ASTCodegen.cpp 8.5 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 <LibJS/AST.h>
  7. #include <LibJS/Bytecode/Generator.h>
  8. #include <LibJS/Bytecode/Instruction.h>
  9. #include <LibJS/Bytecode/Op.h>
  10. #include <LibJS/Bytecode/Register.h>
  11. namespace JS {
  12. Optional<Bytecode::Register> ASTNode::generate_bytecode(Bytecode::Generator&) const
  13. {
  14. dbgln("Missing generate_bytecode()");
  15. TODO();
  16. }
  17. Optional<Bytecode::Register> ScopeNode::generate_bytecode(Bytecode::Generator& generator) const
  18. {
  19. generator.emit<Bytecode::Op::EnterScope>(*this);
  20. for (auto& child : children()) {
  21. [[maybe_unused]] auto reg = child.generate_bytecode(generator);
  22. }
  23. return {};
  24. }
  25. Optional<Bytecode::Register> ExpressionStatement::generate_bytecode(Bytecode::Generator& generator) const
  26. {
  27. return m_expression->generate_bytecode(generator);
  28. }
  29. Optional<Bytecode::Register> BinaryExpression::generate_bytecode(Bytecode::Generator& generator) const
  30. {
  31. auto lhs_reg = m_lhs->generate_bytecode(generator);
  32. auto rhs_reg = m_rhs->generate_bytecode(generator);
  33. VERIFY(lhs_reg.has_value());
  34. VERIFY(rhs_reg.has_value());
  35. auto dst_reg = generator.allocate_register();
  36. switch (m_op) {
  37. case BinaryOp::Addition:
  38. generator.emit<Bytecode::Op::Add>(dst_reg, *lhs_reg, *rhs_reg);
  39. return dst_reg;
  40. case BinaryOp::Subtraction:
  41. generator.emit<Bytecode::Op::Sub>(dst_reg, *lhs_reg, *rhs_reg);
  42. return dst_reg;
  43. case BinaryOp::Multiplication:
  44. generator.emit<Bytecode::Op::Mul>(dst_reg, *lhs_reg, *rhs_reg);
  45. return dst_reg;
  46. case BinaryOp::Division:
  47. generator.emit<Bytecode::Op::Div>(dst_reg, *lhs_reg, *rhs_reg);
  48. return dst_reg;
  49. case BinaryOp::Modulo:
  50. generator.emit<Bytecode::Op::Mod>(dst_reg, *lhs_reg, *rhs_reg);
  51. return dst_reg;
  52. case BinaryOp::Exponentiation:
  53. generator.emit<Bytecode::Op::Exp>(dst_reg, *lhs_reg, *rhs_reg);
  54. return dst_reg;
  55. case BinaryOp::GreaterThan:
  56. generator.emit<Bytecode::Op::GreaterThan>(dst_reg, *lhs_reg, *rhs_reg);
  57. return dst_reg;
  58. case BinaryOp::GreaterThanEquals:
  59. generator.emit<Bytecode::Op::GreaterThanEquals>(dst_reg, *lhs_reg, *rhs_reg);
  60. return dst_reg;
  61. case BinaryOp::LessThan:
  62. generator.emit<Bytecode::Op::LessThan>(dst_reg, *lhs_reg, *rhs_reg);
  63. return dst_reg;
  64. case BinaryOp::LessThanEquals:
  65. generator.emit<Bytecode::Op::LessThanEquals>(dst_reg, *lhs_reg, *rhs_reg);
  66. return dst_reg;
  67. case BinaryOp::AbstractInequals:
  68. generator.emit<Bytecode::Op::AbstractInequals>(dst_reg, *lhs_reg, *rhs_reg);
  69. return dst_reg;
  70. case BinaryOp::AbstractEquals:
  71. generator.emit<Bytecode::Op::AbstractEquals>(dst_reg, *lhs_reg, *rhs_reg);
  72. return dst_reg;
  73. default:
  74. TODO();
  75. }
  76. }
  77. Optional<Bytecode::Register> NumericLiteral::generate_bytecode(Bytecode::Generator& generator) const
  78. {
  79. auto dst = generator.allocate_register();
  80. generator.emit<Bytecode::Op::Load>(dst, m_value);
  81. return dst;
  82. }
  83. Optional<Bytecode::Register> StringLiteral::generate_bytecode(Bytecode::Generator& generator) const
  84. {
  85. auto dst = generator.allocate_register();
  86. generator.emit<Bytecode::Op::NewString>(dst, m_value);
  87. return dst;
  88. }
  89. Optional<Bytecode::Register> Identifier::generate_bytecode(Bytecode::Generator& generator) const
  90. {
  91. auto reg = generator.allocate_register();
  92. generator.emit<Bytecode::Op::GetVariable>(reg, m_string);
  93. return reg;
  94. }
  95. Optional<Bytecode::Register> AssignmentExpression::generate_bytecode(Bytecode::Generator& generator) const
  96. {
  97. if (is<Identifier>(*m_lhs)) {
  98. auto& identifier = static_cast<Identifier const&>(*m_lhs);
  99. auto rhs_reg = m_rhs->generate_bytecode(generator);
  100. VERIFY(rhs_reg.has_value());
  101. generator.emit<Bytecode::Op::SetVariable>(identifier.string(), *rhs_reg);
  102. return rhs_reg;
  103. }
  104. if (is<MemberExpression>(*m_lhs)) {
  105. auto& expression = static_cast<MemberExpression const&>(*m_lhs);
  106. auto object_reg = expression.object().generate_bytecode(generator);
  107. if (expression.is_computed()) {
  108. TODO();
  109. } else {
  110. VERIFY(is<Identifier>(expression.property()));
  111. auto rhs_reg = m_rhs->generate_bytecode(generator);
  112. generator.emit<Bytecode::Op::PutById>(*object_reg, static_cast<Identifier const&>(expression.property()).string(), *rhs_reg);
  113. return rhs_reg;
  114. }
  115. }
  116. TODO();
  117. }
  118. Optional<Bytecode::Register> WhileStatement::generate_bytecode(Bytecode::Generator& generator) const
  119. {
  120. generator.begin_continuable_scope();
  121. auto test_label = generator.make_label();
  122. auto test_result_reg = m_test->generate_bytecode(generator);
  123. VERIFY(test_result_reg.has_value());
  124. auto& test_jump = generator.emit<Bytecode::Op::JumpIfFalse>(*test_result_reg);
  125. auto body_result_reg = m_body->generate_bytecode(generator);
  126. generator.emit<Bytecode::Op::Jump>(test_label);
  127. test_jump.set_target(generator.make_label());
  128. generator.end_continuable_scope();
  129. return body_result_reg;
  130. }
  131. Optional<Bytecode::Register> DoWhileStatement::generate_bytecode(Bytecode::Generator& generator) const
  132. {
  133. generator.begin_continuable_scope();
  134. auto head_label = generator.make_label();
  135. auto body_result_reg = m_body->generate_bytecode(generator);
  136. generator.end_continuable_scope();
  137. auto test_result_reg = m_test->generate_bytecode(generator);
  138. VERIFY(test_result_reg.has_value());
  139. generator.emit<Bytecode::Op::JumpIfTrue>(*test_result_reg, head_label);
  140. return body_result_reg;
  141. }
  142. Optional<Bytecode::Register> ObjectExpression::generate_bytecode(Bytecode::Generator& generator) const
  143. {
  144. auto reg = generator.allocate_register();
  145. generator.emit<Bytecode::Op::NewObject>(reg);
  146. if (!m_properties.is_empty()) {
  147. TODO();
  148. }
  149. return reg;
  150. }
  151. Optional<Bytecode::Register> MemberExpression::generate_bytecode(Bytecode::Generator& generator) const
  152. {
  153. auto object_reg = object().generate_bytecode(generator);
  154. if (is_computed()) {
  155. TODO();
  156. } else {
  157. VERIFY(is<Identifier>(property()));
  158. auto dst_reg = generator.allocate_register();
  159. generator.emit<Bytecode::Op::GetById>(dst_reg, *object_reg, static_cast<Identifier const&>(property()).string());
  160. return dst_reg;
  161. }
  162. }
  163. Optional<Bytecode::Register> FunctionDeclaration::generate_bytecode(Bytecode::Generator&) const
  164. {
  165. return {};
  166. }
  167. Optional<Bytecode::Register> CallExpression::generate_bytecode(Bytecode::Generator& generator) const
  168. {
  169. auto callee_reg = m_callee->generate_bytecode(generator);
  170. // FIXME: Load the correct 'this' value into 'this_reg'.
  171. auto this_reg = generator.allocate_register();
  172. generator.emit<Bytecode::Op::Load>(this_reg, js_undefined());
  173. Vector<Bytecode::Register> argument_registers;
  174. for (auto& arg : m_arguments)
  175. argument_registers.append(*arg.value->generate_bytecode(generator));
  176. auto dst_reg = generator.allocate_register();
  177. generator.emit_with_extra_register_slots<Bytecode::Op::Call>(argument_registers.size(), dst_reg, *callee_reg, this_reg, argument_registers);
  178. return dst_reg;
  179. }
  180. Optional<Bytecode::Register> ReturnStatement::generate_bytecode(Bytecode::Generator& generator) const
  181. {
  182. Optional<Bytecode::Register> argument_reg;
  183. if (m_argument)
  184. argument_reg = m_argument->generate_bytecode(generator);
  185. generator.emit<Bytecode::Op::Return>(argument_reg);
  186. return argument_reg;
  187. }
  188. Optional<Bytecode::Register> IfStatement::generate_bytecode(Bytecode::Generator& generator) const
  189. {
  190. auto predicate_reg = m_predicate->generate_bytecode(generator);
  191. auto& if_jump = generator.emit<Bytecode::Op::JumpIfTrue>(*predicate_reg);
  192. auto& else_jump = generator.emit<Bytecode::Op::JumpIfFalse>(*predicate_reg);
  193. if_jump.set_target(generator.make_label());
  194. (void)m_consequent->generate_bytecode(generator);
  195. auto& end_jump = generator.emit<Bytecode::Op::Jump>();
  196. else_jump.set_target(generator.make_label());
  197. if (m_alternate) {
  198. (void)m_alternate->generate_bytecode(generator);
  199. }
  200. end_jump.set_target(generator.make_label());
  201. // FIXME: Do we need IfStatement to return the consequent/alternate result value?
  202. // (That's what the AST interpreter currently does)
  203. return {};
  204. }
  205. Optional<Bytecode::Register> ContinueStatement::generate_bytecode(Bytecode::Generator& generator) const
  206. {
  207. generator.emit<Bytecode::Op::Jump>(generator.nearest_continuable_scope());
  208. return {};
  209. }
  210. }