mirror of
https://github.com/darlinghq/darling-JavaScriptCore.git
synced 2025-04-18 06:49:59 +00:00
599 lines
20 KiB
C++
599 lines
20 KiB
C++
/*
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* Copyright (C) 2013-2018 Apple Inc. All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY APPLE INC. ``AS IS'' AND ANY
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* EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
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* PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL APPLE INC. OR
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* CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
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* PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY
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* OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#pragma once
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#include "JSArrayBufferView.h"
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#include "JSCJSValueInlines.h"
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#include "JSGlobalObject.h"
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#include "PropertyMapHashTable.h"
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#include "Structure.h"
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#include "StructureChain.h"
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#include "StructureRareDataInlines.h"
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namespace JSC {
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inline Structure* Structure::create(VM& vm, JSGlobalObject* globalObject, JSValue prototype, const TypeInfo& typeInfo, const ClassInfo* classInfo, IndexingType indexingType, unsigned inlineCapacity)
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{
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ASSERT(vm.structureStructure);
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ASSERT(classInfo);
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if (auto* object = prototype.getObject()) {
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ASSERT(!object->anyObjectInChainMayInterceptIndexedAccesses(vm) || hasSlowPutArrayStorage(indexingType) || !hasIndexedProperties(indexingType));
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object->didBecomePrototype();
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}
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Structure* structure = new (NotNull, allocateCell<Structure>(vm.heap)) Structure(vm, globalObject, prototype, typeInfo, classInfo, indexingType, inlineCapacity);
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structure->finishCreation(vm);
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return structure;
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}
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inline Structure* Structure::createStructure(VM& vm)
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{
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ASSERT(!vm.structureStructure);
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Structure* structure = new (NotNull, allocateCell<Structure>(vm.heap)) Structure(vm);
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structure->finishCreation(vm, CreatingEarlyCell);
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return structure;
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}
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inline Structure* Structure::create(VM& vm, Structure* previous, DeferredStructureTransitionWatchpointFire* deferred)
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{
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ASSERT(vm.structureStructure);
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Structure* newStructure = new (NotNull, allocateCell<Structure>(vm.heap)) Structure(vm, previous, deferred);
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newStructure->finishCreation(vm, previous);
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return newStructure;
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}
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inline bool Structure::mayInterceptIndexedAccesses() const
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{
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if (indexingModeIncludingHistory() & MayHaveIndexedAccessors)
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return true;
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// Consider a scenario where object O (of global G1)'s prototype is set to A
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// (of global G2), and G2 is already having a bad time. If an object B with
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// indexed accessors is then set as the prototype of A:
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// O -> A -> B
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// Then, O should be converted to SlowPutArrayStorage (because it now has an
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// object with indexed accessors in its prototype chain). But it won't be
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// converted because this conversion is done by JSGlobalObject::haveAbadTime(),
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// but G2 is already having a bad time. We solve this by conservatively
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// treating A as potentially having indexed accessors if its global is already
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// having a bad time. Hence, when A is set as O's prototype, O will be
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// converted to SlowPutArrayStorage.
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JSGlobalObject* globalObject = this->globalObject();
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if (!globalObject)
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return false;
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return globalObject->isHavingABadTime();
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}
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inline JSObject* Structure::storedPrototypeObject() const
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{
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ASSERT(hasMonoProto());
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JSValue value = m_prototype.get();
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if (value.isNull())
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return nullptr;
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return asObject(value);
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}
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inline Structure* Structure::storedPrototypeStructure() const
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{
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ASSERT(hasMonoProto());
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JSObject* object = storedPrototypeObject();
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if (!object)
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return nullptr;
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return object->structure();
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}
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ALWAYS_INLINE JSValue Structure::storedPrototype(const JSObject* object) const
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{
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ASSERT(object->structure() == this);
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if (hasMonoProto())
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return storedPrototype();
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return object->getDirect(knownPolyProtoOffset);
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}
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ALWAYS_INLINE JSObject* Structure::storedPrototypeObject(const JSObject* object) const
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{
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ASSERT(object->structure() == this);
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if (hasMonoProto())
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return storedPrototypeObject();
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JSValue proto = object->getDirect(knownPolyProtoOffset);
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if (proto.isNull())
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return nullptr;
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return asObject(proto);
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}
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ALWAYS_INLINE Structure* Structure::storedPrototypeStructure(const JSObject* object) const
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{
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if (JSObject* proto = storedPrototypeObject(object))
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return proto->structure();
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return nullptr;
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}
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ALWAYS_INLINE PropertyOffset Structure::get(VM& vm, PropertyName propertyName)
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{
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unsigned attributes;
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return get(vm, propertyName, attributes);
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}
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ALWAYS_INLINE PropertyOffset Structure::get(VM& vm, PropertyName propertyName, unsigned& attributes)
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{
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ASSERT(!isCompilationThread());
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ASSERT(structure(vm)->classInfo() == info());
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PropertyTable* propertyTable = ensurePropertyTableIfNotEmpty(vm);
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if (!propertyTable)
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return invalidOffset;
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PropertyMapEntry* entry = propertyTable->get(propertyName.uid());
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if (!entry)
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return invalidOffset;
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attributes = entry->attributes;
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return entry->offset;
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}
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template<typename Functor>
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void Structure::forEachPropertyConcurrently(const Functor& functor)
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{
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Vector<Structure*, 8> structures;
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Structure* structure;
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PropertyTable* table;
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findStructuresAndMapForMaterialization(structures, structure, table);
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if (table) {
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for (auto& entry : *table) {
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if (!functor(entry)) {
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structure->m_lock.unlock();
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return;
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}
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}
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structure->m_lock.unlock();
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}
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for (unsigned i = structures.size(); i--;) {
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structure = structures[i];
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if (!structure->m_nameInPrevious)
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continue;
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if (!functor(PropertyMapEntry(structure->m_nameInPrevious.get(), structure->m_offset, structure->attributesInPrevious())))
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return;
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}
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}
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template<typename Functor>
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void Structure::forEachProperty(VM& vm, const Functor& functor)
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{
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if (PropertyTable* table = ensurePropertyTableIfNotEmpty(vm)) {
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for (auto& entry : *table) {
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if (!functor(entry))
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return;
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}
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}
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}
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inline PropertyOffset Structure::getConcurrently(UniquedStringImpl* uid)
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{
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unsigned attributesIgnored;
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return getConcurrently(uid, attributesIgnored);
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}
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inline bool Structure::hasIndexingHeader(const JSCell* cell) const
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{
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if (hasIndexedProperties(indexingType()))
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return true;
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if (!isTypedView(typedArrayTypeForType(m_blob.type())))
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return false;
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return jsCast<const JSArrayBufferView*>(cell)->mode() == WastefulTypedArray;
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}
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inline bool Structure::masqueradesAsUndefined(JSGlobalObject* lexicalGlobalObject)
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{
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return typeInfo().masqueradesAsUndefined() && globalObject() == lexicalGlobalObject;
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}
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inline bool Structure::transitivelyTransitionedFrom(Structure* structureToFind)
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{
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for (Structure* current = this; current; current = current->previousID()) {
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if (current == structureToFind)
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return true;
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}
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return false;
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}
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inline void Structure::setCachedOwnKeys(VM& vm, JSImmutableButterfly* ownKeys)
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{
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ensureRareData(vm)->setCachedOwnKeys(vm, ownKeys);
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}
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inline JSImmutableButterfly* Structure::cachedOwnKeys() const
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{
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if (!hasRareData())
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return nullptr;
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return rareData()->cachedOwnKeys();
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}
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inline JSImmutableButterfly* Structure::cachedOwnKeysIgnoringSentinel() const
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{
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if (!hasRareData())
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return nullptr;
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return rareData()->cachedOwnKeysIgnoringSentinel();
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}
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inline bool Structure::canCacheOwnKeys() const
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{
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if (isDictionary())
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return false;
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if (hasIndexedProperties(indexingType()))
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return false;
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if (typeInfo().overridesGetPropertyNames())
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return false;
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return true;
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}
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ALWAYS_INLINE JSValue prototypeForLookupPrimitiveImpl(JSGlobalObject* globalObject, const Structure* structure)
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{
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ASSERT(!structure->isObject());
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if (structure->typeInfo().type() == StringType)
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return globalObject->stringPrototype();
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if (structure->typeInfo().type() == BigIntType)
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return globalObject->bigIntPrototype();
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ASSERT(structure->typeInfo().type() == SymbolType);
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return globalObject->symbolPrototype();
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}
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inline JSValue Structure::prototypeForLookup(JSGlobalObject* globalObject) const
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{
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ASSERT(hasMonoProto());
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if (isObject())
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return storedPrototype();
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return prototypeForLookupPrimitiveImpl(globalObject, this);
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}
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inline JSValue Structure::prototypeForLookup(JSGlobalObject* globalObject, JSCell* base) const
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{
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ASSERT(base->structure() == this);
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if (isObject())
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return storedPrototype(asObject(base));
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return prototypeForLookupPrimitiveImpl(globalObject, this);
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}
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inline StructureChain* Structure::prototypeChain(VM& vm, JSGlobalObject* globalObject, JSObject* base) const
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{
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ASSERT(base->structure(vm) == this);
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// We cache our prototype chain so our clients can share it.
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if (!isValid(globalObject, m_cachedPrototypeChain.get(), base)) {
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JSValue prototype = prototypeForLookup(globalObject, base);
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m_cachedPrototypeChain.set(vm, this, StructureChain::create(vm, prototype.isNull() ? nullptr : asObject(prototype)));
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}
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return m_cachedPrototypeChain.get();
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}
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inline StructureChain* Structure::prototypeChain(ExecState* exec, JSObject* base) const
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{
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return prototypeChain(exec->vm(), exec->lexicalGlobalObject(), base);
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}
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inline bool Structure::isValid(JSGlobalObject* globalObject, StructureChain* cachedPrototypeChain, JSObject* base) const
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{
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if (!cachedPrototypeChain)
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return false;
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VM& vm = globalObject->vm();
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JSValue prototype = prototypeForLookup(globalObject, base);
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WriteBarrier<Structure>* cachedStructure = cachedPrototypeChain->head();
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while (*cachedStructure && !prototype.isNull()) {
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if (asObject(prototype)->structure(vm) != cachedStructure->get())
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return false;
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++cachedStructure;
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prototype = asObject(prototype)->getPrototypeDirect(vm);
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}
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return prototype.isNull() && !*cachedStructure;
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}
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inline void Structure::didReplaceProperty(PropertyOffset offset)
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{
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if (LIKELY(!hasRareData()))
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return;
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StructureRareData::PropertyWatchpointMap* map = rareData()->m_replacementWatchpointSets.get();
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if (LIKELY(!map))
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return;
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WatchpointSet* set = map->get(offset);
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if (LIKELY(!set))
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return;
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set->fireAll(*vm(), "Property did get replaced");
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}
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inline WatchpointSet* Structure::propertyReplacementWatchpointSet(PropertyOffset offset)
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{
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ConcurrentJSLocker locker(m_lock);
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if (!hasRareData())
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return nullptr;
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WTF::loadLoadFence();
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StructureRareData::PropertyWatchpointMap* map = rareData()->m_replacementWatchpointSets.get();
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if (!map)
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return nullptr;
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return map->get(offset);
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}
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template<typename DetailsFunc>
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ALWAYS_INLINE bool Structure::checkOffsetConsistency(PropertyTable* propertyTable, const DetailsFunc& detailsFunc) const
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{
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// We cannot reliably assert things about the property table in the concurrent
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// compilation thread. It is possible for the table to be stolen and then have
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// things added to it, which leads to the offsets being all messed up. We could
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// get around this by grabbing a lock here, but I think that would be overkill.
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if (isCompilationThread())
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return true;
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unsigned totalSize = propertyTable->propertyStorageSize();
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unsigned inlineOverflowAccordingToTotalSize = totalSize < m_inlineCapacity ? 0 : totalSize - m_inlineCapacity;
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auto fail = [&] (const char* description) {
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dataLog("Detected offset inconsistency: ", description, "!\n");
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dataLog("this = ", RawPointer(this), "\n");
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dataLog("m_offset = ", m_offset, "\n");
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dataLog("m_inlineCapacity = ", m_inlineCapacity, "\n");
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dataLog("propertyTable = ", RawPointer(propertyTable), "\n");
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dataLog("numberOfSlotsForLastOffset = ", numberOfSlotsForLastOffset(m_offset, m_inlineCapacity), "\n");
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dataLog("totalSize = ", totalSize, "\n");
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dataLog("inlineOverflowAccordingToTotalSize = ", inlineOverflowAccordingToTotalSize, "\n");
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dataLog("numberOfOutOfLineSlotsForLastOffset = ", numberOfOutOfLineSlotsForLastOffset(m_offset), "\n");
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detailsFunc();
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UNREACHABLE_FOR_PLATFORM();
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};
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if (numberOfSlotsForLastOffset(m_offset, m_inlineCapacity) != totalSize)
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fail("numberOfSlotsForLastOffset doesn't match totalSize");
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if (inlineOverflowAccordingToTotalSize != numberOfOutOfLineSlotsForLastOffset(m_offset))
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fail("inlineOverflowAccordingToTotalSize doesn't match numberOfOutOfLineSlotsForLastOffset");
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return true;
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}
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ALWAYS_INLINE bool Structure::checkOffsetConsistency() const
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{
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PropertyTable* propertyTable = propertyTableOrNull();
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if (!propertyTable) {
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ASSERT(!isPinnedPropertyTable());
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return true;
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}
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// We cannot reliably assert things about the property table in the concurrent
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// compilation thread. It is possible for the table to be stolen and then have
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// things added to it, which leads to the offsets being all messed up. We could
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// get around this by grabbing a lock here, but I think that would be overkill.
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if (isCompilationThread())
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return true;
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return checkOffsetConsistency(propertyTable, [] () { });
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}
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inline void Structure::checkConsistency()
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{
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checkOffsetConsistency();
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}
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inline size_t nextOutOfLineStorageCapacity(size_t currentCapacity)
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{
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if (!currentCapacity)
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return initialOutOfLineCapacity;
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return currentCapacity * outOfLineGrowthFactor;
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}
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inline void Structure::setObjectToStringValue(ExecState* exec, VM& vm, JSString* value, PropertySlot toStringTagSymbolSlot)
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{
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if (!hasRareData())
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allocateRareData(vm);
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rareData()->setObjectToStringValue(exec, vm, this, value, toStringTagSymbolSlot);
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}
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template<Structure::ShouldPin shouldPin, typename Func>
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inline PropertyOffset Structure::add(VM& vm, PropertyName propertyName, unsigned attributes, const Func& func)
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{
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PropertyTable* table = ensurePropertyTable(vm);
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GCSafeConcurrentJSLocker locker(m_lock, vm.heap);
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switch (shouldPin) {
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case ShouldPin::Yes:
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pin(locker, vm, table);
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break;
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case ShouldPin::No:
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setPropertyTable(vm, table);
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break;
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}
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ASSERT(!JSC::isValidOffset(get(vm, propertyName)));
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checkConsistency();
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if (attributes & PropertyAttribute::DontEnum || propertyName.isSymbol())
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setIsQuickPropertyAccessAllowedForEnumeration(false);
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if (propertyName == vm.propertyNames->underscoreProto)
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setHasUnderscoreProtoPropertyExcludingOriginalProto(true);
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auto rep = propertyName.uid();
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PropertyOffset newOffset = table->nextOffset(m_inlineCapacity);
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m_propertyHash = m_propertyHash ^ rep->existingSymbolAwareHash();
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PropertyOffset newLastOffset = m_offset;
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table->add(PropertyMapEntry(rep, newOffset, attributes), newLastOffset, PropertyTable::PropertyOffsetMayChange);
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func(locker, newOffset, newLastOffset);
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ASSERT(m_offset == newLastOffset);
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checkConsistency();
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return newOffset;
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}
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template<typename Func>
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inline PropertyOffset Structure::remove(PropertyName propertyName, const Func& func)
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{
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ConcurrentJSLocker locker(m_lock);
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checkConsistency();
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auto rep = propertyName.uid();
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// We ONLY remove from uncacheable dictionaries, which will have a pinned property table.
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// The only way for them not to have a table is if they are empty.
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PropertyTable* table = propertyTableOrNull();
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if (!table)
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return invalidOffset;
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PropertyTable::find_iterator position = table->find(rep);
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if (!position.first)
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return invalidOffset;
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PropertyOffset offset = position.first->offset;
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table->remove(position);
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table->addDeletedOffset(offset);
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checkConsistency();
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func(locker, offset);
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return offset;
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}
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template<typename Func>
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inline PropertyOffset Structure::addPropertyWithoutTransition(VM& vm, PropertyName propertyName, unsigned attributes, const Func& func)
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{
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return add<ShouldPin::Yes>(vm, propertyName, attributes, func);
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}
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template<typename Func>
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inline PropertyOffset Structure::removePropertyWithoutTransition(VM&, PropertyName propertyName, const Func& func)
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{
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ASSERT(isUncacheableDictionary());
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ASSERT(isPinnedPropertyTable());
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ASSERT(propertyTableOrNull());
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return remove(propertyName, func);
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}
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ALWAYS_INLINE void Structure::setPrototypeWithoutTransition(VM& vm, JSValue prototype)
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{
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ASSERT(isValidPrototype(prototype));
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m_prototype.set(vm, this, prototype);
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}
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ALWAYS_INLINE void Structure::setGlobalObject(VM& vm, JSGlobalObject* globalObject)
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{
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m_globalObject.set(vm, this, globalObject);
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}
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ALWAYS_INLINE void Structure::setPropertyTable(VM& vm, PropertyTable* table)
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{
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m_propertyTableUnsafe.setMayBeNull(vm, this, table);
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}
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ALWAYS_INLINE void Structure::setPreviousID(VM& vm, Structure* structure)
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{
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if (hasRareData())
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rareData()->setPreviousID(vm, structure);
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else
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m_previousOrRareData.set(vm, this, structure);
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}
|
|
|
|
ALWAYS_INLINE bool Structure::shouldConvertToPolyProto(const Structure* a, const Structure* b)
|
|
{
|
|
if (!a || !b)
|
|
return false;
|
|
|
|
if (a == b)
|
|
return false;
|
|
|
|
if (a->propertyHash() != b->propertyHash())
|
|
return false;
|
|
|
|
// We only care about objects created via a constructor's to_this. These
|
|
// all have Structures with rare data and a sharedPolyProtoWatchpoint.
|
|
if (!a->hasRareData() || !b->hasRareData())
|
|
return false;
|
|
|
|
// We only care about Structure's generated from functions that share
|
|
// the same executable.
|
|
const Box<InlineWatchpointSet>& aInlineWatchpointSet = a->rareData()->sharedPolyProtoWatchpoint();
|
|
const Box<InlineWatchpointSet>& bInlineWatchpointSet = b->rareData()->sharedPolyProtoWatchpoint();
|
|
if (aInlineWatchpointSet.get() != bInlineWatchpointSet.get() || !aInlineWatchpointSet)
|
|
return false;
|
|
ASSERT(aInlineWatchpointSet && bInlineWatchpointSet && aInlineWatchpointSet.get() == bInlineWatchpointSet.get());
|
|
|
|
if (a->hasPolyProto() || b->hasPolyProto())
|
|
return false;
|
|
|
|
if (a->storedPrototype() == b->storedPrototype())
|
|
return false;
|
|
|
|
VM& vm = *a->vm();
|
|
JSObject* aObj = a->storedPrototypeObject();
|
|
JSObject* bObj = b->storedPrototypeObject();
|
|
while (aObj && bObj) {
|
|
a = aObj->structure(vm);
|
|
b = bObj->structure(vm);
|
|
|
|
if (a->propertyHash() != b->propertyHash())
|
|
return false;
|
|
|
|
aObj = a->storedPrototypeObject(aObj);
|
|
bObj = b->storedPrototypeObject(bObj);
|
|
}
|
|
|
|
return !aObj && !bObj;
|
|
}
|
|
|
|
inline Structure* Structure::nonPropertyTransition(VM& vm, Structure* structure, NonPropertyTransition transitionKind)
|
|
{
|
|
IndexingType indexingModeIncludingHistory = newIndexingType(structure->indexingModeIncludingHistory(), transitionKind);
|
|
|
|
if (changesIndexingType(transitionKind)) {
|
|
if (JSGlobalObject* globalObject = structure->m_globalObject.get()) {
|
|
if (globalObject->isOriginalArrayStructure(structure)) {
|
|
Structure* result = globalObject->originalArrayStructureForIndexingType(indexingModeIncludingHistory);
|
|
if (result->indexingModeIncludingHistory() == indexingModeIncludingHistory) {
|
|
structure->didTransitionFromThisStructure();
|
|
return result;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
return nonPropertyTransitionSlow(vm, structure, transitionKind);
|
|
}
|
|
|
|
} // namespace JSC
|