/*
- * Copyright (C) 2008 Apple Inc. All rights reserved.
+ * Copyright (C) 2008, 2009 Apple Inc. All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions
#define StructureTransitionTable_h
#include "UString.h"
+#include "WeakGCMap.h"
#include <wtf/HashFunctions.h>
-#include <wtf/HashMap.h>
#include <wtf/HashTraits.h>
+#include <wtf/OwnPtr.h>
#include <wtf/RefPtr.h>
namespace JSC {
- class Structure;
+class Structure;
- struct StructureTransitionTableHash {
- typedef std::pair<RefPtr<UString::Rep>, unsigned> Key;
+class StructureTransitionTable {
+ static const intptr_t UsingSingleSlotFlag = 1;
+
+ struct Hash {
+ typedef std::pair<RefPtr<StringImpl>, unsigned> Key;
static unsigned hash(const Key& p)
{
- return p.first->computedHash();
+ return p.first->existingHash();
}
static bool equal(const Key& a, const Key& b)
static const bool safeToCompareToEmptyOrDeleted = true;
};
- struct StructureTransitionTableHashTraits {
- typedef WTF::HashTraits<RefPtr<UString::Rep> > FirstTraits;
+ struct HashTraits {
+ typedef WTF::HashTraits<RefPtr<StringImpl> > FirstTraits;
typedef WTF::GenericHashTraits<unsigned> SecondTraits;
- typedef std::pair<FirstTraits::TraitType, SecondTraits::TraitType> TraitType;
+ typedef std::pair<FirstTraits::TraitType, SecondTraits::TraitType > TraitType;
static const bool emptyValueIsZero = FirstTraits::emptyValueIsZero && SecondTraits::emptyValueIsZero;
static TraitType emptyValue() { return std::make_pair(FirstTraits::emptyValue(), SecondTraits::emptyValue()); }
static bool isDeletedValue(const TraitType& value) { return FirstTraits::isDeletedValue(value.first); }
};
- typedef HashMap<StructureTransitionTableHash::Key, Structure*, StructureTransitionTableHash, StructureTransitionTableHashTraits> StructureTransitionTable;
+ struct WeakGCMapFinalizerCallback {
+ static void* finalizerContextFor(Hash::Key)
+ {
+ return 0;
+ }
+
+ static inline Hash::Key keyForFinalizer(void* context, Structure* structure)
+ {
+ return keyForWeakGCMapFinalizer(context, structure);
+ }
+ };
+
+ typedef WeakGCMap<Hash::Key, Structure, WeakGCMapFinalizerCallback, Hash, HashTraits> TransitionMap;
+
+ static Hash::Key keyForWeakGCMapFinalizer(void* context, Structure*);
+
+public:
+ StructureTransitionTable()
+ : m_data(UsingSingleSlotFlag)
+ {
+ }
+
+ ~StructureTransitionTable()
+ {
+ if (!isUsingSingleSlot())
+ delete map();
+ else
+ clearSingleTransition();
+ }
+
+ inline void add(JSGlobalData&, Structure*);
+ inline void remove(Structure*);
+ inline bool contains(StringImpl* rep, unsigned attributes) const;
+ inline Structure* get(StringImpl* rep, unsigned attributes) const;
+
+private:
+ bool isUsingSingleSlot() const
+ {
+ return m_data & UsingSingleSlotFlag;
+ }
+
+ TransitionMap* map() const
+ {
+ ASSERT(!isUsingSingleSlot());
+ return reinterpret_cast<TransitionMap*>(m_data);
+ }
+
+ HandleSlot slot() const
+ {
+ ASSERT(isUsingSingleSlot());
+ return reinterpret_cast<HandleSlot>(m_data & ~UsingSingleSlotFlag);
+ }
+
+ void setMap(TransitionMap* map)
+ {
+ ASSERT(isUsingSingleSlot());
+
+ if (HandleSlot slot = this->slot())
+ HandleHeap::heapFor(slot)->deallocate(slot);
+
+ // This implicitly clears the flag that indicates we're using a single transition
+ m_data = reinterpret_cast<intptr_t>(map);
+
+ ASSERT(!isUsingSingleSlot());
+ }
+
+ Structure* singleTransition() const
+ {
+ ASSERT(isUsingSingleSlot());
+ if (HandleSlot slot = this->slot()) {
+ if (*slot)
+ return reinterpret_cast<Structure*>(slot->asCell());
+ }
+ return 0;
+ }
+
+ void clearSingleTransition()
+ {
+ ASSERT(isUsingSingleSlot());
+ if (HandleSlot slot = this->slot())
+ HandleHeap::heapFor(slot)->deallocate(slot);
+ }
+
+ void setSingleTransition(JSGlobalData& globalData, Structure* structure)
+ {
+ ASSERT(isUsingSingleSlot());
+ HandleSlot slot = this->slot();
+ if (!slot) {
+ slot = globalData.allocateGlobalHandle();
+ HandleHeap::heapFor(slot)->makeWeak(slot, 0, 0);
+ m_data = reinterpret_cast<intptr_t>(slot) | UsingSingleSlotFlag;
+ }
+ HandleHeap::heapFor(slot)->writeBarrier(slot, reinterpret_cast<JSCell*>(structure));
+ *slot = reinterpret_cast<JSCell*>(structure);
+ }
+
+ intptr_t m_data;
+};
} // namespace JSC