the loop or a child context.
878 DeclFinderASTVisitor DeclFinder(Symbol, GeneratedDecls);
879 return DeclFinder.findUsages(SourceStmt);
880}
881
882} // namespace modernize
883} // namespace tidy
884} // namespace clang