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      1 //===--- ASTWriter.cpp - AST File Writer ----------------------------------===//
      2 //
      3 //                     The LLVM Compiler Infrastructure
      4 //
      5 // This file is distributed under the University of Illinois Open Source
      6 // License. See LICENSE.TXT for details.
      7 //
      8 //===----------------------------------------------------------------------===//
      9 //
     10 //  This file defines the ASTWriter class, which writes AST files.
     11 //
     12 //===----------------------------------------------------------------------===//
     13 
     14 #include "clang/Serialization/ASTWriter.h"
     15 #include "clang/Serialization/ASTSerializationListener.h"
     16 #include "ASTCommon.h"
     17 #include "clang/Sema/Sema.h"
     18 #include "clang/Sema/IdentifierResolver.h"
     19 #include "clang/AST/ASTContext.h"
     20 #include "clang/AST/Decl.h"
     21 #include "clang/AST/DeclContextInternals.h"
     22 #include "clang/AST/DeclTemplate.h"
     23 #include "clang/AST/DeclFriend.h"
     24 #include "clang/AST/Expr.h"
     25 #include "clang/AST/ExprCXX.h"
     26 #include "clang/AST/Type.h"
     27 #include "clang/AST/TypeLocVisitor.h"
     28 #include "clang/Serialization/ASTReader.h"
     29 #include "clang/Lex/MacroInfo.h"
     30 #include "clang/Lex/PreprocessingRecord.h"
     31 #include "clang/Lex/Preprocessor.h"
     32 #include "clang/Lex/HeaderSearch.h"
     33 #include "clang/Basic/FileManager.h"
     34 #include "clang/Basic/FileSystemStatCache.h"
     35 #include "clang/Basic/OnDiskHashTable.h"
     36 #include "clang/Basic/SourceManager.h"
     37 #include "clang/Basic/SourceManagerInternals.h"
     38 #include "clang/Basic/TargetInfo.h"
     39 #include "clang/Basic/Version.h"
     40 #include "clang/Basic/VersionTuple.h"
     41 #include "llvm/ADT/APFloat.h"
     42 #include "llvm/ADT/APInt.h"
     43 #include "llvm/ADT/StringExtras.h"
     44 #include "llvm/Bitcode/BitstreamWriter.h"
     45 #include "llvm/Support/FileSystem.h"
     46 #include "llvm/Support/MemoryBuffer.h"
     47 #include "llvm/Support/Path.h"
     48 #include <algorithm>
     49 #include <cstdio>
     50 #include <string.h>
     51 #include <utility>
     52 using namespace clang;
     53 using namespace clang::serialization;
     54 
     55 template <typename T, typename Allocator>
     56 static llvm::StringRef data(const std::vector<T, Allocator> &v) {
     57   if (v.empty()) return llvm::StringRef();
     58   return llvm::StringRef(reinterpret_cast<const char*>(&v[0]),
     59                          sizeof(T) * v.size());
     60 }
     61 
     62 template <typename T>
     63 static llvm::StringRef data(const llvm::SmallVectorImpl<T> &v) {
     64   return llvm::StringRef(reinterpret_cast<const char*>(v.data()),
     65                          sizeof(T) * v.size());
     66 }
     67 
     68 //===----------------------------------------------------------------------===//
     69 // Type serialization
     70 //===----------------------------------------------------------------------===//
     71 
     72 namespace {
     73   class ASTTypeWriter {
     74     ASTWriter &Writer;
     75     ASTWriter::RecordDataImpl &Record;
     76 
     77   public:
     78     /// \brief Type code that corresponds to the record generated.
     79     TypeCode Code;
     80 
     81     ASTTypeWriter(ASTWriter &Writer, ASTWriter::RecordDataImpl &Record)
     82       : Writer(Writer), Record(Record), Code(TYPE_EXT_QUAL) { }
     83 
     84     void VisitArrayType(const ArrayType *T);
     85     void VisitFunctionType(const FunctionType *T);
     86     void VisitTagType(const TagType *T);
     87 
     88 #define TYPE(Class, Base) void Visit##Class##Type(const Class##Type *T);
     89 #define ABSTRACT_TYPE(Class, Base)
     90 #include "clang/AST/TypeNodes.def"
     91   };
     92 }
     93 
     94 void ASTTypeWriter::VisitBuiltinType(const BuiltinType *T) {
     95   assert(false && "Built-in types are never serialized");
     96 }
     97 
     98 void ASTTypeWriter::VisitComplexType(const ComplexType *T) {
     99   Writer.AddTypeRef(T->getElementType(), Record);
    100   Code = TYPE_COMPLEX;
    101 }
    102 
    103 void ASTTypeWriter::VisitPointerType(const PointerType *T) {
    104   Writer.AddTypeRef(T->getPointeeType(), Record);
    105   Code = TYPE_POINTER;
    106 }
    107 
    108 void ASTTypeWriter::VisitBlockPointerType(const BlockPointerType *T) {
    109   Writer.AddTypeRef(T->getPointeeType(), Record);
    110   Code = TYPE_BLOCK_POINTER;
    111 }
    112 
    113 void ASTTypeWriter::VisitLValueReferenceType(const LValueReferenceType *T) {
    114   Writer.AddTypeRef(T->getPointeeTypeAsWritten(), Record);
    115   Record.push_back(T->isSpelledAsLValue());
    116   Code = TYPE_LVALUE_REFERENCE;
    117 }
    118 
    119 void ASTTypeWriter::VisitRValueReferenceType(const RValueReferenceType *T) {
    120   Writer.AddTypeRef(T->getPointeeTypeAsWritten(), Record);
    121   Code = TYPE_RVALUE_REFERENCE;
    122 }
    123 
    124 void ASTTypeWriter::VisitMemberPointerType(const MemberPointerType *T) {
    125   Writer.AddTypeRef(T->getPointeeType(), Record);
    126   Writer.AddTypeRef(QualType(T->getClass(), 0), Record);
    127   Code = TYPE_MEMBER_POINTER;
    128 }
    129 
    130 void ASTTypeWriter::VisitArrayType(const ArrayType *T) {
    131   Writer.AddTypeRef(T->getElementType(), Record);
    132   Record.push_back(T->getSizeModifier()); // FIXME: stable values
    133   Record.push_back(T->getIndexTypeCVRQualifiers()); // FIXME: stable values
    134 }
    135 
    136 void ASTTypeWriter::VisitConstantArrayType(const ConstantArrayType *T) {
    137   VisitArrayType(T);
    138   Writer.AddAPInt(T->getSize(), Record);
    139   Code = TYPE_CONSTANT_ARRAY;
    140 }
    141 
    142 void ASTTypeWriter::VisitIncompleteArrayType(const IncompleteArrayType *T) {
    143   VisitArrayType(T);
    144   Code = TYPE_INCOMPLETE_ARRAY;
    145 }
    146 
    147 void ASTTypeWriter::VisitVariableArrayType(const VariableArrayType *T) {
    148   VisitArrayType(T);
    149   Writer.AddSourceLocation(T->getLBracketLoc(), Record);
    150   Writer.AddSourceLocation(T->getRBracketLoc(), Record);
    151   Writer.AddStmt(T->getSizeExpr());
    152   Code = TYPE_VARIABLE_ARRAY;
    153 }
    154 
    155 void ASTTypeWriter::VisitVectorType(const VectorType *T) {
    156   Writer.AddTypeRef(T->getElementType(), Record);
    157   Record.push_back(T->getNumElements());
    158   Record.push_back(T->getVectorKind());
    159   Code = TYPE_VECTOR;
    160 }
    161 
    162 void ASTTypeWriter::VisitExtVectorType(const ExtVectorType *T) {
    163   VisitVectorType(T);
    164   Code = TYPE_EXT_VECTOR;
    165 }
    166 
    167 void ASTTypeWriter::VisitFunctionType(const FunctionType *T) {
    168   Writer.AddTypeRef(T->getResultType(), Record);
    169   FunctionType::ExtInfo C = T->getExtInfo();
    170   Record.push_back(C.getNoReturn());
    171   Record.push_back(C.getHasRegParm());
    172   Record.push_back(C.getRegParm());
    173   // FIXME: need to stabilize encoding of calling convention...
    174   Record.push_back(C.getCC());
    175   Record.push_back(C.getProducesResult());
    176 }
    177 
    178 void ASTTypeWriter::VisitFunctionNoProtoType(const FunctionNoProtoType *T) {
    179   VisitFunctionType(T);
    180   Code = TYPE_FUNCTION_NO_PROTO;
    181 }
    182 
    183 void ASTTypeWriter::VisitFunctionProtoType(const FunctionProtoType *T) {
    184   VisitFunctionType(T);
    185   Record.push_back(T->getNumArgs());
    186   for (unsigned I = 0, N = T->getNumArgs(); I != N; ++I)
    187     Writer.AddTypeRef(T->getArgType(I), Record);
    188   Record.push_back(T->isVariadic());
    189   Record.push_back(T->getTypeQuals());
    190   Record.push_back(static_cast<unsigned>(T->getRefQualifier()));
    191   Record.push_back(T->getExceptionSpecType());
    192   if (T->getExceptionSpecType() == EST_Dynamic) {
    193     Record.push_back(T->getNumExceptions());
    194     for (unsigned I = 0, N = T->getNumExceptions(); I != N; ++I)
    195       Writer.AddTypeRef(T->getExceptionType(I), Record);
    196   } else if (T->getExceptionSpecType() == EST_ComputedNoexcept) {
    197     Writer.AddStmt(T->getNoexceptExpr());
    198   }
    199   Code = TYPE_FUNCTION_PROTO;
    200 }
    201 
    202 void ASTTypeWriter::VisitUnresolvedUsingType(const UnresolvedUsingType *T) {
    203   Writer.AddDeclRef(T->getDecl(), Record);
    204   Code = TYPE_UNRESOLVED_USING;
    205 }
    206 
    207 void ASTTypeWriter::VisitTypedefType(const TypedefType *T) {
    208   Writer.AddDeclRef(T->getDecl(), Record);
    209   assert(!T->isCanonicalUnqualified() && "Invalid typedef ?");
    210   Writer.AddTypeRef(T->getCanonicalTypeInternal(), Record);
    211   Code = TYPE_TYPEDEF;
    212 }
    213 
    214 void ASTTypeWriter::VisitTypeOfExprType(const TypeOfExprType *T) {
    215   Writer.AddStmt(T->getUnderlyingExpr());
    216   Code = TYPE_TYPEOF_EXPR;
    217 }
    218 
    219 void ASTTypeWriter::VisitTypeOfType(const TypeOfType *T) {
    220   Writer.AddTypeRef(T->getUnderlyingType(), Record);
    221   Code = TYPE_TYPEOF;
    222 }
    223 
    224 void ASTTypeWriter::VisitDecltypeType(const DecltypeType *T) {
    225   Writer.AddStmt(T->getUnderlyingExpr());
    226   Code = TYPE_DECLTYPE;
    227 }
    228 
    229 void ASTTypeWriter::VisitUnaryTransformType(const UnaryTransformType *T) {
    230   Writer.AddTypeRef(T->getBaseType(), Record);
    231   Writer.AddTypeRef(T->getUnderlyingType(), Record);
    232   Record.push_back(T->getUTTKind());
    233   Code = TYPE_UNARY_TRANSFORM;
    234 }
    235 
    236 void ASTTypeWriter::VisitAutoType(const AutoType *T) {
    237   Writer.AddTypeRef(T->getDeducedType(), Record);
    238   Code = TYPE_AUTO;
    239 }
    240 
    241 void ASTTypeWriter::VisitTagType(const TagType *T) {
    242   Record.push_back(T->isDependentType());
    243   Writer.AddDeclRef(T->getDecl(), Record);
    244   assert(!T->isBeingDefined() &&
    245          "Cannot serialize in the middle of a type definition");
    246 }
    247 
    248 void ASTTypeWriter::VisitRecordType(const RecordType *T) {
    249   VisitTagType(T);
    250   Code = TYPE_RECORD;
    251 }
    252 
    253 void ASTTypeWriter::VisitEnumType(const EnumType *T) {
    254   VisitTagType(T);
    255   Code = TYPE_ENUM;
    256 }
    257 
    258 void ASTTypeWriter::VisitAttributedType(const AttributedType *T) {
    259   Writer.AddTypeRef(T->getModifiedType(), Record);
    260   Writer.AddTypeRef(T->getEquivalentType(), Record);
    261   Record.push_back(T->getAttrKind());
    262   Code = TYPE_ATTRIBUTED;
    263 }
    264 
    265 void
    266 ASTTypeWriter::VisitSubstTemplateTypeParmType(
    267                                         const SubstTemplateTypeParmType *T) {
    268   Writer.AddTypeRef(QualType(T->getReplacedParameter(), 0), Record);
    269   Writer.AddTypeRef(T->getReplacementType(), Record);
    270   Code = TYPE_SUBST_TEMPLATE_TYPE_PARM;
    271 }
    272 
    273 void
    274 ASTTypeWriter::VisitSubstTemplateTypeParmPackType(
    275                                       const SubstTemplateTypeParmPackType *T) {
    276   Writer.AddTypeRef(QualType(T->getReplacedParameter(), 0), Record);
    277   Writer.AddTemplateArgument(T->getArgumentPack(), Record);
    278   Code = TYPE_SUBST_TEMPLATE_TYPE_PARM_PACK;
    279 }
    280 
    281 void
    282 ASTTypeWriter::VisitTemplateSpecializationType(
    283                                        const TemplateSpecializationType *T) {
    284   Record.push_back(T->isDependentType());
    285   Writer.AddTemplateName(T->getTemplateName(), Record);
    286   Record.push_back(T->getNumArgs());
    287   for (TemplateSpecializationType::iterator ArgI = T->begin(), ArgE = T->end();
    288          ArgI != ArgE; ++ArgI)
    289     Writer.AddTemplateArgument(*ArgI, Record);
    290   Writer.AddTypeRef(T->isTypeAlias() ? T->getAliasedType() :
    291                     T->isCanonicalUnqualified() ? QualType()
    292                                                 : T->getCanonicalTypeInternal(),
    293                     Record);
    294   Code = TYPE_TEMPLATE_SPECIALIZATION;
    295 }
    296 
    297 void
    298 ASTTypeWriter::VisitDependentSizedArrayType(const DependentSizedArrayType *T) {
    299   VisitArrayType(T);
    300   Writer.AddStmt(T->getSizeExpr());
    301   Writer.AddSourceRange(T->getBracketsRange(), Record);
    302   Code = TYPE_DEPENDENT_SIZED_ARRAY;
    303 }
    304 
    305 void
    306 ASTTypeWriter::VisitDependentSizedExtVectorType(
    307                                         const DependentSizedExtVectorType *T) {
    308   // FIXME: Serialize this type (C++ only)
    309   assert(false && "Cannot serialize dependent sized extended vector types");
    310 }
    311 
    312 void
    313 ASTTypeWriter::VisitTemplateTypeParmType(const TemplateTypeParmType *T) {
    314   Record.push_back(T->getDepth());
    315   Record.push_back(T->getIndex());
    316   Record.push_back(T->isParameterPack());
    317   Writer.AddDeclRef(T->getDecl(), Record);
    318   Code = TYPE_TEMPLATE_TYPE_PARM;
    319 }
    320 
    321 void
    322 ASTTypeWriter::VisitDependentNameType(const DependentNameType *T) {
    323   Record.push_back(T->getKeyword());
    324   Writer.AddNestedNameSpecifier(T->getQualifier(), Record);
    325   Writer.AddIdentifierRef(T->getIdentifier(), Record);
    326   Writer.AddTypeRef(T->isCanonicalUnqualified() ? QualType()
    327                                                 : T->getCanonicalTypeInternal(),
    328                     Record);
    329   Code = TYPE_DEPENDENT_NAME;
    330 }
    331 
    332 void
    333 ASTTypeWriter::VisitDependentTemplateSpecializationType(
    334                                 const DependentTemplateSpecializationType *T) {
    335   Record.push_back(T->getKeyword());
    336   Writer.AddNestedNameSpecifier(T->getQualifier(), Record);
    337   Writer.AddIdentifierRef(T->getIdentifier(), Record);
    338   Record.push_back(T->getNumArgs());
    339   for (DependentTemplateSpecializationType::iterator
    340          I = T->begin(), E = T->end(); I != E; ++I)
    341     Writer.AddTemplateArgument(*I, Record);
    342   Code = TYPE_DEPENDENT_TEMPLATE_SPECIALIZATION;
    343 }
    344 
    345 void ASTTypeWriter::VisitPackExpansionType(const PackExpansionType *T) {
    346   Writer.AddTypeRef(T->getPattern(), Record);
    347   if (llvm::Optional<unsigned> NumExpansions = T->getNumExpansions())
    348     Record.push_back(*NumExpansions + 1);
    349   else
    350     Record.push_back(0);
    351   Code = TYPE_PACK_EXPANSION;
    352 }
    353 
    354 void ASTTypeWriter::VisitParenType(const ParenType *T) {
    355   Writer.AddTypeRef(T->getInnerType(), Record);
    356   Code = TYPE_PAREN;
    357 }
    358 
    359 void ASTTypeWriter::VisitElaboratedType(const ElaboratedType *T) {
    360   Record.push_back(T->getKeyword());
    361   Writer.AddNestedNameSpecifier(T->getQualifier(), Record);
    362   Writer.AddTypeRef(T->getNamedType(), Record);
    363   Code = TYPE_ELABORATED;
    364 }
    365 
    366 void ASTTypeWriter::VisitInjectedClassNameType(const InjectedClassNameType *T) {
    367   Writer.AddDeclRef(T->getDecl(), Record);
    368   Writer.AddTypeRef(T->getInjectedSpecializationType(), Record);
    369   Code = TYPE_INJECTED_CLASS_NAME;
    370 }
    371 
    372 void ASTTypeWriter::VisitObjCInterfaceType(const ObjCInterfaceType *T) {
    373   Writer.AddDeclRef(T->getDecl(), Record);
    374   Code = TYPE_OBJC_INTERFACE;
    375 }
    376 
    377 void ASTTypeWriter::VisitObjCObjectType(const ObjCObjectType *T) {
    378   Writer.AddTypeRef(T->getBaseType(), Record);
    379   Record.push_back(T->getNumProtocols());
    380   for (ObjCObjectType::qual_iterator I = T->qual_begin(),
    381        E = T->qual_end(); I != E; ++I)
    382     Writer.AddDeclRef(*I, Record);
    383   Code = TYPE_OBJC_OBJECT;
    384 }
    385 
    386 void
    387 ASTTypeWriter::VisitObjCObjectPointerType(const ObjCObjectPointerType *T) {
    388   Writer.AddTypeRef(T->getPointeeType(), Record);
    389   Code = TYPE_OBJC_OBJECT_POINTER;
    390 }
    391 
    392 namespace {
    393 
    394 class TypeLocWriter : public TypeLocVisitor<TypeLocWriter> {
    395   ASTWriter &Writer;
    396   ASTWriter::RecordDataImpl &Record;
    397 
    398 public:
    399   TypeLocWriter(ASTWriter &Writer, ASTWriter::RecordDataImpl &Record)
    400     : Writer(Writer), Record(Record) { }
    401 
    402 #define ABSTRACT_TYPELOC(CLASS, PARENT)
    403 #define TYPELOC(CLASS, PARENT) \
    404     void Visit##CLASS##TypeLoc(CLASS##TypeLoc TyLoc);
    405 #include "clang/AST/TypeLocNodes.def"
    406 
    407   void VisitArrayTypeLoc(ArrayTypeLoc TyLoc);
    408   void VisitFunctionTypeLoc(FunctionTypeLoc TyLoc);
    409 };
    410 
    411 }
    412 
    413 void TypeLocWriter::VisitQualifiedTypeLoc(QualifiedTypeLoc TL) {
    414   // nothing to do
    415 }
    416 void TypeLocWriter::VisitBuiltinTypeLoc(BuiltinTypeLoc TL) {
    417   Writer.AddSourceLocation(TL.getBuiltinLoc(), Record);
    418   if (TL.needsExtraLocalData()) {
    419     Record.push_back(TL.getWrittenTypeSpec());
    420     Record.push_back(TL.getWrittenSignSpec());
    421     Record.push_back(TL.getWrittenWidthSpec());
    422     Record.push_back(TL.hasModeAttr());
    423   }
    424 }
    425 void TypeLocWriter::VisitComplexTypeLoc(ComplexTypeLoc TL) {
    426   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    427 }
    428 void TypeLocWriter::VisitPointerTypeLoc(PointerTypeLoc TL) {
    429   Writer.AddSourceLocation(TL.getStarLoc(), Record);
    430 }
    431 void TypeLocWriter::VisitBlockPointerTypeLoc(BlockPointerTypeLoc TL) {
    432   Writer.AddSourceLocation(TL.getCaretLoc(), Record);
    433 }
    434 void TypeLocWriter::VisitLValueReferenceTypeLoc(LValueReferenceTypeLoc TL) {
    435   Writer.AddSourceLocation(TL.getAmpLoc(), Record);
    436 }
    437 void TypeLocWriter::VisitRValueReferenceTypeLoc(RValueReferenceTypeLoc TL) {
    438   Writer.AddSourceLocation(TL.getAmpAmpLoc(), Record);
    439 }
    440 void TypeLocWriter::VisitMemberPointerTypeLoc(MemberPointerTypeLoc TL) {
    441   Writer.AddSourceLocation(TL.getStarLoc(), Record);
    442   Writer.AddTypeSourceInfo(TL.getClassTInfo(), Record);
    443 }
    444 void TypeLocWriter::VisitArrayTypeLoc(ArrayTypeLoc TL) {
    445   Writer.AddSourceLocation(TL.getLBracketLoc(), Record);
    446   Writer.AddSourceLocation(TL.getRBracketLoc(), Record);
    447   Record.push_back(TL.getSizeExpr() ? 1 : 0);
    448   if (TL.getSizeExpr())
    449     Writer.AddStmt(TL.getSizeExpr());
    450 }
    451 void TypeLocWriter::VisitConstantArrayTypeLoc(ConstantArrayTypeLoc TL) {
    452   VisitArrayTypeLoc(TL);
    453 }
    454 void TypeLocWriter::VisitIncompleteArrayTypeLoc(IncompleteArrayTypeLoc TL) {
    455   VisitArrayTypeLoc(TL);
    456 }
    457 void TypeLocWriter::VisitVariableArrayTypeLoc(VariableArrayTypeLoc TL) {
    458   VisitArrayTypeLoc(TL);
    459 }
    460 void TypeLocWriter::VisitDependentSizedArrayTypeLoc(
    461                                             DependentSizedArrayTypeLoc TL) {
    462   VisitArrayTypeLoc(TL);
    463 }
    464 void TypeLocWriter::VisitDependentSizedExtVectorTypeLoc(
    465                                         DependentSizedExtVectorTypeLoc TL) {
    466   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    467 }
    468 void TypeLocWriter::VisitVectorTypeLoc(VectorTypeLoc TL) {
    469   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    470 }
    471 void TypeLocWriter::VisitExtVectorTypeLoc(ExtVectorTypeLoc TL) {
    472   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    473 }
    474 void TypeLocWriter::VisitFunctionTypeLoc(FunctionTypeLoc TL) {
    475   Writer.AddSourceLocation(TL.getLocalRangeBegin(), Record);
    476   Writer.AddSourceLocation(TL.getLocalRangeEnd(), Record);
    477   Record.push_back(TL.getTrailingReturn());
    478   for (unsigned i = 0, e = TL.getNumArgs(); i != e; ++i)
    479     Writer.AddDeclRef(TL.getArg(i), Record);
    480 }
    481 void TypeLocWriter::VisitFunctionProtoTypeLoc(FunctionProtoTypeLoc TL) {
    482   VisitFunctionTypeLoc(TL);
    483 }
    484 void TypeLocWriter::VisitFunctionNoProtoTypeLoc(FunctionNoProtoTypeLoc TL) {
    485   VisitFunctionTypeLoc(TL);
    486 }
    487 void TypeLocWriter::VisitUnresolvedUsingTypeLoc(UnresolvedUsingTypeLoc TL) {
    488   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    489 }
    490 void TypeLocWriter::VisitTypedefTypeLoc(TypedefTypeLoc TL) {
    491   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    492 }
    493 void TypeLocWriter::VisitTypeOfExprTypeLoc(TypeOfExprTypeLoc TL) {
    494   Writer.AddSourceLocation(TL.getTypeofLoc(), Record);
    495   Writer.AddSourceLocation(TL.getLParenLoc(), Record);
    496   Writer.AddSourceLocation(TL.getRParenLoc(), Record);
    497 }
    498 void TypeLocWriter::VisitTypeOfTypeLoc(TypeOfTypeLoc TL) {
    499   Writer.AddSourceLocation(TL.getTypeofLoc(), Record);
    500   Writer.AddSourceLocation(TL.getLParenLoc(), Record);
    501   Writer.AddSourceLocation(TL.getRParenLoc(), Record);
    502   Writer.AddTypeSourceInfo(TL.getUnderlyingTInfo(), Record);
    503 }
    504 void TypeLocWriter::VisitDecltypeTypeLoc(DecltypeTypeLoc TL) {
    505   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    506 }
    507 void TypeLocWriter::VisitUnaryTransformTypeLoc(UnaryTransformTypeLoc TL) {
    508   Writer.AddSourceLocation(TL.getKWLoc(), Record);
    509   Writer.AddSourceLocation(TL.getLParenLoc(), Record);
    510   Writer.AddSourceLocation(TL.getRParenLoc(), Record);
    511   Writer.AddTypeSourceInfo(TL.getUnderlyingTInfo(), Record);
    512 }
    513 void TypeLocWriter::VisitAutoTypeLoc(AutoTypeLoc TL) {
    514   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    515 }
    516 void TypeLocWriter::VisitRecordTypeLoc(RecordTypeLoc TL) {
    517   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    518 }
    519 void TypeLocWriter::VisitEnumTypeLoc(EnumTypeLoc TL) {
    520   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    521 }
    522 void TypeLocWriter::VisitAttributedTypeLoc(AttributedTypeLoc TL) {
    523   Writer.AddSourceLocation(TL.getAttrNameLoc(), Record);
    524   if (TL.hasAttrOperand()) {
    525     SourceRange range = TL.getAttrOperandParensRange();
    526     Writer.AddSourceLocation(range.getBegin(), Record);
    527     Writer.AddSourceLocation(range.getEnd(), Record);
    528   }
    529   if (TL.hasAttrExprOperand()) {
    530     Expr *operand = TL.getAttrExprOperand();
    531     Record.push_back(operand ? 1 : 0);
    532     if (operand) Writer.AddStmt(operand);
    533   } else if (TL.hasAttrEnumOperand()) {
    534     Writer.AddSourceLocation(TL.getAttrEnumOperandLoc(), Record);
    535   }
    536 }
    537 void TypeLocWriter::VisitTemplateTypeParmTypeLoc(TemplateTypeParmTypeLoc TL) {
    538   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    539 }
    540 void TypeLocWriter::VisitSubstTemplateTypeParmTypeLoc(
    541                                             SubstTemplateTypeParmTypeLoc TL) {
    542   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    543 }
    544 void TypeLocWriter::VisitSubstTemplateTypeParmPackTypeLoc(
    545                                           SubstTemplateTypeParmPackTypeLoc TL) {
    546   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    547 }
    548 void TypeLocWriter::VisitTemplateSpecializationTypeLoc(
    549                                            TemplateSpecializationTypeLoc TL) {
    550   Writer.AddSourceLocation(TL.getTemplateNameLoc(), Record);
    551   Writer.AddSourceLocation(TL.getLAngleLoc(), Record);
    552   Writer.AddSourceLocation(TL.getRAngleLoc(), Record);
    553   for (unsigned i = 0, e = TL.getNumArgs(); i != e; ++i)
    554     Writer.AddTemplateArgumentLocInfo(TL.getArgLoc(i).getArgument().getKind(),
    555                                       TL.getArgLoc(i).getLocInfo(), Record);
    556 }
    557 void TypeLocWriter::VisitParenTypeLoc(ParenTypeLoc TL) {
    558   Writer.AddSourceLocation(TL.getLParenLoc(), Record);
    559   Writer.AddSourceLocation(TL.getRParenLoc(), Record);
    560 }
    561 void TypeLocWriter::VisitElaboratedTypeLoc(ElaboratedTypeLoc TL) {
    562   Writer.AddSourceLocation(TL.getKeywordLoc(), Record);
    563   Writer.AddNestedNameSpecifierLoc(TL.getQualifierLoc(), Record);
    564 }
    565 void TypeLocWriter::VisitInjectedClassNameTypeLoc(InjectedClassNameTypeLoc TL) {
    566   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    567 }
    568 void TypeLocWriter::VisitDependentNameTypeLoc(DependentNameTypeLoc TL) {
    569   Writer.AddSourceLocation(TL.getKeywordLoc(), Record);
    570   Writer.AddNestedNameSpecifierLoc(TL.getQualifierLoc(), Record);
    571   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    572 }
    573 void TypeLocWriter::VisitDependentTemplateSpecializationTypeLoc(
    574        DependentTemplateSpecializationTypeLoc TL) {
    575   Writer.AddSourceLocation(TL.getKeywordLoc(), Record);
    576   Writer.AddNestedNameSpecifierLoc(TL.getQualifierLoc(), Record);
    577   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    578   Writer.AddSourceLocation(TL.getLAngleLoc(), Record);
    579   Writer.AddSourceLocation(TL.getRAngleLoc(), Record);
    580   for (unsigned I = 0, E = TL.getNumArgs(); I != E; ++I)
    581     Writer.AddTemplateArgumentLocInfo(TL.getArgLoc(I).getArgument().getKind(),
    582                                       TL.getArgLoc(I).getLocInfo(), Record);
    583 }
    584 void TypeLocWriter::VisitPackExpansionTypeLoc(PackExpansionTypeLoc TL) {
    585   Writer.AddSourceLocation(TL.getEllipsisLoc(), Record);
    586 }
    587 void TypeLocWriter::VisitObjCInterfaceTypeLoc(ObjCInterfaceTypeLoc TL) {
    588   Writer.AddSourceLocation(TL.getNameLoc(), Record);
    589 }
    590 void TypeLocWriter::VisitObjCObjectTypeLoc(ObjCObjectTypeLoc TL) {
    591   Record.push_back(TL.hasBaseTypeAsWritten());
    592   Writer.AddSourceLocation(TL.getLAngleLoc(), Record);
    593   Writer.AddSourceLocation(TL.getRAngleLoc(), Record);
    594   for (unsigned i = 0, e = TL.getNumProtocols(); i != e; ++i)
    595     Writer.AddSourceLocation(TL.getProtocolLoc(i), Record);
    596 }
    597 void TypeLocWriter::VisitObjCObjectPointerTypeLoc(ObjCObjectPointerTypeLoc TL) {
    598   Writer.AddSourceLocation(TL.getStarLoc(), Record);
    599 }
    600 
    601 //===----------------------------------------------------------------------===//
    602 // ASTWriter Implementation
    603 //===----------------------------------------------------------------------===//
    604 
    605 static void EmitBlockID(unsigned ID, const char *Name,
    606                         llvm::BitstreamWriter &Stream,
    607                         ASTWriter::RecordDataImpl &Record) {
    608   Record.clear();
    609   Record.push_back(ID);
    610   Stream.EmitRecord(llvm::bitc::BLOCKINFO_CODE_SETBID, Record);
    611 
    612   // Emit the block name if present.
    613   if (Name == 0 || Name[0] == 0) return;
    614   Record.clear();
    615   while (*Name)
    616     Record.push_back(*Name++);
    617   Stream.EmitRecord(llvm::bitc::BLOCKINFO_CODE_BLOCKNAME, Record);
    618 }
    619 
    620 static void EmitRecordID(unsigned ID, const char *Name,
    621                          llvm::BitstreamWriter &Stream,
    622                          ASTWriter::RecordDataImpl &Record) {
    623   Record.clear();
    624   Record.push_back(ID);
    625   while (*Name)
    626     Record.push_back(*Name++);
    627   Stream.EmitRecord(llvm::bitc::BLOCKINFO_CODE_SETRECORDNAME, Record);
    628 }
    629 
    630 static void AddStmtsExprs(llvm::BitstreamWriter &Stream,
    631                           ASTWriter::RecordDataImpl &Record) {
    632 #define RECORD(X) EmitRecordID(X, #X, Stream, Record)
    633   RECORD(STMT_STOP);
    634   RECORD(STMT_NULL_PTR);
    635   RECORD(STMT_NULL);
    636   RECORD(STMT_COMPOUND);
    637   RECORD(STMT_CASE);
    638   RECORD(STMT_DEFAULT);
    639   RECORD(STMT_LABEL);
    640   RECORD(STMT_IF);
    641   RECORD(STMT_SWITCH);
    642   RECORD(STMT_WHILE);
    643   RECORD(STMT_DO);
    644   RECORD(STMT_FOR);
    645   RECORD(STMT_GOTO);
    646   RECORD(STMT_INDIRECT_GOTO);
    647   RECORD(STMT_CONTINUE);
    648   RECORD(STMT_BREAK);
    649   RECORD(STMT_RETURN);
    650   RECORD(STMT_DECL);
    651   RECORD(STMT_ASM);
    652   RECORD(EXPR_PREDEFINED);
    653   RECORD(EXPR_DECL_REF);
    654   RECORD(EXPR_INTEGER_LITERAL);
    655   RECORD(EXPR_FLOATING_LITERAL);
    656   RECORD(EXPR_IMAGINARY_LITERAL);
    657   RECORD(EXPR_STRING_LITERAL);
    658   RECORD(EXPR_CHARACTER_LITERAL);
    659   RECORD(EXPR_PAREN);
    660   RECORD(EXPR_UNARY_OPERATOR);
    661   RECORD(EXPR_SIZEOF_ALIGN_OF);
    662   RECORD(EXPR_ARRAY_SUBSCRIPT);
    663   RECORD(EXPR_CALL);
    664   RECORD(EXPR_MEMBER);
    665   RECORD(EXPR_BINARY_OPERATOR);
    666   RECORD(EXPR_COMPOUND_ASSIGN_OPERATOR);
    667   RECORD(EXPR_CONDITIONAL_OPERATOR);
    668   RECORD(EXPR_IMPLICIT_CAST);
    669   RECORD(EXPR_CSTYLE_CAST);
    670   RECORD(EXPR_COMPOUND_LITERAL);
    671   RECORD(EXPR_EXT_VECTOR_ELEMENT);
    672   RECORD(EXPR_INIT_LIST);
    673   RECORD(EXPR_DESIGNATED_INIT);
    674   RECORD(EXPR_IMPLICIT_VALUE_INIT);
    675   RECORD(EXPR_VA_ARG);
    676   RECORD(EXPR_ADDR_LABEL);
    677   RECORD(EXPR_STMT);
    678   RECORD(EXPR_CHOOSE);
    679   RECORD(EXPR_GNU_NULL);
    680   RECORD(EXPR_SHUFFLE_VECTOR);
    681   RECORD(EXPR_BLOCK);
    682   RECORD(EXPR_BLOCK_DECL_REF);
    683   RECORD(EXPR_GENERIC_SELECTION);
    684   RECORD(EXPR_OBJC_STRING_LITERAL);
    685   RECORD(EXPR_OBJC_ENCODE);
    686   RECORD(EXPR_OBJC_SELECTOR_EXPR);
    687   RECORD(EXPR_OBJC_PROTOCOL_EXPR);
    688   RECORD(EXPR_OBJC_IVAR_REF_EXPR);
    689   RECORD(EXPR_OBJC_PROPERTY_REF_EXPR);
    690   RECORD(EXPR_OBJC_KVC_REF_EXPR);
    691   RECORD(EXPR_OBJC_MESSAGE_EXPR);
    692   RECORD(STMT_OBJC_FOR_COLLECTION);
    693   RECORD(STMT_OBJC_CATCH);
    694   RECORD(STMT_OBJC_FINALLY);
    695   RECORD(STMT_OBJC_AT_TRY);
    696   RECORD(STMT_OBJC_AT_SYNCHRONIZED);
    697   RECORD(STMT_OBJC_AT_THROW);
    698   RECORD(EXPR_CXX_OPERATOR_CALL);
    699   RECORD(EXPR_CXX_CONSTRUCT);
    700   RECORD(EXPR_CXX_STATIC_CAST);
    701   RECORD(EXPR_CXX_DYNAMIC_CAST);
    702   RECORD(EXPR_CXX_REINTERPRET_CAST);
    703   RECORD(EXPR_CXX_CONST_CAST);
    704   RECORD(EXPR_CXX_FUNCTIONAL_CAST);
    705   RECORD(EXPR_CXX_BOOL_LITERAL);
    706   RECORD(EXPR_CXX_NULL_PTR_LITERAL);
    707   RECORD(EXPR_CXX_TYPEID_EXPR);
    708   RECORD(EXPR_CXX_TYPEID_TYPE);
    709   RECORD(EXPR_CXX_UUIDOF_EXPR);
    710   RECORD(EXPR_CXX_UUIDOF_TYPE);
    711   RECORD(EXPR_CXX_THIS);
    712   RECORD(EXPR_CXX_THROW);
    713   RECORD(EXPR_CXX_DEFAULT_ARG);
    714   RECORD(EXPR_CXX_BIND_TEMPORARY);
    715   RECORD(EXPR_CXX_SCALAR_VALUE_INIT);
    716   RECORD(EXPR_CXX_NEW);
    717   RECORD(EXPR_CXX_DELETE);
    718   RECORD(EXPR_CXX_PSEUDO_DESTRUCTOR);
    719   RECORD(EXPR_EXPR_WITH_CLEANUPS);
    720   RECORD(EXPR_CXX_DEPENDENT_SCOPE_MEMBER);
    721   RECORD(EXPR_CXX_DEPENDENT_SCOPE_DECL_REF);
    722   RECORD(EXPR_CXX_UNRESOLVED_CONSTRUCT);
    723   RECORD(EXPR_CXX_UNRESOLVED_MEMBER);
    724   RECORD(EXPR_CXX_UNRESOLVED_LOOKUP);
    725   RECORD(EXPR_CXX_UNARY_TYPE_TRAIT);
    726   RECORD(EXPR_CXX_NOEXCEPT);
    727   RECORD(EXPR_OPAQUE_VALUE);
    728   RECORD(EXPR_BINARY_TYPE_TRAIT);
    729   RECORD(EXPR_PACK_EXPANSION);
    730   RECORD(EXPR_SIZEOF_PACK);
    731   RECORD(EXPR_SUBST_NON_TYPE_TEMPLATE_PARM_PACK);
    732   RECORD(EXPR_CUDA_KERNEL_CALL);
    733 #undef RECORD
    734 }
    735 
    736 void ASTWriter::WriteBlockInfoBlock() {
    737   RecordData Record;
    738   Stream.EnterSubblock(llvm::bitc::BLOCKINFO_BLOCK_ID, 3);
    739 
    740 #define BLOCK(X) EmitBlockID(X ## _ID, #X, Stream, Record)
    741 #define RECORD(X) EmitRecordID(X, #X, Stream, Record)
    742 
    743   // AST Top-Level Block.
    744   BLOCK(AST_BLOCK);
    745   RECORD(ORIGINAL_FILE_NAME);
    746   RECORD(ORIGINAL_FILE_ID);
    747   RECORD(TYPE_OFFSET);
    748   RECORD(DECL_OFFSET);
    749   RECORD(LANGUAGE_OPTIONS);
    750   RECORD(METADATA);
    751   RECORD(IDENTIFIER_OFFSET);
    752   RECORD(IDENTIFIER_TABLE);
    753   RECORD(EXTERNAL_DEFINITIONS);
    754   RECORD(SPECIAL_TYPES);
    755   RECORD(STATISTICS);
    756   RECORD(TENTATIVE_DEFINITIONS);
    757   RECORD(UNUSED_FILESCOPED_DECLS);
    758   RECORD(LOCALLY_SCOPED_EXTERNAL_DECLS);
    759   RECORD(SELECTOR_OFFSETS);
    760   RECORD(METHOD_POOL);
    761   RECORD(PP_COUNTER_VALUE);
    762   RECORD(SOURCE_LOCATION_OFFSETS);
    763   RECORD(SOURCE_LOCATION_PRELOADS);
    764   RECORD(STAT_CACHE);
    765   RECORD(EXT_VECTOR_DECLS);
    766   RECORD(VERSION_CONTROL_BRANCH_REVISION);
    767   RECORD(MACRO_DEFINITION_OFFSETS);
    768   RECORD(CHAINED_METADATA);
    769   RECORD(REFERENCED_SELECTOR_POOL);
    770   RECORD(TU_UPDATE_LEXICAL);
    771   RECORD(REDECLS_UPDATE_LATEST);
    772   RECORD(SEMA_DECL_REFS);
    773   RECORD(WEAK_UNDECLARED_IDENTIFIERS);
    774   RECORD(PENDING_IMPLICIT_INSTANTIATIONS);
    775   RECORD(DECL_REPLACEMENTS);
    776   RECORD(UPDATE_VISIBLE);
    777   RECORD(DECL_UPDATE_OFFSETS);
    778   RECORD(DECL_UPDATES);
    779   RECORD(CXX_BASE_SPECIFIER_OFFSETS);
    780   RECORD(DIAG_PRAGMA_MAPPINGS);
    781   RECORD(CUDA_SPECIAL_DECL_REFS);
    782   RECORD(HEADER_SEARCH_TABLE);
    783   RECORD(FP_PRAGMA_OPTIONS);
    784   RECORD(OPENCL_EXTENSIONS);
    785   RECORD(DELEGATING_CTORS);
    786   RECORD(FILE_SOURCE_LOCATION_OFFSETS);
    787   RECORD(KNOWN_NAMESPACES);
    788 
    789   // SourceManager Block.
    790   BLOCK(SOURCE_MANAGER_BLOCK);
    791   RECORD(SM_SLOC_FILE_ENTRY);
    792   RECORD(SM_SLOC_BUFFER_ENTRY);
    793   RECORD(SM_SLOC_BUFFER_BLOB);
    794   RECORD(SM_SLOC_EXPANSION_ENTRY);
    795 
    796   // Preprocessor Block.
    797   BLOCK(PREPROCESSOR_BLOCK);
    798   RECORD(PP_MACRO_OBJECT_LIKE);
    799   RECORD(PP_MACRO_FUNCTION_LIKE);
    800   RECORD(PP_TOKEN);
    801 
    802   // Decls and Types block.
    803   BLOCK(DECLTYPES_BLOCK);
    804   RECORD(TYPE_EXT_QUAL);
    805   RECORD(TYPE_COMPLEX);
    806   RECORD(TYPE_POINTER);
    807   RECORD(TYPE_BLOCK_POINTER);
    808   RECORD(TYPE_LVALUE_REFERENCE);
    809   RECORD(TYPE_RVALUE_REFERENCE);
    810   RECORD(TYPE_MEMBER_POINTER);
    811   RECORD(TYPE_CONSTANT_ARRAY);
    812   RECORD(TYPE_INCOMPLETE_ARRAY);
    813   RECORD(TYPE_VARIABLE_ARRAY);
    814   RECORD(TYPE_VECTOR);
    815   RECORD(TYPE_EXT_VECTOR);
    816   RECORD(TYPE_FUNCTION_PROTO);
    817   RECORD(TYPE_FUNCTION_NO_PROTO);
    818   RECORD(TYPE_TYPEDEF);
    819   RECORD(TYPE_TYPEOF_EXPR);
    820   RECORD(TYPE_TYPEOF);
    821   RECORD(TYPE_RECORD);
    822   RECORD(TYPE_ENUM);
    823   RECORD(TYPE_OBJC_INTERFACE);
    824   RECORD(TYPE_OBJC_OBJECT);
    825   RECORD(TYPE_OBJC_OBJECT_POINTER);
    826   RECORD(TYPE_DECLTYPE);
    827   RECORD(TYPE_ELABORATED);
    828   RECORD(TYPE_SUBST_TEMPLATE_TYPE_PARM);
    829   RECORD(TYPE_UNRESOLVED_USING);
    830   RECORD(TYPE_INJECTED_CLASS_NAME);
    831   RECORD(TYPE_OBJC_OBJECT);
    832   RECORD(TYPE_TEMPLATE_TYPE_PARM);
    833   RECORD(TYPE_TEMPLATE_SPECIALIZATION);
    834   RECORD(TYPE_DEPENDENT_NAME);
    835   RECORD(TYPE_DEPENDENT_TEMPLATE_SPECIALIZATION);
    836   RECORD(TYPE_DEPENDENT_SIZED_ARRAY);
    837   RECORD(TYPE_PAREN);
    838   RECORD(TYPE_PACK_EXPANSION);
    839   RECORD(TYPE_ATTRIBUTED);
    840   RECORD(TYPE_SUBST_TEMPLATE_TYPE_PARM_PACK);
    841   RECORD(DECL_TRANSLATION_UNIT);
    842   RECORD(DECL_TYPEDEF);
    843   RECORD(DECL_ENUM);
    844   RECORD(DECL_RECORD);
    845   RECORD(DECL_ENUM_CONSTANT);
    846   RECORD(DECL_FUNCTION);
    847   RECORD(DECL_OBJC_METHOD);
    848   RECORD(DECL_OBJC_INTERFACE);
    849   RECORD(DECL_OBJC_PROTOCOL);
    850   RECORD(DECL_OBJC_IVAR);
    851   RECORD(DECL_OBJC_AT_DEFS_FIELD);
    852   RECORD(DECL_OBJC_CLASS);
    853   RECORD(DECL_OBJC_FORWARD_PROTOCOL);
    854   RECORD(DECL_OBJC_CATEGORY);
    855   RECORD(DECL_OBJC_CATEGORY_IMPL);
    856   RECORD(DECL_OBJC_IMPLEMENTATION);
    857   RECORD(DECL_OBJC_COMPATIBLE_ALIAS);
    858   RECORD(DECL_OBJC_PROPERTY);
    859   RECORD(DECL_OBJC_PROPERTY_IMPL);
    860   RECORD(DECL_FIELD);
    861   RECORD(DECL_VAR);
    862   RECORD(DECL_IMPLICIT_PARAM);
    863   RECORD(DECL_PARM_VAR);
    864   RECORD(DECL_FILE_SCOPE_ASM);
    865   RECORD(DECL_BLOCK);
    866   RECORD(DECL_CONTEXT_LEXICAL);
    867   RECORD(DECL_CONTEXT_VISIBLE);
    868   RECORD(DECL_NAMESPACE);
    869   RECORD(DECL_NAMESPACE_ALIAS);
    870   RECORD(DECL_USING);
    871   RECORD(DECL_USING_SHADOW);
    872   RECORD(DECL_USING_DIRECTIVE);
    873   RECORD(DECL_UNRESOLVED_USING_VALUE);
    874   RECORD(DECL_UNRESOLVED_USING_TYPENAME);
    875   RECORD(DECL_LINKAGE_SPEC);
    876   RECORD(DECL_CXX_RECORD);
    877   RECORD(DECL_CXX_METHOD);
    878   RECORD(DECL_CXX_CONSTRUCTOR);
    879   RECORD(DECL_CXX_DESTRUCTOR);
    880   RECORD(DECL_CXX_CONVERSION);
    881   RECORD(DECL_ACCESS_SPEC);
    882   RECORD(DECL_FRIEND);
    883   RECORD(DECL_FRIEND_TEMPLATE);
    884   RECORD(DECL_CLASS_TEMPLATE);
    885   RECORD(DECL_CLASS_TEMPLATE_SPECIALIZATION);
    886   RECORD(DECL_CLASS_TEMPLATE_PARTIAL_SPECIALIZATION);
    887   RECORD(DECL_FUNCTION_TEMPLATE);
    888   RECORD(DECL_TEMPLATE_TYPE_PARM);
    889   RECORD(DECL_NON_TYPE_TEMPLATE_PARM);
    890   RECORD(DECL_TEMPLATE_TEMPLATE_PARM);
    891   RECORD(DECL_STATIC_ASSERT);
    892   RECORD(DECL_CXX_BASE_SPECIFIERS);
    893   RECORD(DECL_INDIRECTFIELD);
    894   RECORD(DECL_EXPANDED_NON_TYPE_TEMPLATE_PARM_PACK);
    895 
    896   // Statements and Exprs can occur in the Decls and Types block.
    897   AddStmtsExprs(Stream, Record);
    898 
    899   BLOCK(PREPROCESSOR_DETAIL_BLOCK);
    900   RECORD(PPD_MACRO_EXPANSION);
    901   RECORD(PPD_MACRO_DEFINITION);
    902   RECORD(PPD_INCLUSION_DIRECTIVE);
    903 
    904 #undef RECORD
    905 #undef BLOCK
    906   Stream.ExitBlock();
    907 }
    908 
    909 /// \brief Adjusts the given filename to only write out the portion of the
    910 /// filename that is not part of the system root directory.
    911 ///
    912 /// \param Filename the file name to adjust.
    913 ///
    914 /// \param isysroot When non-NULL, the PCH file is a relocatable PCH file and
    915 /// the returned filename will be adjusted by this system root.
    916 ///
    917 /// \returns either the original filename (if it needs no adjustment) or the
    918 /// adjusted filename (which points into the @p Filename parameter).
    919 static const char *
    920 adjustFilenameForRelocatablePCH(const char *Filename, const char *isysroot) {
    921   assert(Filename && "No file name to adjust?");
    922 
    923   if (!isysroot)
    924     return Filename;
    925 
    926   // Verify that the filename and the system root have the same prefix.
    927   unsigned Pos = 0;
    928   for (; Filename[Pos] && isysroot[Pos]; ++Pos)
    929     if (Filename[Pos] != isysroot[Pos])
    930       return Filename; // Prefixes don't match.
    931 
    932   // We hit the end of the filename before we hit the end of the system root.
    933   if (!Filename[Pos])
    934     return Filename;
    935 
    936   // If the file name has a '/' at the current position, skip over the '/'.
    937   // We distinguish sysroot-based includes from absolute includes by the
    938   // absence of '/' at the beginning of sysroot-based includes.
    939   if (Filename[Pos] == '/')
    940     ++Pos;
    941 
    942   return Filename + Pos;
    943 }
    944 
    945 /// \brief Write the AST metadata (e.g., i686-apple-darwin9).
    946 void ASTWriter::WriteMetadata(ASTContext &Context, const char *isysroot,
    947                               const std::string &OutputFile) {
    948   using namespace llvm;
    949 
    950   // Metadata
    951   const TargetInfo &Target = Context.Target;
    952   BitCodeAbbrev *MetaAbbrev = new BitCodeAbbrev();
    953   MetaAbbrev->Add(BitCodeAbbrevOp(
    954                     Chain ? CHAINED_METADATA : METADATA));
    955   MetaAbbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 16)); // AST major
    956   MetaAbbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 16)); // AST minor
    957   MetaAbbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 16)); // Clang major
    958   MetaAbbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 16)); // Clang minor
    959   MetaAbbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 1)); // Relocatable
    960   // Target triple or chained PCH name
    961   MetaAbbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob));
    962   unsigned MetaAbbrevCode = Stream.EmitAbbrev(MetaAbbrev);
    963 
    964   RecordData Record;
    965   Record.push_back(Chain ? CHAINED_METADATA : METADATA);
    966   Record.push_back(VERSION_MAJOR);
    967   Record.push_back(VERSION_MINOR);
    968   Record.push_back(CLANG_VERSION_MAJOR);
    969   Record.push_back(CLANG_VERSION_MINOR);
    970   Record.push_back(isysroot != 0);
    971   // FIXME: This writes the absolute path for chained headers.
    972   const std::string &BlobStr = Chain ? Chain->getFileName() : Target.getTriple().getTriple();
    973   Stream.EmitRecordWithBlob(MetaAbbrevCode, Record, BlobStr);
    974 
    975   // Original file name and file ID
    976   SourceManager &SM = Context.getSourceManager();
    977   if (const FileEntry *MainFile = SM.getFileEntryForID(SM.getMainFileID())) {
    978     BitCodeAbbrev *FileAbbrev = new BitCodeAbbrev();
    979     FileAbbrev->Add(BitCodeAbbrevOp(ORIGINAL_FILE_NAME));
    980     FileAbbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob)); // File name
    981     unsigned FileAbbrevCode = Stream.EmitAbbrev(FileAbbrev);
    982 
    983     llvm::SmallString<128> MainFilePath(MainFile->getName());
    984 
    985     llvm::sys::fs::make_absolute(MainFilePath);
    986 
    987     const char *MainFileNameStr = MainFilePath.c_str();
    988     MainFileNameStr = adjustFilenameForRelocatablePCH(MainFileNameStr,
    989                                                       isysroot);
    990     RecordData Record;
    991     Record.push_back(ORIGINAL_FILE_NAME);
    992     Stream.EmitRecordWithBlob(FileAbbrevCode, Record, MainFileNameStr);
    993 
    994     Record.clear();
    995     Record.push_back(SM.getMainFileID().getOpaqueValue());
    996     Stream.EmitRecord(ORIGINAL_FILE_ID, Record);
    997   }
    998 
    999   // Original PCH directory
   1000   if (!OutputFile.empty() && OutputFile != "-") {
   1001     BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   1002     Abbrev->Add(BitCodeAbbrevOp(ORIGINAL_PCH_DIR));
   1003     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob)); // File name
   1004     unsigned AbbrevCode = Stream.EmitAbbrev(Abbrev);
   1005 
   1006     llvm::SmallString<128> OutputPath(OutputFile);
   1007 
   1008     llvm::sys::fs::make_absolute(OutputPath);
   1009     StringRef origDir = llvm::sys::path::parent_path(OutputPath);
   1010 
   1011     RecordData Record;
   1012     Record.push_back(ORIGINAL_PCH_DIR);
   1013     Stream.EmitRecordWithBlob(AbbrevCode, Record, origDir);
   1014   }
   1015 
   1016   // Repository branch/version information.
   1017   BitCodeAbbrev *RepoAbbrev = new BitCodeAbbrev();
   1018   RepoAbbrev->Add(BitCodeAbbrevOp(VERSION_CONTROL_BRANCH_REVISION));
   1019   RepoAbbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob)); // SVN branch/tag
   1020   unsigned RepoAbbrevCode = Stream.EmitAbbrev(RepoAbbrev);
   1021   Record.clear();
   1022   Record.push_back(VERSION_CONTROL_BRANCH_REVISION);
   1023   Stream.EmitRecordWithBlob(RepoAbbrevCode, Record,
   1024                             getClangFullRepositoryVersion());
   1025 }
   1026 
   1027 /// \brief Write the LangOptions structure.
   1028 void ASTWriter::WriteLanguageOptions(const LangOptions &LangOpts) {
   1029   RecordData Record;
   1030   Record.push_back(LangOpts.Trigraphs);
   1031   Record.push_back(LangOpts.BCPLComment);  // BCPL-style '//' comments.
   1032   Record.push_back(LangOpts.DollarIdents);  // '$' allowed in identifiers.
   1033   Record.push_back(LangOpts.AsmPreprocessor);  // Preprocessor in asm mode.
   1034   Record.push_back(LangOpts.GNUMode);  // True in gnu99 mode false in c99 mode (etc)
   1035   Record.push_back(LangOpts.GNUKeywords);  // Allow GNU-extension keywords
   1036   Record.push_back(LangOpts.ImplicitInt);  // C89 implicit 'int'.
   1037   Record.push_back(LangOpts.Digraphs);  // C94, C99 and C++
   1038   Record.push_back(LangOpts.HexFloats);  // C99 Hexadecimal float constants.
   1039   Record.push_back(LangOpts.C99);  // C99 Support
   1040   Record.push_back(LangOpts.C1X);  // C1X Support
   1041   Record.push_back(LangOpts.Microsoft);  // Microsoft extensions.
   1042   // LangOpts.MSCVersion is ignored because all it does it set a macro, which is
   1043   // already saved elsewhere.
   1044   Record.push_back(LangOpts.CPlusPlus);  // C++ Support
   1045   Record.push_back(LangOpts.CPlusPlus0x);  // C++0x Support
   1046   Record.push_back(LangOpts.CXXOperatorNames);  // Treat C++ operator names as keywords.
   1047 
   1048   Record.push_back(LangOpts.ObjC1);  // Objective-C 1 support enabled.
   1049   Record.push_back(LangOpts.ObjC2);  // Objective-C 2 support enabled.
   1050   Record.push_back(LangOpts.ObjCNonFragileABI);  // Objective-C
   1051                                                  // modern abi enabled.
   1052   Record.push_back(LangOpts.ObjCNonFragileABI2); // Objective-C enhanced
   1053                                                  // modern abi enabled.
   1054   Record.push_back(LangOpts.AppleKext);          // Apple's kernel extensions ABI
   1055   Record.push_back(LangOpts.ObjCDefaultSynthProperties); // Objective-C auto-synthesized
   1056                                                       // properties enabled.
   1057   Record.push_back(LangOpts.ObjCInferRelatedResultType);
   1058   Record.push_back(LangOpts.NoConstantCFStrings); // non cfstring generation enabled..
   1059 
   1060   Record.push_back(LangOpts.PascalStrings);  // Allow Pascal strings
   1061   Record.push_back(LangOpts.WritableStrings);  // Allow writable strings
   1062   Record.push_back(LangOpts.LaxVectorConversions);
   1063   Record.push_back(LangOpts.AltiVec);
   1064   Record.push_back(LangOpts.Exceptions);  // Support exception handling.
   1065   Record.push_back(LangOpts.ObjCExceptions);
   1066   Record.push_back(LangOpts.CXXExceptions);
   1067   Record.push_back(LangOpts.SjLjExceptions);
   1068 
   1069   Record.push_back(LangOpts.MSBitfields); // MS-compatible structure layout
   1070   Record.push_back(LangOpts.NeXTRuntime); // Use NeXT runtime.
   1071   Record.push_back(LangOpts.Freestanding); // Freestanding implementation
   1072   Record.push_back(LangOpts.NoBuiltin); // Do not use builtin functions (-fno-builtin)
   1073 
   1074   // Whether static initializers are protected by locks.
   1075   Record.push_back(LangOpts.ThreadsafeStatics);
   1076   Record.push_back(LangOpts.POSIXThreads);
   1077   Record.push_back(LangOpts.Blocks); // block extension to C
   1078   Record.push_back(LangOpts.EmitAllDecls); // Emit all declarations, even if
   1079                                   // they are unused.
   1080   Record.push_back(LangOpts.MathErrno); // Math functions must respect errno
   1081                                   // (modulo the platform support).
   1082 
   1083   Record.push_back(LangOpts.getSignedOverflowBehavior());
   1084   Record.push_back(LangOpts.HeinousExtensions);
   1085 
   1086   Record.push_back(LangOpts.Optimize); // Whether __OPTIMIZE__ should be defined.
   1087   Record.push_back(LangOpts.OptimizeSize); // Whether __OPTIMIZE_SIZE__ should be
   1088                                   // defined.
   1089   Record.push_back(LangOpts.Static); // Should __STATIC__ be defined (as
   1090                                   // opposed to __DYNAMIC__).
   1091   Record.push_back(LangOpts.PICLevel); // The value for __PIC__, if non-zero.
   1092 
   1093   Record.push_back(LangOpts.GNUInline); // Should GNU inline semantics be
   1094                                   // used (instead of C99 semantics).
   1095   Record.push_back(LangOpts.NoInline); // Should __NO_INLINE__ be defined.
   1096   Record.push_back(LangOpts.Deprecated); // Should __DEPRECATED be defined.
   1097   Record.push_back(LangOpts.AccessControl); // Whether C++ access control should
   1098                                             // be enabled.
   1099   Record.push_back(LangOpts.CharIsSigned); // Whether char is a signed or
   1100                                            // unsigned type
   1101   Record.push_back(LangOpts.ShortWChar);  // force wchar_t to be unsigned short
   1102   Record.push_back(LangOpts.ShortEnums);  // Should the enum type be equivalent
   1103                                           // to the smallest integer type with
   1104                                           // enough room.
   1105   Record.push_back(LangOpts.getGCMode());
   1106   Record.push_back(LangOpts.getVisibilityMode());
   1107   Record.push_back(LangOpts.getStackProtectorMode());
   1108   Record.push_back(LangOpts.InstantiationDepth);
   1109   Record.push_back(LangOpts.OpenCL);
   1110   Record.push_back(LangOpts.CUDA);
   1111   Record.push_back(LangOpts.CatchUndefined);
   1112   Record.push_back(LangOpts.DefaultFPContract);
   1113   Record.push_back(LangOpts.ElideConstructors);
   1114   Record.push_back(LangOpts.SpellChecking);
   1115   Record.push_back(LangOpts.MRTD);
   1116   Record.push_back(LangOpts.ObjCAutoRefCount);
   1117   Record.push_back(LangOpts.ObjCInferRelatedReturnType);
   1118   Stream.EmitRecord(LANGUAGE_OPTIONS, Record);
   1119 }
   1120 
   1121 //===----------------------------------------------------------------------===//
   1122 // stat cache Serialization
   1123 //===----------------------------------------------------------------------===//
   1124 
   1125 namespace {
   1126 // Trait used for the on-disk hash table of stat cache results.
   1127 class ASTStatCacheTrait {
   1128 public:
   1129   typedef const char * key_type;
   1130   typedef key_type key_type_ref;
   1131 
   1132   typedef struct stat data_type;
   1133   typedef const data_type &data_type_ref;
   1134 
   1135   static unsigned ComputeHash(const char *path) {
   1136     return llvm::HashString(path);
   1137   }
   1138 
   1139   std::pair<unsigned,unsigned>
   1140     EmitKeyDataLength(llvm::raw_ostream& Out, const char *path,
   1141                       data_type_ref Data) {
   1142     unsigned StrLen = strlen(path);
   1143     clang::io::Emit16(Out, StrLen);
   1144     unsigned DataLen = 4 + 4 + 2 + 8 + 8;
   1145     clang::io::Emit8(Out, DataLen);
   1146     return std::make_pair(StrLen + 1, DataLen);
   1147   }
   1148 
   1149   void EmitKey(llvm::raw_ostream& Out, const char *path, unsigned KeyLen) {
   1150     Out.write(path, KeyLen);
   1151   }
   1152 
   1153   void EmitData(llvm::raw_ostream &Out, key_type_ref,
   1154                 data_type_ref Data, unsigned DataLen) {
   1155     using namespace clang::io;
   1156     uint64_t Start = Out.tell(); (void)Start;
   1157 
   1158     Emit32(Out, (uint32_t) Data.st_ino);
   1159     Emit32(Out, (uint32_t) Data.st_dev);
   1160     Emit16(Out, (uint16_t) Data.st_mode);
   1161     Emit64(Out, (uint64_t) Data.st_mtime);
   1162     Emit64(Out, (uint64_t) Data.st_size);
   1163 
   1164     assert(Out.tell() - Start == DataLen && "Wrong data length");
   1165   }
   1166 };
   1167 } // end anonymous namespace
   1168 
   1169 /// \brief Write the stat() system call cache to the AST file.
   1170 void ASTWriter::WriteStatCache(MemorizeStatCalls &StatCalls) {
   1171   // Build the on-disk hash table containing information about every
   1172   // stat() call.
   1173   OnDiskChainedHashTableGenerator<ASTStatCacheTrait> Generator;
   1174   unsigned NumStatEntries = 0;
   1175   for (MemorizeStatCalls::iterator Stat = StatCalls.begin(),
   1176                                 StatEnd = StatCalls.end();
   1177        Stat != StatEnd; ++Stat, ++NumStatEntries) {
   1178     llvm::StringRef Filename = Stat->first();
   1179     Generator.insert(Filename.data(), Stat->second);
   1180   }
   1181 
   1182   // Create the on-disk hash table in a buffer.
   1183   llvm::SmallString<4096> StatCacheData;
   1184   uint32_t BucketOffset;
   1185   {
   1186     llvm::raw_svector_ostream Out(StatCacheData);
   1187     // Make sure that no bucket is at offset 0
   1188     clang::io::Emit32(Out, 0);
   1189     BucketOffset = Generator.Emit(Out);
   1190   }
   1191 
   1192   // Create a blob abbreviation
   1193   using namespace llvm;
   1194   BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   1195   Abbrev->Add(BitCodeAbbrevOp(STAT_CACHE));
   1196   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
   1197   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
   1198   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob));
   1199   unsigned StatCacheAbbrev = Stream.EmitAbbrev(Abbrev);
   1200 
   1201   // Write the stat cache
   1202   RecordData Record;
   1203   Record.push_back(STAT_CACHE);
   1204   Record.push_back(BucketOffset);
   1205   Record.push_back(NumStatEntries);
   1206   Stream.EmitRecordWithBlob(StatCacheAbbrev, Record, StatCacheData.str());
   1207 }
   1208 
   1209 //===----------------------------------------------------------------------===//
   1210 // Source Manager Serialization
   1211 //===----------------------------------------------------------------------===//
   1212 
   1213 /// \brief Create an abbreviation for the SLocEntry that refers to a
   1214 /// file.
   1215 static unsigned CreateSLocFileAbbrev(llvm::BitstreamWriter &Stream) {
   1216   using namespace llvm;
   1217   BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   1218   Abbrev->Add(BitCodeAbbrevOp(SM_SLOC_FILE_ENTRY));
   1219   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8)); // Offset
   1220   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8)); // Include location
   1221   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 2)); // Characteristic
   1222   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 1)); // Line directives
   1223   // FileEntry fields.
   1224   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 12)); // Size
   1225   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 32)); // Modification time
   1226   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob)); // File name
   1227   return Stream.EmitAbbrev(Abbrev);
   1228 }
   1229 
   1230 /// \brief Create an abbreviation for the SLocEntry that refers to a
   1231 /// buffer.
   1232 static unsigned CreateSLocBufferAbbrev(llvm::BitstreamWriter &Stream) {
   1233   using namespace llvm;
   1234   BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   1235   Abbrev->Add(BitCodeAbbrevOp(SM_SLOC_BUFFER_ENTRY));
   1236   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8)); // Offset
   1237   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8)); // Include location
   1238   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 2)); // Characteristic
   1239   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 1)); // Line directives
   1240   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob)); // Buffer name blob
   1241   return Stream.EmitAbbrev(Abbrev);
   1242 }
   1243 
   1244 /// \brief Create an abbreviation for the SLocEntry that refers to a
   1245 /// buffer's blob.
   1246 static unsigned CreateSLocBufferBlobAbbrev(llvm::BitstreamWriter &Stream) {
   1247   using namespace llvm;
   1248   BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   1249   Abbrev->Add(BitCodeAbbrevOp(SM_SLOC_BUFFER_BLOB));
   1250   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob)); // Blob
   1251   return Stream.EmitAbbrev(Abbrev);
   1252 }
   1253 
   1254 /// \brief Create an abbreviation for the SLocEntry that refers to a macro
   1255 /// expansion.
   1256 static unsigned CreateSLocExpansionAbbrev(llvm::BitstreamWriter &Stream) {
   1257   using namespace llvm;
   1258   BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   1259   Abbrev->Add(BitCodeAbbrevOp(SM_SLOC_EXPANSION_ENTRY));
   1260   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8)); // Offset
   1261   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8)); // Spelling location
   1262   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8)); // Start location
   1263   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 8)); // End location
   1264   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 6)); // Token length
   1265   return Stream.EmitAbbrev(Abbrev);
   1266 }
   1267 
   1268 namespace {
   1269   // Trait used for the on-disk hash table of header search information.
   1270   class HeaderFileInfoTrait {
   1271     ASTWriter &Writer;
   1272     HeaderSearch &HS;
   1273 
   1274   public:
   1275     HeaderFileInfoTrait(ASTWriter &Writer, HeaderSearch &HS)
   1276       : Writer(Writer), HS(HS) { }
   1277 
   1278     typedef const char *key_type;
   1279     typedef key_type key_type_ref;
   1280 
   1281     typedef HeaderFileInfo data_type;
   1282     typedef const data_type &data_type_ref;
   1283 
   1284     static unsigned ComputeHash(const char *path) {
   1285       // The hash is based only on the filename portion of the key, so that the
   1286       // reader can match based on filenames when symlinking or excess path
   1287       // elements ("foo/../", "../") change the form of the name. However,
   1288       // complete path is still the key.
   1289       return llvm::HashString(llvm::sys::path::filename(path));
   1290     }
   1291 
   1292     std::pair<unsigned,unsigned>
   1293     EmitKeyDataLength(llvm::raw_ostream& Out, const char *path,
   1294                       data_type_ref Data) {
   1295       unsigned StrLen = strlen(path);
   1296       clang::io::Emit16(Out, StrLen);
   1297       unsigned DataLen = 1 + 2 + 4;
   1298       clang::io::Emit8(Out, DataLen);
   1299       return std::make_pair(StrLen + 1, DataLen);
   1300     }
   1301 
   1302     void EmitKey(llvm::raw_ostream& Out, const char *path, unsigned KeyLen) {
   1303       Out.write(path, KeyLen);
   1304     }
   1305 
   1306     void EmitData(llvm::raw_ostream &Out, key_type_ref,
   1307                   data_type_ref Data, unsigned DataLen) {
   1308       using namespace clang::io;
   1309       uint64_t Start = Out.tell(); (void)Start;
   1310 
   1311       unsigned char Flags = (Data.isImport << 4)
   1312                           | (Data.isPragmaOnce << 3)
   1313                           | (Data.DirInfo << 1)
   1314                           | Data.Resolved;
   1315       Emit8(Out, (uint8_t)Flags);
   1316       Emit16(Out, (uint16_t) Data.NumIncludes);
   1317 
   1318       if (!Data.ControllingMacro)
   1319         Emit32(Out, (uint32_t)Data.ControllingMacroID);
   1320       else
   1321         Emit32(Out, (uint32_t)Writer.getIdentifierRef(Data.ControllingMacro));
   1322       assert(Out.tell() - Start == DataLen && "Wrong data length");
   1323     }
   1324   };
   1325 } // end anonymous namespace
   1326 
   1327 /// \brief Write the header search block for the list of files that
   1328 ///
   1329 /// \param HS The header search structure to save.
   1330 ///
   1331 /// \param Chain Whether we're creating a chained AST file.
   1332 void ASTWriter::WriteHeaderSearch(HeaderSearch &HS, const char* isysroot) {
   1333   llvm::SmallVector<const FileEntry *, 16> FilesByUID;
   1334   HS.getFileMgr().GetUniqueIDMapping(FilesByUID);
   1335 
   1336   if (FilesByUID.size() > HS.header_file_size())
   1337     FilesByUID.resize(HS.header_file_size());
   1338 
   1339   HeaderFileInfoTrait GeneratorTrait(*this, HS);
   1340   OnDiskChainedHashTableGenerator<HeaderFileInfoTrait> Generator;
   1341   llvm::SmallVector<const char *, 4> SavedStrings;
   1342   unsigned NumHeaderSearchEntries = 0;
   1343   for (unsigned UID = 0, LastUID = FilesByUID.size(); UID != LastUID; ++UID) {
   1344     const FileEntry *File = FilesByUID[UID];
   1345     if (!File)
   1346       continue;
   1347 
   1348     const HeaderFileInfo &HFI = HS.header_file_begin()[UID];
   1349     if (HFI.External && Chain)
   1350       continue;
   1351 
   1352     // Turn the file name into an absolute path, if it isn't already.
   1353     const char *Filename = File->getName();
   1354     Filename = adjustFilenameForRelocatablePCH(Filename, isysroot);
   1355 
   1356     // If we performed any translation on the file name at all, we need to
   1357     // save this string, since the generator will refer to it later.
   1358     if (Filename != File->getName()) {
   1359       Filename = strdup(Filename);
   1360       SavedStrings.push_back(Filename);
   1361     }
   1362 
   1363     Generator.insert(Filename, HFI, GeneratorTrait);
   1364     ++NumHeaderSearchEntries;
   1365   }
   1366 
   1367   // Create the on-disk hash table in a buffer.
   1368   llvm::SmallString<4096> TableData;
   1369   uint32_t BucketOffset;
   1370   {
   1371     llvm::raw_svector_ostream Out(TableData);
   1372     // Make sure that no bucket is at offset 0
   1373     clang::io::Emit32(Out, 0);
   1374     BucketOffset = Generator.Emit(Out, GeneratorTrait);
   1375   }
   1376 
   1377   // Create a blob abbreviation
   1378   using namespace llvm;
   1379   BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   1380   Abbrev->Add(BitCodeAbbrevOp(HEADER_SEARCH_TABLE));
   1381   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
   1382   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
   1383   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob));
   1384   unsigned TableAbbrev = Stream.EmitAbbrev(Abbrev);
   1385 
   1386   // Write the stat cache
   1387   RecordData Record;
   1388   Record.push_back(HEADER_SEARCH_TABLE);
   1389   Record.push_back(BucketOffset);
   1390   Record.push_back(NumHeaderSearchEntries);
   1391   Stream.EmitRecordWithBlob(TableAbbrev, Record, TableData.str());
   1392 
   1393   // Free all of the strings we had to duplicate.
   1394   for (unsigned I = 0, N = SavedStrings.size(); I != N; ++I)
   1395     free((void*)SavedStrings[I]);
   1396 }
   1397 
   1398 /// \brief Writes the block containing the serialized form of the
   1399 /// source manager.
   1400 ///
   1401 /// TODO: We should probably use an on-disk hash table (stored in a
   1402 /// blob), indexed based on the file name, so that we only create
   1403 /// entries for files that we actually need. In the common case (no
   1404 /// errors), we probably won't have to create file entries for any of
   1405 /// the files in the AST.
   1406 void ASTWriter::WriteSourceManagerBlock(SourceManager &SourceMgr,
   1407                                         const Preprocessor &PP,
   1408                                         const char *isysroot) {
   1409   RecordData Record;
   1410 
   1411   // Enter the source manager block.
   1412   Stream.EnterSubblock(SOURCE_MANAGER_BLOCK_ID, 3);
   1413 
   1414   // Abbreviations for the various kinds of source-location entries.
   1415   unsigned SLocFileAbbrv = CreateSLocFileAbbrev(Stream);
   1416   unsigned SLocBufferAbbrv = CreateSLocBufferAbbrev(Stream);
   1417   unsigned SLocBufferBlobAbbrv = CreateSLocBufferBlobAbbrev(Stream);
   1418   unsigned SLocExpansionAbbrv = CreateSLocExpansionAbbrev(Stream);
   1419 
   1420   // Write out the source location entry table. We skip the first
   1421   // entry, which is always the same dummy entry.
   1422   std::vector<uint32_t> SLocEntryOffsets;
   1423   // Write out the offsets of only source location file entries.
   1424   // We will go through them in ASTReader::validateFileEntries().
   1425   std::vector<uint32_t> SLocFileEntryOffsets;
   1426   RecordData PreloadSLocs;
   1427   SLocEntryOffsets.reserve(SourceMgr.local_sloc_entry_size() - 1);
   1428   for (unsigned I = 1, N = SourceMgr.local_sloc_entry_size();
   1429        I != N; ++I) {
   1430     // Get this source location entry.
   1431     const SrcMgr::SLocEntry *SLoc = &SourceMgr.getLocalSLocEntry(I);
   1432 
   1433     // Record the offset of this source-location entry.
   1434     SLocEntryOffsets.push_back(Stream.GetCurrentBitNo());
   1435 
   1436     // Figure out which record code to use.
   1437     unsigned Code;
   1438     if (SLoc->isFile()) {
   1439       if (SLoc->getFile().getContentCache()->OrigEntry) {
   1440         Code = SM_SLOC_FILE_ENTRY;
   1441         SLocFileEntryOffsets.push_back(Stream.GetCurrentBitNo());
   1442       } else
   1443         Code = SM_SLOC_BUFFER_ENTRY;
   1444     } else
   1445       Code = SM_SLOC_EXPANSION_ENTRY;
   1446     Record.clear();
   1447     Record.push_back(Code);
   1448 
   1449     // Starting offset of this entry within this module, so skip the dummy.
   1450     Record.push_back(SLoc->getOffset() - 2);
   1451     if (SLoc->isFile()) {
   1452       const SrcMgr::FileInfo &File = SLoc->getFile();
   1453       Record.push_back(File.getIncludeLoc().getRawEncoding());
   1454       Record.push_back(File.getFileCharacteristic()); // FIXME: stable encoding
   1455       Record.push_back(File.hasLineDirectives());
   1456 
   1457       const SrcMgr::ContentCache *Content = File.getContentCache();
   1458       if (Content->OrigEntry) {
   1459         assert(Content->OrigEntry == Content->ContentsEntry &&
   1460                "Writing to AST an overriden file is not supported");
   1461 
   1462         // The source location entry is a file. The blob associated
   1463         // with this entry is the file name.
   1464 
   1465         // Emit size/modification time for this file.
   1466         Record.push_back(Content->OrigEntry->getSize());
   1467         Record.push_back(Content->OrigEntry->getModificationTime());
   1468 
   1469         // Turn the file name into an absolute path, if it isn't already.
   1470         const char *Filename = Content->OrigEntry->getName();
   1471         llvm::SmallString<128> FilePath(Filename);
   1472 
   1473         // Ask the file manager to fixup the relative path for us. This will
   1474         // honor the working directory.
   1475         SourceMgr.getFileManager().FixupRelativePath(FilePath);
   1476 
   1477         // FIXME: This call to make_absolute shouldn't be necessary, the
   1478         // call to FixupRelativePath should always return an absolute path.
   1479         llvm::sys::fs::make_absolute(FilePath);
   1480         Filename = FilePath.c_str();
   1481 
   1482         Filename = adjustFilenameForRelocatablePCH(Filename, isysroot);
   1483         Stream.EmitRecordWithBlob(SLocFileAbbrv, Record, Filename);
   1484       } else {
   1485         // The source location entry is a buffer. The blob associated
   1486         // with this entry contains the contents of the buffer.
   1487 
   1488         // We add one to the size so that we capture the trailing NULL
   1489         // that is required by llvm::MemoryBuffer::getMemBuffer (on
   1490         // the reader side).
   1491         const llvm::MemoryBuffer *Buffer
   1492           = Content->getBuffer(PP.getDiagnostics(), PP.getSourceManager());
   1493         const char *Name = Buffer->getBufferIdentifier();
   1494         Stream.EmitRecordWithBlob(SLocBufferAbbrv, Record,
   1495                                   llvm::StringRef(Name, strlen(Name) + 1));
   1496         Record.clear();
   1497         Record.push_back(SM_SLOC_BUFFER_BLOB);
   1498         Stream.EmitRecordWithBlob(SLocBufferBlobAbbrv, Record,
   1499                                   llvm::StringRef(Buffer->getBufferStart(),
   1500                                                   Buffer->getBufferSize() + 1));
   1501 
   1502         if (strcmp(Name, "<built-in>") == 0) {
   1503           PreloadSLocs.push_back(SLocEntryOffsets.size());
   1504         }
   1505       }
   1506     } else {
   1507       // The source location entry is a macro expansion.
   1508       const SrcMgr::InstantiationInfo &Inst = SLoc->getInstantiation();
   1509       Record.push_back(Inst.getSpellingLoc().getRawEncoding());
   1510       Record.push_back(Inst.getInstantiationLocStart().getRawEncoding());
   1511       Record.push_back(Inst.getInstantiationLocEnd().getRawEncoding());
   1512 
   1513       // Compute the token length for this macro expansion.
   1514       unsigned NextOffset = SourceMgr.getNextLocalOffset();
   1515       if (I + 1 != N)
   1516         NextOffset = SourceMgr.getLocalSLocEntry(I + 1).getOffset();
   1517       Record.push_back(NextOffset - SLoc->getOffset() - 1);
   1518       Stream.EmitRecordWithAbbrev(SLocExpansionAbbrv, Record);
   1519     }
   1520   }
   1521 
   1522   Stream.ExitBlock();
   1523 
   1524   if (SLocEntryOffsets.empty())
   1525     return;
   1526 
   1527   // Write the source-location offsets table into the AST block. This
   1528   // table is used for lazily loading source-location information.
   1529   using namespace llvm;
   1530   BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   1531   Abbrev->Add(BitCodeAbbrevOp(SOURCE_LOCATION_OFFSETS));
   1532   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 16)); // # of slocs
   1533   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 16)); // total size
   1534   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob)); // offsets
   1535   unsigned SLocOffsetsAbbrev = Stream.EmitAbbrev(Abbrev);
   1536 
   1537   Record.clear();
   1538   Record.push_back(SOURCE_LOCATION_OFFSETS);
   1539   Record.push_back(SLocEntryOffsets.size());
   1540   Record.push_back(SourceMgr.getNextLocalOffset() - 1); // skip dummy
   1541   Stream.EmitRecordWithBlob(SLocOffsetsAbbrev, Record, data(SLocEntryOffsets));
   1542 
   1543   // If we have module dependencies, write the mapping from source locations to
   1544   // their containing modules, so that the reader can build the remapping.
   1545   if (Chain) {
   1546     // The map consists solely of a blob with the following format:
   1547     // *(offset:i32 len:i16 name:len*i8)
   1548     // Sorted by offset.
   1549     typedef std::pair<uint32_t, llvm::StringRef> ModuleOffset;
   1550     llvm::SmallVector<ModuleOffset, 16> Modules;
   1551     Modules.reserve(Chain->Modules.size());
   1552     for (llvm::StringMap<ASTReader::PerFileData*>::const_iterator
   1553              I = Chain->Modules.begin(), E = Chain->Modules.end();
   1554          I != E; ++I) {
   1555       Modules.push_back(ModuleOffset(I->getValue()->SLocEntryBaseOffset,
   1556                                      I->getKey()));
   1557     }
   1558     std::sort(Modules.begin(), Modules.end());
   1559 
   1560     Abbrev = new BitCodeAbbrev();
   1561     Abbrev->Add(BitCodeAbbrevOp(SOURCE_LOCATION_MAP));
   1562     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob));
   1563     unsigned SLocMapAbbrev = Stream.EmitAbbrev(Abbrev);
   1564     llvm::SmallString<2048> Buffer;
   1565     {
   1566       llvm::raw_svector_ostream Out(Buffer);
   1567       for (llvm::SmallVector<ModuleOffset, 16>::iterator I = Modules.begin(),
   1568                                                          E = Modules.end();
   1569            I != E; ++I) {
   1570         io::Emit32(Out, I->first);
   1571         io::Emit16(Out, I->second.size());
   1572         Out.write(I->second.data(), I->second.size());
   1573       }
   1574     }
   1575     Record.clear();
   1576     Record.push_back(SOURCE_LOCATION_MAP);
   1577     Stream.EmitRecordWithBlob(SLocMapAbbrev, Record,
   1578                               Buffer.data(), Buffer.size());
   1579   }
   1580 
   1581   Abbrev = new BitCodeAbbrev();
   1582   Abbrev->Add(BitCodeAbbrevOp(FILE_SOURCE_LOCATION_OFFSETS));
   1583   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::VBR, 16)); // # of slocs
   1584   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob)); // offsets
   1585   unsigned SLocFileOffsetsAbbrev = Stream.EmitAbbrev(Abbrev);
   1586 
   1587   Record.clear();
   1588   Record.push_back(FILE_SOURCE_LOCATION_OFFSETS);
   1589   Record.push_back(SLocFileEntryOffsets.size());
   1590   Stream.EmitRecordWithBlob(SLocFileOffsetsAbbrev, Record,
   1591                             data(SLocFileEntryOffsets));
   1592 
   1593   // Write the source location entry preloads array, telling the AST
   1594   // reader which source locations entries it should load eagerly.
   1595   Stream.EmitRecord(SOURCE_LOCATION_PRELOADS, PreloadSLocs);
   1596 
   1597   // Write the line table. It depends on remapping working, so it must come
   1598   // after the source location offsets.
   1599   if (SourceMgr.hasLineTable()) {
   1600     LineTableInfo &LineTable = SourceMgr.getLineTable();
   1601 
   1602     Record.clear();
   1603     // Emit the file names
   1604     Record.push_back(LineTable.getNumFilenames());
   1605     for (unsigned I = 0, N = LineTable.getNumFilenames(); I != N; ++I) {
   1606       // Emit the file name
   1607       const char *Filename = LineTable.getFilename(I);
   1608       Filename = adjustFilenameForRelocatablePCH(Filename, isysroot);
   1609       unsigned FilenameLen = Filename? strlen(Filename) : 0;
   1610       Record.push_back(FilenameLen);
   1611       if (FilenameLen)
   1612         Record.insert(Record.end(), Filename, Filename + FilenameLen);
   1613     }
   1614 
   1615     // Emit the line entries
   1616     for (LineTableInfo::iterator L = LineTable.begin(), LEnd = LineTable.end();
   1617          L != LEnd; ++L) {
   1618       // Only emit entries for local files.
   1619       if (L->first < 0)
   1620         continue;
   1621 
   1622       // Emit the file ID
   1623       Record.push_back(L->first);
   1624 
   1625       // Emit the line entries
   1626       Record.push_back(L->second.size());
   1627       for (std::vector<LineEntry>::iterator LE = L->second.begin(),
   1628                                          LEEnd = L->second.end();
   1629            LE != LEEnd; ++LE) {
   1630         Record.push_back(LE->FileOffset);
   1631         Record.push_back(LE->LineNo);
   1632         Record.push_back(LE->FilenameID);
   1633         Record.push_back((unsigned)LE->FileKind);
   1634         Record.push_back(LE->IncludeOffset);
   1635       }
   1636     }
   1637     Stream.EmitRecord(SOURCE_MANAGER_LINE_TABLE, Record);
   1638   }
   1639 }
   1640 
   1641 //===----------------------------------------------------------------------===//
   1642 // Preprocessor Serialization
   1643 //===----------------------------------------------------------------------===//
   1644 
   1645 static int compareMacroDefinitions(const void *XPtr, const void *YPtr) {
   1646   const std::pair<const IdentifierInfo *, MacroInfo *> &X =
   1647     *(const std::pair<const IdentifierInfo *, MacroInfo *>*)XPtr;
   1648   const std::pair<const IdentifierInfo *, MacroInfo *> &Y =
   1649     *(const std::pair<const IdentifierInfo *, MacroInfo *>*)YPtr;
   1650   return X.first->getName().compare(Y.first->getName());
   1651 }
   1652 
   1653 /// \brief Writes the block containing the serialized form of the
   1654 /// preprocessor.
   1655 ///
   1656 void ASTWriter::WritePreprocessor(const Preprocessor &PP) {
   1657   RecordData Record;
   1658 
   1659   // If the preprocessor __COUNTER__ value has been bumped, remember it.
   1660   if (PP.getCounterValue() != 0) {
   1661     Record.push_back(PP.getCounterValue());
   1662     Stream.EmitRecord(PP_COUNTER_VALUE, Record);
   1663     Record.clear();
   1664   }
   1665 
   1666   // Enter the preprocessor block.
   1667   Stream.EnterSubblock(PREPROCESSOR_BLOCK_ID, 3);
   1668 
   1669   // If the AST file contains __DATE__ or __TIME__ emit a warning about this.
   1670   // FIXME: use diagnostics subsystem for localization etc.
   1671   if (PP.SawDateOrTime())
   1672     fprintf(stderr, "warning: precompiled header used __DATE__ or __TIME__.\n");
   1673 
   1674 
   1675   // Loop over all the macro definitions that are live at the end of the file,
   1676   // emitting each to the PP section.
   1677   PreprocessingRecord *PPRec = PP.getPreprocessingRecord();
   1678 
   1679   // Construct the list of macro definitions that need to be serialized.
   1680   llvm::SmallVector<std::pair<const IdentifierInfo *, MacroInfo *>, 2>
   1681     MacrosToEmit;
   1682   llvm::SmallPtrSet<const IdentifierInfo*, 4> MacroDefinitionsSeen;
   1683   for (Preprocessor::macro_iterator I = PP.macro_begin(Chain == 0),
   1684                                     E = PP.macro_end(Chain == 0);
   1685        I != E; ++I) {
   1686     MacroDefinitionsSeen.insert(I->first);
   1687     MacrosToEmit.push_back(std::make_pair(I->first, I->second));
   1688   }
   1689 
   1690   // Sort the set of macro definitions that need to be serialized by the
   1691   // name of the macro, to provide a stable ordering.
   1692   llvm::array_pod_sort(MacrosToEmit.begin(), MacrosToEmit.end(),
   1693                        &compareMacroDefinitions);
   1694 
   1695   // Resolve any identifiers that defined macros at the time they were
   1696   // deserialized, adding them to the list of macros to emit (if appropriate).
   1697   for (unsigned I = 0, N = DeserializedMacroNames.size(); I != N; ++I) {
   1698     IdentifierInfo *Name
   1699       = const_cast<IdentifierInfo *>(DeserializedMacroNames[I]);
   1700     if (Name->hasMacroDefinition() && MacroDefinitionsSeen.insert(Name))
   1701       MacrosToEmit.push_back(std::make_pair(Name, PP.getMacroInfo(Name)));
   1702   }
   1703 
   1704   for (unsigned I = 0, N = MacrosToEmit.size(); I != N; ++I) {
   1705     const IdentifierInfo *Name = MacrosToEmit[I].first;
   1706     MacroInfo *MI = MacrosToEmit[I].second;
   1707     if (!MI)
   1708       continue;
   1709 
   1710     // Don't emit builtin macros like __LINE__ to the AST file unless they have
   1711     // been redefined by the header (in which case they are not isBuiltinMacro).
   1712     // Also skip macros from a AST file if we're chaining.
   1713 
   1714     // FIXME: There is a (probably minor) optimization we could do here, if
   1715     // the macro comes from the original PCH but the identifier comes from a
   1716     // chained PCH, by storing the offset into the original PCH rather than
   1717     // writing the macro definition a second time.
   1718     if (MI->isBuiltinMacro() ||
   1719         (Chain && Name->isFromAST() && MI->isFromAST()))
   1720       continue;
   1721 
   1722     AddIdentifierRef(Name, Record);
   1723     MacroOffsets[Name] = Stream.GetCurrentBitNo();
   1724     Record.push_back(MI->getDefinitionLoc().getRawEncoding());
   1725     Record.push_back(MI->isUsed());
   1726 
   1727     unsigned Code;
   1728     if (MI->isObjectLike()) {
   1729       Code = PP_MACRO_OBJECT_LIKE;
   1730     } else {
   1731       Code = PP_MACRO_FUNCTION_LIKE;
   1732 
   1733       Record.push_back(MI->isC99Varargs());
   1734       Record.push_back(MI->isGNUVarargs());
   1735       Record.push_back(MI->getNumArgs());
   1736       for (MacroInfo::arg_iterator I = MI->arg_begin(), E = MI->arg_end();
   1737            I != E; ++I)
   1738         AddIdentifierRef(*I, Record);
   1739     }
   1740 
   1741     // If we have a detailed preprocessing record, record the macro definition
   1742     // ID that corresponds to this macro.
   1743     if (PPRec)
   1744       Record.push_back(getMacroDefinitionID(PPRec->findMacroDefinition(MI)));
   1745 
   1746     Stream.EmitRecord(Code, Record);
   1747     Record.clear();
   1748 
   1749     // Emit the tokens array.
   1750     for (unsigned TokNo = 0, e = MI->getNumTokens(); TokNo != e; ++TokNo) {
   1751       // Note that we know that the preprocessor does not have any annotation
   1752       // tokens in it because they are created by the parser, and thus can't be
   1753       // in a macro definition.
   1754       const Token &Tok = MI->getReplacementToken(TokNo);
   1755 
   1756       Record.push_back(Tok.getLocation().getRawEncoding());
   1757       Record.push_back(Tok.getLength());
   1758 
   1759       // FIXME: When reading literal tokens, reconstruct the literal pointer if
   1760       // it is needed.
   1761       AddIdentifierRef(Tok.getIdentifierInfo(), Record);
   1762       // FIXME: Should translate token kind to a stable encoding.
   1763       Record.push_back(Tok.getKind());
   1764       // FIXME: Should translate token flags to a stable encoding.
   1765       Record.push_back(Tok.getFlags());
   1766 
   1767       Stream.EmitRecord(PP_TOKEN, Record);
   1768       Record.clear();
   1769     }
   1770     ++NumMacros;
   1771   }
   1772   Stream.ExitBlock();
   1773 
   1774   if (PPRec)
   1775     WritePreprocessorDetail(*PPRec);
   1776 }
   1777 
   1778 void ASTWriter::WritePreprocessorDetail(PreprocessingRecord &PPRec) {
   1779   if (PPRec.begin(Chain) == PPRec.end(Chain))
   1780     return;
   1781 
   1782   // Enter the preprocessor block.
   1783   Stream.EnterSubblock(PREPROCESSOR_DETAIL_BLOCK_ID, 3);
   1784 
   1785   // If the preprocessor has a preprocessing record, emit it.
   1786   unsigned NumPreprocessingRecords = 0;
   1787   using namespace llvm;
   1788 
   1789   // Set up the abbreviation for
   1790   unsigned InclusionAbbrev = 0;
   1791   {
   1792     BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   1793     Abbrev->Add(BitCodeAbbrevOp(PPD_INCLUSION_DIRECTIVE));
   1794     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32)); // index
   1795     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32)); // start location
   1796     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32)); // end location
   1797     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32)); // filename length
   1798     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 1)); // in quotes
   1799     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 2)); // kind
   1800     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob));
   1801     InclusionAbbrev = Stream.EmitAbbrev(Abbrev);
   1802   }
   1803 
   1804   unsigned IndexBase = Chain ? PPRec.getNumPreallocatedEntities() : 0;
   1805   RecordData Record;
   1806   for (PreprocessingRecord::iterator E = PPRec.begin(Chain),
   1807                                   EEnd = PPRec.end(Chain);
   1808        E != EEnd; ++E) {
   1809     Record.clear();
   1810 
   1811     if (MacroDefinition *MD = dyn_cast<MacroDefinition>(*E)) {
   1812       // Record this macro definition's location.
   1813       MacroID ID = getMacroDefinitionID(MD);
   1814 
   1815       // Don't write the macro definition if it is from another AST file.
   1816       if (ID < FirstMacroID)
   1817         continue;
   1818 
   1819       // Notify the serialization listener that we're serializing this entity.
   1820       if (SerializationListener)
   1821         SerializationListener->SerializedPreprocessedEntity(*E,
   1822                                                     Stream.GetCurrentBitNo());
   1823 
   1824       unsigned Position = ID - FirstMacroID;
   1825       if (Position != MacroDefinitionOffsets.size()) {
   1826         if (Position > MacroDefinitionOffsets.size())
   1827           MacroDefinitionOffsets.resize(Position + 1);
   1828 
   1829         MacroDefinitionOffsets[Position] = Stream.GetCurrentBitNo();
   1830       } else
   1831         MacroDefinitionOffsets.push_back(Stream.GetCurrentBitNo());
   1832 
   1833       Record.push_back(IndexBase + NumPreprocessingRecords++);
   1834       Record.push_back(ID);
   1835       AddSourceLocation(MD->getSourceRange().getBegin(), Record);
   1836       AddSourceLocation(MD->getSourceRange().getEnd(), Record);
   1837       AddIdentifierRef(MD->getName(), Record);
   1838       AddSourceLocation(MD->getLocation(), Record);
   1839       Stream.EmitRecord(PPD_MACRO_DEFINITION, Record);
   1840       continue;
   1841     }
   1842 
   1843     // Notify the serialization listener that we're serializing this entity.
   1844     if (SerializationListener)
   1845       SerializationListener->SerializedPreprocessedEntity(*E,
   1846                                                     Stream.GetCurrentBitNo());
   1847 
   1848     if (MacroExpansion *ME = dyn_cast<MacroExpansion>(*E)) {
   1849       Record.push_back(IndexBase + NumPreprocessingRecords++);
   1850       AddSourceLocation(ME->getSourceRange().getBegin(), Record);
   1851       AddSourceLocation(ME->getSourceRange().getEnd(), Record);
   1852       AddIdentifierRef(ME->getName(), Record);
   1853       Record.push_back(getMacroDefinitionID(ME->getDefinition()));
   1854       Stream.EmitRecord(PPD_MACRO_EXPANSION, Record);
   1855       continue;
   1856     }
   1857 
   1858     if (InclusionDirective *ID = dyn_cast<InclusionDirective>(*E)) {
   1859       Record.push_back(PPD_INCLUSION_DIRECTIVE);
   1860       Record.push_back(IndexBase + NumPreprocessingRecords++);
   1861       AddSourceLocation(ID->getSourceRange().getBegin(), Record);
   1862       AddSourceLocation(ID->getSourceRange().getEnd(), Record);
   1863       Record.push_back(ID->getFileName().size());
   1864       Record.push_back(ID->wasInQuotes());
   1865       Record.push_back(static_cast<unsigned>(ID->getKind()));
   1866       llvm::SmallString<64> Buffer;
   1867       Buffer += ID->getFileName();
   1868       Buffer += ID->getFile()->getName();
   1869       Stream.EmitRecordWithBlob(InclusionAbbrev, Record, Buffer);
   1870       continue;
   1871     }
   1872 
   1873     llvm_unreachable("Unhandled PreprocessedEntity in ASTWriter");
   1874   }
   1875   Stream.ExitBlock();
   1876 
   1877   // Write the offsets table for the preprocessing record.
   1878   if (NumPreprocessingRecords > 0) {
   1879     // Write the offsets table for identifier IDs.
   1880     using namespace llvm;
   1881     BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   1882     Abbrev->Add(BitCodeAbbrevOp(MACRO_DEFINITION_OFFSETS));
   1883     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32)); // # of records
   1884     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32)); // # of macro defs
   1885     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob));
   1886     unsigned MacroDefOffsetAbbrev = Stream.EmitAbbrev(Abbrev);
   1887 
   1888     Record.clear();
   1889     Record.push_back(MACRO_DEFINITION_OFFSETS);
   1890     Record.push_back(NumPreprocessingRecords);
   1891     Record.push_back(MacroDefinitionOffsets.size());
   1892     Stream.EmitRecordWithBlob(MacroDefOffsetAbbrev, Record,
   1893                               data(MacroDefinitionOffsets));
   1894   }
   1895 }
   1896 
   1897 void ASTWriter::WritePragmaDiagnosticMappings(const Diagnostic &Diag) {
   1898   RecordData Record;
   1899   for (Diagnostic::DiagStatePointsTy::const_iterator
   1900          I = Diag.DiagStatePoints.begin(), E = Diag.DiagStatePoints.end();
   1901          I != E; ++I) {
   1902     const Diagnostic::DiagStatePoint &point = *I;
   1903     if (point.Loc.isInvalid())
   1904       continue;
   1905 
   1906     Record.push_back(point.Loc.getRawEncoding());
   1907     for (Diagnostic::DiagState::iterator
   1908            I = point.State->begin(), E = point.State->end(); I != E; ++I) {
   1909       unsigned diag = I->first, map = I->second;
   1910       if (map & 0x10) { // mapping from a diagnostic pragma.
   1911         Record.push_back(diag);
   1912         Record.push_back(map & 0x7);
   1913       }
   1914     }
   1915     Record.push_back(-1); // mark the end of the diag/map pairs for this
   1916                           // location.
   1917   }
   1918 
   1919   if (!Record.empty())
   1920     Stream.EmitRecord(DIAG_PRAGMA_MAPPINGS, Record);
   1921 }
   1922 
   1923 void ASTWriter::WriteCXXBaseSpecifiersOffsets() {
   1924   if (CXXBaseSpecifiersOffsets.empty())
   1925     return;
   1926 
   1927   RecordData Record;
   1928 
   1929   // Create a blob abbreviation for the C++ base specifiers offsets.
   1930   using namespace llvm;
   1931 
   1932   BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   1933   Abbrev->Add(BitCodeAbbrevOp(CXX_BASE_SPECIFIER_OFFSETS));
   1934   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32)); // size
   1935   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob));
   1936   unsigned BaseSpecifierOffsetAbbrev = Stream.EmitAbbrev(Abbrev);
   1937 
   1938   // Write the selector offsets table.
   1939   Record.clear();
   1940   Record.push_back(CXX_BASE_SPECIFIER_OFFSETS);
   1941   Record.push_back(CXXBaseSpecifiersOffsets.size());
   1942   Stream.EmitRecordWithBlob(BaseSpecifierOffsetAbbrev, Record,
   1943                             data(CXXBaseSpecifiersOffsets));
   1944 }
   1945 
   1946 //===----------------------------------------------------------------------===//
   1947 // Type Serialization
   1948 //===----------------------------------------------------------------------===//
   1949 
   1950 /// \brief Write the representation of a type to the AST stream.
   1951 void ASTWriter::WriteType(QualType T) {
   1952   TypeIdx &Idx = TypeIdxs[T];
   1953   if (Idx.getIndex() == 0) // we haven't seen this type before.
   1954     Idx = TypeIdx(NextTypeID++);
   1955 
   1956   assert(Idx.getIndex() >= FirstTypeID && "Re-writing a type from a prior AST");
   1957 
   1958   // Record the offset for this type.
   1959   unsigned Index = Idx.getIndex() - FirstTypeID;
   1960   if (TypeOffsets.size() == Index)
   1961     TypeOffsets.push_back(Stream.GetCurrentBitNo());
   1962   else if (TypeOffsets.size() < Index) {
   1963     TypeOffsets.resize(Index + 1);
   1964     TypeOffsets[Index] = Stream.GetCurrentBitNo();
   1965   }
   1966 
   1967   RecordData Record;
   1968 
   1969   // Emit the type's representation.
   1970   ASTTypeWriter W(*this, Record);
   1971 
   1972   if (T.hasLocalNonFastQualifiers()) {
   1973     Qualifiers Qs = T.getLocalQualifiers();
   1974     AddTypeRef(T.getLocalUnqualifiedType(), Record);
   1975     Record.push_back(Qs.getAsOpaqueValue());
   1976     W.Code = TYPE_EXT_QUAL;
   1977   } else {
   1978     switch (T->getTypeClass()) {
   1979       // For all of the concrete, non-dependent types, call the
   1980       // appropriate visitor function.
   1981 #define TYPE(Class, Base) \
   1982     case Type::Class: W.Visit##Class##Type(cast<Class##Type>(T)); break;
   1983 #define ABSTRACT_TYPE(Class, Base)
   1984 #include "clang/AST/TypeNodes.def"
   1985     }
   1986   }
   1987 
   1988   // Emit the serialized record.
   1989   Stream.EmitRecord(W.Code, Record);
   1990 
   1991   // Flush any expressions that were written as part of this type.
   1992   FlushStmts();
   1993 }
   1994 
   1995 //===----------------------------------------------------------------------===//
   1996 // Declaration Serialization
   1997 //===----------------------------------------------------------------------===//
   1998 
   1999 /// \brief Write the block containing all of the declaration IDs
   2000 /// lexically declared within the given DeclContext.
   2001 ///
   2002 /// \returns the offset of the DECL_CONTEXT_LEXICAL block within the
   2003 /// bistream, or 0 if no block was written.
   2004 uint64_t ASTWriter::WriteDeclContextLexicalBlock(ASTContext &Context,
   2005                                                  DeclContext *DC) {
   2006   if (DC->decls_empty())
   2007     return 0;
   2008 
   2009   uint64_t Offset = Stream.GetCurrentBitNo();
   2010   RecordData Record;
   2011   Record.push_back(DECL_CONTEXT_LEXICAL);
   2012   llvm::SmallVector<KindDeclIDPair, 64> Decls;
   2013   for (DeclContext::decl_iterator D = DC->decls_begin(), DEnd = DC->decls_end();
   2014          D != DEnd; ++D)
   2015     Decls.push_back(std::make_pair((*D)->getKind(), GetDeclRef(*D)));
   2016 
   2017   ++NumLexicalDeclContexts;
   2018   Stream.EmitRecordWithBlob(DeclContextLexicalAbbrev, Record, data(Decls));
   2019   return Offset;
   2020 }
   2021 
   2022 void ASTWriter::WriteTypeDeclOffsets() {
   2023   using namespace llvm;
   2024   RecordData Record;
   2025 
   2026   // Write the type offsets array
   2027   BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   2028   Abbrev->Add(BitCodeAbbrevOp(TYPE_OFFSET));
   2029   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32)); // # of types
   2030   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob)); // types block
   2031   unsigned TypeOffsetAbbrev = Stream.EmitAbbrev(Abbrev);
   2032   Record.clear();
   2033   Record.push_back(TYPE_OFFSET);
   2034   Record.push_back(TypeOffsets.size());
   2035   Stream.EmitRecordWithBlob(TypeOffsetAbbrev, Record, data(TypeOffsets));
   2036 
   2037   // Write the declaration offsets array
   2038   Abbrev = new BitCodeAbbrev();
   2039   Abbrev->Add(BitCodeAbbrevOp(DECL_OFFSET));
   2040   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32)); // # of declarations
   2041   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob)); // declarations block
   2042   unsigned DeclOffsetAbbrev = Stream.EmitAbbrev(Abbrev);
   2043   Record.clear();
   2044   Record.push_back(DECL_OFFSET);
   2045   Record.push_back(DeclOffsets.size());
   2046   Stream.EmitRecordWithBlob(DeclOffsetAbbrev, Record, data(DeclOffsets));
   2047 }
   2048 
   2049 //===----------------------------------------------------------------------===//
   2050 // Global Method Pool and Selector Serialization
   2051 //===----------------------------------------------------------------------===//
   2052 
   2053 namespace {
   2054 // Trait used for the on-disk hash table used in the method pool.
   2055 class ASTMethodPoolTrait {
   2056   ASTWriter &Writer;
   2057 
   2058 public:
   2059   typedef Selector key_type;
   2060   typedef key_type key_type_ref;
   2061 
   2062   struct data_type {
   2063     SelectorID ID;
   2064     ObjCMethodList Instance, Factory;
   2065   };
   2066   typedef const data_type& data_type_ref;
   2067 
   2068   explicit ASTMethodPoolTrait(ASTWriter &Writer) : Writer(Writer) { }
   2069 
   2070   static unsigned ComputeHash(Selector Sel) {
   2071     return serialization::ComputeHash(Sel);
   2072   }
   2073 
   2074   std::pair<unsigned,unsigned>
   2075     EmitKeyDataLength(llvm::raw_ostream& Out, Selector Sel,
   2076                       data_type_ref Methods) {
   2077     unsigned KeyLen = 2 + (Sel.getNumArgs()? Sel.getNumArgs() * 4 : 4);
   2078     clang::io::Emit16(Out, KeyLen);
   2079     unsigned DataLen = 4 + 2 + 2; // 2 bytes for each of the method counts
   2080     for (const ObjCMethodList *Method = &Methods.Instance; Method;
   2081          Method = Method->Next)
   2082       if (Method->Method)
   2083         DataLen += 4;
   2084     for (const ObjCMethodList *Method = &Methods.Factory; Method;
   2085          Method = Method->Next)
   2086       if (Method->Method)
   2087         DataLen += 4;
   2088     clang::io::Emit16(Out, DataLen);
   2089     return std::make_pair(KeyLen, DataLen);
   2090   }
   2091 
   2092   void EmitKey(llvm::raw_ostream& Out, Selector Sel, unsigned) {
   2093     uint64_t Start = Out.tell();
   2094     assert((Start >> 32) == 0 && "Selector key offset too large");
   2095     Writer.SetSelectorOffset(Sel, Start);
   2096     unsigned N = Sel.getNumArgs();
   2097     clang::io::Emit16(Out, N);
   2098     if (N == 0)
   2099       N = 1;
   2100     for (unsigned I = 0; I != N; ++I)
   2101       clang::io::Emit32(Out,
   2102                     Writer.getIdentifierRef(Sel.getIdentifierInfoForSlot(I)));
   2103   }
   2104 
   2105   void EmitData(llvm::raw_ostream& Out, key_type_ref,
   2106                 data_type_ref Methods, unsigned DataLen) {
   2107     uint64_t Start = Out.tell(); (void)Start;
   2108     clang::io::Emit32(Out, Methods.ID);
   2109     unsigned NumInstanceMethods = 0;
   2110     for (const ObjCMethodList *Method = &Methods.Instance; Method;
   2111          Method = Method->Next)
   2112       if (Method->Method)
   2113         ++NumInstanceMethods;
   2114 
   2115     unsigned NumFactoryMethods = 0;
   2116     for (const ObjCMethodList *Method = &Methods.Factory; Method;
   2117          Method = Method->Next)
   2118       if (Method->Method)
   2119         ++NumFactoryMethods;
   2120 
   2121     clang::io::Emit16(Out, NumInstanceMethods);
   2122     clang::io::Emit16(Out, NumFactoryMethods);
   2123     for (const ObjCMethodList *Method = &Methods.Instance; Method;
   2124          Method = Method->Next)
   2125       if (Method->Method)
   2126         clang::io::Emit32(Out, Writer.getDeclID(Method->Method));
   2127     for (const ObjCMethodList *Method = &Methods.Factory; Method;
   2128          Method = Method->Next)
   2129       if (Method->Method)
   2130         clang::io::Emit32(Out, Writer.getDeclID(Method->Method));
   2131 
   2132     assert(Out.tell() - Start == DataLen && "Data length is wrong");
   2133   }
   2134 };
   2135 } // end anonymous namespace
   2136 
   2137 /// \brief Write ObjC data: selectors and the method pool.
   2138 ///
   2139 /// The method pool contains both instance and factory methods, stored
   2140 /// in an on-disk hash table indexed by the selector. The hash table also
   2141 /// contains an empty entry for every other selector known to Sema.
   2142 void ASTWriter::WriteSelectors(Sema &SemaRef) {
   2143   using namespace llvm;
   2144 
   2145   // Do we have to do anything at all?
   2146   if (SemaRef.MethodPool.empty() && SelectorIDs.empty())
   2147     return;
   2148   unsigned NumTableEntries = 0;
   2149   // Create and write out the blob that contains selectors and the method pool.
   2150   {
   2151     OnDiskChainedHashTableGenerator<ASTMethodPoolTrait> Generator;
   2152     ASTMethodPoolTrait Trait(*this);
   2153 
   2154     // Create the on-disk hash table representation. We walk through every
   2155     // selector we've seen and look it up in the method pool.
   2156     SelectorOffsets.resize(NextSelectorID - FirstSelectorID);
   2157     for (llvm::DenseMap<Selector, SelectorID>::iterator
   2158              I = SelectorIDs.begin(), E = SelectorIDs.end();
   2159          I != E; ++I) {
   2160       Selector S = I->first;
   2161       Sema::GlobalMethodPool::iterator F = SemaRef.MethodPool.find(S);
   2162       ASTMethodPoolTrait::data_type Data = {
   2163         I->second,
   2164         ObjCMethodList(),
   2165         ObjCMethodList()
   2166       };
   2167       if (F != SemaRef.MethodPool.end()) {
   2168         Data.Instance = F->second.first;
   2169         Data.Factory = F->second.second;
   2170       }
   2171       // Only write this selector if it's not in an existing AST or something
   2172       // changed.
   2173       if (Chain && I->second < FirstSelectorID) {
   2174         // Selector already exists. Did it change?
   2175         bool changed = false;
   2176         for (ObjCMethodList *M = &Data.Instance; !changed && M && M->Method;
   2177              M = M->Next) {
   2178           if (M->Method->getPCHLevel() == 0)
   2179             changed = true;
   2180         }
   2181         for (ObjCMethodList *M = &Data.Factory; !changed && M && M->Method;
   2182              M = M->Next) {
   2183           if (M->Method->getPCHLevel() == 0)
   2184             changed = true;
   2185         }
   2186         if (!changed)
   2187           continue;
   2188       } else if (Data.Instance.Method || Data.Factory.Method) {
   2189         // A new method pool entry.
   2190         ++NumTableEntries;
   2191       }
   2192       Generator.insert(S, Data, Trait);
   2193     }
   2194 
   2195     // Create the on-disk hash table in a buffer.
   2196     llvm::SmallString<4096> MethodPool;
   2197     uint32_t BucketOffset;
   2198     {
   2199       ASTMethodPoolTrait Trait(*this);
   2200       llvm::raw_svector_ostream Out(MethodPool);
   2201       // Make sure that no bucket is at offset 0
   2202       clang::io::Emit32(Out, 0);
   2203       BucketOffset = Generator.Emit(Out, Trait);
   2204     }
   2205 
   2206     // Create a blob abbreviation
   2207     BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   2208     Abbrev->Add(BitCodeAbbrevOp(METHOD_POOL));
   2209     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
   2210     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
   2211     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob));
   2212     unsigned MethodPoolAbbrev = Stream.EmitAbbrev(Abbrev);
   2213 
   2214     // Write the method pool
   2215     RecordData Record;
   2216     Record.push_back(METHOD_POOL);
   2217     Record.push_back(BucketOffset);
   2218     Record.push_back(NumTableEntries);
   2219     Stream.EmitRecordWithBlob(MethodPoolAbbrev, Record, MethodPool.str());
   2220 
   2221     // Create a blob abbreviation for the selector table offsets.
   2222     Abbrev = new BitCodeAbbrev();
   2223     Abbrev->Add(BitCodeAbbrevOp(SELECTOR_OFFSETS));
   2224     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32)); // size
   2225     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob));
   2226     unsigned SelectorOffsetAbbrev = Stream.EmitAbbrev(Abbrev);
   2227 
   2228     // Write the selector offsets table.
   2229     Record.clear();
   2230     Record.push_back(SELECTOR_OFFSETS);
   2231     Record.push_back(SelectorOffsets.size());
   2232     Stream.EmitRecordWithBlob(SelectorOffsetAbbrev, Record,
   2233                               data(SelectorOffsets));
   2234   }
   2235 }
   2236 
   2237 /// \brief Write the selectors referenced in @selector expression into AST file.
   2238 void ASTWriter::WriteReferencedSelectorsPool(Sema &SemaRef) {
   2239   using namespace llvm;
   2240   if (SemaRef.ReferencedSelectors.empty())
   2241     return;
   2242 
   2243   RecordData Record;
   2244 
   2245   // Note: this writes out all references even for a dependent AST. But it is
   2246   // very tricky to fix, and given that @selector shouldn't really appear in
   2247   // headers, probably not worth it. It's not a correctness issue.
   2248   for (DenseMap<Selector, SourceLocation>::iterator S =
   2249        SemaRef.ReferencedSelectors.begin(),
   2250        E = SemaRef.ReferencedSelectors.end(); S != E; ++S) {
   2251     Selector Sel = (*S).first;
   2252     SourceLocation Loc = (*S).second;
   2253     AddSelectorRef(Sel, Record);
   2254     AddSourceLocation(Loc, Record);
   2255   }
   2256   Stream.EmitRecord(REFERENCED_SELECTOR_POOL, Record);
   2257 }
   2258 
   2259 //===----------------------------------------------------------------------===//
   2260 // Identifier Table Serialization
   2261 //===----------------------------------------------------------------------===//
   2262 
   2263 namespace {
   2264 class ASTIdentifierTableTrait {
   2265   ASTWriter &Writer;
   2266   Preprocessor &PP;
   2267 
   2268   /// \brief Determines whether this is an "interesting" identifier
   2269   /// that needs a full IdentifierInfo structure written into the hash
   2270   /// table.
   2271   static bool isInterestingIdentifier(const IdentifierInfo *II) {
   2272     return II->isPoisoned() ||
   2273       II->isExtensionToken() ||
   2274       II->hasMacroDefinition() ||
   2275       II->getObjCOrBuiltinID() ||
   2276       II->getFETokenInfo<void>();
   2277   }
   2278 
   2279 public:
   2280   typedef const IdentifierInfo* key_type;
   2281   typedef key_type  key_type_ref;
   2282 
   2283   typedef IdentID data_type;
   2284   typedef data_type data_type_ref;
   2285 
   2286   ASTIdentifierTableTrait(ASTWriter &Writer, Preprocessor &PP)
   2287     : Writer(Writer), PP(PP) { }
   2288 
   2289   static unsigned ComputeHash(const IdentifierInfo* II) {
   2290     return llvm::HashString(II->getName());
   2291   }
   2292 
   2293   std::pair<unsigned,unsigned>
   2294     EmitKeyDataLength(llvm::raw_ostream& Out, const IdentifierInfo* II,
   2295                       IdentID ID) {
   2296     unsigned KeyLen = II->getLength() + 1;
   2297     unsigned DataLen = 4; // 4 bytes for the persistent ID << 1
   2298     if (isInterestingIdentifier(II)) {
   2299       DataLen += 2; // 2 bytes for builtin ID, flags
   2300       if (II->hasMacroDefinition() &&
   2301           !PP.getMacroInfo(const_cast<IdentifierInfo *>(II))->isBuiltinMacro())
   2302         DataLen += 4;
   2303       for (IdentifierResolver::iterator D = IdentifierResolver::begin(II),
   2304                                      DEnd = IdentifierResolver::end();
   2305            D != DEnd; ++D)
   2306         DataLen += sizeof(DeclID);
   2307     }
   2308     clang::io::Emit16(Out, DataLen);
   2309     // We emit the key length after the data length so that every
   2310     // string is preceded by a 16-bit length. This matches the PTH
   2311     // format for storing identifiers.
   2312     clang::io::Emit16(Out, KeyLen);
   2313     return std::make_pair(KeyLen, DataLen);
   2314   }
   2315 
   2316   void EmitKey(llvm::raw_ostream& Out, const IdentifierInfo* II,
   2317                unsigned KeyLen) {
   2318     // Record the location of the key data.  This is used when generating
   2319     // the mapping from persistent IDs to strings.
   2320     Writer.SetIdentifierOffset(II, Out.tell());
   2321     Out.write(II->getNameStart(), KeyLen);
   2322   }
   2323 
   2324   void EmitData(llvm::raw_ostream& Out, const IdentifierInfo* II,
   2325                 IdentID ID, unsigned) {
   2326     if (!isInterestingIdentifier(II)) {
   2327       clang::io::Emit32(Out, ID << 1);
   2328       return;
   2329     }
   2330 
   2331     clang::io::Emit32(Out, (ID << 1) | 0x01);
   2332     uint32_t Bits = 0;
   2333     bool hasMacroDefinition =
   2334       II->hasMacroDefinition() &&
   2335       !PP.getMacroInfo(const_cast<IdentifierInfo *>(II))->isBuiltinMacro();
   2336     Bits = (uint32_t)II->getObjCOrBuiltinID();
   2337     Bits = (Bits << 1) | unsigned(hasMacroDefinition);
   2338     Bits = (Bits << 1) | unsigned(II->isExtensionToken());
   2339     Bits = (Bits << 1) | unsigned(II->isPoisoned());
   2340     Bits = (Bits << 1) | unsigned(II->hasRevertedTokenIDToIdentifier());
   2341     Bits = (Bits << 1) | unsigned(II->isCPlusPlusOperatorKeyword());
   2342     clang::io::Emit16(Out, Bits);
   2343 
   2344     if (hasMacroDefinition)
   2345       clang::io::Emit32(Out, Writer.getMacroOffset(II));
   2346 
   2347     // Emit the declaration IDs in reverse order, because the
   2348     // IdentifierResolver provides the declarations as they would be
   2349     // visible (e.g., the function "stat" would come before the struct
   2350     // "stat"), but IdentifierResolver::AddDeclToIdentifierChain()
   2351     // adds declarations to the end of the list (so we need to see the
   2352     // struct "status" before the function "status").
   2353     // Only emit declarations that aren't from a chained PCH, though.
   2354     llvm::SmallVector<Decl *, 16> Decls(IdentifierResolver::begin(II),
   2355                                         IdentifierResolver::end());
   2356     for (llvm::SmallVector<Decl *, 16>::reverse_iterator D = Decls.rbegin(),
   2357                                                       DEnd = Decls.rend();
   2358          D != DEnd; ++D)
   2359       clang::io::Emit32(Out, Writer.getDeclID(*D));
   2360   }
   2361 };
   2362 } // end anonymous namespace
   2363 
   2364 /// \brief Write the identifier table into the AST file.
   2365 ///
   2366 /// The identifier table consists of a blob containing string data
   2367 /// (the actual identifiers themselves) and a separate "offsets" index
   2368 /// that maps identifier IDs to locations within the blob.
   2369 void ASTWriter::WriteIdentifierTable(Preprocessor &PP) {
   2370   using namespace llvm;
   2371 
   2372   // Create and write out the blob that contains the identifier
   2373   // strings.
   2374   {
   2375     OnDiskChainedHashTableGenerator<ASTIdentifierTableTrait> Generator;
   2376     ASTIdentifierTableTrait Trait(*this, PP);
   2377 
   2378     // Look for any identifiers that were named while processing the
   2379     // headers, but are otherwise not needed. We add these to the hash
   2380     // table to enable checking of the predefines buffer in the case
   2381     // where the user adds new macro definitions when building the AST
   2382     // file.
   2383     for (IdentifierTable::iterator ID = PP.getIdentifierTable().begin(),
   2384                                 IDEnd = PP.getIdentifierTable().end();
   2385          ID != IDEnd; ++ID)
   2386       getIdentifierRef(ID->second);
   2387 
   2388     // Create the on-disk hash table representation. We only store offsets
   2389     // for identifiers that appear here for the first time.
   2390     IdentifierOffsets.resize(NextIdentID - FirstIdentID);
   2391     for (llvm::DenseMap<const IdentifierInfo *, IdentID>::iterator
   2392            ID = IdentifierIDs.begin(), IDEnd = IdentifierIDs.end();
   2393          ID != IDEnd; ++ID) {
   2394       assert(ID->first && "NULL identifier in identifier table");
   2395       if (!Chain || !ID->first->isFromAST())
   2396         Generator.insert(ID->first, ID->second, Trait);
   2397     }
   2398 
   2399     // Create the on-disk hash table in a buffer.
   2400     llvm::SmallString<4096> IdentifierTable;
   2401     uint32_t BucketOffset;
   2402     {
   2403       ASTIdentifierTableTrait Trait(*this, PP);
   2404       llvm::raw_svector_ostream Out(IdentifierTable);
   2405       // Make sure that no bucket is at offset 0
   2406       clang::io::Emit32(Out, 0);
   2407       BucketOffset = Generator.Emit(Out, Trait);
   2408     }
   2409 
   2410     // Create a blob abbreviation
   2411     BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   2412     Abbrev->Add(BitCodeAbbrevOp(IDENTIFIER_TABLE));
   2413     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32));
   2414     Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob));
   2415     unsigned IDTableAbbrev = Stream.EmitAbbrev(Abbrev);
   2416 
   2417     // Write the identifier table
   2418     RecordData Record;
   2419     Record.push_back(IDENTIFIER_TABLE);
   2420     Record.push_back(BucketOffset);
   2421     Stream.EmitRecordWithBlob(IDTableAbbrev, Record, IdentifierTable.str());
   2422   }
   2423 
   2424   // Write the offsets table for identifier IDs.
   2425   BitCodeAbbrev *Abbrev = new BitCodeAbbrev();
   2426   Abbrev->Add(BitCodeAbbrevOp(IDENTIFIER_OFFSET));
   2427   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Fixed, 32)); // # of identifiers
   2428   Abbrev->Add(BitCodeAbbrevOp(BitCodeAbbrevOp::Blob));
   2429   unsigned IdentifierOffsetAbbrev = Stream.EmitAbbrev(Abbrev);
   2430 
   2431   RecordData Record;
   2432   Record.push_back(IDENTIFIER_OFFSET);
   2433   Record.push_back(IdentifierOffsets.size());
   2434   Stream.EmitRecordWithBlob(IdentifierOffsetAbbrev, Record,
   2435                             data(IdentifierOffsets));
   2436 }
   2437 
   2438 //===----------------------------------------------------------------------===//
   2439 // DeclContext's Name Lookup Table Serialization
   2440 //===----------------------------------------------------------------------===//
   2441 
   2442 namespace {
   2443 // Trait used for the on-disk hash table used in the method pool.
   2444 class ASTDeclContextNameLookupTrait {
   2445   ASTWriter &Writer;
   2446 
   2447 public:
   2448   typedef DeclarationName key_type;
   2449   typedef key_type key_type_ref;
   2450 
   2451   typedef DeclContext::lookup_result data_type;
   2452   typedef const data_type& data_type_ref;
   2453 
   2454   explicit ASTDeclContextNameLookupTrait(ASTWriter &Writer) : Writer(Writer) { }
   2455 
   2456   unsigned ComputeHash(DeclarationName Name) {
   2457     llvm::FoldingSetNodeID ID;
   2458     ID.AddInteger(Name.getNameKind());
   2459 
   2460     switch (Name.getNameKind()) {
   2461     case DeclarationName::Identifier:
   2462       ID.AddString(Name.getAsIdentifierInfo()->getName());
   2463       break;
   2464     case DeclarationName::ObjCZeroArgSelector:
   2465     case DeclarationName::ObjCOneArgSelector:
   2466     case DeclarationName::ObjCMultiArgSelector:
   2467       ID.AddInteger(serialization::ComputeHash(Name.getObjCSelector()));
   2468       break;
   2469     case DeclarationName::CXXConstructorName:
   2470     case DeclarationName::CXXDestructorName:
   2471     case DeclarationName::CXXConversionFunctionName:
   2472       ID.AddInteger(Writer.GetOrCreateTypeID(Name.getCXXNameType()));
   2473       break;
   2474     case DeclarationName::CXXOperatorName:
   2475       ID.AddInteger(Name.getCXXOverloadedOperator());
   2476       break;
   2477     case DeclarationName::CXXLiteralOperatorName:
   2478       ID.AddString(Name.getCXXLiteralIdentifier()->getName());
   2479     case DeclarationName::CXXUsingDirective:
   2480       break;
   2481     }
   2482 
   2483     return ID.ComputeHash();
   2484   }
   2485 
   2486   std::pair<unsigned,unsigned>
   2487     EmitKeyDataLength(llvm::raw_ostream& Out, DeclarationName Name,
   2488                       data_type_ref Lookup) {
   2489     unsigned KeyLen = 1;
   2490     switch (Name.getNameKind()) {
   2491     case DeclarationName::Identifier:
   2492     case DeclarationName::ObjCZeroArgSelector:
   2493     case DeclarationName::ObjCOneArgSelector:
   2494     case DeclarationName::ObjCMultiArgSelector:
   2495     case DeclarationName::CXXConstructorName:
   2496     case DeclarationName::CXXDestructorName:
   2497     case DeclarationName::CXXConversionFunctionName:
   2498     case DeclarationName::CXXLiteralOperatorName:
   2499       KeyLen += 4;
   2500       break;
   2501     case DeclarationName::CXXOperatorName:
   2502       KeyLen += 1;
   2503       break;
   2504     case DeclarationName::CXXUsingDirective:
   2505       break;
   2506     }
   2507     clang::io::Emit16(Out, KeyLen);
   2508 
   2509     // 2 bytes for num of decls and 4 for each DeclID.
   2510     unsigned DataLen = 2 + 4 * (Lookup.second - Lookup.first);
   2511     clang::io::Emit16(Out, DataLen);
   2512 
   2513     return std::make_pair(KeyLen, DataLen);
   2514   }
   2515 
   2516   void EmitKey(llvm::raw_ostream& Out, DeclarationName Name, unsigned) {
   2517     using namespace clang::io;
   2518 
   2519     assert(Name.getNameKind() < 0x100 && "Invalid name kind ?");
   2520     Emit8(Out, Name.getNameKind());
   2521     switch (Name.getNameKind()) {
   2522     case DeclarationName::Identifier:
   2523       Emit32(Out, Writer.getIdentifierRef(Name.getAsIdentifierInfo()));
   2524       break;
   2525     case DeclarationName::ObjCZeroArgSelector:
   2526     case DeclarationName::ObjCOneArgSelector:
   2527     case DeclarationName::ObjCMultiArgSelector:
   2528       Emit32(Out, Writer.getSelectorRef(Name.getObjCSelector()));
   2529       break;
   2530     case DeclarationName::CXXConstructorName:
   2531     case DeclarationName::CXXDestructorName:
   2532     case DeclarationName::CXXConversionFunctionName:
   2533       Emit32(Out, Writer.getTypeID(Name.getCXXNameType()));
   2534       break;
   2535     case DeclarationName::CXXOperatorName:
   2536       assert(Name.getCXXOverloadedOperator() < 0x100 && "Invalid operator ?");
   2537       Emit8(Out, Name.getCXXOverloadedOperator());
   2538       break;
   2539     case DeclarationName::CXXLiteralOperatorName:
   2540       Emit32(Out, Writer.getIdentifierRef(Name.getCXXLiteralIdentifier()));
   2541       break;
   2542     case DeclarationName::CXXUsingDirective:
   2543       break;
   2544     }
   2545   }
   2546 
   2547   void EmitData(llvm::raw_ostream& Out, key_type_ref,
   2548                 data_type Lookup, unsigned DataLen) {
   2549     uint64_t Start = Out.tell(); (void)Start;
   2550     clang::io::Emit16(Out, Lookup.second - Lookup.first);
   2551     for (; Lookup.first != Lookup.second; ++Lookup.first)
   2552       clang::io::Emit32(Out, Writer.GetDeclRef(*Lookup.first));
   2553 
   2554     assert(Out.tell() - Start == DataLen && "Data length is wrong");
   2555   }
   2556 };
   2557 } // end anonymous namespace
   2558 
   2559 /// \brief Write the block containing all of the declaration IDs
   2560 /// visible from the given DeclContext.
   2561 ///
   2562 /// \returns the offset of the DECL_CONTEXT_VISIBLE block within the
   2563 /// bitstream, or 0 if no block was written.
   2564 uint64_t ASTWriter::WriteDeclContextVisibleBlock(ASTContext &Context,
   2565                                                  DeclContext *DC) {
   2566   if (DC->getPrimaryContext() != DC)
   2567     return 0;
   2568 
   2569   // Since there is no name lookup into functions or methods, don't bother to
   2570   // build a visible-declarations table for these entities.
   2571   if (DC->isFunctionOrMethod())
   2572     return 0;
   2573 
   2574   // If not in C++, we perform name lookup for the translation unit via the
   2575   // IdentifierInfo chains, don't bother to build a visible-declarations table.
   2576   // FIXME: In C++ we need the visible declarations in order to "see" the
   2577   // friend declarations, is there a way to do this without writing the table ?
   2578   if (DC->isTranslationUnit() && !Context.getLangOptions().CPlusPlus)
   2579     return 0;
   2580 
   2581   // Force the DeclContext to build a its name-lookup table.
   2582   if (DC->hasExternalVisibleStorage())
   2583     DC->MaterializeVisibleDeclsFromExternalStorage();
   2584   else
   2585     DC->lookup(DeclarationName());
   2586 
   2587   // Serialize the contents of the mapping used for lookup. Note that,
   2588   // although we have two very different code paths, the serialized
   2589   // representation is the same for both cases: a declaration name,
   2590   // followed by a size, followed by references to the visible
   2591   // declarations that have that name.
   2592   uint64_t Offset = Stream.GetCurrentBitNo();
   2593   StoredDeclsMap *Map = static_cast<StoredDeclsMap*>(DC->getLookupPtr());
   2594   if (!Map || Map->empty())
   2595     return 0;
   2596 
   2597   OnDiskChainedHashTableGenerator<ASTDeclContextNameLookupTrait> Generator;
   2598   ASTDeclContextNameLookupTrait Trait(*this);
   2599 
   2600   // Create the on-disk hash table representation.
   2601   for (StoredDeclsMap::iterator D = Map->begin(), DEnd = Map->end();
   2602        D != DEnd; ++D) {
   2603     DeclarationName Name = D->first;
   2604     DeclContext::lookup_result Result = D->second.getLookupResult();
   2605     Generator.insert(Name, Result, Trait);
   2606   }
   2607 
   2608   // Create the on-disk hash table in a buffer.
   2609   llvm::SmallString<4096> LookupTable;
   2610   uint32_t BucketOffset;
   2611   {
   2612     llvm::raw_svector_ostream Out(LookupTable);
   2613     // Make sure that no bucket is at offset 0
   2614     clang::io::Emit32(Out, 0);
   2615     BucketOffset = Generator.Emit(Out, Trait);
   2616   }
   2617 
   2618   // Write the lookup table
   2619   RecordData Record;
   2620   Record.push_back(DECL_CONTEXT_VISIBLE);
   2621   Record.push_back(BucketOffset);
   2622   Stream.EmitRecordWithBlob(DeclContextVisibleLookupAbbrev, Record,
   2623                             LookupTable.str());
   2624 
   2625   Stream.EmitRecord(DECL_CONTEXT_VISIBLE, Record);
   2626   ++NumVisibleDeclContexts;
   2627   return Offset;
   2628 }
   2629 
   2630 /// \brief Write an UPDATE_VISIBLE block for the given context.
   2631 ///
   2632 /// UPDATE_VISIBLE blocks contain the declarations that are added to an existing
   2633 /// DeclContext in a dependent AST file. As such, they only exist for the TU
   2634 /// (in C++) and for namespaces.
   2635 void ASTWriter::WriteDeclContextVisibleUpdate(const DeclContext *DC) {
   2636   StoredDeclsMap *Map = static_cast<StoredDeclsMap*>(DC->getLookupPtr());
   2637   if (!Map || Map->empty())
   2638     return;
   2639 
   2640   OnDiskChainedHashTableGenerator<ASTDeclContextNameLookupTrait> Generator;
   2641   ASTDeclContextNameLookupTrait Trait(*this);
   2642 
   2643   // Create the hash table.
   2644   for (StoredDeclsMap::iterator D = Map->begin(), DEnd = Map->end();
   2645        D != DEnd; ++D) {
   2646     DeclarationName Name = D->first;
   2647     DeclContext::lookup_result Result = D->second.getLookupResult();
   2648     // For any name that appears in this table, the results are complete, i.e.
   2649     // they overwrite results from previous PCHs. Merging is always a mess.
   2650     Generator.insert(Name, Result, Trait);
   2651   }
   2652 
   2653   // Create the on-disk hash table in a buffer.
   2654   llvm::SmallString<4096> LookupTable;
   2655   uint32_t BucketOffset;
   2656   {
   2657     llvm::raw_svector_ostream Out(LookupTable);
   2658     // Make sure that no bucket is at offset 0
   2659     clang::io::Emit32(Out, 0);
   2660     BucketOffset = Generator.Emit(Out, Trait);
   2661   }
   2662 
   2663   // Write the lookup table
   2664   RecordData Record;
   2665   Record.push_back(UPDATE_VISIBLE);
   2666   Record.push_back(getDeclID(cast<Decl>(DC)));
   2667   Record.push_back(BucketOffset);
   2668   Stream.EmitRecordWithBlob(UpdateVisibleAbbrev, Record, LookupTable.str());
   2669 }
   2670 
   2671 /// \brief Write an FP_PRAGMA_OPTIONS block for the given FPOptions.
   2672 void ASTWriter::WriteFPPragmaOptions(const FPOptions &Opts) {
   2673   RecordData Record;
   2674   Record.push_back(Opts.fp_contract);
   2675   Stream.EmitRecord(FP_PRAGMA_OPTIONS, Record);
   2676 }
   2677 
   2678 /// \brief Write an OPENCL_EXTENSIONS block for the given OpenCLOptions.
   2679 void ASTWriter::WriteOpenCLExtensions(Sema &SemaRef) {
   2680   if (!SemaRef.Context.getLangOptions().OpenCL)
   2681     return;
   2682 
   2683   const OpenCLOptions &Opts = SemaRef.getOpenCLOptions();
   2684   RecordData Record;
   2685 #define OPENCLEXT(nm)  Record.push_back(Opts.nm);
   2686 #include "clang/Basic/OpenCLExtensions.def"
   2687   Stream.EmitRecord(OPENCL_EXTENSIONS, Record);
   2688 }
   2689 
   2690 //===----------------------------------------------------------------------===//
   2691 // General Serialization Routines
   2692 //===----------------------------------------------------------------------===//
   2693 
   2694 /// \brief Write a record containing the given attributes.
   2695 void ASTWriter::WriteAttributes(const AttrVec &Attrs, RecordDataImpl &Record) {
   2696   Record.push_back(Attrs.size());
   2697   for (AttrVec::const_iterator i = Attrs.begin(), e = Attrs.end(); i != e; ++i){
   2698     const Attr * A = *i;
   2699     Record.push_back(A->getKind()); // FIXME: stable encoding, target attrs
   2700     AddSourceLocation(A->getLocation(), Record);
   2701 
   2702 #include "clang/Serialization/AttrPCHWrite.inc"
   2703 
   2704   }
   2705 }
   2706 
   2707 void ASTWriter::AddString(llvm::StringRef Str, RecordDataImpl &Record) {
   2708   Record.push_back(Str.size());
   2709   Record.insert(Record.end(), Str.begin(), Str.end());
   2710 }
   2711 
   2712 void ASTWriter::AddVersionTuple(const VersionTuple &Version,
   2713                                 RecordDataImpl &Record) {
   2714   Record.push_back(Version.getMajor());
   2715   if (llvm::Optional<unsigned> Minor = Version.getMinor())
   2716     Record.push_back(*Minor + 1);
   2717   else
   2718     Record.push_back(0);
   2719   if (llvm::Optional<unsigned> Subminor = Version.getSubminor())
   2720     Record.push_back(*Subminor + 1);
   2721   else
   2722     Record.push_back(0);
   2723 }
   2724 
   2725 /// \brief Note that the identifier II occurs at the given offset
   2726 /// within the identifier table.
   2727 void ASTWriter::SetIdentifierOffset(const IdentifierInfo *II, uint32_t Offset) {
   2728   IdentID ID = IdentifierIDs[II];
   2729   // Only store offsets new to this AST file. Other identifier names are looked
   2730   // up earlier in the chain and thus don't need an offset.
   2731   if (ID >= FirstIdentID)
   2732     IdentifierOffsets[ID - FirstIdentID] = Offset;
   2733 }
   2734 
   2735 /// \brief Note that the selector Sel occurs at the given offset
   2736 /// within the method pool/selector table.
   2737 void ASTWriter::SetSelectorOffset(Selector Sel, uint32_t Offset) {
   2738   unsigned ID = SelectorIDs[Sel];
   2739   assert(ID && "Unknown selector");
   2740   // Don't record offsets for selectors that are also available in a different
   2741   // file.
   2742   if (ID < FirstSelectorID)
   2743     return;
   2744   SelectorOffsets[ID - FirstSelectorID] = Offset;
   2745 }
   2746 
   2747 ASTWriter::ASTWriter(llvm::BitstreamWriter &Stream)
   2748   : Stream(Stream), Chain(0), SerializationListener(0),
   2749     FirstDeclID(1), NextDeclID(FirstDeclID),
   2750     FirstTypeID(NUM_PREDEF_TYPE_IDS), NextTypeID(FirstTypeID),
   2751     FirstIdentID(1), NextIdentID(FirstIdentID), FirstSelectorID(1),
   2752     NextSelectorID(FirstSelectorID), FirstMacroID(1), NextMacroID(FirstMacroID),
   2753     CollectedStmts(&StmtsToEmit),
   2754     NumStatements(0), NumMacros(0), NumLexicalDeclContexts(0),
   2755     NumVisibleDeclContexts(0),
   2756     FirstCXXBaseSpecifiersID(1), NextCXXBaseSpecifiersID(1),
   2757     DeclParmVarAbbrev(0), DeclContextLexicalAbbrev(0),
   2758     DeclContextVisibleLookupAbbrev(0), UpdateVisibleAbbrev(0),
   2759     DeclRefExprAbbrev(0), CharacterLiteralAbbrev(0),
   2760     DeclRecordAbbrev(0), IntegerLiteralAbbrev(0),
   2761     DeclTypedefAbbrev(0),
   2762     DeclVarAbbrev(0), DeclFieldAbbrev(0),
   2763     DeclEnumAbbrev(0), DeclObjCIvarAbbrev(0)
   2764 {
   2765 }
   2766 
   2767 void ASTWriter::WriteAST(Sema &SemaRef, MemorizeStatCalls *StatCalls,
   2768                          const std::string &OutputFile,
   2769                          const char *isysroot) {
   2770   // Emit the file header.
   2771   Stream.Emit((unsigned)'C', 8);
   2772   Stream.Emit((unsigned)'P', 8);
   2773   Stream.Emit((unsigned)'C', 8);
   2774   Stream.Emit((unsigned)'H', 8);
   2775 
   2776   WriteBlockInfoBlock();
   2777 
   2778   if (Chain)
   2779     WriteASTChain(SemaRef, StatCalls, isysroot);
   2780   else
   2781     WriteASTCore(SemaRef, StatCalls, isysroot, OutputFile);
   2782 }
   2783 
   2784 void ASTWriter::WriteASTCore(Sema &SemaRef, MemorizeStatCalls *StatCalls,
   2785                              const char *isysroot,
   2786                              const std::string &OutputFile) {
   2787   using namespace llvm;
   2788 
   2789   ASTContext &Context = SemaRef.Context;
   2790   Preprocessor &PP = SemaRef.PP;
   2791 
   2792   // The translation unit is the first declaration we'll emit.
   2793   DeclIDs[Context.getTranslationUnitDecl()] = 1;
   2794   ++NextDeclID;
   2795   DeclTypesToEmit.push(Context.getTranslationUnitDecl());
   2796 
   2797   // Make sure that we emit IdentifierInfos (and any attached
   2798   // declarations) for builtins.
   2799   {
   2800     IdentifierTable &Table = PP.getIdentifierTable();
   2801     llvm::SmallVector<const char *, 32> BuiltinNames;
   2802     Context.BuiltinInfo.GetBuiltinNames(BuiltinNames,
   2803                                         Context.getLangOptions().NoBuiltin);
   2804     for (unsigned I = 0, N = BuiltinNames.size(); I != N; ++I)
   2805       getIdentifierRef(&Table.get(BuiltinNames[I]));
   2806   }
   2807 
   2808   // Build a record containing all of the tentative definitions in this file, in
   2809   // TentativeDefinitions order.  Generally, this record will be empty for
   2810   // headers.
   2811   RecordData TentativeDefinitions;
   2812   for (unsigned i = 0, e = SemaRef.TentativeDefinitions.size(); i != e; ++i) {
   2813     AddDeclRef(SemaRef.TentativeDefinitions[i], TentativeDefinitions);
   2814   }
   2815 
   2816   // Build a record containing all of the file scoped decls in this file.
   2817   RecordData UnusedFileScopedDecls;
   2818   for (unsigned i=0, e = SemaRef.UnusedFileScopedDecls.size(); i !=e; ++i)
   2819     AddDeclRef(SemaRef.UnusedFileScopedDecls[i], UnusedFileScopedDecls);
   2820 
   2821   RecordData DelegatingCtorDecls;
   2822   for (unsigned i=0, e = SemaRef.DelegatingCtorDecls.size(); i != e; ++i)
   2823     AddDeclRef(SemaRef.DelegatingCtorDecls[i], DelegatingCtorDecls);
   2824 
   2825   RecordData WeakUndeclaredIdentifiers;
   2826   if (!SemaRef.WeakUndeclaredIdentifiers.empty()) {
   2827     WeakUndeclaredIdentifiers.push_back(
   2828                                       SemaRef.WeakUndeclaredIdentifiers.size());
   2829     for (llvm::DenseMap<IdentifierInfo*,Sema::WeakInfo>::iterator
   2830          I = SemaRef.WeakUndeclaredIdentifiers.begin(),
   2831          E = SemaRef.WeakUndeclaredIdentifiers.end(); I != E; ++I) {
   2832       AddIdentifierRef(I->first, WeakUndeclaredIdentifiers);
   2833       AddIdentifierRef(I->second.getAlias(), WeakUndeclaredIdentifiers);
   2834       AddSourceLocation(I->second.getLocation(), WeakUndeclaredIdentifiers);
   2835       WeakUndeclaredIdentifiers.push_back(I->second.getUsed());
   2836     }
   2837   }
   2838 
   2839   // Build a record containing all of the locally-scoped external
   2840   // declarations in this header file. Generally, this record will be
   2841   // empty.
   2842   RecordData LocallyScopedExternalDecls;
   2843   // FIXME: This is filling in the AST file in densemap order which is
   2844   // nondeterminstic!
   2845   for (llvm::DenseMap<DeclarationName, NamedDecl *>::iterator
   2846          TD = SemaRef.LocallyScopedExternalDecls.begin(),
   2847          TDEnd = SemaRef.LocallyScopedExternalDecls.end();
   2848        TD != TDEnd; ++TD)
   2849     AddDeclRef(TD->second, LocallyScopedExternalDecls);
   2850 
   2851   // Build a record containing all of the ext_vector declarations.
   2852   RecordData ExtVectorDecls;
   2853   for (unsigned I = 0, N = SemaRef.ExtVectorDecls.size(); I != N; ++I)
   2854     AddDeclRef(SemaRef.ExtVectorDecls[I], ExtVectorDecls);
   2855 
   2856   // Build a record containing all of the VTable uses information.
   2857   RecordData VTableUses;
   2858   if (!SemaRef.VTableUses.empty()) {
   2859     VTableUses.push_back(SemaRef.VTableUses.size());
   2860     for (unsigned I = 0, N = SemaRef.VTableUses.size(); I != N; ++I) {
   2861       AddDeclRef(SemaRef.VTableUses[I].first, VTableUses);
   2862       AddSourceLocation(SemaRef.VTableUses[I].second, VTableUses);
   2863       VTableUses.push_back(SemaRef.VTablesUsed[SemaRef.VTableUses[I].first]);
   2864     }
   2865   }
   2866 
   2867   // Build a record containing all of dynamic classes declarations.
   2868   RecordData DynamicClasses;
   2869   for (unsigned I = 0, N = SemaRef.DynamicClasses.size(); I != N; ++I)
   2870     AddDeclRef(SemaRef.DynamicClasses[I], DynamicClasses);
   2871 
   2872   // Build a record containing all of pending implicit instantiations.
   2873   RecordData PendingInstantiations;
   2874   for (std::deque<Sema::PendingImplicitInstantiation>::iterator
   2875          I = SemaRef.PendingInstantiations.begin(),
   2876          N = SemaRef.PendingInstantiations.end(); I != N; ++I) {
   2877     AddDeclRef(I->first, PendingInstantiations);
   2878     AddSourceLocation(I->second, PendingInstantiations);
   2879   }
   2880   assert(SemaRef.PendingLocalImplicitInstantiations.empty() &&
   2881          "There are local ones at end of translation unit!");
   2882 
   2883   // Build a record containing some declaration references.
   2884   RecordData SemaDeclRefs;
   2885   if (SemaRef.StdNamespace || SemaRef.StdBadAlloc) {
   2886     AddDeclRef(SemaRef.getStdNamespace(), SemaDeclRefs);
   2887     AddDeclRef(SemaRef.getStdBadAlloc(), SemaDeclRefs);
   2888   }
   2889 
   2890   RecordData CUDASpecialDeclRefs;
   2891   if (Context.getcudaConfigureCallDecl()) {
   2892     AddDeclRef(Context.getcudaConfigureCallDecl(), CUDASpecialDeclRefs);
   2893   }
   2894 
   2895   // Build a record containing all of the known namespaces.
   2896   RecordData KnownNamespaces;
   2897   for (llvm::DenseMap<NamespaceDecl*, bool>::iterator
   2898             I = SemaRef.KnownNamespaces.begin(),
   2899          IEnd = SemaRef.KnownNamespaces.end();
   2900        I != IEnd; ++I) {
   2901     if (!I->second)
   2902       AddDeclRef(I->first, KnownNamespaces);
   2903   }
   2904 
   2905   // Write the remaining AST contents.
   2906   RecordData Record;
   2907   Stream.EnterSubblock(AST_BLOCK_ID, 5);
   2908   WriteMetadata(Context, isysroot, OutputFile);
   2909   WriteLanguageOptions(Context.getLangOptions());
   2910   if (StatCalls && !isysroot)
   2911     WriteStatCache(*StatCalls);
   2912   WriteSourceManagerBlock(Context.getSourceManager(), PP, isysroot);
   2913   // Write the record of special types.
   2914   Record.clear();
   2915 
   2916   AddTypeRef(Context.getBuiltinVaListType(), Record);
   2917   AddTypeRef(Context.getObjCIdType(), Record);
   2918   AddTypeRef(Context.getObjCSelType(), Record);
   2919   AddTypeRef(Context.getObjCProtoType(), Record);
   2920   AddTypeRef(Context.getObjCClassType(), Record);
   2921   AddTypeRef(Context.getRawCFConstantStringType(), Record);
   2922   AddTypeRef(Context.getRawObjCFastEnumerationStateType(), Record);
   2923   AddTypeRef(Context.getFILEType(), Record);
   2924   AddTypeRef(Context.getjmp_bufType(), Record);
   2925   AddTypeRef(Context.getsigjmp_bufType(), Record);
   2926   AddTypeRef(Context.ObjCIdRedefinitionType, Record);
   2927   AddTypeRef(Context.ObjCClassRedefinitionType, Record);
   2928   AddTypeRef(Context.getRawBlockdescriptorType(), Record);
   2929   AddTypeRef(Context.getRawBlockdescriptorExtendedType(), Record);
   2930   AddTypeRef(Context.ObjCSelRedefinitionType, Record);
   2931   AddTypeRef(Context.getRawNSConstantStringType(), Record);
   2932   Record.push_back(Context.isInt128Installed());
   2933   AddTypeRef(Context.AutoDeductTy, Record);
   2934   AddTypeRef(Context.AutoRRefDeductTy, Record);
   2935   Stream.EmitRecord(SPECIAL_TYPES, Record);
   2936 
   2937   // Keep writing types and declarations until all types and
   2938   // declarations have been written.
   2939   Stream.EnterSubblock(DECLTYPES_BLOCK_ID, NUM_ALLOWED_ABBREVS_SIZE);
   2940   WriteDeclsBlockAbbrevs();
   2941   while (!DeclTypesToEmit.empty()) {
   2942     DeclOrType DOT = DeclTypesToEmit.front();
   2943     DeclTypesToEmit.pop();
   2944     if (DOT.isType())
   2945       WriteType(DOT.getType());
   2946     else
   2947       WriteDecl(Context, DOT.getDecl());
   2948   }
   2949   Stream.ExitBlock();
   2950 
   2951   WritePreprocessor(PP);
   2952   WriteHeaderSearch(PP.getHeaderSearchInfo(), isysroot);
   2953   WriteSelectors(SemaRef);
   2954   WriteReferencedSelectorsPool(SemaRef);
   2955   WriteIdentifierTable(PP);
   2956   WriteFPPragmaOptions(SemaRef.getFPOptions());
   2957   WriteOpenCLExtensions(SemaRef);
   2958 
   2959   WriteTypeDeclOffsets();
   2960   WritePragmaDiagnosticMappings(Context.getDiagnostics());
   2961 
   2962   WriteCXXBaseSpecifiersOffsets();
   2963 
   2964   // Write the record containing external, unnamed definitions.
   2965   if (!ExternalDefinitions.empty())
   2966     Stream.EmitRecord(EXTERNAL_DEFINITIONS, ExternalDefinitions);
   2967 
   2968   // Write the record containing tentative definitions.
   2969   if (!TentativeDefinitions.empty())
   2970     Stream.EmitRecord(TENTATIVE_DEFINITIONS, TentativeDefinitions);
   2971 
   2972   // Write the record containing unused file scoped decls.
   2973   if (!UnusedFileScopedDecls.empty())
   2974     Stream.EmitRecord(UNUSED_FILESCOPED_DECLS, UnusedFileScopedDecls);
   2975 
   2976   // Write the record containing weak undeclared identifiers.
   2977   if (!WeakUndeclaredIdentifiers.empty())
   2978     Stream.EmitRecord(WEAK_UNDECLARED_IDENTIFIERS,
   2979                       WeakUndeclaredIdentifiers);
   2980 
   2981   // Write the record containing locally-scoped external definitions.
   2982   if (!LocallyScopedExternalDecls.empty())
   2983     Stream.EmitRecord(LOCALLY_SCOPED_EXTERNAL_DECLS,
   2984                       LocallyScopedExternalDecls);
   2985 
   2986   // Write the record containing ext_vector type names.
   2987   if (!ExtVectorDecls.empty())
   2988     Stream.EmitRecord(EXT_VECTOR_DECLS, ExtVectorDecls);
   2989 
   2990   // Write the record containing VTable uses information.
   2991   if (!VTableUses.empty())
   2992     Stream.EmitRecord(VTABLE_USES, VTableUses);
   2993 
   2994   // Write the record containing dynamic classes declarations.
   2995   if (!DynamicClasses.empty())
   2996     Stream.EmitRecord(DYNAMIC_CLASSES, DynamicClasses);
   2997 
   2998   // Write the record containing pending implicit instantiations.
   2999   if (!PendingInstantiations.empty())
   3000     Stream.EmitRecord(PENDING_IMPLICIT_INSTANTIATIONS, PendingInstantiations);
   3001 
   3002   // Write the record containing declaration references of Sema.
   3003   if (!SemaDeclRefs.empty())
   3004     Stream.EmitRecord(SEMA_DECL_REFS, SemaDeclRefs);
   3005 
   3006   // Write the record containing CUDA-specific declaration references.
   3007   if (!CUDASpecialDeclRefs.empty())
   3008     Stream.EmitRecord(CUDA_SPECIAL_DECL_REFS, CUDASpecialDeclRefs);
   3009 
   3010   // Write the delegating constructors.
   3011   if (!DelegatingCtorDecls.empty())
   3012     Stream.EmitRecord(DELEGATING_CTORS, DelegatingCtorDecls);
   3013 
   3014   // Write the known namespaces.
   3015   if (!KnownNamespaces.empty())
   3016     Stream.EmitRecord(KNOWN_NAMESPACES, KnownNamespaces);
   3017 
   3018   // Some simple statistics
   3019   Record.clear();
   3020   Record.push_back(NumStatements);
   3021   Record.push_back(NumMacros);
   3022   Record.push_back(NumLexicalDeclContexts);
   3023   Record.push_back(NumVisibleDeclContexts);
   3024   Stream.EmitRecord(STATISTICS, Record);
   3025   Stream.ExitBlock();
   3026 }
   3027 
   3028 void ASTWriter::WriteASTChain(Sema &SemaRef, MemorizeStatCalls *StatCalls,
   3029                               const char *isysroot) {
   3030   using namespace llvm;
   3031 
   3032   ASTContext &Context = SemaRef.Context;
   3033   Preprocessor &PP = SemaRef.PP;
   3034 
   3035   RecordData Record;
   3036   Stream.EnterSubblock(AST_BLOCK_ID, 5);
   3037   WriteMetadata(Context, isysroot, "");
   3038   if (StatCalls && !isysroot)
   3039     WriteStatCache(*StatCalls);
   3040   // FIXME: Source manager block should only write new stuff, which could be
   3041   // done by tracking the largest ID in the chain
   3042   WriteSourceManagerBlock(Context.getSourceManager(), PP, isysroot);
   3043 
   3044   // The special types are in the chained PCH.
   3045 
   3046   // We don't start with the translation unit, but with its decls that
   3047   // don't come from the chained PCH.
   3048   const TranslationUnitDecl *TU = Context.getTranslationUnitDecl();
   3049   llvm::SmallVector<KindDeclIDPair, 64> NewGlobalDecls;
   3050   for (DeclContext::decl_iterator I = TU->noload_decls_begin(),
   3051                                   E = TU->noload_decls_end();
   3052        I != E; ++I) {
   3053     if ((*I)->getPCHLevel() == 0)
   3054       NewGlobalDecls.push_back(std::make_pair((*I)->getKind(), GetDeclRef(*I)));
   3055     else if ((*I)->isChangedSinceDeserialization())
   3056       (void)GetDeclRef(*I); // Make sure it's written, but don't record it.
   3057   }
   3058   // We also need to write a lexical updates block for the TU.
   3059   llvm::BitCodeAbbrev *Abv = new llvm::BitCodeAbbrev();
   3060   Abv->Add(llvm::BitCodeAbbrevOp(TU_UPDATE_LEXICAL));
   3061   Abv->Add(llvm::BitCodeAbbrevOp(llvm::BitCodeAbbrevOp::Blob));
   3062   unsigned TuUpdateLexicalAbbrev = Stream.EmitAbbrev(Abv);
   3063   Record.clear();
   3064   Record.push_back(TU_UPDATE_LEXICAL);
   3065   Stream.EmitRecordWithBlob(TuUpdateLexicalAbbrev, Record,
   3066                             data(NewGlobalDecls));
   3067   // And a visible updates block for the DeclContexts.
   3068   Abv = new llvm::BitCodeAbbrev();
   3069   Abv->Add(llvm::BitCodeAbbrevOp(UPDATE_VISIBLE));
   3070   Abv->Add(llvm::BitCodeAbbrevOp(llvm::BitCodeAbbrevOp::VBR, 6));
   3071   Abv->Add(llvm::BitCodeAbbrevOp(llvm::BitCodeAbbrevOp::Fixed, 32));
   3072   Abv->Add(llvm::BitCodeAbbrevOp(llvm::BitCodeAbbrevOp::Blob));
   3073   UpdateVisibleAbbrev = Stream.EmitAbbrev(Abv);
   3074   WriteDeclContextVisibleUpdate(TU);
   3075 
   3076   // Build a record containing all of the new tentative definitions in this
   3077   // file, in TentativeDefinitions order.
   3078   RecordData TentativeDefinitions;
   3079   for (unsigned i = 0, e = SemaRef.TentativeDefinitions.size(); i != e; ++i) {
   3080     if (SemaRef.TentativeDefinitions[i]->getPCHLevel() == 0)
   3081       AddDeclRef(SemaRef.TentativeDefinitions[i], TentativeDefinitions);
   3082   }
   3083 
   3084   // Build a record containing all of the file scoped decls in this file.
   3085   RecordData UnusedFileScopedDecls;
   3086   for (unsigned i=0, e = SemaRef.UnusedFileScopedDecls.size(); i !=e; ++i) {
   3087     if (SemaRef.UnusedFileScopedDecls[i]->getPCHLevel() == 0)
   3088       AddDeclRef(SemaRef.UnusedFileScopedDecls[i], UnusedFileScopedDecls);
   3089   }
   3090 
   3091   // Build a record containing all of the delegating constructor decls in this
   3092   // file.
   3093   RecordData DelegatingCtorDecls;
   3094   for (unsigned i=0, e = SemaRef.DelegatingCtorDecls.size(); i != e; ++i) {
   3095     if (SemaRef.DelegatingCtorDecls[i]->getPCHLevel() == 0)
   3096       AddDeclRef(SemaRef.DelegatingCtorDecls[i], DelegatingCtorDecls);
   3097   }
   3098 
   3099   // We write the entire table, overwriting the tables from the chain.
   3100   RecordData WeakUndeclaredIdentifiers;
   3101   if (!SemaRef.WeakUndeclaredIdentifiers.empty()) {
   3102     WeakUndeclaredIdentifiers.push_back(
   3103                                       SemaRef.WeakUndeclaredIdentifiers.size());
   3104     for (llvm::DenseMap<IdentifierInfo*,Sema::WeakInfo>::iterator
   3105          I = SemaRef.WeakUndeclaredIdentifiers.begin(),
   3106          E = SemaRef.WeakUndeclaredIdentifiers.end(); I != E; ++I) {
   3107       AddIdentifierRef(I->first, WeakUndeclaredIdentifiers);
   3108       AddIdentifierRef(I->second.getAlias(), WeakUndeclaredIdentifiers);
   3109       AddSourceLocation(I->second.getLocation(), WeakUndeclaredIdentifiers);
   3110       WeakUndeclaredIdentifiers.push_back(I->second.getUsed());
   3111     }
   3112   }
   3113 
   3114   // Build a record containing all of the locally-scoped external
   3115   // declarations in this header file. Generally, this record will be
   3116   // empty.
   3117   RecordData LocallyScopedExternalDecls;
   3118   // FIXME: This is filling in the AST file in densemap order which is
   3119   // nondeterminstic!
   3120   for (llvm::DenseMap<DeclarationName, NamedDecl *>::iterator
   3121          TD = SemaRef.LocallyScopedExternalDecls.begin(),
   3122          TDEnd = SemaRef.LocallyScopedExternalDecls.end();
   3123        TD != TDEnd; ++TD) {
   3124     if (TD->second->getPCHLevel() == 0)
   3125       AddDeclRef(TD->second, LocallyScopedExternalDecls);
   3126   }
   3127 
   3128   // Build a record containing all of the ext_vector declarations.
   3129   RecordData ExtVectorDecls;
   3130   for (unsigned I = 0, N = SemaRef.ExtVectorDecls.size(); I != N; ++I) {
   3131     if (SemaRef.ExtVectorDecls[I]->getPCHLevel() == 0)
   3132       AddDeclRef(SemaRef.ExtVectorDecls[I], ExtVectorDecls);
   3133   }
   3134 
   3135   // Build a record containing all of the VTable uses information.
   3136   // We write everything here, because it's too hard to determine whether
   3137   // a use is new to this part.
   3138   RecordData VTableUses;
   3139   if (!SemaRef.VTableUses.empty()) {
   3140     VTableUses.push_back(SemaRef.VTableUses.size());
   3141     for (unsigned I = 0, N = SemaRef.VTableUses.size(); I != N; ++I) {
   3142       AddDeclRef(SemaRef.VTableUses[I].first, VTableUses);
   3143       AddSourceLocation(SemaRef.VTableUses[I].second, VTableUses);
   3144       VTableUses.push_back(SemaRef.VTablesUsed[SemaRef.VTableUses[I].first]);
   3145     }
   3146   }
   3147 
   3148   // Build a record containing all of dynamic classes declarations.
   3149   RecordData DynamicClasses;
   3150   for (unsigned I = 0, N = SemaRef.DynamicClasses.size(); I != N; ++I)
   3151     if (SemaRef.DynamicClasses[I]->getPCHLevel() == 0)
   3152       AddDeclRef(SemaRef.DynamicClasses[I], DynamicClasses);
   3153 
   3154   // Build a record containing all of pending implicit instantiations.
   3155   RecordData PendingInstantiations;
   3156   for (std::deque<Sema::PendingImplicitInstantiation>::iterator
   3157          I = SemaRef.PendingInstantiations.begin(),
   3158          N = SemaRef.PendingInstantiations.end(); I != N; ++I) {
   3159     AddDeclRef(I->first, PendingInstantiations);
   3160     AddSourceLocation(I->second, PendingInstantiations);
   3161   }
   3162   assert(SemaRef.PendingLocalImplicitInstantiations.empty() &&
   3163          "There are local ones at end of translation unit!");
   3164 
   3165   // Build a record containing some declaration references.
   3166   // It's not worth the effort to avoid duplication here.
   3167   RecordData SemaDeclRefs;
   3168   if (SemaRef.StdNamespace || SemaRef.StdBadAlloc) {
   3169     AddDeclRef(SemaRef.getStdNamespace(), SemaDeclRefs);
   3170     AddDeclRef(SemaRef.getStdBadAlloc(), SemaDeclRefs);
   3171   }
   3172 
   3173   Stream.EnterSubblock(DECLTYPES_BLOCK_ID, NUM_ALLOWED_ABBREVS_SIZE);
   3174   WriteDeclsBlockAbbrevs();
   3175   for (DeclsToRewriteTy::iterator
   3176          I = DeclsToRewrite.begin(), E = DeclsToRewrite.end(); I != E; ++I)
   3177     DeclTypesToEmit.push(const_cast<Decl*>(*I));
   3178   while (!DeclTypesToEmit.empty()) {
   3179     DeclOrType DOT = DeclTypesToEmit.front();
   3180     DeclTypesToEmit.pop();
   3181     if (DOT.isType())
   3182       WriteType(DOT.getType());
   3183     else
   3184       WriteDecl(Context, DOT.getDecl());
   3185   }
   3186   Stream.ExitBlock();
   3187 
   3188   WritePreprocessor(PP);
   3189   WriteSelectors(SemaRef);
   3190   WriteReferencedSelectorsPool(SemaRef);
   3191   WriteIdentifierTable(PP);
   3192   WriteFPPragmaOptions(SemaRef.getFPOptions());
   3193   WriteOpenCLExtensions(SemaRef);
   3194 
   3195   WriteTypeDeclOffsets();
   3196   // FIXME: For chained PCH only write the new mappings (we currently
   3197   // write all of them again).
   3198   WritePragmaDiagnosticMappings(Context.getDiagnostics());
   3199 
   3200   WriteCXXBaseSpecifiersOffsets();
   3201 
   3202   /// Build a record containing first declarations from a chained PCH and the
   3203   /// most recent declarations in this AST that they point to.
   3204   RecordData FirstLatestDeclIDs;
   3205   for (FirstLatestDeclMap::iterator
   3206         I = FirstLatestDecls.begin(), E = FirstLatestDecls.end(); I != E; ++I) {
   3207     assert(I->first->getPCHLevel() > I->second->getPCHLevel() &&
   3208            "Expected first & second to be in different PCHs");
   3209     AddDeclRef(I->first, FirstLatestDeclIDs);
   3210     AddDeclRef(I->second, FirstLatestDeclIDs);
   3211   }
   3212   if (!FirstLatestDeclIDs.empty())
   3213     Stream.EmitRecord(REDECLS_UPDATE_LATEST, FirstLatestDeclIDs);
   3214 
   3215   // Write the record containing external, unnamed definitions.
   3216   if (!ExternalDefinitions.empty())
   3217     Stream.EmitRecord(EXTERNAL_DEFINITIONS, ExternalDefinitions);
   3218 
   3219   // Write the record containing tentative definitions.
   3220   if (!TentativeDefinitions.empty())
   3221     Stream.EmitRecord(TENTATIVE_DEFINITIONS, TentativeDefinitions);
   3222 
   3223   // Write the record containing unused file scoped decls.
   3224   if (!UnusedFileScopedDecls.empty())
   3225     Stream.EmitRecord(UNUSED_FILESCOPED_DECLS, UnusedFileScopedDecls);
   3226 
   3227   // Write the record containing weak undeclared identifiers.
   3228   if (!WeakUndeclaredIdentifiers.empty())
   3229     Stream.EmitRecord(WEAK_UNDECLARED_IDENTIFIERS,
   3230                       WeakUndeclaredIdentifiers);
   3231 
   3232   // Write the record containing locally-scoped external definitions.
   3233   if (!LocallyScopedExternalDecls.empty())
   3234     Stream.EmitRecord(LOCALLY_SCOPED_EXTERNAL_DECLS,
   3235                       LocallyScopedExternalDecls);
   3236 
   3237   // Write the record containing ext_vector type names.
   3238   if (!ExtVectorDecls.empty())
   3239     Stream.EmitRecord(EXT_VECTOR_DECLS, ExtVectorDecls);
   3240 
   3241   // Write the record containing VTable uses information.
   3242   if (!VTableUses.empty())
   3243     Stream.EmitRecord(VTABLE_USES, VTableUses);
   3244 
   3245   // Write the record containing dynamic classes declarations.
   3246   if (!DynamicClasses.empty())
   3247     Stream.EmitRecord(DYNAMIC_CLASSES, DynamicClasses);
   3248 
   3249   // Write the record containing pending implicit instantiations.
   3250   if (!PendingInstantiations.empty())
   3251     Stream.EmitRecord(PENDING_IMPLICIT_INSTANTIATIONS, PendingInstantiations);
   3252 
   3253   // Write the record containing declaration references of Sema.
   3254   if (!SemaDeclRefs.empty())
   3255     Stream.EmitRecord(SEMA_DECL_REFS, SemaDeclRefs);
   3256 
   3257   // Write the delegating constructors.
   3258   if (!DelegatingCtorDecls.empty())
   3259     Stream.EmitRecord(DELEGATING_CTORS, DelegatingCtorDecls);
   3260 
   3261   // Write the updates to DeclContexts.
   3262   for (llvm::SmallPtrSet<const DeclContext *, 16>::iterator
   3263            I = UpdatedDeclContexts.begin(),
   3264            E = UpdatedDeclContexts.end();
   3265          I != E; ++I)
   3266     WriteDeclContextVisibleUpdate(*I);
   3267 
   3268   WriteDeclUpdatesBlocks();
   3269 
   3270   Record.clear();
   3271   Record.push_back(NumStatements);
   3272   Record.push_back(NumMacros);
   3273   Record.push_back(NumLexicalDeclContexts);
   3274   Record.push_back(NumVisibleDeclContexts);
   3275   WriteDeclReplacementsBlock();
   3276   Stream.EmitRecord(STATISTICS, Record);
   3277   Stream.ExitBlock();
   3278 }
   3279 
   3280 void ASTWriter::WriteDeclUpdatesBlocks() {
   3281   if (DeclUpdates.empty())
   3282     return;
   3283 
   3284   RecordData OffsetsRecord;
   3285   Stream.EnterSubblock(DECL_UPDATES_BLOCK_ID, NUM_ALLOWED_ABBREVS_SIZE);
   3286   for (DeclUpdateMap::iterator
   3287          I = DeclUpdates.begin(), E = DeclUpdates.end(); I != E; ++I) {
   3288     const Decl *D = I->first;
   3289     UpdateRecord &URec = I->second;
   3290 
   3291     if (DeclsToRewrite.count(D))
   3292       continue; // The decl will be written completely,no need to store updates.
   3293 
   3294     uint64_t Offset = Stream.GetCurrentBitNo();
   3295     Stream.EmitRecord(DECL_UPDATES, URec);
   3296 
   3297     OffsetsRecord.push_back(GetDeclRef(D));
   3298     OffsetsRecord.push_back(Offset);
   3299   }
   3300   Stream.ExitBlock();
   3301   Stream.EmitRecord(DECL_UPDATE_OFFSETS, OffsetsRecord);
   3302 }
   3303 
   3304 void ASTWriter::WriteDeclReplacementsBlock() {
   3305   if (ReplacedDecls.empty())
   3306     return;
   3307 
   3308   RecordData Record;
   3309   for (llvm::SmallVector<std::pair<DeclID, uint64_t>, 16>::iterator
   3310            I = ReplacedDecls.begin(), E = ReplacedDecls.end(); I != E; ++I) {
   3311     Record.push_back(I->first);
   3312     Record.push_back(I->second);
   3313   }
   3314   Stream.EmitRecord(DECL_REPLACEMENTS, Record);
   3315 }
   3316 
   3317 void ASTWriter::AddSourceLocation(SourceLocation Loc, RecordDataImpl &Record) {
   3318   Record.push_back(Loc.getRawEncoding());
   3319 }
   3320 
   3321 void ASTWriter::AddSourceRange(SourceRange Range, RecordDataImpl &Record) {
   3322   AddSourceLocation(Range.getBegin(), Record);
   3323   AddSourceLocation(Range.getEnd(), Record);
   3324 }
   3325 
   3326 void ASTWriter::AddAPInt(const llvm::APInt &Value, RecordDataImpl &Record) {
   3327   Record.push_back(Value.getBitWidth());
   3328   const uint64_t *Words = Value.getRawData();
   3329   Record.append(Words, Words + Value.getNumWords());
   3330 }
   3331 
   3332 void ASTWriter::AddAPSInt(const llvm::APSInt &Value, RecordDataImpl &Record) {
   3333   Record.push_back(Value.isUnsigned());
   3334   AddAPInt(Value, Record);
   3335 }
   3336 
   3337 void ASTWriter::AddAPFloat(const llvm::APFloat &Value, RecordDataImpl &Record) {
   3338   AddAPInt(Value.bitcastToAPInt(), Record);
   3339 }
   3340 
   3341 void ASTWriter::AddIdentifierRef(const IdentifierInfo *II, RecordDataImpl &Record) {
   3342   Record.push_back(getIdentifierRef(II));
   3343 }
   3344 
   3345 IdentID ASTWriter::getIdentifierRef(const IdentifierInfo *II) {
   3346   if (II == 0)
   3347     return 0;
   3348 
   3349   IdentID &ID = IdentifierIDs[II];
   3350   if (ID == 0)
   3351     ID = NextIdentID++;
   3352   return ID;
   3353 }
   3354 
   3355 MacroID ASTWriter::getMacroDefinitionID(MacroDefinition *MD) {
   3356   if (MD == 0)
   3357     return 0;
   3358 
   3359   MacroID &ID = MacroDefinitions[MD];
   3360   if (ID == 0)
   3361     ID = NextMacroID++;
   3362   return ID;
   3363 }
   3364 
   3365 void ASTWriter::AddSelectorRef(const Selector SelRef, RecordDataImpl &Record) {
   3366   Record.push_back(getSelectorRef(SelRef));
   3367 }
   3368 
   3369 SelectorID ASTWriter::getSelectorRef(Selector Sel) {
   3370   if (Sel.getAsOpaquePtr() == 0) {
   3371     return 0;
   3372   }
   3373 
   3374   SelectorID &SID = SelectorIDs[Sel];
   3375   if (SID == 0 && Chain) {
   3376     // This might trigger a ReadSelector callback, which will set the ID for
   3377     // this selector.
   3378     Chain->LoadSelector(Sel);
   3379   }
   3380   if (SID == 0) {
   3381     SID = NextSelectorID++;
   3382   }
   3383   return SID;
   3384 }
   3385 
   3386 void ASTWriter::AddCXXTemporary(const CXXTemporary *Temp, RecordDataImpl &Record) {
   3387   AddDeclRef(Temp->getDestructor(), Record);
   3388 }
   3389 
   3390 void ASTWriter::AddCXXBaseSpecifiersRef(CXXBaseSpecifier const *Bases,
   3391                                       CXXBaseSpecifier const *BasesEnd,
   3392                                         RecordDataImpl &Record) {
   3393   assert(Bases != BasesEnd && "Empty base-specifier sets are not recorded");
   3394   CXXBaseSpecifiersToWrite.push_back(
   3395                                 QueuedCXXBaseSpecifiers(NextCXXBaseSpecifiersID,
   3396                                                         Bases, BasesEnd));
   3397   Record.push_back(NextCXXBaseSpecifiersID++);
   3398 }
   3399 
   3400 void ASTWriter::AddTemplateArgumentLocInfo(TemplateArgument::ArgKind Kind,
   3401                                            const TemplateArgumentLocInfo &Arg,
   3402                                            RecordDataImpl &Record) {
   3403   switch (Kind) {
   3404   case TemplateArgument::Expression:
   3405     AddStmt(Arg.getAsExpr());
   3406     break;
   3407   case TemplateArgument::Type:
   3408     AddTypeSourceInfo(Arg.getAsTypeSourceInfo(), Record);
   3409     break;
   3410   case TemplateArgument::Template:
   3411     AddNestedNameSpecifierLoc(Arg.getTemplateQualifierLoc(), Record);
   3412     AddSourceLocation(Arg.getTemplateNameLoc(), Record);
   3413     break;
   3414   case TemplateArgument::TemplateExpansion:
   3415     AddNestedNameSpecifierLoc(Arg.getTemplateQualifierLoc(), Record);
   3416     AddSourceLocation(Arg.getTemplateNameLoc(), Record);
   3417     AddSourceLocation(Arg.getTemplateEllipsisLoc(), Record);
   3418     break;
   3419   case TemplateArgument::Null:
   3420   case TemplateArgument::Integral:
   3421   case TemplateArgument::Declaration:
   3422   case TemplateArgument::Pack:
   3423     break;
   3424   }
   3425 }
   3426 
   3427 void ASTWriter::AddTemplateArgumentLoc(const TemplateArgumentLoc &Arg,
   3428                                        RecordDataImpl &Record) {
   3429   AddTemplateArgument(Arg.getArgument(), Record);
   3430 
   3431   if (Arg.getArgument().getKind() == TemplateArgument::Expression) {
   3432     bool InfoHasSameExpr
   3433       = Arg.getArgument().getAsExpr() == Arg.getLocInfo().getAsExpr();
   3434     Record.push_back(InfoHasSameExpr);
   3435     if (InfoHasSameExpr)
   3436       return; // Avoid storing the same expr twice.
   3437   }
   3438   AddTemplateArgumentLocInfo(Arg.getArgument().getKind(), Arg.getLocInfo(),
   3439                              Record);
   3440 }
   3441 
   3442 void ASTWriter::AddTypeSourceInfo(TypeSourceInfo *TInfo,
   3443                                   RecordDataImpl &Record) {
   3444   if (TInfo == 0) {
   3445     AddTypeRef(QualType(), Record);
   3446     return;
   3447   }
   3448 
   3449   AddTypeLoc(TInfo->getTypeLoc(), Record);
   3450 }
   3451 
   3452 void ASTWriter::AddTypeLoc(TypeLoc TL, RecordDataImpl &Record) {
   3453   AddTypeRef(TL.getType(), Record);
   3454 
   3455   TypeLocWriter TLW(*this, Record);
   3456   for (; !TL.isNull(); TL = TL.getNextTypeLoc())
   3457     TLW.Visit(TL);
   3458 }
   3459 
   3460 void ASTWriter::AddTypeRef(QualType T, RecordDataImpl &Record) {
   3461   Record.push_back(GetOrCreateTypeID(T));
   3462 }
   3463 
   3464 TypeID ASTWriter::GetOrCreateTypeID(QualType T) {
   3465   return MakeTypeID(T,
   3466               std::bind1st(std::mem_fun(&ASTWriter::GetOrCreateTypeIdx), this));
   3467 }
   3468 
   3469 TypeID ASTWriter::getTypeID(QualType T) const {
   3470   return MakeTypeID(T,
   3471               std::bind1st(std::mem_fun(&ASTWriter::getTypeIdx), this));
   3472 }
   3473 
   3474 TypeIdx ASTWriter::GetOrCreateTypeIdx(QualType T) {
   3475   if (T.isNull())
   3476     return TypeIdx();
   3477   assert(!T.getLocalFastQualifiers());
   3478 
   3479   TypeIdx &Idx = TypeIdxs[T];
   3480   if (Idx.getIndex() == 0) {
   3481     // We haven't seen this type before. Assign it a new ID and put it
   3482     // into the queue of types to emit.
   3483     Idx = TypeIdx(NextTypeID++);
   3484     DeclTypesToEmit.push(T);
   3485   }
   3486   return Idx;
   3487 }
   3488 
   3489 TypeIdx ASTWriter::getTypeIdx(QualType T) const {
   3490   if (T.isNull())
   3491     return TypeIdx();
   3492   assert(!T.getLocalFastQualifiers());
   3493 
   3494   TypeIdxMap::const_iterator I = TypeIdxs.find(T);
   3495   assert(I != TypeIdxs.end() && "Type not emitted!");
   3496   return I->second;
   3497 }
   3498 
   3499 void ASTWriter::AddDeclRef(const Decl *D, RecordDataImpl &Record) {
   3500   Record.push_back(GetDeclRef(D));
   3501 }
   3502 
   3503 DeclID ASTWriter::GetDeclRef(const Decl *D) {
   3504   if (D == 0) {
   3505     return 0;
   3506   }
   3507   assert(!(reinterpret_cast<uintptr_t>(D) & 0x01) && "Invalid decl pointer");
   3508   DeclID &ID = DeclIDs[D];
   3509   if (ID == 0) {
   3510     // We haven't seen this declaration before. Give it a new ID and
   3511     // enqueue it in the list of declarations to emit.
   3512     ID = NextDeclID++;
   3513     DeclTypesToEmit.push(const_cast<Decl *>(D));
   3514   } else if (ID < FirstDeclID && D->isChangedSinceDeserialization()) {
   3515     // We don't add it to the replacement collection here, because we don't
   3516     // have the offset yet.
   3517     DeclTypesToEmit.push(const_cast<Decl *>(D));
   3518     // Reset the flag, so that we don't add this decl multiple times.
   3519     const_cast<Decl *>(D)->setChangedSinceDeserialization(false);
   3520   }
   3521 
   3522   return ID;
   3523 }
   3524 
   3525 DeclID ASTWriter::getDeclID(const Decl *D) {
   3526   if (D == 0)
   3527     return 0;
   3528 
   3529   assert(DeclIDs.find(D) != DeclIDs.end() && "Declaration not emitted!");
   3530   return DeclIDs[D];
   3531 }
   3532 
   3533 void ASTWriter::AddDeclarationName(DeclarationName Name, RecordDataImpl &Record) {
   3534   // FIXME: Emit a stable enum for NameKind.  0 = Identifier etc.
   3535   Record.push_back(Name.getNameKind());
   3536   switch (Name.getNameKind()) {
   3537   case DeclarationName::Identifier:
   3538     AddIdentifierRef(Name.getAsIdentifierInfo(), Record);
   3539     break;
   3540 
   3541   case DeclarationName::ObjCZeroArgSelector:
   3542   case DeclarationName::ObjCOneArgSelector:
   3543   case DeclarationName::ObjCMultiArgSelector:
   3544     AddSelectorRef(Name.getObjCSelector(), Record);
   3545     break;
   3546 
   3547   case DeclarationName::CXXConstructorName:
   3548   case DeclarationName::CXXDestructorName:
   3549   case DeclarationName::CXXConversionFunctionName:
   3550     AddTypeRef(Name.getCXXNameType(), Record);
   3551     break;
   3552 
   3553   case DeclarationName::CXXOperatorName:
   3554     Record.push_back(Name.getCXXOverloadedOperator());
   3555     break;
   3556 
   3557   case DeclarationName::CXXLiteralOperatorName:
   3558     AddIdentifierRef(Name.getCXXLiteralIdentifier(), Record);
   3559     break;
   3560 
   3561   case DeclarationName::CXXUsingDirective:
   3562     // No extra data to emit
   3563     break;
   3564   }
   3565 }
   3566 
   3567 void ASTWriter::AddDeclarationNameLoc(const DeclarationNameLoc &DNLoc,
   3568                                      DeclarationName Name, RecordDataImpl &Record) {
   3569   switch (Name.getNameKind()) {
   3570   case DeclarationName::CXXConstructorName:
   3571   case DeclarationName::CXXDestructorName:
   3572   case DeclarationName::CXXConversionFunctionName:
   3573     AddTypeSourceInfo(DNLoc.NamedType.TInfo, Record);
   3574     break;
   3575 
   3576   case DeclarationName::CXXOperatorName:
   3577     AddSourceLocation(
   3578        SourceLocation::getFromRawEncoding(DNLoc.CXXOperatorName.BeginOpNameLoc),
   3579        Record);
   3580     AddSourceLocation(
   3581         SourceLocation::getFromRawEncoding(DNLoc.CXXOperatorName.EndOpNameLoc),
   3582         Record);
   3583     break;
   3584 
   3585   case DeclarationName::CXXLiteralOperatorName:
   3586     AddSourceLocation(
   3587      SourceLocation::getFromRawEncoding(DNLoc.CXXLiteralOperatorName.OpNameLoc),
   3588      Record);
   3589     break;
   3590 
   3591   case DeclarationName::Identifier:
   3592   case DeclarationName::ObjCZeroArgSelector:
   3593   case DeclarationName::ObjCOneArgSelector:
   3594   case DeclarationName::ObjCMultiArgSelector:
   3595   case DeclarationName::CXXUsingDirective:
   3596     break;
   3597   }
   3598 }
   3599 
   3600 void ASTWriter::AddDeclarationNameInfo(const DeclarationNameInfo &NameInfo,
   3601                                        RecordDataImpl &Record) {
   3602   AddDeclarationName(NameInfo.getName(), Record);
   3603   AddSourceLocation(NameInfo.getLoc(), Record);
   3604   AddDeclarationNameLoc(NameInfo.getInfo(), NameInfo.getName(), Record);
   3605 }
   3606 
   3607 void ASTWriter::AddQualifierInfo(const QualifierInfo &Info,
   3608                                  RecordDataImpl &Record) {
   3609   AddNestedNameSpecifierLoc(Info.QualifierLoc, Record);
   3610   Record.push_back(Info.NumTemplParamLists);
   3611   for (unsigned i=0, e=Info.NumTemplParamLists; i != e; ++i)
   3612     AddTemplateParameterList(Info.TemplParamLists[i], Record);
   3613 }
   3614 
   3615 void ASTWriter::AddNestedNameSpecifier(NestedNameSpecifier *NNS,
   3616                                        RecordDataImpl &Record) {
   3617   // Nested name specifiers usually aren't too long. I think that 8 would
   3618   // typically accommodate the vast majority.
   3619   llvm::SmallVector<NestedNameSpecifier *, 8> NestedNames;
   3620 
   3621   // Push each of the NNS's onto a stack for serialization in reverse order.
   3622   while (NNS) {
   3623     NestedNames.push_back(NNS);
   3624     NNS = NNS->getPrefix();
   3625   }
   3626 
   3627   Record.push_back(NestedNames.size());
   3628   while(!NestedNames.empty()) {
   3629     NNS = NestedNames.pop_back_val();
   3630     NestedNameSpecifier::SpecifierKind Kind = NNS->getKind();
   3631     Record.push_back(Kind);
   3632     switch (Kind) {
   3633     case NestedNameSpecifier::Identifier:
   3634       AddIdentifierRef(NNS->getAsIdentifier(), Record);
   3635       break;
   3636 
   3637     case NestedNameSpecifier::Namespace:
   3638       AddDeclRef(NNS->getAsNamespace(), Record);
   3639       break;
   3640 
   3641     case NestedNameSpecifier::NamespaceAlias:
   3642       AddDeclRef(NNS->getAsNamespaceAlias(), Record);
   3643       break;
   3644 
   3645     case NestedNameSpecifier::TypeSpec:
   3646     case NestedNameSpecifier::TypeSpecWithTemplate:
   3647       AddTypeRef(QualType(NNS->getAsType(), 0), Record);
   3648       Record.push_back(Kind == NestedNameSpecifier::TypeSpecWithTemplate);
   3649       break;
   3650 
   3651     case NestedNameSpecifier::Global:
   3652       // Don't need to write an associated value.
   3653       break;
   3654     }
   3655   }
   3656 }
   3657 
   3658 void ASTWriter::AddNestedNameSpecifierLoc(NestedNameSpecifierLoc NNS,
   3659                                           RecordDataImpl &Record) {
   3660   // Nested name specifiers usually aren't too long. I think that 8 would
   3661   // typically accommodate the vast majority.
   3662   llvm::SmallVector<NestedNameSpecifierLoc , 8> NestedNames;
   3663 
   3664   // Push each of the nested-name-specifiers's onto a stack for
   3665   // serialization in reverse order.
   3666   while (NNS) {
   3667     NestedNames.push_back(NNS);
   3668     NNS = NNS.getPrefix();
   3669   }
   3670 
   3671   Record.push_back(NestedNames.size());
   3672   while(!NestedNames.empty()) {
   3673     NNS = NestedNames.pop_back_val();
   3674     NestedNameSpecifier::SpecifierKind Kind
   3675       = NNS.getNestedNameSpecifier()->getKind();
   3676     Record.push_back(Kind);
   3677     switch (Kind) {
   3678     case NestedNameSpecifier::Identifier:
   3679       AddIdentifierRef(NNS.getNestedNameSpecifier()->getAsIdentifier(), Record);
   3680       AddSourceRange(NNS.getLocalSourceRange(), Record);
   3681       break;
   3682 
   3683     case NestedNameSpecifier::Namespace:
   3684       AddDeclRef(NNS.getNestedNameSpecifier()->getAsNamespace(), Record);
   3685       AddSourceRange(NNS.getLocalSourceRange(), Record);
   3686       break;
   3687 
   3688     case NestedNameSpecifier::NamespaceAlias:
   3689       AddDeclRef(NNS.getNestedNameSpecifier()->getAsNamespaceAlias(), Record);
   3690       AddSourceRange(NNS.getLocalSourceRange(), Record);
   3691       break;
   3692 
   3693     case NestedNameSpecifier::TypeSpec:
   3694     case NestedNameSpecifier::TypeSpecWithTemplate:
   3695       Record.push_back(Kind == NestedNameSpecifier::TypeSpecWithTemplate);
   3696       AddTypeLoc(NNS.getTypeLoc(), Record);
   3697       AddSourceLocation(NNS.getLocalSourceRange().getEnd(), Record);
   3698       break;
   3699 
   3700     case NestedNameSpecifier::Global:
   3701       AddSourceLocation(NNS.getLocalSourceRange().getEnd(), Record);
   3702       break;
   3703     }
   3704   }
   3705 }
   3706 
   3707 void ASTWriter::AddTemplateName(TemplateName Name, RecordDataImpl &Record) {
   3708   TemplateName::NameKind Kind = Name.getKind();
   3709   Record.push_back(Kind);
   3710   switch (Kind) {
   3711   case TemplateName::Template:
   3712     AddDeclRef(Name.getAsTemplateDecl(), Record);
   3713     break;
   3714 
   3715   case TemplateName::OverloadedTemplate: {
   3716     OverloadedTemplateStorage *OvT = Name.getAsOverloadedTemplate();
   3717     Record.push_back(OvT->size());
   3718     for (OverloadedTemplateStorage::iterator I = OvT->begin(), E = OvT->end();
   3719            I != E; ++I)
   3720       AddDeclRef(*I, Record);
   3721     break;
   3722   }
   3723 
   3724   case TemplateName::QualifiedTemplate: {
   3725     QualifiedTemplateName *QualT = Name.getAsQualifiedTemplateName();
   3726     AddNestedNameSpecifier(QualT->getQualifier(), Record);
   3727     Record.push_back(QualT->hasTemplateKeyword());
   3728     AddDeclRef(QualT->getTemplateDecl(), Record);
   3729     break;
   3730   }
   3731 
   3732   case TemplateName::DependentTemplate: {
   3733     DependentTemplateName *DepT = Name.getAsDependentTemplateName();
   3734     AddNestedNameSpecifier(DepT->getQualifier(), Record);
   3735     Record.push_back(DepT->isIdentifier());
   3736     if (DepT->isIdentifier())
   3737       AddIdentifierRef(DepT->getIdentifier(), Record);
   3738     else
   3739       Record.push_back(DepT->getOperator());
   3740     break;
   3741   }
   3742 
   3743   case TemplateName::SubstTemplateTemplateParm: {
   3744     SubstTemplateTemplateParmStorage *subst
   3745       = Name.getAsSubstTemplateTemplateParm();
   3746     AddDeclRef(subst->getParameter(), Record);
   3747     AddTemplateName(subst->getReplacement(), Record);
   3748     break;
   3749   }
   3750 
   3751   case TemplateName::SubstTemplateTemplateParmPack: {
   3752     SubstTemplateTemplateParmPackStorage *SubstPack
   3753       = Name.getAsSubstTemplateTemplateParmPack();
   3754     AddDeclRef(SubstPack->getParameterPack(), Record);
   3755     AddTemplateArgument(SubstPack->getArgumentPack(), Record);
   3756     break;
   3757   }
   3758   }
   3759 }
   3760 
   3761 void ASTWriter::AddTemplateArgument(const TemplateArgument &Arg,
   3762                                     RecordDataImpl &Record) {
   3763   Record.push_back(Arg.getKind());
   3764   switch (Arg.getKind()) {
   3765   case TemplateArgument::Null:
   3766     break;
   3767   case TemplateArgument::Type:
   3768     AddTypeRef(Arg.getAsType(), Record);
   3769     break;
   3770   case TemplateArgument::Declaration:
   3771     AddDeclRef(Arg.getAsDecl(), Record);
   3772     break;
   3773   case TemplateArgument::Integral:
   3774     AddAPSInt(*Arg.getAsIntegral(), Record);
   3775     AddTypeRef(Arg.getIntegralType(), Record);
   3776     break;
   3777   case TemplateArgument::Template:
   3778     AddTemplateName(Arg.getAsTemplateOrTemplatePattern(), Record);
   3779     break;
   3780   case TemplateArgument::TemplateExpansion:
   3781     AddTemplateName(Arg.getAsTemplateOrTemplatePattern(), Record);
   3782     if (llvm::Optional<unsigned> NumExpansions = Arg.getNumTemplateExpansions())
   3783       Record.push_back(*NumExpansions + 1);
   3784     else
   3785       Record.push_back(0);
   3786     break;
   3787   case TemplateArgument::Expression:
   3788     AddStmt(Arg.getAsExpr());
   3789     break;
   3790   case TemplateArgument::Pack:
   3791     Record.push_back(Arg.pack_size());
   3792     for (TemplateArgument::pack_iterator I=Arg.pack_begin(), E=Arg.pack_end();
   3793            I != E; ++I)
   3794       AddTemplateArgument(*I, Record);
   3795     break;
   3796   }
   3797 }
   3798 
   3799 void
   3800 ASTWriter::AddTemplateParameterList(const TemplateParameterList *TemplateParams,
   3801                                     RecordDataImpl &Record) {
   3802   assert(TemplateParams && "No TemplateParams!");
   3803   AddSourceLocation(TemplateParams->getTemplateLoc(), Record);
   3804   AddSourceLocation(TemplateParams->getLAngleLoc(), Record);
   3805   AddSourceLocation(TemplateParams->getRAngleLoc(), Record);
   3806   Record.push_back(TemplateParams->size());
   3807   for (TemplateParameterList::const_iterator
   3808          P = TemplateParams->begin(), PEnd = TemplateParams->end();
   3809          P != PEnd; ++P)
   3810     AddDeclRef(*P, Record);
   3811 }
   3812 
   3813 /// \brief Emit a template argument list.
   3814 void
   3815 ASTWriter::AddTemplateArgumentList(const TemplateArgumentList *TemplateArgs,
   3816                                    RecordDataImpl &Record) {
   3817   assert(TemplateArgs && "No TemplateArgs!");
   3818   Record.push_back(TemplateArgs->size());
   3819   for (int i=0, e = TemplateArgs->size(); i != e; ++i)
   3820     AddTemplateArgument(TemplateArgs->get(i), Record);
   3821 }
   3822 
   3823 
   3824 void
   3825 ASTWriter::AddUnresolvedSet(const UnresolvedSetImpl &Set, RecordDataImpl &Record) {
   3826   Record.push_back(Set.size());
   3827   for (UnresolvedSetImpl::const_iterator
   3828          I = Set.begin(), E = Set.end(); I != E; ++I) {
   3829     AddDeclRef(I.getDecl(), Record);
   3830     Record.push_back(I.getAccess());
   3831   }
   3832 }
   3833 
   3834 void ASTWriter::AddCXXBaseSpecifier(const CXXBaseSpecifier &Base,
   3835                                     RecordDataImpl &Record) {
   3836   Record.push_back(Base.isVirtual());
   3837   Record.push_back(Base.isBaseOfClass());
   3838   Record.push_back(Base.getAccessSpecifierAsWritten());
   3839   Record.push_back(Base.getInheritConstructors());
   3840   AddTypeSourceInfo(Base.getTypeSourceInfo(), Record);
   3841   AddSourceRange(Base.getSourceRange(), Record);
   3842   AddSourceLocation(Base.isPackExpansion()? Base.getEllipsisLoc()
   3843                                           : SourceLocation(),
   3844                     Record);
   3845 }
   3846 
   3847 void ASTWriter::FlushCXXBaseSpecifiers() {
   3848   RecordData Record;
   3849   for (unsigned I = 0, N = CXXBaseSpecifiersToWrite.size(); I != N; ++I) {
   3850     Record.clear();
   3851 
   3852     // Record the offset of this base-specifier set.
   3853     unsigned Index = CXXBaseSpecifiersToWrite[I].ID - FirstCXXBaseSpecifiersID;
   3854     if (Index == CXXBaseSpecifiersOffsets.size())
   3855       CXXBaseSpecifiersOffsets.push_back(Stream.GetCurrentBitNo());
   3856     else {
   3857       if (Index > CXXBaseSpecifiersOffsets.size())
   3858         CXXBaseSpecifiersOffsets.resize(Index + 1);
   3859       CXXBaseSpecifiersOffsets[Index] = Stream.GetCurrentBitNo();
   3860     }
   3861 
   3862     const CXXBaseSpecifier *B = CXXBaseSpecifiersToWrite[I].Bases,
   3863                         *BEnd = CXXBaseSpecifiersToWrite[I].BasesEnd;
   3864     Record.push_back(BEnd - B);
   3865     for (; B != BEnd; ++B)
   3866       AddCXXBaseSpecifier(*B, Record);
   3867     Stream.EmitRecord(serialization::DECL_CXX_BASE_SPECIFIERS, Record);
   3868 
   3869     // Flush any expressions that were written as part of the base specifiers.
   3870     FlushStmts();
   3871   }
   3872 
   3873   CXXBaseSpecifiersToWrite.clear();
   3874 }
   3875 
   3876 void ASTWriter::AddCXXCtorInitializers(
   3877                              const CXXCtorInitializer * const *CtorInitializers,
   3878                              unsigned NumCtorInitializers,
   3879                              RecordDataImpl &Record) {
   3880   Record.push_back(NumCtorInitializers);
   3881   for (unsigned i=0; i != NumCtorInitializers; ++i) {
   3882     const CXXCtorInitializer *Init = CtorInitializers[i];
   3883 
   3884     if (Init->isBaseInitializer()) {
   3885       Record.push_back(CTOR_INITIALIZER_BASE);
   3886       AddTypeSourceInfo(Init->getBaseClassInfo(), Record);
   3887       Record.push_back(Init->isBaseVirtual());
   3888     } else if (Init->isDelegatingInitializer()) {
   3889       Record.push_back(CTOR_INITIALIZER_DELEGATING);
   3890       AddDeclRef(Init->getTargetConstructor(), Record);
   3891     } else if (Init->isMemberInitializer()){
   3892       Record.push_back(CTOR_INITIALIZER_MEMBER);
   3893       AddDeclRef(Init->getMember(), Record);
   3894     } else {
   3895       Record.push_back(CTOR_INITIALIZER_INDIRECT_MEMBER);
   3896       AddDeclRef(Init->getIndirectMember(), Record);
   3897     }
   3898 
   3899     AddSourceLocation(Init->getMemberLocation(), Record);
   3900     AddStmt(Init->getInit());
   3901     AddSourceLocation(Init->getLParenLoc(), Record);
   3902     AddSourceLocation(Init->getRParenLoc(), Record);
   3903     Record.push_back(Init->isWritten());
   3904     if (Init->isWritten()) {
   3905       Record.push_back(Init->getSourceOrder());
   3906     } else {
   3907       Record.push_back(Init->getNumArrayIndices());
   3908       for (unsigned i=0, e=Init->getNumArrayIndices(); i != e; ++i)
   3909         AddDeclRef(Init->getArrayIndex(i), Record);
   3910     }
   3911   }
   3912 }
   3913 
   3914 void ASTWriter::AddCXXDefinitionData(const CXXRecordDecl *D, RecordDataImpl &Record) {
   3915   assert(D->DefinitionData);
   3916   struct CXXRecordDecl::DefinitionData &Data = *D->DefinitionData;
   3917   Record.push_back(Data.UserDeclaredConstructor);
   3918   Record.push_back(Data.UserDeclaredCopyConstructor);
   3919   Record.push_back(Data.UserDeclaredCopyAssignment);
   3920   Record.push_back(Data.UserDeclaredDestructor);
   3921   Record.push_back(Data.Aggregate);
   3922   Record.push_back(Data.PlainOldData);
   3923   Record.push_back(Data.Empty);
   3924   Record.push_back(Data.Polymorphic);
   3925   Record.push_back(Data.Abstract);
   3926   Record.push_back(Data.IsStandardLayout);
   3927   Record.push_back(Data.HasNoNonEmptyBases);
   3928   Record.push_back(Data.HasPrivateFields);
   3929   Record.push_back(Data.HasProtectedFields);
   3930   Record.push_back(Data.HasPublicFields);
   3931   Record.push_back(Data.HasMutableFields);
   3932   Record.push_back(Data.HasTrivialDefaultConstructor);
   3933   Record.push_back(Data.HasConstExprNonCopyMoveConstructor);
   3934   Record.push_back(Data.HasTrivialCopyConstructor);
   3935   Record.push_back(Data.HasTrivialMoveConstructor);
   3936   Record.push_back(Data.HasTrivialCopyAssignment);
   3937   Record.push_back(Data.HasTrivialMoveAssignment);
   3938   Record.push_back(Data.HasTrivialDestructor);
   3939   Record.push_back(Data.HasNonLiteralTypeFieldsOrBases);
   3940   Record.push_back(Data.ComputedVisibleConversions);
   3941   Record.push_back(Data.UserProvidedDefaultConstructor);
   3942   Record.push_back(Data.DeclaredDefaultConstructor);
   3943   Record.push_back(Data.DeclaredCopyConstructor);
   3944   Record.push_back(Data.DeclaredCopyAssignment);
   3945   Record.push_back(Data.DeclaredDestructor);
   3946 
   3947   Record.push_back(Data.NumBases);
   3948   if (Data.NumBases > 0)
   3949     AddCXXBaseSpecifiersRef(Data.getBases(), Data.getBases() + Data.NumBases,
   3950                             Record);
   3951 
   3952   // FIXME: Make VBases lazily computed when needed to avoid storing them.
   3953   Record.push_back(Data.NumVBases);
   3954   if (Data.NumVBases > 0)
   3955     AddCXXBaseSpecifiersRef(Data.getVBases(), Data.getVBases() + Data.NumVBases,
   3956                             Record);
   3957 
   3958   AddUnresolvedSet(Data.Conversions, Record);
   3959   AddUnresolvedSet(Data.VisibleConversions, Record);
   3960   // Data.Definition is the owning decl, no need to write it.
   3961   AddDeclRef(Data.FirstFriend, Record);
   3962 }
   3963 
   3964 void ASTWriter::ReaderInitialized(ASTReader *Reader) {
   3965   assert(Reader && "Cannot remove chain");
   3966   assert(!Chain && "Cannot replace chain");
   3967   assert(FirstDeclID == NextDeclID &&
   3968          FirstTypeID == NextTypeID &&
   3969          FirstIdentID == NextIdentID &&
   3970          FirstSelectorID == NextSelectorID &&
   3971          FirstMacroID == NextMacroID &&
   3972          FirstCXXBaseSpecifiersID == NextCXXBaseSpecifiersID &&
   3973          "Setting chain after writing has started.");
   3974 
   3975   Chain = Reader;
   3976 
   3977   FirstDeclID += Chain->getTotalNumDecls();
   3978   FirstTypeID += Chain->getTotalNumTypes();
   3979   FirstIdentID += Chain->getTotalNumIdentifiers();
   3980   FirstSelectorID += Chain->getTotalNumSelectors();
   3981   FirstMacroID += Chain->getTotalNumMacroDefinitions();
   3982   FirstCXXBaseSpecifiersID += Chain->getTotalNumCXXBaseSpecifiers();
   3983   NextDeclID = FirstDeclID;
   3984   NextTypeID = FirstTypeID;
   3985   NextIdentID = FirstIdentID;
   3986   NextSelectorID = FirstSelectorID;
   3987   NextMacroID = FirstMacroID;
   3988   NextCXXBaseSpecifiersID = FirstCXXBaseSpecifiersID;
   3989 }
   3990 
   3991 void ASTWriter::IdentifierRead(IdentID ID, IdentifierInfo *II) {
   3992   IdentifierIDs[II] = ID;
   3993   if (II->hasMacroDefinition())
   3994     DeserializedMacroNames.push_back(II);
   3995 }
   3996 
   3997 void ASTWriter::TypeRead(TypeIdx Idx, QualType T) {
   3998   // Always take the highest-numbered type index. This copes with an interesting
   3999   // case for chained AST writing where we schedule writing the type and then,
   4000   // later, deserialize the type from another AST. In this case, we want to
   4001   // keep the higher-numbered entry so that we can properly write it out to
   4002   // the AST file.
   4003   TypeIdx &StoredIdx = TypeIdxs[T];
   4004   if (Idx.getIndex() >= StoredIdx.getIndex())
   4005     StoredIdx = Idx;
   4006 }
   4007 
   4008 void ASTWriter::DeclRead(DeclID ID, const Decl *D) {
   4009   DeclIDs[D] = ID;
   4010 }
   4011 
   4012 void ASTWriter::SelectorRead(SelectorID ID, Selector S) {
   4013   SelectorIDs[S] = ID;
   4014 }
   4015 
   4016 void ASTWriter::MacroDefinitionRead(serialization::MacroID ID,
   4017                                     MacroDefinition *MD) {
   4018   MacroDefinitions[MD] = ID;
   4019 }
   4020 
   4021 void ASTWriter::CompletedTagDefinition(const TagDecl *D) {
   4022   assert(D->isDefinition());
   4023   if (const CXXRecordDecl *RD = dyn_cast<CXXRecordDecl>(D)) {
   4024     // We are interested when a PCH decl is modified.
   4025     if (RD->getPCHLevel() > 0) {
   4026       // A forward reference was mutated into a definition. Rewrite it.
   4027       // FIXME: This happens during template instantiation, should we
   4028       // have created a new definition decl instead ?
   4029       RewriteDecl(RD);
   4030     }
   4031 
   4032     for (CXXRecordDecl::redecl_iterator
   4033            I = RD->redecls_begin(), E = RD->redecls_end(); I != E; ++I) {
   4034       CXXRecordDecl *Redecl = cast<CXXRecordDecl>(*I);
   4035       if (Redecl == RD)
   4036         continue;
   4037 
   4038       // We are interested when a PCH decl is modified.
   4039       if (Redecl->getPCHLevel() > 0) {
   4040         UpdateRecord &Record = DeclUpdates[Redecl];
   4041         Record.push_back(UPD_CXX_SET_DEFINITIONDATA);
   4042         assert(Redecl->DefinitionData);
   4043         assert(Redecl->DefinitionData->Definition == D);
   4044         AddDeclRef(D, Record); // the DefinitionDecl
   4045       }
   4046     }
   4047   }
   4048 }
   4049 void ASTWriter::AddedVisibleDecl(const DeclContext *DC, const Decl *D) {
   4050   // TU and namespaces are handled elsewhere.
   4051   if (isa<TranslationUnitDecl>(DC) || isa<NamespaceDecl>(DC))
   4052     return;
   4053 
   4054   if (!(D->getPCHLevel() == 0 && cast<Decl>(DC)->getPCHLevel() > 0))
   4055     return; // Not a source decl added to a DeclContext from PCH.
   4056 
   4057   AddUpdatedDeclContext(DC);
   4058 }
   4059 
   4060 void ASTWriter::AddedCXXImplicitMember(const CXXRecordDecl *RD, const Decl *D) {
   4061   assert(D->isImplicit());
   4062   if (!(D->getPCHLevel() == 0 && RD->getPCHLevel() > 0))
   4063     return; // Not a source member added to a class from PCH.
   4064   if (!isa<CXXMethodDecl>(D))
   4065     return; // We are interested in lazily declared implicit methods.
   4066 
   4067   // A decl coming from PCH was modified.
   4068   assert(RD->isDefinition());
   4069   UpdateRecord &Record = DeclUpdates[RD];
   4070   Record.push_back(UPD_CXX_ADDED_IMPLICIT_MEMBER);
   4071   AddDeclRef(D, Record);
   4072 }
   4073 
   4074 void ASTWriter::AddedCXXTemplateSpecialization(const ClassTemplateDecl *TD,
   4075                                      const ClassTemplateSpecializationDecl *D) {
   4076   // The specializations set is kept in the canonical template.
   4077   TD = TD->getCanonicalDecl();
   4078   if (!(D->getPCHLevel() == 0 && TD->getPCHLevel() > 0))
   4079     return; // Not a source specialization added to a template from PCH.
   4080 
   4081   UpdateRecord &Record = DeclUpdates[TD];
   4082   Record.push_back(UPD_CXX_ADDED_TEMPLATE_SPECIALIZATION);
   4083   AddDeclRef(D, Record);
   4084 }
   4085 
   4086 void ASTWriter::AddedCXXTemplateSpecialization(const FunctionTemplateDecl *TD,
   4087                                                const FunctionDecl *D) {
   4088   // The specializations set is kept in the canonical template.
   4089   TD = TD->getCanonicalDecl();
   4090   if (!(D->getPCHLevel() == 0 && TD->getPCHLevel() > 0))
   4091     return; // Not a source specialization added to a template from PCH.
   4092 
   4093   UpdateRecord &Record = DeclUpdates[TD];
   4094   Record.push_back(UPD_CXX_ADDED_TEMPLATE_SPECIALIZATION);
   4095   AddDeclRef(D, Record);
   4096 }
   4097 
   4098 void ASTWriter::CompletedImplicitDefinition(const FunctionDecl *D) {
   4099   if (D->getPCHLevel() == 0)
   4100     return; // Declaration not imported from PCH.
   4101 
   4102   // Implicit decl from a PCH was defined.
   4103   // FIXME: Should implicit definition be a separate FunctionDecl?
   4104   RewriteDecl(D);
   4105 }
   4106 
   4107 void ASTWriter::StaticDataMemberInstantiated(const VarDecl *D) {
   4108   if (D->getPCHLevel() == 0)
   4109     return;
   4110 
   4111   // Since the actual instantiation is delayed, this really means that we need
   4112   // to update the instantiation location.
   4113   UpdateRecord &Record = DeclUpdates[D];
   4114   Record.push_back(UPD_CXX_INSTANTIATED_STATIC_DATA_MEMBER);
   4115   AddSourceLocation(
   4116       D->getMemberSpecializationInfo()->getPointOfInstantiation(), Record);
   4117 }
   4118 
   4119 ASTSerializationListener::~ASTSerializationListener() { }
   4120