forked from LeenkxTeam/Kmake
127 lines
4.3 KiB
C
127 lines
4.3 KiB
C
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// 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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#ifndef V8_INTERPRETER_INTERPRETER_H_
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#define V8_INTERPRETER_INTERPRETER_H_
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#include <memory>
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// Clients of this interface shouldn't depend on lots of interpreter internals.
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// Do not include anything from src/interpreter other than
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// src/interpreter/bytecodes.h here!
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#include "src/base/macros.h"
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#include "src/builtins/builtins.h"
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#include "src/interpreter/bytecodes.h"
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namespace v8 {
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namespace internal {
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class AccountingAllocator;
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class BytecodeArray;
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class Callable;
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class UnoptimizedCompilationJob;
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class FunctionLiteral;
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class IgnitionStatisticsTester;
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class Isolate;
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class LocalIsolate;
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class ParseInfo;
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class RootVisitor;
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class SetupIsolateDelegate;
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template <typename>
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class ZoneVector;
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namespace interpreter {
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class InterpreterAssembler;
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class Interpreter {
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public:
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explicit Interpreter(Isolate* isolate);
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virtual ~Interpreter() = default;
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Interpreter(const Interpreter&) = delete;
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Interpreter& operator=(const Interpreter&) = delete;
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// Creates a compilation job which will generate bytecode for |literal|.
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// Additionally, if |eager_inner_literals| is not null, adds any eagerly
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// compilable inner FunctionLiterals to this list.
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static std::unique_ptr<UnoptimizedCompilationJob> NewCompilationJob(
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ParseInfo* parse_info, FunctionLiteral* literal, Handle<Script> script,
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AccountingAllocator* allocator,
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std::vector<FunctionLiteral*>* eager_inner_literals,
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LocalIsolate* local_isolate);
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// Creates a compilation job which will generate source positions for
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// |literal| and when finalized, store the result into |existing_bytecode|.
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static std::unique_ptr<UnoptimizedCompilationJob>
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NewSourcePositionCollectionJob(ParseInfo* parse_info,
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FunctionLiteral* literal,
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Handle<BytecodeArray> existing_bytecode,
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AccountingAllocator* allocator,
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LocalIsolate* local_isolate);
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// If the bytecode handler for |bytecode| and |operand_scale| has not yet
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// been loaded, deserialize it. Then return the handler.
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V8_EXPORT_PRIVATE Tagged<Code> GetBytecodeHandler(Bytecode bytecode,
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OperandScale operand_scale);
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// Set the bytecode handler for |bytecode| and |operand_scale|.
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void SetBytecodeHandler(Bytecode bytecode, OperandScale operand_scale,
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Tagged<Code> handler);
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V8_EXPORT_PRIVATE DirectHandle<JSObject> GetDispatchCountersObject();
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void ForEachBytecode(const std::function<void(Bytecode, OperandScale)>& f);
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void Initialize();
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bool IsDispatchTableInitialized() const;
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Address dispatch_table_address() {
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return reinterpret_cast<Address>(&dispatch_table_[0]);
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}
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Address bytecode_dispatch_counters_table() {
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return reinterpret_cast<Address>(bytecode_dispatch_counters_table_.get());
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}
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Address address_of_interpreter_entry_trampoline_instruction_start() const {
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return reinterpret_cast<Address>(
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&interpreter_entry_trampoline_instruction_start_);
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}
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private:
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friend class SetupInterpreter;
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friend class v8::internal::SetupIsolateDelegate;
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friend class v8::internal::IgnitionStatisticsTester;
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V8_EXPORT_PRIVATE void InitDispatchCounters();
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V8_EXPORT_PRIVATE uintptr_t GetDispatchCounter(Bytecode from,
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Bytecode to) const;
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// Get dispatch table index of bytecode.
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static size_t GetDispatchTableIndex(Bytecode bytecode,
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OperandScale operand_scale);
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static const int kNumberOfWideVariants = BytecodeOperands::kOperandScaleCount;
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static const int kDispatchTableSize = kNumberOfWideVariants * (kMaxUInt8 + 1);
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static const int kNumberOfBytecodes = static_cast<int>(Bytecode::kLast) + 1;
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Isolate* isolate_;
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Address dispatch_table_[kDispatchTableSize];
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std::unique_ptr<uintptr_t[]> bytecode_dispatch_counters_table_;
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Address interpreter_entry_trampoline_instruction_start_;
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};
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#ifdef V8_IGNITION_DISPATCH_COUNTING
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#define V8_IGNITION_DISPATCH_COUNTING_BOOL true
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#else
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#define V8_IGNITION_DISPATCH_COUNTING_BOOL false
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#endif
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} // namespace interpreter
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} // namespace internal
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} // namespace v8
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#endif // V8_INTERPRETER_INTERPRETER_H_
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