1 //===--- ObjCMT.cpp - ObjC Migrate Tool -----------------------------------===//
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 "Transforms.h"
11 #include "clang/ARCMigrate/ARCMT.h"
12 #include "clang/ARCMigrate/ARCMTActions.h"
13 #include "clang/AST/ASTConsumer.h"
14 #include "clang/AST/ASTContext.h"
15 #include "clang/AST/Attr.h"
16 #include "clang/AST/NSAPI.h"
17 #include "clang/AST/ParentMap.h"
18 #include "clang/AST/RecursiveASTVisitor.h"
19 #include "clang/Analysis/DomainSpecific/CocoaConventions.h"
20 #include "clang/Basic/FileManager.h"
21 #include "clang/Edit/Commit.h"
22 #include "clang/Edit/EditedSource.h"
23 #include "clang/Edit/EditsReceiver.h"
24 #include "clang/Edit/Rewriters.h"
25 #include "clang/Frontend/CompilerInstance.h"
26 #include "clang/Frontend/MultiplexConsumer.h"
27 #include "clang/Lex/PPConditionalDirectiveRecord.h"
28 #include "clang/Lex/Preprocessor.h"
29 #include "clang/Rewrite/Core/Rewriter.h"
30 #include "clang/StaticAnalyzer/Checkers/ObjCRetainCount.h"
31 #include "llvm/ADT/SmallString.h"
32 #include "llvm/ADT/StringSet.h"
33 #include "llvm/Support/Path.h"
34 #include "llvm/Support/SourceMgr.h"
35 #include "llvm/Support/YAMLParser.h"
36 
37 using namespace clang;
38 using namespace arcmt;
39 using namespace ento::objc_retain;
40 
41 namespace {
42 
43 class ObjCMigrateASTConsumer : public ASTConsumer {
44   enum CF_BRIDGING_KIND {
45     CF_BRIDGING_NONE,
46     CF_BRIDGING_ENABLE,
47     CF_BRIDGING_MAY_INCLUDE
48   };
49 
50   void migrateDecl(Decl *D);
51   void migrateObjCInterfaceDecl(ASTContext &Ctx, ObjCContainerDecl *D);
52   void migrateProtocolConformance(ASTContext &Ctx,
53                                   const ObjCImplementationDecl *ImpDecl);
54   void CacheObjCNSIntegerTypedefed(const TypedefDecl *TypedefDcl);
55   bool migrateNSEnumDecl(ASTContext &Ctx, const EnumDecl *EnumDcl,
56                      const TypedefDecl *TypedefDcl);
57   void migrateAllMethodInstaceType(ASTContext &Ctx, ObjCContainerDecl *CDecl);
58   void migrateMethodInstanceType(ASTContext &Ctx, ObjCContainerDecl *CDecl,
59                                  ObjCMethodDecl *OM);
60   bool migrateProperty(ASTContext &Ctx, ObjCContainerDecl *D, ObjCMethodDecl *OM);
61   void migrateNsReturnsInnerPointer(ASTContext &Ctx, ObjCMethodDecl *OM);
62   void migratePropertyNsReturnsInnerPointer(ASTContext &Ctx, ObjCPropertyDecl *P);
63   void migrateFactoryMethod(ASTContext &Ctx, ObjCContainerDecl *CDecl,
64                             ObjCMethodDecl *OM,
65                             ObjCInstanceTypeFamily OIT_Family = OIT_None);
66 
67   void migrateCFAnnotation(ASTContext &Ctx, const Decl *Decl);
68   void AddCFAnnotations(ASTContext &Ctx, const CallEffects &CE,
69                         const FunctionDecl *FuncDecl, bool ResultAnnotated);
70   void AddCFAnnotations(ASTContext &Ctx, const CallEffects &CE,
71                         const ObjCMethodDecl *MethodDecl, bool ResultAnnotated);
72 
73   void AnnotateImplicitBridging(ASTContext &Ctx);
74 
75   CF_BRIDGING_KIND migrateAddFunctionAnnotation(ASTContext &Ctx,
76                                                 const FunctionDecl *FuncDecl);
77 
78   void migrateARCSafeAnnotation(ASTContext &Ctx, ObjCContainerDecl *CDecl);
79 
80   void migrateAddMethodAnnotation(ASTContext &Ctx,
81                                   const ObjCMethodDecl *MethodDecl);
82 
83   void inferDesignatedInitializers(ASTContext &Ctx,
84                                    const ObjCImplementationDecl *ImplD);
85 
86   bool InsertFoundation(ASTContext &Ctx, SourceLocation Loc);
87 
88 public:
89   std::string MigrateDir;
90   unsigned ASTMigrateActions;
91   FileID FileId;
92   const TypedefDecl *NSIntegerTypedefed;
93   const TypedefDecl *NSUIntegerTypedefed;
94   std::unique_ptr<NSAPI> NSAPIObj;
95   std::unique_ptr<edit::EditedSource> Editor;
96   FileRemapper &Remapper;
97   FileManager &FileMgr;
98   const PPConditionalDirectiveRecord *PPRec;
99   Preprocessor &PP;
100   bool IsOutputFile;
101   bool FoundationIncluded;
102   llvm::SmallPtrSet<ObjCProtocolDecl *, 32> ObjCProtocolDecls;
103   llvm::SmallVector<const Decl *, 8> CFFunctionIBCandidates;
104   llvm::StringSet<> WhiteListFilenames;
105 
ObjCMigrateASTConsumer(StringRef migrateDir,unsigned astMigrateActions,FileRemapper & remapper,FileManager & fileMgr,const PPConditionalDirectiveRecord * PPRec,Preprocessor & PP,bool isOutputFile,ArrayRef<std::string> WhiteList)106   ObjCMigrateASTConsumer(StringRef migrateDir,
107                          unsigned astMigrateActions,
108                          FileRemapper &remapper,
109                          FileManager &fileMgr,
110                          const PPConditionalDirectiveRecord *PPRec,
111                          Preprocessor &PP,
112                          bool isOutputFile,
113                          ArrayRef<std::string> WhiteList)
114   : MigrateDir(migrateDir),
115     ASTMigrateActions(astMigrateActions),
116     NSIntegerTypedefed(nullptr), NSUIntegerTypedefed(nullptr),
117     Remapper(remapper), FileMgr(fileMgr), PPRec(PPRec), PP(PP),
118     IsOutputFile(isOutputFile),
119     FoundationIncluded(false){
120 
121     // FIXME: StringSet should have insert(iter, iter) to use here.
122     for (const std::string &Val : WhiteList)
123       WhiteListFilenames.insert(Val);
124   }
125 
126 protected:
Initialize(ASTContext & Context)127   void Initialize(ASTContext &Context) override {
128     NSAPIObj.reset(new NSAPI(Context));
129     Editor.reset(new edit::EditedSource(Context.getSourceManager(),
130                                         Context.getLangOpts(),
131                                         PPRec));
132   }
133 
HandleTopLevelDecl(DeclGroupRef DG)134   bool HandleTopLevelDecl(DeclGroupRef DG) override {
135     for (DeclGroupRef::iterator I = DG.begin(), E = DG.end(); I != E; ++I)
136       migrateDecl(*I);
137     return true;
138   }
HandleInterestingDecl(DeclGroupRef DG)139   void HandleInterestingDecl(DeclGroupRef DG) override {
140     // Ignore decls from the PCH.
141   }
HandleTopLevelDeclInObjCContainer(DeclGroupRef DG)142   void HandleTopLevelDeclInObjCContainer(DeclGroupRef DG) override {
143     ObjCMigrateASTConsumer::HandleTopLevelDecl(DG);
144   }
145 
146   void HandleTranslationUnit(ASTContext &Ctx) override;
147 
canModifyFile(StringRef Path)148   bool canModifyFile(StringRef Path) {
149     if (WhiteListFilenames.empty())
150       return true;
151     return WhiteListFilenames.find(llvm::sys::path::filename(Path))
152         != WhiteListFilenames.end();
153   }
canModifyFile(const FileEntry * FE)154   bool canModifyFile(const FileEntry *FE) {
155     if (!FE)
156       return false;
157     return canModifyFile(FE->getName());
158   }
canModifyFile(FileID FID)159   bool canModifyFile(FileID FID) {
160     if (FID.isInvalid())
161       return false;
162     return canModifyFile(PP.getSourceManager().getFileEntryForID(FID));
163   }
164 
canModify(const Decl * D)165   bool canModify(const Decl *D) {
166     if (!D)
167       return false;
168     if (const ObjCCategoryImplDecl *CatImpl = dyn_cast<ObjCCategoryImplDecl>(D))
169       return canModify(CatImpl->getCategoryDecl());
170     if (const ObjCImplementationDecl *Impl = dyn_cast<ObjCImplementationDecl>(D))
171       return canModify(Impl->getClassInterface());
172     if (const ObjCMethodDecl *MD = dyn_cast<ObjCMethodDecl>(D))
173       return canModify(cast<Decl>(MD->getDeclContext()));
174 
175     FileID FID = PP.getSourceManager().getFileID(D->getLocation());
176     return canModifyFile(FID);
177   }
178 };
179 
180 }
181 
ObjCMigrateAction(FrontendAction * WrappedAction,StringRef migrateDir,unsigned migrateAction)182 ObjCMigrateAction::ObjCMigrateAction(FrontendAction *WrappedAction,
183                                      StringRef migrateDir,
184                                      unsigned migrateAction)
185   : WrapperFrontendAction(WrappedAction), MigrateDir(migrateDir),
186     ObjCMigAction(migrateAction),
187     CompInst(nullptr) {
188   if (MigrateDir.empty())
189     MigrateDir = "."; // user current directory if none is given.
190 }
191 
192 std::unique_ptr<ASTConsumer>
CreateASTConsumer(CompilerInstance & CI,StringRef InFile)193 ObjCMigrateAction::CreateASTConsumer(CompilerInstance &CI, StringRef InFile) {
194   PPConditionalDirectiveRecord *
195     PPRec = new PPConditionalDirectiveRecord(CompInst->getSourceManager());
196   CI.getPreprocessor().addPPCallbacks(std::unique_ptr<PPCallbacks>(PPRec));
197   std::vector<std::unique_ptr<ASTConsumer>> Consumers;
198   Consumers.push_back(WrapperFrontendAction::CreateASTConsumer(CI, InFile));
199   Consumers.push_back(llvm::make_unique<ObjCMigrateASTConsumer>(
200       MigrateDir, ObjCMigAction, Remapper, CompInst->getFileManager(), PPRec,
201       CompInst->getPreprocessor(), false, None));
202   return llvm::make_unique<MultiplexConsumer>(std::move(Consumers));
203 }
204 
BeginInvocation(CompilerInstance & CI)205 bool ObjCMigrateAction::BeginInvocation(CompilerInstance &CI) {
206   Remapper.initFromDisk(MigrateDir, CI.getDiagnostics(),
207                         /*ignoreIfFilesChanges=*/true);
208   CompInst = &CI;
209   CI.getDiagnostics().setIgnoreAllWarnings(true);
210   return true;
211 }
212 
213 namespace {
214   // FIXME. This duplicates one in RewriteObjCFoundationAPI.cpp
subscriptOperatorNeedsParens(const Expr * FullExpr)215   bool subscriptOperatorNeedsParens(const Expr *FullExpr) {
216     const Expr* Expr = FullExpr->IgnoreImpCasts();
217     if (isa<ArraySubscriptExpr>(Expr) ||
218         isa<CallExpr>(Expr) ||
219         isa<DeclRefExpr>(Expr) ||
220         isa<CXXNamedCastExpr>(Expr) ||
221         isa<CXXConstructExpr>(Expr) ||
222         isa<CXXThisExpr>(Expr) ||
223         isa<CXXTypeidExpr>(Expr) ||
224         isa<CXXUnresolvedConstructExpr>(Expr) ||
225         isa<ObjCMessageExpr>(Expr) ||
226         isa<ObjCPropertyRefExpr>(Expr) ||
227         isa<ObjCProtocolExpr>(Expr) ||
228         isa<MemberExpr>(Expr) ||
229         isa<ObjCIvarRefExpr>(Expr) ||
230         isa<ParenExpr>(FullExpr) ||
231         isa<ParenListExpr>(Expr) ||
232         isa<SizeOfPackExpr>(Expr))
233       return false;
234 
235     return true;
236   }
237 
238   /// \brief - Rewrite message expression for Objective-C setter and getters into
239   /// property-dot syntax.
rewriteToPropertyDotSyntax(const ObjCMessageExpr * Msg,Preprocessor & PP,const NSAPI & NS,edit::Commit & commit,const ParentMap * PMap)240   bool rewriteToPropertyDotSyntax(const ObjCMessageExpr *Msg,
241                                   Preprocessor &PP,
242                                   const NSAPI &NS, edit::Commit &commit,
243                                   const ParentMap *PMap) {
244     if (!Msg || Msg->isImplicit() ||
245         (Msg->getReceiverKind() != ObjCMessageExpr::Instance &&
246          Msg->getReceiverKind() != ObjCMessageExpr::SuperInstance))
247       return false;
248     const ObjCMethodDecl *Method = Msg->getMethodDecl();
249     if (!Method)
250       return false;
251     if (!Method->isPropertyAccessor())
252       return false;
253 
254     const ObjCInterfaceDecl *IFace =
255       NS.getASTContext().getObjContainingInterface(Method);
256     if (!IFace)
257       return false;
258 
259     const ObjCPropertyDecl *Prop = Method->findPropertyDecl();
260     if (!Prop)
261       return false;
262 
263     SourceRange MsgRange = Msg->getSourceRange();
264     bool ReceiverIsSuper =
265       (Msg->getReceiverKind() == ObjCMessageExpr::SuperInstance);
266     // for 'super' receiver is nullptr.
267     const Expr *receiver = Msg->getInstanceReceiver();
268     bool NeedsParen =
269       ReceiverIsSuper ? false : subscriptOperatorNeedsParens(receiver);
270     bool IsGetter = (Msg->getNumArgs() == 0);
271     if (IsGetter) {
272       // Find space location range between receiver expression and getter method.
273       SourceLocation BegLoc =
274         ReceiverIsSuper ? Msg->getSuperLoc() : receiver->getLocEnd();
275       BegLoc = PP.getLocForEndOfToken(BegLoc);
276       SourceLocation EndLoc = Msg->getSelectorLoc(0);
277       SourceRange SpaceRange(BegLoc, EndLoc);
278       std::string PropertyDotString;
279       // rewrite getter method expression into: receiver.property or
280       // (receiver).property
281       if (NeedsParen) {
282         commit.insertBefore(receiver->getLocStart(), "(");
283         PropertyDotString = ").";
284       }
285       else
286         PropertyDotString = ".";
287       PropertyDotString += Prop->getName();
288       commit.replace(SpaceRange, PropertyDotString);
289 
290       // remove '[' ']'
291       commit.replace(SourceRange(MsgRange.getBegin(), MsgRange.getBegin()), "");
292       commit.replace(SourceRange(MsgRange.getEnd(), MsgRange.getEnd()), "");
293     } else {
294       if (NeedsParen)
295         commit.insertWrap("(", receiver->getSourceRange(), ")");
296       std::string PropertyDotString = ".";
297       PropertyDotString += Prop->getName();
298       PropertyDotString += " =";
299       const Expr*const* Args = Msg->getArgs();
300       const Expr *RHS = Args[0];
301       if (!RHS)
302         return false;
303       SourceLocation BegLoc =
304         ReceiverIsSuper ? Msg->getSuperLoc() : receiver->getLocEnd();
305       BegLoc = PP.getLocForEndOfToken(BegLoc);
306       SourceLocation EndLoc = RHS->getLocStart();
307       EndLoc = EndLoc.getLocWithOffset(-1);
308       SourceRange Range(BegLoc, EndLoc);
309       commit.replace(Range, PropertyDotString);
310       // remove '[' ']'
311       commit.replace(SourceRange(MsgRange.getBegin(), MsgRange.getBegin()), "");
312       commit.replace(SourceRange(MsgRange.getEnd(), MsgRange.getEnd()), "");
313     }
314     return true;
315   }
316 
317 
318 class ObjCMigrator : public RecursiveASTVisitor<ObjCMigrator> {
319   ObjCMigrateASTConsumer &Consumer;
320   ParentMap &PMap;
321 
322 public:
ObjCMigrator(ObjCMigrateASTConsumer & consumer,ParentMap & PMap)323   ObjCMigrator(ObjCMigrateASTConsumer &consumer, ParentMap &PMap)
324     : Consumer(consumer), PMap(PMap) { }
325 
shouldVisitTemplateInstantiations() const326   bool shouldVisitTemplateInstantiations() const { return false; }
shouldWalkTypesOfTypeLocs() const327   bool shouldWalkTypesOfTypeLocs() const { return false; }
328 
VisitObjCMessageExpr(ObjCMessageExpr * E)329   bool VisitObjCMessageExpr(ObjCMessageExpr *E) {
330     if (Consumer.ASTMigrateActions & FrontendOptions::ObjCMT_Literals) {
331       edit::Commit commit(*Consumer.Editor);
332       edit::rewriteToObjCLiteralSyntax(E, *Consumer.NSAPIObj, commit, &PMap);
333       Consumer.Editor->commit(commit);
334     }
335 
336     if (Consumer.ASTMigrateActions & FrontendOptions::ObjCMT_Subscripting) {
337       edit::Commit commit(*Consumer.Editor);
338       edit::rewriteToObjCSubscriptSyntax(E, *Consumer.NSAPIObj, commit);
339       Consumer.Editor->commit(commit);
340     }
341 
342     if (Consumer.ASTMigrateActions & FrontendOptions::ObjCMT_PropertyDotSyntax) {
343       edit::Commit commit(*Consumer.Editor);
344       rewriteToPropertyDotSyntax(E, Consumer.PP, *Consumer.NSAPIObj,
345                                  commit, &PMap);
346       Consumer.Editor->commit(commit);
347     }
348 
349     return true;
350   }
351 
TraverseObjCMessageExpr(ObjCMessageExpr * E)352   bool TraverseObjCMessageExpr(ObjCMessageExpr *E) {
353     // Do depth first; we want to rewrite the subexpressions first so that if
354     // we have to move expressions we will move them already rewritten.
355     for (Stmt::child_range range = E->children(); range; ++range)
356       if (!TraverseStmt(*range))
357         return false;
358 
359     return WalkUpFromObjCMessageExpr(E);
360   }
361 };
362 
363 class BodyMigrator : public RecursiveASTVisitor<BodyMigrator> {
364   ObjCMigrateASTConsumer &Consumer;
365   std::unique_ptr<ParentMap> PMap;
366 
367 public:
BodyMigrator(ObjCMigrateASTConsumer & consumer)368   BodyMigrator(ObjCMigrateASTConsumer &consumer) : Consumer(consumer) { }
369 
shouldVisitTemplateInstantiations() const370   bool shouldVisitTemplateInstantiations() const { return false; }
shouldWalkTypesOfTypeLocs() const371   bool shouldWalkTypesOfTypeLocs() const { return false; }
372 
TraverseStmt(Stmt * S)373   bool TraverseStmt(Stmt *S) {
374     PMap.reset(new ParentMap(S));
375     ObjCMigrator(Consumer, *PMap).TraverseStmt(S);
376     return true;
377   }
378 };
379 }
380 
migrateDecl(Decl * D)381 void ObjCMigrateASTConsumer::migrateDecl(Decl *D) {
382   if (!D)
383     return;
384   if (isa<ObjCMethodDecl>(D))
385     return; // Wait for the ObjC container declaration.
386 
387   BodyMigrator(*this).TraverseDecl(D);
388 }
389 
append_attr(std::string & PropertyString,const char * attr,bool & LParenAdded)390 static void append_attr(std::string &PropertyString, const char *attr,
391                         bool &LParenAdded) {
392   if (!LParenAdded) {
393     PropertyString += "(";
394     LParenAdded = true;
395   }
396   else
397     PropertyString += ", ";
398   PropertyString += attr;
399 }
400 
401 static
MigrateBlockOrFunctionPointerTypeVariable(std::string & PropertyString,const std::string & TypeString,const char * name)402 void MigrateBlockOrFunctionPointerTypeVariable(std::string & PropertyString,
403                                                const std::string& TypeString,
404                                                const char *name) {
405   const char *argPtr = TypeString.c_str();
406   int paren = 0;
407   while (*argPtr) {
408     switch (*argPtr) {
409       case '(':
410         PropertyString += *argPtr;
411         paren++;
412         break;
413       case ')':
414         PropertyString += *argPtr;
415         paren--;
416         break;
417       case '^':
418       case '*':
419         PropertyString += (*argPtr);
420         if (paren == 1) {
421           PropertyString += name;
422           name = "";
423         }
424         break;
425       default:
426         PropertyString += *argPtr;
427         break;
428     }
429     argPtr++;
430   }
431 }
432 
PropertyMemoryAttribute(ASTContext & Context,QualType ArgType)433 static const char *PropertyMemoryAttribute(ASTContext &Context, QualType ArgType) {
434   Qualifiers::ObjCLifetime propertyLifetime = ArgType.getObjCLifetime();
435   bool RetainableObject = ArgType->isObjCRetainableType();
436   if (RetainableObject &&
437       (propertyLifetime == Qualifiers::OCL_Strong
438        || propertyLifetime == Qualifiers::OCL_None)) {
439     if (const ObjCObjectPointerType *ObjPtrTy =
440         ArgType->getAs<ObjCObjectPointerType>()) {
441       ObjCInterfaceDecl *IDecl = ObjPtrTy->getObjectType()->getInterface();
442       if (IDecl &&
443           IDecl->lookupNestedProtocol(&Context.Idents.get("NSCopying")))
444         return "copy";
445       else
446         return "strong";
447     }
448     else if (ArgType->isBlockPointerType())
449       return "copy";
450   } else if (propertyLifetime == Qualifiers::OCL_Weak)
451     // TODO. More precise determination of 'weak' attribute requires
452     // looking into setter's implementation for backing weak ivar.
453     return "weak";
454   else if (RetainableObject)
455     return ArgType->isBlockPointerType() ? "copy" : "strong";
456   return nullptr;
457 }
458 
rewriteToObjCProperty(const ObjCMethodDecl * Getter,const ObjCMethodDecl * Setter,const NSAPI & NS,edit::Commit & commit,unsigned LengthOfPrefix,bool Atomic,bool UseNsIosOnlyMacro,bool AvailabilityArgsMatch)459 static void rewriteToObjCProperty(const ObjCMethodDecl *Getter,
460                                   const ObjCMethodDecl *Setter,
461                                   const NSAPI &NS, edit::Commit &commit,
462                                   unsigned LengthOfPrefix,
463                                   bool Atomic, bool UseNsIosOnlyMacro,
464                                   bool AvailabilityArgsMatch) {
465   ASTContext &Context = NS.getASTContext();
466   bool LParenAdded = false;
467   std::string PropertyString = "@property ";
468   if (UseNsIosOnlyMacro && Context.Idents.get("NS_NONATOMIC_IOSONLY").hasMacroDefinition()) {
469     PropertyString += "(NS_NONATOMIC_IOSONLY";
470     LParenAdded = true;
471   } else if (!Atomic) {
472     PropertyString += "(nonatomic";
473     LParenAdded = true;
474   }
475 
476   std::string PropertyNameString = Getter->getNameAsString();
477   StringRef PropertyName(PropertyNameString);
478   if (LengthOfPrefix > 0) {
479     if (!LParenAdded) {
480       PropertyString += "(getter=";
481       LParenAdded = true;
482     }
483     else
484       PropertyString += ", getter=";
485     PropertyString += PropertyNameString;
486   }
487   // Property with no setter may be suggested as a 'readonly' property.
488   if (!Setter)
489     append_attr(PropertyString, "readonly", LParenAdded);
490 
491 
492   // Short circuit 'delegate' properties that contain the name "delegate" or
493   // "dataSource", or have exact name "target" to have 'assign' attribute.
494   if (PropertyName.equals("target") ||
495       (PropertyName.find("delegate") != StringRef::npos) ||
496       (PropertyName.find("dataSource") != StringRef::npos)) {
497     QualType QT = Getter->getReturnType();
498     if (!QT->isRealType())
499       append_attr(PropertyString, "assign", LParenAdded);
500   } else if (!Setter) {
501     QualType ResType = Context.getCanonicalType(Getter->getReturnType());
502     if (const char *MemoryManagementAttr = PropertyMemoryAttribute(Context, ResType))
503       append_attr(PropertyString, MemoryManagementAttr, LParenAdded);
504   } else {
505     const ParmVarDecl *argDecl = *Setter->param_begin();
506     QualType ArgType = Context.getCanonicalType(argDecl->getType());
507     if (const char *MemoryManagementAttr = PropertyMemoryAttribute(Context, ArgType))
508       append_attr(PropertyString, MemoryManagementAttr, LParenAdded);
509   }
510   if (LParenAdded)
511     PropertyString += ')';
512   QualType RT = Getter->getReturnType();
513   if (!isa<TypedefType>(RT)) {
514     // strip off any ARC lifetime qualifier.
515     QualType CanResultTy = Context.getCanonicalType(RT);
516     if (CanResultTy.getQualifiers().hasObjCLifetime()) {
517       Qualifiers Qs = CanResultTy.getQualifiers();
518       Qs.removeObjCLifetime();
519       RT = Context.getQualifiedType(CanResultTy.getUnqualifiedType(), Qs);
520     }
521   }
522   PropertyString += " ";
523   PrintingPolicy SubPolicy(Context.getPrintingPolicy());
524   SubPolicy.SuppressStrongLifetime = true;
525   SubPolicy.SuppressLifetimeQualifiers = true;
526   std::string TypeString = RT.getAsString(SubPolicy);
527   if (LengthOfPrefix > 0) {
528     // property name must strip off "is" and lower case the first character
529     // after that; e.g. isContinuous will become continuous.
530     StringRef PropertyNameStringRef(PropertyNameString);
531     PropertyNameStringRef = PropertyNameStringRef.drop_front(LengthOfPrefix);
532     PropertyNameString = PropertyNameStringRef;
533     bool NoLowering = (isUppercase(PropertyNameString[0]) &&
534                        PropertyNameString.size() > 1 &&
535                        isUppercase(PropertyNameString[1]));
536     if (!NoLowering)
537       PropertyNameString[0] = toLowercase(PropertyNameString[0]);
538   }
539   if (RT->isBlockPointerType() || RT->isFunctionPointerType())
540     MigrateBlockOrFunctionPointerTypeVariable(PropertyString,
541                                               TypeString,
542                                               PropertyNameString.c_str());
543   else {
544     char LastChar = TypeString[TypeString.size()-1];
545     PropertyString += TypeString;
546     if (LastChar != '*')
547       PropertyString += ' ';
548     PropertyString += PropertyNameString;
549   }
550   SourceLocation StartGetterSelectorLoc = Getter->getSelectorStartLoc();
551   Selector GetterSelector = Getter->getSelector();
552 
553   SourceLocation EndGetterSelectorLoc =
554     StartGetterSelectorLoc.getLocWithOffset(GetterSelector.getNameForSlot(0).size());
555   commit.replace(CharSourceRange::getCharRange(Getter->getLocStart(),
556                                                EndGetterSelectorLoc),
557                  PropertyString);
558   if (Setter && AvailabilityArgsMatch) {
559     SourceLocation EndLoc = Setter->getDeclaratorEndLoc();
560     // Get location past ';'
561     EndLoc = EndLoc.getLocWithOffset(1);
562     SourceLocation BeginOfSetterDclLoc = Setter->getLocStart();
563     // FIXME. This assumes that setter decl; is immediately preceded by eoln.
564     // It is trying to remove the setter method decl. line entirely.
565     BeginOfSetterDclLoc = BeginOfSetterDclLoc.getLocWithOffset(-1);
566     commit.remove(SourceRange(BeginOfSetterDclLoc, EndLoc));
567   }
568 }
569 
IsCategoryNameWithDeprecatedSuffix(ObjCContainerDecl * D)570 static bool IsCategoryNameWithDeprecatedSuffix(ObjCContainerDecl *D) {
571   if (ObjCCategoryDecl *CatDecl = dyn_cast<ObjCCategoryDecl>(D)) {
572     StringRef Name = CatDecl->getName();
573     return Name.endswith("Deprecated");
574   }
575   return false;
576 }
577 
migrateObjCInterfaceDecl(ASTContext & Ctx,ObjCContainerDecl * D)578 void ObjCMigrateASTConsumer::migrateObjCInterfaceDecl(ASTContext &Ctx,
579                                                       ObjCContainerDecl *D) {
580   if (D->isDeprecated() || IsCategoryNameWithDeprecatedSuffix(D))
581     return;
582 
583   for (auto *Method : D->methods()) {
584     if (Method->isDeprecated())
585       continue;
586     bool PropertyInferred = migrateProperty(Ctx, D, Method);
587     // If a property is inferred, do not attempt to attach NS_RETURNS_INNER_POINTER to
588     // the getter method as it ends up on the property itself which we don't want
589     // to do unless -objcmt-returns-innerpointer-property  option is on.
590     if (!PropertyInferred ||
591         (ASTMigrateActions & FrontendOptions::ObjCMT_ReturnsInnerPointerProperty))
592       if (ASTMigrateActions & FrontendOptions::ObjCMT_Annotation)
593         migrateNsReturnsInnerPointer(Ctx, Method);
594   }
595   if (!(ASTMigrateActions & FrontendOptions::ObjCMT_ReturnsInnerPointerProperty))
596     return;
597 
598   for (auto *Prop : D->properties()) {
599     if ((ASTMigrateActions & FrontendOptions::ObjCMT_Annotation) &&
600         !Prop->isDeprecated())
601       migratePropertyNsReturnsInnerPointer(Ctx, Prop);
602   }
603 }
604 
605 static bool
ClassImplementsAllMethodsAndProperties(ASTContext & Ctx,const ObjCImplementationDecl * ImpDecl,const ObjCInterfaceDecl * IDecl,ObjCProtocolDecl * Protocol)606 ClassImplementsAllMethodsAndProperties(ASTContext &Ctx,
607                                       const ObjCImplementationDecl *ImpDecl,
608                                        const ObjCInterfaceDecl *IDecl,
609                                       ObjCProtocolDecl *Protocol) {
610   // In auto-synthesis, protocol properties are not synthesized. So,
611   // a conforming protocol must have its required properties declared
612   // in class interface.
613   bool HasAtleastOneRequiredProperty = false;
614   if (const ObjCProtocolDecl *PDecl = Protocol->getDefinition())
615     for (const auto *Property : PDecl->properties()) {
616       if (Property->getPropertyImplementation() == ObjCPropertyDecl::Optional)
617         continue;
618       HasAtleastOneRequiredProperty = true;
619       DeclContext::lookup_const_result R = IDecl->lookup(Property->getDeclName());
620       if (R.size() == 0) {
621         // Relax the rule and look into class's implementation for a synthesize
622         // or dynamic declaration. Class is implementing a property coming from
623         // another protocol. This still makes the target protocol as conforming.
624         if (!ImpDecl->FindPropertyImplDecl(
625                                   Property->getDeclName().getAsIdentifierInfo()))
626           return false;
627       }
628       else if (ObjCPropertyDecl *ClassProperty = dyn_cast<ObjCPropertyDecl>(R[0])) {
629           if ((ClassProperty->getPropertyAttributes()
630               != Property->getPropertyAttributes()) ||
631               !Ctx.hasSameType(ClassProperty->getType(), Property->getType()))
632             return false;
633       }
634       else
635         return false;
636     }
637 
638   // At this point, all required properties in this protocol conform to those
639   // declared in the class.
640   // Check that class implements the required methods of the protocol too.
641   bool HasAtleastOneRequiredMethod = false;
642   if (const ObjCProtocolDecl *PDecl = Protocol->getDefinition()) {
643     if (PDecl->meth_begin() == PDecl->meth_end())
644       return HasAtleastOneRequiredProperty;
645     for (const auto *MD : PDecl->methods()) {
646       if (MD->isImplicit())
647         continue;
648       if (MD->getImplementationControl() == ObjCMethodDecl::Optional)
649         continue;
650       DeclContext::lookup_const_result R = ImpDecl->lookup(MD->getDeclName());
651       if (R.size() == 0)
652         return false;
653       bool match = false;
654       HasAtleastOneRequiredMethod = true;
655       for (unsigned I = 0, N = R.size(); I != N; ++I)
656         if (ObjCMethodDecl *ImpMD = dyn_cast<ObjCMethodDecl>(R[0]))
657           if (Ctx.ObjCMethodsAreEqual(MD, ImpMD)) {
658             match = true;
659             break;
660           }
661       if (!match)
662         return false;
663     }
664   }
665   if (HasAtleastOneRequiredProperty || HasAtleastOneRequiredMethod)
666     return true;
667   return false;
668 }
669 
rewriteToObjCInterfaceDecl(const ObjCInterfaceDecl * IDecl,llvm::SmallVectorImpl<ObjCProtocolDecl * > & ConformingProtocols,const NSAPI & NS,edit::Commit & commit)670 static bool rewriteToObjCInterfaceDecl(const ObjCInterfaceDecl *IDecl,
671                     llvm::SmallVectorImpl<ObjCProtocolDecl*> &ConformingProtocols,
672                     const NSAPI &NS, edit::Commit &commit) {
673   const ObjCList<ObjCProtocolDecl> &Protocols = IDecl->getReferencedProtocols();
674   std::string ClassString;
675   SourceLocation EndLoc =
676   IDecl->getSuperClass() ? IDecl->getSuperClassLoc() : IDecl->getLocation();
677 
678   if (Protocols.empty()) {
679     ClassString = '<';
680     for (unsigned i = 0, e = ConformingProtocols.size(); i != e; i++) {
681       ClassString += ConformingProtocols[i]->getNameAsString();
682       if (i != (e-1))
683         ClassString += ", ";
684     }
685     ClassString += "> ";
686   }
687   else {
688     ClassString = ", ";
689     for (unsigned i = 0, e = ConformingProtocols.size(); i != e; i++) {
690       ClassString += ConformingProtocols[i]->getNameAsString();
691       if (i != (e-1))
692         ClassString += ", ";
693     }
694     ObjCInterfaceDecl::protocol_loc_iterator PL = IDecl->protocol_loc_end() - 1;
695     EndLoc = *PL;
696   }
697 
698   commit.insertAfterToken(EndLoc, ClassString);
699   return true;
700 }
701 
GetUnsignedName(StringRef NSIntegerName)702 static StringRef GetUnsignedName(StringRef NSIntegerName) {
703   StringRef UnsignedName = llvm::StringSwitch<StringRef>(NSIntegerName)
704     .Case("int8_t", "uint8_t")
705     .Case("int16_t", "uint16_t")
706     .Case("int32_t", "uint32_t")
707     .Case("NSInteger", "NSUInteger")
708     .Case("int64_t", "uint64_t")
709     .Default(NSIntegerName);
710   return UnsignedName;
711 }
712 
rewriteToNSEnumDecl(const EnumDecl * EnumDcl,const TypedefDecl * TypedefDcl,const NSAPI & NS,edit::Commit & commit,StringRef NSIntegerName,bool NSOptions)713 static bool rewriteToNSEnumDecl(const EnumDecl *EnumDcl,
714                                 const TypedefDecl *TypedefDcl,
715                                 const NSAPI &NS, edit::Commit &commit,
716                                 StringRef NSIntegerName,
717                                 bool NSOptions) {
718   std::string ClassString;
719   if (NSOptions) {
720     ClassString = "typedef NS_OPTIONS(";
721     ClassString += GetUnsignedName(NSIntegerName);
722   }
723   else {
724     ClassString = "typedef NS_ENUM(";
725     ClassString += NSIntegerName;
726   }
727   ClassString += ", ";
728 
729   ClassString += TypedefDcl->getIdentifier()->getName();
730   ClassString += ')';
731   SourceRange R(EnumDcl->getLocStart(), EnumDcl->getLocStart());
732   commit.replace(R, ClassString);
733   SourceLocation EndOfEnumDclLoc = EnumDcl->getLocEnd();
734   EndOfEnumDclLoc = trans::findSemiAfterLocation(EndOfEnumDclLoc,
735                                                  NS.getASTContext(), /*IsDecl*/true);
736   if (!EndOfEnumDclLoc.isInvalid()) {
737     SourceRange EnumDclRange(EnumDcl->getLocStart(), EndOfEnumDclLoc);
738     commit.insertFromRange(TypedefDcl->getLocStart(), EnumDclRange);
739   }
740   else
741     return false;
742 
743   SourceLocation EndTypedefDclLoc = TypedefDcl->getLocEnd();
744   EndTypedefDclLoc = trans::findSemiAfterLocation(EndTypedefDclLoc,
745                                                  NS.getASTContext(), /*IsDecl*/true);
746   if (!EndTypedefDclLoc.isInvalid()) {
747     SourceRange TDRange(TypedefDcl->getLocStart(), EndTypedefDclLoc);
748     commit.remove(TDRange);
749   }
750   else
751     return false;
752 
753   EndOfEnumDclLoc = trans::findLocationAfterSemi(EnumDcl->getLocEnd(), NS.getASTContext(),
754                                                  /*IsDecl*/true);
755   if (!EndOfEnumDclLoc.isInvalid()) {
756     SourceLocation BeginOfEnumDclLoc = EnumDcl->getLocStart();
757     // FIXME. This assumes that enum decl; is immediately preceded by eoln.
758     // It is trying to remove the enum decl. lines entirely.
759     BeginOfEnumDclLoc = BeginOfEnumDclLoc.getLocWithOffset(-1);
760     commit.remove(SourceRange(BeginOfEnumDclLoc, EndOfEnumDclLoc));
761     return true;
762   }
763   return false;
764 }
765 
rewriteToNSMacroDecl(ASTContext & Ctx,const EnumDecl * EnumDcl,const TypedefDecl * TypedefDcl,const NSAPI & NS,edit::Commit & commit,bool IsNSIntegerType)766 static void rewriteToNSMacroDecl(ASTContext &Ctx,
767                                  const EnumDecl *EnumDcl,
768                                 const TypedefDecl *TypedefDcl,
769                                 const NSAPI &NS, edit::Commit &commit,
770                                  bool IsNSIntegerType) {
771   QualType EnumUnderlyingT = EnumDcl->getPromotionType();
772   assert(!EnumUnderlyingT.isNull()
773          && "rewriteToNSMacroDecl - underlying enum type is null");
774 
775   PrintingPolicy Policy(Ctx.getPrintingPolicy());
776   std::string TypeString = EnumUnderlyingT.getAsString(Policy);
777   std::string ClassString = IsNSIntegerType ? "NS_ENUM(" : "NS_OPTIONS(";
778   ClassString += TypeString;
779   ClassString += ", ";
780 
781   ClassString += TypedefDcl->getIdentifier()->getName();
782   ClassString += ')';
783   SourceRange R(EnumDcl->getLocStart(), EnumDcl->getLocStart());
784   commit.replace(R, ClassString);
785   // This is to remove spaces between '}' and typedef name.
786   SourceLocation StartTypedefLoc = EnumDcl->getLocEnd();
787   StartTypedefLoc = StartTypedefLoc.getLocWithOffset(+1);
788   SourceLocation EndTypedefLoc = TypedefDcl->getLocEnd();
789 
790   commit.remove(SourceRange(StartTypedefLoc, EndTypedefLoc));
791 }
792 
UseNSOptionsMacro(Preprocessor & PP,ASTContext & Ctx,const EnumDecl * EnumDcl)793 static bool UseNSOptionsMacro(Preprocessor &PP, ASTContext &Ctx,
794                               const EnumDecl *EnumDcl) {
795   bool PowerOfTwo = true;
796   bool AllHexdecimalEnumerator = true;
797   uint64_t MaxPowerOfTwoVal = 0;
798   for (auto Enumerator : EnumDcl->enumerators()) {
799     const Expr *InitExpr = Enumerator->getInitExpr();
800     if (!InitExpr) {
801       PowerOfTwo = false;
802       AllHexdecimalEnumerator = false;
803       continue;
804     }
805     InitExpr = InitExpr->IgnoreParenCasts();
806     if (const BinaryOperator *BO = dyn_cast<BinaryOperator>(InitExpr))
807       if (BO->isShiftOp() || BO->isBitwiseOp())
808         return true;
809 
810     uint64_t EnumVal = Enumerator->getInitVal().getZExtValue();
811     if (PowerOfTwo && EnumVal) {
812       if (!llvm::isPowerOf2_64(EnumVal))
813         PowerOfTwo = false;
814       else if (EnumVal > MaxPowerOfTwoVal)
815         MaxPowerOfTwoVal = EnumVal;
816     }
817     if (AllHexdecimalEnumerator && EnumVal) {
818       bool FoundHexdecimalEnumerator = false;
819       SourceLocation EndLoc = Enumerator->getLocEnd();
820       Token Tok;
821       if (!PP.getRawToken(EndLoc, Tok, /*IgnoreWhiteSpace=*/true))
822         if (Tok.isLiteral() && Tok.getLength() > 2) {
823           if (const char *StringLit = Tok.getLiteralData())
824             FoundHexdecimalEnumerator =
825               (StringLit[0] == '0' && (toLowercase(StringLit[1]) == 'x'));
826         }
827       if (!FoundHexdecimalEnumerator)
828         AllHexdecimalEnumerator = false;
829     }
830   }
831   return AllHexdecimalEnumerator || (PowerOfTwo && (MaxPowerOfTwoVal > 2));
832 }
833 
migrateProtocolConformance(ASTContext & Ctx,const ObjCImplementationDecl * ImpDecl)834 void ObjCMigrateASTConsumer::migrateProtocolConformance(ASTContext &Ctx,
835                                             const ObjCImplementationDecl *ImpDecl) {
836   const ObjCInterfaceDecl *IDecl = ImpDecl->getClassInterface();
837   if (!IDecl || ObjCProtocolDecls.empty() || IDecl->isDeprecated())
838     return;
839   // Find all implicit conforming protocols for this class
840   // and make them explicit.
841   llvm::SmallPtrSet<ObjCProtocolDecl *, 8> ExplicitProtocols;
842   Ctx.CollectInheritedProtocols(IDecl, ExplicitProtocols);
843   llvm::SmallVector<ObjCProtocolDecl *, 8> PotentialImplicitProtocols;
844 
845   for (ObjCProtocolDecl *ProtDecl : ObjCProtocolDecls)
846     if (!ExplicitProtocols.count(ProtDecl))
847       PotentialImplicitProtocols.push_back(ProtDecl);
848 
849   if (PotentialImplicitProtocols.empty())
850     return;
851 
852   // go through list of non-optional methods and properties in each protocol
853   // in the PotentialImplicitProtocols list. If class implements every one of the
854   // methods and properties, then this class conforms to this protocol.
855   llvm::SmallVector<ObjCProtocolDecl*, 8> ConformingProtocols;
856   for (unsigned i = 0, e = PotentialImplicitProtocols.size(); i != e; i++)
857     if (ClassImplementsAllMethodsAndProperties(Ctx, ImpDecl, IDecl,
858                                               PotentialImplicitProtocols[i]))
859       ConformingProtocols.push_back(PotentialImplicitProtocols[i]);
860 
861   if (ConformingProtocols.empty())
862     return;
863 
864   // Further reduce number of conforming protocols. If protocol P1 is in the list
865   // protocol P2 (P2<P1>), No need to include P1.
866   llvm::SmallVector<ObjCProtocolDecl*, 8> MinimalConformingProtocols;
867   for (unsigned i = 0, e = ConformingProtocols.size(); i != e; i++) {
868     bool DropIt = false;
869     ObjCProtocolDecl *TargetPDecl = ConformingProtocols[i];
870     for (unsigned i1 = 0, e1 = ConformingProtocols.size(); i1 != e1; i1++) {
871       ObjCProtocolDecl *PDecl = ConformingProtocols[i1];
872       if (PDecl == TargetPDecl)
873         continue;
874       if (PDecl->lookupProtocolNamed(
875             TargetPDecl->getDeclName().getAsIdentifierInfo())) {
876         DropIt = true;
877         break;
878       }
879     }
880     if (!DropIt)
881       MinimalConformingProtocols.push_back(TargetPDecl);
882   }
883   if (MinimalConformingProtocols.empty())
884     return;
885   edit::Commit commit(*Editor);
886   rewriteToObjCInterfaceDecl(IDecl, MinimalConformingProtocols,
887                              *NSAPIObj, commit);
888   Editor->commit(commit);
889 }
890 
CacheObjCNSIntegerTypedefed(const TypedefDecl * TypedefDcl)891 void ObjCMigrateASTConsumer::CacheObjCNSIntegerTypedefed(
892                                           const TypedefDecl *TypedefDcl) {
893 
894   QualType qt = TypedefDcl->getTypeSourceInfo()->getType();
895   if (NSAPIObj->isObjCNSIntegerType(qt))
896     NSIntegerTypedefed = TypedefDcl;
897   else if (NSAPIObj->isObjCNSUIntegerType(qt))
898     NSUIntegerTypedefed = TypedefDcl;
899 }
900 
migrateNSEnumDecl(ASTContext & Ctx,const EnumDecl * EnumDcl,const TypedefDecl * TypedefDcl)901 bool ObjCMigrateASTConsumer::migrateNSEnumDecl(ASTContext &Ctx,
902                                            const EnumDecl *EnumDcl,
903                                            const TypedefDecl *TypedefDcl) {
904   if (!EnumDcl->isCompleteDefinition() || EnumDcl->getIdentifier() ||
905       EnumDcl->isDeprecated() || EnumDcl->getIntegerTypeSourceInfo())
906     return false;
907   if (!TypedefDcl) {
908     if (NSIntegerTypedefed) {
909       TypedefDcl = NSIntegerTypedefed;
910       NSIntegerTypedefed = nullptr;
911     }
912     else if (NSUIntegerTypedefed) {
913       TypedefDcl = NSUIntegerTypedefed;
914       NSUIntegerTypedefed = nullptr;
915     }
916     else
917       return false;
918     FileID FileIdOfTypedefDcl =
919       PP.getSourceManager().getFileID(TypedefDcl->getLocation());
920     FileID FileIdOfEnumDcl =
921       PP.getSourceManager().getFileID(EnumDcl->getLocation());
922     if (FileIdOfTypedefDcl != FileIdOfEnumDcl)
923       return false;
924   }
925   if (TypedefDcl->isDeprecated())
926     return false;
927 
928   QualType qt = TypedefDcl->getTypeSourceInfo()->getType();
929   StringRef NSIntegerName = NSAPIObj->GetNSIntegralKind(qt);
930 
931   if (NSIntegerName.empty()) {
932     // Also check for typedef enum {...} TD;
933     if (const EnumType *EnumTy = qt->getAs<EnumType>()) {
934       if (EnumTy->getDecl() == EnumDcl) {
935         bool NSOptions = UseNSOptionsMacro(PP, Ctx, EnumDcl);
936         if (!InsertFoundation(Ctx, TypedefDcl->getLocStart()))
937           return false;
938         edit::Commit commit(*Editor);
939         rewriteToNSMacroDecl(Ctx, EnumDcl, TypedefDcl, *NSAPIObj, commit, !NSOptions);
940         Editor->commit(commit);
941         return true;
942       }
943     }
944     return false;
945   }
946 
947   // We may still use NS_OPTIONS based on what we find in the enumertor list.
948   bool NSOptions = UseNSOptionsMacro(PP, Ctx, EnumDcl);
949   if (!InsertFoundation(Ctx, TypedefDcl->getLocStart()))
950     return false;
951   edit::Commit commit(*Editor);
952   bool Res = rewriteToNSEnumDecl(EnumDcl, TypedefDcl, *NSAPIObj,
953                                  commit, NSIntegerName, NSOptions);
954   Editor->commit(commit);
955   return Res;
956 }
957 
ReplaceWithInstancetype(ASTContext & Ctx,const ObjCMigrateASTConsumer & ASTC,ObjCMethodDecl * OM)958 static void ReplaceWithInstancetype(ASTContext &Ctx,
959                                     const ObjCMigrateASTConsumer &ASTC,
960                                     ObjCMethodDecl *OM) {
961   if (OM->getReturnType() == Ctx.getObjCInstanceType())
962     return; // already has instancetype.
963 
964   SourceRange R;
965   std::string ClassString;
966   if (TypeSourceInfo *TSInfo = OM->getReturnTypeSourceInfo()) {
967     TypeLoc TL = TSInfo->getTypeLoc();
968     R = SourceRange(TL.getBeginLoc(), TL.getEndLoc());
969     ClassString = "instancetype";
970   }
971   else {
972     R = SourceRange(OM->getLocStart(), OM->getLocStart());
973     ClassString = OM->isInstanceMethod() ? '-' : '+';
974     ClassString += " (instancetype)";
975   }
976   edit::Commit commit(*ASTC.Editor);
977   commit.replace(R, ClassString);
978   ASTC.Editor->commit(commit);
979 }
980 
ReplaceWithClasstype(const ObjCMigrateASTConsumer & ASTC,ObjCMethodDecl * OM)981 static void ReplaceWithClasstype(const ObjCMigrateASTConsumer &ASTC,
982                                     ObjCMethodDecl *OM) {
983   ObjCInterfaceDecl *IDecl = OM->getClassInterface();
984   SourceRange R;
985   std::string ClassString;
986   if (TypeSourceInfo *TSInfo = OM->getReturnTypeSourceInfo()) {
987     TypeLoc TL = TSInfo->getTypeLoc();
988     R = SourceRange(TL.getBeginLoc(), TL.getEndLoc()); {
989       ClassString  = IDecl->getName();
990       ClassString += "*";
991     }
992   }
993   else {
994     R = SourceRange(OM->getLocStart(), OM->getLocStart());
995     ClassString = "+ (";
996     ClassString += IDecl->getName(); ClassString += "*)";
997   }
998   edit::Commit commit(*ASTC.Editor);
999   commit.replace(R, ClassString);
1000   ASTC.Editor->commit(commit);
1001 }
1002 
migrateMethodInstanceType(ASTContext & Ctx,ObjCContainerDecl * CDecl,ObjCMethodDecl * OM)1003 void ObjCMigrateASTConsumer::migrateMethodInstanceType(ASTContext &Ctx,
1004                                                        ObjCContainerDecl *CDecl,
1005                                                        ObjCMethodDecl *OM) {
1006   ObjCInstanceTypeFamily OIT_Family =
1007     Selector::getInstTypeMethodFamily(OM->getSelector());
1008 
1009   std::string ClassName;
1010   switch (OIT_Family) {
1011     case OIT_None:
1012       migrateFactoryMethod(Ctx, CDecl, OM);
1013       return;
1014     case OIT_Array:
1015       ClassName = "NSArray";
1016       break;
1017     case OIT_Dictionary:
1018       ClassName = "NSDictionary";
1019       break;
1020     case OIT_Singleton:
1021       migrateFactoryMethod(Ctx, CDecl, OM, OIT_Singleton);
1022       return;
1023     case OIT_Init:
1024       if (OM->getReturnType()->isObjCIdType())
1025         ReplaceWithInstancetype(Ctx, *this, OM);
1026       return;
1027     case OIT_ReturnsSelf:
1028       migrateFactoryMethod(Ctx, CDecl, OM, OIT_ReturnsSelf);
1029       return;
1030   }
1031   if (!OM->getReturnType()->isObjCIdType())
1032     return;
1033 
1034   ObjCInterfaceDecl *IDecl = dyn_cast<ObjCInterfaceDecl>(CDecl);
1035   if (!IDecl) {
1036     if (ObjCCategoryDecl *CatDecl = dyn_cast<ObjCCategoryDecl>(CDecl))
1037       IDecl = CatDecl->getClassInterface();
1038     else if (ObjCImplDecl *ImpDecl = dyn_cast<ObjCImplDecl>(CDecl))
1039       IDecl = ImpDecl->getClassInterface();
1040   }
1041   if (!IDecl ||
1042       !IDecl->lookupInheritedClass(&Ctx.Idents.get(ClassName))) {
1043     migrateFactoryMethod(Ctx, CDecl, OM);
1044     return;
1045   }
1046   ReplaceWithInstancetype(Ctx, *this, OM);
1047 }
1048 
TypeIsInnerPointer(QualType T)1049 static bool TypeIsInnerPointer(QualType T) {
1050   if (!T->isAnyPointerType())
1051     return false;
1052   if (T->isObjCObjectPointerType() || T->isObjCBuiltinType() ||
1053       T->isBlockPointerType() || T->isFunctionPointerType() ||
1054       ento::coreFoundation::isCFObjectRef(T))
1055     return false;
1056   // Also, typedef-of-pointer-to-incomplete-struct is something that we assume
1057   // is not an innter pointer type.
1058   QualType OrigT = T;
1059   while (const TypedefType *TD = dyn_cast<TypedefType>(T.getTypePtr()))
1060     T = TD->getDecl()->getUnderlyingType();
1061   if (OrigT == T || !T->isPointerType())
1062     return true;
1063   const PointerType* PT = T->getAs<PointerType>();
1064   QualType UPointeeT = PT->getPointeeType().getUnqualifiedType();
1065   if (UPointeeT->isRecordType()) {
1066     const RecordType *RecordTy = UPointeeT->getAs<RecordType>();
1067     if (!RecordTy->getDecl()->isCompleteDefinition())
1068       return false;
1069   }
1070   return true;
1071 }
1072 
1073 /// \brief Check whether the two versions match.
versionsMatch(const VersionTuple & X,const VersionTuple & Y)1074 static bool versionsMatch(const VersionTuple &X, const VersionTuple &Y) {
1075   return (X == Y);
1076 }
1077 
1078 /// AvailabilityAttrsMatch - This routine checks that if comparing two
1079 /// availability attributes, all their components match. It returns
1080 /// true, if not dealing with availability or when all components of
1081 /// availability attributes match. This routine is only called when
1082 /// the attributes are of the same kind.
AvailabilityAttrsMatch(Attr * At1,Attr * At2)1083 static bool AvailabilityAttrsMatch(Attr *At1, Attr *At2) {
1084   const AvailabilityAttr *AA1 = dyn_cast<AvailabilityAttr>(At1);
1085   if (!AA1)
1086     return true;
1087   const AvailabilityAttr *AA2 = dyn_cast<AvailabilityAttr>(At2);
1088 
1089   VersionTuple Introduced1 = AA1->getIntroduced();
1090   VersionTuple Deprecated1 = AA1->getDeprecated();
1091   VersionTuple Obsoleted1 = AA1->getObsoleted();
1092   bool IsUnavailable1 = AA1->getUnavailable();
1093   VersionTuple Introduced2 = AA2->getIntroduced();
1094   VersionTuple Deprecated2 = AA2->getDeprecated();
1095   VersionTuple Obsoleted2 = AA2->getObsoleted();
1096   bool IsUnavailable2 = AA2->getUnavailable();
1097   return (versionsMatch(Introduced1, Introduced2) &&
1098           versionsMatch(Deprecated1, Deprecated2) &&
1099           versionsMatch(Obsoleted1, Obsoleted2) &&
1100           IsUnavailable1 == IsUnavailable2);
1101 
1102 }
1103 
MatchTwoAttributeLists(const AttrVec & Attrs1,const AttrVec & Attrs2,bool & AvailabilityArgsMatch)1104 static bool MatchTwoAttributeLists(const AttrVec &Attrs1, const AttrVec &Attrs2,
1105                                    bool &AvailabilityArgsMatch) {
1106   // This list is very small, so this need not be optimized.
1107   for (unsigned i = 0, e = Attrs1.size(); i != e; i++) {
1108     bool match = false;
1109     for (unsigned j = 0, f = Attrs2.size(); j != f; j++) {
1110       // Matching attribute kind only. Except for Availabilty attributes,
1111       // we are not getting into details of the attributes. For all practical purposes
1112       // this is sufficient.
1113       if (Attrs1[i]->getKind() == Attrs2[j]->getKind()) {
1114         if (AvailabilityArgsMatch)
1115           AvailabilityArgsMatch = AvailabilityAttrsMatch(Attrs1[i], Attrs2[j]);
1116         match = true;
1117         break;
1118       }
1119     }
1120     if (!match)
1121       return false;
1122   }
1123   return true;
1124 }
1125 
1126 /// AttributesMatch - This routine checks list of attributes for two
1127 /// decls. It returns false, if there is a mismatch in kind of
1128 /// attributes seen in the decls. It returns true if the two decls
1129 /// have list of same kind of attributes. Furthermore, when there
1130 /// are availability attributes in the two decls, it sets the
1131 /// AvailabilityArgsMatch to false if availability attributes have
1132 /// different versions, etc.
AttributesMatch(const Decl * Decl1,const Decl * Decl2,bool & AvailabilityArgsMatch)1133 static bool AttributesMatch(const Decl *Decl1, const Decl *Decl2,
1134                             bool &AvailabilityArgsMatch) {
1135   if (!Decl1->hasAttrs() || !Decl2->hasAttrs()) {
1136     AvailabilityArgsMatch = (Decl1->hasAttrs() == Decl2->hasAttrs());
1137     return true;
1138   }
1139   AvailabilityArgsMatch = true;
1140   const AttrVec &Attrs1 = Decl1->getAttrs();
1141   const AttrVec &Attrs2 = Decl2->getAttrs();
1142   bool match = MatchTwoAttributeLists(Attrs1, Attrs2, AvailabilityArgsMatch);
1143   if (match && (Attrs2.size() > Attrs1.size()))
1144     return MatchTwoAttributeLists(Attrs2, Attrs1, AvailabilityArgsMatch);
1145   return match;
1146 }
1147 
IsValidIdentifier(ASTContext & Ctx,const char * Name)1148 static bool IsValidIdentifier(ASTContext &Ctx,
1149                               const char *Name) {
1150   if (!isIdentifierHead(Name[0]))
1151     return false;
1152   std::string NameString = Name;
1153   NameString[0] = toLowercase(NameString[0]);
1154   IdentifierInfo *II = &Ctx.Idents.get(NameString);
1155   return II->getTokenID() ==  tok::identifier;
1156 }
1157 
migrateProperty(ASTContext & Ctx,ObjCContainerDecl * D,ObjCMethodDecl * Method)1158 bool ObjCMigrateASTConsumer::migrateProperty(ASTContext &Ctx,
1159                              ObjCContainerDecl *D,
1160                              ObjCMethodDecl *Method) {
1161   if (Method->isPropertyAccessor() || !Method->isInstanceMethod() ||
1162       Method->param_size() != 0)
1163     return false;
1164   // Is this method candidate to be a getter?
1165   QualType GRT = Method->getReturnType();
1166   if (GRT->isVoidType())
1167     return false;
1168 
1169   Selector GetterSelector = Method->getSelector();
1170   ObjCInstanceTypeFamily OIT_Family =
1171     Selector::getInstTypeMethodFamily(GetterSelector);
1172 
1173   if (OIT_Family != OIT_None)
1174     return false;
1175 
1176   IdentifierInfo *getterName = GetterSelector.getIdentifierInfoForSlot(0);
1177   Selector SetterSelector =
1178   SelectorTable::constructSetterSelector(PP.getIdentifierTable(),
1179                                          PP.getSelectorTable(),
1180                                          getterName);
1181   ObjCMethodDecl *SetterMethod = D->getInstanceMethod(SetterSelector);
1182   unsigned LengthOfPrefix = 0;
1183   if (!SetterMethod) {
1184     // try a different naming convention for getter: isXxxxx
1185     StringRef getterNameString = getterName->getName();
1186     bool IsPrefix = getterNameString.startswith("is");
1187     // Note that we don't want to change an isXXX method of retainable object
1188     // type to property (readonly or otherwise).
1189     if (IsPrefix && GRT->isObjCRetainableType())
1190       return false;
1191     if (IsPrefix || getterNameString.startswith("get")) {
1192       LengthOfPrefix = (IsPrefix ? 2 : 3);
1193       const char *CGetterName = getterNameString.data() + LengthOfPrefix;
1194       // Make sure that first character after "is" or "get" prefix can
1195       // start an identifier.
1196       if (!IsValidIdentifier(Ctx, CGetterName))
1197         return false;
1198       if (CGetterName[0] && isUppercase(CGetterName[0])) {
1199         getterName = &Ctx.Idents.get(CGetterName);
1200         SetterSelector =
1201         SelectorTable::constructSetterSelector(PP.getIdentifierTable(),
1202                                                PP.getSelectorTable(),
1203                                                getterName);
1204         SetterMethod = D->getInstanceMethod(SetterSelector);
1205       }
1206     }
1207   }
1208 
1209   if (SetterMethod) {
1210     if ((ASTMigrateActions & FrontendOptions::ObjCMT_ReadwriteProperty) == 0)
1211       return false;
1212     bool AvailabilityArgsMatch;
1213     if (SetterMethod->isDeprecated() ||
1214         !AttributesMatch(Method, SetterMethod, AvailabilityArgsMatch))
1215       return false;
1216 
1217     // Is this a valid setter, matching the target getter?
1218     QualType SRT = SetterMethod->getReturnType();
1219     if (!SRT->isVoidType())
1220       return false;
1221     const ParmVarDecl *argDecl = *SetterMethod->param_begin();
1222     QualType ArgType = argDecl->getType();
1223     if (!Ctx.hasSameUnqualifiedType(ArgType, GRT))
1224       return false;
1225     edit::Commit commit(*Editor);
1226     rewriteToObjCProperty(Method, SetterMethod, *NSAPIObj, commit,
1227                           LengthOfPrefix,
1228                           (ASTMigrateActions &
1229                            FrontendOptions::ObjCMT_AtomicProperty) != 0,
1230                           (ASTMigrateActions &
1231                            FrontendOptions::ObjCMT_NsAtomicIOSOnlyProperty) != 0,
1232                           AvailabilityArgsMatch);
1233     Editor->commit(commit);
1234     return true;
1235   }
1236   else if (ASTMigrateActions & FrontendOptions::ObjCMT_ReadonlyProperty) {
1237     // Try a non-void method with no argument (and no setter or property of same name
1238     // as a 'readonly' property.
1239     edit::Commit commit(*Editor);
1240     rewriteToObjCProperty(Method, nullptr /*SetterMethod*/, *NSAPIObj, commit,
1241                           LengthOfPrefix,
1242                           (ASTMigrateActions &
1243                            FrontendOptions::ObjCMT_AtomicProperty) != 0,
1244                           (ASTMigrateActions &
1245                            FrontendOptions::ObjCMT_NsAtomicIOSOnlyProperty) != 0,
1246                           /*AvailabilityArgsMatch*/false);
1247     Editor->commit(commit);
1248     return true;
1249   }
1250   return false;
1251 }
1252 
migrateNsReturnsInnerPointer(ASTContext & Ctx,ObjCMethodDecl * OM)1253 void ObjCMigrateASTConsumer::migrateNsReturnsInnerPointer(ASTContext &Ctx,
1254                                                           ObjCMethodDecl *OM) {
1255   if (OM->isImplicit() ||
1256       !OM->isInstanceMethod() ||
1257       OM->hasAttr<ObjCReturnsInnerPointerAttr>())
1258     return;
1259 
1260   QualType RT = OM->getReturnType();
1261   if (!TypeIsInnerPointer(RT) ||
1262       !Ctx.Idents.get("NS_RETURNS_INNER_POINTER").hasMacroDefinition())
1263     return;
1264 
1265   edit::Commit commit(*Editor);
1266   commit.insertBefore(OM->getLocEnd(), " NS_RETURNS_INNER_POINTER");
1267   Editor->commit(commit);
1268 }
1269 
migratePropertyNsReturnsInnerPointer(ASTContext & Ctx,ObjCPropertyDecl * P)1270 void ObjCMigrateASTConsumer::migratePropertyNsReturnsInnerPointer(ASTContext &Ctx,
1271                                                                   ObjCPropertyDecl *P) {
1272   QualType T = P->getType();
1273 
1274   if (!TypeIsInnerPointer(T) ||
1275       !Ctx.Idents.get("NS_RETURNS_INNER_POINTER").hasMacroDefinition())
1276     return;
1277   edit::Commit commit(*Editor);
1278   commit.insertBefore(P->getLocEnd(), " NS_RETURNS_INNER_POINTER ");
1279   Editor->commit(commit);
1280 }
1281 
migrateAllMethodInstaceType(ASTContext & Ctx,ObjCContainerDecl * CDecl)1282 void ObjCMigrateASTConsumer::migrateAllMethodInstaceType(ASTContext &Ctx,
1283                                                  ObjCContainerDecl *CDecl) {
1284   if (CDecl->isDeprecated() || IsCategoryNameWithDeprecatedSuffix(CDecl))
1285     return;
1286 
1287   // migrate methods which can have instancetype as their result type.
1288   for (auto *Method : CDecl->methods()) {
1289     if (Method->isDeprecated())
1290       continue;
1291     migrateMethodInstanceType(Ctx, CDecl, Method);
1292   }
1293 }
1294 
migrateFactoryMethod(ASTContext & Ctx,ObjCContainerDecl * CDecl,ObjCMethodDecl * OM,ObjCInstanceTypeFamily OIT_Family)1295 void ObjCMigrateASTConsumer::migrateFactoryMethod(ASTContext &Ctx,
1296                                                   ObjCContainerDecl *CDecl,
1297                                                   ObjCMethodDecl *OM,
1298                                                   ObjCInstanceTypeFamily OIT_Family) {
1299   if (OM->isInstanceMethod() ||
1300       OM->getReturnType() == Ctx.getObjCInstanceType() ||
1301       !OM->getReturnType()->isObjCIdType())
1302     return;
1303 
1304   // Candidate factory methods are + (id) NaMeXXX : ... which belong to a class
1305   // NSYYYNamE with matching names be at least 3 characters long.
1306   ObjCInterfaceDecl *IDecl = dyn_cast<ObjCInterfaceDecl>(CDecl);
1307   if (!IDecl) {
1308     if (ObjCCategoryDecl *CatDecl = dyn_cast<ObjCCategoryDecl>(CDecl))
1309       IDecl = CatDecl->getClassInterface();
1310     else if (ObjCImplDecl *ImpDecl = dyn_cast<ObjCImplDecl>(CDecl))
1311       IDecl = ImpDecl->getClassInterface();
1312   }
1313   if (!IDecl)
1314     return;
1315 
1316   std::string StringClassName = IDecl->getName();
1317   StringRef LoweredClassName(StringClassName);
1318   std::string StringLoweredClassName = LoweredClassName.lower();
1319   LoweredClassName = StringLoweredClassName;
1320 
1321   IdentifierInfo *MethodIdName = OM->getSelector().getIdentifierInfoForSlot(0);
1322   // Handle method with no name at its first selector slot; e.g. + (id):(int)x.
1323   if (!MethodIdName)
1324     return;
1325 
1326   std::string MethodName = MethodIdName->getName();
1327   if (OIT_Family == OIT_Singleton || OIT_Family == OIT_ReturnsSelf) {
1328     StringRef STRefMethodName(MethodName);
1329     size_t len = 0;
1330     if (STRefMethodName.startswith("standard"))
1331       len = strlen("standard");
1332     else if (STRefMethodName.startswith("shared"))
1333       len = strlen("shared");
1334     else if (STRefMethodName.startswith("default"))
1335       len = strlen("default");
1336     else
1337       return;
1338     MethodName = STRefMethodName.substr(len);
1339   }
1340   std::string MethodNameSubStr = MethodName.substr(0, 3);
1341   StringRef MethodNamePrefix(MethodNameSubStr);
1342   std::string StringLoweredMethodNamePrefix = MethodNamePrefix.lower();
1343   MethodNamePrefix = StringLoweredMethodNamePrefix;
1344   size_t Ix = LoweredClassName.rfind(MethodNamePrefix);
1345   if (Ix == StringRef::npos)
1346     return;
1347   std::string ClassNamePostfix = LoweredClassName.substr(Ix);
1348   StringRef LoweredMethodName(MethodName);
1349   std::string StringLoweredMethodName = LoweredMethodName.lower();
1350   LoweredMethodName = StringLoweredMethodName;
1351   if (!LoweredMethodName.startswith(ClassNamePostfix))
1352     return;
1353   if (OIT_Family == OIT_ReturnsSelf)
1354     ReplaceWithClasstype(*this, OM);
1355   else
1356     ReplaceWithInstancetype(Ctx, *this, OM);
1357 }
1358 
IsVoidStarType(QualType Ty)1359 static bool IsVoidStarType(QualType Ty) {
1360   if (!Ty->isPointerType())
1361     return false;
1362 
1363   while (const TypedefType *TD = dyn_cast<TypedefType>(Ty.getTypePtr()))
1364     Ty = TD->getDecl()->getUnderlyingType();
1365 
1366   // Is the type void*?
1367   const PointerType* PT = Ty->getAs<PointerType>();
1368   if (PT->getPointeeType().getUnqualifiedType()->isVoidType())
1369     return true;
1370   return IsVoidStarType(PT->getPointeeType());
1371 }
1372 
1373 /// AuditedType - This routine audits the type AT and returns false if it is one of known
1374 /// CF object types or of the "void *" variety. It returns true if we don't care about the type
1375 /// such as a non-pointer or pointers which have no ownership issues (such as "int *").
AuditedType(QualType AT)1376 static bool AuditedType (QualType AT) {
1377   if (!AT->isAnyPointerType() && !AT->isBlockPointerType())
1378     return true;
1379   // FIXME. There isn't much we can say about CF pointer type; or is there?
1380   if (ento::coreFoundation::isCFObjectRef(AT) ||
1381       IsVoidStarType(AT) ||
1382       // If an ObjC object is type, assuming that it is not a CF function and
1383       // that it is an un-audited function.
1384       AT->isObjCObjectPointerType() || AT->isObjCBuiltinType())
1385     return false;
1386   // All other pointers are assumed audited as harmless.
1387   return true;
1388 }
1389 
AnnotateImplicitBridging(ASTContext & Ctx)1390 void ObjCMigrateASTConsumer::AnnotateImplicitBridging(ASTContext &Ctx) {
1391   if (CFFunctionIBCandidates.empty())
1392     return;
1393   if (!Ctx.Idents.get("CF_IMPLICIT_BRIDGING_ENABLED").hasMacroDefinition()) {
1394     CFFunctionIBCandidates.clear();
1395     FileId = FileID();
1396     return;
1397   }
1398   // Insert CF_IMPLICIT_BRIDGING_ENABLE/CF_IMPLICIT_BRIDGING_DISABLED
1399   const Decl *FirstFD = CFFunctionIBCandidates[0];
1400   const Decl *LastFD  =
1401     CFFunctionIBCandidates[CFFunctionIBCandidates.size()-1];
1402   const char *PragmaString = "\nCF_IMPLICIT_BRIDGING_ENABLED\n\n";
1403   edit::Commit commit(*Editor);
1404   commit.insertBefore(FirstFD->getLocStart(), PragmaString);
1405   PragmaString = "\n\nCF_IMPLICIT_BRIDGING_DISABLED\n";
1406   SourceLocation EndLoc = LastFD->getLocEnd();
1407   // get location just past end of function location.
1408   EndLoc = PP.getLocForEndOfToken(EndLoc);
1409   if (isa<FunctionDecl>(LastFD)) {
1410     // For Methods, EndLoc points to the ending semcolon. So,
1411     // not of these extra work is needed.
1412     Token Tok;
1413     // get locaiton of token that comes after end of function.
1414     bool Failed = PP.getRawToken(EndLoc, Tok, /*IgnoreWhiteSpace=*/true);
1415     if (!Failed)
1416       EndLoc = Tok.getLocation();
1417   }
1418   commit.insertAfterToken(EndLoc, PragmaString);
1419   Editor->commit(commit);
1420   FileId = FileID();
1421   CFFunctionIBCandidates.clear();
1422 }
1423 
migrateCFAnnotation(ASTContext & Ctx,const Decl * Decl)1424 void ObjCMigrateASTConsumer::migrateCFAnnotation(ASTContext &Ctx, const Decl *Decl) {
1425   if (Decl->isDeprecated())
1426     return;
1427 
1428   if (Decl->hasAttr<CFAuditedTransferAttr>()) {
1429     assert(CFFunctionIBCandidates.empty() &&
1430            "Cannot have audited functions/methods inside user "
1431            "provided CF_IMPLICIT_BRIDGING_ENABLE");
1432     return;
1433   }
1434 
1435   // Finction must be annotated first.
1436   if (const FunctionDecl *FuncDecl = dyn_cast<FunctionDecl>(Decl)) {
1437     CF_BRIDGING_KIND AuditKind = migrateAddFunctionAnnotation(Ctx, FuncDecl);
1438     if (AuditKind == CF_BRIDGING_ENABLE) {
1439       CFFunctionIBCandidates.push_back(Decl);
1440       if (FileId.isInvalid())
1441         FileId = PP.getSourceManager().getFileID(Decl->getLocation());
1442     }
1443     else if (AuditKind == CF_BRIDGING_MAY_INCLUDE) {
1444       if (!CFFunctionIBCandidates.empty()) {
1445         CFFunctionIBCandidates.push_back(Decl);
1446         if (FileId.isInvalid())
1447           FileId = PP.getSourceManager().getFileID(Decl->getLocation());
1448       }
1449     }
1450     else
1451       AnnotateImplicitBridging(Ctx);
1452   }
1453   else {
1454     migrateAddMethodAnnotation(Ctx, cast<ObjCMethodDecl>(Decl));
1455     AnnotateImplicitBridging(Ctx);
1456   }
1457 }
1458 
AddCFAnnotations(ASTContext & Ctx,const CallEffects & CE,const FunctionDecl * FuncDecl,bool ResultAnnotated)1459 void ObjCMigrateASTConsumer::AddCFAnnotations(ASTContext &Ctx,
1460                                               const CallEffects &CE,
1461                                               const FunctionDecl *FuncDecl,
1462                                               bool ResultAnnotated) {
1463   // Annotate function.
1464   if (!ResultAnnotated) {
1465     RetEffect Ret = CE.getReturnValue();
1466     const char *AnnotationString = nullptr;
1467     if (Ret.getObjKind() == RetEffect::CF) {
1468       if (Ret.isOwned() &&
1469           Ctx.Idents.get("CF_RETURNS_RETAINED").hasMacroDefinition())
1470         AnnotationString = " CF_RETURNS_RETAINED";
1471       else if (Ret.notOwned() &&
1472                Ctx.Idents.get("CF_RETURNS_NOT_RETAINED").hasMacroDefinition())
1473         AnnotationString = " CF_RETURNS_NOT_RETAINED";
1474     }
1475     else if (Ret.getObjKind() == RetEffect::ObjC) {
1476       if (Ret.isOwned() &&
1477           Ctx.Idents.get("NS_RETURNS_RETAINED").hasMacroDefinition())
1478         AnnotationString = " NS_RETURNS_RETAINED";
1479     }
1480 
1481     if (AnnotationString) {
1482       edit::Commit commit(*Editor);
1483       commit.insertAfterToken(FuncDecl->getLocEnd(), AnnotationString);
1484       Editor->commit(commit);
1485     }
1486   }
1487   ArrayRef<ArgEffect> AEArgs = CE.getArgs();
1488   unsigned i = 0;
1489   for (FunctionDecl::param_const_iterator pi = FuncDecl->param_begin(),
1490        pe = FuncDecl->param_end(); pi != pe; ++pi, ++i) {
1491     const ParmVarDecl *pd = *pi;
1492     ArgEffect AE = AEArgs[i];
1493     if (AE == DecRef && !pd->hasAttr<CFConsumedAttr>() &&
1494         Ctx.Idents.get("CF_CONSUMED").hasMacroDefinition()) {
1495       edit::Commit commit(*Editor);
1496       commit.insertBefore(pd->getLocation(), "CF_CONSUMED ");
1497       Editor->commit(commit);
1498     }
1499     else if (AE == DecRefMsg && !pd->hasAttr<NSConsumedAttr>() &&
1500              Ctx.Idents.get("NS_CONSUMED").hasMacroDefinition()) {
1501       edit::Commit commit(*Editor);
1502       commit.insertBefore(pd->getLocation(), "NS_CONSUMED ");
1503       Editor->commit(commit);
1504     }
1505   }
1506 }
1507 
1508 
1509 ObjCMigrateASTConsumer::CF_BRIDGING_KIND
migrateAddFunctionAnnotation(ASTContext & Ctx,const FunctionDecl * FuncDecl)1510   ObjCMigrateASTConsumer::migrateAddFunctionAnnotation(
1511                                                   ASTContext &Ctx,
1512                                                   const FunctionDecl *FuncDecl) {
1513   if (FuncDecl->hasBody())
1514     return CF_BRIDGING_NONE;
1515 
1516   CallEffects CE  = CallEffects::getEffect(FuncDecl);
1517   bool FuncIsReturnAnnotated = (FuncDecl->hasAttr<CFReturnsRetainedAttr>() ||
1518                                 FuncDecl->hasAttr<CFReturnsNotRetainedAttr>() ||
1519                                 FuncDecl->hasAttr<NSReturnsRetainedAttr>() ||
1520                                 FuncDecl->hasAttr<NSReturnsNotRetainedAttr>() ||
1521                                 FuncDecl->hasAttr<NSReturnsAutoreleasedAttr>());
1522 
1523   // Trivial case of when funciton is annotated and has no argument.
1524   if (FuncIsReturnAnnotated && FuncDecl->getNumParams() == 0)
1525     return CF_BRIDGING_NONE;
1526 
1527   bool ReturnCFAudited = false;
1528   if (!FuncIsReturnAnnotated) {
1529     RetEffect Ret = CE.getReturnValue();
1530     if (Ret.getObjKind() == RetEffect::CF &&
1531         (Ret.isOwned() || Ret.notOwned()))
1532       ReturnCFAudited = true;
1533     else if (!AuditedType(FuncDecl->getReturnType()))
1534       return CF_BRIDGING_NONE;
1535   }
1536 
1537   // At this point result type is audited for potential inclusion.
1538   // Now, how about argument types.
1539   ArrayRef<ArgEffect> AEArgs = CE.getArgs();
1540   unsigned i = 0;
1541   bool ArgCFAudited = false;
1542   for (FunctionDecl::param_const_iterator pi = FuncDecl->param_begin(),
1543        pe = FuncDecl->param_end(); pi != pe; ++pi, ++i) {
1544     const ParmVarDecl *pd = *pi;
1545     ArgEffect AE = AEArgs[i];
1546     if (AE == DecRef /*CFConsumed annotated*/ || AE == IncRef) {
1547       if (AE == DecRef && !pd->hasAttr<CFConsumedAttr>())
1548         ArgCFAudited = true;
1549       else if (AE == IncRef)
1550         ArgCFAudited = true;
1551     }
1552     else {
1553       QualType AT = pd->getType();
1554       if (!AuditedType(AT)) {
1555         AddCFAnnotations(Ctx, CE, FuncDecl, FuncIsReturnAnnotated);
1556         return CF_BRIDGING_NONE;
1557       }
1558     }
1559   }
1560   if (ReturnCFAudited || ArgCFAudited)
1561     return CF_BRIDGING_ENABLE;
1562 
1563   return CF_BRIDGING_MAY_INCLUDE;
1564 }
1565 
migrateARCSafeAnnotation(ASTContext & Ctx,ObjCContainerDecl * CDecl)1566 void ObjCMigrateASTConsumer::migrateARCSafeAnnotation(ASTContext &Ctx,
1567                                                  ObjCContainerDecl *CDecl) {
1568   if (!isa<ObjCInterfaceDecl>(CDecl) || CDecl->isDeprecated())
1569     return;
1570 
1571   // migrate methods which can have instancetype as their result type.
1572   for (const auto *Method : CDecl->methods())
1573     migrateCFAnnotation(Ctx, Method);
1574 }
1575 
AddCFAnnotations(ASTContext & Ctx,const CallEffects & CE,const ObjCMethodDecl * MethodDecl,bool ResultAnnotated)1576 void ObjCMigrateASTConsumer::AddCFAnnotations(ASTContext &Ctx,
1577                                               const CallEffects &CE,
1578                                               const ObjCMethodDecl *MethodDecl,
1579                                               bool ResultAnnotated) {
1580   // Annotate function.
1581   if (!ResultAnnotated) {
1582     RetEffect Ret = CE.getReturnValue();
1583     const char *AnnotationString = nullptr;
1584     if (Ret.getObjKind() == RetEffect::CF) {
1585       if (Ret.isOwned() &&
1586           Ctx.Idents.get("CF_RETURNS_RETAINED").hasMacroDefinition())
1587         AnnotationString = " CF_RETURNS_RETAINED";
1588       else if (Ret.notOwned() &&
1589                Ctx.Idents.get("CF_RETURNS_NOT_RETAINED").hasMacroDefinition())
1590         AnnotationString = " CF_RETURNS_NOT_RETAINED";
1591     }
1592     else if (Ret.getObjKind() == RetEffect::ObjC) {
1593       ObjCMethodFamily OMF = MethodDecl->getMethodFamily();
1594       switch (OMF) {
1595         case clang::OMF_alloc:
1596         case clang::OMF_new:
1597         case clang::OMF_copy:
1598         case clang::OMF_init:
1599         case clang::OMF_mutableCopy:
1600           break;
1601 
1602         default:
1603           if (Ret.isOwned() &&
1604               Ctx.Idents.get("NS_RETURNS_RETAINED").hasMacroDefinition())
1605             AnnotationString = " NS_RETURNS_RETAINED";
1606           break;
1607       }
1608     }
1609 
1610     if (AnnotationString) {
1611       edit::Commit commit(*Editor);
1612       commit.insertBefore(MethodDecl->getLocEnd(), AnnotationString);
1613       Editor->commit(commit);
1614     }
1615   }
1616   ArrayRef<ArgEffect> AEArgs = CE.getArgs();
1617   unsigned i = 0;
1618   for (ObjCMethodDecl::param_const_iterator pi = MethodDecl->param_begin(),
1619        pe = MethodDecl->param_end(); pi != pe; ++pi, ++i) {
1620     const ParmVarDecl *pd = *pi;
1621     ArgEffect AE = AEArgs[i];
1622     if (AE == DecRef && !pd->hasAttr<CFConsumedAttr>() &&
1623         Ctx.Idents.get("CF_CONSUMED").hasMacroDefinition()) {
1624       edit::Commit commit(*Editor);
1625       commit.insertBefore(pd->getLocation(), "CF_CONSUMED ");
1626       Editor->commit(commit);
1627     }
1628   }
1629 }
1630 
migrateAddMethodAnnotation(ASTContext & Ctx,const ObjCMethodDecl * MethodDecl)1631 void ObjCMigrateASTConsumer::migrateAddMethodAnnotation(
1632                                             ASTContext &Ctx,
1633                                             const ObjCMethodDecl *MethodDecl) {
1634   if (MethodDecl->hasBody() || MethodDecl->isImplicit())
1635     return;
1636 
1637   CallEffects CE  = CallEffects::getEffect(MethodDecl);
1638   bool MethodIsReturnAnnotated = (MethodDecl->hasAttr<CFReturnsRetainedAttr>() ||
1639                                   MethodDecl->hasAttr<CFReturnsNotRetainedAttr>() ||
1640                                   MethodDecl->hasAttr<NSReturnsRetainedAttr>() ||
1641                                   MethodDecl->hasAttr<NSReturnsNotRetainedAttr>() ||
1642                                   MethodDecl->hasAttr<NSReturnsAutoreleasedAttr>());
1643 
1644   if (CE.getReceiver() ==  DecRefMsg &&
1645       !MethodDecl->hasAttr<NSConsumesSelfAttr>() &&
1646       MethodDecl->getMethodFamily() != OMF_init &&
1647       MethodDecl->getMethodFamily() != OMF_release &&
1648       Ctx.Idents.get("NS_CONSUMES_SELF").hasMacroDefinition()) {
1649     edit::Commit commit(*Editor);
1650     commit.insertBefore(MethodDecl->getLocEnd(), " NS_CONSUMES_SELF");
1651     Editor->commit(commit);
1652   }
1653 
1654   // Trivial case of when funciton is annotated and has no argument.
1655   if (MethodIsReturnAnnotated &&
1656       (MethodDecl->param_begin() == MethodDecl->param_end()))
1657     return;
1658 
1659   if (!MethodIsReturnAnnotated) {
1660     RetEffect Ret = CE.getReturnValue();
1661     if ((Ret.getObjKind() == RetEffect::CF ||
1662          Ret.getObjKind() == RetEffect::ObjC) &&
1663         (Ret.isOwned() || Ret.notOwned())) {
1664       AddCFAnnotations(Ctx, CE, MethodDecl, false);
1665       return;
1666     } else if (!AuditedType(MethodDecl->getReturnType()))
1667       return;
1668   }
1669 
1670   // At this point result type is either annotated or audited.
1671   // Now, how about argument types.
1672   ArrayRef<ArgEffect> AEArgs = CE.getArgs();
1673   unsigned i = 0;
1674   for (ObjCMethodDecl::param_const_iterator pi = MethodDecl->param_begin(),
1675        pe = MethodDecl->param_end(); pi != pe; ++pi, ++i) {
1676     const ParmVarDecl *pd = *pi;
1677     ArgEffect AE = AEArgs[i];
1678     if ((AE == DecRef && !pd->hasAttr<CFConsumedAttr>()) || AE == IncRef ||
1679         !AuditedType(pd->getType())) {
1680       AddCFAnnotations(Ctx, CE, MethodDecl, MethodIsReturnAnnotated);
1681       return;
1682     }
1683   }
1684   return;
1685 }
1686 
1687 namespace {
1688 class SuperInitChecker : public RecursiveASTVisitor<SuperInitChecker> {
1689 public:
shouldVisitTemplateInstantiations() const1690   bool shouldVisitTemplateInstantiations() const { return false; }
shouldWalkTypesOfTypeLocs() const1691   bool shouldWalkTypesOfTypeLocs() const { return false; }
1692 
VisitObjCMessageExpr(ObjCMessageExpr * E)1693   bool VisitObjCMessageExpr(ObjCMessageExpr *E) {
1694     if (E->getReceiverKind() == ObjCMessageExpr::SuperInstance) {
1695       if (E->getMethodFamily() == OMF_init)
1696         return false;
1697     }
1698     return true;
1699   }
1700 };
1701 } // anonymous namespace
1702 
hasSuperInitCall(const ObjCMethodDecl * MD)1703 static bool hasSuperInitCall(const ObjCMethodDecl *MD) {
1704   return !SuperInitChecker().TraverseStmt(MD->getBody());
1705 }
1706 
inferDesignatedInitializers(ASTContext & Ctx,const ObjCImplementationDecl * ImplD)1707 void ObjCMigrateASTConsumer::inferDesignatedInitializers(
1708     ASTContext &Ctx,
1709     const ObjCImplementationDecl *ImplD) {
1710 
1711   const ObjCInterfaceDecl *IFace = ImplD->getClassInterface();
1712   if (!IFace || IFace->hasDesignatedInitializers())
1713     return;
1714   if (!Ctx.Idents.get("NS_DESIGNATED_INITIALIZER").hasMacroDefinition())
1715     return;
1716 
1717   for (const auto *MD : ImplD->instance_methods()) {
1718     if (MD->isDeprecated() ||
1719         MD->getMethodFamily() != OMF_init ||
1720         MD->isDesignatedInitializerForTheInterface())
1721       continue;
1722     const ObjCMethodDecl *IFaceM = IFace->getMethod(MD->getSelector(),
1723                                                     /*isInstance=*/true);
1724     if (!IFaceM)
1725       continue;
1726     if (hasSuperInitCall(MD)) {
1727       edit::Commit commit(*Editor);
1728       commit.insert(IFaceM->getLocEnd(), " NS_DESIGNATED_INITIALIZER");
1729       Editor->commit(commit);
1730     }
1731   }
1732 }
1733 
InsertFoundation(ASTContext & Ctx,SourceLocation Loc)1734 bool ObjCMigrateASTConsumer::InsertFoundation(ASTContext &Ctx,
1735                                               SourceLocation  Loc) {
1736   if (FoundationIncluded)
1737     return true;
1738   if (Loc.isInvalid())
1739     return false;
1740   edit::Commit commit(*Editor);
1741   if (Ctx.getLangOpts().Modules)
1742     commit.insert(Loc, "#ifndef NS_ENUM\n@import Foundation;\n#endif\n");
1743   else
1744     commit.insert(Loc, "#ifndef NS_ENUM\n#import <Foundation/Foundation.h>\n#endif\n");
1745   Editor->commit(commit);
1746   FoundationIncluded = true;
1747   return true;
1748 }
1749 
1750 namespace {
1751 
1752 class RewritesReceiver : public edit::EditsReceiver {
1753   Rewriter &Rewrite;
1754 
1755 public:
RewritesReceiver(Rewriter & Rewrite)1756   RewritesReceiver(Rewriter &Rewrite) : Rewrite(Rewrite) { }
1757 
insert(SourceLocation loc,StringRef text)1758   void insert(SourceLocation loc, StringRef text) override {
1759     Rewrite.InsertText(loc, text);
1760   }
replace(CharSourceRange range,StringRef text)1761   void replace(CharSourceRange range, StringRef text) override {
1762     Rewrite.ReplaceText(range.getBegin(), Rewrite.getRangeSize(range), text);
1763   }
1764 };
1765 
1766 class JSONEditWriter : public edit::EditsReceiver {
1767   SourceManager &SourceMgr;
1768   llvm::raw_ostream &OS;
1769 
1770 public:
JSONEditWriter(SourceManager & SM,llvm::raw_ostream & OS)1771   JSONEditWriter(SourceManager &SM, llvm::raw_ostream &OS)
1772     : SourceMgr(SM), OS(OS) {
1773     OS << "[\n";
1774   }
~JSONEditWriter()1775   ~JSONEditWriter() {
1776     OS << "]\n";
1777   }
1778 
1779 private:
1780   struct EntryWriter {
1781     SourceManager &SourceMgr;
1782     llvm::raw_ostream &OS;
1783 
EntryWriter__anon376c3f720411::JSONEditWriter::EntryWriter1784     EntryWriter(SourceManager &SM, llvm::raw_ostream &OS)
1785       : SourceMgr(SM), OS(OS) {
1786       OS << " {\n";
1787     }
~EntryWriter__anon376c3f720411::JSONEditWriter::EntryWriter1788     ~EntryWriter() {
1789       OS << " },\n";
1790     }
1791 
writeLoc__anon376c3f720411::JSONEditWriter::EntryWriter1792     void writeLoc(SourceLocation Loc) {
1793       FileID FID;
1794       unsigned Offset;
1795       std::tie(FID, Offset) = SourceMgr.getDecomposedLoc(Loc);
1796       assert(!FID.isInvalid());
1797       SmallString<200> Path =
1798           StringRef(SourceMgr.getFileEntryForID(FID)->getName());
1799       llvm::sys::fs::make_absolute(Path);
1800       OS << "  \"file\": \"";
1801       OS.write_escaped(Path.str()) << "\",\n";
1802       OS << "  \"offset\": " << Offset << ",\n";
1803     }
1804 
writeRemove__anon376c3f720411::JSONEditWriter::EntryWriter1805     void writeRemove(CharSourceRange Range) {
1806       assert(Range.isCharRange());
1807       std::pair<FileID, unsigned> Begin =
1808           SourceMgr.getDecomposedLoc(Range.getBegin());
1809       std::pair<FileID, unsigned> End =
1810           SourceMgr.getDecomposedLoc(Range.getEnd());
1811       assert(Begin.first == End.first);
1812       assert(Begin.second <= End.second);
1813       unsigned Length = End.second - Begin.second;
1814 
1815       OS << "  \"remove\": " << Length << ",\n";
1816     }
1817 
writeText__anon376c3f720411::JSONEditWriter::EntryWriter1818     void writeText(StringRef Text) {
1819       OS << "  \"text\": \"";
1820       OS.write_escaped(Text) << "\",\n";
1821     }
1822   };
1823 
insert(SourceLocation Loc,StringRef Text)1824   void insert(SourceLocation Loc, StringRef Text) override {
1825     EntryWriter Writer(SourceMgr, OS);
1826     Writer.writeLoc(Loc);
1827     Writer.writeText(Text);
1828   }
1829 
replace(CharSourceRange Range,StringRef Text)1830   void replace(CharSourceRange Range, StringRef Text) override {
1831     EntryWriter Writer(SourceMgr, OS);
1832     Writer.writeLoc(Range.getBegin());
1833     Writer.writeRemove(Range);
1834     Writer.writeText(Text);
1835   }
1836 
remove(CharSourceRange Range)1837   void remove(CharSourceRange Range) override {
1838     EntryWriter Writer(SourceMgr, OS);
1839     Writer.writeLoc(Range.getBegin());
1840     Writer.writeRemove(Range);
1841   }
1842 };
1843 
1844 }
1845 
HandleTranslationUnit(ASTContext & Ctx)1846 void ObjCMigrateASTConsumer::HandleTranslationUnit(ASTContext &Ctx) {
1847 
1848   TranslationUnitDecl *TU = Ctx.getTranslationUnitDecl();
1849   if (ASTMigrateActions & FrontendOptions::ObjCMT_MigrateDecls) {
1850     for (DeclContext::decl_iterator D = TU->decls_begin(), DEnd = TU->decls_end();
1851          D != DEnd; ++D) {
1852       FileID FID = PP.getSourceManager().getFileID((*D)->getLocation());
1853       if (!FID.isInvalid())
1854         if (!FileId.isInvalid() && FileId != FID) {
1855           if (ASTMigrateActions & FrontendOptions::ObjCMT_Annotation)
1856             AnnotateImplicitBridging(Ctx);
1857         }
1858 
1859       if (ObjCInterfaceDecl *CDecl = dyn_cast<ObjCInterfaceDecl>(*D))
1860         if (canModify(CDecl))
1861           migrateObjCInterfaceDecl(Ctx, CDecl);
1862       if (ObjCCategoryDecl *CatDecl = dyn_cast<ObjCCategoryDecl>(*D)) {
1863         if (canModify(CatDecl))
1864           migrateObjCInterfaceDecl(Ctx, CatDecl);
1865       }
1866       else if (ObjCProtocolDecl *PDecl = dyn_cast<ObjCProtocolDecl>(*D))
1867         ObjCProtocolDecls.insert(PDecl->getCanonicalDecl());
1868       else if (const ObjCImplementationDecl *ImpDecl =
1869                dyn_cast<ObjCImplementationDecl>(*D)) {
1870         if ((ASTMigrateActions & FrontendOptions::ObjCMT_ProtocolConformance) &&
1871             canModify(ImpDecl))
1872           migrateProtocolConformance(Ctx, ImpDecl);
1873       }
1874       else if (const EnumDecl *ED = dyn_cast<EnumDecl>(*D)) {
1875         if (!(ASTMigrateActions & FrontendOptions::ObjCMT_NsMacros))
1876           continue;
1877         if (!canModify(ED))
1878           continue;
1879         DeclContext::decl_iterator N = D;
1880         if (++N != DEnd) {
1881           const TypedefDecl *TD = dyn_cast<TypedefDecl>(*N);
1882           if (migrateNSEnumDecl(Ctx, ED, TD) && TD)
1883             D++;
1884         }
1885         else
1886           migrateNSEnumDecl(Ctx, ED, /*TypedefDecl */nullptr);
1887       }
1888       else if (const TypedefDecl *TD = dyn_cast<TypedefDecl>(*D)) {
1889         if (!(ASTMigrateActions & FrontendOptions::ObjCMT_NsMacros))
1890           continue;
1891         if (!canModify(TD))
1892           continue;
1893         DeclContext::decl_iterator N = D;
1894         if (++N == DEnd)
1895           continue;
1896         if (const EnumDecl *ED = dyn_cast<EnumDecl>(*N)) {
1897           if (++N != DEnd)
1898             if (const TypedefDecl *TDF = dyn_cast<TypedefDecl>(*N)) {
1899               // prefer typedef-follows-enum to enum-follows-typedef pattern.
1900               if (migrateNSEnumDecl(Ctx, ED, TDF)) {
1901                 ++D; ++D;
1902                 CacheObjCNSIntegerTypedefed(TD);
1903                 continue;
1904               }
1905             }
1906           if (migrateNSEnumDecl(Ctx, ED, TD)) {
1907             ++D;
1908             continue;
1909           }
1910         }
1911         CacheObjCNSIntegerTypedefed(TD);
1912       }
1913       else if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(*D)) {
1914         if ((ASTMigrateActions & FrontendOptions::ObjCMT_Annotation) &&
1915             canModify(FD))
1916           migrateCFAnnotation(Ctx, FD);
1917       }
1918 
1919       if (ObjCContainerDecl *CDecl = dyn_cast<ObjCContainerDecl>(*D)) {
1920         bool CanModify = canModify(CDecl);
1921         // migrate methods which can have instancetype as their result type.
1922         if ((ASTMigrateActions & FrontendOptions::ObjCMT_Instancetype) &&
1923             CanModify)
1924           migrateAllMethodInstaceType(Ctx, CDecl);
1925         // annotate methods with CF annotations.
1926         if ((ASTMigrateActions & FrontendOptions::ObjCMT_Annotation) &&
1927             CanModify)
1928           migrateARCSafeAnnotation(Ctx, CDecl);
1929       }
1930 
1931       if (const ObjCImplementationDecl *
1932             ImplD = dyn_cast<ObjCImplementationDecl>(*D)) {
1933         if ((ASTMigrateActions & FrontendOptions::ObjCMT_DesignatedInitializer) &&
1934             canModify(ImplD))
1935           inferDesignatedInitializers(Ctx, ImplD);
1936       }
1937     }
1938     if (ASTMigrateActions & FrontendOptions::ObjCMT_Annotation)
1939       AnnotateImplicitBridging(Ctx);
1940   }
1941 
1942  if (IsOutputFile) {
1943    std::error_code EC;
1944    llvm::raw_fd_ostream OS(MigrateDir, EC, llvm::sys::fs::F_None);
1945    if (EC) {
1946       DiagnosticsEngine &Diags = Ctx.getDiagnostics();
1947       Diags.Report(Diags.getCustomDiagID(DiagnosticsEngine::Error, "%0"))
1948           << EC.message();
1949       return;
1950     }
1951 
1952    JSONEditWriter Writer(Ctx.getSourceManager(), OS);
1953    Editor->applyRewrites(Writer);
1954    return;
1955  }
1956 
1957   Rewriter rewriter(Ctx.getSourceManager(), Ctx.getLangOpts());
1958   RewritesReceiver Rec(rewriter);
1959   Editor->applyRewrites(Rec);
1960 
1961   for (Rewriter::buffer_iterator
1962         I = rewriter.buffer_begin(), E = rewriter.buffer_end(); I != E; ++I) {
1963     FileID FID = I->first;
1964     RewriteBuffer &buf = I->second;
1965     const FileEntry *file = Ctx.getSourceManager().getFileEntryForID(FID);
1966     assert(file);
1967     SmallString<512> newText;
1968     llvm::raw_svector_ostream vecOS(newText);
1969     buf.write(vecOS);
1970     vecOS.flush();
1971     std::unique_ptr<llvm::MemoryBuffer> memBuf(
1972         llvm::MemoryBuffer::getMemBufferCopy(
1973             StringRef(newText.data(), newText.size()), file->getName()));
1974     SmallString<64> filePath(file->getName());
1975     FileMgr.FixupRelativePath(filePath);
1976     Remapper.remap(filePath.str(), std::move(memBuf));
1977   }
1978 
1979   if (IsOutputFile) {
1980     Remapper.flushToFile(MigrateDir, Ctx.getDiagnostics());
1981   } else {
1982     Remapper.flushToDisk(MigrateDir, Ctx.getDiagnostics());
1983   }
1984 }
1985 
BeginInvocation(CompilerInstance & CI)1986 bool MigrateSourceAction::BeginInvocation(CompilerInstance &CI) {
1987   CI.getDiagnostics().setIgnoreAllWarnings(true);
1988   return true;
1989 }
1990 
getWhiteListFilenames(StringRef DirPath)1991 static std::vector<std::string> getWhiteListFilenames(StringRef DirPath) {
1992   using namespace llvm::sys::fs;
1993   using namespace llvm::sys::path;
1994 
1995   std::vector<std::string> Filenames;
1996   if (DirPath.empty() || !is_directory(DirPath))
1997     return Filenames;
1998 
1999   std::error_code EC;
2000   directory_iterator DI = directory_iterator(DirPath, EC);
2001   directory_iterator DE;
2002   for (; !EC && DI != DE; DI = DI.increment(EC)) {
2003     if (is_regular_file(DI->path()))
2004       Filenames.push_back(filename(DI->path()));
2005   }
2006 
2007   return Filenames;
2008 }
2009 
2010 std::unique_ptr<ASTConsumer>
CreateASTConsumer(CompilerInstance & CI,StringRef InFile)2011 MigrateSourceAction::CreateASTConsumer(CompilerInstance &CI, StringRef InFile) {
2012   PPConditionalDirectiveRecord *
2013     PPRec = new PPConditionalDirectiveRecord(CI.getSourceManager());
2014   unsigned ObjCMTAction = CI.getFrontendOpts().ObjCMTAction;
2015   unsigned ObjCMTOpts = ObjCMTAction;
2016   // These are companion flags, they do not enable transformations.
2017   ObjCMTOpts &= ~(FrontendOptions::ObjCMT_AtomicProperty |
2018                   FrontendOptions::ObjCMT_NsAtomicIOSOnlyProperty);
2019   if (ObjCMTOpts == FrontendOptions::ObjCMT_None) {
2020     // If no specific option was given, enable literals+subscripting transforms
2021     // by default.
2022     ObjCMTAction |= FrontendOptions::ObjCMT_Literals |
2023                     FrontendOptions::ObjCMT_Subscripting;
2024   }
2025   CI.getPreprocessor().addPPCallbacks(std::unique_ptr<PPCallbacks>(PPRec));
2026   std::vector<std::string> WhiteList =
2027     getWhiteListFilenames(CI.getFrontendOpts().ObjCMTWhiteListPath);
2028   return llvm::make_unique<ObjCMigrateASTConsumer>(
2029       CI.getFrontendOpts().OutputFile, ObjCMTAction, Remapper,
2030       CI.getFileManager(), PPRec, CI.getPreprocessor(),
2031       /*isOutputFile=*/true, WhiteList);
2032 }
2033 
2034 namespace {
2035 struct EditEntry {
2036   const FileEntry *File;
2037   unsigned Offset;
2038   unsigned RemoveLen;
2039   std::string Text;
2040 
EditEntry__anon376c3f720511::EditEntry2041   EditEntry() : File(), Offset(), RemoveLen() {}
2042 };
2043 }
2044 
2045 namespace llvm {
2046 template<> struct DenseMapInfo<EditEntry> {
getEmptyKeyllvm::DenseMapInfo2047   static inline EditEntry getEmptyKey() {
2048     EditEntry Entry;
2049     Entry.Offset = unsigned(-1);
2050     return Entry;
2051   }
getTombstoneKeyllvm::DenseMapInfo2052   static inline EditEntry getTombstoneKey() {
2053     EditEntry Entry;
2054     Entry.Offset = unsigned(-2);
2055     return Entry;
2056   }
getHashValuellvm::DenseMapInfo2057   static unsigned getHashValue(const EditEntry& Val) {
2058     llvm::FoldingSetNodeID ID;
2059     ID.AddPointer(Val.File);
2060     ID.AddInteger(Val.Offset);
2061     ID.AddInteger(Val.RemoveLen);
2062     ID.AddString(Val.Text);
2063     return ID.ComputeHash();
2064   }
isEqualllvm::DenseMapInfo2065   static bool isEqual(const EditEntry &LHS, const EditEntry &RHS) {
2066     return LHS.File == RHS.File &&
2067         LHS.Offset == RHS.Offset &&
2068         LHS.RemoveLen == RHS.RemoveLen &&
2069         LHS.Text == RHS.Text;
2070   }
2071 };
2072 }
2073 
2074 namespace {
2075 class RemapFileParser {
2076   FileManager &FileMgr;
2077 
2078 public:
RemapFileParser(FileManager & FileMgr)2079   RemapFileParser(FileManager &FileMgr) : FileMgr(FileMgr) { }
2080 
parse(StringRef File,SmallVectorImpl<EditEntry> & Entries)2081   bool parse(StringRef File, SmallVectorImpl<EditEntry> &Entries) {
2082     using namespace llvm::yaml;
2083 
2084     llvm::ErrorOr<std::unique_ptr<llvm::MemoryBuffer>> FileBufOrErr =
2085         llvm::MemoryBuffer::getFile(File);
2086     if (!FileBufOrErr)
2087       return true;
2088 
2089     llvm::SourceMgr SM;
2090     Stream YAMLStream(FileBufOrErr.get()->getMemBufferRef(), SM);
2091     document_iterator I = YAMLStream.begin();
2092     if (I == YAMLStream.end())
2093       return true;
2094     Node *Root = I->getRoot();
2095     if (!Root)
2096       return true;
2097 
2098     SequenceNode *SeqNode = dyn_cast<SequenceNode>(Root);
2099     if (!SeqNode)
2100       return true;
2101 
2102     for (SequenceNode::iterator
2103            AI = SeqNode->begin(), AE = SeqNode->end(); AI != AE; ++AI) {
2104       MappingNode *MapNode = dyn_cast<MappingNode>(&*AI);
2105       if (!MapNode)
2106         continue;
2107       parseEdit(MapNode, Entries);
2108     }
2109 
2110     return false;
2111   }
2112 
2113 private:
parseEdit(llvm::yaml::MappingNode * Node,SmallVectorImpl<EditEntry> & Entries)2114   void parseEdit(llvm::yaml::MappingNode *Node,
2115                  SmallVectorImpl<EditEntry> &Entries) {
2116     using namespace llvm::yaml;
2117     EditEntry Entry;
2118     bool Ignore = false;
2119 
2120     for (MappingNode::iterator
2121            KVI = Node->begin(), KVE = Node->end(); KVI != KVE; ++KVI) {
2122       ScalarNode *KeyString = dyn_cast<ScalarNode>((*KVI).getKey());
2123       if (!KeyString)
2124         continue;
2125       SmallString<10> KeyStorage;
2126       StringRef Key = KeyString->getValue(KeyStorage);
2127 
2128       ScalarNode *ValueString = dyn_cast<ScalarNode>((*KVI).getValue());
2129       if (!ValueString)
2130         continue;
2131       SmallString<64> ValueStorage;
2132       StringRef Val = ValueString->getValue(ValueStorage);
2133 
2134       if (Key == "file") {
2135         const FileEntry *FE = FileMgr.getFile(Val);
2136         if (!FE)
2137           Ignore = true;
2138         Entry.File = FE;
2139       } else if (Key == "offset") {
2140         if (Val.getAsInteger(10, Entry.Offset))
2141           Ignore = true;
2142       } else if (Key == "remove") {
2143         if (Val.getAsInteger(10, Entry.RemoveLen))
2144           Ignore = true;
2145       } else if (Key == "text") {
2146         Entry.Text = Val;
2147       }
2148     }
2149 
2150     if (!Ignore)
2151       Entries.push_back(Entry);
2152   }
2153 };
2154 }
2155 
reportDiag(const Twine & Err,DiagnosticsEngine & Diag)2156 static bool reportDiag(const Twine &Err, DiagnosticsEngine &Diag) {
2157   Diag.Report(Diag.getCustomDiagID(DiagnosticsEngine::Error, "%0"))
2158       << Err.str();
2159   return true;
2160 }
2161 
applyEditsToTemp(const FileEntry * FE,ArrayRef<EditEntry> Edits,FileManager & FileMgr,DiagnosticsEngine & Diag)2162 static std::string applyEditsToTemp(const FileEntry *FE,
2163                                     ArrayRef<EditEntry> Edits,
2164                                     FileManager &FileMgr,
2165                                     DiagnosticsEngine &Diag) {
2166   using namespace llvm::sys;
2167 
2168   SourceManager SM(Diag, FileMgr);
2169   FileID FID = SM.createFileID(FE, SourceLocation(), SrcMgr::C_User);
2170   LangOptions LangOpts;
2171   edit::EditedSource Editor(SM, LangOpts);
2172   for (ArrayRef<EditEntry>::iterator
2173         I = Edits.begin(), E = Edits.end(); I != E; ++I) {
2174     const EditEntry &Entry = *I;
2175     assert(Entry.File == FE);
2176     SourceLocation Loc =
2177         SM.getLocForStartOfFile(FID).getLocWithOffset(Entry.Offset);
2178     CharSourceRange Range;
2179     if (Entry.RemoveLen != 0) {
2180       Range = CharSourceRange::getCharRange(Loc,
2181                                          Loc.getLocWithOffset(Entry.RemoveLen));
2182     }
2183 
2184     edit::Commit commit(Editor);
2185     if (Range.isInvalid()) {
2186       commit.insert(Loc, Entry.Text);
2187     } else if (Entry.Text.empty()) {
2188       commit.remove(Range);
2189     } else {
2190       commit.replace(Range, Entry.Text);
2191     }
2192     Editor.commit(commit);
2193   }
2194 
2195   Rewriter rewriter(SM, LangOpts);
2196   RewritesReceiver Rec(rewriter);
2197   Editor.applyRewrites(Rec);
2198 
2199   const RewriteBuffer *Buf = rewriter.getRewriteBufferFor(FID);
2200   SmallString<512> NewText;
2201   llvm::raw_svector_ostream OS(NewText);
2202   Buf->write(OS);
2203   OS.flush();
2204 
2205   SmallString<64> TempPath;
2206   int FD;
2207   if (fs::createTemporaryFile(path::filename(FE->getName()),
2208                               path::extension(FE->getName()), FD,
2209                               TempPath)) {
2210     reportDiag("Could not create file: " + TempPath.str(), Diag);
2211     return std::string();
2212   }
2213 
2214   llvm::raw_fd_ostream TmpOut(FD, /*shouldClose=*/true);
2215   TmpOut.write(NewText.data(), NewText.size());
2216   TmpOut.close();
2217 
2218   return TempPath.str();
2219 }
2220 
getFileRemappingsFromFileList(std::vector<std::pair<std::string,std::string>> & remap,ArrayRef<StringRef> remapFiles,DiagnosticConsumer * DiagClient)2221 bool arcmt::getFileRemappingsFromFileList(
2222                         std::vector<std::pair<std::string,std::string> > &remap,
2223                         ArrayRef<StringRef> remapFiles,
2224                         DiagnosticConsumer *DiagClient) {
2225   bool hasErrorOccurred = false;
2226 
2227   FileSystemOptions FSOpts;
2228   FileManager FileMgr(FSOpts);
2229   RemapFileParser Parser(FileMgr);
2230 
2231   IntrusiveRefCntPtr<DiagnosticIDs> DiagID(new DiagnosticIDs());
2232   IntrusiveRefCntPtr<DiagnosticsEngine> Diags(
2233       new DiagnosticsEngine(DiagID, new DiagnosticOptions,
2234                             DiagClient, /*ShouldOwnClient=*/false));
2235 
2236   typedef llvm::DenseMap<const FileEntry *, std::vector<EditEntry> >
2237       FileEditEntriesTy;
2238   FileEditEntriesTy FileEditEntries;
2239 
2240   llvm::DenseSet<EditEntry> EntriesSet;
2241 
2242   for (ArrayRef<StringRef>::iterator
2243          I = remapFiles.begin(), E = remapFiles.end(); I != E; ++I) {
2244     SmallVector<EditEntry, 16> Entries;
2245     if (Parser.parse(*I, Entries))
2246       continue;
2247 
2248     for (SmallVectorImpl<EditEntry>::iterator
2249            EI = Entries.begin(), EE = Entries.end(); EI != EE; ++EI) {
2250       EditEntry &Entry = *EI;
2251       if (!Entry.File)
2252         continue;
2253       std::pair<llvm::DenseSet<EditEntry>::iterator, bool>
2254         Insert = EntriesSet.insert(Entry);
2255       if (!Insert.second)
2256         continue;
2257 
2258       FileEditEntries[Entry.File].push_back(Entry);
2259     }
2260   }
2261 
2262   for (FileEditEntriesTy::iterator
2263          I = FileEditEntries.begin(), E = FileEditEntries.end(); I != E; ++I) {
2264     std::string TempFile = applyEditsToTemp(I->first, I->second,
2265                                             FileMgr, *Diags);
2266     if (TempFile.empty()) {
2267       hasErrorOccurred = true;
2268       continue;
2269     }
2270 
2271     remap.push_back(std::make_pair(I->first->getName(), TempFile));
2272   }
2273 
2274   return hasErrorOccurred;
2275 }
2276