mirror of
https://github.com/darlinghq/darling-JavaScriptCore.git
synced 2024-11-26 21:50:53 +00:00
289 lines
8.6 KiB
C++
289 lines
8.6 KiB
C++
/*
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* Copyright (C) 2012-2018 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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#include "config.h"
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#include "CallLinkInfo.h"
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#include "CallFrameShuffleData.h"
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#include "FunctionCodeBlock.h"
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#include "JSCellInlines.h"
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#include "Opcode.h"
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#include "Repatch.h"
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#include <wtf/ListDump.h>
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#if ENABLE(JIT)
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namespace JSC {
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CallLinkInfo::CallType CallLinkInfo::callTypeFor(OpcodeID opcodeID)
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{
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switch (opcodeID) {
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case op_tail_call_varargs:
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case op_tail_call_forward_arguments:
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return TailCallVarargs;
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case op_call:
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case op_call_eval:
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case op_iterator_open:
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case op_iterator_next:
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return Call;
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case op_call_varargs:
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return CallVarargs;
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case op_construct:
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return Construct;
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case op_construct_varargs:
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return ConstructVarargs;
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case op_tail_call:
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return TailCall;
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default:
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break;
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}
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RELEASE_ASSERT_NOT_REACHED();
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return Call;
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}
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CallLinkInfo::CallLinkInfo(CodeOrigin codeOrigin)
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: m_codeOrigin(codeOrigin)
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, m_hasSeenShouldRepatch(false)
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, m_hasSeenClosure(false)
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, m_clearedByGC(false)
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, m_clearedByVirtual(false)
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, m_allowStubs(true)
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, m_clearedByJettison(false)
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, m_callType(None)
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{
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}
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CallLinkInfo::~CallLinkInfo()
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{
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clearStub();
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if (isOnList())
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remove();
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}
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void CallLinkInfo::clearStub()
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{
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if (!stub())
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return;
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m_stub->clearCallNodesFor(this);
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m_stub = nullptr;
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}
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void CallLinkInfo::unlink(VM& vm)
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{
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// We could be called even if we're not linked anymore because of how polymorphic calls
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// work. Each callsite within the polymorphic call stub may separately ask us to unlink().
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if (isLinked())
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unlinkFor(vm, *this);
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// Either we were unlinked, in which case we should not have been on any list, or we unlinked
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// ourselves so that we're not on any list anymore.
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RELEASE_ASSERT(!isOnList());
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}
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CodeLocationNearCall<JSInternalPtrTag> CallLinkInfo::callReturnLocation()
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{
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RELEASE_ASSERT(!isDirect());
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return CodeLocationNearCall<JSInternalPtrTag>(m_callReturnLocationOrPatchableJump, NearCallMode::Regular);
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}
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CodeLocationJump<JSInternalPtrTag> CallLinkInfo::patchableJump()
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{
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RELEASE_ASSERT(callType() == DirectTailCall);
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return CodeLocationJump<JSInternalPtrTag>(m_callReturnLocationOrPatchableJump);
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}
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CodeLocationDataLabelPtr<JSInternalPtrTag> CallLinkInfo::hotPathBegin()
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{
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RELEASE_ASSERT(!isDirect());
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return CodeLocationDataLabelPtr<JSInternalPtrTag>(m_hotPathBeginOrSlowPathStart);
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}
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CodeLocationLabel<JSInternalPtrTag> CallLinkInfo::slowPathStart()
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{
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RELEASE_ASSERT(isDirect());
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return m_hotPathBeginOrSlowPathStart;
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}
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void CallLinkInfo::setCallee(VM& vm, JSCell* owner, JSObject* callee)
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{
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RELEASE_ASSERT(!isDirect());
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m_calleeOrCodeBlock.set(vm, owner, callee);
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}
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void CallLinkInfo::clearCallee()
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{
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RELEASE_ASSERT(!isDirect());
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m_calleeOrCodeBlock.clear();
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}
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JSObject* CallLinkInfo::callee()
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{
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RELEASE_ASSERT(!isDirect());
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return jsCast<JSObject*>(m_calleeOrCodeBlock.get());
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}
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void CallLinkInfo::setCodeBlock(VM& vm, JSCell* owner, FunctionCodeBlock* codeBlock)
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{
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RELEASE_ASSERT(isDirect());
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m_calleeOrCodeBlock.setMayBeNull(vm, owner, codeBlock);
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}
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void CallLinkInfo::clearCodeBlock()
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{
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RELEASE_ASSERT(isDirect());
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m_calleeOrCodeBlock.clear();
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}
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FunctionCodeBlock* CallLinkInfo::codeBlock()
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{
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RELEASE_ASSERT(isDirect());
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return jsCast<FunctionCodeBlock*>(m_calleeOrCodeBlock.get());
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}
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void CallLinkInfo::setLastSeenCallee(VM& vm, const JSCell* owner, JSObject* callee)
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{
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RELEASE_ASSERT(!isDirect());
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m_lastSeenCalleeOrExecutable.set(vm, owner, callee);
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}
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void CallLinkInfo::clearLastSeenCallee()
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{
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RELEASE_ASSERT(!isDirect());
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m_lastSeenCalleeOrExecutable.clear();
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}
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JSObject* CallLinkInfo::lastSeenCallee() const
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{
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RELEASE_ASSERT(!isDirect());
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return jsCast<JSObject*>(m_lastSeenCalleeOrExecutable.get());
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}
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bool CallLinkInfo::haveLastSeenCallee() const
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{
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RELEASE_ASSERT(!isDirect());
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return !!m_lastSeenCalleeOrExecutable;
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}
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void CallLinkInfo::setExecutableDuringCompilation(ExecutableBase* executable)
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{
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RELEASE_ASSERT(isDirect());
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m_lastSeenCalleeOrExecutable.setWithoutWriteBarrier(executable);
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}
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ExecutableBase* CallLinkInfo::executable()
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{
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RELEASE_ASSERT(isDirect());
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return jsCast<ExecutableBase*>(m_lastSeenCalleeOrExecutable.get());
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}
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void CallLinkInfo::setMaxArgumentCountIncludingThis(unsigned value)
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{
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RELEASE_ASSERT(isDirect());
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RELEASE_ASSERT(value);
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m_maxArgumentCountIncludingThis = value;
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}
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void CallLinkInfo::visitWeak(VM& vm)
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{
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auto handleSpecificCallee = [&] (JSFunction* callee) {
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if (vm.heap.isMarked(callee->executable()))
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m_hasSeenClosure = true;
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else
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m_clearedByGC = true;
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};
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if (isLinked()) {
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if (stub()) {
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if (!stub()->visitWeak(vm)) {
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if (UNLIKELY(Options::verboseOSR())) {
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dataLog(
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"At ", m_codeOrigin, ", ", RawPointer(this), ": clearing call stub to ",
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listDump(stub()->variants()), ", stub routine ", RawPointer(stub()),
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".\n");
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}
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unlink(vm);
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m_clearedByGC = true;
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}
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} else if (!vm.heap.isMarked(m_calleeOrCodeBlock.get())) {
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if (isDirect()) {
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if (UNLIKELY(Options::verboseOSR())) {
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dataLog(
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"Clearing call to ", RawPointer(codeBlock()), " (",
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pointerDump(codeBlock()), ").\n");
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}
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} else {
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if (callee()->type() == JSFunctionType) {
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if (UNLIKELY(Options::verboseOSR())) {
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dataLog(
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"Clearing call to ",
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RawPointer(callee()), " (",
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static_cast<JSFunction*>(callee())->executable()->hashFor(specializationKind()),
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").\n");
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}
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handleSpecificCallee(static_cast<JSFunction*>(callee()));
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} else {
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if (UNLIKELY(Options::verboseOSR()))
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dataLog("Clearing call to ", RawPointer(callee()), ".\n");
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m_clearedByGC = true;
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}
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}
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unlink(vm);
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} else if (isDirect() && !vm.heap.isMarked(m_lastSeenCalleeOrExecutable.get())) {
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if (UNLIKELY(Options::verboseOSR())) {
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dataLog(
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"Clearing call to ", RawPointer(executable()),
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" because the executable is dead.\n");
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}
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unlink(vm);
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// We should only get here once the owning CodeBlock is dying, since the executable must
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// already be in the owner's weak references.
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m_lastSeenCalleeOrExecutable.clear();
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}
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}
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if (!isDirect() && haveLastSeenCallee() && !vm.heap.isMarked(lastSeenCallee())) {
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if (lastSeenCallee()->type() == JSFunctionType)
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handleSpecificCallee(jsCast<JSFunction*>(lastSeenCallee()));
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else
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m_clearedByGC = true;
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clearLastSeenCallee();
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}
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}
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void CallLinkInfo::setFrameShuffleData(const CallFrameShuffleData& shuffleData)
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{
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m_frameShuffleData = makeUnique<CallFrameShuffleData>(shuffleData);
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}
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} // namespace JSC
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#endif // ENABLE(JIT)
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