ladybird/Userland/Libraries/LibJS/Bytecode/Op.cpp
Andreas Kling 80b1604b0a LibJS: Compile ScriptFunctions into bytecode and run them that way :^)
If there's a current Bytecode::Interpreter in action, ScriptFunction
will now compile itself into bytecode and execute in that context.

This patch also adds the Return bytecode instruction so that we can
actually return values from called functions. :^)

Return values are propagated from callee to caller via the caller's
$0 register. Bytecode::Interpreter now keeps a stack of register
"windows". These are not very efficient, but it should be pretty
straightforward to convert them to e.g a sliding register window
architecture later on.

This is pretty dang cool! :^)
2021-06-07 18:11:59 +02:00

244 lines
7.1 KiB
C++

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