Interpreter.cpp 70 KB

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  1. /*
  2. * Copyright (c) 2021, Andreas Kling <kling@serenityos.org>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include <AK/Debug.h>
  7. #include <AK/HashTable.h>
  8. #include <AK/TemporaryChange.h>
  9. #include <LibJS/AST.h>
  10. #include <LibJS/Bytecode/BasicBlock.h>
  11. #include <LibJS/Bytecode/CommonImplementations.h>
  12. #include <LibJS/Bytecode/Generator.h>
  13. #include <LibJS/Bytecode/Instruction.h>
  14. #include <LibJS/Bytecode/Interpreter.h>
  15. #include <LibJS/Bytecode/Label.h>
  16. #include <LibJS/Bytecode/Op.h>
  17. #include <LibJS/JIT/Compiler.h>
  18. #include <LibJS/JIT/NativeExecutable.h>
  19. #include <LibJS/Runtime/AbstractOperations.h>
  20. #include <LibJS/Runtime/Array.h>
  21. #include <LibJS/Runtime/BigInt.h>
  22. #include <LibJS/Runtime/DeclarativeEnvironment.h>
  23. #include <LibJS/Runtime/ECMAScriptFunctionObject.h>
  24. #include <LibJS/Runtime/Environment.h>
  25. #include <LibJS/Runtime/FunctionEnvironment.h>
  26. #include <LibJS/Runtime/GlobalEnvironment.h>
  27. #include <LibJS/Runtime/GlobalObject.h>
  28. #include <LibJS/Runtime/Iterator.h>
  29. #include <LibJS/Runtime/NativeFunction.h>
  30. #include <LibJS/Runtime/ObjectEnvironment.h>
  31. #include <LibJS/Runtime/Realm.h>
  32. #include <LibJS/Runtime/Reference.h>
  33. #include <LibJS/Runtime/RegExpObject.h>
  34. #include <LibJS/Runtime/Value.h>
  35. #include <LibJS/Runtime/ValueInlines.h>
  36. #include <LibJS/SourceTextModule.h>
  37. namespace JS::Bytecode {
  38. bool g_dump_bytecode = false;
  39. Interpreter::Interpreter(VM& vm)
  40. : m_vm(vm)
  41. {
  42. }
  43. Interpreter::~Interpreter()
  44. {
  45. }
  46. void Interpreter::visit_edges(Cell::Visitor& visitor)
  47. {
  48. for (auto& frame : m_call_frames) {
  49. frame.visit([&](auto& value) { value->visit_edges(visitor); });
  50. }
  51. }
  52. // 16.1.6 ScriptEvaluation ( scriptRecord ), https://tc39.es/ecma262/#sec-runtime-semantics-scriptevaluation
  53. ThrowCompletionOr<Value> Interpreter::run(Script& script_record, JS::GCPtr<Environment> lexical_environment_override)
  54. {
  55. auto& vm = this->vm();
  56. // 1. Let globalEnv be scriptRecord.[[Realm]].[[GlobalEnv]].
  57. auto& global_environment = script_record.realm().global_environment();
  58. // 2. Let scriptContext be a new ECMAScript code execution context.
  59. ExecutionContext script_context(vm.heap());
  60. // 3. Set the Function of scriptContext to null.
  61. // NOTE: This was done during execution context construction.
  62. // 4. Set the Realm of scriptContext to scriptRecord.[[Realm]].
  63. script_context.realm = &script_record.realm();
  64. // 5. Set the ScriptOrModule of scriptContext to scriptRecord.
  65. script_context.script_or_module = NonnullGCPtr<Script>(script_record);
  66. // 6. Set the VariableEnvironment of scriptContext to globalEnv.
  67. script_context.variable_environment = &global_environment;
  68. // 7. Set the LexicalEnvironment of scriptContext to globalEnv.
  69. script_context.lexical_environment = &global_environment;
  70. // Non-standard: Override the lexical environment if requested.
  71. if (lexical_environment_override)
  72. script_context.lexical_environment = lexical_environment_override;
  73. // 8. Set the PrivateEnvironment of scriptContext to null.
  74. // NOTE: This isn't in the spec, but we require it.
  75. script_context.is_strict_mode = script_record.parse_node().is_strict_mode();
  76. // FIXME: 9. Suspend the currently running execution context.
  77. // 10. Push scriptContext onto the execution context stack; scriptContext is now the running execution context.
  78. TRY(vm.push_execution_context(script_context, {}));
  79. // 11. Let script be scriptRecord.[[ECMAScriptCode]].
  80. auto& script = script_record.parse_node();
  81. // 12. Let result be Completion(GlobalDeclarationInstantiation(script, globalEnv)).
  82. auto instantiation_result = script.global_declaration_instantiation(vm, global_environment);
  83. Completion result = instantiation_result.is_throw_completion() ? instantiation_result.throw_completion() : normal_completion({});
  84. // 13. If result.[[Type]] is normal, then
  85. if (result.type() == Completion::Type::Normal) {
  86. auto executable_result = JS::Bytecode::Generator::generate(script);
  87. if (executable_result.is_error()) {
  88. if (auto error_string = executable_result.error().to_string(); error_string.is_error())
  89. result = vm.template throw_completion<JS::InternalError>(vm.error_message(JS::VM::ErrorMessage::OutOfMemory));
  90. else if (error_string = String::formatted("TODO({})", error_string.value()); error_string.is_error())
  91. result = vm.template throw_completion<JS::InternalError>(vm.error_message(JS::VM::ErrorMessage::OutOfMemory));
  92. else
  93. result = JS::throw_completion(JS::InternalError::create(realm(), error_string.release_value()));
  94. } else {
  95. auto executable = executable_result.release_value();
  96. if (g_dump_bytecode)
  97. executable->dump();
  98. // a. Set result to the result of evaluating script.
  99. auto result_or_error = run_and_return_frame(*executable, nullptr);
  100. if (result_or_error.value.is_error())
  101. result = result_or_error.value.release_error();
  102. else
  103. result = result_or_error.frame->registers[0];
  104. }
  105. }
  106. // 14. If result.[[Type]] is normal and result.[[Value]] is empty, then
  107. if (result.type() == Completion::Type::Normal && !result.value().has_value()) {
  108. // a. Set result to NormalCompletion(undefined).
  109. result = normal_completion(js_undefined());
  110. }
  111. // FIXME: 15. Suspend scriptContext and remove it from the execution context stack.
  112. vm.pop_execution_context();
  113. // 16. Assert: The execution context stack is not empty.
  114. VERIFY(!vm.execution_context_stack().is_empty());
  115. // FIXME: 17. Resume the context that is now on the top of the execution context stack as the running execution context.
  116. // At this point we may have already run any queued promise jobs via on_call_stack_emptied,
  117. // in which case this is a no-op.
  118. // FIXME: These three should be moved out of Interpreter::run and give the host an option to run these, as it's up to the host when these get run.
  119. // https://tc39.es/ecma262/#sec-jobs for jobs and https://tc39.es/ecma262/#_ref_3508 for ClearKeptObjects
  120. // finish_execution_generation is particularly an issue for LibWeb, as the HTML spec wants to run it specifically after performing a microtask checkpoint.
  121. // The promise and registry cleanup queues don't cause LibWeb an issue, as LibWeb overrides the hooks that push onto these queues.
  122. vm.run_queued_promise_jobs();
  123. vm.run_queued_finalization_registry_cleanup_jobs();
  124. vm.finish_execution_generation();
  125. // 18. Return ? result.
  126. if (result.is_abrupt()) {
  127. VERIFY(result.type() == Completion::Type::Throw);
  128. return result.release_error();
  129. }
  130. VERIFY(result.value().has_value());
  131. return *result.value();
  132. }
  133. ThrowCompletionOr<Value> Interpreter::run(SourceTextModule& module)
  134. {
  135. // FIXME: This is not a entry point as defined in the spec, but is convenient.
  136. // To avoid work we use link_and_eval_module however that can already be
  137. // dangerous if the vm loaded other modules.
  138. auto& vm = this->vm();
  139. TRY(vm.link_and_eval_module(Badge<Bytecode::Interpreter> {}, module));
  140. vm.run_queued_promise_jobs();
  141. vm.run_queued_finalization_registry_cleanup_jobs();
  142. return js_undefined();
  143. }
  144. void Interpreter::run_bytecode()
  145. {
  146. auto* locals = vm().running_execution_context().local_variables.data();
  147. auto* registers = this->registers().data();
  148. auto& accumulator = this->accumulator();
  149. for (;;) {
  150. start:
  151. auto pc = InstructionStreamIterator { m_current_block->instruction_stream(), m_current_executable };
  152. TemporaryChange temp_change { m_pc, Optional<InstructionStreamIterator&>(pc) };
  153. bool will_return = false;
  154. bool will_yield = false;
  155. ThrowCompletionOr<void> result;
  156. while (!pc.at_end()) {
  157. auto& instruction = *pc;
  158. switch (instruction.type()) {
  159. case Instruction::Type::GetLocal: {
  160. auto& local = locals[static_cast<Op::GetLocal const&>(instruction).index()];
  161. if (local.is_empty()) {
  162. auto const& variable_name = vm().running_execution_context().function->local_variables_names()[static_cast<Op::GetLocal const&>(instruction).index()];
  163. result = vm().throw_completion<ReferenceError>(ErrorType::BindingNotInitialized, variable_name);
  164. break;
  165. }
  166. accumulator = local;
  167. break;
  168. }
  169. case Instruction::Type::SetLocal:
  170. locals[static_cast<Op::SetLocal const&>(instruction).index()] = accumulator;
  171. break;
  172. case Instruction::Type::Load:
  173. accumulator = registers[static_cast<Op::Load const&>(instruction).src().index()];
  174. break;
  175. case Instruction::Type::Store:
  176. registers[static_cast<Op::Store const&>(instruction).dst().index()] = accumulator;
  177. break;
  178. case Instruction::Type::LoadImmediate:
  179. accumulator = static_cast<Op::LoadImmediate const&>(instruction).value();
  180. break;
  181. case Instruction::Type::Jump:
  182. m_current_block = &static_cast<Op::Jump const&>(instruction).true_target()->block();
  183. goto start;
  184. case Instruction::Type::JumpConditional:
  185. if (accumulator.to_boolean())
  186. m_current_block = &static_cast<Op::Jump const&>(instruction).true_target()->block();
  187. else
  188. m_current_block = &static_cast<Op::Jump const&>(instruction).false_target()->block();
  189. goto start;
  190. case Instruction::Type::JumpNullish:
  191. if (accumulator.is_nullish())
  192. m_current_block = &static_cast<Op::Jump const&>(instruction).true_target()->block();
  193. else
  194. m_current_block = &static_cast<Op::Jump const&>(instruction).false_target()->block();
  195. goto start;
  196. case Instruction::Type::JumpUndefined:
  197. if (accumulator.is_undefined())
  198. m_current_block = &static_cast<Op::Jump const&>(instruction).true_target()->block();
  199. else
  200. m_current_block = &static_cast<Op::Jump const&>(instruction).false_target()->block();
  201. goto start;
  202. case Instruction::Type::EnterUnwindContext:
  203. enter_unwind_context();
  204. m_current_block = &static_cast<Op::EnterUnwindContext const&>(instruction).entry_point().block();
  205. goto start;
  206. case Instruction::Type::ContinuePendingUnwind: {
  207. if (auto exception = reg(Register::exception()); !exception.is_empty()) {
  208. result = throw_completion(exception);
  209. break;
  210. }
  211. if (!saved_return_value().is_empty()) {
  212. do_return(saved_return_value());
  213. break;
  214. }
  215. auto const* old_scheduled_jump = call_frame().previously_scheduled_jumps.take_last();
  216. if (m_scheduled_jump) {
  217. // FIXME: If we `break` or `continue` in the finally, we need to clear
  218. // this field
  219. // Same goes for popping an old_scheduled_jump form the stack
  220. m_current_block = exchange(m_scheduled_jump, nullptr);
  221. } else {
  222. m_current_block = &static_cast<Op::ContinuePendingUnwind const&>(instruction).resume_target().block();
  223. // set the scheduled jump to the old value if we continue
  224. // where we left it
  225. m_scheduled_jump = old_scheduled_jump;
  226. }
  227. goto start;
  228. }
  229. case Instruction::Type::ScheduleJump: {
  230. m_scheduled_jump = &static_cast<Op::ScheduleJump const&>(instruction).target().block();
  231. auto const* finalizer = m_current_block->finalizer();
  232. VERIFY(finalizer);
  233. m_current_block = finalizer;
  234. goto start;
  235. }
  236. default:
  237. result = instruction.execute(*this);
  238. break;
  239. }
  240. if (result.is_error()) [[unlikely]] {
  241. reg(Register::exception()) = *result.throw_completion().value();
  242. m_scheduled_jump = {};
  243. auto const* handler = m_current_block->handler();
  244. auto const* finalizer = m_current_block->finalizer();
  245. if (!handler && !finalizer)
  246. return;
  247. auto& unwind_context = unwind_contexts().last();
  248. VERIFY(unwind_context.executable == m_current_executable);
  249. if (handler) {
  250. VERIFY(!unwind_context.handler_called);
  251. vm().running_execution_context().lexical_environment = unwind_context.lexical_environment;
  252. m_current_block = handler;
  253. unwind_context.handler_called = true;
  254. accumulator = reg(Register::exception());
  255. reg(Register::exception()) = {};
  256. goto start;
  257. }
  258. if (finalizer) {
  259. m_current_block = finalizer;
  260. // If an exception was thrown inside the corresponding `catch` block, we need to rethrow it
  261. // from the `finally` block. But if the exception is from the `try` block, and has already been
  262. // handled by `catch`, we swallow it.
  263. if (!unwind_context.handler_called)
  264. reg(Register::exception()) = {};
  265. goto start;
  266. }
  267. // An unwind context with no handler or finalizer? We have nowhere to jump, and continuing on will make us crash on the next `Call` to a non-native function if there's an exception! So let's crash here instead.
  268. // If you run into this, you probably forgot to remove the current unwind_context somewhere.
  269. VERIFY_NOT_REACHED();
  270. }
  271. if (!reg(Register::return_value()).is_empty()) {
  272. will_return = true;
  273. // Note: A `yield` statement will not go through a finally statement,
  274. // hence we need to set a flag to not do so,
  275. // but we generate a Yield Operation in the case of returns in
  276. // generators as well, so we need to check if it will actually
  277. // continue or is a `return` in disguise
  278. will_yield = (instruction.type() == Instruction::Type::Yield && static_cast<Op::Yield const&>(instruction).continuation().has_value()) || instruction.type() == Instruction::Type::Await;
  279. break;
  280. }
  281. ++pc;
  282. }
  283. if (auto const* finalizer = m_current_block->finalizer(); finalizer && !will_yield) {
  284. auto& unwind_context = unwind_contexts().last();
  285. VERIFY(unwind_context.executable == m_current_executable);
  286. reg(Register::saved_return_value()) = reg(Register::return_value());
  287. reg(Register::return_value()) = {};
  288. m_current_block = finalizer;
  289. // the unwind_context will be pop'ed when entering the finally block
  290. continue;
  291. }
  292. if (pc.at_end())
  293. break;
  294. if (will_return)
  295. break;
  296. }
  297. }
  298. Interpreter::ValueAndFrame Interpreter::run_and_return_frame(Executable& executable, BasicBlock const* entry_point, CallFrame* in_frame)
  299. {
  300. dbgln_if(JS_BYTECODE_DEBUG, "Bytecode::Interpreter will run unit {:p}", &executable);
  301. TemporaryChange restore_executable { m_current_executable, &executable };
  302. TemporaryChange restore_saved_jump { m_scheduled_jump, static_cast<BasicBlock const*>(nullptr) };
  303. VERIFY(!vm().execution_context_stack().is_empty());
  304. TemporaryChange restore_current_block { m_current_block, entry_point ?: executable.basic_blocks.first() };
  305. if (in_frame)
  306. push_call_frame(in_frame, executable.number_of_registers);
  307. else
  308. push_call_frame(make<CallFrame>(), executable.number_of_registers);
  309. vm().execution_context_stack().last()->executable = &executable;
  310. if (auto native_executable = executable.get_or_create_native_executable()) {
  311. native_executable->run(vm());
  312. #if 0
  313. for (size_t i = 0; i < vm().running_execution_context().local_variables.size(); ++i) {
  314. dbgln("%{}: {}", i, vm().running_execution_context().local_variables[i]);
  315. }
  316. #endif
  317. } else {
  318. run_bytecode();
  319. }
  320. dbgln_if(JS_BYTECODE_DEBUG, "Bytecode::Interpreter did run unit {:p}", &executable);
  321. if constexpr (JS_BYTECODE_DEBUG) {
  322. for (size_t i = 0; i < registers().size(); ++i) {
  323. String value_string;
  324. if (registers()[i].is_empty())
  325. value_string = "(empty)"_string;
  326. else
  327. value_string = registers()[i].to_string_without_side_effects();
  328. dbgln("[{:3}] {}", i, value_string);
  329. }
  330. }
  331. auto return_value = js_undefined();
  332. if (!reg(Register::return_value()).is_empty())
  333. return_value = reg(Register::return_value());
  334. else if (!reg(Register::saved_return_value()).is_empty())
  335. return_value = reg(Register::saved_return_value());
  336. auto exception = reg(Register::exception());
  337. auto frame = pop_call_frame();
  338. // NOTE: The return value from a called function is put into $0 in the caller context.
  339. if (!m_call_frames.is_empty())
  340. call_frame().registers[0] = return_value;
  341. // At this point we may have already run any queued promise jobs via on_call_stack_emptied,
  342. // in which case this is a no-op.
  343. vm().run_queued_promise_jobs();
  344. vm().finish_execution_generation();
  345. if (!exception.is_empty()) {
  346. if (auto* call_frame = frame.get_pointer<NonnullOwnPtr<CallFrame>>())
  347. return { throw_completion(exception), move(*call_frame) };
  348. return { throw_completion(exception), nullptr };
  349. }
  350. if (auto* call_frame = frame.get_pointer<NonnullOwnPtr<CallFrame>>())
  351. return { return_value, move(*call_frame) };
  352. return { return_value, nullptr };
  353. }
  354. void Interpreter::enter_unwind_context()
  355. {
  356. unwind_contexts().empend(
  357. m_current_executable,
  358. vm().running_execution_context().lexical_environment);
  359. call_frame().previously_scheduled_jumps.append(m_scheduled_jump);
  360. m_scheduled_jump = nullptr;
  361. }
  362. void Interpreter::leave_unwind_context()
  363. {
  364. unwind_contexts().take_last();
  365. }
  366. ThrowCompletionOr<NonnullRefPtr<Bytecode::Executable>> compile(VM& vm, ASTNode const& node, FunctionKind kind, DeprecatedFlyString const& name)
  367. {
  368. auto executable_result = Bytecode::Generator::generate(node, kind);
  369. if (executable_result.is_error())
  370. return vm.throw_completion<InternalError>(ErrorType::NotImplemented, TRY_OR_THROW_OOM(vm, executable_result.error().to_string()));
  371. auto bytecode_executable = executable_result.release_value();
  372. bytecode_executable->name = name;
  373. if (Bytecode::g_dump_bytecode)
  374. bytecode_executable->dump();
  375. return bytecode_executable;
  376. }
  377. Realm& Interpreter::realm()
  378. {
  379. return *m_vm.current_realm();
  380. }
  381. void Interpreter::push_call_frame(Variant<NonnullOwnPtr<CallFrame>, CallFrame*> frame, size_t register_count)
  382. {
  383. m_call_frames.append(move(frame));
  384. this->call_frame().registers.resize(register_count);
  385. m_current_call_frame = this->call_frame().registers;
  386. reg(Register::return_value()) = {};
  387. }
  388. Variant<NonnullOwnPtr<CallFrame>, CallFrame*> Interpreter::pop_call_frame()
  389. {
  390. auto frame = m_call_frames.take_last();
  391. m_current_call_frame = m_call_frames.is_empty() ? Span<Value> {} : this->call_frame().registers;
  392. return frame;
  393. }
  394. }
  395. namespace JS::Bytecode {
  396. DeprecatedString Instruction::to_deprecated_string(Bytecode::Executable const& executable) const
  397. {
  398. #define __BYTECODE_OP(op) \
  399. case Instruction::Type::op: \
  400. return static_cast<Bytecode::Op::op const&>(*this).to_deprecated_string_impl(executable);
  401. switch (type()) {
  402. ENUMERATE_BYTECODE_OPS(__BYTECODE_OP)
  403. default:
  404. VERIFY_NOT_REACHED();
  405. }
  406. #undef __BYTECODE_OP
  407. }
  408. }
  409. namespace JS::Bytecode::Op {
  410. ThrowCompletionOr<void> Load::execute_impl(Bytecode::Interpreter&) const
  411. {
  412. // Handled in the interpreter loop.
  413. __builtin_unreachable();
  414. }
  415. ThrowCompletionOr<void> LoadImmediate::execute_impl(Bytecode::Interpreter&) const
  416. {
  417. // Handled in the interpreter loop.
  418. __builtin_unreachable();
  419. }
  420. ThrowCompletionOr<void> Store::execute_impl(Bytecode::Interpreter&) const
  421. {
  422. // Handled in the interpreter loop.
  423. __builtin_unreachable();
  424. }
  425. static ThrowCompletionOr<Value> abstract_inequals(VM& vm, Value src1, Value src2)
  426. {
  427. return Value(!TRY(is_loosely_equal(vm, src1, src2)));
  428. }
  429. static ThrowCompletionOr<Value> abstract_equals(VM& vm, Value src1, Value src2)
  430. {
  431. return Value(TRY(is_loosely_equal(vm, src1, src2)));
  432. }
  433. static ThrowCompletionOr<Value> typed_inequals(VM&, Value src1, Value src2)
  434. {
  435. return Value(!is_strictly_equal(src1, src2));
  436. }
  437. static ThrowCompletionOr<Value> typed_equals(VM&, Value src1, Value src2)
  438. {
  439. return Value(is_strictly_equal(src1, src2));
  440. }
  441. #define JS_DEFINE_COMMON_BINARY_OP(OpTitleCase, op_snake_case) \
  442. ThrowCompletionOr<void> OpTitleCase::execute_impl(Bytecode::Interpreter& interpreter) const \
  443. { \
  444. auto& vm = interpreter.vm(); \
  445. auto lhs = interpreter.reg(m_lhs_reg); \
  446. auto rhs = interpreter.accumulator(); \
  447. interpreter.accumulator() = TRY(op_snake_case(vm, lhs, rhs)); \
  448. return {}; \
  449. } \
  450. DeprecatedString OpTitleCase::to_deprecated_string_impl(Bytecode::Executable const&) const \
  451. { \
  452. return DeprecatedString::formatted(#OpTitleCase " {}", m_lhs_reg); \
  453. }
  454. JS_ENUMERATE_COMMON_BINARY_OPS(JS_DEFINE_COMMON_BINARY_OP)
  455. static ThrowCompletionOr<Value> not_(VM&, Value value)
  456. {
  457. return Value(!value.to_boolean());
  458. }
  459. static ThrowCompletionOr<Value> typeof_(VM& vm, Value value)
  460. {
  461. return PrimitiveString::create(vm, value.typeof());
  462. }
  463. #define JS_DEFINE_COMMON_UNARY_OP(OpTitleCase, op_snake_case) \
  464. ThrowCompletionOr<void> OpTitleCase::execute_impl(Bytecode::Interpreter& interpreter) const \
  465. { \
  466. auto& vm = interpreter.vm(); \
  467. interpreter.accumulator() = TRY(op_snake_case(vm, interpreter.accumulator())); \
  468. return {}; \
  469. } \
  470. DeprecatedString OpTitleCase::to_deprecated_string_impl(Bytecode::Executable const&) const \
  471. { \
  472. return #OpTitleCase; \
  473. }
  474. JS_ENUMERATE_COMMON_UNARY_OPS(JS_DEFINE_COMMON_UNARY_OP)
  475. ThrowCompletionOr<void> NewBigInt::execute_impl(Bytecode::Interpreter& interpreter) const
  476. {
  477. auto& vm = interpreter.vm();
  478. interpreter.accumulator() = BigInt::create(vm, m_bigint);
  479. return {};
  480. }
  481. ThrowCompletionOr<void> NewArray::execute_impl(Bytecode::Interpreter& interpreter) const
  482. {
  483. auto array = MUST(Array::create(interpreter.realm(), 0));
  484. for (size_t i = 0; i < m_element_count; i++) {
  485. auto& value = interpreter.reg(Register(m_elements[0].index() + i));
  486. array->indexed_properties().put(i, value, default_attributes);
  487. }
  488. interpreter.accumulator() = array;
  489. return {};
  490. }
  491. ThrowCompletionOr<void> Append::execute_impl(Bytecode::Interpreter& interpreter) const
  492. {
  493. return append(interpreter.vm(), interpreter.reg(m_lhs), interpreter.accumulator(), m_is_spread);
  494. }
  495. ThrowCompletionOr<void> ImportCall::execute_impl(Bytecode::Interpreter& interpreter) const
  496. {
  497. auto& vm = interpreter.vm();
  498. auto specifier = interpreter.reg(m_specifier);
  499. auto options_value = interpreter.reg(m_options);
  500. interpreter.accumulator() = TRY(perform_import_call(vm, specifier, options_value));
  501. return {};
  502. }
  503. ThrowCompletionOr<void> IteratorToArray::execute_impl(Bytecode::Interpreter& interpreter) const
  504. {
  505. interpreter.accumulator() = TRY(iterator_to_array(interpreter.vm(), interpreter.accumulator()));
  506. return {};
  507. }
  508. ThrowCompletionOr<void> NewString::execute_impl(Bytecode::Interpreter& interpreter) const
  509. {
  510. interpreter.accumulator() = PrimitiveString::create(interpreter.vm(), interpreter.current_executable().get_string(m_string));
  511. return {};
  512. }
  513. ThrowCompletionOr<void> NewObject::execute_impl(Bytecode::Interpreter& interpreter) const
  514. {
  515. auto& vm = interpreter.vm();
  516. auto& realm = *vm.current_realm();
  517. interpreter.accumulator() = Object::create(realm, realm.intrinsics().object_prototype());
  518. return {};
  519. }
  520. ThrowCompletionOr<void> NewRegExp::execute_impl(Bytecode::Interpreter& interpreter) const
  521. {
  522. interpreter.accumulator() = new_regexp(
  523. interpreter.vm(),
  524. interpreter.current_executable().regex_table->get(m_regex_index),
  525. interpreter.current_executable().get_string(m_source_index),
  526. interpreter.current_executable().get_string(m_flags_index));
  527. return {};
  528. }
  529. #define JS_DEFINE_NEW_BUILTIN_ERROR_OP(ErrorName) \
  530. ThrowCompletionOr<void> New##ErrorName::execute_impl(Bytecode::Interpreter& interpreter) const \
  531. { \
  532. auto& vm = interpreter.vm(); \
  533. auto& realm = *vm.current_realm(); \
  534. interpreter.accumulator() = ErrorName::create(realm, interpreter.current_executable().get_string(m_error_string)); \
  535. return {}; \
  536. } \
  537. DeprecatedString New##ErrorName::to_deprecated_string_impl(Bytecode::Executable const& executable) const \
  538. { \
  539. return DeprecatedString::formatted("New" #ErrorName " {} (\"{}\")", m_error_string, executable.string_table->get(m_error_string)); \
  540. }
  541. JS_ENUMERATE_NEW_BUILTIN_ERROR_OPS(JS_DEFINE_NEW_BUILTIN_ERROR_OP)
  542. ThrowCompletionOr<void> CopyObjectExcludingProperties::execute_impl(Bytecode::Interpreter& interpreter) const
  543. {
  544. auto& vm = interpreter.vm();
  545. auto& realm = *vm.current_realm();
  546. auto from_object = interpreter.reg(m_from_object);
  547. auto to_object = Object::create(realm, realm.intrinsics().object_prototype());
  548. HashTable<PropertyKey> excluded_names;
  549. for (size_t i = 0; i < m_excluded_names_count; ++i) {
  550. excluded_names.set(TRY(interpreter.reg(m_excluded_names[i]).to_property_key(vm)));
  551. }
  552. TRY(to_object->copy_data_properties(vm, from_object, excluded_names));
  553. interpreter.accumulator() = to_object;
  554. return {};
  555. }
  556. ThrowCompletionOr<void> ConcatString::execute_impl(Bytecode::Interpreter& interpreter) const
  557. {
  558. auto& vm = interpreter.vm();
  559. auto string = TRY(interpreter.accumulator().to_primitive_string(vm));
  560. interpreter.reg(m_lhs) = PrimitiveString::create(vm, interpreter.reg(m_lhs).as_string(), string);
  561. return {};
  562. }
  563. ThrowCompletionOr<void> GetVariable::execute_impl(Bytecode::Interpreter& interpreter) const
  564. {
  565. interpreter.accumulator() = TRY(get_variable(interpreter, interpreter.current_executable().get_identifier(m_identifier), m_cache_index));
  566. return {};
  567. }
  568. ThrowCompletionOr<void> GetCalleeAndThisFromEnvironment::execute_impl(Bytecode::Interpreter& interpreter) const
  569. {
  570. auto callee_and_this = TRY(get_callee_and_this_from_environment(interpreter, interpreter.current_executable().get_identifier(m_identifier), m_cache_index));
  571. interpreter.reg(m_callee_reg) = callee_and_this.callee;
  572. interpreter.reg(m_this_reg) = callee_and_this.this_value;
  573. return {};
  574. }
  575. ThrowCompletionOr<void> GetGlobal::execute_impl(Bytecode::Interpreter& interpreter) const
  576. {
  577. interpreter.accumulator() = TRY(get_global(interpreter, m_identifier, m_cache_index));
  578. return {};
  579. }
  580. ThrowCompletionOr<void> GetLocal::execute_impl(Bytecode::Interpreter&) const
  581. {
  582. // Handled in the interpreter loop.
  583. __builtin_unreachable();
  584. }
  585. ThrowCompletionOr<void> DeleteVariable::execute_impl(Bytecode::Interpreter& interpreter) const
  586. {
  587. auto& vm = interpreter.vm();
  588. auto const& string = interpreter.current_executable().get_identifier(m_identifier);
  589. auto reference = TRY(vm.resolve_binding(string));
  590. interpreter.accumulator() = Value(TRY(reference.delete_(vm)));
  591. return {};
  592. }
  593. ThrowCompletionOr<void> CreateLexicalEnvironment::execute_impl(Bytecode::Interpreter& interpreter) const
  594. {
  595. auto make_and_swap_envs = [&](auto& old_environment) {
  596. GCPtr<Environment> environment = new_declarative_environment(*old_environment).ptr();
  597. swap(old_environment, environment);
  598. return environment;
  599. };
  600. interpreter.saved_lexical_environment_stack().append(make_and_swap_envs(interpreter.vm().running_execution_context().lexical_environment));
  601. return {};
  602. }
  603. ThrowCompletionOr<void> EnterObjectEnvironment::execute_impl(Bytecode::Interpreter& interpreter) const
  604. {
  605. auto& vm = interpreter.vm();
  606. auto& old_environment = vm.running_execution_context().lexical_environment;
  607. interpreter.saved_lexical_environment_stack().append(old_environment);
  608. auto object = TRY(interpreter.accumulator().to_object(vm));
  609. vm.running_execution_context().lexical_environment = new_object_environment(object, true, old_environment);
  610. return {};
  611. }
  612. ThrowCompletionOr<void> CreateVariable::execute_impl(Bytecode::Interpreter& interpreter) const
  613. {
  614. auto const& name = interpreter.current_executable().get_identifier(m_identifier);
  615. return create_variable(interpreter.vm(), name, m_mode, m_is_global, m_is_immutable, m_is_strict);
  616. }
  617. ThrowCompletionOr<void> SetVariable::execute_impl(Bytecode::Interpreter& interpreter) const
  618. {
  619. auto& vm = interpreter.vm();
  620. auto const& name = interpreter.current_executable().get_identifier(m_identifier);
  621. TRY(set_variable(vm, name, interpreter.accumulator(), m_mode, m_initialization_mode));
  622. return {};
  623. }
  624. ThrowCompletionOr<void> SetLocal::execute_impl(Bytecode::Interpreter&) const
  625. {
  626. // Handled in the interpreter loop.
  627. __builtin_unreachable();
  628. }
  629. ThrowCompletionOr<void> GetById::execute_impl(Bytecode::Interpreter& interpreter) const
  630. {
  631. auto base_value = interpreter.accumulator();
  632. interpreter.accumulator() = TRY(get_by_id(interpreter, m_property, base_value, base_value, m_cache_index));
  633. return {};
  634. }
  635. ThrowCompletionOr<void> GetByIdWithThis::execute_impl(Bytecode::Interpreter& interpreter) const
  636. {
  637. auto base_value = interpreter.accumulator();
  638. auto this_value = interpreter.reg(m_this_value);
  639. interpreter.accumulator() = TRY(get_by_id(interpreter, m_property, base_value, this_value, m_cache_index));
  640. return {};
  641. }
  642. ThrowCompletionOr<void> GetPrivateById::execute_impl(Bytecode::Interpreter& interpreter) const
  643. {
  644. auto& vm = interpreter.vm();
  645. auto const& name = interpreter.current_executable().get_identifier(m_property);
  646. auto base_value = interpreter.accumulator();
  647. auto private_reference = make_private_reference(vm, base_value, name);
  648. interpreter.accumulator() = TRY(private_reference.get_value(vm));
  649. return {};
  650. }
  651. ThrowCompletionOr<void> HasPrivateId::execute_impl(Bytecode::Interpreter& interpreter) const
  652. {
  653. auto& vm = interpreter.vm();
  654. if (!interpreter.accumulator().is_object())
  655. return vm.throw_completion<TypeError>(ErrorType::InOperatorWithObject);
  656. auto private_environment = vm.running_execution_context().private_environment;
  657. VERIFY(private_environment);
  658. auto private_name = private_environment->resolve_private_identifier(interpreter.current_executable().get_identifier(m_property));
  659. interpreter.accumulator() = Value(interpreter.accumulator().as_object().private_element_find(private_name) != nullptr);
  660. return {};
  661. }
  662. ThrowCompletionOr<void> PutById::execute_impl(Bytecode::Interpreter& interpreter) const
  663. {
  664. auto& vm = interpreter.vm();
  665. // NOTE: Get the value from the accumulator before side effects have a chance to overwrite it.
  666. auto value = interpreter.accumulator();
  667. auto base = interpreter.reg(m_base);
  668. PropertyKey name = interpreter.current_executable().get_identifier(m_property);
  669. TRY(put_by_property_key(vm, base, base, value, name, m_kind));
  670. interpreter.accumulator() = value;
  671. return {};
  672. }
  673. ThrowCompletionOr<void> PutByIdWithThis::execute_impl(Bytecode::Interpreter& interpreter) const
  674. {
  675. auto& vm = interpreter.vm();
  676. // NOTE: Get the value from the accumulator before side effects have a chance to overwrite it.
  677. auto value = interpreter.accumulator();
  678. auto base = interpreter.reg(m_base);
  679. PropertyKey name = interpreter.current_executable().get_identifier(m_property);
  680. TRY(put_by_property_key(vm, base, interpreter.reg(m_this_value), value, name, m_kind));
  681. interpreter.accumulator() = value;
  682. return {};
  683. }
  684. ThrowCompletionOr<void> PutPrivateById::execute_impl(Bytecode::Interpreter& interpreter) const
  685. {
  686. auto& vm = interpreter.vm();
  687. // NOTE: Get the value from the accumulator before side effects have a chance to overwrite it.
  688. auto value = interpreter.accumulator();
  689. auto object = TRY(interpreter.reg(m_base).to_object(vm));
  690. auto name = interpreter.current_executable().get_identifier(m_property);
  691. auto private_reference = make_private_reference(vm, object, name);
  692. TRY(private_reference.put_value(vm, value));
  693. interpreter.accumulator() = value;
  694. return {};
  695. }
  696. ThrowCompletionOr<void> DeleteById::execute_impl(Bytecode::Interpreter& interpreter) const
  697. {
  698. auto base_value = interpreter.accumulator();
  699. interpreter.accumulator() = TRY(Bytecode::delete_by_id(interpreter, base_value, m_property));
  700. return {};
  701. }
  702. ThrowCompletionOr<void> DeleteByIdWithThis::execute_impl(Bytecode::Interpreter& interpreter) const
  703. {
  704. auto& vm = interpreter.vm();
  705. auto base_value = interpreter.accumulator();
  706. auto const& identifier = interpreter.current_executable().get_identifier(m_property);
  707. bool strict = vm.in_strict_mode();
  708. auto reference = Reference { base_value, identifier, interpreter.reg(m_this_value), strict };
  709. interpreter.accumulator() = Value(TRY(reference.delete_(vm)));
  710. return {};
  711. }
  712. ThrowCompletionOr<void> Jump::execute_impl(Bytecode::Interpreter&) const
  713. {
  714. // Handled in the interpreter loop.
  715. __builtin_unreachable();
  716. }
  717. ThrowCompletionOr<void> ResolveThisBinding::execute_impl(Bytecode::Interpreter& interpreter) const
  718. {
  719. auto& cached_this_value = interpreter.reg(Register::this_value());
  720. if (cached_this_value.is_empty()) {
  721. // OPTIMIZATION: Because the value of 'this' cannot be reassigned during a function execution, it's
  722. // resolved once and then saved for subsequent use.
  723. auto& vm = interpreter.vm();
  724. cached_this_value = TRY(vm.resolve_this_binding());
  725. }
  726. interpreter.accumulator() = cached_this_value;
  727. return {};
  728. }
  729. // https://tc39.es/ecma262/#sec-makesuperpropertyreference
  730. ThrowCompletionOr<void> ResolveSuperBase::execute_impl(Bytecode::Interpreter& interpreter) const
  731. {
  732. auto& vm = interpreter.vm();
  733. // 1. Let env be GetThisEnvironment().
  734. auto& env = verify_cast<FunctionEnvironment>(*get_this_environment(vm));
  735. // 2. Assert: env.HasSuperBinding() is true.
  736. VERIFY(env.has_super_binding());
  737. // 3. Let baseValue be ? env.GetSuperBase().
  738. interpreter.accumulator() = TRY(env.get_super_base());
  739. return {};
  740. }
  741. ThrowCompletionOr<void> GetNewTarget::execute_impl(Bytecode::Interpreter& interpreter) const
  742. {
  743. interpreter.accumulator() = interpreter.vm().get_new_target();
  744. return {};
  745. }
  746. ThrowCompletionOr<void> GetImportMeta::execute_impl(Bytecode::Interpreter& interpreter) const
  747. {
  748. interpreter.accumulator() = interpreter.vm().get_import_meta();
  749. return {};
  750. }
  751. ThrowCompletionOr<void> JumpConditional::execute_impl(Bytecode::Interpreter&) const
  752. {
  753. // Handled in the interpreter loop.
  754. __builtin_unreachable();
  755. }
  756. ThrowCompletionOr<void> JumpNullish::execute_impl(Bytecode::Interpreter&) const
  757. {
  758. // Handled in the interpreter loop.
  759. __builtin_unreachable();
  760. }
  761. ThrowCompletionOr<void> JumpUndefined::execute_impl(Bytecode::Interpreter&) const
  762. {
  763. // Handled in the interpreter loop.
  764. __builtin_unreachable();
  765. }
  766. ThrowCompletionOr<void> Call::execute_impl(Bytecode::Interpreter& interpreter) const
  767. {
  768. auto& vm = interpreter.vm();
  769. auto callee = interpreter.reg(m_callee);
  770. TRY(throw_if_needed_for_call(interpreter, callee, call_type(), expression_string()));
  771. MarkedVector<Value> argument_values(vm.heap());
  772. argument_values.ensure_capacity(m_argument_count);
  773. for (u32 i = 0; i < m_argument_count; ++i) {
  774. argument_values.unchecked_append(interpreter.reg(Register { m_first_argument.index() + i }));
  775. }
  776. interpreter.accumulator() = TRY(perform_call(interpreter, interpreter.reg(m_this_value), call_type(), callee, move(argument_values)));
  777. return {};
  778. }
  779. ThrowCompletionOr<void> CallWithArgumentArray::execute_impl(Bytecode::Interpreter& interpreter) const
  780. {
  781. auto callee = interpreter.reg(m_callee);
  782. TRY(throw_if_needed_for_call(interpreter, callee, call_type(), expression_string()));
  783. auto argument_values = argument_list_evaluation(interpreter.vm(), interpreter.accumulator());
  784. interpreter.accumulator() = TRY(perform_call(interpreter, interpreter.reg(m_this_value), call_type(), callee, move(argument_values)));
  785. return {};
  786. }
  787. // 13.3.7.1 Runtime Semantics: Evaluation, https://tc39.es/ecma262/#sec-super-keyword-runtime-semantics-evaluation
  788. ThrowCompletionOr<void> SuperCallWithArgumentArray::execute_impl(Bytecode::Interpreter& interpreter) const
  789. {
  790. interpreter.accumulator() = TRY(super_call_with_argument_array(interpreter.vm(), interpreter.accumulator(), m_is_synthetic));
  791. return {};
  792. }
  793. ThrowCompletionOr<void> NewFunction::execute_impl(Bytecode::Interpreter& interpreter) const
  794. {
  795. auto& vm = interpreter.vm();
  796. interpreter.accumulator() = new_function(vm, m_function_node, m_lhs_name, m_home_object);
  797. return {};
  798. }
  799. ThrowCompletionOr<void> Return::execute_impl(Bytecode::Interpreter& interpreter) const
  800. {
  801. interpreter.do_return(interpreter.accumulator().value_or(js_undefined()));
  802. return {};
  803. }
  804. ThrowCompletionOr<void> Increment::execute_impl(Bytecode::Interpreter& interpreter) const
  805. {
  806. auto& vm = interpreter.vm();
  807. auto old_value = TRY(interpreter.accumulator().to_numeric(vm));
  808. if (old_value.is_number())
  809. interpreter.accumulator() = Value(old_value.as_double() + 1);
  810. else
  811. interpreter.accumulator() = BigInt::create(vm, old_value.as_bigint().big_integer().plus(Crypto::SignedBigInteger { 1 }));
  812. return {};
  813. }
  814. ThrowCompletionOr<void> Decrement::execute_impl(Bytecode::Interpreter& interpreter) const
  815. {
  816. auto& vm = interpreter.vm();
  817. auto old_value = TRY(interpreter.accumulator().to_numeric(vm));
  818. if (old_value.is_number())
  819. interpreter.accumulator() = Value(old_value.as_double() - 1);
  820. else
  821. interpreter.accumulator() = BigInt::create(vm, old_value.as_bigint().big_integer().minus(Crypto::SignedBigInteger { 1 }));
  822. return {};
  823. }
  824. ThrowCompletionOr<void> Throw::execute_impl(Bytecode::Interpreter& interpreter) const
  825. {
  826. return throw_completion(interpreter.accumulator());
  827. }
  828. ThrowCompletionOr<void> ThrowIfNotObject::execute_impl(Bytecode::Interpreter& interpreter) const
  829. {
  830. auto& vm = interpreter.vm();
  831. if (!interpreter.accumulator().is_object())
  832. return vm.throw_completion<TypeError>(ErrorType::NotAnObject, interpreter.accumulator().to_string_without_side_effects());
  833. return {};
  834. }
  835. ThrowCompletionOr<void> ThrowIfNullish::execute_impl(Bytecode::Interpreter& interpreter) const
  836. {
  837. auto& vm = interpreter.vm();
  838. auto value = interpreter.accumulator();
  839. if (value.is_nullish())
  840. return vm.throw_completion<TypeError>(ErrorType::NotObjectCoercible, value.to_string_without_side_effects());
  841. return {};
  842. }
  843. ThrowCompletionOr<void> EnterUnwindContext::execute_impl(Bytecode::Interpreter&) const
  844. {
  845. // Handled in the interpreter loop.
  846. __builtin_unreachable();
  847. }
  848. ThrowCompletionOr<void> ScheduleJump::execute_impl(Bytecode::Interpreter&) const
  849. {
  850. // Handled in the interpreter loop.
  851. __builtin_unreachable();
  852. }
  853. ThrowCompletionOr<void> LeaveLexicalEnvironment::execute_impl(Bytecode::Interpreter& interpreter) const
  854. {
  855. interpreter.vm().running_execution_context().lexical_environment = interpreter.saved_lexical_environment_stack().take_last();
  856. return {};
  857. }
  858. ThrowCompletionOr<void> LeaveUnwindContext::execute_impl(Bytecode::Interpreter& interpreter) const
  859. {
  860. interpreter.leave_unwind_context();
  861. return {};
  862. }
  863. ThrowCompletionOr<void> ContinuePendingUnwind::execute_impl(Bytecode::Interpreter&) const
  864. {
  865. // Handled in the interpreter loop.
  866. __builtin_unreachable();
  867. }
  868. ThrowCompletionOr<void> PushDeclarativeEnvironment::execute_impl(Bytecode::Interpreter& interpreter) const
  869. {
  870. auto environment = interpreter.vm().heap().allocate_without_realm<DeclarativeEnvironment>(interpreter.vm().lexical_environment());
  871. interpreter.vm().running_execution_context().lexical_environment = environment;
  872. interpreter.vm().running_execution_context().variable_environment = environment;
  873. return {};
  874. }
  875. ThrowCompletionOr<void> Yield::execute_impl(Bytecode::Interpreter& interpreter) const
  876. {
  877. auto yielded_value = interpreter.accumulator().value_or(js_undefined());
  878. auto object = Object::create(interpreter.realm(), nullptr);
  879. object->define_direct_property("result", yielded_value, JS::default_attributes);
  880. if (m_continuation_label.has_value())
  881. // FIXME: If we get a pointer, which is not accurately representable as a double
  882. // will cause this to explode
  883. object->define_direct_property("continuation", Value(static_cast<double>(reinterpret_cast<u64>(&m_continuation_label->block()))), JS::default_attributes);
  884. else
  885. object->define_direct_property("continuation", Value(0), JS::default_attributes);
  886. object->define_direct_property("isAwait", Value(false), JS::default_attributes);
  887. interpreter.do_return(object);
  888. return {};
  889. }
  890. ThrowCompletionOr<void> Await::execute_impl(Bytecode::Interpreter& interpreter) const
  891. {
  892. auto yielded_value = interpreter.accumulator().value_or(js_undefined());
  893. auto object = Object::create(interpreter.realm(), nullptr);
  894. object->define_direct_property("result", yielded_value, JS::default_attributes);
  895. // FIXME: If we get a pointer, which is not accurately representable as a double
  896. // will cause this to explode
  897. object->define_direct_property("continuation", Value(static_cast<double>(reinterpret_cast<u64>(&m_continuation_label.block()))), JS::default_attributes);
  898. object->define_direct_property("isAwait", Value(true), JS::default_attributes);
  899. interpreter.do_return(object);
  900. return {};
  901. }
  902. ThrowCompletionOr<void> GetByValue::execute_impl(Bytecode::Interpreter& interpreter) const
  903. {
  904. interpreter.accumulator() = TRY(get_by_value(interpreter, interpreter.reg(m_base), interpreter.accumulator()));
  905. return {};
  906. }
  907. ThrowCompletionOr<void> GetByValueWithThis::execute_impl(Bytecode::Interpreter& interpreter) const
  908. {
  909. auto& vm = interpreter.vm();
  910. // NOTE: Get the property key from the accumulator before side effects have a chance to overwrite it.
  911. auto property_key_value = interpreter.accumulator();
  912. auto object = TRY(interpreter.reg(m_base).to_object(vm));
  913. auto property_key = TRY(property_key_value.to_property_key(vm));
  914. interpreter.accumulator() = TRY(object->internal_get(property_key, interpreter.reg(m_this_value)));
  915. return {};
  916. }
  917. ThrowCompletionOr<void> PutByValue::execute_impl(Bytecode::Interpreter& interpreter) const
  918. {
  919. auto& vm = interpreter.vm();
  920. auto value = interpreter.accumulator();
  921. TRY(put_by_value(vm, interpreter.reg(m_base), interpreter.reg(m_property), interpreter.accumulator(), m_kind));
  922. interpreter.accumulator() = value;
  923. return {};
  924. }
  925. ThrowCompletionOr<void> PutByValueWithThis::execute_impl(Bytecode::Interpreter& interpreter) const
  926. {
  927. auto& vm = interpreter.vm();
  928. // NOTE: Get the value from the accumulator before side effects have a chance to overwrite it.
  929. auto value = interpreter.accumulator();
  930. auto base = interpreter.reg(m_base);
  931. auto property_key = m_kind != PropertyKind::Spread ? TRY(interpreter.reg(m_property).to_property_key(vm)) : PropertyKey {};
  932. TRY(put_by_property_key(vm, base, interpreter.reg(m_this_value), value, property_key, m_kind));
  933. interpreter.accumulator() = value;
  934. return {};
  935. }
  936. ThrowCompletionOr<void> DeleteByValue::execute_impl(Bytecode::Interpreter& interpreter) const
  937. {
  938. auto base_value = interpreter.reg(m_base);
  939. auto property_key_value = interpreter.accumulator();
  940. interpreter.accumulator() = TRY(delete_by_value(interpreter, base_value, property_key_value));
  941. return {};
  942. }
  943. ThrowCompletionOr<void> DeleteByValueWithThis::execute_impl(Bytecode::Interpreter& interpreter) const
  944. {
  945. // NOTE: Get the property key from the accumulator before side effects have a chance to overwrite it.
  946. auto property_key_value = interpreter.accumulator();
  947. auto base_value = interpreter.reg(m_base);
  948. auto this_value = interpreter.reg(m_this_value);
  949. interpreter.accumulator() = TRY(delete_by_value_with_this(interpreter, base_value, property_key_value, this_value));
  950. return {};
  951. }
  952. ThrowCompletionOr<void> GetIterator::execute_impl(Bytecode::Interpreter& interpreter) const
  953. {
  954. auto& vm = interpreter.vm();
  955. auto iterator = TRY(get_iterator(vm, interpreter.accumulator(), m_hint));
  956. interpreter.accumulator() = iterator_to_object(vm, iterator);
  957. return {};
  958. }
  959. ThrowCompletionOr<void> GetMethod::execute_impl(Bytecode::Interpreter& interpreter) const
  960. {
  961. auto& vm = interpreter.vm();
  962. auto identifier = interpreter.current_executable().get_identifier(m_property);
  963. auto method = TRY(interpreter.accumulator().get_method(vm, identifier));
  964. interpreter.accumulator() = method ?: js_undefined();
  965. return {};
  966. }
  967. ThrowCompletionOr<void> GetObjectPropertyIterator::execute_impl(Bytecode::Interpreter& interpreter) const
  968. {
  969. interpreter.accumulator() = TRY(get_object_property_iterator(interpreter.vm(), interpreter.accumulator()));
  970. return {};
  971. }
  972. ThrowCompletionOr<void> IteratorClose::execute_impl(Bytecode::Interpreter& interpreter) const
  973. {
  974. auto& vm = interpreter.vm();
  975. auto iterator_object = TRY(interpreter.accumulator().to_object(vm));
  976. auto iterator = object_to_iterator(vm, iterator_object);
  977. // FIXME: Return the value of the resulting completion. (Note that m_completion_value can be empty!)
  978. TRY(iterator_close(vm, iterator, Completion { m_completion_type, m_completion_value, {} }));
  979. return {};
  980. }
  981. ThrowCompletionOr<void> AsyncIteratorClose::execute_impl(Bytecode::Interpreter& interpreter) const
  982. {
  983. auto& vm = interpreter.vm();
  984. auto iterator_object = TRY(interpreter.accumulator().to_object(vm));
  985. auto iterator = object_to_iterator(vm, iterator_object);
  986. // FIXME: Return the value of the resulting completion. (Note that m_completion_value can be empty!)
  987. TRY(async_iterator_close(vm, iterator, Completion { m_completion_type, m_completion_value, {} }));
  988. return {};
  989. }
  990. ThrowCompletionOr<void> IteratorNext::execute_impl(Bytecode::Interpreter& interpreter) const
  991. {
  992. auto& vm = interpreter.vm();
  993. auto iterator_object = TRY(interpreter.accumulator().to_object(vm));
  994. auto iterator = object_to_iterator(vm, iterator_object);
  995. interpreter.accumulator() = TRY(iterator_next(vm, iterator));
  996. return {};
  997. }
  998. ThrowCompletionOr<void> IteratorResultDone::execute_impl(Bytecode::Interpreter& interpreter) const
  999. {
  1000. auto& vm = interpreter.vm();
  1001. auto iterator_result = TRY(interpreter.accumulator().to_object(vm));
  1002. auto complete = TRY(iterator_complete(vm, iterator_result));
  1003. interpreter.accumulator() = Value(complete);
  1004. return {};
  1005. }
  1006. ThrowCompletionOr<void> IteratorResultValue::execute_impl(Bytecode::Interpreter& interpreter) const
  1007. {
  1008. auto& vm = interpreter.vm();
  1009. auto iterator_result = TRY(interpreter.accumulator().to_object(vm));
  1010. interpreter.accumulator() = TRY(iterator_value(vm, iterator_result));
  1011. return {};
  1012. }
  1013. ThrowCompletionOr<void> NewClass::execute_impl(Bytecode::Interpreter& interpreter) const
  1014. {
  1015. interpreter.accumulator() = TRY(new_class(interpreter.vm(), interpreter.accumulator(), m_class_expression, m_lhs_name));
  1016. return {};
  1017. }
  1018. // 13.5.3.1 Runtime Semantics: Evaluation, https://tc39.es/ecma262/#sec-typeof-operator-runtime-semantics-evaluation
  1019. ThrowCompletionOr<void> TypeofVariable::execute_impl(Bytecode::Interpreter& interpreter) const
  1020. {
  1021. auto& vm = interpreter.vm();
  1022. interpreter.accumulator() = TRY(typeof_variable(vm, interpreter.current_executable().get_identifier(m_identifier)));
  1023. return {};
  1024. }
  1025. ThrowCompletionOr<void> TypeofLocal::execute_impl(Bytecode::Interpreter& interpreter) const
  1026. {
  1027. auto& vm = interpreter.vm();
  1028. auto const& value = vm.running_execution_context().local_variables[m_index];
  1029. interpreter.accumulator() = PrimitiveString::create(vm, value.typeof());
  1030. return {};
  1031. }
  1032. ThrowCompletionOr<void> ToNumeric::execute_impl(Bytecode::Interpreter& interpreter) const
  1033. {
  1034. interpreter.accumulator() = TRY(interpreter.accumulator().to_numeric(interpreter.vm()));
  1035. return {};
  1036. }
  1037. ThrowCompletionOr<void> BlockDeclarationInstantiation::execute_impl(Bytecode::Interpreter& interpreter) const
  1038. {
  1039. auto& vm = interpreter.vm();
  1040. auto old_environment = vm.running_execution_context().lexical_environment;
  1041. interpreter.saved_lexical_environment_stack().append(old_environment);
  1042. vm.running_execution_context().lexical_environment = new_declarative_environment(*old_environment);
  1043. m_scope_node.block_declaration_instantiation(vm, vm.running_execution_context().lexical_environment);
  1044. return {};
  1045. }
  1046. DeprecatedString Load::to_deprecated_string_impl(Bytecode::Executable const&) const
  1047. {
  1048. return DeprecatedString::formatted("Load {}", m_src);
  1049. }
  1050. DeprecatedString LoadImmediate::to_deprecated_string_impl(Bytecode::Executable const&) const
  1051. {
  1052. return DeprecatedString::formatted("LoadImmediate {}", m_value);
  1053. }
  1054. DeprecatedString Store::to_deprecated_string_impl(Bytecode::Executable const&) const
  1055. {
  1056. return DeprecatedString::formatted("Store {}", m_dst);
  1057. }
  1058. DeprecatedString NewBigInt::to_deprecated_string_impl(Bytecode::Executable const&) const
  1059. {
  1060. return DeprecatedString::formatted("NewBigInt \"{}\"", m_bigint.to_base_deprecated(10));
  1061. }
  1062. DeprecatedString NewArray::to_deprecated_string_impl(Bytecode::Executable const&) const
  1063. {
  1064. StringBuilder builder;
  1065. builder.append("NewArray"sv);
  1066. if (m_element_count != 0) {
  1067. builder.appendff(" [{}-{}]", m_elements[0], m_elements[1]);
  1068. }
  1069. return builder.to_deprecated_string();
  1070. }
  1071. DeprecatedString Append::to_deprecated_string_impl(Bytecode::Executable const&) const
  1072. {
  1073. if (m_is_spread)
  1074. return DeprecatedString::formatted("Append lhs: **{}", m_lhs);
  1075. return DeprecatedString::formatted("Append lhs: {}", m_lhs);
  1076. }
  1077. DeprecatedString IteratorToArray::to_deprecated_string_impl(Bytecode::Executable const&) const
  1078. {
  1079. return "IteratorToArray";
  1080. }
  1081. DeprecatedString NewString::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1082. {
  1083. return DeprecatedString::formatted("NewString {} (\"{}\")", m_string, executable.string_table->get(m_string));
  1084. }
  1085. DeprecatedString NewObject::to_deprecated_string_impl(Bytecode::Executable const&) const
  1086. {
  1087. return "NewObject";
  1088. }
  1089. DeprecatedString NewRegExp::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1090. {
  1091. return DeprecatedString::formatted("NewRegExp source:{} (\"{}\") flags:{} (\"{}\")", m_source_index, executable.get_string(m_source_index), m_flags_index, executable.get_string(m_flags_index));
  1092. }
  1093. DeprecatedString CopyObjectExcludingProperties::to_deprecated_string_impl(Bytecode::Executable const&) const
  1094. {
  1095. StringBuilder builder;
  1096. builder.appendff("CopyObjectExcludingProperties from:{}", m_from_object);
  1097. if (m_excluded_names_count != 0) {
  1098. builder.append(" excluding:["sv);
  1099. builder.join(", "sv, ReadonlySpan<Register>(m_excluded_names, m_excluded_names_count));
  1100. builder.append(']');
  1101. }
  1102. return builder.to_deprecated_string();
  1103. }
  1104. DeprecatedString ConcatString::to_deprecated_string_impl(Bytecode::Executable const&) const
  1105. {
  1106. return DeprecatedString::formatted("ConcatString {}", m_lhs);
  1107. }
  1108. DeprecatedString GetCalleeAndThisFromEnvironment::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1109. {
  1110. return DeprecatedString::formatted("GetCalleeAndThisFromEnvironment {} -> callee: {}, this:{} ", executable.identifier_table->get(m_identifier), m_callee_reg, m_this_reg);
  1111. }
  1112. DeprecatedString GetVariable::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1113. {
  1114. return DeprecatedString::formatted("GetVariable {} ({})", m_identifier, executable.identifier_table->get(m_identifier));
  1115. }
  1116. DeprecatedString GetGlobal::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1117. {
  1118. return DeprecatedString::formatted("GetGlobal {} ({})", m_identifier, executable.identifier_table->get(m_identifier));
  1119. }
  1120. DeprecatedString GetLocal::to_deprecated_string_impl(Bytecode::Executable const&) const
  1121. {
  1122. return DeprecatedString::formatted("GetLocal {}", m_index);
  1123. }
  1124. DeprecatedString DeleteVariable::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1125. {
  1126. return DeprecatedString::formatted("DeleteVariable {} ({})", m_identifier, executable.identifier_table->get(m_identifier));
  1127. }
  1128. DeprecatedString CreateLexicalEnvironment::to_deprecated_string_impl(Bytecode::Executable const&) const
  1129. {
  1130. return "CreateLexicalEnvironment"sv;
  1131. }
  1132. DeprecatedString CreateVariable::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1133. {
  1134. auto mode_string = m_mode == EnvironmentMode::Lexical ? "Lexical" : "Variable";
  1135. return DeprecatedString::formatted("CreateVariable env:{} immutable:{} global:{} {} ({})", mode_string, m_is_immutable, m_is_global, m_identifier, executable.identifier_table->get(m_identifier));
  1136. }
  1137. DeprecatedString EnterObjectEnvironment::to_deprecated_string_impl(Executable const&) const
  1138. {
  1139. return DeprecatedString::formatted("EnterObjectEnvironment");
  1140. }
  1141. DeprecatedString SetVariable::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1142. {
  1143. auto initialization_mode_name = m_initialization_mode == InitializationMode::Initialize ? "Initialize" : "Set";
  1144. auto mode_string = m_mode == EnvironmentMode::Lexical ? "Lexical" : "Variable";
  1145. return DeprecatedString::formatted("SetVariable env:{} init:{} {} ({})", mode_string, initialization_mode_name, m_identifier, executable.identifier_table->get(m_identifier));
  1146. }
  1147. DeprecatedString SetLocal::to_deprecated_string_impl(Bytecode::Executable const&) const
  1148. {
  1149. return DeprecatedString::formatted("SetLocal {}", m_index);
  1150. }
  1151. static StringView property_kind_to_string(PropertyKind kind)
  1152. {
  1153. switch (kind) {
  1154. case PropertyKind::Getter:
  1155. return "getter"sv;
  1156. case PropertyKind::Setter:
  1157. return "setter"sv;
  1158. case PropertyKind::KeyValue:
  1159. return "key-value"sv;
  1160. case PropertyKind::DirectKeyValue:
  1161. return "direct-key-value"sv;
  1162. case PropertyKind::Spread:
  1163. return "spread"sv;
  1164. case PropertyKind::ProtoSetter:
  1165. return "proto-setter"sv;
  1166. }
  1167. VERIFY_NOT_REACHED();
  1168. }
  1169. DeprecatedString PutById::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1170. {
  1171. auto kind = property_kind_to_string(m_kind);
  1172. return DeprecatedString::formatted("PutById kind:{} base:{}, property:{} ({})", kind, m_base, m_property, executable.identifier_table->get(m_property));
  1173. }
  1174. DeprecatedString PutByIdWithThis::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1175. {
  1176. auto kind = property_kind_to_string(m_kind);
  1177. return DeprecatedString::formatted("PutByIdWithThis kind:{} base:{}, property:{} ({}) this_value:{}", kind, m_base, m_property, executable.identifier_table->get(m_property), m_this_value);
  1178. }
  1179. DeprecatedString PutPrivateById::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1180. {
  1181. auto kind = property_kind_to_string(m_kind);
  1182. return DeprecatedString::formatted("PutPrivateById kind:{} base:{}, property:{} ({})", kind, m_base, m_property, executable.identifier_table->get(m_property));
  1183. }
  1184. DeprecatedString GetById::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1185. {
  1186. return DeprecatedString::formatted("GetById {} ({})", m_property, executable.identifier_table->get(m_property));
  1187. }
  1188. DeprecatedString GetByIdWithThis::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1189. {
  1190. return DeprecatedString::formatted("GetByIdWithThis {} ({}) this_value:{}", m_property, executable.identifier_table->get(m_property), m_this_value);
  1191. }
  1192. DeprecatedString GetPrivateById::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1193. {
  1194. return DeprecatedString::formatted("GetPrivateById {} ({})", m_property, executable.identifier_table->get(m_property));
  1195. }
  1196. DeprecatedString HasPrivateId::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1197. {
  1198. return DeprecatedString::formatted("HasPrivateId {} ({})", m_property, executable.identifier_table->get(m_property));
  1199. }
  1200. DeprecatedString DeleteById::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1201. {
  1202. return DeprecatedString::formatted("DeleteById {} ({})", m_property, executable.identifier_table->get(m_property));
  1203. }
  1204. DeprecatedString DeleteByIdWithThis::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1205. {
  1206. return DeprecatedString::formatted("DeleteByIdWithThis {} ({}) this_value:{}", m_property, executable.identifier_table->get(m_property), m_this_value);
  1207. }
  1208. DeprecatedString Jump::to_deprecated_string_impl(Bytecode::Executable const&) const
  1209. {
  1210. if (m_true_target.has_value())
  1211. return DeprecatedString::formatted("Jump {}", *m_true_target);
  1212. return DeprecatedString::formatted("Jump <empty>");
  1213. }
  1214. DeprecatedString JumpConditional::to_deprecated_string_impl(Bytecode::Executable const&) const
  1215. {
  1216. auto true_string = m_true_target.has_value() ? DeprecatedString::formatted("{}", *m_true_target) : "<empty>";
  1217. auto false_string = m_false_target.has_value() ? DeprecatedString::formatted("{}", *m_false_target) : "<empty>";
  1218. return DeprecatedString::formatted("JumpConditional true:{} false:{}", true_string, false_string);
  1219. }
  1220. DeprecatedString JumpNullish::to_deprecated_string_impl(Bytecode::Executable const&) const
  1221. {
  1222. auto true_string = m_true_target.has_value() ? DeprecatedString::formatted("{}", *m_true_target) : "<empty>";
  1223. auto false_string = m_false_target.has_value() ? DeprecatedString::formatted("{}", *m_false_target) : "<empty>";
  1224. return DeprecatedString::formatted("JumpNullish null:{} nonnull:{}", true_string, false_string);
  1225. }
  1226. DeprecatedString JumpUndefined::to_deprecated_string_impl(Bytecode::Executable const&) const
  1227. {
  1228. auto true_string = m_true_target.has_value() ? DeprecatedString::formatted("{}", *m_true_target) : "<empty>";
  1229. auto false_string = m_false_target.has_value() ? DeprecatedString::formatted("{}", *m_false_target) : "<empty>";
  1230. return DeprecatedString::formatted("JumpUndefined undefined:{} not undefined:{}", true_string, false_string);
  1231. }
  1232. static StringView call_type_to_string(CallType type)
  1233. {
  1234. switch (type) {
  1235. case CallType::Call:
  1236. return ""sv;
  1237. case CallType::Construct:
  1238. return " (Construct)"sv;
  1239. case CallType::DirectEval:
  1240. return " (DirectEval)"sv;
  1241. }
  1242. VERIFY_NOT_REACHED();
  1243. }
  1244. DeprecatedString Call::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1245. {
  1246. auto type = call_type_to_string(m_type);
  1247. if (m_expression_string.has_value())
  1248. return DeprecatedString::formatted("Call{} callee:{}, this:{}, first_arg:{} ({})", type, m_callee, m_this_value, m_first_argument, executable.get_string(m_expression_string.value()));
  1249. return DeprecatedString::formatted("Call{} callee:{}, this:{}, first_arg:{}", type, m_callee, m_first_argument, m_this_value);
  1250. }
  1251. DeprecatedString CallWithArgumentArray::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1252. {
  1253. auto type = call_type_to_string(m_type);
  1254. if (m_expression_string.has_value())
  1255. return DeprecatedString::formatted("CallWithArgumentArray{} callee:{}, this:{}, arguments:[...acc] ({})", type, m_callee, m_this_value, executable.get_string(m_expression_string.value()));
  1256. return DeprecatedString::formatted("CallWithArgumentArray{} callee:{}, this:{}, arguments:[...acc]", type, m_callee, m_this_value);
  1257. }
  1258. DeprecatedString SuperCallWithArgumentArray::to_deprecated_string_impl(Bytecode::Executable const&) const
  1259. {
  1260. return "SuperCallWithArgumentArray arguments:[...acc]"sv;
  1261. }
  1262. DeprecatedString NewFunction::to_deprecated_string_impl(Bytecode::Executable const&) const
  1263. {
  1264. StringBuilder builder;
  1265. builder.append("NewFunction"sv);
  1266. if (m_function_node.has_name())
  1267. builder.appendff(" name:{}"sv, m_function_node.name());
  1268. if (m_lhs_name.has_value())
  1269. builder.appendff(" lhs_name:{}"sv, m_lhs_name.value());
  1270. if (m_home_object.has_value())
  1271. builder.appendff(" home_object:{}"sv, m_home_object.value());
  1272. return builder.to_deprecated_string();
  1273. }
  1274. DeprecatedString NewClass::to_deprecated_string_impl(Bytecode::Executable const&) const
  1275. {
  1276. StringBuilder builder;
  1277. auto name = m_class_expression.name();
  1278. builder.appendff("NewClass '{}'"sv, name.is_null() ? ""sv : name);
  1279. if (m_lhs_name.has_value())
  1280. builder.appendff(" lhs_name:{}"sv, m_lhs_name.value());
  1281. return builder.to_deprecated_string();
  1282. }
  1283. DeprecatedString Return::to_deprecated_string_impl(Bytecode::Executable const&) const
  1284. {
  1285. return "Return";
  1286. }
  1287. DeprecatedString Increment::to_deprecated_string_impl(Bytecode::Executable const&) const
  1288. {
  1289. return "Increment";
  1290. }
  1291. DeprecatedString Decrement::to_deprecated_string_impl(Bytecode::Executable const&) const
  1292. {
  1293. return "Decrement";
  1294. }
  1295. DeprecatedString Throw::to_deprecated_string_impl(Bytecode::Executable const&) const
  1296. {
  1297. return "Throw";
  1298. }
  1299. DeprecatedString ThrowIfNotObject::to_deprecated_string_impl(Bytecode::Executable const&) const
  1300. {
  1301. return "ThrowIfNotObject";
  1302. }
  1303. DeprecatedString ThrowIfNullish::to_deprecated_string_impl(Bytecode::Executable const&) const
  1304. {
  1305. return "ThrowIfNullish";
  1306. }
  1307. DeprecatedString EnterUnwindContext::to_deprecated_string_impl(Bytecode::Executable const&) const
  1308. {
  1309. auto handler_string = m_handler_target.has_value() ? DeprecatedString::formatted("{}", *m_handler_target) : "<empty>";
  1310. auto finalizer_string = m_finalizer_target.has_value() ? DeprecatedString::formatted("{}", *m_finalizer_target) : "<empty>";
  1311. return DeprecatedString::formatted("EnterUnwindContext handler:{} finalizer:{} entry:{}", handler_string, finalizer_string, m_entry_point);
  1312. }
  1313. DeprecatedString ScheduleJump::to_deprecated_string_impl(Bytecode::Executable const&) const
  1314. {
  1315. return DeprecatedString::formatted("ScheduleJump {}", m_target);
  1316. }
  1317. DeprecatedString LeaveLexicalEnvironment::to_deprecated_string_impl(Bytecode::Executable const&) const
  1318. {
  1319. return "LeaveLexicalEnvironment"sv;
  1320. }
  1321. DeprecatedString LeaveUnwindContext::to_deprecated_string_impl(Bytecode::Executable const&) const
  1322. {
  1323. return "LeaveUnwindContext";
  1324. }
  1325. DeprecatedString ContinuePendingUnwind::to_deprecated_string_impl(Bytecode::Executable const&) const
  1326. {
  1327. return DeprecatedString::formatted("ContinuePendingUnwind resume:{}", m_resume_target);
  1328. }
  1329. DeprecatedString PushDeclarativeEnvironment::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1330. {
  1331. StringBuilder builder;
  1332. builder.append("PushDeclarativeEnvironment"sv);
  1333. if (!m_variables.is_empty()) {
  1334. builder.append(" {"sv);
  1335. Vector<DeprecatedString> names;
  1336. for (auto& it : m_variables)
  1337. names.append(executable.get_string(it.key));
  1338. builder.append('}');
  1339. builder.join(", "sv, names);
  1340. }
  1341. return builder.to_deprecated_string();
  1342. }
  1343. DeprecatedString Yield::to_deprecated_string_impl(Bytecode::Executable const&) const
  1344. {
  1345. if (m_continuation_label.has_value())
  1346. return DeprecatedString::formatted("Yield continuation:@{}", m_continuation_label->block().name());
  1347. return DeprecatedString::formatted("Yield return");
  1348. }
  1349. DeprecatedString Await::to_deprecated_string_impl(Bytecode::Executable const&) const
  1350. {
  1351. return DeprecatedString::formatted("Await continuation:@{}", m_continuation_label.block().name());
  1352. }
  1353. DeprecatedString GetByValue::to_deprecated_string_impl(Bytecode::Executable const&) const
  1354. {
  1355. return DeprecatedString::formatted("GetByValue base:{}", m_base);
  1356. }
  1357. DeprecatedString GetByValueWithThis::to_deprecated_string_impl(Bytecode::Executable const&) const
  1358. {
  1359. return DeprecatedString::formatted("GetByValueWithThis base:{} this_value:{}", m_base, m_this_value);
  1360. }
  1361. DeprecatedString PutByValue::to_deprecated_string_impl(Bytecode::Executable const&) const
  1362. {
  1363. auto kind = property_kind_to_string(m_kind);
  1364. return DeprecatedString::formatted("PutByValue kind:{} base:{}, property:{}", kind, m_base, m_property);
  1365. }
  1366. DeprecatedString PutByValueWithThis::to_deprecated_string_impl(Bytecode::Executable const&) const
  1367. {
  1368. auto kind = property_kind_to_string(m_kind);
  1369. return DeprecatedString::formatted("PutByValueWithThis kind:{} base:{}, property:{} this_value:{}", kind, m_base, m_property, m_this_value);
  1370. }
  1371. DeprecatedString DeleteByValue::to_deprecated_string_impl(Bytecode::Executable const&) const
  1372. {
  1373. return DeprecatedString::formatted("DeleteByValue base:{}", m_base);
  1374. }
  1375. DeprecatedString DeleteByValueWithThis::to_deprecated_string_impl(Bytecode::Executable const&) const
  1376. {
  1377. return DeprecatedString::formatted("DeleteByValueWithThis base:{} this_value:{}", m_base, m_this_value);
  1378. }
  1379. DeprecatedString GetIterator::to_deprecated_string_impl(Executable const&) const
  1380. {
  1381. auto hint = m_hint == IteratorHint::Sync ? "sync" : "async";
  1382. return DeprecatedString::formatted("GetIterator hint:{}", hint);
  1383. }
  1384. DeprecatedString GetMethod::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1385. {
  1386. return DeprecatedString::formatted("GetMethod {} ({})", m_property, executable.identifier_table->get(m_property));
  1387. }
  1388. DeprecatedString GetObjectPropertyIterator::to_deprecated_string_impl(Bytecode::Executable const&) const
  1389. {
  1390. return "GetObjectPropertyIterator";
  1391. }
  1392. DeprecatedString IteratorClose::to_deprecated_string_impl(Bytecode::Executable const&) const
  1393. {
  1394. if (!m_completion_value.has_value())
  1395. return DeprecatedString::formatted("IteratorClose completion_type={} completion_value=<empty>", to_underlying(m_completion_type));
  1396. auto completion_value_string = m_completion_value->to_string_without_side_effects();
  1397. return DeprecatedString::formatted("IteratorClose completion_type={} completion_value={}", to_underlying(m_completion_type), completion_value_string);
  1398. }
  1399. DeprecatedString AsyncIteratorClose::to_deprecated_string_impl(Bytecode::Executable const&) const
  1400. {
  1401. if (!m_completion_value.has_value())
  1402. return DeprecatedString::formatted("AsyncIteratorClose completion_type={} completion_value=<empty>", to_underlying(m_completion_type));
  1403. auto completion_value_string = m_completion_value->to_string_without_side_effects();
  1404. return DeprecatedString::formatted("AsyncIteratorClose completion_type={} completion_value={}", to_underlying(m_completion_type), completion_value_string);
  1405. }
  1406. DeprecatedString IteratorNext::to_deprecated_string_impl(Executable const&) const
  1407. {
  1408. return "IteratorNext";
  1409. }
  1410. DeprecatedString IteratorResultDone::to_deprecated_string_impl(Executable const&) const
  1411. {
  1412. return "IteratorResultDone";
  1413. }
  1414. DeprecatedString IteratorResultValue::to_deprecated_string_impl(Executable const&) const
  1415. {
  1416. return "IteratorResultValue";
  1417. }
  1418. DeprecatedString ResolveThisBinding::to_deprecated_string_impl(Bytecode::Executable const&) const
  1419. {
  1420. return "ResolveThisBinding"sv;
  1421. }
  1422. DeprecatedString ResolveSuperBase::to_deprecated_string_impl(Bytecode::Executable const&) const
  1423. {
  1424. return "ResolveSuperBase"sv;
  1425. }
  1426. DeprecatedString GetNewTarget::to_deprecated_string_impl(Bytecode::Executable const&) const
  1427. {
  1428. return "GetNewTarget"sv;
  1429. }
  1430. DeprecatedString GetImportMeta::to_deprecated_string_impl(Bytecode::Executable const&) const
  1431. {
  1432. return "GetImportMeta"sv;
  1433. }
  1434. DeprecatedString TypeofVariable::to_deprecated_string_impl(Bytecode::Executable const& executable) const
  1435. {
  1436. return DeprecatedString::formatted("TypeofVariable {} ({})", m_identifier, executable.identifier_table->get(m_identifier));
  1437. }
  1438. DeprecatedString TypeofLocal::to_deprecated_string_impl(Bytecode::Executable const&) const
  1439. {
  1440. return DeprecatedString::formatted("TypeofLocal {}", m_index);
  1441. }
  1442. DeprecatedString ToNumeric::to_deprecated_string_impl(Bytecode::Executable const&) const
  1443. {
  1444. return "ToNumeric"sv;
  1445. }
  1446. DeprecatedString BlockDeclarationInstantiation::to_deprecated_string_impl(Bytecode::Executable const&) const
  1447. {
  1448. return "BlockDeclarationInstantiation"sv;
  1449. }
  1450. DeprecatedString ImportCall::to_deprecated_string_impl(Bytecode::Executable const&) const
  1451. {
  1452. return DeprecatedString::formatted("ImportCall specifier:{} options:{}"sv, m_specifier, m_options);
  1453. }
  1454. }