llvm-6502/include/llvm/Analysis/SlotCalculator.h
Reid Spencer 798ff64328 Part of bug 122:
This change removes the BuildBytecodeInfo flag from the SlotCalculator
class. This flag was needed to distinguish between the Bytecode/Writer
and the AsmWriter. Now that AsmWriter doesn't use SlotCalculator, we can
remove this flag and simplify some code. Also, some minor name changes
to CachedWriter.h needed to be committed (missed in previous commit).


git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@13785 91177308-0d34-0410-b5e6-96231b3b80d8
2004-05-26 07:37:11 +00:00

142 lines
5.0 KiB
C++

//===-- Analysis/SlotCalculator.h - Calculate value slots -------*- C++ -*-===//
//
// The LLVM Compiler Infrastructure
//
// This file was developed by the LLVM research group and is distributed under
// the University of Illinois Open Source License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
//
// This class calculates the slots that values will land in. This is useful for
// when writing bytecode or assembly out, because you have to know these things.
//
// Specifically, this class calculates the "type plane numbering" that you see
// for a function if you strip out all of the symbols in it. For assembly
// writing, this is used when a symbol does not have a name. For bytecode
// writing, this is always used, and the symbol table is added on later.
//
//===----------------------------------------------------------------------===//
#ifndef LLVM_ANALYSIS_SLOTCALCULATOR_H
#define LLVM_ANALYSIS_SLOTCALCULATOR_H
#include <vector>
#include <map>
namespace llvm {
class Value;
class Module;
class Function;
class SymbolTable;
class ConstantArray;
class SlotCalculator {
const Module *TheModule;
typedef std::vector<const Value*> TypePlane;
std::vector<TypePlane> Table;
std::map<const Value*, unsigned> NodeMap;
/// ConstantStrings - If we are indexing for a bytecode file, this keeps track
/// of all of the constants strings that need to be emitted.
std::vector<const ConstantArray*> ConstantStrings;
/// ModuleLevel - Used to keep track of which values belong to the module,
/// and which values belong to the currently incorporated function.
///
std::vector<unsigned> ModuleLevel;
/// ModuleContainsAllFunctionConstants - This flag is set to true if all
/// function constants are incorporated into the module constant table. This
/// is only possible if building information for a bytecode file.
bool ModuleContainsAllFunctionConstants;
/// CompactionTable/NodeMap - When function compaction has been performed,
/// these entries provide a compacted view of the namespace needed to emit
/// instructions in a function body. The 'getSlot()' method automatically
/// returns these entries if applicable, or the global entries if not.
std::vector<TypePlane> CompactionTable;
std::map<const Value*, unsigned> CompactionNodeMap;
SlotCalculator(const SlotCalculator &); // DO NOT IMPLEMENT
void operator=(const SlotCalculator &); // DO NOT IMPLEMENT
public:
SlotCalculator(const Module *M );
// Start out in incorp state
SlotCalculator(const Function *F );
/// getSlot - Return the slot number of the specified value in it's type
/// plane. This returns < 0 on error!
///
int getSlot(const Value *V) const;
/// getGlobalSlot - Return a slot number from the global table. This can only
/// be used when a compaction table is active.
unsigned getGlobalSlot(const Value *V) const;
inline unsigned getNumPlanes() const {
if (CompactionTable.empty())
return Table.size();
else
return CompactionTable.size();
}
inline unsigned getModuleLevel(unsigned Plane) const {
return Plane < ModuleLevel.size() ? ModuleLevel[Plane] : 0;
}
TypePlane &getPlane(unsigned Plane);
/// incorporateFunction/purgeFunction - If you'd like to deal with a function,
/// use these two methods to get its data into the SlotCalculator!
///
void incorporateFunction(const Function *F);
void purgeFunction();
/// string_iterator/string_begin/end - Access the list of module-level
/// constant strings that have been incorporated. This is only applicable to
/// bytecode files.
typedef std::vector<const ConstantArray*>::const_iterator string_iterator;
string_iterator string_begin() const { return ConstantStrings.begin(); }
string_iterator string_end() const { return ConstantStrings.end(); }
const std::vector<TypePlane> &getCompactionTable() const {
return CompactionTable;
}
private:
// getOrCreateSlot - Values can be crammed into here at will... if
// they haven't been inserted already, they get inserted, otherwise
// they are ignored.
//
int getOrCreateSlot(const Value *D);
// insertValue - Insert a value into the value table... Return the
// slot that it occupies, or -1 if the declaration is to be ignored
// because of the IgnoreNamedNodes flag.
//
int insertValue(const Value *D, bool dontIgnore = false);
// doInsertValue - Small helper function to be called only be insertVal.
int doInsertValue(const Value *D);
// processModule - Process all of the module level function declarations and
// types that are available.
//
void processModule();
// processSymbolTable - Insert all of the values in the specified symbol table
// into the values table...
//
void processSymbolTable(const SymbolTable *ST);
void processSymbolTableConstants(const SymbolTable *ST);
void buildCompactionTable(const Function *F);
unsigned getOrCreateCompactionTableSlot(const Value *V);
void pruneCompactionTable();
};
} // End llvm namespace
#endif