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Reid Spencer5f016e22007-07-11 17:01:13 +00001//===--- ASTContext.cpp - Context to hold long-lived AST nodes ------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner0bc735f2007-12-29 19:59:25 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Reid Spencer5f016e22007-07-11 17:01:13 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file implements the ASTContext interface.
11//
12//===----------------------------------------------------------------------===//
13
14#include "clang/AST/ASTContext.h"
Argyrios Kyrtzidis49aa7ff2008-08-07 20:55:28 +000015#include "clang/AST/DeclCXX.h"
Steve Naroff980e5082007-10-01 19:00:59 +000016#include "clang/AST/DeclObjC.h"
Douglas Gregoraaba5e32009-02-04 19:02:06 +000017#include "clang/AST/DeclTemplate.h"
Daniel Dunbare91593e2008-08-11 04:54:23 +000018#include "clang/AST/Expr.h"
Douglas Gregor2cf26342009-04-09 22:27:44 +000019#include "clang/AST/ExternalASTSource.h"
Anders Carlsson19cc4ab2009-07-18 19:43:29 +000020#include "clang/AST/RecordLayout.h"
Chris Lattner1b63e4f2009-06-14 01:54:56 +000021#include "clang/Basic/Builtins.h"
Chris Lattnera9376d42009-03-28 03:45:20 +000022#include "clang/Basic/SourceManager.h"
Reid Spencer5f016e22007-07-11 17:01:13 +000023#include "clang/Basic/TargetInfo.h"
Anders Carlsson85f9bce2007-10-29 05:01:08 +000024#include "llvm/ADT/StringExtras.h"
Nate Begeman6fe7c8a2009-01-18 06:42:49 +000025#include "llvm/Support/MathExtras.h"
Chris Lattner557c5b12009-03-28 04:27:18 +000026#include "llvm/Support/MemoryBuffer.h"
Anders Carlsson29445a02009-07-18 21:19:52 +000027#include "RecordLayoutBuilder.h"
28
Reid Spencer5f016e22007-07-11 17:01:13 +000029using namespace clang;
30
31enum FloatingRank {
32 FloatRank, DoubleRank, LongDoubleRank
33};
34
Chris Lattner61710852008-10-05 17:34:18 +000035ASTContext::ASTContext(const LangOptions& LOpts, SourceManager &SM,
36 TargetInfo &t,
Daniel Dunbare91593e2008-08-11 04:54:23 +000037 IdentifierTable &idents, SelectorTable &sels,
Chris Lattner1b63e4f2009-06-14 01:54:56 +000038 Builtin::Context &builtins,
39 bool FreeMem, unsigned size_reserve) :
Douglas Gregorab452ba2009-03-26 23:50:42 +000040 GlobalNestedNameSpecifier(0), CFConstantStringTypeDecl(0),
Mike Stump782fa302009-07-28 02:25:19 +000041 ObjCFastEnumerationStateTypeDecl(0), FILEDecl(0), jmp_bufDecl(0),
42 sigjmp_bufDecl(0), SourceMgr(SM), LangOpts(LOpts),
Douglas Gregor2e222532009-07-02 17:08:52 +000043 LoadedExternalComments(false), FreeMemory(FreeMem), Target(t),
44 Idents(idents), Selectors(sels),
Chris Lattnere4f21422009-06-30 01:26:17 +000045 BuiltinInfo(builtins), ExternalSource(0), PrintingPolicy(LOpts) {
Daniel Dunbare91593e2008-08-11 04:54:23 +000046 if (size_reserve > 0) Types.reserve(size_reserve);
Daniel Dunbare91593e2008-08-11 04:54:23 +000047 TUDecl = TranslationUnitDecl::Create(*this);
Steve Naroff14108da2009-07-10 23:34:53 +000048 InitBuiltinTypes();
Daniel Dunbare91593e2008-08-11 04:54:23 +000049}
50
Reid Spencer5f016e22007-07-11 17:01:13 +000051ASTContext::~ASTContext() {
52 // Deallocate all the types.
53 while (!Types.empty()) {
Ted Kremenek4b05b1d2008-05-21 16:38:54 +000054 Types.back()->Destroy(*this);
Reid Spencer5f016e22007-07-11 17:01:13 +000055 Types.pop_back();
56 }
Eli Friedmanb26153c2008-05-27 03:08:09 +000057
Nuno Lopesb74668e2008-12-17 22:30:25 +000058 {
59 llvm::DenseMap<const RecordDecl*, const ASTRecordLayout*>::iterator
60 I = ASTRecordLayouts.begin(), E = ASTRecordLayouts.end();
61 while (I != E) {
62 ASTRecordLayout *R = const_cast<ASTRecordLayout*>((I++)->second);
63 delete R;
64 }
65 }
66
67 {
Daniel Dunbarb2dbbb92009-05-03 10:38:35 +000068 llvm::DenseMap<const ObjCContainerDecl*, const ASTRecordLayout*>::iterator
69 I = ObjCLayouts.begin(), E = ObjCLayouts.end();
Nuno Lopesb74668e2008-12-17 22:30:25 +000070 while (I != E) {
71 ASTRecordLayout *R = const_cast<ASTRecordLayout*>((I++)->second);
72 delete R;
73 }
74 }
75
Douglas Gregorab452ba2009-03-26 23:50:42 +000076 // Destroy nested-name-specifiers.
Douglas Gregor1ae0afa2009-03-27 23:54:10 +000077 for (llvm::FoldingSet<NestedNameSpecifier>::iterator
78 NNS = NestedNameSpecifiers.begin(),
79 NNSEnd = NestedNameSpecifiers.end();
Douglas Gregore7dcd782009-03-27 23:25:45 +000080 NNS != NNSEnd;
Douglas Gregor1ae0afa2009-03-27 23:54:10 +000081 /* Increment in loop */)
82 (*NNS++).Destroy(*this);
Douglas Gregorab452ba2009-03-26 23:50:42 +000083
84 if (GlobalNestedNameSpecifier)
85 GlobalNestedNameSpecifier->Destroy(*this);
86
Eli Friedmanb26153c2008-05-27 03:08:09 +000087 TUDecl->Destroy(*this);
Reid Spencer5f016e22007-07-11 17:01:13 +000088}
89
Douglas Gregor2cf26342009-04-09 22:27:44 +000090void
91ASTContext::setExternalSource(llvm::OwningPtr<ExternalASTSource> &Source) {
92 ExternalSource.reset(Source.take());
93}
94
Reid Spencer5f016e22007-07-11 17:01:13 +000095void ASTContext::PrintStats() const {
96 fprintf(stderr, "*** AST Context Stats:\n");
97 fprintf(stderr, " %d types total.\n", (int)Types.size());
Sebastian Redl7c80bd62009-03-16 23:22:08 +000098
Douglas Gregordbe833d2009-05-26 14:40:08 +000099 unsigned counts[] = {
100#define TYPE(Name, Parent) 0,
101#define ABSTRACT_TYPE(Name, Parent)
102#include "clang/AST/TypeNodes.def"
103 0 // Extra
104 };
Douglas Gregorc2ee10d2009-04-07 17:20:56 +0000105
Reid Spencer5f016e22007-07-11 17:01:13 +0000106 for (unsigned i = 0, e = Types.size(); i != e; ++i) {
107 Type *T = Types[i];
Douglas Gregordbe833d2009-05-26 14:40:08 +0000108 counts[(unsigned)T->getTypeClass()]++;
Reid Spencer5f016e22007-07-11 17:01:13 +0000109 }
110
Douglas Gregordbe833d2009-05-26 14:40:08 +0000111 unsigned Idx = 0;
112 unsigned TotalBytes = 0;
113#define TYPE(Name, Parent) \
114 if (counts[Idx]) \
115 fprintf(stderr, " %d %s types\n", (int)counts[Idx], #Name); \
116 TotalBytes += counts[Idx] * sizeof(Name##Type); \
117 ++Idx;
118#define ABSTRACT_TYPE(Name, Parent)
119#include "clang/AST/TypeNodes.def"
120
121 fprintf(stderr, "Total bytes = %d\n", int(TotalBytes));
Douglas Gregor2cf26342009-04-09 22:27:44 +0000122
123 if (ExternalSource.get()) {
124 fprintf(stderr, "\n");
125 ExternalSource->PrintStats();
126 }
Reid Spencer5f016e22007-07-11 17:01:13 +0000127}
128
129
130void ASTContext::InitBuiltinType(QualType &R, BuiltinType::Kind K) {
Steve Narofff83820b2009-01-27 22:08:43 +0000131 Types.push_back((R = QualType(new (*this,8) BuiltinType(K),0)).getTypePtr());
Reid Spencer5f016e22007-07-11 17:01:13 +0000132}
133
Reid Spencer5f016e22007-07-11 17:01:13 +0000134void ASTContext::InitBuiltinTypes() {
135 assert(VoidTy.isNull() && "Context reinitialized?");
136
137 // C99 6.2.5p19.
138 InitBuiltinType(VoidTy, BuiltinType::Void);
139
140 // C99 6.2.5p2.
141 InitBuiltinType(BoolTy, BuiltinType::Bool);
142 // C99 6.2.5p3.
Eli Friedman15b91762009-06-05 07:05:05 +0000143 if (LangOpts.CharIsSigned)
Reid Spencer5f016e22007-07-11 17:01:13 +0000144 InitBuiltinType(CharTy, BuiltinType::Char_S);
145 else
146 InitBuiltinType(CharTy, BuiltinType::Char_U);
147 // C99 6.2.5p4.
148 InitBuiltinType(SignedCharTy, BuiltinType::SChar);
149 InitBuiltinType(ShortTy, BuiltinType::Short);
150 InitBuiltinType(IntTy, BuiltinType::Int);
151 InitBuiltinType(LongTy, BuiltinType::Long);
152 InitBuiltinType(LongLongTy, BuiltinType::LongLong);
153
154 // C99 6.2.5p6.
155 InitBuiltinType(UnsignedCharTy, BuiltinType::UChar);
156 InitBuiltinType(UnsignedShortTy, BuiltinType::UShort);
157 InitBuiltinType(UnsignedIntTy, BuiltinType::UInt);
158 InitBuiltinType(UnsignedLongTy, BuiltinType::ULong);
159 InitBuiltinType(UnsignedLongLongTy, BuiltinType::ULongLong);
160
161 // C99 6.2.5p10.
162 InitBuiltinType(FloatTy, BuiltinType::Float);
163 InitBuiltinType(DoubleTy, BuiltinType::Double);
164 InitBuiltinType(LongDoubleTy, BuiltinType::LongDouble);
Argyrios Kyrtzidis64c438a2008-08-09 16:51:54 +0000165
Chris Lattner2df9ced2009-04-30 02:43:43 +0000166 // GNU extension, 128-bit integers.
167 InitBuiltinType(Int128Ty, BuiltinType::Int128);
168 InitBuiltinType(UnsignedInt128Ty, BuiltinType::UInt128);
169
Chris Lattner3a250322009-02-26 23:43:47 +0000170 if (LangOpts.CPlusPlus) // C++ 3.9.1p5
171 InitBuiltinType(WCharTy, BuiltinType::WChar);
172 else // C99
173 WCharTy = getFromTargetType(Target.getWCharType());
Argyrios Kyrtzidis64c438a2008-08-09 16:51:54 +0000174
Alisdair Meredithf5c209d2009-07-14 06:30:34 +0000175 if (LangOpts.CPlusPlus) // C++0x 3.9.1p5, extension for C++
176 InitBuiltinType(Char16Ty, BuiltinType::Char16);
177 else // C99
178 Char16Ty = getFromTargetType(Target.getChar16Type());
179
180 if (LangOpts.CPlusPlus) // C++0x 3.9.1p5, extension for C++
181 InitBuiltinType(Char32Ty, BuiltinType::Char32);
182 else // C99
183 Char32Ty = getFromTargetType(Target.getChar32Type());
184
Douglas Gregor8e9bebd2008-10-21 16:13:35 +0000185 // Placeholder type for functions.
Douglas Gregor898574e2008-12-05 23:32:09 +0000186 InitBuiltinType(OverloadTy, BuiltinType::Overload);
187
188 // Placeholder type for type-dependent expressions whose type is
189 // completely unknown. No code should ever check a type against
190 // DependentTy and users should never see it; however, it is here to
191 // help diagnose failures to properly check for type-dependent
192 // expressions.
193 InitBuiltinType(DependentTy, BuiltinType::Dependent);
Douglas Gregor8e9bebd2008-10-21 16:13:35 +0000194
Anders Carlssone89d1592009-06-26 18:41:36 +0000195 // Placeholder type for C++0x auto declarations whose real type has
196 // not yet been deduced.
197 InitBuiltinType(UndeducedAutoTy, BuiltinType::UndeducedAuto);
198
Reid Spencer5f016e22007-07-11 17:01:13 +0000199 // C99 6.2.5p11.
200 FloatComplexTy = getComplexType(FloatTy);
201 DoubleComplexTy = getComplexType(DoubleTy);
202 LongDoubleComplexTy = getComplexType(LongDoubleTy);
Douglas Gregor8e9bebd2008-10-21 16:13:35 +0000203
Steve Naroff7e219e42007-10-15 14:41:52 +0000204 BuiltinVaListType = QualType();
Anders Carlsson8baaca52007-10-31 02:53:19 +0000205
Steve Naroffde2e22d2009-07-15 18:40:39 +0000206 // "Builtin" typedefs set by Sema::ActOnTranslationUnitScope().
207 ObjCIdTypedefType = QualType();
208 ObjCClassTypedefType = QualType();
209
210 // Builtin types for 'id' and 'Class'.
211 InitBuiltinType(ObjCBuiltinIdTy, BuiltinType::ObjCId);
212 InitBuiltinType(ObjCBuiltinClassTy, BuiltinType::ObjCClass);
Steve Naroff14108da2009-07-10 23:34:53 +0000213
Ted Kremeneka526c5c2008-01-07 19:49:32 +0000214 ObjCConstantStringType = QualType();
Fariborz Jahanian33e1d642007-10-29 22:57:28 +0000215
216 // void * type
217 VoidPtrTy = getPointerType(VoidTy);
Sebastian Redl6e8ed162009-05-10 18:38:11 +0000218
219 // nullptr type (C++0x 2.14.7)
220 InitBuiltinType(NullPtrTy, BuiltinType::NullPtr);
Reid Spencer5f016e22007-07-11 17:01:13 +0000221}
222
Douglas Gregor7caa6822009-07-24 20:34:43 +0000223VarDecl *ASTContext::getInstantiatedFromStaticDataMember(VarDecl *Var) {
224 assert(Var->isStaticDataMember() && "Not a static data member");
225 llvm::DenseMap<VarDecl *, VarDecl *>::iterator Pos
226 = InstantiatedFromStaticDataMember.find(Var);
227 if (Pos == InstantiatedFromStaticDataMember.end())
228 return 0;
229
230 return Pos->second;
231}
232
233void
234ASTContext::setInstantiatedFromStaticDataMember(VarDecl *Inst, VarDecl *Tmpl) {
235 assert(Inst->isStaticDataMember() && "Not a static data member");
236 assert(Tmpl->isStaticDataMember() && "Not a static data member");
237 assert(!InstantiatedFromStaticDataMember[Inst] &&
238 "Already noted what static data member was instantiated from");
239 InstantiatedFromStaticDataMember[Inst] = Tmpl;
240}
241
Douglas Gregor2e222532009-07-02 17:08:52 +0000242namespace {
243 class BeforeInTranslationUnit
244 : std::binary_function<SourceRange, SourceRange, bool> {
245 SourceManager *SourceMgr;
246
247 public:
248 explicit BeforeInTranslationUnit(SourceManager *SM) : SourceMgr(SM) { }
249
250 bool operator()(SourceRange X, SourceRange Y) {
251 return SourceMgr->isBeforeInTranslationUnit(X.getBegin(), Y.getBegin());
252 }
253 };
254}
255
256/// \brief Determine whether the given comment is a Doxygen-style comment.
257///
258/// \param Start the start of the comment text.
259///
260/// \param End the end of the comment text.
261///
262/// \param Member whether we want to check whether this is a member comment
263/// (which requires a < after the Doxygen-comment delimiter). Otherwise,
264/// we only return true when we find a non-member comment.
265static bool
266isDoxygenComment(SourceManager &SourceMgr, SourceRange Comment,
267 bool Member = false) {
268 const char *BufferStart
269 = SourceMgr.getBufferData(SourceMgr.getFileID(Comment.getBegin())).first;
270 const char *Start = BufferStart + SourceMgr.getFileOffset(Comment.getBegin());
271 const char* End = BufferStart + SourceMgr.getFileOffset(Comment.getEnd());
272
273 if (End - Start < 4)
274 return false;
275
276 assert(Start[0] == '/' && "Not a comment?");
277 if (Start[1] == '*' && !(Start[2] == '!' || Start[2] == '*'))
278 return false;
279 if (Start[1] == '/' && !(Start[2] == '!' || Start[2] == '/'))
280 return false;
281
282 return (Start[3] == '<') == Member;
283}
284
285/// \brief Retrieve the comment associated with the given declaration, if
286/// it has one.
287const char *ASTContext::getCommentForDecl(const Decl *D) {
288 if (!D)
289 return 0;
290
291 // Check whether we have cached a comment string for this declaration
292 // already.
293 llvm::DenseMap<const Decl *, std::string>::iterator Pos
294 = DeclComments.find(D);
295 if (Pos != DeclComments.end())
296 return Pos->second.c_str();
297
298 // If we have an external AST source and have not yet loaded comments from
299 // that source, do so now.
300 if (ExternalSource && !LoadedExternalComments) {
301 std::vector<SourceRange> LoadedComments;
302 ExternalSource->ReadComments(LoadedComments);
303
304 if (!LoadedComments.empty())
305 Comments.insert(Comments.begin(), LoadedComments.begin(),
306 LoadedComments.end());
307
308 LoadedExternalComments = true;
309 }
310
311 // If there are no comments anywhere, we won't find anything.
312 if (Comments.empty())
313 return 0;
314
315 // If the declaration doesn't map directly to a location in a file, we
316 // can't find the comment.
317 SourceLocation DeclStartLoc = D->getLocStart();
318 if (DeclStartLoc.isInvalid() || !DeclStartLoc.isFileID())
319 return 0;
320
321 // Find the comment that occurs just before this declaration.
322 std::vector<SourceRange>::iterator LastComment
323 = std::lower_bound(Comments.begin(), Comments.end(),
324 SourceRange(DeclStartLoc),
325 BeforeInTranslationUnit(&SourceMgr));
326
327 // Decompose the location for the start of the declaration and find the
328 // beginning of the file buffer.
329 std::pair<FileID, unsigned> DeclStartDecomp
330 = SourceMgr.getDecomposedLoc(DeclStartLoc);
331 const char *FileBufferStart
332 = SourceMgr.getBufferData(DeclStartDecomp.first).first;
333
334 // First check whether we have a comment for a member.
335 if (LastComment != Comments.end() &&
336 !isa<TagDecl>(D) && !isa<NamespaceDecl>(D) &&
337 isDoxygenComment(SourceMgr, *LastComment, true)) {
338 std::pair<FileID, unsigned> LastCommentEndDecomp
339 = SourceMgr.getDecomposedLoc(LastComment->getEnd());
340 if (DeclStartDecomp.first == LastCommentEndDecomp.first &&
341 SourceMgr.getLineNumber(DeclStartDecomp.first, DeclStartDecomp.second)
342 == SourceMgr.getLineNumber(LastCommentEndDecomp.first,
343 LastCommentEndDecomp.second)) {
344 // The Doxygen member comment comes after the declaration starts and
345 // is on the same line and in the same file as the declaration. This
346 // is the comment we want.
347 std::string &Result = DeclComments[D];
348 Result.append(FileBufferStart +
349 SourceMgr.getFileOffset(LastComment->getBegin()),
350 FileBufferStart + LastCommentEndDecomp.second + 1);
351 return Result.c_str();
352 }
353 }
354
355 if (LastComment == Comments.begin())
356 return 0;
357 --LastComment;
358
359 // Decompose the end of the comment.
360 std::pair<FileID, unsigned> LastCommentEndDecomp
361 = SourceMgr.getDecomposedLoc(LastComment->getEnd());
362
363 // If the comment and the declaration aren't in the same file, then they
364 // aren't related.
365 if (DeclStartDecomp.first != LastCommentEndDecomp.first)
366 return 0;
367
368 // Check that we actually have a Doxygen comment.
369 if (!isDoxygenComment(SourceMgr, *LastComment))
370 return 0;
371
372 // Compute the starting line for the declaration and for the end of the
373 // comment (this is expensive).
374 unsigned DeclStartLine
375 = SourceMgr.getLineNumber(DeclStartDecomp.first, DeclStartDecomp.second);
376 unsigned CommentEndLine
377 = SourceMgr.getLineNumber(LastCommentEndDecomp.first,
378 LastCommentEndDecomp.second);
379
380 // If the comment does not end on the line prior to the declaration, then
381 // the comment is not associated with the declaration at all.
382 if (CommentEndLine + 1 != DeclStartLine)
383 return 0;
384
385 // We have a comment, but there may be more comments on the previous lines.
386 // Keep looking so long as the comments are still Doxygen comments and are
387 // still adjacent.
388 unsigned ExpectedLine
389 = SourceMgr.getSpellingLineNumber(LastComment->getBegin()) - 1;
390 std::vector<SourceRange>::iterator FirstComment = LastComment;
391 while (FirstComment != Comments.begin()) {
392 // Look at the previous comment
393 --FirstComment;
394 std::pair<FileID, unsigned> Decomp
395 = SourceMgr.getDecomposedLoc(FirstComment->getEnd());
396
397 // If this previous comment is in a different file, we're done.
398 if (Decomp.first != DeclStartDecomp.first) {
399 ++FirstComment;
400 break;
401 }
402
403 // If this comment is not a Doxygen comment, we're done.
404 if (!isDoxygenComment(SourceMgr, *FirstComment)) {
405 ++FirstComment;
406 break;
407 }
408
409 // If the line number is not what we expected, we're done.
410 unsigned Line = SourceMgr.getLineNumber(Decomp.first, Decomp.second);
411 if (Line != ExpectedLine) {
412 ++FirstComment;
413 break;
414 }
415
416 // Set the next expected line number.
417 ExpectedLine
418 = SourceMgr.getSpellingLineNumber(FirstComment->getBegin()) - 1;
419 }
420
421 // The iterator range [FirstComment, LastComment] contains all of the
422 // BCPL comments that, together, are associated with this declaration.
423 // Form a single comment block string for this declaration that concatenates
424 // all of these comments.
425 std::string &Result = DeclComments[D];
426 while (FirstComment != LastComment) {
427 std::pair<FileID, unsigned> DecompStart
428 = SourceMgr.getDecomposedLoc(FirstComment->getBegin());
429 std::pair<FileID, unsigned> DecompEnd
430 = SourceMgr.getDecomposedLoc(FirstComment->getEnd());
431 Result.append(FileBufferStart + DecompStart.second,
432 FileBufferStart + DecompEnd.second + 1);
433 ++FirstComment;
434 }
435
436 // Append the last comment line.
437 Result.append(FileBufferStart +
438 SourceMgr.getFileOffset(LastComment->getBegin()),
439 FileBufferStart + LastCommentEndDecomp.second + 1);
440 return Result.c_str();
441}
442
Chris Lattner464175b2007-07-18 17:52:12 +0000443//===----------------------------------------------------------------------===//
444// Type Sizing and Analysis
445//===----------------------------------------------------------------------===//
Chris Lattnera7674d82007-07-13 22:13:22 +0000446
Chris Lattnerb7cfe882008-06-30 18:32:54 +0000447/// getFloatTypeSemantics - Return the APFloat 'semantics' for the specified
448/// scalar floating point type.
449const llvm::fltSemantics &ASTContext::getFloatTypeSemantics(QualType T) const {
450 const BuiltinType *BT = T->getAsBuiltinType();
451 assert(BT && "Not a floating point type!");
452 switch (BT->getKind()) {
453 default: assert(0 && "Not a floating point type!");
454 case BuiltinType::Float: return Target.getFloatFormat();
455 case BuiltinType::Double: return Target.getDoubleFormat();
456 case BuiltinType::LongDouble: return Target.getLongDoubleFormat();
457 }
458}
459
Chris Lattneraf707ab2009-01-24 21:53:27 +0000460/// getDeclAlign - Return a conservative estimate of the alignment of the
461/// specified decl. Note that bitfields do not have a valid alignment, so
462/// this method will assert on them.
Daniel Dunbarb7d08442009-02-17 22:16:19 +0000463unsigned ASTContext::getDeclAlignInBytes(const Decl *D) {
Eli Friedmandcdafb62009-02-22 02:56:25 +0000464 unsigned Align = Target.getCharWidth();
465
Argyrios Kyrtzidis40b598e2009-06-30 02:34:44 +0000466 if (const AlignedAttr* AA = D->getAttr<AlignedAttr>())
Eli Friedmandcdafb62009-02-22 02:56:25 +0000467 Align = std::max(Align, AA->getAlignment());
468
Chris Lattneraf707ab2009-01-24 21:53:27 +0000469 if (const ValueDecl *VD = dyn_cast<ValueDecl>(D)) {
470 QualType T = VD->getType();
Ted Kremenek6217b802009-07-29 21:53:49 +0000471 if (const ReferenceType* RT = T->getAs<ReferenceType>()) {
Anders Carlsson4cc2cfd2009-04-10 04:47:03 +0000472 unsigned AS = RT->getPointeeType().getAddressSpace();
Anders Carlssonf0930232009-04-10 04:52:36 +0000473 Align = Target.getPointerAlign(AS);
Anders Carlsson4cc2cfd2009-04-10 04:47:03 +0000474 } else if (!T->isIncompleteType() && !T->isFunctionType()) {
475 // Incomplete or function types default to 1.
Eli Friedmandcdafb62009-02-22 02:56:25 +0000476 while (isa<VariableArrayType>(T) || isa<IncompleteArrayType>(T))
477 T = cast<ArrayType>(T)->getElementType();
478
479 Align = std::max(Align, getPreferredTypeAlign(T.getTypePtr()));
480 }
Chris Lattneraf707ab2009-01-24 21:53:27 +0000481 }
Eli Friedmandcdafb62009-02-22 02:56:25 +0000482
483 return Align / Target.getCharWidth();
Chris Lattneraf707ab2009-01-24 21:53:27 +0000484}
Chris Lattnerb7cfe882008-06-30 18:32:54 +0000485
Chris Lattnera7674d82007-07-13 22:13:22 +0000486/// getTypeSize - Return the size of the specified type, in bits. This method
487/// does not work on incomplete types.
Chris Lattnerd2d2a112007-07-14 01:29:45 +0000488std::pair<uint64_t, unsigned>
Daniel Dunbar1d751182008-11-08 05:48:37 +0000489ASTContext::getTypeInfo(const Type *T) {
Mike Stump5e301002009-02-27 18:32:39 +0000490 uint64_t Width=0;
491 unsigned Align=8;
Chris Lattnera7674d82007-07-13 22:13:22 +0000492 switch (T->getTypeClass()) {
Douglas Gregor72564e72009-02-26 23:50:07 +0000493#define TYPE(Class, Base)
494#define ABSTRACT_TYPE(Class, Base)
Douglas Gregor18857642009-04-30 17:32:17 +0000495#define NON_CANONICAL_TYPE(Class, Base)
Douglas Gregor72564e72009-02-26 23:50:07 +0000496#define DEPENDENT_TYPE(Class, Base) case Type::Class:
497#include "clang/AST/TypeNodes.def"
Douglas Gregor18857642009-04-30 17:32:17 +0000498 assert(false && "Should not see dependent types");
Douglas Gregor72564e72009-02-26 23:50:07 +0000499 break;
500
Chris Lattner692233e2007-07-13 22:27:08 +0000501 case Type::FunctionNoProto:
502 case Type::FunctionProto:
Douglas Gregor18857642009-04-30 17:32:17 +0000503 // GCC extension: alignof(function) = 32 bits
504 Width = 0;
505 Align = 32;
506 break;
507
Douglas Gregor72564e72009-02-26 23:50:07 +0000508 case Type::IncompleteArray:
Steve Narofffb22d962007-08-30 01:06:46 +0000509 case Type::VariableArray:
Douglas Gregor18857642009-04-30 17:32:17 +0000510 Width = 0;
511 Align = getTypeAlign(cast<ArrayType>(T)->getElementType());
512 break;
513
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +0000514 case Type::ConstantArrayWithExpr:
515 case Type::ConstantArrayWithoutExpr:
Steve Narofffb22d962007-08-30 01:06:46 +0000516 case Type::ConstantArray: {
Daniel Dunbar1d751182008-11-08 05:48:37 +0000517 const ConstantArrayType *CAT = cast<ConstantArrayType>(T);
Steve Narofffb22d962007-08-30 01:06:46 +0000518
Chris Lattner98be4942008-03-05 18:54:05 +0000519 std::pair<uint64_t, unsigned> EltInfo = getTypeInfo(CAT->getElementType());
Chris Lattner9e9b6dc2008-03-08 08:52:55 +0000520 Width = EltInfo.first*CAT->getSize().getZExtValue();
Chris Lattner030d8842007-07-19 22:06:24 +0000521 Align = EltInfo.second;
522 break;
Christopher Lamb5c09a022007-12-29 05:10:55 +0000523 }
Nate Begeman213541a2008-04-18 23:10:10 +0000524 case Type::ExtVector:
Chris Lattner030d8842007-07-19 22:06:24 +0000525 case Type::Vector: {
526 std::pair<uint64_t, unsigned> EltInfo =
Chris Lattner98be4942008-03-05 18:54:05 +0000527 getTypeInfo(cast<VectorType>(T)->getElementType());
Chris Lattner9e9b6dc2008-03-08 08:52:55 +0000528 Width = EltInfo.first*cast<VectorType>(T)->getNumElements();
Eli Friedman4bd998b2008-05-30 09:31:38 +0000529 Align = Width;
Nate Begeman6fe7c8a2009-01-18 06:42:49 +0000530 // If the alignment is not a power of 2, round up to the next power of 2.
531 // This happens for non-power-of-2 length vectors.
532 // FIXME: this should probably be a target property.
533 Align = 1 << llvm::Log2_32_Ceil(Align);
Chris Lattner030d8842007-07-19 22:06:24 +0000534 break;
535 }
Chris Lattner5d2a6302007-07-18 18:26:58 +0000536
Chris Lattner9e9b6dc2008-03-08 08:52:55 +0000537 case Type::Builtin:
Chris Lattnera7674d82007-07-13 22:13:22 +0000538 switch (cast<BuiltinType>(T)->getKind()) {
Chris Lattner692233e2007-07-13 22:27:08 +0000539 default: assert(0 && "Unknown builtin type!");
Chris Lattnerd2d2a112007-07-14 01:29:45 +0000540 case BuiltinType::Void:
Douglas Gregor18857642009-04-30 17:32:17 +0000541 // GCC extension: alignof(void) = 8 bits.
542 Width = 0;
543 Align = 8;
544 break;
545
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000546 case BuiltinType::Bool:
Chris Lattner9e9b6dc2008-03-08 08:52:55 +0000547 Width = Target.getBoolWidth();
548 Align = Target.getBoolAlign();
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000549 break;
Chris Lattner692233e2007-07-13 22:27:08 +0000550 case BuiltinType::Char_S:
551 case BuiltinType::Char_U:
552 case BuiltinType::UChar:
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000553 case BuiltinType::SChar:
Chris Lattner9e9b6dc2008-03-08 08:52:55 +0000554 Width = Target.getCharWidth();
555 Align = Target.getCharAlign();
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000556 break;
Argyrios Kyrtzidis64c438a2008-08-09 16:51:54 +0000557 case BuiltinType::WChar:
558 Width = Target.getWCharWidth();
559 Align = Target.getWCharAlign();
560 break;
Alisdair Meredithf5c209d2009-07-14 06:30:34 +0000561 case BuiltinType::Char16:
562 Width = Target.getChar16Width();
563 Align = Target.getChar16Align();
564 break;
565 case BuiltinType::Char32:
566 Width = Target.getChar32Width();
567 Align = Target.getChar32Align();
568 break;
Chris Lattner692233e2007-07-13 22:27:08 +0000569 case BuiltinType::UShort:
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000570 case BuiltinType::Short:
Chris Lattner9e9b6dc2008-03-08 08:52:55 +0000571 Width = Target.getShortWidth();
572 Align = Target.getShortAlign();
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000573 break;
Chris Lattner692233e2007-07-13 22:27:08 +0000574 case BuiltinType::UInt:
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000575 case BuiltinType::Int:
Chris Lattner9e9b6dc2008-03-08 08:52:55 +0000576 Width = Target.getIntWidth();
577 Align = Target.getIntAlign();
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000578 break;
Chris Lattner692233e2007-07-13 22:27:08 +0000579 case BuiltinType::ULong:
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000580 case BuiltinType::Long:
Chris Lattner9e9b6dc2008-03-08 08:52:55 +0000581 Width = Target.getLongWidth();
582 Align = Target.getLongAlign();
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000583 break;
Chris Lattner692233e2007-07-13 22:27:08 +0000584 case BuiltinType::ULongLong:
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000585 case BuiltinType::LongLong:
Chris Lattner9e9b6dc2008-03-08 08:52:55 +0000586 Width = Target.getLongLongWidth();
587 Align = Target.getLongLongAlign();
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000588 break;
Chris Lattnerec16cb92009-04-30 02:55:13 +0000589 case BuiltinType::Int128:
590 case BuiltinType::UInt128:
591 Width = 128;
592 Align = 128; // int128_t is 128-bit aligned on all targets.
593 break;
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000594 case BuiltinType::Float:
Chris Lattner9e9b6dc2008-03-08 08:52:55 +0000595 Width = Target.getFloatWidth();
596 Align = Target.getFloatAlign();
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000597 break;
598 case BuiltinType::Double:
Chris Lattner5426bf62008-04-07 07:01:58 +0000599 Width = Target.getDoubleWidth();
600 Align = Target.getDoubleAlign();
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000601 break;
602 case BuiltinType::LongDouble:
Chris Lattner9e9b6dc2008-03-08 08:52:55 +0000603 Width = Target.getLongDoubleWidth();
604 Align = Target.getLongDoubleAlign();
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000605 break;
Sebastian Redl6e8ed162009-05-10 18:38:11 +0000606 case BuiltinType::NullPtr:
607 Width = Target.getPointerWidth(0); // C++ 3.9.1p11: sizeof(nullptr_t)
608 Align = Target.getPointerAlign(0); // == sizeof(void*)
Sebastian Redl1590d9c2009-05-27 19:34:06 +0000609 break;
Chris Lattnera7674d82007-07-13 22:13:22 +0000610 }
Chris Lattnerbfef6d72007-07-15 23:46:53 +0000611 break;
Eli Friedmanf98aba32009-02-13 02:31:07 +0000612 case Type::FixedWidthInt:
613 // FIXME: This isn't precisely correct; the width/alignment should depend
614 // on the available types for the target
615 Width = cast<FixedWidthIntType>(T)->getWidth();
Chris Lattner736166b2009-02-15 21:20:13 +0000616 Width = std::max(llvm::NextPowerOf2(Width - 1), (uint64_t)8);
Eli Friedmanf98aba32009-02-13 02:31:07 +0000617 Align = Width;
618 break;
Fariborz Jahanianf11284a2009-02-17 18:27:45 +0000619 case Type::ExtQual:
Chris Lattner98be4942008-03-05 18:54:05 +0000620 // FIXME: Pointers into different addr spaces could have different sizes and
621 // alignment requirements: getPointerInfo should take an AddrSpace.
Fariborz Jahanianf11284a2009-02-17 18:27:45 +0000622 return getTypeInfo(QualType(cast<ExtQualType>(T)->getBaseType(), 0));
Steve Naroffd1b3c2d2009-06-17 22:40:22 +0000623 case Type::ObjCObjectPointer:
Chris Lattner5426bf62008-04-07 07:01:58 +0000624 Width = Target.getPointerWidth(0);
Chris Lattnerf72a4432008-03-08 08:34:58 +0000625 Align = Target.getPointerAlign(0);
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000626 break;
Steve Naroff485eeff2008-09-24 15:05:44 +0000627 case Type::BlockPointer: {
628 unsigned AS = cast<BlockPointerType>(T)->getPointeeType().getAddressSpace();
629 Width = Target.getPointerWidth(AS);
630 Align = Target.getPointerAlign(AS);
631 break;
632 }
Chris Lattnerf72a4432008-03-08 08:34:58 +0000633 case Type::Pointer: {
634 unsigned AS = cast<PointerType>(T)->getPointeeType().getAddressSpace();
Chris Lattner5426bf62008-04-07 07:01:58 +0000635 Width = Target.getPointerWidth(AS);
Chris Lattnerf72a4432008-03-08 08:34:58 +0000636 Align = Target.getPointerAlign(AS);
637 break;
638 }
Sebastian Redl7c80bd62009-03-16 23:22:08 +0000639 case Type::LValueReference:
640 case Type::RValueReference:
Chris Lattner7ab2ed82007-07-13 22:16:13 +0000641 // "When applied to a reference or a reference type, the result is the size
Chris Lattner5d2a6302007-07-18 18:26:58 +0000642 // of the referenced type." C++98 5.3.3p2: expr.sizeof.
Chris Lattner6f62c2a2007-12-19 19:23:28 +0000643 // FIXME: This is wrong for struct layout: a reference in a struct has
644 // pointer size.
Chris Lattnerbdcd6372008-04-02 17:35:06 +0000645 return getTypeInfo(cast<ReferenceType>(T)->getPointeeType());
Sebastian Redlf30208a2009-01-24 21:16:55 +0000646 case Type::MemberPointer: {
Anders Carlsson1cca74e2009-05-17 02:06:04 +0000647 // FIXME: This is ABI dependent. We use the Itanium C++ ABI.
648 // http://www.codesourcery.com/public/cxx-abi/abi.html#member-pointers
649 // If we ever want to support other ABIs this needs to be abstracted.
650
Sebastian Redlf30208a2009-01-24 21:16:55 +0000651 QualType Pointee = cast<MemberPointerType>(T)->getPointeeType();
Anders Carlsson1cca74e2009-05-17 02:06:04 +0000652 std::pair<uint64_t, unsigned> PtrDiffInfo =
653 getTypeInfo(getPointerDiffType());
654 Width = PtrDiffInfo.first;
Sebastian Redlf30208a2009-01-24 21:16:55 +0000655 if (Pointee->isFunctionType())
656 Width *= 2;
Anders Carlsson1cca74e2009-05-17 02:06:04 +0000657 Align = PtrDiffInfo.second;
658 break;
Sebastian Redlf30208a2009-01-24 21:16:55 +0000659 }
Chris Lattner5d2a6302007-07-18 18:26:58 +0000660 case Type::Complex: {
661 // Complex types have the same alignment as their elements, but twice the
662 // size.
663 std::pair<uint64_t, unsigned> EltInfo =
Chris Lattner98be4942008-03-05 18:54:05 +0000664 getTypeInfo(cast<ComplexType>(T)->getElementType());
Chris Lattner9e9b6dc2008-03-08 08:52:55 +0000665 Width = EltInfo.first*2;
Chris Lattner5d2a6302007-07-18 18:26:58 +0000666 Align = EltInfo.second;
667 break;
668 }
Devang Patel44a3dde2008-06-04 21:54:36 +0000669 case Type::ObjCInterface: {
Daniel Dunbar1d751182008-11-08 05:48:37 +0000670 const ObjCInterfaceType *ObjCI = cast<ObjCInterfaceType>(T);
Devang Patel44a3dde2008-06-04 21:54:36 +0000671 const ASTRecordLayout &Layout = getASTObjCInterfaceLayout(ObjCI->getDecl());
672 Width = Layout.getSize();
673 Align = Layout.getAlignment();
674 break;
675 }
Douglas Gregor72564e72009-02-26 23:50:07 +0000676 case Type::Record:
Douglas Gregor72564e72009-02-26 23:50:07 +0000677 case Type::Enum: {
Daniel Dunbar1d751182008-11-08 05:48:37 +0000678 const TagType *TT = cast<TagType>(T);
679
680 if (TT->getDecl()->isInvalidDecl()) {
Chris Lattner8389eab2008-08-09 21:35:13 +0000681 Width = 1;
682 Align = 1;
683 break;
684 }
685
Daniel Dunbar1d751182008-11-08 05:48:37 +0000686 if (const EnumType *ET = dyn_cast<EnumType>(TT))
Chris Lattner71763312008-04-06 22:05:18 +0000687 return getTypeInfo(ET->getDecl()->getIntegerType());
688
Daniel Dunbar1d751182008-11-08 05:48:37 +0000689 const RecordType *RT = cast<RecordType>(TT);
Chris Lattner71763312008-04-06 22:05:18 +0000690 const ASTRecordLayout &Layout = getASTRecordLayout(RT->getDecl());
691 Width = Layout.getSize();
692 Align = Layout.getAlignment();
Chris Lattnerdc0d73e2007-07-23 22:46:22 +0000693 break;
Chris Lattnera7674d82007-07-13 22:13:22 +0000694 }
Douglas Gregor7532dc62009-03-30 22:58:21 +0000695
Douglas Gregor18857642009-04-30 17:32:17 +0000696 case Type::Typedef: {
697 const TypedefDecl *Typedef = cast<TypedefType>(T)->getDecl();
Argyrios Kyrtzidis40b598e2009-06-30 02:34:44 +0000698 if (const AlignedAttr *Aligned = Typedef->getAttr<AlignedAttr>()) {
Douglas Gregor18857642009-04-30 17:32:17 +0000699 Align = Aligned->getAlignment();
700 Width = getTypeSize(Typedef->getUnderlyingType().getTypePtr());
701 } else
702 return getTypeInfo(Typedef->getUnderlyingType().getTypePtr());
Douglas Gregor7532dc62009-03-30 22:58:21 +0000703 break;
Chris Lattner71763312008-04-06 22:05:18 +0000704 }
Douglas Gregor18857642009-04-30 17:32:17 +0000705
706 case Type::TypeOfExpr:
707 return getTypeInfo(cast<TypeOfExprType>(T)->getUnderlyingExpr()->getType()
708 .getTypePtr());
709
710 case Type::TypeOf:
711 return getTypeInfo(cast<TypeOfType>(T)->getUnderlyingType().getTypePtr());
712
Anders Carlsson395b4752009-06-24 19:06:50 +0000713 case Type::Decltype:
714 return getTypeInfo(cast<DecltypeType>(T)->getUnderlyingExpr()->getType()
715 .getTypePtr());
716
Douglas Gregor18857642009-04-30 17:32:17 +0000717 case Type::QualifiedName:
718 return getTypeInfo(cast<QualifiedNameType>(T)->getNamedType().getTypePtr());
719
720 case Type::TemplateSpecialization:
721 assert(getCanonicalType(T) != T &&
722 "Cannot request the size of a dependent type");
723 // FIXME: this is likely to be wrong once we support template
724 // aliases, since a template alias could refer to a typedef that
725 // has an __aligned__ attribute on it.
726 return getTypeInfo(getCanonicalType(T));
727 }
Chris Lattnerd2d2a112007-07-14 01:29:45 +0000728
Chris Lattner464175b2007-07-18 17:52:12 +0000729 assert(Align && (Align & (Align-1)) == 0 && "Alignment must be power of 2");
Chris Lattner9e9b6dc2008-03-08 08:52:55 +0000730 return std::make_pair(Width, Align);
Chris Lattnera7674d82007-07-13 22:13:22 +0000731}
732
Chris Lattner34ebde42009-01-27 18:08:34 +0000733/// getPreferredTypeAlign - Return the "preferred" alignment of the specified
734/// type for the current target in bits. This can be different than the ABI
735/// alignment in cases where it is beneficial for performance to overalign
736/// a data type.
737unsigned ASTContext::getPreferredTypeAlign(const Type *T) {
738 unsigned ABIAlign = getTypeAlign(T);
Eli Friedman1eed6022009-05-25 21:27:19 +0000739
740 // Double and long long should be naturally aligned if possible.
741 if (const ComplexType* CT = T->getAsComplexType())
742 T = CT->getElementType().getTypePtr();
743 if (T->isSpecificBuiltinType(BuiltinType::Double) ||
744 T->isSpecificBuiltinType(BuiltinType::LongLong))
745 return std::max(ABIAlign, (unsigned)getTypeSize(T));
746
Chris Lattner34ebde42009-01-27 18:08:34 +0000747 return ABIAlign;
748}
749
Daniel Dunbara80a0f62009-04-22 17:43:55 +0000750static void CollectLocalObjCIvars(ASTContext *Ctx,
751 const ObjCInterfaceDecl *OI,
752 llvm::SmallVectorImpl<FieldDecl*> &Fields) {
Fariborz Jahaniana769c002008-12-17 21:40:49 +0000753 for (ObjCInterfaceDecl::ivar_iterator I = OI->ivar_begin(),
754 E = OI->ivar_end(); I != E; ++I) {
Chris Lattnerf1690852009-03-31 08:48:01 +0000755 ObjCIvarDecl *IVDecl = *I;
Fariborz Jahaniana769c002008-12-17 21:40:49 +0000756 if (!IVDecl->isInvalidDecl())
757 Fields.push_back(cast<FieldDecl>(IVDecl));
758 }
759}
760
Daniel Dunbara80a0f62009-04-22 17:43:55 +0000761void ASTContext::CollectObjCIvars(const ObjCInterfaceDecl *OI,
762 llvm::SmallVectorImpl<FieldDecl*> &Fields) {
763 if (const ObjCInterfaceDecl *SuperClass = OI->getSuperClass())
764 CollectObjCIvars(SuperClass, Fields);
765 CollectLocalObjCIvars(this, OI, Fields);
766}
767
Fariborz Jahanian8e6ac1d2009-06-04 01:19:09 +0000768/// ShallowCollectObjCIvars -
769/// Collect all ivars, including those synthesized, in the current class.
770///
771void ASTContext::ShallowCollectObjCIvars(const ObjCInterfaceDecl *OI,
772 llvm::SmallVectorImpl<ObjCIvarDecl*> &Ivars,
773 bool CollectSynthesized) {
774 for (ObjCInterfaceDecl::ivar_iterator I = OI->ivar_begin(),
775 E = OI->ivar_end(); I != E; ++I) {
776 Ivars.push_back(*I);
777 }
778 if (CollectSynthesized)
779 CollectSynthesizedIvars(OI, Ivars);
780}
781
Fariborz Jahanian98200742009-05-12 18:14:29 +0000782void ASTContext::CollectProtocolSynthesizedIvars(const ObjCProtocolDecl *PD,
783 llvm::SmallVectorImpl<ObjCIvarDecl*> &Ivars) {
Argyrios Kyrtzidis17945a02009-06-30 02:36:12 +0000784 for (ObjCContainerDecl::prop_iterator I = PD->prop_begin(),
785 E = PD->prop_end(); I != E; ++I)
Fariborz Jahanian98200742009-05-12 18:14:29 +0000786 if (ObjCIvarDecl *Ivar = (*I)->getPropertyIvarDecl())
787 Ivars.push_back(Ivar);
788
789 // Also look into nested protocols.
790 for (ObjCProtocolDecl::protocol_iterator P = PD->protocol_begin(),
791 E = PD->protocol_end(); P != E; ++P)
792 CollectProtocolSynthesizedIvars(*P, Ivars);
793}
794
795/// CollectSynthesizedIvars -
796/// This routine collect synthesized ivars for the designated class.
797///
798void ASTContext::CollectSynthesizedIvars(const ObjCInterfaceDecl *OI,
799 llvm::SmallVectorImpl<ObjCIvarDecl*> &Ivars) {
Argyrios Kyrtzidis17945a02009-06-30 02:36:12 +0000800 for (ObjCInterfaceDecl::prop_iterator I = OI->prop_begin(),
801 E = OI->prop_end(); I != E; ++I) {
Fariborz Jahanian98200742009-05-12 18:14:29 +0000802 if (ObjCIvarDecl *Ivar = (*I)->getPropertyIvarDecl())
803 Ivars.push_back(Ivar);
804 }
805 // Also look into interface's protocol list for properties declared
806 // in the protocol and whose ivars are synthesized.
807 for (ObjCInterfaceDecl::protocol_iterator P = OI->protocol_begin(),
808 PE = OI->protocol_end(); P != PE; ++P) {
809 ObjCProtocolDecl *PD = (*P);
810 CollectProtocolSynthesizedIvars(PD, Ivars);
811 }
812}
813
Fariborz Jahanian8e6ac1d2009-06-04 01:19:09 +0000814unsigned ASTContext::CountProtocolSynthesizedIvars(const ObjCProtocolDecl *PD) {
815 unsigned count = 0;
Argyrios Kyrtzidis17945a02009-06-30 02:36:12 +0000816 for (ObjCContainerDecl::prop_iterator I = PD->prop_begin(),
817 E = PD->prop_end(); I != E; ++I)
Fariborz Jahanian8e6ac1d2009-06-04 01:19:09 +0000818 if ((*I)->getPropertyIvarDecl())
819 ++count;
820
821 // Also look into nested protocols.
822 for (ObjCProtocolDecl::protocol_iterator P = PD->protocol_begin(),
823 E = PD->protocol_end(); P != E; ++P)
824 count += CountProtocolSynthesizedIvars(*P);
825 return count;
826}
827
828unsigned ASTContext::CountSynthesizedIvars(const ObjCInterfaceDecl *OI)
829{
830 unsigned count = 0;
Argyrios Kyrtzidis17945a02009-06-30 02:36:12 +0000831 for (ObjCInterfaceDecl::prop_iterator I = OI->prop_begin(),
832 E = OI->prop_end(); I != E; ++I) {
Fariborz Jahanian8e6ac1d2009-06-04 01:19:09 +0000833 if ((*I)->getPropertyIvarDecl())
834 ++count;
835 }
836 // Also look into interface's protocol list for properties declared
837 // in the protocol and whose ivars are synthesized.
838 for (ObjCInterfaceDecl::protocol_iterator P = OI->protocol_begin(),
839 PE = OI->protocol_end(); P != PE; ++P) {
840 ObjCProtocolDecl *PD = (*P);
841 count += CountProtocolSynthesizedIvars(PD);
842 }
843 return count;
844}
845
Argyrios Kyrtzidis8a1d7222009-07-21 00:05:53 +0000846/// \brief Get the implementation of ObjCInterfaceDecl,or NULL if none exists.
847ObjCImplementationDecl *ASTContext::getObjCImplementation(ObjCInterfaceDecl *D) {
848 llvm::DenseMap<ObjCContainerDecl*, ObjCImplDecl*>::iterator
849 I = ObjCImpls.find(D);
850 if (I != ObjCImpls.end())
851 return cast<ObjCImplementationDecl>(I->second);
852 return 0;
853}
854/// \brief Get the implementation of ObjCCategoryDecl, or NULL if none exists.
855ObjCCategoryImplDecl *ASTContext::getObjCImplementation(ObjCCategoryDecl *D) {
856 llvm::DenseMap<ObjCContainerDecl*, ObjCImplDecl*>::iterator
857 I = ObjCImpls.find(D);
858 if (I != ObjCImpls.end())
859 return cast<ObjCCategoryImplDecl>(I->second);
860 return 0;
861}
862
863/// \brief Set the implementation of ObjCInterfaceDecl.
864void ASTContext::setObjCImplementation(ObjCInterfaceDecl *IFaceD,
865 ObjCImplementationDecl *ImplD) {
866 assert(IFaceD && ImplD && "Passed null params");
867 ObjCImpls[IFaceD] = ImplD;
868}
869/// \brief Set the implementation of ObjCCategoryDecl.
870void ASTContext::setObjCImplementation(ObjCCategoryDecl *CatD,
871 ObjCCategoryImplDecl *ImplD) {
872 assert(CatD && ImplD && "Passed null params");
873 ObjCImpls[CatD] = ImplD;
874}
875
Daniel Dunbarb2dbbb92009-05-03 10:38:35 +0000876/// getInterfaceLayoutImpl - Get or compute information about the
877/// layout of the given interface.
878///
879/// \param Impl - If given, also include the layout of the interface's
880/// implementation. This may differ by including synthesized ivars.
Devang Patel44a3dde2008-06-04 21:54:36 +0000881const ASTRecordLayout &
Daniel Dunbarb2dbbb92009-05-03 10:38:35 +0000882ASTContext::getObjCLayout(const ObjCInterfaceDecl *D,
883 const ObjCImplementationDecl *Impl) {
Daniel Dunbar532d4da2009-05-03 13:15:50 +0000884 assert(!D->isForwardDecl() && "Invalid interface decl!");
885
Devang Patel44a3dde2008-06-04 21:54:36 +0000886 // Look up this layout, if already laid out, return what we have.
Daniel Dunbard8fd6ff2009-05-03 11:41:43 +0000887 ObjCContainerDecl *Key =
888 Impl ? (ObjCContainerDecl*) Impl : (ObjCContainerDecl*) D;
889 if (const ASTRecordLayout *Entry = ObjCLayouts[Key])
890 return *Entry;
Devang Patel44a3dde2008-06-04 21:54:36 +0000891
Daniel Dunbar453addb2009-05-03 11:16:44 +0000892 // Add in synthesized ivar count if laying out an implementation.
893 if (Impl) {
Anders Carlsson29445a02009-07-18 21:19:52 +0000894 unsigned FieldCount = D->ivar_size();
Fariborz Jahanian8e6ac1d2009-06-04 01:19:09 +0000895 unsigned SynthCount = CountSynthesizedIvars(D);
896 FieldCount += SynthCount;
Daniel Dunbard8fd6ff2009-05-03 11:41:43 +0000897 // If there aren't any sythesized ivars then reuse the interface
Daniel Dunbar453addb2009-05-03 11:16:44 +0000898 // entry. Note we can't cache this because we simply free all
899 // entries later; however we shouldn't look up implementations
900 // frequently.
Fariborz Jahanian8e6ac1d2009-06-04 01:19:09 +0000901 if (SynthCount == 0)
Daniel Dunbar453addb2009-05-03 11:16:44 +0000902 return getObjCLayout(D, 0);
903 }
904
Anders Carlsson29445a02009-07-18 21:19:52 +0000905 const ASTRecordLayout *NewEntry =
906 ASTRecordLayoutBuilder::ComputeLayout(*this, D, Impl);
907 ObjCLayouts[Key] = NewEntry;
908
Devang Patel44a3dde2008-06-04 21:54:36 +0000909 return *NewEntry;
910}
911
Daniel Dunbarb2dbbb92009-05-03 10:38:35 +0000912const ASTRecordLayout &
913ASTContext::getASTObjCInterfaceLayout(const ObjCInterfaceDecl *D) {
914 return getObjCLayout(D, 0);
915}
916
917const ASTRecordLayout &
918ASTContext::getASTObjCImplementationLayout(const ObjCImplementationDecl *D) {
919 return getObjCLayout(D->getClassInterface(), D);
920}
921
Devang Patel88a981b2007-11-01 19:11:01 +0000922/// getASTRecordLayout - Get or compute information about the layout of the
Chris Lattner464175b2007-07-18 17:52:12 +0000923/// specified record (struct/union/class), which indicates its size and field
924/// position information.
Chris Lattner98be4942008-03-05 18:54:05 +0000925const ASTRecordLayout &ASTContext::getASTRecordLayout(const RecordDecl *D) {
Ted Kremenek4b7c9832008-09-05 17:16:31 +0000926 D = D->getDefinition(*this);
927 assert(D && "Cannot get layout of forward declarations!");
Eli Friedman4bd998b2008-05-30 09:31:38 +0000928
Chris Lattner464175b2007-07-18 17:52:12 +0000929 // Look up this layout, if already laid out, return what we have.
Eli Friedmanab22c432009-07-22 20:29:16 +0000930 // Note that we can't save a reference to the entry because this function
931 // is recursive.
932 const ASTRecordLayout *Entry = ASTRecordLayouts[D];
Chris Lattner464175b2007-07-18 17:52:12 +0000933 if (Entry) return *Entry;
Eli Friedman4bd998b2008-05-30 09:31:38 +0000934
Anders Carlsson29445a02009-07-18 21:19:52 +0000935 const ASTRecordLayout *NewEntry =
936 ASTRecordLayoutBuilder::ComputeLayout(*this, D);
Eli Friedmanab22c432009-07-22 20:29:16 +0000937 ASTRecordLayouts[D] = NewEntry;
Anders Carlsson29445a02009-07-18 21:19:52 +0000938
Chris Lattner5d2a6302007-07-18 18:26:58 +0000939 return *NewEntry;
Chris Lattner464175b2007-07-18 17:52:12 +0000940}
941
Chris Lattnera7674d82007-07-13 22:13:22 +0000942//===----------------------------------------------------------------------===//
943// Type creation/memoization methods
944//===----------------------------------------------------------------------===//
945
Fariborz Jahanianf11284a2009-02-17 18:27:45 +0000946QualType ASTContext::getAddrSpaceQualType(QualType T, unsigned AddressSpace) {
Chris Lattnerf52ab252008-04-06 22:59:24 +0000947 QualType CanT = getCanonicalType(T);
948 if (CanT.getAddressSpace() == AddressSpace)
Chris Lattnerf46699c2008-02-20 20:55:12 +0000949 return T;
Chris Lattnerb7d25532009-02-18 22:53:11 +0000950
951 // If we are composing extended qualifiers together, merge together into one
952 // ExtQualType node.
953 unsigned CVRQuals = T.getCVRQualifiers();
954 QualType::GCAttrTypes GCAttr = QualType::GCNone;
955 Type *TypeNode = T.getTypePtr();
Chris Lattnerf46699c2008-02-20 20:55:12 +0000956
Chris Lattnerb7d25532009-02-18 22:53:11 +0000957 if (ExtQualType *EQT = dyn_cast<ExtQualType>(TypeNode)) {
958 // If this type already has an address space specified, it cannot get
959 // another one.
960 assert(EQT->getAddressSpace() == 0 &&
961 "Type cannot be in multiple addr spaces!");
962 GCAttr = EQT->getObjCGCAttr();
963 TypeNode = EQT->getBaseType();
964 }
Chris Lattnerf46699c2008-02-20 20:55:12 +0000965
Chris Lattnerb7d25532009-02-18 22:53:11 +0000966 // Check if we've already instantiated this type.
Christopher Lambebb97e92008-02-04 02:31:56 +0000967 llvm::FoldingSetNodeID ID;
Mike Stump24556362009-07-25 21:26:53 +0000968 ExtQualType::Profile(ID, TypeNode, AddressSpace, GCAttr);
Christopher Lambebb97e92008-02-04 02:31:56 +0000969 void *InsertPos = 0;
Fariborz Jahanianf11284a2009-02-17 18:27:45 +0000970 if (ExtQualType *EXTQy = ExtQualTypes.FindNodeOrInsertPos(ID, InsertPos))
Chris Lattnerb7d25532009-02-18 22:53:11 +0000971 return QualType(EXTQy, CVRQuals);
972
Christopher Lambebb97e92008-02-04 02:31:56 +0000973 // If the base type isn't canonical, this won't be a canonical type either,
974 // so fill in the canonical type field.
975 QualType Canonical;
Chris Lattnerb7d25532009-02-18 22:53:11 +0000976 if (!TypeNode->isCanonical()) {
Fariborz Jahanianf11284a2009-02-17 18:27:45 +0000977 Canonical = getAddrSpaceQualType(CanT, AddressSpace);
Christopher Lambebb97e92008-02-04 02:31:56 +0000978
Chris Lattnerb7d25532009-02-18 22:53:11 +0000979 // Update InsertPos, the previous call could have invalidated it.
Fariborz Jahanianf11284a2009-02-17 18:27:45 +0000980 ExtQualType *NewIP = ExtQualTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattnerf6e764f2008-10-12 00:26:57 +0000981 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Christopher Lambebb97e92008-02-04 02:31:56 +0000982 }
Chris Lattnerb7d25532009-02-18 22:53:11 +0000983 ExtQualType *New =
984 new (*this, 8) ExtQualType(TypeNode, Canonical, AddressSpace, GCAttr);
Fariborz Jahanianf11284a2009-02-17 18:27:45 +0000985 ExtQualTypes.InsertNode(New, InsertPos);
Christopher Lambebb97e92008-02-04 02:31:56 +0000986 Types.push_back(New);
Chris Lattnerb7d25532009-02-18 22:53:11 +0000987 return QualType(New, CVRQuals);
Christopher Lambebb97e92008-02-04 02:31:56 +0000988}
989
Chris Lattnerb7d25532009-02-18 22:53:11 +0000990QualType ASTContext::getObjCGCQualType(QualType T,
991 QualType::GCAttrTypes GCAttr) {
Fariborz Jahaniand33d9c02009-02-18 05:09:49 +0000992 QualType CanT = getCanonicalType(T);
Chris Lattnerb7d25532009-02-18 22:53:11 +0000993 if (CanT.getObjCGCAttr() == GCAttr)
Fariborz Jahaniand33d9c02009-02-18 05:09:49 +0000994 return T;
995
Fariborz Jahanian4027cd12009-06-03 17:15:17 +0000996 if (T->isPointerType()) {
Ted Kremenek6217b802009-07-29 21:53:49 +0000997 QualType Pointee = T->getAs<PointerType>()->getPointeeType();
Steve Naroff58f9f2c2009-07-14 18:25:06 +0000998 if (Pointee->isAnyPointerType()) {
Fariborz Jahanian4027cd12009-06-03 17:15:17 +0000999 QualType ResultType = getObjCGCQualType(Pointee, GCAttr);
1000 return getPointerType(ResultType);
1001 }
1002 }
Chris Lattnerb7d25532009-02-18 22:53:11 +00001003 // If we are composing extended qualifiers together, merge together into one
1004 // ExtQualType node.
1005 unsigned CVRQuals = T.getCVRQualifiers();
1006 Type *TypeNode = T.getTypePtr();
1007 unsigned AddressSpace = 0;
1008
1009 if (ExtQualType *EQT = dyn_cast<ExtQualType>(TypeNode)) {
Mike Stump24556362009-07-25 21:26:53 +00001010 // If this type already has an ObjCGC specified, it cannot get
Chris Lattnerb7d25532009-02-18 22:53:11 +00001011 // another one.
1012 assert(EQT->getObjCGCAttr() == QualType::GCNone &&
Mike Stump24556362009-07-25 21:26:53 +00001013 "Type cannot have multiple ObjCGCs!");
Chris Lattnerb7d25532009-02-18 22:53:11 +00001014 AddressSpace = EQT->getAddressSpace();
1015 TypeNode = EQT->getBaseType();
1016 }
Fariborz Jahaniand33d9c02009-02-18 05:09:49 +00001017
1018 // Check if we've already instantiated an gc qual'd type of this type.
1019 llvm::FoldingSetNodeID ID;
Mike Stump24556362009-07-25 21:26:53 +00001020 ExtQualType::Profile(ID, TypeNode, AddressSpace, GCAttr);
Fariborz Jahaniand33d9c02009-02-18 05:09:49 +00001021 void *InsertPos = 0;
1022 if (ExtQualType *EXTQy = ExtQualTypes.FindNodeOrInsertPos(ID, InsertPos))
Chris Lattnerb7d25532009-02-18 22:53:11 +00001023 return QualType(EXTQy, CVRQuals);
Fariborz Jahaniand33d9c02009-02-18 05:09:49 +00001024
1025 // If the base type isn't canonical, this won't be a canonical type either,
1026 // so fill in the canonical type field.
Eli Friedman5a61f0e2009-02-27 23:04:43 +00001027 // FIXME: Isn't this also not canonical if the base type is a array
1028 // or pointer type? I can't find any documentation for objc_gc, though...
Fariborz Jahaniand33d9c02009-02-18 05:09:49 +00001029 QualType Canonical;
1030 if (!T->isCanonical()) {
Chris Lattnerb7d25532009-02-18 22:53:11 +00001031 Canonical = getObjCGCQualType(CanT, GCAttr);
Fariborz Jahaniand33d9c02009-02-18 05:09:49 +00001032
Chris Lattnerb7d25532009-02-18 22:53:11 +00001033 // Update InsertPos, the previous call could have invalidated it.
Fariborz Jahaniand33d9c02009-02-18 05:09:49 +00001034 ExtQualType *NewIP = ExtQualTypes.FindNodeOrInsertPos(ID, InsertPos);
1035 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
1036 }
Chris Lattnerb7d25532009-02-18 22:53:11 +00001037 ExtQualType *New =
1038 new (*this, 8) ExtQualType(TypeNode, Canonical, AddressSpace, GCAttr);
Fariborz Jahaniand33d9c02009-02-18 05:09:49 +00001039 ExtQualTypes.InsertNode(New, InsertPos);
1040 Types.push_back(New);
Chris Lattnerb7d25532009-02-18 22:53:11 +00001041 return QualType(New, CVRQuals);
Fariborz Jahaniand33d9c02009-02-18 05:09:49 +00001042}
Chris Lattnera7674d82007-07-13 22:13:22 +00001043
Mike Stump24556362009-07-25 21:26:53 +00001044QualType ASTContext::getNoReturnType(QualType T) {
Mike Stump6dcbc292009-07-25 23:24:03 +00001045 QualifierSet qs;
1046 qs.strip(T);
Mike Stump24556362009-07-25 21:26:53 +00001047 if (T->isPointerType()) {
Ted Kremenek6217b802009-07-29 21:53:49 +00001048 QualType Pointee = T->getAs<PointerType>()->getPointeeType();
Mike Stump24556362009-07-25 21:26:53 +00001049 QualType ResultType = getNoReturnType(Pointee);
Mike Stump6dcbc292009-07-25 23:24:03 +00001050 ResultType = getPointerType(ResultType);
1051 ResultType.setCVRQualifiers(T.getCVRQualifiers());
1052 return qs.apply(ResultType, *this);
Mike Stump24556362009-07-25 21:26:53 +00001053 }
1054 if (T->isBlockPointerType()) {
Ted Kremenek6217b802009-07-29 21:53:49 +00001055 QualType Pointee = T->getAs<BlockPointerType>()->getPointeeType();
Mike Stump24556362009-07-25 21:26:53 +00001056 QualType ResultType = getNoReturnType(Pointee);
Mike Stump6dcbc292009-07-25 23:24:03 +00001057 ResultType = getBlockPointerType(ResultType);
1058 ResultType.setCVRQualifiers(T.getCVRQualifiers());
1059 return qs.apply(ResultType, *this);
Mike Stump24556362009-07-25 21:26:53 +00001060 }
1061 if (!T->isFunctionType())
1062 assert(0 && "can't noreturn qualify non-pointer to function or block type");
1063
Mike Stumpe24aea22009-07-27 22:25:19 +00001064 if (const FunctionNoProtoType *F = T->getAsFunctionNoProtoType()) {
Mike Stump24556362009-07-25 21:26:53 +00001065 return getFunctionNoProtoType(F->getResultType(), true);
1066 }
Mike Stumpe24aea22009-07-27 22:25:19 +00001067 const FunctionProtoType *F = T->getAsFunctionProtoType();
Mike Stump24556362009-07-25 21:26:53 +00001068 return getFunctionType(F->getResultType(), F->arg_type_begin(),
1069 F->getNumArgs(), F->isVariadic(), F->getTypeQuals(),
1070 F->hasExceptionSpec(), F->hasAnyExceptionSpec(),
1071 F->getNumExceptions(), F->exception_begin(), true);
1072}
1073
Reid Spencer5f016e22007-07-11 17:01:13 +00001074/// getComplexType - Return the uniqued reference to the type for a complex
1075/// number with the specified element type.
1076QualType ASTContext::getComplexType(QualType T) {
1077 // Unique pointers, to guarantee there is only one pointer of a particular
1078 // structure.
1079 llvm::FoldingSetNodeID ID;
1080 ComplexType::Profile(ID, T);
1081
1082 void *InsertPos = 0;
1083 if (ComplexType *CT = ComplexTypes.FindNodeOrInsertPos(ID, InsertPos))
1084 return QualType(CT, 0);
1085
1086 // If the pointee type isn't canonical, this won't be a canonical type either,
1087 // so fill in the canonical type field.
1088 QualType Canonical;
1089 if (!T->isCanonical()) {
Chris Lattnerf52ab252008-04-06 22:59:24 +00001090 Canonical = getComplexType(getCanonicalType(T));
Reid Spencer5f016e22007-07-11 17:01:13 +00001091
1092 // Get the new insert position for the node we care about.
1093 ComplexType *NewIP = ComplexTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattnerf6e764f2008-10-12 00:26:57 +00001094 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Reid Spencer5f016e22007-07-11 17:01:13 +00001095 }
Steve Narofff83820b2009-01-27 22:08:43 +00001096 ComplexType *New = new (*this,8) ComplexType(T, Canonical);
Reid Spencer5f016e22007-07-11 17:01:13 +00001097 Types.push_back(New);
1098 ComplexTypes.InsertNode(New, InsertPos);
1099 return QualType(New, 0);
1100}
1101
Eli Friedmanf98aba32009-02-13 02:31:07 +00001102QualType ASTContext::getFixedWidthIntType(unsigned Width, bool Signed) {
1103 llvm::DenseMap<unsigned, FixedWidthIntType*> &Map = Signed ?
1104 SignedFixedWidthIntTypes : UnsignedFixedWidthIntTypes;
1105 FixedWidthIntType *&Entry = Map[Width];
1106 if (!Entry)
1107 Entry = new FixedWidthIntType(Width, Signed);
1108 return QualType(Entry, 0);
1109}
Reid Spencer5f016e22007-07-11 17:01:13 +00001110
1111/// getPointerType - Return the uniqued reference to the type for a pointer to
1112/// the specified type.
1113QualType ASTContext::getPointerType(QualType T) {
1114 // Unique pointers, to guarantee there is only one pointer of a particular
1115 // structure.
1116 llvm::FoldingSetNodeID ID;
1117 PointerType::Profile(ID, T);
1118
1119 void *InsertPos = 0;
1120 if (PointerType *PT = PointerTypes.FindNodeOrInsertPos(ID, InsertPos))
1121 return QualType(PT, 0);
1122
1123 // If the pointee type isn't canonical, this won't be a canonical type either,
1124 // so fill in the canonical type field.
1125 QualType Canonical;
1126 if (!T->isCanonical()) {
Chris Lattnerf52ab252008-04-06 22:59:24 +00001127 Canonical = getPointerType(getCanonicalType(T));
Reid Spencer5f016e22007-07-11 17:01:13 +00001128
1129 // Get the new insert position for the node we care about.
1130 PointerType *NewIP = PointerTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattnerf6e764f2008-10-12 00:26:57 +00001131 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Reid Spencer5f016e22007-07-11 17:01:13 +00001132 }
Steve Narofff83820b2009-01-27 22:08:43 +00001133 PointerType *New = new (*this,8) PointerType(T, Canonical);
Reid Spencer5f016e22007-07-11 17:01:13 +00001134 Types.push_back(New);
1135 PointerTypes.InsertNode(New, InsertPos);
1136 return QualType(New, 0);
1137}
1138
Steve Naroff5618bd42008-08-27 16:04:49 +00001139/// getBlockPointerType - Return the uniqued reference to the type for
1140/// a pointer to the specified block.
1141QualType ASTContext::getBlockPointerType(QualType T) {
Steve Naroff296e8d52008-08-28 19:20:44 +00001142 assert(T->isFunctionType() && "block of function types only");
1143 // Unique pointers, to guarantee there is only one block of a particular
Steve Naroff5618bd42008-08-27 16:04:49 +00001144 // structure.
1145 llvm::FoldingSetNodeID ID;
1146 BlockPointerType::Profile(ID, T);
1147
1148 void *InsertPos = 0;
1149 if (BlockPointerType *PT =
1150 BlockPointerTypes.FindNodeOrInsertPos(ID, InsertPos))
1151 return QualType(PT, 0);
1152
Steve Naroff296e8d52008-08-28 19:20:44 +00001153 // If the block pointee type isn't canonical, this won't be a canonical
Steve Naroff5618bd42008-08-27 16:04:49 +00001154 // type either so fill in the canonical type field.
1155 QualType Canonical;
1156 if (!T->isCanonical()) {
1157 Canonical = getBlockPointerType(getCanonicalType(T));
1158
1159 // Get the new insert position for the node we care about.
1160 BlockPointerType *NewIP =
1161 BlockPointerTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattnerf6e764f2008-10-12 00:26:57 +00001162 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Steve Naroff5618bd42008-08-27 16:04:49 +00001163 }
Steve Narofff83820b2009-01-27 22:08:43 +00001164 BlockPointerType *New = new (*this,8) BlockPointerType(T, Canonical);
Steve Naroff5618bd42008-08-27 16:04:49 +00001165 Types.push_back(New);
1166 BlockPointerTypes.InsertNode(New, InsertPos);
1167 return QualType(New, 0);
1168}
1169
Sebastian Redl7c80bd62009-03-16 23:22:08 +00001170/// getLValueReferenceType - Return the uniqued reference to the type for an
1171/// lvalue reference to the specified type.
1172QualType ASTContext::getLValueReferenceType(QualType T) {
Reid Spencer5f016e22007-07-11 17:01:13 +00001173 // Unique pointers, to guarantee there is only one pointer of a particular
1174 // structure.
1175 llvm::FoldingSetNodeID ID;
1176 ReferenceType::Profile(ID, T);
1177
1178 void *InsertPos = 0;
Sebastian Redl7c80bd62009-03-16 23:22:08 +00001179 if (LValueReferenceType *RT =
1180 LValueReferenceTypes.FindNodeOrInsertPos(ID, InsertPos))
Reid Spencer5f016e22007-07-11 17:01:13 +00001181 return QualType(RT, 0);
Sebastian Redl7c80bd62009-03-16 23:22:08 +00001182
Reid Spencer5f016e22007-07-11 17:01:13 +00001183 // If the referencee type isn't canonical, this won't be a canonical type
1184 // either, so fill in the canonical type field.
1185 QualType Canonical;
1186 if (!T->isCanonical()) {
Sebastian Redl7c80bd62009-03-16 23:22:08 +00001187 Canonical = getLValueReferenceType(getCanonicalType(T));
1188
Reid Spencer5f016e22007-07-11 17:01:13 +00001189 // Get the new insert position for the node we care about.
Sebastian Redl7c80bd62009-03-16 23:22:08 +00001190 LValueReferenceType *NewIP =
1191 LValueReferenceTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattnerf6e764f2008-10-12 00:26:57 +00001192 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Reid Spencer5f016e22007-07-11 17:01:13 +00001193 }
1194
Sebastian Redl7c80bd62009-03-16 23:22:08 +00001195 LValueReferenceType *New = new (*this,8) LValueReferenceType(T, Canonical);
Reid Spencer5f016e22007-07-11 17:01:13 +00001196 Types.push_back(New);
Sebastian Redl7c80bd62009-03-16 23:22:08 +00001197 LValueReferenceTypes.InsertNode(New, InsertPos);
1198 return QualType(New, 0);
1199}
1200
1201/// getRValueReferenceType - Return the uniqued reference to the type for an
1202/// rvalue reference to the specified type.
1203QualType ASTContext::getRValueReferenceType(QualType T) {
1204 // Unique pointers, to guarantee there is only one pointer of a particular
1205 // structure.
1206 llvm::FoldingSetNodeID ID;
1207 ReferenceType::Profile(ID, T);
1208
1209 void *InsertPos = 0;
1210 if (RValueReferenceType *RT =
1211 RValueReferenceTypes.FindNodeOrInsertPos(ID, InsertPos))
1212 return QualType(RT, 0);
1213
1214 // If the referencee type isn't canonical, this won't be a canonical type
1215 // either, so fill in the canonical type field.
1216 QualType Canonical;
1217 if (!T->isCanonical()) {
1218 Canonical = getRValueReferenceType(getCanonicalType(T));
1219
1220 // Get the new insert position for the node we care about.
1221 RValueReferenceType *NewIP =
1222 RValueReferenceTypes.FindNodeOrInsertPos(ID, InsertPos);
1223 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
1224 }
1225
1226 RValueReferenceType *New = new (*this,8) RValueReferenceType(T, Canonical);
1227 Types.push_back(New);
1228 RValueReferenceTypes.InsertNode(New, InsertPos);
Reid Spencer5f016e22007-07-11 17:01:13 +00001229 return QualType(New, 0);
1230}
1231
Sebastian Redlf30208a2009-01-24 21:16:55 +00001232/// getMemberPointerType - Return the uniqued reference to the type for a
1233/// member pointer to the specified type, in the specified class.
1234QualType ASTContext::getMemberPointerType(QualType T, const Type *Cls)
1235{
1236 // Unique pointers, to guarantee there is only one pointer of a particular
1237 // structure.
1238 llvm::FoldingSetNodeID ID;
1239 MemberPointerType::Profile(ID, T, Cls);
1240
1241 void *InsertPos = 0;
1242 if (MemberPointerType *PT =
1243 MemberPointerTypes.FindNodeOrInsertPos(ID, InsertPos))
1244 return QualType(PT, 0);
1245
1246 // If the pointee or class type isn't canonical, this won't be a canonical
1247 // type either, so fill in the canonical type field.
1248 QualType Canonical;
1249 if (!T->isCanonical()) {
1250 Canonical = getMemberPointerType(getCanonicalType(T),getCanonicalType(Cls));
1251
1252 // Get the new insert position for the node we care about.
1253 MemberPointerType *NewIP =
1254 MemberPointerTypes.FindNodeOrInsertPos(ID, InsertPos);
1255 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
1256 }
Steve Narofff83820b2009-01-27 22:08:43 +00001257 MemberPointerType *New = new (*this,8) MemberPointerType(T, Cls, Canonical);
Sebastian Redlf30208a2009-01-24 21:16:55 +00001258 Types.push_back(New);
1259 MemberPointerTypes.InsertNode(New, InsertPos);
1260 return QualType(New, 0);
1261}
1262
Steve Narofffb22d962007-08-30 01:06:46 +00001263/// getConstantArrayType - Return the unique reference to the type for an
1264/// array of the specified element type.
1265QualType ASTContext::getConstantArrayType(QualType EltTy,
Chris Lattner38aeec72009-05-13 04:12:56 +00001266 const llvm::APInt &ArySizeIn,
Steve Naroffc9406122007-08-30 18:10:14 +00001267 ArrayType::ArraySizeModifier ASM,
1268 unsigned EltTypeQuals) {
Eli Friedman587cbdf2009-05-29 20:17:55 +00001269 assert((EltTy->isDependentType() || EltTy->isConstantSizeType()) &&
1270 "Constant array of VLAs is illegal!");
1271
Chris Lattner38aeec72009-05-13 04:12:56 +00001272 // Convert the array size into a canonical width matching the pointer size for
1273 // the target.
1274 llvm::APInt ArySize(ArySizeIn);
1275 ArySize.zextOrTrunc(Target.getPointerWidth(EltTy.getAddressSpace()));
1276
Reid Spencer5f016e22007-07-11 17:01:13 +00001277 llvm::FoldingSetNodeID ID;
Chris Lattner0be2ef22009-02-19 17:31:02 +00001278 ConstantArrayType::Profile(ID, EltTy, ArySize, ASM, EltTypeQuals);
Reid Spencer5f016e22007-07-11 17:01:13 +00001279
1280 void *InsertPos = 0;
Ted Kremenek7192f8e2007-10-31 17:10:13 +00001281 if (ConstantArrayType *ATP =
1282 ConstantArrayTypes.FindNodeOrInsertPos(ID, InsertPos))
Reid Spencer5f016e22007-07-11 17:01:13 +00001283 return QualType(ATP, 0);
1284
1285 // If the element type isn't canonical, this won't be a canonical type either,
1286 // so fill in the canonical type field.
1287 QualType Canonical;
1288 if (!EltTy->isCanonical()) {
Chris Lattnerf52ab252008-04-06 22:59:24 +00001289 Canonical = getConstantArrayType(getCanonicalType(EltTy), ArySize,
Steve Naroffc9406122007-08-30 18:10:14 +00001290 ASM, EltTypeQuals);
Reid Spencer5f016e22007-07-11 17:01:13 +00001291 // Get the new insert position for the node we care about.
Ted Kremenek7192f8e2007-10-31 17:10:13 +00001292 ConstantArrayType *NewIP =
1293 ConstantArrayTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattnerf6e764f2008-10-12 00:26:57 +00001294 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Reid Spencer5f016e22007-07-11 17:01:13 +00001295 }
1296
Ted Kremenek566c2ba2009-01-19 21:31:22 +00001297 ConstantArrayType *New =
Steve Narofff83820b2009-01-27 22:08:43 +00001298 new(*this,8)ConstantArrayType(EltTy, Canonical, ArySize, ASM, EltTypeQuals);
Ted Kremenek7192f8e2007-10-31 17:10:13 +00001299 ConstantArrayTypes.InsertNode(New, InsertPos);
Reid Spencer5f016e22007-07-11 17:01:13 +00001300 Types.push_back(New);
1301 return QualType(New, 0);
1302}
1303
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00001304/// getConstantArrayWithExprType - Return a reference to the type for
1305/// an array of the specified element type.
1306QualType
1307ASTContext::getConstantArrayWithExprType(QualType EltTy,
1308 const llvm::APInt &ArySizeIn,
1309 Expr *ArySizeExpr,
1310 ArrayType::ArraySizeModifier ASM,
1311 unsigned EltTypeQuals,
1312 SourceRange Brackets) {
1313 // Convert the array size into a canonical width matching the pointer
1314 // size for the target.
1315 llvm::APInt ArySize(ArySizeIn);
1316 ArySize.zextOrTrunc(Target.getPointerWidth(EltTy.getAddressSpace()));
1317
1318 // Compute the canonical ConstantArrayType.
1319 QualType Canonical = getConstantArrayType(getCanonicalType(EltTy),
1320 ArySize, ASM, EltTypeQuals);
1321 // Since we don't unique expressions, it isn't possible to unique VLA's
1322 // that have an expression provided for their size.
1323 ConstantArrayWithExprType *New =
1324 new(*this,8)ConstantArrayWithExprType(EltTy, Canonical,
1325 ArySize, ArySizeExpr,
1326 ASM, EltTypeQuals, Brackets);
1327 Types.push_back(New);
1328 return QualType(New, 0);
1329}
1330
1331/// getConstantArrayWithoutExprType - Return a reference to the type for
1332/// an array of the specified element type.
1333QualType
1334ASTContext::getConstantArrayWithoutExprType(QualType EltTy,
1335 const llvm::APInt &ArySizeIn,
1336 ArrayType::ArraySizeModifier ASM,
1337 unsigned EltTypeQuals) {
1338 // Convert the array size into a canonical width matching the pointer
1339 // size for the target.
1340 llvm::APInt ArySize(ArySizeIn);
1341 ArySize.zextOrTrunc(Target.getPointerWidth(EltTy.getAddressSpace()));
1342
1343 // Compute the canonical ConstantArrayType.
1344 QualType Canonical = getConstantArrayType(getCanonicalType(EltTy),
1345 ArySize, ASM, EltTypeQuals);
1346 ConstantArrayWithoutExprType *New =
1347 new(*this,8)ConstantArrayWithoutExprType(EltTy, Canonical,
1348 ArySize, ASM, EltTypeQuals);
1349 Types.push_back(New);
1350 return QualType(New, 0);
1351}
1352
Steve Naroffbdbf7b02007-08-30 18:14:25 +00001353/// getVariableArrayType - Returns a non-unique reference to the type for a
1354/// variable array of the specified element type.
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00001355QualType ASTContext::getVariableArrayType(QualType EltTy,
1356 Expr *NumElts,
Steve Naroffc9406122007-08-30 18:10:14 +00001357 ArrayType::ArraySizeModifier ASM,
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00001358 unsigned EltTypeQuals,
1359 SourceRange Brackets) {
Eli Friedmanc5773c42008-02-15 18:16:39 +00001360 // Since we don't unique expressions, it isn't possible to unique VLA's
1361 // that have an expression provided for their size.
1362
Ted Kremenek566c2ba2009-01-19 21:31:22 +00001363 VariableArrayType *New =
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00001364 new(*this,8)VariableArrayType(EltTy, QualType(),
1365 NumElts, ASM, EltTypeQuals, Brackets);
Eli Friedmanc5773c42008-02-15 18:16:39 +00001366
1367 VariableArrayTypes.push_back(New);
1368 Types.push_back(New);
1369 return QualType(New, 0);
1370}
1371
Douglas Gregor898574e2008-12-05 23:32:09 +00001372/// getDependentSizedArrayType - Returns a non-unique reference to
1373/// the type for a dependently-sized array of the specified element
1374/// type. FIXME: We will need these to be uniqued, or at least
1375/// comparable, at some point.
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00001376QualType ASTContext::getDependentSizedArrayType(QualType EltTy,
1377 Expr *NumElts,
Douglas Gregor898574e2008-12-05 23:32:09 +00001378 ArrayType::ArraySizeModifier ASM,
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00001379 unsigned EltTypeQuals,
1380 SourceRange Brackets) {
Douglas Gregor898574e2008-12-05 23:32:09 +00001381 assert((NumElts->isTypeDependent() || NumElts->isValueDependent()) &&
1382 "Size must be type- or value-dependent!");
1383
1384 // Since we don't unique expressions, it isn't possible to unique
1385 // dependently-sized array types.
1386
Ted Kremenek566c2ba2009-01-19 21:31:22 +00001387 DependentSizedArrayType *New =
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00001388 new (*this,8) DependentSizedArrayType(EltTy, QualType(),
1389 NumElts, ASM, EltTypeQuals,
1390 Brackets);
Douglas Gregor898574e2008-12-05 23:32:09 +00001391
1392 DependentSizedArrayTypes.push_back(New);
1393 Types.push_back(New);
1394 return QualType(New, 0);
1395}
1396
Eli Friedmanc5773c42008-02-15 18:16:39 +00001397QualType ASTContext::getIncompleteArrayType(QualType EltTy,
1398 ArrayType::ArraySizeModifier ASM,
1399 unsigned EltTypeQuals) {
1400 llvm::FoldingSetNodeID ID;
Chris Lattner0be2ef22009-02-19 17:31:02 +00001401 IncompleteArrayType::Profile(ID, EltTy, ASM, EltTypeQuals);
Eli Friedmanc5773c42008-02-15 18:16:39 +00001402
1403 void *InsertPos = 0;
1404 if (IncompleteArrayType *ATP =
1405 IncompleteArrayTypes.FindNodeOrInsertPos(ID, InsertPos))
1406 return QualType(ATP, 0);
1407
1408 // If the element type isn't canonical, this won't be a canonical type
1409 // either, so fill in the canonical type field.
1410 QualType Canonical;
1411
1412 if (!EltTy->isCanonical()) {
Chris Lattnerf52ab252008-04-06 22:59:24 +00001413 Canonical = getIncompleteArrayType(getCanonicalType(EltTy),
Ted Kremenek2bd24ba2007-10-29 23:37:31 +00001414 ASM, EltTypeQuals);
Eli Friedmanc5773c42008-02-15 18:16:39 +00001415
1416 // Get the new insert position for the node we care about.
1417 IncompleteArrayType *NewIP =
1418 IncompleteArrayTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattnerf6e764f2008-10-12 00:26:57 +00001419 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Ted Kremenek2bd24ba2007-10-29 23:37:31 +00001420 }
Eli Friedmanc5773c42008-02-15 18:16:39 +00001421
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00001422 IncompleteArrayType *New
1423 = new (*this,8) IncompleteArrayType(EltTy, Canonical,
1424 ASM, EltTypeQuals);
Eli Friedmanc5773c42008-02-15 18:16:39 +00001425
1426 IncompleteArrayTypes.InsertNode(New, InsertPos);
1427 Types.push_back(New);
1428 return QualType(New, 0);
Steve Narofffb22d962007-08-30 01:06:46 +00001429}
1430
Steve Naroff73322922007-07-18 18:00:27 +00001431/// getVectorType - Return the unique reference to a vector type of
1432/// the specified element type and size. VectorType must be a built-in type.
1433QualType ASTContext::getVectorType(QualType vecType, unsigned NumElts) {
Reid Spencer5f016e22007-07-11 17:01:13 +00001434 BuiltinType *baseType;
1435
Chris Lattnerf52ab252008-04-06 22:59:24 +00001436 baseType = dyn_cast<BuiltinType>(getCanonicalType(vecType).getTypePtr());
Steve Naroff73322922007-07-18 18:00:27 +00001437 assert(baseType != 0 && "getVectorType(): Expecting a built-in type");
Reid Spencer5f016e22007-07-11 17:01:13 +00001438
1439 // Check if we've already instantiated a vector of this type.
1440 llvm::FoldingSetNodeID ID;
Steve Naroff73322922007-07-18 18:00:27 +00001441 VectorType::Profile(ID, vecType, NumElts, Type::Vector);
Reid Spencer5f016e22007-07-11 17:01:13 +00001442 void *InsertPos = 0;
1443 if (VectorType *VTP = VectorTypes.FindNodeOrInsertPos(ID, InsertPos))
1444 return QualType(VTP, 0);
1445
1446 // If the element type isn't canonical, this won't be a canonical type either,
1447 // so fill in the canonical type field.
1448 QualType Canonical;
1449 if (!vecType->isCanonical()) {
Chris Lattnerf52ab252008-04-06 22:59:24 +00001450 Canonical = getVectorType(getCanonicalType(vecType), NumElts);
Reid Spencer5f016e22007-07-11 17:01:13 +00001451
1452 // Get the new insert position for the node we care about.
1453 VectorType *NewIP = VectorTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattnerf6e764f2008-10-12 00:26:57 +00001454 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Reid Spencer5f016e22007-07-11 17:01:13 +00001455 }
Steve Narofff83820b2009-01-27 22:08:43 +00001456 VectorType *New = new (*this,8) VectorType(vecType, NumElts, Canonical);
Reid Spencer5f016e22007-07-11 17:01:13 +00001457 VectorTypes.InsertNode(New, InsertPos);
1458 Types.push_back(New);
1459 return QualType(New, 0);
1460}
1461
Nate Begeman213541a2008-04-18 23:10:10 +00001462/// getExtVectorType - Return the unique reference to an extended vector type of
Steve Naroff73322922007-07-18 18:00:27 +00001463/// the specified element type and size. VectorType must be a built-in type.
Nate Begeman213541a2008-04-18 23:10:10 +00001464QualType ASTContext::getExtVectorType(QualType vecType, unsigned NumElts) {
Steve Naroff73322922007-07-18 18:00:27 +00001465 BuiltinType *baseType;
1466
Chris Lattnerf52ab252008-04-06 22:59:24 +00001467 baseType = dyn_cast<BuiltinType>(getCanonicalType(vecType).getTypePtr());
Nate Begeman213541a2008-04-18 23:10:10 +00001468 assert(baseType != 0 && "getExtVectorType(): Expecting a built-in type");
Steve Naroff73322922007-07-18 18:00:27 +00001469
1470 // Check if we've already instantiated a vector of this type.
1471 llvm::FoldingSetNodeID ID;
Nate Begeman213541a2008-04-18 23:10:10 +00001472 VectorType::Profile(ID, vecType, NumElts, Type::ExtVector);
Steve Naroff73322922007-07-18 18:00:27 +00001473 void *InsertPos = 0;
1474 if (VectorType *VTP = VectorTypes.FindNodeOrInsertPos(ID, InsertPos))
1475 return QualType(VTP, 0);
1476
1477 // If the element type isn't canonical, this won't be a canonical type either,
1478 // so fill in the canonical type field.
1479 QualType Canonical;
1480 if (!vecType->isCanonical()) {
Nate Begeman213541a2008-04-18 23:10:10 +00001481 Canonical = getExtVectorType(getCanonicalType(vecType), NumElts);
Steve Naroff73322922007-07-18 18:00:27 +00001482
1483 // Get the new insert position for the node we care about.
1484 VectorType *NewIP = VectorTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattnerf6e764f2008-10-12 00:26:57 +00001485 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Steve Naroff73322922007-07-18 18:00:27 +00001486 }
Steve Narofff83820b2009-01-27 22:08:43 +00001487 ExtVectorType *New = new (*this,8) ExtVectorType(vecType, NumElts, Canonical);
Steve Naroff73322922007-07-18 18:00:27 +00001488 VectorTypes.InsertNode(New, InsertPos);
1489 Types.push_back(New);
1490 return QualType(New, 0);
1491}
1492
Douglas Gregor9cdda0c2009-06-17 21:51:59 +00001493QualType ASTContext::getDependentSizedExtVectorType(QualType vecType,
1494 Expr *SizeExpr,
1495 SourceLocation AttrLoc) {
1496 DependentSizedExtVectorType *New =
1497 new (*this,8) DependentSizedExtVectorType(vecType, QualType(),
1498 SizeExpr, AttrLoc);
1499
1500 DependentSizedExtVectorTypes.push_back(New);
1501 Types.push_back(New);
1502 return QualType(New, 0);
1503}
1504
Douglas Gregor72564e72009-02-26 23:50:07 +00001505/// getFunctionNoProtoType - Return a K&R style C function type like 'int()'.
Reid Spencer5f016e22007-07-11 17:01:13 +00001506///
Mike Stump24556362009-07-25 21:26:53 +00001507QualType ASTContext::getFunctionNoProtoType(QualType ResultTy, bool NoReturn) {
Reid Spencer5f016e22007-07-11 17:01:13 +00001508 // Unique functions, to guarantee there is only one function of a particular
1509 // structure.
1510 llvm::FoldingSetNodeID ID;
Mike Stump24556362009-07-25 21:26:53 +00001511 FunctionNoProtoType::Profile(ID, ResultTy, NoReturn);
Reid Spencer5f016e22007-07-11 17:01:13 +00001512
1513 void *InsertPos = 0;
Douglas Gregor72564e72009-02-26 23:50:07 +00001514 if (FunctionNoProtoType *FT =
1515 FunctionNoProtoTypes.FindNodeOrInsertPos(ID, InsertPos))
Reid Spencer5f016e22007-07-11 17:01:13 +00001516 return QualType(FT, 0);
1517
1518 QualType Canonical;
1519 if (!ResultTy->isCanonical()) {
Mike Stump24556362009-07-25 21:26:53 +00001520 Canonical = getFunctionNoProtoType(getCanonicalType(ResultTy), NoReturn);
Reid Spencer5f016e22007-07-11 17:01:13 +00001521
1522 // Get the new insert position for the node we care about.
Douglas Gregor72564e72009-02-26 23:50:07 +00001523 FunctionNoProtoType *NewIP =
1524 FunctionNoProtoTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattnerf6e764f2008-10-12 00:26:57 +00001525 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Reid Spencer5f016e22007-07-11 17:01:13 +00001526 }
1527
Mike Stump24556362009-07-25 21:26:53 +00001528 FunctionNoProtoType *New
1529 = new (*this,8) FunctionNoProtoType(ResultTy, Canonical, NoReturn);
Reid Spencer5f016e22007-07-11 17:01:13 +00001530 Types.push_back(New);
Douglas Gregor72564e72009-02-26 23:50:07 +00001531 FunctionNoProtoTypes.InsertNode(New, InsertPos);
Reid Spencer5f016e22007-07-11 17:01:13 +00001532 return QualType(New, 0);
1533}
1534
1535/// getFunctionType - Return a normal function type with a typed argument
1536/// list. isVariadic indicates whether the argument list includes '...'.
Chris Lattner61710852008-10-05 17:34:18 +00001537QualType ASTContext::getFunctionType(QualType ResultTy,const QualType *ArgArray,
Argyrios Kyrtzidis971c4fa2008-10-24 21:46:40 +00001538 unsigned NumArgs, bool isVariadic,
Sebastian Redl465226e2009-05-27 22:11:52 +00001539 unsigned TypeQuals, bool hasExceptionSpec,
1540 bool hasAnyExceptionSpec, unsigned NumExs,
Mike Stump24556362009-07-25 21:26:53 +00001541 const QualType *ExArray, bool NoReturn) {
Reid Spencer5f016e22007-07-11 17:01:13 +00001542 // Unique functions, to guarantee there is only one function of a particular
1543 // structure.
1544 llvm::FoldingSetNodeID ID;
Douglas Gregor72564e72009-02-26 23:50:07 +00001545 FunctionProtoType::Profile(ID, ResultTy, ArgArray, NumArgs, isVariadic,
Sebastian Redl465226e2009-05-27 22:11:52 +00001546 TypeQuals, hasExceptionSpec, hasAnyExceptionSpec,
Mike Stump24556362009-07-25 21:26:53 +00001547 NumExs, ExArray, NoReturn);
Reid Spencer5f016e22007-07-11 17:01:13 +00001548
1549 void *InsertPos = 0;
Douglas Gregor72564e72009-02-26 23:50:07 +00001550 if (FunctionProtoType *FTP =
1551 FunctionProtoTypes.FindNodeOrInsertPos(ID, InsertPos))
Reid Spencer5f016e22007-07-11 17:01:13 +00001552 return QualType(FTP, 0);
Sebastian Redl465226e2009-05-27 22:11:52 +00001553
1554 // Determine whether the type being created is already canonical or not.
Reid Spencer5f016e22007-07-11 17:01:13 +00001555 bool isCanonical = ResultTy->isCanonical();
Sebastian Redl465226e2009-05-27 22:11:52 +00001556 if (hasExceptionSpec)
1557 isCanonical = false;
Reid Spencer5f016e22007-07-11 17:01:13 +00001558 for (unsigned i = 0; i != NumArgs && isCanonical; ++i)
1559 if (!ArgArray[i]->isCanonical())
1560 isCanonical = false;
1561
1562 // If this type isn't canonical, get the canonical version of it.
Sebastian Redl465226e2009-05-27 22:11:52 +00001563 // The exception spec is not part of the canonical type.
Reid Spencer5f016e22007-07-11 17:01:13 +00001564 QualType Canonical;
1565 if (!isCanonical) {
1566 llvm::SmallVector<QualType, 16> CanonicalArgs;
1567 CanonicalArgs.reserve(NumArgs);
1568 for (unsigned i = 0; i != NumArgs; ++i)
Chris Lattnerf52ab252008-04-06 22:59:24 +00001569 CanonicalArgs.push_back(getCanonicalType(ArgArray[i]));
Sebastian Redl465226e2009-05-27 22:11:52 +00001570
Chris Lattnerf52ab252008-04-06 22:59:24 +00001571 Canonical = getFunctionType(getCanonicalType(ResultTy),
Jay Foadbeaaccd2009-05-21 09:52:38 +00001572 CanonicalArgs.data(), NumArgs,
Mike Stump24556362009-07-25 21:26:53 +00001573 isVariadic, TypeQuals, NoReturn);
Sebastian Redl465226e2009-05-27 22:11:52 +00001574
Reid Spencer5f016e22007-07-11 17:01:13 +00001575 // Get the new insert position for the node we care about.
Douglas Gregor72564e72009-02-26 23:50:07 +00001576 FunctionProtoType *NewIP =
1577 FunctionProtoTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattnerf6e764f2008-10-12 00:26:57 +00001578 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Reid Spencer5f016e22007-07-11 17:01:13 +00001579 }
Sebastian Redl465226e2009-05-27 22:11:52 +00001580
Douglas Gregor72564e72009-02-26 23:50:07 +00001581 // FunctionProtoType objects are allocated with extra bytes after them
Sebastian Redl465226e2009-05-27 22:11:52 +00001582 // for two variable size arrays (for parameter and exception types) at the
1583 // end of them.
Douglas Gregor72564e72009-02-26 23:50:07 +00001584 FunctionProtoType *FTP =
Sebastian Redl465226e2009-05-27 22:11:52 +00001585 (FunctionProtoType*)Allocate(sizeof(FunctionProtoType) +
1586 NumArgs*sizeof(QualType) +
1587 NumExs*sizeof(QualType), 8);
Douglas Gregor72564e72009-02-26 23:50:07 +00001588 new (FTP) FunctionProtoType(ResultTy, ArgArray, NumArgs, isVariadic,
Sebastian Redl465226e2009-05-27 22:11:52 +00001589 TypeQuals, hasExceptionSpec, hasAnyExceptionSpec,
Mike Stump24556362009-07-25 21:26:53 +00001590 ExArray, NumExs, Canonical, NoReturn);
Reid Spencer5f016e22007-07-11 17:01:13 +00001591 Types.push_back(FTP);
Douglas Gregor72564e72009-02-26 23:50:07 +00001592 FunctionProtoTypes.InsertNode(FTP, InsertPos);
Reid Spencer5f016e22007-07-11 17:01:13 +00001593 return QualType(FTP, 0);
1594}
1595
Douglas Gregor2ce52f32008-04-13 21:07:44 +00001596/// getTypeDeclType - Return the unique reference to the type for the
1597/// specified type declaration.
Ted Kremenek4b7c9832008-09-05 17:16:31 +00001598QualType ASTContext::getTypeDeclType(TypeDecl *Decl, TypeDecl* PrevDecl) {
Argyrios Kyrtzidis1e6759e2008-10-16 16:50:47 +00001599 assert(Decl && "Passed null for Decl param");
Douglas Gregor2ce52f32008-04-13 21:07:44 +00001600 if (Decl->TypeForDecl) return QualType(Decl->TypeForDecl, 0);
1601
Argyrios Kyrtzidis1e6759e2008-10-16 16:50:47 +00001602 if (TypedefDecl *Typedef = dyn_cast<TypedefDecl>(Decl))
Douglas Gregor2ce52f32008-04-13 21:07:44 +00001603 return getTypedefType(Typedef);
Douglas Gregorfab9d672009-02-05 23:33:38 +00001604 else if (isa<TemplateTypeParmDecl>(Decl)) {
1605 assert(false && "Template type parameter types are always available.");
1606 } else if (ObjCInterfaceDecl *ObjCInterface = dyn_cast<ObjCInterfaceDecl>(Decl))
Douglas Gregor2ce52f32008-04-13 21:07:44 +00001607 return getObjCInterfaceType(ObjCInterface);
Argyrios Kyrtzidis49aa7ff2008-08-07 20:55:28 +00001608
Douglas Gregorc1efaec2009-02-28 01:32:25 +00001609 if (RecordDecl *Record = dyn_cast<RecordDecl>(Decl)) {
Ted Kremenek566c2ba2009-01-19 21:31:22 +00001610 if (PrevDecl)
1611 Decl->TypeForDecl = PrevDecl->TypeForDecl;
Steve Narofff83820b2009-01-27 22:08:43 +00001612 else
1613 Decl->TypeForDecl = new (*this,8) RecordType(Record);
Ted Kremenek4b7c9832008-09-05 17:16:31 +00001614 }
Ted Kremenek566c2ba2009-01-19 21:31:22 +00001615 else if (EnumDecl *Enum = dyn_cast<EnumDecl>(Decl)) {
1616 if (PrevDecl)
1617 Decl->TypeForDecl = PrevDecl->TypeForDecl;
Steve Narofff83820b2009-01-27 22:08:43 +00001618 else
1619 Decl->TypeForDecl = new (*this,8) EnumType(Enum);
Ted Kremenek566c2ba2009-01-19 21:31:22 +00001620 }
Argyrios Kyrtzidis49aa7ff2008-08-07 20:55:28 +00001621 else
Douglas Gregor2ce52f32008-04-13 21:07:44 +00001622 assert(false && "TypeDecl without a type?");
Argyrios Kyrtzidis49aa7ff2008-08-07 20:55:28 +00001623
Ted Kremenek4b7c9832008-09-05 17:16:31 +00001624 if (!PrevDecl) Types.push_back(Decl->TypeForDecl);
Argyrios Kyrtzidis49aa7ff2008-08-07 20:55:28 +00001625 return QualType(Decl->TypeForDecl, 0);
Douglas Gregor2ce52f32008-04-13 21:07:44 +00001626}
1627
Reid Spencer5f016e22007-07-11 17:01:13 +00001628/// getTypedefType - Return the unique reference to the type for the
1629/// specified typename decl.
1630QualType ASTContext::getTypedefType(TypedefDecl *Decl) {
1631 if (Decl->TypeForDecl) return QualType(Decl->TypeForDecl, 0);
1632
Chris Lattnerf52ab252008-04-06 22:59:24 +00001633 QualType Canonical = getCanonicalType(Decl->getUnderlyingType());
Douglas Gregor72564e72009-02-26 23:50:07 +00001634 Decl->TypeForDecl = new(*this,8) TypedefType(Type::Typedef, Decl, Canonical);
Reid Spencer5f016e22007-07-11 17:01:13 +00001635 Types.push_back(Decl->TypeForDecl);
1636 return QualType(Decl->TypeForDecl, 0);
1637}
1638
Douglas Gregorfab9d672009-02-05 23:33:38 +00001639/// \brief Retrieve the template type parameter type for a template
Anders Carlsson76e4ce42009-06-16 00:30:48 +00001640/// parameter or parameter pack with the given depth, index, and (optionally)
1641/// name.
Douglas Gregorfab9d672009-02-05 23:33:38 +00001642QualType ASTContext::getTemplateTypeParmType(unsigned Depth, unsigned Index,
Anders Carlsson76e4ce42009-06-16 00:30:48 +00001643 bool ParameterPack,
Douglas Gregorfab9d672009-02-05 23:33:38 +00001644 IdentifierInfo *Name) {
1645 llvm::FoldingSetNodeID ID;
Anders Carlsson76e4ce42009-06-16 00:30:48 +00001646 TemplateTypeParmType::Profile(ID, Depth, Index, ParameterPack, Name);
Douglas Gregorfab9d672009-02-05 23:33:38 +00001647 void *InsertPos = 0;
1648 TemplateTypeParmType *TypeParm
1649 = TemplateTypeParmTypes.FindNodeOrInsertPos(ID, InsertPos);
1650
1651 if (TypeParm)
1652 return QualType(TypeParm, 0);
1653
Anders Carlsson76e4ce42009-06-16 00:30:48 +00001654 if (Name) {
1655 QualType Canon = getTemplateTypeParmType(Depth, Index, ParameterPack);
1656 TypeParm = new (*this, 8) TemplateTypeParmType(Depth, Index, ParameterPack,
1657 Name, Canon);
1658 } else
1659 TypeParm = new (*this, 8) TemplateTypeParmType(Depth, Index, ParameterPack);
Douglas Gregorfab9d672009-02-05 23:33:38 +00001660
1661 Types.push_back(TypeParm);
1662 TemplateTypeParmTypes.InsertNode(TypeParm, InsertPos);
1663
1664 return QualType(TypeParm, 0);
1665}
1666
Douglas Gregor55f6b142009-02-09 18:46:07 +00001667QualType
Douglas Gregor7532dc62009-03-30 22:58:21 +00001668ASTContext::getTemplateSpecializationType(TemplateName Template,
1669 const TemplateArgument *Args,
1670 unsigned NumArgs,
1671 QualType Canon) {
Douglas Gregorb88e8882009-07-30 17:40:51 +00001672 if (!Canon.isNull())
1673 Canon = getCanonicalType(Canon);
1674 else {
1675 // Build the canonical template specialization type.
Douglas Gregor1275ae02009-07-28 23:00:59 +00001676 TemplateName CanonTemplate = getCanonicalTemplateName(Template);
1677 llvm::SmallVector<TemplateArgument, 4> CanonArgs;
1678 CanonArgs.reserve(NumArgs);
1679 for (unsigned I = 0; I != NumArgs; ++I)
1680 CanonArgs.push_back(getCanonicalTemplateArgument(Args[I]));
1681
1682 // Determine whether this canonical template specialization type already
1683 // exists.
1684 llvm::FoldingSetNodeID ID;
1685 TemplateSpecializationType::Profile(ID, CanonTemplate,
Douglas Gregor828e2262009-07-29 16:09:57 +00001686 CanonArgs.data(), NumArgs, *this);
Douglas Gregor1275ae02009-07-28 23:00:59 +00001687
1688 void *InsertPos = 0;
1689 TemplateSpecializationType *Spec
1690 = TemplateSpecializationTypes.FindNodeOrInsertPos(ID, InsertPos);
1691
1692 if (!Spec) {
1693 // Allocate a new canonical template specialization type.
1694 void *Mem = Allocate((sizeof(TemplateSpecializationType) +
1695 sizeof(TemplateArgument) * NumArgs),
1696 8);
Douglas Gregor828e2262009-07-29 16:09:57 +00001697 Spec = new (Mem) TemplateSpecializationType(*this, CanonTemplate,
Douglas Gregor1275ae02009-07-28 23:00:59 +00001698 CanonArgs.data(), NumArgs,
Douglas Gregorb88e8882009-07-30 17:40:51 +00001699 Canon);
Douglas Gregor1275ae02009-07-28 23:00:59 +00001700 Types.push_back(Spec);
1701 TemplateSpecializationTypes.InsertNode(Spec, InsertPos);
1702 }
1703
Douglas Gregorb88e8882009-07-30 17:40:51 +00001704 if (Canon.isNull())
1705 Canon = QualType(Spec, 0);
Douglas Gregor1275ae02009-07-28 23:00:59 +00001706 assert(Canon->isDependentType() &&
1707 "Non-dependent template-id type must have a canonical type");
Douglas Gregorb88e8882009-07-30 17:40:51 +00001708 }
Douglas Gregorfc705b82009-02-26 22:19:44 +00001709
Douglas Gregor1275ae02009-07-28 23:00:59 +00001710 // Allocate the (non-canonical) template specialization type, but don't
1711 // try to unique it: these types typically have location information that
1712 // we don't unique and don't want to lose.
Douglas Gregor7532dc62009-03-30 22:58:21 +00001713 void *Mem = Allocate((sizeof(TemplateSpecializationType) +
Douglas Gregor40808ce2009-03-09 23:48:35 +00001714 sizeof(TemplateArgument) * NumArgs),
1715 8);
Douglas Gregor1275ae02009-07-28 23:00:59 +00001716 TemplateSpecializationType *Spec
Douglas Gregor828e2262009-07-29 16:09:57 +00001717 = new (Mem) TemplateSpecializationType(*this, Template, Args, NumArgs,
1718 Canon);
Douglas Gregor1275ae02009-07-28 23:00:59 +00001719
Douglas Gregor55f6b142009-02-09 18:46:07 +00001720 Types.push_back(Spec);
Douglas Gregor55f6b142009-02-09 18:46:07 +00001721 return QualType(Spec, 0);
1722}
1723
Douglas Gregore4e5b052009-03-19 00:18:19 +00001724QualType
Douglas Gregorab452ba2009-03-26 23:50:42 +00001725ASTContext::getQualifiedNameType(NestedNameSpecifier *NNS,
Douglas Gregore4e5b052009-03-19 00:18:19 +00001726 QualType NamedType) {
1727 llvm::FoldingSetNodeID ID;
Douglas Gregorab452ba2009-03-26 23:50:42 +00001728 QualifiedNameType::Profile(ID, NNS, NamedType);
Douglas Gregore4e5b052009-03-19 00:18:19 +00001729
1730 void *InsertPos = 0;
1731 QualifiedNameType *T
1732 = QualifiedNameTypes.FindNodeOrInsertPos(ID, InsertPos);
1733 if (T)
1734 return QualType(T, 0);
1735
Douglas Gregorab452ba2009-03-26 23:50:42 +00001736 T = new (*this) QualifiedNameType(NNS, NamedType,
1737 getCanonicalType(NamedType));
Douglas Gregore4e5b052009-03-19 00:18:19 +00001738 Types.push_back(T);
1739 QualifiedNameTypes.InsertNode(T, InsertPos);
1740 return QualType(T, 0);
1741}
1742
Douglas Gregord57959a2009-03-27 23:10:48 +00001743QualType ASTContext::getTypenameType(NestedNameSpecifier *NNS,
1744 const IdentifierInfo *Name,
1745 QualType Canon) {
1746 assert(NNS->isDependent() && "nested-name-specifier must be dependent");
1747
1748 if (Canon.isNull()) {
1749 NestedNameSpecifier *CanonNNS = getCanonicalNestedNameSpecifier(NNS);
1750 if (CanonNNS != NNS)
1751 Canon = getTypenameType(CanonNNS, Name);
1752 }
1753
1754 llvm::FoldingSetNodeID ID;
1755 TypenameType::Profile(ID, NNS, Name);
1756
1757 void *InsertPos = 0;
1758 TypenameType *T
1759 = TypenameTypes.FindNodeOrInsertPos(ID, InsertPos);
1760 if (T)
1761 return QualType(T, 0);
1762
1763 T = new (*this) TypenameType(NNS, Name, Canon);
1764 Types.push_back(T);
1765 TypenameTypes.InsertNode(T, InsertPos);
1766 return QualType(T, 0);
1767}
1768
Douglas Gregor17343172009-04-01 00:28:59 +00001769QualType
1770ASTContext::getTypenameType(NestedNameSpecifier *NNS,
1771 const TemplateSpecializationType *TemplateId,
1772 QualType Canon) {
1773 assert(NNS->isDependent() && "nested-name-specifier must be dependent");
1774
1775 if (Canon.isNull()) {
1776 NestedNameSpecifier *CanonNNS = getCanonicalNestedNameSpecifier(NNS);
1777 QualType CanonType = getCanonicalType(QualType(TemplateId, 0));
1778 if (CanonNNS != NNS || CanonType != QualType(TemplateId, 0)) {
1779 const TemplateSpecializationType *CanonTemplateId
1780 = CanonType->getAsTemplateSpecializationType();
1781 assert(CanonTemplateId &&
1782 "Canonical type must also be a template specialization type");
1783 Canon = getTypenameType(CanonNNS, CanonTemplateId);
1784 }
1785 }
1786
1787 llvm::FoldingSetNodeID ID;
1788 TypenameType::Profile(ID, NNS, TemplateId);
1789
1790 void *InsertPos = 0;
1791 TypenameType *T
1792 = TypenameTypes.FindNodeOrInsertPos(ID, InsertPos);
1793 if (T)
1794 return QualType(T, 0);
1795
1796 T = new (*this) TypenameType(NNS, TemplateId, Canon);
1797 Types.push_back(T);
1798 TypenameTypes.InsertNode(T, InsertPos);
1799 return QualType(T, 0);
1800}
1801
Chris Lattner88cb27a2008-04-07 04:56:42 +00001802/// CmpProtocolNames - Comparison predicate for sorting protocols
1803/// alphabetically.
1804static bool CmpProtocolNames(const ObjCProtocolDecl *LHS,
1805 const ObjCProtocolDecl *RHS) {
Douglas Gregor2e1cd422008-11-17 14:58:09 +00001806 return LHS->getDeclName() < RHS->getDeclName();
Chris Lattner88cb27a2008-04-07 04:56:42 +00001807}
1808
1809static void SortAndUniqueProtocols(ObjCProtocolDecl **&Protocols,
1810 unsigned &NumProtocols) {
1811 ObjCProtocolDecl **ProtocolsEnd = Protocols+NumProtocols;
1812
1813 // Sort protocols, keyed by name.
1814 std::sort(Protocols, Protocols+NumProtocols, CmpProtocolNames);
1815
1816 // Remove duplicates.
1817 ProtocolsEnd = std::unique(Protocols, ProtocolsEnd);
1818 NumProtocols = ProtocolsEnd-Protocols;
1819}
1820
Steve Naroffd1b3c2d2009-06-17 22:40:22 +00001821/// getObjCObjectPointerType - Return a ObjCObjectPointerType type for
1822/// the given interface decl and the conforming protocol list.
Steve Naroff14108da2009-07-10 23:34:53 +00001823QualType ASTContext::getObjCObjectPointerType(QualType InterfaceT,
Steve Naroffd1b3c2d2009-06-17 22:40:22 +00001824 ObjCProtocolDecl **Protocols,
1825 unsigned NumProtocols) {
1826 // Sort the protocol list alphabetically to canonicalize it.
1827 if (NumProtocols)
1828 SortAndUniqueProtocols(Protocols, NumProtocols);
1829
1830 llvm::FoldingSetNodeID ID;
Steve Naroff14108da2009-07-10 23:34:53 +00001831 ObjCObjectPointerType::Profile(ID, InterfaceT, Protocols, NumProtocols);
Steve Naroffd1b3c2d2009-06-17 22:40:22 +00001832
1833 void *InsertPos = 0;
1834 if (ObjCObjectPointerType *QT =
1835 ObjCObjectPointerTypes.FindNodeOrInsertPos(ID, InsertPos))
1836 return QualType(QT, 0);
1837
1838 // No Match;
1839 ObjCObjectPointerType *QType =
Steve Naroff14108da2009-07-10 23:34:53 +00001840 new (*this,8) ObjCObjectPointerType(InterfaceT, Protocols, NumProtocols);
Steve Naroffd1b3c2d2009-06-17 22:40:22 +00001841
1842 Types.push_back(QType);
1843 ObjCObjectPointerTypes.InsertNode(QType, InsertPos);
1844 return QualType(QType, 0);
1845}
Chris Lattner88cb27a2008-04-07 04:56:42 +00001846
Steve Naroffc15cb2a2009-07-18 15:33:26 +00001847/// getObjCInterfaceType - Return the unique reference to the type for the
1848/// specified ObjC interface decl. The list of protocols is optional.
1849QualType ASTContext::getObjCInterfaceType(const ObjCInterfaceDecl *Decl,
Ted Kremeneka526c5c2008-01-07 19:49:32 +00001850 ObjCProtocolDecl **Protocols, unsigned NumProtocols) {
Steve Naroffc15cb2a2009-07-18 15:33:26 +00001851 if (NumProtocols)
1852 // Sort the protocol list alphabetically to canonicalize it.
1853 SortAndUniqueProtocols(Protocols, NumProtocols);
Chris Lattner88cb27a2008-04-07 04:56:42 +00001854
Fariborz Jahanian4b6c9052007-10-11 00:55:41 +00001855 llvm::FoldingSetNodeID ID;
Steve Naroffc15cb2a2009-07-18 15:33:26 +00001856 ObjCInterfaceType::Profile(ID, Decl, Protocols, NumProtocols);
Fariborz Jahanian4b6c9052007-10-11 00:55:41 +00001857
1858 void *InsertPos = 0;
Steve Naroffc15cb2a2009-07-18 15:33:26 +00001859 if (ObjCInterfaceType *QT =
1860 ObjCInterfaceTypes.FindNodeOrInsertPos(ID, InsertPos))
Fariborz Jahanian4b6c9052007-10-11 00:55:41 +00001861 return QualType(QT, 0);
1862
1863 // No Match;
Steve Naroffc15cb2a2009-07-18 15:33:26 +00001864 ObjCInterfaceType *QType =
1865 new (*this,8) ObjCInterfaceType(const_cast<ObjCInterfaceDecl*>(Decl),
1866 Protocols, NumProtocols);
Fariborz Jahanian4b6c9052007-10-11 00:55:41 +00001867 Types.push_back(QType);
Steve Naroffc15cb2a2009-07-18 15:33:26 +00001868 ObjCInterfaceTypes.InsertNode(QType, InsertPos);
Fariborz Jahanian4b6c9052007-10-11 00:55:41 +00001869 return QualType(QType, 0);
1870}
1871
Douglas Gregor72564e72009-02-26 23:50:07 +00001872/// getTypeOfExprType - Unlike many "get<Type>" functions, we can't unique
1873/// TypeOfExprType AST's (since expression's are never shared). For example,
Steve Naroff9752f252007-08-01 18:02:17 +00001874/// multiple declarations that refer to "typeof(x)" all contain different
1875/// DeclRefExpr's. This doesn't effect the type checker, since it operates
1876/// on canonical type's (which are always unique).
Douglas Gregor72564e72009-02-26 23:50:07 +00001877QualType ASTContext::getTypeOfExprType(Expr *tofExpr) {
Douglas Gregordd0257c2009-07-08 00:03:05 +00001878 TypeOfExprType *toe;
1879 if (tofExpr->isTypeDependent())
1880 toe = new (*this, 8) TypeOfExprType(tofExpr);
1881 else {
1882 QualType Canonical = getCanonicalType(tofExpr->getType());
1883 toe = new (*this,8) TypeOfExprType(tofExpr, Canonical);
1884 }
Steve Naroff9752f252007-08-01 18:02:17 +00001885 Types.push_back(toe);
1886 return QualType(toe, 0);
Steve Naroffd1861fd2007-07-31 12:34:36 +00001887}
1888
Steve Naroff9752f252007-08-01 18:02:17 +00001889/// getTypeOfType - Unlike many "get<Type>" functions, we don't unique
1890/// TypeOfType AST's. The only motivation to unique these nodes would be
1891/// memory savings. Since typeof(t) is fairly uncommon, space shouldn't be
1892/// an issue. This doesn't effect the type checker, since it operates
1893/// on canonical type's (which are always unique).
Steve Naroffd1861fd2007-07-31 12:34:36 +00001894QualType ASTContext::getTypeOfType(QualType tofType) {
Chris Lattnerf52ab252008-04-06 22:59:24 +00001895 QualType Canonical = getCanonicalType(tofType);
Steve Narofff83820b2009-01-27 22:08:43 +00001896 TypeOfType *tot = new (*this,8) TypeOfType(tofType, Canonical);
Steve Naroff9752f252007-08-01 18:02:17 +00001897 Types.push_back(tot);
1898 return QualType(tot, 0);
Steve Naroffd1861fd2007-07-31 12:34:36 +00001899}
1900
Anders Carlsson60a9a2a2009-06-24 21:24:56 +00001901/// getDecltypeForExpr - Given an expr, will return the decltype for that
1902/// expression, according to the rules in C++0x [dcl.type.simple]p4
1903static QualType getDecltypeForExpr(const Expr *e, ASTContext &Context) {
Anders Carlssona07c33e2009-06-25 15:00:34 +00001904 if (e->isTypeDependent())
1905 return Context.DependentTy;
1906
Anders Carlsson60a9a2a2009-06-24 21:24:56 +00001907 // If e is an id expression or a class member access, decltype(e) is defined
1908 // as the type of the entity named by e.
1909 if (const DeclRefExpr *DRE = dyn_cast<DeclRefExpr>(e)) {
1910 if (const ValueDecl *VD = dyn_cast<ValueDecl>(DRE->getDecl()))
1911 return VD->getType();
1912 }
1913 if (const MemberExpr *ME = dyn_cast<MemberExpr>(e)) {
1914 if (const FieldDecl *FD = dyn_cast<FieldDecl>(ME->getMemberDecl()))
1915 return FD->getType();
1916 }
1917 // If e is a function call or an invocation of an overloaded operator,
1918 // (parentheses around e are ignored), decltype(e) is defined as the
1919 // return type of that function.
1920 if (const CallExpr *CE = dyn_cast<CallExpr>(e->IgnoreParens()))
1921 return CE->getCallReturnType();
1922
1923 QualType T = e->getType();
1924
1925 // Otherwise, where T is the type of e, if e is an lvalue, decltype(e) is
1926 // defined as T&, otherwise decltype(e) is defined as T.
1927 if (e->isLvalue(Context) == Expr::LV_Valid)
1928 T = Context.getLValueReferenceType(T);
1929
1930 return T;
1931}
1932
Anders Carlsson395b4752009-06-24 19:06:50 +00001933/// getDecltypeType - Unlike many "get<Type>" functions, we don't unique
1934/// DecltypeType AST's. The only motivation to unique these nodes would be
1935/// memory savings. Since decltype(t) is fairly uncommon, space shouldn't be
1936/// an issue. This doesn't effect the type checker, since it operates
1937/// on canonical type's (which are always unique).
1938QualType ASTContext::getDecltypeType(Expr *e) {
Douglas Gregordd0257c2009-07-08 00:03:05 +00001939 DecltypeType *dt;
1940 if (e->isTypeDependent()) // FIXME: canonicalize the expression
Anders Carlsson563a03b2009-07-10 19:20:26 +00001941 dt = new (*this, 8) DecltypeType(e, DependentTy);
Douglas Gregordd0257c2009-07-08 00:03:05 +00001942 else {
1943 QualType T = getDecltypeForExpr(e, *this);
Anders Carlsson563a03b2009-07-10 19:20:26 +00001944 dt = new (*this, 8) DecltypeType(e, T, getCanonicalType(T));
Douglas Gregordd0257c2009-07-08 00:03:05 +00001945 }
Anders Carlsson395b4752009-06-24 19:06:50 +00001946 Types.push_back(dt);
1947 return QualType(dt, 0);
1948}
1949
Reid Spencer5f016e22007-07-11 17:01:13 +00001950/// getTagDeclType - Return the unique reference to the type for the
1951/// specified TagDecl (struct/union/class/enum) decl.
1952QualType ASTContext::getTagDeclType(TagDecl *Decl) {
Ted Kremenekd778f882007-11-26 21:16:01 +00001953 assert (Decl);
Douglas Gregor2ce52f32008-04-13 21:07:44 +00001954 return getTypeDeclType(Decl);
Reid Spencer5f016e22007-07-11 17:01:13 +00001955}
1956
1957/// getSizeType - Return the unique type for "size_t" (C99 7.17), the result
1958/// of the sizeof operator (C99 6.5.3.4p4). The value is target dependent and
1959/// needs to agree with the definition in <stddef.h>.
1960QualType ASTContext::getSizeType() const {
Douglas Gregorb4e66d52008-11-03 14:12:49 +00001961 return getFromTargetType(Target.getSizeType());
Reid Spencer5f016e22007-07-11 17:01:13 +00001962}
1963
Argyrios Kyrtzidis64c438a2008-08-09 16:51:54 +00001964/// getSignedWCharType - Return the type of "signed wchar_t".
1965/// Used when in C++, as a GCC extension.
1966QualType ASTContext::getSignedWCharType() const {
1967 // FIXME: derive from "Target" ?
1968 return WCharTy;
1969}
1970
1971/// getUnsignedWCharType - Return the type of "unsigned wchar_t".
1972/// Used when in C++, as a GCC extension.
1973QualType ASTContext::getUnsignedWCharType() const {
1974 // FIXME: derive from "Target" ?
1975 return UnsignedIntTy;
1976}
1977
Chris Lattner8b9023b2007-07-13 03:05:23 +00001978/// getPointerDiffType - Return the unique type for "ptrdiff_t" (ref?)
1979/// defined in <stddef.h>. Pointer - pointer requires this (C99 6.5.6p9).
1980QualType ASTContext::getPointerDiffType() const {
Douglas Gregorb4e66d52008-11-03 14:12:49 +00001981 return getFromTargetType(Target.getPtrDiffType(0));
Chris Lattner8b9023b2007-07-13 03:05:23 +00001982}
1983
Chris Lattnere6327742008-04-02 05:18:44 +00001984//===----------------------------------------------------------------------===//
1985// Type Operators
1986//===----------------------------------------------------------------------===//
1987
Chris Lattner77c96472008-04-06 22:41:35 +00001988/// getCanonicalType - Return the canonical (structural) type corresponding to
1989/// the specified potentially non-canonical type. The non-canonical version
1990/// of a type may have many "decorated" versions of types. Decorators can
1991/// include typedefs, 'typeof' operators, etc. The returned type is guaranteed
1992/// to be free of any of these, allowing two canonical types to be compared
1993/// for exact equality with a simple pointer comparison.
1994QualType ASTContext::getCanonicalType(QualType T) {
1995 QualType CanType = T.getTypePtr()->getCanonicalTypeInternal();
Chris Lattnerc63a1f22008-08-04 07:31:14 +00001996
1997 // If the result has type qualifiers, make sure to canonicalize them as well.
1998 unsigned TypeQuals = T.getCVRQualifiers() | CanType.getCVRQualifiers();
1999 if (TypeQuals == 0) return CanType;
2000
2001 // If the type qualifiers are on an array type, get the canonical type of the
2002 // array with the qualifiers applied to the element type.
2003 ArrayType *AT = dyn_cast<ArrayType>(CanType);
2004 if (!AT)
2005 return CanType.getQualifiedType(TypeQuals);
2006
2007 // Get the canonical version of the element with the extra qualifiers on it.
2008 // This can recursively sink qualifiers through multiple levels of arrays.
2009 QualType NewEltTy=AT->getElementType().getWithAdditionalQualifiers(TypeQuals);
2010 NewEltTy = getCanonicalType(NewEltTy);
2011
2012 if (ConstantArrayType *CAT = dyn_cast<ConstantArrayType>(AT))
2013 return getConstantArrayType(NewEltTy, CAT->getSize(),CAT->getSizeModifier(),
2014 CAT->getIndexTypeQualifier());
2015 if (IncompleteArrayType *IAT = dyn_cast<IncompleteArrayType>(AT))
2016 return getIncompleteArrayType(NewEltTy, IAT->getSizeModifier(),
2017 IAT->getIndexTypeQualifier());
2018
Douglas Gregor898574e2008-12-05 23:32:09 +00002019 if (DependentSizedArrayType *DSAT = dyn_cast<DependentSizedArrayType>(AT))
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00002020 return getDependentSizedArrayType(NewEltTy,
2021 DSAT->getSizeExpr(),
Douglas Gregor898574e2008-12-05 23:32:09 +00002022 DSAT->getSizeModifier(),
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00002023 DSAT->getIndexTypeQualifier(),
2024 DSAT->getBracketsRange());
Douglas Gregor898574e2008-12-05 23:32:09 +00002025
Chris Lattnerc63a1f22008-08-04 07:31:14 +00002026 VariableArrayType *VAT = cast<VariableArrayType>(AT);
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00002027 return getVariableArrayType(NewEltTy,
2028 VAT->getSizeExpr(),
Chris Lattnerc63a1f22008-08-04 07:31:14 +00002029 VAT->getSizeModifier(),
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00002030 VAT->getIndexTypeQualifier(),
2031 VAT->getBracketsRange());
Chris Lattnerc63a1f22008-08-04 07:31:14 +00002032}
2033
Douglas Gregor25a3ef72009-05-07 06:41:52 +00002034TemplateName ASTContext::getCanonicalTemplateName(TemplateName Name) {
2035 // If this template name refers to a template, the canonical
2036 // template name merely stores the template itself.
2037 if (TemplateDecl *Template = Name.getAsTemplateDecl())
Argyrios Kyrtzidis97fbaa22009-07-18 00:34:25 +00002038 return TemplateName(cast<TemplateDecl>(Template->getCanonicalDecl()));
Douglas Gregor25a3ef72009-05-07 06:41:52 +00002039
Douglas Gregord99cbe62009-07-29 18:26:50 +00002040 // If this template name refers to a set of overloaded function templates,
2041 /// the canonical template name merely stores the set of function templates.
2042 if (OverloadedFunctionDecl *Ovl = Name.getAsOverloadedFunctionDecl())
2043 // FIXME: Can't really canonicalize a set of overloaded functions, can we?
2044 return TemplateName(Ovl);
2045
Douglas Gregor25a3ef72009-05-07 06:41:52 +00002046 DependentTemplateName *DTN = Name.getAsDependentTemplateName();
2047 assert(DTN && "Non-dependent template names must refer to template decls.");
2048 return DTN->CanonicalTemplateName;
2049}
2050
Douglas Gregor1275ae02009-07-28 23:00:59 +00002051TemplateArgument
2052ASTContext::getCanonicalTemplateArgument(const TemplateArgument &Arg) {
2053 switch (Arg.getKind()) {
2054 case TemplateArgument::Null:
2055 return Arg;
2056
2057 case TemplateArgument::Expression:
2058 // FIXME: Build canonical expression?
2059 return Arg;
2060
2061 case TemplateArgument::Declaration:
2062 return TemplateArgument(SourceLocation(),
2063 Arg.getAsDecl()->getCanonicalDecl());
2064
2065 case TemplateArgument::Integral:
2066 return TemplateArgument(SourceLocation(),
2067 *Arg.getAsIntegral(),
2068 getCanonicalType(Arg.getIntegralType()));
2069
2070 case TemplateArgument::Type:
2071 return TemplateArgument(SourceLocation(),
2072 getCanonicalType(Arg.getAsType()));
2073
2074 case TemplateArgument::Pack: {
2075 // FIXME: Allocate in ASTContext
2076 TemplateArgument *CanonArgs = new TemplateArgument[Arg.pack_size()];
2077 unsigned Idx = 0;
2078 for (TemplateArgument::pack_iterator A = Arg.pack_begin(),
2079 AEnd = Arg.pack_end();
2080 A != AEnd; (void)++A, ++Idx)
2081 CanonArgs[Idx] = getCanonicalTemplateArgument(*A);
2082
2083 TemplateArgument Result;
2084 Result.setArgumentPack(CanonArgs, Arg.pack_size(), false);
2085 return Result;
2086 }
2087 }
2088
2089 // Silence GCC warning
2090 assert(false && "Unhandled template argument kind");
2091 return TemplateArgument();
2092}
2093
Douglas Gregord57959a2009-03-27 23:10:48 +00002094NestedNameSpecifier *
2095ASTContext::getCanonicalNestedNameSpecifier(NestedNameSpecifier *NNS) {
2096 if (!NNS)
2097 return 0;
2098
2099 switch (NNS->getKind()) {
2100 case NestedNameSpecifier::Identifier:
2101 // Canonicalize the prefix but keep the identifier the same.
2102 return NestedNameSpecifier::Create(*this,
2103 getCanonicalNestedNameSpecifier(NNS->getPrefix()),
2104 NNS->getAsIdentifier());
2105
2106 case NestedNameSpecifier::Namespace:
2107 // A namespace is canonical; build a nested-name-specifier with
2108 // this namespace and no prefix.
2109 return NestedNameSpecifier::Create(*this, 0, NNS->getAsNamespace());
2110
2111 case NestedNameSpecifier::TypeSpec:
2112 case NestedNameSpecifier::TypeSpecWithTemplate: {
2113 QualType T = getCanonicalType(QualType(NNS->getAsType(), 0));
2114 NestedNameSpecifier *Prefix = 0;
2115
2116 // FIXME: This isn't the right check!
2117 if (T->isDependentType())
2118 Prefix = getCanonicalNestedNameSpecifier(NNS->getPrefix());
2119
2120 return NestedNameSpecifier::Create(*this, Prefix,
2121 NNS->getKind() == NestedNameSpecifier::TypeSpecWithTemplate,
2122 T.getTypePtr());
2123 }
2124
2125 case NestedNameSpecifier::Global:
2126 // The global specifier is canonical and unique.
2127 return NNS;
2128 }
2129
2130 // Required to silence a GCC warning
2131 return 0;
2132}
2133
Chris Lattnerc63a1f22008-08-04 07:31:14 +00002134
2135const ArrayType *ASTContext::getAsArrayType(QualType T) {
2136 // Handle the non-qualified case efficiently.
2137 if (T.getCVRQualifiers() == 0) {
2138 // Handle the common positive case fast.
2139 if (const ArrayType *AT = dyn_cast<ArrayType>(T))
2140 return AT;
2141 }
2142
2143 // Handle the common negative case fast, ignoring CVR qualifiers.
2144 QualType CType = T->getCanonicalTypeInternal();
2145
Fariborz Jahanianf11284a2009-02-17 18:27:45 +00002146 // Make sure to look through type qualifiers (like ExtQuals) for the negative
Chris Lattnerc63a1f22008-08-04 07:31:14 +00002147 // test.
2148 if (!isa<ArrayType>(CType) &&
2149 !isa<ArrayType>(CType.getUnqualifiedType()))
2150 return 0;
2151
2152 // Apply any CVR qualifiers from the array type to the element type. This
2153 // implements C99 6.7.3p8: "If the specification of an array type includes
2154 // any type qualifiers, the element type is so qualified, not the array type."
2155
2156 // If we get here, we either have type qualifiers on the type, or we have
2157 // sugar such as a typedef in the way. If we have type qualifiers on the type
2158 // we must propagate them down into the elemeng type.
2159 unsigned CVRQuals = T.getCVRQualifiers();
2160 unsigned AddrSpace = 0;
2161 Type *Ty = T.getTypePtr();
2162
Fariborz Jahanianf11284a2009-02-17 18:27:45 +00002163 // Rip through ExtQualType's and typedefs to get to a concrete type.
Chris Lattnerc63a1f22008-08-04 07:31:14 +00002164 while (1) {
Fariborz Jahanianf11284a2009-02-17 18:27:45 +00002165 if (const ExtQualType *EXTQT = dyn_cast<ExtQualType>(Ty)) {
2166 AddrSpace = EXTQT->getAddressSpace();
2167 Ty = EXTQT->getBaseType();
Chris Lattnerc63a1f22008-08-04 07:31:14 +00002168 } else {
2169 T = Ty->getDesugaredType();
2170 if (T.getTypePtr() == Ty && T.getCVRQualifiers() == 0)
2171 break;
2172 CVRQuals |= T.getCVRQualifiers();
2173 Ty = T.getTypePtr();
2174 }
2175 }
2176
2177 // If we have a simple case, just return now.
2178 const ArrayType *ATy = dyn_cast<ArrayType>(Ty);
2179 if (ATy == 0 || (AddrSpace == 0 && CVRQuals == 0))
2180 return ATy;
2181
2182 // Otherwise, we have an array and we have qualifiers on it. Push the
2183 // qualifiers into the array element type and return a new array type.
2184 // Get the canonical version of the element with the extra qualifiers on it.
2185 // This can recursively sink qualifiers through multiple levels of arrays.
2186 QualType NewEltTy = ATy->getElementType();
2187 if (AddrSpace)
Fariborz Jahanianf11284a2009-02-17 18:27:45 +00002188 NewEltTy = getAddrSpaceQualType(NewEltTy, AddrSpace);
Chris Lattnerc63a1f22008-08-04 07:31:14 +00002189 NewEltTy = NewEltTy.getWithAdditionalQualifiers(CVRQuals);
2190
2191 if (const ConstantArrayType *CAT = dyn_cast<ConstantArrayType>(ATy))
2192 return cast<ArrayType>(getConstantArrayType(NewEltTy, CAT->getSize(),
2193 CAT->getSizeModifier(),
2194 CAT->getIndexTypeQualifier()));
2195 if (const IncompleteArrayType *IAT = dyn_cast<IncompleteArrayType>(ATy))
2196 return cast<ArrayType>(getIncompleteArrayType(NewEltTy,
2197 IAT->getSizeModifier(),
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00002198 IAT->getIndexTypeQualifier()));
Douglas Gregor898574e2008-12-05 23:32:09 +00002199
Douglas Gregor898574e2008-12-05 23:32:09 +00002200 if (const DependentSizedArrayType *DSAT
2201 = dyn_cast<DependentSizedArrayType>(ATy))
2202 return cast<ArrayType>(
2203 getDependentSizedArrayType(NewEltTy,
2204 DSAT->getSizeExpr(),
2205 DSAT->getSizeModifier(),
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00002206 DSAT->getIndexTypeQualifier(),
2207 DSAT->getBracketsRange()));
Chris Lattnerc63a1f22008-08-04 07:31:14 +00002208
Chris Lattnerc63a1f22008-08-04 07:31:14 +00002209 const VariableArrayType *VAT = cast<VariableArrayType>(ATy);
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00002210 return cast<ArrayType>(getVariableArrayType(NewEltTy,
2211 VAT->getSizeExpr(),
Chris Lattnerc63a1f22008-08-04 07:31:14 +00002212 VAT->getSizeModifier(),
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00002213 VAT->getIndexTypeQualifier(),
2214 VAT->getBracketsRange()));
Chris Lattner77c96472008-04-06 22:41:35 +00002215}
2216
2217
Chris Lattnere6327742008-04-02 05:18:44 +00002218/// getArrayDecayedType - Return the properly qualified result of decaying the
2219/// specified array type to a pointer. This operation is non-trivial when
2220/// handling typedefs etc. The canonical type of "T" must be an array type,
2221/// this returns a pointer to a properly qualified element of the array.
2222///
2223/// See C99 6.7.5.3p7 and C99 6.3.2.1p3.
2224QualType ASTContext::getArrayDecayedType(QualType Ty) {
Chris Lattnerc63a1f22008-08-04 07:31:14 +00002225 // Get the element type with 'getAsArrayType' so that we don't lose any
2226 // typedefs in the element type of the array. This also handles propagation
2227 // of type qualifiers from the array type into the element type if present
2228 // (C99 6.7.3p8).
2229 const ArrayType *PrettyArrayType = getAsArrayType(Ty);
2230 assert(PrettyArrayType && "Not an array type!");
Chris Lattnere6327742008-04-02 05:18:44 +00002231
Chris Lattnerc63a1f22008-08-04 07:31:14 +00002232 QualType PtrTy = getPointerType(PrettyArrayType->getElementType());
Chris Lattnere6327742008-04-02 05:18:44 +00002233
2234 // int x[restrict 4] -> int *restrict
Chris Lattnerc63a1f22008-08-04 07:31:14 +00002235 return PtrTy.getQualifiedType(PrettyArrayType->getIndexTypeQualifier());
Chris Lattnere6327742008-04-02 05:18:44 +00002236}
2237
Douglas Gregor5e03f9e2009-07-23 23:49:00 +00002238QualType ASTContext::getBaseElementType(QualType QT) {
2239 QualifierSet qualifiers;
2240 while (true) {
2241 const Type *UT = qualifiers.strip(QT);
2242 if (const ArrayType *AT = getAsArrayType(QualType(UT,0))) {
2243 QT = AT->getElementType();
Mike Stump6dcbc292009-07-25 23:24:03 +00002244 } else {
Douglas Gregor5e03f9e2009-07-23 23:49:00 +00002245 return qualifiers.apply(QT, *this);
2246 }
2247 }
2248}
2249
Daniel Dunbard786f6a2009-01-05 22:14:37 +00002250QualType ASTContext::getBaseElementType(const VariableArrayType *VAT) {
Anders Carlsson6183a992008-12-21 03:44:36 +00002251 QualType ElemTy = VAT->getElementType();
2252
2253 if (const VariableArrayType *VAT = getAsVariableArrayType(ElemTy))
2254 return getBaseElementType(VAT);
2255
2256 return ElemTy;
2257}
2258
Reid Spencer5f016e22007-07-11 17:01:13 +00002259/// getFloatingRank - Return a relative rank for floating point types.
2260/// This routine will assert if passed a built-in type that isn't a float.
Chris Lattnera75cea32008-04-06 23:38:49 +00002261static FloatingRank getFloatingRank(QualType T) {
Christopher Lambebb97e92008-02-04 02:31:56 +00002262 if (const ComplexType *CT = T->getAsComplexType())
Reid Spencer5f016e22007-07-11 17:01:13 +00002263 return getFloatingRank(CT->getElementType());
Chris Lattnera75cea32008-04-06 23:38:49 +00002264
Daniel Dunbard786f6a2009-01-05 22:14:37 +00002265 assert(T->getAsBuiltinType() && "getFloatingRank(): not a floating type");
Christopher Lambebb97e92008-02-04 02:31:56 +00002266 switch (T->getAsBuiltinType()->getKind()) {
Chris Lattnera75cea32008-04-06 23:38:49 +00002267 default: assert(0 && "getFloatingRank(): not a floating type");
Reid Spencer5f016e22007-07-11 17:01:13 +00002268 case BuiltinType::Float: return FloatRank;
2269 case BuiltinType::Double: return DoubleRank;
2270 case BuiltinType::LongDouble: return LongDoubleRank;
2271 }
2272}
2273
Steve Naroff716c7302007-08-27 01:41:48 +00002274/// getFloatingTypeOfSizeWithinDomain - Returns a real floating
2275/// point or a complex type (based on typeDomain/typeSize).
2276/// 'typeDomain' is a real floating point or complex type.
2277/// 'typeSize' is a real floating point or complex type.
Chris Lattner1361b112008-04-06 23:58:54 +00002278QualType ASTContext::getFloatingTypeOfSizeWithinDomain(QualType Size,
2279 QualType Domain) const {
2280 FloatingRank EltRank = getFloatingRank(Size);
2281 if (Domain->isComplexType()) {
2282 switch (EltRank) {
Steve Naroff716c7302007-08-27 01:41:48 +00002283 default: assert(0 && "getFloatingRank(): illegal value for rank");
Steve Narofff1448a02007-08-27 01:27:54 +00002284 case FloatRank: return FloatComplexTy;
2285 case DoubleRank: return DoubleComplexTy;
2286 case LongDoubleRank: return LongDoubleComplexTy;
2287 }
Reid Spencer5f016e22007-07-11 17:01:13 +00002288 }
Chris Lattner1361b112008-04-06 23:58:54 +00002289
2290 assert(Domain->isRealFloatingType() && "Unknown domain!");
2291 switch (EltRank) {
2292 default: assert(0 && "getFloatingRank(): illegal value for rank");
2293 case FloatRank: return FloatTy;
2294 case DoubleRank: return DoubleTy;
2295 case LongDoubleRank: return LongDoubleTy;
Steve Narofff1448a02007-08-27 01:27:54 +00002296 }
Reid Spencer5f016e22007-07-11 17:01:13 +00002297}
2298
Chris Lattner7cfeb082008-04-06 23:55:33 +00002299/// getFloatingTypeOrder - Compare the rank of the two specified floating
2300/// point types, ignoring the domain of the type (i.e. 'double' ==
2301/// '_Complex double'). If LHS > RHS, return 1. If LHS == RHS, return 0. If
2302/// LHS < RHS, return -1.
Chris Lattnera75cea32008-04-06 23:38:49 +00002303int ASTContext::getFloatingTypeOrder(QualType LHS, QualType RHS) {
2304 FloatingRank LHSR = getFloatingRank(LHS);
2305 FloatingRank RHSR = getFloatingRank(RHS);
2306
2307 if (LHSR == RHSR)
Steve Narofffb0d4962007-08-27 15:30:22 +00002308 return 0;
Chris Lattnera75cea32008-04-06 23:38:49 +00002309 if (LHSR > RHSR)
Steve Narofffb0d4962007-08-27 15:30:22 +00002310 return 1;
2311 return -1;
Reid Spencer5f016e22007-07-11 17:01:13 +00002312}
2313
Chris Lattnerf52ab252008-04-06 22:59:24 +00002314/// getIntegerRank - Return an integer conversion rank (C99 6.3.1.1p1). This
2315/// routine will assert if passed a built-in type that isn't an integer or enum,
2316/// or if it is not canonicalized.
Eli Friedmanf98aba32009-02-13 02:31:07 +00002317unsigned ASTContext::getIntegerRank(Type *T) {
Chris Lattnerf52ab252008-04-06 22:59:24 +00002318 assert(T->isCanonical() && "T should be canonicalized");
Eli Friedmanf98aba32009-02-13 02:31:07 +00002319 if (EnumType* ET = dyn_cast<EnumType>(T))
2320 T = ET->getDecl()->getIntegerType().getTypePtr();
2321
Eli Friedmana3426752009-07-05 23:44:27 +00002322 if (T->isSpecificBuiltinType(BuiltinType::WChar))
2323 T = getFromTargetType(Target.getWCharType()).getTypePtr();
2324
Alisdair Meredithf5c209d2009-07-14 06:30:34 +00002325 if (T->isSpecificBuiltinType(BuiltinType::Char16))
2326 T = getFromTargetType(Target.getChar16Type()).getTypePtr();
2327
2328 if (T->isSpecificBuiltinType(BuiltinType::Char32))
2329 T = getFromTargetType(Target.getChar32Type()).getTypePtr();
2330
Eli Friedmanf98aba32009-02-13 02:31:07 +00002331 // There are two things which impact the integer rank: the width, and
2332 // the ordering of builtins. The builtin ordering is encoded in the
2333 // bottom three bits; the width is encoded in the bits above that.
Chris Lattner1b63e4f2009-06-14 01:54:56 +00002334 if (FixedWidthIntType* FWIT = dyn_cast<FixedWidthIntType>(T))
Eli Friedmanf98aba32009-02-13 02:31:07 +00002335 return FWIT->getWidth() << 3;
Eli Friedmanf98aba32009-02-13 02:31:07 +00002336
Chris Lattnerf52ab252008-04-06 22:59:24 +00002337 switch (cast<BuiltinType>(T)->getKind()) {
Chris Lattner7cfeb082008-04-06 23:55:33 +00002338 default: assert(0 && "getIntegerRank(): not a built-in integer");
2339 case BuiltinType::Bool:
Eli Friedmanf98aba32009-02-13 02:31:07 +00002340 return 1 + (getIntWidth(BoolTy) << 3);
Chris Lattner7cfeb082008-04-06 23:55:33 +00002341 case BuiltinType::Char_S:
2342 case BuiltinType::Char_U:
2343 case BuiltinType::SChar:
2344 case BuiltinType::UChar:
Eli Friedmanf98aba32009-02-13 02:31:07 +00002345 return 2 + (getIntWidth(CharTy) << 3);
Chris Lattner7cfeb082008-04-06 23:55:33 +00002346 case BuiltinType::Short:
2347 case BuiltinType::UShort:
Eli Friedmanf98aba32009-02-13 02:31:07 +00002348 return 3 + (getIntWidth(ShortTy) << 3);
Chris Lattner7cfeb082008-04-06 23:55:33 +00002349 case BuiltinType::Int:
2350 case BuiltinType::UInt:
Eli Friedmanf98aba32009-02-13 02:31:07 +00002351 return 4 + (getIntWidth(IntTy) << 3);
Chris Lattner7cfeb082008-04-06 23:55:33 +00002352 case BuiltinType::Long:
2353 case BuiltinType::ULong:
Eli Friedmanf98aba32009-02-13 02:31:07 +00002354 return 5 + (getIntWidth(LongTy) << 3);
Chris Lattner7cfeb082008-04-06 23:55:33 +00002355 case BuiltinType::LongLong:
2356 case BuiltinType::ULongLong:
Eli Friedmanf98aba32009-02-13 02:31:07 +00002357 return 6 + (getIntWidth(LongLongTy) << 3);
Chris Lattner2df9ced2009-04-30 02:43:43 +00002358 case BuiltinType::Int128:
2359 case BuiltinType::UInt128:
2360 return 7 + (getIntWidth(Int128Ty) << 3);
Chris Lattnerf52ab252008-04-06 22:59:24 +00002361 }
2362}
2363
Chris Lattner7cfeb082008-04-06 23:55:33 +00002364/// getIntegerTypeOrder - Returns the highest ranked integer type:
2365/// C99 6.3.1.8p1. If LHS > RHS, return 1. If LHS == RHS, return 0. If
2366/// LHS < RHS, return -1.
2367int ASTContext::getIntegerTypeOrder(QualType LHS, QualType RHS) {
Chris Lattnerf52ab252008-04-06 22:59:24 +00002368 Type *LHSC = getCanonicalType(LHS).getTypePtr();
2369 Type *RHSC = getCanonicalType(RHS).getTypePtr();
Chris Lattner7cfeb082008-04-06 23:55:33 +00002370 if (LHSC == RHSC) return 0;
Reid Spencer5f016e22007-07-11 17:01:13 +00002371
Chris Lattnerf52ab252008-04-06 22:59:24 +00002372 bool LHSUnsigned = LHSC->isUnsignedIntegerType();
2373 bool RHSUnsigned = RHSC->isUnsignedIntegerType();
Reid Spencer5f016e22007-07-11 17:01:13 +00002374
Chris Lattner7cfeb082008-04-06 23:55:33 +00002375 unsigned LHSRank = getIntegerRank(LHSC);
2376 unsigned RHSRank = getIntegerRank(RHSC);
Reid Spencer5f016e22007-07-11 17:01:13 +00002377
Chris Lattner7cfeb082008-04-06 23:55:33 +00002378 if (LHSUnsigned == RHSUnsigned) { // Both signed or both unsigned.
2379 if (LHSRank == RHSRank) return 0;
2380 return LHSRank > RHSRank ? 1 : -1;
2381 }
Reid Spencer5f016e22007-07-11 17:01:13 +00002382
Chris Lattner7cfeb082008-04-06 23:55:33 +00002383 // Otherwise, the LHS is signed and the RHS is unsigned or visa versa.
2384 if (LHSUnsigned) {
2385 // If the unsigned [LHS] type is larger, return it.
2386 if (LHSRank >= RHSRank)
2387 return 1;
2388
2389 // If the signed type can represent all values of the unsigned type, it
2390 // wins. Because we are dealing with 2's complement and types that are
2391 // powers of two larger than each other, this is always safe.
2392 return -1;
2393 }
Chris Lattnerf52ab252008-04-06 22:59:24 +00002394
Chris Lattner7cfeb082008-04-06 23:55:33 +00002395 // If the unsigned [RHS] type is larger, return it.
2396 if (RHSRank >= LHSRank)
2397 return -1;
2398
2399 // If the signed type can represent all values of the unsigned type, it
2400 // wins. Because we are dealing with 2's complement and types that are
2401 // powers of two larger than each other, this is always safe.
2402 return 1;
Reid Spencer5f016e22007-07-11 17:01:13 +00002403}
Anders Carlsson71993dd2007-08-17 05:31:46 +00002404
2405// getCFConstantStringType - Return the type used for constant CFStrings.
2406QualType ASTContext::getCFConstantStringType() {
2407 if (!CFConstantStringTypeDecl) {
Chris Lattner6c2b6eb2008-03-15 06:12:44 +00002408 CFConstantStringTypeDecl =
Argyrios Kyrtzidis39ba4ae2008-06-09 23:19:58 +00002409 RecordDecl::Create(*this, TagDecl::TK_struct, TUDecl, SourceLocation(),
Ted Kremenekdf042e62008-09-05 01:34:33 +00002410 &Idents.get("NSConstantString"));
Anders Carlssonf06273f2007-11-19 00:25:30 +00002411 QualType FieldTypes[4];
Anders Carlsson71993dd2007-08-17 05:31:46 +00002412
2413 // const int *isa;
2414 FieldTypes[0] = getPointerType(IntTy.getQualifiedType(QualType::Const));
Anders Carlssonf06273f2007-11-19 00:25:30 +00002415 // int flags;
2416 FieldTypes[1] = IntTy;
Anders Carlsson71993dd2007-08-17 05:31:46 +00002417 // const char *str;
Anders Carlssonf06273f2007-11-19 00:25:30 +00002418 FieldTypes[2] = getPointerType(CharTy.getQualifiedType(QualType::Const));
Anders Carlsson71993dd2007-08-17 05:31:46 +00002419 // long length;
Anders Carlssonf06273f2007-11-19 00:25:30 +00002420 FieldTypes[3] = LongTy;
Douglas Gregor44b43212008-12-11 16:49:14 +00002421
Anders Carlsson71993dd2007-08-17 05:31:46 +00002422 // Create fields
Douglas Gregor44b43212008-12-11 16:49:14 +00002423 for (unsigned i = 0; i < 4; ++i) {
2424 FieldDecl *Field = FieldDecl::Create(*this, CFConstantStringTypeDecl,
2425 SourceLocation(), 0,
2426 FieldTypes[i], /*BitWidth=*/0,
Douglas Gregor4afa39d2009-01-20 01:17:11 +00002427 /*Mutable=*/false);
Argyrios Kyrtzidis17945a02009-06-30 02:36:12 +00002428 CFConstantStringTypeDecl->addDecl(Field);
Douglas Gregor44b43212008-12-11 16:49:14 +00002429 }
2430
2431 CFConstantStringTypeDecl->completeDefinition(*this);
Anders Carlsson71993dd2007-08-17 05:31:46 +00002432 }
2433
2434 return getTagDeclType(CFConstantStringTypeDecl);
Gabor Greif84675832007-09-11 15:32:40 +00002435}
Anders Carlssonb2cf3572007-10-11 01:00:40 +00002436
Douglas Gregor319ac892009-04-23 22:29:11 +00002437void ASTContext::setCFConstantStringType(QualType T) {
Ted Kremenek6217b802009-07-29 21:53:49 +00002438 const RecordType *Rec = T->getAs<RecordType>();
Douglas Gregor319ac892009-04-23 22:29:11 +00002439 assert(Rec && "Invalid CFConstantStringType");
2440 CFConstantStringTypeDecl = Rec->getDecl();
2441}
2442
Anders Carlssonbd4c1ad2008-08-30 19:34:46 +00002443QualType ASTContext::getObjCFastEnumerationStateType()
2444{
2445 if (!ObjCFastEnumerationStateTypeDecl) {
Douglas Gregor44b43212008-12-11 16:49:14 +00002446 ObjCFastEnumerationStateTypeDecl =
2447 RecordDecl::Create(*this, TagDecl::TK_struct, TUDecl, SourceLocation(),
2448 &Idents.get("__objcFastEnumerationState"));
2449
Anders Carlssonbd4c1ad2008-08-30 19:34:46 +00002450 QualType FieldTypes[] = {
2451 UnsignedLongTy,
Steve Naroffde2e22d2009-07-15 18:40:39 +00002452 getPointerType(ObjCIdTypedefType),
Anders Carlssonbd4c1ad2008-08-30 19:34:46 +00002453 getPointerType(UnsignedLongTy),
2454 getConstantArrayType(UnsignedLongTy,
2455 llvm::APInt(32, 5), ArrayType::Normal, 0)
2456 };
2457
Douglas Gregor44b43212008-12-11 16:49:14 +00002458 for (size_t i = 0; i < 4; ++i) {
2459 FieldDecl *Field = FieldDecl::Create(*this,
2460 ObjCFastEnumerationStateTypeDecl,
2461 SourceLocation(), 0,
2462 FieldTypes[i], /*BitWidth=*/0,
Douglas Gregor4afa39d2009-01-20 01:17:11 +00002463 /*Mutable=*/false);
Argyrios Kyrtzidis17945a02009-06-30 02:36:12 +00002464 ObjCFastEnumerationStateTypeDecl->addDecl(Field);
Douglas Gregor44b43212008-12-11 16:49:14 +00002465 }
Anders Carlssonbd4c1ad2008-08-30 19:34:46 +00002466
Douglas Gregor44b43212008-12-11 16:49:14 +00002467 ObjCFastEnumerationStateTypeDecl->completeDefinition(*this);
Anders Carlssonbd4c1ad2008-08-30 19:34:46 +00002468 }
2469
2470 return getTagDeclType(ObjCFastEnumerationStateTypeDecl);
2471}
2472
Douglas Gregor319ac892009-04-23 22:29:11 +00002473void ASTContext::setObjCFastEnumerationStateType(QualType T) {
Ted Kremenek6217b802009-07-29 21:53:49 +00002474 const RecordType *Rec = T->getAs<RecordType>();
Douglas Gregor319ac892009-04-23 22:29:11 +00002475 assert(Rec && "Invalid ObjCFAstEnumerationStateType");
2476 ObjCFastEnumerationStateTypeDecl = Rec->getDecl();
2477}
2478
Anders Carlssone8c49532007-10-29 06:33:42 +00002479// This returns true if a type has been typedefed to BOOL:
2480// typedef <type> BOOL;
Chris Lattner2d998332007-10-30 20:27:44 +00002481static bool isTypeTypedefedAsBOOL(QualType T) {
Anders Carlssone8c49532007-10-29 06:33:42 +00002482 if (const TypedefType *TT = dyn_cast<TypedefType>(T))
Chris Lattnerbb49c3e2008-11-24 03:52:59 +00002483 if (IdentifierInfo *II = TT->getDecl()->getIdentifier())
2484 return II->isStr("BOOL");
Anders Carlsson85f9bce2007-10-29 05:01:08 +00002485
2486 return false;
2487}
2488
Ted Kremeneka526c5c2008-01-07 19:49:32 +00002489/// getObjCEncodingTypeSize returns size of type for objective-c encoding
Fariborz Jahanian33e1d642007-10-29 22:57:28 +00002490/// purpose.
Ted Kremeneka526c5c2008-01-07 19:49:32 +00002491int ASTContext::getObjCEncodingTypeSize(QualType type) {
Chris Lattner98be4942008-03-05 18:54:05 +00002492 uint64_t sz = getTypeSize(type);
Fariborz Jahanian33e1d642007-10-29 22:57:28 +00002493
2494 // Make all integer and enum types at least as large as an int
2495 if (sz > 0 && type->isIntegralType())
Chris Lattner98be4942008-03-05 18:54:05 +00002496 sz = std::max(sz, getTypeSize(IntTy));
Fariborz Jahanian33e1d642007-10-29 22:57:28 +00002497 // Treat arrays as pointers, since that's how they're passed in.
2498 else if (type->isArrayType())
Chris Lattner98be4942008-03-05 18:54:05 +00002499 sz = getTypeSize(VoidPtrTy);
2500 return sz / getTypeSize(CharTy);
Fariborz Jahanian33e1d642007-10-29 22:57:28 +00002501}
2502
Ted Kremeneka526c5c2008-01-07 19:49:32 +00002503/// getObjCEncodingForMethodDecl - Return the encoded type for this method
Fariborz Jahanian33e1d642007-10-29 22:57:28 +00002504/// declaration.
Daniel Dunbarc56f34a2008-08-28 04:38:10 +00002505void ASTContext::getObjCEncodingForMethodDecl(const ObjCMethodDecl *Decl,
Chris Lattnere6db3b02008-11-19 07:24:05 +00002506 std::string& S) {
Daniel Dunbarc56f34a2008-08-28 04:38:10 +00002507 // FIXME: This is not very efficient.
Fariborz Jahanianecb01e62007-11-01 17:18:37 +00002508 // Encode type qualifer, 'in', 'inout', etc. for the return type.
Ted Kremeneka526c5c2008-01-07 19:49:32 +00002509 getObjCEncodingForTypeQualifier(Decl->getObjCDeclQualifier(), S);
Fariborz Jahanian33e1d642007-10-29 22:57:28 +00002510 // Encode result type.
Daniel Dunbar0d504c12008-10-17 20:21:44 +00002511 getObjCEncodingForType(Decl->getResultType(), S);
Fariborz Jahanian33e1d642007-10-29 22:57:28 +00002512 // Compute size of all parameters.
2513 // Start with computing size of a pointer in number of bytes.
2514 // FIXME: There might(should) be a better way of doing this computation!
2515 SourceLocation Loc;
Chris Lattner98be4942008-03-05 18:54:05 +00002516 int PtrSize = getTypeSize(VoidPtrTy) / getTypeSize(CharTy);
Fariborz Jahanian33e1d642007-10-29 22:57:28 +00002517 // The first two arguments (self and _cmd) are pointers; account for
2518 // their size.
2519 int ParmOffset = 2 * PtrSize;
Chris Lattner89951a82009-02-20 18:43:26 +00002520 for (ObjCMethodDecl::param_iterator PI = Decl->param_begin(),
2521 E = Decl->param_end(); PI != E; ++PI) {
2522 QualType PType = (*PI)->getType();
2523 int sz = getObjCEncodingTypeSize(PType);
Ted Kremeneka526c5c2008-01-07 19:49:32 +00002524 assert (sz > 0 && "getObjCEncodingForMethodDecl - Incomplete param type");
Fariborz Jahanian33e1d642007-10-29 22:57:28 +00002525 ParmOffset += sz;
2526 }
2527 S += llvm::utostr(ParmOffset);
2528 S += "@0:";
2529 S += llvm::utostr(PtrSize);
2530
2531 // Argument types.
2532 ParmOffset = 2 * PtrSize;
Chris Lattner89951a82009-02-20 18:43:26 +00002533 for (ObjCMethodDecl::param_iterator PI = Decl->param_begin(),
2534 E = Decl->param_end(); PI != E; ++PI) {
2535 ParmVarDecl *PVDecl = *PI;
Fariborz Jahanian4306d3c2008-12-20 23:29:59 +00002536 QualType PType = PVDecl->getOriginalType();
2537 if (const ArrayType *AT =
Steve Naroffab76d452009-04-14 00:03:58 +00002538 dyn_cast<ArrayType>(PType->getCanonicalTypeInternal())) {
2539 // Use array's original type only if it has known number of
2540 // elements.
Steve Naroffbb3fde32009-04-14 00:40:09 +00002541 if (!isa<ConstantArrayType>(AT))
Steve Naroffab76d452009-04-14 00:03:58 +00002542 PType = PVDecl->getType();
2543 } else if (PType->isFunctionType())
2544 PType = PVDecl->getType();
Fariborz Jahanianecb01e62007-11-01 17:18:37 +00002545 // Process argument qualifiers for user supplied arguments; such as,
Fariborz Jahanian33e1d642007-10-29 22:57:28 +00002546 // 'in', 'inout', etc.
Fariborz Jahanian4306d3c2008-12-20 23:29:59 +00002547 getObjCEncodingForTypeQualifier(PVDecl->getObjCDeclQualifier(), S);
Daniel Dunbar0d504c12008-10-17 20:21:44 +00002548 getObjCEncodingForType(PType, S);
Fariborz Jahanian33e1d642007-10-29 22:57:28 +00002549 S += llvm::utostr(ParmOffset);
Ted Kremeneka526c5c2008-01-07 19:49:32 +00002550 ParmOffset += getObjCEncodingTypeSize(PType);
Fariborz Jahanian33e1d642007-10-29 22:57:28 +00002551 }
2552}
2553
Daniel Dunbarc56f34a2008-08-28 04:38:10 +00002554/// getObjCEncodingForPropertyDecl - Return the encoded type for this
Fariborz Jahanian83bccb82009-01-20 20:04:12 +00002555/// property declaration. If non-NULL, Container must be either an
Daniel Dunbarc56f34a2008-08-28 04:38:10 +00002556/// ObjCCategoryImplDecl or ObjCImplementationDecl; it should only be
2557/// NULL when getting encodings for protocol properties.
Fariborz Jahanian83bccb82009-01-20 20:04:12 +00002558/// Property attributes are stored as a comma-delimited C string. The simple
2559/// attributes readonly and bycopy are encoded as single characters. The
2560/// parametrized attributes, getter=name, setter=name, and ivar=name, are
2561/// encoded as single characters, followed by an identifier. Property types
2562/// are also encoded as a parametrized attribute. The characters used to encode
2563/// these attributes are defined by the following enumeration:
2564/// @code
2565/// enum PropertyAttributes {
2566/// kPropertyReadOnly = 'R', // property is read-only.
2567/// kPropertyBycopy = 'C', // property is a copy of the value last assigned
2568/// kPropertyByref = '&', // property is a reference to the value last assigned
2569/// kPropertyDynamic = 'D', // property is dynamic
2570/// kPropertyGetter = 'G', // followed by getter selector name
2571/// kPropertySetter = 'S', // followed by setter selector name
2572/// kPropertyInstanceVariable = 'V' // followed by instance variable name
2573/// kPropertyType = 't' // followed by old-style type encoding.
2574/// kPropertyWeak = 'W' // 'weak' property
2575/// kPropertyStrong = 'P' // property GC'able
2576/// kPropertyNonAtomic = 'N' // property non-atomic
2577/// };
2578/// @endcode
Daniel Dunbarc56f34a2008-08-28 04:38:10 +00002579void ASTContext::getObjCEncodingForPropertyDecl(const ObjCPropertyDecl *PD,
2580 const Decl *Container,
Chris Lattnere6db3b02008-11-19 07:24:05 +00002581 std::string& S) {
Daniel Dunbarc56f34a2008-08-28 04:38:10 +00002582 // Collect information from the property implementation decl(s).
2583 bool Dynamic = false;
2584 ObjCPropertyImplDecl *SynthesizePID = 0;
2585
2586 // FIXME: Duplicated code due to poor abstraction.
2587 if (Container) {
2588 if (const ObjCCategoryImplDecl *CID =
2589 dyn_cast<ObjCCategoryImplDecl>(Container)) {
2590 for (ObjCCategoryImplDecl::propimpl_iterator
Argyrios Kyrtzidis17945a02009-06-30 02:36:12 +00002591 i = CID->propimpl_begin(), e = CID->propimpl_end();
Douglas Gregor653f1b12009-04-23 01:02:12 +00002592 i != e; ++i) {
Daniel Dunbarc56f34a2008-08-28 04:38:10 +00002593 ObjCPropertyImplDecl *PID = *i;
2594 if (PID->getPropertyDecl() == PD) {
2595 if (PID->getPropertyImplementation()==ObjCPropertyImplDecl::Dynamic) {
2596 Dynamic = true;
2597 } else {
2598 SynthesizePID = PID;
2599 }
2600 }
2601 }
2602 } else {
Chris Lattner61710852008-10-05 17:34:18 +00002603 const ObjCImplementationDecl *OID=cast<ObjCImplementationDecl>(Container);
Daniel Dunbarc56f34a2008-08-28 04:38:10 +00002604 for (ObjCCategoryImplDecl::propimpl_iterator
Argyrios Kyrtzidis17945a02009-06-30 02:36:12 +00002605 i = OID->propimpl_begin(), e = OID->propimpl_end();
Douglas Gregor653f1b12009-04-23 01:02:12 +00002606 i != e; ++i) {
Daniel Dunbarc56f34a2008-08-28 04:38:10 +00002607 ObjCPropertyImplDecl *PID = *i;
2608 if (PID->getPropertyDecl() == PD) {
2609 if (PID->getPropertyImplementation()==ObjCPropertyImplDecl::Dynamic) {
2610 Dynamic = true;
2611 } else {
2612 SynthesizePID = PID;
2613 }
2614 }
2615 }
2616 }
2617 }
2618
2619 // FIXME: This is not very efficient.
2620 S = "T";
2621
2622 // Encode result type.
Fariborz Jahanian090b3f72009-01-20 19:14:18 +00002623 // GCC has some special rules regarding encoding of properties which
2624 // closely resembles encoding of ivars.
Daniel Dunbar153bfe52009-04-20 06:37:24 +00002625 getObjCEncodingForTypeImpl(PD->getType(), S, true, true, 0,
Fariborz Jahanian090b3f72009-01-20 19:14:18 +00002626 true /* outermost type */,
2627 true /* encoding for property */);
Daniel Dunbarc56f34a2008-08-28 04:38:10 +00002628
2629 if (PD->isReadOnly()) {
2630 S += ",R";
2631 } else {
2632 switch (PD->getSetterKind()) {
2633 case ObjCPropertyDecl::Assign: break;
2634 case ObjCPropertyDecl::Copy: S += ",C"; break;
2635 case ObjCPropertyDecl::Retain: S += ",&"; break;
2636 }
2637 }
2638
2639 // It really isn't clear at all what this means, since properties
2640 // are "dynamic by default".
2641 if (Dynamic)
2642 S += ",D";
2643
Fariborz Jahanian090b3f72009-01-20 19:14:18 +00002644 if (PD->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_nonatomic)
2645 S += ",N";
2646
Daniel Dunbarc56f34a2008-08-28 04:38:10 +00002647 if (PD->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_getter) {
2648 S += ",G";
Chris Lattner077bf5e2008-11-24 03:33:13 +00002649 S += PD->getGetterName().getAsString();
Daniel Dunbarc56f34a2008-08-28 04:38:10 +00002650 }
2651
2652 if (PD->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_setter) {
2653 S += ",S";
Chris Lattner077bf5e2008-11-24 03:33:13 +00002654 S += PD->getSetterName().getAsString();
Daniel Dunbarc56f34a2008-08-28 04:38:10 +00002655 }
2656
2657 if (SynthesizePID) {
2658 const ObjCIvarDecl *OID = SynthesizePID->getPropertyIvarDecl();
2659 S += ",V";
Chris Lattner39f34e92008-11-24 04:00:27 +00002660 S += OID->getNameAsString();
Daniel Dunbarc56f34a2008-08-28 04:38:10 +00002661 }
2662
2663 // FIXME: OBJCGC: weak & strong
2664}
2665
Fariborz Jahaniana1c033e2008-12-23 19:56:47 +00002666/// getLegacyIntegralTypeEncoding -
2667/// Another legacy compatibility encoding: 32-bit longs are encoded as
Fariborz Jahanianc657eba2009-02-11 23:59:18 +00002668/// 'l' or 'L' , but not always. For typedefs, we need to use
Fariborz Jahaniana1c033e2008-12-23 19:56:47 +00002669/// 'i' or 'I' instead if encoding a struct field, or a pointer!
2670///
2671void ASTContext::getLegacyIntegralTypeEncoding (QualType &PointeeTy) const {
Mike Stump8e1fab22009-07-22 18:58:19 +00002672 if (isa<TypedefType>(PointeeTy.getTypePtr())) {
Fariborz Jahaniana1c033e2008-12-23 19:56:47 +00002673 if (const BuiltinType *BT = PointeeTy->getAsBuiltinType()) {
Fariborz Jahanianc657eba2009-02-11 23:59:18 +00002674 if (BT->getKind() == BuiltinType::ULong &&
2675 ((const_cast<ASTContext *>(this))->getIntWidth(PointeeTy) == 32))
Fariborz Jahaniana1c033e2008-12-23 19:56:47 +00002676 PointeeTy = UnsignedIntTy;
Fariborz Jahanianc657eba2009-02-11 23:59:18 +00002677 else
2678 if (BT->getKind() == BuiltinType::Long &&
2679 ((const_cast<ASTContext *>(this))->getIntWidth(PointeeTy) == 32))
Fariborz Jahaniana1c033e2008-12-23 19:56:47 +00002680 PointeeTy = IntTy;
2681 }
2682 }
2683}
2684
Fariborz Jahanian7d6b46d2008-01-22 22:44:46 +00002685void ASTContext::getObjCEncodingForType(QualType T, std::string& S,
Daniel Dunbar153bfe52009-04-20 06:37:24 +00002686 const FieldDecl *Field) {
Daniel Dunbar82a6cfb2008-10-17 07:30:50 +00002687 // We follow the behavior of gcc, expanding structures which are
2688 // directly pointed to, and expanding embedded structures. Note that
2689 // these rules are sufficient to prevent recursive encoding of the
2690 // same type.
Fariborz Jahanian5b8c7d92008-12-22 23:22:27 +00002691 getObjCEncodingForTypeImpl(T, S, true, true, Field,
2692 true /* outermost type */);
Daniel Dunbar82a6cfb2008-10-17 07:30:50 +00002693}
2694
Fariborz Jahanian8b4bf902009-01-13 01:18:13 +00002695static void EncodeBitField(const ASTContext *Context, std::string& S,
Daniel Dunbar153bfe52009-04-20 06:37:24 +00002696 const FieldDecl *FD) {
Fariborz Jahanian8b4bf902009-01-13 01:18:13 +00002697 const Expr *E = FD->getBitWidth();
2698 assert(E && "bitfield width not there - getObjCEncodingForTypeImpl");
2699 ASTContext *Ctx = const_cast<ASTContext*>(Context);
Eli Friedman9a901bb2009-04-26 19:19:15 +00002700 unsigned N = E->EvaluateAsInt(*Ctx).getZExtValue();
Fariborz Jahanian8b4bf902009-01-13 01:18:13 +00002701 S += 'b';
2702 S += llvm::utostr(N);
2703}
2704
Daniel Dunbar82a6cfb2008-10-17 07:30:50 +00002705void ASTContext::getObjCEncodingForTypeImpl(QualType T, std::string& S,
2706 bool ExpandPointedToStructures,
2707 bool ExpandStructures,
Daniel Dunbar153bfe52009-04-20 06:37:24 +00002708 const FieldDecl *FD,
Fariborz Jahanian090b3f72009-01-20 19:14:18 +00002709 bool OutermostType,
Douglas Gregor6ab35242009-04-09 21:40:53 +00002710 bool EncodingProperty) {
Anders Carlssone8c49532007-10-29 06:33:42 +00002711 if (const BuiltinType *BT = T->getAsBuiltinType()) {
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002712 if (FD && FD->isBitField())
2713 return EncodeBitField(this, S, FD);
2714 char encoding;
2715 switch (BT->getKind()) {
2716 default: assert(0 && "Unhandled builtin type kind");
2717 case BuiltinType::Void: encoding = 'v'; break;
2718 case BuiltinType::Bool: encoding = 'B'; break;
2719 case BuiltinType::Char_U:
2720 case BuiltinType::UChar: encoding = 'C'; break;
2721 case BuiltinType::UShort: encoding = 'S'; break;
2722 case BuiltinType::UInt: encoding = 'I'; break;
2723 case BuiltinType::ULong:
Fariborz Jahanian72696e12009-02-11 22:31:45 +00002724 encoding =
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002725 (const_cast<ASTContext *>(this))->getIntWidth(T) == 32 ? 'L' : 'Q';
Fariborz Jahanian72696e12009-02-11 22:31:45 +00002726 break;
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002727 case BuiltinType::UInt128: encoding = 'T'; break;
2728 case BuiltinType::ULongLong: encoding = 'Q'; break;
2729 case BuiltinType::Char_S:
2730 case BuiltinType::SChar: encoding = 'c'; break;
2731 case BuiltinType::Short: encoding = 's'; break;
2732 case BuiltinType::Int: encoding = 'i'; break;
2733 case BuiltinType::Long:
2734 encoding =
2735 (const_cast<ASTContext *>(this))->getIntWidth(T) == 32 ? 'l' : 'q';
2736 break;
2737 case BuiltinType::LongLong: encoding = 'q'; break;
2738 case BuiltinType::Int128: encoding = 't'; break;
2739 case BuiltinType::Float: encoding = 'f'; break;
2740 case BuiltinType::Double: encoding = 'd'; break;
2741 case BuiltinType::LongDouble: encoding = 'd'; break;
Fariborz Jahanian43822ea2008-12-19 23:34:38 +00002742 }
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002743
2744 S += encoding;
2745 return;
2746 }
2747
2748 if (const ComplexType *CT = T->getAsComplexType()) {
Anders Carlssonc612f7b2009-04-09 21:55:45 +00002749 S += 'j';
2750 getObjCEncodingForTypeImpl(CT->getElementType(), S, false, false, 0, false,
2751 false);
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002752 return;
2753 }
2754
Ted Kremenek6217b802009-07-29 21:53:49 +00002755 if (const PointerType *PT = T->getAs<PointerType>()) {
Anders Carlsson85f9bce2007-10-29 05:01:08 +00002756 QualType PointeeTy = PT->getPointeeType();
Fariborz Jahaniana1c033e2008-12-23 19:56:47 +00002757 bool isReadOnly = false;
2758 // For historical/compatibility reasons, the read-only qualifier of the
2759 // pointee gets emitted _before_ the '^'. The read-only qualifier of
2760 // the pointer itself gets ignored, _unless_ we are looking at a typedef!
2761 // Also, do not emit the 'r' for anything but the outermost type!
Mike Stump8e1fab22009-07-22 18:58:19 +00002762 if (isa<TypedefType>(T.getTypePtr())) {
Fariborz Jahaniana1c033e2008-12-23 19:56:47 +00002763 if (OutermostType && T.isConstQualified()) {
2764 isReadOnly = true;
2765 S += 'r';
2766 }
2767 }
2768 else if (OutermostType) {
2769 QualType P = PointeeTy;
Ted Kremenek6217b802009-07-29 21:53:49 +00002770 while (P->getAs<PointerType>())
2771 P = P->getAs<PointerType>()->getPointeeType();
Fariborz Jahaniana1c033e2008-12-23 19:56:47 +00002772 if (P.isConstQualified()) {
2773 isReadOnly = true;
2774 S += 'r';
2775 }
2776 }
2777 if (isReadOnly) {
2778 // Another legacy compatibility encoding. Some ObjC qualifier and type
2779 // combinations need to be rearranged.
2780 // Rewrite "in const" from "nr" to "rn"
2781 const char * s = S.c_str();
2782 int len = S.length();
2783 if (len >= 2 && s[len-2] == 'n' && s[len-1] == 'r') {
2784 std::string replace = "rn";
2785 S.replace(S.end()-2, S.end(), replace);
2786 }
2787 }
Steve Naroff14108da2009-07-10 23:34:53 +00002788 if (isObjCSelType(PointeeTy)) {
Anders Carlsson8baaca52007-10-31 02:53:19 +00002789 S += ':';
2790 return;
Fariborz Jahanianc2939bc2007-10-30 17:06:23 +00002791 }
Anders Carlsson85f9bce2007-10-29 05:01:08 +00002792
2793 if (PointeeTy->isCharType()) {
2794 // char pointer types should be encoded as '*' unless it is a
2795 // type that has been typedef'd to 'BOOL'.
Anders Carlssone8c49532007-10-29 06:33:42 +00002796 if (!isTypeTypedefedAsBOOL(PointeeTy)) {
Anders Carlsson85f9bce2007-10-29 05:01:08 +00002797 S += '*';
2798 return;
2799 }
Ted Kremenek6217b802009-07-29 21:53:49 +00002800 } else if (const RecordType *RTy = PointeeTy->getAs<RecordType>()) {
Steve Naroff9533a7f2009-07-22 17:14:51 +00002801 // GCC binary compat: Need to convert "struct objc_class *" to "#".
2802 if (RTy->getDecl()->getIdentifier() == &Idents.get("objc_class")) {
2803 S += '#';
2804 return;
2805 }
2806 // GCC binary compat: Need to convert "struct objc_object *" to "@".
2807 if (RTy->getDecl()->getIdentifier() == &Idents.get("objc_object")) {
2808 S += '@';
2809 return;
2810 }
2811 // fall through...
Anders Carlsson85f9bce2007-10-29 05:01:08 +00002812 }
Anders Carlsson85f9bce2007-10-29 05:01:08 +00002813 S += '^';
Fariborz Jahaniana1c033e2008-12-23 19:56:47 +00002814 getLegacyIntegralTypeEncoding(PointeeTy);
2815
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002816 getObjCEncodingForTypeImpl(PointeeTy, S, false, ExpandPointedToStructures,
Fariborz Jahanian43822ea2008-12-19 23:34:38 +00002817 NULL);
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002818 return;
2819 }
2820
2821 if (const ArrayType *AT =
2822 // Ignore type qualifiers etc.
2823 dyn_cast<ArrayType>(T->getCanonicalTypeInternal())) {
Anders Carlsson559a8332009-02-22 01:38:57 +00002824 if (isa<IncompleteArrayType>(AT)) {
2825 // Incomplete arrays are encoded as a pointer to the array element.
2826 S += '^';
2827
2828 getObjCEncodingForTypeImpl(AT->getElementType(), S,
2829 false, ExpandStructures, FD);
2830 } else {
2831 S += '[';
Anders Carlsson85f9bce2007-10-29 05:01:08 +00002832
Anders Carlsson559a8332009-02-22 01:38:57 +00002833 if (const ConstantArrayType *CAT = dyn_cast<ConstantArrayType>(AT))
2834 S += llvm::utostr(CAT->getSize().getZExtValue());
2835 else {
2836 //Variable length arrays are encoded as a regular array with 0 elements.
2837 assert(isa<VariableArrayType>(AT) && "Unknown array type!");
2838 S += '0';
2839 }
Anders Carlsson85f9bce2007-10-29 05:01:08 +00002840
Anders Carlsson559a8332009-02-22 01:38:57 +00002841 getObjCEncodingForTypeImpl(AT->getElementType(), S,
2842 false, ExpandStructures, FD);
2843 S += ']';
2844 }
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002845 return;
2846 }
2847
2848 if (T->getAsFunctionType()) {
Anders Carlssonc0a87b72007-10-30 00:06:20 +00002849 S += '?';
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002850 return;
2851 }
2852
Ted Kremenek6217b802009-07-29 21:53:49 +00002853 if (const RecordType *RTy = T->getAs<RecordType>()) {
Daniel Dunbar82a6cfb2008-10-17 07:30:50 +00002854 RecordDecl *RDecl = RTy->getDecl();
Daniel Dunbard96b35b2008-10-17 16:17:37 +00002855 S += RDecl->isUnion() ? '(' : '{';
Daniel Dunbar502a4a12008-10-17 06:22:57 +00002856 // Anonymous structures print as '?'
2857 if (const IdentifierInfo *II = RDecl->getIdentifier()) {
2858 S += II->getName();
2859 } else {
2860 S += '?';
2861 }
Daniel Dunbar0d504c12008-10-17 20:21:44 +00002862 if (ExpandStructures) {
Fariborz Jahanian7d6b46d2008-01-22 22:44:46 +00002863 S += '=';
Argyrios Kyrtzidis17945a02009-06-30 02:36:12 +00002864 for (RecordDecl::field_iterator Field = RDecl->field_begin(),
2865 FieldEnd = RDecl->field_end();
Douglas Gregor44b43212008-12-11 16:49:14 +00002866 Field != FieldEnd; ++Field) {
Fariborz Jahanian43822ea2008-12-19 23:34:38 +00002867 if (FD) {
Daniel Dunbard96b35b2008-10-17 16:17:37 +00002868 S += '"';
Douglas Gregor44b43212008-12-11 16:49:14 +00002869 S += Field->getNameAsString();
Daniel Dunbard96b35b2008-10-17 16:17:37 +00002870 S += '"';
2871 }
2872
2873 // Special case bit-fields.
Fariborz Jahanian43822ea2008-12-19 23:34:38 +00002874 if (Field->isBitField()) {
2875 getObjCEncodingForTypeImpl(Field->getType(), S, false, true,
2876 (*Field));
Daniel Dunbard96b35b2008-10-17 16:17:37 +00002877 } else {
Fariborz Jahaniana1c033e2008-12-23 19:56:47 +00002878 QualType qt = Field->getType();
2879 getLegacyIntegralTypeEncoding(qt);
2880 getObjCEncodingForTypeImpl(qt, S, false, true,
Fariborz Jahanian43822ea2008-12-19 23:34:38 +00002881 FD);
Daniel Dunbard96b35b2008-10-17 16:17:37 +00002882 }
Fariborz Jahanian7d6b46d2008-01-22 22:44:46 +00002883 }
Fariborz Jahanian6de88a82007-11-13 23:21:38 +00002884 }
Daniel Dunbard96b35b2008-10-17 16:17:37 +00002885 S += RDecl->isUnion() ? ')' : '}';
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002886 return;
2887 }
2888
2889 if (T->isEnumeralType()) {
Fariborz Jahanian8b4bf902009-01-13 01:18:13 +00002890 if (FD && FD->isBitField())
2891 EncodeBitField(this, S, FD);
2892 else
2893 S += 'i';
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002894 return;
2895 }
2896
2897 if (T->isBlockPointerType()) {
Steve Naroff21a98b12009-02-02 18:24:29 +00002898 S += "@?"; // Unlike a pointer-to-function, which is "^?".
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002899 return;
2900 }
2901
2902 if (T->isObjCInterfaceType()) {
Fariborz Jahanian43822ea2008-12-19 23:34:38 +00002903 // @encode(class_name)
2904 ObjCInterfaceDecl *OI = T->getAsObjCInterfaceType()->getDecl();
2905 S += '{';
2906 const IdentifierInfo *II = OI->getIdentifier();
2907 S += II->getName();
2908 S += '=';
Chris Lattnerf1690852009-03-31 08:48:01 +00002909 llvm::SmallVector<FieldDecl*, 32> RecFields;
Fariborz Jahanian43822ea2008-12-19 23:34:38 +00002910 CollectObjCIvars(OI, RecFields);
Chris Lattnerf1690852009-03-31 08:48:01 +00002911 for (unsigned i = 0, e = RecFields.size(); i != e; ++i) {
Fariborz Jahanian43822ea2008-12-19 23:34:38 +00002912 if (RecFields[i]->isBitField())
2913 getObjCEncodingForTypeImpl(RecFields[i]->getType(), S, false, true,
2914 RecFields[i]);
2915 else
2916 getObjCEncodingForTypeImpl(RecFields[i]->getType(), S, false, true,
2917 FD);
2918 }
2919 S += '}';
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002920 return;
Fariborz Jahanian43822ea2008-12-19 23:34:38 +00002921 }
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002922
2923 if (const ObjCObjectPointerType *OPT = T->getAsObjCObjectPointerType()) {
Steve Naroff14108da2009-07-10 23:34:53 +00002924 if (OPT->isObjCIdType()) {
2925 S += '@';
2926 return;
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002927 }
2928
2929 if (OPT->isObjCClassType()) {
Steve Naroff14108da2009-07-10 23:34:53 +00002930 S += '#';
2931 return;
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002932 }
2933
2934 if (OPT->isObjCQualifiedIdType()) {
Steve Naroff14108da2009-07-10 23:34:53 +00002935 getObjCEncodingForTypeImpl(getObjCIdType(), S,
2936 ExpandPointedToStructures,
2937 ExpandStructures, FD);
2938 if (FD || EncodingProperty) {
2939 // Note that we do extended encoding of protocol qualifer list
2940 // Only when doing ivar or property encoding.
Steve Naroff14108da2009-07-10 23:34:53 +00002941 S += '"';
Steve Naroff67ef8ea2009-07-20 17:56:53 +00002942 for (ObjCObjectPointerType::qual_iterator I = OPT->qual_begin(),
2943 E = OPT->qual_end(); I != E; ++I) {
Steve Naroff14108da2009-07-10 23:34:53 +00002944 S += '<';
2945 S += (*I)->getNameAsString();
2946 S += '>';
2947 }
2948 S += '"';
2949 }
2950 return;
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002951 }
2952
2953 QualType PointeeTy = OPT->getPointeeType();
2954 if (!EncodingProperty &&
2955 isa<TypedefType>(PointeeTy.getTypePtr())) {
2956 // Another historical/compatibility reason.
2957 // We encode the underlying type which comes out as
2958 // {...};
2959 S += '^';
2960 getObjCEncodingForTypeImpl(PointeeTy, S,
2961 false, ExpandPointedToStructures,
2962 NULL);
Steve Naroff14108da2009-07-10 23:34:53 +00002963 return;
2964 }
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002965
2966 S += '@';
2967 if (FD || EncodingProperty) {
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002968 S += '"';
Steve Naroff67ef8ea2009-07-20 17:56:53 +00002969 S += OPT->getInterfaceDecl()->getNameAsCString();
2970 for (ObjCObjectPointerType::qual_iterator I = OPT->qual_begin(),
2971 E = OPT->qual_end(); I != E; ++I) {
Chris Lattnerce7b38c2009-07-13 00:10:46 +00002972 S += '<';
2973 S += (*I)->getNameAsString();
2974 S += '>';
2975 }
2976 S += '"';
2977 }
2978 return;
2979 }
2980
2981 assert(0 && "@encode for type not implemented!");
Anders Carlsson85f9bce2007-10-29 05:01:08 +00002982}
2983
Ted Kremeneka526c5c2008-01-07 19:49:32 +00002984void ASTContext::getObjCEncodingForTypeQualifier(Decl::ObjCDeclQualifier QT,
Fariborz Jahanianecb01e62007-11-01 17:18:37 +00002985 std::string& S) const {
2986 if (QT & Decl::OBJC_TQ_In)
2987 S += 'n';
2988 if (QT & Decl::OBJC_TQ_Inout)
2989 S += 'N';
2990 if (QT & Decl::OBJC_TQ_Out)
2991 S += 'o';
2992 if (QT & Decl::OBJC_TQ_Bycopy)
2993 S += 'O';
2994 if (QT & Decl::OBJC_TQ_Byref)
2995 S += 'R';
2996 if (QT & Decl::OBJC_TQ_Oneway)
2997 S += 'V';
2998}
2999
Chris Lattnerce7b38c2009-07-13 00:10:46 +00003000void ASTContext::setBuiltinVaListType(QualType T) {
Anders Carlssonb2cf3572007-10-11 01:00:40 +00003001 assert(BuiltinVaListType.isNull() && "__builtin_va_list type already set!");
3002
3003 BuiltinVaListType = T;
3004}
3005
Chris Lattnerce7b38c2009-07-13 00:10:46 +00003006void ASTContext::setObjCIdType(QualType T) {
Steve Naroffde2e22d2009-07-15 18:40:39 +00003007 ObjCIdTypedefType = T;
Steve Naroff7e219e42007-10-15 14:41:52 +00003008}
3009
Chris Lattnerce7b38c2009-07-13 00:10:46 +00003010void ASTContext::setObjCSelType(QualType T) {
Douglas Gregor319ac892009-04-23 22:29:11 +00003011 ObjCSelType = T;
3012
3013 const TypedefType *TT = T->getAsTypedefType();
3014 if (!TT)
3015 return;
3016 TypedefDecl *TD = TT->getDecl();
Fariborz Jahanianb62f6812007-10-16 20:40:23 +00003017
3018 // typedef struct objc_selector *SEL;
Ted Kremenek6217b802009-07-29 21:53:49 +00003019 const PointerType *ptr = TD->getUnderlyingType()->getAs<PointerType>();
Fariborz Jahanianc55a2402009-01-16 19:58:32 +00003020 if (!ptr)
3021 return;
Fariborz Jahanianb62f6812007-10-16 20:40:23 +00003022 const RecordType *rec = ptr->getPointeeType()->getAsStructureType();
Fariborz Jahanianc55a2402009-01-16 19:58:32 +00003023 if (!rec)
3024 return;
Fariborz Jahanianb62f6812007-10-16 20:40:23 +00003025 SelStructType = rec;
3026}
3027
Chris Lattnerce7b38c2009-07-13 00:10:46 +00003028void ASTContext::setObjCProtoType(QualType QT) {
Ted Kremeneka526c5c2008-01-07 19:49:32 +00003029 ObjCProtoType = QT;
Fariborz Jahanian390d50a2007-10-17 16:58:11 +00003030}
3031
Chris Lattnerce7b38c2009-07-13 00:10:46 +00003032void ASTContext::setObjCClassType(QualType T) {
Steve Naroffde2e22d2009-07-15 18:40:39 +00003033 ObjCClassTypedefType = T;
Anders Carlsson8baaca52007-10-31 02:53:19 +00003034}
3035
Ted Kremeneka526c5c2008-01-07 19:49:32 +00003036void ASTContext::setObjCConstantStringInterface(ObjCInterfaceDecl *Decl) {
3037 assert(ObjCConstantStringType.isNull() &&
Steve Naroff21988912007-10-15 23:35:17 +00003038 "'NSConstantString' type already set!");
3039
Ted Kremeneka526c5c2008-01-07 19:49:32 +00003040 ObjCConstantStringType = getObjCInterfaceType(Decl);
Steve Naroff21988912007-10-15 23:35:17 +00003041}
3042
Douglas Gregor7532dc62009-03-30 22:58:21 +00003043/// \brief Retrieve the template name that represents a qualified
3044/// template name such as \c std::vector.
3045TemplateName ASTContext::getQualifiedTemplateName(NestedNameSpecifier *NNS,
3046 bool TemplateKeyword,
3047 TemplateDecl *Template) {
3048 llvm::FoldingSetNodeID ID;
3049 QualifiedTemplateName::Profile(ID, NNS, TemplateKeyword, Template);
3050
3051 void *InsertPos = 0;
3052 QualifiedTemplateName *QTN =
3053 QualifiedTemplateNames.FindNodeOrInsertPos(ID, InsertPos);
3054 if (!QTN) {
3055 QTN = new (*this,4) QualifiedTemplateName(NNS, TemplateKeyword, Template);
3056 QualifiedTemplateNames.InsertNode(QTN, InsertPos);
3057 }
3058
3059 return TemplateName(QTN);
3060}
3061
Douglas Gregord99cbe62009-07-29 18:26:50 +00003062/// \brief Retrieve the template name that represents a qualified
3063/// template name such as \c std::vector.
3064TemplateName ASTContext::getQualifiedTemplateName(NestedNameSpecifier *NNS,
3065 bool TemplateKeyword,
3066 OverloadedFunctionDecl *Template) {
3067 llvm::FoldingSetNodeID ID;
3068 QualifiedTemplateName::Profile(ID, NNS, TemplateKeyword, Template);
3069
3070 void *InsertPos = 0;
3071 QualifiedTemplateName *QTN =
3072 QualifiedTemplateNames.FindNodeOrInsertPos(ID, InsertPos);
3073 if (!QTN) {
3074 QTN = new (*this,4) QualifiedTemplateName(NNS, TemplateKeyword, Template);
3075 QualifiedTemplateNames.InsertNode(QTN, InsertPos);
3076 }
3077
3078 return TemplateName(QTN);
3079}
3080
Douglas Gregor7532dc62009-03-30 22:58:21 +00003081/// \brief Retrieve the template name that represents a dependent
3082/// template name such as \c MetaFun::template apply.
3083TemplateName ASTContext::getDependentTemplateName(NestedNameSpecifier *NNS,
3084 const IdentifierInfo *Name) {
3085 assert(NNS->isDependent() && "Nested name specifier must be dependent");
3086
3087 llvm::FoldingSetNodeID ID;
3088 DependentTemplateName::Profile(ID, NNS, Name);
3089
3090 void *InsertPos = 0;
3091 DependentTemplateName *QTN =
3092 DependentTemplateNames.FindNodeOrInsertPos(ID, InsertPos);
3093
3094 if (QTN)
3095 return TemplateName(QTN);
3096
3097 NestedNameSpecifier *CanonNNS = getCanonicalNestedNameSpecifier(NNS);
3098 if (CanonNNS == NNS) {
3099 QTN = new (*this,4) DependentTemplateName(NNS, Name);
3100 } else {
3101 TemplateName Canon = getDependentTemplateName(CanonNNS, Name);
3102 QTN = new (*this,4) DependentTemplateName(NNS, Name, Canon);
3103 }
3104
3105 DependentTemplateNames.InsertNode(QTN, InsertPos);
3106 return TemplateName(QTN);
3107}
3108
Douglas Gregorb4e66d52008-11-03 14:12:49 +00003109/// getFromTargetType - Given one of the integer types provided by
Douglas Gregord9341122008-11-03 15:57:00 +00003110/// TargetInfo, produce the corresponding type. The unsigned @p Type
3111/// is actually a value of type @c TargetInfo::IntType.
3112QualType ASTContext::getFromTargetType(unsigned Type) const {
Douglas Gregorb4e66d52008-11-03 14:12:49 +00003113 switch (Type) {
3114 case TargetInfo::NoInt: return QualType();
3115 case TargetInfo::SignedShort: return ShortTy;
3116 case TargetInfo::UnsignedShort: return UnsignedShortTy;
3117 case TargetInfo::SignedInt: return IntTy;
3118 case TargetInfo::UnsignedInt: return UnsignedIntTy;
3119 case TargetInfo::SignedLong: return LongTy;
3120 case TargetInfo::UnsignedLong: return UnsignedLongTy;
3121 case TargetInfo::SignedLongLong: return LongLongTy;
3122 case TargetInfo::UnsignedLongLong: return UnsignedLongLongTy;
3123 }
3124
3125 assert(false && "Unhandled TargetInfo::IntType value");
Daniel Dunbarb3ac5432008-11-11 01:16:00 +00003126 return QualType();
Douglas Gregorb4e66d52008-11-03 14:12:49 +00003127}
Ted Kremenekb6ccaac2008-07-24 23:58:27 +00003128
3129//===----------------------------------------------------------------------===//
3130// Type Predicates.
3131//===----------------------------------------------------------------------===//
3132
Fariborz Jahanianfa23c1d2009-01-13 23:34:40 +00003133/// isObjCNSObjectType - Return true if this is an NSObject object using
3134/// NSObject attribute on a c-style pointer type.
3135/// FIXME - Make it work directly on types.
Steve Narofff4954562009-07-16 15:41:00 +00003136/// FIXME: Move to Type.
Fariborz Jahanianfa23c1d2009-01-13 23:34:40 +00003137///
3138bool ASTContext::isObjCNSObjectType(QualType Ty) const {
3139 if (TypedefType *TDT = dyn_cast<TypedefType>(Ty)) {
3140 if (TypedefDecl *TD = TDT->getDecl())
Argyrios Kyrtzidis40b598e2009-06-30 02:34:44 +00003141 if (TD->getAttr<ObjCNSObjectAttr>())
Fariborz Jahanianfa23c1d2009-01-13 23:34:40 +00003142 return true;
3143 }
3144 return false;
3145}
3146
Fariborz Jahanian4fd83ea2009-02-18 21:49:28 +00003147/// getObjCGCAttr - Returns one of GCNone, Weak or Strong objc's
3148/// garbage collection attribute.
3149///
3150QualType::GCAttrTypes ASTContext::getObjCGCAttrKind(const QualType &Ty) const {
Chris Lattnerb7d25532009-02-18 22:53:11 +00003151 QualType::GCAttrTypes GCAttrs = QualType::GCNone;
Fariborz Jahanian4fd83ea2009-02-18 21:49:28 +00003152 if (getLangOptions().ObjC1 &&
3153 getLangOptions().getGCMode() != LangOptions::NonGC) {
Chris Lattnerb7d25532009-02-18 22:53:11 +00003154 GCAttrs = Ty.getObjCGCAttr();
Fariborz Jahanian4fd83ea2009-02-18 21:49:28 +00003155 // Default behavious under objective-c's gc is for objective-c pointers
Fariborz Jahaniana223cca2009-02-19 23:36:06 +00003156 // (or pointers to them) be treated as though they were declared
3157 // as __strong.
3158 if (GCAttrs == QualType::GCNone) {
Steve Narofff4954562009-07-16 15:41:00 +00003159 if (Ty->isObjCObjectPointerType())
Fariborz Jahaniana223cca2009-02-19 23:36:06 +00003160 GCAttrs = QualType::Strong;
3161 else if (Ty->isPointerType())
Ted Kremenek6217b802009-07-29 21:53:49 +00003162 return getObjCGCAttrKind(Ty->getAs<PointerType>()->getPointeeType());
Fariborz Jahaniana223cca2009-02-19 23:36:06 +00003163 }
Fariborz Jahanianc2112182009-04-11 00:00:54 +00003164 // Non-pointers have none gc'able attribute regardless of the attribute
3165 // set on them.
Steve Narofff4954562009-07-16 15:41:00 +00003166 else if (!Ty->isAnyPointerType() && !Ty->isBlockPointerType())
Fariborz Jahanianc2112182009-04-11 00:00:54 +00003167 return QualType::GCNone;
Fariborz Jahanian4fd83ea2009-02-18 21:49:28 +00003168 }
Chris Lattnerb7d25532009-02-18 22:53:11 +00003169 return GCAttrs;
Fariborz Jahanian4fd83ea2009-02-18 21:49:28 +00003170}
3171
Chris Lattner6ac46a42008-04-07 06:51:04 +00003172//===----------------------------------------------------------------------===//
3173// Type Compatibility Testing
3174//===----------------------------------------------------------------------===//
Chris Lattner770951b2007-11-01 05:03:41 +00003175
Chris Lattner6ac46a42008-04-07 06:51:04 +00003176/// areCompatVectorTypes - Return true if the two specified vector types are
3177/// compatible.
3178static bool areCompatVectorTypes(const VectorType *LHS,
3179 const VectorType *RHS) {
3180 assert(LHS->isCanonical() && RHS->isCanonical());
3181 return LHS->getElementType() == RHS->getElementType() &&
Chris Lattner61710852008-10-05 17:34:18 +00003182 LHS->getNumElements() == RHS->getNumElements();
Chris Lattner6ac46a42008-04-07 06:51:04 +00003183}
3184
Steve Naroff4084c302009-07-23 01:01:38 +00003185//===----------------------------------------------------------------------===//
3186// ObjCQualifiedIdTypesAreCompatible - Compatibility testing for qualified id's.
3187//===----------------------------------------------------------------------===//
3188
3189/// ProtocolCompatibleWithProtocol - return 'true' if 'lProto' is in the
3190/// inheritance hierarchy of 'rProto'.
3191static bool ProtocolCompatibleWithProtocol(ObjCProtocolDecl *lProto,
3192 ObjCProtocolDecl *rProto) {
3193 if (lProto == rProto)
3194 return true;
3195 for (ObjCProtocolDecl::protocol_iterator PI = rProto->protocol_begin(),
3196 E = rProto->protocol_end(); PI != E; ++PI)
3197 if (ProtocolCompatibleWithProtocol(lProto, *PI))
3198 return true;
3199 return false;
3200}
3201
3202/// ClassImplementsProtocol - Checks that 'lProto' protocol
3203/// has been implemented in IDecl class, its super class or categories (if
3204/// lookupCategory is true).
3205static bool ClassImplementsProtocol(ObjCProtocolDecl *lProto,
3206 ObjCInterfaceDecl *IDecl,
3207 bool lookupCategory,
3208 bool RHSIsQualifiedID = false) {
3209
3210 // 1st, look up the class.
3211 const ObjCList<ObjCProtocolDecl> &Protocols =
3212 IDecl->getReferencedProtocols();
3213
3214 for (ObjCList<ObjCProtocolDecl>::iterator PI = Protocols.begin(),
3215 E = Protocols.end(); PI != E; ++PI) {
3216 if (ProtocolCompatibleWithProtocol(lProto, *PI))
3217 return true;
3218 // This is dubious and is added to be compatible with gcc. In gcc, it is
3219 // also allowed assigning a protocol-qualified 'id' type to a LHS object
3220 // when protocol in qualified LHS is in list of protocols in the rhs 'id'
3221 // object. This IMO, should be a bug.
3222 // FIXME: Treat this as an extension, and flag this as an error when GCC
3223 // extensions are not enabled.
3224 if (RHSIsQualifiedID && ProtocolCompatibleWithProtocol(*PI, lProto))
3225 return true;
3226 }
3227
3228 // 2nd, look up the category.
3229 if (lookupCategory)
3230 for (ObjCCategoryDecl *CDecl = IDecl->getCategoryList(); CDecl;
3231 CDecl = CDecl->getNextClassCategory()) {
3232 for (ObjCCategoryDecl::protocol_iterator PI = CDecl->protocol_begin(),
3233 E = CDecl->protocol_end(); PI != E; ++PI)
3234 if (ProtocolCompatibleWithProtocol(lProto, *PI))
3235 return true;
3236 }
3237
3238 // 3rd, look up the super class(s)
3239 if (IDecl->getSuperClass())
3240 return
3241 ClassImplementsProtocol(lProto, IDecl->getSuperClass(), lookupCategory,
3242 RHSIsQualifiedID);
3243
3244 return false;
3245}
3246
3247/// QualifiedIdConformsQualifiedId - compare id<p,...> with id<p1,...>
3248/// return true if lhs's protocols conform to rhs's protocol; false
3249/// otherwise.
3250bool ASTContext::QualifiedIdConformsQualifiedId(QualType lhs, QualType rhs) {
3251 if (lhs->isObjCQualifiedIdType() && rhs->isObjCQualifiedIdType())
3252 return ObjCQualifiedIdTypesAreCompatible(lhs, rhs, false);
3253 return false;
3254}
3255
3256/// ObjCQualifiedIdTypesAreCompatible - We know that one of lhs/rhs is an
3257/// ObjCQualifiedIDType.
3258bool ASTContext::ObjCQualifiedIdTypesAreCompatible(QualType lhs, QualType rhs,
3259 bool compare) {
3260 // Allow id<P..> and an 'id' or void* type in all cases.
3261 if (lhs->isVoidPointerType() ||
3262 lhs->isObjCIdType() || lhs->isObjCClassType())
3263 return true;
3264 else if (rhs->isVoidPointerType() ||
3265 rhs->isObjCIdType() || rhs->isObjCClassType())
3266 return true;
3267
3268 if (const ObjCObjectPointerType *lhsQID = lhs->getAsObjCQualifiedIdType()) {
3269 const ObjCObjectPointerType *rhsOPT = rhs->getAsObjCObjectPointerType();
3270
3271 if (!rhsOPT) return false;
3272
3273 if (rhsOPT->qual_empty()) {
3274 // If the RHS is a unqualified interface pointer "NSString*",
3275 // make sure we check the class hierarchy.
3276 if (ObjCInterfaceDecl *rhsID = rhsOPT->getInterfaceDecl()) {
3277 for (ObjCObjectPointerType::qual_iterator I = lhsQID->qual_begin(),
3278 E = lhsQID->qual_end(); I != E; ++I) {
3279 // when comparing an id<P> on lhs with a static type on rhs,
3280 // see if static class implements all of id's protocols, directly or
3281 // through its super class and categories.
3282 if (!ClassImplementsProtocol(*I, rhsID, true))
3283 return false;
3284 }
3285 }
3286 // If there are no qualifiers and no interface, we have an 'id'.
3287 return true;
3288 }
3289 // Both the right and left sides have qualifiers.
3290 for (ObjCObjectPointerType::qual_iterator I = lhsQID->qual_begin(),
3291 E = lhsQID->qual_end(); I != E; ++I) {
3292 ObjCProtocolDecl *lhsProto = *I;
3293 bool match = false;
3294
3295 // when comparing an id<P> on lhs with a static type on rhs,
3296 // see if static class implements all of id's protocols, directly or
3297 // through its super class and categories.
3298 for (ObjCObjectPointerType::qual_iterator J = rhsOPT->qual_begin(),
3299 E = rhsOPT->qual_end(); J != E; ++J) {
3300 ObjCProtocolDecl *rhsProto = *J;
3301 if (ProtocolCompatibleWithProtocol(lhsProto, rhsProto) ||
3302 (compare && ProtocolCompatibleWithProtocol(rhsProto, lhsProto))) {
3303 match = true;
3304 break;
3305 }
3306 }
3307 // If the RHS is a qualified interface pointer "NSString<P>*",
3308 // make sure we check the class hierarchy.
3309 if (ObjCInterfaceDecl *rhsID = rhsOPT->getInterfaceDecl()) {
3310 for (ObjCObjectPointerType::qual_iterator I = lhsQID->qual_begin(),
3311 E = lhsQID->qual_end(); I != E; ++I) {
3312 // when comparing an id<P> on lhs with a static type on rhs,
3313 // see if static class implements all of id's protocols, directly or
3314 // through its super class and categories.
3315 if (ClassImplementsProtocol(*I, rhsID, true)) {
3316 match = true;
3317 break;
3318 }
3319 }
3320 }
3321 if (!match)
3322 return false;
3323 }
3324
3325 return true;
3326 }
3327
3328 const ObjCObjectPointerType *rhsQID = rhs->getAsObjCQualifiedIdType();
3329 assert(rhsQID && "One of the LHS/RHS should be id<x>");
3330
3331 if (const ObjCObjectPointerType *lhsOPT =
3332 lhs->getAsObjCInterfacePointerType()) {
3333 if (lhsOPT->qual_empty()) {
3334 bool match = false;
3335 if (ObjCInterfaceDecl *lhsID = lhsOPT->getInterfaceDecl()) {
3336 for (ObjCObjectPointerType::qual_iterator I = rhsQID->qual_begin(),
3337 E = rhsQID->qual_end(); I != E; ++I) {
3338 // when comparing an id<P> on lhs with a static type on rhs,
3339 // see if static class implements all of id's protocols, directly or
3340 // through its super class and categories.
3341 if (ClassImplementsProtocol(*I, lhsID, true)) {
3342 match = true;
3343 break;
3344 }
3345 }
3346 if (!match)
3347 return false;
3348 }
3349 return true;
3350 }
3351 // Both the right and left sides have qualifiers.
3352 for (ObjCObjectPointerType::qual_iterator I = lhsOPT->qual_begin(),
3353 E = lhsOPT->qual_end(); I != E; ++I) {
3354 ObjCProtocolDecl *lhsProto = *I;
3355 bool match = false;
3356
3357 // when comparing an id<P> on lhs with a static type on rhs,
3358 // see if static class implements all of id's protocols, directly or
3359 // through its super class and categories.
3360 for (ObjCObjectPointerType::qual_iterator J = rhsQID->qual_begin(),
3361 E = rhsQID->qual_end(); J != E; ++J) {
3362 ObjCProtocolDecl *rhsProto = *J;
3363 if (ProtocolCompatibleWithProtocol(lhsProto, rhsProto) ||
3364 (compare && ProtocolCompatibleWithProtocol(rhsProto, lhsProto))) {
3365 match = true;
3366 break;
3367 }
3368 }
3369 if (!match)
3370 return false;
3371 }
3372 return true;
3373 }
3374 return false;
3375}
3376
Eli Friedman3d815e72008-08-22 00:56:42 +00003377/// canAssignObjCInterfaces - Return true if the two interface types are
Chris Lattner6ac46a42008-04-07 06:51:04 +00003378/// compatible for assignment from RHS to LHS. This handles validation of any
3379/// protocol qualifiers on the LHS or RHS.
3380///
Steve Naroff14108da2009-07-10 23:34:53 +00003381bool ASTContext::canAssignObjCInterfaces(const ObjCObjectPointerType *LHSOPT,
3382 const ObjCObjectPointerType *RHSOPT) {
Steve Naroffde2e22d2009-07-15 18:40:39 +00003383 // If either type represents the built-in 'id' or 'Class' types, return true.
3384 if (LHSOPT->isObjCBuiltinType() || RHSOPT->isObjCBuiltinType())
Steve Naroff14108da2009-07-10 23:34:53 +00003385 return true;
3386
Steve Naroff4084c302009-07-23 01:01:38 +00003387 if (LHSOPT->isObjCQualifiedIdType() || RHSOPT->isObjCQualifiedIdType())
3388 return ObjCQualifiedIdTypesAreCompatible(QualType(LHSOPT,0),
3389 QualType(RHSOPT,0),
3390 false);
3391
Steve Naroff14108da2009-07-10 23:34:53 +00003392 const ObjCInterfaceType* LHS = LHSOPT->getInterfaceType();
3393 const ObjCInterfaceType* RHS = RHSOPT->getInterfaceType();
Steve Naroff4084c302009-07-23 01:01:38 +00003394 if (LHS && RHS) // We have 2 user-defined types.
3395 return canAssignObjCInterfaces(LHS, RHS);
3396
3397 return false;
Steve Naroff14108da2009-07-10 23:34:53 +00003398}
3399
Eli Friedman3d815e72008-08-22 00:56:42 +00003400bool ASTContext::canAssignObjCInterfaces(const ObjCInterfaceType *LHS,
3401 const ObjCInterfaceType *RHS) {
Chris Lattner6ac46a42008-04-07 06:51:04 +00003402 // Verify that the base decls are compatible: the RHS must be a subclass of
3403 // the LHS.
3404 if (!LHS->getDecl()->isSuperClassOf(RHS->getDecl()))
3405 return false;
3406
3407 // RHS must have a superset of the protocols in the LHS. If the LHS is not
3408 // protocol qualified at all, then we are good.
Steve Naroffc15cb2a2009-07-18 15:33:26 +00003409 if (LHS->getNumProtocols() == 0)
Chris Lattner6ac46a42008-04-07 06:51:04 +00003410 return true;
3411
3412 // Okay, we know the LHS has protocol qualifiers. If the RHS doesn't, then it
3413 // isn't a superset.
Steve Naroffc15cb2a2009-07-18 15:33:26 +00003414 if (RHS->getNumProtocols() == 0)
Chris Lattner6ac46a42008-04-07 06:51:04 +00003415 return true; // FIXME: should return false!
3416
Steve Naroffc15cb2a2009-07-18 15:33:26 +00003417 for (ObjCInterfaceType::qual_iterator LHSPI = LHS->qual_begin(),
3418 LHSPE = LHS->qual_end();
Steve Naroff91b0b0c2009-03-01 16:12:44 +00003419 LHSPI != LHSPE; LHSPI++) {
3420 bool RHSImplementsProtocol = false;
3421
3422 // If the RHS doesn't implement the protocol on the left, the types
3423 // are incompatible.
Steve Naroffc15cb2a2009-07-18 15:33:26 +00003424 for (ObjCInterfaceType::qual_iterator RHSPI = RHS->qual_begin(),
Steve Naroff4084c302009-07-23 01:01:38 +00003425 RHSPE = RHS->qual_end();
Steve Naroff8f167562009-07-16 16:21:02 +00003426 RHSPI != RHSPE; RHSPI++) {
3427 if ((*RHSPI)->lookupProtocolNamed((*LHSPI)->getIdentifier())) {
Steve Naroff91b0b0c2009-03-01 16:12:44 +00003428 RHSImplementsProtocol = true;
Steve Naroff8f167562009-07-16 16:21:02 +00003429 break;
3430 }
Steve Naroff91b0b0c2009-03-01 16:12:44 +00003431 }
3432 // FIXME: For better diagnostics, consider passing back the protocol name.
3433 if (!RHSImplementsProtocol)
3434 return false;
Chris Lattner6ac46a42008-04-07 06:51:04 +00003435 }
Steve Naroff91b0b0c2009-03-01 16:12:44 +00003436 // The RHS implements all protocols listed on the LHS.
3437 return true;
Chris Lattner6ac46a42008-04-07 06:51:04 +00003438}
3439
Steve Naroff389bf462009-02-12 17:52:19 +00003440bool ASTContext::areComparableObjCPointerTypes(QualType LHS, QualType RHS) {
3441 // get the "pointed to" types
Steve Naroff14108da2009-07-10 23:34:53 +00003442 const ObjCObjectPointerType *LHSOPT = LHS->getAsObjCObjectPointerType();
3443 const ObjCObjectPointerType *RHSOPT = RHS->getAsObjCObjectPointerType();
Steve Naroff389bf462009-02-12 17:52:19 +00003444
Steve Naroff14108da2009-07-10 23:34:53 +00003445 if (!LHSOPT || !RHSOPT)
Steve Naroff389bf462009-02-12 17:52:19 +00003446 return false;
Steve Naroff14108da2009-07-10 23:34:53 +00003447
3448 return canAssignObjCInterfaces(LHSOPT, RHSOPT) ||
3449 canAssignObjCInterfaces(RHSOPT, LHSOPT);
Steve Naroff389bf462009-02-12 17:52:19 +00003450}
3451
Steve Naroffec0550f2007-10-15 20:41:53 +00003452/// typesAreCompatible - C99 6.7.3p9: For two qualified types to be compatible,
3453/// both shall have the identically qualified version of a compatible type.
3454/// C99 6.2.7p1: Two types have compatible types if their types are the
3455/// same. See 6.7.[2,3,5] for additional rules.
Eli Friedman3d815e72008-08-22 00:56:42 +00003456bool ASTContext::typesAreCompatible(QualType LHS, QualType RHS) {
3457 return !mergeTypes(LHS, RHS).isNull();
3458}
3459
3460QualType ASTContext::mergeFunctionTypes(QualType lhs, QualType rhs) {
3461 const FunctionType *lbase = lhs->getAsFunctionType();
3462 const FunctionType *rbase = rhs->getAsFunctionType();
Douglas Gregor72564e72009-02-26 23:50:07 +00003463 const FunctionProtoType *lproto = dyn_cast<FunctionProtoType>(lbase);
3464 const FunctionProtoType *rproto = dyn_cast<FunctionProtoType>(rbase);
Eli Friedman3d815e72008-08-22 00:56:42 +00003465 bool allLTypes = true;
3466 bool allRTypes = true;
3467
3468 // Check return type
3469 QualType retType = mergeTypes(lbase->getResultType(), rbase->getResultType());
3470 if (retType.isNull()) return QualType();
Chris Lattner61710852008-10-05 17:34:18 +00003471 if (getCanonicalType(retType) != getCanonicalType(lbase->getResultType()))
3472 allLTypes = false;
3473 if (getCanonicalType(retType) != getCanonicalType(rbase->getResultType()))
3474 allRTypes = false;
Mike Stump6dcbc292009-07-25 23:24:03 +00003475 // FIXME: double check this
Mike Stump24556362009-07-25 21:26:53 +00003476 bool NoReturn = lbase->getNoReturnAttr() || rbase->getNoReturnAttr();
3477 if (NoReturn != lbase->getNoReturnAttr())
3478 allLTypes = false;
3479 if (NoReturn != rbase->getNoReturnAttr())
3480 allRTypes = false;
3481
Eli Friedman3d815e72008-08-22 00:56:42 +00003482 if (lproto && rproto) { // two C99 style function prototypes
Sebastian Redl465226e2009-05-27 22:11:52 +00003483 assert(!lproto->hasExceptionSpec() && !rproto->hasExceptionSpec() &&
3484 "C++ shouldn't be here");
Eli Friedman3d815e72008-08-22 00:56:42 +00003485 unsigned lproto_nargs = lproto->getNumArgs();
3486 unsigned rproto_nargs = rproto->getNumArgs();
3487
3488 // Compatible functions must have the same number of arguments
3489 if (lproto_nargs != rproto_nargs)
3490 return QualType();
3491
3492 // Variadic and non-variadic functions aren't compatible
3493 if (lproto->isVariadic() != rproto->isVariadic())
3494 return QualType();
3495
Argyrios Kyrtzidis7fb5e482008-10-26 16:43:14 +00003496 if (lproto->getTypeQuals() != rproto->getTypeQuals())
3497 return QualType();
3498
Eli Friedman3d815e72008-08-22 00:56:42 +00003499 // Check argument compatibility
3500 llvm::SmallVector<QualType, 10> types;
3501 for (unsigned i = 0; i < lproto_nargs; i++) {
3502 QualType largtype = lproto->getArgType(i).getUnqualifiedType();
3503 QualType rargtype = rproto->getArgType(i).getUnqualifiedType();
3504 QualType argtype = mergeTypes(largtype, rargtype);
3505 if (argtype.isNull()) return QualType();
3506 types.push_back(argtype);
Chris Lattner61710852008-10-05 17:34:18 +00003507 if (getCanonicalType(argtype) != getCanonicalType(largtype))
3508 allLTypes = false;
3509 if (getCanonicalType(argtype) != getCanonicalType(rargtype))
3510 allRTypes = false;
Eli Friedman3d815e72008-08-22 00:56:42 +00003511 }
3512 if (allLTypes) return lhs;
3513 if (allRTypes) return rhs;
3514 return getFunctionType(retType, types.begin(), types.size(),
Mike Stump24556362009-07-25 21:26:53 +00003515 lproto->isVariadic(), lproto->getTypeQuals(),
3516 NoReturn);
Eli Friedman3d815e72008-08-22 00:56:42 +00003517 }
3518
3519 if (lproto) allRTypes = false;
3520 if (rproto) allLTypes = false;
3521
Douglas Gregor72564e72009-02-26 23:50:07 +00003522 const FunctionProtoType *proto = lproto ? lproto : rproto;
Eli Friedman3d815e72008-08-22 00:56:42 +00003523 if (proto) {
Sebastian Redl465226e2009-05-27 22:11:52 +00003524 assert(!proto->hasExceptionSpec() && "C++ shouldn't be here");
Eli Friedman3d815e72008-08-22 00:56:42 +00003525 if (proto->isVariadic()) return QualType();
3526 // Check that the types are compatible with the types that
3527 // would result from default argument promotions (C99 6.7.5.3p15).
3528 // The only types actually affected are promotable integer
3529 // types and floats, which would be passed as a different
3530 // type depending on whether the prototype is visible.
3531 unsigned proto_nargs = proto->getNumArgs();
3532 for (unsigned i = 0; i < proto_nargs; ++i) {
3533 QualType argTy = proto->getArgType(i);
3534 if (argTy->isPromotableIntegerType() ||
3535 getCanonicalType(argTy).getUnqualifiedType() == FloatTy)
3536 return QualType();
3537 }
3538
3539 if (allLTypes) return lhs;
3540 if (allRTypes) return rhs;
3541 return getFunctionType(retType, proto->arg_type_begin(),
Mike Stump2d3c1912009-07-27 00:44:23 +00003542 proto->getNumArgs(), proto->isVariadic(),
3543 proto->getTypeQuals(), NoReturn);
Eli Friedman3d815e72008-08-22 00:56:42 +00003544 }
3545
3546 if (allLTypes) return lhs;
3547 if (allRTypes) return rhs;
Mike Stump24556362009-07-25 21:26:53 +00003548 return getFunctionNoProtoType(retType, NoReturn);
Eli Friedman3d815e72008-08-22 00:56:42 +00003549}
3550
3551QualType ASTContext::mergeTypes(QualType LHS, QualType RHS) {
Bill Wendling43d69752007-12-03 07:33:35 +00003552 // C++ [expr]: If an expression initially has the type "reference to T", the
3553 // type is adjusted to "T" prior to any further analysis, the expression
3554 // designates the object or function denoted by the reference, and the
Sebastian Redl7c80bd62009-03-16 23:22:08 +00003555 // expression is an lvalue unless the reference is an rvalue reference and
3556 // the expression is a function call (possibly inside parentheses).
Eli Friedman3d815e72008-08-22 00:56:42 +00003557 // FIXME: C++ shouldn't be going through here! The rules are different
3558 // enough that they should be handled separately.
Sebastian Redl7c80bd62009-03-16 23:22:08 +00003559 // FIXME: Merging of lvalue and rvalue references is incorrect. C++ *really*
3560 // shouldn't be going through here!
Ted Kremenek6217b802009-07-29 21:53:49 +00003561 if (const ReferenceType *RT = LHS->getAs<ReferenceType>())
Chris Lattnerc4e40592008-04-07 04:07:56 +00003562 LHS = RT->getPointeeType();
Ted Kremenek6217b802009-07-29 21:53:49 +00003563 if (const ReferenceType *RT = RHS->getAs<ReferenceType>())
Chris Lattnerc4e40592008-04-07 04:07:56 +00003564 RHS = RT->getPointeeType();
Chris Lattnerf3692dc2008-04-07 05:37:56 +00003565
Eli Friedman3d815e72008-08-22 00:56:42 +00003566 QualType LHSCan = getCanonicalType(LHS),
3567 RHSCan = getCanonicalType(RHS);
3568
3569 // If two types are identical, they are compatible.
3570 if (LHSCan == RHSCan)
3571 return LHS;
3572
3573 // If the qualifiers are different, the types aren't compatible
Eli Friedman5a61f0e2009-02-27 23:04:43 +00003574 // Note that we handle extended qualifiers later, in the
3575 // case for ExtQualType.
3576 if (LHSCan.getCVRQualifiers() != RHSCan.getCVRQualifiers())
Eli Friedman3d815e72008-08-22 00:56:42 +00003577 return QualType();
3578
Eli Friedman852d63b2009-06-01 01:22:52 +00003579 Type::TypeClass LHSClass = LHSCan->getTypeClass();
3580 Type::TypeClass RHSClass = RHSCan->getTypeClass();
Eli Friedman3d815e72008-08-22 00:56:42 +00003581
Chris Lattner1adb8832008-01-14 05:45:46 +00003582 // We want to consider the two function types to be the same for these
3583 // comparisons, just force one to the other.
3584 if (LHSClass == Type::FunctionProto) LHSClass = Type::FunctionNoProto;
3585 if (RHSClass == Type::FunctionProto) RHSClass = Type::FunctionNoProto;
Eli Friedman4c721d32008-02-12 08:23:06 +00003586
Eli Friedman07d25872009-06-02 05:28:56 +00003587 // Strip off objc_gc attributes off the top level so they can be merged.
3588 // This is a complete mess, but the attribute itself doesn't make much sense.
Fariborz Jahanian585f7b22009-06-02 01:40:22 +00003589 if (RHSClass == Type::ExtQual) {
Eli Friedman07d25872009-06-02 05:28:56 +00003590 QualType::GCAttrTypes GCAttr = RHSCan.getObjCGCAttr();
3591 if (GCAttr != QualType::GCNone) {
Fariborz Jahanian86f43852009-06-02 20:58:58 +00003592 QualType::GCAttrTypes GCLHSAttr = LHSCan.getObjCGCAttr();
Fariborz Jahanian8df7a282009-06-02 18:32:00 +00003593 // __weak attribute must appear on both declarations.
Fariborz Jahanian86f43852009-06-02 20:58:58 +00003594 // __strong attribue is redundant if other decl is an objective-c
3595 // object pointer (or decorated with __strong attribute); otherwise
3596 // issue error.
3597 if ((GCAttr == QualType::Weak && GCLHSAttr != GCAttr) ||
3598 (GCAttr == QualType::Strong && GCLHSAttr != GCAttr &&
Steve Naroff14108da2009-07-10 23:34:53 +00003599 !LHSCan->isObjCObjectPointerType()))
Fariborz Jahanian8df7a282009-06-02 18:32:00 +00003600 return QualType();
3601
Eli Friedman07d25872009-06-02 05:28:56 +00003602 RHS = QualType(cast<ExtQualType>(RHS.getDesugaredType())->getBaseType(),
3603 RHS.getCVRQualifiers());
3604 QualType Result = mergeTypes(LHS, RHS);
Fariborz Jahanian8df7a282009-06-02 18:32:00 +00003605 if (!Result.isNull()) {
3606 if (Result.getObjCGCAttr() == QualType::GCNone)
3607 Result = getObjCGCQualType(Result, GCAttr);
3608 else if (Result.getObjCGCAttr() != GCAttr)
3609 Result = QualType();
3610 }
Eli Friedman07d25872009-06-02 05:28:56 +00003611 return Result;
3612 }
Fariborz Jahanian585f7b22009-06-02 01:40:22 +00003613 }
Fariborz Jahanian585f7b22009-06-02 01:40:22 +00003614 if (LHSClass == Type::ExtQual) {
Eli Friedman07d25872009-06-02 05:28:56 +00003615 QualType::GCAttrTypes GCAttr = LHSCan.getObjCGCAttr();
3616 if (GCAttr != QualType::GCNone) {
Fariborz Jahanian8df7a282009-06-02 18:32:00 +00003617 QualType::GCAttrTypes GCRHSAttr = RHSCan.getObjCGCAttr();
3618 // __weak attribute must appear on both declarations. __strong
Fariborz Jahanian86f43852009-06-02 20:58:58 +00003619 // __strong attribue is redundant if other decl is an objective-c
3620 // object pointer (or decorated with __strong attribute); otherwise
3621 // issue error.
3622 if ((GCAttr == QualType::Weak && GCRHSAttr != GCAttr) ||
3623 (GCAttr == QualType::Strong && GCRHSAttr != GCAttr &&
Steve Naroff14108da2009-07-10 23:34:53 +00003624 !RHSCan->isObjCObjectPointerType()))
Fariborz Jahanian8df7a282009-06-02 18:32:00 +00003625 return QualType();
Fariborz Jahanian86f43852009-06-02 20:58:58 +00003626
Eli Friedman07d25872009-06-02 05:28:56 +00003627 LHS = QualType(cast<ExtQualType>(LHS.getDesugaredType())->getBaseType(),
3628 LHS.getCVRQualifiers());
3629 QualType Result = mergeTypes(LHS, RHS);
Fariborz Jahanian8df7a282009-06-02 18:32:00 +00003630 if (!Result.isNull()) {
3631 if (Result.getObjCGCAttr() == QualType::GCNone)
3632 Result = getObjCGCQualType(Result, GCAttr);
3633 else if (Result.getObjCGCAttr() != GCAttr)
3634 Result = QualType();
3635 }
Eli Friedman354e53d2009-06-02 07:45:37 +00003636 return Result;
Eli Friedman07d25872009-06-02 05:28:56 +00003637 }
Fariborz Jahanian585f7b22009-06-02 01:40:22 +00003638 }
3639
Eli Friedman4c721d32008-02-12 08:23:06 +00003640 // Same as above for arrays
Chris Lattnera36a61f2008-04-07 05:43:21 +00003641 if (LHSClass == Type::VariableArray || LHSClass == Type::IncompleteArray)
3642 LHSClass = Type::ConstantArray;
3643 if (RHSClass == Type::VariableArray || RHSClass == Type::IncompleteArray)
3644 RHSClass = Type::ConstantArray;
Steve Naroffec0550f2007-10-15 20:41:53 +00003645
Nate Begeman213541a2008-04-18 23:10:10 +00003646 // Canonicalize ExtVector -> Vector.
3647 if (LHSClass == Type::ExtVector) LHSClass = Type::Vector;
3648 if (RHSClass == Type::ExtVector) RHSClass = Type::Vector;
Chris Lattnera36a61f2008-04-07 05:43:21 +00003649
3650 // If the canonical type classes don't match.
Chris Lattner1adb8832008-01-14 05:45:46 +00003651 if (LHSClass != RHSClass) {
Chris Lattner1adb8832008-01-14 05:45:46 +00003652 // C99 6.7.2.2p4: Each enumerated type shall be compatible with char,
3653 // a signed integer type, or an unsigned integer type.
Eli Friedman3d815e72008-08-22 00:56:42 +00003654 if (const EnumType* ETy = LHS->getAsEnumType()) {
3655 if (ETy->getDecl()->getIntegerType() == RHSCan.getUnqualifiedType())
3656 return RHS;
Eli Friedmanbab96962008-02-12 08:46:17 +00003657 }
Eli Friedman3d815e72008-08-22 00:56:42 +00003658 if (const EnumType* ETy = RHS->getAsEnumType()) {
3659 if (ETy->getDecl()->getIntegerType() == LHSCan.getUnqualifiedType())
3660 return LHS;
Eli Friedmanbab96962008-02-12 08:46:17 +00003661 }
Chris Lattner1adb8832008-01-14 05:45:46 +00003662
Eli Friedman3d815e72008-08-22 00:56:42 +00003663 return QualType();
Steve Naroffec0550f2007-10-15 20:41:53 +00003664 }
Eli Friedman3d815e72008-08-22 00:56:42 +00003665
Steve Naroff4a746782008-01-09 22:43:08 +00003666 // The canonical type classes match.
Chris Lattner1adb8832008-01-14 05:45:46 +00003667 switch (LHSClass) {
Douglas Gregor72564e72009-02-26 23:50:07 +00003668#define TYPE(Class, Base)
3669#define ABSTRACT_TYPE(Class, Base)
3670#define NON_CANONICAL_TYPE(Class, Base) case Type::Class:
3671#define DEPENDENT_TYPE(Class, Base) case Type::Class:
3672#include "clang/AST/TypeNodes.def"
3673 assert(false && "Non-canonical and dependent types shouldn't get here");
3674 return QualType();
3675
Sebastian Redl7c80bd62009-03-16 23:22:08 +00003676 case Type::LValueReference:
3677 case Type::RValueReference:
Douglas Gregor72564e72009-02-26 23:50:07 +00003678 case Type::MemberPointer:
3679 assert(false && "C++ should never be in mergeTypes");
3680 return QualType();
3681
3682 case Type::IncompleteArray:
3683 case Type::VariableArray:
3684 case Type::FunctionProto:
3685 case Type::ExtVector:
Douglas Gregor72564e72009-02-26 23:50:07 +00003686 assert(false && "Types are eliminated above");
3687 return QualType();
3688
Chris Lattner1adb8832008-01-14 05:45:46 +00003689 case Type::Pointer:
Eli Friedman3d815e72008-08-22 00:56:42 +00003690 {
3691 // Merge two pointer types, while trying to preserve typedef info
Ted Kremenek6217b802009-07-29 21:53:49 +00003692 QualType LHSPointee = LHS->getAs<PointerType>()->getPointeeType();
3693 QualType RHSPointee = RHS->getAs<PointerType>()->getPointeeType();
Eli Friedman3d815e72008-08-22 00:56:42 +00003694 QualType ResultType = mergeTypes(LHSPointee, RHSPointee);
3695 if (ResultType.isNull()) return QualType();
Eli Friedman07d25872009-06-02 05:28:56 +00003696 if (getCanonicalType(LHSPointee) == getCanonicalType(ResultType))
Chris Lattner61710852008-10-05 17:34:18 +00003697 return LHS;
Eli Friedman07d25872009-06-02 05:28:56 +00003698 if (getCanonicalType(RHSPointee) == getCanonicalType(ResultType))
Chris Lattner61710852008-10-05 17:34:18 +00003699 return RHS;
Eli Friedman3d815e72008-08-22 00:56:42 +00003700 return getPointerType(ResultType);
3701 }
Steve Naroffc0febd52008-12-10 17:49:55 +00003702 case Type::BlockPointer:
3703 {
3704 // Merge two block pointer types, while trying to preserve typedef info
Ted Kremenek6217b802009-07-29 21:53:49 +00003705 QualType LHSPointee = LHS->getAs<BlockPointerType>()->getPointeeType();
3706 QualType RHSPointee = RHS->getAs<BlockPointerType>()->getPointeeType();
Steve Naroffc0febd52008-12-10 17:49:55 +00003707 QualType ResultType = mergeTypes(LHSPointee, RHSPointee);
3708 if (ResultType.isNull()) return QualType();
3709 if (getCanonicalType(LHSPointee) == getCanonicalType(ResultType))
3710 return LHS;
3711 if (getCanonicalType(RHSPointee) == getCanonicalType(ResultType))
3712 return RHS;
3713 return getBlockPointerType(ResultType);
3714 }
Chris Lattner1adb8832008-01-14 05:45:46 +00003715 case Type::ConstantArray:
Eli Friedman3d815e72008-08-22 00:56:42 +00003716 {
3717 const ConstantArrayType* LCAT = getAsConstantArrayType(LHS);
3718 const ConstantArrayType* RCAT = getAsConstantArrayType(RHS);
3719 if (LCAT && RCAT && RCAT->getSize() != LCAT->getSize())
3720 return QualType();
3721
3722 QualType LHSElem = getAsArrayType(LHS)->getElementType();
3723 QualType RHSElem = getAsArrayType(RHS)->getElementType();
3724 QualType ResultType = mergeTypes(LHSElem, RHSElem);
3725 if (ResultType.isNull()) return QualType();
Chris Lattner61710852008-10-05 17:34:18 +00003726 if (LCAT && getCanonicalType(LHSElem) == getCanonicalType(ResultType))
3727 return LHS;
3728 if (RCAT && getCanonicalType(RHSElem) == getCanonicalType(ResultType))
3729 return RHS;
Eli Friedman3bc0f452008-08-22 01:48:21 +00003730 if (LCAT) return getConstantArrayType(ResultType, LCAT->getSize(),
3731 ArrayType::ArraySizeModifier(), 0);
3732 if (RCAT) return getConstantArrayType(ResultType, RCAT->getSize(),
3733 ArrayType::ArraySizeModifier(), 0);
Eli Friedman3d815e72008-08-22 00:56:42 +00003734 const VariableArrayType* LVAT = getAsVariableArrayType(LHS);
3735 const VariableArrayType* RVAT = getAsVariableArrayType(RHS);
Chris Lattner61710852008-10-05 17:34:18 +00003736 if (LVAT && getCanonicalType(LHSElem) == getCanonicalType(ResultType))
3737 return LHS;
3738 if (RVAT && getCanonicalType(RHSElem) == getCanonicalType(ResultType))
3739 return RHS;
Eli Friedman3d815e72008-08-22 00:56:42 +00003740 if (LVAT) {
3741 // FIXME: This isn't correct! But tricky to implement because
3742 // the array's size has to be the size of LHS, but the type
3743 // has to be different.
3744 return LHS;
3745 }
3746 if (RVAT) {
3747 // FIXME: This isn't correct! But tricky to implement because
3748 // the array's size has to be the size of RHS, but the type
3749 // has to be different.
3750 return RHS;
3751 }
Eli Friedman3bc0f452008-08-22 01:48:21 +00003752 if (getCanonicalType(LHSElem) == getCanonicalType(ResultType)) return LHS;
3753 if (getCanonicalType(RHSElem) == getCanonicalType(ResultType)) return RHS;
Douglas Gregor7e7eb3d2009-07-06 15:59:29 +00003754 return getIncompleteArrayType(ResultType,
3755 ArrayType::ArraySizeModifier(), 0);
Eli Friedman3d815e72008-08-22 00:56:42 +00003756 }
Chris Lattner1adb8832008-01-14 05:45:46 +00003757 case Type::FunctionNoProto:
Eli Friedman3d815e72008-08-22 00:56:42 +00003758 return mergeFunctionTypes(LHS, RHS);
Douglas Gregor72564e72009-02-26 23:50:07 +00003759 case Type::Record:
Douglas Gregor72564e72009-02-26 23:50:07 +00003760 case Type::Enum:
Eli Friedman3d815e72008-08-22 00:56:42 +00003761 return QualType();
Chris Lattner1adb8832008-01-14 05:45:46 +00003762 case Type::Builtin:
Chris Lattner3cc4c0c2008-04-07 05:55:38 +00003763 // Only exactly equal builtin types are compatible, which is tested above.
Eli Friedman3d815e72008-08-22 00:56:42 +00003764 return QualType();
Daniel Dunbar64cfdb72009-01-28 21:22:12 +00003765 case Type::Complex:
3766 // Distinct complex types are incompatible.
3767 return QualType();
Chris Lattner3cc4c0c2008-04-07 05:55:38 +00003768 case Type::Vector:
Eli Friedman5a61f0e2009-02-27 23:04:43 +00003769 // FIXME: The merged type should be an ExtVector!
Eli Friedman3d815e72008-08-22 00:56:42 +00003770 if (areCompatVectorTypes(LHS->getAsVectorType(), RHS->getAsVectorType()))
3771 return LHS;
Chris Lattner61710852008-10-05 17:34:18 +00003772 return QualType();
Cedric Venet61490e92009-02-21 17:14:49 +00003773 case Type::ObjCInterface: {
Steve Naroff5fd659d2009-02-21 16:18:07 +00003774 // Check if the interfaces are assignment compatible.
Eli Friedman5a61f0e2009-02-27 23:04:43 +00003775 // FIXME: This should be type compatibility, e.g. whether
3776 // "LHS x; RHS x;" at global scope is legal.
Steve Naroff5fd659d2009-02-21 16:18:07 +00003777 const ObjCInterfaceType* LHSIface = LHS->getAsObjCInterfaceType();
3778 const ObjCInterfaceType* RHSIface = RHS->getAsObjCInterfaceType();
3779 if (LHSIface && RHSIface &&
3780 canAssignObjCInterfaces(LHSIface, RHSIface))
3781 return LHS;
3782
Eli Friedman3d815e72008-08-22 00:56:42 +00003783 return QualType();
Cedric Venet61490e92009-02-21 17:14:49 +00003784 }
Steve Naroff14108da2009-07-10 23:34:53 +00003785 case Type::ObjCObjectPointer: {
Steve Naroff14108da2009-07-10 23:34:53 +00003786 if (canAssignObjCInterfaces(LHS->getAsObjCObjectPointerType(),
3787 RHS->getAsObjCObjectPointerType()))
3788 return LHS;
3789
Steve Naroffbc76dd02008-12-10 22:14:21 +00003790 return QualType();
Steve Naroff14108da2009-07-10 23:34:53 +00003791 }
Eli Friedman5a61f0e2009-02-27 23:04:43 +00003792 case Type::FixedWidthInt:
3793 // Distinct fixed-width integers are not compatible.
3794 return QualType();
Eli Friedman5a61f0e2009-02-27 23:04:43 +00003795 case Type::ExtQual:
3796 // FIXME: ExtQual types can be compatible even if they're not
3797 // identical!
3798 return QualType();
3799 // First attempt at an implementation, but I'm not really sure it's
3800 // right...
3801#if 0
3802 ExtQualType* LQual = cast<ExtQualType>(LHSCan);
3803 ExtQualType* RQual = cast<ExtQualType>(RHSCan);
3804 if (LQual->getAddressSpace() != RQual->getAddressSpace() ||
3805 LQual->getObjCGCAttr() != RQual->getObjCGCAttr())
3806 return QualType();
3807 QualType LHSBase, RHSBase, ResultType, ResCanUnqual;
3808 LHSBase = QualType(LQual->getBaseType(), 0);
3809 RHSBase = QualType(RQual->getBaseType(), 0);
3810 ResultType = mergeTypes(LHSBase, RHSBase);
3811 if (ResultType.isNull()) return QualType();
3812 ResCanUnqual = getCanonicalType(ResultType).getUnqualifiedType();
3813 if (LHSCan.getUnqualifiedType() == ResCanUnqual)
3814 return LHS;
3815 if (RHSCan.getUnqualifiedType() == ResCanUnqual)
3816 return RHS;
3817 ResultType = getAddrSpaceQualType(ResultType, LQual->getAddressSpace());
3818 ResultType = getObjCGCQualType(ResultType, LQual->getObjCGCAttr());
3819 ResultType.setCVRQualifiers(LHSCan.getCVRQualifiers());
3820 return ResultType;
3821#endif
Douglas Gregor7532dc62009-03-30 22:58:21 +00003822
3823 case Type::TemplateSpecialization:
3824 assert(false && "Dependent types have no size");
3825 break;
Steve Naroffec0550f2007-10-15 20:41:53 +00003826 }
Douglas Gregor72564e72009-02-26 23:50:07 +00003827
3828 return QualType();
Steve Naroffec0550f2007-10-15 20:41:53 +00003829}
Ted Kremenek7192f8e2007-10-31 17:10:13 +00003830
Chris Lattner5426bf62008-04-07 07:01:58 +00003831//===----------------------------------------------------------------------===//
Eli Friedmanad74a752008-06-28 06:23:08 +00003832// Integer Predicates
3833//===----------------------------------------------------------------------===//
Chris Lattner88054de2009-01-16 07:15:35 +00003834
Eli Friedmanad74a752008-06-28 06:23:08 +00003835unsigned ASTContext::getIntWidth(QualType T) {
3836 if (T == BoolTy)
3837 return 1;
Eli Friedmanf98aba32009-02-13 02:31:07 +00003838 if (FixedWidthIntType* FWIT = dyn_cast<FixedWidthIntType>(T)) {
3839 return FWIT->getWidth();
3840 }
3841 // For builtin types, just use the standard type sizing method
Eli Friedmanad74a752008-06-28 06:23:08 +00003842 return (unsigned)getTypeSize(T);
3843}
3844
3845QualType ASTContext::getCorrespondingUnsignedType(QualType T) {
3846 assert(T->isSignedIntegerType() && "Unexpected type");
3847 if (const EnumType* ETy = T->getAsEnumType())
3848 T = ETy->getDecl()->getIntegerType();
3849 const BuiltinType* BTy = T->getAsBuiltinType();
3850 assert (BTy && "Unexpected signed integer type");
3851 switch (BTy->getKind()) {
3852 case BuiltinType::Char_S:
3853 case BuiltinType::SChar:
3854 return UnsignedCharTy;
3855 case BuiltinType::Short:
3856 return UnsignedShortTy;
3857 case BuiltinType::Int:
3858 return UnsignedIntTy;
3859 case BuiltinType::Long:
3860 return UnsignedLongTy;
3861 case BuiltinType::LongLong:
3862 return UnsignedLongLongTy;
Chris Lattner2df9ced2009-04-30 02:43:43 +00003863 case BuiltinType::Int128:
3864 return UnsignedInt128Ty;
Eli Friedmanad74a752008-06-28 06:23:08 +00003865 default:
3866 assert(0 && "Unexpected signed integer type");
3867 return QualType();
3868 }
3869}
3870
Douglas Gregor2cf26342009-04-09 22:27:44 +00003871ExternalASTSource::~ExternalASTSource() { }
3872
3873void ExternalASTSource::PrintStats() { }
Chris Lattner86df27b2009-06-14 00:45:47 +00003874
3875
3876//===----------------------------------------------------------------------===//
3877// Builtin Type Computation
3878//===----------------------------------------------------------------------===//
3879
3880/// DecodeTypeFromStr - This decodes one type descriptor from Str, advancing the
3881/// pointer over the consumed characters. This returns the resultant type.
3882static QualType DecodeTypeFromStr(const char *&Str, ASTContext &Context,
3883 ASTContext::GetBuiltinTypeError &Error,
3884 bool AllowTypeModifiers = true) {
3885 // Modifiers.
3886 int HowLong = 0;
3887 bool Signed = false, Unsigned = false;
3888
3889 // Read the modifiers first.
3890 bool Done = false;
3891 while (!Done) {
3892 switch (*Str++) {
3893 default: Done = true; --Str; break;
3894 case 'S':
3895 assert(!Unsigned && "Can't use both 'S' and 'U' modifiers!");
3896 assert(!Signed && "Can't use 'S' modifier multiple times!");
3897 Signed = true;
3898 break;
3899 case 'U':
3900 assert(!Signed && "Can't use both 'S' and 'U' modifiers!");
3901 assert(!Unsigned && "Can't use 'S' modifier multiple times!");
3902 Unsigned = true;
3903 break;
3904 case 'L':
3905 assert(HowLong <= 2 && "Can't have LLLL modifier");
3906 ++HowLong;
3907 break;
3908 }
3909 }
3910
3911 QualType Type;
3912
3913 // Read the base type.
3914 switch (*Str++) {
3915 default: assert(0 && "Unknown builtin type letter!");
3916 case 'v':
3917 assert(HowLong == 0 && !Signed && !Unsigned &&
3918 "Bad modifiers used with 'v'!");
3919 Type = Context.VoidTy;
3920 break;
3921 case 'f':
3922 assert(HowLong == 0 && !Signed && !Unsigned &&
3923 "Bad modifiers used with 'f'!");
3924 Type = Context.FloatTy;
3925 break;
3926 case 'd':
3927 assert(HowLong < 2 && !Signed && !Unsigned &&
3928 "Bad modifiers used with 'd'!");
3929 if (HowLong)
3930 Type = Context.LongDoubleTy;
3931 else
3932 Type = Context.DoubleTy;
3933 break;
3934 case 's':
3935 assert(HowLong == 0 && "Bad modifiers used with 's'!");
3936 if (Unsigned)
3937 Type = Context.UnsignedShortTy;
3938 else
3939 Type = Context.ShortTy;
3940 break;
3941 case 'i':
3942 if (HowLong == 3)
3943 Type = Unsigned ? Context.UnsignedInt128Ty : Context.Int128Ty;
3944 else if (HowLong == 2)
3945 Type = Unsigned ? Context.UnsignedLongLongTy : Context.LongLongTy;
3946 else if (HowLong == 1)
3947 Type = Unsigned ? Context.UnsignedLongTy : Context.LongTy;
3948 else
3949 Type = Unsigned ? Context.UnsignedIntTy : Context.IntTy;
3950 break;
3951 case 'c':
3952 assert(HowLong == 0 && "Bad modifiers used with 'c'!");
3953 if (Signed)
3954 Type = Context.SignedCharTy;
3955 else if (Unsigned)
3956 Type = Context.UnsignedCharTy;
3957 else
3958 Type = Context.CharTy;
3959 break;
3960 case 'b': // boolean
3961 assert(HowLong == 0 && !Signed && !Unsigned && "Bad modifiers for 'b'!");
3962 Type = Context.BoolTy;
3963 break;
3964 case 'z': // size_t.
3965 assert(HowLong == 0 && !Signed && !Unsigned && "Bad modifiers for 'z'!");
3966 Type = Context.getSizeType();
3967 break;
3968 case 'F':
3969 Type = Context.getCFConstantStringType();
3970 break;
3971 case 'a':
3972 Type = Context.getBuiltinVaListType();
3973 assert(!Type.isNull() && "builtin va list type not initialized!");
3974 break;
3975 case 'A':
3976 // This is a "reference" to a va_list; however, what exactly
3977 // this means depends on how va_list is defined. There are two
3978 // different kinds of va_list: ones passed by value, and ones
3979 // passed by reference. An example of a by-value va_list is
3980 // x86, where va_list is a char*. An example of by-ref va_list
3981 // is x86-64, where va_list is a __va_list_tag[1]. For x86,
3982 // we want this argument to be a char*&; for x86-64, we want
3983 // it to be a __va_list_tag*.
3984 Type = Context.getBuiltinVaListType();
3985 assert(!Type.isNull() && "builtin va list type not initialized!");
3986 if (Type->isArrayType()) {
3987 Type = Context.getArrayDecayedType(Type);
3988 } else {
3989 Type = Context.getLValueReferenceType(Type);
3990 }
3991 break;
3992 case 'V': {
3993 char *End;
Chris Lattner86df27b2009-06-14 00:45:47 +00003994 unsigned NumElements = strtoul(Str, &End, 10);
3995 assert(End != Str && "Missing vector size");
3996
3997 Str = End;
3998
3999 QualType ElementType = DecodeTypeFromStr(Str, Context, Error, false);
4000 Type = Context.getVectorType(ElementType, NumElements);
4001 break;
4002 }
Chris Lattner9a5a7e72009-07-28 22:49:34 +00004003 case 'P':
Douglas Gregorc29f77b2009-07-07 16:35:42 +00004004 Type = Context.getFILEType();
4005 if (Type.isNull()) {
Mike Stumpf711c412009-07-28 23:57:15 +00004006 Error = ASTContext::GE_Missing_stdio;
Chris Lattner86df27b2009-06-14 00:45:47 +00004007 return QualType();
4008 }
Mike Stumpfd612db2009-07-28 23:47:15 +00004009 break;
Chris Lattner9a5a7e72009-07-28 22:49:34 +00004010 case 'J':
Mike Stumpf711c412009-07-28 23:57:15 +00004011 if (Signed)
Mike Stump782fa302009-07-28 02:25:19 +00004012 Type = Context.getsigjmp_bufType();
Mike Stumpf711c412009-07-28 23:57:15 +00004013 else
4014 Type = Context.getjmp_bufType();
4015
Mike Stumpfd612db2009-07-28 23:47:15 +00004016 if (Type.isNull()) {
Mike Stumpf711c412009-07-28 23:57:15 +00004017 Error = ASTContext::GE_Missing_setjmp;
Mike Stumpfd612db2009-07-28 23:47:15 +00004018 return QualType();
4019 }
4020 break;
Mike Stump782fa302009-07-28 02:25:19 +00004021 }
Chris Lattner86df27b2009-06-14 00:45:47 +00004022
4023 if (!AllowTypeModifiers)
4024 return Type;
4025
4026 Done = false;
4027 while (!Done) {
4028 switch (*Str++) {
4029 default: Done = true; --Str; break;
4030 case '*':
4031 Type = Context.getPointerType(Type);
4032 break;
4033 case '&':
4034 Type = Context.getLValueReferenceType(Type);
4035 break;
4036 // FIXME: There's no way to have a built-in with an rvalue ref arg.
4037 case 'C':
4038 Type = Type.getQualifiedType(QualType::Const);
4039 break;
4040 }
4041 }
4042
4043 return Type;
4044}
4045
4046/// GetBuiltinType - Return the type for the specified builtin.
4047QualType ASTContext::GetBuiltinType(unsigned id,
4048 GetBuiltinTypeError &Error) {
4049 const char *TypeStr = BuiltinInfo.GetTypeString(id);
4050
4051 llvm::SmallVector<QualType, 8> ArgTypes;
4052
4053 Error = GE_None;
4054 QualType ResType = DecodeTypeFromStr(TypeStr, *this, Error);
4055 if (Error != GE_None)
4056 return QualType();
4057 while (TypeStr[0] && TypeStr[0] != '.') {
4058 QualType Ty = DecodeTypeFromStr(TypeStr, *this, Error);
4059 if (Error != GE_None)
4060 return QualType();
4061
4062 // Do array -> pointer decay. The builtin should use the decayed type.
4063 if (Ty->isArrayType())
4064 Ty = getArrayDecayedType(Ty);
4065
4066 ArgTypes.push_back(Ty);
4067 }
4068
4069 assert((TypeStr[0] != '.' || TypeStr[1] == 0) &&
4070 "'.' should only occur at end of builtin type list!");
4071
4072 // handle untyped/variadic arguments "T c99Style();" or "T cppStyle(...);".
4073 if (ArgTypes.size() == 0 && TypeStr[0] == '.')
4074 return getFunctionNoProtoType(ResType);
4075 return getFunctionType(ResType, ArgTypes.data(), ArgTypes.size(),
4076 TypeStr[0] == '.', 0);
4077}