34af8b95e5
This reverts commit 59931e3340 as it
breaks jitk and optcounter bots.
Change-Id: If87ce52ac3d4015608436bfd7ee661ea1414dc7c
Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/97480
Reviewed-by: Alexander Aprelev <aam@google.com>
Commit-Queue: Alexander Aprelev <aam@google.com>
282 lines
8.5 KiB
C++
282 lines
8.5 KiB
C++
// Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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#ifndef RUNTIME_VM_PARSER_H_
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#define RUNTIME_VM_PARSER_H_
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#include "include/dart_api.h"
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#include "lib/invocation_mirror.h"
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#include "platform/assert.h"
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#include "platform/globals.h"
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#include "vm/allocation.h"
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#include "vm/ast.h"
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#include "vm/class_finalizer.h"
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#include "vm/hash_table.h"
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#include "vm/kernel.h"
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#include "vm/object.h"
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#include "vm/raw_object.h"
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#include "vm/scopes.h"
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#include "vm/token.h"
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namespace dart {
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// Forward declarations.
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namespace kernel {
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class ScopeBuildingResult;
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} // namespace kernel
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class ArgumentsDescriptor;
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class Isolate;
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class LocalScope;
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class LocalVariable;
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struct RegExpCompileData;
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class SourceLabel;
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template <typename T>
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class GrowableArray;
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class Parser;
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struct CatchParamDesc;
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class ClassDesc;
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struct MemberDesc;
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struct ParamList;
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struct QualIdent;
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class TopLevel;
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class RecursionChecker;
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// The class ParsedFunction holds the result of parsing a function.
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class ParsedFunction : public ZoneAllocated {
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public:
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ParsedFunction(Thread* thread, const Function& function);
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const Function& function() const { return function_; }
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const Code& code() const { return code_; }
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SequenceNode* node_sequence() const { return node_sequence_; }
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void SetNodeSequence(SequenceNode* node_sequence);
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RegExpCompileData* regexp_compile_data() const {
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return regexp_compile_data_;
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}
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void SetRegExpCompileData(RegExpCompileData* regexp_compile_data);
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LocalVariable* function_type_arguments() const {
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return function_type_arguments_;
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}
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void set_function_type_arguments(LocalVariable* function_type_arguments) {
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ASSERT(function_type_arguments != NULL);
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function_type_arguments_ = function_type_arguments;
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}
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LocalVariable* parent_type_arguments() const {
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return parent_type_arguments_;
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}
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void set_parent_type_arguments(LocalVariable* parent_type_arguments) {
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ASSERT(parent_type_arguments != NULL);
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parent_type_arguments_ = parent_type_arguments;
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}
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void set_default_parameter_values(ZoneGrowableArray<const Instance*>* list) {
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default_parameter_values_ = list;
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#if defined(DEBUG)
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if (list == NULL) return;
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for (intptr_t i = 0; i < list->length(); i++) {
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ASSERT(list->At(i)->IsZoneHandle() || list->At(i)->IsReadOnly());
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}
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#endif
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}
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const Instance& DefaultParameterValueAt(intptr_t i) const {
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ASSERT(default_parameter_values_ != NULL);
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return *default_parameter_values_->At(i);
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}
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ZoneGrowableArray<const Instance*>* default_parameter_values() const {
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return default_parameter_values_;
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}
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LocalVariable* current_context_var() const { return current_context_var_; }
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bool has_arg_desc_var() const { return arg_desc_var_ != NULL; }
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LocalVariable* arg_desc_var() const { return arg_desc_var_; }
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LocalVariable* receiver_var() const {
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ASSERT(receiver_var_ != nullptr);
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return receiver_var_;
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}
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void set_receiver_var(LocalVariable* value) {
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ASSERT(receiver_var_ == nullptr);
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ASSERT(value != nullptr);
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receiver_var_ = value;
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}
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bool has_receiver_var() const { return receiver_var_ != nullptr; }
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LocalVariable* expression_temp_var() const {
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ASSERT(has_expression_temp_var());
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return expression_temp_var_;
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}
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void set_expression_temp_var(LocalVariable* value) {
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ASSERT(!has_expression_temp_var());
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expression_temp_var_ = value;
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}
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bool has_expression_temp_var() const { return expression_temp_var_ != NULL; }
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LocalVariable* entry_points_temp_var() const {
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ASSERT(has_entry_points_temp_var());
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return entry_points_temp_var_;
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}
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void set_entry_points_temp_var(LocalVariable* value) {
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ASSERT(!has_entry_points_temp_var());
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entry_points_temp_var_ = value;
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}
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bool has_entry_points_temp_var() const {
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return entry_points_temp_var_ != NULL;
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}
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LocalVariable* finally_return_temp_var() const {
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ASSERT(has_finally_return_temp_var());
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return finally_return_temp_var_;
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}
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void set_finally_return_temp_var(LocalVariable* value) {
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ASSERT(!has_finally_return_temp_var());
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finally_return_temp_var_ = value;
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}
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bool has_finally_return_temp_var() const {
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return finally_return_temp_var_ != NULL;
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}
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void EnsureFinallyReturnTemp(bool is_async);
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LocalVariable* EnsureExpressionTemp();
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LocalVariable* EnsureEntryPointsTemp();
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bool HasDeferredPrefixes() const { return deferred_prefixes_->length() != 0; }
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ZoneGrowableArray<const LibraryPrefix*>* deferred_prefixes() const {
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return deferred_prefixes_;
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}
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void AddDeferredPrefix(const LibraryPrefix& prefix);
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ZoneGrowableArray<const Field*>* guarded_fields() const {
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return guarded_fields_;
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}
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VariableIndex first_parameter_index() const { return first_parameter_index_; }
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int num_stack_locals() const { return num_stack_locals_; }
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void AllocateVariables();
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void AllocateIrregexpVariables(intptr_t num_stack_locals);
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void AllocateBytecodeVariables(intptr_t num_stack_locals);
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void record_await() { have_seen_await_expr_ = true; }
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bool have_seen_await() const { return have_seen_await_expr_; }
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bool is_forwarding_stub() const {
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return forwarding_stub_super_target_ != nullptr;
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}
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const Function* forwarding_stub_super_target() const {
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return forwarding_stub_super_target_;
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}
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void MarkForwardingStub(const Function* forwarding_target) {
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forwarding_stub_super_target_ = forwarding_target;
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}
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Thread* thread() const { return thread_; }
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Isolate* isolate() const { return thread_->isolate(); }
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Zone* zone() const { return thread_->zone(); }
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// Adds only relevant fields: field must be unique and its guarded_cid()
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// relevant.
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void AddToGuardedFields(const Field* field) const;
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void Bailout(const char* origin, const char* reason) const;
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kernel::ScopeBuildingResult* EnsureKernelScopes();
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LocalVariable* RawTypeArgumentsVariable() const {
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return raw_type_arguments_var_;
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}
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void SetRawTypeArgumentsVariable(LocalVariable* raw_type_arguments_var) {
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raw_type_arguments_var_ = raw_type_arguments_var;
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}
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void SetRawParameters(ZoneGrowableArray<LocalVariable*>* raw_parameters) {
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raw_parameters_ = raw_parameters;
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}
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LocalVariable* RawParameterVariable(intptr_t i) const {
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return raw_parameters_->At(i);
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}
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LocalVariable* ParameterVariable(intptr_t i) const {
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ASSERT((i >= 0) && (i < function_.NumParameters()));
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ASSERT(node_sequence() != nullptr && node_sequence()->scope() != nullptr);
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return node_sequence()->scope()->VariableAt(i);
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}
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void SetDefaultFunctionTypeArguments(const TypeArguments& value) {
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default_function_type_arguments_ = value.raw();
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}
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const TypeArguments& DefaultFunctionTypeArguments() const {
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return default_function_type_arguments_;
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}
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private:
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Thread* thread_;
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const Function& function_;
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Code& code_;
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SequenceNode* node_sequence_;
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RegExpCompileData* regexp_compile_data_;
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LocalVariable* function_type_arguments_;
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LocalVariable* parent_type_arguments_;
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LocalVariable* current_context_var_;
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LocalVariable* arg_desc_var_;
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LocalVariable* receiver_var_ = nullptr;
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LocalVariable* expression_temp_var_;
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LocalVariable* entry_points_temp_var_;
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LocalVariable* finally_return_temp_var_;
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ZoneGrowableArray<const LibraryPrefix*>* deferred_prefixes_;
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ZoneGrowableArray<const Field*>* guarded_fields_;
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ZoneGrowableArray<const Instance*>* default_parameter_values_;
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LocalVariable* raw_type_arguments_var_;
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ZoneGrowableArray<LocalVariable*>* raw_parameters_ = nullptr;
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VariableIndex first_parameter_index_;
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int num_stack_locals_;
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bool have_seen_await_expr_;
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const Function* forwarding_stub_super_target_ = nullptr;
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kernel::ScopeBuildingResult* kernel_scopes_;
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TypeArguments& default_function_type_arguments_;
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friend class Parser;
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DISALLOW_COPY_AND_ASSIGN(ParsedFunction);
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};
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class Parser : public ValueObject {
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public:
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// Parse a function to retrieve parameter information that is not retained in
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// the Function object. Returns either an error if the parse fails (which
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// could be the case for local functions), or a flat array of entries for each
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// parameter. Each parameter entry contains: * a Dart bool indicating whether
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// the parameter was declared final * its default value (or null if none was
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// declared) * an array of metadata (or null if no metadata was declared).
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enum {
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kParameterIsFinalOffset,
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kParameterDefaultValueOffset,
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kParameterMetadataOffset,
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kParameterEntrySize,
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};
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private:
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DISALLOW_COPY_AND_ASSIGN(Parser);
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};
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} // namespace dart
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#endif // RUNTIME_VM_PARSER_H_
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