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/*
* Copyright (C) 1999-2000 Harri Porten (porten@kde.org)
* Copyright (C) 2003, 2006, 2007, 2008, 2009 Apple Inc. All rights reserved.
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation; either
* version 2 of the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with this library; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*
*/
#ifndef Lookup_h
#define Lookup_h
#include "CallFrame.h"
#include "Intrinsic.h"
#include "Identifier.h"
#include "JSGlobalObject.h"
#include "PropertySlot.h"
#include <stdio.h>
#include <wtf/Assertions.h>
namespace JSC {
// Hash table generated by the create_hash_table script.
struct HashTableValue {
const char* key; // property name
unsigned char attributes; // JSObject attributes
intptr_t value1;
intptr_t value2;
Intrinsic intrinsic;
};
// FIXME: There is no reason this get function can't be simpler.
// ie. typedef JSValue (*GetFunction)(ExecState*, JSObject* baseObject)
typedef PropertySlot::GetValueFunc GetFunction;
typedef void (*PutFunction)(ExecState*, JSObject* baseObject, JSValue value);
class HashEntry {
WTF_MAKE_FAST_ALLOCATED;
public:
void initialize(StringImpl* key, unsigned char attributes, intptr_t v1, intptr_t v2, Intrinsic intrinsic)
{
m_key = key;
m_attributes = attributes;
m_u.store.value1 = v1;
m_u.store.value2 = v2;
m_intrinsic = intrinsic;
m_next = 0;
}
void setKey(StringImpl* key) { m_key = key; }
StringImpl* key() const { return m_key; }
unsigned char attributes() const { return m_attributes; }
Intrinsic intrinsic() const
{
ASSERT(m_attributes & Function);
return m_intrinsic;
}
NativeFunction function() const { ASSERT(m_attributes & Function); return m_u.function.functionValue; }
unsigned char functionLength() const { ASSERT(m_attributes & Function); return static_cast<unsigned char>(m_u.function.length); }
GetFunction propertyGetter() const { ASSERT(!(m_attributes & Function)); return m_u.property.get; }
PutFunction propertyPutter() const { ASSERT(!(m_attributes & Function)); return m_u.property.put; }
intptr_t lexerValue() const { ASSERT(!m_attributes); return m_u.lexer.value; }
void setNext(HashEntry *next) { m_next = next; }
HashEntry* next() const { return m_next; }
private:
StringImpl* m_key;
unsigned char m_attributes; // JSObject attributes
Intrinsic m_intrinsic;
union {
struct {
intptr_t value1;
intptr_t value2;
} store;
struct {
NativeFunction functionValue;
intptr_t length; // number of arguments for function
} function;
struct {
GetFunction get;
PutFunction put;
} property;
struct {
intptr_t value;
intptr_t unused;
} lexer;
} m_u;
HashEntry* m_next;
};
struct HashTable {
int compactSize;
int compactHashSizeMask;
const HashTableValue* values; // Fixed values generated by script.
mutable const HashEntry* table; // Table allocated at runtime.
ALWAYS_INLINE HashTable copy() const
{
// Don't copy dynamic table since it's thread specific.
HashTable result = { compactSize, compactHashSizeMask, values, 0 };
return result;
}
ALWAYS_INLINE void initializeIfNeeded(VM* vm) const
{
if (!table)
createTable(vm);
}
ALWAYS_INLINE void initializeIfNeeded(ExecState* exec) const
{
if (!table)
createTable(&exec->vm());
}
JS_EXPORT_PRIVATE void deleteTable() const;
// Find an entry in the table, and return the entry.
ALWAYS_INLINE const HashEntry* entry(VM* vm, PropertyName identifier) const
{
initializeIfNeeded(vm);
return entry(identifier);
}
ALWAYS_INLINE const HashEntry* entry(ExecState* exec, PropertyName identifier) const
{
initializeIfNeeded(exec);
return entry(identifier);
}
class ConstIterator {
public:
ConstIterator(const HashTable* table, int position)
: m_table(table)
, m_position(position)
{
skipInvalidKeys();
}
const HashEntry* operator->()
{
return &m_table->table[m_position];
}
const HashEntry* operator*()
{
return &m_table->table[m_position];
}
bool operator!=(const ConstIterator& other)
{
ASSERT(m_table == other.m_table);
return m_position != other.m_position;
}
ConstIterator& operator++()
{
ASSERT(m_position < m_table->compactSize);
++m_position;
skipInvalidKeys();
return *this;
}
private:
void skipInvalidKeys()
{
ASSERT(m_position <= m_table->compactSize);
while (m_position < m_table->compactSize && !m_table->table[m_position].key())
++m_position;
ASSERT(m_position <= m_table->compactSize);
}
const HashTable* m_table;
int m_position;
};
ConstIterator begin(VM& vm) const
{
initializeIfNeeded(&vm);
return ConstIterator(this, 0);
}
ConstIterator end(VM& vm) const
{
initializeIfNeeded(&vm);
return ConstIterator(this, compactSize);
}
private:
ALWAYS_INLINE const HashEntry* entry(PropertyName propertyName) const
{
StringImpl* impl = propertyName.publicName();
if (!impl)
return 0;
ASSERT(table);
const HashEntry* entry = &table[impl->existingHash() & compactHashSizeMask];
if (!entry->key())
return 0;
do {
if (entry->key() == impl)
return entry;
entry = entry->next();
} while (entry);
return 0;
}
// Convert the hash table keys to identifiers.
JS_EXPORT_PRIVATE void createTable(VM*) const;
};
JS_EXPORT_PRIVATE bool setUpStaticFunctionSlot(ExecState*, const HashEntry*, JSObject* thisObject, PropertyName, PropertySlot&);
/**
* This method does it all (looking in the hashtable, checking for function
* overrides, creating the function or retrieving from cache, calling
* getValueProperty in case of a non-function property, forwarding to parent if
* unknown property).
*/
template <class ThisImp, class ParentImp>
inline bool getStaticPropertySlot(ExecState* exec, const HashTable* table, ThisImp* thisObj, PropertyName propertyName, PropertySlot& slot)
{
const HashEntry* entry = table->entry(exec, propertyName);
if (!entry) // not found, forward to parent
return ParentImp::getOwnPropertySlot(thisObj, exec, propertyName, slot);
if (entry->attributes() & Function)
return setUpStaticFunctionSlot(exec, entry, thisObj, propertyName, slot);
slot.setCacheableCustom(thisObj, entry->propertyGetter());
return true;
}
template <class ThisImp, class ParentImp>
inline bool getStaticPropertyDescriptor(ExecState* exec, const HashTable* table, ThisImp* thisObj, PropertyName propertyName, PropertyDescriptor& descriptor)
{
const HashEntry* entry = table->entry(exec, propertyName);
if (!entry) // not found, forward to parent
return ParentImp::getOwnPropertyDescriptor(thisObj, exec, propertyName, descriptor);
PropertySlot slot;
if (entry->attributes() & Function) {
bool present = setUpStaticFunctionSlot(exec, entry, thisObj, propertyName, slot);
if (present)
descriptor.setDescriptor(slot.getValue(exec, propertyName), entry->attributes());
return present;
}
slot.setCustom(thisObj, entry->propertyGetter());
descriptor.setDescriptor(slot.getValue(exec, propertyName), entry->attributes());
return true;
}
/**
* Simplified version of getStaticPropertySlot in case there are only functions.
* Using this instead of getStaticPropertySlot allows 'this' to avoid implementing
* a dummy getValueProperty.
*/
template <class ParentImp>
inline bool getStaticFunctionSlot(ExecState* exec, const HashTable* table, JSObject* thisObj, PropertyName propertyName, PropertySlot& slot)
{
if (ParentImp::getOwnPropertySlot(thisObj, exec, propertyName, slot))
return true;
const HashEntry* entry = table->entry(exec, propertyName);
if (!entry)
return false;
return setUpStaticFunctionSlot(exec, entry, thisObj, propertyName, slot);
}
/**
* Simplified version of getStaticPropertyDescriptor in case there are only functions.
* Using this instead of getStaticPropertyDescriptor allows 'this' to avoid implementing
* a dummy getValueProperty.
*/
template <class ParentImp>
inline bool getStaticFunctionDescriptor(ExecState* exec, const HashTable* table, JSObject* thisObj, PropertyName propertyName, PropertyDescriptor& descriptor)
{
if (ParentImp::getOwnPropertyDescriptor(static_cast<ParentImp*>(thisObj), exec, propertyName, descriptor))
return true;
const HashEntry* entry = table->entry(exec, propertyName);
if (!entry)
return false;
PropertySlot slot;
bool present = setUpStaticFunctionSlot(exec, entry, thisObj, propertyName, slot);
if (present)
descriptor.setDescriptor(slot.getValue(exec, propertyName), entry->attributes());
return present;
}
/**
* Simplified version of getStaticPropertySlot in case there are no functions, only "values".
* Using this instead of getStaticPropertySlot removes the need for a FuncImp class.
*/
template <class ThisImp, class ParentImp>
inline bool getStaticValueSlot(ExecState* exec, const HashTable* table, ThisImp* thisObj, PropertyName propertyName, PropertySlot& slot)
{
const HashEntry* entry = table->entry(exec, propertyName);
if (!entry) // not found, forward to parent
return ParentImp::getOwnPropertySlot(thisObj, exec, propertyName, slot);
ASSERT(!(entry->attributes() & Function));
slot.setCacheableCustom(thisObj, entry->propertyGetter());
return true;
}
/**
* Simplified version of getStaticPropertyDescriptor in case there are no functions, only "values".
* Using this instead of getStaticPropertyDescriptor removes the need for a FuncImp class.
*/
template <class ThisImp, class ParentImp>
inline bool getStaticValueDescriptor(ExecState* exec, const HashTable* table, ThisImp* thisObj, PropertyName propertyName, PropertyDescriptor& descriptor)
{
const HashEntry* entry = table->entry(exec, propertyName);
if (!entry) // not found, forward to parent
return ParentImp::getOwnPropertyDescriptor(thisObj, exec, propertyName, descriptor);
ASSERT(!(entry->attributes() & Function));
PropertySlot slot;
slot.setCustom(thisObj, entry->propertyGetter());
descriptor.setDescriptor(slot.getValue(exec, propertyName), entry->attributes());
return true;
}
template <class ThisImp>
inline void putEntry(ExecState* exec, const HashEntry* entry, PropertyName propertyName, JSValue value, ThisImp* thisObj, bool shouldThrow = false)
{
// If this is a function put it as an override property.
if (entry->attributes() & Function)
thisObj->putDirect(exec->vm(), propertyName, value);
else if (!(entry->attributes() & ReadOnly))
entry->propertyPutter()(exec, thisObj, value);
else if (shouldThrow)
throwTypeError(exec, StrictModeReadonlyPropertyWriteError);
}
/**
* This one is for "put".
* It looks up a hash entry for the property to be set. If an entry
* is found it sets the value and returns true, else it returns false.
*/
template <class ThisImp>
inline bool lookupPut(ExecState* exec, PropertyName propertyName, JSValue value, const HashTable* table, ThisImp* thisObj, bool shouldThrow = false)
{
const HashEntry* entry = table->entry(exec, propertyName);
if (!entry)
return false;
putEntry<ThisImp>(exec, entry, propertyName, value, thisObj, shouldThrow);
return true;
}
/**
* This one is for "put".
* It calls lookupPut<ThisImp>() to set the value. If that call
* returns false (meaning no entry in the hash table was found),
* then it calls put() on the ParentImp class.
*/
template <class ThisImp, class ParentImp>
inline void lookupPut(ExecState* exec, PropertyName propertyName, JSValue value, const HashTable* table, ThisImp* thisObj, PutPropertySlot& slot)
{
if (!lookupPut<ThisImp>(exec, propertyName, value, table, thisObj, slot.isStrictMode()))
ParentImp::put(thisObj, exec, propertyName, value, slot); // not found: forward to parent
}
} // namespace JSC
#endif // Lookup_h
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