#include "llvm/DerivedTypes.h"
#include "llvm/ADT/StringExtras.h"
#include "llvm/ADT/StringRef.h"
+#include "llvm/Support/Debug.h"
#include "llvm/Support/ManagedStatic.h"
#include "llvm/Support/raw_ostream.h"
-#include "llvm/System/RWMutex.h"
-#include "llvm/System/Threading.h"
#include <algorithm>
using namespace llvm;
#define DEBUG_SYMBOL_TABLE 0
#define DEBUG_ABSTYPE 0
-static ManagedStatic<sys::SmartRWMutex<true> > TypeSymbolTableLock;
-
TypeSymbolTable::~TypeSymbolTable() {
// Drop all abstract type references in the type plane...
for (iterator TI = tmap.begin(), TE = tmap.end(); TI != TE; ++TI) {
}
}
-std::string TypeSymbolTable::getUniqueName(const StringRef &BaseName) const {
+std::string TypeSymbolTable::getUniqueName(StringRef BaseName) const {
std::string TryName = BaseName;
- sys::SmartScopedReader<true> Reader(*TypeSymbolTableLock);
-
const_iterator End = tmap.end();
// See if the name exists
}
// lookup a type by name - returns null on failure
-Type* TypeSymbolTable::lookup(const StringRef &Name) const {
- sys::SmartScopedReader<true> Reader(*TypeSymbolTableLock);
-
+Type* TypeSymbolTable::lookup(StringRef Name) const {
const_iterator TI = tmap.find(Name);
Type* result = 0;
if (TI != tmap.end())
return result;
}
-TypeSymbolTable::iterator TypeSymbolTable::find(const StringRef &Name) {
- sys::SmartScopedReader<true> Reader(*TypeSymbolTableLock);
- return tmap.find(Name);
-}
-
-TypeSymbolTable::const_iterator
-TypeSymbolTable::find(const StringRef &Name) const {
- sys::SmartScopedReader<true> Reader(*TypeSymbolTableLock);
- return tmap.find(Name);
-}
-
// remove - Remove a type from the symbol table...
Type* TypeSymbolTable::remove(iterator Entry) {
- TypeSymbolTableLock->writer_acquire();
-
assert(Entry != tmap.end() && "Invalid entry to remove!");
const Type* Result = Entry->second;
#if DEBUG_SYMBOL_TABLE
dump();
- errs() << " Removing Value: " << Result->getName() << "\n";
+ dbgs() << " Removing Value: " << Result->getDescription() << "\n";
#endif
tmap.erase(Entry);
- TypeSymbolTableLock->writer_release();
-
// If we are removing an abstract type, remove the symbol table from it's use
// list...
if (Result->isAbstract()) {
#if DEBUG_ABSTYPE
- errs() << "Removing abstract type from symtab"
+ dbgs() << "Removing abstract type from symtab"
<< Result->getDescription()
<< "\n";
#endif
// insert - Insert a type into the symbol table with the specified name...
-void TypeSymbolTable::insert(const StringRef &Name, const Type* T) {
+void TypeSymbolTable::insert(StringRef Name, const Type* T) {
assert(T && "Can't insert null type into symbol table!");
- TypeSymbolTableLock->writer_acquire();
-
if (tmap.insert(std::make_pair(Name, T)).second) {
// Type inserted fine with no conflict.
#if DEBUG_SYMBOL_TABLE
dump();
- errs() << " Inserted type: " << Name << ": " << T->getDescription() << "\n";
+ dbgs() << " Inserted type: " << Name << ": " << T->getDescription() << "\n";
#endif
} else {
// If there is a name conflict...
#if DEBUG_SYMBOL_TABLE
dump();
- errs() << " Inserting type: " << UniqueName << ": "
+ dbgs() << " Inserting type: " << UniqueName << ": "
<< T->getDescription() << "\n";
#endif
tmap.insert(make_pair(UniqueName, T));
}
- TypeSymbolTableLock->writer_release();
-
// If we are adding an abstract type, add the symbol table to it's use list.
if (T->isAbstract()) {
cast<DerivedType>(T)->addAbstractTypeUser(this);
#if DEBUG_ABSTYPE
- errs() << "Added abstract type to ST: " << T->getDescription() << "\n";
+ dbgs() << "Added abstract type to ST: " << T->getDescription() << "\n";
#endif
}
}
// This function is called when one of the types in the type plane are refined
void TypeSymbolTable::refineAbstractType(const DerivedType *OldType,
const Type *NewType) {
- sys::SmartScopedReader<true> Reader(*TypeSymbolTableLock);
-
// Loop over all of the types in the symbol table, replacing any references
// to OldType with references to NewType. Note that there may be multiple
// occurrences, and although we only need to remove one at a time, it's
for (iterator I = begin(), E = end(); I != E; ++I) {
if (I->second == (Type*)OldType) { // FIXME when Types aren't const.
#if DEBUG_ABSTYPE
- errs() << "Removing type " << OldType->getDescription() << "\n";
+ dbgs() << "Removing type " << OldType->getDescription() << "\n";
#endif
OldType->removeAbstractTypeUser(this);
I->second = (Type*)NewType; // TODO FIXME when types aren't const
if (NewType->isAbstract()) {
#if DEBUG_ABSTYPE
- errs() << "Added type " << NewType->getDescription() << "\n";
+ dbgs() << "Added type " << NewType->getDescription() << "\n";
#endif
cast<DerivedType>(NewType)->addAbstractTypeUser(this);
}
// Loop over all of the types in the symbol table, dropping any abstract
// type user entries for AbsTy which occur because there are names for the
// type.
- sys::SmartScopedReader<true> Reader(*TypeSymbolTableLock);
for (iterator TI = begin(), TE = end(); TI != TE; ++TI)
if (TI->second == const_cast<Type*>(static_cast<const Type*>(AbsTy)))
AbsTy->removeAbstractTypeUser(this);
}
static void DumpTypes(const std::pair<const std::string, const Type*>& T ) {
- errs() << " '" << T.first << "' = ";
+ dbgs() << " '" << T.first << "' = ";
T.second->dump();
- errs() << "\n";
+ dbgs() << "\n";
}
void TypeSymbolTable::dump() const {
- errs() << "TypeSymbolPlane: ";
- sys::SmartScopedReader<true> Reader(*TypeSymbolTableLock);
+ dbgs() << "TypeSymbolPlane: ";
for_each(tmap.begin(), tmap.end(), DumpTypes);
}
-// vim: sw=2 ai