973fc5b9b0
This separation is needed to make two goals possible simultaneously: * is should be possible to offer V8 components a simple, clean interface to TurboFan's low-level code generation that doesn't expose details about the TF. * it should be possible to easily create new CodeAssembler "macros" that don't require a review from an OWNER of the compiler directory. Review URL: https://codereview.chromium.org/1875583003 Cr-Commit-Position: refs/heads/master@{#35576}
239 lines
8.4 KiB
C++
239 lines
8.4 KiB
C++
// Copyright 2015 the V8 project authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "src/fast-accessor-assembler.h"
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#include "src/base/logging.h"
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#include "src/code-stub-assembler.h"
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#include "src/code-stubs.h" // For CallApiCallbackStub.
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#include "src/handles-inl.h"
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#include "src/objects.h" // For FAA::LoadInternalField impl.
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using v8::internal::CodeStubAssembler;
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using v8::internal::compiler::Node;
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namespace v8 {
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namespace internal {
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FastAccessorAssembler::FastAccessorAssembler(Isolate* isolate)
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: zone_(isolate->allocator()),
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isolate_(isolate),
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assembler_(new CodeStubAssembler(isolate, zone(), 1,
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Code::ComputeFlags(Code::STUB),
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"FastAccessorAssembler")),
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state_(kBuilding) {}
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FastAccessorAssembler::~FastAccessorAssembler() { Clear(); }
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FastAccessorAssembler::ValueId FastAccessorAssembler::IntegerConstant(
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int const_value) {
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CHECK_EQ(kBuilding, state_);
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return FromRaw(assembler_->NumberConstant(const_value));
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}
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FastAccessorAssembler::ValueId FastAccessorAssembler::GetReceiver() {
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CHECK_EQ(kBuilding, state_);
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// For JS functions, the receiver is parameter 0.
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return FromRaw(assembler_->Parameter(0));
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}
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FastAccessorAssembler::ValueId FastAccessorAssembler::LoadInternalField(
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ValueId value, int field_no) {
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CHECK_EQ(kBuilding, state_);
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// Determine the 'value' object's instance type.
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Node* object_map = assembler_->LoadObjectField(
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FromId(value), Internals::kHeapObjectMapOffset, MachineType::Pointer());
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Node* instance_type = assembler_->WordAnd(
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assembler_->LoadObjectField(object_map,
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Internals::kMapInstanceTypeAndBitFieldOffset,
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MachineType::Uint16()),
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assembler_->IntPtrConstant(0xff));
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// Check whether we have a proper JSObject.
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CodeStubAssembler::Variable result(assembler_.get(),
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MachineRepresentation::kTagged);
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CodeStubAssembler::Label is_jsobject(assembler_.get());
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CodeStubAssembler::Label maybe_api_object(assembler_.get());
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CodeStubAssembler::Label is_not_jsobject(assembler_.get());
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CodeStubAssembler::Label merge(assembler_.get(), &result);
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assembler_->Branch(
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assembler_->WordEqual(
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instance_type, assembler_->IntPtrConstant(Internals::kJSObjectType)),
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&is_jsobject, &maybe_api_object);
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// JSObject? Then load the internal field field_no.
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assembler_->Bind(&is_jsobject);
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Node* internal_field = assembler_->LoadObjectField(
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FromId(value), JSObject::kHeaderSize + kPointerSize * field_no,
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MachineType::Pointer());
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result.Bind(internal_field);
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assembler_->Goto(&merge);
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assembler_->Bind(&maybe_api_object);
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assembler_->Branch(
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assembler_->WordEqual(instance_type, assembler_->IntPtrConstant(
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Internals::kJSApiObjectType)),
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&is_jsobject, &is_not_jsobject);
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// No JSObject? Return undefined.
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// TODO(vogelheim): Check whether this is the appropriate action, or whether
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// the method should take a label instead.
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assembler_->Bind(&is_not_jsobject);
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Node* fail_value = assembler_->UndefinedConstant();
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result.Bind(fail_value);
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assembler_->Goto(&merge);
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// Return.
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assembler_->Bind(&merge);
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return FromRaw(result.value());
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}
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FastAccessorAssembler::ValueId FastAccessorAssembler::LoadValue(ValueId value,
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int offset) {
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CHECK_EQ(kBuilding, state_);
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return FromRaw(assembler_->LoadBufferObject(FromId(value), offset,
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MachineType::IntPtr()));
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}
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FastAccessorAssembler::ValueId FastAccessorAssembler::LoadObject(ValueId value,
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int offset) {
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CHECK_EQ(kBuilding, state_);
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return FromRaw(assembler_->LoadBufferObject(
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assembler_->LoadBufferObject(FromId(value), offset,
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MachineType::Pointer()),
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0, MachineType::AnyTagged()));
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}
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void FastAccessorAssembler::ReturnValue(ValueId value) {
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CHECK_EQ(kBuilding, state_);
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assembler_->Return(FromId(value));
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}
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void FastAccessorAssembler::CheckFlagSetOrReturnNull(ValueId value, int mask) {
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CHECK_EQ(kBuilding, state_);
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CodeStubAssembler::Label pass(assembler_.get());
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CodeStubAssembler::Label fail(assembler_.get());
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assembler_->Branch(
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assembler_->Word32Equal(
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assembler_->Word32And(FromId(value), assembler_->Int32Constant(mask)),
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assembler_->Int32Constant(0)),
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&pass, &fail);
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assembler_->Bind(&fail);
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assembler_->Return(assembler_->NullConstant());
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assembler_->Bind(&pass);
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}
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void FastAccessorAssembler::CheckNotZeroOrReturnNull(ValueId value) {
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CHECK_EQ(kBuilding, state_);
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CodeStubAssembler::Label is_null(assembler_.get());
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CodeStubAssembler::Label not_null(assembler_.get());
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assembler_->Branch(
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assembler_->WordEqual(FromId(value), assembler_->IntPtrConstant(0)),
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&is_null, ¬_null);
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assembler_->Bind(&is_null);
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assembler_->Return(assembler_->NullConstant());
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assembler_->Bind(¬_null);
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}
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FastAccessorAssembler::LabelId FastAccessorAssembler::MakeLabel() {
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CHECK_EQ(kBuilding, state_);
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return FromRaw(new CodeStubAssembler::Label(assembler_.get()));
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}
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void FastAccessorAssembler::SetLabel(LabelId label_id) {
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CHECK_EQ(kBuilding, state_);
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assembler_->Bind(FromId(label_id));
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}
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void FastAccessorAssembler::CheckNotZeroOrJump(ValueId value_id,
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LabelId label_id) {
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CHECK_EQ(kBuilding, state_);
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CodeStubAssembler::Label pass(assembler_.get());
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assembler_->Branch(
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assembler_->WordEqual(FromId(value_id), assembler_->IntPtrConstant(0)),
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&pass, FromId(label_id));
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assembler_->Bind(&pass);
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}
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FastAccessorAssembler::ValueId FastAccessorAssembler::Call(
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FunctionCallback callback_function, ValueId arg) {
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CHECK_EQ(kBuilding, state_);
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// Wrap the FunctionCallback in an ExternalReference.
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ApiFunction callback_api_function(FUNCTION_ADDR(callback_function));
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ExternalReference callback(&callback_api_function,
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ExternalReference::DIRECT_API_CALL, isolate());
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// Create & call API callback via stub.
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CallApiCallbackStub stub(isolate(), 1, true);
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DCHECK_EQ(5, stub.GetCallInterfaceDescriptor().GetParameterCount());
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DCHECK_EQ(1, stub.GetCallInterfaceDescriptor().GetStackParameterCount());
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// TODO(vogelheim): There is currently no clean way to retrieve the context
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// parameter for a stub and the implementation details are hidden in
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// compiler/*. The context_paramter is computed as:
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// Linkage::GetJSCallContextParamIndex(descriptor->JSParameterCount())
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const int context_parameter = 2;
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Node* call = assembler_->CallStub(
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stub.GetCallInterfaceDescriptor(),
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assembler_->HeapConstant(stub.GetCode()),
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assembler_->Parameter(context_parameter),
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// Stub/register parameters:
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assembler_->Parameter(0), /* receiver (use accessor's) */
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assembler_->UndefinedConstant(), /* call_data (undefined) */
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assembler_->NullConstant(), /* holder (null) */
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assembler_->ExternalConstant(callback), /* API callback function */
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// JS arguments, on stack:
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FromId(arg));
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return FromRaw(call);
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}
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MaybeHandle<Code> FastAccessorAssembler::Build() {
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CHECK_EQ(kBuilding, state_);
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Handle<Code> code = assembler_->GenerateCode();
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state_ = !code.is_null() ? kBuilt : kError;
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Clear();
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return code;
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}
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FastAccessorAssembler::ValueId FastAccessorAssembler::FromRaw(Node* node) {
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nodes_.push_back(node);
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ValueId value = {nodes_.size() - 1};
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return value;
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}
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FastAccessorAssembler::LabelId FastAccessorAssembler::FromRaw(
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CodeStubAssembler::Label* label) {
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labels_.push_back(label);
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LabelId label_id = {labels_.size() - 1};
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return label_id;
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}
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Node* FastAccessorAssembler::FromId(ValueId value) const {
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CHECK_LT(value.value_id, nodes_.size());
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CHECK_NOT_NULL(nodes_.at(value.value_id));
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return nodes_.at(value.value_id);
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}
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CodeStubAssembler::Label* FastAccessorAssembler::FromId(LabelId label) const {
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CHECK_LT(label.label_id, labels_.size());
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CHECK_NOT_NULL(labels_.at(label.label_id));
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return labels_.at(label.label_id);
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}
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void FastAccessorAssembler::Clear() {
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for (auto label : labels_) {
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delete label;
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}
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nodes_.clear();
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labels_.clear();
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}
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} // namespace internal
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} // namespace v8
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