forked from OSchip/llvm-project
				
			
		
			
				
	
	
		
			611 lines
		
	
	
		
			22 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			611 lines
		
	
	
		
			22 KiB
		
	
	
	
		
			C++
		
	
	
	
//===--- Preprocess.cpp - C Language Family Preprocessor Implementation ---===//
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//
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//                     The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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//  This file implements the Preprocessor interface.
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//
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//===----------------------------------------------------------------------===//
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//
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// Options to support:
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//   -H       - Print the name of each header file used.
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//   -d[DNI] - Dump various things.
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//   -fworking-directory - #line's with preprocessor's working dir.
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//   -fpreprocessed
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//   -dependency-file,-M,-MM,-MF,-MG,-MP,-MT,-MQ,-MD,-MMD
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//   -W*
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//   -w
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//
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// Messages to emit:
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//   "Multiple include guards may be useful for:\n"
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//
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//===----------------------------------------------------------------------===//
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#include "clang/Lex/Preprocessor.h"
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#include "MacroArgs.h"
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#include "clang/Lex/ExternalPreprocessorSource.h"
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#include "clang/Lex/HeaderSearch.h"
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#include "clang/Lex/MacroInfo.h"
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#include "clang/Lex/Pragma.h"
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#include "clang/Lex/PreprocessingRecord.h"
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#include "clang/Lex/ScratchBuffer.h"
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#include "clang/Lex/LexDiagnostic.h"
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#include "clang/Lex/CodeCompletionHandler.h"
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#include "clang/Lex/ModuleLoader.h"
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#include "clang/Basic/SourceManager.h"
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#include "clang/Basic/FileManager.h"
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#include "clang/Basic/TargetInfo.h"
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#include "llvm/ADT/APFloat.h"
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#include "llvm/ADT/SmallVector.h"
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#include "llvm/Support/MemoryBuffer.h"
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#include "llvm/Support/raw_ostream.h"
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#include "llvm/Support/Capacity.h"
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using namespace clang;
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//===----------------------------------------------------------------------===//
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ExternalPreprocessorSource::~ExternalPreprocessorSource() { }
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Preprocessor::Preprocessor(DiagnosticsEngine &diags, LangOptions &opts,
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                           const TargetInfo *target, SourceManager &SM,
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                           HeaderSearch &Headers, ModuleLoader &TheModuleLoader,
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                           IdentifierInfoLookup* IILookup,
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                           bool OwnsHeaders,
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                           bool DelayInitialization)
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  : Diags(&diags), Features(opts), Target(target),FileMgr(Headers.getFileMgr()),
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    SourceMgr(SM), HeaderInfo(Headers), TheModuleLoader(TheModuleLoader),
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    ExternalSource(0), 
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    Identifiers(opts, IILookup), CodeComplete(0),
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    CodeCompletionFile(0), CodeCompletionOffset(0), CodeCompletionReached(0),
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    SkipMainFilePreamble(0, true), CurPPLexer(0), 
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    CurDirLookup(0), CurLexerKind(CLK_Lexer), Callbacks(0), MacroArgCache(0), 
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    Record(0), MIChainHead(0), MICache(0) 
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{
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  OwnsHeaderSearch = OwnsHeaders;
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  if (!DelayInitialization) {
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    assert(Target && "Must provide target information for PP initialization");
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    Initialize(*Target);
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  }
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}
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Preprocessor::~Preprocessor() {
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  assert(BacktrackPositions.empty() && "EnableBacktrack/Backtrack imbalance!");
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  assert(((MacroExpandingLexersStack.empty() && MacroExpandedTokens.empty()) ||
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          isCodeCompletionReached()) &&
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         "Preprocessor::HandleEndOfTokenLexer should have cleared those");
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  while (!IncludeMacroStack.empty()) {
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    delete IncludeMacroStack.back().TheLexer;
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    delete IncludeMacroStack.back().TheTokenLexer;
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    IncludeMacroStack.pop_back();
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  }
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  // Free any macro definitions.
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  for (MacroInfoChain *I = MIChainHead ; I ; I = I->Next)
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    I->MI.Destroy();
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  // Free any cached macro expanders.
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  for (unsigned i = 0, e = NumCachedTokenLexers; i != e; ++i)
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    delete TokenLexerCache[i];
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  // Free any cached MacroArgs.
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  for (MacroArgs *ArgList = MacroArgCache; ArgList; )
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    ArgList = ArgList->deallocate();
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  // Release pragma information.
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  delete PragmaHandlers;
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  // Delete the scratch buffer info.
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  delete ScratchBuf;
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  // Delete the header search info, if we own it.
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  if (OwnsHeaderSearch)
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    delete &HeaderInfo;
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  delete Callbacks;
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}
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void Preprocessor::Initialize(const TargetInfo &Target) {
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  assert((!this->Target || this->Target == &Target) &&
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         "Invalid override of target information");
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  this->Target = &Target;
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  // Initialize information about built-ins.
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  BuiltinInfo.InitializeTarget(Target);
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  ScratchBuf = new ScratchBuffer(SourceMgr);
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  CounterValue = 0; // __COUNTER__ starts at 0.
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  // Clear stats.
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  NumDirectives = NumDefined = NumUndefined = NumPragma = 0;
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  NumIf = NumElse = NumEndif = 0;
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  NumEnteredSourceFiles = 0;
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  NumMacroExpanded = NumFnMacroExpanded = NumBuiltinMacroExpanded = 0;
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  NumFastMacroExpanded = NumTokenPaste = NumFastTokenPaste = 0;
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  MaxIncludeStackDepth = 0;
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  NumSkipped = 0;
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  // Default to discarding comments.
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  KeepComments = false;
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  KeepMacroComments = false;
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  SuppressIncludeNotFoundError = false;
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  AutoModuleImport = false;
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  // Macro expansion is enabled.
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  DisableMacroExpansion = false;
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  InMacroArgs = false;
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  NumCachedTokenLexers = 0;
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  CachedLexPos = 0;
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  // We haven't read anything from the external source.
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  ReadMacrosFromExternalSource = false;
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  // "Poison" __VA_ARGS__, which can only appear in the expansion of a macro.
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  // This gets unpoisoned where it is allowed.
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  (Ident__VA_ARGS__ = getIdentifierInfo("__VA_ARGS__"))->setIsPoisoned();
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  SetPoisonReason(Ident__VA_ARGS__,diag::ext_pp_bad_vaargs_use);
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  // Initialize the pragma handlers.
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  PragmaHandlers = new PragmaNamespace(StringRef());
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  RegisterBuiltinPragmas();
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  // Initialize builtin macros like __LINE__ and friends.
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  RegisterBuiltinMacros();
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  if(Features.Borland) {
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    Ident__exception_info        = getIdentifierInfo("_exception_info");
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    Ident___exception_info       = getIdentifierInfo("__exception_info");
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    Ident_GetExceptionInfo       = getIdentifierInfo("GetExceptionInformation");
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    Ident__exception_code        = getIdentifierInfo("_exception_code");
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    Ident___exception_code       = getIdentifierInfo("__exception_code");
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    Ident_GetExceptionCode       = getIdentifierInfo("GetExceptionCode");
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    Ident__abnormal_termination  = getIdentifierInfo("_abnormal_termination");
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    Ident___abnormal_termination = getIdentifierInfo("__abnormal_termination");
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    Ident_AbnormalTermination    = getIdentifierInfo("AbnormalTermination");
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  } else {
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    Ident__exception_info = Ident__exception_code = Ident__abnormal_termination = 0;
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    Ident___exception_info = Ident___exception_code = Ident___abnormal_termination = 0;
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    Ident_GetExceptionInfo = Ident_GetExceptionCode = Ident_AbnormalTermination = 0;
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  } 
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}
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void Preprocessor::setPTHManager(PTHManager* pm) {
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  PTH.reset(pm);
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  FileMgr.addStatCache(PTH->createStatCache());
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}
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void Preprocessor::DumpToken(const Token &Tok, bool DumpFlags) const {
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  llvm::errs() << tok::getTokenName(Tok.getKind()) << " '"
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               << getSpelling(Tok) << "'";
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  if (!DumpFlags) return;
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  llvm::errs() << "\t";
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  if (Tok.isAtStartOfLine())
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    llvm::errs() << " [StartOfLine]";
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  if (Tok.hasLeadingSpace())
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    llvm::errs() << " [LeadingSpace]";
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  if (Tok.isExpandDisabled())
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    llvm::errs() << " [ExpandDisabled]";
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  if (Tok.needsCleaning()) {
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    const char *Start = SourceMgr.getCharacterData(Tok.getLocation());
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    llvm::errs() << " [UnClean='" << StringRef(Start, Tok.getLength())
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                 << "']";
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  }
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  llvm::errs() << "\tLoc=<";
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  DumpLocation(Tok.getLocation());
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  llvm::errs() << ">";
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}
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void Preprocessor::DumpLocation(SourceLocation Loc) const {
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  Loc.dump(SourceMgr);
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}
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void Preprocessor::DumpMacro(const MacroInfo &MI) const {
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  llvm::errs() << "MACRO: ";
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  for (unsigned i = 0, e = MI.getNumTokens(); i != e; ++i) {
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    DumpToken(MI.getReplacementToken(i));
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    llvm::errs() << "  ";
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  }
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  llvm::errs() << "\n";
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}
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void Preprocessor::PrintStats() {
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  llvm::errs() << "\n*** Preprocessor Stats:\n";
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  llvm::errs() << NumDirectives << " directives found:\n";
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  llvm::errs() << "  " << NumDefined << " #define.\n";
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  llvm::errs() << "  " << NumUndefined << " #undef.\n";
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  llvm::errs() << "  #include/#include_next/#import:\n";
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  llvm::errs() << "    " << NumEnteredSourceFiles << " source files entered.\n";
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  llvm::errs() << "    " << MaxIncludeStackDepth << " max include stack depth\n";
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  llvm::errs() << "  " << NumIf << " #if/#ifndef/#ifdef.\n";
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  llvm::errs() << "  " << NumElse << " #else/#elif.\n";
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  llvm::errs() << "  " << NumEndif << " #endif.\n";
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  llvm::errs() << "  " << NumPragma << " #pragma.\n";
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  llvm::errs() << NumSkipped << " #if/#ifndef#ifdef regions skipped\n";
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  llvm::errs() << NumMacroExpanded << "/" << NumFnMacroExpanded << "/"
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             << NumBuiltinMacroExpanded << " obj/fn/builtin macros expanded, "
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             << NumFastMacroExpanded << " on the fast path.\n";
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  llvm::errs() << (NumFastTokenPaste+NumTokenPaste)
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             << " token paste (##) operations performed, "
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             << NumFastTokenPaste << " on the fast path.\n";
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}
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Preprocessor::macro_iterator
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Preprocessor::macro_begin(bool IncludeExternalMacros) const {
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  if (IncludeExternalMacros && ExternalSource &&
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      !ReadMacrosFromExternalSource) {
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    ReadMacrosFromExternalSource = true;
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    ExternalSource->ReadDefinedMacros();
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  }
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  return Macros.begin();
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}
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size_t Preprocessor::getTotalMemory() const {
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  return BP.getTotalMemory()
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    + llvm::capacity_in_bytes(MacroExpandedTokens)
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    + Predefines.capacity() /* Predefines buffer. */
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    + llvm::capacity_in_bytes(Macros)
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    + llvm::capacity_in_bytes(PragmaPushMacroInfo)
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    + llvm::capacity_in_bytes(PoisonReasons)
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    + llvm::capacity_in_bytes(CommentHandlers);
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}
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Preprocessor::macro_iterator
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Preprocessor::macro_end(bool IncludeExternalMacros) const {
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  if (IncludeExternalMacros && ExternalSource &&
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      !ReadMacrosFromExternalSource) {
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    ReadMacrosFromExternalSource = true;
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    ExternalSource->ReadDefinedMacros();
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  }
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  return Macros.end();
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}
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bool Preprocessor::SetCodeCompletionPoint(const FileEntry *File,
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                                          unsigned CompleteLine,
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                                          unsigned CompleteColumn) {
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  assert(File);
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  assert(CompleteLine && CompleteColumn && "Starts from 1:1");
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  assert(!CodeCompletionFile && "Already set");
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  using llvm::MemoryBuffer;
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  // Load the actual file's contents.
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  bool Invalid = false;
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  const MemoryBuffer *Buffer = SourceMgr.getMemoryBufferForFile(File, &Invalid);
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  if (Invalid)
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    return true;
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  // Find the byte position of the truncation point.
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  const char *Position = Buffer->getBufferStart();
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  for (unsigned Line = 1; Line < CompleteLine; ++Line) {
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    for (; *Position; ++Position) {
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      if (*Position != '\r' && *Position != '\n')
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        continue;
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      // Eat \r\n or \n\r as a single line.
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      if ((Position[1] == '\r' || Position[1] == '\n') &&
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          Position[0] != Position[1])
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        ++Position;
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      ++Position;
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      break;
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    }
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  }
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  Position += CompleteColumn - 1;
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  // Insert '\0' at the code-completion point.
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  if (Position < Buffer->getBufferEnd()) {
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    CodeCompletionFile = File;
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    CodeCompletionOffset = Position - Buffer->getBufferStart();
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    MemoryBuffer *NewBuffer =
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        MemoryBuffer::getNewUninitMemBuffer(Buffer->getBufferSize() + 1,
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                                            Buffer->getBufferIdentifier());
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    char *NewBuf = const_cast<char*>(NewBuffer->getBufferStart());
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    char *NewPos = std::copy(Buffer->getBufferStart(), Position, NewBuf);
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    *NewPos = '\0';
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    std::copy(Position, Buffer->getBufferEnd(), NewPos+1);
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    SourceMgr.overrideFileContents(File, NewBuffer);
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  }
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  return false;
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}
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void Preprocessor::CodeCompleteNaturalLanguage() {
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  if (CodeComplete)
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    CodeComplete->CodeCompleteNaturalLanguage();
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  setCodeCompletionReached();
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}
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/// getSpelling - This method is used to get the spelling of a token into a
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/// SmallVector. Note that the returned StringRef may not point to the
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/// supplied buffer if a copy can be avoided.
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StringRef Preprocessor::getSpelling(const Token &Tok,
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                                          SmallVectorImpl<char> &Buffer,
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                                          bool *Invalid) const {
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  // NOTE: this has to be checked *before* testing for an IdentifierInfo.
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  if (Tok.isNot(tok::raw_identifier)) {
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    // Try the fast path.
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    if (const IdentifierInfo *II = Tok.getIdentifierInfo())
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      return II->getName();
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  }
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  // Resize the buffer if we need to copy into it.
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  if (Tok.needsCleaning())
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    Buffer.resize(Tok.getLength());
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  const char *Ptr = Buffer.data();
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  unsigned Len = getSpelling(Tok, Ptr, Invalid);
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  return StringRef(Ptr, Len);
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}
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/// CreateString - Plop the specified string into a scratch buffer and return a
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/// location for it.  If specified, the source location provides a source
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/// location for the token.
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void Preprocessor::CreateString(const char *Buf, unsigned Len, Token &Tok,
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                                SourceLocation ExpansionLocStart,
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                                SourceLocation ExpansionLocEnd) {
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  Tok.setLength(Len);
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  const char *DestPtr;
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  SourceLocation Loc = ScratchBuf->getToken(Buf, Len, DestPtr);
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  if (ExpansionLocStart.isValid())
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    Loc = SourceMgr.createExpansionLoc(Loc, ExpansionLocStart,
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                                       ExpansionLocEnd, Len);
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  Tok.setLocation(Loc);
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  // If this is a raw identifier or a literal token, set the pointer data.
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  if (Tok.is(tok::raw_identifier))
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    Tok.setRawIdentifierData(DestPtr);
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  else if (Tok.isLiteral())
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    Tok.setLiteralData(DestPtr);
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}
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//===----------------------------------------------------------------------===//
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// Preprocessor Initialization Methods
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//===----------------------------------------------------------------------===//
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/// EnterMainSourceFile - Enter the specified FileID as the main source file,
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/// which implicitly adds the builtin defines etc.
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void Preprocessor::EnterMainSourceFile() {
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  // We do not allow the preprocessor to reenter the main file.  Doing so will
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  // cause FileID's to accumulate information from both runs (e.g. #line
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  // information) and predefined macros aren't guaranteed to be set properly.
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  assert(NumEnteredSourceFiles == 0 && "Cannot reenter the main file!");
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  FileID MainFileID = SourceMgr.getMainFileID();
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  // Enter the main file source buffer.
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  EnterSourceFile(MainFileID, 0, SourceLocation());
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  // If we've been asked to skip bytes in the main file (e.g., as part of a
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  // precompiled preamble), do so now.
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  if (SkipMainFilePreamble.first > 0)
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    CurLexer->SkipBytes(SkipMainFilePreamble.first, 
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                        SkipMainFilePreamble.second);
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  // Tell the header info that the main file was entered.  If the file is later
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  // #imported, it won't be re-entered.
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  if (const FileEntry *FE = SourceMgr.getFileEntryForID(MainFileID))
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    HeaderInfo.IncrementIncludeCount(FE);
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  // Preprocess Predefines to populate the initial preprocessor state.
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  llvm::MemoryBuffer *SB =
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    llvm::MemoryBuffer::getMemBufferCopy(Predefines, "<built-in>");
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  assert(SB && "Cannot create predefined source buffer");
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  FileID FID = SourceMgr.createFileIDForMemBuffer(SB);
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  assert(!FID.isInvalid() && "Could not create FileID for predefines?");
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  // Start parsing the predefines.
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  EnterSourceFile(FID, 0, SourceLocation());
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}
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void Preprocessor::EndSourceFile() {
 | 
						|
  // Notify the client that we reached the end of the source file.
 | 
						|
  if (Callbacks)
 | 
						|
    Callbacks->EndOfMainFile();
 | 
						|
}
 | 
						|
 | 
						|
//===----------------------------------------------------------------------===//
 | 
						|
// Lexer Event Handling.
 | 
						|
//===----------------------------------------------------------------------===//
 | 
						|
 | 
						|
/// LookUpIdentifierInfo - Given a tok::raw_identifier token, look up the
 | 
						|
/// identifier information for the token and install it into the token,
 | 
						|
/// updating the token kind accordingly.
 | 
						|
IdentifierInfo *Preprocessor::LookUpIdentifierInfo(Token &Identifier) const {
 | 
						|
  assert(Identifier.getRawIdentifierData() != 0 && "No raw identifier data!");
 | 
						|
 | 
						|
  // Look up this token, see if it is a macro, or if it is a language keyword.
 | 
						|
  IdentifierInfo *II;
 | 
						|
  if (!Identifier.needsCleaning()) {
 | 
						|
    // No cleaning needed, just use the characters from the lexed buffer.
 | 
						|
    II = getIdentifierInfo(StringRef(Identifier.getRawIdentifierData(),
 | 
						|
                                           Identifier.getLength()));
 | 
						|
  } else {
 | 
						|
    // Cleaning needed, alloca a buffer, clean into it, then use the buffer.
 | 
						|
    llvm::SmallString<64> IdentifierBuffer;
 | 
						|
    StringRef CleanedStr = getSpelling(Identifier, IdentifierBuffer);
 | 
						|
    II = getIdentifierInfo(CleanedStr);
 | 
						|
  }
 | 
						|
 | 
						|
  // Update the token info (identifier info and appropriate token kind).
 | 
						|
  Identifier.setIdentifierInfo(II);
 | 
						|
  Identifier.setKind(II->getTokenID());
 | 
						|
 | 
						|
  return II;
 | 
						|
}
 | 
						|
 | 
						|
void Preprocessor::SetPoisonReason(IdentifierInfo *II, unsigned DiagID) {
 | 
						|
  PoisonReasons[II] = DiagID;
 | 
						|
}
 | 
						|
 | 
						|
void Preprocessor::PoisonSEHIdentifiers(bool Poison) {
 | 
						|
  assert(Ident__exception_code && Ident__exception_info);
 | 
						|
  assert(Ident___exception_code && Ident___exception_info);
 | 
						|
  Ident__exception_code->setIsPoisoned(Poison);
 | 
						|
  Ident___exception_code->setIsPoisoned(Poison);
 | 
						|
  Ident_GetExceptionCode->setIsPoisoned(Poison);
 | 
						|
  Ident__exception_info->setIsPoisoned(Poison);
 | 
						|
  Ident___exception_info->setIsPoisoned(Poison);
 | 
						|
  Ident_GetExceptionInfo->setIsPoisoned(Poison);
 | 
						|
  Ident__abnormal_termination->setIsPoisoned(Poison);
 | 
						|
  Ident___abnormal_termination->setIsPoisoned(Poison);
 | 
						|
  Ident_AbnormalTermination->setIsPoisoned(Poison);
 | 
						|
}
 | 
						|
 | 
						|
void Preprocessor::HandlePoisonedIdentifier(Token & Identifier) {
 | 
						|
  assert(Identifier.getIdentifierInfo() &&
 | 
						|
         "Can't handle identifiers without identifier info!");
 | 
						|
  llvm::DenseMap<IdentifierInfo*,unsigned>::const_iterator it =
 | 
						|
    PoisonReasons.find(Identifier.getIdentifierInfo());
 | 
						|
  if(it == PoisonReasons.end())
 | 
						|
    Diag(Identifier, diag::err_pp_used_poisoned_id);
 | 
						|
  else
 | 
						|
    Diag(Identifier,it->second) << Identifier.getIdentifierInfo();
 | 
						|
}
 | 
						|
 | 
						|
/// HandleIdentifier - This callback is invoked when the lexer reads an
 | 
						|
/// identifier.  This callback looks up the identifier in the map and/or
 | 
						|
/// potentially macro expands it or turns it into a named token (like 'for').
 | 
						|
///
 | 
						|
/// Note that callers of this method are guarded by checking the
 | 
						|
/// IdentifierInfo's 'isHandleIdentifierCase' bit.  If this method changes, the
 | 
						|
/// IdentifierInfo methods that compute these properties will need to change to
 | 
						|
/// match.
 | 
						|
void Preprocessor::HandleIdentifier(Token &Identifier) {
 | 
						|
  assert(Identifier.getIdentifierInfo() &&
 | 
						|
         "Can't handle identifiers without identifier info!");
 | 
						|
 | 
						|
  IdentifierInfo &II = *Identifier.getIdentifierInfo();
 | 
						|
 | 
						|
  // If this identifier was poisoned, and if it was not produced from a macro
 | 
						|
  // expansion, emit an error.
 | 
						|
  if (II.isPoisoned() && CurPPLexer) {
 | 
						|
    HandlePoisonedIdentifier(Identifier);
 | 
						|
  }
 | 
						|
 | 
						|
  // If this is a macro to be expanded, do it.
 | 
						|
  if (MacroInfo *MI = getMacroInfo(&II)) {
 | 
						|
    if (!DisableMacroExpansion && !Identifier.isExpandDisabled()) {
 | 
						|
      if (MI->isEnabled()) {
 | 
						|
        if (!HandleMacroExpandedIdentifier(Identifier, MI))
 | 
						|
          return;
 | 
						|
      } else {
 | 
						|
        // C99 6.10.3.4p2 says that a disabled macro may never again be
 | 
						|
        // expanded, even if it's in a context where it could be expanded in the
 | 
						|
        // future.
 | 
						|
        Identifier.setFlag(Token::DisableExpand);
 | 
						|
      }
 | 
						|
    }
 | 
						|
  }
 | 
						|
 | 
						|
  // C++ 2.11p2: If this is an alternative representation of a C++ operator,
 | 
						|
  // then we act as if it is the actual operator and not the textual
 | 
						|
  // representation of it.
 | 
						|
  if (II.isCPlusPlusOperatorKeyword())
 | 
						|
    Identifier.setIdentifierInfo(0);
 | 
						|
 | 
						|
  // If this is an extension token, diagnose its use.
 | 
						|
  // We avoid diagnosing tokens that originate from macro definitions.
 | 
						|
  // FIXME: This warning is disabled in cases where it shouldn't be,
 | 
						|
  // like "#define TY typeof", "TY(1) x".
 | 
						|
  if (II.isExtensionToken() && !DisableMacroExpansion)
 | 
						|
    Diag(Identifier, diag::ext_token_used);
 | 
						|
  
 | 
						|
  // If this is the '__import_module__' keyword, note that the next token
 | 
						|
  // indicates a module name.
 | 
						|
  if (II.getTokenID() == tok::kw___import_module__ &&
 | 
						|
      !InMacroArgs && !DisableMacroExpansion) {
 | 
						|
    ModuleImportLoc = Identifier.getLocation();
 | 
						|
    CurLexerKind = CLK_LexAfterModuleImport;
 | 
						|
  }
 | 
						|
}
 | 
						|
 | 
						|
/// \brief Lex a token following the __import_module__ keyword.
 | 
						|
void Preprocessor::LexAfterModuleImport(Token &Result) {
 | 
						|
  // Figure out what kind of lexer we actually have.
 | 
						|
  if (CurLexer)
 | 
						|
    CurLexerKind = CLK_Lexer;
 | 
						|
  else if (CurPTHLexer)
 | 
						|
    CurLexerKind = CLK_PTHLexer;
 | 
						|
  else if (CurTokenLexer)
 | 
						|
    CurLexerKind = CLK_TokenLexer;
 | 
						|
  else 
 | 
						|
    CurLexerKind = CLK_CachingLexer;
 | 
						|
  
 | 
						|
  // Lex the next token.
 | 
						|
  Lex(Result);
 | 
						|
 | 
						|
  // The token sequence 
 | 
						|
  //
 | 
						|
  //   __import_module__ identifier
 | 
						|
  //
 | 
						|
  // indicates a module import directive. We already saw the __import_module__
 | 
						|
  // keyword, so now we're looking for the identifier.
 | 
						|
  if (Result.getKind() != tok::identifier)
 | 
						|
    return;
 | 
						|
  
 | 
						|
  // Load the module.
 | 
						|
  (void)TheModuleLoader.loadModule(ModuleImportLoc,
 | 
						|
                                   *Result.getIdentifierInfo(), 
 | 
						|
                                   Result.getLocation());
 | 
						|
}
 | 
						|
 | 
						|
void Preprocessor::AddCommentHandler(CommentHandler *Handler) {
 | 
						|
  assert(Handler && "NULL comment handler");
 | 
						|
  assert(std::find(CommentHandlers.begin(), CommentHandlers.end(), Handler) ==
 | 
						|
         CommentHandlers.end() && "Comment handler already registered");
 | 
						|
  CommentHandlers.push_back(Handler);
 | 
						|
}
 | 
						|
 | 
						|
void Preprocessor::RemoveCommentHandler(CommentHandler *Handler) {
 | 
						|
  std::vector<CommentHandler *>::iterator Pos
 | 
						|
  = std::find(CommentHandlers.begin(), CommentHandlers.end(), Handler);
 | 
						|
  assert(Pos != CommentHandlers.end() && "Comment handler not registered");
 | 
						|
  CommentHandlers.erase(Pos);
 | 
						|
}
 | 
						|
 | 
						|
bool Preprocessor::HandleComment(Token &result, SourceRange Comment) {
 | 
						|
  bool AnyPendingTokens = false;
 | 
						|
  for (std::vector<CommentHandler *>::iterator H = CommentHandlers.begin(),
 | 
						|
       HEnd = CommentHandlers.end();
 | 
						|
       H != HEnd; ++H) {
 | 
						|
    if ((*H)->HandleComment(*this, Comment))
 | 
						|
      AnyPendingTokens = true;
 | 
						|
  }
 | 
						|
  if (!AnyPendingTokens || getCommentRetentionState())
 | 
						|
    return false;
 | 
						|
  Lex(result);
 | 
						|
  return true;
 | 
						|
}
 | 
						|
 | 
						|
ModuleLoader::~ModuleLoader() { }
 | 
						|
 | 
						|
CommentHandler::~CommentHandler() { }
 | 
						|
 | 
						|
CodeCompletionHandler::~CodeCompletionHandler() { }
 | 
						|
 | 
						|
void Preprocessor::createPreprocessingRecord(
 | 
						|
                                      bool IncludeNestedMacroExpansions) {
 | 
						|
  if (Record)
 | 
						|
    return;
 | 
						|
  
 | 
						|
  Record = new PreprocessingRecord(getSourceManager(),
 | 
						|
                                   IncludeNestedMacroExpansions);
 | 
						|
  addPPCallbacks(Record);
 | 
						|
}
 |