mirror of
https://github.com/darlinghq/darling-JavaScriptCore.git
synced 2025-04-12 20:08:13 +00:00
239 lines
9.9 KiB
C++
239 lines
9.9 KiB
C++
/*
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* Copyright (C) 2012-2020 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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#include "config.h"
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#include "JITThunks.h"
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#if ENABLE(JIT)
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#include "JITCode.h"
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#include "JSCJSValueInlines.h"
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#include "ThunkGenerators.h"
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#include "VM.h"
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namespace JSC {
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JITThunks::JITThunks()
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{
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}
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JITThunks::~JITThunks()
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{
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}
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static inline NativeExecutable& getMayBeDyingNativeExecutable(const Weak<NativeExecutable>& weak)
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{
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// This never gets Deleted / Empty slots.
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WeakImpl* impl = weak.unsafeImpl();
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ASSERT(impl);
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// We have a callback removing entry when finalizing. This means that we never hold Deallocated entry in HashSet.
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ASSERT(impl->state() != WeakImpl::State::Deallocated);
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// Never use jsCast here. This is possible that this value is "Dead" but not "Finalized" yet. In this case,
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// we can still access to non-JS data, as we are doing in a finalize callback.
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auto* executable = static_cast<NativeExecutable*>(impl->jsValue().asCell());
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ASSERT(executable);
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return *executable;
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}
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inline unsigned JITThunks::WeakNativeExecutableHash::hash(NativeExecutable* executable)
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{
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return hash(executable->function(), executable->constructor(), executable->name());
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}
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inline unsigned JITThunks::WeakNativeExecutableHash::hash(const Weak<NativeExecutable>& key)
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{
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return hash(&getMayBeDyingNativeExecutable(key));
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}
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inline bool JITThunks::WeakNativeExecutableHash::equal(NativeExecutable& a, NativeExecutable& b)
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{
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if (&a == &b)
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return true;
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return a.function() == b.function() && a.constructor() == b.constructor() && a.name() == b.name();
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}
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inline bool JITThunks::WeakNativeExecutableHash::equal(const Weak<NativeExecutable>& a, const Weak<NativeExecutable>& b)
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{
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return equal(getMayBeDyingNativeExecutable(a), getMayBeDyingNativeExecutable(b));
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}
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inline bool JITThunks::WeakNativeExecutableHash::equal(const Weak<NativeExecutable>& a, NativeExecutable* bExecutable)
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{
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return equal(getMayBeDyingNativeExecutable(a), *bExecutable);
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}
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inline bool JITThunks::WeakNativeExecutableHash::equal(const Weak<NativeExecutable>& a, const HostFunctionKey& b)
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{
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auto& aExecutable = getMayBeDyingNativeExecutable(a);
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return aExecutable.function() == std::get<0>(b) && aExecutable.constructor() == std::get<1>(b) && aExecutable.name() == std::get<2>(b);
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}
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MacroAssemblerCodePtr<JITThunkPtrTag> JITThunks::ctiNativeCall(VM& vm)
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{
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ASSERT(Options::useJIT());
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return ctiStub(vm, nativeCallGenerator).code();
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}
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MacroAssemblerCodePtr<JITThunkPtrTag> JITThunks::ctiNativeConstruct(VM& vm)
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{
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ASSERT(Options::useJIT());
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return ctiStub(vm, nativeConstructGenerator).code();
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}
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MacroAssemblerCodePtr<JITThunkPtrTag> JITThunks::ctiNativeTailCall(VM& vm)
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{
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ASSERT(Options::useJIT());
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return ctiStub(vm, nativeTailCallGenerator).code();
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}
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MacroAssemblerCodePtr<JITThunkPtrTag> JITThunks::ctiNativeTailCallWithoutSavedTags(VM& vm)
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{
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ASSERT(Options::useJIT());
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return ctiStub(vm, nativeTailCallWithoutSavedTagsGenerator).code();
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}
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MacroAssemblerCodePtr<JITThunkPtrTag> JITThunks::ctiInternalFunctionCall(VM& vm)
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{
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ASSERT(Options::useJIT());
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return ctiStub(vm, internalFunctionCallGenerator).code();
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}
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MacroAssemblerCodePtr<JITThunkPtrTag> JITThunks::ctiInternalFunctionConstruct(VM& vm)
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{
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ASSERT(Options::useJIT());
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return ctiStub(vm, internalFunctionConstructGenerator).code();
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}
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MacroAssemblerCodeRef<JITThunkPtrTag> JITThunks::ctiStub(VM& vm, ThunkGenerator generator)
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{
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LockHolder locker(m_lock);
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CTIStubMap::AddResult entry = m_ctiStubMap.add(generator, MacroAssemblerCodeRef<JITThunkPtrTag>());
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if (entry.isNewEntry) {
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// Compilation thread can only retrieve existing entries.
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ASSERT(!isCompilationThread());
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entry.iterator->value = generator(vm);
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}
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return entry.iterator->value;
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}
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MacroAssemblerCodeRef<JITThunkPtrTag> JITThunks::existingCTIStub(ThunkGenerator generator)
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{
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LockHolder locker(m_lock);
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CTIStubMap::iterator entry = m_ctiStubMap.find(generator);
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if (entry == m_ctiStubMap.end())
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return MacroAssemblerCodeRef<JITThunkPtrTag>();
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return entry->value;
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}
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struct JITThunks::HostKeySearcher {
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static unsigned hash(const HostFunctionKey& key) { return WeakNativeExecutableHash::hash(key); }
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static bool equal(const Weak<NativeExecutable>& a, const HostFunctionKey& b) { return WeakNativeExecutableHash::equal(a, b); }
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};
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struct JITThunks::NativeExecutableTranslator {
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static unsigned hash(NativeExecutable* key) { return WeakNativeExecutableHash::hash(key); }
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static bool equal(const Weak<NativeExecutable>& a, NativeExecutable* b) { return WeakNativeExecutableHash::equal(a, b); }
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static void translate(Weak<NativeExecutable>& location, NativeExecutable* executable, unsigned)
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{
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location = Weak<NativeExecutable>(executable, executable->vm().jitStubs.get());
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}
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};
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void JITThunks::finalize(Handle<Unknown> handle, void*)
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{
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auto* nativeExecutable = static_cast<NativeExecutable*>(handle.get().asCell());
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auto hostFunctionKey = std::make_tuple(nativeExecutable->function(), nativeExecutable->constructor(), nativeExecutable->name());
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{
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DisallowGC disallowGC;
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auto iterator = m_nativeExecutableSet.find<HostKeySearcher>(hostFunctionKey);
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// Because this finalizer is called, this means that we still have dead Weak<> in m_nativeExecutableSet.
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ASSERT(iterator != m_nativeExecutableSet.end());
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ASSERT(iterator->unsafeImpl()->state() == WeakImpl::State::Finalized);
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m_nativeExecutableSet.remove(iterator);
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}
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}
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NativeExecutable* JITThunks::hostFunctionStub(VM& vm, TaggedNativeFunction function, TaggedNativeFunction constructor, const String& name)
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{
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return hostFunctionStub(vm, function, constructor, nullptr, NoIntrinsic, nullptr, name);
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}
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NativeExecutable* JITThunks::hostFunctionStub(VM& vm, TaggedNativeFunction function, TaggedNativeFunction constructor, ThunkGenerator generator, Intrinsic intrinsic, const DOMJIT::Signature* signature, const String& name)
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{
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ASSERT(!isCompilationThread());
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ASSERT(Options::useJIT());
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auto hostFunctionKey = std::make_tuple(function, constructor, name);
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{
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DisallowGC disallowGC;
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auto iterator = m_nativeExecutableSet.find<HostKeySearcher>(hostFunctionKey);
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if (iterator != m_nativeExecutableSet.end()) {
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// It is possible that this returns Weak<> which is Dead, but not finalized.
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// We should not use this reference to store value created in the subsequent sequence, since allocating NativeExecutable can cause GC, which changes this Set.
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if (auto* executable = iterator->get())
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return executable;
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}
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}
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RefPtr<JITCode> forCall;
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if (generator) {
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MacroAssemblerCodeRef<JSEntryPtrTag> entry = generator(vm).retagged<JSEntryPtrTag>();
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forCall = adoptRef(new DirectJITCode(entry, entry.code(), JITType::HostCallThunk, intrinsic));
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} else if (signature)
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forCall = adoptRef(new NativeDOMJITCode(MacroAssemblerCodeRef<JSEntryPtrTag>::createSelfManagedCodeRef(ctiNativeCall(vm).retagged<JSEntryPtrTag>()), JITType::HostCallThunk, intrinsic, signature));
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else
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forCall = adoptRef(new NativeJITCode(MacroAssemblerCodeRef<JSEntryPtrTag>::createSelfManagedCodeRef(ctiNativeCall(vm).retagged<JSEntryPtrTag>()), JITType::HostCallThunk, intrinsic));
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Ref<JITCode> forConstruct = adoptRef(*new NativeJITCode(MacroAssemblerCodeRef<JSEntryPtrTag>::createSelfManagedCodeRef(ctiNativeConstruct(vm).retagged<JSEntryPtrTag>()), JITType::HostCallThunk, NoIntrinsic));
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NativeExecutable* nativeExecutable = NativeExecutable::create(vm, forCall.releaseNonNull(), function, WTFMove(forConstruct), constructor, name);
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{
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DisallowGC disallowGC;
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auto addResult = m_nativeExecutableSet.add<NativeExecutableTranslator>(nativeExecutable);
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if (!addResult.isNewEntry) {
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// Override the existing Weak<NativeExecutable> with the new one since it is dead.
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ASSERT(!*addResult.iterator);
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*addResult.iterator = Weak<NativeExecutable>(nativeExecutable, this);
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ASSERT(*addResult.iterator);
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#if ASSERT_ENABLED
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auto iterator = m_nativeExecutableSet.find<HostKeySearcher>(hostFunctionKey);
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ASSERT(iterator != m_nativeExecutableSet.end());
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ASSERT(iterator->get() == nativeExecutable);
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ASSERT(iterator->unsafeImpl()->state() == WeakImpl::State::Live);
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#endif
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}
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}
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return nativeExecutable;
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}
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NativeExecutable* JITThunks::hostFunctionStub(VM& vm, TaggedNativeFunction function, ThunkGenerator generator, Intrinsic intrinsic, const String& name)
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{
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return hostFunctionStub(vm, function, callHostFunctionAsConstructor, generator, intrinsic, nullptr, name);
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}
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} // namespace JSC
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#endif // ENABLE(JIT)
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