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* Clean up some comments
* Move code out of header file to .cpp files, to make future changes easier * Add arguments to classes so that they can be automatically inserted into their parent structure upon creation. llvm-svn: 3604
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@ -1,7 +1,7 @@
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//===-- llvm/Argument.h - Definition of the Argument class -------*- C++ -*--=//
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//
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// This file defines the Argument class, which represents and incoming formal
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// argument to a function.
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// argument to a Function.
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//
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//===----------------------------------------------------------------------===//
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@ -10,20 +10,20 @@
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#include "llvm/Value.h"
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class Argument : public Value { // Defined in the InstrType.cpp file
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class Argument : public Value { // Defined in the Function.cpp file
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Function *Parent;
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Argument *Prev, *Next; // Next and Prev links for our intrusive linked list
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void setNext(Argument *N) { Next = N; }
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void setPrev(Argument *N) { Prev = N; }
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friend class SymbolTableListTraits<Argument, Function, Function>;
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inline void setParent(Function *parent) { Parent = parent; }
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void setParent(Function *parent);
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public:
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Argument(const Type *Ty, const std::string &Name = "")
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: Value(Ty, Value::ArgumentVal, Name) {
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Parent = 0;
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}
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/// Argument ctor - If Function argument is specified, this argument is
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/// inserted at the end of the argument list for the function.
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///
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Argument(const Type *Ty, const std::string &Name = "", Function *F = 0);
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/// setName - Specialize setName to handle symbol table majik...
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virtual void setName(const std::string &name, SymbolTable *ST = 0);
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@ -44,7 +44,7 @@ private :
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InstListType InstList;
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BasicBlock *Prev, *Next; // Next and Prev links for our intrusive linked list
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void setParent(Function *parent) { InstList.setParent(parent); }
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void setParent(Function *parent);
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void setNext(BasicBlock *N) { Next = N; }
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void setPrev(BasicBlock *N) { Prev = N; }
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friend class SymbolTableListTraits<BasicBlock, Function, Function>;
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@ -53,20 +53,23 @@ private :
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void operator=(const BasicBlock &); // Do not implement
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public:
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// Instruction iterators...
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/// Instruction iterators...
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typedef InstListType::iterator iterator;
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typedef InstListType::const_iterator const_iterator;
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typedef std::reverse_iterator<const_iterator> const_reverse_iterator;
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typedef std::reverse_iterator<iterator> reverse_iterator;
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// Ctor, dtor
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/// BasicBlock ctor - If the function parameter is specified, the basic block
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/// is automatically inserted at the end of the function.
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///
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BasicBlock(const std::string &Name = "", Function *Parent = 0);
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~BasicBlock();
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// Specialize setName to take care of symbol table majik
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virtual void setName(const std::string &name, SymbolTable *ST = 0);
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// getParent - Return the enclosing method, or null if none
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/// getParent - Return the enclosing method, or null if none
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///
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const Function *getParent() const { return InstList.getParent(); }
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Function *getParent() { return InstList.getParent(); }
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@ -94,8 +97,8 @@ public:
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//===--------------------------------------------------------------------===//
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// Instruction iterator methods
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//
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/// Instruction iterator methods
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///
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inline iterator begin() { return InstList.begin(); }
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inline const_iterator begin() const { return InstList.begin(); }
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inline iterator end () { return InstList.end(); }
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@ -22,7 +22,7 @@ template<> struct ilist_traits<BasicBlock>
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: public SymbolTableListTraits<BasicBlock, Function, Function> {
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// createNode is used to create a node that marks the end of the list...
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static BasicBlock *createNode() { return new BasicBlock(); }
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static BasicBlock *createNode();
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static iplist<BasicBlock> &getList(Function *F);
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};
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@ -1,7 +1,7 @@
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//===-- llvm/GlobalValue.h - Class to represent a global value ---*- C++ -*--=//
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//
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// This file is a common base class of all globally definable objects. As such,
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// it is subclassed by GlobalVariable and by Method. This is used because you
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// it is subclassed by GlobalVariable and by Function. This is used because you
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// can do certain things with these global objects that you can't do to anything
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// else. For example, use the address of one as a constant.
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//
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@ -24,7 +24,7 @@ template<typename ValueSubClass, typename ItemParentClass, typename SymTabClass,
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class GlobalVariable : public GlobalValue {
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friend class SymbolTableListTraits<GlobalVariable, Module, Module,
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ilist_traits<GlobalVariable> >;
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void setParent(Module *parent) { Parent = parent; }
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void setParent(Module *parent);
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GlobalVariable *Prev, *Next;
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void setNext(GlobalVariable *N) { Next = N; }
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@ -32,9 +32,12 @@ class GlobalVariable : public GlobalValue {
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bool isConstantGlobal; // Is this a global constant?
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public:
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/// GlobalVariable ctor - If a parent module is specified, the global is
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/// automatically inserted into the end of the specified modules global list.
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///
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GlobalVariable(const Type *Ty, bool isConstant, bool isInternal,
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Constant *Initializer = 0, const std::string &Name = "");
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~GlobalVariable() {}
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Constant *Initializer = 0, const std::string &Name = "",
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Module *Parent = 0);
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// Specialize setName to handle symbol table majik...
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virtual void setName(const std::string &name, SymbolTable *ST = 0);
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@ -1,7 +1,7 @@
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//===-- llvm/Instruction.h - Instruction class definition --------*- C++ -*--=//
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//
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// This file contains the declaration of the Instruction class, which is the
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// base class for all of the VM instructions.
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// base class for all of the LLVM instructions.
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//
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//===----------------------------------------------------------------------===//
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@ -22,9 +22,9 @@ class Instruction : public User {
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friend class SymbolTableListTraits<Instruction, BasicBlock, Function,
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ilist_traits<Instruction> >;
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inline void setParent(BasicBlock *P) { Parent = P; }
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void setParent(BasicBlock *P);
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protected:
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unsigned iType; // InstructionType
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unsigned iType; // InstructionType: The opcode of the instruction
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public:
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Instruction(const Type *Ty, unsigned iType, const std::string &Name = "");
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virtual ~Instruction() {
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