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Chris Lattner4b009652007-07-25 00:24:17 +00001//===--- ASTContext.cpp - Context to hold long-lived AST nodes ------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner959e5be2007-12-29 19:59:25 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Chris Lattner4b009652007-07-25 00:24:17 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file implements the ASTContext interface.
11//
12//===----------------------------------------------------------------------===//
13
14#include "clang/AST/ASTContext.h"
Argiris Kirtzidisea29d1e2008-08-07 20:55:28 +000015#include "clang/AST/DeclCXX.h"
Steve Naroff3fafa102007-10-01 19:00:59 +000016#include "clang/AST/DeclObjC.h"
Douglas Gregor279272e2009-02-04 19:02:06 +000017#include "clang/AST/DeclTemplate.h"
Daniel Dunbarde300732008-08-11 04:54:23 +000018#include "clang/AST/Expr.h"
19#include "clang/AST/RecordLayout.h"
Chris Lattner4b009652007-07-25 00:24:17 +000020#include "clang/Basic/TargetInfo.h"
Anders Carlsson36f07d82007-10-29 05:01:08 +000021#include "llvm/ADT/StringExtras.h"
Ted Kremenek738e6c02007-10-31 17:10:13 +000022#include "llvm/Bitcode/Serialize.h"
23#include "llvm/Bitcode/Deserialize.h"
Nate Begeman7903d052009-01-18 06:42:49 +000024#include "llvm/Support/MathExtras.h"
Anders Carlsson36f07d82007-10-29 05:01:08 +000025
Chris Lattner4b009652007-07-25 00:24:17 +000026using namespace clang;
27
28enum FloatingRank {
29 FloatRank, DoubleRank, LongDoubleRank
30};
31
Chris Lattner2fda0ed2008-10-05 17:34:18 +000032ASTContext::ASTContext(const LangOptions& LOpts, SourceManager &SM,
33 TargetInfo &t,
Daniel Dunbarde300732008-08-11 04:54:23 +000034 IdentifierTable &idents, SelectorTable &sels,
Steve Naroff207b9ec2009-01-27 23:20:32 +000035 bool FreeMem, unsigned size_reserve) :
Douglas Gregor1e589cc2009-03-26 23:50:42 +000036 GlobalNestedNameSpecifier(0), CFConstantStringTypeDecl(0),
37 ObjCFastEnumerationStateTypeDecl(0), SourceMgr(SM), LangOpts(LOpts),
38 FreeMemory(FreeMem), Target(t), Idents(idents), Selectors(sels)
Daniel Dunbarde300732008-08-11 04:54:23 +000039{
40 if (size_reserve > 0) Types.reserve(size_reserve);
41 InitBuiltinTypes();
Chris Lattner911b8672009-03-13 22:38:49 +000042 BuiltinInfo.InitializeBuiltins(idents, Target, LangOpts.NoBuiltin);
Daniel Dunbarde300732008-08-11 04:54:23 +000043 TUDecl = TranslationUnitDecl::Create(*this);
44}
45
Chris Lattner4b009652007-07-25 00:24:17 +000046ASTContext::~ASTContext() {
47 // Deallocate all the types.
48 while (!Types.empty()) {
Ted Kremenekdb4d5972008-05-21 16:38:54 +000049 Types.back()->Destroy(*this);
Chris Lattner4b009652007-07-25 00:24:17 +000050 Types.pop_back();
51 }
Eli Friedman65489b72008-05-27 03:08:09 +000052
Nuno Lopes355a8682008-12-17 22:30:25 +000053 {
54 llvm::DenseMap<const RecordDecl*, const ASTRecordLayout*>::iterator
55 I = ASTRecordLayouts.begin(), E = ASTRecordLayouts.end();
56 while (I != E) {
57 ASTRecordLayout *R = const_cast<ASTRecordLayout*>((I++)->second);
58 delete R;
59 }
60 }
61
62 {
63 llvm::DenseMap<const ObjCInterfaceDecl*, const ASTRecordLayout*>::iterator
64 I = ASTObjCInterfaces.begin(), E = ASTObjCInterfaces.end();
65 while (I != E) {
66 ASTRecordLayout *R = const_cast<ASTRecordLayout*>((I++)->second);
67 delete R;
68 }
69 }
70
71 {
72 llvm::DenseMap<const ObjCInterfaceDecl*, const RecordDecl*>::iterator
73 I = ASTRecordForInterface.begin(), E = ASTRecordForInterface.end();
74 while (I != E) {
75 RecordDecl *R = const_cast<RecordDecl*>((I++)->second);
76 R->Destroy(*this);
77 }
78 }
79
Douglas Gregor1e589cc2009-03-26 23:50:42 +000080 // Destroy nested-name-specifiers.
Douglas Gregorbccd97c2009-03-27 23:25:45 +000081 llvm::SmallVector<NestedNameSpecifier *, 16> NestedNameSpecs;
82 {
83 for (llvm::FoldingSet<NestedNameSpecifier>::iterator
84 NNS = NestedNameSpecifiers.begin(),
85 NNSEnd = NestedNameSpecifiers.end();
86 NNS != NNSEnd;
87 ++NNS)
88 NestedNameSpecs.push_back(&*NNS);
Eli Friedman37eb4a42009-03-27 20:56:17 +000089 }
Douglas Gregorbccd97c2009-03-27 23:25:45 +000090 NestedNameSpecifiers.clear();
91 for (llvm::SmallVector<NestedNameSpecifier *, 16>::iterator
92 NNS = NestedNameSpecs.begin(),
93 NNSEnd = NestedNameSpecs.end();
94 NNS != NNSEnd;
95 ++NNS)
96 (*NNS)->Destroy(*this);
Douglas Gregor1e589cc2009-03-26 23:50:42 +000097
98 if (GlobalNestedNameSpecifier)
99 GlobalNestedNameSpecifier->Destroy(*this);
100
Eli Friedman65489b72008-05-27 03:08:09 +0000101 TUDecl->Destroy(*this);
Douglas Gregor1e589cc2009-03-26 23:50:42 +0000102
Chris Lattner4b009652007-07-25 00:24:17 +0000103}
104
105void ASTContext::PrintStats() const {
106 fprintf(stderr, "*** AST Context Stats:\n");
107 fprintf(stderr, " %d types total.\n", (int)Types.size());
108 unsigned NumBuiltin = 0, NumPointer = 0, NumArray = 0, NumFunctionP = 0;
Daniel Dunbar47677342008-09-26 03:23:00 +0000109 unsigned NumVector = 0, NumComplex = 0, NumBlockPointer = 0;
Sebastian Redlce6fff02009-03-16 23:22:08 +0000110 unsigned NumFunctionNP = 0, NumTypeName = 0, NumTagged = 0;
111 unsigned NumLValueReference = 0, NumRValueReference = 0, NumMemberPointer = 0;
112
Chris Lattner4b009652007-07-25 00:24:17 +0000113 unsigned NumTagStruct = 0, NumTagUnion = 0, NumTagEnum = 0, NumTagClass = 0;
Ted Kremenek42730c52008-01-07 19:49:32 +0000114 unsigned NumObjCInterfaces = 0, NumObjCQualifiedInterfaces = 0;
115 unsigned NumObjCQualifiedIds = 0;
Douglas Gregor4fa58902009-02-26 23:50:07 +0000116 unsigned NumTypeOfTypes = 0, NumTypeOfExprTypes = 0;
Chris Lattner4b009652007-07-25 00:24:17 +0000117
118 for (unsigned i = 0, e = Types.size(); i != e; ++i) {
119 Type *T = Types[i];
120 if (isa<BuiltinType>(T))
121 ++NumBuiltin;
122 else if (isa<PointerType>(T))
123 ++NumPointer;
Daniel Dunbar47677342008-09-26 03:23:00 +0000124 else if (isa<BlockPointerType>(T))
125 ++NumBlockPointer;
Sebastian Redlce6fff02009-03-16 23:22:08 +0000126 else if (isa<LValueReferenceType>(T))
127 ++NumLValueReference;
128 else if (isa<RValueReferenceType>(T))
129 ++NumRValueReference;
Sebastian Redl75555032009-01-24 21:16:55 +0000130 else if (isa<MemberPointerType>(T))
131 ++NumMemberPointer;
Chris Lattner4b009652007-07-25 00:24:17 +0000132 else if (isa<ComplexType>(T))
133 ++NumComplex;
134 else if (isa<ArrayType>(T))
135 ++NumArray;
136 else if (isa<VectorType>(T))
137 ++NumVector;
Douglas Gregor4fa58902009-02-26 23:50:07 +0000138 else if (isa<FunctionNoProtoType>(T))
Chris Lattner4b009652007-07-25 00:24:17 +0000139 ++NumFunctionNP;
Douglas Gregor4fa58902009-02-26 23:50:07 +0000140 else if (isa<FunctionProtoType>(T))
Chris Lattner4b009652007-07-25 00:24:17 +0000141 ++NumFunctionP;
142 else if (isa<TypedefType>(T))
143 ++NumTypeName;
144 else if (TagType *TT = dyn_cast<TagType>(T)) {
145 ++NumTagged;
Argiris Kirtzidisc6cc7d52008-06-09 23:19:58 +0000146 switch (TT->getDecl()->getTagKind()) {
Chris Lattner4b009652007-07-25 00:24:17 +0000147 default: assert(0 && "Unknown tagged type!");
Argiris Kirtzidisc6cc7d52008-06-09 23:19:58 +0000148 case TagDecl::TK_struct: ++NumTagStruct; break;
149 case TagDecl::TK_union: ++NumTagUnion; break;
150 case TagDecl::TK_class: ++NumTagClass; break;
151 case TagDecl::TK_enum: ++NumTagEnum; break;
Chris Lattner4b009652007-07-25 00:24:17 +0000152 }
Ted Kremenek42730c52008-01-07 19:49:32 +0000153 } else if (isa<ObjCInterfaceType>(T))
154 ++NumObjCInterfaces;
155 else if (isa<ObjCQualifiedInterfaceType>(T))
156 ++NumObjCQualifiedInterfaces;
157 else if (isa<ObjCQualifiedIdType>(T))
158 ++NumObjCQualifiedIds;
Steve Naroffe0430632008-05-21 15:59:22 +0000159 else if (isa<TypeOfType>(T))
160 ++NumTypeOfTypes;
Douglas Gregor4fa58902009-02-26 23:50:07 +0000161 else if (isa<TypeOfExprType>(T))
162 ++NumTypeOfExprTypes;
Steve Naroff948fd372007-09-17 14:16:13 +0000163 else {
Chris Lattner8a35b462007-12-12 06:43:05 +0000164 QualType(T, 0).dump();
Chris Lattner4b009652007-07-25 00:24:17 +0000165 assert(0 && "Unknown type!");
166 }
167 }
168
169 fprintf(stderr, " %d builtin types\n", NumBuiltin);
170 fprintf(stderr, " %d pointer types\n", NumPointer);
Daniel Dunbar47677342008-09-26 03:23:00 +0000171 fprintf(stderr, " %d block pointer types\n", NumBlockPointer);
Sebastian Redlce6fff02009-03-16 23:22:08 +0000172 fprintf(stderr, " %d lvalue reference types\n", NumLValueReference);
173 fprintf(stderr, " %d rvalue reference types\n", NumRValueReference);
Sebastian Redl75555032009-01-24 21:16:55 +0000174 fprintf(stderr, " %d member pointer types\n", NumMemberPointer);
Chris Lattner4b009652007-07-25 00:24:17 +0000175 fprintf(stderr, " %d complex types\n", NumComplex);
176 fprintf(stderr, " %d array types\n", NumArray);
177 fprintf(stderr, " %d vector types\n", NumVector);
178 fprintf(stderr, " %d function types with proto\n", NumFunctionP);
179 fprintf(stderr, " %d function types with no proto\n", NumFunctionNP);
180 fprintf(stderr, " %d typename (typedef) types\n", NumTypeName);
181 fprintf(stderr, " %d tagged types\n", NumTagged);
182 fprintf(stderr, " %d struct types\n", NumTagStruct);
183 fprintf(stderr, " %d union types\n", NumTagUnion);
184 fprintf(stderr, " %d class types\n", NumTagClass);
185 fprintf(stderr, " %d enum types\n", NumTagEnum);
Ted Kremenek42730c52008-01-07 19:49:32 +0000186 fprintf(stderr, " %d interface types\n", NumObjCInterfaces);
Chris Lattner8a35b462007-12-12 06:43:05 +0000187 fprintf(stderr, " %d protocol qualified interface types\n",
Ted Kremenek42730c52008-01-07 19:49:32 +0000188 NumObjCQualifiedInterfaces);
Fariborz Jahaniane76e8412007-12-17 21:03:50 +0000189 fprintf(stderr, " %d protocol qualified id types\n",
Ted Kremenek42730c52008-01-07 19:49:32 +0000190 NumObjCQualifiedIds);
Steve Naroffe0430632008-05-21 15:59:22 +0000191 fprintf(stderr, " %d typeof types\n", NumTypeOfTypes);
Douglas Gregor4fa58902009-02-26 23:50:07 +0000192 fprintf(stderr, " %d typeof exprs\n", NumTypeOfExprTypes);
Sebastian Redlce6fff02009-03-16 23:22:08 +0000193
Chris Lattner4b009652007-07-25 00:24:17 +0000194 fprintf(stderr, "Total bytes = %d\n", int(NumBuiltin*sizeof(BuiltinType)+
195 NumPointer*sizeof(PointerType)+NumArray*sizeof(ArrayType)+
196 NumComplex*sizeof(ComplexType)+NumVector*sizeof(VectorType)+
Sebastian Redlce6fff02009-03-16 23:22:08 +0000197 NumLValueReference*sizeof(LValueReferenceType)+
198 NumRValueReference*sizeof(RValueReferenceType)+
Sebastian Redl75555032009-01-24 21:16:55 +0000199 NumMemberPointer*sizeof(MemberPointerType)+
Douglas Gregor4fa58902009-02-26 23:50:07 +0000200 NumFunctionP*sizeof(FunctionProtoType)+
201 NumFunctionNP*sizeof(FunctionNoProtoType)+
Steve Naroffe0430632008-05-21 15:59:22 +0000202 NumTypeName*sizeof(TypedefType)+NumTagged*sizeof(TagType)+
Douglas Gregor4fa58902009-02-26 23:50:07 +0000203 NumTypeOfTypes*sizeof(TypeOfType)+NumTypeOfExprTypes*sizeof(TypeOfExprType)));
Chris Lattner4b009652007-07-25 00:24:17 +0000204}
205
206
207void ASTContext::InitBuiltinType(QualType &R, BuiltinType::Kind K) {
Steve Naroff93fd2112009-01-27 22:08:43 +0000208 Types.push_back((R = QualType(new (*this,8) BuiltinType(K),0)).getTypePtr());
Chris Lattner4b009652007-07-25 00:24:17 +0000209}
210
Chris Lattner4b009652007-07-25 00:24:17 +0000211void ASTContext::InitBuiltinTypes() {
212 assert(VoidTy.isNull() && "Context reinitialized?");
213
214 // C99 6.2.5p19.
215 InitBuiltinType(VoidTy, BuiltinType::Void);
216
217 // C99 6.2.5p2.
218 InitBuiltinType(BoolTy, BuiltinType::Bool);
219 // C99 6.2.5p3.
Chris Lattner8cd0e932008-03-05 18:54:05 +0000220 if (Target.isCharSigned())
Chris Lattner4b009652007-07-25 00:24:17 +0000221 InitBuiltinType(CharTy, BuiltinType::Char_S);
222 else
223 InitBuiltinType(CharTy, BuiltinType::Char_U);
224 // C99 6.2.5p4.
225 InitBuiltinType(SignedCharTy, BuiltinType::SChar);
226 InitBuiltinType(ShortTy, BuiltinType::Short);
227 InitBuiltinType(IntTy, BuiltinType::Int);
228 InitBuiltinType(LongTy, BuiltinType::Long);
229 InitBuiltinType(LongLongTy, BuiltinType::LongLong);
230
231 // C99 6.2.5p6.
232 InitBuiltinType(UnsignedCharTy, BuiltinType::UChar);
233 InitBuiltinType(UnsignedShortTy, BuiltinType::UShort);
234 InitBuiltinType(UnsignedIntTy, BuiltinType::UInt);
235 InitBuiltinType(UnsignedLongTy, BuiltinType::ULong);
236 InitBuiltinType(UnsignedLongLongTy, BuiltinType::ULongLong);
237
238 // C99 6.2.5p10.
239 InitBuiltinType(FloatTy, BuiltinType::Float);
240 InitBuiltinType(DoubleTy, BuiltinType::Double);
241 InitBuiltinType(LongDoubleTy, BuiltinType::LongDouble);
Argiris Kirtzidis1ed03e72008-08-09 16:51:54 +0000242
Chris Lattnere1dafe72009-02-26 23:43:47 +0000243 if (LangOpts.CPlusPlus) // C++ 3.9.1p5
244 InitBuiltinType(WCharTy, BuiltinType::WChar);
245 else // C99
246 WCharTy = getFromTargetType(Target.getWCharType());
Argiris Kirtzidis1ed03e72008-08-09 16:51:54 +0000247
Douglas Gregord2baafd2008-10-21 16:13:35 +0000248 // Placeholder type for functions.
Douglas Gregor1b21c7f2008-12-05 23:32:09 +0000249 InitBuiltinType(OverloadTy, BuiltinType::Overload);
250
251 // Placeholder type for type-dependent expressions whose type is
252 // completely unknown. No code should ever check a type against
253 // DependentTy and users should never see it; however, it is here to
254 // help diagnose failures to properly check for type-dependent
255 // expressions.
256 InitBuiltinType(DependentTy, BuiltinType::Dependent);
Douglas Gregord2baafd2008-10-21 16:13:35 +0000257
Chris Lattner4b009652007-07-25 00:24:17 +0000258 // C99 6.2.5p11.
259 FloatComplexTy = getComplexType(FloatTy);
260 DoubleComplexTy = getComplexType(DoubleTy);
261 LongDoubleComplexTy = getComplexType(LongDoubleTy);
Douglas Gregord2baafd2008-10-21 16:13:35 +0000262
Steve Naroff9d12c902007-10-15 14:41:52 +0000263 BuiltinVaListType = QualType();
Ted Kremenek42730c52008-01-07 19:49:32 +0000264 ObjCIdType = QualType();
Steve Naroff9d12c902007-10-15 14:41:52 +0000265 IdStructType = 0;
Ted Kremenek42730c52008-01-07 19:49:32 +0000266 ObjCClassType = QualType();
Anders Carlsson7f23e3d2007-10-31 02:53:19 +0000267 ClassStructType = 0;
268
Ted Kremenek42730c52008-01-07 19:49:32 +0000269 ObjCConstantStringType = QualType();
Fariborz Jahanianc81f3162007-10-29 22:57:28 +0000270
271 // void * type
272 VoidPtrTy = getPointerType(VoidTy);
Chris Lattner4b009652007-07-25 00:24:17 +0000273}
274
275//===----------------------------------------------------------------------===//
276// Type Sizing and Analysis
277//===----------------------------------------------------------------------===//
278
Chris Lattner2a674dc2008-06-30 18:32:54 +0000279/// getFloatTypeSemantics - Return the APFloat 'semantics' for the specified
280/// scalar floating point type.
281const llvm::fltSemantics &ASTContext::getFloatTypeSemantics(QualType T) const {
282 const BuiltinType *BT = T->getAsBuiltinType();
283 assert(BT && "Not a floating point type!");
284 switch (BT->getKind()) {
285 default: assert(0 && "Not a floating point type!");
286 case BuiltinType::Float: return Target.getFloatFormat();
287 case BuiltinType::Double: return Target.getDoubleFormat();
288 case BuiltinType::LongDouble: return Target.getLongDoubleFormat();
289 }
290}
291
Chris Lattnerbd3153e2009-01-24 21:53:27 +0000292/// getDeclAlign - Return a conservative estimate of the alignment of the
293/// specified decl. Note that bitfields do not have a valid alignment, so
294/// this method will assert on them.
Daniel Dunbar96d1f1b2009-02-17 22:16:19 +0000295unsigned ASTContext::getDeclAlignInBytes(const Decl *D) {
Eli Friedman0ee57322009-02-22 02:56:25 +0000296 unsigned Align = Target.getCharWidth();
297
298 if (const AlignedAttr* AA = D->getAttr<AlignedAttr>())
299 Align = std::max(Align, AA->getAlignment());
300
Chris Lattnerbd3153e2009-01-24 21:53:27 +0000301 if (const ValueDecl *VD = dyn_cast<ValueDecl>(D)) {
302 QualType T = VD->getType();
303 // Incomplete or function types default to 1.
Eli Friedman0ee57322009-02-22 02:56:25 +0000304 if (!T->isIncompleteType() && !T->isFunctionType()) {
305 while (isa<VariableArrayType>(T) || isa<IncompleteArrayType>(T))
306 T = cast<ArrayType>(T)->getElementType();
307
308 Align = std::max(Align, getPreferredTypeAlign(T.getTypePtr()));
309 }
Chris Lattnerbd3153e2009-01-24 21:53:27 +0000310 }
Eli Friedman0ee57322009-02-22 02:56:25 +0000311
312 return Align / Target.getCharWidth();
Chris Lattnerbd3153e2009-01-24 21:53:27 +0000313}
Chris Lattner2a674dc2008-06-30 18:32:54 +0000314
Chris Lattner4b009652007-07-25 00:24:17 +0000315/// getTypeSize - Return the size of the specified type, in bits. This method
316/// does not work on incomplete types.
317std::pair<uint64_t, unsigned>
Daniel Dunbar7d6a5d22008-11-08 05:48:37 +0000318ASTContext::getTypeInfo(const Type *T) {
Chris Lattnerc1b68db2008-04-06 22:59:24 +0000319 T = getCanonicalType(T);
Mike Stump44d1f402009-02-27 18:32:39 +0000320 uint64_t Width=0;
321 unsigned Align=8;
Chris Lattner4b009652007-07-25 00:24:17 +0000322 switch (T->getTypeClass()) {
Douglas Gregor4fa58902009-02-26 23:50:07 +0000323#define TYPE(Class, Base)
324#define ABSTRACT_TYPE(Class, Base)
325#define NON_CANONICAL_TYPE(Class, Base) case Type::Class:
326#define DEPENDENT_TYPE(Class, Base) case Type::Class:
327#include "clang/AST/TypeNodes.def"
328 assert(false && "Should not see non-canonical or dependent types");
329 break;
330
Chris Lattner4b009652007-07-25 00:24:17 +0000331 case Type::FunctionNoProto:
332 case Type::FunctionProto:
Douglas Gregor4fa58902009-02-26 23:50:07 +0000333 case Type::IncompleteArray:
Chris Lattner4b009652007-07-25 00:24:17 +0000334 assert(0 && "Incomplete types have no size!");
Steve Naroff83c13012007-08-30 01:06:46 +0000335 case Type::VariableArray:
336 assert(0 && "VLAs not implemented yet!");
337 case Type::ConstantArray: {
Daniel Dunbar7d6a5d22008-11-08 05:48:37 +0000338 const ConstantArrayType *CAT = cast<ConstantArrayType>(T);
Steve Naroff83c13012007-08-30 01:06:46 +0000339
Chris Lattner8cd0e932008-03-05 18:54:05 +0000340 std::pair<uint64_t, unsigned> EltInfo = getTypeInfo(CAT->getElementType());
Chris Lattnerfc18dcc2008-03-08 08:52:55 +0000341 Width = EltInfo.first*CAT->getSize().getZExtValue();
Chris Lattner4b009652007-07-25 00:24:17 +0000342 Align = EltInfo.second;
343 break;
Christopher Lamb82c758b2007-12-29 05:10:55 +0000344 }
Nate Begemanaf6ed502008-04-18 23:10:10 +0000345 case Type::ExtVector:
Chris Lattner4b009652007-07-25 00:24:17 +0000346 case Type::Vector: {
347 std::pair<uint64_t, unsigned> EltInfo =
Chris Lattner8cd0e932008-03-05 18:54:05 +0000348 getTypeInfo(cast<VectorType>(T)->getElementType());
Chris Lattnerfc18dcc2008-03-08 08:52:55 +0000349 Width = EltInfo.first*cast<VectorType>(T)->getNumElements();
Eli Friedman5949a022008-05-30 09:31:38 +0000350 Align = Width;
Nate Begeman7903d052009-01-18 06:42:49 +0000351 // If the alignment is not a power of 2, round up to the next power of 2.
352 // This happens for non-power-of-2 length vectors.
353 // FIXME: this should probably be a target property.
354 Align = 1 << llvm::Log2_32_Ceil(Align);
Chris Lattner4b009652007-07-25 00:24:17 +0000355 break;
356 }
357
Chris Lattnerfc18dcc2008-03-08 08:52:55 +0000358 case Type::Builtin:
Chris Lattner4b009652007-07-25 00:24:17 +0000359 switch (cast<BuiltinType>(T)->getKind()) {
360 default: assert(0 && "Unknown builtin type!");
361 case BuiltinType::Void:
362 assert(0 && "Incomplete types have no size!");
Chris Lattnerb66237b2007-12-19 19:23:28 +0000363 case BuiltinType::Bool:
Chris Lattnerfc18dcc2008-03-08 08:52:55 +0000364 Width = Target.getBoolWidth();
365 Align = Target.getBoolAlign();
Chris Lattnerb66237b2007-12-19 19:23:28 +0000366 break;
Chris Lattner4b009652007-07-25 00:24:17 +0000367 case BuiltinType::Char_S:
368 case BuiltinType::Char_U:
369 case BuiltinType::UChar:
Chris Lattnerb66237b2007-12-19 19:23:28 +0000370 case BuiltinType::SChar:
Chris Lattnerfc18dcc2008-03-08 08:52:55 +0000371 Width = Target.getCharWidth();
372 Align = Target.getCharAlign();
Chris Lattnerb66237b2007-12-19 19:23:28 +0000373 break;
Argiris Kirtzidis1ed03e72008-08-09 16:51:54 +0000374 case BuiltinType::WChar:
375 Width = Target.getWCharWidth();
376 Align = Target.getWCharAlign();
377 break;
Chris Lattner4b009652007-07-25 00:24:17 +0000378 case BuiltinType::UShort:
Chris Lattnerb66237b2007-12-19 19:23:28 +0000379 case BuiltinType::Short:
Chris Lattnerfc18dcc2008-03-08 08:52:55 +0000380 Width = Target.getShortWidth();
381 Align = Target.getShortAlign();
Chris Lattnerb66237b2007-12-19 19:23:28 +0000382 break;
Chris Lattner4b009652007-07-25 00:24:17 +0000383 case BuiltinType::UInt:
Chris Lattnerb66237b2007-12-19 19:23:28 +0000384 case BuiltinType::Int:
Chris Lattnerfc18dcc2008-03-08 08:52:55 +0000385 Width = Target.getIntWidth();
386 Align = Target.getIntAlign();
Chris Lattnerb66237b2007-12-19 19:23:28 +0000387 break;
Chris Lattner4b009652007-07-25 00:24:17 +0000388 case BuiltinType::ULong:
Chris Lattnerb66237b2007-12-19 19:23:28 +0000389 case BuiltinType::Long:
Chris Lattnerfc18dcc2008-03-08 08:52:55 +0000390 Width = Target.getLongWidth();
391 Align = Target.getLongAlign();
Chris Lattnerb66237b2007-12-19 19:23:28 +0000392 break;
Chris Lattner4b009652007-07-25 00:24:17 +0000393 case BuiltinType::ULongLong:
Chris Lattnerb66237b2007-12-19 19:23:28 +0000394 case BuiltinType::LongLong:
Chris Lattnerfc18dcc2008-03-08 08:52:55 +0000395 Width = Target.getLongLongWidth();
396 Align = Target.getLongLongAlign();
Chris Lattnerb66237b2007-12-19 19:23:28 +0000397 break;
398 case BuiltinType::Float:
Chris Lattnerfc18dcc2008-03-08 08:52:55 +0000399 Width = Target.getFloatWidth();
400 Align = Target.getFloatAlign();
Chris Lattnerb66237b2007-12-19 19:23:28 +0000401 break;
402 case BuiltinType::Double:
Chris Lattner1d78a862008-04-07 07:01:58 +0000403 Width = Target.getDoubleWidth();
404 Align = Target.getDoubleAlign();
Chris Lattnerb66237b2007-12-19 19:23:28 +0000405 break;
406 case BuiltinType::LongDouble:
Chris Lattnerfc18dcc2008-03-08 08:52:55 +0000407 Width = Target.getLongDoubleWidth();
408 Align = Target.getLongDoubleAlign();
Chris Lattnerb66237b2007-12-19 19:23:28 +0000409 break;
Chris Lattner4b009652007-07-25 00:24:17 +0000410 }
411 break;
Eli Friedmanff3fcdf2009-02-13 02:31:07 +0000412 case Type::FixedWidthInt:
413 // FIXME: This isn't precisely correct; the width/alignment should depend
414 // on the available types for the target
415 Width = cast<FixedWidthIntType>(T)->getWidth();
Chris Lattnere9174982009-02-15 21:20:13 +0000416 Width = std::max(llvm::NextPowerOf2(Width - 1), (uint64_t)8);
Eli Friedmanff3fcdf2009-02-13 02:31:07 +0000417 Align = Width;
418 break;
Fariborz Jahanianb60352a2009-02-17 18:27:45 +0000419 case Type::ExtQual:
Chris Lattner8cd0e932008-03-05 18:54:05 +0000420 // FIXME: Pointers into different addr spaces could have different sizes and
421 // alignment requirements: getPointerInfo should take an AddrSpace.
Fariborz Jahanianb60352a2009-02-17 18:27:45 +0000422 return getTypeInfo(QualType(cast<ExtQualType>(T)->getBaseType(), 0));
Ted Kremenek42730c52008-01-07 19:49:32 +0000423 case Type::ObjCQualifiedId:
Eli Friedman2f6d70d2009-02-22 04:02:33 +0000424 case Type::ObjCQualifiedClass:
Douglas Gregor4fa58902009-02-26 23:50:07 +0000425 case Type::ObjCQualifiedInterface:
Chris Lattner1d78a862008-04-07 07:01:58 +0000426 Width = Target.getPointerWidth(0);
Chris Lattner461a6c52008-03-08 08:34:58 +0000427 Align = Target.getPointerAlign(0);
Chris Lattnerb66237b2007-12-19 19:23:28 +0000428 break;
Steve Naroff62f09f52008-09-24 15:05:44 +0000429 case Type::BlockPointer: {
430 unsigned AS = cast<BlockPointerType>(T)->getPointeeType().getAddressSpace();
431 Width = Target.getPointerWidth(AS);
432 Align = Target.getPointerAlign(AS);
433 break;
434 }
Chris Lattner461a6c52008-03-08 08:34:58 +0000435 case Type::Pointer: {
436 unsigned AS = cast<PointerType>(T)->getPointeeType().getAddressSpace();
Chris Lattner1d78a862008-04-07 07:01:58 +0000437 Width = Target.getPointerWidth(AS);
Chris Lattner461a6c52008-03-08 08:34:58 +0000438 Align = Target.getPointerAlign(AS);
439 break;
440 }
Sebastian Redlce6fff02009-03-16 23:22:08 +0000441 case Type::LValueReference:
442 case Type::RValueReference:
Chris Lattner4b009652007-07-25 00:24:17 +0000443 // "When applied to a reference or a reference type, the result is the size
444 // of the referenced type." C++98 5.3.3p2: expr.sizeof.
Chris Lattnerb66237b2007-12-19 19:23:28 +0000445 // FIXME: This is wrong for struct layout: a reference in a struct has
446 // pointer size.
Chris Lattnercfac88d2008-04-02 17:35:06 +0000447 return getTypeInfo(cast<ReferenceType>(T)->getPointeeType());
Sebastian Redl75555032009-01-24 21:16:55 +0000448 case Type::MemberPointer: {
Sebastian Redl18cffee2009-01-24 23:29:36 +0000449 // FIXME: This is not only platform- but also ABI-dependent. We follow
Sebastian Redl75555032009-01-24 21:16:55 +0000450 // the GCC ABI, where pointers to data are one pointer large, pointers to
451 // functions two pointers. But if we want to support ABI compatibility with
Sebastian Redl18cffee2009-01-24 23:29:36 +0000452 // other compilers too, we need to delegate this completely to TargetInfo
453 // or some ABI abstraction layer.
Sebastian Redl75555032009-01-24 21:16:55 +0000454 QualType Pointee = cast<MemberPointerType>(T)->getPointeeType();
455 unsigned AS = Pointee.getAddressSpace();
456 Width = Target.getPointerWidth(AS);
457 if (Pointee->isFunctionType())
458 Width *= 2;
459 Align = Target.getPointerAlign(AS);
460 // GCC aligns at single pointer width.
461 }
Chris Lattner4b009652007-07-25 00:24:17 +0000462 case Type::Complex: {
463 // Complex types have the same alignment as their elements, but twice the
464 // size.
465 std::pair<uint64_t, unsigned> EltInfo =
Chris Lattner8cd0e932008-03-05 18:54:05 +0000466 getTypeInfo(cast<ComplexType>(T)->getElementType());
Chris Lattnerfc18dcc2008-03-08 08:52:55 +0000467 Width = EltInfo.first*2;
Chris Lattner4b009652007-07-25 00:24:17 +0000468 Align = EltInfo.second;
469 break;
470 }
Devang Patel4b6bf702008-06-04 21:54:36 +0000471 case Type::ObjCInterface: {
Daniel Dunbar7d6a5d22008-11-08 05:48:37 +0000472 const ObjCInterfaceType *ObjCI = cast<ObjCInterfaceType>(T);
Devang Patel4b6bf702008-06-04 21:54:36 +0000473 const ASTRecordLayout &Layout = getASTObjCInterfaceLayout(ObjCI->getDecl());
474 Width = Layout.getSize();
475 Align = Layout.getAlignment();
476 break;
477 }
Douglas Gregor4fa58902009-02-26 23:50:07 +0000478 case Type::Record:
Douglas Gregor4fa58902009-02-26 23:50:07 +0000479 case Type::Enum: {
Daniel Dunbar7d6a5d22008-11-08 05:48:37 +0000480 const TagType *TT = cast<TagType>(T);
481
482 if (TT->getDecl()->isInvalidDecl()) {
Chris Lattnerfd799692008-08-09 21:35:13 +0000483 Width = 1;
484 Align = 1;
485 break;
486 }
487
Daniel Dunbar7d6a5d22008-11-08 05:48:37 +0000488 if (const EnumType *ET = dyn_cast<EnumType>(TT))
Chris Lattner2bf1d6c2008-04-06 22:05:18 +0000489 return getTypeInfo(ET->getDecl()->getIntegerType());
490
Daniel Dunbar7d6a5d22008-11-08 05:48:37 +0000491 const RecordType *RT = cast<RecordType>(TT);
Chris Lattner2bf1d6c2008-04-06 22:05:18 +0000492 const ASTRecordLayout &Layout = getASTRecordLayout(RT->getDecl());
493 Width = Layout.getSize();
494 Align = Layout.getAlignment();
Chris Lattner4b009652007-07-25 00:24:17 +0000495 break;
496 }
Chris Lattner2bf1d6c2008-04-06 22:05:18 +0000497 }
Chris Lattner4b009652007-07-25 00:24:17 +0000498
499 assert(Align && (Align & (Align-1)) == 0 && "Alignment must be power of 2");
Chris Lattnerfc18dcc2008-03-08 08:52:55 +0000500 return std::make_pair(Width, Align);
Chris Lattner4b009652007-07-25 00:24:17 +0000501}
502
Chris Lattner83165b52009-01-27 18:08:34 +0000503/// getPreferredTypeAlign - Return the "preferred" alignment of the specified
504/// type for the current target in bits. This can be different than the ABI
505/// alignment in cases where it is beneficial for performance to overalign
506/// a data type.
507unsigned ASTContext::getPreferredTypeAlign(const Type *T) {
508 unsigned ABIAlign = getTypeAlign(T);
509
510 // Doubles should be naturally aligned if possible.
Daniel Dunbarc61a8002009-02-18 19:59:32 +0000511 if (T->isSpecificBuiltinType(BuiltinType::Double))
512 return std::max(ABIAlign, 64U);
Chris Lattner83165b52009-01-27 18:08:34 +0000513
514 return ABIAlign;
515}
516
517
Devang Patelbfe323c2008-06-04 21:22:16 +0000518/// LayoutField - Field layout.
519void ASTRecordLayout::LayoutField(const FieldDecl *FD, unsigned FieldNo,
Daniel Dunbar2cb762f2008-10-16 02:34:03 +0000520 bool IsUnion, unsigned StructPacking,
Devang Patelbfe323c2008-06-04 21:22:16 +0000521 ASTContext &Context) {
Daniel Dunbar2cb762f2008-10-16 02:34:03 +0000522 unsigned FieldPacking = StructPacking;
Devang Patelbfe323c2008-06-04 21:22:16 +0000523 uint64_t FieldOffset = IsUnion ? 0 : Size;
524 uint64_t FieldSize;
525 unsigned FieldAlign;
Daniel Dunbar2cb762f2008-10-16 02:34:03 +0000526
527 // FIXME: Should this override struct packing? Probably we want to
528 // take the minimum?
529 if (const PackedAttr *PA = FD->getAttr<PackedAttr>())
530 FieldPacking = PA->getAlignment();
Devang Patelbfe323c2008-06-04 21:22:16 +0000531
532 if (const Expr *BitWidthExpr = FD->getBitWidth()) {
533 // TODO: Need to check this algorithm on other targets!
534 // (tested on Linux-X86)
Daniel Dunbar7cbcbf42008-08-13 23:47:13 +0000535 FieldSize =
536 BitWidthExpr->getIntegerConstantExprValue(Context).getZExtValue();
Devang Patelbfe323c2008-06-04 21:22:16 +0000537
538 std::pair<uint64_t, unsigned> FieldInfo =
539 Context.getTypeInfo(FD->getType());
540 uint64_t TypeSize = FieldInfo.first;
541
Daniel Dunbar2cb762f2008-10-16 02:34:03 +0000542 // Determine the alignment of this bitfield. The packing
543 // attributes define a maximum and the alignment attribute defines
544 // a minimum.
545 // FIXME: What is the right behavior when the specified alignment
546 // is smaller than the specified packing?
Devang Patelbfe323c2008-06-04 21:22:16 +0000547 FieldAlign = FieldInfo.second;
Daniel Dunbar2cb762f2008-10-16 02:34:03 +0000548 if (FieldPacking)
549 FieldAlign = std::min(FieldAlign, FieldPacking);
Devang Patelbfe323c2008-06-04 21:22:16 +0000550 if (const AlignedAttr *AA = FD->getAttr<AlignedAttr>())
551 FieldAlign = std::max(FieldAlign, AA->getAlignment());
552
553 // Check if we need to add padding to give the field the correct
554 // alignment.
555 if (FieldSize == 0 || (FieldOffset & (FieldAlign-1)) + FieldSize > TypeSize)
556 FieldOffset = (FieldOffset + (FieldAlign-1)) & ~(FieldAlign-1);
557
558 // Padding members don't affect overall alignment
559 if (!FD->getIdentifier())
560 FieldAlign = 1;
561 } else {
Chris Lattnerfd799692008-08-09 21:35:13 +0000562 if (FD->getType()->isIncompleteArrayType()) {
563 // This is a flexible array member; we can't directly
Devang Patelbfe323c2008-06-04 21:22:16 +0000564 // query getTypeInfo about these, so we figure it out here.
565 // Flexible array members don't have any size, but they
566 // have to be aligned appropriately for their element type.
567 FieldSize = 0;
Chris Lattnera1923f62008-08-04 07:31:14 +0000568 const ArrayType* ATy = Context.getAsArrayType(FD->getType());
Devang Patelbfe323c2008-06-04 21:22:16 +0000569 FieldAlign = Context.getTypeAlign(ATy->getElementType());
570 } else {
571 std::pair<uint64_t, unsigned> FieldInfo =
572 Context.getTypeInfo(FD->getType());
573 FieldSize = FieldInfo.first;
574 FieldAlign = FieldInfo.second;
575 }
576
Daniel Dunbar2cb762f2008-10-16 02:34:03 +0000577 // Determine the alignment of this bitfield. The packing
578 // attributes define a maximum and the alignment attribute defines
579 // a minimum. Additionally, the packing alignment must be at least
580 // a byte for non-bitfields.
581 //
582 // FIXME: What is the right behavior when the specified alignment
583 // is smaller than the specified packing?
584 if (FieldPacking)
585 FieldAlign = std::min(FieldAlign, std::max(8U, FieldPacking));
Devang Patelbfe323c2008-06-04 21:22:16 +0000586 if (const AlignedAttr *AA = FD->getAttr<AlignedAttr>())
587 FieldAlign = std::max(FieldAlign, AA->getAlignment());
588
589 // Round up the current record size to the field's alignment boundary.
590 FieldOffset = (FieldOffset + (FieldAlign-1)) & ~(FieldAlign-1);
591 }
592
593 // Place this field at the current location.
594 FieldOffsets[FieldNo] = FieldOffset;
595
596 // Reserve space for this field.
597 if (IsUnion) {
598 Size = std::max(Size, FieldSize);
599 } else {
600 Size = FieldOffset + FieldSize;
601 }
602
603 // Remember max struct/class alignment.
604 Alignment = std::max(Alignment, FieldAlign);
605}
606
Fariborz Jahaniana2c97df2009-03-05 20:08:48 +0000607void ASTContext::CollectObjCIvars(const ObjCInterfaceDecl *OI,
608 std::vector<FieldDecl*> &Fields) const {
Fariborz Jahanian0556b152008-12-17 21:40:49 +0000609 const ObjCInterfaceDecl *SuperClass = OI->getSuperClass();
610 if (SuperClass)
611 CollectObjCIvars(SuperClass, Fields);
612 for (ObjCInterfaceDecl::ivar_iterator I = OI->ivar_begin(),
613 E = OI->ivar_end(); I != E; ++I) {
614 ObjCIvarDecl *IVDecl = (*I);
615 if (!IVDecl->isInvalidDecl())
616 Fields.push_back(cast<FieldDecl>(IVDecl));
617 }
618}
619
620/// addRecordToClass - produces record info. for the class for its
621/// ivars and all those inherited.
622///
623const RecordDecl *ASTContext::addRecordToClass(const ObjCInterfaceDecl *D)
624{
625 const RecordDecl *&RD = ASTRecordForInterface[D];
626 if (RD)
627 return RD;
628 std::vector<FieldDecl*> RecFields;
629 CollectObjCIvars(D, RecFields);
630 RecordDecl *NewRD = RecordDecl::Create(*this, TagDecl::TK_struct, 0,
631 D->getLocation(),
632 D->getIdentifier());
633 /// FIXME! Can do collection of ivars and adding to the record while
634 /// doing it.
635 for (unsigned int i = 0; i != RecFields.size(); i++) {
636 FieldDecl *Field = FieldDecl::Create(*this, NewRD,
637 RecFields[i]->getLocation(),
638 RecFields[i]->getIdentifier(),
639 RecFields[i]->getType(),
Douglas Gregoraf8ad2b2009-01-20 01:17:11 +0000640 RecFields[i]->getBitWidth(), false);
Douglas Gregor03b2ad22009-01-12 23:27:07 +0000641 NewRD->addDecl(Field);
Fariborz Jahanian0556b152008-12-17 21:40:49 +0000642 }
643 NewRD->completeDefinition(*this);
644 RD = NewRD;
645 return RD;
646}
Devang Patel4b6bf702008-06-04 21:54:36 +0000647
Fariborz Jahanianea944842008-12-18 17:29:46 +0000648/// setFieldDecl - maps a field for the given Ivar reference node.
649//
650void ASTContext::setFieldDecl(const ObjCInterfaceDecl *OI,
651 const ObjCIvarDecl *Ivar,
652 const ObjCIvarRefExpr *MRef) {
653 FieldDecl *FD = (const_cast<ObjCInterfaceDecl *>(OI))->
654 lookupFieldDeclForIvar(*this, Ivar);
655 ASTFieldForIvarRef[MRef] = FD;
656}
657
Chris Lattner2fda0ed2008-10-05 17:34:18 +0000658/// getASTObjcInterfaceLayout - Get or compute information about the layout of
659/// the specified Objective C, which indicates its size and ivar
Devang Patel4b6bf702008-06-04 21:54:36 +0000660/// position information.
661const ASTRecordLayout &
662ASTContext::getASTObjCInterfaceLayout(const ObjCInterfaceDecl *D) {
663 // Look up this layout, if already laid out, return what we have.
664 const ASTRecordLayout *&Entry = ASTObjCInterfaces[D];
665 if (Entry) return *Entry;
666
667 // Allocate and assign into ASTRecordLayouts here. The "Entry" reference can
668 // be invalidated (dangle) if the ASTRecordLayouts hashtable is inserted into.
Devang Patel8682d882008-06-06 02:14:01 +0000669 ASTRecordLayout *NewEntry = NULL;
670 unsigned FieldCount = D->ivar_size();
671 if (ObjCInterfaceDecl *SD = D->getSuperClass()) {
672 FieldCount++;
673 const ASTRecordLayout &SL = getASTObjCInterfaceLayout(SD);
674 unsigned Alignment = SL.getAlignment();
675 uint64_t Size = SL.getSize();
676 NewEntry = new ASTRecordLayout(Size, Alignment);
677 NewEntry->InitializeLayout(FieldCount);
Chris Lattner2fda0ed2008-10-05 17:34:18 +0000678 // Super class is at the beginning of the layout.
679 NewEntry->SetFieldOffset(0, 0);
Devang Patel8682d882008-06-06 02:14:01 +0000680 } else {
681 NewEntry = new ASTRecordLayout();
682 NewEntry->InitializeLayout(FieldCount);
683 }
Devang Patel4b6bf702008-06-04 21:54:36 +0000684 Entry = NewEntry;
685
Daniel Dunbar2cb762f2008-10-16 02:34:03 +0000686 unsigned StructPacking = 0;
687 if (const PackedAttr *PA = D->getAttr<PackedAttr>())
688 StructPacking = PA->getAlignment();
Devang Patel4b6bf702008-06-04 21:54:36 +0000689
690 if (const AlignedAttr *AA = D->getAttr<AlignedAttr>())
691 NewEntry->SetAlignment(std::max(NewEntry->getAlignment(),
692 AA->getAlignment()));
693
694 // Layout each ivar sequentially.
695 unsigned i = 0;
696 for (ObjCInterfaceDecl::ivar_iterator IVI = D->ivar_begin(),
697 IVE = D->ivar_end(); IVI != IVE; ++IVI) {
698 const ObjCIvarDecl* Ivar = (*IVI);
Daniel Dunbar2cb762f2008-10-16 02:34:03 +0000699 NewEntry->LayoutField(Ivar, i++, false, StructPacking, *this);
Devang Patel4b6bf702008-06-04 21:54:36 +0000700 }
701
702 // Finally, round the size of the total struct up to the alignment of the
703 // struct itself.
704 NewEntry->FinalizeLayout();
705 return *NewEntry;
706}
707
Devang Patel7a78e432007-11-01 19:11:01 +0000708/// getASTRecordLayout - Get or compute information about the layout of the
Chris Lattner4b009652007-07-25 00:24:17 +0000709/// specified record (struct/union/class), which indicates its size and field
710/// position information.
Chris Lattner8cd0e932008-03-05 18:54:05 +0000711const ASTRecordLayout &ASTContext::getASTRecordLayout(const RecordDecl *D) {
Ted Kremenek46a837c2008-09-05 17:16:31 +0000712 D = D->getDefinition(*this);
713 assert(D && "Cannot get layout of forward declarations!");
Eli Friedman5949a022008-05-30 09:31:38 +0000714
Chris Lattner4b009652007-07-25 00:24:17 +0000715 // Look up this layout, if already laid out, return what we have.
Devang Patel7a78e432007-11-01 19:11:01 +0000716 const ASTRecordLayout *&Entry = ASTRecordLayouts[D];
Chris Lattner4b009652007-07-25 00:24:17 +0000717 if (Entry) return *Entry;
Eli Friedman5949a022008-05-30 09:31:38 +0000718
Devang Patel7a78e432007-11-01 19:11:01 +0000719 // Allocate and assign into ASTRecordLayouts here. The "Entry" reference can
720 // be invalidated (dangle) if the ASTRecordLayouts hashtable is inserted into.
721 ASTRecordLayout *NewEntry = new ASTRecordLayout();
Chris Lattner4b009652007-07-25 00:24:17 +0000722 Entry = NewEntry;
Eli Friedman5949a022008-05-30 09:31:38 +0000723
Douglas Gregor39677622008-12-11 20:41:00 +0000724 // FIXME: Avoid linear walk through the fields, if possible.
Douglas Gregor8acb7272008-12-11 16:49:14 +0000725 NewEntry->InitializeLayout(std::distance(D->field_begin(), D->field_end()));
Argiris Kirtzidisc6cc7d52008-06-09 23:19:58 +0000726 bool IsUnion = D->isUnion();
Chris Lattner4b009652007-07-25 00:24:17 +0000727
Daniel Dunbar2cb762f2008-10-16 02:34:03 +0000728 unsigned StructPacking = 0;
729 if (const PackedAttr *PA = D->getAttr<PackedAttr>())
730 StructPacking = PA->getAlignment();
731
Eli Friedman5949a022008-05-30 09:31:38 +0000732 if (const AlignedAttr *AA = D->getAttr<AlignedAttr>())
Devang Patelbfe323c2008-06-04 21:22:16 +0000733 NewEntry->SetAlignment(std::max(NewEntry->getAlignment(),
734 AA->getAlignment()));
Anders Carlsson058237f2008-02-18 07:13:09 +0000735
Eli Friedman5949a022008-05-30 09:31:38 +0000736 // Layout each field, for now, just sequentially, respecting alignment. In
737 // the future, this will need to be tweakable by targets.
Douglas Gregor8acb7272008-12-11 16:49:14 +0000738 unsigned FieldIdx = 0;
Douglas Gregor5d764842009-01-09 17:18:27 +0000739 for (RecordDecl::field_iterator Field = D->field_begin(),
740 FieldEnd = D->field_end();
Douglas Gregor8acb7272008-12-11 16:49:14 +0000741 Field != FieldEnd; (void)++Field, ++FieldIdx)
742 NewEntry->LayoutField(*Field, FieldIdx, IsUnion, StructPacking, *this);
Eli Friedman5949a022008-05-30 09:31:38 +0000743
744 // Finally, round the size of the total struct up to the alignment of the
745 // struct itself.
Devang Patelbfe323c2008-06-04 21:22:16 +0000746 NewEntry->FinalizeLayout();
Chris Lattner4b009652007-07-25 00:24:17 +0000747 return *NewEntry;
748}
749
Chris Lattner4b009652007-07-25 00:24:17 +0000750//===----------------------------------------------------------------------===//
751// Type creation/memoization methods
752//===----------------------------------------------------------------------===//
753
Fariborz Jahanianb60352a2009-02-17 18:27:45 +0000754QualType ASTContext::getAddrSpaceQualType(QualType T, unsigned AddressSpace) {
Chris Lattnerc1b68db2008-04-06 22:59:24 +0000755 QualType CanT = getCanonicalType(T);
756 if (CanT.getAddressSpace() == AddressSpace)
Chris Lattner35fef522008-02-20 20:55:12 +0000757 return T;
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000758
759 // If we are composing extended qualifiers together, merge together into one
760 // ExtQualType node.
761 unsigned CVRQuals = T.getCVRQualifiers();
762 QualType::GCAttrTypes GCAttr = QualType::GCNone;
763 Type *TypeNode = T.getTypePtr();
Chris Lattner35fef522008-02-20 20:55:12 +0000764
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000765 if (ExtQualType *EQT = dyn_cast<ExtQualType>(TypeNode)) {
766 // If this type already has an address space specified, it cannot get
767 // another one.
768 assert(EQT->getAddressSpace() == 0 &&
769 "Type cannot be in multiple addr spaces!");
770 GCAttr = EQT->getObjCGCAttr();
771 TypeNode = EQT->getBaseType();
772 }
Chris Lattner35fef522008-02-20 20:55:12 +0000773
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000774 // Check if we've already instantiated this type.
Christopher Lamb2a72bb32008-02-04 02:31:56 +0000775 llvm::FoldingSetNodeID ID;
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000776 ExtQualType::Profile(ID, TypeNode, AddressSpace, GCAttr);
Christopher Lamb2a72bb32008-02-04 02:31:56 +0000777 void *InsertPos = 0;
Fariborz Jahanianb60352a2009-02-17 18:27:45 +0000778 if (ExtQualType *EXTQy = ExtQualTypes.FindNodeOrInsertPos(ID, InsertPos))
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000779 return QualType(EXTQy, CVRQuals);
780
Christopher Lamb2a72bb32008-02-04 02:31:56 +0000781 // If the base type isn't canonical, this won't be a canonical type either,
782 // so fill in the canonical type field.
783 QualType Canonical;
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000784 if (!TypeNode->isCanonical()) {
Fariborz Jahanianb60352a2009-02-17 18:27:45 +0000785 Canonical = getAddrSpaceQualType(CanT, AddressSpace);
Christopher Lamb2a72bb32008-02-04 02:31:56 +0000786
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000787 // Update InsertPos, the previous call could have invalidated it.
Fariborz Jahanianb60352a2009-02-17 18:27:45 +0000788 ExtQualType *NewIP = ExtQualTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattner578a37e2008-10-12 00:26:57 +0000789 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Christopher Lamb2a72bb32008-02-04 02:31:56 +0000790 }
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000791 ExtQualType *New =
792 new (*this, 8) ExtQualType(TypeNode, Canonical, AddressSpace, GCAttr);
Fariborz Jahanianb60352a2009-02-17 18:27:45 +0000793 ExtQualTypes.InsertNode(New, InsertPos);
Christopher Lamb2a72bb32008-02-04 02:31:56 +0000794 Types.push_back(New);
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000795 return QualType(New, CVRQuals);
Christopher Lamb2a72bb32008-02-04 02:31:56 +0000796}
797
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000798QualType ASTContext::getObjCGCQualType(QualType T,
799 QualType::GCAttrTypes GCAttr) {
Fariborz Jahanianaf238092009-02-18 05:09:49 +0000800 QualType CanT = getCanonicalType(T);
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000801 if (CanT.getObjCGCAttr() == GCAttr)
Fariborz Jahanianaf238092009-02-18 05:09:49 +0000802 return T;
803
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000804 // If we are composing extended qualifiers together, merge together into one
805 // ExtQualType node.
806 unsigned CVRQuals = T.getCVRQualifiers();
807 Type *TypeNode = T.getTypePtr();
808 unsigned AddressSpace = 0;
809
810 if (ExtQualType *EQT = dyn_cast<ExtQualType>(TypeNode)) {
811 // If this type already has an address space specified, it cannot get
812 // another one.
813 assert(EQT->getObjCGCAttr() == QualType::GCNone &&
814 "Type cannot be in multiple addr spaces!");
815 AddressSpace = EQT->getAddressSpace();
816 TypeNode = EQT->getBaseType();
817 }
Fariborz Jahanianaf238092009-02-18 05:09:49 +0000818
819 // Check if we've already instantiated an gc qual'd type of this type.
820 llvm::FoldingSetNodeID ID;
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000821 ExtQualType::Profile(ID, TypeNode, AddressSpace, GCAttr);
Fariborz Jahanianaf238092009-02-18 05:09:49 +0000822 void *InsertPos = 0;
823 if (ExtQualType *EXTQy = ExtQualTypes.FindNodeOrInsertPos(ID, InsertPos))
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000824 return QualType(EXTQy, CVRQuals);
Fariborz Jahanianaf238092009-02-18 05:09:49 +0000825
826 // If the base type isn't canonical, this won't be a canonical type either,
827 // so fill in the canonical type field.
Eli Friedman94fcc9a2009-02-27 23:04:43 +0000828 // FIXME: Isn't this also not canonical if the base type is a array
829 // or pointer type? I can't find any documentation for objc_gc, though...
Fariborz Jahanianaf238092009-02-18 05:09:49 +0000830 QualType Canonical;
831 if (!T->isCanonical()) {
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000832 Canonical = getObjCGCQualType(CanT, GCAttr);
Fariborz Jahanianaf238092009-02-18 05:09:49 +0000833
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000834 // Update InsertPos, the previous call could have invalidated it.
Fariborz Jahanianaf238092009-02-18 05:09:49 +0000835 ExtQualType *NewIP = ExtQualTypes.FindNodeOrInsertPos(ID, InsertPos);
836 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
837 }
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000838 ExtQualType *New =
839 new (*this, 8) ExtQualType(TypeNode, Canonical, AddressSpace, GCAttr);
Fariborz Jahanianaf238092009-02-18 05:09:49 +0000840 ExtQualTypes.InsertNode(New, InsertPos);
841 Types.push_back(New);
Chris Lattner18b5a9a2009-02-18 22:53:11 +0000842 return QualType(New, CVRQuals);
Fariborz Jahanianaf238092009-02-18 05:09:49 +0000843}
Chris Lattner4b009652007-07-25 00:24:17 +0000844
845/// getComplexType - Return the uniqued reference to the type for a complex
846/// number with the specified element type.
847QualType ASTContext::getComplexType(QualType T) {
848 // Unique pointers, to guarantee there is only one pointer of a particular
849 // structure.
850 llvm::FoldingSetNodeID ID;
851 ComplexType::Profile(ID, T);
852
853 void *InsertPos = 0;
854 if (ComplexType *CT = ComplexTypes.FindNodeOrInsertPos(ID, InsertPos))
855 return QualType(CT, 0);
856
857 // If the pointee type isn't canonical, this won't be a canonical type either,
858 // so fill in the canonical type field.
859 QualType Canonical;
860 if (!T->isCanonical()) {
Chris Lattnerc1b68db2008-04-06 22:59:24 +0000861 Canonical = getComplexType(getCanonicalType(T));
Chris Lattner4b009652007-07-25 00:24:17 +0000862
863 // Get the new insert position for the node we care about.
864 ComplexType *NewIP = ComplexTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattner578a37e2008-10-12 00:26:57 +0000865 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Chris Lattner4b009652007-07-25 00:24:17 +0000866 }
Steve Naroff93fd2112009-01-27 22:08:43 +0000867 ComplexType *New = new (*this,8) ComplexType(T, Canonical);
Chris Lattner4b009652007-07-25 00:24:17 +0000868 Types.push_back(New);
869 ComplexTypes.InsertNode(New, InsertPos);
870 return QualType(New, 0);
871}
872
Eli Friedmanff3fcdf2009-02-13 02:31:07 +0000873QualType ASTContext::getFixedWidthIntType(unsigned Width, bool Signed) {
874 llvm::DenseMap<unsigned, FixedWidthIntType*> &Map = Signed ?
875 SignedFixedWidthIntTypes : UnsignedFixedWidthIntTypes;
876 FixedWidthIntType *&Entry = Map[Width];
877 if (!Entry)
878 Entry = new FixedWidthIntType(Width, Signed);
879 return QualType(Entry, 0);
880}
Chris Lattner4b009652007-07-25 00:24:17 +0000881
882/// getPointerType - Return the uniqued reference to the type for a pointer to
883/// the specified type.
884QualType ASTContext::getPointerType(QualType T) {
885 // Unique pointers, to guarantee there is only one pointer of a particular
886 // structure.
887 llvm::FoldingSetNodeID ID;
888 PointerType::Profile(ID, T);
889
890 void *InsertPos = 0;
891 if (PointerType *PT = PointerTypes.FindNodeOrInsertPos(ID, InsertPos))
892 return QualType(PT, 0);
893
894 // If the pointee type isn't canonical, this won't be a canonical type either,
895 // so fill in the canonical type field.
896 QualType Canonical;
897 if (!T->isCanonical()) {
Chris Lattnerc1b68db2008-04-06 22:59:24 +0000898 Canonical = getPointerType(getCanonicalType(T));
Chris Lattner4b009652007-07-25 00:24:17 +0000899
900 // Get the new insert position for the node we care about.
901 PointerType *NewIP = PointerTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattner578a37e2008-10-12 00:26:57 +0000902 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Chris Lattner4b009652007-07-25 00:24:17 +0000903 }
Steve Naroff93fd2112009-01-27 22:08:43 +0000904 PointerType *New = new (*this,8) PointerType(T, Canonical);
Chris Lattner4b009652007-07-25 00:24:17 +0000905 Types.push_back(New);
906 PointerTypes.InsertNode(New, InsertPos);
907 return QualType(New, 0);
908}
909
Steve Naroff7aa54752008-08-27 16:04:49 +0000910/// getBlockPointerType - Return the uniqued reference to the type for
911/// a pointer to the specified block.
912QualType ASTContext::getBlockPointerType(QualType T) {
Steve Narofffd5b19d2008-08-28 19:20:44 +0000913 assert(T->isFunctionType() && "block of function types only");
914 // Unique pointers, to guarantee there is only one block of a particular
Steve Naroff7aa54752008-08-27 16:04:49 +0000915 // structure.
916 llvm::FoldingSetNodeID ID;
917 BlockPointerType::Profile(ID, T);
918
919 void *InsertPos = 0;
920 if (BlockPointerType *PT =
921 BlockPointerTypes.FindNodeOrInsertPos(ID, InsertPos))
922 return QualType(PT, 0);
923
Steve Narofffd5b19d2008-08-28 19:20:44 +0000924 // If the block pointee type isn't canonical, this won't be a canonical
Steve Naroff7aa54752008-08-27 16:04:49 +0000925 // type either so fill in the canonical type field.
926 QualType Canonical;
927 if (!T->isCanonical()) {
928 Canonical = getBlockPointerType(getCanonicalType(T));
929
930 // Get the new insert position for the node we care about.
931 BlockPointerType *NewIP =
932 BlockPointerTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattner578a37e2008-10-12 00:26:57 +0000933 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Steve Naroff7aa54752008-08-27 16:04:49 +0000934 }
Steve Naroff93fd2112009-01-27 22:08:43 +0000935 BlockPointerType *New = new (*this,8) BlockPointerType(T, Canonical);
Steve Naroff7aa54752008-08-27 16:04:49 +0000936 Types.push_back(New);
937 BlockPointerTypes.InsertNode(New, InsertPos);
938 return QualType(New, 0);
939}
940
Sebastian Redlce6fff02009-03-16 23:22:08 +0000941/// getLValueReferenceType - Return the uniqued reference to the type for an
942/// lvalue reference to the specified type.
943QualType ASTContext::getLValueReferenceType(QualType T) {
Chris Lattner4b009652007-07-25 00:24:17 +0000944 // Unique pointers, to guarantee there is only one pointer of a particular
945 // structure.
946 llvm::FoldingSetNodeID ID;
947 ReferenceType::Profile(ID, T);
948
949 void *InsertPos = 0;
Sebastian Redlce6fff02009-03-16 23:22:08 +0000950 if (LValueReferenceType *RT =
951 LValueReferenceTypes.FindNodeOrInsertPos(ID, InsertPos))
Chris Lattner4b009652007-07-25 00:24:17 +0000952 return QualType(RT, 0);
Sebastian Redlce6fff02009-03-16 23:22:08 +0000953
Chris Lattner4b009652007-07-25 00:24:17 +0000954 // If the referencee type isn't canonical, this won't be a canonical type
955 // either, so fill in the canonical type field.
956 QualType Canonical;
957 if (!T->isCanonical()) {
Sebastian Redlce6fff02009-03-16 23:22:08 +0000958 Canonical = getLValueReferenceType(getCanonicalType(T));
959
Chris Lattner4b009652007-07-25 00:24:17 +0000960 // Get the new insert position for the node we care about.
Sebastian Redlce6fff02009-03-16 23:22:08 +0000961 LValueReferenceType *NewIP =
962 LValueReferenceTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattner578a37e2008-10-12 00:26:57 +0000963 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Chris Lattner4b009652007-07-25 00:24:17 +0000964 }
965
Sebastian Redlce6fff02009-03-16 23:22:08 +0000966 LValueReferenceType *New = new (*this,8) LValueReferenceType(T, Canonical);
Chris Lattner4b009652007-07-25 00:24:17 +0000967 Types.push_back(New);
Sebastian Redlce6fff02009-03-16 23:22:08 +0000968 LValueReferenceTypes.InsertNode(New, InsertPos);
969 return QualType(New, 0);
970}
971
972/// getRValueReferenceType - Return the uniqued reference to the type for an
973/// rvalue reference to the specified type.
974QualType ASTContext::getRValueReferenceType(QualType T) {
975 // Unique pointers, to guarantee there is only one pointer of a particular
976 // structure.
977 llvm::FoldingSetNodeID ID;
978 ReferenceType::Profile(ID, T);
979
980 void *InsertPos = 0;
981 if (RValueReferenceType *RT =
982 RValueReferenceTypes.FindNodeOrInsertPos(ID, InsertPos))
983 return QualType(RT, 0);
984
985 // If the referencee type isn't canonical, this won't be a canonical type
986 // either, so fill in the canonical type field.
987 QualType Canonical;
988 if (!T->isCanonical()) {
989 Canonical = getRValueReferenceType(getCanonicalType(T));
990
991 // Get the new insert position for the node we care about.
992 RValueReferenceType *NewIP =
993 RValueReferenceTypes.FindNodeOrInsertPos(ID, InsertPos);
994 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
995 }
996
997 RValueReferenceType *New = new (*this,8) RValueReferenceType(T, Canonical);
998 Types.push_back(New);
999 RValueReferenceTypes.InsertNode(New, InsertPos);
Chris Lattner4b009652007-07-25 00:24:17 +00001000 return QualType(New, 0);
1001}
1002
Sebastian Redl75555032009-01-24 21:16:55 +00001003/// getMemberPointerType - Return the uniqued reference to the type for a
1004/// member pointer to the specified type, in the specified class.
1005QualType ASTContext::getMemberPointerType(QualType T, const Type *Cls)
1006{
1007 // Unique pointers, to guarantee there is only one pointer of a particular
1008 // structure.
1009 llvm::FoldingSetNodeID ID;
1010 MemberPointerType::Profile(ID, T, Cls);
1011
1012 void *InsertPos = 0;
1013 if (MemberPointerType *PT =
1014 MemberPointerTypes.FindNodeOrInsertPos(ID, InsertPos))
1015 return QualType(PT, 0);
1016
1017 // If the pointee or class type isn't canonical, this won't be a canonical
1018 // type either, so fill in the canonical type field.
1019 QualType Canonical;
1020 if (!T->isCanonical()) {
1021 Canonical = getMemberPointerType(getCanonicalType(T),getCanonicalType(Cls));
1022
1023 // Get the new insert position for the node we care about.
1024 MemberPointerType *NewIP =
1025 MemberPointerTypes.FindNodeOrInsertPos(ID, InsertPos);
1026 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
1027 }
Steve Naroff93fd2112009-01-27 22:08:43 +00001028 MemberPointerType *New = new (*this,8) MemberPointerType(T, Cls, Canonical);
Sebastian Redl75555032009-01-24 21:16:55 +00001029 Types.push_back(New);
1030 MemberPointerTypes.InsertNode(New, InsertPos);
1031 return QualType(New, 0);
1032}
1033
Steve Naroff83c13012007-08-30 01:06:46 +00001034/// getConstantArrayType - Return the unique reference to the type for an
1035/// array of the specified element type.
1036QualType ASTContext::getConstantArrayType(QualType EltTy,
Steve Naroff24c9b982007-08-30 18:10:14 +00001037 const llvm::APInt &ArySize,
1038 ArrayType::ArraySizeModifier ASM,
1039 unsigned EltTypeQuals) {
Chris Lattner4b009652007-07-25 00:24:17 +00001040 llvm::FoldingSetNodeID ID;
Chris Lattner3f7a8f12009-02-19 17:31:02 +00001041 ConstantArrayType::Profile(ID, EltTy, ArySize, ASM, EltTypeQuals);
Chris Lattner4b009652007-07-25 00:24:17 +00001042
1043 void *InsertPos = 0;
Ted Kremenek738e6c02007-10-31 17:10:13 +00001044 if (ConstantArrayType *ATP =
1045 ConstantArrayTypes.FindNodeOrInsertPos(ID, InsertPos))
Chris Lattner4b009652007-07-25 00:24:17 +00001046 return QualType(ATP, 0);
1047
1048 // If the element type isn't canonical, this won't be a canonical type either,
1049 // so fill in the canonical type field.
1050 QualType Canonical;
1051 if (!EltTy->isCanonical()) {
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001052 Canonical = getConstantArrayType(getCanonicalType(EltTy), ArySize,
Steve Naroff24c9b982007-08-30 18:10:14 +00001053 ASM, EltTypeQuals);
Chris Lattner4b009652007-07-25 00:24:17 +00001054 // Get the new insert position for the node we care about.
Ted Kremenek738e6c02007-10-31 17:10:13 +00001055 ConstantArrayType *NewIP =
1056 ConstantArrayTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattner578a37e2008-10-12 00:26:57 +00001057 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Chris Lattner4b009652007-07-25 00:24:17 +00001058 }
1059
Ted Kremenekc70e7d02009-01-19 21:31:22 +00001060 ConstantArrayType *New =
Steve Naroff93fd2112009-01-27 22:08:43 +00001061 new(*this,8)ConstantArrayType(EltTy, Canonical, ArySize, ASM, EltTypeQuals);
Ted Kremenek738e6c02007-10-31 17:10:13 +00001062 ConstantArrayTypes.InsertNode(New, InsertPos);
Chris Lattner4b009652007-07-25 00:24:17 +00001063 Types.push_back(New);
1064 return QualType(New, 0);
1065}
1066
Steve Naroffe2579e32007-08-30 18:14:25 +00001067/// getVariableArrayType - Returns a non-unique reference to the type for a
1068/// variable array of the specified element type.
Steve Naroff24c9b982007-08-30 18:10:14 +00001069QualType ASTContext::getVariableArrayType(QualType EltTy, Expr *NumElts,
1070 ArrayType::ArraySizeModifier ASM,
1071 unsigned EltTypeQuals) {
Eli Friedman8ff07782008-02-15 18:16:39 +00001072 // Since we don't unique expressions, it isn't possible to unique VLA's
1073 // that have an expression provided for their size.
1074
Ted Kremenekc70e7d02009-01-19 21:31:22 +00001075 VariableArrayType *New =
Steve Naroff93fd2112009-01-27 22:08:43 +00001076 new(*this,8)VariableArrayType(EltTy,QualType(), NumElts, ASM, EltTypeQuals);
Eli Friedman8ff07782008-02-15 18:16:39 +00001077
1078 VariableArrayTypes.push_back(New);
1079 Types.push_back(New);
1080 return QualType(New, 0);
1081}
1082
Douglas Gregor1b21c7f2008-12-05 23:32:09 +00001083/// getDependentSizedArrayType - Returns a non-unique reference to
1084/// the type for a dependently-sized array of the specified element
1085/// type. FIXME: We will need these to be uniqued, or at least
1086/// comparable, at some point.
1087QualType ASTContext::getDependentSizedArrayType(QualType EltTy, Expr *NumElts,
1088 ArrayType::ArraySizeModifier ASM,
1089 unsigned EltTypeQuals) {
1090 assert((NumElts->isTypeDependent() || NumElts->isValueDependent()) &&
1091 "Size must be type- or value-dependent!");
1092
1093 // Since we don't unique expressions, it isn't possible to unique
1094 // dependently-sized array types.
1095
Ted Kremenekc70e7d02009-01-19 21:31:22 +00001096 DependentSizedArrayType *New =
Steve Naroff93fd2112009-01-27 22:08:43 +00001097 new (*this,8) DependentSizedArrayType(EltTy, QualType(), NumElts,
1098 ASM, EltTypeQuals);
Douglas Gregor1b21c7f2008-12-05 23:32:09 +00001099
1100 DependentSizedArrayTypes.push_back(New);
1101 Types.push_back(New);
1102 return QualType(New, 0);
1103}
1104
Eli Friedman8ff07782008-02-15 18:16:39 +00001105QualType ASTContext::getIncompleteArrayType(QualType EltTy,
1106 ArrayType::ArraySizeModifier ASM,
1107 unsigned EltTypeQuals) {
1108 llvm::FoldingSetNodeID ID;
Chris Lattner3f7a8f12009-02-19 17:31:02 +00001109 IncompleteArrayType::Profile(ID, EltTy, ASM, EltTypeQuals);
Eli Friedman8ff07782008-02-15 18:16:39 +00001110
1111 void *InsertPos = 0;
1112 if (IncompleteArrayType *ATP =
1113 IncompleteArrayTypes.FindNodeOrInsertPos(ID, InsertPos))
1114 return QualType(ATP, 0);
1115
1116 // If the element type isn't canonical, this won't be a canonical type
1117 // either, so fill in the canonical type field.
1118 QualType Canonical;
1119
1120 if (!EltTy->isCanonical()) {
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001121 Canonical = getIncompleteArrayType(getCanonicalType(EltTy),
Ted Kremenek3793e1a2007-10-29 23:37:31 +00001122 ASM, EltTypeQuals);
Eli Friedman8ff07782008-02-15 18:16:39 +00001123
1124 // Get the new insert position for the node we care about.
1125 IncompleteArrayType *NewIP =
1126 IncompleteArrayTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattner578a37e2008-10-12 00:26:57 +00001127 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Ted Kremenek3793e1a2007-10-29 23:37:31 +00001128 }
Eli Friedman8ff07782008-02-15 18:16:39 +00001129
Steve Naroff93fd2112009-01-27 22:08:43 +00001130 IncompleteArrayType *New = new (*this,8) IncompleteArrayType(EltTy, Canonical,
Ted Kremenekc70e7d02009-01-19 21:31:22 +00001131 ASM, EltTypeQuals);
Eli Friedman8ff07782008-02-15 18:16:39 +00001132
1133 IncompleteArrayTypes.InsertNode(New, InsertPos);
1134 Types.push_back(New);
1135 return QualType(New, 0);
Steve Naroff83c13012007-08-30 01:06:46 +00001136}
1137
Chris Lattner4b009652007-07-25 00:24:17 +00001138/// getVectorType - Return the unique reference to a vector type of
1139/// the specified element type and size. VectorType must be a built-in type.
1140QualType ASTContext::getVectorType(QualType vecType, unsigned NumElts) {
1141 BuiltinType *baseType;
1142
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001143 baseType = dyn_cast<BuiltinType>(getCanonicalType(vecType).getTypePtr());
Chris Lattner4b009652007-07-25 00:24:17 +00001144 assert(baseType != 0 && "getVectorType(): Expecting a built-in type");
1145
1146 // Check if we've already instantiated a vector of this type.
1147 llvm::FoldingSetNodeID ID;
1148 VectorType::Profile(ID, vecType, NumElts, Type::Vector);
1149 void *InsertPos = 0;
1150 if (VectorType *VTP = VectorTypes.FindNodeOrInsertPos(ID, InsertPos))
1151 return QualType(VTP, 0);
1152
1153 // If the element type isn't canonical, this won't be a canonical type either,
1154 // so fill in the canonical type field.
1155 QualType Canonical;
1156 if (!vecType->isCanonical()) {
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001157 Canonical = getVectorType(getCanonicalType(vecType), NumElts);
Chris Lattner4b009652007-07-25 00:24:17 +00001158
1159 // Get the new insert position for the node we care about.
1160 VectorType *NewIP = VectorTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattner578a37e2008-10-12 00:26:57 +00001161 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Chris Lattner4b009652007-07-25 00:24:17 +00001162 }
Steve Naroff93fd2112009-01-27 22:08:43 +00001163 VectorType *New = new (*this,8) VectorType(vecType, NumElts, Canonical);
Chris Lattner4b009652007-07-25 00:24:17 +00001164 VectorTypes.InsertNode(New, InsertPos);
1165 Types.push_back(New);
1166 return QualType(New, 0);
1167}
1168
Nate Begemanaf6ed502008-04-18 23:10:10 +00001169/// getExtVectorType - Return the unique reference to an extended vector type of
Chris Lattner4b009652007-07-25 00:24:17 +00001170/// the specified element type and size. VectorType must be a built-in type.
Nate Begemanaf6ed502008-04-18 23:10:10 +00001171QualType ASTContext::getExtVectorType(QualType vecType, unsigned NumElts) {
Chris Lattner4b009652007-07-25 00:24:17 +00001172 BuiltinType *baseType;
1173
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001174 baseType = dyn_cast<BuiltinType>(getCanonicalType(vecType).getTypePtr());
Nate Begemanaf6ed502008-04-18 23:10:10 +00001175 assert(baseType != 0 && "getExtVectorType(): Expecting a built-in type");
Chris Lattner4b009652007-07-25 00:24:17 +00001176
1177 // Check if we've already instantiated a vector of this type.
1178 llvm::FoldingSetNodeID ID;
Nate Begemanaf6ed502008-04-18 23:10:10 +00001179 VectorType::Profile(ID, vecType, NumElts, Type::ExtVector);
Chris Lattner4b009652007-07-25 00:24:17 +00001180 void *InsertPos = 0;
1181 if (VectorType *VTP = VectorTypes.FindNodeOrInsertPos(ID, InsertPos))
1182 return QualType(VTP, 0);
1183
1184 // If the element type isn't canonical, this won't be a canonical type either,
1185 // so fill in the canonical type field.
1186 QualType Canonical;
1187 if (!vecType->isCanonical()) {
Nate Begemanaf6ed502008-04-18 23:10:10 +00001188 Canonical = getExtVectorType(getCanonicalType(vecType), NumElts);
Chris Lattner4b009652007-07-25 00:24:17 +00001189
1190 // Get the new insert position for the node we care about.
1191 VectorType *NewIP = VectorTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattner578a37e2008-10-12 00:26:57 +00001192 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Chris Lattner4b009652007-07-25 00:24:17 +00001193 }
Steve Naroff93fd2112009-01-27 22:08:43 +00001194 ExtVectorType *New = new (*this,8) ExtVectorType(vecType, NumElts, Canonical);
Chris Lattner4b009652007-07-25 00:24:17 +00001195 VectorTypes.InsertNode(New, InsertPos);
1196 Types.push_back(New);
1197 return QualType(New, 0);
1198}
1199
Douglas Gregor4fa58902009-02-26 23:50:07 +00001200/// getFunctionNoProtoType - Return a K&R style C function type like 'int()'.
Chris Lattner4b009652007-07-25 00:24:17 +00001201///
Douglas Gregor4fa58902009-02-26 23:50:07 +00001202QualType ASTContext::getFunctionNoProtoType(QualType ResultTy) {
Chris Lattner4b009652007-07-25 00:24:17 +00001203 // Unique functions, to guarantee there is only one function of a particular
1204 // structure.
1205 llvm::FoldingSetNodeID ID;
Douglas Gregor4fa58902009-02-26 23:50:07 +00001206 FunctionNoProtoType::Profile(ID, ResultTy);
Chris Lattner4b009652007-07-25 00:24:17 +00001207
1208 void *InsertPos = 0;
Douglas Gregor4fa58902009-02-26 23:50:07 +00001209 if (FunctionNoProtoType *FT =
1210 FunctionNoProtoTypes.FindNodeOrInsertPos(ID, InsertPos))
Chris Lattner4b009652007-07-25 00:24:17 +00001211 return QualType(FT, 0);
1212
1213 QualType Canonical;
1214 if (!ResultTy->isCanonical()) {
Douglas Gregor4fa58902009-02-26 23:50:07 +00001215 Canonical = getFunctionNoProtoType(getCanonicalType(ResultTy));
Chris Lattner4b009652007-07-25 00:24:17 +00001216
1217 // Get the new insert position for the node we care about.
Douglas Gregor4fa58902009-02-26 23:50:07 +00001218 FunctionNoProtoType *NewIP =
1219 FunctionNoProtoTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattner578a37e2008-10-12 00:26:57 +00001220 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Chris Lattner4b009652007-07-25 00:24:17 +00001221 }
1222
Douglas Gregor4fa58902009-02-26 23:50:07 +00001223 FunctionNoProtoType *New =new(*this,8)FunctionNoProtoType(ResultTy,Canonical);
Chris Lattner4b009652007-07-25 00:24:17 +00001224 Types.push_back(New);
Douglas Gregor4fa58902009-02-26 23:50:07 +00001225 FunctionNoProtoTypes.InsertNode(New, InsertPos);
Chris Lattner4b009652007-07-25 00:24:17 +00001226 return QualType(New, 0);
1227}
1228
1229/// getFunctionType - Return a normal function type with a typed argument
1230/// list. isVariadic indicates whether the argument list includes '...'.
Chris Lattner2fda0ed2008-10-05 17:34:18 +00001231QualType ASTContext::getFunctionType(QualType ResultTy,const QualType *ArgArray,
Argiris Kirtzidis4b269b42008-10-24 21:46:40 +00001232 unsigned NumArgs, bool isVariadic,
1233 unsigned TypeQuals) {
Chris Lattner4b009652007-07-25 00:24:17 +00001234 // Unique functions, to guarantee there is only one function of a particular
1235 // structure.
1236 llvm::FoldingSetNodeID ID;
Douglas Gregor4fa58902009-02-26 23:50:07 +00001237 FunctionProtoType::Profile(ID, ResultTy, ArgArray, NumArgs, isVariadic,
Argiris Kirtzidis4b269b42008-10-24 21:46:40 +00001238 TypeQuals);
Chris Lattner4b009652007-07-25 00:24:17 +00001239
1240 void *InsertPos = 0;
Douglas Gregor4fa58902009-02-26 23:50:07 +00001241 if (FunctionProtoType *FTP =
1242 FunctionProtoTypes.FindNodeOrInsertPos(ID, InsertPos))
Chris Lattner4b009652007-07-25 00:24:17 +00001243 return QualType(FTP, 0);
1244
1245 // Determine whether the type being created is already canonical or not.
1246 bool isCanonical = ResultTy->isCanonical();
1247 for (unsigned i = 0; i != NumArgs && isCanonical; ++i)
1248 if (!ArgArray[i]->isCanonical())
1249 isCanonical = false;
1250
1251 // If this type isn't canonical, get the canonical version of it.
1252 QualType Canonical;
1253 if (!isCanonical) {
1254 llvm::SmallVector<QualType, 16> CanonicalArgs;
1255 CanonicalArgs.reserve(NumArgs);
1256 for (unsigned i = 0; i != NumArgs; ++i)
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001257 CanonicalArgs.push_back(getCanonicalType(ArgArray[i]));
Chris Lattner4b009652007-07-25 00:24:17 +00001258
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001259 Canonical = getFunctionType(getCanonicalType(ResultTy),
Chris Lattner4b009652007-07-25 00:24:17 +00001260 &CanonicalArgs[0], NumArgs,
Argiris Kirtzidis65b99642008-10-26 16:43:14 +00001261 isVariadic, TypeQuals);
Chris Lattner4b009652007-07-25 00:24:17 +00001262
1263 // Get the new insert position for the node we care about.
Douglas Gregor4fa58902009-02-26 23:50:07 +00001264 FunctionProtoType *NewIP =
1265 FunctionProtoTypes.FindNodeOrInsertPos(ID, InsertPos);
Chris Lattner578a37e2008-10-12 00:26:57 +00001266 assert(NewIP == 0 && "Shouldn't be in the map!"); NewIP = NewIP;
Chris Lattner4b009652007-07-25 00:24:17 +00001267 }
1268
Douglas Gregor4fa58902009-02-26 23:50:07 +00001269 // FunctionProtoType objects are allocated with extra bytes after them
Ted Kremenekc70e7d02009-01-19 21:31:22 +00001270 // for a variable size array (for parameter types) at the end of them.
Douglas Gregor4fa58902009-02-26 23:50:07 +00001271 FunctionProtoType *FTP =
1272 (FunctionProtoType*)Allocate(sizeof(FunctionProtoType) +
Steve Naroff207b9ec2009-01-27 23:20:32 +00001273 NumArgs*sizeof(QualType), 8);
Douglas Gregor4fa58902009-02-26 23:50:07 +00001274 new (FTP) FunctionProtoType(ResultTy, ArgArray, NumArgs, isVariadic,
Argiris Kirtzidis4b269b42008-10-24 21:46:40 +00001275 TypeQuals, Canonical);
Chris Lattner4b009652007-07-25 00:24:17 +00001276 Types.push_back(FTP);
Douglas Gregor4fa58902009-02-26 23:50:07 +00001277 FunctionProtoTypes.InsertNode(FTP, InsertPos);
Chris Lattner4b009652007-07-25 00:24:17 +00001278 return QualType(FTP, 0);
1279}
1280
Douglas Gregor1d661552008-04-13 21:07:44 +00001281/// getTypeDeclType - Return the unique reference to the type for the
1282/// specified type declaration.
Ted Kremenek46a837c2008-09-05 17:16:31 +00001283QualType ASTContext::getTypeDeclType(TypeDecl *Decl, TypeDecl* PrevDecl) {
Argiris Kirtzidiseeec5482008-10-16 16:50:47 +00001284 assert(Decl && "Passed null for Decl param");
Douglas Gregor1d661552008-04-13 21:07:44 +00001285 if (Decl->TypeForDecl) return QualType(Decl->TypeForDecl, 0);
1286
Argiris Kirtzidiseeec5482008-10-16 16:50:47 +00001287 if (TypedefDecl *Typedef = dyn_cast<TypedefDecl>(Decl))
Douglas Gregor1d661552008-04-13 21:07:44 +00001288 return getTypedefType(Typedef);
Douglas Gregora4918772009-02-05 23:33:38 +00001289 else if (isa<TemplateTypeParmDecl>(Decl)) {
1290 assert(false && "Template type parameter types are always available.");
1291 } else if (ObjCInterfaceDecl *ObjCInterface = dyn_cast<ObjCInterfaceDecl>(Decl))
Douglas Gregor1d661552008-04-13 21:07:44 +00001292 return getObjCInterfaceType(ObjCInterface);
Argiris Kirtzidisea29d1e2008-08-07 20:55:28 +00001293
Douglas Gregor2e047592009-02-28 01:32:25 +00001294 if (RecordDecl *Record = dyn_cast<RecordDecl>(Decl)) {
Ted Kremenekc70e7d02009-01-19 21:31:22 +00001295 if (PrevDecl)
1296 Decl->TypeForDecl = PrevDecl->TypeForDecl;
Steve Naroff93fd2112009-01-27 22:08:43 +00001297 else
1298 Decl->TypeForDecl = new (*this,8) RecordType(Record);
Ted Kremenek46a837c2008-09-05 17:16:31 +00001299 }
Ted Kremenekc70e7d02009-01-19 21:31:22 +00001300 else if (EnumDecl *Enum = dyn_cast<EnumDecl>(Decl)) {
1301 if (PrevDecl)
1302 Decl->TypeForDecl = PrevDecl->TypeForDecl;
Steve Naroff93fd2112009-01-27 22:08:43 +00001303 else
1304 Decl->TypeForDecl = new (*this,8) EnumType(Enum);
Ted Kremenekc70e7d02009-01-19 21:31:22 +00001305 }
Argiris Kirtzidisea29d1e2008-08-07 20:55:28 +00001306 else
Douglas Gregor1d661552008-04-13 21:07:44 +00001307 assert(false && "TypeDecl without a type?");
Argiris Kirtzidisea29d1e2008-08-07 20:55:28 +00001308
Ted Kremenek46a837c2008-09-05 17:16:31 +00001309 if (!PrevDecl) Types.push_back(Decl->TypeForDecl);
Argiris Kirtzidisea29d1e2008-08-07 20:55:28 +00001310 return QualType(Decl->TypeForDecl, 0);
Douglas Gregor1d661552008-04-13 21:07:44 +00001311}
1312
Chris Lattner4b009652007-07-25 00:24:17 +00001313/// getTypedefType - Return the unique reference to the type for the
1314/// specified typename decl.
1315QualType ASTContext::getTypedefType(TypedefDecl *Decl) {
1316 if (Decl->TypeForDecl) return QualType(Decl->TypeForDecl, 0);
1317
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001318 QualType Canonical = getCanonicalType(Decl->getUnderlyingType());
Douglas Gregor4fa58902009-02-26 23:50:07 +00001319 Decl->TypeForDecl = new(*this,8) TypedefType(Type::Typedef, Decl, Canonical);
Chris Lattner4b009652007-07-25 00:24:17 +00001320 Types.push_back(Decl->TypeForDecl);
1321 return QualType(Decl->TypeForDecl, 0);
1322}
1323
Ted Kremenek42730c52008-01-07 19:49:32 +00001324/// getObjCInterfaceType - Return the unique reference to the type for the
Steve Naroff81f1bba2007-09-06 21:24:23 +00001325/// specified ObjC interface decl.
Ted Kremenek42730c52008-01-07 19:49:32 +00001326QualType ASTContext::getObjCInterfaceType(ObjCInterfaceDecl *Decl) {
Steve Naroff81f1bba2007-09-06 21:24:23 +00001327 if (Decl->TypeForDecl) return QualType(Decl->TypeForDecl, 0);
1328
Steve Naroff93fd2112009-01-27 22:08:43 +00001329 Decl->TypeForDecl = new(*this,8) ObjCInterfaceType(Type::ObjCInterface, Decl);
Steve Naroff81f1bba2007-09-06 21:24:23 +00001330 Types.push_back(Decl->TypeForDecl);
1331 return QualType(Decl->TypeForDecl, 0);
1332}
1333
Fariborz Jahanian27ecc672009-02-14 20:13:28 +00001334/// buildObjCInterfaceType - Returns a new type for the interface
1335/// declaration, regardless. It also removes any previously built
1336/// record declaration so caller can rebuild it.
1337QualType ASTContext::buildObjCInterfaceType(ObjCInterfaceDecl *Decl) {
1338 const RecordDecl *&RD = ASTRecordForInterface[Decl];
1339 if (RD)
1340 RD = 0;
1341 Decl->TypeForDecl = new(*this,8) ObjCInterfaceType(Type::ObjCInterface, Decl);
1342 Types.push_back(Decl->TypeForDecl);
1343 return QualType(Decl->TypeForDecl, 0);
1344}
1345
Douglas Gregora4918772009-02-05 23:33:38 +00001346/// \brief Retrieve the template type parameter type for a template
1347/// parameter with the given depth, index, and (optionally) name.
1348QualType ASTContext::getTemplateTypeParmType(unsigned Depth, unsigned Index,
1349 IdentifierInfo *Name) {
1350 llvm::FoldingSetNodeID ID;
1351 TemplateTypeParmType::Profile(ID, Depth, Index, Name);
1352 void *InsertPos = 0;
1353 TemplateTypeParmType *TypeParm
1354 = TemplateTypeParmTypes.FindNodeOrInsertPos(ID, InsertPos);
1355
1356 if (TypeParm)
1357 return QualType(TypeParm, 0);
1358
1359 if (Name)
1360 TypeParm = new (*this, 8) TemplateTypeParmType(Depth, Index, Name,
1361 getTemplateTypeParmType(Depth, Index));
1362 else
1363 TypeParm = new (*this, 8) TemplateTypeParmType(Depth, Index);
1364
1365 Types.push_back(TypeParm);
1366 TemplateTypeParmTypes.InsertNode(TypeParm, InsertPos);
1367
1368 return QualType(TypeParm, 0);
1369}
1370
Douglas Gregor8e458f42009-02-09 18:46:07 +00001371QualType
1372ASTContext::getClassTemplateSpecializationType(TemplateDecl *Template,
Douglas Gregorf9ff4b12009-03-09 23:48:35 +00001373 const TemplateArgument *Args,
Douglas Gregor8e458f42009-02-09 18:46:07 +00001374 unsigned NumArgs,
Douglas Gregor8e458f42009-02-09 18:46:07 +00001375 QualType Canon) {
Douglas Gregorf9ff4b12009-03-09 23:48:35 +00001376 if (!Canon.isNull())
1377 Canon = getCanonicalType(Canon);
Douglas Gregor9c7825b2009-02-26 22:19:44 +00001378
Douglas Gregor8e458f42009-02-09 18:46:07 +00001379 llvm::FoldingSetNodeID ID;
Douglas Gregorf9ff4b12009-03-09 23:48:35 +00001380 ClassTemplateSpecializationType::Profile(ID, Template, Args, NumArgs);
1381
Douglas Gregor8e458f42009-02-09 18:46:07 +00001382 void *InsertPos = 0;
1383 ClassTemplateSpecializationType *Spec
1384 = ClassTemplateSpecializationTypes.FindNodeOrInsertPos(ID, InsertPos);
1385
1386 if (Spec)
1387 return QualType(Spec, 0);
1388
Douglas Gregorf9ff4b12009-03-09 23:48:35 +00001389 void *Mem = Allocate((sizeof(ClassTemplateSpecializationType) +
1390 sizeof(TemplateArgument) * NumArgs),
1391 8);
1392 Spec = new (Mem) ClassTemplateSpecializationType(Template, Args, NumArgs,
1393 Canon);
Douglas Gregor8e458f42009-02-09 18:46:07 +00001394 Types.push_back(Spec);
1395 ClassTemplateSpecializationTypes.InsertNode(Spec, InsertPos);
1396
1397 return QualType(Spec, 0);
1398}
1399
Douglas Gregor734b4ba2009-03-19 00:18:19 +00001400QualType
Douglas Gregor1e589cc2009-03-26 23:50:42 +00001401ASTContext::getQualifiedNameType(NestedNameSpecifier *NNS,
Douglas Gregor734b4ba2009-03-19 00:18:19 +00001402 QualType NamedType) {
1403 llvm::FoldingSetNodeID ID;
Douglas Gregor1e589cc2009-03-26 23:50:42 +00001404 QualifiedNameType::Profile(ID, NNS, NamedType);
Douglas Gregor734b4ba2009-03-19 00:18:19 +00001405
1406 void *InsertPos = 0;
1407 QualifiedNameType *T
1408 = QualifiedNameTypes.FindNodeOrInsertPos(ID, InsertPos);
1409 if (T)
1410 return QualType(T, 0);
1411
Douglas Gregor1e589cc2009-03-26 23:50:42 +00001412 T = new (*this) QualifiedNameType(NNS, NamedType,
1413 getCanonicalType(NamedType));
Douglas Gregor734b4ba2009-03-19 00:18:19 +00001414 Types.push_back(T);
1415 QualifiedNameTypes.InsertNode(T, InsertPos);
1416 return QualType(T, 0);
1417}
1418
Douglas Gregord3022602009-03-27 23:10:48 +00001419QualType ASTContext::getTypenameType(NestedNameSpecifier *NNS,
1420 const IdentifierInfo *Name,
1421 QualType Canon) {
1422 assert(NNS->isDependent() && "nested-name-specifier must be dependent");
1423
1424 if (Canon.isNull()) {
1425 NestedNameSpecifier *CanonNNS = getCanonicalNestedNameSpecifier(NNS);
1426 if (CanonNNS != NNS)
1427 Canon = getTypenameType(CanonNNS, Name);
1428 }
1429
1430 llvm::FoldingSetNodeID ID;
1431 TypenameType::Profile(ID, NNS, Name);
1432
1433 void *InsertPos = 0;
1434 TypenameType *T
1435 = TypenameTypes.FindNodeOrInsertPos(ID, InsertPos);
1436 if (T)
1437 return QualType(T, 0);
1438
1439 T = new (*this) TypenameType(NNS, Name, Canon);
1440 Types.push_back(T);
1441 TypenameTypes.InsertNode(T, InsertPos);
1442 return QualType(T, 0);
1443}
1444
Chris Lattnere1352302008-04-07 04:56:42 +00001445/// CmpProtocolNames - Comparison predicate for sorting protocols
1446/// alphabetically.
1447static bool CmpProtocolNames(const ObjCProtocolDecl *LHS,
1448 const ObjCProtocolDecl *RHS) {
Douglas Gregor24afd4a2008-11-17 14:58:09 +00001449 return LHS->getDeclName() < RHS->getDeclName();
Chris Lattnere1352302008-04-07 04:56:42 +00001450}
1451
1452static void SortAndUniqueProtocols(ObjCProtocolDecl **&Protocols,
1453 unsigned &NumProtocols) {
1454 ObjCProtocolDecl **ProtocolsEnd = Protocols+NumProtocols;
1455
1456 // Sort protocols, keyed by name.
1457 std::sort(Protocols, Protocols+NumProtocols, CmpProtocolNames);
1458
1459 // Remove duplicates.
1460 ProtocolsEnd = std::unique(Protocols, ProtocolsEnd);
1461 NumProtocols = ProtocolsEnd-Protocols;
1462}
1463
1464
Chris Lattnerb0c6a1f2008-04-07 04:44:08 +00001465/// getObjCQualifiedInterfaceType - Return a ObjCQualifiedInterfaceType type for
1466/// the given interface decl and the conforming protocol list.
Ted Kremenek42730c52008-01-07 19:49:32 +00001467QualType ASTContext::getObjCQualifiedInterfaceType(ObjCInterfaceDecl *Decl,
1468 ObjCProtocolDecl **Protocols, unsigned NumProtocols) {
Chris Lattnere1352302008-04-07 04:56:42 +00001469 // Sort the protocol list alphabetically to canonicalize it.
1470 SortAndUniqueProtocols(Protocols, NumProtocols);
1471
Fariborz Jahanian91193f62007-10-11 00:55:41 +00001472 llvm::FoldingSetNodeID ID;
Chris Lattner7cdcb252008-04-07 06:38:24 +00001473 ObjCQualifiedInterfaceType::Profile(ID, Decl, Protocols, NumProtocols);
Fariborz Jahanian91193f62007-10-11 00:55:41 +00001474
1475 void *InsertPos = 0;
Ted Kremenek42730c52008-01-07 19:49:32 +00001476 if (ObjCQualifiedInterfaceType *QT =
1477 ObjCQualifiedInterfaceTypes.FindNodeOrInsertPos(ID, InsertPos))
Fariborz Jahanian91193f62007-10-11 00:55:41 +00001478 return QualType(QT, 0);
1479
1480 // No Match;
Ted Kremenek42730c52008-01-07 19:49:32 +00001481 ObjCQualifiedInterfaceType *QType =
Steve Naroff93fd2112009-01-27 22:08:43 +00001482 new (*this,8) ObjCQualifiedInterfaceType(Decl, Protocols, NumProtocols);
Ted Kremenekc70e7d02009-01-19 21:31:22 +00001483
Fariborz Jahanian91193f62007-10-11 00:55:41 +00001484 Types.push_back(QType);
Ted Kremenek42730c52008-01-07 19:49:32 +00001485 ObjCQualifiedInterfaceTypes.InsertNode(QType, InsertPos);
Fariborz Jahanian91193f62007-10-11 00:55:41 +00001486 return QualType(QType, 0);
1487}
1488
Chris Lattnere1352302008-04-07 04:56:42 +00001489/// getObjCQualifiedIdType - Return an ObjCQualifiedIdType for the 'id' decl
1490/// and the conforming protocol list.
Chris Lattner4a68fe02008-07-26 00:46:50 +00001491QualType ASTContext::getObjCQualifiedIdType(ObjCProtocolDecl **Protocols,
Fariborz Jahaniane76e8412007-12-17 21:03:50 +00001492 unsigned NumProtocols) {
Chris Lattnere1352302008-04-07 04:56:42 +00001493 // Sort the protocol list alphabetically to canonicalize it.
1494 SortAndUniqueProtocols(Protocols, NumProtocols);
1495
Fariborz Jahaniane76e8412007-12-17 21:03:50 +00001496 llvm::FoldingSetNodeID ID;
Ted Kremenek42730c52008-01-07 19:49:32 +00001497 ObjCQualifiedIdType::Profile(ID, Protocols, NumProtocols);
Fariborz Jahaniane76e8412007-12-17 21:03:50 +00001498
1499 void *InsertPos = 0;
Ted Kremenek42730c52008-01-07 19:49:32 +00001500 if (ObjCQualifiedIdType *QT =
Chris Lattner4a68fe02008-07-26 00:46:50 +00001501 ObjCQualifiedIdTypes.FindNodeOrInsertPos(ID, InsertPos))
Fariborz Jahaniane76e8412007-12-17 21:03:50 +00001502 return QualType(QT, 0);
1503
1504 // No Match;
Ted Kremenekc70e7d02009-01-19 21:31:22 +00001505 ObjCQualifiedIdType *QType =
Steve Naroff93fd2112009-01-27 22:08:43 +00001506 new (*this,8) ObjCQualifiedIdType(Protocols, NumProtocols);
Fariborz Jahaniane76e8412007-12-17 21:03:50 +00001507 Types.push_back(QType);
Ted Kremenek42730c52008-01-07 19:49:32 +00001508 ObjCQualifiedIdTypes.InsertNode(QType, InsertPos);
Fariborz Jahaniane76e8412007-12-17 21:03:50 +00001509 return QualType(QType, 0);
1510}
1511
Douglas Gregor4fa58902009-02-26 23:50:07 +00001512/// getTypeOfExprType - Unlike many "get<Type>" functions, we can't unique
1513/// TypeOfExprType AST's (since expression's are never shared). For example,
Steve Naroff0604dd92007-08-01 18:02:17 +00001514/// multiple declarations that refer to "typeof(x)" all contain different
1515/// DeclRefExpr's. This doesn't effect the type checker, since it operates
1516/// on canonical type's (which are always unique).
Douglas Gregor4fa58902009-02-26 23:50:07 +00001517QualType ASTContext::getTypeOfExprType(Expr *tofExpr) {
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001518 QualType Canonical = getCanonicalType(tofExpr->getType());
Douglas Gregor4fa58902009-02-26 23:50:07 +00001519 TypeOfExprType *toe = new (*this,8) TypeOfExprType(tofExpr, Canonical);
Steve Naroff0604dd92007-08-01 18:02:17 +00001520 Types.push_back(toe);
1521 return QualType(toe, 0);
Steve Naroff7cbb1462007-07-31 12:34:36 +00001522}
1523
Steve Naroff0604dd92007-08-01 18:02:17 +00001524/// getTypeOfType - Unlike many "get<Type>" functions, we don't unique
1525/// TypeOfType AST's. The only motivation to unique these nodes would be
1526/// memory savings. Since typeof(t) is fairly uncommon, space shouldn't be
1527/// an issue. This doesn't effect the type checker, since it operates
1528/// on canonical type's (which are always unique).
Steve Naroff7cbb1462007-07-31 12:34:36 +00001529QualType ASTContext::getTypeOfType(QualType tofType) {
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001530 QualType Canonical = getCanonicalType(tofType);
Steve Naroff93fd2112009-01-27 22:08:43 +00001531 TypeOfType *tot = new (*this,8) TypeOfType(tofType, Canonical);
Steve Naroff0604dd92007-08-01 18:02:17 +00001532 Types.push_back(tot);
1533 return QualType(tot, 0);
Steve Naroff7cbb1462007-07-31 12:34:36 +00001534}
1535
Chris Lattner4b009652007-07-25 00:24:17 +00001536/// getTagDeclType - Return the unique reference to the type for the
1537/// specified TagDecl (struct/union/class/enum) decl.
1538QualType ASTContext::getTagDeclType(TagDecl *Decl) {
Ted Kremenekae8fa032007-11-26 21:16:01 +00001539 assert (Decl);
Douglas Gregor1d661552008-04-13 21:07:44 +00001540 return getTypeDeclType(Decl);
Chris Lattner4b009652007-07-25 00:24:17 +00001541}
1542
1543/// getSizeType - Return the unique type for "size_t" (C99 7.17), the result
1544/// of the sizeof operator (C99 6.5.3.4p4). The value is target dependent and
1545/// needs to agree with the definition in <stddef.h>.
1546QualType ASTContext::getSizeType() const {
Douglas Gregorc6507e42008-11-03 14:12:49 +00001547 return getFromTargetType(Target.getSizeType());
Chris Lattner4b009652007-07-25 00:24:17 +00001548}
1549
Argiris Kirtzidis1ed03e72008-08-09 16:51:54 +00001550/// getSignedWCharType - Return the type of "signed wchar_t".
1551/// Used when in C++, as a GCC extension.
1552QualType ASTContext::getSignedWCharType() const {
1553 // FIXME: derive from "Target" ?
1554 return WCharTy;
1555}
1556
1557/// getUnsignedWCharType - Return the type of "unsigned wchar_t".
1558/// Used when in C++, as a GCC extension.
1559QualType ASTContext::getUnsignedWCharType() const {
1560 // FIXME: derive from "Target" ?
1561 return UnsignedIntTy;
1562}
1563
Chris Lattner4b009652007-07-25 00:24:17 +00001564/// getPointerDiffType - Return the unique type for "ptrdiff_t" (ref?)
1565/// defined in <stddef.h>. Pointer - pointer requires this (C99 6.5.6p9).
1566QualType ASTContext::getPointerDiffType() const {
Douglas Gregorc6507e42008-11-03 14:12:49 +00001567 return getFromTargetType(Target.getPtrDiffType(0));
Chris Lattner4b009652007-07-25 00:24:17 +00001568}
1569
Chris Lattner19eb97e2008-04-02 05:18:44 +00001570//===----------------------------------------------------------------------===//
1571// Type Operators
1572//===----------------------------------------------------------------------===//
1573
Chris Lattner3dae6f42008-04-06 22:41:35 +00001574/// getCanonicalType - Return the canonical (structural) type corresponding to
1575/// the specified potentially non-canonical type. The non-canonical version
1576/// of a type may have many "decorated" versions of types. Decorators can
1577/// include typedefs, 'typeof' operators, etc. The returned type is guaranteed
1578/// to be free of any of these, allowing two canonical types to be compared
1579/// for exact equality with a simple pointer comparison.
1580QualType ASTContext::getCanonicalType(QualType T) {
1581 QualType CanType = T.getTypePtr()->getCanonicalTypeInternal();
Chris Lattnera1923f62008-08-04 07:31:14 +00001582
1583 // If the result has type qualifiers, make sure to canonicalize them as well.
1584 unsigned TypeQuals = T.getCVRQualifiers() | CanType.getCVRQualifiers();
1585 if (TypeQuals == 0) return CanType;
1586
1587 // If the type qualifiers are on an array type, get the canonical type of the
1588 // array with the qualifiers applied to the element type.
1589 ArrayType *AT = dyn_cast<ArrayType>(CanType);
1590 if (!AT)
1591 return CanType.getQualifiedType(TypeQuals);
1592
1593 // Get the canonical version of the element with the extra qualifiers on it.
1594 // This can recursively sink qualifiers through multiple levels of arrays.
1595 QualType NewEltTy=AT->getElementType().getWithAdditionalQualifiers(TypeQuals);
1596 NewEltTy = getCanonicalType(NewEltTy);
1597
1598 if (ConstantArrayType *CAT = dyn_cast<ConstantArrayType>(AT))
1599 return getConstantArrayType(NewEltTy, CAT->getSize(),CAT->getSizeModifier(),
1600 CAT->getIndexTypeQualifier());
1601 if (IncompleteArrayType *IAT = dyn_cast<IncompleteArrayType>(AT))
1602 return getIncompleteArrayType(NewEltTy, IAT->getSizeModifier(),
1603 IAT->getIndexTypeQualifier());
1604
Douglas Gregor1b21c7f2008-12-05 23:32:09 +00001605 if (DependentSizedArrayType *DSAT = dyn_cast<DependentSizedArrayType>(AT))
1606 return getDependentSizedArrayType(NewEltTy, DSAT->getSizeExpr(),
1607 DSAT->getSizeModifier(),
1608 DSAT->getIndexTypeQualifier());
1609
Chris Lattnera1923f62008-08-04 07:31:14 +00001610 VariableArrayType *VAT = cast<VariableArrayType>(AT);
1611 return getVariableArrayType(NewEltTy, VAT->getSizeExpr(),
1612 VAT->getSizeModifier(),
1613 VAT->getIndexTypeQualifier());
1614}
1615
Douglas Gregord3022602009-03-27 23:10:48 +00001616NestedNameSpecifier *
1617ASTContext::getCanonicalNestedNameSpecifier(NestedNameSpecifier *NNS) {
1618 if (!NNS)
1619 return 0;
1620
1621 switch (NNS->getKind()) {
1622 case NestedNameSpecifier::Identifier:
1623 // Canonicalize the prefix but keep the identifier the same.
1624 return NestedNameSpecifier::Create(*this,
1625 getCanonicalNestedNameSpecifier(NNS->getPrefix()),
1626 NNS->getAsIdentifier());
1627
1628 case NestedNameSpecifier::Namespace:
1629 // A namespace is canonical; build a nested-name-specifier with
1630 // this namespace and no prefix.
1631 return NestedNameSpecifier::Create(*this, 0, NNS->getAsNamespace());
1632
1633 case NestedNameSpecifier::TypeSpec:
1634 case NestedNameSpecifier::TypeSpecWithTemplate: {
1635 QualType T = getCanonicalType(QualType(NNS->getAsType(), 0));
1636 NestedNameSpecifier *Prefix = 0;
1637
1638 // FIXME: This isn't the right check!
1639 if (T->isDependentType())
1640 Prefix = getCanonicalNestedNameSpecifier(NNS->getPrefix());
1641
1642 return NestedNameSpecifier::Create(*this, Prefix,
1643 NNS->getKind() == NestedNameSpecifier::TypeSpecWithTemplate,
1644 T.getTypePtr());
1645 }
1646
1647 case NestedNameSpecifier::Global:
1648 // The global specifier is canonical and unique.
1649 return NNS;
1650 }
1651
1652 // Required to silence a GCC warning
1653 return 0;
1654}
1655
Chris Lattnera1923f62008-08-04 07:31:14 +00001656
1657const ArrayType *ASTContext::getAsArrayType(QualType T) {
1658 // Handle the non-qualified case efficiently.
1659 if (T.getCVRQualifiers() == 0) {
1660 // Handle the common positive case fast.
1661 if (const ArrayType *AT = dyn_cast<ArrayType>(T))
1662 return AT;
1663 }
1664
1665 // Handle the common negative case fast, ignoring CVR qualifiers.
1666 QualType CType = T->getCanonicalTypeInternal();
1667
Fariborz Jahanianb60352a2009-02-17 18:27:45 +00001668 // Make sure to look through type qualifiers (like ExtQuals) for the negative
Chris Lattnera1923f62008-08-04 07:31:14 +00001669 // test.
1670 if (!isa<ArrayType>(CType) &&
1671 !isa<ArrayType>(CType.getUnqualifiedType()))
1672 return 0;
1673
1674 // Apply any CVR qualifiers from the array type to the element type. This
1675 // implements C99 6.7.3p8: "If the specification of an array type includes
1676 // any type qualifiers, the element type is so qualified, not the array type."
1677
1678 // If we get here, we either have type qualifiers on the type, or we have
1679 // sugar such as a typedef in the way. If we have type qualifiers on the type
1680 // we must propagate them down into the elemeng type.
1681 unsigned CVRQuals = T.getCVRQualifiers();
1682 unsigned AddrSpace = 0;
1683 Type *Ty = T.getTypePtr();
1684
Fariborz Jahanianb60352a2009-02-17 18:27:45 +00001685 // Rip through ExtQualType's and typedefs to get to a concrete type.
Chris Lattnera1923f62008-08-04 07:31:14 +00001686 while (1) {
Fariborz Jahanianb60352a2009-02-17 18:27:45 +00001687 if (const ExtQualType *EXTQT = dyn_cast<ExtQualType>(Ty)) {
1688 AddrSpace = EXTQT->getAddressSpace();
1689 Ty = EXTQT->getBaseType();
Chris Lattnera1923f62008-08-04 07:31:14 +00001690 } else {
1691 T = Ty->getDesugaredType();
1692 if (T.getTypePtr() == Ty && T.getCVRQualifiers() == 0)
1693 break;
1694 CVRQuals |= T.getCVRQualifiers();
1695 Ty = T.getTypePtr();
1696 }
1697 }
1698
1699 // If we have a simple case, just return now.
1700 const ArrayType *ATy = dyn_cast<ArrayType>(Ty);
1701 if (ATy == 0 || (AddrSpace == 0 && CVRQuals == 0))
1702 return ATy;
1703
1704 // Otherwise, we have an array and we have qualifiers on it. Push the
1705 // qualifiers into the array element type and return a new array type.
1706 // Get the canonical version of the element with the extra qualifiers on it.
1707 // This can recursively sink qualifiers through multiple levels of arrays.
1708 QualType NewEltTy = ATy->getElementType();
1709 if (AddrSpace)
Fariborz Jahanianb60352a2009-02-17 18:27:45 +00001710 NewEltTy = getAddrSpaceQualType(NewEltTy, AddrSpace);
Chris Lattnera1923f62008-08-04 07:31:14 +00001711 NewEltTy = NewEltTy.getWithAdditionalQualifiers(CVRQuals);
1712
1713 if (const ConstantArrayType *CAT = dyn_cast<ConstantArrayType>(ATy))
1714 return cast<ArrayType>(getConstantArrayType(NewEltTy, CAT->getSize(),
1715 CAT->getSizeModifier(),
1716 CAT->getIndexTypeQualifier()));
1717 if (const IncompleteArrayType *IAT = dyn_cast<IncompleteArrayType>(ATy))
1718 return cast<ArrayType>(getIncompleteArrayType(NewEltTy,
1719 IAT->getSizeModifier(),
1720 IAT->getIndexTypeQualifier()));
Douglas Gregor1b21c7f2008-12-05 23:32:09 +00001721
Douglas Gregor1b21c7f2008-12-05 23:32:09 +00001722 if (const DependentSizedArrayType *DSAT
1723 = dyn_cast<DependentSizedArrayType>(ATy))
1724 return cast<ArrayType>(
1725 getDependentSizedArrayType(NewEltTy,
1726 DSAT->getSizeExpr(),
1727 DSAT->getSizeModifier(),
1728 DSAT->getIndexTypeQualifier()));
Chris Lattnera1923f62008-08-04 07:31:14 +00001729
Chris Lattnera1923f62008-08-04 07:31:14 +00001730 const VariableArrayType *VAT = cast<VariableArrayType>(ATy);
1731 return cast<ArrayType>(getVariableArrayType(NewEltTy, VAT->getSizeExpr(),
1732 VAT->getSizeModifier(),
1733 VAT->getIndexTypeQualifier()));
Chris Lattner3dae6f42008-04-06 22:41:35 +00001734}
1735
1736
Chris Lattner19eb97e2008-04-02 05:18:44 +00001737/// getArrayDecayedType - Return the properly qualified result of decaying the
1738/// specified array type to a pointer. This operation is non-trivial when
1739/// handling typedefs etc. The canonical type of "T" must be an array type,
1740/// this returns a pointer to a properly qualified element of the array.
1741///
1742/// See C99 6.7.5.3p7 and C99 6.3.2.1p3.
1743QualType ASTContext::getArrayDecayedType(QualType Ty) {
Chris Lattnera1923f62008-08-04 07:31:14 +00001744 // Get the element type with 'getAsArrayType' so that we don't lose any
1745 // typedefs in the element type of the array. This also handles propagation
1746 // of type qualifiers from the array type into the element type if present
1747 // (C99 6.7.3p8).
1748 const ArrayType *PrettyArrayType = getAsArrayType(Ty);
1749 assert(PrettyArrayType && "Not an array type!");
Chris Lattner19eb97e2008-04-02 05:18:44 +00001750
Chris Lattnera1923f62008-08-04 07:31:14 +00001751 QualType PtrTy = getPointerType(PrettyArrayType->getElementType());
Chris Lattner19eb97e2008-04-02 05:18:44 +00001752
1753 // int x[restrict 4] -> int *restrict
Chris Lattnera1923f62008-08-04 07:31:14 +00001754 return PtrTy.getQualifiedType(PrettyArrayType->getIndexTypeQualifier());
Chris Lattner19eb97e2008-04-02 05:18:44 +00001755}
1756
Daniel Dunbar4a0b75c2009-01-05 22:14:37 +00001757QualType ASTContext::getBaseElementType(const VariableArrayType *VAT) {
Anders Carlsson76d19c82008-12-21 03:44:36 +00001758 QualType ElemTy = VAT->getElementType();
1759
1760 if (const VariableArrayType *VAT = getAsVariableArrayType(ElemTy))
1761 return getBaseElementType(VAT);
1762
1763 return ElemTy;
1764}
1765
Chris Lattner4b009652007-07-25 00:24:17 +00001766/// getFloatingRank - Return a relative rank for floating point types.
1767/// This routine will assert if passed a built-in type that isn't a float.
Chris Lattnerd7135b42008-04-06 23:38:49 +00001768static FloatingRank getFloatingRank(QualType T) {
Christopher Lamb2a72bb32008-02-04 02:31:56 +00001769 if (const ComplexType *CT = T->getAsComplexType())
Chris Lattner4b009652007-07-25 00:24:17 +00001770 return getFloatingRank(CT->getElementType());
Chris Lattnerd7135b42008-04-06 23:38:49 +00001771
Daniel Dunbar4a0b75c2009-01-05 22:14:37 +00001772 assert(T->getAsBuiltinType() && "getFloatingRank(): not a floating type");
Christopher Lamb2a72bb32008-02-04 02:31:56 +00001773 switch (T->getAsBuiltinType()->getKind()) {
Chris Lattnerd7135b42008-04-06 23:38:49 +00001774 default: assert(0 && "getFloatingRank(): not a floating type");
Chris Lattner4b009652007-07-25 00:24:17 +00001775 case BuiltinType::Float: return FloatRank;
1776 case BuiltinType::Double: return DoubleRank;
1777 case BuiltinType::LongDouble: return LongDoubleRank;
1778 }
1779}
1780
Steve Narofffa0c4532007-08-27 01:41:48 +00001781/// getFloatingTypeOfSizeWithinDomain - Returns a real floating
1782/// point or a complex type (based on typeDomain/typeSize).
1783/// 'typeDomain' is a real floating point or complex type.
1784/// 'typeSize' is a real floating point or complex type.
Chris Lattner7794ae22008-04-06 23:58:54 +00001785QualType ASTContext::getFloatingTypeOfSizeWithinDomain(QualType Size,
1786 QualType Domain) const {
1787 FloatingRank EltRank = getFloatingRank(Size);
1788 if (Domain->isComplexType()) {
1789 switch (EltRank) {
Steve Narofffa0c4532007-08-27 01:41:48 +00001790 default: assert(0 && "getFloatingRank(): illegal value for rank");
Steve Naroff3cf497f2007-08-27 01:27:54 +00001791 case FloatRank: return FloatComplexTy;
1792 case DoubleRank: return DoubleComplexTy;
1793 case LongDoubleRank: return LongDoubleComplexTy;
1794 }
Chris Lattner4b009652007-07-25 00:24:17 +00001795 }
Chris Lattner7794ae22008-04-06 23:58:54 +00001796
1797 assert(Domain->isRealFloatingType() && "Unknown domain!");
1798 switch (EltRank) {
1799 default: assert(0 && "getFloatingRank(): illegal value for rank");
1800 case FloatRank: return FloatTy;
1801 case DoubleRank: return DoubleTy;
1802 case LongDoubleRank: return LongDoubleTy;
Steve Naroff3cf497f2007-08-27 01:27:54 +00001803 }
Chris Lattner4b009652007-07-25 00:24:17 +00001804}
1805
Chris Lattner51285d82008-04-06 23:55:33 +00001806/// getFloatingTypeOrder - Compare the rank of the two specified floating
1807/// point types, ignoring the domain of the type (i.e. 'double' ==
1808/// '_Complex double'). If LHS > RHS, return 1. If LHS == RHS, return 0. If
1809/// LHS < RHS, return -1.
Chris Lattnerd7135b42008-04-06 23:38:49 +00001810int ASTContext::getFloatingTypeOrder(QualType LHS, QualType RHS) {
1811 FloatingRank LHSR = getFloatingRank(LHS);
1812 FloatingRank RHSR = getFloatingRank(RHS);
1813
1814 if (LHSR == RHSR)
Steve Naroff45fc9822007-08-27 15:30:22 +00001815 return 0;
Chris Lattnerd7135b42008-04-06 23:38:49 +00001816 if (LHSR > RHSR)
Steve Naroff45fc9822007-08-27 15:30:22 +00001817 return 1;
1818 return -1;
Chris Lattner4b009652007-07-25 00:24:17 +00001819}
1820
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001821/// getIntegerRank - Return an integer conversion rank (C99 6.3.1.1p1). This
1822/// routine will assert if passed a built-in type that isn't an integer or enum,
1823/// or if it is not canonicalized.
Eli Friedmanff3fcdf2009-02-13 02:31:07 +00001824unsigned ASTContext::getIntegerRank(Type *T) {
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001825 assert(T->isCanonical() && "T should be canonicalized");
Eli Friedmanff3fcdf2009-02-13 02:31:07 +00001826 if (EnumType* ET = dyn_cast<EnumType>(T))
1827 T = ET->getDecl()->getIntegerType().getTypePtr();
1828
1829 // There are two things which impact the integer rank: the width, and
1830 // the ordering of builtins. The builtin ordering is encoded in the
1831 // bottom three bits; the width is encoded in the bits above that.
1832 if (FixedWidthIntType* FWIT = dyn_cast<FixedWidthIntType>(T)) {
1833 return FWIT->getWidth() << 3;
1834 }
1835
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001836 switch (cast<BuiltinType>(T)->getKind()) {
Chris Lattner51285d82008-04-06 23:55:33 +00001837 default: assert(0 && "getIntegerRank(): not a built-in integer");
1838 case BuiltinType::Bool:
Eli Friedmanff3fcdf2009-02-13 02:31:07 +00001839 return 1 + (getIntWidth(BoolTy) << 3);
Chris Lattner51285d82008-04-06 23:55:33 +00001840 case BuiltinType::Char_S:
1841 case BuiltinType::Char_U:
1842 case BuiltinType::SChar:
1843 case BuiltinType::UChar:
Eli Friedmanff3fcdf2009-02-13 02:31:07 +00001844 return 2 + (getIntWidth(CharTy) << 3);
Chris Lattner51285d82008-04-06 23:55:33 +00001845 case BuiltinType::Short:
1846 case BuiltinType::UShort:
Eli Friedmanff3fcdf2009-02-13 02:31:07 +00001847 return 3 + (getIntWidth(ShortTy) << 3);
Chris Lattner51285d82008-04-06 23:55:33 +00001848 case BuiltinType::Int:
1849 case BuiltinType::UInt:
Eli Friedmanff3fcdf2009-02-13 02:31:07 +00001850 return 4 + (getIntWidth(IntTy) << 3);
Chris Lattner51285d82008-04-06 23:55:33 +00001851 case BuiltinType::Long:
1852 case BuiltinType::ULong:
Eli Friedmanff3fcdf2009-02-13 02:31:07 +00001853 return 5 + (getIntWidth(LongTy) << 3);
Chris Lattner51285d82008-04-06 23:55:33 +00001854 case BuiltinType::LongLong:
1855 case BuiltinType::ULongLong:
Eli Friedmanff3fcdf2009-02-13 02:31:07 +00001856 return 6 + (getIntWidth(LongLongTy) << 3);
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001857 }
1858}
1859
Chris Lattner51285d82008-04-06 23:55:33 +00001860/// getIntegerTypeOrder - Returns the highest ranked integer type:
1861/// C99 6.3.1.8p1. If LHS > RHS, return 1. If LHS == RHS, return 0. If
1862/// LHS < RHS, return -1.
1863int ASTContext::getIntegerTypeOrder(QualType LHS, QualType RHS) {
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001864 Type *LHSC = getCanonicalType(LHS).getTypePtr();
1865 Type *RHSC = getCanonicalType(RHS).getTypePtr();
Chris Lattner51285d82008-04-06 23:55:33 +00001866 if (LHSC == RHSC) return 0;
Chris Lattner4b009652007-07-25 00:24:17 +00001867
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001868 bool LHSUnsigned = LHSC->isUnsignedIntegerType();
1869 bool RHSUnsigned = RHSC->isUnsignedIntegerType();
Chris Lattner4b009652007-07-25 00:24:17 +00001870
Chris Lattner51285d82008-04-06 23:55:33 +00001871 unsigned LHSRank = getIntegerRank(LHSC);
1872 unsigned RHSRank = getIntegerRank(RHSC);
Chris Lattner4b009652007-07-25 00:24:17 +00001873
Chris Lattner51285d82008-04-06 23:55:33 +00001874 if (LHSUnsigned == RHSUnsigned) { // Both signed or both unsigned.
1875 if (LHSRank == RHSRank) return 0;
1876 return LHSRank > RHSRank ? 1 : -1;
1877 }
Chris Lattner4b009652007-07-25 00:24:17 +00001878
Chris Lattner51285d82008-04-06 23:55:33 +00001879 // Otherwise, the LHS is signed and the RHS is unsigned or visa versa.
1880 if (LHSUnsigned) {
1881 // If the unsigned [LHS] type is larger, return it.
1882 if (LHSRank >= RHSRank)
1883 return 1;
1884
1885 // If the signed type can represent all values of the unsigned type, it
1886 // wins. Because we are dealing with 2's complement and types that are
1887 // powers of two larger than each other, this is always safe.
1888 return -1;
1889 }
Chris Lattnerc1b68db2008-04-06 22:59:24 +00001890
Chris Lattner51285d82008-04-06 23:55:33 +00001891 // If the unsigned [RHS] type is larger, return it.
1892 if (RHSRank >= LHSRank)
1893 return -1;
1894
1895 // If the signed type can represent all values of the unsigned type, it
1896 // wins. Because we are dealing with 2's complement and types that are
1897 // powers of two larger than each other, this is always safe.
1898 return 1;
Chris Lattner4b009652007-07-25 00:24:17 +00001899}
Anders Carlssone7e7aa22007-08-17 05:31:46 +00001900
1901// getCFConstantStringType - Return the type used for constant CFStrings.
1902QualType ASTContext::getCFConstantStringType() {
1903 if (!CFConstantStringTypeDecl) {
Chris Lattnere4650482008-03-15 06:12:44 +00001904 CFConstantStringTypeDecl =
Argiris Kirtzidisc6cc7d52008-06-09 23:19:58 +00001905 RecordDecl::Create(*this, TagDecl::TK_struct, TUDecl, SourceLocation(),
Ted Kremenek2c984042008-09-05 01:34:33 +00001906 &Idents.get("NSConstantString"));
Anders Carlssonbb2cf512007-11-19 00:25:30 +00001907 QualType FieldTypes[4];
Anders Carlssone7e7aa22007-08-17 05:31:46 +00001908
1909 // const int *isa;
1910 FieldTypes[0] = getPointerType(IntTy.getQualifiedType(QualType::Const));
Anders Carlssonbb2cf512007-11-19 00:25:30 +00001911 // int flags;
1912 FieldTypes[1] = IntTy;
Anders Carlssone7e7aa22007-08-17 05:31:46 +00001913 // const char *str;
Anders Carlssonbb2cf512007-11-19 00:25:30 +00001914 FieldTypes[2] = getPointerType(CharTy.getQualifiedType(QualType::Const));
Anders Carlssone7e7aa22007-08-17 05:31:46 +00001915 // long length;
Anders Carlssonbb2cf512007-11-19 00:25:30 +00001916 FieldTypes[3] = LongTy;
Douglas Gregor8acb7272008-12-11 16:49:14 +00001917
Anders Carlssone7e7aa22007-08-17 05:31:46 +00001918 // Create fields
Douglas Gregor8acb7272008-12-11 16:49:14 +00001919 for (unsigned i = 0; i < 4; ++i) {
1920 FieldDecl *Field = FieldDecl::Create(*this, CFConstantStringTypeDecl,
1921 SourceLocation(), 0,
1922 FieldTypes[i], /*BitWidth=*/0,
Douglas Gregoraf8ad2b2009-01-20 01:17:11 +00001923 /*Mutable=*/false);
Douglas Gregor03b2ad22009-01-12 23:27:07 +00001924 CFConstantStringTypeDecl->addDecl(Field);
Douglas Gregor8acb7272008-12-11 16:49:14 +00001925 }
1926
1927 CFConstantStringTypeDecl->completeDefinition(*this);
Anders Carlssone7e7aa22007-08-17 05:31:46 +00001928 }
1929
1930 return getTagDeclType(CFConstantStringTypeDecl);
Gabor Greif61ce98c2007-09-11 15:32:40 +00001931}
Anders Carlssonfb5b1e82007-10-11 01:00:40 +00001932
Anders Carlssonf58cac72008-08-30 19:34:46 +00001933QualType ASTContext::getObjCFastEnumerationStateType()
1934{
1935 if (!ObjCFastEnumerationStateTypeDecl) {
Douglas Gregor8acb7272008-12-11 16:49:14 +00001936 ObjCFastEnumerationStateTypeDecl =
1937 RecordDecl::Create(*this, TagDecl::TK_struct, TUDecl, SourceLocation(),
1938 &Idents.get("__objcFastEnumerationState"));
1939
Anders Carlssonf58cac72008-08-30 19:34:46 +00001940 QualType FieldTypes[] = {
1941 UnsignedLongTy,
1942 getPointerType(ObjCIdType),
1943 getPointerType(UnsignedLongTy),
1944 getConstantArrayType(UnsignedLongTy,
1945 llvm::APInt(32, 5), ArrayType::Normal, 0)
1946 };
1947
Douglas Gregor8acb7272008-12-11 16:49:14 +00001948 for (size_t i = 0; i < 4; ++i) {
1949 FieldDecl *Field = FieldDecl::Create(*this,
1950 ObjCFastEnumerationStateTypeDecl,
1951 SourceLocation(), 0,
1952 FieldTypes[i], /*BitWidth=*/0,
Douglas Gregoraf8ad2b2009-01-20 01:17:11 +00001953 /*Mutable=*/false);
Douglas Gregor03b2ad22009-01-12 23:27:07 +00001954 ObjCFastEnumerationStateTypeDecl->addDecl(Field);
Douglas Gregor8acb7272008-12-11 16:49:14 +00001955 }
Anders Carlssonf58cac72008-08-30 19:34:46 +00001956
Douglas Gregor8acb7272008-12-11 16:49:14 +00001957 ObjCFastEnumerationStateTypeDecl->completeDefinition(*this);
Anders Carlssonf58cac72008-08-30 19:34:46 +00001958 }
1959
1960 return getTagDeclType(ObjCFastEnumerationStateTypeDecl);
1961}
1962
Anders Carlssone3f02572007-10-29 06:33:42 +00001963// This returns true if a type has been typedefed to BOOL:
1964// typedef <type> BOOL;
Chris Lattnercb034cb2007-10-30 20:27:44 +00001965static bool isTypeTypedefedAsBOOL(QualType T) {
Anders Carlssone3f02572007-10-29 06:33:42 +00001966 if (const TypedefType *TT = dyn_cast<TypedefType>(T))
Chris Lattner85fb3842008-11-24 03:52:59 +00001967 if (IdentifierInfo *II = TT->getDecl()->getIdentifier())
1968 return II->isStr("BOOL");
Anders Carlsson36f07d82007-10-29 05:01:08 +00001969
1970 return false;
1971}
1972
Ted Kremenek42730c52008-01-07 19:49:32 +00001973/// getObjCEncodingTypeSize returns size of type for objective-c encoding
Fariborz Jahanianc81f3162007-10-29 22:57:28 +00001974/// purpose.
Ted Kremenek42730c52008-01-07 19:49:32 +00001975int ASTContext::getObjCEncodingTypeSize(QualType type) {
Chris Lattner8cd0e932008-03-05 18:54:05 +00001976 uint64_t sz = getTypeSize(type);
Fariborz Jahanianc81f3162007-10-29 22:57:28 +00001977
1978 // Make all integer and enum types at least as large as an int
1979 if (sz > 0 && type->isIntegralType())
Chris Lattner8cd0e932008-03-05 18:54:05 +00001980 sz = std::max(sz, getTypeSize(IntTy));
Fariborz Jahanianc81f3162007-10-29 22:57:28 +00001981 // Treat arrays as pointers, since that's how they're passed in.
1982 else if (type->isArrayType())
Chris Lattner8cd0e932008-03-05 18:54:05 +00001983 sz = getTypeSize(VoidPtrTy);
1984 return sz / getTypeSize(CharTy);
Fariborz Jahanianc81f3162007-10-29 22:57:28 +00001985}
1986
Ted Kremenek42730c52008-01-07 19:49:32 +00001987/// getObjCEncodingForMethodDecl - Return the encoded type for this method
Fariborz Jahanianc81f3162007-10-29 22:57:28 +00001988/// declaration.
Daniel Dunbar698d6f32008-08-28 04:38:10 +00001989void ASTContext::getObjCEncodingForMethodDecl(const ObjCMethodDecl *Decl,
Chris Lattnerae430292008-11-19 07:24:05 +00001990 std::string& S) {
Daniel Dunbar698d6f32008-08-28 04:38:10 +00001991 // FIXME: This is not very efficient.
Fariborz Jahanian65e7eb52007-11-01 17:18:37 +00001992 // Encode type qualifer, 'in', 'inout', etc. for the return type.
Ted Kremenek42730c52008-01-07 19:49:32 +00001993 getObjCEncodingForTypeQualifier(Decl->getObjCDeclQualifier(), S);
Fariborz Jahanianc81f3162007-10-29 22:57:28 +00001994 // Encode result type.
Daniel Dunbarc9197cd2008-10-17 20:21:44 +00001995 getObjCEncodingForType(Decl->getResultType(), S);
Fariborz Jahanianc81f3162007-10-29 22:57:28 +00001996 // Compute size of all parameters.
1997 // Start with computing size of a pointer in number of bytes.
1998 // FIXME: There might(should) be a better way of doing this computation!
1999 SourceLocation Loc;
Chris Lattner8cd0e932008-03-05 18:54:05 +00002000 int PtrSize = getTypeSize(VoidPtrTy) / getTypeSize(CharTy);
Fariborz Jahanianc81f3162007-10-29 22:57:28 +00002001 // The first two arguments (self and _cmd) are pointers; account for
2002 // their size.
2003 int ParmOffset = 2 * PtrSize;
Chris Lattner5c6b2c62009-02-20 18:43:26 +00002004 for (ObjCMethodDecl::param_iterator PI = Decl->param_begin(),
2005 E = Decl->param_end(); PI != E; ++PI) {
2006 QualType PType = (*PI)->getType();
2007 int sz = getObjCEncodingTypeSize(PType);
Ted Kremenek42730c52008-01-07 19:49:32 +00002008 assert (sz > 0 && "getObjCEncodingForMethodDecl - Incomplete param type");
Fariborz Jahanianc81f3162007-10-29 22:57:28 +00002009 ParmOffset += sz;
2010 }
2011 S += llvm::utostr(ParmOffset);
2012 S += "@0:";
2013 S += llvm::utostr(PtrSize);
2014
2015 // Argument types.
2016 ParmOffset = 2 * PtrSize;
Chris Lattner5c6b2c62009-02-20 18:43:26 +00002017 for (ObjCMethodDecl::param_iterator PI = Decl->param_begin(),
2018 E = Decl->param_end(); PI != E; ++PI) {
2019 ParmVarDecl *PVDecl = *PI;
Fariborz Jahaniane26cb432008-12-20 23:29:59 +00002020 QualType PType = PVDecl->getOriginalType();
2021 if (const ArrayType *AT =
2022 dyn_cast<ArrayType>(PType->getCanonicalTypeInternal()))
2023 // Use array's original type only if it has known number of
2024 // elements.
2025 if (!dyn_cast<ConstantArrayType>(AT))
2026 PType = PVDecl->getType();
Fariborz Jahanian65e7eb52007-11-01 17:18:37 +00002027 // Process argument qualifiers for user supplied arguments; such as,
Fariborz Jahanianc81f3162007-10-29 22:57:28 +00002028 // 'in', 'inout', etc.
Fariborz Jahaniane26cb432008-12-20 23:29:59 +00002029 getObjCEncodingForTypeQualifier(PVDecl->getObjCDeclQualifier(), S);
Daniel Dunbarc9197cd2008-10-17 20:21:44 +00002030 getObjCEncodingForType(PType, S);
Fariborz Jahanianc81f3162007-10-29 22:57:28 +00002031 S += llvm::utostr(ParmOffset);
Ted Kremenek42730c52008-01-07 19:49:32 +00002032 ParmOffset += getObjCEncodingTypeSize(PType);
Fariborz Jahanianc81f3162007-10-29 22:57:28 +00002033 }
2034}
2035
Daniel Dunbar698d6f32008-08-28 04:38:10 +00002036/// getObjCEncodingForPropertyDecl - Return the encoded type for this
Fariborz Jahanian501ef5c2009-01-20 20:04:12 +00002037/// property declaration. If non-NULL, Container must be either an
Daniel Dunbar698d6f32008-08-28 04:38:10 +00002038/// ObjCCategoryImplDecl or ObjCImplementationDecl; it should only be
2039/// NULL when getting encodings for protocol properties.
Fariborz Jahanian501ef5c2009-01-20 20:04:12 +00002040/// Property attributes are stored as a comma-delimited C string. The simple
2041/// attributes readonly and bycopy are encoded as single characters. The
2042/// parametrized attributes, getter=name, setter=name, and ivar=name, are
2043/// encoded as single characters, followed by an identifier. Property types
2044/// are also encoded as a parametrized attribute. The characters used to encode
2045/// these attributes are defined by the following enumeration:
2046/// @code
2047/// enum PropertyAttributes {
2048/// kPropertyReadOnly = 'R', // property is read-only.
2049/// kPropertyBycopy = 'C', // property is a copy of the value last assigned
2050/// kPropertyByref = '&', // property is a reference to the value last assigned
2051/// kPropertyDynamic = 'D', // property is dynamic
2052/// kPropertyGetter = 'G', // followed by getter selector name
2053/// kPropertySetter = 'S', // followed by setter selector name
2054/// kPropertyInstanceVariable = 'V' // followed by instance variable name
2055/// kPropertyType = 't' // followed by old-style type encoding.
2056/// kPropertyWeak = 'W' // 'weak' property
2057/// kPropertyStrong = 'P' // property GC'able
2058/// kPropertyNonAtomic = 'N' // property non-atomic
2059/// };
2060/// @endcode
Daniel Dunbar698d6f32008-08-28 04:38:10 +00002061void ASTContext::getObjCEncodingForPropertyDecl(const ObjCPropertyDecl *PD,
2062 const Decl *Container,
Chris Lattnerae430292008-11-19 07:24:05 +00002063 std::string& S) {
Daniel Dunbar698d6f32008-08-28 04:38:10 +00002064 // Collect information from the property implementation decl(s).
2065 bool Dynamic = false;
2066 ObjCPropertyImplDecl *SynthesizePID = 0;
2067
2068 // FIXME: Duplicated code due to poor abstraction.
2069 if (Container) {
2070 if (const ObjCCategoryImplDecl *CID =
2071 dyn_cast<ObjCCategoryImplDecl>(Container)) {
2072 for (ObjCCategoryImplDecl::propimpl_iterator
2073 i = CID->propimpl_begin(), e = CID->propimpl_end(); i != e; ++i) {
2074 ObjCPropertyImplDecl *PID = *i;
2075 if (PID->getPropertyDecl() == PD) {
2076 if (PID->getPropertyImplementation()==ObjCPropertyImplDecl::Dynamic) {
2077 Dynamic = true;
2078 } else {
2079 SynthesizePID = PID;
2080 }
2081 }
2082 }
2083 } else {
Chris Lattner2fda0ed2008-10-05 17:34:18 +00002084 const ObjCImplementationDecl *OID=cast<ObjCImplementationDecl>(Container);
Daniel Dunbar698d6f32008-08-28 04:38:10 +00002085 for (ObjCCategoryImplDecl::propimpl_iterator
2086 i = OID->propimpl_begin(), e = OID->propimpl_end(); i != e; ++i) {
2087 ObjCPropertyImplDecl *PID = *i;
2088 if (PID->getPropertyDecl() == PD) {
2089 if (PID->getPropertyImplementation()==ObjCPropertyImplDecl::Dynamic) {
2090 Dynamic = true;
2091 } else {
2092 SynthesizePID = PID;
2093 }
2094 }
2095 }
2096 }
2097 }
2098
2099 // FIXME: This is not very efficient.
2100 S = "T";
2101
2102 // Encode result type.
Fariborz Jahanian892d5db2009-01-20 19:14:18 +00002103 // GCC has some special rules regarding encoding of properties which
2104 // closely resembles encoding of ivars.
2105 getObjCEncodingForTypeImpl(PD->getType(), S, true, true, NULL,
2106 true /* outermost type */,
2107 true /* encoding for property */);
Daniel Dunbar698d6f32008-08-28 04:38:10 +00002108
2109 if (PD->isReadOnly()) {
2110 S += ",R";
2111 } else {
2112 switch (PD->getSetterKind()) {
2113 case ObjCPropertyDecl::Assign: break;
2114 case ObjCPropertyDecl::Copy: S += ",C"; break;
2115 case ObjCPropertyDecl::Retain: S += ",&"; break;
2116 }
2117 }
2118
2119 // It really isn't clear at all what this means, since properties
2120 // are "dynamic by default".
2121 if (Dynamic)
2122 S += ",D";
2123
Fariborz Jahanian892d5db2009-01-20 19:14:18 +00002124 if (PD->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_nonatomic)
2125 S += ",N";
2126
Daniel Dunbar698d6f32008-08-28 04:38:10 +00002127 if (PD->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_getter) {
2128 S += ",G";
Chris Lattner3a8f2942008-11-24 03:33:13 +00002129 S += PD->getGetterName().getAsString();
Daniel Dunbar698d6f32008-08-28 04:38:10 +00002130 }
2131
2132 if (PD->getPropertyAttributes() & ObjCPropertyDecl::OBJC_PR_setter) {
2133 S += ",S";
Chris Lattner3a8f2942008-11-24 03:33:13 +00002134 S += PD->getSetterName().getAsString();
Daniel Dunbar698d6f32008-08-28 04:38:10 +00002135 }
2136
2137 if (SynthesizePID) {
2138 const ObjCIvarDecl *OID = SynthesizePID->getPropertyIvarDecl();
2139 S += ",V";
Chris Lattner6c5ec622008-11-24 04:00:27 +00002140 S += OID->getNameAsString();
Daniel Dunbar698d6f32008-08-28 04:38:10 +00002141 }
2142
2143 // FIXME: OBJCGC: weak & strong
2144}
2145
Fariborz Jahaniane07d9ec2008-12-23 19:56:47 +00002146/// getLegacyIntegralTypeEncoding -
2147/// Another legacy compatibility encoding: 32-bit longs are encoded as
Fariborz Jahanian89155952009-02-11 23:59:18 +00002148/// 'l' or 'L' , but not always. For typedefs, we need to use
Fariborz Jahaniane07d9ec2008-12-23 19:56:47 +00002149/// 'i' or 'I' instead if encoding a struct field, or a pointer!
2150///
2151void ASTContext::getLegacyIntegralTypeEncoding (QualType &PointeeTy) const {
2152 if (dyn_cast<TypedefType>(PointeeTy.getTypePtr())) {
2153 if (const BuiltinType *BT = PointeeTy->getAsBuiltinType()) {
Fariborz Jahanian89155952009-02-11 23:59:18 +00002154 if (BT->getKind() == BuiltinType::ULong &&
2155 ((const_cast<ASTContext *>(this))->getIntWidth(PointeeTy) == 32))
Fariborz Jahaniane07d9ec2008-12-23 19:56:47 +00002156 PointeeTy = UnsignedIntTy;
Fariborz Jahanian89155952009-02-11 23:59:18 +00002157 else
2158 if (BT->getKind() == BuiltinType::Long &&
2159 ((const_cast<ASTContext *>(this))->getIntWidth(PointeeTy) == 32))
Fariborz Jahaniane07d9ec2008-12-23 19:56:47 +00002160 PointeeTy = IntTy;
2161 }
2162 }
2163}
2164
Fariborz Jahanian248db262008-01-22 22:44:46 +00002165void ASTContext::getObjCEncodingForType(QualType T, std::string& S,
Fariborz Jahanian0cd547f2008-12-19 23:34:38 +00002166 FieldDecl *Field) const {
Daniel Dunbarf8cfe562008-10-17 07:30:50 +00002167 // We follow the behavior of gcc, expanding structures which are
2168 // directly pointed to, and expanding embedded structures. Note that
2169 // these rules are sufficient to prevent recursive encoding of the
2170 // same type.
Fariborz Jahanian89ed86b2008-12-22 23:22:27 +00002171 getObjCEncodingForTypeImpl(T, S, true, true, Field,
2172 true /* outermost type */);
Daniel Dunbarf8cfe562008-10-17 07:30:50 +00002173}
2174
Fariborz Jahaniand1361952009-01-13 01:18:13 +00002175static void EncodeBitField(const ASTContext *Context, std::string& S,
2176 FieldDecl *FD) {
2177 const Expr *E = FD->getBitWidth();
2178 assert(E && "bitfield width not there - getObjCEncodingForTypeImpl");
2179 ASTContext *Ctx = const_cast<ASTContext*>(Context);
2180 unsigned N = E->getIntegerConstantExprValue(*Ctx).getZExtValue();
2181 S += 'b';
2182 S += llvm::utostr(N);
2183}
2184
Daniel Dunbarf8cfe562008-10-17 07:30:50 +00002185void ASTContext::getObjCEncodingForTypeImpl(QualType T, std::string& S,
2186 bool ExpandPointedToStructures,
2187 bool ExpandStructures,
Fariborz Jahanian89ed86b2008-12-22 23:22:27 +00002188 FieldDecl *FD,
Fariborz Jahanian892d5db2009-01-20 19:14:18 +00002189 bool OutermostType,
2190 bool EncodingProperty) const {
Anders Carlssone3f02572007-10-29 06:33:42 +00002191 if (const BuiltinType *BT = T->getAsBuiltinType()) {
Fariborz Jahanian0cd547f2008-12-19 23:34:38 +00002192 if (FD && FD->isBitField()) {
Fariborz Jahaniand1361952009-01-13 01:18:13 +00002193 EncodeBitField(this, S, FD);
Anders Carlsson36f07d82007-10-29 05:01:08 +00002194 }
Fariborz Jahanian0cd547f2008-12-19 23:34:38 +00002195 else {
2196 char encoding;
2197 switch (BT->getKind()) {
2198 default: assert(0 && "Unhandled builtin type kind");
2199 case BuiltinType::Void: encoding = 'v'; break;
2200 case BuiltinType::Bool: encoding = 'B'; break;
2201 case BuiltinType::Char_U:
2202 case BuiltinType::UChar: encoding = 'C'; break;
2203 case BuiltinType::UShort: encoding = 'S'; break;
2204 case BuiltinType::UInt: encoding = 'I'; break;
Fariborz Jahanianebd95752009-02-11 22:31:45 +00002205 case BuiltinType::ULong:
2206 encoding =
2207 (const_cast<ASTContext *>(this))->getIntWidth(T) == 32 ? 'L' : 'Q';
2208 break;
Fariborz Jahanian0cd547f2008-12-19 23:34:38 +00002209 case BuiltinType::ULongLong: encoding = 'Q'; break;
2210 case BuiltinType::Char_S:
2211 case BuiltinType::SChar: encoding = 'c'; break;
2212 case BuiltinType::Short: encoding = 's'; break;
2213 case BuiltinType::Int: encoding = 'i'; break;
Fariborz Jahanianebd95752009-02-11 22:31:45 +00002214 case BuiltinType::Long:
2215 encoding =
2216 (const_cast<ASTContext *>(this))->getIntWidth(T) == 32 ? 'l' : 'q';
2217 break;
Fariborz Jahanian0cd547f2008-12-19 23:34:38 +00002218 case BuiltinType::LongLong: encoding = 'q'; break;
2219 case BuiltinType::Float: encoding = 'f'; break;
2220 case BuiltinType::Double: encoding = 'd'; break;
2221 case BuiltinType::LongDouble: encoding = 'd'; break;
2222 }
Anders Carlsson36f07d82007-10-29 05:01:08 +00002223
Fariborz Jahanian0cd547f2008-12-19 23:34:38 +00002224 S += encoding;
2225 }
Fariborz Jahaniane76e8412007-12-17 21:03:50 +00002226 }
Ted Kremenek42730c52008-01-07 19:49:32 +00002227 else if (T->isObjCQualifiedIdType()) {
Fariborz Jahanian892d5db2009-01-20 19:14:18 +00002228 getObjCEncodingForTypeImpl(getObjCIdType(), S,
2229 ExpandPointedToStructures,
2230 ExpandStructures, FD);
2231 if (FD || EncodingProperty) {
2232 // Note that we do extended encoding of protocol qualifer list
2233 // Only when doing ivar or property encoding.
2234 const ObjCQualifiedIdType *QIDT = T->getAsObjCQualifiedIdType();
2235 S += '"';
2236 for (unsigned i =0; i < QIDT->getNumProtocols(); i++) {
2237 ObjCProtocolDecl *Proto = QIDT->getProtocols(i);
2238 S += '<';
2239 S += Proto->getNameAsString();
2240 S += '>';
2241 }
2242 S += '"';
2243 }
2244 return;
Fariborz Jahaniane76e8412007-12-17 21:03:50 +00002245 }
2246 else if (const PointerType *PT = T->getAsPointerType()) {
Anders Carlsson36f07d82007-10-29 05:01:08 +00002247 QualType PointeeTy = PT->getPointeeType();
Fariborz Jahaniane07d9ec2008-12-23 19:56:47 +00002248 bool isReadOnly = false;
2249 // For historical/compatibility reasons, the read-only qualifier of the
2250 // pointee gets emitted _before_ the '^'. The read-only qualifier of
2251 // the pointer itself gets ignored, _unless_ we are looking at a typedef!
2252 // Also, do not emit the 'r' for anything but the outermost type!
2253 if (dyn_cast<TypedefType>(T.getTypePtr())) {
2254 if (OutermostType && T.isConstQualified()) {
2255 isReadOnly = true;
2256 S += 'r';
2257 }
2258 }
2259 else if (OutermostType) {
2260 QualType P = PointeeTy;
2261 while (P->getAsPointerType())
2262 P = P->getAsPointerType()->getPointeeType();
2263 if (P.isConstQualified()) {
2264 isReadOnly = true;
2265 S += 'r';
2266 }
2267 }
2268 if (isReadOnly) {
2269 // Another legacy compatibility encoding. Some ObjC qualifier and type
2270 // combinations need to be rearranged.
2271 // Rewrite "in const" from "nr" to "rn"
2272 const char * s = S.c_str();
2273 int len = S.length();
2274 if (len >= 2 && s[len-2] == 'n' && s[len-1] == 'r') {
2275 std::string replace = "rn";
2276 S.replace(S.end()-2, S.end(), replace);
2277 }
2278 }
Steve Naroff17c03822009-02-12 17:52:19 +00002279 if (isObjCIdStructType(PointeeTy)) {
Fariborz Jahanian80faffa2007-10-30 17:06:23 +00002280 S += '@';
2281 return;
Fariborz Jahanianc8679472008-12-19 00:14:49 +00002282 }
2283 else if (PointeeTy->isObjCInterfaceType()) {
Fariborz Jahanian94675042009-02-16 21:41:04 +00002284 if (!EncodingProperty &&
Fariborz Jahanian6bc0f2d2009-02-16 22:09:26 +00002285 isa<TypedefType>(PointeeTy.getTypePtr())) {
Fariborz Jahaniand3498aa2008-12-23 21:30:15 +00002286 // Another historical/compatibility reason.
2287 // We encode the underlying type which comes out as
2288 // {...};
2289 S += '^';
2290 getObjCEncodingForTypeImpl(PointeeTy, S,
2291 false, ExpandPointedToStructures,
2292 NULL);
2293 return;
2294 }
Fariborz Jahanianc8679472008-12-19 00:14:49 +00002295 S += '@';
Fariborz Jahanian892d5db2009-01-20 19:14:18 +00002296 if (FD || EncodingProperty) {
Fariborz Jahanianc69da272009-02-21 18:23:24 +00002297 const ObjCInterfaceType *OIT =
2298 PointeeTy.getUnqualifiedType()->getAsObjCInterfaceType();
Fariborz Jahanian892d5db2009-01-20 19:14:18 +00002299 ObjCInterfaceDecl *OI = OIT->getDecl();
Fariborz Jahanian320ac422008-12-20 19:17:01 +00002300 S += '"';
2301 S += OI->getNameAsCString();
Fariborz Jahanian892d5db2009-01-20 19:14:18 +00002302 for (unsigned i =0; i < OIT->getNumProtocols(); i++) {
2303 ObjCProtocolDecl *Proto = OIT->getProtocol(i);
2304 S += '<';
2305 S += Proto->getNameAsString();
2306 S += '>';
2307 }
Fariborz Jahanian320ac422008-12-20 19:17:01 +00002308 S += '"';
2309 }
Fariborz Jahanianc8679472008-12-19 00:14:49 +00002310 return;
Steve Naroff17c03822009-02-12 17:52:19 +00002311 } else if (isObjCClassStructType(PointeeTy)) {
Anders Carlsson7f23e3d2007-10-31 02:53:19 +00002312 S += '#';
2313 return;
Ted Kremenek42730c52008-01-07 19:49:32 +00002314 } else if (isObjCSelType(PointeeTy)) {
Anders Carlsson7f23e3d2007-10-31 02:53:19 +00002315 S += ':';
2316 return;
Fariborz Jahanian80faffa2007-10-30 17:06:23 +00002317 }
Anders Carlsson36f07d82007-10-29 05:01:08 +00002318
2319 if (PointeeTy->isCharType()) {
2320 // char pointer types should be encoded as '*' unless it is a
2321 // type that has been typedef'd to 'BOOL'.
Anders Carlssone3f02572007-10-29 06:33:42 +00002322 if (!isTypeTypedefedAsBOOL(PointeeTy)) {
Anders Carlsson36f07d82007-10-29 05:01:08 +00002323 S += '*';
2324 return;
2325 }
2326 }
2327
2328 S += '^';
Fariborz Jahaniane07d9ec2008-12-23 19:56:47 +00002329 getLegacyIntegralTypeEncoding(PointeeTy);
2330
2331 getObjCEncodingForTypeImpl(PointeeTy, S,
Daniel Dunbaraa913102008-10-17 16:17:37 +00002332 false, ExpandPointedToStructures,
Fariborz Jahanian0cd547f2008-12-19 23:34:38 +00002333 NULL);
Chris Lattnera1923f62008-08-04 07:31:14 +00002334 } else if (const ArrayType *AT =
2335 // Ignore type qualifiers etc.
2336 dyn_cast<ArrayType>(T->getCanonicalTypeInternal())) {
Anders Carlsson858c64d2009-02-22 01:38:57 +00002337 if (isa<IncompleteArrayType>(AT)) {
2338 // Incomplete arrays are encoded as a pointer to the array element.
2339 S += '^';
2340
2341 getObjCEncodingForTypeImpl(AT->getElementType(), S,
2342 false, ExpandStructures, FD);
2343 } else {
2344 S += '[';
Anders Carlsson36f07d82007-10-29 05:01:08 +00002345
Anders Carlsson858c64d2009-02-22 01:38:57 +00002346 if (const ConstantArrayType *CAT = dyn_cast<ConstantArrayType>(AT))
2347 S += llvm::utostr(CAT->getSize().getZExtValue());
2348 else {
2349 //Variable length arrays are encoded as a regular array with 0 elements.
2350 assert(isa<VariableArrayType>(AT) && "Unknown array type!");
2351 S += '0';
2352 }
Anders Carlsson36f07d82007-10-29 05:01:08 +00002353
Anders Carlsson858c64d2009-02-22 01:38:57 +00002354 getObjCEncodingForTypeImpl(AT->getElementType(), S,
2355 false, ExpandStructures, FD);
2356 S += ']';
2357 }
Anders Carlsson5695bb72007-10-30 00:06:20 +00002358 } else if (T->getAsFunctionType()) {
2359 S += '?';
Fariborz Jahanianc8ba2bd2007-11-13 23:21:38 +00002360 } else if (const RecordType *RTy = T->getAsRecordType()) {
Daniel Dunbarf8cfe562008-10-17 07:30:50 +00002361 RecordDecl *RDecl = RTy->getDecl();
Daniel Dunbaraa913102008-10-17 16:17:37 +00002362 S += RDecl->isUnion() ? '(' : '{';
Daniel Dunbar146b2d02008-10-17 06:22:57 +00002363 // Anonymous structures print as '?'
2364 if (const IdentifierInfo *II = RDecl->getIdentifier()) {
2365 S += II->getName();
2366 } else {
2367 S += '?';
2368 }
Daniel Dunbarc9197cd2008-10-17 20:21:44 +00002369 if (ExpandStructures) {
Fariborz Jahanian248db262008-01-22 22:44:46 +00002370 S += '=';
Douglas Gregor8acb7272008-12-11 16:49:14 +00002371 for (RecordDecl::field_iterator Field = RDecl->field_begin(),
2372 FieldEnd = RDecl->field_end();
2373 Field != FieldEnd; ++Field) {
Fariborz Jahanian0cd547f2008-12-19 23:34:38 +00002374 if (FD) {
Daniel Dunbaraa913102008-10-17 16:17:37 +00002375 S += '"';
Douglas Gregor8acb7272008-12-11 16:49:14 +00002376 S += Field->getNameAsString();
Daniel Dunbaraa913102008-10-17 16:17:37 +00002377 S += '"';
2378 }
2379
2380 // Special case bit-fields.
Fariborz Jahanian0cd547f2008-12-19 23:34:38 +00002381 if (Field->isBitField()) {
2382 getObjCEncodingForTypeImpl(Field->getType(), S, false, true,
2383 (*Field));
Daniel Dunbaraa913102008-10-17 16:17:37 +00002384 } else {
Fariborz Jahaniane07d9ec2008-12-23 19:56:47 +00002385 QualType qt = Field->getType();
2386 getLegacyIntegralTypeEncoding(qt);
2387 getObjCEncodingForTypeImpl(qt, S, false, true,
Fariborz Jahanian0cd547f2008-12-19 23:34:38 +00002388 FD);
Daniel Dunbaraa913102008-10-17 16:17:37 +00002389 }
Fariborz Jahanian248db262008-01-22 22:44:46 +00002390 }
Fariborz Jahanianc8ba2bd2007-11-13 23:21:38 +00002391 }
Daniel Dunbaraa913102008-10-17 16:17:37 +00002392 S += RDecl->isUnion() ? ')' : '}';
Steve Naroff49af3f32007-12-12 22:30:11 +00002393 } else if (T->isEnumeralType()) {
Fariborz Jahaniand1361952009-01-13 01:18:13 +00002394 if (FD && FD->isBitField())
2395 EncodeBitField(this, S, FD);
2396 else
2397 S += 'i';
Steve Naroff62f09f52008-09-24 15:05:44 +00002398 } else if (T->isBlockPointerType()) {
Steve Naroff725e0662009-02-02 18:24:29 +00002399 S += "@?"; // Unlike a pointer-to-function, which is "^?".
Fariborz Jahanian0cd547f2008-12-19 23:34:38 +00002400 } else if (T->isObjCInterfaceType()) {
2401 // @encode(class_name)
2402 ObjCInterfaceDecl *OI = T->getAsObjCInterfaceType()->getDecl();
2403 S += '{';
2404 const IdentifierInfo *II = OI->getIdentifier();
2405 S += II->getName();
2406 S += '=';
2407 std::vector<FieldDecl*> RecFields;
2408 CollectObjCIvars(OI, RecFields);
2409 for (unsigned int i = 0; i != RecFields.size(); i++) {
2410 if (RecFields[i]->isBitField())
2411 getObjCEncodingForTypeImpl(RecFields[i]->getType(), S, false, true,
2412 RecFields[i]);
2413 else
2414 getObjCEncodingForTypeImpl(RecFields[i]->getType(), S, false, true,
2415 FD);
2416 }
2417 S += '}';
2418 }
2419 else
Steve Naroff53b6f4c2008-01-30 19:17:43 +00002420 assert(0 && "@encode for type not implemented!");
Anders Carlsson36f07d82007-10-29 05:01:08 +00002421}
2422
Ted Kremenek42730c52008-01-07 19:49:32 +00002423void ASTContext::getObjCEncodingForTypeQualifier(Decl::ObjCDeclQualifier QT,
Fariborz Jahanian65e7eb52007-11-01 17:18:37 +00002424 std::string& S) const {
2425 if (QT & Decl::OBJC_TQ_In)
2426 S += 'n';
2427 if (QT & Decl::OBJC_TQ_Inout)
2428 S += 'N';
2429 if (QT & Decl::OBJC_TQ_Out)
2430 S += 'o';
2431 if (QT & Decl::OBJC_TQ_Bycopy)
2432 S += 'O';
2433 if (QT & Decl::OBJC_TQ_Byref)
2434 S += 'R';
2435 if (QT & Decl::OBJC_TQ_Oneway)
2436 S += 'V';
2437}
2438
Anders Carlssonfb5b1e82007-10-11 01:00:40 +00002439void ASTContext::setBuiltinVaListType(QualType T)
2440{
2441 assert(BuiltinVaListType.isNull() && "__builtin_va_list type already set!");
2442
2443 BuiltinVaListType = T;
2444}
2445
Ted Kremenek42730c52008-01-07 19:49:32 +00002446void ASTContext::setObjCIdType(TypedefDecl *TD)
Steve Naroff9d12c902007-10-15 14:41:52 +00002447{
Ted Kremenek42730c52008-01-07 19:49:32 +00002448 ObjCIdType = getTypedefType(TD);
Steve Naroff9d12c902007-10-15 14:41:52 +00002449
2450 // typedef struct objc_object *id;
2451 const PointerType *ptr = TD->getUnderlyingType()->getAsPointerType();
Fariborz Jahaniande939672009-01-16 19:58:32 +00002452 // User error - caller will issue diagnostics.
2453 if (!ptr)
2454 return;
Steve Naroff9d12c902007-10-15 14:41:52 +00002455 const RecordType *rec = ptr->getPointeeType()->getAsStructureType();
Fariborz Jahaniande939672009-01-16 19:58:32 +00002456 // User error - caller will issue diagnostics.
2457 if (!rec)
2458 return;
Steve Naroff9d12c902007-10-15 14:41:52 +00002459 IdStructType = rec;
2460}
2461
Ted Kremenek42730c52008-01-07 19:49:32 +00002462void ASTContext::setObjCSelType(TypedefDecl *TD)
Fariborz Jahanianf807c202007-10-16 20:40:23 +00002463{
Ted Kremenek42730c52008-01-07 19:49:32 +00002464 ObjCSelType = getTypedefType(TD);
Fariborz Jahanianf807c202007-10-16 20:40:23 +00002465
2466 // typedef struct objc_selector *SEL;
2467 const PointerType *ptr = TD->getUnderlyingType()->getAsPointerType();
Fariborz Jahaniande939672009-01-16 19:58:32 +00002468 if (!ptr)
2469 return;
Fariborz Jahanianf807c202007-10-16 20:40:23 +00002470 const RecordType *rec = ptr->getPointeeType()->getAsStructureType();
Fariborz Jahaniande939672009-01-16 19:58:32 +00002471 if (!rec)
2472 return;
Fariborz Jahanianf807c202007-10-16 20:40:23 +00002473 SelStructType = rec;
2474}
2475
Ted Kremenek42730c52008-01-07 19:49:32 +00002476void ASTContext::setObjCProtoType(QualType QT)
Fariborz Jahanianb391e6e2007-10-17 16:58:11 +00002477{
Ted Kremenek42730c52008-01-07 19:49:32 +00002478 ObjCProtoType = QT;
Fariborz Jahanianb391e6e2007-10-17 16:58:11 +00002479}
2480
Ted Kremenek42730c52008-01-07 19:49:32 +00002481void ASTContext::setObjCClassType(TypedefDecl *TD)
Anders Carlsson7f23e3d2007-10-31 02:53:19 +00002482{
Ted Kremenek42730c52008-01-07 19:49:32 +00002483 ObjCClassType = getTypedefType(TD);
Anders Carlsson7f23e3d2007-10-31 02:53:19 +00002484
2485 // typedef struct objc_class *Class;
2486 const PointerType *ptr = TD->getUnderlyingType()->getAsPointerType();
2487 assert(ptr && "'Class' incorrectly typed");
2488 const RecordType *rec = ptr->getPointeeType()->getAsStructureType();
2489 assert(rec && "'Class' incorrectly typed");
2490 ClassStructType = rec;
2491}
2492
Ted Kremenek42730c52008-01-07 19:49:32 +00002493void ASTContext::setObjCConstantStringInterface(ObjCInterfaceDecl *Decl) {
2494 assert(ObjCConstantStringType.isNull() &&
Steve Narofff2e30312007-10-15 23:35:17 +00002495 "'NSConstantString' type already set!");
2496
Ted Kremenek42730c52008-01-07 19:49:32 +00002497 ObjCConstantStringType = getObjCInterfaceType(Decl);
Steve Narofff2e30312007-10-15 23:35:17 +00002498}
2499
Douglas Gregorc6507e42008-11-03 14:12:49 +00002500/// getFromTargetType - Given one of the integer types provided by
Douglas Gregorbb66b412008-11-03 15:57:00 +00002501/// TargetInfo, produce the corresponding type. The unsigned @p Type
2502/// is actually a value of type @c TargetInfo::IntType.
2503QualType ASTContext::getFromTargetType(unsigned Type) const {
Douglas Gregorc6507e42008-11-03 14:12:49 +00002504 switch (Type) {
2505 case TargetInfo::NoInt: return QualType();
2506 case TargetInfo::SignedShort: return ShortTy;
2507 case TargetInfo::UnsignedShort: return UnsignedShortTy;
2508 case TargetInfo::SignedInt: return IntTy;
2509 case TargetInfo::UnsignedInt: return UnsignedIntTy;
2510 case TargetInfo::SignedLong: return LongTy;
2511 case TargetInfo::UnsignedLong: return UnsignedLongTy;
2512 case TargetInfo::SignedLongLong: return LongLongTy;
2513 case TargetInfo::UnsignedLongLong: return UnsignedLongLongTy;
2514 }
2515
2516 assert(false && "Unhandled TargetInfo::IntType value");
Daniel Dunbar7b0dcc22008-11-11 01:16:00 +00002517 return QualType();
Douglas Gregorc6507e42008-11-03 14:12:49 +00002518}
Ted Kremenek118930e2008-07-24 23:58:27 +00002519
2520//===----------------------------------------------------------------------===//
2521// Type Predicates.
2522//===----------------------------------------------------------------------===//
2523
Fariborz Jahanian82f54962009-01-13 23:34:40 +00002524/// isObjCNSObjectType - Return true if this is an NSObject object using
2525/// NSObject attribute on a c-style pointer type.
2526/// FIXME - Make it work directly on types.
2527///
2528bool ASTContext::isObjCNSObjectType(QualType Ty) const {
2529 if (TypedefType *TDT = dyn_cast<TypedefType>(Ty)) {
2530 if (TypedefDecl *TD = TDT->getDecl())
2531 if (TD->getAttr<ObjCNSObjectAttr>())
2532 return true;
2533 }
2534 return false;
2535}
2536
Ted Kremenek118930e2008-07-24 23:58:27 +00002537/// isObjCObjectPointerType - Returns true if type is an Objective-C pointer
2538/// to an object type. This includes "id" and "Class" (two 'special' pointers
2539/// to struct), Interface* (pointer to ObjCInterfaceType) and id<P> (qualified
2540/// ID type).
2541bool ASTContext::isObjCObjectPointerType(QualType Ty) const {
Steve Naroff6805fc42009-02-23 18:36:16 +00002542 if (Ty->isObjCQualifiedIdType())
Ted Kremenek118930e2008-07-24 23:58:27 +00002543 return true;
2544
Steve Naroffd9e00802008-10-21 18:24:04 +00002545 // Blocks are objects.
2546 if (Ty->isBlockPointerType())
2547 return true;
2548
2549 // All other object types are pointers.
Ted Kremenek118930e2008-07-24 23:58:27 +00002550 if (!Ty->isPointerType())
2551 return false;
2552
2553 // Check to see if this is 'id' or 'Class', both of which are typedefs for
2554 // pointer types. This looks for the typedef specifically, not for the
2555 // underlying type.
Eli Friedman9c2b33f2009-03-22 23:00:19 +00002556 if (Ty.getUnqualifiedType() == getObjCIdType() ||
2557 Ty.getUnqualifiedType() == getObjCClassType())
Ted Kremenek118930e2008-07-24 23:58:27 +00002558 return true;
2559
2560 // If this a pointer to an interface (e.g. NSString*), it is ok.
Fariborz Jahanian82f54962009-01-13 23:34:40 +00002561 if (Ty->getAsPointerType()->getPointeeType()->isObjCInterfaceType())
2562 return true;
2563
2564 // If is has NSObject attribute, OK as well.
2565 return isObjCNSObjectType(Ty);
Ted Kremenek118930e2008-07-24 23:58:27 +00002566}
2567
Fariborz Jahanianb8ca6ff2009-02-18 21:49:28 +00002568/// getObjCGCAttr - Returns one of GCNone, Weak or Strong objc's
2569/// garbage collection attribute.
2570///
2571QualType::GCAttrTypes ASTContext::getObjCGCAttrKind(const QualType &Ty) const {
Chris Lattner18b5a9a2009-02-18 22:53:11 +00002572 QualType::GCAttrTypes GCAttrs = QualType::GCNone;
Fariborz Jahanianb8ca6ff2009-02-18 21:49:28 +00002573 if (getLangOptions().ObjC1 &&
2574 getLangOptions().getGCMode() != LangOptions::NonGC) {
Chris Lattner18b5a9a2009-02-18 22:53:11 +00002575 GCAttrs = Ty.getObjCGCAttr();
Fariborz Jahanianb8ca6ff2009-02-18 21:49:28 +00002576 // Default behavious under objective-c's gc is for objective-c pointers
Fariborz Jahanianbbd4ca92009-02-19 23:36:06 +00002577 // (or pointers to them) be treated as though they were declared
2578 // as __strong.
2579 if (GCAttrs == QualType::GCNone) {
2580 if (isObjCObjectPointerType(Ty))
2581 GCAttrs = QualType::Strong;
2582 else if (Ty->isPointerType())
2583 return getObjCGCAttrKind(Ty->getAsPointerType()->getPointeeType());
2584 }
Fariborz Jahanianb8ca6ff2009-02-18 21:49:28 +00002585 }
Chris Lattner18b5a9a2009-02-18 22:53:11 +00002586 return GCAttrs;
Fariborz Jahanianb8ca6ff2009-02-18 21:49:28 +00002587}
2588
Chris Lattner6ff358b2008-04-07 06:51:04 +00002589//===----------------------------------------------------------------------===//
2590// Type Compatibility Testing
2591//===----------------------------------------------------------------------===//
Chris Lattner5003e8b2007-11-01 05:03:41 +00002592
Steve Naroff3454b6c2008-09-04 15:10:53 +00002593/// typesAreBlockCompatible - This routine is called when comparing two
Steve Naroffd6163f32008-09-05 22:11:13 +00002594/// block types. Types must be strictly compatible here. For example,
2595/// C unfortunately doesn't produce an error for the following:
2596///
2597/// int (*emptyArgFunc)();
2598/// int (*intArgList)(int) = emptyArgFunc;
2599///
2600/// For blocks, we will produce an error for the following (similar to C++):
2601///
2602/// int (^emptyArgBlock)();
2603/// int (^intArgBlock)(int) = emptyArgBlock;
2604///
2605/// FIXME: When the dust settles on this integration, fold this into mergeTypes.
2606///
Steve Naroff3454b6c2008-09-04 15:10:53 +00002607bool ASTContext::typesAreBlockCompatible(QualType lhs, QualType rhs) {
Steve Naroff09e1b9e2008-12-10 17:49:55 +00002608 const FunctionType *lbase = lhs->getAsFunctionType();
2609 const FunctionType *rbase = rhs->getAsFunctionType();
Douglas Gregor4fa58902009-02-26 23:50:07 +00002610 const FunctionProtoType *lproto = dyn_cast<FunctionProtoType>(lbase);
2611 const FunctionProtoType *rproto = dyn_cast<FunctionProtoType>(rbase);
Steve Naroff09e1b9e2008-12-10 17:49:55 +00002612 if (lproto && rproto)
2613 return !mergeTypes(lhs, rhs).isNull();
2614 return false;
Steve Naroff3454b6c2008-09-04 15:10:53 +00002615}
2616
Chris Lattner6ff358b2008-04-07 06:51:04 +00002617/// areCompatVectorTypes - Return true if the two specified vector types are
2618/// compatible.
2619static bool areCompatVectorTypes(const VectorType *LHS,
2620 const VectorType *RHS) {
2621 assert(LHS->isCanonical() && RHS->isCanonical());
2622 return LHS->getElementType() == RHS->getElementType() &&
Chris Lattner2fda0ed2008-10-05 17:34:18 +00002623 LHS->getNumElements() == RHS->getNumElements();
Chris Lattner6ff358b2008-04-07 06:51:04 +00002624}
2625
Eli Friedman0d9549b2008-08-22 00:56:42 +00002626/// canAssignObjCInterfaces - Return true if the two interface types are
Chris Lattner6ff358b2008-04-07 06:51:04 +00002627/// compatible for assignment from RHS to LHS. This handles validation of any
2628/// protocol qualifiers on the LHS or RHS.
2629///
Eli Friedman0d9549b2008-08-22 00:56:42 +00002630bool ASTContext::canAssignObjCInterfaces(const ObjCInterfaceType *LHS,
2631 const ObjCInterfaceType *RHS) {
Chris Lattner6ff358b2008-04-07 06:51:04 +00002632 // Verify that the base decls are compatible: the RHS must be a subclass of
2633 // the LHS.
2634 if (!LHS->getDecl()->isSuperClassOf(RHS->getDecl()))
2635 return false;
2636
2637 // RHS must have a superset of the protocols in the LHS. If the LHS is not
2638 // protocol qualified at all, then we are good.
2639 if (!isa<ObjCQualifiedInterfaceType>(LHS))
2640 return true;
2641
2642 // Okay, we know the LHS has protocol qualifiers. If the RHS doesn't, then it
2643 // isn't a superset.
2644 if (!isa<ObjCQualifiedInterfaceType>(RHS))
2645 return true; // FIXME: should return false!
2646
2647 // Finally, we must have two protocol-qualified interfaces.
2648 const ObjCQualifiedInterfaceType *LHSP =cast<ObjCQualifiedInterfaceType>(LHS);
2649 const ObjCQualifiedInterfaceType *RHSP =cast<ObjCQualifiedInterfaceType>(RHS);
Chris Lattner6ff358b2008-04-07 06:51:04 +00002650
Steve Naroff98e71b82009-03-01 16:12:44 +00002651 // All LHS protocols must have a presence on the RHS.
2652 assert(LHSP->qual_begin() != LHSP->qual_end() && "Empty LHS protocol list?");
Chris Lattner6ff358b2008-04-07 06:51:04 +00002653
Steve Naroff98e71b82009-03-01 16:12:44 +00002654 for (ObjCQualifiedInterfaceType::qual_iterator LHSPI = LHSP->qual_begin(),
2655 LHSPE = LHSP->qual_end();
2656 LHSPI != LHSPE; LHSPI++) {
2657 bool RHSImplementsProtocol = false;
2658
2659 // If the RHS doesn't implement the protocol on the left, the types
2660 // are incompatible.
2661 for (ObjCQualifiedInterfaceType::qual_iterator RHSPI = RHSP->qual_begin(),
2662 RHSPE = RHSP->qual_end();
2663 !RHSImplementsProtocol && (RHSPI != RHSPE); RHSPI++) {
2664 if ((*RHSPI)->lookupProtocolNamed((*LHSPI)->getIdentifier()))
2665 RHSImplementsProtocol = true;
2666 }
2667 // FIXME: For better diagnostics, consider passing back the protocol name.
2668 if (!RHSImplementsProtocol)
2669 return false;
Chris Lattner6ff358b2008-04-07 06:51:04 +00002670 }
Steve Naroff98e71b82009-03-01 16:12:44 +00002671 // The RHS implements all protocols listed on the LHS.
2672 return true;
Chris Lattner6ff358b2008-04-07 06:51:04 +00002673}
2674
Steve Naroff17c03822009-02-12 17:52:19 +00002675bool ASTContext::areComparableObjCPointerTypes(QualType LHS, QualType RHS) {
2676 // get the "pointed to" types
2677 const PointerType *LHSPT = LHS->getAsPointerType();
2678 const PointerType *RHSPT = RHS->getAsPointerType();
2679
2680 if (!LHSPT || !RHSPT)
2681 return false;
2682
2683 QualType lhptee = LHSPT->getPointeeType();
2684 QualType rhptee = RHSPT->getPointeeType();
2685 const ObjCInterfaceType* LHSIface = lhptee->getAsObjCInterfaceType();
2686 const ObjCInterfaceType* RHSIface = rhptee->getAsObjCInterfaceType();
2687 // ID acts sort of like void* for ObjC interfaces
2688 if (LHSIface && isObjCIdStructType(rhptee))
2689 return true;
2690 if (RHSIface && isObjCIdStructType(lhptee))
2691 return true;
2692 if (!LHSIface || !RHSIface)
2693 return false;
2694 return canAssignObjCInterfaces(LHSIface, RHSIface) ||
2695 canAssignObjCInterfaces(RHSIface, LHSIface);
2696}
2697
Steve Naroff85f0dc52007-10-15 20:41:53 +00002698/// typesAreCompatible - C99 6.7.3p9: For two qualified types to be compatible,
2699/// both shall have the identically qualified version of a compatible type.
2700/// C99 6.2.7p1: Two types have compatible types if their types are the
2701/// same. See 6.7.[2,3,5] for additional rules.
Eli Friedman0d9549b2008-08-22 00:56:42 +00002702bool ASTContext::typesAreCompatible(QualType LHS, QualType RHS) {
2703 return !mergeTypes(LHS, RHS).isNull();
2704}
2705
2706QualType ASTContext::mergeFunctionTypes(QualType lhs, QualType rhs) {
2707 const FunctionType *lbase = lhs->getAsFunctionType();
2708 const FunctionType *rbase = rhs->getAsFunctionType();
Douglas Gregor4fa58902009-02-26 23:50:07 +00002709 const FunctionProtoType *lproto = dyn_cast<FunctionProtoType>(lbase);
2710 const FunctionProtoType *rproto = dyn_cast<FunctionProtoType>(rbase);
Eli Friedman0d9549b2008-08-22 00:56:42 +00002711 bool allLTypes = true;
2712 bool allRTypes = true;
2713
2714 // Check return type
2715 QualType retType = mergeTypes(lbase->getResultType(), rbase->getResultType());
2716 if (retType.isNull()) return QualType();
Chris Lattner2fda0ed2008-10-05 17:34:18 +00002717 if (getCanonicalType(retType) != getCanonicalType(lbase->getResultType()))
2718 allLTypes = false;
2719 if (getCanonicalType(retType) != getCanonicalType(rbase->getResultType()))
2720 allRTypes = false;
Eli Friedman0d9549b2008-08-22 00:56:42 +00002721
2722 if (lproto && rproto) { // two C99 style function prototypes
2723 unsigned lproto_nargs = lproto->getNumArgs();
2724 unsigned rproto_nargs = rproto->getNumArgs();
2725
2726 // Compatible functions must have the same number of arguments
2727 if (lproto_nargs != rproto_nargs)
2728 return QualType();
2729
2730 // Variadic and non-variadic functions aren't compatible
2731 if (lproto->isVariadic() != rproto->isVariadic())
2732 return QualType();
2733
Argiris Kirtzidis65b99642008-10-26 16:43:14 +00002734 if (lproto->getTypeQuals() != rproto->getTypeQuals())
2735 return QualType();
2736
Eli Friedman0d9549b2008-08-22 00:56:42 +00002737 // Check argument compatibility
2738 llvm::SmallVector<QualType, 10> types;
2739 for (unsigned i = 0; i < lproto_nargs; i++) {
2740 QualType largtype = lproto->getArgType(i).getUnqualifiedType();
2741 QualType rargtype = rproto->getArgType(i).getUnqualifiedType();
2742 QualType argtype = mergeTypes(largtype, rargtype);
2743 if (argtype.isNull()) return QualType();
2744 types.push_back(argtype);
Chris Lattner2fda0ed2008-10-05 17:34:18 +00002745 if (getCanonicalType(argtype) != getCanonicalType(largtype))
2746 allLTypes = false;
2747 if (getCanonicalType(argtype) != getCanonicalType(rargtype))
2748 allRTypes = false;
Eli Friedman0d9549b2008-08-22 00:56:42 +00002749 }
2750 if (allLTypes) return lhs;
2751 if (allRTypes) return rhs;
2752 return getFunctionType(retType, types.begin(), types.size(),
Argiris Kirtzidis65b99642008-10-26 16:43:14 +00002753 lproto->isVariadic(), lproto->getTypeQuals());
Eli Friedman0d9549b2008-08-22 00:56:42 +00002754 }
2755
2756 if (lproto) allRTypes = false;
2757 if (rproto) allLTypes = false;
2758
Douglas Gregor4fa58902009-02-26 23:50:07 +00002759 const FunctionProtoType *proto = lproto ? lproto : rproto;
Eli Friedman0d9549b2008-08-22 00:56:42 +00002760 if (proto) {
2761 if (proto->isVariadic()) return QualType();
2762 // Check that the types are compatible with the types that
2763 // would result from default argument promotions (C99 6.7.5.3p15).
2764 // The only types actually affected are promotable integer
2765 // types and floats, which would be passed as a different
2766 // type depending on whether the prototype is visible.
2767 unsigned proto_nargs = proto->getNumArgs();
2768 for (unsigned i = 0; i < proto_nargs; ++i) {
2769 QualType argTy = proto->getArgType(i);
2770 if (argTy->isPromotableIntegerType() ||
2771 getCanonicalType(argTy).getUnqualifiedType() == FloatTy)
2772 return QualType();
2773 }
2774
2775 if (allLTypes) return lhs;
2776 if (allRTypes) return rhs;
2777 return getFunctionType(retType, proto->arg_type_begin(),
Argiris Kirtzidis65b99642008-10-26 16:43:14 +00002778 proto->getNumArgs(), lproto->isVariadic(),
2779 lproto->getTypeQuals());
Eli Friedman0d9549b2008-08-22 00:56:42 +00002780 }
2781
2782 if (allLTypes) return lhs;
2783 if (allRTypes) return rhs;
Douglas Gregor4fa58902009-02-26 23:50:07 +00002784 return getFunctionNoProtoType(retType);
Eli Friedman0d9549b2008-08-22 00:56:42 +00002785}
2786
2787QualType ASTContext::mergeTypes(QualType LHS, QualType RHS) {
Bill Wendling6a9d8542007-12-03 07:33:35 +00002788 // C++ [expr]: If an expression initially has the type "reference to T", the
2789 // type is adjusted to "T" prior to any further analysis, the expression
2790 // designates the object or function denoted by the reference, and the
Sebastian Redlce6fff02009-03-16 23:22:08 +00002791 // expression is an lvalue unless the reference is an rvalue reference and
2792 // the expression is a function call (possibly inside parentheses).
Eli Friedman0d9549b2008-08-22 00:56:42 +00002793 // FIXME: C++ shouldn't be going through here! The rules are different
2794 // enough that they should be handled separately.
Sebastian Redlce6fff02009-03-16 23:22:08 +00002795 // FIXME: Merging of lvalue and rvalue references is incorrect. C++ *really*
2796 // shouldn't be going through here!
Eli Friedman0d9549b2008-08-22 00:56:42 +00002797 if (const ReferenceType *RT = LHS->getAsReferenceType())
Chris Lattner855fed42008-04-07 04:07:56 +00002798 LHS = RT->getPointeeType();
Eli Friedman0d9549b2008-08-22 00:56:42 +00002799 if (const ReferenceType *RT = RHS->getAsReferenceType())
Chris Lattner855fed42008-04-07 04:07:56 +00002800 RHS = RT->getPointeeType();
Chris Lattnerd47d6042008-04-07 05:37:56 +00002801
Eli Friedman0d9549b2008-08-22 00:56:42 +00002802 QualType LHSCan = getCanonicalType(LHS),
2803 RHSCan = getCanonicalType(RHS);
2804
2805 // If two types are identical, they are compatible.
2806 if (LHSCan == RHSCan)
2807 return LHS;
2808
2809 // If the qualifiers are different, the types aren't compatible
Eli Friedman94fcc9a2009-02-27 23:04:43 +00002810 // Note that we handle extended qualifiers later, in the
2811 // case for ExtQualType.
2812 if (LHSCan.getCVRQualifiers() != RHSCan.getCVRQualifiers())
Eli Friedman0d9549b2008-08-22 00:56:42 +00002813 return QualType();
2814
2815 Type::TypeClass LHSClass = LHSCan->getTypeClass();
2816 Type::TypeClass RHSClass = RHSCan->getTypeClass();
2817
Chris Lattnerc38d4522008-01-14 05:45:46 +00002818 // We want to consider the two function types to be the same for these
2819 // comparisons, just force one to the other.
2820 if (LHSClass == Type::FunctionProto) LHSClass = Type::FunctionNoProto;
2821 if (RHSClass == Type::FunctionProto) RHSClass = Type::FunctionNoProto;
Eli Friedman398837e2008-02-12 08:23:06 +00002822
2823 // Same as above for arrays
Chris Lattnerb5709e22008-04-07 05:43:21 +00002824 if (LHSClass == Type::VariableArray || LHSClass == Type::IncompleteArray)
2825 LHSClass = Type::ConstantArray;
2826 if (RHSClass == Type::VariableArray || RHSClass == Type::IncompleteArray)
2827 RHSClass = Type::ConstantArray;
Steve Naroff85f0dc52007-10-15 20:41:53 +00002828
Nate Begemanaf6ed502008-04-18 23:10:10 +00002829 // Canonicalize ExtVector -> Vector.
2830 if (LHSClass == Type::ExtVector) LHSClass = Type::Vector;
2831 if (RHSClass == Type::ExtVector) RHSClass = Type::Vector;
Chris Lattnerb5709e22008-04-07 05:43:21 +00002832
Chris Lattner7cdcb252008-04-07 06:38:24 +00002833 // Consider qualified interfaces and interfaces the same.
2834 if (LHSClass == Type::ObjCQualifiedInterface) LHSClass = Type::ObjCInterface;
2835 if (RHSClass == Type::ObjCQualifiedInterface) RHSClass = Type::ObjCInterface;
Eli Friedman0d9549b2008-08-22 00:56:42 +00002836
Chris Lattnerb5709e22008-04-07 05:43:21 +00002837 // If the canonical type classes don't match.
Chris Lattnerc38d4522008-01-14 05:45:46 +00002838 if (LHSClass != RHSClass) {
Steve Naroff0bbc1352009-02-21 16:18:07 +00002839 const ObjCInterfaceType* LHSIface = LHS->getAsObjCInterfaceType();
2840 const ObjCInterfaceType* RHSIface = RHS->getAsObjCInterfaceType();
2841
2842 // ID acts sort of like void* for ObjC interfaces
2843 if (LHSIface && isObjCIdStructType(RHS))
2844 return LHS;
2845 if (RHSIface && isObjCIdStructType(LHS))
2846 return RHS;
2847
Steve Naroff28ceff72008-12-10 22:14:21 +00002848 // ID is compatible with all qualified id types.
2849 if (LHS->isObjCQualifiedIdType()) {
2850 if (const PointerType *PT = RHS->getAsPointerType()) {
2851 QualType pType = PT->getPointeeType();
Steve Naroff17c03822009-02-12 17:52:19 +00002852 if (isObjCIdStructType(pType))
Steve Naroff28ceff72008-12-10 22:14:21 +00002853 return LHS;
2854 // FIXME: need to use ObjCQualifiedIdTypesAreCompatible(LHS, RHS, true).
2855 // Unfortunately, this API is part of Sema (which we don't have access
2856 // to. Need to refactor. The following check is insufficient, since we
2857 // need to make sure the class implements the protocol.
2858 if (pType->isObjCInterfaceType())
2859 return LHS;
2860 }
2861 }
2862 if (RHS->isObjCQualifiedIdType()) {
2863 if (const PointerType *PT = LHS->getAsPointerType()) {
2864 QualType pType = PT->getPointeeType();
Steve Naroff17c03822009-02-12 17:52:19 +00002865 if (isObjCIdStructType(pType))
Steve Naroff28ceff72008-12-10 22:14:21 +00002866 return RHS;
2867 // FIXME: need to use ObjCQualifiedIdTypesAreCompatible(LHS, RHS, true).
2868 // Unfortunately, this API is part of Sema (which we don't have access
2869 // to. Need to refactor. The following check is insufficient, since we
2870 // need to make sure the class implements the protocol.
2871 if (pType->isObjCInterfaceType())
2872 return RHS;
2873 }
2874 }
Chris Lattnerc38d4522008-01-14 05:45:46 +00002875 // C99 6.7.2.2p4: Each enumerated type shall be compatible with char,
2876 // a signed integer type, or an unsigned integer type.
Eli Friedman0d9549b2008-08-22 00:56:42 +00002877 if (const EnumType* ETy = LHS->getAsEnumType()) {
2878 if (ETy->getDecl()->getIntegerType() == RHSCan.getUnqualifiedType())
2879 return RHS;
Eli Friedmanad6c06c2008-02-12 08:46:17 +00002880 }
Eli Friedman0d9549b2008-08-22 00:56:42 +00002881 if (const EnumType* ETy = RHS->getAsEnumType()) {
2882 if (ETy->getDecl()->getIntegerType() == LHSCan.getUnqualifiedType())
2883 return LHS;
Eli Friedmanad6c06c2008-02-12 08:46:17 +00002884 }
Chris Lattnerc38d4522008-01-14 05:45:46 +00002885
Eli Friedman0d9549b2008-08-22 00:56:42 +00002886 return QualType();
Steve Naroff85f0dc52007-10-15 20:41:53 +00002887 }
Eli Friedman0d9549b2008-08-22 00:56:42 +00002888
Steve Naroffc88babe2008-01-09 22:43:08 +00002889 // The canonical type classes match.
Chris Lattnerc38d4522008-01-14 05:45:46 +00002890 switch (LHSClass) {
Douglas Gregor4fa58902009-02-26 23:50:07 +00002891#define TYPE(Class, Base)
2892#define ABSTRACT_TYPE(Class, Base)
2893#define NON_CANONICAL_TYPE(Class, Base) case Type::Class:
2894#define DEPENDENT_TYPE(Class, Base) case Type::Class:
2895#include "clang/AST/TypeNodes.def"
2896 assert(false && "Non-canonical and dependent types shouldn't get here");
2897 return QualType();
2898
Sebastian Redlce6fff02009-03-16 23:22:08 +00002899 case Type::LValueReference:
2900 case Type::RValueReference:
Douglas Gregor4fa58902009-02-26 23:50:07 +00002901 case Type::MemberPointer:
2902 assert(false && "C++ should never be in mergeTypes");
2903 return QualType();
2904
2905 case Type::IncompleteArray:
2906 case Type::VariableArray:
2907 case Type::FunctionProto:
2908 case Type::ExtVector:
2909 case Type::ObjCQualifiedInterface:
2910 assert(false && "Types are eliminated above");
2911 return QualType();
2912
Chris Lattnerc38d4522008-01-14 05:45:46 +00002913 case Type::Pointer:
Eli Friedman0d9549b2008-08-22 00:56:42 +00002914 {
2915 // Merge two pointer types, while trying to preserve typedef info
2916 QualType LHSPointee = LHS->getAsPointerType()->getPointeeType();
2917 QualType RHSPointee = RHS->getAsPointerType()->getPointeeType();
2918 QualType ResultType = mergeTypes(LHSPointee, RHSPointee);
2919 if (ResultType.isNull()) return QualType();
Chris Lattner2fda0ed2008-10-05 17:34:18 +00002920 if (getCanonicalType(LHSPointee) == getCanonicalType(ResultType))
2921 return LHS;
2922 if (getCanonicalType(RHSPointee) == getCanonicalType(ResultType))
2923 return RHS;
Eli Friedman0d9549b2008-08-22 00:56:42 +00002924 return getPointerType(ResultType);
2925 }
Steve Naroff09e1b9e2008-12-10 17:49:55 +00002926 case Type::BlockPointer:
2927 {
2928 // Merge two block pointer types, while trying to preserve typedef info
2929 QualType LHSPointee = LHS->getAsBlockPointerType()->getPointeeType();
2930 QualType RHSPointee = RHS->getAsBlockPointerType()->getPointeeType();
2931 QualType ResultType = mergeTypes(LHSPointee, RHSPointee);
2932 if (ResultType.isNull()) return QualType();
2933 if (getCanonicalType(LHSPointee) == getCanonicalType(ResultType))
2934 return LHS;
2935 if (getCanonicalType(RHSPointee) == getCanonicalType(ResultType))
2936 return RHS;
2937 return getBlockPointerType(ResultType);
2938 }
Chris Lattnerc38d4522008-01-14 05:45:46 +00002939 case Type::ConstantArray:
Eli Friedman0d9549b2008-08-22 00:56:42 +00002940 {
2941 const ConstantArrayType* LCAT = getAsConstantArrayType(LHS);
2942 const ConstantArrayType* RCAT = getAsConstantArrayType(RHS);
2943 if (LCAT && RCAT && RCAT->getSize() != LCAT->getSize())
2944 return QualType();
2945
2946 QualType LHSElem = getAsArrayType(LHS)->getElementType();
2947 QualType RHSElem = getAsArrayType(RHS)->getElementType();
2948 QualType ResultType = mergeTypes(LHSElem, RHSElem);
2949 if (ResultType.isNull()) return QualType();
Chris Lattner2fda0ed2008-10-05 17:34:18 +00002950 if (LCAT && getCanonicalType(LHSElem) == getCanonicalType(ResultType))
2951 return LHS;
2952 if (RCAT && getCanonicalType(RHSElem) == getCanonicalType(ResultType))
2953 return RHS;
Eli Friedmanc91a3f32008-08-22 01:48:21 +00002954 if (LCAT) return getConstantArrayType(ResultType, LCAT->getSize(),
2955 ArrayType::ArraySizeModifier(), 0);
2956 if (RCAT) return getConstantArrayType(ResultType, RCAT->getSize(),
2957 ArrayType::ArraySizeModifier(), 0);
Eli Friedman0d9549b2008-08-22 00:56:42 +00002958 const VariableArrayType* LVAT = getAsVariableArrayType(LHS);
2959 const VariableArrayType* RVAT = getAsVariableArrayType(RHS);
Chris Lattner2fda0ed2008-10-05 17:34:18 +00002960 if (LVAT && getCanonicalType(LHSElem) == getCanonicalType(ResultType))
2961 return LHS;
2962 if (RVAT && getCanonicalType(RHSElem) == getCanonicalType(ResultType))
2963 return RHS;
Eli Friedman0d9549b2008-08-22 00:56:42 +00002964 if (LVAT) {
2965 // FIXME: This isn't correct! But tricky to implement because
2966 // the array's size has to be the size of LHS, but the type
2967 // has to be different.
2968 return LHS;
2969 }
2970 if (RVAT) {
2971 // FIXME: This isn't correct! But tricky to implement because
2972 // the array's size has to be the size of RHS, but the type
2973 // has to be different.
2974 return RHS;
2975 }
Eli Friedmanc91a3f32008-08-22 01:48:21 +00002976 if (getCanonicalType(LHSElem) == getCanonicalType(ResultType)) return LHS;
2977 if (getCanonicalType(RHSElem) == getCanonicalType(ResultType)) return RHS;
Chris Lattner2fda0ed2008-10-05 17:34:18 +00002978 return getIncompleteArrayType(ResultType, ArrayType::ArraySizeModifier(),0);
Eli Friedman0d9549b2008-08-22 00:56:42 +00002979 }
Chris Lattnerc38d4522008-01-14 05:45:46 +00002980 case Type::FunctionNoProto:
Eli Friedman0d9549b2008-08-22 00:56:42 +00002981 return mergeFunctionTypes(LHS, RHS);
Douglas Gregor4fa58902009-02-26 23:50:07 +00002982 case Type::Record:
Douglas Gregor4fa58902009-02-26 23:50:07 +00002983 case Type::Enum:
Eli Friedman0d9549b2008-08-22 00:56:42 +00002984 // FIXME: Why are these compatible?
Steve Naroff17c03822009-02-12 17:52:19 +00002985 if (isObjCIdStructType(LHS) && isObjCClassStructType(RHS)) return LHS;
2986 if (isObjCClassStructType(LHS) && isObjCIdStructType(RHS)) return LHS;
Eli Friedman0d9549b2008-08-22 00:56:42 +00002987 return QualType();
Chris Lattnerc38d4522008-01-14 05:45:46 +00002988 case Type::Builtin:
Chris Lattnerd1240fa2008-04-07 05:55:38 +00002989 // Only exactly equal builtin types are compatible, which is tested above.
Eli Friedman0d9549b2008-08-22 00:56:42 +00002990 return QualType();
Daniel Dunbar457f33d2009-01-28 21:22:12 +00002991 case Type::Complex:
2992 // Distinct complex types are incompatible.
2993 return QualType();
Chris Lattnerd1240fa2008-04-07 05:55:38 +00002994 case Type::Vector:
Eli Friedman94fcc9a2009-02-27 23:04:43 +00002995 // FIXME: The merged type should be an ExtVector!
Eli Friedman0d9549b2008-08-22 00:56:42 +00002996 if (areCompatVectorTypes(LHS->getAsVectorType(), RHS->getAsVectorType()))
2997 return LHS;
Chris Lattner2fda0ed2008-10-05 17:34:18 +00002998 return QualType();
Cédric Venet23536132009-02-21 17:14:49 +00002999 case Type::ObjCInterface: {
Steve Naroff0bbc1352009-02-21 16:18:07 +00003000 // Check if the interfaces are assignment compatible.
Eli Friedman94fcc9a2009-02-27 23:04:43 +00003001 // FIXME: This should be type compatibility, e.g. whether
3002 // "LHS x; RHS x;" at global scope is legal.
Steve Naroff0bbc1352009-02-21 16:18:07 +00003003 const ObjCInterfaceType* LHSIface = LHS->getAsObjCInterfaceType();
3004 const ObjCInterfaceType* RHSIface = RHS->getAsObjCInterfaceType();
3005 if (LHSIface && RHSIface &&
3006 canAssignObjCInterfaces(LHSIface, RHSIface))
3007 return LHS;
3008
Eli Friedman0d9549b2008-08-22 00:56:42 +00003009 return QualType();
Cédric Venet23536132009-02-21 17:14:49 +00003010 }
Steve Naroff28ceff72008-12-10 22:14:21 +00003011 case Type::ObjCQualifiedId:
3012 // Distinct qualified id's are not compatible.
3013 return QualType();
Eli Friedman94fcc9a2009-02-27 23:04:43 +00003014 case Type::FixedWidthInt:
3015 // Distinct fixed-width integers are not compatible.
3016 return QualType();
3017 case Type::ObjCQualifiedClass:
3018 // Distinct qualified classes are not compatible.
3019 return QualType();
3020 case Type::ExtQual:
3021 // FIXME: ExtQual types can be compatible even if they're not
3022 // identical!
3023 return QualType();
3024 // First attempt at an implementation, but I'm not really sure it's
3025 // right...
3026#if 0
3027 ExtQualType* LQual = cast<ExtQualType>(LHSCan);
3028 ExtQualType* RQual = cast<ExtQualType>(RHSCan);
3029 if (LQual->getAddressSpace() != RQual->getAddressSpace() ||
3030 LQual->getObjCGCAttr() != RQual->getObjCGCAttr())
3031 return QualType();
3032 QualType LHSBase, RHSBase, ResultType, ResCanUnqual;
3033 LHSBase = QualType(LQual->getBaseType(), 0);
3034 RHSBase = QualType(RQual->getBaseType(), 0);
3035 ResultType = mergeTypes(LHSBase, RHSBase);
3036 if (ResultType.isNull()) return QualType();
3037 ResCanUnqual = getCanonicalType(ResultType).getUnqualifiedType();
3038 if (LHSCan.getUnqualifiedType() == ResCanUnqual)
3039 return LHS;
3040 if (RHSCan.getUnqualifiedType() == ResCanUnqual)
3041 return RHS;
3042 ResultType = getAddrSpaceQualType(ResultType, LQual->getAddressSpace());
3043 ResultType = getObjCGCQualType(ResultType, LQual->getObjCGCAttr());
3044 ResultType.setCVRQualifiers(LHSCan.getCVRQualifiers());
3045 return ResultType;
3046#endif
Steve Naroff85f0dc52007-10-15 20:41:53 +00003047 }
Douglas Gregor4fa58902009-02-26 23:50:07 +00003048
3049 return QualType();
Steve Naroff85f0dc52007-10-15 20:41:53 +00003050}
Ted Kremenek738e6c02007-10-31 17:10:13 +00003051
Chris Lattner1d78a862008-04-07 07:01:58 +00003052//===----------------------------------------------------------------------===//
Eli Friedman0832dbc2008-06-28 06:23:08 +00003053// Integer Predicates
3054//===----------------------------------------------------------------------===//
Chris Lattner74f67012009-01-16 07:15:35 +00003055
Eli Friedman0832dbc2008-06-28 06:23:08 +00003056unsigned ASTContext::getIntWidth(QualType T) {
3057 if (T == BoolTy)
3058 return 1;
Eli Friedmanff3fcdf2009-02-13 02:31:07 +00003059 if (FixedWidthIntType* FWIT = dyn_cast<FixedWidthIntType>(T)) {
3060 return FWIT->getWidth();
3061 }
3062 // For builtin types, just use the standard type sizing method
Eli Friedman0832dbc2008-06-28 06:23:08 +00003063 return (unsigned)getTypeSize(T);
3064}
3065
3066QualType ASTContext::getCorrespondingUnsignedType(QualType T) {
3067 assert(T->isSignedIntegerType() && "Unexpected type");
3068 if (const EnumType* ETy = T->getAsEnumType())
3069 T = ETy->getDecl()->getIntegerType();
3070 const BuiltinType* BTy = T->getAsBuiltinType();
3071 assert (BTy && "Unexpected signed integer type");
3072 switch (BTy->getKind()) {
3073 case BuiltinType::Char_S:
3074 case BuiltinType::SChar:
3075 return UnsignedCharTy;
3076 case BuiltinType::Short:
3077 return UnsignedShortTy;
3078 case BuiltinType::Int:
3079 return UnsignedIntTy;
3080 case BuiltinType::Long:
3081 return UnsignedLongTy;
3082 case BuiltinType::LongLong:
3083 return UnsignedLongLongTy;
3084 default:
3085 assert(0 && "Unexpected signed integer type");
3086 return QualType();
3087 }
3088}
3089
3090
3091//===----------------------------------------------------------------------===//
Chris Lattner1d78a862008-04-07 07:01:58 +00003092// Serialization Support
3093//===----------------------------------------------------------------------===//
3094
Ted Kremenek738e6c02007-10-31 17:10:13 +00003095/// Emit - Serialize an ASTContext object to Bitcode.
3096void ASTContext::Emit(llvm::Serializer& S) const {
Ted Kremenek842126e2008-06-04 15:55:15 +00003097 S.Emit(LangOpts);
Ted Kremenek9af4d5c2007-10-31 20:00:03 +00003098 S.EmitRef(SourceMgr);
3099 S.EmitRef(Target);
3100 S.EmitRef(Idents);
3101 S.EmitRef(Selectors);
Ted Kremenek738e6c02007-10-31 17:10:13 +00003102
Ted Kremenek68228a92007-10-31 22:44:07 +00003103 // Emit the size of the type vector so that we can reserve that size
3104 // when we reconstitute the ASTContext object.
Ted Kremenek0199d9f2007-11-06 22:26:16 +00003105 S.EmitInt(Types.size());
3106
Ted Kremenek034a78c2007-11-13 22:02:55 +00003107 for (std::vector<Type*>::const_iterator I=Types.begin(), E=Types.end();
3108 I!=E;++I)
3109 (*I)->Emit(S);
Ted Kremenek0199d9f2007-11-06 22:26:16 +00003110
Argiris Kirtzidisd3586002008-04-17 14:40:12 +00003111 S.EmitOwnedPtr(TUDecl);
3112
Ted Kremeneke1fed7a2007-11-01 18:11:32 +00003113 // FIXME: S.EmitOwnedPtr(CFConstantStringTypeDecl);
Ted Kremenek738e6c02007-10-31 17:10:13 +00003114}
3115
Ted Kremenekacba3612007-11-13 00:25:37 +00003116ASTContext* ASTContext::Create(llvm::Deserializer& D) {
Ted Kremenek842126e2008-06-04 15:55:15 +00003117
3118 // Read the language options.
3119 LangOptions LOpts;
3120 LOpts.Read(D);
3121
Ted Kremenek68228a92007-10-31 22:44:07 +00003122 SourceManager &SM = D.ReadRef<SourceManager>();
3123 TargetInfo &t = D.ReadRef<TargetInfo>();
3124 IdentifierTable &idents = D.ReadRef<IdentifierTable>();
3125 SelectorTable &sels = D.ReadRef<SelectorTable>();
Chris Lattnereee57c02008-04-04 06:12:32 +00003126
Ted Kremenek68228a92007-10-31 22:44:07 +00003127 unsigned size_reserve = D.ReadInt();
3128
Douglas Gregor24afd4a2008-11-17 14:58:09 +00003129 ASTContext* A = new ASTContext(LOpts, SM, t, idents, sels,
3130 size_reserve);
Ted Kremenek68228a92007-10-31 22:44:07 +00003131
Ted Kremenek034a78c2007-11-13 22:02:55 +00003132 for (unsigned i = 0; i < size_reserve; ++i)
3133 Type::Create(*A,i,D);
Chris Lattnereee57c02008-04-04 06:12:32 +00003134
Argiris Kirtzidisd3586002008-04-17 14:40:12 +00003135 A->TUDecl = cast<TranslationUnitDecl>(D.ReadOwnedPtr<Decl>(*A));
3136
Ted Kremeneke1fed7a2007-11-01 18:11:32 +00003137 // FIXME: A->CFConstantStringTypeDecl = D.ReadOwnedPtr<RecordDecl>();
Ted Kremenek68228a92007-10-31 22:44:07 +00003138
3139 return A;
3140}