Generator.h 8.1 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. #pragma once
  7. #include <AK/NonnullOwnPtrVector.h>
  8. #include <AK/OwnPtr.h>
  9. #include <AK/SinglyLinkedList.h>
  10. #include <LibJS/Bytecode/BasicBlock.h>
  11. #include <LibJS/Bytecode/CodeGenerationError.h>
  12. #include <LibJS/Bytecode/Executable.h>
  13. #include <LibJS/Bytecode/IdentifierTable.h>
  14. #include <LibJS/Bytecode/Label.h>
  15. #include <LibJS/Bytecode/Op.h>
  16. #include <LibJS/Bytecode/Register.h>
  17. #include <LibJS/Bytecode/StringTable.h>
  18. #include <LibJS/Forward.h>
  19. #include <LibJS/Runtime/FunctionKind.h>
  20. namespace JS::Bytecode {
  21. class Generator {
  22. public:
  23. enum class SurroundingScopeKind {
  24. Global,
  25. Function,
  26. Block,
  27. };
  28. static CodeGenerationErrorOr<NonnullOwnPtr<Executable>> generate(ASTNode const&, FunctionKind = FunctionKind::Normal);
  29. Register allocate_register();
  30. void ensure_enough_space(size_t size)
  31. {
  32. // Make sure there's always enough space for a single jump at the end.
  33. if (!m_current_basic_block->can_grow(size + sizeof(Op::Jump))) {
  34. auto& new_block = make_block();
  35. emit<Op::Jump>().set_targets(
  36. Label { new_block },
  37. {});
  38. switch_to_basic_block(new_block);
  39. }
  40. }
  41. template<typename OpType, typename... Args>
  42. OpType& emit(Args&&... args)
  43. {
  44. VERIFY(!is_current_block_terminated());
  45. // If the block doesn't have enough space, switch to another block
  46. if constexpr (!OpType::IsTerminator)
  47. ensure_enough_space(sizeof(OpType));
  48. void* slot = next_slot();
  49. grow(sizeof(OpType));
  50. new (slot) OpType(forward<Args>(args)...);
  51. if constexpr (OpType::IsTerminator)
  52. m_current_basic_block->terminate({}, static_cast<Instruction const*>(slot));
  53. return *static_cast<OpType*>(slot);
  54. }
  55. template<typename OpType, typename... Args>
  56. OpType& emit_with_extra_register_slots(size_t extra_register_slots, Args&&... args)
  57. {
  58. VERIFY(!is_current_block_terminated());
  59. size_t size_to_allocate = round_up_to_power_of_two(sizeof(OpType) + extra_register_slots * sizeof(Register), alignof(void*));
  60. // If the block doesn't have enough space, switch to another block
  61. if constexpr (!OpType::IsTerminator)
  62. ensure_enough_space(size_to_allocate);
  63. void* slot = next_slot();
  64. grow(size_to_allocate);
  65. new (slot) OpType(forward<Args>(args)...);
  66. if constexpr (OpType::IsTerminator)
  67. m_current_basic_block->terminate({}, static_cast<Instruction const*>(slot));
  68. return *static_cast<OpType*>(slot);
  69. }
  70. CodeGenerationErrorOr<void> emit_load_from_reference(JS::ASTNode const&);
  71. CodeGenerationErrorOr<void> emit_store_to_reference(JS::ASTNode const&);
  72. CodeGenerationErrorOr<void> emit_delete_reference(JS::ASTNode const&);
  73. void begin_continuable_scope(Label continue_target, Vector<DeprecatedFlyString> const& language_label_set);
  74. void end_continuable_scope();
  75. void begin_breakable_scope(Label breakable_target, Vector<DeprecatedFlyString> const& language_label_set);
  76. void end_breakable_scope();
  77. [[nodiscard]] Label nearest_continuable_scope() const;
  78. [[nodiscard]] Label nearest_breakable_scope() const;
  79. void switch_to_basic_block(BasicBlock& block)
  80. {
  81. m_current_basic_block = &block;
  82. }
  83. [[nodiscard]] BasicBlock& current_block() { return *m_current_basic_block; }
  84. BasicBlock& make_block(DeprecatedString name = {})
  85. {
  86. if (name.is_empty())
  87. name = DeprecatedString::number(m_next_block++);
  88. m_root_basic_blocks.append(BasicBlock::create(name));
  89. return *m_root_basic_blocks.last();
  90. }
  91. bool is_current_block_terminated() const
  92. {
  93. return m_current_basic_block->is_terminated();
  94. }
  95. StringTableIndex intern_string(DeprecatedString string)
  96. {
  97. return m_string_table->insert(move(string));
  98. }
  99. IdentifierTableIndex intern_identifier(DeprecatedFlyString string)
  100. {
  101. return m_identifier_table->insert(move(string));
  102. }
  103. bool is_in_generator_or_async_function() const { return m_enclosing_function_kind == FunctionKind::Async || m_enclosing_function_kind == FunctionKind::Generator; }
  104. bool is_in_generator_function() const { return m_enclosing_function_kind == FunctionKind::Generator; }
  105. bool is_in_async_function() const { return m_enclosing_function_kind == FunctionKind::Async; }
  106. enum class BindingMode {
  107. Lexical,
  108. Var,
  109. Global,
  110. };
  111. struct LexicalScope {
  112. SurroundingScopeKind kind;
  113. BindingMode mode;
  114. HashTable<IdentifierTableIndex> known_bindings;
  115. };
  116. void register_binding(IdentifierTableIndex identifier, BindingMode mode = BindingMode::Lexical)
  117. {
  118. m_variable_scopes.last_matching([&](auto& x) { return x.mode == BindingMode::Global || x.mode == mode; })->known_bindings.set(identifier);
  119. }
  120. bool has_binding(IdentifierTableIndex identifier, Optional<BindingMode> const& specific_binding_mode = {}) const
  121. {
  122. for (auto index = m_variable_scopes.size(); index > 0; --index) {
  123. auto& scope = m_variable_scopes[index - 1];
  124. if (scope.mode != BindingMode::Global && specific_binding_mode.value_or(scope.mode) != scope.mode)
  125. continue;
  126. if (scope.known_bindings.contains(identifier))
  127. return true;
  128. }
  129. return false;
  130. }
  131. bool has_binding_in_current_scope(IdentifierTableIndex identifier) const
  132. {
  133. if (m_variable_scopes.is_empty())
  134. return false;
  135. return m_variable_scopes.last().known_bindings.contains(identifier);
  136. }
  137. void begin_variable_scope(BindingMode mode = BindingMode::Lexical, SurroundingScopeKind kind = SurroundingScopeKind::Block);
  138. void end_variable_scope();
  139. enum class BlockBoundaryType {
  140. Break,
  141. Continue,
  142. Unwind,
  143. ReturnToFinally,
  144. LeaveLexicalEnvironment,
  145. LeaveVariableEnvironment,
  146. };
  147. template<typename OpType>
  148. void perform_needed_unwinds()
  149. requires(OpType::IsTerminator && !IsSame<OpType, Op::Jump>)
  150. {
  151. for (size_t i = m_boundaries.size(); i > 0; --i) {
  152. auto boundary = m_boundaries[i - 1];
  153. using enum BlockBoundaryType;
  154. switch (boundary) {
  155. case Unwind:
  156. if constexpr (IsSame<OpType, Bytecode::Op::Throw>)
  157. return;
  158. emit<Bytecode::Op::LeaveUnwindContext>();
  159. break;
  160. case LeaveLexicalEnvironment:
  161. emit<Bytecode::Op::LeaveEnvironment>(Bytecode::Op::EnvironmentMode::Lexical);
  162. break;
  163. case LeaveVariableEnvironment:
  164. emit<Bytecode::Op::LeaveEnvironment>(Bytecode::Op::EnvironmentMode::Var);
  165. break;
  166. case Break:
  167. case Continue:
  168. break;
  169. case ReturnToFinally:
  170. return;
  171. };
  172. }
  173. }
  174. void generate_break();
  175. void generate_break(DeprecatedFlyString const& break_label);
  176. void generate_continue();
  177. void generate_continue(DeprecatedFlyString const& continue_label);
  178. void start_boundary(BlockBoundaryType type) { m_boundaries.append(type); }
  179. void end_boundary(BlockBoundaryType type)
  180. {
  181. VERIFY(m_boundaries.last() == type);
  182. m_boundaries.take_last();
  183. }
  184. private:
  185. Generator();
  186. ~Generator() = default;
  187. void grow(size_t);
  188. void* next_slot();
  189. struct LabelableScope {
  190. Label bytecode_target;
  191. Vector<DeprecatedFlyString> language_label_set;
  192. };
  193. BasicBlock* m_current_basic_block { nullptr };
  194. Vector<NonnullOwnPtr<BasicBlock>> m_root_basic_blocks;
  195. NonnullOwnPtr<StringTable> m_string_table;
  196. NonnullOwnPtr<IdentifierTable> m_identifier_table;
  197. u32 m_next_register { 2 };
  198. u32 m_next_block { 1 };
  199. FunctionKind m_enclosing_function_kind { FunctionKind::Normal };
  200. Vector<LabelableScope> m_continuable_scopes;
  201. Vector<LabelableScope> m_breakable_scopes;
  202. Vector<LexicalScope> m_variable_scopes;
  203. Vector<BlockBoundaryType> m_boundaries;
  204. };
  205. }