mirror of
https://github.com/darlinghq/darling-JavaScriptCore.git
synced 2025-04-16 13:59:53 +00:00
806 lines
26 KiB
C++
806 lines
26 KiB
C++
/*
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* Copyright (C) 2008-2017 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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*
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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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* 3. Neither the name of Apple Inc. ("Apple") nor the names of
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* its contributors may be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY APPLE AND ITS CONTRIBUTORS "AS IS" AND ANY
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* EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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* WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL APPLE OR ITS CONTRIBUTORS BE LIABLE FOR ANY
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* DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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* LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
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* ON ANY THEORY 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 OF
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* 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 "CallData.h"
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#include "ConcurrentJSLock.h"
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#include "ControlFlowProfiler.h"
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#include "DateInstanceCache.h"
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#include "DeleteAllCodeEffort.h"
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#include "ExceptionEventLocation.h"
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#include "ExecutableAllocator.h"
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#include "FunctionHasExecutedCache.h"
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#include "Heap.h"
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#include "Intrinsic.h"
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#include "JITThunks.h"
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#include "JSCJSValue.h"
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#include "JSDestructibleObjectSubspace.h"
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#include "JSLock.h"
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#include "JSStringSubspace.h"
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#include "MacroAssemblerCodeRef.h"
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#include "Microtask.h"
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#include "NumericStrings.h"
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#include "PrivateName.h"
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#include "PrototypeMap.h"
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#include "SmallStrings.h"
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#include "SourceCode.h"
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#include "Strong.h"
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#include "Subspace.h"
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#include "TemplateRegistryKeyTable.h"
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#include "ThunkGenerators.h"
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#include "VMEntryRecord.h"
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#include "Watchpoint.h"
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#include <wtf/Bag.h>
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#include <wtf/BumpPointerAllocator.h>
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#include <wtf/DateMath.h>
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#include <wtf/Deque.h>
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#include <wtf/DoublyLinkedList.h>
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#include <wtf/Forward.h>
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#include <wtf/HashMap.h>
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#include <wtf/HashSet.h>
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#include <wtf/StackBounds.h>
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#include <wtf/Stopwatch.h>
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#include <wtf/ThreadSafeRefCounted.h>
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#include <wtf/ThreadSpecific.h>
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#include <wtf/WTFThreadData.h>
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#include <wtf/text/SymbolRegistry.h>
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#include <wtf/text/WTFString.h>
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#if ENABLE(REGEXP_TRACING)
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#include <wtf/ListHashSet.h>
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#endif
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namespace WTF {
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class SimpleStats;
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} // namespace WTF
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using WTF::SimpleStats;
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namespace JSC {
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class BuiltinExecutables;
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class BytecodeIntrinsicRegistry;
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class CodeBlock;
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class CodeCache;
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class CommonIdentifiers;
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class CustomGetterSetter;
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class ExecState;
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class Exception;
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class ExceptionScope;
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class HandleStack;
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class TypeProfiler;
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class TypeProfilerLog;
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class HasOwnPropertyCache;
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class HeapProfiler;
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class Identifier;
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class Interpreter;
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class JSCustomGetterSetterFunction;
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class JSGlobalObject;
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class JSObject;
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class JSWebAssemblyInstance;
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class LLIntOffsetsExtractor;
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class NativeExecutable;
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class RegExpCache;
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class Register;
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class RegisterAtOffsetList;
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#if ENABLE(SAMPLING_PROFILER)
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class SamplingProfiler;
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#endif
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class ShadowChicken;
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class ScriptExecutable;
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class SourceProvider;
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class SourceProviderCache;
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class StackFrame;
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class Structure;
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#if ENABLE(REGEXP_TRACING)
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class RegExp;
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#endif
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class Symbol;
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class TypedArrayController;
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class UnlinkedCodeBlock;
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class UnlinkedEvalCodeBlock;
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class UnlinkedFunctionExecutable;
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class UnlinkedProgramCodeBlock;
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class UnlinkedModuleProgramCodeBlock;
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class VirtualRegister;
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class VMEntryScope;
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class Watchdog;
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class Watchpoint;
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class WatchpointSet;
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#if ENABLE(DFG_JIT)
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namespace DFG {
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class LongLivedState;
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}
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#endif // ENABLE(DFG_JIT)
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#if ENABLE(FTL_JIT)
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namespace FTL {
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class Thunks;
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}
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#endif // ENABLE(FTL_JIT)
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namespace CommonSlowPaths {
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struct ArityCheckData;
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}
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namespace Profiler {
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class Database;
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}
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namespace DOMJIT {
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class Signature;
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}
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struct HashTable;
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struct Instruction;
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struct LocalTimeOffsetCache {
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LocalTimeOffsetCache()
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: start(0.0)
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, end(-1.0)
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, increment(0.0)
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, timeType(WTF::UTCTime)
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{
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}
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void reset()
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{
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offset = LocalTimeOffset();
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start = 0.0;
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end = -1.0;
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increment = 0.0;
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timeType = WTF::UTCTime;
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}
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LocalTimeOffset offset;
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double start;
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double end;
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double increment;
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WTF::TimeType timeType;
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};
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class QueuedTask {
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WTF_MAKE_NONCOPYABLE(QueuedTask);
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WTF_MAKE_FAST_ALLOCATED;
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public:
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void run();
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QueuedTask(VM& vm, JSGlobalObject* globalObject, PassRefPtr<Microtask> microtask)
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: m_globalObject(vm, globalObject)
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, m_microtask(microtask)
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{
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}
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private:
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Strong<JSGlobalObject> m_globalObject;
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RefPtr<Microtask> m_microtask;
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};
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class ConservativeRoots;
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#if COMPILER(MSVC)
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#pragma warning(push)
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#pragma warning(disable: 4200) // Disable "zero-sized array in struct/union" warning
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#endif
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struct ScratchBuffer {
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ScratchBuffer()
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{
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u.m_activeLength = 0;
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}
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static ScratchBuffer* create(size_t size)
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{
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ScratchBuffer* result = new (fastMalloc(ScratchBuffer::allocationSize(size))) ScratchBuffer;
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return result;
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}
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static size_t allocationSize(size_t bufferSize) { return sizeof(ScratchBuffer) + bufferSize; }
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void setActiveLength(size_t activeLength) { u.m_activeLength = activeLength; }
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size_t activeLength() const { return u.m_activeLength; };
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size_t* activeLengthPtr() { return &u.m_activeLength; };
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void* dataBuffer() { return m_buffer; }
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union {
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size_t m_activeLength;
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double pad; // Make sure m_buffer is double aligned.
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} u;
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#if CPU(MIPS) && (defined WTF_MIPS_ARCH_REV && WTF_MIPS_ARCH_REV == 2)
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void* m_buffer[0] __attribute__((aligned(8)));
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#else
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void* m_buffer[0];
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#endif
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};
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#if COMPILER(MSVC)
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#pragma warning(pop)
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#endif
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class VM : public ThreadSafeRefCounted<VM>, public DoublyLinkedListNode<VM> {
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public:
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// WebCore has a one-to-one mapping of threads to VMs;
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// either create() or createLeaked() should only be called once
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// on a thread, this is the 'default' VM (it uses the
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// thread's default string uniquing table from wtfThreadData).
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// API contexts created using the new context group aware interface
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// create APIContextGroup objects which require less locking of JSC
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// than the old singleton APIShared VM created for use by
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// the original API.
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enum VMType { Default, APIContextGroup, APIShared };
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struct ClientData {
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JS_EXPORT_PRIVATE virtual ~ClientData() = 0;
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};
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bool isSharedInstance() { return vmType == APIShared; }
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bool usingAPI() { return vmType != Default; }
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JS_EXPORT_PRIVATE static bool sharedInstanceExists();
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JS_EXPORT_PRIVATE static VM& sharedInstance();
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JS_EXPORT_PRIVATE static Ref<VM> create(HeapType = SmallHeap);
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JS_EXPORT_PRIVATE static Ref<VM> createLeaked(HeapType = SmallHeap);
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static Ref<VM> createContextGroup(HeapType = SmallHeap);
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JS_EXPORT_PRIVATE ~VM();
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JS_EXPORT_PRIVATE Watchdog& ensureWatchdog();
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Watchdog* watchdog() { return m_watchdog.get(); }
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HeapProfiler* heapProfiler() const { return m_heapProfiler.get(); }
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JS_EXPORT_PRIVATE HeapProfiler& ensureHeapProfiler();
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#if ENABLE(SAMPLING_PROFILER)
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SamplingProfiler* samplingProfiler() { return m_samplingProfiler.get(); }
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JS_EXPORT_PRIVATE SamplingProfiler& ensureSamplingProfiler(RefPtr<Stopwatch>&&);
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#endif
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private:
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RefPtr<JSLock> m_apiLock;
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public:
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#if ENABLE(ASSEMBLER)
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// executableAllocator should be destructed after the heap, as the heap can call executableAllocator
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// in its destructor.
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ExecutableAllocator executableAllocator;
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#endif
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// The heap should be just after executableAllocator and before other members to ensure that it's
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// destructed after all the objects that reference it.
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Heap heap;
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Subspace auxiliarySpace;
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// Whenever possible, use subspaceFor<CellType>(vm) to get one of these subspaces.
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Subspace cellSpace;
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Subspace destructibleCellSpace;
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JSStringSubspace stringSpace;
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JSDestructibleObjectSubspace destructibleObjectSpace;
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#if ENABLE(DFG_JIT)
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std::unique_ptr<DFG::LongLivedState> dfgState;
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#endif // ENABLE(DFG_JIT)
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VMType vmType;
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ClientData* clientData;
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VMEntryFrame* topVMEntryFrame;
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// NOTE: When throwing an exception while rolling back the call frame, this may be equal to
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// topVMEntryFrame.
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// FIXME: This should be a void*, because it might not point to a CallFrame.
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// https://bugs.webkit.org/show_bug.cgi?id=160441
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ExecState* topCallFrame;
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JSWebAssemblyInstance* topJSWebAssemblyInstance;
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void* topWasmMemoryPointer;
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uint32_t topWasmMemorySize;
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Strong<Structure> structureStructure;
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Strong<Structure> structureRareDataStructure;
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Strong<Structure> terminatedExecutionErrorStructure;
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Strong<Structure> stringStructure;
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Strong<Structure> propertyNameIteratorStructure;
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Strong<Structure> propertyNameEnumeratorStructure;
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Strong<Structure> customGetterSetterStructure;
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Strong<Structure> scopedArgumentsTableStructure;
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Strong<Structure> apiWrapperStructure;
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Strong<Structure> JSScopeStructure;
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Strong<Structure> executableStructure;
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Strong<Structure> nativeExecutableStructure;
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Strong<Structure> evalExecutableStructure;
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Strong<Structure> programExecutableStructure;
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Strong<Structure> functionExecutableStructure;
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#if ENABLE(WEBASSEMBLY)
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Strong<Structure> webAssemblyCalleeStructure;
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Strong<Structure> webAssemblyToJSCalleeStructure;
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Strong<JSCell> webAssemblyToJSCallee;
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#endif
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Strong<Structure> moduleProgramExecutableStructure;
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Strong<Structure> regExpStructure;
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Strong<Structure> symbolStructure;
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Strong<Structure> symbolTableStructure;
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Strong<Structure> fixedArrayStructure;
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Strong<Structure> structureChainStructure;
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Strong<Structure> sparseArrayValueMapStructure;
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Strong<Structure> templateRegistryKeyStructure;
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Strong<Structure> arrayBufferNeuteringWatchpointStructure;
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Strong<Structure> unlinkedFunctionExecutableStructure;
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Strong<Structure> unlinkedProgramCodeBlockStructure;
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Strong<Structure> unlinkedEvalCodeBlockStructure;
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Strong<Structure> unlinkedFunctionCodeBlockStructure;
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Strong<Structure> unlinkedModuleProgramCodeBlockStructure;
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Strong<Structure> propertyTableStructure;
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Strong<Structure> weakMapDataStructure;
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Strong<Structure> inferredValueStructure;
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Strong<Structure> inferredTypeStructure;
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Strong<Structure> inferredTypeTableStructure;
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Strong<Structure> functionRareDataStructure;
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Strong<Structure> exceptionStructure;
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Strong<Structure> promiseDeferredStructure;
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Strong<Structure> internalPromiseDeferredStructure;
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Strong<Structure> nativeStdFunctionCellStructure;
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Strong<Structure> programCodeBlockStructure;
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Strong<Structure> moduleProgramCodeBlockStructure;
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Strong<Structure> evalCodeBlockStructure;
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Strong<Structure> functionCodeBlockStructure;
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Strong<Structure> hashMapBucketSetStructure;
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Strong<Structure> hashMapBucketMapStructure;
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Strong<Structure> hashMapImplSetStructure;
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Strong<Structure> hashMapImplMapStructure;
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Strong<JSCell> iterationTerminator;
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Strong<JSCell> emptyPropertyNameEnumerator;
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JSCell* currentlyDestructingCallbackObject;
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const ClassInfo* currentlyDestructingCallbackObjectClassInfo;
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AtomicStringTable* m_atomicStringTable;
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WTF::SymbolRegistry m_symbolRegistry;
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TemplateRegistryKeyTable m_templateRegistryKeytable;
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CommonIdentifiers* propertyNames;
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const ArgList* emptyList;
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SmallStrings smallStrings;
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NumericStrings numericStrings;
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DateInstanceCache dateInstanceCache;
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std::unique_ptr<SimpleStats> machineCodeBytesPerBytecodeWordForBaselineJIT;
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WeakGCMap<std::pair<CustomGetterSetter*, int>, JSCustomGetterSetterFunction> customGetterSetterFunctionMap;
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WeakGCMap<StringImpl*, JSString, PtrHash<StringImpl*>> stringCache;
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Strong<JSString> lastCachedString;
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AtomicStringTable* atomicStringTable() const { return m_atomicStringTable; }
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WTF::SymbolRegistry& symbolRegistry() { return m_symbolRegistry; }
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TemplateRegistryKeyTable& templateRegistryKeyTable() { return m_templateRegistryKeytable; }
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WeakGCMap<SymbolImpl*, Symbol, PtrHash<SymbolImpl*>> symbolImplToSymbolMap;
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enum class DeletePropertyMode {
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// Default behaviour of deleteProperty, matching the spec.
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Default,
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// This setting causes deleteProperty to force deletion of all
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// properties including those that are non-configurable (DontDelete).
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IgnoreConfigurable
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};
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DeletePropertyMode deletePropertyMode()
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{
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return m_deletePropertyMode;
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}
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class DeletePropertyModeScope {
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public:
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DeletePropertyModeScope(VM& vm, DeletePropertyMode mode)
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: m_vm(vm)
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, m_previousMode(vm.m_deletePropertyMode)
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{
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m_vm.m_deletePropertyMode = mode;
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}
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~DeletePropertyModeScope()
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{
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m_vm.m_deletePropertyMode = m_previousMode;
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}
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private:
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VM& m_vm;
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DeletePropertyMode m_previousMode;
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};
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#if ENABLE(JIT)
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bool canUseJIT() { return m_canUseJIT; }
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#else
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bool canUseJIT() { return false; } // interpreter only
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#endif
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#if ENABLE(YARR_JIT)
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bool canUseRegExpJIT() { return m_canUseRegExpJIT; }
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#else
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bool canUseRegExpJIT() { return false; } // interpreter only
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#endif
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SourceProviderCache* addSourceProviderCache(SourceProvider*);
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void clearSourceProviderCaches();
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PrototypeMap prototypeMap;
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typedef HashMap<RefPtr<SourceProvider>, RefPtr<SourceProviderCache>> SourceProviderCacheMap;
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SourceProviderCacheMap sourceProviderCacheMap;
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Interpreter* interpreter;
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#if ENABLE(JIT)
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std::unique_ptr<JITThunks> jitStubs;
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MacroAssemblerCodeRef getCTIStub(ThunkGenerator generator)
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{
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return jitStubs->ctiStub(this, generator);
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}
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std::unique_ptr<RegisterAtOffsetList> allCalleeSaveRegisterOffsets;
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RegisterAtOffsetList* getAllCalleeSaveRegisterOffsets() { return allCalleeSaveRegisterOffsets.get(); }
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#endif // ENABLE(JIT)
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std::unique_ptr<CommonSlowPaths::ArityCheckData> arityCheckData;
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#if ENABLE(FTL_JIT)
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std::unique_ptr<FTL::Thunks> ftlThunks;
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#endif
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NativeExecutable* getHostFunction(NativeFunction, NativeFunction constructor, const String& name);
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NativeExecutable* getHostFunction(NativeFunction, Intrinsic, NativeFunction constructor, const DOMJIT::Signature*, const String& name);
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static ptrdiff_t exceptionOffset()
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{
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return OBJECT_OFFSETOF(VM, m_exception);
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}
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static ptrdiff_t callFrameForCatchOffset()
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{
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return OBJECT_OFFSETOF(VM, callFrameForCatch);
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}
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static ptrdiff_t targetMachinePCForThrowOffset()
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{
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return OBJECT_OFFSETOF(VM, targetMachinePCForThrow);
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}
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void restorePreviousException(Exception* exception) { setException(exception); }
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void clearLastException() { m_lastException = nullptr; }
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ExecState** addressOfCallFrameForCatch() { return &callFrameForCatch; }
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JSCell** addressOfException() { return reinterpret_cast<JSCell**>(&m_exception); }
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Exception* lastException() const { return m_lastException; }
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JSCell** addressOfLastException() { return reinterpret_cast<JSCell**>(&m_lastException); }
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void setFailNextNewCodeBlock() { m_failNextNewCodeBlock = true; }
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bool getAndClearFailNextNewCodeBlock()
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{
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bool result = m_failNextNewCodeBlock;
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m_failNextNewCodeBlock = false;
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return result;
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}
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ALWAYS_INLINE Structure* getStructure(StructureID id)
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{
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return heap.structureIDTable().get(decontaminate(id));
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}
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void* stackPointerAtVMEntry() const { return m_stackPointerAtVMEntry; }
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void setStackPointerAtVMEntry(void*);
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size_t softReservedZoneSize() const { return m_currentSoftReservedZoneSize; }
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size_t updateSoftReservedZoneSize(size_t softReservedZoneSize);
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static size_t committedStackByteCount();
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inline bool ensureStackCapacityFor(Register* newTopOfStack);
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void* stackLimit() { return m_stackLimit; }
|
|
void* softStackLimit() { return m_softStackLimit; }
|
|
void** addressOfSoftStackLimit() { return &m_softStackLimit; }
|
|
#if !ENABLE(JIT)
|
|
void* cloopStackLimit() { return m_cloopStackLimit; }
|
|
void setCLoopStackLimit(void* limit) { m_cloopStackLimit = limit; }
|
|
#endif
|
|
|
|
inline bool isSafeToRecurseSoft() const;
|
|
bool isSafeToRecurse() const
|
|
{
|
|
return isSafeToRecurse(m_stackLimit);
|
|
}
|
|
|
|
void* lastStackTop() { return m_lastStackTop; }
|
|
void setLastStackTop(void*);
|
|
|
|
const ClassInfo* const jsArrayClassInfo;
|
|
const ClassInfo* const jsFinalObjectClassInfo;
|
|
|
|
JSValue hostCallReturnValue;
|
|
unsigned varargsLength;
|
|
ExecState* newCallFrameReturnValue;
|
|
ExecState* callFrameForCatch;
|
|
void* targetMachinePCForThrow;
|
|
Instruction* targetInterpreterPCForThrow;
|
|
uint32_t osrExitIndex;
|
|
void* osrExitJumpDestination;
|
|
Vector<ScratchBuffer*> scratchBuffers;
|
|
size_t sizeOfLastScratchBuffer;
|
|
|
|
bool isExecutingInRegExpJIT { false };
|
|
|
|
ScratchBuffer* scratchBufferForSize(size_t size)
|
|
{
|
|
if (!size)
|
|
return 0;
|
|
|
|
if (size > sizeOfLastScratchBuffer) {
|
|
// Protect against a N^2 memory usage pathology by ensuring
|
|
// that at worst, we get a geometric series, meaning that the
|
|
// total memory usage is somewhere around
|
|
// max(scratch buffer size) * 4.
|
|
sizeOfLastScratchBuffer = size * 2;
|
|
|
|
ScratchBuffer* newBuffer = ScratchBuffer::create(sizeOfLastScratchBuffer);
|
|
RELEASE_ASSERT(newBuffer);
|
|
scratchBuffers.append(newBuffer);
|
|
}
|
|
|
|
ScratchBuffer* result = scratchBuffers.last();
|
|
result->setActiveLength(0);
|
|
return result;
|
|
}
|
|
|
|
EncodedJSValue* exceptionFuzzingBuffer(size_t size)
|
|
{
|
|
ASSERT(Options::useExceptionFuzz());
|
|
if (!m_exceptionFuzzBuffer)
|
|
m_exceptionFuzzBuffer = MallocPtr<EncodedJSValue>::malloc(size);
|
|
return m_exceptionFuzzBuffer.get();
|
|
}
|
|
|
|
void gatherConservativeRoots(ConservativeRoots&);
|
|
|
|
VMEntryScope* entryScope;
|
|
|
|
JSObject* stringRecursionCheckFirstObject { nullptr };
|
|
HashSet<JSObject*> stringRecursionCheckVisitedObjects;
|
|
|
|
LocalTimeOffsetCache localTimeOffsetCache;
|
|
|
|
String cachedDateString;
|
|
double cachedDateStringValue;
|
|
|
|
std::unique_ptr<Profiler::Database> m_perBytecodeProfiler;
|
|
RefPtr<TypedArrayController> m_typedArrayController;
|
|
RegExpCache* m_regExpCache;
|
|
BumpPointerAllocator m_regExpAllocator;
|
|
ConcurrentJSLock m_regExpAllocatorLock;
|
|
|
|
std::unique_ptr<HasOwnPropertyCache> m_hasOwnPropertyCache;
|
|
ALWAYS_INLINE HasOwnPropertyCache* hasOwnPropertyCache() { return m_hasOwnPropertyCache.get(); }
|
|
HasOwnPropertyCache* ensureHasOwnPropertyCache();
|
|
|
|
#if ENABLE(REGEXP_TRACING)
|
|
typedef ListHashSet<RegExp*> RTTraceList;
|
|
RTTraceList* m_rtTraceList;
|
|
#endif
|
|
|
|
bool hasExclusiveThread() const { return m_apiLock->hasExclusiveThread(); }
|
|
std::thread::id exclusiveThread() const { return m_apiLock->exclusiveThread(); }
|
|
void setExclusiveThread(std::thread::id threadId) { m_apiLock->setExclusiveThread(threadId); }
|
|
|
|
JS_EXPORT_PRIVATE void resetDateCache();
|
|
|
|
RegExpCache* regExpCache() { return m_regExpCache; }
|
|
#if ENABLE(REGEXP_TRACING)
|
|
void addRegExpToTrace(RegExp*);
|
|
#endif
|
|
JS_EXPORT_PRIVATE void dumpRegExpTrace();
|
|
|
|
bool isCollectorBusyOnCurrentThread() { return heap.isCurrentThreadBusy(); }
|
|
|
|
#if ENABLE(GC_VALIDATION)
|
|
bool isInitializingObject() const;
|
|
void setInitializingObjectClass(const ClassInfo*);
|
|
#endif
|
|
|
|
bool currentThreadIsHoldingAPILock() const { return m_apiLock->currentThreadIsHoldingLock(); }
|
|
|
|
JSLock& apiLock() { return *m_apiLock; }
|
|
CodeCache* codeCache() { return m_codeCache.get(); }
|
|
|
|
JS_EXPORT_PRIVATE void whenIdle(std::function<void()>);
|
|
|
|
JS_EXPORT_PRIVATE void deleteAllCode(DeleteAllCodeEffort);
|
|
JS_EXPORT_PRIVATE void deleteAllLinkedCode(DeleteAllCodeEffort);
|
|
|
|
WatchpointSet* ensureWatchpointSetForImpureProperty(const Identifier&);
|
|
void registerWatchpointForImpureProperty(const Identifier&, Watchpoint*);
|
|
|
|
// FIXME: Use AtomicString once it got merged with Identifier.
|
|
JS_EXPORT_PRIVATE void addImpureProperty(const String&);
|
|
|
|
BuiltinExecutables* builtinExecutables() { return m_builtinExecutables.get(); }
|
|
|
|
bool enableTypeProfiler();
|
|
bool disableTypeProfiler();
|
|
TypeProfilerLog* typeProfilerLog() { return m_typeProfilerLog.get(); }
|
|
TypeProfiler* typeProfiler() { return m_typeProfiler.get(); }
|
|
JS_EXPORT_PRIVATE void dumpTypeProfilerData();
|
|
|
|
FunctionHasExecutedCache* functionHasExecutedCache() { return &m_functionHasExecutedCache; }
|
|
|
|
ControlFlowProfiler* controlFlowProfiler() { return m_controlFlowProfiler.get(); }
|
|
bool enableControlFlowProfiler();
|
|
bool disableControlFlowProfiler();
|
|
|
|
JS_EXPORT_PRIVATE void queueMicrotask(JSGlobalObject*, PassRefPtr<Microtask>);
|
|
JS_EXPORT_PRIVATE void drainMicrotasks();
|
|
void setGlobalConstRedeclarationShouldThrow(bool globalConstRedeclarationThrow) { m_globalConstRedeclarationShouldThrow = globalConstRedeclarationThrow; }
|
|
ALWAYS_INLINE bool globalConstRedeclarationShouldThrow() const { return m_globalConstRedeclarationShouldThrow; }
|
|
|
|
inline bool shouldTriggerTermination(ExecState*);
|
|
|
|
void setShouldBuildPCToCodeOriginMapping() { m_shouldBuildPCToCodeOriginMapping = true; }
|
|
bool shouldBuilderPCToCodeOriginMapping() const { return m_shouldBuildPCToCodeOriginMapping; }
|
|
|
|
BytecodeIntrinsicRegistry& bytecodeIntrinsicRegistry() { return *m_bytecodeIntrinsicRegistry; }
|
|
|
|
ShadowChicken& shadowChicken() { return *m_shadowChicken; }
|
|
|
|
template<typename Func>
|
|
void logEvent(CodeBlock*, const char* summary, const Func& func);
|
|
|
|
private:
|
|
friend class LLIntOffsetsExtractor;
|
|
|
|
VM(VMType, HeapType);
|
|
static VM*& sharedInstanceInternal();
|
|
void createNativeThunk();
|
|
|
|
void updateStackLimits();
|
|
|
|
bool isSafeToRecurse(void* stackLimit) const
|
|
{
|
|
ASSERT(wtfThreadData().stack().isGrowingDownward());
|
|
void* curr = reinterpret_cast<void*>(&curr);
|
|
return curr >= stackLimit;
|
|
}
|
|
|
|
void setException(Exception* exception)
|
|
{
|
|
m_exception = exception;
|
|
m_lastException = exception;
|
|
}
|
|
Exception* exception() const
|
|
{
|
|
#if ENABLE(EXCEPTION_SCOPE_VERIFICATION)
|
|
m_needExceptionCheck = false;
|
|
#endif
|
|
return m_exception;
|
|
}
|
|
void clearException()
|
|
{
|
|
#if ENABLE(EXCEPTION_SCOPE_VERIFICATION)
|
|
m_needExceptionCheck = false;
|
|
#endif
|
|
m_exception = nullptr;
|
|
}
|
|
|
|
#if !ENABLE(JIT)
|
|
bool ensureStackCapacityForCLoop(Register* newTopOfStack);
|
|
bool isSafeToRecurseSoftCLoop() const;
|
|
#endif // !ENABLE(JIT)
|
|
|
|
JS_EXPORT_PRIVATE void throwException(ExecState*, Exception*);
|
|
JS_EXPORT_PRIVATE JSValue throwException(ExecState*, JSValue);
|
|
JS_EXPORT_PRIVATE JSObject* throwException(ExecState*, JSObject*);
|
|
|
|
#if ENABLE(EXCEPTION_SCOPE_VERIFICATION)
|
|
void verifyExceptionCheckNeedIsSatisfied(unsigned depth, ExceptionEventLocation&);
|
|
#endif
|
|
|
|
#if ENABLE(ASSEMBLER)
|
|
bool m_canUseAssembler;
|
|
#endif
|
|
#if ENABLE(JIT)
|
|
bool m_canUseJIT;
|
|
#endif
|
|
#if ENABLE(YARR_JIT)
|
|
bool m_canUseRegExpJIT;
|
|
#endif
|
|
#if ENABLE(GC_VALIDATION)
|
|
const ClassInfo* m_initializingObjectClass;
|
|
#endif
|
|
|
|
void* m_stackPointerAtVMEntry;
|
|
size_t m_currentSoftReservedZoneSize;
|
|
void* m_stackLimit { nullptr };
|
|
void* m_softStackLimit { nullptr };
|
|
#if !ENABLE(JIT)
|
|
void* m_cloopStackLimit { nullptr };
|
|
#endif
|
|
void* m_lastStackTop;
|
|
|
|
Exception* m_exception { nullptr };
|
|
Exception* m_lastException { nullptr };
|
|
#if ENABLE(EXCEPTION_SCOPE_VERIFICATION)
|
|
ExceptionScope* m_topExceptionScope { nullptr };
|
|
ExceptionEventLocation m_simulatedThrowPointLocation;
|
|
unsigned m_simulatedThrowPointRecursionDepth { 0 };
|
|
mutable bool m_needExceptionCheck { false };
|
|
#endif
|
|
|
|
bool m_failNextNewCodeBlock { false };
|
|
DeletePropertyMode m_deletePropertyMode { DeletePropertyMode::Default };
|
|
bool m_globalConstRedeclarationShouldThrow { true };
|
|
bool m_shouldBuildPCToCodeOriginMapping { false };
|
|
std::unique_ptr<CodeCache> m_codeCache;
|
|
std::unique_ptr<BuiltinExecutables> m_builtinExecutables;
|
|
HashMap<String, RefPtr<WatchpointSet>> m_impurePropertyWatchpointSets;
|
|
std::unique_ptr<TypeProfiler> m_typeProfiler;
|
|
std::unique_ptr<TypeProfilerLog> m_typeProfilerLog;
|
|
unsigned m_typeProfilerEnabledCount;
|
|
FunctionHasExecutedCache m_functionHasExecutedCache;
|
|
std::unique_ptr<ControlFlowProfiler> m_controlFlowProfiler;
|
|
unsigned m_controlFlowProfilerEnabledCount;
|
|
Deque<std::unique_ptr<QueuedTask>> m_microtaskQueue;
|
|
MallocPtr<EncodedJSValue> m_exceptionFuzzBuffer;
|
|
RefPtr<Watchdog> m_watchdog;
|
|
std::unique_ptr<HeapProfiler> m_heapProfiler;
|
|
#if ENABLE(SAMPLING_PROFILER)
|
|
RefPtr<SamplingProfiler> m_samplingProfiler;
|
|
#endif
|
|
std::unique_ptr<ShadowChicken> m_shadowChicken;
|
|
std::unique_ptr<BytecodeIntrinsicRegistry> m_bytecodeIntrinsicRegistry;
|
|
|
|
VM* m_prev; // Required by DoublyLinkedListNode.
|
|
VM* m_next; // Required by DoublyLinkedListNode.
|
|
|
|
// Friends for exception checking purpose only.
|
|
friend class Heap;
|
|
friend class CatchScope;
|
|
friend class ExceptionScope;
|
|
friend class ThrowScope;
|
|
friend class WTF::DoublyLinkedListNode<VM>;
|
|
};
|
|
|
|
#if ENABLE(GC_VALIDATION)
|
|
inline bool VM::isInitializingObject() const
|
|
{
|
|
return !!m_initializingObjectClass;
|
|
}
|
|
|
|
inline void VM::setInitializingObjectClass(const ClassInfo* initializingObjectClass)
|
|
{
|
|
m_initializingObjectClass = initializingObjectClass;
|
|
}
|
|
#endif
|
|
|
|
inline Heap* WeakSet::heap() const
|
|
{
|
|
return &m_vm->heap;
|
|
}
|
|
|
|
#if ENABLE(JIT)
|
|
extern "C" void sanitizeStackForVMImpl(VM*);
|
|
#endif
|
|
|
|
void sanitizeStackForVM(VM*);
|
|
void logSanitizeStack(VM*);
|
|
|
|
} // namespace JSC
|