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	the debug type accelerator tables to contain the tag and a flag stating whether or not a compound type is a complete type. rdar://10652330 git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@147651 91177308-0d34-0410-b5e6-96231b3b80d8
		
			
				
	
	
		
			329 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			329 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
//===-- llvm/CodeGen/DwarfCompileUnit.h - Dwarf Compile Unit ---*- C++ -*--===//
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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 contains support for writing dwarf compile unit.
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//
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//===----------------------------------------------------------------------===//
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#ifndef CODEGEN_ASMPRINTER_DWARFCOMPILEUNIT_H
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#define CODEGEN_ASMPRINTER_DWARFCOMPILEUNIT_H
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#include "DIE.h"
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#include "llvm/Analysis/DebugInfo.h"
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#include "llvm/ADT/DenseMap.h"
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#include "llvm/ADT/StringMap.h"
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#include "llvm/ADT/OwningPtr.h"
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namespace llvm {
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class DwarfDebug;
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class MachineLocation;
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class MachineOperand;
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class ConstantInt;
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class DbgVariable;
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//===----------------------------------------------------------------------===//
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/// CompileUnit - This dwarf writer support class manages information associated
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/// with a source file.
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class CompileUnit {
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  /// ID - File identifier for source.
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  ///
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  unsigned ID;
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  /// Die - Compile unit debug information entry.
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  ///
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  const OwningPtr<DIE> CUDie;
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  /// Asm - Target of Dwarf emission.
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  AsmPrinter *Asm;
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  DwarfDebug *DD;
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  /// IndexTyDie - An anonymous type for index type.  Owned by CUDie.
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  DIE *IndexTyDie;
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  /// MDNodeToDieMap - Tracks the mapping of unit level debug informaton
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  /// variables to debug information entries.
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  DenseMap<const MDNode *, DIE *> MDNodeToDieMap;
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  /// MDNodeToDIEEntryMap - Tracks the mapping of unit level debug informaton
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  /// descriptors to debug information entries using a DIEEntry proxy.
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  DenseMap<const MDNode *, DIEEntry *> MDNodeToDIEEntryMap;
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  /// GlobalTypes - A map of globally visible types for this unit.
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  ///
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  StringMap<DIE*> GlobalTypes;
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  /// AccelNames - A map of names for the name accelerator table.
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  ///
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  StringMap<std::vector<DIE*> > AccelNames;
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  StringMap<std::vector<DIE*> > AccelObjC;
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  StringMap<std::vector<DIE*> > AccelNamespace;
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  StringMap<std::vector<std::pair<DIE*, unsigned> > > AccelTypes;
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  /// DIEBlocks - A list of all the DIEBlocks in use.
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  std::vector<DIEBlock *> DIEBlocks;
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  /// ContainingTypeMap - This map is used to keep track of subprogram DIEs that
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  /// need DW_AT_containing_type attribute. This attribute points to a DIE that
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  /// corresponds to the MDNode mapped with the subprogram DIE.
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  DenseMap<DIE *, const MDNode *> ContainingTypeMap;
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public:
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  CompileUnit(unsigned I, DIE *D, AsmPrinter *A, DwarfDebug *DW);
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  ~CompileUnit();
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  // Accessors.
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  unsigned getID()                  const { return ID; }
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  DIE* getCUDie()                   const { return CUDie.get(); }
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  const StringMap<DIE*> &getGlobalTypes() const { return GlobalTypes; }
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  const StringMap<std::vector<DIE*> > &getAccelNames() const {
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    return AccelNames;
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  }
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  const StringMap<std::vector<DIE*> > &getAccelObjC() const {
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    return AccelObjC;
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  }
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  const StringMap<std::vector<DIE*> > &getAccelNamespace() const {
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    return AccelNamespace;
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  }
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  const StringMap<std::vector<std::pair<DIE*, unsigned > > >
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  &getAccelTypes() const {
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    return AccelTypes;
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  }
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  /// hasContent - Return true if this compile unit has something to write out.
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  ///
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  bool hasContent() const { return !CUDie->getChildren().empty(); }
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  /// addGlobalType - Add a new global type to the compile unit.
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  ///
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  void addGlobalType(DIType Ty);
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  /// addAccelName - Add a new name to the name accelerator table.
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  void addAccelName(StringRef Name, DIE *Die) {
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    std::vector<DIE*> &DIEs = AccelNames[Name];
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    DIEs.push_back(Die);
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  }
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  void addAccelObjC(StringRef Name, DIE *Die) {
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    std::vector<DIE*> &DIEs = AccelObjC[Name];
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    DIEs.push_back(Die);
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  }
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  void addAccelNamespace(StringRef Name, DIE *Die) {
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    std::vector<DIE*> &DIEs = AccelNamespace[Name];
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    DIEs.push_back(Die);
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  }
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  void addAccelType(StringRef Name, std::pair<DIE *, unsigned> Die) {
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    std::vector<std::pair<DIE*, unsigned > > &DIEs = AccelTypes[Name];
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    DIEs.push_back(Die);
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  }
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  /// getDIE - Returns the debug information entry map slot for the
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  /// specified debug variable.
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  DIE *getDIE(const MDNode *N) { return MDNodeToDieMap.lookup(N); }
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  DIEBlock *getDIEBlock() { 
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    return new (DIEValueAllocator) DIEBlock();
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  }
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  /// insertDIE - Insert DIE into the map.
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  void insertDIE(const MDNode *N, DIE *D) {
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    MDNodeToDieMap.insert(std::make_pair(N, D));
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  }
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  /// getDIEEntry - Returns the debug information entry for the specified
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  /// debug variable.
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  DIEEntry *getDIEEntry(const MDNode *N) {
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    DenseMap<const MDNode *, DIEEntry *>::iterator I =
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      MDNodeToDIEEntryMap.find(N);
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    if (I == MDNodeToDIEEntryMap.end())
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      return NULL;
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    return I->second;
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  }
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  /// insertDIEEntry - Insert debug information entry into the map.
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  void insertDIEEntry(const MDNode *N, DIEEntry *E) {
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    MDNodeToDIEEntryMap.insert(std::make_pair(N, E));
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  }
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  /// addDie - Adds or interns the DIE to the compile unit.
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  ///
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  void addDie(DIE *Buffer) {
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    this->CUDie->addChild(Buffer);
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  }
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  // getIndexTyDie - Get an anonymous type for index type.
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  DIE *getIndexTyDie() {
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    return IndexTyDie;
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  }
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  // setIndexTyDie - Set D as anonymous type for index which can be reused
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  // later.
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  void setIndexTyDie(DIE *D) {
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    IndexTyDie = D;
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  }
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public:
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  /// addUInt - Add an unsigned integer attribute data and value.
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  ///
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  void addUInt(DIE *Die, unsigned Attribute, unsigned Form, uint64_t Integer);
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  /// addSInt - Add an signed integer attribute data and value.
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  ///
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  void addSInt(DIE *Die, unsigned Attribute, unsigned Form, int64_t Integer);
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  /// addString - Add a string attribute data and value.
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  ///
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  void addString(DIE *Die, unsigned Attribute, const StringRef Str);
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  /// addLabel - Add a Dwarf label attribute data and value.
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  ///
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  void addLabel(DIE *Die, unsigned Attribute, unsigned Form,
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                const MCSymbol *Label);
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  /// addDelta - Add a label delta attribute data and value.
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  ///
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  void addDelta(DIE *Die, unsigned Attribute, unsigned Form,
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                const MCSymbol *Hi, const MCSymbol *Lo);
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  /// addDIEEntry - Add a DIE attribute data and value.
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  ///
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  void addDIEEntry(DIE *Die, unsigned Attribute, unsigned Form, DIE *Entry);
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  /// addBlock - Add block data.
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  ///
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  void addBlock(DIE *Die, unsigned Attribute, unsigned Form, DIEBlock *Block);
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  /// addSourceLine - Add location information to specified debug information
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  /// entry.
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  void addSourceLine(DIE *Die, DIVariable V);
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  void addSourceLine(DIE *Die, DIGlobalVariable G);
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  void addSourceLine(DIE *Die, DISubprogram SP);
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  void addSourceLine(DIE *Die, DIType Ty);
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  void addSourceLine(DIE *Die, DINameSpace NS);
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  /// addAddress - Add an address attribute to a die based on the location
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  /// provided.
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  void addAddress(DIE *Die, unsigned Attribute,
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                  const MachineLocation &Location);
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  /// addConstantValue - Add constant value entry in variable DIE.
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  bool addConstantValue(DIE *Die, const MachineOperand &MO, DIType Ty);
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  bool addConstantValue(DIE *Die, const ConstantInt *CI, bool Unsigned);
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  /// addConstantFPValue - Add constant value entry in variable DIE.
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  bool addConstantFPValue(DIE *Die, const MachineOperand &MO);
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  /// addTemplateParams - Add template parameters in buffer.
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  void addTemplateParams(DIE &Buffer, DIArray TParams);
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  /// addRegisterOp - Add register operand.
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  void addRegisterOp(DIE *TheDie, unsigned Reg);
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  /// addRegisterOffset - Add register offset.
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  void addRegisterOffset(DIE *TheDie, unsigned Reg, int64_t Offset);
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  /// addComplexAddress - Start with the address based on the location provided,
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  /// and generate the DWARF information necessary to find the actual variable
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  /// (navigating the extra location information encoded in the type) based on
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  /// the starting location.  Add the DWARF information to the die.
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  ///
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  void addComplexAddress(DbgVariable *&DV, DIE *Die, unsigned Attribute,
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                         const MachineLocation &Location);
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  // FIXME: Should be reformulated in terms of addComplexAddress.
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  /// addBlockByrefAddress - Start with the address based on the location
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  /// provided, and generate the DWARF information necessary to find the
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  /// actual Block variable (navigating the Block struct) based on the
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  /// starting location.  Add the DWARF information to the die.  Obsolete,
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  /// please use addComplexAddress instead.
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  ///
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  void addBlockByrefAddress(DbgVariable *&DV, DIE *Die, unsigned Attribute,
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                            const MachineLocation &Location);
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  /// addVariableAddress - Add DW_AT_location attribute for a 
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  /// DbgVariable based on provided MachineLocation.
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  void addVariableAddress(DbgVariable *&DV, DIE *Die, MachineLocation Location);
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  /// addToContextOwner - Add Die into the list of its context owner's children.
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  void addToContextOwner(DIE *Die, DIDescriptor Context);
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  /// addType - Add a new type attribute to the specified entity.
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  void addType(DIE *Entity, DIType Ty);
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  /// getOrCreateNameSpace - Create a DIE for DINameSpace.
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  DIE *getOrCreateNameSpace(DINameSpace NS);
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  /// getOrCreateSubprogramDIE - Create new DIE using SP.
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  DIE *getOrCreateSubprogramDIE(DISubprogram SP);
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  /// getOrCreateTypeDIE - Find existing DIE or create new DIE for the
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  /// given DIType.
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  DIE *getOrCreateTypeDIE(const MDNode *N);
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  /// getOrCreateTemplateTypeParameterDIE - Find existing DIE or create new DIE 
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  /// for the given DITemplateTypeParameter.
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  DIE *getOrCreateTemplateTypeParameterDIE(DITemplateTypeParameter TP);
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  /// getOrCreateTemplateValueParameterDIE - Find existing DIE or create new DIE 
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  /// for the given DITemplateValueParameter.
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  DIE *getOrCreateTemplateValueParameterDIE(DITemplateValueParameter TVP);
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  /// createDIEEntry - Creates a new DIEEntry to be a proxy for a debug
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  /// information entry.
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  DIEEntry *createDIEEntry(DIE *Entry);
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  /// createGlobalVariableDIE - create global variable DIE.
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  void createGlobalVariableDIE(const MDNode *N);
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  void addPubTypes(DISubprogram SP);
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  /// constructTypeDIE - Construct basic type die from DIBasicType.
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  void constructTypeDIE(DIE &Buffer,
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                        DIBasicType BTy);
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  /// constructTypeDIE - Construct derived type die from DIDerivedType.
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  void constructTypeDIE(DIE &Buffer,
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                        DIDerivedType DTy);
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  /// constructTypeDIE - Construct type DIE from DICompositeType.
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  void constructTypeDIE(DIE &Buffer,
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                        DICompositeType CTy);
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  /// constructSubrangeDIE - Construct subrange DIE from DISubrange.
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  void constructSubrangeDIE(DIE &Buffer, DISubrange SR, DIE *IndexTy);
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  /// constructArrayTypeDIE - Construct array type DIE from DICompositeType.
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  void constructArrayTypeDIE(DIE &Buffer, 
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                             DICompositeType *CTy);
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  /// constructEnumTypeDIE - Construct enum type DIE from DIEnumerator.
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  DIE *constructEnumTypeDIE(DIEnumerator ETy);
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  /// constructContainingTypeDIEs - Construct DIEs for types that contain
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  /// vtables.
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  void constructContainingTypeDIEs();
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  /// constructVariableDIE - Construct a DIE for the given DbgVariable.
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  DIE *constructVariableDIE(DbgVariable *DV, bool isScopeAbstract);
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  /// createMemberDIE - Create new member DIE.
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  DIE *createMemberDIE(DIDerivedType DT);
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private:
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  // DIEValueAllocator - All DIEValues are allocated through this allocator.
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  BumpPtrAllocator DIEValueAllocator;
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  DIEInteger *DIEIntegerOne;
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};
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} // end llvm namespace
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#endif
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