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Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00001//===--- RewriteObjC.cpp - Playground for the code rewriter ---------------===//
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// Hacks and fun related to the code rewriter.
11//
12//===----------------------------------------------------------------------===//
13
14#include "clang/Rewrite/ASTConsumers.h"
15#include "clang/Rewrite/Rewriter.h"
16#include "clang/AST/AST.h"
17#include "clang/AST/ASTConsumer.h"
18#include "clang/AST/ParentMap.h"
19#include "clang/Basic/SourceManager.h"
20#include "clang/Basic/IdentifierTable.h"
21#include "clang/Basic/Diagnostic.h"
22#include "clang/Lex/Lexer.h"
23#include "llvm/Support/MemoryBuffer.h"
24#include "llvm/Support/raw_ostream.h"
25#include "llvm/ADT/StringExtras.h"
26#include "llvm/ADT/SmallPtrSet.h"
27#include "llvm/ADT/OwningPtr.h"
28#include "llvm/ADT/DenseSet.h"
29
30using namespace clang;
31using llvm::utostr;
32
33namespace {
34 class RewriteModernObjC : public ASTConsumer {
35 protected:
36
37 enum {
38 BLOCK_FIELD_IS_OBJECT = 3, /* id, NSObject, __attribute__((NSObject)),
39 block, ... */
40 BLOCK_FIELD_IS_BLOCK = 7, /* a block variable */
41 BLOCK_FIELD_IS_BYREF = 8, /* the on stack structure holding the
42 __block variable */
43 BLOCK_FIELD_IS_WEAK = 16, /* declared __weak, only used in byref copy
44 helpers */
45 BLOCK_BYREF_CALLER = 128, /* called from __block (byref) copy/dispose
46 support routines */
47 BLOCK_BYREF_CURRENT_MAX = 256
48 };
49
50 enum {
51 BLOCK_NEEDS_FREE = (1 << 24),
52 BLOCK_HAS_COPY_DISPOSE = (1 << 25),
53 BLOCK_HAS_CXX_OBJ = (1 << 26),
54 BLOCK_IS_GC = (1 << 27),
55 BLOCK_IS_GLOBAL = (1 << 28),
56 BLOCK_HAS_DESCRIPTOR = (1 << 29)
57 };
58 static const int OBJC_ABI_VERSION = 7;
59
60 Rewriter Rewrite;
61 DiagnosticsEngine &Diags;
62 const LangOptions &LangOpts;
63 ASTContext *Context;
64 SourceManager *SM;
65 TranslationUnitDecl *TUDecl;
66 FileID MainFileID;
67 const char *MainFileStart, *MainFileEnd;
68 Stmt *CurrentBody;
69 ParentMap *PropParentMap; // created lazily.
70 std::string InFileName;
71 raw_ostream* OutFile;
72 std::string Preamble;
73
74 TypeDecl *ProtocolTypeDecl;
75 VarDecl *GlobalVarDecl;
76 unsigned RewriteFailedDiag;
77 // ObjC string constant support.
78 unsigned NumObjCStringLiterals;
79 VarDecl *ConstantStringClassReference;
80 RecordDecl *NSStringRecord;
81
82 // ObjC foreach break/continue generation support.
83 int BcLabelCount;
84
85 unsigned TryFinallyContainsReturnDiag;
86 // Needed for super.
87 ObjCMethodDecl *CurMethodDef;
88 RecordDecl *SuperStructDecl;
89 RecordDecl *ConstantStringDecl;
90
91 FunctionDecl *MsgSendFunctionDecl;
92 FunctionDecl *MsgSendSuperFunctionDecl;
93 FunctionDecl *MsgSendStretFunctionDecl;
94 FunctionDecl *MsgSendSuperStretFunctionDecl;
95 FunctionDecl *MsgSendFpretFunctionDecl;
96 FunctionDecl *GetClassFunctionDecl;
97 FunctionDecl *GetMetaClassFunctionDecl;
98 FunctionDecl *GetSuperClassFunctionDecl;
99 FunctionDecl *SelGetUidFunctionDecl;
100 FunctionDecl *CFStringFunctionDecl;
101 FunctionDecl *SuperContructorFunctionDecl;
102 FunctionDecl *CurFunctionDef;
103 FunctionDecl *CurFunctionDeclToDeclareForBlock;
104
105 /* Misc. containers needed for meta-data rewrite. */
106 SmallVector<ObjCImplementationDecl *, 8> ClassImplementation;
107 SmallVector<ObjCCategoryImplDecl *, 8> CategoryImplementation;
108 llvm::SmallPtrSet<ObjCInterfaceDecl*, 8> ObjCSynthesizedStructs;
109 llvm::SmallPtrSet<ObjCProtocolDecl*, 8> ObjCSynthesizedProtocols;
Fariborz Jahaniancf4c60f2012-02-17 22:20:12 +0000110 llvm::SmallPtrSet<ObjCInterfaceDecl*, 8> ObjCWrittenInterfaces;
Fariborz Jahanian15f87772012-02-28 22:45:07 +0000111 llvm::SmallPtrSet<TagDecl*, 8> TagsDefinedInIvarDecls;
Fariborz Jahaniancf4c60f2012-02-17 22:20:12 +0000112 SmallVector<ObjCInterfaceDecl*, 32> ObjCInterfacesSeen;
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +0000113 SmallVector<Stmt *, 32> Stmts;
114 SmallVector<int, 8> ObjCBcLabelNo;
115 // Remember all the @protocol(<expr>) expressions.
116 llvm::SmallPtrSet<ObjCProtocolDecl *, 32> ProtocolExprDecls;
117
118 llvm::DenseSet<uint64_t> CopyDestroyCache;
119
120 // Block expressions.
121 SmallVector<BlockExpr *, 32> Blocks;
122 SmallVector<int, 32> InnerDeclRefsCount;
123 SmallVector<BlockDeclRefExpr *, 32> InnerDeclRefs;
124
125 SmallVector<BlockDeclRefExpr *, 32> BlockDeclRefs;
126
127 // Block related declarations.
128 SmallVector<ValueDecl *, 8> BlockByCopyDecls;
129 llvm::SmallPtrSet<ValueDecl *, 8> BlockByCopyDeclsPtrSet;
130 SmallVector<ValueDecl *, 8> BlockByRefDecls;
131 llvm::SmallPtrSet<ValueDecl *, 8> BlockByRefDeclsPtrSet;
132 llvm::DenseMap<ValueDecl *, unsigned> BlockByRefDeclNo;
133 llvm::SmallPtrSet<ValueDecl *, 8> ImportedBlockDecls;
134 llvm::SmallPtrSet<VarDecl *, 8> ImportedLocalExternalDecls;
135
136 llvm::DenseMap<BlockExpr *, std::string> RewrittenBlockExprs;
Fariborz Jahanian72c88f12012-02-22 18:13:25 +0000137 llvm::DenseMap<ObjCInterfaceDecl *,
138 llvm::SmallPtrSet<ObjCIvarDecl *, 8> > ReferencedIvars;
139
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +0000140 // This maps an original source AST to it's rewritten form. This allows
141 // us to avoid rewriting the same node twice (which is very uncommon).
142 // This is needed to support some of the exotic property rewriting.
143 llvm::DenseMap<Stmt *, Stmt *> ReplacedNodes;
144
145 // Needed for header files being rewritten
146 bool IsHeader;
147 bool SilenceRewriteMacroWarning;
148 bool objc_impl_method;
149
150 bool DisableReplaceStmt;
151 class DisableReplaceStmtScope {
152 RewriteModernObjC &R;
153 bool SavedValue;
154
155 public:
156 DisableReplaceStmtScope(RewriteModernObjC &R)
157 : R(R), SavedValue(R.DisableReplaceStmt) {
158 R.DisableReplaceStmt = true;
159 }
160 ~DisableReplaceStmtScope() {
161 R.DisableReplaceStmt = SavedValue;
162 }
163 };
164 void InitializeCommon(ASTContext &context);
165
166 public:
Fariborz Jahanian90af4e22012-02-14 17:19:02 +0000167 llvm::DenseMap<ObjCMethodDecl*, std::string> MethodInternalNames;
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +0000168 // Top Level Driver code.
169 virtual bool HandleTopLevelDecl(DeclGroupRef D) {
170 for (DeclGroupRef::iterator I = D.begin(), E = D.end(); I != E; ++I) {
171 if (ObjCInterfaceDecl *Class = dyn_cast<ObjCInterfaceDecl>(*I)) {
172 if (!Class->isThisDeclarationADefinition()) {
173 RewriteForwardClassDecl(D);
174 break;
Fariborz Jahaniancf4c60f2012-02-17 22:20:12 +0000175 } else {
176 // Keep track of all interface declarations seen.
Fariborz Jahanianf3295272012-02-24 21:42:38 +0000177 ObjCInterfacesSeen.push_back(Class);
Fariborz Jahaniancf4c60f2012-02-17 22:20:12 +0000178 break;
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +0000179 }
180 }
181
182 if (ObjCProtocolDecl *Proto = dyn_cast<ObjCProtocolDecl>(*I)) {
183 if (!Proto->isThisDeclarationADefinition()) {
184 RewriteForwardProtocolDecl(D);
185 break;
186 }
187 }
188
189 HandleTopLevelSingleDecl(*I);
190 }
191 return true;
192 }
193 void HandleTopLevelSingleDecl(Decl *D);
194 void HandleDeclInMainFile(Decl *D);
195 RewriteModernObjC(std::string inFile, raw_ostream *OS,
196 DiagnosticsEngine &D, const LangOptions &LOpts,
197 bool silenceMacroWarn);
198
199 ~RewriteModernObjC() {}
200
201 virtual void HandleTranslationUnit(ASTContext &C);
202
203 void ReplaceStmt(Stmt *Old, Stmt *New) {
204 Stmt *ReplacingStmt = ReplacedNodes[Old];
205
206 if (ReplacingStmt)
207 return; // We can't rewrite the same node twice.
208
209 if (DisableReplaceStmt)
210 return;
211
212 // If replacement succeeded or warning disabled return with no warning.
213 if (!Rewrite.ReplaceStmt(Old, New)) {
214 ReplacedNodes[Old] = New;
215 return;
216 }
217 if (SilenceRewriteMacroWarning)
218 return;
219 Diags.Report(Context->getFullLoc(Old->getLocStart()), RewriteFailedDiag)
220 << Old->getSourceRange();
221 }
222
223 void ReplaceStmtWithRange(Stmt *Old, Stmt *New, SourceRange SrcRange) {
224 if (DisableReplaceStmt)
225 return;
226
227 // Measure the old text.
228 int Size = Rewrite.getRangeSize(SrcRange);
229 if (Size == -1) {
230 Diags.Report(Context->getFullLoc(Old->getLocStart()), RewriteFailedDiag)
231 << Old->getSourceRange();
232 return;
233 }
234 // Get the new text.
235 std::string SStr;
236 llvm::raw_string_ostream S(SStr);
237 New->printPretty(S, *Context, 0, PrintingPolicy(LangOpts));
238 const std::string &Str = S.str();
239
240 // If replacement succeeded or warning disabled return with no warning.
241 if (!Rewrite.ReplaceText(SrcRange.getBegin(), Size, Str)) {
242 ReplacedNodes[Old] = New;
243 return;
244 }
245 if (SilenceRewriteMacroWarning)
246 return;
247 Diags.Report(Context->getFullLoc(Old->getLocStart()), RewriteFailedDiag)
248 << Old->getSourceRange();
249 }
250
251 void InsertText(SourceLocation Loc, StringRef Str,
252 bool InsertAfter = true) {
253 // If insertion succeeded or warning disabled return with no warning.
254 if (!Rewrite.InsertText(Loc, Str, InsertAfter) ||
255 SilenceRewriteMacroWarning)
256 return;
257
258 Diags.Report(Context->getFullLoc(Loc), RewriteFailedDiag);
259 }
260
261 void ReplaceText(SourceLocation Start, unsigned OrigLength,
262 StringRef Str) {
263 // If removal succeeded or warning disabled return with no warning.
264 if (!Rewrite.ReplaceText(Start, OrigLength, Str) ||
265 SilenceRewriteMacroWarning)
266 return;
267
268 Diags.Report(Context->getFullLoc(Start), RewriteFailedDiag);
269 }
270
271 // Syntactic Rewriting.
272 void RewriteRecordBody(RecordDecl *RD);
273 void RewriteInclude();
274 void RewriteForwardClassDecl(DeclGroupRef D);
275 void RewriteForwardClassDecl(const llvm::SmallVector<Decl*, 8> &DG);
276 void RewriteForwardClassEpilogue(ObjCInterfaceDecl *ClassDecl,
277 const std::string &typedefString);
278 void RewriteImplementations();
279 void RewritePropertyImplDecl(ObjCPropertyImplDecl *PID,
280 ObjCImplementationDecl *IMD,
281 ObjCCategoryImplDecl *CID);
282 void RewriteInterfaceDecl(ObjCInterfaceDecl *Dcl);
283 void RewriteImplementationDecl(Decl *Dcl);
284 void RewriteObjCMethodDecl(const ObjCInterfaceDecl *IDecl,
285 ObjCMethodDecl *MDecl, std::string &ResultStr);
286 void RewriteTypeIntoString(QualType T, std::string &ResultStr,
287 const FunctionType *&FPRetType);
288 void RewriteByRefString(std::string &ResultStr, const std::string &Name,
289 ValueDecl *VD, bool def=false);
290 void RewriteCategoryDecl(ObjCCategoryDecl *Dcl);
291 void RewriteProtocolDecl(ObjCProtocolDecl *Dcl);
292 void RewriteForwardProtocolDecl(DeclGroupRef D);
293 void RewriteForwardProtocolDecl(const llvm::SmallVector<Decl*, 8> &DG);
294 void RewriteMethodDeclaration(ObjCMethodDecl *Method);
295 void RewriteProperty(ObjCPropertyDecl *prop);
296 void RewriteFunctionDecl(FunctionDecl *FD);
297 void RewriteBlockPointerType(std::string& Str, QualType Type);
298 void RewriteBlockPointerTypeVariable(std::string& Str, ValueDecl *VD);
299 void RewriteBlockLiteralFunctionDecl(FunctionDecl *FD);
300 void RewriteObjCQualifiedInterfaceTypes(Decl *Dcl);
301 void RewriteTypeOfDecl(VarDecl *VD);
302 void RewriteObjCQualifiedInterfaceTypes(Expr *E);
303
304 // Expression Rewriting.
305 Stmt *RewriteFunctionBodyOrGlobalInitializer(Stmt *S);
306 Stmt *RewriteAtEncode(ObjCEncodeExpr *Exp);
307 Stmt *RewritePropertyOrImplicitGetter(PseudoObjectExpr *Pseudo);
308 Stmt *RewritePropertyOrImplicitSetter(PseudoObjectExpr *Pseudo);
309 Stmt *RewriteAtSelector(ObjCSelectorExpr *Exp);
310 Stmt *RewriteMessageExpr(ObjCMessageExpr *Exp);
311 Stmt *RewriteObjCStringLiteral(ObjCStringLiteral *Exp);
312 Stmt *RewriteObjCProtocolExpr(ObjCProtocolExpr *Exp);
313 void RewriteTryReturnStmts(Stmt *S);
314 void RewriteSyncReturnStmts(Stmt *S, std::string buf);
315 Stmt *RewriteObjCTryStmt(ObjCAtTryStmt *S);
316 Stmt *RewriteObjCSynchronizedStmt(ObjCAtSynchronizedStmt *S);
317 Stmt *RewriteObjCThrowStmt(ObjCAtThrowStmt *S);
318 Stmt *RewriteObjCForCollectionStmt(ObjCForCollectionStmt *S,
319 SourceLocation OrigEnd);
320 Stmt *RewriteBreakStmt(BreakStmt *S);
321 Stmt *RewriteContinueStmt(ContinueStmt *S);
322 void RewriteCastExpr(CStyleCastExpr *CE);
323
324 // Block rewriting.
325 void RewriteBlocksInFunctionProtoType(QualType funcType, NamedDecl *D);
326
327 // Block specific rewrite rules.
328 void RewriteBlockPointerDecl(NamedDecl *VD);
329 void RewriteByRefVar(VarDecl *VD);
330 Stmt *RewriteBlockDeclRefExpr(Expr *VD);
331 Stmt *RewriteLocalVariableExternalStorage(DeclRefExpr *DRE);
332 void RewriteBlockPointerFunctionArgs(FunctionDecl *FD);
333
334 void RewriteObjCInternalStruct(ObjCInterfaceDecl *CDecl,
335 std::string &Result);
336
Fariborz Jahanian15f87772012-02-28 22:45:07 +0000337 void RewriteObjCFieldDecl(FieldDecl *fieldDecl, std::string &Result);
338
Fariborz Jahanian97c1fd62012-03-09 23:46:23 +0000339 bool RewriteObjCFieldDeclType(QualType &Type, std::string &Result);
340
Fariborz Jahanian72c88f12012-02-22 18:13:25 +0000341 void RewriteIvarOffsetSymbols(ObjCInterfaceDecl *CDecl,
342 std::string &Result);
343
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +0000344 virtual void Initialize(ASTContext &context);
345
346 // Misc. AST transformation routines. Somtimes they end up calling
347 // rewriting routines on the new ASTs.
348 CallExpr *SynthesizeCallToFunctionDecl(FunctionDecl *FD,
349 Expr **args, unsigned nargs,
350 SourceLocation StartLoc=SourceLocation(),
351 SourceLocation EndLoc=SourceLocation());
352
353 Stmt *SynthMessageExpr(ObjCMessageExpr *Exp,
354 SourceLocation StartLoc=SourceLocation(),
355 SourceLocation EndLoc=SourceLocation());
356
357 void SynthCountByEnumWithState(std::string &buf);
358 void SynthMsgSendFunctionDecl();
359 void SynthMsgSendSuperFunctionDecl();
360 void SynthMsgSendStretFunctionDecl();
361 void SynthMsgSendFpretFunctionDecl();
362 void SynthMsgSendSuperStretFunctionDecl();
363 void SynthGetClassFunctionDecl();
364 void SynthGetMetaClassFunctionDecl();
365 void SynthGetSuperClassFunctionDecl();
366 void SynthSelGetUidFunctionDecl();
367 void SynthSuperContructorFunctionDecl();
368
369 // Rewriting metadata
370 template<typename MethodIterator>
371 void RewriteObjCMethodsMetaData(MethodIterator MethodBegin,
372 MethodIterator MethodEnd,
373 bool IsInstanceMethod,
374 StringRef prefix,
375 StringRef ClassName,
376 std::string &Result);
Fariborz Jahanianda9624a2012-02-08 19:53:58 +0000377 void RewriteObjCProtocolMetaData(ObjCProtocolDecl *Protocol,
378 std::string &Result);
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +0000379 virtual void RewriteObjCProtocolListMetaData(
380 const ObjCList<ObjCProtocolDecl> &Prots,
381 StringRef prefix, StringRef ClassName, std::string &Result);
382 virtual void RewriteObjCClassMetaData(ObjCImplementationDecl *IDecl,
383 std::string &Result);
384 virtual void RewriteMetaDataIntoBuffer(std::string &Result);
385 virtual void RewriteObjCCategoryImplDecl(ObjCCategoryImplDecl *CDecl,
386 std::string &Result);
387
388 // Rewriting ivar
389 virtual void RewriteIvarOffsetComputation(ObjCIvarDecl *ivar,
390 std::string &Result);
391 virtual Stmt *RewriteObjCIvarRefExpr(ObjCIvarRefExpr *IV);
392
393
394 std::string SynthesizeByrefCopyDestroyHelper(VarDecl *VD, int flag);
395 std::string SynthesizeBlockHelperFuncs(BlockExpr *CE, int i,
396 StringRef funcName, std::string Tag);
397 std::string SynthesizeBlockFunc(BlockExpr *CE, int i,
398 StringRef funcName, std::string Tag);
399 std::string SynthesizeBlockImpl(BlockExpr *CE,
400 std::string Tag, std::string Desc);
401 std::string SynthesizeBlockDescriptor(std::string DescTag,
402 std::string ImplTag,
403 int i, StringRef funcName,
404 unsigned hasCopy);
405 Stmt *SynthesizeBlockCall(CallExpr *Exp, const Expr* BlockExp);
406 void SynthesizeBlockLiterals(SourceLocation FunLocStart,
407 StringRef FunName);
408 FunctionDecl *SynthBlockInitFunctionDecl(StringRef name);
409 Stmt *SynthBlockInitExpr(BlockExpr *Exp,
410 const SmallVector<BlockDeclRefExpr *, 8> &InnerBlockDeclRefs);
411
412 // Misc. helper routines.
413 QualType getProtocolType();
414 void WarnAboutReturnGotoStmts(Stmt *S);
415 void HasReturnStmts(Stmt *S, bool &hasReturns);
416 void CheckFunctionPointerDecl(QualType dType, NamedDecl *ND);
417 void InsertBlockLiteralsWithinFunction(FunctionDecl *FD);
418 void InsertBlockLiteralsWithinMethod(ObjCMethodDecl *MD);
419
420 bool IsDeclStmtInForeachHeader(DeclStmt *DS);
421 void CollectBlockDeclRefInfo(BlockExpr *Exp);
422 void GetBlockDeclRefExprs(Stmt *S);
423 void GetInnerBlockDeclRefExprs(Stmt *S,
424 SmallVector<BlockDeclRefExpr *, 8> &InnerBlockDeclRefs,
425 llvm::SmallPtrSet<const DeclContext *, 8> &InnerContexts);
426
427 // We avoid calling Type::isBlockPointerType(), since it operates on the
428 // canonical type. We only care if the top-level type is a closure pointer.
429 bool isTopLevelBlockPointerType(QualType T) {
430 return isa<BlockPointerType>(T);
431 }
432
433 /// convertBlockPointerToFunctionPointer - Converts a block-pointer type
434 /// to a function pointer type and upon success, returns true; false
435 /// otherwise.
436 bool convertBlockPointerToFunctionPointer(QualType &T) {
437 if (isTopLevelBlockPointerType(T)) {
438 const BlockPointerType *BPT = T->getAs<BlockPointerType>();
439 T = Context->getPointerType(BPT->getPointeeType());
440 return true;
441 }
442 return false;
443 }
444
Fariborz Jahanian164d6f82012-02-13 18:57:49 +0000445 bool convertObjCTypeToCStyleType(QualType &T);
446
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +0000447 bool needToScanForQualifiers(QualType T);
448 QualType getSuperStructType();
449 QualType getConstantStringStructType();
450 QualType convertFunctionTypeOfBlocks(const FunctionType *FT);
451 bool BufferContainsPPDirectives(const char *startBuf, const char *endBuf);
452
453 void convertToUnqualifiedObjCType(QualType &T) {
454 if (T->isObjCQualifiedIdType())
455 T = Context->getObjCIdType();
456 else if (T->isObjCQualifiedClassType())
457 T = Context->getObjCClassType();
458 else if (T->isObjCObjectPointerType() &&
459 T->getPointeeType()->isObjCQualifiedInterfaceType()) {
460 if (const ObjCObjectPointerType * OBJPT =
461 T->getAsObjCInterfacePointerType()) {
462 const ObjCInterfaceType *IFaceT = OBJPT->getInterfaceType();
463 T = QualType(IFaceT, 0);
464 T = Context->getPointerType(T);
465 }
466 }
467 }
468
469 // FIXME: This predicate seems like it would be useful to add to ASTContext.
470 bool isObjCType(QualType T) {
471 if (!LangOpts.ObjC1 && !LangOpts.ObjC2)
472 return false;
473
474 QualType OCT = Context->getCanonicalType(T).getUnqualifiedType();
475
476 if (OCT == Context->getCanonicalType(Context->getObjCIdType()) ||
477 OCT == Context->getCanonicalType(Context->getObjCClassType()))
478 return true;
479
480 if (const PointerType *PT = OCT->getAs<PointerType>()) {
481 if (isa<ObjCInterfaceType>(PT->getPointeeType()) ||
482 PT->getPointeeType()->isObjCQualifiedIdType())
483 return true;
484 }
485 return false;
486 }
487 bool PointerTypeTakesAnyBlockArguments(QualType QT);
488 bool PointerTypeTakesAnyObjCQualifiedType(QualType QT);
489 void GetExtentOfArgList(const char *Name, const char *&LParen,
490 const char *&RParen);
491
492 void QuoteDoublequotes(std::string &From, std::string &To) {
493 for (unsigned i = 0; i < From.length(); i++) {
494 if (From[i] == '"')
495 To += "\\\"";
496 else
497 To += From[i];
498 }
499 }
500
501 QualType getSimpleFunctionType(QualType result,
502 const QualType *args,
503 unsigned numArgs,
504 bool variadic = false) {
505 if (result == Context->getObjCInstanceType())
506 result = Context->getObjCIdType();
507 FunctionProtoType::ExtProtoInfo fpi;
508 fpi.Variadic = variadic;
509 return Context->getFunctionType(result, args, numArgs, fpi);
510 }
511
512 // Helper function: create a CStyleCastExpr with trivial type source info.
513 CStyleCastExpr* NoTypeInfoCStyleCastExpr(ASTContext *Ctx, QualType Ty,
514 CastKind Kind, Expr *E) {
515 TypeSourceInfo *TInfo = Ctx->getTrivialTypeSourceInfo(Ty, SourceLocation());
516 return CStyleCastExpr::Create(*Ctx, Ty, VK_RValue, Kind, E, 0, TInfo,
517 SourceLocation(), SourceLocation());
518 }
519 };
520
521}
522
523void RewriteModernObjC::RewriteBlocksInFunctionProtoType(QualType funcType,
524 NamedDecl *D) {
525 if (const FunctionProtoType *fproto
526 = dyn_cast<FunctionProtoType>(funcType.IgnoreParens())) {
527 for (FunctionProtoType::arg_type_iterator I = fproto->arg_type_begin(),
528 E = fproto->arg_type_end(); I && (I != E); ++I)
529 if (isTopLevelBlockPointerType(*I)) {
530 // All the args are checked/rewritten. Don't call twice!
531 RewriteBlockPointerDecl(D);
532 break;
533 }
534 }
535}
536
537void RewriteModernObjC::CheckFunctionPointerDecl(QualType funcType, NamedDecl *ND) {
538 const PointerType *PT = funcType->getAs<PointerType>();
539 if (PT && PointerTypeTakesAnyBlockArguments(funcType))
540 RewriteBlocksInFunctionProtoType(PT->getPointeeType(), ND);
541}
542
543static bool IsHeaderFile(const std::string &Filename) {
544 std::string::size_type DotPos = Filename.rfind('.');
545
546 if (DotPos == std::string::npos) {
547 // no file extension
548 return false;
549 }
550
551 std::string Ext = std::string(Filename.begin()+DotPos+1, Filename.end());
552 // C header: .h
553 // C++ header: .hh or .H;
554 return Ext == "h" || Ext == "hh" || Ext == "H";
555}
556
557RewriteModernObjC::RewriteModernObjC(std::string inFile, raw_ostream* OS,
558 DiagnosticsEngine &D, const LangOptions &LOpts,
559 bool silenceMacroWarn)
560 : Diags(D), LangOpts(LOpts), InFileName(inFile), OutFile(OS),
561 SilenceRewriteMacroWarning(silenceMacroWarn) {
562 IsHeader = IsHeaderFile(inFile);
563 RewriteFailedDiag = Diags.getCustomDiagID(DiagnosticsEngine::Warning,
564 "rewriting sub-expression within a macro (may not be correct)");
565 TryFinallyContainsReturnDiag = Diags.getCustomDiagID(
566 DiagnosticsEngine::Warning,
567 "rewriter doesn't support user-specified control flow semantics "
568 "for @try/@finally (code may not execute properly)");
569}
570
571ASTConsumer *clang::CreateModernObjCRewriter(const std::string& InFile,
572 raw_ostream* OS,
573 DiagnosticsEngine &Diags,
574 const LangOptions &LOpts,
575 bool SilenceRewriteMacroWarning) {
576 return new RewriteModernObjC(InFile, OS, Diags, LOpts, SilenceRewriteMacroWarning);
577}
578
579void RewriteModernObjC::InitializeCommon(ASTContext &context) {
580 Context = &context;
581 SM = &Context->getSourceManager();
582 TUDecl = Context->getTranslationUnitDecl();
583 MsgSendFunctionDecl = 0;
584 MsgSendSuperFunctionDecl = 0;
585 MsgSendStretFunctionDecl = 0;
586 MsgSendSuperStretFunctionDecl = 0;
587 MsgSendFpretFunctionDecl = 0;
588 GetClassFunctionDecl = 0;
589 GetMetaClassFunctionDecl = 0;
590 GetSuperClassFunctionDecl = 0;
591 SelGetUidFunctionDecl = 0;
592 CFStringFunctionDecl = 0;
593 ConstantStringClassReference = 0;
594 NSStringRecord = 0;
595 CurMethodDef = 0;
596 CurFunctionDef = 0;
597 CurFunctionDeclToDeclareForBlock = 0;
598 GlobalVarDecl = 0;
599 SuperStructDecl = 0;
600 ProtocolTypeDecl = 0;
601 ConstantStringDecl = 0;
602 BcLabelCount = 0;
603 SuperContructorFunctionDecl = 0;
604 NumObjCStringLiterals = 0;
605 PropParentMap = 0;
606 CurrentBody = 0;
607 DisableReplaceStmt = false;
608 objc_impl_method = false;
609
610 // Get the ID and start/end of the main file.
611 MainFileID = SM->getMainFileID();
612 const llvm::MemoryBuffer *MainBuf = SM->getBuffer(MainFileID);
613 MainFileStart = MainBuf->getBufferStart();
614 MainFileEnd = MainBuf->getBufferEnd();
615
616 Rewrite.setSourceMgr(Context->getSourceManager(), Context->getLangOptions());
617}
618
619//===----------------------------------------------------------------------===//
620// Top Level Driver Code
621//===----------------------------------------------------------------------===//
622
623void RewriteModernObjC::HandleTopLevelSingleDecl(Decl *D) {
624 if (Diags.hasErrorOccurred())
625 return;
626
627 // Two cases: either the decl could be in the main file, or it could be in a
628 // #included file. If the former, rewrite it now. If the later, check to see
629 // if we rewrote the #include/#import.
630 SourceLocation Loc = D->getLocation();
631 Loc = SM->getExpansionLoc(Loc);
632
633 // If this is for a builtin, ignore it.
634 if (Loc.isInvalid()) return;
635
636 // Look for built-in declarations that we need to refer during the rewrite.
637 if (FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) {
638 RewriteFunctionDecl(FD);
639 } else if (VarDecl *FVD = dyn_cast<VarDecl>(D)) {
640 // declared in <Foundation/NSString.h>
641 if (FVD->getName() == "_NSConstantStringClassReference") {
642 ConstantStringClassReference = FVD;
643 return;
644 }
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +0000645 } else if (ObjCCategoryDecl *CD = dyn_cast<ObjCCategoryDecl>(D)) {
646 RewriteCategoryDecl(CD);
647 } else if (ObjCProtocolDecl *PD = dyn_cast<ObjCProtocolDecl>(D)) {
648 if (PD->isThisDeclarationADefinition())
649 RewriteProtocolDecl(PD);
650 } else if (LinkageSpecDecl *LSD = dyn_cast<LinkageSpecDecl>(D)) {
651 // Recurse into linkage specifications
652 for (DeclContext::decl_iterator DI = LSD->decls_begin(),
653 DIEnd = LSD->decls_end();
654 DI != DIEnd; ) {
655 if (ObjCInterfaceDecl *IFace = dyn_cast<ObjCInterfaceDecl>((*DI))) {
656 if (!IFace->isThisDeclarationADefinition()) {
657 SmallVector<Decl *, 8> DG;
658 SourceLocation StartLoc = IFace->getLocStart();
659 do {
660 if (isa<ObjCInterfaceDecl>(*DI) &&
661 !cast<ObjCInterfaceDecl>(*DI)->isThisDeclarationADefinition() &&
662 StartLoc == (*DI)->getLocStart())
663 DG.push_back(*DI);
664 else
665 break;
666
667 ++DI;
668 } while (DI != DIEnd);
669 RewriteForwardClassDecl(DG);
670 continue;
671 }
672 }
673
674 if (ObjCProtocolDecl *Proto = dyn_cast<ObjCProtocolDecl>((*DI))) {
675 if (!Proto->isThisDeclarationADefinition()) {
676 SmallVector<Decl *, 8> DG;
677 SourceLocation StartLoc = Proto->getLocStart();
678 do {
679 if (isa<ObjCProtocolDecl>(*DI) &&
680 !cast<ObjCProtocolDecl>(*DI)->isThisDeclarationADefinition() &&
681 StartLoc == (*DI)->getLocStart())
682 DG.push_back(*DI);
683 else
684 break;
685
686 ++DI;
687 } while (DI != DIEnd);
688 RewriteForwardProtocolDecl(DG);
689 continue;
690 }
691 }
692
693 HandleTopLevelSingleDecl(*DI);
694 ++DI;
695 }
696 }
697 // If we have a decl in the main file, see if we should rewrite it.
698 if (SM->isFromMainFile(Loc))
699 return HandleDeclInMainFile(D);
700}
701
702//===----------------------------------------------------------------------===//
703// Syntactic (non-AST) Rewriting Code
704//===----------------------------------------------------------------------===//
705
706void RewriteModernObjC::RewriteInclude() {
707 SourceLocation LocStart = SM->getLocForStartOfFile(MainFileID);
708 StringRef MainBuf = SM->getBufferData(MainFileID);
709 const char *MainBufStart = MainBuf.begin();
710 const char *MainBufEnd = MainBuf.end();
711 size_t ImportLen = strlen("import");
712
713 // Loop over the whole file, looking for includes.
714 for (const char *BufPtr = MainBufStart; BufPtr < MainBufEnd; ++BufPtr) {
715 if (*BufPtr == '#') {
716 if (++BufPtr == MainBufEnd)
717 return;
718 while (*BufPtr == ' ' || *BufPtr == '\t')
719 if (++BufPtr == MainBufEnd)
720 return;
721 if (!strncmp(BufPtr, "import", ImportLen)) {
722 // replace import with include
723 SourceLocation ImportLoc =
724 LocStart.getLocWithOffset(BufPtr-MainBufStart);
725 ReplaceText(ImportLoc, ImportLen, "include");
726 BufPtr += ImportLen;
727 }
728 }
729 }
730}
731
732static std::string getIvarAccessString(ObjCIvarDecl *OID) {
733 const ObjCInterfaceDecl *ClassDecl = OID->getContainingInterface();
734 std::string S;
735 S = "((struct ";
736 S += ClassDecl->getIdentifier()->getName();
737 S += "_IMPL *)self)->";
738 S += OID->getName();
739 return S;
740}
741
742void RewriteModernObjC::RewritePropertyImplDecl(ObjCPropertyImplDecl *PID,
743 ObjCImplementationDecl *IMD,
744 ObjCCategoryImplDecl *CID) {
745 static bool objcGetPropertyDefined = false;
746 static bool objcSetPropertyDefined = false;
747 SourceLocation startLoc = PID->getLocStart();
748 InsertText(startLoc, "// ");
749 const char *startBuf = SM->getCharacterData(startLoc);
750 assert((*startBuf == '@') && "bogus @synthesize location");
751 const char *semiBuf = strchr(startBuf, ';');
752 assert((*semiBuf == ';') && "@synthesize: can't find ';'");
753 SourceLocation onePastSemiLoc =
754 startLoc.getLocWithOffset(semiBuf-startBuf+1);
755
756 if (PID->getPropertyImplementation() == ObjCPropertyImplDecl::Dynamic)
757 return; // FIXME: is this correct?
758
759 // Generate the 'getter' function.
760 ObjCPropertyDecl *PD = PID->getPropertyDecl();
761 ObjCIvarDecl *OID = PID->getPropertyIvarDecl();
762
763 if (!OID)
764 return;
765 unsigned Attributes = PD->getPropertyAttributes();
766 if (!PD->getGetterMethodDecl()->isDefined()) {
767 bool GenGetProperty = !(Attributes & ObjCPropertyDecl::OBJC_PR_nonatomic) &&
768 (Attributes & (ObjCPropertyDecl::OBJC_PR_retain |
769 ObjCPropertyDecl::OBJC_PR_copy));
770 std::string Getr;
771 if (GenGetProperty && !objcGetPropertyDefined) {
772 objcGetPropertyDefined = true;
773 // FIXME. Is this attribute correct in all cases?
774 Getr = "\nextern \"C\" __declspec(dllimport) "
775 "id objc_getProperty(id, SEL, long, bool);\n";
776 }
777 RewriteObjCMethodDecl(OID->getContainingInterface(),
778 PD->getGetterMethodDecl(), Getr);
779 Getr += "{ ";
780 // Synthesize an explicit cast to gain access to the ivar.
781 // See objc-act.c:objc_synthesize_new_getter() for details.
782 if (GenGetProperty) {
783 // return objc_getProperty(self, _cmd, offsetof(ClassDecl, OID), 1)
784 Getr += "typedef ";
785 const FunctionType *FPRetType = 0;
786 RewriteTypeIntoString(PD->getGetterMethodDecl()->getResultType(), Getr,
787 FPRetType);
788 Getr += " _TYPE";
789 if (FPRetType) {
790 Getr += ")"; // close the precedence "scope" for "*".
791
792 // Now, emit the argument types (if any).
793 if (const FunctionProtoType *FT = dyn_cast<FunctionProtoType>(FPRetType)){
794 Getr += "(";
795 for (unsigned i = 0, e = FT->getNumArgs(); i != e; ++i) {
796 if (i) Getr += ", ";
797 std::string ParamStr = FT->getArgType(i).getAsString(
798 Context->getPrintingPolicy());
799 Getr += ParamStr;
800 }
801 if (FT->isVariadic()) {
802 if (FT->getNumArgs()) Getr += ", ";
803 Getr += "...";
804 }
805 Getr += ")";
806 } else
807 Getr += "()";
808 }
809 Getr += ";\n";
810 Getr += "return (_TYPE)";
811 Getr += "objc_getProperty(self, _cmd, ";
812 RewriteIvarOffsetComputation(OID, Getr);
813 Getr += ", 1)";
814 }
815 else
816 Getr += "return " + getIvarAccessString(OID);
817 Getr += "; }";
818 InsertText(onePastSemiLoc, Getr);
819 }
820
821 if (PD->isReadOnly() || PD->getSetterMethodDecl()->isDefined())
822 return;
823
824 // Generate the 'setter' function.
825 std::string Setr;
826 bool GenSetProperty = Attributes & (ObjCPropertyDecl::OBJC_PR_retain |
827 ObjCPropertyDecl::OBJC_PR_copy);
828 if (GenSetProperty && !objcSetPropertyDefined) {
829 objcSetPropertyDefined = true;
830 // FIXME. Is this attribute correct in all cases?
831 Setr = "\nextern \"C\" __declspec(dllimport) "
832 "void objc_setProperty (id, SEL, long, id, bool, bool);\n";
833 }
834
835 RewriteObjCMethodDecl(OID->getContainingInterface(),
836 PD->getSetterMethodDecl(), Setr);
837 Setr += "{ ";
838 // Synthesize an explicit cast to initialize the ivar.
839 // See objc-act.c:objc_synthesize_new_setter() for details.
840 if (GenSetProperty) {
841 Setr += "objc_setProperty (self, _cmd, ";
842 RewriteIvarOffsetComputation(OID, Setr);
843 Setr += ", (id)";
844 Setr += PD->getName();
845 Setr += ", ";
846 if (Attributes & ObjCPropertyDecl::OBJC_PR_nonatomic)
847 Setr += "0, ";
848 else
849 Setr += "1, ";
850 if (Attributes & ObjCPropertyDecl::OBJC_PR_copy)
851 Setr += "1)";
852 else
853 Setr += "0)";
854 }
855 else {
856 Setr += getIvarAccessString(OID) + " = ";
857 Setr += PD->getName();
858 }
859 Setr += "; }";
860 InsertText(onePastSemiLoc, Setr);
861}
862
863static void RewriteOneForwardClassDecl(ObjCInterfaceDecl *ForwardDecl,
864 std::string &typedefString) {
865 typedefString += "#ifndef _REWRITER_typedef_";
866 typedefString += ForwardDecl->getNameAsString();
867 typedefString += "\n";
868 typedefString += "#define _REWRITER_typedef_";
869 typedefString += ForwardDecl->getNameAsString();
870 typedefString += "\n";
871 typedefString += "typedef struct objc_object ";
872 typedefString += ForwardDecl->getNameAsString();
873 typedefString += ";\n#endif\n";
874}
875
876void RewriteModernObjC::RewriteForwardClassEpilogue(ObjCInterfaceDecl *ClassDecl,
877 const std::string &typedefString) {
878 SourceLocation startLoc = ClassDecl->getLocStart();
879 const char *startBuf = SM->getCharacterData(startLoc);
880 const char *semiPtr = strchr(startBuf, ';');
881 // Replace the @class with typedefs corresponding to the classes.
882 ReplaceText(startLoc, semiPtr-startBuf+1, typedefString);
883}
884
885void RewriteModernObjC::RewriteForwardClassDecl(DeclGroupRef D) {
886 std::string typedefString;
887 for (DeclGroupRef::iterator I = D.begin(), E = D.end(); I != E; ++I) {
888 ObjCInterfaceDecl *ForwardDecl = cast<ObjCInterfaceDecl>(*I);
889 if (I == D.begin()) {
890 // Translate to typedef's that forward reference structs with the same name
891 // as the class. As a convenience, we include the original declaration
892 // as a comment.
893 typedefString += "// @class ";
894 typedefString += ForwardDecl->getNameAsString();
895 typedefString += ";\n";
896 }
897 RewriteOneForwardClassDecl(ForwardDecl, typedefString);
898 }
899 DeclGroupRef::iterator I = D.begin();
900 RewriteForwardClassEpilogue(cast<ObjCInterfaceDecl>(*I), typedefString);
901}
902
903void RewriteModernObjC::RewriteForwardClassDecl(
904 const llvm::SmallVector<Decl*, 8> &D) {
905 std::string typedefString;
906 for (unsigned i = 0; i < D.size(); i++) {
907 ObjCInterfaceDecl *ForwardDecl = cast<ObjCInterfaceDecl>(D[i]);
908 if (i == 0) {
909 typedefString += "// @class ";
910 typedefString += ForwardDecl->getNameAsString();
911 typedefString += ";\n";
912 }
913 RewriteOneForwardClassDecl(ForwardDecl, typedefString);
914 }
915 RewriteForwardClassEpilogue(cast<ObjCInterfaceDecl>(D[0]), typedefString);
916}
917
918void RewriteModernObjC::RewriteMethodDeclaration(ObjCMethodDecl *Method) {
919 // When method is a synthesized one, such as a getter/setter there is
920 // nothing to rewrite.
921 if (Method->isImplicit())
922 return;
923 SourceLocation LocStart = Method->getLocStart();
924 SourceLocation LocEnd = Method->getLocEnd();
925
926 if (SM->getExpansionLineNumber(LocEnd) >
927 SM->getExpansionLineNumber(LocStart)) {
928 InsertText(LocStart, "#if 0\n");
929 ReplaceText(LocEnd, 1, ";\n#endif\n");
930 } else {
931 InsertText(LocStart, "// ");
932 }
933}
934
935void RewriteModernObjC::RewriteProperty(ObjCPropertyDecl *prop) {
936 SourceLocation Loc = prop->getAtLoc();
937
938 ReplaceText(Loc, 0, "// ");
939 // FIXME: handle properties that are declared across multiple lines.
940}
941
942void RewriteModernObjC::RewriteCategoryDecl(ObjCCategoryDecl *CatDecl) {
943 SourceLocation LocStart = CatDecl->getLocStart();
944
945 // FIXME: handle category headers that are declared across multiple lines.
946 ReplaceText(LocStart, 0, "// ");
Fariborz Jahanianaf300292012-02-20 20:09:20 +0000947 if (CatDecl->getIvarLBraceLoc().isValid())
948 InsertText(CatDecl->getIvarLBraceLoc(), "// ");
Fariborz Jahaniand2aea122012-02-19 19:00:05 +0000949 for (ObjCCategoryDecl::ivar_iterator
950 I = CatDecl->ivar_begin(), E = CatDecl->ivar_end(); I != E; ++I) {
951 ObjCIvarDecl *Ivar = (*I);
952 SourceLocation LocStart = Ivar->getLocStart();
953 ReplaceText(LocStart, 0, "// ");
954 }
Fariborz Jahanianaf300292012-02-20 20:09:20 +0000955 if (CatDecl->getIvarRBraceLoc().isValid())
956 InsertText(CatDecl->getIvarRBraceLoc(), "// ");
957
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +0000958 for (ObjCCategoryDecl::prop_iterator I = CatDecl->prop_begin(),
959 E = CatDecl->prop_end(); I != E; ++I)
960 RewriteProperty(*I);
961
962 for (ObjCCategoryDecl::instmeth_iterator
963 I = CatDecl->instmeth_begin(), E = CatDecl->instmeth_end();
964 I != E; ++I)
965 RewriteMethodDeclaration(*I);
966 for (ObjCCategoryDecl::classmeth_iterator
967 I = CatDecl->classmeth_begin(), E = CatDecl->classmeth_end();
968 I != E; ++I)
969 RewriteMethodDeclaration(*I);
970
971 // Lastly, comment out the @end.
972 ReplaceText(CatDecl->getAtEndRange().getBegin(),
973 strlen("@end"), "/* @end */");
974}
975
976void RewriteModernObjC::RewriteProtocolDecl(ObjCProtocolDecl *PDecl) {
977 SourceLocation LocStart = PDecl->getLocStart();
978 assert(PDecl->isThisDeclarationADefinition());
979
980 // FIXME: handle protocol headers that are declared across multiple lines.
981 ReplaceText(LocStart, 0, "// ");
982
983 for (ObjCProtocolDecl::instmeth_iterator
984 I = PDecl->instmeth_begin(), E = PDecl->instmeth_end();
985 I != E; ++I)
986 RewriteMethodDeclaration(*I);
987 for (ObjCProtocolDecl::classmeth_iterator
988 I = PDecl->classmeth_begin(), E = PDecl->classmeth_end();
989 I != E; ++I)
990 RewriteMethodDeclaration(*I);
991
992 for (ObjCInterfaceDecl::prop_iterator I = PDecl->prop_begin(),
993 E = PDecl->prop_end(); I != E; ++I)
994 RewriteProperty(*I);
995
996 // Lastly, comment out the @end.
997 SourceLocation LocEnd = PDecl->getAtEndRange().getBegin();
998 ReplaceText(LocEnd, strlen("@end"), "/* @end */");
999
1000 // Must comment out @optional/@required
1001 const char *startBuf = SM->getCharacterData(LocStart);
1002 const char *endBuf = SM->getCharacterData(LocEnd);
1003 for (const char *p = startBuf; p < endBuf; p++) {
1004 if (*p == '@' && !strncmp(p+1, "optional", strlen("optional"))) {
1005 SourceLocation OptionalLoc = LocStart.getLocWithOffset(p-startBuf);
1006 ReplaceText(OptionalLoc, strlen("@optional"), "/* @optional */");
1007
1008 }
1009 else if (*p == '@' && !strncmp(p+1, "required", strlen("required"))) {
1010 SourceLocation OptionalLoc = LocStart.getLocWithOffset(p-startBuf);
1011 ReplaceText(OptionalLoc, strlen("@required"), "/* @required */");
1012
1013 }
1014 }
1015}
1016
1017void RewriteModernObjC::RewriteForwardProtocolDecl(DeclGroupRef D) {
1018 SourceLocation LocStart = (*D.begin())->getLocStart();
1019 if (LocStart.isInvalid())
1020 llvm_unreachable("Invalid SourceLocation");
1021 // FIXME: handle forward protocol that are declared across multiple lines.
1022 ReplaceText(LocStart, 0, "// ");
1023}
1024
1025void
1026RewriteModernObjC::RewriteForwardProtocolDecl(const llvm::SmallVector<Decl*, 8> &DG) {
1027 SourceLocation LocStart = DG[0]->getLocStart();
1028 if (LocStart.isInvalid())
1029 llvm_unreachable("Invalid SourceLocation");
1030 // FIXME: handle forward protocol that are declared across multiple lines.
1031 ReplaceText(LocStart, 0, "// ");
1032}
1033
1034void RewriteModernObjC::RewriteTypeIntoString(QualType T, std::string &ResultStr,
1035 const FunctionType *&FPRetType) {
1036 if (T->isObjCQualifiedIdType())
1037 ResultStr += "id";
1038 else if (T->isFunctionPointerType() ||
1039 T->isBlockPointerType()) {
1040 // needs special handling, since pointer-to-functions have special
1041 // syntax (where a decaration models use).
1042 QualType retType = T;
1043 QualType PointeeTy;
1044 if (const PointerType* PT = retType->getAs<PointerType>())
1045 PointeeTy = PT->getPointeeType();
1046 else if (const BlockPointerType *BPT = retType->getAs<BlockPointerType>())
1047 PointeeTy = BPT->getPointeeType();
1048 if ((FPRetType = PointeeTy->getAs<FunctionType>())) {
1049 ResultStr += FPRetType->getResultType().getAsString(
1050 Context->getPrintingPolicy());
1051 ResultStr += "(*";
1052 }
1053 } else
1054 ResultStr += T.getAsString(Context->getPrintingPolicy());
1055}
1056
1057void RewriteModernObjC::RewriteObjCMethodDecl(const ObjCInterfaceDecl *IDecl,
1058 ObjCMethodDecl *OMD,
1059 std::string &ResultStr) {
1060 //fprintf(stderr,"In RewriteObjCMethodDecl\n");
1061 const FunctionType *FPRetType = 0;
1062 ResultStr += "\nstatic ";
1063 RewriteTypeIntoString(OMD->getResultType(), ResultStr, FPRetType);
1064 ResultStr += " ";
1065
1066 // Unique method name
1067 std::string NameStr;
1068
1069 if (OMD->isInstanceMethod())
1070 NameStr += "_I_";
1071 else
1072 NameStr += "_C_";
1073
1074 NameStr += IDecl->getNameAsString();
1075 NameStr += "_";
1076
1077 if (ObjCCategoryImplDecl *CID =
1078 dyn_cast<ObjCCategoryImplDecl>(OMD->getDeclContext())) {
1079 NameStr += CID->getNameAsString();
1080 NameStr += "_";
1081 }
1082 // Append selector names, replacing ':' with '_'
1083 {
1084 std::string selString = OMD->getSelector().getAsString();
1085 int len = selString.size();
1086 for (int i = 0; i < len; i++)
1087 if (selString[i] == ':')
1088 selString[i] = '_';
1089 NameStr += selString;
1090 }
1091 // Remember this name for metadata emission
1092 MethodInternalNames[OMD] = NameStr;
1093 ResultStr += NameStr;
1094
1095 // Rewrite arguments
1096 ResultStr += "(";
1097
1098 // invisible arguments
1099 if (OMD->isInstanceMethod()) {
1100 QualType selfTy = Context->getObjCInterfaceType(IDecl);
1101 selfTy = Context->getPointerType(selfTy);
1102 if (!LangOpts.MicrosoftExt) {
1103 if (ObjCSynthesizedStructs.count(const_cast<ObjCInterfaceDecl*>(IDecl)))
1104 ResultStr += "struct ";
1105 }
1106 // When rewriting for Microsoft, explicitly omit the structure name.
1107 ResultStr += IDecl->getNameAsString();
1108 ResultStr += " *";
1109 }
1110 else
1111 ResultStr += Context->getObjCClassType().getAsString(
1112 Context->getPrintingPolicy());
1113
1114 ResultStr += " self, ";
1115 ResultStr += Context->getObjCSelType().getAsString(Context->getPrintingPolicy());
1116 ResultStr += " _cmd";
1117
1118 // Method arguments.
1119 for (ObjCMethodDecl::param_iterator PI = OMD->param_begin(),
1120 E = OMD->param_end(); PI != E; ++PI) {
1121 ParmVarDecl *PDecl = *PI;
1122 ResultStr += ", ";
1123 if (PDecl->getType()->isObjCQualifiedIdType()) {
1124 ResultStr += "id ";
1125 ResultStr += PDecl->getNameAsString();
1126 } else {
1127 std::string Name = PDecl->getNameAsString();
1128 QualType QT = PDecl->getType();
1129 // Make sure we convert "t (^)(...)" to "t (*)(...)".
1130 if (convertBlockPointerToFunctionPointer(QT))
1131 QT.getAsStringInternal(Name, Context->getPrintingPolicy());
1132 else
1133 PDecl->getType().getAsStringInternal(Name, Context->getPrintingPolicy());
1134 ResultStr += Name;
1135 }
1136 }
1137 if (OMD->isVariadic())
1138 ResultStr += ", ...";
1139 ResultStr += ") ";
1140
1141 if (FPRetType) {
1142 ResultStr += ")"; // close the precedence "scope" for "*".
1143
1144 // Now, emit the argument types (if any).
1145 if (const FunctionProtoType *FT = dyn_cast<FunctionProtoType>(FPRetType)) {
1146 ResultStr += "(";
1147 for (unsigned i = 0, e = FT->getNumArgs(); i != e; ++i) {
1148 if (i) ResultStr += ", ";
1149 std::string ParamStr = FT->getArgType(i).getAsString(
1150 Context->getPrintingPolicy());
1151 ResultStr += ParamStr;
1152 }
1153 if (FT->isVariadic()) {
1154 if (FT->getNumArgs()) ResultStr += ", ";
1155 ResultStr += "...";
1156 }
1157 ResultStr += ")";
1158 } else {
1159 ResultStr += "()";
1160 }
1161 }
1162}
1163void RewriteModernObjC::RewriteImplementationDecl(Decl *OID) {
1164 ObjCImplementationDecl *IMD = dyn_cast<ObjCImplementationDecl>(OID);
1165 ObjCCategoryImplDecl *CID = dyn_cast<ObjCCategoryImplDecl>(OID);
1166
Fariborz Jahaniand2aea122012-02-19 19:00:05 +00001167 if (IMD) {
1168 InsertText(IMD->getLocStart(), "// ");
Fariborz Jahanianaf300292012-02-20 20:09:20 +00001169 if (IMD->getIvarLBraceLoc().isValid())
1170 InsertText(IMD->getIvarLBraceLoc(), "// ");
1171 for (ObjCImplementationDecl::ivar_iterator
1172 I = IMD->ivar_begin(), E = IMD->ivar_end(); I != E; ++I) {
1173 ObjCIvarDecl *Ivar = (*I);
1174 SourceLocation LocStart = Ivar->getLocStart();
1175 ReplaceText(LocStart, 0, "// ");
Fariborz Jahaniand2aea122012-02-19 19:00:05 +00001176 }
Fariborz Jahanianaf300292012-02-20 20:09:20 +00001177 if (IMD->getIvarRBraceLoc().isValid())
1178 InsertText(IMD->getIvarRBraceLoc(), "// ");
Fariborz Jahaniand2aea122012-02-19 19:00:05 +00001179 }
1180 else
1181 InsertText(CID->getLocStart(), "// ");
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00001182
1183 for (ObjCCategoryImplDecl::instmeth_iterator
1184 I = IMD ? IMD->instmeth_begin() : CID->instmeth_begin(),
1185 E = IMD ? IMD->instmeth_end() : CID->instmeth_end();
1186 I != E; ++I) {
1187 std::string ResultStr;
1188 ObjCMethodDecl *OMD = *I;
1189 RewriteObjCMethodDecl(OMD->getClassInterface(), OMD, ResultStr);
1190 SourceLocation LocStart = OMD->getLocStart();
1191 SourceLocation LocEnd = OMD->getCompoundBody()->getLocStart();
1192
1193 const char *startBuf = SM->getCharacterData(LocStart);
1194 const char *endBuf = SM->getCharacterData(LocEnd);
1195 ReplaceText(LocStart, endBuf-startBuf, ResultStr);
1196 }
1197
1198 for (ObjCCategoryImplDecl::classmeth_iterator
1199 I = IMD ? IMD->classmeth_begin() : CID->classmeth_begin(),
1200 E = IMD ? IMD->classmeth_end() : CID->classmeth_end();
1201 I != E; ++I) {
1202 std::string ResultStr;
1203 ObjCMethodDecl *OMD = *I;
1204 RewriteObjCMethodDecl(OMD->getClassInterface(), OMD, ResultStr);
1205 SourceLocation LocStart = OMD->getLocStart();
1206 SourceLocation LocEnd = OMD->getCompoundBody()->getLocStart();
1207
1208 const char *startBuf = SM->getCharacterData(LocStart);
1209 const char *endBuf = SM->getCharacterData(LocEnd);
1210 ReplaceText(LocStart, endBuf-startBuf, ResultStr);
1211 }
1212 for (ObjCCategoryImplDecl::propimpl_iterator
1213 I = IMD ? IMD->propimpl_begin() : CID->propimpl_begin(),
1214 E = IMD ? IMD->propimpl_end() : CID->propimpl_end();
1215 I != E; ++I) {
1216 RewritePropertyImplDecl(*I, IMD, CID);
1217 }
1218
1219 InsertText(IMD ? IMD->getLocEnd() : CID->getLocEnd(), "// ");
1220}
1221
1222void RewriteModernObjC::RewriteInterfaceDecl(ObjCInterfaceDecl *ClassDecl) {
Fariborz Jahanian8f1fed02012-02-11 20:10:52 +00001223 // Do not synthesize more than once.
1224 if (ObjCSynthesizedStructs.count(ClassDecl))
1225 return;
1226 // Make sure super class's are written before current class is written.
1227 ObjCInterfaceDecl *SuperClass = ClassDecl->getSuperClass();
1228 while (SuperClass) {
1229 RewriteInterfaceDecl(SuperClass);
1230 SuperClass = SuperClass->getSuperClass();
1231 }
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00001232 std::string ResultStr;
Fariborz Jahaniancf4c60f2012-02-17 22:20:12 +00001233 if (!ObjCWrittenInterfaces.count(ClassDecl->getCanonicalDecl())) {
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00001234 // we haven't seen a forward decl - generate a typedef.
1235 ResultStr = "#ifndef _REWRITER_typedef_";
1236 ResultStr += ClassDecl->getNameAsString();
1237 ResultStr += "\n";
1238 ResultStr += "#define _REWRITER_typedef_";
1239 ResultStr += ClassDecl->getNameAsString();
1240 ResultStr += "\n";
1241 ResultStr += "typedef struct objc_object ";
1242 ResultStr += ClassDecl->getNameAsString();
1243 ResultStr += ";\n#endif\n";
Fariborz Jahanian72c88f12012-02-22 18:13:25 +00001244
1245 RewriteIvarOffsetSymbols(ClassDecl, ResultStr);
1246
Fariborz Jahanian4339bb32012-02-15 22:01:47 +00001247 RewriteObjCInternalStruct(ClassDecl, ResultStr);
Fariborz Jahaniancf4c60f2012-02-17 22:20:12 +00001248 // Mark this typedef as having been written into its c++ equivalent.
1249 ObjCWrittenInterfaces.insert(ClassDecl->getCanonicalDecl());
Fariborz Jahanian4339bb32012-02-15 22:01:47 +00001250
1251 for (ObjCInterfaceDecl::prop_iterator I = ClassDecl->prop_begin(),
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00001252 E = ClassDecl->prop_end(); I != E; ++I)
Fariborz Jahanian4339bb32012-02-15 22:01:47 +00001253 RewriteProperty(*I);
1254 for (ObjCInterfaceDecl::instmeth_iterator
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00001255 I = ClassDecl->instmeth_begin(), E = ClassDecl->instmeth_end();
Fariborz Jahanian4339bb32012-02-15 22:01:47 +00001256 I != E; ++I)
1257 RewriteMethodDeclaration(*I);
1258 for (ObjCInterfaceDecl::classmeth_iterator
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00001259 I = ClassDecl->classmeth_begin(), E = ClassDecl->classmeth_end();
Fariborz Jahanian4339bb32012-02-15 22:01:47 +00001260 I != E; ++I)
1261 RewriteMethodDeclaration(*I);
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00001262
Fariborz Jahanian4339bb32012-02-15 22:01:47 +00001263 // Lastly, comment out the @end.
1264 ReplaceText(ClassDecl->getAtEndRange().getBegin(), strlen("@end"),
1265 "/* @end */");
1266 }
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00001267}
1268
1269Stmt *RewriteModernObjC::RewritePropertyOrImplicitSetter(PseudoObjectExpr *PseudoOp) {
1270 SourceRange OldRange = PseudoOp->getSourceRange();
1271
1272 // We just magically know some things about the structure of this
1273 // expression.
1274 ObjCMessageExpr *OldMsg =
1275 cast<ObjCMessageExpr>(PseudoOp->getSemanticExpr(
1276 PseudoOp->getNumSemanticExprs() - 1));
1277
1278 // Because the rewriter doesn't allow us to rewrite rewritten code,
1279 // we need to suppress rewriting the sub-statements.
1280 Expr *Base, *RHS;
1281 {
1282 DisableReplaceStmtScope S(*this);
1283
1284 // Rebuild the base expression if we have one.
1285 Base = 0;
1286 if (OldMsg->getReceiverKind() == ObjCMessageExpr::Instance) {
1287 Base = OldMsg->getInstanceReceiver();
1288 Base = cast<OpaqueValueExpr>(Base)->getSourceExpr();
1289 Base = cast<Expr>(RewriteFunctionBodyOrGlobalInitializer(Base));
1290 }
1291
1292 // Rebuild the RHS.
1293 RHS = cast<BinaryOperator>(PseudoOp->getSyntacticForm())->getRHS();
1294 RHS = cast<OpaqueValueExpr>(RHS)->getSourceExpr();
1295 RHS = cast<Expr>(RewriteFunctionBodyOrGlobalInitializer(RHS));
1296 }
1297
1298 // TODO: avoid this copy.
1299 SmallVector<SourceLocation, 1> SelLocs;
1300 OldMsg->getSelectorLocs(SelLocs);
1301
1302 ObjCMessageExpr *NewMsg = 0;
1303 switch (OldMsg->getReceiverKind()) {
1304 case ObjCMessageExpr::Class:
1305 NewMsg = ObjCMessageExpr::Create(*Context, OldMsg->getType(),
1306 OldMsg->getValueKind(),
1307 OldMsg->getLeftLoc(),
1308 OldMsg->getClassReceiverTypeInfo(),
1309 OldMsg->getSelector(),
1310 SelLocs,
1311 OldMsg->getMethodDecl(),
1312 RHS,
1313 OldMsg->getRightLoc(),
1314 OldMsg->isImplicit());
1315 break;
1316
1317 case ObjCMessageExpr::Instance:
1318 NewMsg = ObjCMessageExpr::Create(*Context, OldMsg->getType(),
1319 OldMsg->getValueKind(),
1320 OldMsg->getLeftLoc(),
1321 Base,
1322 OldMsg->getSelector(),
1323 SelLocs,
1324 OldMsg->getMethodDecl(),
1325 RHS,
1326 OldMsg->getRightLoc(),
1327 OldMsg->isImplicit());
1328 break;
1329
1330 case ObjCMessageExpr::SuperClass:
1331 case ObjCMessageExpr::SuperInstance:
1332 NewMsg = ObjCMessageExpr::Create(*Context, OldMsg->getType(),
1333 OldMsg->getValueKind(),
1334 OldMsg->getLeftLoc(),
1335 OldMsg->getSuperLoc(),
1336 OldMsg->getReceiverKind() == ObjCMessageExpr::SuperInstance,
1337 OldMsg->getSuperType(),
1338 OldMsg->getSelector(),
1339 SelLocs,
1340 OldMsg->getMethodDecl(),
1341 RHS,
1342 OldMsg->getRightLoc(),
1343 OldMsg->isImplicit());
1344 break;
1345 }
1346
1347 Stmt *Replacement = SynthMessageExpr(NewMsg);
1348 ReplaceStmtWithRange(PseudoOp, Replacement, OldRange);
1349 return Replacement;
1350}
1351
1352Stmt *RewriteModernObjC::RewritePropertyOrImplicitGetter(PseudoObjectExpr *PseudoOp) {
1353 SourceRange OldRange = PseudoOp->getSourceRange();
1354
1355 // We just magically know some things about the structure of this
1356 // expression.
1357 ObjCMessageExpr *OldMsg =
1358 cast<ObjCMessageExpr>(PseudoOp->getResultExpr()->IgnoreImplicit());
1359
1360 // Because the rewriter doesn't allow us to rewrite rewritten code,
1361 // we need to suppress rewriting the sub-statements.
1362 Expr *Base = 0;
1363 {
1364 DisableReplaceStmtScope S(*this);
1365
1366 // Rebuild the base expression if we have one.
1367 if (OldMsg->getReceiverKind() == ObjCMessageExpr::Instance) {
1368 Base = OldMsg->getInstanceReceiver();
1369 Base = cast<OpaqueValueExpr>(Base)->getSourceExpr();
1370 Base = cast<Expr>(RewriteFunctionBodyOrGlobalInitializer(Base));
1371 }
1372 }
1373
1374 // Intentionally empty.
1375 SmallVector<SourceLocation, 1> SelLocs;
1376 SmallVector<Expr*, 1> Args;
1377
1378 ObjCMessageExpr *NewMsg = 0;
1379 switch (OldMsg->getReceiverKind()) {
1380 case ObjCMessageExpr::Class:
1381 NewMsg = ObjCMessageExpr::Create(*Context, OldMsg->getType(),
1382 OldMsg->getValueKind(),
1383 OldMsg->getLeftLoc(),
1384 OldMsg->getClassReceiverTypeInfo(),
1385 OldMsg->getSelector(),
1386 SelLocs,
1387 OldMsg->getMethodDecl(),
1388 Args,
1389 OldMsg->getRightLoc(),
1390 OldMsg->isImplicit());
1391 break;
1392
1393 case ObjCMessageExpr::Instance:
1394 NewMsg = ObjCMessageExpr::Create(*Context, OldMsg->getType(),
1395 OldMsg->getValueKind(),
1396 OldMsg->getLeftLoc(),
1397 Base,
1398 OldMsg->getSelector(),
1399 SelLocs,
1400 OldMsg->getMethodDecl(),
1401 Args,
1402 OldMsg->getRightLoc(),
1403 OldMsg->isImplicit());
1404 break;
1405
1406 case ObjCMessageExpr::SuperClass:
1407 case ObjCMessageExpr::SuperInstance:
1408 NewMsg = ObjCMessageExpr::Create(*Context, OldMsg->getType(),
1409 OldMsg->getValueKind(),
1410 OldMsg->getLeftLoc(),
1411 OldMsg->getSuperLoc(),
1412 OldMsg->getReceiverKind() == ObjCMessageExpr::SuperInstance,
1413 OldMsg->getSuperType(),
1414 OldMsg->getSelector(),
1415 SelLocs,
1416 OldMsg->getMethodDecl(),
1417 Args,
1418 OldMsg->getRightLoc(),
1419 OldMsg->isImplicit());
1420 break;
1421 }
1422
1423 Stmt *Replacement = SynthMessageExpr(NewMsg);
1424 ReplaceStmtWithRange(PseudoOp, Replacement, OldRange);
1425 return Replacement;
1426}
1427
1428/// SynthCountByEnumWithState - To print:
1429/// ((unsigned int (*)
1430/// (id, SEL, struct __objcFastEnumerationState *, id *, unsigned int))
1431/// (void *)objc_msgSend)((id)l_collection,
1432/// sel_registerName(
1433/// "countByEnumeratingWithState:objects:count:"),
1434/// &enumState,
1435/// (id *)__rw_items, (unsigned int)16)
1436///
1437void RewriteModernObjC::SynthCountByEnumWithState(std::string &buf) {
1438 buf += "((unsigned int (*) (id, SEL, struct __objcFastEnumerationState *, "
1439 "id *, unsigned int))(void *)objc_msgSend)";
1440 buf += "\n\t\t";
1441 buf += "((id)l_collection,\n\t\t";
1442 buf += "sel_registerName(\"countByEnumeratingWithState:objects:count:\"),";
1443 buf += "\n\t\t";
1444 buf += "&enumState, "
1445 "(id *)__rw_items, (unsigned int)16)";
1446}
1447
1448/// RewriteBreakStmt - Rewrite for a break-stmt inside an ObjC2's foreach
1449/// statement to exit to its outer synthesized loop.
1450///
1451Stmt *RewriteModernObjC::RewriteBreakStmt(BreakStmt *S) {
1452 if (Stmts.empty() || !isa<ObjCForCollectionStmt>(Stmts.back()))
1453 return S;
1454 // replace break with goto __break_label
1455 std::string buf;
1456
1457 SourceLocation startLoc = S->getLocStart();
1458 buf = "goto __break_label_";
1459 buf += utostr(ObjCBcLabelNo.back());
1460 ReplaceText(startLoc, strlen("break"), buf);
1461
1462 return 0;
1463}
1464
1465/// RewriteContinueStmt - Rewrite for a continue-stmt inside an ObjC2's foreach
1466/// statement to continue with its inner synthesized loop.
1467///
1468Stmt *RewriteModernObjC::RewriteContinueStmt(ContinueStmt *S) {
1469 if (Stmts.empty() || !isa<ObjCForCollectionStmt>(Stmts.back()))
1470 return S;
1471 // replace continue with goto __continue_label
1472 std::string buf;
1473
1474 SourceLocation startLoc = S->getLocStart();
1475 buf = "goto __continue_label_";
1476 buf += utostr(ObjCBcLabelNo.back());
1477 ReplaceText(startLoc, strlen("continue"), buf);
1478
1479 return 0;
1480}
1481
1482/// RewriteObjCForCollectionStmt - Rewriter for ObjC2's foreach statement.
1483/// It rewrites:
1484/// for ( type elem in collection) { stmts; }
1485
1486/// Into:
1487/// {
1488/// type elem;
1489/// struct __objcFastEnumerationState enumState = { 0 };
1490/// id __rw_items[16];
1491/// id l_collection = (id)collection;
1492/// unsigned long limit = [l_collection countByEnumeratingWithState:&enumState
1493/// objects:__rw_items count:16];
1494/// if (limit) {
1495/// unsigned long startMutations = *enumState.mutationsPtr;
1496/// do {
1497/// unsigned long counter = 0;
1498/// do {
1499/// if (startMutations != *enumState.mutationsPtr)
1500/// objc_enumerationMutation(l_collection);
1501/// elem = (type)enumState.itemsPtr[counter++];
1502/// stmts;
1503/// __continue_label: ;
1504/// } while (counter < limit);
1505/// } while (limit = [l_collection countByEnumeratingWithState:&enumState
1506/// objects:__rw_items count:16]);
1507/// elem = nil;
1508/// __break_label: ;
1509/// }
1510/// else
1511/// elem = nil;
1512/// }
1513///
1514Stmt *RewriteModernObjC::RewriteObjCForCollectionStmt(ObjCForCollectionStmt *S,
1515 SourceLocation OrigEnd) {
1516 assert(!Stmts.empty() && "ObjCForCollectionStmt - Statement stack empty");
1517 assert(isa<ObjCForCollectionStmt>(Stmts.back()) &&
1518 "ObjCForCollectionStmt Statement stack mismatch");
1519 assert(!ObjCBcLabelNo.empty() &&
1520 "ObjCForCollectionStmt - Label No stack empty");
1521
1522 SourceLocation startLoc = S->getLocStart();
1523 const char *startBuf = SM->getCharacterData(startLoc);
1524 StringRef elementName;
1525 std::string elementTypeAsString;
1526 std::string buf;
1527 buf = "\n{\n\t";
1528 if (DeclStmt *DS = dyn_cast<DeclStmt>(S->getElement())) {
1529 // type elem;
1530 NamedDecl* D = cast<NamedDecl>(DS->getSingleDecl());
1531 QualType ElementType = cast<ValueDecl>(D)->getType();
1532 if (ElementType->isObjCQualifiedIdType() ||
1533 ElementType->isObjCQualifiedInterfaceType())
1534 // Simply use 'id' for all qualified types.
1535 elementTypeAsString = "id";
1536 else
1537 elementTypeAsString = ElementType.getAsString(Context->getPrintingPolicy());
1538 buf += elementTypeAsString;
1539 buf += " ";
1540 elementName = D->getName();
1541 buf += elementName;
1542 buf += ";\n\t";
1543 }
1544 else {
1545 DeclRefExpr *DR = cast<DeclRefExpr>(S->getElement());
1546 elementName = DR->getDecl()->getName();
1547 ValueDecl *VD = cast<ValueDecl>(DR->getDecl());
1548 if (VD->getType()->isObjCQualifiedIdType() ||
1549 VD->getType()->isObjCQualifiedInterfaceType())
1550 // Simply use 'id' for all qualified types.
1551 elementTypeAsString = "id";
1552 else
1553 elementTypeAsString = VD->getType().getAsString(Context->getPrintingPolicy());
1554 }
1555
1556 // struct __objcFastEnumerationState enumState = { 0 };
1557 buf += "struct __objcFastEnumerationState enumState = { 0 };\n\t";
1558 // id __rw_items[16];
1559 buf += "id __rw_items[16];\n\t";
1560 // id l_collection = (id)
1561 buf += "id l_collection = (id)";
1562 // Find start location of 'collection' the hard way!
1563 const char *startCollectionBuf = startBuf;
1564 startCollectionBuf += 3; // skip 'for'
1565 startCollectionBuf = strchr(startCollectionBuf, '(');
1566 startCollectionBuf++; // skip '('
1567 // find 'in' and skip it.
1568 while (*startCollectionBuf != ' ' ||
1569 *(startCollectionBuf+1) != 'i' || *(startCollectionBuf+2) != 'n' ||
1570 (*(startCollectionBuf+3) != ' ' &&
1571 *(startCollectionBuf+3) != '[' && *(startCollectionBuf+3) != '('))
1572 startCollectionBuf++;
1573 startCollectionBuf += 3;
1574
1575 // Replace: "for (type element in" with string constructed thus far.
1576 ReplaceText(startLoc, startCollectionBuf - startBuf, buf);
1577 // Replace ')' in for '(' type elem in collection ')' with ';'
1578 SourceLocation rightParenLoc = S->getRParenLoc();
1579 const char *rparenBuf = SM->getCharacterData(rightParenLoc);
1580 SourceLocation lparenLoc = startLoc.getLocWithOffset(rparenBuf-startBuf);
1581 buf = ";\n\t";
1582
1583 // unsigned long limit = [l_collection countByEnumeratingWithState:&enumState
1584 // objects:__rw_items count:16];
1585 // which is synthesized into:
1586 // unsigned int limit =
1587 // ((unsigned int (*)
1588 // (id, SEL, struct __objcFastEnumerationState *, id *, unsigned int))
1589 // (void *)objc_msgSend)((id)l_collection,
1590 // sel_registerName(
1591 // "countByEnumeratingWithState:objects:count:"),
1592 // (struct __objcFastEnumerationState *)&state,
1593 // (id *)__rw_items, (unsigned int)16);
1594 buf += "unsigned long limit =\n\t\t";
1595 SynthCountByEnumWithState(buf);
1596 buf += ";\n\t";
1597 /// if (limit) {
1598 /// unsigned long startMutations = *enumState.mutationsPtr;
1599 /// do {
1600 /// unsigned long counter = 0;
1601 /// do {
1602 /// if (startMutations != *enumState.mutationsPtr)
1603 /// objc_enumerationMutation(l_collection);
1604 /// elem = (type)enumState.itemsPtr[counter++];
1605 buf += "if (limit) {\n\t";
1606 buf += "unsigned long startMutations = *enumState.mutationsPtr;\n\t";
1607 buf += "do {\n\t\t";
1608 buf += "unsigned long counter = 0;\n\t\t";
1609 buf += "do {\n\t\t\t";
1610 buf += "if (startMutations != *enumState.mutationsPtr)\n\t\t\t\t";
1611 buf += "objc_enumerationMutation(l_collection);\n\t\t\t";
1612 buf += elementName;
1613 buf += " = (";
1614 buf += elementTypeAsString;
1615 buf += ")enumState.itemsPtr[counter++];";
1616 // Replace ')' in for '(' type elem in collection ')' with all of these.
1617 ReplaceText(lparenLoc, 1, buf);
1618
1619 /// __continue_label: ;
1620 /// } while (counter < limit);
1621 /// } while (limit = [l_collection countByEnumeratingWithState:&enumState
1622 /// objects:__rw_items count:16]);
1623 /// elem = nil;
1624 /// __break_label: ;
1625 /// }
1626 /// else
1627 /// elem = nil;
1628 /// }
1629 ///
1630 buf = ";\n\t";
1631 buf += "__continue_label_";
1632 buf += utostr(ObjCBcLabelNo.back());
1633 buf += ": ;";
1634 buf += "\n\t\t";
1635 buf += "} while (counter < limit);\n\t";
1636 buf += "} while (limit = ";
1637 SynthCountByEnumWithState(buf);
1638 buf += ");\n\t";
1639 buf += elementName;
1640 buf += " = ((";
1641 buf += elementTypeAsString;
1642 buf += ")0);\n\t";
1643 buf += "__break_label_";
1644 buf += utostr(ObjCBcLabelNo.back());
1645 buf += ": ;\n\t";
1646 buf += "}\n\t";
1647 buf += "else\n\t\t";
1648 buf += elementName;
1649 buf += " = ((";
1650 buf += elementTypeAsString;
1651 buf += ")0);\n\t";
1652 buf += "}\n";
1653
1654 // Insert all these *after* the statement body.
1655 // FIXME: If this should support Obj-C++, support CXXTryStmt
1656 if (isa<CompoundStmt>(S->getBody())) {
1657 SourceLocation endBodyLoc = OrigEnd.getLocWithOffset(1);
1658 InsertText(endBodyLoc, buf);
1659 } else {
1660 /* Need to treat single statements specially. For example:
1661 *
1662 * for (A *a in b) if (stuff()) break;
1663 * for (A *a in b) xxxyy;
1664 *
1665 * The following code simply scans ahead to the semi to find the actual end.
1666 */
1667 const char *stmtBuf = SM->getCharacterData(OrigEnd);
1668 const char *semiBuf = strchr(stmtBuf, ';');
1669 assert(semiBuf && "Can't find ';'");
1670 SourceLocation endBodyLoc = OrigEnd.getLocWithOffset(semiBuf-stmtBuf+1);
1671 InsertText(endBodyLoc, buf);
1672 }
1673 Stmts.pop_back();
1674 ObjCBcLabelNo.pop_back();
1675 return 0;
1676}
1677
1678/// RewriteObjCSynchronizedStmt -
1679/// This routine rewrites @synchronized(expr) stmt;
1680/// into:
1681/// objc_sync_enter(expr);
1682/// @try stmt @finally { objc_sync_exit(expr); }
1683///
1684Stmt *RewriteModernObjC::RewriteObjCSynchronizedStmt(ObjCAtSynchronizedStmt *S) {
1685 // Get the start location and compute the semi location.
1686 SourceLocation startLoc = S->getLocStart();
1687 const char *startBuf = SM->getCharacterData(startLoc);
1688
1689 assert((*startBuf == '@') && "bogus @synchronized location");
1690
1691 std::string buf;
1692 buf = "objc_sync_enter((id)";
1693 const char *lparenBuf = startBuf;
1694 while (*lparenBuf != '(') lparenBuf++;
1695 ReplaceText(startLoc, lparenBuf-startBuf+1, buf);
1696 // We can't use S->getSynchExpr()->getLocEnd() to find the end location, since
1697 // the sync expression is typically a message expression that's already
1698 // been rewritten! (which implies the SourceLocation's are invalid).
1699 SourceLocation endLoc = S->getSynchBody()->getLocStart();
1700 const char *endBuf = SM->getCharacterData(endLoc);
1701 while (*endBuf != ')') endBuf--;
1702 SourceLocation rparenLoc = startLoc.getLocWithOffset(endBuf-startBuf);
1703 buf = ");\n";
1704 // declare a new scope with two variables, _stack and _rethrow.
1705 buf += "/* @try scope begin */ \n{ struct _objc_exception_data {\n";
1706 buf += "int buf[18/*32-bit i386*/];\n";
1707 buf += "char *pointers[4];} _stack;\n";
1708 buf += "id volatile _rethrow = 0;\n";
1709 buf += "objc_exception_try_enter(&_stack);\n";
1710 buf += "if (!_setjmp(_stack.buf)) /* @try block continue */\n";
1711 ReplaceText(rparenLoc, 1, buf);
1712 startLoc = S->getSynchBody()->getLocEnd();
1713 startBuf = SM->getCharacterData(startLoc);
1714
1715 assert((*startBuf == '}') && "bogus @synchronized block");
1716 SourceLocation lastCurlyLoc = startLoc;
1717 buf = "}\nelse {\n";
1718 buf += " _rethrow = objc_exception_extract(&_stack);\n";
1719 buf += "}\n";
1720 buf += "{ /* implicit finally clause */\n";
1721 buf += " if (!_rethrow) objc_exception_try_exit(&_stack);\n";
1722
1723 std::string syncBuf;
1724 syncBuf += " objc_sync_exit(";
1725
1726 Expr *syncExpr = S->getSynchExpr();
1727 CastKind CK = syncExpr->getType()->isObjCObjectPointerType()
1728 ? CK_BitCast :
1729 syncExpr->getType()->isBlockPointerType()
1730 ? CK_BlockPointerToObjCPointerCast
1731 : CK_CPointerToObjCPointerCast;
1732 syncExpr = NoTypeInfoCStyleCastExpr(Context, Context->getObjCIdType(),
1733 CK, syncExpr);
1734 std::string syncExprBufS;
1735 llvm::raw_string_ostream syncExprBuf(syncExprBufS);
1736 syncExpr->printPretty(syncExprBuf, *Context, 0,
1737 PrintingPolicy(LangOpts));
1738 syncBuf += syncExprBuf.str();
1739 syncBuf += ");";
1740
1741 buf += syncBuf;
1742 buf += "\n if (_rethrow) objc_exception_throw(_rethrow);\n";
1743 buf += "}\n";
1744 buf += "}";
1745
1746 ReplaceText(lastCurlyLoc, 1, buf);
1747
1748 bool hasReturns = false;
1749 HasReturnStmts(S->getSynchBody(), hasReturns);
1750 if (hasReturns)
1751 RewriteSyncReturnStmts(S->getSynchBody(), syncBuf);
1752
1753 return 0;
1754}
1755
1756void RewriteModernObjC::WarnAboutReturnGotoStmts(Stmt *S)
1757{
1758 // Perform a bottom up traversal of all children.
1759 for (Stmt::child_range CI = S->children(); CI; ++CI)
1760 if (*CI)
1761 WarnAboutReturnGotoStmts(*CI);
1762
1763 if (isa<ReturnStmt>(S) || isa<GotoStmt>(S)) {
1764 Diags.Report(Context->getFullLoc(S->getLocStart()),
1765 TryFinallyContainsReturnDiag);
1766 }
1767 return;
1768}
1769
1770void RewriteModernObjC::HasReturnStmts(Stmt *S, bool &hasReturns)
1771{
1772 // Perform a bottom up traversal of all children.
1773 for (Stmt::child_range CI = S->children(); CI; ++CI)
1774 if (*CI)
1775 HasReturnStmts(*CI, hasReturns);
1776
1777 if (isa<ReturnStmt>(S))
1778 hasReturns = true;
1779 return;
1780}
1781
1782void RewriteModernObjC::RewriteTryReturnStmts(Stmt *S) {
1783 // Perform a bottom up traversal of all children.
1784 for (Stmt::child_range CI = S->children(); CI; ++CI)
1785 if (*CI) {
1786 RewriteTryReturnStmts(*CI);
1787 }
1788 if (isa<ReturnStmt>(S)) {
1789 SourceLocation startLoc = S->getLocStart();
1790 const char *startBuf = SM->getCharacterData(startLoc);
1791
1792 const char *semiBuf = strchr(startBuf, ';');
1793 assert((*semiBuf == ';') && "RewriteTryReturnStmts: can't find ';'");
1794 SourceLocation onePastSemiLoc = startLoc.getLocWithOffset(semiBuf-startBuf+1);
1795
1796 std::string buf;
1797 buf = "{ objc_exception_try_exit(&_stack); return";
1798
1799 ReplaceText(startLoc, 6, buf);
1800 InsertText(onePastSemiLoc, "}");
1801 }
1802 return;
1803}
1804
1805void RewriteModernObjC::RewriteSyncReturnStmts(Stmt *S, std::string syncExitBuf) {
1806 // Perform a bottom up traversal of all children.
1807 for (Stmt::child_range CI = S->children(); CI; ++CI)
1808 if (*CI) {
1809 RewriteSyncReturnStmts(*CI, syncExitBuf);
1810 }
1811 if (isa<ReturnStmt>(S)) {
1812 SourceLocation startLoc = S->getLocStart();
1813 const char *startBuf = SM->getCharacterData(startLoc);
1814
1815 const char *semiBuf = strchr(startBuf, ';');
1816 assert((*semiBuf == ';') && "RewriteSyncReturnStmts: can't find ';'");
1817 SourceLocation onePastSemiLoc = startLoc.getLocWithOffset(semiBuf-startBuf+1);
1818
1819 std::string buf;
1820 buf = "{ objc_exception_try_exit(&_stack);";
1821 buf += syncExitBuf;
1822 buf += " return";
1823
1824 ReplaceText(startLoc, 6, buf);
1825 InsertText(onePastSemiLoc, "}");
1826 }
1827 return;
1828}
1829
1830Stmt *RewriteModernObjC::RewriteObjCTryStmt(ObjCAtTryStmt *S) {
1831 // Get the start location and compute the semi location.
1832 SourceLocation startLoc = S->getLocStart();
1833 const char *startBuf = SM->getCharacterData(startLoc);
1834
1835 assert((*startBuf == '@') && "bogus @try location");
1836
1837 std::string buf;
1838 // declare a new scope with two variables, _stack and _rethrow.
1839 buf = "/* @try scope begin */ { struct _objc_exception_data {\n";
1840 buf += "int buf[18/*32-bit i386*/];\n";
1841 buf += "char *pointers[4];} _stack;\n";
1842 buf += "id volatile _rethrow = 0;\n";
1843 buf += "objc_exception_try_enter(&_stack);\n";
1844 buf += "if (!_setjmp(_stack.buf)) /* @try block continue */\n";
1845
1846 ReplaceText(startLoc, 4, buf);
1847
1848 startLoc = S->getTryBody()->getLocEnd();
1849 startBuf = SM->getCharacterData(startLoc);
1850
1851 assert((*startBuf == '}') && "bogus @try block");
1852
1853 SourceLocation lastCurlyLoc = startLoc;
1854 if (S->getNumCatchStmts()) {
1855 startLoc = startLoc.getLocWithOffset(1);
1856 buf = " /* @catch begin */ else {\n";
1857 buf += " id _caught = objc_exception_extract(&_stack);\n";
1858 buf += " objc_exception_try_enter (&_stack);\n";
1859 buf += " if (_setjmp(_stack.buf))\n";
1860 buf += " _rethrow = objc_exception_extract(&_stack);\n";
1861 buf += " else { /* @catch continue */";
1862
1863 InsertText(startLoc, buf);
1864 } else { /* no catch list */
1865 buf = "}\nelse {\n";
1866 buf += " _rethrow = objc_exception_extract(&_stack);\n";
1867 buf += "}";
1868 ReplaceText(lastCurlyLoc, 1, buf);
1869 }
1870 Stmt *lastCatchBody = 0;
1871 for (unsigned I = 0, N = S->getNumCatchStmts(); I != N; ++I) {
1872 ObjCAtCatchStmt *Catch = S->getCatchStmt(I);
1873 VarDecl *catchDecl = Catch->getCatchParamDecl();
1874
1875 if (I == 0)
1876 buf = "if ("; // we are generating code for the first catch clause
1877 else
1878 buf = "else if (";
1879 startLoc = Catch->getLocStart();
1880 startBuf = SM->getCharacterData(startLoc);
1881
1882 assert((*startBuf == '@') && "bogus @catch location");
1883
1884 const char *lParenLoc = strchr(startBuf, '(');
1885
1886 if (Catch->hasEllipsis()) {
1887 // Now rewrite the body...
1888 lastCatchBody = Catch->getCatchBody();
1889 SourceLocation bodyLoc = lastCatchBody->getLocStart();
1890 const char *bodyBuf = SM->getCharacterData(bodyLoc);
1891 assert(*SM->getCharacterData(Catch->getRParenLoc()) == ')' &&
1892 "bogus @catch paren location");
1893 assert((*bodyBuf == '{') && "bogus @catch body location");
1894
1895 buf += "1) { id _tmp = _caught;";
1896 Rewrite.ReplaceText(startLoc, bodyBuf-startBuf+1, buf);
1897 } else if (catchDecl) {
1898 QualType t = catchDecl->getType();
1899 if (t == Context->getObjCIdType()) {
1900 buf += "1) { ";
1901 ReplaceText(startLoc, lParenLoc-startBuf+1, buf);
1902 } else if (const ObjCObjectPointerType *Ptr =
1903 t->getAs<ObjCObjectPointerType>()) {
1904 // Should be a pointer to a class.
1905 ObjCInterfaceDecl *IDecl = Ptr->getObjectType()->getInterface();
1906 if (IDecl) {
1907 buf += "objc_exception_match((struct objc_class *)objc_getClass(\"";
1908 buf += IDecl->getNameAsString();
1909 buf += "\"), (struct objc_object *)_caught)) { ";
1910 ReplaceText(startLoc, lParenLoc-startBuf+1, buf);
1911 }
1912 }
1913 // Now rewrite the body...
1914 lastCatchBody = Catch->getCatchBody();
1915 SourceLocation rParenLoc = Catch->getRParenLoc();
1916 SourceLocation bodyLoc = lastCatchBody->getLocStart();
1917 const char *bodyBuf = SM->getCharacterData(bodyLoc);
1918 const char *rParenBuf = SM->getCharacterData(rParenLoc);
1919 assert((*rParenBuf == ')') && "bogus @catch paren location");
1920 assert((*bodyBuf == '{') && "bogus @catch body location");
1921
1922 // Here we replace ") {" with "= _caught;" (which initializes and
1923 // declares the @catch parameter).
1924 ReplaceText(rParenLoc, bodyBuf-rParenBuf+1, " = _caught;");
1925 } else {
1926 llvm_unreachable("@catch rewrite bug");
1927 }
1928 }
1929 // Complete the catch list...
1930 if (lastCatchBody) {
1931 SourceLocation bodyLoc = lastCatchBody->getLocEnd();
1932 assert(*SM->getCharacterData(bodyLoc) == '}' &&
1933 "bogus @catch body location");
1934
1935 // Insert the last (implicit) else clause *before* the right curly brace.
1936 bodyLoc = bodyLoc.getLocWithOffset(-1);
1937 buf = "} /* last catch end */\n";
1938 buf += "else {\n";
1939 buf += " _rethrow = _caught;\n";
1940 buf += " objc_exception_try_exit(&_stack);\n";
1941 buf += "} } /* @catch end */\n";
1942 if (!S->getFinallyStmt())
1943 buf += "}\n";
1944 InsertText(bodyLoc, buf);
1945
1946 // Set lastCurlyLoc
1947 lastCurlyLoc = lastCatchBody->getLocEnd();
1948 }
1949 if (ObjCAtFinallyStmt *finalStmt = S->getFinallyStmt()) {
1950 startLoc = finalStmt->getLocStart();
1951 startBuf = SM->getCharacterData(startLoc);
1952 assert((*startBuf == '@') && "bogus @finally start");
1953
1954 ReplaceText(startLoc, 8, "/* @finally */");
1955
1956 Stmt *body = finalStmt->getFinallyBody();
1957 SourceLocation startLoc = body->getLocStart();
1958 SourceLocation endLoc = body->getLocEnd();
1959 assert(*SM->getCharacterData(startLoc) == '{' &&
1960 "bogus @finally body location");
1961 assert(*SM->getCharacterData(endLoc) == '}' &&
1962 "bogus @finally body location");
1963
1964 startLoc = startLoc.getLocWithOffset(1);
1965 InsertText(startLoc, " if (!_rethrow) objc_exception_try_exit(&_stack);\n");
1966 endLoc = endLoc.getLocWithOffset(-1);
1967 InsertText(endLoc, " if (_rethrow) objc_exception_throw(_rethrow);\n");
1968
1969 // Set lastCurlyLoc
1970 lastCurlyLoc = body->getLocEnd();
1971
1972 // Now check for any return/continue/go statements within the @try.
1973 WarnAboutReturnGotoStmts(S->getTryBody());
1974 } else { /* no finally clause - make sure we synthesize an implicit one */
1975 buf = "{ /* implicit finally clause */\n";
1976 buf += " if (!_rethrow) objc_exception_try_exit(&_stack);\n";
1977 buf += " if (_rethrow) objc_exception_throw(_rethrow);\n";
1978 buf += "}";
1979 ReplaceText(lastCurlyLoc, 1, buf);
1980
1981 // Now check for any return/continue/go statements within the @try.
1982 // The implicit finally clause won't called if the @try contains any
1983 // jump statements.
1984 bool hasReturns = false;
1985 HasReturnStmts(S->getTryBody(), hasReturns);
1986 if (hasReturns)
1987 RewriteTryReturnStmts(S->getTryBody());
1988 }
1989 // Now emit the final closing curly brace...
1990 lastCurlyLoc = lastCurlyLoc.getLocWithOffset(1);
1991 InsertText(lastCurlyLoc, " } /* @try scope end */\n");
1992 return 0;
1993}
1994
1995// This can't be done with ReplaceStmt(S, ThrowExpr), since
1996// the throw expression is typically a message expression that's already
1997// been rewritten! (which implies the SourceLocation's are invalid).
1998Stmt *RewriteModernObjC::RewriteObjCThrowStmt(ObjCAtThrowStmt *S) {
1999 // Get the start location and compute the semi location.
2000 SourceLocation startLoc = S->getLocStart();
2001 const char *startBuf = SM->getCharacterData(startLoc);
2002
2003 assert((*startBuf == '@') && "bogus @throw location");
2004
2005 std::string buf;
2006 /* void objc_exception_throw(id) __attribute__((noreturn)); */
2007 if (S->getThrowExpr())
2008 buf = "objc_exception_throw(";
2009 else // add an implicit argument
2010 buf = "objc_exception_throw(_caught";
2011
2012 // handle "@ throw" correctly.
2013 const char *wBuf = strchr(startBuf, 'w');
2014 assert((*wBuf == 'w') && "@throw: can't find 'w'");
2015 ReplaceText(startLoc, wBuf-startBuf+1, buf);
2016
2017 const char *semiBuf = strchr(startBuf, ';');
2018 assert((*semiBuf == ';') && "@throw: can't find ';'");
2019 SourceLocation semiLoc = startLoc.getLocWithOffset(semiBuf-startBuf);
2020 ReplaceText(semiLoc, 1, ");");
2021 return 0;
2022}
2023
2024Stmt *RewriteModernObjC::RewriteAtEncode(ObjCEncodeExpr *Exp) {
2025 // Create a new string expression.
2026 QualType StrType = Context->getPointerType(Context->CharTy);
2027 std::string StrEncoding;
2028 Context->getObjCEncodingForType(Exp->getEncodedType(), StrEncoding);
2029 Expr *Replacement = StringLiteral::Create(*Context, StrEncoding,
2030 StringLiteral::Ascii, false,
2031 StrType, SourceLocation());
2032 ReplaceStmt(Exp, Replacement);
2033
2034 // Replace this subexpr in the parent.
2035 // delete Exp; leak for now, see RewritePropertyOrImplicitSetter() usage for more info.
2036 return Replacement;
2037}
2038
2039Stmt *RewriteModernObjC::RewriteAtSelector(ObjCSelectorExpr *Exp) {
2040 if (!SelGetUidFunctionDecl)
2041 SynthSelGetUidFunctionDecl();
2042 assert(SelGetUidFunctionDecl && "Can't find sel_registerName() decl");
2043 // Create a call to sel_registerName("selName").
2044 SmallVector<Expr*, 8> SelExprs;
2045 QualType argType = Context->getPointerType(Context->CharTy);
2046 SelExprs.push_back(StringLiteral::Create(*Context,
2047 Exp->getSelector().getAsString(),
2048 StringLiteral::Ascii, false,
2049 argType, SourceLocation()));
2050 CallExpr *SelExp = SynthesizeCallToFunctionDecl(SelGetUidFunctionDecl,
2051 &SelExprs[0], SelExprs.size());
2052 ReplaceStmt(Exp, SelExp);
2053 // delete Exp; leak for now, see RewritePropertyOrImplicitSetter() usage for more info.
2054 return SelExp;
2055}
2056
2057CallExpr *RewriteModernObjC::SynthesizeCallToFunctionDecl(
2058 FunctionDecl *FD, Expr **args, unsigned nargs, SourceLocation StartLoc,
2059 SourceLocation EndLoc) {
2060 // Get the type, we will need to reference it in a couple spots.
2061 QualType msgSendType = FD->getType();
2062
2063 // Create a reference to the objc_msgSend() declaration.
2064 DeclRefExpr *DRE =
2065 new (Context) DeclRefExpr(FD, msgSendType, VK_LValue, SourceLocation());
2066
2067 // Now, we cast the reference to a pointer to the objc_msgSend type.
2068 QualType pToFunc = Context->getPointerType(msgSendType);
2069 ImplicitCastExpr *ICE =
2070 ImplicitCastExpr::Create(*Context, pToFunc, CK_FunctionToPointerDecay,
2071 DRE, 0, VK_RValue);
2072
2073 const FunctionType *FT = msgSendType->getAs<FunctionType>();
2074
2075 CallExpr *Exp =
2076 new (Context) CallExpr(*Context, ICE, args, nargs,
2077 FT->getCallResultType(*Context),
2078 VK_RValue, EndLoc);
2079 return Exp;
2080}
2081
2082static bool scanForProtocolRefs(const char *startBuf, const char *endBuf,
2083 const char *&startRef, const char *&endRef) {
2084 while (startBuf < endBuf) {
2085 if (*startBuf == '<')
2086 startRef = startBuf; // mark the start.
2087 if (*startBuf == '>') {
2088 if (startRef && *startRef == '<') {
2089 endRef = startBuf; // mark the end.
2090 return true;
2091 }
2092 return false;
2093 }
2094 startBuf++;
2095 }
2096 return false;
2097}
2098
2099static void scanToNextArgument(const char *&argRef) {
2100 int angle = 0;
2101 while (*argRef != ')' && (*argRef != ',' || angle > 0)) {
2102 if (*argRef == '<')
2103 angle++;
2104 else if (*argRef == '>')
2105 angle--;
2106 argRef++;
2107 }
2108 assert(angle == 0 && "scanToNextArgument - bad protocol type syntax");
2109}
2110
2111bool RewriteModernObjC::needToScanForQualifiers(QualType T) {
2112 if (T->isObjCQualifiedIdType())
2113 return true;
2114 if (const PointerType *PT = T->getAs<PointerType>()) {
2115 if (PT->getPointeeType()->isObjCQualifiedIdType())
2116 return true;
2117 }
2118 if (T->isObjCObjectPointerType()) {
2119 T = T->getPointeeType();
2120 return T->isObjCQualifiedInterfaceType();
2121 }
2122 if (T->isArrayType()) {
2123 QualType ElemTy = Context->getBaseElementType(T);
2124 return needToScanForQualifiers(ElemTy);
2125 }
2126 return false;
2127}
2128
2129void RewriteModernObjC::RewriteObjCQualifiedInterfaceTypes(Expr *E) {
2130 QualType Type = E->getType();
2131 if (needToScanForQualifiers(Type)) {
2132 SourceLocation Loc, EndLoc;
2133
2134 if (const CStyleCastExpr *ECE = dyn_cast<CStyleCastExpr>(E)) {
2135 Loc = ECE->getLParenLoc();
2136 EndLoc = ECE->getRParenLoc();
2137 } else {
2138 Loc = E->getLocStart();
2139 EndLoc = E->getLocEnd();
2140 }
2141 // This will defend against trying to rewrite synthesized expressions.
2142 if (Loc.isInvalid() || EndLoc.isInvalid())
2143 return;
2144
2145 const char *startBuf = SM->getCharacterData(Loc);
2146 const char *endBuf = SM->getCharacterData(EndLoc);
2147 const char *startRef = 0, *endRef = 0;
2148 if (scanForProtocolRefs(startBuf, endBuf, startRef, endRef)) {
2149 // Get the locations of the startRef, endRef.
2150 SourceLocation LessLoc = Loc.getLocWithOffset(startRef-startBuf);
2151 SourceLocation GreaterLoc = Loc.getLocWithOffset(endRef-startBuf+1);
2152 // Comment out the protocol references.
2153 InsertText(LessLoc, "/*");
2154 InsertText(GreaterLoc, "*/");
2155 }
2156 }
2157}
2158
2159void RewriteModernObjC::RewriteObjCQualifiedInterfaceTypes(Decl *Dcl) {
2160 SourceLocation Loc;
2161 QualType Type;
2162 const FunctionProtoType *proto = 0;
2163 if (VarDecl *VD = dyn_cast<VarDecl>(Dcl)) {
2164 Loc = VD->getLocation();
2165 Type = VD->getType();
2166 }
2167 else if (FunctionDecl *FD = dyn_cast<FunctionDecl>(Dcl)) {
2168 Loc = FD->getLocation();
2169 // Check for ObjC 'id' and class types that have been adorned with protocol
2170 // information (id<p>, C<p>*). The protocol references need to be rewritten!
2171 const FunctionType *funcType = FD->getType()->getAs<FunctionType>();
2172 assert(funcType && "missing function type");
2173 proto = dyn_cast<FunctionProtoType>(funcType);
2174 if (!proto)
2175 return;
2176 Type = proto->getResultType();
2177 }
2178 else if (FieldDecl *FD = dyn_cast<FieldDecl>(Dcl)) {
2179 Loc = FD->getLocation();
2180 Type = FD->getType();
2181 }
2182 else
2183 return;
2184
2185 if (needToScanForQualifiers(Type)) {
2186 // Since types are unique, we need to scan the buffer.
2187
2188 const char *endBuf = SM->getCharacterData(Loc);
2189 const char *startBuf = endBuf;
2190 while (*startBuf != ';' && *startBuf != '<' && startBuf != MainFileStart)
2191 startBuf--; // scan backward (from the decl location) for return type.
2192 const char *startRef = 0, *endRef = 0;
2193 if (scanForProtocolRefs(startBuf, endBuf, startRef, endRef)) {
2194 // Get the locations of the startRef, endRef.
2195 SourceLocation LessLoc = Loc.getLocWithOffset(startRef-endBuf);
2196 SourceLocation GreaterLoc = Loc.getLocWithOffset(endRef-endBuf+1);
2197 // Comment out the protocol references.
2198 InsertText(LessLoc, "/*");
2199 InsertText(GreaterLoc, "*/");
2200 }
2201 }
2202 if (!proto)
2203 return; // most likely, was a variable
2204 // Now check arguments.
2205 const char *startBuf = SM->getCharacterData(Loc);
2206 const char *startFuncBuf = startBuf;
2207 for (unsigned i = 0; i < proto->getNumArgs(); i++) {
2208 if (needToScanForQualifiers(proto->getArgType(i))) {
2209 // Since types are unique, we need to scan the buffer.
2210
2211 const char *endBuf = startBuf;
2212 // scan forward (from the decl location) for argument types.
2213 scanToNextArgument(endBuf);
2214 const char *startRef = 0, *endRef = 0;
2215 if (scanForProtocolRefs(startBuf, endBuf, startRef, endRef)) {
2216 // Get the locations of the startRef, endRef.
2217 SourceLocation LessLoc =
2218 Loc.getLocWithOffset(startRef-startFuncBuf);
2219 SourceLocation GreaterLoc =
2220 Loc.getLocWithOffset(endRef-startFuncBuf+1);
2221 // Comment out the protocol references.
2222 InsertText(LessLoc, "/*");
2223 InsertText(GreaterLoc, "*/");
2224 }
2225 startBuf = ++endBuf;
2226 }
2227 else {
2228 // If the function name is derived from a macro expansion, then the
2229 // argument buffer will not follow the name. Need to speak with Chris.
2230 while (*startBuf && *startBuf != ')' && *startBuf != ',')
2231 startBuf++; // scan forward (from the decl location) for argument types.
2232 startBuf++;
2233 }
2234 }
2235}
2236
2237void RewriteModernObjC::RewriteTypeOfDecl(VarDecl *ND) {
2238 QualType QT = ND->getType();
2239 const Type* TypePtr = QT->getAs<Type>();
2240 if (!isa<TypeOfExprType>(TypePtr))
2241 return;
2242 while (isa<TypeOfExprType>(TypePtr)) {
2243 const TypeOfExprType *TypeOfExprTypePtr = cast<TypeOfExprType>(TypePtr);
2244 QT = TypeOfExprTypePtr->getUnderlyingExpr()->getType();
2245 TypePtr = QT->getAs<Type>();
2246 }
2247 // FIXME. This will not work for multiple declarators; as in:
2248 // __typeof__(a) b,c,d;
2249 std::string TypeAsString(QT.getAsString(Context->getPrintingPolicy()));
2250 SourceLocation DeclLoc = ND->getTypeSpecStartLoc();
2251 const char *startBuf = SM->getCharacterData(DeclLoc);
2252 if (ND->getInit()) {
2253 std::string Name(ND->getNameAsString());
2254 TypeAsString += " " + Name + " = ";
2255 Expr *E = ND->getInit();
2256 SourceLocation startLoc;
2257 if (const CStyleCastExpr *ECE = dyn_cast<CStyleCastExpr>(E))
2258 startLoc = ECE->getLParenLoc();
2259 else
2260 startLoc = E->getLocStart();
2261 startLoc = SM->getExpansionLoc(startLoc);
2262 const char *endBuf = SM->getCharacterData(startLoc);
2263 ReplaceText(DeclLoc, endBuf-startBuf-1, TypeAsString);
2264 }
2265 else {
2266 SourceLocation X = ND->getLocEnd();
2267 X = SM->getExpansionLoc(X);
2268 const char *endBuf = SM->getCharacterData(X);
2269 ReplaceText(DeclLoc, endBuf-startBuf-1, TypeAsString);
2270 }
2271}
2272
2273// SynthSelGetUidFunctionDecl - SEL sel_registerName(const char *str);
2274void RewriteModernObjC::SynthSelGetUidFunctionDecl() {
2275 IdentifierInfo *SelGetUidIdent = &Context->Idents.get("sel_registerName");
2276 SmallVector<QualType, 16> ArgTys;
2277 ArgTys.push_back(Context->getPointerType(Context->CharTy.withConst()));
2278 QualType getFuncType =
2279 getSimpleFunctionType(Context->getObjCSelType(), &ArgTys[0], ArgTys.size());
2280 SelGetUidFunctionDecl = FunctionDecl::Create(*Context, TUDecl,
2281 SourceLocation(),
2282 SourceLocation(),
2283 SelGetUidIdent, getFuncType, 0,
2284 SC_Extern,
2285 SC_None, false);
2286}
2287
2288void RewriteModernObjC::RewriteFunctionDecl(FunctionDecl *FD) {
2289 // declared in <objc/objc.h>
2290 if (FD->getIdentifier() &&
2291 FD->getName() == "sel_registerName") {
2292 SelGetUidFunctionDecl = FD;
2293 return;
2294 }
2295 RewriteObjCQualifiedInterfaceTypes(FD);
2296}
2297
2298void RewriteModernObjC::RewriteBlockPointerType(std::string& Str, QualType Type) {
2299 std::string TypeString(Type.getAsString(Context->getPrintingPolicy()));
2300 const char *argPtr = TypeString.c_str();
2301 if (!strchr(argPtr, '^')) {
2302 Str += TypeString;
2303 return;
2304 }
2305 while (*argPtr) {
2306 Str += (*argPtr == '^' ? '*' : *argPtr);
2307 argPtr++;
2308 }
2309}
2310
2311// FIXME. Consolidate this routine with RewriteBlockPointerType.
2312void RewriteModernObjC::RewriteBlockPointerTypeVariable(std::string& Str,
2313 ValueDecl *VD) {
2314 QualType Type = VD->getType();
2315 std::string TypeString(Type.getAsString(Context->getPrintingPolicy()));
2316 const char *argPtr = TypeString.c_str();
2317 int paren = 0;
2318 while (*argPtr) {
2319 switch (*argPtr) {
2320 case '(':
2321 Str += *argPtr;
2322 paren++;
2323 break;
2324 case ')':
2325 Str += *argPtr;
2326 paren--;
2327 break;
2328 case '^':
2329 Str += '*';
2330 if (paren == 1)
2331 Str += VD->getNameAsString();
2332 break;
2333 default:
2334 Str += *argPtr;
2335 break;
2336 }
2337 argPtr++;
2338 }
2339}
2340
2341
2342void RewriteModernObjC::RewriteBlockLiteralFunctionDecl(FunctionDecl *FD) {
2343 SourceLocation FunLocStart = FD->getTypeSpecStartLoc();
2344 const FunctionType *funcType = FD->getType()->getAs<FunctionType>();
2345 const FunctionProtoType *proto = dyn_cast<FunctionProtoType>(funcType);
2346 if (!proto)
2347 return;
2348 QualType Type = proto->getResultType();
2349 std::string FdStr = Type.getAsString(Context->getPrintingPolicy());
2350 FdStr += " ";
2351 FdStr += FD->getName();
2352 FdStr += "(";
2353 unsigned numArgs = proto->getNumArgs();
2354 for (unsigned i = 0; i < numArgs; i++) {
2355 QualType ArgType = proto->getArgType(i);
2356 RewriteBlockPointerType(FdStr, ArgType);
2357 if (i+1 < numArgs)
2358 FdStr += ", ";
2359 }
2360 FdStr += ");\n";
2361 InsertText(FunLocStart, FdStr);
2362 CurFunctionDeclToDeclareForBlock = 0;
2363}
2364
2365// SynthSuperContructorFunctionDecl - id objc_super(id obj, id super);
2366void RewriteModernObjC::SynthSuperContructorFunctionDecl() {
2367 if (SuperContructorFunctionDecl)
2368 return;
2369 IdentifierInfo *msgSendIdent = &Context->Idents.get("__rw_objc_super");
2370 SmallVector<QualType, 16> ArgTys;
2371 QualType argT = Context->getObjCIdType();
2372 assert(!argT.isNull() && "Can't find 'id' type");
2373 ArgTys.push_back(argT);
2374 ArgTys.push_back(argT);
2375 QualType msgSendType = getSimpleFunctionType(Context->getObjCIdType(),
2376 &ArgTys[0], ArgTys.size());
2377 SuperContructorFunctionDecl = FunctionDecl::Create(*Context, TUDecl,
2378 SourceLocation(),
2379 SourceLocation(),
2380 msgSendIdent, msgSendType, 0,
2381 SC_Extern,
2382 SC_None, false);
2383}
2384
2385// SynthMsgSendFunctionDecl - id objc_msgSend(id self, SEL op, ...);
2386void RewriteModernObjC::SynthMsgSendFunctionDecl() {
2387 IdentifierInfo *msgSendIdent = &Context->Idents.get("objc_msgSend");
2388 SmallVector<QualType, 16> ArgTys;
2389 QualType argT = Context->getObjCIdType();
2390 assert(!argT.isNull() && "Can't find 'id' type");
2391 ArgTys.push_back(argT);
2392 argT = Context->getObjCSelType();
2393 assert(!argT.isNull() && "Can't find 'SEL' type");
2394 ArgTys.push_back(argT);
2395 QualType msgSendType = getSimpleFunctionType(Context->getObjCIdType(),
2396 &ArgTys[0], ArgTys.size(),
2397 true /*isVariadic*/);
2398 MsgSendFunctionDecl = FunctionDecl::Create(*Context, TUDecl,
2399 SourceLocation(),
2400 SourceLocation(),
2401 msgSendIdent, msgSendType, 0,
2402 SC_Extern,
2403 SC_None, false);
2404}
2405
2406// SynthMsgSendSuperFunctionDecl - id objc_msgSendSuper(struct objc_super *, SEL op, ...);
2407void RewriteModernObjC::SynthMsgSendSuperFunctionDecl() {
2408 IdentifierInfo *msgSendIdent = &Context->Idents.get("objc_msgSendSuper");
2409 SmallVector<QualType, 16> ArgTys;
2410 RecordDecl *RD = RecordDecl::Create(*Context, TTK_Struct, TUDecl,
2411 SourceLocation(), SourceLocation(),
2412 &Context->Idents.get("objc_super"));
2413 QualType argT = Context->getPointerType(Context->getTagDeclType(RD));
2414 assert(!argT.isNull() && "Can't build 'struct objc_super *' type");
2415 ArgTys.push_back(argT);
2416 argT = Context->getObjCSelType();
2417 assert(!argT.isNull() && "Can't find 'SEL' type");
2418 ArgTys.push_back(argT);
2419 QualType msgSendType = getSimpleFunctionType(Context->getObjCIdType(),
2420 &ArgTys[0], ArgTys.size(),
2421 true /*isVariadic*/);
2422 MsgSendSuperFunctionDecl = FunctionDecl::Create(*Context, TUDecl,
2423 SourceLocation(),
2424 SourceLocation(),
2425 msgSendIdent, msgSendType, 0,
2426 SC_Extern,
2427 SC_None, false);
2428}
2429
2430// SynthMsgSendStretFunctionDecl - id objc_msgSend_stret(id self, SEL op, ...);
2431void RewriteModernObjC::SynthMsgSendStretFunctionDecl() {
2432 IdentifierInfo *msgSendIdent = &Context->Idents.get("objc_msgSend_stret");
2433 SmallVector<QualType, 16> ArgTys;
2434 QualType argT = Context->getObjCIdType();
2435 assert(!argT.isNull() && "Can't find 'id' type");
2436 ArgTys.push_back(argT);
2437 argT = Context->getObjCSelType();
2438 assert(!argT.isNull() && "Can't find 'SEL' type");
2439 ArgTys.push_back(argT);
2440 QualType msgSendType = getSimpleFunctionType(Context->getObjCIdType(),
2441 &ArgTys[0], ArgTys.size(),
2442 true /*isVariadic*/);
2443 MsgSendStretFunctionDecl = FunctionDecl::Create(*Context, TUDecl,
2444 SourceLocation(),
2445 SourceLocation(),
2446 msgSendIdent, msgSendType, 0,
2447 SC_Extern,
2448 SC_None, false);
2449}
2450
2451// SynthMsgSendSuperStretFunctionDecl -
2452// id objc_msgSendSuper_stret(struct objc_super *, SEL op, ...);
2453void RewriteModernObjC::SynthMsgSendSuperStretFunctionDecl() {
2454 IdentifierInfo *msgSendIdent =
2455 &Context->Idents.get("objc_msgSendSuper_stret");
2456 SmallVector<QualType, 16> ArgTys;
2457 RecordDecl *RD = RecordDecl::Create(*Context, TTK_Struct, TUDecl,
2458 SourceLocation(), SourceLocation(),
2459 &Context->Idents.get("objc_super"));
2460 QualType argT = Context->getPointerType(Context->getTagDeclType(RD));
2461 assert(!argT.isNull() && "Can't build 'struct objc_super *' type");
2462 ArgTys.push_back(argT);
2463 argT = Context->getObjCSelType();
2464 assert(!argT.isNull() && "Can't find 'SEL' type");
2465 ArgTys.push_back(argT);
2466 QualType msgSendType = getSimpleFunctionType(Context->getObjCIdType(),
2467 &ArgTys[0], ArgTys.size(),
2468 true /*isVariadic*/);
2469 MsgSendSuperStretFunctionDecl = FunctionDecl::Create(*Context, TUDecl,
2470 SourceLocation(),
2471 SourceLocation(),
2472 msgSendIdent, msgSendType, 0,
2473 SC_Extern,
2474 SC_None, false);
2475}
2476
2477// SynthMsgSendFpretFunctionDecl - double objc_msgSend_fpret(id self, SEL op, ...);
2478void RewriteModernObjC::SynthMsgSendFpretFunctionDecl() {
2479 IdentifierInfo *msgSendIdent = &Context->Idents.get("objc_msgSend_fpret");
2480 SmallVector<QualType, 16> ArgTys;
2481 QualType argT = Context->getObjCIdType();
2482 assert(!argT.isNull() && "Can't find 'id' type");
2483 ArgTys.push_back(argT);
2484 argT = Context->getObjCSelType();
2485 assert(!argT.isNull() && "Can't find 'SEL' type");
2486 ArgTys.push_back(argT);
2487 QualType msgSendType = getSimpleFunctionType(Context->DoubleTy,
2488 &ArgTys[0], ArgTys.size(),
2489 true /*isVariadic*/);
2490 MsgSendFpretFunctionDecl = FunctionDecl::Create(*Context, TUDecl,
2491 SourceLocation(),
2492 SourceLocation(),
2493 msgSendIdent, msgSendType, 0,
2494 SC_Extern,
2495 SC_None, false);
2496}
2497
2498// SynthGetClassFunctionDecl - id objc_getClass(const char *name);
2499void RewriteModernObjC::SynthGetClassFunctionDecl() {
2500 IdentifierInfo *getClassIdent = &Context->Idents.get("objc_getClass");
2501 SmallVector<QualType, 16> ArgTys;
2502 ArgTys.push_back(Context->getPointerType(Context->CharTy.withConst()));
2503 QualType getClassType = getSimpleFunctionType(Context->getObjCIdType(),
2504 &ArgTys[0], ArgTys.size());
2505 GetClassFunctionDecl = FunctionDecl::Create(*Context, TUDecl,
2506 SourceLocation(),
2507 SourceLocation(),
2508 getClassIdent, getClassType, 0,
2509 SC_Extern,
2510 SC_None, false);
2511}
2512
2513// SynthGetSuperClassFunctionDecl - Class class_getSuperclass(Class cls);
2514void RewriteModernObjC::SynthGetSuperClassFunctionDecl() {
2515 IdentifierInfo *getSuperClassIdent =
2516 &Context->Idents.get("class_getSuperclass");
2517 SmallVector<QualType, 16> ArgTys;
2518 ArgTys.push_back(Context->getObjCClassType());
2519 QualType getClassType = getSimpleFunctionType(Context->getObjCClassType(),
2520 &ArgTys[0], ArgTys.size());
2521 GetSuperClassFunctionDecl = FunctionDecl::Create(*Context, TUDecl,
2522 SourceLocation(),
2523 SourceLocation(),
2524 getSuperClassIdent,
2525 getClassType, 0,
2526 SC_Extern,
2527 SC_None,
2528 false);
2529}
2530
2531// SynthGetMetaClassFunctionDecl - id objc_getMetaClass(const char *name);
2532void RewriteModernObjC::SynthGetMetaClassFunctionDecl() {
2533 IdentifierInfo *getClassIdent = &Context->Idents.get("objc_getMetaClass");
2534 SmallVector<QualType, 16> ArgTys;
2535 ArgTys.push_back(Context->getPointerType(Context->CharTy.withConst()));
2536 QualType getClassType = getSimpleFunctionType(Context->getObjCIdType(),
2537 &ArgTys[0], ArgTys.size());
2538 GetMetaClassFunctionDecl = FunctionDecl::Create(*Context, TUDecl,
2539 SourceLocation(),
2540 SourceLocation(),
2541 getClassIdent, getClassType, 0,
2542 SC_Extern,
2543 SC_None, false);
2544}
2545
2546Stmt *RewriteModernObjC::RewriteObjCStringLiteral(ObjCStringLiteral *Exp) {
2547 QualType strType = getConstantStringStructType();
2548
2549 std::string S = "__NSConstantStringImpl_";
2550
2551 std::string tmpName = InFileName;
2552 unsigned i;
2553 for (i=0; i < tmpName.length(); i++) {
2554 char c = tmpName.at(i);
2555 // replace any non alphanumeric characters with '_'.
2556 if (!isalpha(c) && (c < '0' || c > '9'))
2557 tmpName[i] = '_';
2558 }
2559 S += tmpName;
2560 S += "_";
2561 S += utostr(NumObjCStringLiterals++);
2562
2563 Preamble += "static __NSConstantStringImpl " + S;
2564 Preamble += " __attribute__ ((section (\"__DATA, __cfstring\"))) = {__CFConstantStringClassReference,";
2565 Preamble += "0x000007c8,"; // utf8_str
2566 // The pretty printer for StringLiteral handles escape characters properly.
2567 std::string prettyBufS;
2568 llvm::raw_string_ostream prettyBuf(prettyBufS);
2569 Exp->getString()->printPretty(prettyBuf, *Context, 0,
2570 PrintingPolicy(LangOpts));
2571 Preamble += prettyBuf.str();
2572 Preamble += ",";
2573 Preamble += utostr(Exp->getString()->getByteLength()) + "};\n";
2574
2575 VarDecl *NewVD = VarDecl::Create(*Context, TUDecl, SourceLocation(),
2576 SourceLocation(), &Context->Idents.get(S),
2577 strType, 0, SC_Static, SC_None);
2578 DeclRefExpr *DRE = new (Context) DeclRefExpr(NewVD, strType, VK_LValue,
2579 SourceLocation());
2580 Expr *Unop = new (Context) UnaryOperator(DRE, UO_AddrOf,
2581 Context->getPointerType(DRE->getType()),
2582 VK_RValue, OK_Ordinary,
2583 SourceLocation());
2584 // cast to NSConstantString *
2585 CastExpr *cast = NoTypeInfoCStyleCastExpr(Context, Exp->getType(),
2586 CK_CPointerToObjCPointerCast, Unop);
2587 ReplaceStmt(Exp, cast);
2588 // delete Exp; leak for now, see RewritePropertyOrImplicitSetter() usage for more info.
2589 return cast;
2590}
2591
2592// struct objc_super { struct objc_object *receiver; struct objc_class *super; };
2593QualType RewriteModernObjC::getSuperStructType() {
2594 if (!SuperStructDecl) {
2595 SuperStructDecl = RecordDecl::Create(*Context, TTK_Struct, TUDecl,
2596 SourceLocation(), SourceLocation(),
2597 &Context->Idents.get("objc_super"));
2598 QualType FieldTypes[2];
2599
2600 // struct objc_object *receiver;
2601 FieldTypes[0] = Context->getObjCIdType();
2602 // struct objc_class *super;
2603 FieldTypes[1] = Context->getObjCClassType();
2604
2605 // Create fields
2606 for (unsigned i = 0; i < 2; ++i) {
2607 SuperStructDecl->addDecl(FieldDecl::Create(*Context, SuperStructDecl,
2608 SourceLocation(),
2609 SourceLocation(), 0,
2610 FieldTypes[i], 0,
2611 /*BitWidth=*/0,
2612 /*Mutable=*/false,
2613 /*HasInit=*/false));
2614 }
2615
2616 SuperStructDecl->completeDefinition();
2617 }
2618 return Context->getTagDeclType(SuperStructDecl);
2619}
2620
2621QualType RewriteModernObjC::getConstantStringStructType() {
2622 if (!ConstantStringDecl) {
2623 ConstantStringDecl = RecordDecl::Create(*Context, TTK_Struct, TUDecl,
2624 SourceLocation(), SourceLocation(),
2625 &Context->Idents.get("__NSConstantStringImpl"));
2626 QualType FieldTypes[4];
2627
2628 // struct objc_object *receiver;
2629 FieldTypes[0] = Context->getObjCIdType();
2630 // int flags;
2631 FieldTypes[1] = Context->IntTy;
2632 // char *str;
2633 FieldTypes[2] = Context->getPointerType(Context->CharTy);
2634 // long length;
2635 FieldTypes[3] = Context->LongTy;
2636
2637 // Create fields
2638 for (unsigned i = 0; i < 4; ++i) {
2639 ConstantStringDecl->addDecl(FieldDecl::Create(*Context,
2640 ConstantStringDecl,
2641 SourceLocation(),
2642 SourceLocation(), 0,
2643 FieldTypes[i], 0,
2644 /*BitWidth=*/0,
2645 /*Mutable=*/true,
2646 /*HasInit=*/false));
2647 }
2648
2649 ConstantStringDecl->completeDefinition();
2650 }
2651 return Context->getTagDeclType(ConstantStringDecl);
2652}
2653
2654Stmt *RewriteModernObjC::SynthMessageExpr(ObjCMessageExpr *Exp,
2655 SourceLocation StartLoc,
2656 SourceLocation EndLoc) {
2657 if (!SelGetUidFunctionDecl)
2658 SynthSelGetUidFunctionDecl();
2659 if (!MsgSendFunctionDecl)
2660 SynthMsgSendFunctionDecl();
2661 if (!MsgSendSuperFunctionDecl)
2662 SynthMsgSendSuperFunctionDecl();
2663 if (!MsgSendStretFunctionDecl)
2664 SynthMsgSendStretFunctionDecl();
2665 if (!MsgSendSuperStretFunctionDecl)
2666 SynthMsgSendSuperStretFunctionDecl();
2667 if (!MsgSendFpretFunctionDecl)
2668 SynthMsgSendFpretFunctionDecl();
2669 if (!GetClassFunctionDecl)
2670 SynthGetClassFunctionDecl();
2671 if (!GetSuperClassFunctionDecl)
2672 SynthGetSuperClassFunctionDecl();
2673 if (!GetMetaClassFunctionDecl)
2674 SynthGetMetaClassFunctionDecl();
2675
2676 // default to objc_msgSend().
2677 FunctionDecl *MsgSendFlavor = MsgSendFunctionDecl;
2678 // May need to use objc_msgSend_stret() as well.
2679 FunctionDecl *MsgSendStretFlavor = 0;
2680 if (ObjCMethodDecl *mDecl = Exp->getMethodDecl()) {
2681 QualType resultType = mDecl->getResultType();
2682 if (resultType->isRecordType())
2683 MsgSendStretFlavor = MsgSendStretFunctionDecl;
2684 else if (resultType->isRealFloatingType())
2685 MsgSendFlavor = MsgSendFpretFunctionDecl;
2686 }
2687
2688 // Synthesize a call to objc_msgSend().
2689 SmallVector<Expr*, 8> MsgExprs;
2690 switch (Exp->getReceiverKind()) {
2691 case ObjCMessageExpr::SuperClass: {
2692 MsgSendFlavor = MsgSendSuperFunctionDecl;
2693 if (MsgSendStretFlavor)
2694 MsgSendStretFlavor = MsgSendSuperStretFunctionDecl;
2695 assert(MsgSendFlavor && "MsgSendFlavor is NULL!");
2696
2697 ObjCInterfaceDecl *ClassDecl = CurMethodDef->getClassInterface();
2698
2699 SmallVector<Expr*, 4> InitExprs;
2700
2701 // set the receiver to self, the first argument to all methods.
2702 InitExprs.push_back(
2703 NoTypeInfoCStyleCastExpr(Context, Context->getObjCIdType(),
2704 CK_BitCast,
2705 new (Context) DeclRefExpr(CurMethodDef->getSelfDecl(),
2706 Context->getObjCIdType(),
2707 VK_RValue,
2708 SourceLocation()))
2709 ); // set the 'receiver'.
2710
2711 // (id)class_getSuperclass((Class)objc_getClass("CurrentClass"))
2712 SmallVector<Expr*, 8> ClsExprs;
2713 QualType argType = Context->getPointerType(Context->CharTy);
2714 ClsExprs.push_back(StringLiteral::Create(*Context,
2715 ClassDecl->getIdentifier()->getName(),
2716 StringLiteral::Ascii, false,
2717 argType, SourceLocation()));
2718 CallExpr *Cls = SynthesizeCallToFunctionDecl(GetMetaClassFunctionDecl,
2719 &ClsExprs[0],
2720 ClsExprs.size(),
2721 StartLoc,
2722 EndLoc);
2723 // (Class)objc_getClass("CurrentClass")
2724 CastExpr *ArgExpr = NoTypeInfoCStyleCastExpr(Context,
2725 Context->getObjCClassType(),
2726 CK_BitCast, Cls);
2727 ClsExprs.clear();
2728 ClsExprs.push_back(ArgExpr);
2729 Cls = SynthesizeCallToFunctionDecl(GetSuperClassFunctionDecl,
2730 &ClsExprs[0], ClsExprs.size(),
2731 StartLoc, EndLoc);
2732
2733 // (id)class_getSuperclass((Class)objc_getClass("CurrentClass"))
2734 // To turn off a warning, type-cast to 'id'
2735 InitExprs.push_back( // set 'super class', using class_getSuperclass().
2736 NoTypeInfoCStyleCastExpr(Context,
2737 Context->getObjCIdType(),
2738 CK_BitCast, Cls));
2739 // struct objc_super
2740 QualType superType = getSuperStructType();
2741 Expr *SuperRep;
2742
2743 if (LangOpts.MicrosoftExt) {
2744 SynthSuperContructorFunctionDecl();
2745 // Simulate a contructor call...
2746 DeclRefExpr *DRE = new (Context) DeclRefExpr(SuperContructorFunctionDecl,
2747 superType, VK_LValue,
2748 SourceLocation());
2749 SuperRep = new (Context) CallExpr(*Context, DRE, &InitExprs[0],
2750 InitExprs.size(),
2751 superType, VK_LValue,
2752 SourceLocation());
2753 // The code for super is a little tricky to prevent collision with
2754 // the structure definition in the header. The rewriter has it's own
2755 // internal definition (__rw_objc_super) that is uses. This is why
2756 // we need the cast below. For example:
2757 // (struct objc_super *)&__rw_objc_super((id)self, (id)objc_getClass("SUPER"))
2758 //
2759 SuperRep = new (Context) UnaryOperator(SuperRep, UO_AddrOf,
2760 Context->getPointerType(SuperRep->getType()),
2761 VK_RValue, OK_Ordinary,
2762 SourceLocation());
2763 SuperRep = NoTypeInfoCStyleCastExpr(Context,
2764 Context->getPointerType(superType),
2765 CK_BitCast, SuperRep);
2766 } else {
2767 // (struct objc_super) { <exprs from above> }
2768 InitListExpr *ILE =
2769 new (Context) InitListExpr(*Context, SourceLocation(),
2770 &InitExprs[0], InitExprs.size(),
2771 SourceLocation());
2772 TypeSourceInfo *superTInfo
2773 = Context->getTrivialTypeSourceInfo(superType);
2774 SuperRep = new (Context) CompoundLiteralExpr(SourceLocation(), superTInfo,
2775 superType, VK_LValue,
2776 ILE, false);
2777 // struct objc_super *
2778 SuperRep = new (Context) UnaryOperator(SuperRep, UO_AddrOf,
2779 Context->getPointerType(SuperRep->getType()),
2780 VK_RValue, OK_Ordinary,
2781 SourceLocation());
2782 }
2783 MsgExprs.push_back(SuperRep);
2784 break;
2785 }
2786
2787 case ObjCMessageExpr::Class: {
2788 SmallVector<Expr*, 8> ClsExprs;
2789 QualType argType = Context->getPointerType(Context->CharTy);
2790 ObjCInterfaceDecl *Class
2791 = Exp->getClassReceiver()->getAs<ObjCObjectType>()->getInterface();
2792 IdentifierInfo *clsName = Class->getIdentifier();
2793 ClsExprs.push_back(StringLiteral::Create(*Context,
2794 clsName->getName(),
2795 StringLiteral::Ascii, false,
2796 argType, SourceLocation()));
2797 CallExpr *Cls = SynthesizeCallToFunctionDecl(GetClassFunctionDecl,
2798 &ClsExprs[0],
2799 ClsExprs.size(),
2800 StartLoc, EndLoc);
2801 MsgExprs.push_back(Cls);
2802 break;
2803 }
2804
2805 case ObjCMessageExpr::SuperInstance:{
2806 MsgSendFlavor = MsgSendSuperFunctionDecl;
2807 if (MsgSendStretFlavor)
2808 MsgSendStretFlavor = MsgSendSuperStretFunctionDecl;
2809 assert(MsgSendFlavor && "MsgSendFlavor is NULL!");
2810 ObjCInterfaceDecl *ClassDecl = CurMethodDef->getClassInterface();
2811 SmallVector<Expr*, 4> InitExprs;
2812
2813 InitExprs.push_back(
2814 NoTypeInfoCStyleCastExpr(Context, Context->getObjCIdType(),
2815 CK_BitCast,
2816 new (Context) DeclRefExpr(CurMethodDef->getSelfDecl(),
2817 Context->getObjCIdType(),
2818 VK_RValue, SourceLocation()))
2819 ); // set the 'receiver'.
2820
2821 // (id)class_getSuperclass((Class)objc_getClass("CurrentClass"))
2822 SmallVector<Expr*, 8> ClsExprs;
2823 QualType argType = Context->getPointerType(Context->CharTy);
2824 ClsExprs.push_back(StringLiteral::Create(*Context,
2825 ClassDecl->getIdentifier()->getName(),
2826 StringLiteral::Ascii, false, argType,
2827 SourceLocation()));
2828 CallExpr *Cls = SynthesizeCallToFunctionDecl(GetClassFunctionDecl,
2829 &ClsExprs[0],
2830 ClsExprs.size(),
2831 StartLoc, EndLoc);
2832 // (Class)objc_getClass("CurrentClass")
2833 CastExpr *ArgExpr = NoTypeInfoCStyleCastExpr(Context,
2834 Context->getObjCClassType(),
2835 CK_BitCast, Cls);
2836 ClsExprs.clear();
2837 ClsExprs.push_back(ArgExpr);
2838 Cls = SynthesizeCallToFunctionDecl(GetSuperClassFunctionDecl,
2839 &ClsExprs[0], ClsExprs.size(),
2840 StartLoc, EndLoc);
2841
2842 // (id)class_getSuperclass((Class)objc_getClass("CurrentClass"))
2843 // To turn off a warning, type-cast to 'id'
2844 InitExprs.push_back(
2845 // set 'super class', using class_getSuperclass().
2846 NoTypeInfoCStyleCastExpr(Context, Context->getObjCIdType(),
2847 CK_BitCast, Cls));
2848 // struct objc_super
2849 QualType superType = getSuperStructType();
2850 Expr *SuperRep;
2851
2852 if (LangOpts.MicrosoftExt) {
2853 SynthSuperContructorFunctionDecl();
2854 // Simulate a contructor call...
2855 DeclRefExpr *DRE = new (Context) DeclRefExpr(SuperContructorFunctionDecl,
2856 superType, VK_LValue,
2857 SourceLocation());
2858 SuperRep = new (Context) CallExpr(*Context, DRE, &InitExprs[0],
2859 InitExprs.size(),
2860 superType, VK_LValue, SourceLocation());
2861 // The code for super is a little tricky to prevent collision with
2862 // the structure definition in the header. The rewriter has it's own
2863 // internal definition (__rw_objc_super) that is uses. This is why
2864 // we need the cast below. For example:
2865 // (struct objc_super *)&__rw_objc_super((id)self, (id)objc_getClass("SUPER"))
2866 //
2867 SuperRep = new (Context) UnaryOperator(SuperRep, UO_AddrOf,
2868 Context->getPointerType(SuperRep->getType()),
2869 VK_RValue, OK_Ordinary,
2870 SourceLocation());
2871 SuperRep = NoTypeInfoCStyleCastExpr(Context,
2872 Context->getPointerType(superType),
2873 CK_BitCast, SuperRep);
2874 } else {
2875 // (struct objc_super) { <exprs from above> }
2876 InitListExpr *ILE =
2877 new (Context) InitListExpr(*Context, SourceLocation(),
2878 &InitExprs[0], InitExprs.size(),
2879 SourceLocation());
2880 TypeSourceInfo *superTInfo
2881 = Context->getTrivialTypeSourceInfo(superType);
2882 SuperRep = new (Context) CompoundLiteralExpr(SourceLocation(), superTInfo,
2883 superType, VK_RValue, ILE,
2884 false);
2885 }
2886 MsgExprs.push_back(SuperRep);
2887 break;
2888 }
2889
2890 case ObjCMessageExpr::Instance: {
2891 // Remove all type-casts because it may contain objc-style types; e.g.
2892 // Foo<Proto> *.
2893 Expr *recExpr = Exp->getInstanceReceiver();
2894 while (CStyleCastExpr *CE = dyn_cast<CStyleCastExpr>(recExpr))
2895 recExpr = CE->getSubExpr();
2896 CastKind CK = recExpr->getType()->isObjCObjectPointerType()
2897 ? CK_BitCast : recExpr->getType()->isBlockPointerType()
2898 ? CK_BlockPointerToObjCPointerCast
2899 : CK_CPointerToObjCPointerCast;
2900
2901 recExpr = NoTypeInfoCStyleCastExpr(Context, Context->getObjCIdType(),
2902 CK, recExpr);
2903 MsgExprs.push_back(recExpr);
2904 break;
2905 }
2906 }
2907
2908 // Create a call to sel_registerName("selName"), it will be the 2nd argument.
2909 SmallVector<Expr*, 8> SelExprs;
2910 QualType argType = Context->getPointerType(Context->CharTy);
2911 SelExprs.push_back(StringLiteral::Create(*Context,
2912 Exp->getSelector().getAsString(),
2913 StringLiteral::Ascii, false,
2914 argType, SourceLocation()));
2915 CallExpr *SelExp = SynthesizeCallToFunctionDecl(SelGetUidFunctionDecl,
2916 &SelExprs[0], SelExprs.size(),
2917 StartLoc,
2918 EndLoc);
2919 MsgExprs.push_back(SelExp);
2920
2921 // Now push any user supplied arguments.
2922 for (unsigned i = 0; i < Exp->getNumArgs(); i++) {
2923 Expr *userExpr = Exp->getArg(i);
2924 // Make all implicit casts explicit...ICE comes in handy:-)
2925 if (ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(userExpr)) {
2926 // Reuse the ICE type, it is exactly what the doctor ordered.
2927 QualType type = ICE->getType();
2928 if (needToScanForQualifiers(type))
2929 type = Context->getObjCIdType();
2930 // Make sure we convert "type (^)(...)" to "type (*)(...)".
2931 (void)convertBlockPointerToFunctionPointer(type);
2932 const Expr *SubExpr = ICE->IgnoreParenImpCasts();
2933 CastKind CK;
2934 if (SubExpr->getType()->isIntegralType(*Context) &&
2935 type->isBooleanType()) {
2936 CK = CK_IntegralToBoolean;
2937 } else if (type->isObjCObjectPointerType()) {
2938 if (SubExpr->getType()->isBlockPointerType()) {
2939 CK = CK_BlockPointerToObjCPointerCast;
2940 } else if (SubExpr->getType()->isPointerType()) {
2941 CK = CK_CPointerToObjCPointerCast;
2942 } else {
2943 CK = CK_BitCast;
2944 }
2945 } else {
2946 CK = CK_BitCast;
2947 }
2948
2949 userExpr = NoTypeInfoCStyleCastExpr(Context, type, CK, userExpr);
2950 }
2951 // Make id<P...> cast into an 'id' cast.
2952 else if (CStyleCastExpr *CE = dyn_cast<CStyleCastExpr>(userExpr)) {
2953 if (CE->getType()->isObjCQualifiedIdType()) {
2954 while ((CE = dyn_cast<CStyleCastExpr>(userExpr)))
2955 userExpr = CE->getSubExpr();
2956 CastKind CK;
2957 if (userExpr->getType()->isIntegralType(*Context)) {
2958 CK = CK_IntegralToPointer;
2959 } else if (userExpr->getType()->isBlockPointerType()) {
2960 CK = CK_BlockPointerToObjCPointerCast;
2961 } else if (userExpr->getType()->isPointerType()) {
2962 CK = CK_CPointerToObjCPointerCast;
2963 } else {
2964 CK = CK_BitCast;
2965 }
2966 userExpr = NoTypeInfoCStyleCastExpr(Context, Context->getObjCIdType(),
2967 CK, userExpr);
2968 }
2969 }
2970 MsgExprs.push_back(userExpr);
2971 // We've transferred the ownership to MsgExprs. For now, we *don't* null
2972 // out the argument in the original expression (since we aren't deleting
2973 // the ObjCMessageExpr). See RewritePropertyOrImplicitSetter() usage for more info.
2974 //Exp->setArg(i, 0);
2975 }
2976 // Generate the funky cast.
2977 CastExpr *cast;
2978 SmallVector<QualType, 8> ArgTypes;
2979 QualType returnType;
2980
2981 // Push 'id' and 'SEL', the 2 implicit arguments.
2982 if (MsgSendFlavor == MsgSendSuperFunctionDecl)
2983 ArgTypes.push_back(Context->getPointerType(getSuperStructType()));
2984 else
2985 ArgTypes.push_back(Context->getObjCIdType());
2986 ArgTypes.push_back(Context->getObjCSelType());
2987 if (ObjCMethodDecl *OMD = Exp->getMethodDecl()) {
2988 // Push any user argument types.
2989 for (ObjCMethodDecl::param_iterator PI = OMD->param_begin(),
2990 E = OMD->param_end(); PI != E; ++PI) {
2991 QualType t = (*PI)->getType()->isObjCQualifiedIdType()
2992 ? Context->getObjCIdType()
2993 : (*PI)->getType();
2994 // Make sure we convert "t (^)(...)" to "t (*)(...)".
2995 (void)convertBlockPointerToFunctionPointer(t);
2996 ArgTypes.push_back(t);
2997 }
2998 returnType = Exp->getType();
2999 convertToUnqualifiedObjCType(returnType);
3000 (void)convertBlockPointerToFunctionPointer(returnType);
3001 } else {
3002 returnType = Context->getObjCIdType();
3003 }
3004 // Get the type, we will need to reference it in a couple spots.
3005 QualType msgSendType = MsgSendFlavor->getType();
3006
3007 // Create a reference to the objc_msgSend() declaration.
3008 DeclRefExpr *DRE = new (Context) DeclRefExpr(MsgSendFlavor, msgSendType,
3009 VK_LValue, SourceLocation());
3010
3011 // Need to cast objc_msgSend to "void *" (to workaround a GCC bandaid).
3012 // If we don't do this cast, we get the following bizarre warning/note:
3013 // xx.m:13: warning: function called through a non-compatible type
3014 // xx.m:13: note: if this code is reached, the program will abort
3015 cast = NoTypeInfoCStyleCastExpr(Context,
3016 Context->getPointerType(Context->VoidTy),
3017 CK_BitCast, DRE);
3018
3019 // Now do the "normal" pointer to function cast.
3020 QualType castType =
3021 getSimpleFunctionType(returnType, &ArgTypes[0], ArgTypes.size(),
3022 // If we don't have a method decl, force a variadic cast.
3023 Exp->getMethodDecl() ? Exp->getMethodDecl()->isVariadic() : true);
3024 castType = Context->getPointerType(castType);
3025 cast = NoTypeInfoCStyleCastExpr(Context, castType, CK_BitCast,
3026 cast);
3027
3028 // Don't forget the parens to enforce the proper binding.
3029 ParenExpr *PE = new (Context) ParenExpr(StartLoc, EndLoc, cast);
3030
3031 const FunctionType *FT = msgSendType->getAs<FunctionType>();
3032 CallExpr *CE = new (Context) CallExpr(*Context, PE, &MsgExprs[0],
3033 MsgExprs.size(),
3034 FT->getResultType(), VK_RValue,
3035 EndLoc);
3036 Stmt *ReplacingStmt = CE;
3037 if (MsgSendStretFlavor) {
3038 // We have the method which returns a struct/union. Must also generate
3039 // call to objc_msgSend_stret and hang both varieties on a conditional
3040 // expression which dictate which one to envoke depending on size of
3041 // method's return type.
3042
3043 // Create a reference to the objc_msgSend_stret() declaration.
3044 DeclRefExpr *STDRE = new (Context) DeclRefExpr(MsgSendStretFlavor, msgSendType,
3045 VK_LValue, SourceLocation());
3046 // Need to cast objc_msgSend_stret to "void *" (see above comment).
3047 cast = NoTypeInfoCStyleCastExpr(Context,
3048 Context->getPointerType(Context->VoidTy),
3049 CK_BitCast, STDRE);
3050 // Now do the "normal" pointer to function cast.
3051 castType = getSimpleFunctionType(returnType, &ArgTypes[0], ArgTypes.size(),
3052 Exp->getMethodDecl() ? Exp->getMethodDecl()->isVariadic() : false);
3053 castType = Context->getPointerType(castType);
3054 cast = NoTypeInfoCStyleCastExpr(Context, castType, CK_BitCast,
3055 cast);
3056
3057 // Don't forget the parens to enforce the proper binding.
3058 PE = new (Context) ParenExpr(SourceLocation(), SourceLocation(), cast);
3059
3060 FT = msgSendType->getAs<FunctionType>();
3061 CallExpr *STCE = new (Context) CallExpr(*Context, PE, &MsgExprs[0],
3062 MsgExprs.size(),
3063 FT->getResultType(), VK_RValue,
3064 SourceLocation());
3065
3066 // Build sizeof(returnType)
3067 UnaryExprOrTypeTraitExpr *sizeofExpr =
3068 new (Context) UnaryExprOrTypeTraitExpr(UETT_SizeOf,
3069 Context->getTrivialTypeSourceInfo(returnType),
3070 Context->getSizeType(), SourceLocation(),
3071 SourceLocation());
3072 // (sizeof(returnType) <= 8 ? objc_msgSend(...) : objc_msgSend_stret(...))
3073 // FIXME: Value of 8 is base on ppc32/x86 ABI for the most common cases.
3074 // For X86 it is more complicated and some kind of target specific routine
3075 // is needed to decide what to do.
3076 unsigned IntSize =
3077 static_cast<unsigned>(Context->getTypeSize(Context->IntTy));
3078 IntegerLiteral *limit = IntegerLiteral::Create(*Context,
3079 llvm::APInt(IntSize, 8),
3080 Context->IntTy,
3081 SourceLocation());
3082 BinaryOperator *lessThanExpr =
3083 new (Context) BinaryOperator(sizeofExpr, limit, BO_LE, Context->IntTy,
3084 VK_RValue, OK_Ordinary, SourceLocation());
3085 // (sizeof(returnType) <= 8 ? objc_msgSend(...) : objc_msgSend_stret(...))
3086 ConditionalOperator *CondExpr =
3087 new (Context) ConditionalOperator(lessThanExpr,
3088 SourceLocation(), CE,
3089 SourceLocation(), STCE,
3090 returnType, VK_RValue, OK_Ordinary);
3091 ReplacingStmt = new (Context) ParenExpr(SourceLocation(), SourceLocation(),
3092 CondExpr);
3093 }
3094 // delete Exp; leak for now, see RewritePropertyOrImplicitSetter() usage for more info.
3095 return ReplacingStmt;
3096}
3097
3098Stmt *RewriteModernObjC::RewriteMessageExpr(ObjCMessageExpr *Exp) {
3099 Stmt *ReplacingStmt = SynthMessageExpr(Exp, Exp->getLocStart(),
3100 Exp->getLocEnd());
3101
3102 // Now do the actual rewrite.
3103 ReplaceStmt(Exp, ReplacingStmt);
3104
3105 // delete Exp; leak for now, see RewritePropertyOrImplicitSetter() usage for more info.
3106 return ReplacingStmt;
3107}
3108
3109// typedef struct objc_object Protocol;
3110QualType RewriteModernObjC::getProtocolType() {
3111 if (!ProtocolTypeDecl) {
3112 TypeSourceInfo *TInfo
3113 = Context->getTrivialTypeSourceInfo(Context->getObjCIdType());
3114 ProtocolTypeDecl = TypedefDecl::Create(*Context, TUDecl,
3115 SourceLocation(), SourceLocation(),
3116 &Context->Idents.get("Protocol"),
3117 TInfo);
3118 }
3119 return Context->getTypeDeclType(ProtocolTypeDecl);
3120}
3121
3122/// RewriteObjCProtocolExpr - Rewrite a protocol expression into
3123/// a synthesized/forward data reference (to the protocol's metadata).
3124/// The forward references (and metadata) are generated in
3125/// RewriteModernObjC::HandleTranslationUnit().
3126Stmt *RewriteModernObjC::RewriteObjCProtocolExpr(ObjCProtocolExpr *Exp) {
3127 std::string Name = "_OBJC_PROTOCOL_" + Exp->getProtocol()->getNameAsString();
3128 IdentifierInfo *ID = &Context->Idents.get(Name);
3129 VarDecl *VD = VarDecl::Create(*Context, TUDecl, SourceLocation(),
3130 SourceLocation(), ID, getProtocolType(), 0,
3131 SC_Extern, SC_None);
3132 DeclRefExpr *DRE = new (Context) DeclRefExpr(VD, getProtocolType(), VK_LValue,
3133 SourceLocation());
3134 Expr *DerefExpr = new (Context) UnaryOperator(DRE, UO_AddrOf,
3135 Context->getPointerType(DRE->getType()),
3136 VK_RValue, OK_Ordinary, SourceLocation());
3137 CastExpr *castExpr = NoTypeInfoCStyleCastExpr(Context, DerefExpr->getType(),
3138 CK_BitCast,
3139 DerefExpr);
3140 ReplaceStmt(Exp, castExpr);
3141 ProtocolExprDecls.insert(Exp->getProtocol()->getCanonicalDecl());
3142 // delete Exp; leak for now, see RewritePropertyOrImplicitSetter() usage for more info.
3143 return castExpr;
3144
3145}
3146
3147bool RewriteModernObjC::BufferContainsPPDirectives(const char *startBuf,
3148 const char *endBuf) {
3149 while (startBuf < endBuf) {
3150 if (*startBuf == '#') {
3151 // Skip whitespace.
3152 for (++startBuf; startBuf[0] == ' ' || startBuf[0] == '\t'; ++startBuf)
3153 ;
3154 if (!strncmp(startBuf, "if", strlen("if")) ||
3155 !strncmp(startBuf, "ifdef", strlen("ifdef")) ||
3156 !strncmp(startBuf, "ifndef", strlen("ifndef")) ||
3157 !strncmp(startBuf, "define", strlen("define")) ||
3158 !strncmp(startBuf, "undef", strlen("undef")) ||
3159 !strncmp(startBuf, "else", strlen("else")) ||
3160 !strncmp(startBuf, "elif", strlen("elif")) ||
3161 !strncmp(startBuf, "endif", strlen("endif")) ||
3162 !strncmp(startBuf, "pragma", strlen("pragma")) ||
3163 !strncmp(startBuf, "include", strlen("include")) ||
3164 !strncmp(startBuf, "import", strlen("import")) ||
3165 !strncmp(startBuf, "include_next", strlen("include_next")))
3166 return true;
3167 }
3168 startBuf++;
3169 }
3170 return false;
3171}
3172
Fariborz Jahanian97c1fd62012-03-09 23:46:23 +00003173/// RewriteObjCFieldDeclType - This routine rewrites a type into the buffer.
Fariborz Jahanian15f87772012-02-28 22:45:07 +00003174/// It handles elaborated types, as well as enum types in the process.
Fariborz Jahanian97c1fd62012-03-09 23:46:23 +00003175bool RewriteModernObjC::RewriteObjCFieldDeclType(QualType &Type,
3176 std::string &Result) {
3177 if (Type->isArrayType()) {
3178 QualType ElemTy = Context->getBaseElementType(Type);
3179 return RewriteObjCFieldDeclType(ElemTy, Result);
3180 }
3181 else if (Type->isRecordType()) {
Fariborz Jahanian15f87772012-02-28 22:45:07 +00003182 RecordDecl *RD = Type->getAs<RecordType>()->getDecl();
3183 if (RD->isCompleteDefinition()) {
3184 if (RD->isStruct())
3185 Result += "\n\tstruct ";
3186 else if (RD->isUnion())
3187 Result += "\n\tunion ";
3188 else
3189 assert(false && "class not allowed as an ivar type");
Fariborz Jahanian97c1fd62012-03-09 23:46:23 +00003190
Fariborz Jahanian15f87772012-02-28 22:45:07 +00003191 Result += RD->getName();
3192 if (TagsDefinedInIvarDecls.count(RD)) {
3193 // This struct is already defined. Do not write its definition again.
Fariborz Jahanian97c1fd62012-03-09 23:46:23 +00003194 Result += " ";
3195 return true;
Fariborz Jahanian15f87772012-02-28 22:45:07 +00003196 }
3197 TagsDefinedInIvarDecls.insert(RD);
3198 Result += " {\n";
3199 for (RecordDecl::field_iterator i = RD->field_begin(),
Fariborz Jahanian97c1fd62012-03-09 23:46:23 +00003200 e = RD->field_end(); i != e; ++i) {
Fariborz Jahanian15f87772012-02-28 22:45:07 +00003201 FieldDecl *FD = *i;
3202 RewriteObjCFieldDecl(FD, Result);
3203 }
3204 Result += "\t} ";
Fariborz Jahanian97c1fd62012-03-09 23:46:23 +00003205 return true;
Fariborz Jahanian15f87772012-02-28 22:45:07 +00003206 }
3207 }
3208 else if (Type->isEnumeralType()) {
3209 EnumDecl *ED = Type->getAs<EnumType>()->getDecl();
3210 if (ED->isCompleteDefinition()) {
3211 Result += "\n\tenum ";
3212 Result += ED->getName();
3213 if (TagsDefinedInIvarDecls.count(ED)) {
3214 // This enum is already defined. Do not write its definition again.
Fariborz Jahanian97c1fd62012-03-09 23:46:23 +00003215 Result += " ";
3216 return true;
Fariborz Jahanian15f87772012-02-28 22:45:07 +00003217 }
3218 TagsDefinedInIvarDecls.insert(ED);
3219
3220 Result += " {\n";
3221 for (EnumDecl::enumerator_iterator EC = ED->enumerator_begin(),
3222 ECEnd = ED->enumerator_end(); EC != ECEnd; ++EC) {
3223 Result += "\t"; Result += EC->getName(); Result += " = ";
3224 llvm::APSInt Val = EC->getInitVal();
3225 Result += Val.toString(10);
3226 Result += ",\n";
3227 }
3228 Result += "\t} ";
Fariborz Jahanian97c1fd62012-03-09 23:46:23 +00003229 return true;
Fariborz Jahanian15f87772012-02-28 22:45:07 +00003230 }
3231 }
3232
3233 Result += "\t";
3234 convertObjCTypeToCStyleType(Type);
Fariborz Jahanian97c1fd62012-03-09 23:46:23 +00003235 return false;
3236}
3237
3238
3239/// RewriteObjCFieldDecl - This routine rewrites a field into the buffer.
3240/// It handles elaborated types, as well as enum types in the process.
3241void RewriteModernObjC::RewriteObjCFieldDecl(FieldDecl *fieldDecl,
3242 std::string &Result) {
3243 QualType Type = fieldDecl->getType();
3244 std::string Name = fieldDecl->getNameAsString();
Fariborz Jahanian15f87772012-02-28 22:45:07 +00003245
Fariborz Jahanian97c1fd62012-03-09 23:46:23 +00003246 bool EleboratedType = RewriteObjCFieldDeclType(Type, Result);
3247 if (!EleboratedType)
3248 Type.getAsStringInternal(Name, Context->getPrintingPolicy());
Fariborz Jahanian15f87772012-02-28 22:45:07 +00003249 Result += Name;
3250 if (fieldDecl->isBitField()) {
3251 Result += " : "; Result += utostr(fieldDecl->getBitWidthValue(*Context));
3252 }
Fariborz Jahanian97c1fd62012-03-09 23:46:23 +00003253 else if (EleboratedType && Type->isArrayType()) {
3254 CanQualType CType = Context->getCanonicalType(Type);
3255 while (isa<ArrayType>(CType)) {
3256 if (const ConstantArrayType *CAT = Context->getAsConstantArrayType(CType)) {
3257 Result += "[";
3258 llvm::APInt Dim = CAT->getSize();
3259 Result += utostr(Dim.getZExtValue());
3260 Result += "]";
3261 }
3262 CType = CType->getAs<ArrayType>()->getElementType();
3263 }
3264 }
3265
Fariborz Jahanian15f87772012-02-28 22:45:07 +00003266 Result += ";\n";
3267}
3268
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003269/// RewriteObjCInternalStruct - Rewrite one internal struct corresponding to
3270/// an objective-c class with ivars.
3271void RewriteModernObjC::RewriteObjCInternalStruct(ObjCInterfaceDecl *CDecl,
3272 std::string &Result) {
3273 assert(CDecl && "Class missing in SynthesizeObjCInternalStruct");
3274 assert(CDecl->getName() != "" &&
3275 "Name missing in SynthesizeObjCInternalStruct");
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003276 ObjCInterfaceDecl *RCDecl = CDecl->getSuperClass();
Fariborz Jahaniana63b4222012-02-10 23:18:24 +00003277 SmallVector<ObjCIvarDecl *, 8> IVars;
3278 for (ObjCIvarDecl *IVD = CDecl->all_declared_ivar_begin();
Fariborz Jahanian9a2105b2012-03-06 17:16:27 +00003279 IVD; IVD = IVD->getNextIvar())
Fariborz Jahaniana63b4222012-02-10 23:18:24 +00003280 IVars.push_back(IVD);
Fariborz Jahanian9a2105b2012-03-06 17:16:27 +00003281
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003282 SourceLocation LocStart = CDecl->getLocStart();
3283 SourceLocation LocEnd = CDecl->getEndOfDefinitionLoc();
Fariborz Jahaniana63b4222012-02-10 23:18:24 +00003284
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003285 const char *startBuf = SM->getCharacterData(LocStart);
3286 const char *endBuf = SM->getCharacterData(LocEnd);
Fariborz Jahaniana63b4222012-02-10 23:18:24 +00003287
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003288 // If no ivars and no root or if its root, directly or indirectly,
3289 // have no ivars (thus not synthesized) then no need to synthesize this class.
Fariborz Jahaniana63b4222012-02-10 23:18:24 +00003290 if ((!CDecl->isThisDeclarationADefinition() || IVars.size() == 0) &&
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003291 (!RCDecl || !ObjCSynthesizedStructs.count(RCDecl))) {
3292 endBuf += Lexer::MeasureTokenLength(LocEnd, *SM, LangOpts);
3293 ReplaceText(LocStart, endBuf-startBuf, Result);
3294 return;
3295 }
Fariborz Jahaniana63b4222012-02-10 23:18:24 +00003296
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003297 Result += "\nstruct ";
3298 Result += CDecl->getNameAsString();
Fariborz Jahaniana63b4222012-02-10 23:18:24 +00003299 Result += "_IMPL {\n";
3300
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00003301 if (RCDecl && ObjCSynthesizedStructs.count(RCDecl)) {
Fariborz Jahaniana63b4222012-02-10 23:18:24 +00003302 Result += "\tstruct "; Result += RCDecl->getNameAsString();
3303 Result += "_IMPL "; Result += RCDecl->getNameAsString();
3304 Result += "_IVARS;\n";
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003305 }
Fariborz Jahanian15f87772012-02-28 22:45:07 +00003306 TagsDefinedInIvarDecls.clear();
3307 for (unsigned i = 0, e = IVars.size(); i < e; i++)
3308 RewriteObjCFieldDecl(IVars[i], Result);
Fariborz Jahanian0b17b9a2012-02-12 21:36:23 +00003309
Fariborz Jahaniana63b4222012-02-10 23:18:24 +00003310 Result += "};\n";
3311 endBuf += Lexer::MeasureTokenLength(LocEnd, *SM, LangOpts);
3312 ReplaceText(LocStart, endBuf-startBuf, Result);
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00003313 // Mark this struct as having been generated.
3314 if (!ObjCSynthesizedStructs.insert(CDecl))
3315 llvm_unreachable("struct already synthesize- RewriteObjCInternalStruct");
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003316}
3317
Fariborz Jahanian72c88f12012-02-22 18:13:25 +00003318/// RewriteIvarOffsetSymbols - Rewrite ivar offset symbols of those ivars which
3319/// have been referenced in an ivar access expression.
3320void RewriteModernObjC::RewriteIvarOffsetSymbols(ObjCInterfaceDecl *CDecl,
3321 std::string &Result) {
3322 // write out ivar offset symbols which have been referenced in an ivar
3323 // access expression.
3324 llvm::SmallPtrSet<ObjCIvarDecl *, 8> Ivars = ReferencedIvars[CDecl];
3325 if (Ivars.empty())
3326 return;
3327 for (llvm::SmallPtrSet<ObjCIvarDecl *, 8>::iterator i = Ivars.begin(),
3328 e = Ivars.end(); i != e; i++) {
3329 ObjCIvarDecl *IvarDecl = (*i);
3330 Result += "\nextern unsigned long OBJC_IVAR_$_";
3331 Result += CDecl->getName(); Result += "_";
3332 Result += IvarDecl->getName(); Result += ";";
3333 }
3334}
3335
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003336//===----------------------------------------------------------------------===//
3337// Meta Data Emission
3338//===----------------------------------------------------------------------===//
3339
3340
3341/// RewriteImplementations - This routine rewrites all method implementations
3342/// and emits meta-data.
3343
3344void RewriteModernObjC::RewriteImplementations() {
3345 int ClsDefCount = ClassImplementation.size();
3346 int CatDefCount = CategoryImplementation.size();
3347
3348 // Rewrite implemented methods
Fariborz Jahanian8f1fed02012-02-11 20:10:52 +00003349 for (int i = 0; i < ClsDefCount; i++) {
3350 ObjCImplementationDecl *OIMP = ClassImplementation[i];
3351 ObjCInterfaceDecl *CDecl = OIMP->getClassInterface();
3352 if (CDecl->isImplicitInterfaceDecl())
Fariborz Jahaniancf4c60f2012-02-17 22:20:12 +00003353 assert(false &&
3354 "Legacy implicit interface rewriting not supported in moder abi");
Fariborz Jahanian8f1fed02012-02-11 20:10:52 +00003355 RewriteImplementationDecl(OIMP);
3356 }
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003357
Fariborz Jahanian8c00a1b2012-02-17 20:33:00 +00003358 for (int i = 0; i < CatDefCount; i++) {
3359 ObjCCategoryImplDecl *CIMP = CategoryImplementation[i];
3360 ObjCInterfaceDecl *CDecl = CIMP->getClassInterface();
3361 if (CDecl->isImplicitInterfaceDecl())
3362 assert(false &&
3363 "Legacy implicit interface rewriting not supported in moder abi");
Fariborz Jahanian8c00a1b2012-02-17 20:33:00 +00003364 RewriteImplementationDecl(CIMP);
3365 }
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003366}
3367
3368void RewriteModernObjC::RewriteByRefString(std::string &ResultStr,
3369 const std::string &Name,
3370 ValueDecl *VD, bool def) {
3371 assert(BlockByRefDeclNo.count(VD) &&
3372 "RewriteByRefString: ByRef decl missing");
3373 if (def)
3374 ResultStr += "struct ";
3375 ResultStr += "__Block_byref_" + Name +
3376 "_" + utostr(BlockByRefDeclNo[VD]) ;
3377}
3378
3379static bool HasLocalVariableExternalStorage(ValueDecl *VD) {
3380 if (VarDecl *Var = dyn_cast<VarDecl>(VD))
3381 return (Var->isFunctionOrMethodVarDecl() && !Var->hasLocalStorage());
3382 return false;
3383}
3384
3385std::string RewriteModernObjC::SynthesizeBlockFunc(BlockExpr *CE, int i,
3386 StringRef funcName,
3387 std::string Tag) {
3388 const FunctionType *AFT = CE->getFunctionType();
3389 QualType RT = AFT->getResultType();
3390 std::string StructRef = "struct " + Tag;
3391 std::string S = "static " + RT.getAsString(Context->getPrintingPolicy()) + " __" +
3392 funcName.str() + "_" + "block_func_" + utostr(i);
3393
3394 BlockDecl *BD = CE->getBlockDecl();
3395
3396 if (isa<FunctionNoProtoType>(AFT)) {
3397 // No user-supplied arguments. Still need to pass in a pointer to the
3398 // block (to reference imported block decl refs).
3399 S += "(" + StructRef + " *__cself)";
3400 } else if (BD->param_empty()) {
3401 S += "(" + StructRef + " *__cself)";
3402 } else {
3403 const FunctionProtoType *FT = cast<FunctionProtoType>(AFT);
3404 assert(FT && "SynthesizeBlockFunc: No function proto");
3405 S += '(';
3406 // first add the implicit argument.
3407 S += StructRef + " *__cself, ";
3408 std::string ParamStr;
3409 for (BlockDecl::param_iterator AI = BD->param_begin(),
3410 E = BD->param_end(); AI != E; ++AI) {
3411 if (AI != BD->param_begin()) S += ", ";
3412 ParamStr = (*AI)->getNameAsString();
3413 QualType QT = (*AI)->getType();
3414 if (convertBlockPointerToFunctionPointer(QT))
3415 QT.getAsStringInternal(ParamStr, Context->getPrintingPolicy());
3416 else
3417 QT.getAsStringInternal(ParamStr, Context->getPrintingPolicy());
3418 S += ParamStr;
3419 }
3420 if (FT->isVariadic()) {
3421 if (!BD->param_empty()) S += ", ";
3422 S += "...";
3423 }
3424 S += ')';
3425 }
3426 S += " {\n";
3427
3428 // Create local declarations to avoid rewriting all closure decl ref exprs.
3429 // First, emit a declaration for all "by ref" decls.
3430 for (SmallVector<ValueDecl*,8>::iterator I = BlockByRefDecls.begin(),
3431 E = BlockByRefDecls.end(); I != E; ++I) {
3432 S += " ";
3433 std::string Name = (*I)->getNameAsString();
3434 std::string TypeString;
3435 RewriteByRefString(TypeString, Name, (*I));
3436 TypeString += " *";
3437 Name = TypeString + Name;
3438 S += Name + " = __cself->" + (*I)->getNameAsString() + "; // bound by ref\n";
3439 }
3440 // Next, emit a declaration for all "by copy" declarations.
3441 for (SmallVector<ValueDecl*,8>::iterator I = BlockByCopyDecls.begin(),
3442 E = BlockByCopyDecls.end(); I != E; ++I) {
3443 S += " ";
3444 // Handle nested closure invocation. For example:
3445 //
3446 // void (^myImportedClosure)(void);
3447 // myImportedClosure = ^(void) { setGlobalInt(x + y); };
3448 //
3449 // void (^anotherClosure)(void);
3450 // anotherClosure = ^(void) {
3451 // myImportedClosure(); // import and invoke the closure
3452 // };
3453 //
3454 if (isTopLevelBlockPointerType((*I)->getType())) {
3455 RewriteBlockPointerTypeVariable(S, (*I));
3456 S += " = (";
3457 RewriteBlockPointerType(S, (*I)->getType());
3458 S += ")";
3459 S += "__cself->" + (*I)->getNameAsString() + "; // bound by copy\n";
3460 }
3461 else {
3462 std::string Name = (*I)->getNameAsString();
3463 QualType QT = (*I)->getType();
3464 if (HasLocalVariableExternalStorage(*I))
3465 QT = Context->getPointerType(QT);
3466 QT.getAsStringInternal(Name, Context->getPrintingPolicy());
3467 S += Name + " = __cself->" +
3468 (*I)->getNameAsString() + "; // bound by copy\n";
3469 }
3470 }
3471 std::string RewrittenStr = RewrittenBlockExprs[CE];
3472 const char *cstr = RewrittenStr.c_str();
3473 while (*cstr++ != '{') ;
3474 S += cstr;
3475 S += "\n";
3476 return S;
3477}
3478
3479std::string RewriteModernObjC::SynthesizeBlockHelperFuncs(BlockExpr *CE, int i,
3480 StringRef funcName,
3481 std::string Tag) {
3482 std::string StructRef = "struct " + Tag;
3483 std::string S = "static void __";
3484
3485 S += funcName;
3486 S += "_block_copy_" + utostr(i);
3487 S += "(" + StructRef;
3488 S += "*dst, " + StructRef;
3489 S += "*src) {";
3490 for (llvm::SmallPtrSet<ValueDecl*,8>::iterator I = ImportedBlockDecls.begin(),
3491 E = ImportedBlockDecls.end(); I != E; ++I) {
3492 ValueDecl *VD = (*I);
3493 S += "_Block_object_assign((void*)&dst->";
3494 S += (*I)->getNameAsString();
3495 S += ", (void*)src->";
3496 S += (*I)->getNameAsString();
3497 if (BlockByRefDeclsPtrSet.count((*I)))
3498 S += ", " + utostr(BLOCK_FIELD_IS_BYREF) + "/*BLOCK_FIELD_IS_BYREF*/);";
3499 else if (VD->getType()->isBlockPointerType())
3500 S += ", " + utostr(BLOCK_FIELD_IS_BLOCK) + "/*BLOCK_FIELD_IS_BLOCK*/);";
3501 else
3502 S += ", " + utostr(BLOCK_FIELD_IS_OBJECT) + "/*BLOCK_FIELD_IS_OBJECT*/);";
3503 }
3504 S += "}\n";
3505
3506 S += "\nstatic void __";
3507 S += funcName;
3508 S += "_block_dispose_" + utostr(i);
3509 S += "(" + StructRef;
3510 S += "*src) {";
3511 for (llvm::SmallPtrSet<ValueDecl*,8>::iterator I = ImportedBlockDecls.begin(),
3512 E = ImportedBlockDecls.end(); I != E; ++I) {
3513 ValueDecl *VD = (*I);
3514 S += "_Block_object_dispose((void*)src->";
3515 S += (*I)->getNameAsString();
3516 if (BlockByRefDeclsPtrSet.count((*I)))
3517 S += ", " + utostr(BLOCK_FIELD_IS_BYREF) + "/*BLOCK_FIELD_IS_BYREF*/);";
3518 else if (VD->getType()->isBlockPointerType())
3519 S += ", " + utostr(BLOCK_FIELD_IS_BLOCK) + "/*BLOCK_FIELD_IS_BLOCK*/);";
3520 else
3521 S += ", " + utostr(BLOCK_FIELD_IS_OBJECT) + "/*BLOCK_FIELD_IS_OBJECT*/);";
3522 }
3523 S += "}\n";
3524 return S;
3525}
3526
3527std::string RewriteModernObjC::SynthesizeBlockImpl(BlockExpr *CE, std::string Tag,
3528 std::string Desc) {
3529 std::string S = "\nstruct " + Tag;
3530 std::string Constructor = " " + Tag;
3531
3532 S += " {\n struct __block_impl impl;\n";
3533 S += " struct " + Desc;
3534 S += "* Desc;\n";
3535
3536 Constructor += "(void *fp, "; // Invoke function pointer.
3537 Constructor += "struct " + Desc; // Descriptor pointer.
3538 Constructor += " *desc";
3539
3540 if (BlockDeclRefs.size()) {
3541 // Output all "by copy" declarations.
3542 for (SmallVector<ValueDecl*,8>::iterator I = BlockByCopyDecls.begin(),
3543 E = BlockByCopyDecls.end(); I != E; ++I) {
3544 S += " ";
3545 std::string FieldName = (*I)->getNameAsString();
3546 std::string ArgName = "_" + FieldName;
3547 // Handle nested closure invocation. For example:
3548 //
3549 // void (^myImportedBlock)(void);
3550 // myImportedBlock = ^(void) { setGlobalInt(x + y); };
3551 //
3552 // void (^anotherBlock)(void);
3553 // anotherBlock = ^(void) {
3554 // myImportedBlock(); // import and invoke the closure
3555 // };
3556 //
3557 if (isTopLevelBlockPointerType((*I)->getType())) {
3558 S += "struct __block_impl *";
3559 Constructor += ", void *" + ArgName;
3560 } else {
3561 QualType QT = (*I)->getType();
3562 if (HasLocalVariableExternalStorage(*I))
3563 QT = Context->getPointerType(QT);
3564 QT.getAsStringInternal(FieldName, Context->getPrintingPolicy());
3565 QT.getAsStringInternal(ArgName, Context->getPrintingPolicy());
3566 Constructor += ", " + ArgName;
3567 }
3568 S += FieldName + ";\n";
3569 }
3570 // Output all "by ref" declarations.
3571 for (SmallVector<ValueDecl*,8>::iterator I = BlockByRefDecls.begin(),
3572 E = BlockByRefDecls.end(); I != E; ++I) {
3573 S += " ";
3574 std::string FieldName = (*I)->getNameAsString();
3575 std::string ArgName = "_" + FieldName;
3576 {
3577 std::string TypeString;
3578 RewriteByRefString(TypeString, FieldName, (*I));
3579 TypeString += " *";
3580 FieldName = TypeString + FieldName;
3581 ArgName = TypeString + ArgName;
3582 Constructor += ", " + ArgName;
3583 }
3584 S += FieldName + "; // by ref\n";
3585 }
3586 // Finish writing the constructor.
3587 Constructor += ", int flags=0)";
3588 // Initialize all "by copy" arguments.
3589 bool firsTime = true;
3590 for (SmallVector<ValueDecl*,8>::iterator I = BlockByCopyDecls.begin(),
3591 E = BlockByCopyDecls.end(); I != E; ++I) {
3592 std::string Name = (*I)->getNameAsString();
3593 if (firsTime) {
3594 Constructor += " : ";
3595 firsTime = false;
3596 }
3597 else
3598 Constructor += ", ";
3599 if (isTopLevelBlockPointerType((*I)->getType()))
3600 Constructor += Name + "((struct __block_impl *)_" + Name + ")";
3601 else
3602 Constructor += Name + "(_" + Name + ")";
3603 }
3604 // Initialize all "by ref" arguments.
3605 for (SmallVector<ValueDecl*,8>::iterator I = BlockByRefDecls.begin(),
3606 E = BlockByRefDecls.end(); I != E; ++I) {
3607 std::string Name = (*I)->getNameAsString();
3608 if (firsTime) {
3609 Constructor += " : ";
3610 firsTime = false;
3611 }
3612 else
3613 Constructor += ", ";
3614 Constructor += Name + "(_" + Name + "->__forwarding)";
3615 }
3616
3617 Constructor += " {\n";
3618 if (GlobalVarDecl)
3619 Constructor += " impl.isa = &_NSConcreteGlobalBlock;\n";
3620 else
3621 Constructor += " impl.isa = &_NSConcreteStackBlock;\n";
3622 Constructor += " impl.Flags = flags;\n impl.FuncPtr = fp;\n";
3623
3624 Constructor += " Desc = desc;\n";
3625 } else {
3626 // Finish writing the constructor.
3627 Constructor += ", int flags=0) {\n";
3628 if (GlobalVarDecl)
3629 Constructor += " impl.isa = &_NSConcreteGlobalBlock;\n";
3630 else
3631 Constructor += " impl.isa = &_NSConcreteStackBlock;\n";
3632 Constructor += " impl.Flags = flags;\n impl.FuncPtr = fp;\n";
3633 Constructor += " Desc = desc;\n";
3634 }
3635 Constructor += " ";
3636 Constructor += "}\n";
3637 S += Constructor;
3638 S += "};\n";
3639 return S;
3640}
3641
3642std::string RewriteModernObjC::SynthesizeBlockDescriptor(std::string DescTag,
3643 std::string ImplTag, int i,
3644 StringRef FunName,
3645 unsigned hasCopy) {
3646 std::string S = "\nstatic struct " + DescTag;
3647
3648 S += " {\n unsigned long reserved;\n";
3649 S += " unsigned long Block_size;\n";
3650 if (hasCopy) {
3651 S += " void (*copy)(struct ";
3652 S += ImplTag; S += "*, struct ";
3653 S += ImplTag; S += "*);\n";
3654
3655 S += " void (*dispose)(struct ";
3656 S += ImplTag; S += "*);\n";
3657 }
3658 S += "} ";
3659
3660 S += DescTag + "_DATA = { 0, sizeof(struct ";
3661 S += ImplTag + ")";
3662 if (hasCopy) {
3663 S += ", __" + FunName.str() + "_block_copy_" + utostr(i);
3664 S += ", __" + FunName.str() + "_block_dispose_" + utostr(i);
3665 }
3666 S += "};\n";
3667 return S;
3668}
3669
3670void RewriteModernObjC::SynthesizeBlockLiterals(SourceLocation FunLocStart,
3671 StringRef FunName) {
3672 // Insert declaration for the function in which block literal is used.
3673 if (CurFunctionDeclToDeclareForBlock && !Blocks.empty())
3674 RewriteBlockLiteralFunctionDecl(CurFunctionDeclToDeclareForBlock);
3675 bool RewriteSC = (GlobalVarDecl &&
3676 !Blocks.empty() &&
3677 GlobalVarDecl->getStorageClass() == SC_Static &&
3678 GlobalVarDecl->getType().getCVRQualifiers());
3679 if (RewriteSC) {
3680 std::string SC(" void __");
3681 SC += GlobalVarDecl->getNameAsString();
3682 SC += "() {}";
3683 InsertText(FunLocStart, SC);
3684 }
3685
3686 // Insert closures that were part of the function.
3687 for (unsigned i = 0, count=0; i < Blocks.size(); i++) {
3688 CollectBlockDeclRefInfo(Blocks[i]);
3689 // Need to copy-in the inner copied-in variables not actually used in this
3690 // block.
3691 for (int j = 0; j < InnerDeclRefsCount[i]; j++) {
3692 BlockDeclRefExpr *Exp = InnerDeclRefs[count++];
3693 ValueDecl *VD = Exp->getDecl();
3694 BlockDeclRefs.push_back(Exp);
3695 if (!Exp->isByRef() && !BlockByCopyDeclsPtrSet.count(VD)) {
3696 BlockByCopyDeclsPtrSet.insert(VD);
3697 BlockByCopyDecls.push_back(VD);
3698 }
3699 if (Exp->isByRef() && !BlockByRefDeclsPtrSet.count(VD)) {
3700 BlockByRefDeclsPtrSet.insert(VD);
3701 BlockByRefDecls.push_back(VD);
3702 }
3703 // imported objects in the inner blocks not used in the outer
3704 // blocks must be copied/disposed in the outer block as well.
3705 if (Exp->isByRef() ||
3706 VD->getType()->isObjCObjectPointerType() ||
3707 VD->getType()->isBlockPointerType())
3708 ImportedBlockDecls.insert(VD);
3709 }
3710
3711 std::string ImplTag = "__" + FunName.str() + "_block_impl_" + utostr(i);
3712 std::string DescTag = "__" + FunName.str() + "_block_desc_" + utostr(i);
3713
3714 std::string CI = SynthesizeBlockImpl(Blocks[i], ImplTag, DescTag);
3715
3716 InsertText(FunLocStart, CI);
3717
3718 std::string CF = SynthesizeBlockFunc(Blocks[i], i, FunName, ImplTag);
3719
3720 InsertText(FunLocStart, CF);
3721
3722 if (ImportedBlockDecls.size()) {
3723 std::string HF = SynthesizeBlockHelperFuncs(Blocks[i], i, FunName, ImplTag);
3724 InsertText(FunLocStart, HF);
3725 }
3726 std::string BD = SynthesizeBlockDescriptor(DescTag, ImplTag, i, FunName,
3727 ImportedBlockDecls.size() > 0);
3728 InsertText(FunLocStart, BD);
3729
3730 BlockDeclRefs.clear();
3731 BlockByRefDecls.clear();
3732 BlockByRefDeclsPtrSet.clear();
3733 BlockByCopyDecls.clear();
3734 BlockByCopyDeclsPtrSet.clear();
3735 ImportedBlockDecls.clear();
3736 }
3737 if (RewriteSC) {
3738 // Must insert any 'const/volatile/static here. Since it has been
3739 // removed as result of rewriting of block literals.
3740 std::string SC;
3741 if (GlobalVarDecl->getStorageClass() == SC_Static)
3742 SC = "static ";
3743 if (GlobalVarDecl->getType().isConstQualified())
3744 SC += "const ";
3745 if (GlobalVarDecl->getType().isVolatileQualified())
3746 SC += "volatile ";
3747 if (GlobalVarDecl->getType().isRestrictQualified())
3748 SC += "restrict ";
3749 InsertText(FunLocStart, SC);
3750 }
3751
3752 Blocks.clear();
3753 InnerDeclRefsCount.clear();
3754 InnerDeclRefs.clear();
3755 RewrittenBlockExprs.clear();
3756}
3757
3758void RewriteModernObjC::InsertBlockLiteralsWithinFunction(FunctionDecl *FD) {
3759 SourceLocation FunLocStart = FD->getTypeSpecStartLoc();
3760 StringRef FuncName = FD->getName();
3761
3762 SynthesizeBlockLiterals(FunLocStart, FuncName);
3763}
3764
3765static void BuildUniqueMethodName(std::string &Name,
3766 ObjCMethodDecl *MD) {
3767 ObjCInterfaceDecl *IFace = MD->getClassInterface();
3768 Name = IFace->getName();
3769 Name += "__" + MD->getSelector().getAsString();
3770 // Convert colons to underscores.
3771 std::string::size_type loc = 0;
3772 while ((loc = Name.find(":", loc)) != std::string::npos)
3773 Name.replace(loc, 1, "_");
3774}
3775
3776void RewriteModernObjC::InsertBlockLiteralsWithinMethod(ObjCMethodDecl *MD) {
3777 //fprintf(stderr,"In InsertBlockLiteralsWitinMethod\n");
3778 //SourceLocation FunLocStart = MD->getLocStart();
3779 SourceLocation FunLocStart = MD->getLocStart();
3780 std::string FuncName;
3781 BuildUniqueMethodName(FuncName, MD);
3782 SynthesizeBlockLiterals(FunLocStart, FuncName);
3783}
3784
3785void RewriteModernObjC::GetBlockDeclRefExprs(Stmt *S) {
3786 for (Stmt::child_range CI = S->children(); CI; ++CI)
3787 if (*CI) {
3788 if (BlockExpr *CBE = dyn_cast<BlockExpr>(*CI))
3789 GetBlockDeclRefExprs(CBE->getBody());
3790 else
3791 GetBlockDeclRefExprs(*CI);
3792 }
3793 // Handle specific things.
3794 if (BlockDeclRefExpr *CDRE = dyn_cast<BlockDeclRefExpr>(S)) {
3795 // FIXME: Handle enums.
3796 if (!isa<FunctionDecl>(CDRE->getDecl()))
3797 BlockDeclRefs.push_back(CDRE);
3798 }
3799 else if (DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(S))
3800 if (HasLocalVariableExternalStorage(DRE->getDecl())) {
3801 BlockDeclRefExpr *BDRE =
3802 new (Context)BlockDeclRefExpr(cast<VarDecl>(DRE->getDecl()),
3803 DRE->getType(),
3804 VK_LValue, DRE->getLocation(), false);
3805 BlockDeclRefs.push_back(BDRE);
3806 }
3807
3808 return;
3809}
3810
3811void RewriteModernObjC::GetInnerBlockDeclRefExprs(Stmt *S,
3812 SmallVector<BlockDeclRefExpr *, 8> &InnerBlockDeclRefs,
3813 llvm::SmallPtrSet<const DeclContext *, 8> &InnerContexts) {
3814 for (Stmt::child_range CI = S->children(); CI; ++CI)
3815 if (*CI) {
3816 if (BlockExpr *CBE = dyn_cast<BlockExpr>(*CI)) {
3817 InnerContexts.insert(cast<DeclContext>(CBE->getBlockDecl()));
3818 GetInnerBlockDeclRefExprs(CBE->getBody(),
3819 InnerBlockDeclRefs,
3820 InnerContexts);
3821 }
3822 else
3823 GetInnerBlockDeclRefExprs(*CI,
3824 InnerBlockDeclRefs,
3825 InnerContexts);
3826
3827 }
3828 // Handle specific things.
3829 if (BlockDeclRefExpr *CDRE = dyn_cast<BlockDeclRefExpr>(S)) {
3830 if (!isa<FunctionDecl>(CDRE->getDecl()) &&
3831 !InnerContexts.count(CDRE->getDecl()->getDeclContext()))
3832 InnerBlockDeclRefs.push_back(CDRE);
3833 }
3834 else if (DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(S)) {
3835 if (VarDecl *Var = dyn_cast<VarDecl>(DRE->getDecl()))
3836 if (Var->isFunctionOrMethodVarDecl())
3837 ImportedLocalExternalDecls.insert(Var);
3838 }
3839
3840 return;
3841}
3842
Fariborz Jahanian164d6f82012-02-13 18:57:49 +00003843/// convertObjCTypeToCStyleType - This routine converts such objc types
3844/// as qualified objects, and blocks to their closest c/c++ types that
3845/// it can. It returns true if input type was modified.
3846bool RewriteModernObjC::convertObjCTypeToCStyleType(QualType &T) {
3847 QualType oldT = T;
3848 convertBlockPointerToFunctionPointer(T);
3849 if (T->isFunctionPointerType()) {
3850 QualType PointeeTy;
3851 if (const PointerType* PT = T->getAs<PointerType>()) {
3852 PointeeTy = PT->getPointeeType();
3853 if (const FunctionType *FT = PointeeTy->getAs<FunctionType>()) {
3854 T = convertFunctionTypeOfBlocks(FT);
3855 T = Context->getPointerType(T);
3856 }
3857 }
3858 }
3859
3860 convertToUnqualifiedObjCType(T);
3861 return T != oldT;
3862}
3863
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003864/// convertFunctionTypeOfBlocks - This routine converts a function type
3865/// whose result type may be a block pointer or whose argument type(s)
3866/// might be block pointers to an equivalent function type replacing
3867/// all block pointers to function pointers.
3868QualType RewriteModernObjC::convertFunctionTypeOfBlocks(const FunctionType *FT) {
3869 const FunctionProtoType *FTP = dyn_cast<FunctionProtoType>(FT);
3870 // FTP will be null for closures that don't take arguments.
3871 // Generate a funky cast.
3872 SmallVector<QualType, 8> ArgTypes;
3873 QualType Res = FT->getResultType();
Fariborz Jahanian164d6f82012-02-13 18:57:49 +00003874 bool modified = convertObjCTypeToCStyleType(Res);
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003875
3876 if (FTP) {
3877 for (FunctionProtoType::arg_type_iterator I = FTP->arg_type_begin(),
3878 E = FTP->arg_type_end(); I && (I != E); ++I) {
3879 QualType t = *I;
3880 // Make sure we convert "t (^)(...)" to "t (*)(...)".
Fariborz Jahanian164d6f82012-02-13 18:57:49 +00003881 if (convertObjCTypeToCStyleType(t))
3882 modified = true;
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003883 ArgTypes.push_back(t);
3884 }
3885 }
3886 QualType FuncType;
Fariborz Jahanian164d6f82012-02-13 18:57:49 +00003887 if (modified)
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00003888 FuncType = getSimpleFunctionType(Res, &ArgTypes[0], ArgTypes.size());
3889 else FuncType = QualType(FT, 0);
3890 return FuncType;
3891}
3892
3893Stmt *RewriteModernObjC::SynthesizeBlockCall(CallExpr *Exp, const Expr *BlockExp) {
3894 // Navigate to relevant type information.
3895 const BlockPointerType *CPT = 0;
3896
3897 if (const DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(BlockExp)) {
3898 CPT = DRE->getType()->getAs<BlockPointerType>();
3899 } else if (const BlockDeclRefExpr *CDRE =
3900 dyn_cast<BlockDeclRefExpr>(BlockExp)) {
3901 CPT = CDRE->getType()->getAs<BlockPointerType>();
3902 } else if (const MemberExpr *MExpr = dyn_cast<MemberExpr>(BlockExp)) {
3903 CPT = MExpr->getType()->getAs<BlockPointerType>();
3904 }
3905 else if (const ParenExpr *PRE = dyn_cast<ParenExpr>(BlockExp)) {
3906 return SynthesizeBlockCall(Exp, PRE->getSubExpr());
3907 }
3908 else if (const ImplicitCastExpr *IEXPR = dyn_cast<ImplicitCastExpr>(BlockExp))
3909 CPT = IEXPR->getType()->getAs<BlockPointerType>();
3910 else if (const ConditionalOperator *CEXPR =
3911 dyn_cast<ConditionalOperator>(BlockExp)) {
3912 Expr *LHSExp = CEXPR->getLHS();
3913 Stmt *LHSStmt = SynthesizeBlockCall(Exp, LHSExp);
3914 Expr *RHSExp = CEXPR->getRHS();
3915 Stmt *RHSStmt = SynthesizeBlockCall(Exp, RHSExp);
3916 Expr *CONDExp = CEXPR->getCond();
3917 ConditionalOperator *CondExpr =
3918 new (Context) ConditionalOperator(CONDExp,
3919 SourceLocation(), cast<Expr>(LHSStmt),
3920 SourceLocation(), cast<Expr>(RHSStmt),
3921 Exp->getType(), VK_RValue, OK_Ordinary);
3922 return CondExpr;
3923 } else if (const ObjCIvarRefExpr *IRE = dyn_cast<ObjCIvarRefExpr>(BlockExp)) {
3924 CPT = IRE->getType()->getAs<BlockPointerType>();
3925 } else if (const PseudoObjectExpr *POE
3926 = dyn_cast<PseudoObjectExpr>(BlockExp)) {
3927 CPT = POE->getType()->castAs<BlockPointerType>();
3928 } else {
3929 assert(1 && "RewriteBlockClass: Bad type");
3930 }
3931 assert(CPT && "RewriteBlockClass: Bad type");
3932 const FunctionType *FT = CPT->getPointeeType()->getAs<FunctionType>();
3933 assert(FT && "RewriteBlockClass: Bad type");
3934 const FunctionProtoType *FTP = dyn_cast<FunctionProtoType>(FT);
3935 // FTP will be null for closures that don't take arguments.
3936
3937 RecordDecl *RD = RecordDecl::Create(*Context, TTK_Struct, TUDecl,
3938 SourceLocation(), SourceLocation(),
3939 &Context->Idents.get("__block_impl"));
3940 QualType PtrBlock = Context->getPointerType(Context->getTagDeclType(RD));
3941
3942 // Generate a funky cast.
3943 SmallVector<QualType, 8> ArgTypes;
3944
3945 // Push the block argument type.
3946 ArgTypes.push_back(PtrBlock);
3947 if (FTP) {
3948 for (FunctionProtoType::arg_type_iterator I = FTP->arg_type_begin(),
3949 E = FTP->arg_type_end(); I && (I != E); ++I) {
3950 QualType t = *I;
3951 // Make sure we convert "t (^)(...)" to "t (*)(...)".
3952 if (!convertBlockPointerToFunctionPointer(t))
3953 convertToUnqualifiedObjCType(t);
3954 ArgTypes.push_back(t);
3955 }
3956 }
3957 // Now do the pointer to function cast.
3958 QualType PtrToFuncCastType
3959 = getSimpleFunctionType(Exp->getType(), &ArgTypes[0], ArgTypes.size());
3960
3961 PtrToFuncCastType = Context->getPointerType(PtrToFuncCastType);
3962
3963 CastExpr *BlkCast = NoTypeInfoCStyleCastExpr(Context, PtrBlock,
3964 CK_BitCast,
3965 const_cast<Expr*>(BlockExp));
3966 // Don't forget the parens to enforce the proper binding.
3967 ParenExpr *PE = new (Context) ParenExpr(SourceLocation(), SourceLocation(),
3968 BlkCast);
3969 //PE->dump();
3970
3971 FieldDecl *FD = FieldDecl::Create(*Context, 0, SourceLocation(),
3972 SourceLocation(),
3973 &Context->Idents.get("FuncPtr"),
3974 Context->VoidPtrTy, 0,
3975 /*BitWidth=*/0, /*Mutable=*/true,
3976 /*HasInit=*/false);
3977 MemberExpr *ME = new (Context) MemberExpr(PE, true, FD, SourceLocation(),
3978 FD->getType(), VK_LValue,
3979 OK_Ordinary);
3980
3981
3982 CastExpr *FunkCast = NoTypeInfoCStyleCastExpr(Context, PtrToFuncCastType,
3983 CK_BitCast, ME);
3984 PE = new (Context) ParenExpr(SourceLocation(), SourceLocation(), FunkCast);
3985
3986 SmallVector<Expr*, 8> BlkExprs;
3987 // Add the implicit argument.
3988 BlkExprs.push_back(BlkCast);
3989 // Add the user arguments.
3990 for (CallExpr::arg_iterator I = Exp->arg_begin(),
3991 E = Exp->arg_end(); I != E; ++I) {
3992 BlkExprs.push_back(*I);
3993 }
3994 CallExpr *CE = new (Context) CallExpr(*Context, PE, &BlkExprs[0],
3995 BlkExprs.size(),
3996 Exp->getType(), VK_RValue,
3997 SourceLocation());
3998 return CE;
3999}
4000
4001// We need to return the rewritten expression to handle cases where the
4002// BlockDeclRefExpr is embedded in another expression being rewritten.
4003// For example:
4004//
4005// int main() {
4006// __block Foo *f;
4007// __block int i;
4008//
4009// void (^myblock)() = ^() {
4010// [f test]; // f is a BlockDeclRefExpr embedded in a message (which is being rewritten).
4011// i = 77;
4012// };
4013//}
4014Stmt *RewriteModernObjC::RewriteBlockDeclRefExpr(Expr *DeclRefExp) {
4015 // Rewrite the byref variable into BYREFVAR->__forwarding->BYREFVAR
4016 // for each DeclRefExp where BYREFVAR is name of the variable.
4017 ValueDecl *VD;
4018 bool isArrow = true;
4019 if (BlockDeclRefExpr *BDRE = dyn_cast<BlockDeclRefExpr>(DeclRefExp))
4020 VD = BDRE->getDecl();
4021 else {
4022 VD = cast<DeclRefExpr>(DeclRefExp)->getDecl();
4023 isArrow = false;
4024 }
4025
4026 FieldDecl *FD = FieldDecl::Create(*Context, 0, SourceLocation(),
4027 SourceLocation(),
4028 &Context->Idents.get("__forwarding"),
4029 Context->VoidPtrTy, 0,
4030 /*BitWidth=*/0, /*Mutable=*/true,
4031 /*HasInit=*/false);
4032 MemberExpr *ME = new (Context) MemberExpr(DeclRefExp, isArrow,
4033 FD, SourceLocation(),
4034 FD->getType(), VK_LValue,
4035 OK_Ordinary);
4036
4037 StringRef Name = VD->getName();
4038 FD = FieldDecl::Create(*Context, 0, SourceLocation(), SourceLocation(),
4039 &Context->Idents.get(Name),
4040 Context->VoidPtrTy, 0,
4041 /*BitWidth=*/0, /*Mutable=*/true,
4042 /*HasInit=*/false);
4043 ME = new (Context) MemberExpr(ME, true, FD, SourceLocation(),
4044 DeclRefExp->getType(), VK_LValue, OK_Ordinary);
4045
4046
4047
4048 // Need parens to enforce precedence.
4049 ParenExpr *PE = new (Context) ParenExpr(DeclRefExp->getExprLoc(),
4050 DeclRefExp->getExprLoc(),
4051 ME);
4052 ReplaceStmt(DeclRefExp, PE);
4053 return PE;
4054}
4055
4056// Rewrites the imported local variable V with external storage
4057// (static, extern, etc.) as *V
4058//
4059Stmt *RewriteModernObjC::RewriteLocalVariableExternalStorage(DeclRefExpr *DRE) {
4060 ValueDecl *VD = DRE->getDecl();
4061 if (VarDecl *Var = dyn_cast<VarDecl>(VD))
4062 if (!ImportedLocalExternalDecls.count(Var))
4063 return DRE;
4064 Expr *Exp = new (Context) UnaryOperator(DRE, UO_Deref, DRE->getType(),
4065 VK_LValue, OK_Ordinary,
4066 DRE->getLocation());
4067 // Need parens to enforce precedence.
4068 ParenExpr *PE = new (Context) ParenExpr(SourceLocation(), SourceLocation(),
4069 Exp);
4070 ReplaceStmt(DRE, PE);
4071 return PE;
4072}
4073
4074void RewriteModernObjC::RewriteCastExpr(CStyleCastExpr *CE) {
4075 SourceLocation LocStart = CE->getLParenLoc();
4076 SourceLocation LocEnd = CE->getRParenLoc();
4077
4078 // Need to avoid trying to rewrite synthesized casts.
4079 if (LocStart.isInvalid())
4080 return;
4081 // Need to avoid trying to rewrite casts contained in macros.
4082 if (!Rewriter::isRewritable(LocStart) || !Rewriter::isRewritable(LocEnd))
4083 return;
4084
4085 const char *startBuf = SM->getCharacterData(LocStart);
4086 const char *endBuf = SM->getCharacterData(LocEnd);
4087 QualType QT = CE->getType();
4088 const Type* TypePtr = QT->getAs<Type>();
4089 if (isa<TypeOfExprType>(TypePtr)) {
4090 const TypeOfExprType *TypeOfExprTypePtr = cast<TypeOfExprType>(TypePtr);
4091 QT = TypeOfExprTypePtr->getUnderlyingExpr()->getType();
4092 std::string TypeAsString = "(";
4093 RewriteBlockPointerType(TypeAsString, QT);
4094 TypeAsString += ")";
4095 ReplaceText(LocStart, endBuf-startBuf+1, TypeAsString);
4096 return;
4097 }
4098 // advance the location to startArgList.
4099 const char *argPtr = startBuf;
4100
4101 while (*argPtr++ && (argPtr < endBuf)) {
4102 switch (*argPtr) {
4103 case '^':
4104 // Replace the '^' with '*'.
4105 LocStart = LocStart.getLocWithOffset(argPtr-startBuf);
4106 ReplaceText(LocStart, 1, "*");
4107 break;
4108 }
4109 }
4110 return;
4111}
4112
4113void RewriteModernObjC::RewriteBlockPointerFunctionArgs(FunctionDecl *FD) {
4114 SourceLocation DeclLoc = FD->getLocation();
4115 unsigned parenCount = 0;
4116
4117 // We have 1 or more arguments that have closure pointers.
4118 const char *startBuf = SM->getCharacterData(DeclLoc);
4119 const char *startArgList = strchr(startBuf, '(');
4120
4121 assert((*startArgList == '(') && "Rewriter fuzzy parser confused");
4122
4123 parenCount++;
4124 // advance the location to startArgList.
4125 DeclLoc = DeclLoc.getLocWithOffset(startArgList-startBuf);
4126 assert((DeclLoc.isValid()) && "Invalid DeclLoc");
4127
4128 const char *argPtr = startArgList;
4129
4130 while (*argPtr++ && parenCount) {
4131 switch (*argPtr) {
4132 case '^':
4133 // Replace the '^' with '*'.
4134 DeclLoc = DeclLoc.getLocWithOffset(argPtr-startArgList);
4135 ReplaceText(DeclLoc, 1, "*");
4136 break;
4137 case '(':
4138 parenCount++;
4139 break;
4140 case ')':
4141 parenCount--;
4142 break;
4143 }
4144 }
4145 return;
4146}
4147
4148bool RewriteModernObjC::PointerTypeTakesAnyBlockArguments(QualType QT) {
4149 const FunctionProtoType *FTP;
4150 const PointerType *PT = QT->getAs<PointerType>();
4151 if (PT) {
4152 FTP = PT->getPointeeType()->getAs<FunctionProtoType>();
4153 } else {
4154 const BlockPointerType *BPT = QT->getAs<BlockPointerType>();
4155 assert(BPT && "BlockPointerTypeTakeAnyBlockArguments(): not a block pointer type");
4156 FTP = BPT->getPointeeType()->getAs<FunctionProtoType>();
4157 }
4158 if (FTP) {
4159 for (FunctionProtoType::arg_type_iterator I = FTP->arg_type_begin(),
4160 E = FTP->arg_type_end(); I != E; ++I)
4161 if (isTopLevelBlockPointerType(*I))
4162 return true;
4163 }
4164 return false;
4165}
4166
4167bool RewriteModernObjC::PointerTypeTakesAnyObjCQualifiedType(QualType QT) {
4168 const FunctionProtoType *FTP;
4169 const PointerType *PT = QT->getAs<PointerType>();
4170 if (PT) {
4171 FTP = PT->getPointeeType()->getAs<FunctionProtoType>();
4172 } else {
4173 const BlockPointerType *BPT = QT->getAs<BlockPointerType>();
4174 assert(BPT && "BlockPointerTypeTakeAnyBlockArguments(): not a block pointer type");
4175 FTP = BPT->getPointeeType()->getAs<FunctionProtoType>();
4176 }
4177 if (FTP) {
4178 for (FunctionProtoType::arg_type_iterator I = FTP->arg_type_begin(),
4179 E = FTP->arg_type_end(); I != E; ++I) {
4180 if ((*I)->isObjCQualifiedIdType())
4181 return true;
4182 if ((*I)->isObjCObjectPointerType() &&
4183 (*I)->getPointeeType()->isObjCQualifiedInterfaceType())
4184 return true;
4185 }
4186
4187 }
4188 return false;
4189}
4190
4191void RewriteModernObjC::GetExtentOfArgList(const char *Name, const char *&LParen,
4192 const char *&RParen) {
4193 const char *argPtr = strchr(Name, '(');
4194 assert((*argPtr == '(') && "Rewriter fuzzy parser confused");
4195
4196 LParen = argPtr; // output the start.
4197 argPtr++; // skip past the left paren.
4198 unsigned parenCount = 1;
4199
4200 while (*argPtr && parenCount) {
4201 switch (*argPtr) {
4202 case '(': parenCount++; break;
4203 case ')': parenCount--; break;
4204 default: break;
4205 }
4206 if (parenCount) argPtr++;
4207 }
4208 assert((*argPtr == ')') && "Rewriter fuzzy parser confused");
4209 RParen = argPtr; // output the end
4210}
4211
4212void RewriteModernObjC::RewriteBlockPointerDecl(NamedDecl *ND) {
4213 if (FunctionDecl *FD = dyn_cast<FunctionDecl>(ND)) {
4214 RewriteBlockPointerFunctionArgs(FD);
4215 return;
4216 }
4217 // Handle Variables and Typedefs.
4218 SourceLocation DeclLoc = ND->getLocation();
4219 QualType DeclT;
4220 if (VarDecl *VD = dyn_cast<VarDecl>(ND))
4221 DeclT = VD->getType();
4222 else if (TypedefNameDecl *TDD = dyn_cast<TypedefNameDecl>(ND))
4223 DeclT = TDD->getUnderlyingType();
4224 else if (FieldDecl *FD = dyn_cast<FieldDecl>(ND))
4225 DeclT = FD->getType();
4226 else
4227 llvm_unreachable("RewriteBlockPointerDecl(): Decl type not yet handled");
4228
4229 const char *startBuf = SM->getCharacterData(DeclLoc);
4230 const char *endBuf = startBuf;
4231 // scan backward (from the decl location) for the end of the previous decl.
4232 while (*startBuf != '^' && *startBuf != ';' && startBuf != MainFileStart)
4233 startBuf--;
4234 SourceLocation Start = DeclLoc.getLocWithOffset(startBuf-endBuf);
4235 std::string buf;
4236 unsigned OrigLength=0;
4237 // *startBuf != '^' if we are dealing with a pointer to function that
4238 // may take block argument types (which will be handled below).
4239 if (*startBuf == '^') {
4240 // Replace the '^' with '*', computing a negative offset.
4241 buf = '*';
4242 startBuf++;
4243 OrigLength++;
4244 }
4245 while (*startBuf != ')') {
4246 buf += *startBuf;
4247 startBuf++;
4248 OrigLength++;
4249 }
4250 buf += ')';
4251 OrigLength++;
4252
4253 if (PointerTypeTakesAnyBlockArguments(DeclT) ||
4254 PointerTypeTakesAnyObjCQualifiedType(DeclT)) {
4255 // Replace the '^' with '*' for arguments.
4256 // Replace id<P> with id/*<>*/
4257 DeclLoc = ND->getLocation();
4258 startBuf = SM->getCharacterData(DeclLoc);
4259 const char *argListBegin, *argListEnd;
4260 GetExtentOfArgList(startBuf, argListBegin, argListEnd);
4261 while (argListBegin < argListEnd) {
4262 if (*argListBegin == '^')
4263 buf += '*';
4264 else if (*argListBegin == '<') {
4265 buf += "/*";
4266 buf += *argListBegin++;
4267 OrigLength++;;
4268 while (*argListBegin != '>') {
4269 buf += *argListBegin++;
4270 OrigLength++;
4271 }
4272 buf += *argListBegin;
4273 buf += "*/";
4274 }
4275 else
4276 buf += *argListBegin;
4277 argListBegin++;
4278 OrigLength++;
4279 }
4280 buf += ')';
4281 OrigLength++;
4282 }
4283 ReplaceText(Start, OrigLength, buf);
4284
4285 return;
4286}
4287
4288
4289/// SynthesizeByrefCopyDestroyHelper - This routine synthesizes:
4290/// void __Block_byref_id_object_copy(struct Block_byref_id_object *dst,
4291/// struct Block_byref_id_object *src) {
4292/// _Block_object_assign (&_dest->object, _src->object,
4293/// BLOCK_BYREF_CALLER | BLOCK_FIELD_IS_OBJECT
4294/// [|BLOCK_FIELD_IS_WEAK]) // object
4295/// _Block_object_assign(&_dest->object, _src->object,
4296/// BLOCK_BYREF_CALLER | BLOCK_FIELD_IS_BLOCK
4297/// [|BLOCK_FIELD_IS_WEAK]) // block
4298/// }
4299/// And:
4300/// void __Block_byref_id_object_dispose(struct Block_byref_id_object *_src) {
4301/// _Block_object_dispose(_src->object,
4302/// BLOCK_BYREF_CALLER | BLOCK_FIELD_IS_OBJECT
4303/// [|BLOCK_FIELD_IS_WEAK]) // object
4304/// _Block_object_dispose(_src->object,
4305/// BLOCK_BYREF_CALLER | BLOCK_FIELD_IS_BLOCK
4306/// [|BLOCK_FIELD_IS_WEAK]) // block
4307/// }
4308
4309std::string RewriteModernObjC::SynthesizeByrefCopyDestroyHelper(VarDecl *VD,
4310 int flag) {
4311 std::string S;
4312 if (CopyDestroyCache.count(flag))
4313 return S;
4314 CopyDestroyCache.insert(flag);
4315 S = "static void __Block_byref_id_object_copy_";
4316 S += utostr(flag);
4317 S += "(void *dst, void *src) {\n";
4318
4319 // offset into the object pointer is computed as:
4320 // void * + void* + int + int + void* + void *
4321 unsigned IntSize =
4322 static_cast<unsigned>(Context->getTypeSize(Context->IntTy));
4323 unsigned VoidPtrSize =
4324 static_cast<unsigned>(Context->getTypeSize(Context->VoidPtrTy));
4325
4326 unsigned offset = (VoidPtrSize*4 + IntSize + IntSize)/Context->getCharWidth();
4327 S += " _Block_object_assign((char*)dst + ";
4328 S += utostr(offset);
4329 S += ", *(void * *) ((char*)src + ";
4330 S += utostr(offset);
4331 S += "), ";
4332 S += utostr(flag);
4333 S += ");\n}\n";
4334
4335 S += "static void __Block_byref_id_object_dispose_";
4336 S += utostr(flag);
4337 S += "(void *src) {\n";
4338 S += " _Block_object_dispose(*(void * *) ((char*)src + ";
4339 S += utostr(offset);
4340 S += "), ";
4341 S += utostr(flag);
4342 S += ");\n}\n";
4343 return S;
4344}
4345
4346/// RewriteByRefVar - For each __block typex ND variable this routine transforms
4347/// the declaration into:
4348/// struct __Block_byref_ND {
4349/// void *__isa; // NULL for everything except __weak pointers
4350/// struct __Block_byref_ND *__forwarding;
4351/// int32_t __flags;
4352/// int32_t __size;
4353/// void *__Block_byref_id_object_copy; // If variable is __block ObjC object
4354/// void *__Block_byref_id_object_dispose; // If variable is __block ObjC object
4355/// typex ND;
4356/// };
4357///
4358/// It then replaces declaration of ND variable with:
4359/// struct __Block_byref_ND ND = {__isa=0B, __forwarding=&ND, __flags=some_flag,
4360/// __size=sizeof(struct __Block_byref_ND),
4361/// ND=initializer-if-any};
4362///
4363///
4364void RewriteModernObjC::RewriteByRefVar(VarDecl *ND) {
4365 // Insert declaration for the function in which block literal is
4366 // used.
4367 if (CurFunctionDeclToDeclareForBlock)
4368 RewriteBlockLiteralFunctionDecl(CurFunctionDeclToDeclareForBlock);
4369 int flag = 0;
4370 int isa = 0;
4371 SourceLocation DeclLoc = ND->getTypeSpecStartLoc();
4372 if (DeclLoc.isInvalid())
4373 // If type location is missing, it is because of missing type (a warning).
4374 // Use variable's location which is good for this case.
4375 DeclLoc = ND->getLocation();
4376 const char *startBuf = SM->getCharacterData(DeclLoc);
4377 SourceLocation X = ND->getLocEnd();
4378 X = SM->getExpansionLoc(X);
4379 const char *endBuf = SM->getCharacterData(X);
4380 std::string Name(ND->getNameAsString());
4381 std::string ByrefType;
4382 RewriteByRefString(ByrefType, Name, ND, true);
4383 ByrefType += " {\n";
4384 ByrefType += " void *__isa;\n";
4385 RewriteByRefString(ByrefType, Name, ND);
4386 ByrefType += " *__forwarding;\n";
4387 ByrefType += " int __flags;\n";
4388 ByrefType += " int __size;\n";
4389 // Add void *__Block_byref_id_object_copy;
4390 // void *__Block_byref_id_object_dispose; if needed.
4391 QualType Ty = ND->getType();
4392 bool HasCopyAndDispose = Context->BlockRequiresCopying(Ty);
4393 if (HasCopyAndDispose) {
4394 ByrefType += " void (*__Block_byref_id_object_copy)(void*, void*);\n";
4395 ByrefType += " void (*__Block_byref_id_object_dispose)(void*);\n";
4396 }
4397
4398 QualType T = Ty;
4399 (void)convertBlockPointerToFunctionPointer(T);
4400 T.getAsStringInternal(Name, Context->getPrintingPolicy());
4401
4402 ByrefType += " " + Name + ";\n";
4403 ByrefType += "};\n";
4404 // Insert this type in global scope. It is needed by helper function.
4405 SourceLocation FunLocStart;
4406 if (CurFunctionDef)
4407 FunLocStart = CurFunctionDef->getTypeSpecStartLoc();
4408 else {
4409 assert(CurMethodDef && "RewriteByRefVar - CurMethodDef is null");
4410 FunLocStart = CurMethodDef->getLocStart();
4411 }
4412 InsertText(FunLocStart, ByrefType);
4413 if (Ty.isObjCGCWeak()) {
4414 flag |= BLOCK_FIELD_IS_WEAK;
4415 isa = 1;
4416 }
4417
4418 if (HasCopyAndDispose) {
4419 flag = BLOCK_BYREF_CALLER;
4420 QualType Ty = ND->getType();
4421 // FIXME. Handle __weak variable (BLOCK_FIELD_IS_WEAK) as well.
4422 if (Ty->isBlockPointerType())
4423 flag |= BLOCK_FIELD_IS_BLOCK;
4424 else
4425 flag |= BLOCK_FIELD_IS_OBJECT;
4426 std::string HF = SynthesizeByrefCopyDestroyHelper(ND, flag);
4427 if (!HF.empty())
4428 InsertText(FunLocStart, HF);
4429 }
4430
4431 // struct __Block_byref_ND ND =
4432 // {0, &ND, some_flag, __size=sizeof(struct __Block_byref_ND),
4433 // initializer-if-any};
4434 bool hasInit = (ND->getInit() != 0);
4435 unsigned flags = 0;
4436 if (HasCopyAndDispose)
4437 flags |= BLOCK_HAS_COPY_DISPOSE;
4438 Name = ND->getNameAsString();
4439 ByrefType.clear();
4440 RewriteByRefString(ByrefType, Name, ND);
4441 std::string ForwardingCastType("(");
4442 ForwardingCastType += ByrefType + " *)";
4443 if (!hasInit) {
4444 ByrefType += " " + Name + " = {(void*)";
4445 ByrefType += utostr(isa);
4446 ByrefType += "," + ForwardingCastType + "&" + Name + ", ";
4447 ByrefType += utostr(flags);
4448 ByrefType += ", ";
4449 ByrefType += "sizeof(";
4450 RewriteByRefString(ByrefType, Name, ND);
4451 ByrefType += ")";
4452 if (HasCopyAndDispose) {
4453 ByrefType += ", __Block_byref_id_object_copy_";
4454 ByrefType += utostr(flag);
4455 ByrefType += ", __Block_byref_id_object_dispose_";
4456 ByrefType += utostr(flag);
4457 }
4458 ByrefType += "};\n";
4459 unsigned nameSize = Name.size();
4460 // for block or function pointer declaration. Name is aleady
4461 // part of the declaration.
4462 if (Ty->isBlockPointerType() || Ty->isFunctionPointerType())
4463 nameSize = 1;
4464 ReplaceText(DeclLoc, endBuf-startBuf+nameSize, ByrefType);
4465 }
4466 else {
4467 SourceLocation startLoc;
4468 Expr *E = ND->getInit();
4469 if (const CStyleCastExpr *ECE = dyn_cast<CStyleCastExpr>(E))
4470 startLoc = ECE->getLParenLoc();
4471 else
4472 startLoc = E->getLocStart();
4473 startLoc = SM->getExpansionLoc(startLoc);
4474 endBuf = SM->getCharacterData(startLoc);
4475 ByrefType += " " + Name;
4476 ByrefType += " = {(void*)";
4477 ByrefType += utostr(isa);
4478 ByrefType += "," + ForwardingCastType + "&" + Name + ", ";
4479 ByrefType += utostr(flags);
4480 ByrefType += ", ";
4481 ByrefType += "sizeof(";
4482 RewriteByRefString(ByrefType, Name, ND);
4483 ByrefType += "), ";
4484 if (HasCopyAndDispose) {
4485 ByrefType += "__Block_byref_id_object_copy_";
4486 ByrefType += utostr(flag);
4487 ByrefType += ", __Block_byref_id_object_dispose_";
4488 ByrefType += utostr(flag);
4489 ByrefType += ", ";
4490 }
4491 ReplaceText(DeclLoc, endBuf-startBuf, ByrefType);
4492
4493 // Complete the newly synthesized compound expression by inserting a right
4494 // curly brace before the end of the declaration.
4495 // FIXME: This approach avoids rewriting the initializer expression. It
4496 // also assumes there is only one declarator. For example, the following
4497 // isn't currently supported by this routine (in general):
4498 //
4499 // double __block BYREFVAR = 1.34, BYREFVAR2 = 1.37;
4500 //
4501 const char *startInitializerBuf = SM->getCharacterData(startLoc);
4502 const char *semiBuf = strchr(startInitializerBuf, ';');
4503 assert((*semiBuf == ';') && "RewriteByRefVar: can't find ';'");
4504 SourceLocation semiLoc =
4505 startLoc.getLocWithOffset(semiBuf-startInitializerBuf);
4506
4507 InsertText(semiLoc, "}");
4508 }
4509 return;
4510}
4511
4512void RewriteModernObjC::CollectBlockDeclRefInfo(BlockExpr *Exp) {
4513 // Add initializers for any closure decl refs.
4514 GetBlockDeclRefExprs(Exp->getBody());
4515 if (BlockDeclRefs.size()) {
4516 // Unique all "by copy" declarations.
4517 for (unsigned i = 0; i < BlockDeclRefs.size(); i++)
4518 if (!BlockDeclRefs[i]->isByRef()) {
4519 if (!BlockByCopyDeclsPtrSet.count(BlockDeclRefs[i]->getDecl())) {
4520 BlockByCopyDeclsPtrSet.insert(BlockDeclRefs[i]->getDecl());
4521 BlockByCopyDecls.push_back(BlockDeclRefs[i]->getDecl());
4522 }
4523 }
4524 // Unique all "by ref" declarations.
4525 for (unsigned i = 0; i < BlockDeclRefs.size(); i++)
4526 if (BlockDeclRefs[i]->isByRef()) {
4527 if (!BlockByRefDeclsPtrSet.count(BlockDeclRefs[i]->getDecl())) {
4528 BlockByRefDeclsPtrSet.insert(BlockDeclRefs[i]->getDecl());
4529 BlockByRefDecls.push_back(BlockDeclRefs[i]->getDecl());
4530 }
4531 }
4532 // Find any imported blocks...they will need special attention.
4533 for (unsigned i = 0; i < BlockDeclRefs.size(); i++)
4534 if (BlockDeclRefs[i]->isByRef() ||
4535 BlockDeclRefs[i]->getType()->isObjCObjectPointerType() ||
4536 BlockDeclRefs[i]->getType()->isBlockPointerType())
4537 ImportedBlockDecls.insert(BlockDeclRefs[i]->getDecl());
4538 }
4539}
4540
4541FunctionDecl *RewriteModernObjC::SynthBlockInitFunctionDecl(StringRef name) {
4542 IdentifierInfo *ID = &Context->Idents.get(name);
4543 QualType FType = Context->getFunctionNoProtoType(Context->VoidPtrTy);
4544 return FunctionDecl::Create(*Context, TUDecl, SourceLocation(),
4545 SourceLocation(), ID, FType, 0, SC_Extern,
4546 SC_None, false, false);
4547}
4548
4549Stmt *RewriteModernObjC::SynthBlockInitExpr(BlockExpr *Exp,
4550 const SmallVector<BlockDeclRefExpr *, 8> &InnerBlockDeclRefs) {
4551 const BlockDecl *block = Exp->getBlockDecl();
4552 Blocks.push_back(Exp);
4553
4554 CollectBlockDeclRefInfo(Exp);
4555
4556 // Add inner imported variables now used in current block.
4557 int countOfInnerDecls = 0;
4558 if (!InnerBlockDeclRefs.empty()) {
4559 for (unsigned i = 0; i < InnerBlockDeclRefs.size(); i++) {
4560 BlockDeclRefExpr *Exp = InnerBlockDeclRefs[i];
4561 ValueDecl *VD = Exp->getDecl();
4562 if (!Exp->isByRef() && !BlockByCopyDeclsPtrSet.count(VD)) {
4563 // We need to save the copied-in variables in nested
4564 // blocks because it is needed at the end for some of the API generations.
4565 // See SynthesizeBlockLiterals routine.
4566 InnerDeclRefs.push_back(Exp); countOfInnerDecls++;
4567 BlockDeclRefs.push_back(Exp);
4568 BlockByCopyDeclsPtrSet.insert(VD);
4569 BlockByCopyDecls.push_back(VD);
4570 }
4571 if (Exp->isByRef() && !BlockByRefDeclsPtrSet.count(VD)) {
4572 InnerDeclRefs.push_back(Exp); countOfInnerDecls++;
4573 BlockDeclRefs.push_back(Exp);
4574 BlockByRefDeclsPtrSet.insert(VD);
4575 BlockByRefDecls.push_back(VD);
4576 }
4577 }
4578 // Find any imported blocks...they will need special attention.
4579 for (unsigned i = 0; i < InnerBlockDeclRefs.size(); i++)
4580 if (InnerBlockDeclRefs[i]->isByRef() ||
4581 InnerBlockDeclRefs[i]->getType()->isObjCObjectPointerType() ||
4582 InnerBlockDeclRefs[i]->getType()->isBlockPointerType())
4583 ImportedBlockDecls.insert(InnerBlockDeclRefs[i]->getDecl());
4584 }
4585 InnerDeclRefsCount.push_back(countOfInnerDecls);
4586
4587 std::string FuncName;
4588
4589 if (CurFunctionDef)
4590 FuncName = CurFunctionDef->getNameAsString();
4591 else if (CurMethodDef)
4592 BuildUniqueMethodName(FuncName, CurMethodDef);
4593 else if (GlobalVarDecl)
4594 FuncName = std::string(GlobalVarDecl->getNameAsString());
4595
4596 std::string BlockNumber = utostr(Blocks.size()-1);
4597
4598 std::string Tag = "__" + FuncName + "_block_impl_" + BlockNumber;
4599 std::string Func = "__" + FuncName + "_block_func_" + BlockNumber;
4600
4601 // Get a pointer to the function type so we can cast appropriately.
4602 QualType BFT = convertFunctionTypeOfBlocks(Exp->getFunctionType());
4603 QualType FType = Context->getPointerType(BFT);
4604
4605 FunctionDecl *FD;
4606 Expr *NewRep;
4607
4608 // Simulate a contructor call...
4609 FD = SynthBlockInitFunctionDecl(Tag);
4610 DeclRefExpr *DRE = new (Context) DeclRefExpr(FD, FType, VK_RValue,
4611 SourceLocation());
4612
4613 SmallVector<Expr*, 4> InitExprs;
4614
4615 // Initialize the block function.
4616 FD = SynthBlockInitFunctionDecl(Func);
4617 DeclRefExpr *Arg = new (Context) DeclRefExpr(FD, FD->getType(), VK_LValue,
4618 SourceLocation());
4619 CastExpr *castExpr = NoTypeInfoCStyleCastExpr(Context, Context->VoidPtrTy,
4620 CK_BitCast, Arg);
4621 InitExprs.push_back(castExpr);
4622
4623 // Initialize the block descriptor.
4624 std::string DescData = "__" + FuncName + "_block_desc_" + BlockNumber + "_DATA";
4625
4626 VarDecl *NewVD = VarDecl::Create(*Context, TUDecl,
4627 SourceLocation(), SourceLocation(),
4628 &Context->Idents.get(DescData.c_str()),
4629 Context->VoidPtrTy, 0,
4630 SC_Static, SC_None);
4631 UnaryOperator *DescRefExpr =
4632 new (Context) UnaryOperator(new (Context) DeclRefExpr(NewVD,
4633 Context->VoidPtrTy,
4634 VK_LValue,
4635 SourceLocation()),
4636 UO_AddrOf,
4637 Context->getPointerType(Context->VoidPtrTy),
4638 VK_RValue, OK_Ordinary,
4639 SourceLocation());
4640 InitExprs.push_back(DescRefExpr);
4641
4642 // Add initializers for any closure decl refs.
4643 if (BlockDeclRefs.size()) {
4644 Expr *Exp;
4645 // Output all "by copy" declarations.
4646 for (SmallVector<ValueDecl*,8>::iterator I = BlockByCopyDecls.begin(),
4647 E = BlockByCopyDecls.end(); I != E; ++I) {
4648 if (isObjCType((*I)->getType())) {
4649 // FIXME: Conform to ABI ([[obj retain] autorelease]).
4650 FD = SynthBlockInitFunctionDecl((*I)->getName());
4651 Exp = new (Context) DeclRefExpr(FD, FD->getType(), VK_LValue,
4652 SourceLocation());
4653 if (HasLocalVariableExternalStorage(*I)) {
4654 QualType QT = (*I)->getType();
4655 QT = Context->getPointerType(QT);
4656 Exp = new (Context) UnaryOperator(Exp, UO_AddrOf, QT, VK_RValue,
4657 OK_Ordinary, SourceLocation());
4658 }
4659 } else if (isTopLevelBlockPointerType((*I)->getType())) {
4660 FD = SynthBlockInitFunctionDecl((*I)->getName());
4661 Arg = new (Context) DeclRefExpr(FD, FD->getType(), VK_LValue,
4662 SourceLocation());
4663 Exp = NoTypeInfoCStyleCastExpr(Context, Context->VoidPtrTy,
4664 CK_BitCast, Arg);
4665 } else {
4666 FD = SynthBlockInitFunctionDecl((*I)->getName());
4667 Exp = new (Context) DeclRefExpr(FD, FD->getType(), VK_LValue,
4668 SourceLocation());
4669 if (HasLocalVariableExternalStorage(*I)) {
4670 QualType QT = (*I)->getType();
4671 QT = Context->getPointerType(QT);
4672 Exp = new (Context) UnaryOperator(Exp, UO_AddrOf, QT, VK_RValue,
4673 OK_Ordinary, SourceLocation());
4674 }
4675
4676 }
4677 InitExprs.push_back(Exp);
4678 }
4679 // Output all "by ref" declarations.
4680 for (SmallVector<ValueDecl*,8>::iterator I = BlockByRefDecls.begin(),
4681 E = BlockByRefDecls.end(); I != E; ++I) {
4682 ValueDecl *ND = (*I);
4683 std::string Name(ND->getNameAsString());
4684 std::string RecName;
4685 RewriteByRefString(RecName, Name, ND, true);
4686 IdentifierInfo *II = &Context->Idents.get(RecName.c_str()
4687 + sizeof("struct"));
4688 RecordDecl *RD = RecordDecl::Create(*Context, TTK_Struct, TUDecl,
4689 SourceLocation(), SourceLocation(),
4690 II);
4691 assert(RD && "SynthBlockInitExpr(): Can't find RecordDecl");
4692 QualType castT = Context->getPointerType(Context->getTagDeclType(RD));
4693
4694 FD = SynthBlockInitFunctionDecl((*I)->getName());
4695 Exp = new (Context) DeclRefExpr(FD, FD->getType(), VK_LValue,
4696 SourceLocation());
4697 bool isNestedCapturedVar = false;
4698 if (block)
4699 for (BlockDecl::capture_const_iterator ci = block->capture_begin(),
4700 ce = block->capture_end(); ci != ce; ++ci) {
4701 const VarDecl *variable = ci->getVariable();
4702 if (variable == ND && ci->isNested()) {
4703 assert (ci->isByRef() &&
4704 "SynthBlockInitExpr - captured block variable is not byref");
4705 isNestedCapturedVar = true;
4706 break;
4707 }
4708 }
4709 // captured nested byref variable has its address passed. Do not take
4710 // its address again.
4711 if (!isNestedCapturedVar)
4712 Exp = new (Context) UnaryOperator(Exp, UO_AddrOf,
4713 Context->getPointerType(Exp->getType()),
4714 VK_RValue, OK_Ordinary, SourceLocation());
4715 Exp = NoTypeInfoCStyleCastExpr(Context, castT, CK_BitCast, Exp);
4716 InitExprs.push_back(Exp);
4717 }
4718 }
4719 if (ImportedBlockDecls.size()) {
4720 // generate BLOCK_HAS_COPY_DISPOSE(have helper funcs) | BLOCK_HAS_DESCRIPTOR
4721 int flag = (BLOCK_HAS_COPY_DISPOSE | BLOCK_HAS_DESCRIPTOR);
4722 unsigned IntSize =
4723 static_cast<unsigned>(Context->getTypeSize(Context->IntTy));
4724 Expr *FlagExp = IntegerLiteral::Create(*Context, llvm::APInt(IntSize, flag),
4725 Context->IntTy, SourceLocation());
4726 InitExprs.push_back(FlagExp);
4727 }
4728 NewRep = new (Context) CallExpr(*Context, DRE, &InitExprs[0], InitExprs.size(),
4729 FType, VK_LValue, SourceLocation());
4730 NewRep = new (Context) UnaryOperator(NewRep, UO_AddrOf,
4731 Context->getPointerType(NewRep->getType()),
4732 VK_RValue, OK_Ordinary, SourceLocation());
4733 NewRep = NoTypeInfoCStyleCastExpr(Context, FType, CK_BitCast,
4734 NewRep);
4735 BlockDeclRefs.clear();
4736 BlockByRefDecls.clear();
4737 BlockByRefDeclsPtrSet.clear();
4738 BlockByCopyDecls.clear();
4739 BlockByCopyDeclsPtrSet.clear();
4740 ImportedBlockDecls.clear();
4741 return NewRep;
4742}
4743
4744bool RewriteModernObjC::IsDeclStmtInForeachHeader(DeclStmt *DS) {
4745 if (const ObjCForCollectionStmt * CS =
4746 dyn_cast<ObjCForCollectionStmt>(Stmts.back()))
4747 return CS->getElement() == DS;
4748 return false;
4749}
4750
4751//===----------------------------------------------------------------------===//
4752// Function Body / Expression rewriting
4753//===----------------------------------------------------------------------===//
4754
4755Stmt *RewriteModernObjC::RewriteFunctionBodyOrGlobalInitializer(Stmt *S) {
4756 if (isa<SwitchStmt>(S) || isa<WhileStmt>(S) ||
4757 isa<DoStmt>(S) || isa<ForStmt>(S))
4758 Stmts.push_back(S);
4759 else if (isa<ObjCForCollectionStmt>(S)) {
4760 Stmts.push_back(S);
4761 ObjCBcLabelNo.push_back(++BcLabelCount);
4762 }
4763
4764 // Pseudo-object operations and ivar references need special
4765 // treatment because we're going to recursively rewrite them.
4766 if (PseudoObjectExpr *PseudoOp = dyn_cast<PseudoObjectExpr>(S)) {
4767 if (isa<BinaryOperator>(PseudoOp->getSyntacticForm())) {
4768 return RewritePropertyOrImplicitSetter(PseudoOp);
4769 } else {
4770 return RewritePropertyOrImplicitGetter(PseudoOp);
4771 }
4772 } else if (ObjCIvarRefExpr *IvarRefExpr = dyn_cast<ObjCIvarRefExpr>(S)) {
4773 return RewriteObjCIvarRefExpr(IvarRefExpr);
4774 }
4775
4776 SourceRange OrigStmtRange = S->getSourceRange();
4777
4778 // Perform a bottom up rewrite of all children.
4779 for (Stmt::child_range CI = S->children(); CI; ++CI)
4780 if (*CI) {
4781 Stmt *childStmt = (*CI);
4782 Stmt *newStmt = RewriteFunctionBodyOrGlobalInitializer(childStmt);
4783 if (newStmt) {
4784 *CI = newStmt;
4785 }
4786 }
4787
4788 if (BlockExpr *BE = dyn_cast<BlockExpr>(S)) {
4789 SmallVector<BlockDeclRefExpr *, 8> InnerBlockDeclRefs;
4790 llvm::SmallPtrSet<const DeclContext *, 8> InnerContexts;
4791 InnerContexts.insert(BE->getBlockDecl());
4792 ImportedLocalExternalDecls.clear();
4793 GetInnerBlockDeclRefExprs(BE->getBody(),
4794 InnerBlockDeclRefs, InnerContexts);
4795 // Rewrite the block body in place.
4796 Stmt *SaveCurrentBody = CurrentBody;
4797 CurrentBody = BE->getBody();
4798 PropParentMap = 0;
4799 // block literal on rhs of a property-dot-sytax assignment
4800 // must be replaced by its synthesize ast so getRewrittenText
4801 // works as expected. In this case, what actually ends up on RHS
4802 // is the blockTranscribed which is the helper function for the
4803 // block literal; as in: self.c = ^() {[ace ARR];};
4804 bool saveDisableReplaceStmt = DisableReplaceStmt;
4805 DisableReplaceStmt = false;
4806 RewriteFunctionBodyOrGlobalInitializer(BE->getBody());
4807 DisableReplaceStmt = saveDisableReplaceStmt;
4808 CurrentBody = SaveCurrentBody;
4809 PropParentMap = 0;
4810 ImportedLocalExternalDecls.clear();
4811 // Now we snarf the rewritten text and stash it away for later use.
4812 std::string Str = Rewrite.getRewrittenText(BE->getSourceRange());
4813 RewrittenBlockExprs[BE] = Str;
4814
4815 Stmt *blockTranscribed = SynthBlockInitExpr(BE, InnerBlockDeclRefs);
4816
4817 //blockTranscribed->dump();
4818 ReplaceStmt(S, blockTranscribed);
4819 return blockTranscribed;
4820 }
4821 // Handle specific things.
4822 if (ObjCEncodeExpr *AtEncode = dyn_cast<ObjCEncodeExpr>(S))
4823 return RewriteAtEncode(AtEncode);
4824
4825 if (ObjCSelectorExpr *AtSelector = dyn_cast<ObjCSelectorExpr>(S))
4826 return RewriteAtSelector(AtSelector);
4827
4828 if (ObjCStringLiteral *AtString = dyn_cast<ObjCStringLiteral>(S))
4829 return RewriteObjCStringLiteral(AtString);
4830
4831 if (ObjCMessageExpr *MessExpr = dyn_cast<ObjCMessageExpr>(S)) {
4832#if 0
4833 // Before we rewrite it, put the original message expression in a comment.
4834 SourceLocation startLoc = MessExpr->getLocStart();
4835 SourceLocation endLoc = MessExpr->getLocEnd();
4836
4837 const char *startBuf = SM->getCharacterData(startLoc);
4838 const char *endBuf = SM->getCharacterData(endLoc);
4839
4840 std::string messString;
4841 messString += "// ";
4842 messString.append(startBuf, endBuf-startBuf+1);
4843 messString += "\n";
4844
4845 // FIXME: Missing definition of
4846 // InsertText(clang::SourceLocation, char const*, unsigned int).
4847 // InsertText(startLoc, messString.c_str(), messString.size());
4848 // Tried this, but it didn't work either...
4849 // ReplaceText(startLoc, 0, messString.c_str(), messString.size());
4850#endif
4851 return RewriteMessageExpr(MessExpr);
4852 }
4853
4854 if (ObjCAtTryStmt *StmtTry = dyn_cast<ObjCAtTryStmt>(S))
4855 return RewriteObjCTryStmt(StmtTry);
4856
4857 if (ObjCAtSynchronizedStmt *StmtTry = dyn_cast<ObjCAtSynchronizedStmt>(S))
4858 return RewriteObjCSynchronizedStmt(StmtTry);
4859
4860 if (ObjCAtThrowStmt *StmtThrow = dyn_cast<ObjCAtThrowStmt>(S))
4861 return RewriteObjCThrowStmt(StmtThrow);
4862
4863 if (ObjCProtocolExpr *ProtocolExp = dyn_cast<ObjCProtocolExpr>(S))
4864 return RewriteObjCProtocolExpr(ProtocolExp);
4865
4866 if (ObjCForCollectionStmt *StmtForCollection =
4867 dyn_cast<ObjCForCollectionStmt>(S))
4868 return RewriteObjCForCollectionStmt(StmtForCollection,
4869 OrigStmtRange.getEnd());
4870 if (BreakStmt *StmtBreakStmt =
4871 dyn_cast<BreakStmt>(S))
4872 return RewriteBreakStmt(StmtBreakStmt);
4873 if (ContinueStmt *StmtContinueStmt =
4874 dyn_cast<ContinueStmt>(S))
4875 return RewriteContinueStmt(StmtContinueStmt);
4876
4877 // Need to check for protocol refs (id <P>, Foo <P> *) in variable decls
4878 // and cast exprs.
4879 if (DeclStmt *DS = dyn_cast<DeclStmt>(S)) {
4880 // FIXME: What we're doing here is modifying the type-specifier that
4881 // precedes the first Decl. In the future the DeclGroup should have
4882 // a separate type-specifier that we can rewrite.
4883 // NOTE: We need to avoid rewriting the DeclStmt if it is within
4884 // the context of an ObjCForCollectionStmt. For example:
4885 // NSArray *someArray;
4886 // for (id <FooProtocol> index in someArray) ;
4887 // This is because RewriteObjCForCollectionStmt() does textual rewriting
4888 // and it depends on the original text locations/positions.
4889 if (Stmts.empty() || !IsDeclStmtInForeachHeader(DS))
4890 RewriteObjCQualifiedInterfaceTypes(*DS->decl_begin());
4891
4892 // Blocks rewrite rules.
4893 for (DeclStmt::decl_iterator DI = DS->decl_begin(), DE = DS->decl_end();
4894 DI != DE; ++DI) {
4895 Decl *SD = *DI;
4896 if (ValueDecl *ND = dyn_cast<ValueDecl>(SD)) {
4897 if (isTopLevelBlockPointerType(ND->getType()))
4898 RewriteBlockPointerDecl(ND);
4899 else if (ND->getType()->isFunctionPointerType())
4900 CheckFunctionPointerDecl(ND->getType(), ND);
4901 if (VarDecl *VD = dyn_cast<VarDecl>(SD)) {
4902 if (VD->hasAttr<BlocksAttr>()) {
4903 static unsigned uniqueByrefDeclCount = 0;
4904 assert(!BlockByRefDeclNo.count(ND) &&
4905 "RewriteFunctionBodyOrGlobalInitializer: Duplicate byref decl");
4906 BlockByRefDeclNo[ND] = uniqueByrefDeclCount++;
4907 RewriteByRefVar(VD);
4908 }
4909 else
4910 RewriteTypeOfDecl(VD);
4911 }
4912 }
4913 if (TypedefNameDecl *TD = dyn_cast<TypedefNameDecl>(SD)) {
4914 if (isTopLevelBlockPointerType(TD->getUnderlyingType()))
4915 RewriteBlockPointerDecl(TD);
4916 else if (TD->getUnderlyingType()->isFunctionPointerType())
4917 CheckFunctionPointerDecl(TD->getUnderlyingType(), TD);
4918 }
4919 }
4920 }
4921
4922 if (CStyleCastExpr *CE = dyn_cast<CStyleCastExpr>(S))
4923 RewriteObjCQualifiedInterfaceTypes(CE);
4924
4925 if (isa<SwitchStmt>(S) || isa<WhileStmt>(S) ||
4926 isa<DoStmt>(S) || isa<ForStmt>(S)) {
4927 assert(!Stmts.empty() && "Statement stack is empty");
4928 assert ((isa<SwitchStmt>(Stmts.back()) || isa<WhileStmt>(Stmts.back()) ||
4929 isa<DoStmt>(Stmts.back()) || isa<ForStmt>(Stmts.back()))
4930 && "Statement stack mismatch");
4931 Stmts.pop_back();
4932 }
4933 // Handle blocks rewriting.
4934 if (BlockDeclRefExpr *BDRE = dyn_cast<BlockDeclRefExpr>(S)) {
4935 if (BDRE->isByRef())
4936 return RewriteBlockDeclRefExpr(BDRE);
4937 }
4938 if (DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(S)) {
4939 ValueDecl *VD = DRE->getDecl();
4940 if (VD->hasAttr<BlocksAttr>())
4941 return RewriteBlockDeclRefExpr(DRE);
4942 if (HasLocalVariableExternalStorage(VD))
4943 return RewriteLocalVariableExternalStorage(DRE);
4944 }
4945
4946 if (CallExpr *CE = dyn_cast<CallExpr>(S)) {
4947 if (CE->getCallee()->getType()->isBlockPointerType()) {
4948 Stmt *BlockCall = SynthesizeBlockCall(CE, CE->getCallee());
4949 ReplaceStmt(S, BlockCall);
4950 return BlockCall;
4951 }
4952 }
4953 if (CStyleCastExpr *CE = dyn_cast<CStyleCastExpr>(S)) {
4954 RewriteCastExpr(CE);
4955 }
4956#if 0
4957 if (ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(S)) {
4958 CastExpr *Replacement = new (Context) CastExpr(ICE->getType(),
4959 ICE->getSubExpr(),
4960 SourceLocation());
4961 // Get the new text.
4962 std::string SStr;
4963 llvm::raw_string_ostream Buf(SStr);
4964 Replacement->printPretty(Buf, *Context);
4965 const std::string &Str = Buf.str();
4966
4967 printf("CAST = %s\n", &Str[0]);
4968 InsertText(ICE->getSubExpr()->getLocStart(), &Str[0], Str.size());
4969 delete S;
4970 return Replacement;
4971 }
4972#endif
4973 // Return this stmt unmodified.
4974 return S;
4975}
4976
4977void RewriteModernObjC::RewriteRecordBody(RecordDecl *RD) {
4978 for (RecordDecl::field_iterator i = RD->field_begin(),
4979 e = RD->field_end(); i != e; ++i) {
4980 FieldDecl *FD = *i;
4981 if (isTopLevelBlockPointerType(FD->getType()))
4982 RewriteBlockPointerDecl(FD);
4983 if (FD->getType()->isObjCQualifiedIdType() ||
4984 FD->getType()->isObjCQualifiedInterfaceType())
4985 RewriteObjCQualifiedInterfaceTypes(FD);
4986 }
4987}
4988
4989/// HandleDeclInMainFile - This is called for each top-level decl defined in the
4990/// main file of the input.
4991void RewriteModernObjC::HandleDeclInMainFile(Decl *D) {
4992 switch (D->getKind()) {
4993 case Decl::Function: {
4994 FunctionDecl *FD = cast<FunctionDecl>(D);
4995 if (FD->isOverloadedOperator())
4996 return;
4997
4998 // Since function prototypes don't have ParmDecl's, we check the function
4999 // prototype. This enables us to rewrite function declarations and
5000 // definitions using the same code.
5001 RewriteBlocksInFunctionProtoType(FD->getType(), FD);
5002
Argyrios Kyrtzidis9335df32012-02-12 04:48:45 +00005003 if (!FD->isThisDeclarationADefinition())
5004 break;
5005
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005006 // FIXME: If this should support Obj-C++, support CXXTryStmt
5007 if (CompoundStmt *Body = dyn_cast_or_null<CompoundStmt>(FD->getBody())) {
5008 CurFunctionDef = FD;
5009 CurFunctionDeclToDeclareForBlock = FD;
5010 CurrentBody = Body;
5011 Body =
5012 cast_or_null<CompoundStmt>(RewriteFunctionBodyOrGlobalInitializer(Body));
5013 FD->setBody(Body);
5014 CurrentBody = 0;
5015 if (PropParentMap) {
5016 delete PropParentMap;
5017 PropParentMap = 0;
5018 }
5019 // This synthesizes and inserts the block "impl" struct, invoke function,
5020 // and any copy/dispose helper functions.
5021 InsertBlockLiteralsWithinFunction(FD);
5022 CurFunctionDef = 0;
5023 CurFunctionDeclToDeclareForBlock = 0;
5024 }
5025 break;
5026 }
5027 case Decl::ObjCMethod: {
5028 ObjCMethodDecl *MD = cast<ObjCMethodDecl>(D);
5029 if (CompoundStmt *Body = MD->getCompoundBody()) {
5030 CurMethodDef = MD;
5031 CurrentBody = Body;
5032 Body =
5033 cast_or_null<CompoundStmt>(RewriteFunctionBodyOrGlobalInitializer(Body));
5034 MD->setBody(Body);
5035 CurrentBody = 0;
5036 if (PropParentMap) {
5037 delete PropParentMap;
5038 PropParentMap = 0;
5039 }
5040 InsertBlockLiteralsWithinMethod(MD);
5041 CurMethodDef = 0;
5042 }
5043 break;
5044 }
5045 case Decl::ObjCImplementation: {
5046 ObjCImplementationDecl *CI = cast<ObjCImplementationDecl>(D);
5047 ClassImplementation.push_back(CI);
5048 break;
5049 }
5050 case Decl::ObjCCategoryImpl: {
5051 ObjCCategoryImplDecl *CI = cast<ObjCCategoryImplDecl>(D);
5052 CategoryImplementation.push_back(CI);
5053 break;
5054 }
5055 case Decl::Var: {
5056 VarDecl *VD = cast<VarDecl>(D);
5057 RewriteObjCQualifiedInterfaceTypes(VD);
5058 if (isTopLevelBlockPointerType(VD->getType()))
5059 RewriteBlockPointerDecl(VD);
5060 else if (VD->getType()->isFunctionPointerType()) {
5061 CheckFunctionPointerDecl(VD->getType(), VD);
5062 if (VD->getInit()) {
5063 if (CStyleCastExpr *CE = dyn_cast<CStyleCastExpr>(VD->getInit())) {
5064 RewriteCastExpr(CE);
5065 }
5066 }
5067 } else if (VD->getType()->isRecordType()) {
5068 RecordDecl *RD = VD->getType()->getAs<RecordType>()->getDecl();
5069 if (RD->isCompleteDefinition())
5070 RewriteRecordBody(RD);
5071 }
5072 if (VD->getInit()) {
5073 GlobalVarDecl = VD;
5074 CurrentBody = VD->getInit();
5075 RewriteFunctionBodyOrGlobalInitializer(VD->getInit());
5076 CurrentBody = 0;
5077 if (PropParentMap) {
5078 delete PropParentMap;
5079 PropParentMap = 0;
5080 }
5081 SynthesizeBlockLiterals(VD->getTypeSpecStartLoc(), VD->getName());
5082 GlobalVarDecl = 0;
5083
5084 // This is needed for blocks.
5085 if (CStyleCastExpr *CE = dyn_cast<CStyleCastExpr>(VD->getInit())) {
5086 RewriteCastExpr(CE);
5087 }
5088 }
5089 break;
5090 }
5091 case Decl::TypeAlias:
5092 case Decl::Typedef: {
5093 if (TypedefNameDecl *TD = dyn_cast<TypedefNameDecl>(D)) {
5094 if (isTopLevelBlockPointerType(TD->getUnderlyingType()))
5095 RewriteBlockPointerDecl(TD);
5096 else if (TD->getUnderlyingType()->isFunctionPointerType())
5097 CheckFunctionPointerDecl(TD->getUnderlyingType(), TD);
5098 }
5099 break;
5100 }
5101 case Decl::CXXRecord:
5102 case Decl::Record: {
5103 RecordDecl *RD = cast<RecordDecl>(D);
5104 if (RD->isCompleteDefinition())
5105 RewriteRecordBody(RD);
5106 break;
5107 }
5108 default:
5109 break;
5110 }
5111 // Nothing yet.
5112}
5113
5114void RewriteModernObjC::HandleTranslationUnit(ASTContext &C) {
5115 if (Diags.hasErrorOccurred())
5116 return;
5117
5118 RewriteInclude();
5119
5120 // Here's a great place to add any extra declarations that may be needed.
5121 // Write out meta data for each @protocol(<expr>).
5122 for (llvm::SmallPtrSet<ObjCProtocolDecl *,8>::iterator I = ProtocolExprDecls.begin(),
5123 E = ProtocolExprDecls.end(); I != E; ++I)
Fariborz Jahanianda9624a2012-02-08 19:53:58 +00005124 RewriteObjCProtocolMetaData(*I, Preamble);
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005125
5126 InsertText(SM->getLocForStartOfFile(MainFileID), Preamble, false);
Fariborz Jahanian57317782012-02-21 23:58:41 +00005127 for (unsigned i = 0, e = ObjCInterfacesSeen.size(); i < e; i++) {
5128 ObjCInterfaceDecl *CDecl = ObjCInterfacesSeen[i];
5129 // Write struct declaration for the class matching its ivar declarations.
5130 // Note that for modern abi, this is postponed until the end of TU
5131 // because class extensions and the implementation might declare their own
5132 // private ivars.
5133 RewriteInterfaceDecl(CDecl);
5134 }
Fariborz Jahanian72c88f12012-02-22 18:13:25 +00005135
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005136 if (ClassImplementation.size() || CategoryImplementation.size())
5137 RewriteImplementations();
5138
5139 // Get the buffer corresponding to MainFileID. If we haven't changed it, then
5140 // we are done.
5141 if (const RewriteBuffer *RewriteBuf =
5142 Rewrite.getRewriteBufferFor(MainFileID)) {
5143 //printf("Changed:\n");
5144 *OutFile << std::string(RewriteBuf->begin(), RewriteBuf->end());
5145 } else {
5146 llvm::errs() << "No changes\n";
5147 }
5148
5149 if (ClassImplementation.size() || CategoryImplementation.size() ||
5150 ProtocolExprDecls.size()) {
5151 // Rewrite Objective-c meta data*
5152 std::string ResultStr;
5153 RewriteMetaDataIntoBuffer(ResultStr);
5154 // Emit metadata.
5155 *OutFile << ResultStr;
5156 }
5157 OutFile->flush();
5158}
5159
5160void RewriteModernObjC::Initialize(ASTContext &context) {
5161 InitializeCommon(context);
5162
5163 // declaring objc_selector outside the parameter list removes a silly
5164 // scope related warning...
5165 if (IsHeader)
5166 Preamble = "#pragma once\n";
5167 Preamble += "struct objc_selector; struct objc_class;\n";
5168 Preamble += "struct __rw_objc_super { struct objc_object *object; ";
5169 Preamble += "struct objc_object *superClass; ";
5170 if (LangOpts.MicrosoftExt) {
5171 // Add a constructor for creating temporary objects.
5172 Preamble += "__rw_objc_super(struct objc_object *o, struct objc_object *s) "
5173 ": ";
5174 Preamble += "object(o), superClass(s) {} ";
5175 }
5176 Preamble += "};\n";
5177 Preamble += "#ifndef _REWRITER_typedef_Protocol\n";
5178 Preamble += "typedef struct objc_object Protocol;\n";
5179 Preamble += "#define _REWRITER_typedef_Protocol\n";
5180 Preamble += "#endif\n";
5181 if (LangOpts.MicrosoftExt) {
5182 Preamble += "#define __OBJC_RW_DLLIMPORT extern \"C\" __declspec(dllimport)\n";
5183 Preamble += "#define __OBJC_RW_STATICIMPORT extern \"C\"\n";
5184 } else
5185 Preamble += "#define __OBJC_RW_DLLIMPORT extern\n";
5186 Preamble += "__OBJC_RW_DLLIMPORT struct objc_object *objc_msgSend";
5187 Preamble += "(struct objc_object *, struct objc_selector *, ...);\n";
5188 Preamble += "__OBJC_RW_DLLIMPORT struct objc_object *objc_msgSendSuper";
5189 Preamble += "(struct objc_super *, struct objc_selector *, ...);\n";
5190 Preamble += "__OBJC_RW_DLLIMPORT struct objc_object* objc_msgSend_stret";
5191 Preamble += "(struct objc_object *, struct objc_selector *, ...);\n";
5192 Preamble += "__OBJC_RW_DLLIMPORT struct objc_object* objc_msgSendSuper_stret";
5193 Preamble += "(struct objc_super *, struct objc_selector *, ...);\n";
5194 Preamble += "__OBJC_RW_DLLIMPORT double objc_msgSend_fpret";
5195 Preamble += "(struct objc_object *, struct objc_selector *, ...);\n";
5196 Preamble += "__OBJC_RW_DLLIMPORT struct objc_object *objc_getClass";
5197 Preamble += "(const char *);\n";
5198 Preamble += "__OBJC_RW_DLLIMPORT struct objc_class *class_getSuperclass";
5199 Preamble += "(struct objc_class *);\n";
5200 Preamble += "__OBJC_RW_DLLIMPORT struct objc_object *objc_getMetaClass";
5201 Preamble += "(const char *);\n";
5202 Preamble += "__OBJC_RW_DLLIMPORT void objc_exception_throw(struct objc_object *);\n";
5203 Preamble += "__OBJC_RW_DLLIMPORT void objc_exception_try_enter(void *);\n";
5204 Preamble += "__OBJC_RW_DLLIMPORT void objc_exception_try_exit(void *);\n";
5205 Preamble += "__OBJC_RW_DLLIMPORT struct objc_object *objc_exception_extract(void *);\n";
5206 Preamble += "__OBJC_RW_DLLIMPORT int objc_exception_match";
5207 Preamble += "(struct objc_class *, struct objc_object *);\n";
5208 // @synchronized hooks.
5209 Preamble += "__OBJC_RW_DLLIMPORT void objc_sync_enter(struct objc_object *);\n";
5210 Preamble += "__OBJC_RW_DLLIMPORT void objc_sync_exit(struct objc_object *);\n";
5211 Preamble += "__OBJC_RW_DLLIMPORT Protocol *objc_getProtocol(const char *);\n";
5212 Preamble += "#ifndef __FASTENUMERATIONSTATE\n";
5213 Preamble += "struct __objcFastEnumerationState {\n\t";
5214 Preamble += "unsigned long state;\n\t";
5215 Preamble += "void **itemsPtr;\n\t";
5216 Preamble += "unsigned long *mutationsPtr;\n\t";
5217 Preamble += "unsigned long extra[5];\n};\n";
5218 Preamble += "__OBJC_RW_DLLIMPORT void objc_enumerationMutation(struct objc_object *);\n";
5219 Preamble += "#define __FASTENUMERATIONSTATE\n";
5220 Preamble += "#endif\n";
5221 Preamble += "#ifndef __NSCONSTANTSTRINGIMPL\n";
5222 Preamble += "struct __NSConstantStringImpl {\n";
5223 Preamble += " int *isa;\n";
5224 Preamble += " int flags;\n";
5225 Preamble += " char *str;\n";
5226 Preamble += " long length;\n";
5227 Preamble += "};\n";
5228 Preamble += "#ifdef CF_EXPORT_CONSTANT_STRING\n";
5229 Preamble += "extern \"C\" __declspec(dllexport) int __CFConstantStringClassReference[];\n";
5230 Preamble += "#else\n";
5231 Preamble += "__OBJC_RW_DLLIMPORT int __CFConstantStringClassReference[];\n";
5232 Preamble += "#endif\n";
5233 Preamble += "#define __NSCONSTANTSTRINGIMPL\n";
5234 Preamble += "#endif\n";
5235 // Blocks preamble.
5236 Preamble += "#ifndef BLOCK_IMPL\n";
5237 Preamble += "#define BLOCK_IMPL\n";
5238 Preamble += "struct __block_impl {\n";
5239 Preamble += " void *isa;\n";
5240 Preamble += " int Flags;\n";
5241 Preamble += " int Reserved;\n";
5242 Preamble += " void *FuncPtr;\n";
5243 Preamble += "};\n";
5244 Preamble += "// Runtime copy/destroy helper functions (from Block_private.h)\n";
5245 Preamble += "#ifdef __OBJC_EXPORT_BLOCKS\n";
5246 Preamble += "extern \"C\" __declspec(dllexport) "
5247 "void _Block_object_assign(void *, const void *, const int);\n";
5248 Preamble += "extern \"C\" __declspec(dllexport) void _Block_object_dispose(const void *, const int);\n";
5249 Preamble += "extern \"C\" __declspec(dllexport) void *_NSConcreteGlobalBlock[32];\n";
5250 Preamble += "extern \"C\" __declspec(dllexport) void *_NSConcreteStackBlock[32];\n";
5251 Preamble += "#else\n";
5252 Preamble += "__OBJC_RW_DLLIMPORT void _Block_object_assign(void *, const void *, const int);\n";
5253 Preamble += "__OBJC_RW_DLLIMPORT void _Block_object_dispose(const void *, const int);\n";
5254 Preamble += "__OBJC_RW_DLLIMPORT void *_NSConcreteGlobalBlock[32];\n";
5255 Preamble += "__OBJC_RW_DLLIMPORT void *_NSConcreteStackBlock[32];\n";
5256 Preamble += "#endif\n";
5257 Preamble += "#endif\n";
5258 if (LangOpts.MicrosoftExt) {
5259 Preamble += "#undef __OBJC_RW_DLLIMPORT\n";
5260 Preamble += "#undef __OBJC_RW_STATICIMPORT\n";
5261 Preamble += "#ifndef KEEP_ATTRIBUTES\n"; // We use this for clang tests.
5262 Preamble += "#define __attribute__(X)\n";
5263 Preamble += "#endif\n";
5264 Preamble += "#define __weak\n";
5265 }
5266 else {
5267 Preamble += "#define __block\n";
5268 Preamble += "#define __weak\n";
5269 }
5270 // NOTE! Windows uses LLP64 for 64bit mode. So, cast pointer to long long
5271 // as this avoids warning in any 64bit/32bit compilation model.
5272 Preamble += "\n#define __OFFSETOFIVAR__(TYPE, MEMBER) ((long long) &((TYPE *)0)->MEMBER)\n";
5273}
5274
5275/// RewriteIvarOffsetComputation - This rutine synthesizes computation of
5276/// ivar offset.
5277void RewriteModernObjC::RewriteIvarOffsetComputation(ObjCIvarDecl *ivar,
5278 std::string &Result) {
5279 if (ivar->isBitField()) {
5280 // FIXME: The hack below doesn't work for bitfields. For now, we simply
5281 // place all bitfields at offset 0.
5282 Result += "0";
5283 } else {
5284 Result += "__OFFSETOFIVAR__(struct ";
5285 Result += ivar->getContainingInterface()->getNameAsString();
5286 if (LangOpts.MicrosoftExt)
5287 Result += "_IMPL";
5288 Result += ", ";
5289 Result += ivar->getNameAsString();
5290 Result += ")";
5291 }
5292}
5293
5294/// WriteModernMetadataDeclarations - Writes out metadata declarations for modern ABI.
5295/// struct _prop_t {
Fariborz Jahanianda35eac2012-02-07 23:31:52 +00005296/// const char *name;
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005297/// char *attributes;
5298/// }
5299
5300/// struct _prop_list_t {
5301/// uint32_t entsize; // sizeof(struct _prop_t)
5302/// uint32_t count_of_properties;
5303/// struct _prop_t prop_list[count_of_properties];
5304/// }
5305
5306/// struct _protocol_t;
5307
5308/// struct _protocol_list_t {
5309/// long protocol_count; // Note, this is 32/64 bit
5310/// struct _protocol_t * protocol_list[protocol_count];
5311/// }
5312
5313/// struct _objc_method {
5314/// SEL _cmd;
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005315/// const char *method_type;
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005316/// char *_imp;
5317/// }
5318
5319/// struct _method_list_t {
5320/// uint32_t entsize; // sizeof(struct _objc_method)
5321/// uint32_t method_count;
5322/// struct _objc_method method_list[method_count];
5323/// }
5324
5325/// struct _protocol_t {
5326/// id isa; // NULL
5327/// const char * const protocol_name;
5328/// const struct _protocol_list_t * protocol_list; // super protocols
5329/// const struct method_list_t * const instance_methods;
5330/// const struct method_list_t * const class_methods;
5331/// const struct method_list_t *optionalInstanceMethods;
5332/// const struct method_list_t *optionalClassMethods;
5333/// const struct _prop_list_t * properties;
5334/// const uint32_t size; // sizeof(struct _protocol_t)
5335/// const uint32_t flags; // = 0
5336/// const char ** extendedMethodTypes;
5337/// }
5338
Fariborz Jahanian42e9a352012-02-10 00:04:22 +00005339/// struct _ivar_t {
5340/// unsigned long int *offset; // pointer to ivar offset location
Fariborz Jahanianae932952012-02-10 20:47:10 +00005341/// const char *name;
5342/// const char *type;
Fariborz Jahanian42e9a352012-02-10 00:04:22 +00005343/// uint32_t alignment;
5344/// uint32_t size;
5345/// }
5346
5347/// struct _ivar_list_t {
5348/// uint32 entsize; // sizeof(struct _ivar_t)
5349/// uint32 count;
Fariborz Jahanianae932952012-02-10 20:47:10 +00005350/// struct _ivar_t list[count];
Fariborz Jahanian42e9a352012-02-10 00:04:22 +00005351/// }
5352
5353/// struct _class_ro_t {
5354/// uint32_t const flags;
5355/// uint32_t const instanceStart;
5356/// uint32_t const instanceSize;
5357/// uint32_t const reserved; // only when building for 64bit targets
5358/// const uint8_t * const ivarLayout;
5359/// const char *const name;
5360/// const struct _method_list_t * const baseMethods;
Fariborz Jahanian0a525342012-02-14 19:31:35 +00005361/// const struct _protocol_list_t *const baseProtocols;
Fariborz Jahanian42e9a352012-02-10 00:04:22 +00005362/// const struct _ivar_list_t *const ivars;
5363/// const uint8_t * const weakIvarLayout;
5364/// const struct _prop_list_t * const properties;
5365/// }
5366
5367/// struct _class_t {
5368/// struct _class_t *isa;
5369/// struct _class_t * const superclass;
5370/// void *cache;
5371/// IMP *vtable;
Fariborz Jahanian3f77c7b2012-02-16 21:37:05 +00005372/// struct _class_ro_t *ro;
Fariborz Jahanian42e9a352012-02-10 00:04:22 +00005373/// }
5374
5375/// struct _category_t {
5376/// const char * const name;
5377/// struct _class_t *const cls;
5378/// const struct _method_list_t * const instance_methods;
5379/// const struct _method_list_t * const class_methods;
5380/// const struct _protocol_list_t * const protocols;
5381/// const struct _prop_list_t * const properties;
5382/// }
5383
5384/// MessageRefTy - LLVM for:
5385/// struct _message_ref_t {
5386/// IMP messenger;
5387/// SEL name;
5388/// };
5389
5390/// SuperMessageRefTy - LLVM for:
5391/// struct _super_message_ref_t {
5392/// SUPER_IMP messenger;
5393/// SEL name;
5394/// };
5395
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005396static void WriteModernMetadataDeclarations(std::string &Result) {
5397 static bool meta_data_declared = false;
5398 if (meta_data_declared)
5399 return;
5400
5401 Result += "\nstruct _prop_t {\n";
Fariborz Jahanianda35eac2012-02-07 23:31:52 +00005402 Result += "\tconst char *name;\n";
5403 Result += "\tconst char *attributes;\n";
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005404 Result += "};\n";
5405
5406 Result += "\nstruct _protocol_t;\n";
5407
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005408 Result += "\nstruct _objc_method {\n";
5409 Result += "\tstruct objc_selector * _cmd;\n";
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005410 Result += "\tconst char *method_type;\n";
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00005411 Result += "\tvoid *_imp;\n";
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005412 Result += "};\n";
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005413
5414 Result += "\nstruct _protocol_t {\n";
5415 Result += "\tvoid * isa; // NULL\n";
5416 Result += "\tconst char * const protocol_name;\n";
5417 Result += "\tconst struct _protocol_list_t * protocol_list; // super protocols\n";
5418 Result += "\tconst struct method_list_t * const instance_methods;\n";
5419 Result += "\tconst struct method_list_t * const class_methods;\n";
5420 Result += "\tconst struct method_list_t *optionalInstanceMethods;\n";
5421 Result += "\tconst struct method_list_t *optionalClassMethods;\n";
5422 Result += "\tconst struct _prop_list_t * properties;\n";
5423 Result += "\tconst unsigned int size; // sizeof(struct _protocol_t)\n";
5424 Result += "\tconst unsigned int flags; // = 0\n";
5425 Result += "\tconst char ** extendedMethodTypes;\n";
5426 Result += "};\n";
5427
Fariborz Jahanian42e9a352012-02-10 00:04:22 +00005428 Result += "\nstruct _ivar_t {\n";
5429 Result += "\tunsigned long int *offset; // pointer to ivar offset location\n";
Fariborz Jahanianae932952012-02-10 20:47:10 +00005430 Result += "\tconst char *name;\n";
5431 Result += "\tconst char *type;\n";
Fariborz Jahanian42e9a352012-02-10 00:04:22 +00005432 Result += "\tunsigned int alignment;\n";
5433 Result += "\tunsigned int size;\n";
5434 Result += "};\n";
5435
5436 Result += "\nstruct _class_ro_t {\n";
5437 Result += "\tunsigned int const flags;\n";
5438 Result += "\tunsigned int instanceStart;\n";
5439 Result += "\tunsigned int const instanceSize;\n";
5440 Result += "\tunsigned int const reserved; // only when building for 64bit targets\n";
5441 Result += "\tconst unsigned char * const ivarLayout;\n";
5442 Result += "\tconst char *const name;\n";
5443 Result += "\tconst struct _method_list_t * const baseMethods;\n";
5444 Result += "\tconst struct _objc_protocol_list *const baseProtocols;\n";
5445 Result += "\tconst struct _ivar_list_t *const ivars;\n";
5446 Result += "\tconst unsigned char *const weakIvarLayout;\n";
5447 Result += "\tconst struct _prop_list_t *const properties;\n";
5448 Result += "};\n";
5449
5450 Result += "\nstruct _class_t {\n";
5451 Result += "\tstruct _class_t *isa;\n";
5452 Result += "\tstruct _class_t *const superclass;\n";
5453 Result += "\tvoid *cache;\n";
5454 Result += "\tvoid *vtable;\n";
Fariborz Jahanian3f77c7b2012-02-16 21:37:05 +00005455 Result += "\tstruct _class_ro_t *ro;\n";
Fariborz Jahanian42e9a352012-02-10 00:04:22 +00005456 Result += "};\n";
5457
5458 Result += "\nstruct _category_t {\n";
5459 Result += "\tconst char * const name;\n";
5460 Result += "\tstruct _class_t *const cls;\n";
5461 Result += "\tconst struct _method_list_t *const instance_methods;\n";
5462 Result += "\tconst struct _method_list_t *const class_methods;\n";
5463 Result += "\tconst struct _protocol_list_t *const protocols;\n";
5464 Result += "\tconst struct _prop_list_t *const properties;\n";
5465 Result += "};\n";
5466
Fariborz Jahanian3f77c7b2012-02-16 21:37:05 +00005467 Result += "extern void *_objc_empty_cache;\n";
5468 Result += "extern void *_objc_empty_vtable;\n";
5469
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005470 meta_data_declared = true;
5471}
5472
Fariborz Jahanianda9624a2012-02-08 19:53:58 +00005473static void Write_protocol_list_t_TypeDecl(std::string &Result,
5474 long super_protocol_count) {
5475 Result += "struct /*_protocol_list_t*/"; Result += " {\n";
5476 Result += "\tlong protocol_count; // Note, this is 32/64 bit\n";
5477 Result += "\tstruct _protocol_t *super_protocols[";
5478 Result += utostr(super_protocol_count); Result += "];\n";
5479 Result += "}";
5480}
5481
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005482static void Write_method_list_t_TypeDecl(std::string &Result,
5483 unsigned int method_count) {
5484 Result += "struct /*_method_list_t*/"; Result += " {\n";
5485 Result += "\tunsigned int entsize; // sizeof(struct _objc_method)\n";
5486 Result += "\tunsigned int method_count;\n";
5487 Result += "\tstruct _objc_method method_list[";
5488 Result += utostr(method_count); Result += "];\n";
5489 Result += "}";
5490}
5491
Fariborz Jahanianda35eac2012-02-07 23:31:52 +00005492static void Write__prop_list_t_TypeDecl(std::string &Result,
5493 unsigned int property_count) {
5494 Result += "struct /*_prop_list_t*/"; Result += " {\n";
5495 Result += "\tunsigned int entsize; // sizeof(struct _prop_t)\n";
5496 Result += "\tunsigned int count_of_properties;\n";
5497 Result += "\tstruct _prop_t prop_list[";
5498 Result += utostr(property_count); Result += "];\n";
5499 Result += "}";
5500}
5501
Fariborz Jahanianae932952012-02-10 20:47:10 +00005502static void Write__ivar_list_t_TypeDecl(std::string &Result,
5503 unsigned int ivar_count) {
5504 Result += "struct /*_ivar_list_t*/"; Result += " {\n";
5505 Result += "\tunsigned int entsize; // sizeof(struct _prop_t)\n";
5506 Result += "\tunsigned int count;\n";
5507 Result += "\tstruct _ivar_t ivar_list[";
5508 Result += utostr(ivar_count); Result += "];\n";
5509 Result += "}";
5510}
5511
Fariborz Jahanianda9624a2012-02-08 19:53:58 +00005512static void Write_protocol_list_initializer(ASTContext *Context, std::string &Result,
5513 ArrayRef<ObjCProtocolDecl *> SuperProtocols,
5514 StringRef VarName,
5515 StringRef ProtocolName) {
5516 if (SuperProtocols.size() > 0) {
5517 Result += "\nstatic ";
5518 Write_protocol_list_t_TypeDecl(Result, SuperProtocols.size());
5519 Result += " "; Result += VarName;
5520 Result += ProtocolName;
5521 Result += " __attribute__ ((used, section (\"__DATA,__objc_const\"))) = {\n";
5522 Result += "\t"; Result += utostr(SuperProtocols.size()); Result += ",\n";
5523 for (unsigned i = 0, e = SuperProtocols.size(); i < e; i++) {
5524 ObjCProtocolDecl *SuperPD = SuperProtocols[i];
5525 Result += "\t&"; Result += "_OBJC_PROTOCOL_";
5526 Result += SuperPD->getNameAsString();
5527 if (i == e-1)
5528 Result += "\n};\n";
5529 else
5530 Result += ",\n";
5531 }
5532 }
5533}
5534
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00005535static void Write_method_list_t_initializer(RewriteModernObjC &RewriteObj,
5536 ASTContext *Context, std::string &Result,
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005537 ArrayRef<ObjCMethodDecl *> Methods,
5538 StringRef VarName,
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00005539 StringRef TopLevelDeclName,
5540 bool MethodImpl) {
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005541 if (Methods.size() > 0) {
5542 Result += "\nstatic ";
5543 Write_method_list_t_TypeDecl(Result, Methods.size());
5544 Result += " "; Result += VarName;
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00005545 Result += TopLevelDeclName;
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005546 Result += " __attribute__ ((used, section (\"__DATA,__objc_const\"))) = {\n";
5547 Result += "\t"; Result += "sizeof(_objc_method)"; Result += ",\n";
5548 Result += "\t"; Result += utostr(Methods.size()); Result += ",\n";
5549 for (unsigned i = 0, e = Methods.size(); i < e; i++) {
5550 ObjCMethodDecl *MD = Methods[i];
5551 if (i == 0)
5552 Result += "\t{{(struct objc_selector *)\"";
5553 else
5554 Result += "\t{(struct objc_selector *)\"";
5555 Result += (MD)->getSelector().getAsString(); Result += "\"";
5556 Result += ", ";
5557 std::string MethodTypeString;
5558 Context->getObjCEncodingForMethodDecl(MD, MethodTypeString);
5559 Result += "\""; Result += MethodTypeString; Result += "\"";
5560 Result += ", ";
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00005561 if (!MethodImpl)
5562 Result += "0";
5563 else {
5564 Result += "(void *)";
5565 Result += RewriteObj.MethodInternalNames[MD];
5566 }
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005567 if (i == e-1)
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00005568 Result += "}}\n";
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005569 else
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00005570 Result += "},\n";
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005571 }
5572 Result += "};\n";
5573 }
5574}
5575
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00005576static void Write_prop_list_t_initializer(RewriteModernObjC &RewriteObj,
Fariborz Jahanianda35eac2012-02-07 23:31:52 +00005577 ASTContext *Context, std::string &Result,
5578 ArrayRef<ObjCPropertyDecl *> Properties,
5579 const Decl *Container,
5580 StringRef VarName,
5581 StringRef ProtocolName) {
5582 if (Properties.size() > 0) {
5583 Result += "\nstatic ";
5584 Write__prop_list_t_TypeDecl(Result, Properties.size());
5585 Result += " "; Result += VarName;
5586 Result += ProtocolName;
5587 Result += " __attribute__ ((used, section (\"__DATA,__objc_const\"))) = {\n";
5588 Result += "\t"; Result += "sizeof(_prop_t)"; Result += ",\n";
5589 Result += "\t"; Result += utostr(Properties.size()); Result += ",\n";
5590 for (unsigned i = 0, e = Properties.size(); i < e; i++) {
5591 ObjCPropertyDecl *PropDecl = Properties[i];
5592 if (i == 0)
5593 Result += "\t{{\"";
5594 else
5595 Result += "\t{\"";
5596 Result += PropDecl->getName(); Result += "\",";
5597 std::string PropertyTypeString, QuotePropertyTypeString;
5598 Context->getObjCEncodingForPropertyDecl(PropDecl, Container, PropertyTypeString);
5599 RewriteObj.QuoteDoublequotes(PropertyTypeString, QuotePropertyTypeString);
5600 Result += "\""; Result += QuotePropertyTypeString; Result += "\"";
5601 if (i == e-1)
5602 Result += "}}\n";
5603 else
5604 Result += "},\n";
5605 }
5606 Result += "};\n";
5607 }
5608}
5609
Fariborz Jahanian6ade3432012-02-16 18:54:09 +00005610// Metadata flags
5611enum MetaDataDlags {
5612 CLS = 0x0,
5613 CLS_META = 0x1,
5614 CLS_ROOT = 0x2,
5615 OBJC2_CLS_HIDDEN = 0x10,
5616 CLS_EXCEPTION = 0x20,
5617
5618 /// (Obsolete) ARC-specific: this class has a .release_ivars method
5619 CLS_HAS_IVAR_RELEASER = 0x40,
5620 /// class was compiled with -fobjc-arr
5621 CLS_COMPILED_BY_ARC = 0x80 // (1<<7)
5622};
5623
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00005624static void Write__class_ro_t_initializer(ASTContext *Context, std::string &Result,
5625 unsigned int flags,
5626 const std::string &InstanceStart,
5627 const std::string &InstanceSize,
5628 ArrayRef<ObjCMethodDecl *>baseMethods,
5629 ArrayRef<ObjCProtocolDecl *>baseProtocols,
5630 ArrayRef<ObjCIvarDecl *>ivars,
5631 ArrayRef<ObjCPropertyDecl *>Properties,
5632 StringRef VarName,
5633 StringRef ClassName) {
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00005634 Result += "\nstatic struct _class_ro_t ";
5635 Result += VarName; Result += ClassName;
5636 Result += " __attribute__ ((used, section (\"__DATA,__objc_const\"))) = {\n";
5637 Result += "\t";
5638 Result += llvm::utostr(flags); Result += ", ";
5639 Result += InstanceStart; Result += ", ";
5640 Result += InstanceSize; Result += ", \n";
5641 Result += "\t";
5642 // uint32_t const reserved; // only when building for 64bit targets
5643 Result += "(unsigned int)0, \n\t";
5644 // const uint8_t * const ivarLayout;
5645 Result += "0, \n\t";
5646 Result += "\""; Result += ClassName; Result += "\",\n\t";
Fariborz Jahanian6ade3432012-02-16 18:54:09 +00005647 bool metaclass = ((flags & CLS_META) != 0);
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00005648 if (baseMethods.size() > 0) {
5649 Result += "(const struct _method_list_t *)&";
Fariborz Jahanian6ade3432012-02-16 18:54:09 +00005650 if (metaclass)
5651 Result += "_OBJC_$_CLASS_METHODS_";
5652 else
5653 Result += "_OBJC_$_INSTANCE_METHODS_";
5654 Result += ClassName;
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00005655 Result += ",\n\t";
5656 }
5657 else
5658 Result += "0, \n\t";
5659
Fariborz Jahanian6ade3432012-02-16 18:54:09 +00005660 if (!metaclass && baseProtocols.size() > 0) {
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00005661 Result += "(const struct _objc_protocol_list *)&";
5662 Result += "_OBJC_CLASS_PROTOCOLS_$_"; Result += ClassName;
5663 Result += ",\n\t";
5664 }
5665 else
5666 Result += "0, \n\t";
5667
Fariborz Jahanian6ade3432012-02-16 18:54:09 +00005668 if (!metaclass && ivars.size() > 0) {
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00005669 Result += "(const struct _ivar_list_t *)&";
5670 Result += "_OBJC_$_INSTANCE_VARIABLES_"; Result += ClassName;
5671 Result += ",\n\t";
5672 }
5673 else
5674 Result += "0, \n\t";
5675
5676 // weakIvarLayout
5677 Result += "0, \n\t";
Fariborz Jahanian6ade3432012-02-16 18:54:09 +00005678 if (!metaclass && Properties.size() > 0) {
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00005679 Result += "(const struct _prop_list_t *)&";
Fariborz Jahanianeeabf382012-02-16 21:57:59 +00005680 Result += "_OBJC_$_PROP_LIST_"; Result += ClassName;
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00005681 Result += ",\n";
5682 }
5683 else
5684 Result += "0, \n";
5685
5686 Result += "};\n";
5687}
5688
Fariborz Jahanian3f77c7b2012-02-16 21:37:05 +00005689static void Write_class_t(ASTContext *Context, std::string &Result,
5690 StringRef VarName,
5691 const ObjCInterfaceDecl *CDecl, bool metadata) {
Fariborz Jahanian3f77c7b2012-02-16 21:37:05 +00005692
5693 if (metadata && !CDecl->getSuperClass()) {
5694 // Need to handle a case of use of forward declaration.
5695 Result += "\nextern struct _class_t OBJC_CLASS_$_";
5696 Result += CDecl->getNameAsString();
5697 Result += ";\n";
5698 }
5699 // Also, for possibility of 'super' metadata class not having been defined yet.
5700 if (CDecl->getSuperClass()) {
5701 Result += "\nextern struct _class_t "; Result += VarName;
5702 Result += CDecl->getSuperClass()->getNameAsString();
5703 Result += ";\n";
5704 }
5705
Fariborz Jahaniane57303c2012-03-10 00:39:34 +00005706 Result += "\n__declspec(dllexport) struct _class_t "; Result += VarName; Result += CDecl->getNameAsString();
Fariborz Jahanian3f77c7b2012-02-16 21:37:05 +00005707 Result += " __attribute__ ((used, section (\"__DATA,__objc_data\"))) = {\n";
5708 Result += "\t";
5709 if (metadata) {
5710 if (CDecl->getSuperClass()) {
5711 Result += "&"; Result += VarName;
5712 Result += CDecl->getSuperClass()->getNameAsString();
5713 Result += ",\n\t";
5714 Result += "&"; Result += VarName;
5715 Result += CDecl->getSuperClass()->getNameAsString();
5716 Result += ",\n\t";
5717 }
5718 else {
5719 Result += "&"; Result += VarName;
5720 Result += CDecl->getNameAsString();
5721 Result += ",\n\t";
5722 Result += "&OBJC_CLASS_$_"; Result += CDecl->getNameAsString();
5723 Result += ",\n\t";
5724 }
5725 }
5726 else {
5727 Result += "&OBJC_METACLASS_$_";
5728 Result += CDecl->getNameAsString();
5729 Result += ",\n\t";
5730 if (CDecl->getSuperClass()) {
5731 Result += "&"; Result += VarName;
5732 Result += CDecl->getSuperClass()->getNameAsString();
5733 Result += ",\n\t";
5734 }
5735 else
5736 Result += "0,\n\t";
5737 }
5738 Result += "(void *)&_objc_empty_cache,\n\t";
5739 Result += "(void *)&_objc_empty_vtable,\n\t";
5740 if (metadata)
5741 Result += "&_OBJC_METACLASS_RO_$_";
5742 else
5743 Result += "&_OBJC_CLASS_RO_$_";
5744 Result += CDecl->getNameAsString();
5745 Result += ",\n};\n";
5746}
5747
Fariborz Jahanian61186122012-02-17 18:40:41 +00005748static void Write_category_t(RewriteModernObjC &RewriteObj, ASTContext *Context,
5749 std::string &Result,
5750 StringRef CatName,
5751 StringRef ClassName,
5752 ArrayRef<ObjCMethodDecl *> InstanceMethods,
5753 ArrayRef<ObjCMethodDecl *> ClassMethods,
5754 ArrayRef<ObjCProtocolDecl *> RefedProtocols,
5755 ArrayRef<ObjCPropertyDecl *> ClassProperties) {
Fariborz Jahanian8c00a1b2012-02-17 20:33:00 +00005756 // must declare an extern class object in case this class is not implemented
5757 // in this TU.
5758 Result += "\nextern struct _class_t ";
5759 Result += "OBJC_CLASS_$_"; Result += ClassName;
5760 Result += ";\n";
5761
Fariborz Jahanian61186122012-02-17 18:40:41 +00005762 Result += "\nstatic struct _category_t ";
5763 Result += "_OBJC_$_CATEGORY_";
5764 Result += ClassName; Result += "_$_"; Result += CatName;
5765 Result += " __attribute__ ((used, section (\"__DATA,__objc_const\"))) = \n";
5766 Result += "{\n";
5767 Result += "\t\""; Result += ClassName; Result += "\",\n";
5768 Result += "\t&"; Result += "OBJC_CLASS_$_"; Result += ClassName;
5769 Result += ",\n";
5770 if (InstanceMethods.size() > 0) {
5771 Result += "\t(const struct _method_list_t *)&";
5772 Result += "_OBJC_$_CATEGORY_INSTANCE_METHODS_";
5773 Result += ClassName; Result += "_$_"; Result += CatName;
5774 Result += ",\n";
5775 }
5776 else
5777 Result += "\t0,\n";
5778
5779 if (ClassMethods.size() > 0) {
5780 Result += "\t(const struct _method_list_t *)&";
5781 Result += "_OBJC_$_CATEGORY_CLASS_METHODS_";
5782 Result += ClassName; Result += "_$_"; Result += CatName;
5783 Result += ",\n";
5784 }
5785 else
5786 Result += "\t0,\n";
5787
5788 if (RefedProtocols.size() > 0) {
5789 Result += "\t(const struct _protocol_list_t *)&";
5790 Result += "_OBJC_CATEGORY_PROTOCOLS_$_";
5791 Result += ClassName; Result += "_$_"; Result += CatName;
5792 Result += ",\n";
5793 }
5794 else
5795 Result += "\t0,\n";
5796
5797 if (ClassProperties.size() > 0) {
5798 Result += "\t(const struct _prop_list_t *)&"; Result += "_OBJC_$_PROP_LIST_";
5799 Result += ClassName; Result += "_$_"; Result += CatName;
5800 Result += ",\n";
5801 }
5802 else
5803 Result += "\t0,\n";
5804
5805 Result += "};\n";
5806}
5807
Fariborz Jahaniane0adbd82012-02-08 22:23:26 +00005808static void Write__extendedMethodTypes_initializer(RewriteModernObjC &RewriteObj,
5809 ASTContext *Context, std::string &Result,
5810 ArrayRef<ObjCMethodDecl *> Methods,
5811 StringRef VarName,
5812 StringRef ProtocolName) {
5813 if (Methods.size() == 0)
5814 return;
5815
5816 Result += "\nstatic const char *";
5817 Result += VarName; Result += ProtocolName;
5818 Result += " [] __attribute__ ((used, section (\"__DATA,__objc_const\"))) = \n";
5819 Result += "{\n";
5820 for (unsigned i = 0, e = Methods.size(); i < e; i++) {
5821 ObjCMethodDecl *MD = Methods[i];
5822 std::string MethodTypeString, QuoteMethodTypeString;
5823 Context->getObjCEncodingForMethodDecl(MD, MethodTypeString, true);
5824 RewriteObj.QuoteDoublequotes(MethodTypeString, QuoteMethodTypeString);
5825 Result += "\t\""; Result += QuoteMethodTypeString; Result += "\"";
5826 if (i == e-1)
5827 Result += "\n};\n";
5828 else {
5829 Result += ",\n";
5830 }
5831 }
5832}
5833
Fariborz Jahanian07e52882012-02-13 21:34:45 +00005834static void Write_IvarOffsetVar(std::string &Result,
Fariborz Jahaniandb649232012-02-13 20:59:02 +00005835 ArrayRef<ObjCIvarDecl *> Ivars,
5836 StringRef VarName,
5837 StringRef ClassName) {
5838 // FIXME. visibilty of offset symbols may have to be set; for Darwin
5839 // this is what happens:
5840 /**
5841 if (Ivar->getAccessControl() == ObjCIvarDecl::Private ||
5842 Ivar->getAccessControl() == ObjCIvarDecl::Package ||
5843 Class->getVisibility() == HiddenVisibility)
5844 Visibility shoud be: HiddenVisibility;
5845 else
5846 Visibility shoud be: DefaultVisibility;
5847 */
5848
Fariborz Jahanian07e52882012-02-13 21:34:45 +00005849 Result += "\n";
5850 for (unsigned i =0, e = Ivars.size(); i < e; i++) {
5851 ObjCIvarDecl *IvarDecl = Ivars[i];
Fariborz Jahaniand1c84d32012-03-10 00:53:02 +00005852 if (IvarDecl->getAccessControl() == ObjCIvarDecl::Private)
5853 Result += "unsigned long int ";
5854 else
5855 Result += "__declspec(dllexport) unsigned long int ";
5856
5857 Result += VarName;
Fariborz Jahanian07e52882012-02-13 21:34:45 +00005858 Result += ClassName; Result += "_";
5859 Result += IvarDecl->getName();
5860 Result += " __attribute__ ((used, section (\"__DATA,__objc_ivar\")))";
5861 Result += " = ";
5862 if (IvarDecl->isBitField()) {
5863 // FIXME: The hack below doesn't work for bitfields. For now, we simply
5864 // place all bitfields at offset 0.
5865 Result += "0;\n";
5866 }
5867 else {
Fariborz Jahaniandb649232012-02-13 20:59:02 +00005868 Result += "__OFFSETOFIVAR__(struct ";
5869 Result += ClassName;
5870 Result += "_IMPL, ";
5871 Result += IvarDecl->getName(); Result += ");\n";
5872 }
5873 }
5874}
5875
Fariborz Jahanianae932952012-02-10 20:47:10 +00005876static void Write__ivar_list_t_initializer(RewriteModernObjC &RewriteObj,
5877 ASTContext *Context, std::string &Result,
5878 ArrayRef<ObjCIvarDecl *> Ivars,
5879 StringRef VarName,
5880 StringRef ClassName) {
5881 if (Ivars.size() > 0) {
Fariborz Jahanian07e52882012-02-13 21:34:45 +00005882 Write_IvarOffsetVar(Result, Ivars, "OBJC_IVAR_$_", ClassName);
5883
Fariborz Jahanianae932952012-02-10 20:47:10 +00005884 Result += "\nstatic ";
5885 Write__ivar_list_t_TypeDecl(Result, Ivars.size());
5886 Result += " "; Result += VarName;
5887 Result += ClassName;
5888 Result += " __attribute__ ((used, section (\"__DATA,__objc_const\"))) = {\n";
5889 Result += "\t"; Result += "sizeof(_ivar_t)"; Result += ",\n";
5890 Result += "\t"; Result += utostr(Ivars.size()); Result += ",\n";
5891 for (unsigned i =0, e = Ivars.size(); i < e; i++) {
5892 ObjCIvarDecl *IvarDecl = Ivars[i];
5893 if (i == 0)
5894 Result += "\t{{";
5895 else
5896 Result += "\t {";
Fariborz Jahaniandb649232012-02-13 20:59:02 +00005897
5898 Result += "(unsigned long int *)&OBJC_IVAR_$_";
5899 Result += ClassName; Result += "_"; Result += IvarDecl->getName();
5900 Result += ", ";
Fariborz Jahanianae932952012-02-10 20:47:10 +00005901
5902 Result += "\""; Result += IvarDecl->getName(); Result += "\", ";
5903 std::string IvarTypeString, QuoteIvarTypeString;
5904 Context->getObjCEncodingForType(IvarDecl->getType(), IvarTypeString,
5905 IvarDecl);
5906 RewriteObj.QuoteDoublequotes(IvarTypeString, QuoteIvarTypeString);
5907 Result += "\""; Result += QuoteIvarTypeString; Result += "\", ";
5908
Fariborz Jahanian8f1fed02012-02-11 20:10:52 +00005909 // FIXME. this alignment represents the host alignment and need be changed to
5910 // represent the target alignment.
5911 unsigned Align = Context->getTypeAlign(IvarDecl->getType())/8;
5912 Align = llvm::Log2_32(Align);
Fariborz Jahanianae932952012-02-10 20:47:10 +00005913 Result += llvm::utostr(Align); Result += ", ";
Fariborz Jahaniana63b4222012-02-10 23:18:24 +00005914 CharUnits Size = Context->getTypeSizeInChars(IvarDecl->getType());
5915 Result += llvm::utostr(Size.getQuantity());
Fariborz Jahanianae932952012-02-10 20:47:10 +00005916 if (i == e-1)
5917 Result += "}}\n";
5918 else
5919 Result += "},\n";
5920 }
5921 Result += "};\n";
5922 }
5923}
5924
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005925/// RewriteObjCProtocolMetaData - Rewrite protocols meta-data.
Fariborz Jahanianda9624a2012-02-08 19:53:58 +00005926void RewriteModernObjC::RewriteObjCProtocolMetaData(ObjCProtocolDecl *PDecl,
5927 std::string &Result) {
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005928
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005929 // Do not synthesize the protocol more than once.
5930 if (ObjCSynthesizedProtocols.count(PDecl->getCanonicalDecl()))
5931 return;
Fariborz Jahanian82848c22012-02-08 00:50:52 +00005932 WriteModernMetadataDeclarations(Result);
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005933
5934 if (ObjCProtocolDecl *Def = PDecl->getDefinition())
5935 PDecl = Def;
Fariborz Jahanianda9624a2012-02-08 19:53:58 +00005936 // Must write out all protocol definitions in current qualifier list,
5937 // and in their nested qualifiers before writing out current definition.
5938 for (ObjCProtocolDecl::protocol_iterator I = PDecl->protocol_begin(),
5939 E = PDecl->protocol_end(); I != E; ++I)
5940 RewriteObjCProtocolMetaData(*I, Result);
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00005941
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005942 // Construct method lists.
5943 std::vector<ObjCMethodDecl *> InstanceMethods, ClassMethods;
5944 std::vector<ObjCMethodDecl *> OptInstanceMethods, OptClassMethods;
5945 for (ObjCProtocolDecl::instmeth_iterator
5946 I = PDecl->instmeth_begin(), E = PDecl->instmeth_end();
5947 I != E; ++I) {
5948 ObjCMethodDecl *MD = *I;
5949 if (MD->getImplementationControl() == ObjCMethodDecl::Optional) {
5950 OptInstanceMethods.push_back(MD);
5951 } else {
5952 InstanceMethods.push_back(MD);
5953 }
5954 }
5955
5956 for (ObjCProtocolDecl::classmeth_iterator
5957 I = PDecl->classmeth_begin(), E = PDecl->classmeth_end();
5958 I != E; ++I) {
5959 ObjCMethodDecl *MD = *I;
5960 if (MD->getImplementationControl() == ObjCMethodDecl::Optional) {
5961 OptClassMethods.push_back(MD);
5962 } else {
5963 ClassMethods.push_back(MD);
5964 }
5965 }
Fariborz Jahaniane0adbd82012-02-08 22:23:26 +00005966 std::vector<ObjCMethodDecl *> AllMethods;
5967 for (unsigned i = 0, e = InstanceMethods.size(); i < e; i++)
5968 AllMethods.push_back(InstanceMethods[i]);
5969 for (unsigned i = 0, e = ClassMethods.size(); i < e; i++)
5970 AllMethods.push_back(ClassMethods[i]);
5971 for (unsigned i = 0, e = OptInstanceMethods.size(); i < e; i++)
5972 AllMethods.push_back(OptInstanceMethods[i]);
5973 for (unsigned i = 0, e = OptClassMethods.size(); i < e; i++)
5974 AllMethods.push_back(OptClassMethods[i]);
5975
5976 Write__extendedMethodTypes_initializer(*this, Context, Result,
5977 AllMethods,
5978 "_OBJC_PROTOCOL_METHOD_TYPES_",
5979 PDecl->getNameAsString());
Fariborz Jahanianda9624a2012-02-08 19:53:58 +00005980 // Protocol's super protocol list
5981 std::vector<ObjCProtocolDecl *> SuperProtocols;
5982 for (ObjCProtocolDecl::protocol_iterator I = PDecl->protocol_begin(),
5983 E = PDecl->protocol_end(); I != E; ++I)
5984 SuperProtocols.push_back(*I);
5985
5986 Write_protocol_list_initializer(Context, Result, SuperProtocols,
5987 "_OBJC_PROTOCOL_REFS_",
5988 PDecl->getNameAsString());
5989
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00005990 Write_method_list_t_initializer(*this, Context, Result, InstanceMethods,
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005991 "_OBJC_PROTOCOL_INSTANCE_METHODS_",
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00005992 PDecl->getNameAsString(), false);
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005993
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00005994 Write_method_list_t_initializer(*this, Context, Result, ClassMethods,
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005995 "_OBJC_PROTOCOL_CLASS_METHODS_",
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00005996 PDecl->getNameAsString(), false);
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005997
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00005998 Write_method_list_t_initializer(*this, Context, Result, OptInstanceMethods,
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00005999 "_OBJC_PROTOCOL_OPT_INSTANCE_METHODS_",
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00006000 PDecl->getNameAsString(), false);
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00006001
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00006002 Write_method_list_t_initializer(*this, Context, Result, OptClassMethods,
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00006003 "_OBJC_PROTOCOL_OPT_CLASS_METHODS_",
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00006004 PDecl->getNameAsString(), false);
Fariborz Jahanian77e4bca2012-02-07 20:15:08 +00006005
Fariborz Jahanianda35eac2012-02-07 23:31:52 +00006006 // Protocol's property metadata.
6007 std::vector<ObjCPropertyDecl *> ProtocolProperties;
6008 for (ObjCContainerDecl::prop_iterator I = PDecl->prop_begin(),
6009 E = PDecl->prop_end(); I != E; ++I)
6010 ProtocolProperties.push_back(*I);
6011
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00006012 Write_prop_list_t_initializer(*this, Context, Result, ProtocolProperties,
Fariborz Jahanianda35eac2012-02-07 23:31:52 +00006013 /* Container */0,
6014 "_OBJC_PROTOCOL_PROPERTIES_",
6015 PDecl->getNameAsString());
Fariborz Jahanianda35eac2012-02-07 23:31:52 +00006016
Fariborz Jahanian82848c22012-02-08 00:50:52 +00006017 // Writer out root metadata for current protocol: struct _protocol_t
6018 Result += "\nstatic struct _protocol_t _OBJC_PROTOCOL_";
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006019 Result += PDecl->getNameAsString();
Fariborz Jahanian82848c22012-02-08 00:50:52 +00006020 Result += " __attribute__ ((used, section (\"__DATA,__datacoal_nt,coalesced\"))) = {\n";
6021 Result += "\t0,\n"; // id is; is null
6022 Result += "\t\""; Result += PDecl->getNameAsString(); Result += "\",\n";
Fariborz Jahanianda9624a2012-02-08 19:53:58 +00006023 if (SuperProtocols.size() > 0) {
6024 Result += "\t(const struct _protocol_list_t *)&"; Result += "_OBJC_PROTOCOL_REFS_";
6025 Result += PDecl->getNameAsString(); Result += ",\n";
6026 }
6027 else
6028 Result += "\t0,\n";
Fariborz Jahanian82848c22012-02-08 00:50:52 +00006029 if (InstanceMethods.size() > 0) {
6030 Result += "\t(const struct method_list_t *)&_OBJC_PROTOCOL_INSTANCE_METHODS_";
6031 Result += PDecl->getNameAsString(); Result += ",\n";
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006032 }
6033 else
Fariborz Jahanian82848c22012-02-08 00:50:52 +00006034 Result += "\t0,\n";
6035
6036 if (ClassMethods.size() > 0) {
6037 Result += "\t(const struct method_list_t *)&_OBJC_PROTOCOL_CLASS_METHODS_";
6038 Result += PDecl->getNameAsString(); Result += ",\n";
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006039 }
6040 else
Fariborz Jahanian82848c22012-02-08 00:50:52 +00006041 Result += "\t0,\n";
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006042
Fariborz Jahanian82848c22012-02-08 00:50:52 +00006043 if (OptInstanceMethods.size() > 0) {
6044 Result += "\t(const struct method_list_t *)&_OBJC_PROTOCOL_OPT_INSTANCE_METHODS_";
6045 Result += PDecl->getNameAsString(); Result += ",\n";
6046 }
6047 else
6048 Result += "\t0,\n";
6049
6050 if (OptClassMethods.size() > 0) {
6051 Result += "\t(const struct method_list_t *)&_OBJC_PROTOCOL_OPT_CLASS_METHODS_";
6052 Result += PDecl->getNameAsString(); Result += ",\n";
6053 }
6054 else
6055 Result += "\t0,\n";
6056
6057 if (ProtocolProperties.size() > 0) {
6058 Result += "\t(const struct _prop_list_t *)&_OBJC_PROTOCOL_PROPERTIES_";
6059 Result += PDecl->getNameAsString(); Result += ",\n";
6060 }
6061 else
6062 Result += "\t0,\n";
6063
6064 Result += "\t"; Result += "sizeof(_protocol_t)"; Result += ",\n";
6065 Result += "\t0,\n";
6066
Fariborz Jahaniane0adbd82012-02-08 22:23:26 +00006067 if (AllMethods.size() > 0) {
6068 Result += "\t(const char **)&"; Result += "_OBJC_PROTOCOL_METHOD_TYPES_";
6069 Result += PDecl->getNameAsString();
6070 Result += "\n};\n";
6071 }
6072 else
6073 Result += "\t0\n};\n";
Fariborz Jahanian82848c22012-02-08 00:50:52 +00006074
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006075 // Mark this protocol as having been generated.
6076 if (!ObjCSynthesizedProtocols.insert(PDecl->getCanonicalDecl()))
6077 llvm_unreachable("protocol already synthesized");
6078
6079}
6080
6081void RewriteModernObjC::RewriteObjCProtocolListMetaData(
6082 const ObjCList<ObjCProtocolDecl> &Protocols,
6083 StringRef prefix, StringRef ClassName,
6084 std::string &Result) {
6085 if (Protocols.empty()) return;
6086
6087 for (unsigned i = 0; i != Protocols.size(); i++)
Fariborz Jahanianda9624a2012-02-08 19:53:58 +00006088 RewriteObjCProtocolMetaData(Protocols[i], Result);
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006089
6090 // Output the top lovel protocol meta-data for the class.
6091 /* struct _objc_protocol_list {
6092 struct _objc_protocol_list *next;
6093 int protocol_count;
6094 struct _objc_protocol *class_protocols[];
6095 }
6096 */
6097 Result += "\nstatic struct {\n";
6098 Result += "\tstruct _objc_protocol_list *next;\n";
6099 Result += "\tint protocol_count;\n";
6100 Result += "\tstruct _objc_protocol *class_protocols[";
6101 Result += utostr(Protocols.size());
6102 Result += "];\n} _OBJC_";
6103 Result += prefix;
6104 Result += "_PROTOCOLS_";
6105 Result += ClassName;
6106 Result += " __attribute__ ((used, section (\"__OBJC, __cat_cls_meth\")))= "
6107 "{\n\t0, ";
6108 Result += utostr(Protocols.size());
6109 Result += "\n";
6110
6111 Result += "\t,{&_OBJC_PROTOCOL_";
6112 Result += Protocols[0]->getNameAsString();
6113 Result += " \n";
6114
6115 for (unsigned i = 1; i != Protocols.size(); i++) {
6116 Result += "\t ,&_OBJC_PROTOCOL_";
6117 Result += Protocols[i]->getNameAsString();
6118 Result += "\n";
6119 }
6120 Result += "\t }\n};\n";
6121}
6122
Fariborz Jahanian6ade3432012-02-16 18:54:09 +00006123/// hasObjCExceptionAttribute - Return true if this class or any super
6124/// class has the __objc_exception__ attribute.
6125/// FIXME. Move this to ASTContext.cpp as it is also used for IRGen.
6126static bool hasObjCExceptionAttribute(ASTContext &Context,
6127 const ObjCInterfaceDecl *OID) {
6128 if (OID->hasAttr<ObjCExceptionAttr>())
6129 return true;
6130 if (const ObjCInterfaceDecl *Super = OID->getSuperClass())
6131 return hasObjCExceptionAttribute(Context, Super);
6132 return false;
6133}
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00006134
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006135void RewriteModernObjC::RewriteObjCClassMetaData(ObjCImplementationDecl *IDecl,
6136 std::string &Result) {
6137 ObjCInterfaceDecl *CDecl = IDecl->getClassInterface();
6138
6139 // Explicitly declared @interface's are already synthesized.
Fariborz Jahanianae932952012-02-10 20:47:10 +00006140 if (CDecl->isImplicitInterfaceDecl())
6141 assert(false &&
6142 "Legacy implicit interface rewriting not supported in moder abi");
Fariborz Jahanian8f1fed02012-02-11 20:10:52 +00006143
Fariborz Jahanianae932952012-02-10 20:47:10 +00006144 WriteModernMetadataDeclarations(Result);
6145 SmallVector<ObjCIvarDecl *, 8> IVars;
6146
6147 for (ObjCIvarDecl *IVD = CDecl->all_declared_ivar_begin();
6148 IVD; IVD = IVD->getNextIvar()) {
6149 // Ignore unnamed bit-fields.
6150 if (!IVD->getDeclName())
6151 continue;
6152 IVars.push_back(IVD);
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006153 }
6154
Fariborz Jahanianae932952012-02-10 20:47:10 +00006155 Write__ivar_list_t_initializer(*this, Context, Result, IVars,
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00006156 "_OBJC_$_INSTANCE_VARIABLES_",
Fariborz Jahanianae932952012-02-10 20:47:10 +00006157 CDecl->getNameAsString());
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00006158
6159 // Build _objc_method_list for class's instance methods if needed
6160 SmallVector<ObjCMethodDecl *, 32>
6161 InstanceMethods(IDecl->instmeth_begin(), IDecl->instmeth_end());
6162
6163 // If any of our property implementations have associated getters or
6164 // setters, produce metadata for them as well.
6165 for (ObjCImplDecl::propimpl_iterator Prop = IDecl->propimpl_begin(),
6166 PropEnd = IDecl->propimpl_end();
6167 Prop != PropEnd; ++Prop) {
6168 if ((*Prop)->getPropertyImplementation() == ObjCPropertyImplDecl::Dynamic)
6169 continue;
6170 if (!(*Prop)->getPropertyIvarDecl())
6171 continue;
6172 ObjCPropertyDecl *PD = (*Prop)->getPropertyDecl();
6173 if (!PD)
6174 continue;
6175 if (ObjCMethodDecl *Getter = PD->getGetterMethodDecl())
6176 if (!Getter->isDefined())
6177 InstanceMethods.push_back(Getter);
6178 if (PD->isReadOnly())
6179 continue;
6180 if (ObjCMethodDecl *Setter = PD->getSetterMethodDecl())
6181 if (!Setter->isDefined())
6182 InstanceMethods.push_back(Setter);
6183 }
6184
6185 Write_method_list_t_initializer(*this, Context, Result, InstanceMethods,
6186 "_OBJC_$_INSTANCE_METHODS_",
6187 IDecl->getNameAsString(), true);
6188
6189 SmallVector<ObjCMethodDecl *, 32>
6190 ClassMethods(IDecl->classmeth_begin(), IDecl->classmeth_end());
6191
6192 Write_method_list_t_initializer(*this, Context, Result, ClassMethods,
6193 "_OBJC_$_CLASS_METHODS_",
6194 IDecl->getNameAsString(), true);
Fariborz Jahanian0a525342012-02-14 19:31:35 +00006195
6196 // Protocols referenced in class declaration?
6197 // Protocol's super protocol list
6198 std::vector<ObjCProtocolDecl *> RefedProtocols;
6199 const ObjCList<ObjCProtocolDecl> &Protocols = CDecl->getReferencedProtocols();
6200 for (ObjCList<ObjCProtocolDecl>::iterator I = Protocols.begin(),
6201 E = Protocols.end();
6202 I != E; ++I) {
6203 RefedProtocols.push_back(*I);
6204 // Must write out all protocol definitions in current qualifier list,
6205 // and in their nested qualifiers before writing out current definition.
6206 RewriteObjCProtocolMetaData(*I, Result);
6207 }
6208
6209 Write_protocol_list_initializer(Context, Result,
6210 RefedProtocols,
6211 "_OBJC_CLASS_PROTOCOLS_$_",
6212 IDecl->getNameAsString());
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00006213
6214 // Protocol's property metadata.
6215 std::vector<ObjCPropertyDecl *> ClassProperties;
6216 for (ObjCContainerDecl::prop_iterator I = CDecl->prop_begin(),
6217 E = CDecl->prop_end(); I != E; ++I)
6218 ClassProperties.push_back(*I);
6219
6220 Write_prop_list_t_initializer(*this, Context, Result, ClassProperties,
6221 /* Container */0,
Fariborz Jahanianeeabf382012-02-16 21:57:59 +00006222 "_OBJC_$_PROP_LIST_",
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00006223 CDecl->getNameAsString());
Fariborz Jahanian90af4e22012-02-14 17:19:02 +00006224
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00006225
Fariborz Jahanian6ade3432012-02-16 18:54:09 +00006226 // Data for initializing _class_ro_t metaclass meta-data
6227 uint32_t flags = CLS_META;
6228 std::string InstanceSize;
6229 std::string InstanceStart;
6230
6231
6232 bool classIsHidden = CDecl->getVisibility() == HiddenVisibility;
6233 if (classIsHidden)
6234 flags |= OBJC2_CLS_HIDDEN;
6235
6236 if (!CDecl->getSuperClass())
6237 // class is root
6238 flags |= CLS_ROOT;
6239 InstanceSize = "sizeof(struct _class_t)";
6240 InstanceStart = InstanceSize;
6241 Write__class_ro_t_initializer(Context, Result, flags,
6242 InstanceStart, InstanceSize,
6243 ClassMethods,
6244 0,
6245 0,
6246 0,
6247 "_OBJC_METACLASS_RO_$_",
6248 CDecl->getNameAsString());
6249
6250
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00006251 // Data for initializing _class_ro_t meta-data
Fariborz Jahanian6ade3432012-02-16 18:54:09 +00006252 flags = CLS;
6253 if (classIsHidden)
6254 flags |= OBJC2_CLS_HIDDEN;
6255
6256 if (hasObjCExceptionAttribute(*Context, CDecl))
6257 flags |= CLS_EXCEPTION;
6258
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00006259 if (!CDecl->getSuperClass())
6260 // class is root
6261 flags |= CLS_ROOT;
6262
Fariborz Jahanian6ade3432012-02-16 18:54:09 +00006263 InstanceSize.clear();
6264 InstanceStart.clear();
Fariborz Jahanianf1c1d9a2012-02-15 00:50:11 +00006265 if (!ObjCSynthesizedStructs.count(CDecl)) {
6266 InstanceSize = "0";
6267 InstanceStart = "0";
6268 }
6269 else {
6270 InstanceSize = "sizeof(struct ";
6271 InstanceSize += CDecl->getNameAsString();
6272 InstanceSize += "_IMPL)";
6273
6274 ObjCIvarDecl *IVD = CDecl->all_declared_ivar_begin();
6275 if (IVD) {
6276 InstanceStart += "__OFFSETOFIVAR__(struct ";
6277 InstanceStart += CDecl->getNameAsString();
6278 InstanceStart += "_IMPL, ";
6279 InstanceStart += IVD->getNameAsString();
6280 InstanceStart += ")";
6281 }
6282 else
6283 InstanceStart = InstanceSize;
6284 }
6285 Write__class_ro_t_initializer(Context, Result, flags,
6286 InstanceStart, InstanceSize,
6287 InstanceMethods,
6288 RefedProtocols,
6289 IVars,
6290 ClassProperties,
6291 "_OBJC_CLASS_RO_$_",
6292 CDecl->getNameAsString());
Fariborz Jahanian3f77c7b2012-02-16 21:37:05 +00006293
6294 Write_class_t(Context, Result,
6295 "OBJC_METACLASS_$_",
6296 CDecl, /*metaclass*/true);
6297
6298 Write_class_t(Context, Result,
6299 "OBJC_CLASS_$_",
6300 CDecl, /*metaclass*/false);
6301
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006302}
6303
6304void RewriteModernObjC::RewriteMetaDataIntoBuffer(std::string &Result) {
6305 int ClsDefCount = ClassImplementation.size();
6306 int CatDefCount = CategoryImplementation.size();
6307
6308 // For each implemented class, write out all its meta data.
6309 for (int i = 0; i < ClsDefCount; i++)
6310 RewriteObjCClassMetaData(ClassImplementation[i], Result);
6311
6312 // For each implemented category, write out all its meta data.
6313 for (int i = 0; i < CatDefCount; i++)
6314 RewriteObjCCategoryImplDecl(CategoryImplementation[i], Result);
6315
Fariborz Jahaniandf795672012-02-17 00:06:14 +00006316 if (ClsDefCount > 0) {
6317 Result += "static struct _class_t *L_OBJC_LABEL_CLASS_$ [";
6318 Result += llvm::utostr(ClsDefCount); Result += "]";
6319 Result +=
6320 " __attribute__((used, section (\"__DATA, __objc_classlist,"
6321 "regular,no_dead_strip\")))= {\n";
6322 for (int i = 0; i < ClsDefCount; i++) {
6323 Result += "\t&OBJC_CLASS_$_";
6324 Result += ClassImplementation[i]->getNameAsString();
6325 Result += ",\n";
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006326 }
Fariborz Jahaniandf795672012-02-17 00:06:14 +00006327 Result += "};\n";
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006328 }
Fariborz Jahanian61186122012-02-17 18:40:41 +00006329
6330 if (CatDefCount > 0) {
6331 Result += "static struct _category_t *L_OBJC_LABEL_CATEGORY_$ [";
6332 Result += llvm::utostr(CatDefCount); Result += "]";
6333 Result +=
6334 " __attribute__((used, section (\"__DATA, __objc_catlist,"
6335 "regular,no_dead_strip\")))= {\n";
6336 for (int i = 0; i < CatDefCount; i++) {
6337 Result += "\t&_OBJC_$_CATEGORY_";
6338 Result +=
6339 CategoryImplementation[i]->getClassInterface()->getNameAsString();
6340 Result += "_$_";
6341 Result += CategoryImplementation[i]->getNameAsString();
6342 Result += ",\n";
6343 }
6344 Result += "};\n";
6345 }
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006346}
6347
6348/// RewriteObjCCategoryImplDecl - Rewrite metadata for each category
6349/// implementation.
6350void RewriteModernObjC::RewriteObjCCategoryImplDecl(ObjCCategoryImplDecl *IDecl,
6351 std::string &Result) {
Fariborz Jahanian8c00a1b2012-02-17 20:33:00 +00006352 WriteModernMetadataDeclarations(Result);
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006353 ObjCInterfaceDecl *ClassDecl = IDecl->getClassInterface();
6354 // Find category declaration for this implementation.
Fariborz Jahanian61186122012-02-17 18:40:41 +00006355 ObjCCategoryDecl *CDecl=0;
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006356 for (CDecl = ClassDecl->getCategoryList(); CDecl;
6357 CDecl = CDecl->getNextClassCategory())
6358 if (CDecl->getIdentifier() == IDecl->getIdentifier())
6359 break;
6360
6361 std::string FullCategoryName = ClassDecl->getNameAsString();
Fariborz Jahanian61186122012-02-17 18:40:41 +00006362 FullCategoryName += "_$_";
6363 FullCategoryName += CDecl->getNameAsString();
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006364
6365 // Build _objc_method_list for class's instance methods if needed
6366 SmallVector<ObjCMethodDecl *, 32>
6367 InstanceMethods(IDecl->instmeth_begin(), IDecl->instmeth_end());
6368
6369 // If any of our property implementations have associated getters or
6370 // setters, produce metadata for them as well.
6371 for (ObjCImplDecl::propimpl_iterator Prop = IDecl->propimpl_begin(),
6372 PropEnd = IDecl->propimpl_end();
6373 Prop != PropEnd; ++Prop) {
6374 if ((*Prop)->getPropertyImplementation() == ObjCPropertyImplDecl::Dynamic)
6375 continue;
6376 if (!(*Prop)->getPropertyIvarDecl())
6377 continue;
6378 ObjCPropertyDecl *PD = (*Prop)->getPropertyDecl();
6379 if (!PD)
6380 continue;
6381 if (ObjCMethodDecl *Getter = PD->getGetterMethodDecl())
6382 InstanceMethods.push_back(Getter);
6383 if (PD->isReadOnly())
6384 continue;
6385 if (ObjCMethodDecl *Setter = PD->getSetterMethodDecl())
6386 InstanceMethods.push_back(Setter);
6387 }
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006388
Fariborz Jahanian61186122012-02-17 18:40:41 +00006389 Write_method_list_t_initializer(*this, Context, Result, InstanceMethods,
6390 "_OBJC_$_CATEGORY_INSTANCE_METHODS_",
6391 FullCategoryName, true);
6392
6393 SmallVector<ObjCMethodDecl *, 32>
6394 ClassMethods(IDecl->classmeth_begin(), IDecl->classmeth_end());
6395
6396 Write_method_list_t_initializer(*this, Context, Result, ClassMethods,
6397 "_OBJC_$_CATEGORY_CLASS_METHODS_",
6398 FullCategoryName, true);
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006399
6400 // Protocols referenced in class declaration?
Fariborz Jahanian61186122012-02-17 18:40:41 +00006401 // Protocol's super protocol list
6402 std::vector<ObjCProtocolDecl *> RefedProtocols;
6403 const ObjCList<ObjCProtocolDecl> &Protocols = CDecl->getReferencedProtocols();
6404 for (ObjCList<ObjCProtocolDecl>::iterator I = Protocols.begin(),
6405 E = Protocols.end();
6406 I != E; ++I) {
6407 RefedProtocols.push_back(*I);
6408 // Must write out all protocol definitions in current qualifier list,
6409 // and in their nested qualifiers before writing out current definition.
6410 RewriteObjCProtocolMetaData(*I, Result);
6411 }
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006412
Fariborz Jahanian61186122012-02-17 18:40:41 +00006413 Write_protocol_list_initializer(Context, Result,
6414 RefedProtocols,
6415 "_OBJC_CATEGORY_PROTOCOLS_$_",
6416 FullCategoryName);
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006417
Fariborz Jahanian61186122012-02-17 18:40:41 +00006418 // Protocol's property metadata.
6419 std::vector<ObjCPropertyDecl *> ClassProperties;
6420 for (ObjCContainerDecl::prop_iterator I = CDecl->prop_begin(),
6421 E = CDecl->prop_end(); I != E; ++I)
6422 ClassProperties.push_back(*I);
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006423
Fariborz Jahanian61186122012-02-17 18:40:41 +00006424 Write_prop_list_t_initializer(*this, Context, Result, ClassProperties,
6425 /* Container */0,
6426 "_OBJC_$_PROP_LIST_",
6427 FullCategoryName);
6428
6429 Write_category_t(*this, Context, Result,
6430 CDecl->getNameAsString(),
6431 ClassDecl->getNameAsString(),
6432 InstanceMethods,
6433 ClassMethods,
6434 RefedProtocols,
6435 ClassProperties);
6436
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006437}
6438
6439// RewriteObjCMethodsMetaData - Rewrite methods metadata for instance or
6440/// class methods.
6441template<typename MethodIterator>
6442void RewriteModernObjC::RewriteObjCMethodsMetaData(MethodIterator MethodBegin,
6443 MethodIterator MethodEnd,
6444 bool IsInstanceMethod,
6445 StringRef prefix,
6446 StringRef ClassName,
6447 std::string &Result) {
6448 if (MethodBegin == MethodEnd) return;
6449
6450 if (!objc_impl_method) {
6451 /* struct _objc_method {
6452 SEL _cmd;
6453 char *method_types;
6454 void *_imp;
6455 }
6456 */
6457 Result += "\nstruct _objc_method {\n";
6458 Result += "\tSEL _cmd;\n";
6459 Result += "\tchar *method_types;\n";
6460 Result += "\tvoid *_imp;\n";
6461 Result += "};\n";
6462
6463 objc_impl_method = true;
6464 }
6465
6466 // Build _objc_method_list for class's methods if needed
6467
6468 /* struct {
6469 struct _objc_method_list *next_method;
6470 int method_count;
6471 struct _objc_method method_list[];
6472 }
6473 */
6474 unsigned NumMethods = std::distance(MethodBegin, MethodEnd);
6475 Result += "\nstatic struct {\n";
6476 Result += "\tstruct _objc_method_list *next_method;\n";
6477 Result += "\tint method_count;\n";
6478 Result += "\tstruct _objc_method method_list[";
6479 Result += utostr(NumMethods);
6480 Result += "];\n} _OBJC_";
6481 Result += prefix;
6482 Result += IsInstanceMethod ? "INSTANCE" : "CLASS";
6483 Result += "_METHODS_";
6484 Result += ClassName;
6485 Result += " __attribute__ ((used, section (\"__OBJC, __";
6486 Result += IsInstanceMethod ? "inst" : "cls";
6487 Result += "_meth\")))= ";
6488 Result += "{\n\t0, " + utostr(NumMethods) + "\n";
6489
6490 Result += "\t,{{(SEL)\"";
6491 Result += (*MethodBegin)->getSelector().getAsString().c_str();
6492 std::string MethodTypeString;
6493 Context->getObjCEncodingForMethodDecl(*MethodBegin, MethodTypeString);
6494 Result += "\", \"";
6495 Result += MethodTypeString;
6496 Result += "\", (void *)";
6497 Result += MethodInternalNames[*MethodBegin];
6498 Result += "}\n";
6499 for (++MethodBegin; MethodBegin != MethodEnd; ++MethodBegin) {
6500 Result += "\t ,{(SEL)\"";
6501 Result += (*MethodBegin)->getSelector().getAsString().c_str();
6502 std::string MethodTypeString;
6503 Context->getObjCEncodingForMethodDecl(*MethodBegin, MethodTypeString);
6504 Result += "\", \"";
6505 Result += MethodTypeString;
6506 Result += "\", (void *)";
6507 Result += MethodInternalNames[*MethodBegin];
6508 Result += "}\n";
6509 }
6510 Result += "\t }\n};\n";
6511}
6512
6513Stmt *RewriteModernObjC::RewriteObjCIvarRefExpr(ObjCIvarRefExpr *IV) {
6514 SourceRange OldRange = IV->getSourceRange();
6515 Expr *BaseExpr = IV->getBase();
6516
6517 // Rewrite the base, but without actually doing replaces.
6518 {
6519 DisableReplaceStmtScope S(*this);
6520 BaseExpr = cast<Expr>(RewriteFunctionBodyOrGlobalInitializer(BaseExpr));
6521 IV->setBase(BaseExpr);
6522 }
6523
6524 ObjCIvarDecl *D = IV->getDecl();
6525
6526 Expr *Replacement = IV;
Fariborz Jahaniane7b3fa72012-02-21 23:46:48 +00006527
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006528 if (BaseExpr->getType()->isObjCObjectPointerType()) {
6529 const ObjCInterfaceType *iFaceDecl =
6530 dyn_cast<ObjCInterfaceType>(BaseExpr->getType()->getPointeeType());
6531 assert(iFaceDecl && "RewriteObjCIvarRefExpr - iFaceDecl is null");
6532 // lookup which class implements the instance variable.
6533 ObjCInterfaceDecl *clsDeclared = 0;
6534 iFaceDecl->getDecl()->lookupInstanceVariable(D->getIdentifier(),
6535 clsDeclared);
6536 assert(clsDeclared && "RewriteObjCIvarRefExpr(): Can't find class");
6537
Fariborz Jahaniane7b3fa72012-02-21 23:46:48 +00006538 // Build name of symbol holding ivar offset.
6539 std::string IvarOffsetName = "OBJC_IVAR_$_";
6540 IvarOffsetName += clsDeclared->getIdentifier()->getName();
6541 IvarOffsetName += "_";
6542 IvarOffsetName += D->getName();
Fariborz Jahanian72c88f12012-02-22 18:13:25 +00006543 ReferencedIvars[clsDeclared].insert(D);
6544
Fariborz Jahaniane7b3fa72012-02-21 23:46:48 +00006545 // cast offset to "char *".
6546 CastExpr *castExpr = NoTypeInfoCStyleCastExpr(Context,
6547 Context->getPointerType(Context->CharTy),
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006548 CK_BitCast,
Fariborz Jahaniane7b3fa72012-02-21 23:46:48 +00006549 BaseExpr);
6550 VarDecl *NewVD = VarDecl::Create(*Context, TUDecl, SourceLocation(),
6551 SourceLocation(), &Context->Idents.get(IvarOffsetName),
6552 Context->UnsignedLongTy, 0, SC_Extern, SC_None);
6553 DeclRefExpr *DRE = new (Context) DeclRefExpr(NewVD, Context->UnsignedLongTy, VK_LValue,
6554 SourceLocation());
6555 BinaryOperator *addExpr =
6556 new (Context) BinaryOperator(castExpr, DRE, BO_Add,
6557 Context->getPointerType(Context->CharTy),
6558 VK_RValue, OK_Ordinary, SourceLocation());
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006559 // Don't forget the parens to enforce the proper binding.
Fariborz Jahaniane7b3fa72012-02-21 23:46:48 +00006560 ParenExpr *PE = new (Context) ParenExpr(SourceLocation(),
6561 SourceLocation(),
6562 addExpr);
Fariborz Jahanian0d6e22a2012-02-24 17:35:35 +00006563 QualType IvarT = D->getType();
Fariborz Jahanian8e0913d2012-02-29 00:26:20 +00006564 convertObjCTypeToCStyleType(IvarT);
Fariborz Jahanian0d6e22a2012-02-24 17:35:35 +00006565 QualType castT = Context->getPointerType(IvarT);
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006566
Fariborz Jahaniane7b3fa72012-02-21 23:46:48 +00006567 castExpr = NoTypeInfoCStyleCastExpr(Context,
6568 castT,
6569 CK_BitCast,
6570 PE);
Fariborz Jahanian8e0913d2012-02-29 00:26:20 +00006571 Expr *Exp = new (Context) UnaryOperator(castExpr, UO_Deref, IvarT,
Fariborz Jahaniane7b3fa72012-02-21 23:46:48 +00006572 VK_LValue, OK_Ordinary,
6573 SourceLocation());
6574 PE = new (Context) ParenExpr(OldRange.getBegin(),
6575 OldRange.getEnd(),
6576 Exp);
6577
6578 Replacement = PE;
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006579 }
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006580
Fariborz Jahaniane7b3fa72012-02-21 23:46:48 +00006581 ReplaceStmtWithRange(IV, Replacement, OldRange);
6582 return Replacement;
Fariborz Jahanian64cb63a2012-02-07 17:11:38 +00006583}
6584