388 lines
11 KiB
C++
388 lines
11 KiB
C++
/*
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* Copyright (c) 2021, Andreas Kling <kling@serenityos.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <LibJS/AST.h>
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#include <LibJS/Bytecode/Interpreter.h>
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#include <LibJS/Bytecode/Op.h>
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#include <LibJS/Runtime/GlobalObject.h>
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#include <LibJS/Runtime/ScriptFunction.h>
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#include <LibJS/Runtime/Value.h>
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namespace JS::Bytecode {
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void Instruction::execute(Bytecode::Interpreter& interpreter) const
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{
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#define __BYTECODE_OP(op) \
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case Instruction::Type::op: \
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return static_cast<Bytecode::Op::op const&>(*this).execute(interpreter);
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switch (type()) {
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ENUMERATE_BYTECODE_OPS(__BYTECODE_OP)
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default:
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VERIFY_NOT_REACHED();
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}
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#undef __BYTECODE_OP
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}
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String Instruction::to_string() const
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{
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#define __BYTECODE_OP(op) \
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case Instruction::Type::op: \
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return static_cast<Bytecode::Op::op const&>(*this).to_string();
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switch (type()) {
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ENUMERATE_BYTECODE_OPS(__BYTECODE_OP)
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default:
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VERIFY_NOT_REACHED();
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}
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#undef __BYTECODE_OP
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}
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}
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namespace JS::Bytecode::Op {
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void Load::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = m_value;
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}
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void Add::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = add(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2));
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}
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void Sub::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = sub(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2));
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}
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void Mul::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = mul(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2));
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}
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void Div::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = div(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2));
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}
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void Mod::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = mod(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2));
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}
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void Exp::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = exp(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2));
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}
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void GreaterThan::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = greater_than(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2));
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}
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void GreaterThanEquals::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = greater_than_equals(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2));
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}
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void LessThan::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = less_than(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2));
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}
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void LessThanEquals::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = less_than_equals(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2));
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}
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void AbstractInequals::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = Value(!abstract_eq(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2)));
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}
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void AbstractEquals::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = Value(abstract_eq(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2)));
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}
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void BitwiseAnd::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = bitwise_and(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2));
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}
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void BitwiseOr::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = bitwise_or(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2));
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}
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void BitwiseXor::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = bitwise_xor(interpreter.global_object(), interpreter.reg(m_src1), interpreter.reg(m_src2));
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}
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void NewString::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = js_string(interpreter.vm(), m_string);
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}
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void NewObject::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = Object::create_empty(interpreter.global_object());
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}
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void GetVariable::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.reg(m_dst) = interpreter.vm().get_variable(m_identifier, interpreter.global_object());
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}
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void SetVariable::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.vm().set_variable(m_identifier, interpreter.reg(m_src), interpreter.global_object());
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}
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void GetById::execute(Bytecode::Interpreter& interpreter) const
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{
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if (auto* object = interpreter.reg(m_base).to_object(interpreter.global_object()))
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interpreter.reg(m_dst) = object->get(m_property);
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}
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void PutById::execute(Bytecode::Interpreter& interpreter) const
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{
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if (auto* object = interpreter.reg(m_base).to_object(interpreter.global_object()))
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object->put(m_property, interpreter.reg(m_src));
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}
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void Jump::execute(Bytecode::Interpreter& interpreter) const
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{
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interpreter.jump(*m_target);
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}
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void JumpIfFalse::execute(Bytecode::Interpreter& interpreter) const
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{
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VERIFY(m_target.has_value());
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auto result = interpreter.reg(m_result);
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if (!result.as_bool())
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interpreter.jump(m_target.value());
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}
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void JumpIfTrue::execute(Bytecode::Interpreter& interpreter) const
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{
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VERIFY(m_target.has_value());
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auto result = interpreter.reg(m_result);
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if (result.as_bool())
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interpreter.jump(m_target.value());
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}
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void Call::execute(Bytecode::Interpreter& interpreter) const
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{
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auto callee = interpreter.reg(m_callee);
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if (!callee.is_function()) {
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TODO();
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}
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auto& function = callee.as_function();
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auto this_value = interpreter.reg(m_this_value);
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Value return_value;
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if (m_argument_count == 0) {
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return_value = interpreter.vm().call(function, this_value);
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} else {
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MarkedValueList argument_values { interpreter.vm().heap() };
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for (size_t i = 0; i < m_argument_count; ++i) {
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argument_values.append(interpreter.reg(m_arguments[i]));
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}
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return_value = interpreter.vm().call(function, this_value, move(argument_values));
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}
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interpreter.reg(m_dst) = return_value;
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}
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void EnterScope::execute(Bytecode::Interpreter& interpreter) const
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{
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auto& vm = interpreter.vm();
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auto& global_object = interpreter.global_object();
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for (auto& declaration : m_scope_node.functions())
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vm.current_scope()->put_to_scope(declaration.name(), { js_undefined(), DeclarationKind::Var });
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for (auto& declaration : m_scope_node.functions()) {
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auto* function = ScriptFunction::create(global_object, declaration.name(), declaration.body(), declaration.parameters(), declaration.function_length(), vm.current_scope(), declaration.is_strict_mode());
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vm.set_variable(declaration.name(), function, global_object);
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}
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// FIXME: Process variable declarations.
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// FIXME: Whatever else JS::Interpreter::enter_scope() does.
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}
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void Return::execute(Bytecode::Interpreter& interpreter) const
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{
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auto return_value = m_argument.has_value() ? interpreter.reg(m_argument.value()) : js_undefined();
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interpreter.do_return(return_value);
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}
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String Load::to_string() const
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{
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return String::formatted("Load dst:{}, value:{}", m_dst, m_value.to_string_without_side_effects());
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}
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String Add::to_string() const
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{
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return String::formatted("Add dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String Sub::to_string() const
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{
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return String::formatted("Sub dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String Mul::to_string() const
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{
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return String::formatted("Mul dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String Div::to_string() const
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{
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return String::formatted("Div dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String Mod::to_string() const
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{
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return String::formatted("Mod dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String Exp::to_string() const
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{
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return String::formatted("Exp dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String GreaterThan::to_string() const
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{
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return String::formatted("GreaterThan dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String GreaterThanEquals::to_string() const
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{
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return String::formatted("GreaterThanEquals dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String LessThan::to_string() const
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{
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return String::formatted("LessThan dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String LessThanEquals::to_string() const
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{
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return String::formatted("LessThanEquals dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String AbstractInequals::to_string() const
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{
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return String::formatted("AbstractInequals dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String AbstractEquals::to_string() const
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{
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return String::formatted("AbstractEquals dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String BitwiseAnd::to_string() const
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{
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return String::formatted("BitwiseAnd dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String BitwiseOr::to_string() const
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{
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return String::formatted("BitwiseOr dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String BitwiseXor::to_string() const
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{
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return String::formatted("BitwiseXor dst:{}, src1:{}, src2:{}", m_dst, m_src1, m_src2);
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}
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String NewString::to_string() const
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{
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return String::formatted("NewString dst:{}, string:\"{}\"", m_dst, m_string);
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}
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String NewObject::to_string() const
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{
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return String::formatted("NewObject dst:{}", m_dst);
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}
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String GetVariable::to_string() const
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{
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return String::formatted("GetVariable dst:{}, identifier:{}", m_dst, m_identifier);
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}
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String SetVariable::to_string() const
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{
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return String::formatted("SetVariable identifier:{}, src:{}", m_identifier, m_src);
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}
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String PutById::to_string() const
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{
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return String::formatted("PutById base:{}, property:{}, src:{}", m_base, m_property, m_src);
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}
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String GetById::to_string() const
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{
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return String::formatted("GetById dst:{}, base:{}, property:{}", m_dst, m_base, m_property);
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}
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String Jump::to_string() const
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{
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return String::formatted("Jump {}", *m_target);
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}
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String JumpIfFalse::to_string() const
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{
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if (m_target.has_value())
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return String::formatted("JumpIfFalse result:{}, target:{}", m_result, m_target.value());
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return String::formatted("JumpIfFalse result:{}, target:<empty>", m_result);
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}
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String JumpIfTrue::to_string() const
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{
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if (m_target.has_value())
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return String::formatted("JumpIfTrue result:{}, target:{}", m_result, m_target.value());
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return String::formatted("JumpIfTrue result:{}, target:<empty>", m_result);
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}
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String Call::to_string() const
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{
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StringBuilder builder;
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builder.appendff("Call dst:{}, callee:{}, this:{}", m_dst, m_callee, m_this_value);
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if (m_argument_count != 0) {
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builder.append(", arguments:[");
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for (size_t i = 0; i < m_argument_count; ++i) {
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builder.appendff("{}", m_arguments[i]);
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if (i != m_argument_count - 1)
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builder.append(',');
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}
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builder.append(']');
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}
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return builder.to_string();
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}
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String EnterScope::to_string() const
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{
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return "EnterScope";
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}
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String Return::to_string() const
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{
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if (m_argument.has_value())
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return String::formatted("Return {}", m_argument.value());
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return "Return";
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}
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}
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