ASTCodegen.cpp 48 KB

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  1. /*
  2. * Copyright (c) 2021, Andreas Kling <kling@serenityos.org>
  3. * Copyright (c) 2021, Linus Groh <linusg@serenityos.org>
  4. * Copyright (c) 2021, Gunnar Beutner <gbeutner@serenityos.org>
  5. * Copyright (c) 2021, Marcin Gasperowicz <xnooga@gmail.com>
  6. *
  7. * SPDX-License-Identifier: BSD-2-Clause
  8. */
  9. #include <AK/Format.h>
  10. #include <LibJS/AST.h>
  11. #include <LibJS/Bytecode/Generator.h>
  12. #include <LibJS/Bytecode/Instruction.h>
  13. #include <LibJS/Bytecode/Op.h>
  14. #include <LibJS/Bytecode/Register.h>
  15. #include <LibJS/Bytecode/StringTable.h>
  16. #include <LibJS/Runtime/Environment.h>
  17. namespace JS {
  18. void ASTNode::generate_bytecode(Bytecode::Generator&) const
  19. {
  20. dbgln("Missing generate_bytecode() in {}", class_name());
  21. TODO();
  22. }
  23. void ScopeNode::generate_bytecode(Bytecode::Generator& generator) const
  24. {
  25. // FIXME: This is an ad-hoc fix but should be done as the spec says in
  26. // {Global, Block, Function, Eval}DeclarationInstantiation.
  27. for (auto& function : m_functions_hoistable_with_annexB_extension) {
  28. generator.emit<Bytecode::Op::NewFunction>(function);
  29. generator.emit<Bytecode::Op::SetVariable>(generator.intern_string(function.name()));
  30. }
  31. HashTable<FlyString> functions_initialized;
  32. for_each_var_function_declaration_in_reverse_order([&](FunctionDeclaration const& function) {
  33. if (functions_initialized.set(function.name()) != AK::HashSetResult::InsertedNewEntry)
  34. return IterationDecision::Continue;
  35. generator.emit<Bytecode::Op::NewFunction>(function);
  36. generator.emit<Bytecode::Op::SetVariable>(generator.intern_string(function.name()));
  37. return IterationDecision::Continue;
  38. });
  39. // FIXME: Register lexical and variable scope declarations
  40. for (auto& child : children()) {
  41. child.generate_bytecode(generator);
  42. if (generator.is_current_block_terminated())
  43. break;
  44. }
  45. }
  46. void EmptyStatement::generate_bytecode(Bytecode::Generator&) const
  47. {
  48. }
  49. void ExpressionStatement::generate_bytecode(Bytecode::Generator& generator) const
  50. {
  51. m_expression->generate_bytecode(generator);
  52. }
  53. void BinaryExpression::generate_bytecode(Bytecode::Generator& generator) const
  54. {
  55. m_lhs->generate_bytecode(generator);
  56. auto lhs_reg = generator.allocate_register();
  57. generator.emit<Bytecode::Op::Store>(lhs_reg);
  58. m_rhs->generate_bytecode(generator);
  59. switch (m_op) {
  60. case BinaryOp::Addition:
  61. generator.emit<Bytecode::Op::Add>(lhs_reg);
  62. break;
  63. case BinaryOp::Subtraction:
  64. generator.emit<Bytecode::Op::Sub>(lhs_reg);
  65. break;
  66. case BinaryOp::Multiplication:
  67. generator.emit<Bytecode::Op::Mul>(lhs_reg);
  68. break;
  69. case BinaryOp::Division:
  70. generator.emit<Bytecode::Op::Div>(lhs_reg);
  71. break;
  72. case BinaryOp::Modulo:
  73. generator.emit<Bytecode::Op::Mod>(lhs_reg);
  74. break;
  75. case BinaryOp::Exponentiation:
  76. generator.emit<Bytecode::Op::Exp>(lhs_reg);
  77. break;
  78. case BinaryOp::GreaterThan:
  79. generator.emit<Bytecode::Op::GreaterThan>(lhs_reg);
  80. break;
  81. case BinaryOp::GreaterThanEquals:
  82. generator.emit<Bytecode::Op::GreaterThanEquals>(lhs_reg);
  83. break;
  84. case BinaryOp::LessThan:
  85. generator.emit<Bytecode::Op::LessThan>(lhs_reg);
  86. break;
  87. case BinaryOp::LessThanEquals:
  88. generator.emit<Bytecode::Op::LessThanEquals>(lhs_reg);
  89. break;
  90. case BinaryOp::LooselyInequals:
  91. generator.emit<Bytecode::Op::LooselyInequals>(lhs_reg);
  92. break;
  93. case BinaryOp::LooselyEquals:
  94. generator.emit<Bytecode::Op::LooselyEquals>(lhs_reg);
  95. break;
  96. case BinaryOp::StrictlyInequals:
  97. generator.emit<Bytecode::Op::StrictlyInequals>(lhs_reg);
  98. break;
  99. case BinaryOp::StrictlyEquals:
  100. generator.emit<Bytecode::Op::StrictlyEquals>(lhs_reg);
  101. break;
  102. case BinaryOp::BitwiseAnd:
  103. generator.emit<Bytecode::Op::BitwiseAnd>(lhs_reg);
  104. break;
  105. case BinaryOp::BitwiseOr:
  106. generator.emit<Bytecode::Op::BitwiseOr>(lhs_reg);
  107. break;
  108. case BinaryOp::BitwiseXor:
  109. generator.emit<Bytecode::Op::BitwiseXor>(lhs_reg);
  110. break;
  111. case BinaryOp::LeftShift:
  112. generator.emit<Bytecode::Op::LeftShift>(lhs_reg);
  113. break;
  114. case BinaryOp::RightShift:
  115. generator.emit<Bytecode::Op::RightShift>(lhs_reg);
  116. break;
  117. case BinaryOp::UnsignedRightShift:
  118. generator.emit<Bytecode::Op::UnsignedRightShift>(lhs_reg);
  119. break;
  120. case BinaryOp::In:
  121. generator.emit<Bytecode::Op::In>(lhs_reg);
  122. break;
  123. case BinaryOp::InstanceOf:
  124. generator.emit<Bytecode::Op::InstanceOf>(lhs_reg);
  125. break;
  126. default:
  127. VERIFY_NOT_REACHED();
  128. }
  129. }
  130. void LogicalExpression::generate_bytecode(Bytecode::Generator& generator) const
  131. {
  132. m_lhs->generate_bytecode(generator);
  133. // lhs
  134. // jump op (true) end (false) rhs
  135. // rhs
  136. // jump always (true) end
  137. // end
  138. auto& rhs_block = generator.make_block();
  139. auto& end_block = generator.make_block();
  140. switch (m_op) {
  141. case LogicalOp::And:
  142. generator.emit<Bytecode::Op::JumpConditional>().set_targets(
  143. Bytecode::Label { rhs_block },
  144. Bytecode::Label { end_block });
  145. break;
  146. case LogicalOp::Or:
  147. generator.emit<Bytecode::Op::JumpConditional>().set_targets(
  148. Bytecode::Label { end_block },
  149. Bytecode::Label { rhs_block });
  150. break;
  151. case LogicalOp::NullishCoalescing:
  152. generator.emit<Bytecode::Op::JumpNullish>().set_targets(
  153. Bytecode::Label { rhs_block },
  154. Bytecode::Label { end_block });
  155. break;
  156. default:
  157. VERIFY_NOT_REACHED();
  158. }
  159. generator.switch_to_basic_block(rhs_block);
  160. m_rhs->generate_bytecode(generator);
  161. generator.emit<Bytecode::Op::Jump>().set_targets(
  162. Bytecode::Label { end_block },
  163. {});
  164. generator.switch_to_basic_block(end_block);
  165. }
  166. void UnaryExpression::generate_bytecode(Bytecode::Generator& generator) const
  167. {
  168. m_lhs->generate_bytecode(generator);
  169. switch (m_op) {
  170. case UnaryOp::BitwiseNot:
  171. generator.emit<Bytecode::Op::BitwiseNot>();
  172. break;
  173. case UnaryOp::Not:
  174. generator.emit<Bytecode::Op::Not>();
  175. break;
  176. case UnaryOp::Plus:
  177. generator.emit<Bytecode::Op::UnaryPlus>();
  178. break;
  179. case UnaryOp::Minus:
  180. generator.emit<Bytecode::Op::UnaryMinus>();
  181. break;
  182. case UnaryOp::Typeof:
  183. generator.emit<Bytecode::Op::Typeof>();
  184. break;
  185. case UnaryOp::Void:
  186. generator.emit<Bytecode::Op::LoadImmediate>(js_undefined());
  187. break;
  188. default:
  189. TODO();
  190. }
  191. }
  192. void NumericLiteral::generate_bytecode(Bytecode::Generator& generator) const
  193. {
  194. generator.emit<Bytecode::Op::LoadImmediate>(m_value);
  195. }
  196. void BooleanLiteral::generate_bytecode(Bytecode::Generator& generator) const
  197. {
  198. generator.emit<Bytecode::Op::LoadImmediate>(Value(m_value));
  199. }
  200. void NullLiteral::generate_bytecode(Bytecode::Generator& generator) const
  201. {
  202. generator.emit<Bytecode::Op::LoadImmediate>(js_null());
  203. }
  204. void BigIntLiteral::generate_bytecode(Bytecode::Generator& generator) const
  205. {
  206. generator.emit<Bytecode::Op::NewBigInt>(Crypto::SignedBigInteger::from_base(10, m_value.substring(0, m_value.length() - 1)));
  207. }
  208. void StringLiteral::generate_bytecode(Bytecode::Generator& generator) const
  209. {
  210. generator.emit<Bytecode::Op::NewString>(generator.intern_string(m_value));
  211. }
  212. void RegExpLiteral::generate_bytecode(Bytecode::Generator& generator) const
  213. {
  214. auto source_index = generator.intern_string(m_pattern);
  215. auto flags_index = generator.intern_string(m_flags);
  216. generator.emit<Bytecode::Op::NewRegExp>(source_index, flags_index);
  217. }
  218. void Identifier::generate_bytecode(Bytecode::Generator& generator) const
  219. {
  220. generator.emit<Bytecode::Op::GetVariable>(generator.intern_string(m_string));
  221. }
  222. void AssignmentExpression::generate_bytecode(Bytecode::Generator& generator) const
  223. {
  224. // FIXME: Implement this for BindingPatterns too.
  225. auto& lhs = m_lhs.get<NonnullRefPtr<Expression>>();
  226. if (is<Identifier>(*lhs)) {
  227. auto& identifier = static_cast<Identifier const&>(*lhs);
  228. if (m_op == AssignmentOp::Assignment) {
  229. m_rhs->generate_bytecode(generator);
  230. generator.emit<Bytecode::Op::SetVariable>(generator.intern_string(identifier.string()));
  231. return;
  232. }
  233. lhs->generate_bytecode(generator);
  234. Bytecode::BasicBlock* rhs_block_ptr { nullptr };
  235. Bytecode::BasicBlock* end_block_ptr { nullptr };
  236. // Logical assignments short circuit.
  237. if (m_op == AssignmentOp::AndAssignment) { // &&=
  238. rhs_block_ptr = &generator.make_block();
  239. end_block_ptr = &generator.make_block();
  240. generator.emit<Bytecode::Op::JumpConditional>().set_targets(
  241. Bytecode::Label { *rhs_block_ptr },
  242. Bytecode::Label { *end_block_ptr });
  243. } else if (m_op == AssignmentOp::OrAssignment) { // ||=
  244. rhs_block_ptr = &generator.make_block();
  245. end_block_ptr = &generator.make_block();
  246. generator.emit<Bytecode::Op::JumpConditional>().set_targets(
  247. Bytecode::Label { *end_block_ptr },
  248. Bytecode::Label { *rhs_block_ptr });
  249. } else if (m_op == AssignmentOp::NullishAssignment) { // ??=
  250. rhs_block_ptr = &generator.make_block();
  251. end_block_ptr = &generator.make_block();
  252. generator.emit<Bytecode::Op::JumpNullish>().set_targets(
  253. Bytecode::Label { *rhs_block_ptr },
  254. Bytecode::Label { *end_block_ptr });
  255. }
  256. if (rhs_block_ptr)
  257. generator.switch_to_basic_block(*rhs_block_ptr);
  258. // lhs_reg is a part of the rhs_block because the store isn't necessary
  259. // if the logical assignment condition fails.
  260. auto lhs_reg = generator.allocate_register();
  261. generator.emit<Bytecode::Op::Store>(lhs_reg);
  262. m_rhs->generate_bytecode(generator);
  263. switch (m_op) {
  264. case AssignmentOp::AdditionAssignment:
  265. generator.emit<Bytecode::Op::Add>(lhs_reg);
  266. break;
  267. case AssignmentOp::SubtractionAssignment:
  268. generator.emit<Bytecode::Op::Sub>(lhs_reg);
  269. break;
  270. case AssignmentOp::MultiplicationAssignment:
  271. generator.emit<Bytecode::Op::Mul>(lhs_reg);
  272. break;
  273. case AssignmentOp::DivisionAssignment:
  274. generator.emit<Bytecode::Op::Div>(lhs_reg);
  275. break;
  276. case AssignmentOp::ModuloAssignment:
  277. generator.emit<Bytecode::Op::Mod>(lhs_reg);
  278. break;
  279. case AssignmentOp::ExponentiationAssignment:
  280. generator.emit<Bytecode::Op::Exp>(lhs_reg);
  281. break;
  282. case AssignmentOp::BitwiseAndAssignment:
  283. generator.emit<Bytecode::Op::BitwiseAnd>(lhs_reg);
  284. break;
  285. case AssignmentOp::BitwiseOrAssignment:
  286. generator.emit<Bytecode::Op::BitwiseOr>(lhs_reg);
  287. break;
  288. case AssignmentOp::BitwiseXorAssignment:
  289. generator.emit<Bytecode::Op::BitwiseXor>(lhs_reg);
  290. break;
  291. case AssignmentOp::LeftShiftAssignment:
  292. generator.emit<Bytecode::Op::LeftShift>(lhs_reg);
  293. break;
  294. case AssignmentOp::RightShiftAssignment:
  295. generator.emit<Bytecode::Op::RightShift>(lhs_reg);
  296. break;
  297. case AssignmentOp::UnsignedRightShiftAssignment:
  298. generator.emit<Bytecode::Op::UnsignedRightShift>(lhs_reg);
  299. break;
  300. case AssignmentOp::AndAssignment:
  301. case AssignmentOp::OrAssignment:
  302. case AssignmentOp::NullishAssignment:
  303. break; // These are handled above.
  304. default:
  305. TODO();
  306. }
  307. generator.emit<Bytecode::Op::SetVariable>(generator.intern_string(identifier.string()));
  308. if (end_block_ptr) {
  309. generator.emit<Bytecode::Op::Jump>().set_targets(
  310. Bytecode::Label { *end_block_ptr },
  311. {});
  312. generator.switch_to_basic_block(*end_block_ptr);
  313. }
  314. return;
  315. }
  316. if (is<MemberExpression>(*lhs)) {
  317. auto& expression = static_cast<MemberExpression const&>(*lhs);
  318. expression.object().generate_bytecode(generator);
  319. auto object_reg = generator.allocate_register();
  320. generator.emit<Bytecode::Op::Store>(object_reg);
  321. if (expression.is_computed()) {
  322. expression.property().generate_bytecode(generator);
  323. auto property_reg = generator.allocate_register();
  324. generator.emit<Bytecode::Op::Store>(property_reg);
  325. m_rhs->generate_bytecode(generator);
  326. generator.emit<Bytecode::Op::PutByValue>(object_reg, property_reg);
  327. } else {
  328. m_rhs->generate_bytecode(generator);
  329. auto identifier_table_ref = generator.intern_string(verify_cast<Identifier>(expression.property()).string());
  330. generator.emit<Bytecode::Op::PutById>(object_reg, identifier_table_ref);
  331. }
  332. return;
  333. }
  334. TODO();
  335. }
  336. void WhileStatement::generate_bytecode(Bytecode::Generator& generator) const
  337. {
  338. // test
  339. // jump if_false (true) end (false) body
  340. // body
  341. // jump always (true) test
  342. // end
  343. auto& test_block = generator.make_block();
  344. auto& body_block = generator.make_block();
  345. auto& end_block = generator.make_block();
  346. // Init result register
  347. generator.emit<Bytecode::Op::LoadImmediate>(js_undefined());
  348. auto result_reg = generator.allocate_register();
  349. generator.emit<Bytecode::Op::Store>(result_reg);
  350. // jump to the test block
  351. generator.emit<Bytecode::Op::Jump>().set_targets(
  352. Bytecode::Label { test_block },
  353. {});
  354. generator.switch_to_basic_block(test_block);
  355. m_test->generate_bytecode(generator);
  356. generator.emit<Bytecode::Op::JumpConditional>().set_targets(
  357. Bytecode::Label { body_block },
  358. Bytecode::Label { end_block });
  359. generator.switch_to_basic_block(body_block);
  360. generator.begin_continuable_scope(Bytecode::Label { test_block });
  361. generator.begin_breakable_scope(Bytecode::Label { end_block });
  362. m_body->generate_bytecode(generator);
  363. if (!generator.is_current_block_terminated()) {
  364. generator.emit<Bytecode::Op::Jump>().set_targets(
  365. Bytecode::Label { test_block },
  366. {});
  367. generator.end_continuable_scope();
  368. generator.end_breakable_scope();
  369. generator.switch_to_basic_block(end_block);
  370. generator.emit<Bytecode::Op::Load>(result_reg);
  371. }
  372. }
  373. void DoWhileStatement::generate_bytecode(Bytecode::Generator& generator) const
  374. {
  375. // jump always (true) body
  376. // test
  377. // jump if_false (true) end (false) body
  378. // body
  379. // jump always (true) test
  380. // end
  381. auto& test_block = generator.make_block();
  382. auto& body_block = generator.make_block();
  383. auto& end_block = generator.make_block();
  384. // Init result register
  385. generator.emit<Bytecode::Op::LoadImmediate>(js_undefined());
  386. auto result_reg = generator.allocate_register();
  387. generator.emit<Bytecode::Op::Store>(result_reg);
  388. // jump to the body block
  389. generator.emit<Bytecode::Op::Jump>().set_targets(
  390. Bytecode::Label { body_block },
  391. {});
  392. generator.switch_to_basic_block(test_block);
  393. m_test->generate_bytecode(generator);
  394. generator.emit<Bytecode::Op::JumpConditional>().set_targets(
  395. Bytecode::Label { body_block },
  396. Bytecode::Label { end_block });
  397. generator.switch_to_basic_block(body_block);
  398. generator.begin_continuable_scope(Bytecode::Label { test_block });
  399. generator.begin_breakable_scope(Bytecode::Label { end_block });
  400. m_body->generate_bytecode(generator);
  401. if (!generator.is_current_block_terminated()) {
  402. generator.emit<Bytecode::Op::Jump>().set_targets(
  403. Bytecode::Label { test_block },
  404. {});
  405. generator.end_continuable_scope();
  406. generator.end_breakable_scope();
  407. generator.switch_to_basic_block(end_block);
  408. generator.emit<Bytecode::Op::Load>(result_reg);
  409. }
  410. }
  411. void ForStatement::generate_bytecode(Bytecode::Generator& generator) const
  412. {
  413. // init
  414. // jump always (true) test
  415. // test
  416. // jump if_true (true) body (false) end
  417. // body
  418. // jump always (true) update
  419. // update
  420. // jump always (true) test
  421. // end
  422. // If 'test' is missing, fuse the 'test' and 'body' basic blocks
  423. // If 'update' is missing, fuse the 'body' and 'update' basic blocks
  424. Bytecode::BasicBlock* test_block_ptr { nullptr };
  425. Bytecode::BasicBlock* body_block_ptr { nullptr };
  426. Bytecode::BasicBlock* update_block_ptr { nullptr };
  427. auto& end_block = generator.make_block();
  428. if (m_init)
  429. m_init->generate_bytecode(generator);
  430. body_block_ptr = &generator.make_block();
  431. if (m_test)
  432. test_block_ptr = &generator.make_block();
  433. else
  434. test_block_ptr = body_block_ptr;
  435. if (m_update)
  436. update_block_ptr = &generator.make_block();
  437. else
  438. update_block_ptr = body_block_ptr;
  439. generator.emit<Bytecode::Op::LoadImmediate>(js_undefined());
  440. auto result_reg = generator.allocate_register();
  441. generator.emit<Bytecode::Op::Store>(result_reg);
  442. generator.emit<Bytecode::Op::Jump>().set_targets(
  443. Bytecode::Label { *test_block_ptr },
  444. {});
  445. if (m_test) {
  446. generator.switch_to_basic_block(*test_block_ptr);
  447. m_test->generate_bytecode(generator);
  448. generator.emit<Bytecode::Op::JumpConditional>().set_targets(
  449. Bytecode::Label { *body_block_ptr },
  450. Bytecode::Label { end_block });
  451. }
  452. generator.switch_to_basic_block(*body_block_ptr);
  453. generator.begin_continuable_scope(Bytecode::Label { *update_block_ptr });
  454. generator.begin_breakable_scope(Bytecode::Label { end_block });
  455. m_body->generate_bytecode(generator);
  456. generator.end_continuable_scope();
  457. if (!generator.is_current_block_terminated()) {
  458. if (m_update) {
  459. generator.emit<Bytecode::Op::Jump>().set_targets(
  460. Bytecode::Label { *update_block_ptr },
  461. {});
  462. generator.switch_to_basic_block(*update_block_ptr);
  463. m_update->generate_bytecode(generator);
  464. }
  465. generator.emit<Bytecode::Op::Jump>().set_targets(
  466. Bytecode::Label { *test_block_ptr },
  467. {});
  468. generator.end_breakable_scope();
  469. generator.switch_to_basic_block(end_block);
  470. generator.emit<Bytecode::Op::Load>(result_reg);
  471. }
  472. }
  473. void ObjectExpression::generate_bytecode(Bytecode::Generator& generator) const
  474. {
  475. generator.emit<Bytecode::Op::NewObject>();
  476. if (m_properties.is_empty())
  477. return;
  478. auto object_reg = generator.allocate_register();
  479. generator.emit<Bytecode::Op::Store>(object_reg);
  480. for (auto& property : m_properties) {
  481. if (property.type() != ObjectProperty::Type::KeyValue)
  482. TODO();
  483. if (is<StringLiteral>(property.key())) {
  484. auto& string_literal = static_cast<StringLiteral const&>(property.key());
  485. Bytecode::StringTableIndex key_name = generator.intern_string(string_literal.value());
  486. property.value().generate_bytecode(generator);
  487. generator.emit<Bytecode::Op::PutById>(object_reg, key_name);
  488. } else {
  489. property.key().generate_bytecode(generator);
  490. auto property_reg = generator.allocate_register();
  491. generator.emit<Bytecode::Op::Store>(property_reg);
  492. property.value().generate_bytecode(generator);
  493. generator.emit<Bytecode::Op::PutByValue>(object_reg, property_reg);
  494. }
  495. }
  496. generator.emit<Bytecode::Op::Load>(object_reg);
  497. }
  498. void ArrayExpression::generate_bytecode(Bytecode::Generator& generator) const
  499. {
  500. Vector<Bytecode::Register> element_regs;
  501. for (auto& element : m_elements) {
  502. if (element) {
  503. element->generate_bytecode(generator);
  504. if (is<SpreadExpression>(*element)) {
  505. TODO();
  506. continue;
  507. }
  508. } else {
  509. generator.emit<Bytecode::Op::LoadImmediate>(Value {});
  510. }
  511. auto element_reg = generator.allocate_register();
  512. generator.emit<Bytecode::Op::Store>(element_reg);
  513. element_regs.append(element_reg);
  514. }
  515. generator.emit_with_extra_register_slots<Bytecode::Op::NewArray>(element_regs.size(), element_regs);
  516. }
  517. void MemberExpression::generate_bytecode(Bytecode::Generator& generator) const
  518. {
  519. object().generate_bytecode(generator);
  520. if (is_computed()) {
  521. auto object_reg = generator.allocate_register();
  522. generator.emit<Bytecode::Op::Store>(object_reg);
  523. property().generate_bytecode(generator);
  524. generator.emit<Bytecode::Op::GetByValue>(object_reg);
  525. } else {
  526. auto identifier_table_ref = generator.intern_string(verify_cast<Identifier>(property()).string());
  527. generator.emit<Bytecode::Op::GetById>(identifier_table_ref);
  528. }
  529. }
  530. void FunctionDeclaration::generate_bytecode(Bytecode::Generator&) const
  531. {
  532. }
  533. void FunctionExpression::generate_bytecode(Bytecode::Generator& generator) const
  534. {
  535. generator.emit<Bytecode::Op::NewFunction>(*this);
  536. }
  537. static void generate_binding_pattern_bytecode(Bytecode::Generator& generator, BindingPattern const& pattern, Bytecode::Register const& value_reg);
  538. static void generate_object_binding_pattern_bytecode(Bytecode::Generator& generator, BindingPattern const& pattern, Bytecode::Register const& value_reg)
  539. {
  540. Vector<Bytecode::Register> excluded_property_names;
  541. auto has_rest = false;
  542. if (pattern.entries.size() > 0)
  543. has_rest = pattern.entries[pattern.entries.size() - 1].is_rest;
  544. for (auto& [name, alias, initializer, is_rest] : pattern.entries) {
  545. if (is_rest) {
  546. VERIFY(name.has<NonnullRefPtr<Identifier>>());
  547. VERIFY(alias.has<Empty>());
  548. VERIFY(!initializer);
  549. auto identifier = name.get<NonnullRefPtr<Identifier>>()->string();
  550. auto interned_identifier = generator.intern_string(identifier);
  551. generator.emit_with_extra_register_slots<Bytecode::Op::CopyObjectExcludingProperties>(excluded_property_names.size(), value_reg, excluded_property_names);
  552. generator.emit<Bytecode::Op::SetVariable>(interned_identifier);
  553. return;
  554. }
  555. Bytecode::StringTableIndex name_index;
  556. if (name.has<NonnullRefPtr<Identifier>>()) {
  557. auto identifier = name.get<NonnullRefPtr<Identifier>>()->string();
  558. name_index = generator.intern_string(identifier);
  559. if (has_rest) {
  560. auto excluded_name_reg = generator.allocate_register();
  561. excluded_property_names.append(excluded_name_reg);
  562. generator.emit<Bytecode::Op::NewString>(name_index);
  563. generator.emit<Bytecode::Op::Store>(excluded_name_reg);
  564. }
  565. generator.emit<Bytecode::Op::Load>(value_reg);
  566. generator.emit<Bytecode::Op::GetById>(name_index);
  567. } else {
  568. auto expression = name.get<NonnullRefPtr<Expression>>();
  569. expression->generate_bytecode(generator);
  570. if (has_rest) {
  571. auto excluded_name_reg = generator.allocate_register();
  572. excluded_property_names.append(excluded_name_reg);
  573. generator.emit<Bytecode::Op::Store>(excluded_name_reg);
  574. }
  575. generator.emit<Bytecode::Op::GetByValue>(value_reg);
  576. }
  577. if (initializer) {
  578. auto& if_undefined_block = generator.make_block();
  579. auto& if_not_undefined_block = generator.make_block();
  580. generator.emit<Bytecode::Op::JumpUndefined>().set_targets(
  581. Bytecode::Label { if_undefined_block },
  582. Bytecode::Label { if_not_undefined_block });
  583. generator.switch_to_basic_block(if_undefined_block);
  584. initializer->generate_bytecode(generator);
  585. generator.emit<Bytecode::Op::Jump>().set_targets(
  586. Bytecode::Label { if_not_undefined_block },
  587. {});
  588. generator.switch_to_basic_block(if_not_undefined_block);
  589. }
  590. if (alias.has<NonnullRefPtr<BindingPattern>>()) {
  591. auto& binding_pattern = *alias.get<NonnullRefPtr<BindingPattern>>();
  592. auto nested_value_reg = generator.allocate_register();
  593. generator.emit<Bytecode::Op::Store>(nested_value_reg);
  594. generate_binding_pattern_bytecode(generator, binding_pattern, nested_value_reg);
  595. } else if (alias.has<Empty>()) {
  596. if (name.has<NonnullRefPtr<Expression>>()) {
  597. // This needs some sort of SetVariableByValue opcode, as it's a runtime binding
  598. TODO();
  599. }
  600. generator.emit<Bytecode::Op::SetVariable>(name_index);
  601. } else {
  602. auto& identifier = alias.get<NonnullRefPtr<Identifier>>()->string();
  603. generator.emit<Bytecode::Op::SetVariable>(generator.intern_string(identifier));
  604. }
  605. }
  606. }
  607. static void generate_array_binding_pattern_bytecode(Bytecode::Generator& generator, BindingPattern const& pattern, Bytecode::Register const& value_reg)
  608. {
  609. /*
  610. * Consider the following destructuring assignment:
  611. *
  612. * let [a, b, c, d, e] = o;
  613. *
  614. * It would be fairly trivial to just loop through this iterator, getting the value
  615. * at each step and assigning them to the binding sequentially. However, this is not
  616. * correct: once an iterator is exhausted, it must not be called again. This complicates
  617. * the bytecode. In order to accomplish this, we do the following:
  618. *
  619. * - Reserve a special boolean register which holds 'true' if the iterator is exhausted,
  620. * and false otherwise
  621. * - When we are retrieving the value which should be bound, we first check this register.
  622. * If it is 'true', we load undefined into the accumulator. Otherwise, we grab the next
  623. * value from the iterator and store it into the accumulator.
  624. *
  625. * Note that the is_exhausted register does not need to be loaded with false because the
  626. * first IteratorNext bytecode is _not_ proceeded by an exhausted check, as it is
  627. * unnecessary.
  628. */
  629. auto is_iterator_exhausted_register = generator.allocate_register();
  630. auto iterator_reg = generator.allocate_register();
  631. generator.emit<Bytecode::Op::Load>(value_reg);
  632. generator.emit<Bytecode::Op::GetIterator>();
  633. generator.emit<Bytecode::Op::Store>(iterator_reg);
  634. bool first = true;
  635. auto temp_iterator_result_reg = generator.allocate_register();
  636. auto assign_accumulator_to_alias = [&](auto& alias) {
  637. alias.visit(
  638. [&](Empty) {
  639. // This element is an elision
  640. },
  641. [&](NonnullRefPtr<Identifier> const& identifier) {
  642. auto interned_index = generator.intern_string(identifier->string());
  643. generator.emit<Bytecode::Op::SetVariable>(interned_index);
  644. },
  645. [&](NonnullRefPtr<BindingPattern> const& pattern) {
  646. // Store the accumulator value in a permanent register
  647. auto target_reg = generator.allocate_register();
  648. generator.emit<Bytecode::Op::Store>(target_reg);
  649. generate_binding_pattern_bytecode(generator, pattern, target_reg);
  650. },
  651. [&](NonnullRefPtr<MemberExpression> const&) {
  652. TODO();
  653. });
  654. };
  655. for (auto& [name, alias, initializer, is_rest] : pattern.entries) {
  656. VERIFY(name.has<Empty>());
  657. if (is_rest) {
  658. if (first) {
  659. // The iterator has not been called, and is thus known to be not exhausted
  660. generator.emit<Bytecode::Op::Load>(iterator_reg);
  661. generator.emit<Bytecode::Op::IteratorToArray>();
  662. } else {
  663. auto& if_exhausted_block = generator.make_block();
  664. auto& if_not_exhausted_block = generator.make_block();
  665. auto& continuation_block = generator.make_block();
  666. generator.emit<Bytecode::Op::Load>(is_iterator_exhausted_register);
  667. generator.emit<Bytecode::Op::JumpConditional>().set_targets(
  668. Bytecode::Label { if_exhausted_block },
  669. Bytecode::Label { if_not_exhausted_block });
  670. generator.switch_to_basic_block(if_exhausted_block);
  671. generator.emit<Bytecode::Op::NewArray>();
  672. generator.emit<Bytecode::Op::Jump>().set_targets(
  673. Bytecode::Label { continuation_block },
  674. {});
  675. generator.switch_to_basic_block(if_not_exhausted_block);
  676. generator.emit<Bytecode::Op::Load>(iterator_reg);
  677. generator.emit<Bytecode::Op::IteratorToArray>();
  678. generator.emit<Bytecode::Op::Jump>().set_targets(
  679. Bytecode::Label { continuation_block },
  680. {});
  681. generator.switch_to_basic_block(continuation_block);
  682. }
  683. assign_accumulator_to_alias(alias);
  684. return;
  685. }
  686. // In the first iteration of the loop, a few things are true which can save
  687. // us some bytecode:
  688. // - the iterator result is still in the accumulator, so we can avoid a load
  689. // - the iterator is not yet exhausted, which can save us a jump and some
  690. // creation
  691. auto& iterator_is_exhausted_block = generator.make_block();
  692. if (!first) {
  693. auto& iterator_is_not_exhausted_block = generator.make_block();
  694. generator.emit<Bytecode::Op::Load>(is_iterator_exhausted_register);
  695. generator.emit<Bytecode::Op::JumpConditional>().set_targets(
  696. Bytecode::Label { iterator_is_exhausted_block },
  697. Bytecode::Label { iterator_is_not_exhausted_block });
  698. generator.switch_to_basic_block(iterator_is_not_exhausted_block);
  699. generator.emit<Bytecode::Op::Load>(iterator_reg);
  700. }
  701. generator.emit<Bytecode::Op::IteratorNext>();
  702. generator.emit<Bytecode::Op::Store>(temp_iterator_result_reg);
  703. generator.emit<Bytecode::Op::IteratorResultDone>();
  704. generator.emit<Bytecode::Op::Store>(is_iterator_exhausted_register);
  705. // We still have to check for exhaustion here. If the iterator is exhausted,
  706. // we need to bail before trying to get the value
  707. auto& no_bail_block = generator.make_block();
  708. generator.emit<Bytecode::Op::JumpConditional>().set_targets(
  709. Bytecode::Label { iterator_is_exhausted_block },
  710. Bytecode::Label { no_bail_block });
  711. generator.switch_to_basic_block(no_bail_block);
  712. // Get the next value in the iterator
  713. generator.emit<Bytecode::Op::Load>(temp_iterator_result_reg);
  714. generator.emit<Bytecode::Op::IteratorResultValue>();
  715. auto& create_binding_block = generator.make_block();
  716. generator.emit<Bytecode::Op::Jump>().set_targets(
  717. Bytecode::Label { create_binding_block },
  718. {});
  719. // The iterator is exhausted, so we just load undefined and continue binding
  720. generator.switch_to_basic_block(iterator_is_exhausted_block);
  721. generator.emit<Bytecode::Op::LoadImmediate>(js_undefined());
  722. generator.emit<Bytecode::Op::Jump>().set_targets(
  723. Bytecode::Label { create_binding_block },
  724. {});
  725. // Create the actual binding. The value which this entry must bind is now in the
  726. // accumulator. We can proceed, processing the alias as a nested destructuring
  727. // pattern if necessary.
  728. generator.switch_to_basic_block(create_binding_block);
  729. assign_accumulator_to_alias(alias);
  730. first = false;
  731. }
  732. }
  733. static void generate_binding_pattern_bytecode(Bytecode::Generator& generator, BindingPattern const& pattern, Bytecode::Register const& value_reg)
  734. {
  735. if (pattern.kind == BindingPattern::Kind::Object) {
  736. generate_object_binding_pattern_bytecode(generator, pattern, value_reg);
  737. } else {
  738. generate_array_binding_pattern_bytecode(generator, pattern, value_reg);
  739. }
  740. };
  741. void VariableDeclaration::generate_bytecode(Bytecode::Generator& generator) const
  742. {
  743. for (auto& declarator : m_declarations) {
  744. if (declarator.init())
  745. declarator.init()->generate_bytecode(generator);
  746. else
  747. generator.emit<Bytecode::Op::LoadImmediate>(js_undefined());
  748. declarator.target().visit(
  749. [&](NonnullRefPtr<Identifier> const& id) {
  750. generator.emit<Bytecode::Op::SetVariable>(generator.intern_string(id->string()));
  751. },
  752. [&](NonnullRefPtr<BindingPattern> const& pattern) {
  753. auto value_register = generator.allocate_register();
  754. generator.emit<Bytecode::Op::Store>(value_register);
  755. generate_binding_pattern_bytecode(generator, pattern, value_register);
  756. });
  757. }
  758. }
  759. void CallExpression::generate_bytecode(Bytecode::Generator& generator) const
  760. {
  761. auto callee_reg = generator.allocate_register();
  762. auto this_reg = generator.allocate_register();
  763. generator.emit<Bytecode::Op::LoadImmediate>(js_undefined());
  764. generator.emit<Bytecode::Op::Store>(this_reg);
  765. if (is<NewExpression>(this)) {
  766. m_callee->generate_bytecode(generator);
  767. generator.emit<Bytecode::Op::Store>(callee_reg);
  768. } else if (is<SuperExpression>(*m_callee)) {
  769. TODO();
  770. } else if (is<MemberExpression>(*m_callee)) {
  771. auto& member_expression = static_cast<const MemberExpression&>(*m_callee);
  772. if (is<SuperExpression>(member_expression.object())) {
  773. TODO();
  774. } else {
  775. member_expression.object().generate_bytecode(generator);
  776. generator.emit<Bytecode::Op::Store>(this_reg);
  777. // FIXME: Don't copy this logic here, make MemberExpression generate it.
  778. if (!is<Identifier>(member_expression.property()))
  779. TODO();
  780. auto identifier_table_ref = generator.intern_string(static_cast<Identifier const&>(member_expression.property()).string());
  781. generator.emit<Bytecode::Op::GetById>(identifier_table_ref);
  782. generator.emit<Bytecode::Op::Store>(callee_reg);
  783. }
  784. } else {
  785. // FIXME: this = global object in sloppy mode.
  786. m_callee->generate_bytecode(generator);
  787. generator.emit<Bytecode::Op::Store>(callee_reg);
  788. }
  789. Vector<Bytecode::Register> argument_registers;
  790. for (auto& arg : m_arguments) {
  791. arg.value->generate_bytecode(generator);
  792. auto arg_reg = generator.allocate_register();
  793. generator.emit<Bytecode::Op::Store>(arg_reg);
  794. argument_registers.append(arg_reg);
  795. }
  796. Bytecode::Op::Call::CallType call_type;
  797. if (is<NewExpression>(*this)) {
  798. call_type = Bytecode::Op::Call::CallType::Construct;
  799. } else {
  800. call_type = Bytecode::Op::Call::CallType::Call;
  801. }
  802. generator.emit_with_extra_register_slots<Bytecode::Op::Call>(argument_registers.size(), call_type, callee_reg, this_reg, argument_registers);
  803. }
  804. void ReturnStatement::generate_bytecode(Bytecode::Generator& generator) const
  805. {
  806. if (m_argument)
  807. m_argument->generate_bytecode(generator);
  808. if (generator.is_in_generator_function())
  809. generator.emit<Bytecode::Op::Yield>(nullptr);
  810. else
  811. generator.emit<Bytecode::Op::Return>();
  812. }
  813. void YieldExpression::generate_bytecode(Bytecode::Generator& generator) const
  814. {
  815. VERIFY(generator.is_in_generator_function());
  816. if (m_is_yield_from)
  817. TODO();
  818. if (m_argument)
  819. m_argument->generate_bytecode(generator);
  820. auto& continuation_block = generator.make_block();
  821. generator.emit<Bytecode::Op::Yield>(Bytecode::Label { continuation_block });
  822. generator.switch_to_basic_block(continuation_block);
  823. }
  824. void IfStatement::generate_bytecode(Bytecode::Generator& generator) const
  825. {
  826. // test
  827. // jump if_true (true) true (false) false
  828. // true
  829. // jump always (true) end
  830. // false
  831. // jump always (true) end
  832. // end
  833. auto& true_block = generator.make_block();
  834. auto& false_block = generator.make_block();
  835. m_predicate->generate_bytecode(generator);
  836. generator.emit<Bytecode::Op::JumpConditional>().set_targets(
  837. Bytecode::Label { true_block },
  838. Bytecode::Label { false_block });
  839. Bytecode::Op::Jump* true_block_jump { nullptr };
  840. generator.switch_to_basic_block(true_block);
  841. generator.emit<Bytecode::Op::LoadImmediate>(js_undefined());
  842. m_consequent->generate_bytecode(generator);
  843. if (!generator.is_current_block_terminated())
  844. true_block_jump = &generator.emit<Bytecode::Op::Jump>();
  845. generator.switch_to_basic_block(false_block);
  846. auto& end_block = generator.make_block();
  847. generator.emit<Bytecode::Op::LoadImmediate>(js_undefined());
  848. if (m_alternate)
  849. m_alternate->generate_bytecode(generator);
  850. if (!generator.is_current_block_terminated())
  851. generator.emit<Bytecode::Op::Jump>().set_targets(Bytecode::Label { end_block }, {});
  852. if (true_block_jump)
  853. true_block_jump->set_targets(Bytecode::Label { end_block }, {});
  854. generator.switch_to_basic_block(end_block);
  855. }
  856. void ContinueStatement::generate_bytecode(Bytecode::Generator& generator) const
  857. {
  858. generator.emit<Bytecode::Op::Jump>().set_targets(
  859. generator.nearest_continuable_scope(),
  860. {});
  861. }
  862. void DebuggerStatement::generate_bytecode(Bytecode::Generator&) const
  863. {
  864. }
  865. void ConditionalExpression::generate_bytecode(Bytecode::Generator& generator) const
  866. {
  867. // test
  868. // jump if_true (true) true (false) false
  869. // true
  870. // jump always (true) end
  871. // false
  872. // jump always (true) end
  873. // end
  874. auto& true_block = generator.make_block();
  875. auto& false_block = generator.make_block();
  876. auto& end_block = generator.make_block();
  877. m_test->generate_bytecode(generator);
  878. generator.emit<Bytecode::Op::JumpConditional>().set_targets(
  879. Bytecode::Label { true_block },
  880. Bytecode::Label { false_block });
  881. generator.switch_to_basic_block(true_block);
  882. m_consequent->generate_bytecode(generator);
  883. generator.emit<Bytecode::Op::Jump>().set_targets(
  884. Bytecode::Label { end_block },
  885. {});
  886. generator.switch_to_basic_block(false_block);
  887. m_alternate->generate_bytecode(generator);
  888. generator.emit<Bytecode::Op::Jump>().set_targets(
  889. Bytecode::Label { end_block },
  890. {});
  891. generator.switch_to_basic_block(end_block);
  892. }
  893. void SequenceExpression::generate_bytecode(Bytecode::Generator& generator) const
  894. {
  895. for (auto& expression : m_expressions)
  896. expression.generate_bytecode(generator);
  897. }
  898. void TemplateLiteral::generate_bytecode(Bytecode::Generator& generator) const
  899. {
  900. auto string_reg = generator.allocate_register();
  901. for (size_t i = 0; i < m_expressions.size(); i++) {
  902. m_expressions[i].generate_bytecode(generator);
  903. if (i == 0) {
  904. generator.emit<Bytecode::Op::Store>(string_reg);
  905. } else {
  906. generator.emit<Bytecode::Op::ConcatString>(string_reg);
  907. }
  908. }
  909. generator.emit<Bytecode::Op::Load>(string_reg);
  910. }
  911. void TaggedTemplateLiteral::generate_bytecode(Bytecode::Generator& generator) const
  912. {
  913. m_tag->generate_bytecode(generator);
  914. auto tag_reg = generator.allocate_register();
  915. generator.emit<Bytecode::Op::Store>(tag_reg);
  916. Vector<Bytecode::Register> string_regs;
  917. auto& expressions = m_template_literal->expressions();
  918. for (size_t i = 0; i < expressions.size(); ++i) {
  919. if (i % 2 != 0)
  920. continue;
  921. expressions[i].generate_bytecode(generator);
  922. auto string_reg = generator.allocate_register();
  923. generator.emit<Bytecode::Op::Store>(string_reg);
  924. string_regs.append(string_reg);
  925. }
  926. generator.emit_with_extra_register_slots<Bytecode::Op::NewArray>(string_regs.size(), string_regs);
  927. auto strings_reg = generator.allocate_register();
  928. generator.emit<Bytecode::Op::Store>(strings_reg);
  929. Vector<Bytecode::Register> argument_regs;
  930. argument_regs.append(strings_reg);
  931. for (size_t i = 0; i < expressions.size(); ++i) {
  932. if (i % 2 == 0)
  933. continue;
  934. expressions[i].generate_bytecode(generator);
  935. auto string_reg = generator.allocate_register();
  936. generator.emit<Bytecode::Op::Store>(string_reg);
  937. argument_regs.append(string_reg);
  938. }
  939. Vector<Bytecode::Register> raw_string_regs;
  940. for (auto& raw_string : m_template_literal->raw_strings()) {
  941. raw_string.generate_bytecode(generator);
  942. auto raw_string_reg = generator.allocate_register();
  943. generator.emit<Bytecode::Op::Store>(raw_string_reg);
  944. raw_string_regs.append(raw_string_reg);
  945. }
  946. generator.emit_with_extra_register_slots<Bytecode::Op::NewArray>(raw_string_regs.size(), raw_string_regs);
  947. auto raw_strings_reg = generator.allocate_register();
  948. generator.emit<Bytecode::Op::Store>(raw_strings_reg);
  949. generator.emit<Bytecode::Op::Load>(strings_reg);
  950. generator.emit<Bytecode::Op::PutById>(raw_strings_reg, generator.intern_string("raw"));
  951. generator.emit<Bytecode::Op::LoadImmediate>(js_undefined());
  952. auto this_reg = generator.allocate_register();
  953. generator.emit<Bytecode::Op::Store>(this_reg);
  954. generator.emit_with_extra_register_slots<Bytecode::Op::Call>(argument_regs.size(), Bytecode::Op::Call::CallType::Call, tag_reg, this_reg, move(argument_regs));
  955. }
  956. void UpdateExpression::generate_bytecode(Bytecode::Generator& generator) const
  957. {
  958. if (is<Identifier>(*m_argument)) {
  959. auto& identifier = static_cast<Identifier const&>(*m_argument);
  960. generator.emit<Bytecode::Op::GetVariable>(generator.intern_string(identifier.string()));
  961. Optional<Bytecode::Register> previous_value_for_postfix_reg;
  962. if (!m_prefixed) {
  963. previous_value_for_postfix_reg = generator.allocate_register();
  964. generator.emit<Bytecode::Op::Store>(*previous_value_for_postfix_reg);
  965. }
  966. if (m_op == UpdateOp::Increment)
  967. generator.emit<Bytecode::Op::Increment>();
  968. else
  969. generator.emit<Bytecode::Op::Decrement>();
  970. generator.emit<Bytecode::Op::SetVariable>(generator.intern_string(identifier.string()));
  971. if (!m_prefixed)
  972. generator.emit<Bytecode::Op::Load>(*previous_value_for_postfix_reg);
  973. return;
  974. }
  975. TODO();
  976. }
  977. void ThrowStatement::generate_bytecode(Bytecode::Generator& generator) const
  978. {
  979. m_argument->generate_bytecode(generator);
  980. generator.emit<Bytecode::Op::Throw>();
  981. }
  982. void BreakStatement::generate_bytecode(Bytecode::Generator& generator) const
  983. {
  984. generator.emit<Bytecode::Op::Jump>().set_targets(
  985. generator.nearest_breakable_scope(),
  986. {});
  987. }
  988. void TryStatement::generate_bytecode(Bytecode::Generator& generator) const
  989. {
  990. auto& saved_block = generator.current_block();
  991. Optional<Bytecode::Label> handler_target;
  992. Optional<Bytecode::Label> finalizer_target;
  993. Bytecode::BasicBlock* next_block { nullptr };
  994. if (m_finalizer) {
  995. auto& finalizer_block = generator.make_block();
  996. generator.switch_to_basic_block(finalizer_block);
  997. m_finalizer->generate_bytecode(generator);
  998. if (!generator.is_current_block_terminated()) {
  999. next_block = &generator.make_block();
  1000. auto next_target = Bytecode::Label { *next_block };
  1001. generator.emit<Bytecode::Op::ContinuePendingUnwind>(next_target);
  1002. }
  1003. finalizer_target = Bytecode::Label { finalizer_block };
  1004. }
  1005. if (m_handler) {
  1006. auto& handler_block = generator.make_block();
  1007. generator.switch_to_basic_block(handler_block);
  1008. if (!m_finalizer)
  1009. generator.emit<Bytecode::Op::LeaveUnwindContext>();
  1010. m_handler->parameter().visit(
  1011. [&](FlyString const& parameter) {
  1012. if (parameter.is_empty()) {
  1013. // FIXME: We need a separate DeclarativeEnvironment here
  1014. generator.emit<Bytecode::Op::SetVariable>(generator.intern_string(parameter));
  1015. }
  1016. },
  1017. [&](NonnullRefPtr<BindingPattern> const&) {
  1018. // FIXME: Implement this path when the above DeclrativeEnvironment issue is dealt with.
  1019. TODO();
  1020. });
  1021. m_handler->body().generate_bytecode(generator);
  1022. handler_target = Bytecode::Label { handler_block };
  1023. if (!generator.is_current_block_terminated()) {
  1024. if (m_finalizer) {
  1025. generator.emit<Bytecode::Op::LeaveUnwindContext>();
  1026. generator.emit<Bytecode::Op::Jump>(finalizer_target);
  1027. } else {
  1028. VERIFY(!next_block);
  1029. next_block = &generator.make_block();
  1030. auto next_target = Bytecode::Label { *next_block };
  1031. generator.emit<Bytecode::Op::Jump>(next_target);
  1032. }
  1033. }
  1034. }
  1035. auto& target_block = generator.make_block();
  1036. generator.switch_to_basic_block(saved_block);
  1037. generator.emit<Bytecode::Op::EnterUnwindContext>(Bytecode::Label { target_block }, handler_target, finalizer_target);
  1038. generator.switch_to_basic_block(target_block);
  1039. m_block->generate_bytecode(generator);
  1040. if (m_finalizer && !generator.is_current_block_terminated())
  1041. generator.emit<Bytecode::Op::Jump>(finalizer_target);
  1042. generator.switch_to_basic_block(next_block ? *next_block : saved_block);
  1043. }
  1044. void SwitchStatement::generate_bytecode(Bytecode::Generator& generator) const
  1045. {
  1046. auto discriminant_reg = generator.allocate_register();
  1047. m_discriminant->generate_bytecode(generator);
  1048. generator.emit<Bytecode::Op::Store>(discriminant_reg);
  1049. Vector<Bytecode::BasicBlock&> case_blocks;
  1050. Bytecode::BasicBlock* default_block { nullptr };
  1051. Bytecode::BasicBlock* next_test_block = &generator.make_block();
  1052. generator.emit<Bytecode::Op::Jump>().set_targets(Bytecode::Label { *next_test_block }, {});
  1053. for (auto& switch_case : m_cases) {
  1054. auto& case_block = generator.make_block();
  1055. if (switch_case.test()) {
  1056. generator.switch_to_basic_block(*next_test_block);
  1057. switch_case.test()->generate_bytecode(generator);
  1058. generator.emit<Bytecode::Op::StrictlyEquals>(discriminant_reg);
  1059. next_test_block = &generator.make_block();
  1060. generator.emit<Bytecode::Op::JumpConditional>().set_targets(Bytecode::Label { case_block }, Bytecode::Label { *next_test_block });
  1061. } else {
  1062. default_block = &case_block;
  1063. }
  1064. case_blocks.append(case_block);
  1065. }
  1066. generator.switch_to_basic_block(*next_test_block);
  1067. auto& end_block = generator.make_block();
  1068. if (default_block != nullptr) {
  1069. generator.emit<Bytecode::Op::Jump>().set_targets(Bytecode::Label { *default_block }, {});
  1070. } else {
  1071. generator.emit<Bytecode::Op::LoadImmediate>(js_undefined());
  1072. generator.emit<Bytecode::Op::Jump>().set_targets(Bytecode::Label { end_block }, {});
  1073. }
  1074. auto current_block = case_blocks.begin();
  1075. generator.begin_breakable_scope(Bytecode::Label { end_block });
  1076. for (auto& switch_case : m_cases) {
  1077. generator.switch_to_basic_block(*current_block);
  1078. generator.emit<Bytecode::Op::LoadImmediate>(js_undefined());
  1079. for (auto& statement : switch_case.children()) {
  1080. statement.generate_bytecode(generator);
  1081. }
  1082. if (!generator.is_current_block_terminated()) {
  1083. auto next_block = current_block;
  1084. next_block++;
  1085. if (next_block.is_end()) {
  1086. generator.emit<Bytecode::Op::Jump>().set_targets(Bytecode::Label { end_block }, {});
  1087. } else {
  1088. generator.emit<Bytecode::Op::Jump>().set_targets(Bytecode::Label { *next_block }, {});
  1089. }
  1090. }
  1091. current_block++;
  1092. }
  1093. generator.end_breakable_scope();
  1094. generator.switch_to_basic_block(end_block);
  1095. }
  1096. void ClassDeclaration::generate_bytecode(Bytecode::Generator& generator) const
  1097. {
  1098. generator.emit<Bytecode::Op::NewClass>(m_class_expression);
  1099. generator.emit<Bytecode::Op::SetVariable>(generator.intern_string(m_class_expression.ptr()->name()));
  1100. }
  1101. }