ast_to_proto.cpp 20 KB

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  1. // Part of the Carbon Language project, under the Apache License v2.0 with LLVM
  2. // Exceptions. See /LICENSE for license information.
  3. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  4. #include "executable_semantics/fuzzing/ast_to_proto.h"
  5. #include <optional>
  6. #include "executable_semantics/ast/declaration.h"
  7. #include "executable_semantics/ast/expression.h"
  8. #include "llvm/Support/Casting.h"
  9. namespace Carbon {
  10. using ::llvm::cast;
  11. static auto ExpressionToProto(const Expression& expression)
  12. -> Fuzzing::Expression;
  13. static auto PatternToProto(const Pattern& pattern) -> Fuzzing::Pattern;
  14. static auto StatementToProto(const Statement& statement) -> Fuzzing::Statement;
  15. static auto DeclarationToProto(const Declaration& declaration)
  16. -> Fuzzing::Declaration;
  17. static auto LibraryNameToProto(const LibraryName& library_name)
  18. -> Fuzzing::LibraryName {
  19. Fuzzing::LibraryName library_name_proto;
  20. library_name_proto.set_package_name(library_name.package);
  21. if (!library_name.path.empty()) {
  22. library_name_proto.set_path(library_name.path);
  23. }
  24. return library_name_proto;
  25. }
  26. static auto OperatorToProtoEnum(const Operator op)
  27. -> Fuzzing::PrimitiveOperatorExpression::Operator {
  28. switch (op) {
  29. case Operator::AddressOf:
  30. return Fuzzing::PrimitiveOperatorExpression::AddressOf;
  31. case Operator::Deref:
  32. return Fuzzing::PrimitiveOperatorExpression::Deref;
  33. case Operator::Neg:
  34. return Fuzzing::PrimitiveOperatorExpression::Neg;
  35. case Operator::Not:
  36. return Fuzzing::PrimitiveOperatorExpression::Not;
  37. case Operator::Ptr:
  38. return Fuzzing::PrimitiveOperatorExpression::Ptr;
  39. case Operator::Add:
  40. return Fuzzing::PrimitiveOperatorExpression::Add;
  41. case Operator::And:
  42. return Fuzzing::PrimitiveOperatorExpression::And;
  43. case Operator::Eq:
  44. return Fuzzing::PrimitiveOperatorExpression::Eq;
  45. case Operator::Mul:
  46. return Fuzzing::PrimitiveOperatorExpression::Mul;
  47. case Operator::Or:
  48. return Fuzzing::PrimitiveOperatorExpression::Or;
  49. case Operator::Sub:
  50. return Fuzzing::PrimitiveOperatorExpression::Sub;
  51. }
  52. }
  53. static auto FieldInitializerToProto(const FieldInitializer& field)
  54. -> Fuzzing::FieldInitializer {
  55. Fuzzing::FieldInitializer field_proto;
  56. field_proto.set_name(field.name());
  57. *field_proto.mutable_expression() = ExpressionToProto(field.expression());
  58. return field_proto;
  59. }
  60. static auto TupleLiteralExpressionToProto(const TupleLiteral& tuple_literal)
  61. -> Fuzzing::TupleLiteralExpression {
  62. Fuzzing::TupleLiteralExpression tuple_literal_proto;
  63. for (Nonnull<const Expression*> field : tuple_literal.fields()) {
  64. *tuple_literal_proto.add_fields() = ExpressionToProto(*field);
  65. }
  66. return tuple_literal_proto;
  67. }
  68. static auto ExpressionToProto(const Expression& expression)
  69. -> Fuzzing::Expression {
  70. Fuzzing::Expression expression_proto;
  71. switch (expression.kind()) {
  72. case ExpressionKind::InstantiateImpl: {
  73. // UNDER CONSTRUCTION
  74. break;
  75. }
  76. case ExpressionKind::CallExpression: {
  77. const auto& call = cast<CallExpression>(expression);
  78. auto* call_proto = expression_proto.mutable_call();
  79. *call_proto->mutable_function() = ExpressionToProto(call.function());
  80. *call_proto->mutable_argument() = ExpressionToProto(call.argument());
  81. break;
  82. }
  83. case ExpressionKind::FunctionTypeLiteral: {
  84. const auto& fun_type = cast<FunctionTypeLiteral>(expression);
  85. auto* fun_type_proto = expression_proto.mutable_function_type();
  86. *fun_type_proto->mutable_parameter() =
  87. ExpressionToProto(fun_type.parameter());
  88. *fun_type_proto->mutable_return_type() =
  89. ExpressionToProto(fun_type.return_type());
  90. break;
  91. }
  92. case ExpressionKind::FieldAccessExpression: {
  93. const auto& field_access = cast<FieldAccessExpression>(expression);
  94. auto* field_access_proto = expression_proto.mutable_field_access();
  95. field_access_proto->set_field(field_access.field());
  96. *field_access_proto->mutable_aggregate() =
  97. ExpressionToProto(field_access.aggregate());
  98. break;
  99. }
  100. case ExpressionKind::IndexExpression: {
  101. const auto& index = cast<IndexExpression>(expression);
  102. auto* index_proto = expression_proto.mutable_index();
  103. *index_proto->mutable_aggregate() = ExpressionToProto(index.aggregate());
  104. *index_proto->mutable_offset() = ExpressionToProto(index.offset());
  105. break;
  106. }
  107. case ExpressionKind::PrimitiveOperatorExpression: {
  108. const auto& primitive_operator =
  109. cast<PrimitiveOperatorExpression>(expression);
  110. auto* operator_proto = expression_proto.mutable_primitive_operator();
  111. operator_proto->set_op(OperatorToProtoEnum(primitive_operator.op()));
  112. for (Nonnull<const Expression*> arg : primitive_operator.arguments()) {
  113. *operator_proto->add_arguments() = ExpressionToProto(*arg);
  114. }
  115. break;
  116. }
  117. case ExpressionKind::TupleLiteral:
  118. *expression_proto.mutable_tuple_literal() =
  119. TupleLiteralExpressionToProto(cast<TupleLiteral>(expression));
  120. break;
  121. case ExpressionKind::StructLiteral: {
  122. const auto& struct_literal = cast<StructLiteral>(expression);
  123. auto* struct_literal_proto = expression_proto.mutable_struct_literal();
  124. for (const FieldInitializer& field : struct_literal.fields()) {
  125. *struct_literal_proto->add_fields() = FieldInitializerToProto(field);
  126. }
  127. break;
  128. }
  129. case ExpressionKind::StructTypeLiteral: {
  130. const auto& struct_type_literal = cast<StructTypeLiteral>(expression);
  131. auto* struct_type_literal_proto =
  132. expression_proto.mutable_struct_type_literal();
  133. for (const FieldInitializer& field : struct_type_literal.fields()) {
  134. *struct_type_literal_proto->add_fields() =
  135. FieldInitializerToProto(field);
  136. }
  137. break;
  138. }
  139. case ExpressionKind::IdentifierExpression: {
  140. const auto& identifier = cast<IdentifierExpression>(expression);
  141. auto* identifier_proto = expression_proto.mutable_identifier();
  142. identifier_proto->set_name(identifier.name());
  143. break;
  144. }
  145. case ExpressionKind::IntrinsicExpression: {
  146. const auto& intrinsic = cast<IntrinsicExpression>(expression);
  147. auto* intrinsic_proto = expression_proto.mutable_intrinsic();
  148. switch (intrinsic.intrinsic()) {
  149. case IntrinsicExpression::Intrinsic::Print:
  150. intrinsic_proto->set_intrinsic(Fuzzing::IntrinsicExpression::Print);
  151. break;
  152. }
  153. *intrinsic_proto->mutable_argument() =
  154. TupleLiteralExpressionToProto(intrinsic.args());
  155. break;
  156. }
  157. case ExpressionKind::IfExpression: {
  158. const auto& if_expression = cast<IfExpression>(expression);
  159. auto* if_proto = expression_proto.mutable_if_expression();
  160. *if_proto->mutable_condition() =
  161. ExpressionToProto(if_expression.condition());
  162. *if_proto->mutable_then_expression() =
  163. ExpressionToProto(if_expression.then_expression());
  164. *if_proto->mutable_else_expression() =
  165. ExpressionToProto(if_expression.else_expression());
  166. break;
  167. }
  168. case ExpressionKind::BoolTypeLiteral:
  169. expression_proto.mutable_bool_type_literal();
  170. break;
  171. case ExpressionKind::BoolLiteral:
  172. expression_proto.mutable_bool_literal()->set_value(
  173. cast<BoolLiteral>(expression).value());
  174. break;
  175. case ExpressionKind::IntTypeLiteral:
  176. expression_proto.mutable_int_type_literal();
  177. break;
  178. case ExpressionKind::IntLiteral:
  179. expression_proto.mutable_int_literal()->set_value(
  180. cast<IntLiteral>(expression).value());
  181. break;
  182. case ExpressionKind::StringLiteral:
  183. expression_proto.mutable_string_literal()->set_value(
  184. cast<StringLiteral>(expression).value());
  185. break;
  186. case ExpressionKind::StringTypeLiteral:
  187. expression_proto.mutable_string_type_literal();
  188. break;
  189. case ExpressionKind::ContinuationTypeLiteral:
  190. expression_proto.mutable_continuation_type_literal();
  191. break;
  192. case ExpressionKind::TypeTypeLiteral:
  193. expression_proto.mutable_type_type_literal();
  194. break;
  195. case ExpressionKind::UnimplementedExpression:
  196. expression_proto.mutable_unimplemented_expression();
  197. break;
  198. case ExpressionKind::ArrayTypeLiteral: {
  199. const auto& array_literal = cast<ArrayTypeLiteral>(expression);
  200. Fuzzing::ArrayTypeLiteral* array_literal_proto =
  201. expression_proto.mutable_array_type_literal();
  202. *array_literal_proto->mutable_element_type() =
  203. ExpressionToProto(array_literal.element_type_expression());
  204. *array_literal_proto->mutable_size() =
  205. ExpressionToProto(array_literal.size_expression());
  206. break;
  207. }
  208. }
  209. return expression_proto;
  210. }
  211. static auto BindingPatternToProto(const BindingPattern& pattern)
  212. -> Fuzzing::BindingPattern {
  213. Fuzzing::BindingPattern pattern_proto;
  214. pattern_proto.set_name(pattern.name());
  215. *pattern_proto.mutable_type() = PatternToProto(pattern.type());
  216. return pattern_proto;
  217. }
  218. static auto GenericBindingToProto(const GenericBinding& binding)
  219. -> Fuzzing::GenericBinding {
  220. Fuzzing::GenericBinding binding_proto;
  221. binding_proto.set_name(binding.name());
  222. *binding_proto.mutable_type() = ExpressionToProto(binding.type());
  223. return binding_proto;
  224. }
  225. static auto TuplePatternToProto(const TuplePattern& tuple_pattern)
  226. -> Fuzzing::TuplePattern {
  227. Fuzzing::TuplePattern tuple_pattern_proto;
  228. for (Nonnull<const Pattern*> field : tuple_pattern.fields()) {
  229. *tuple_pattern_proto.add_fields() = PatternToProto(*field);
  230. }
  231. return tuple_pattern_proto;
  232. }
  233. static auto PatternToProto(const Pattern& pattern) -> Fuzzing::Pattern {
  234. Fuzzing::Pattern pattern_proto;
  235. switch (pattern.kind()) {
  236. case PatternKind::GenericBinding: {
  237. const auto& binding = cast<GenericBinding>(pattern);
  238. *pattern_proto.mutable_generic_binding() = GenericBindingToProto(binding);
  239. break;
  240. }
  241. case PatternKind::BindingPattern: {
  242. const auto& binding = cast<BindingPattern>(pattern);
  243. *pattern_proto.mutable_binding_pattern() = BindingPatternToProto(binding);
  244. break;
  245. }
  246. case PatternKind::TuplePattern:
  247. *pattern_proto.mutable_tuple_pattern() =
  248. TuplePatternToProto(cast<TuplePattern>(pattern));
  249. break;
  250. case PatternKind::AlternativePattern: {
  251. const auto& alternative = cast<AlternativePattern>(pattern);
  252. auto* alternative_proto = pattern_proto.mutable_alternative_pattern();
  253. alternative_proto->set_alternative_name(alternative.alternative_name());
  254. *alternative_proto->mutable_choice_type() =
  255. ExpressionToProto(alternative.choice_type());
  256. *alternative_proto->mutable_arguments() =
  257. TuplePatternToProto(alternative.arguments());
  258. break;
  259. }
  260. case PatternKind::ExpressionPattern:
  261. *pattern_proto.mutable_expression_pattern()->mutable_expression() =
  262. ExpressionToProto(cast<ExpressionPattern>(pattern).expression());
  263. break;
  264. case PatternKind::AutoPattern:
  265. pattern_proto.mutable_auto_pattern();
  266. break;
  267. case PatternKind::VarPattern:
  268. *pattern_proto.mutable_var_pattern()->mutable_pattern() =
  269. PatternToProto(cast<VarPattern>(pattern).pattern());
  270. break;
  271. }
  272. return pattern_proto;
  273. }
  274. static auto BlockStatementToProto(const Block& block)
  275. -> Fuzzing::BlockStatement {
  276. Fuzzing::BlockStatement block_proto;
  277. for (Nonnull<const Statement*> statement : block.statements()) {
  278. *block_proto.add_statements() = StatementToProto(*statement);
  279. }
  280. return block_proto;
  281. }
  282. static auto StatementToProto(const Statement& statement) -> Fuzzing::Statement {
  283. Fuzzing::Statement statement_proto;
  284. switch (statement.kind()) {
  285. case StatementKind::ExpressionStatement:
  286. *statement_proto.mutable_expression_statement()->mutable_expression() =
  287. ExpressionToProto(cast<ExpressionStatement>(statement).expression());
  288. break;
  289. case StatementKind::Assign: {
  290. const auto& assign = cast<Assign>(statement);
  291. auto* assign_proto = statement_proto.mutable_assign();
  292. *assign_proto->mutable_lhs() = ExpressionToProto(assign.lhs());
  293. *assign_proto->mutable_rhs() = ExpressionToProto(assign.rhs());
  294. break;
  295. }
  296. case StatementKind::VariableDefinition: {
  297. const auto& def = cast<VariableDefinition>(statement);
  298. auto* def_proto = statement_proto.mutable_variable_definition();
  299. *def_proto->mutable_pattern() = PatternToProto(def.pattern());
  300. *def_proto->mutable_init() = ExpressionToProto(def.init());
  301. break;
  302. }
  303. case StatementKind::If: {
  304. const auto& if_stmt = cast<If>(statement);
  305. auto* if_proto = statement_proto.mutable_if_statement();
  306. *if_proto->mutable_condition() = ExpressionToProto(if_stmt.condition());
  307. *if_proto->mutable_then_block() =
  308. BlockStatementToProto(if_stmt.then_block());
  309. if (if_stmt.else_block().has_value()) {
  310. *if_proto->mutable_else_block() =
  311. BlockStatementToProto(**if_stmt.else_block());
  312. }
  313. break;
  314. }
  315. case StatementKind::Return: {
  316. const auto& ret = cast<Return>(statement);
  317. auto* ret_proto = statement_proto.mutable_return_statement();
  318. if (!ret.is_omitted_expression()) {
  319. *ret_proto->mutable_expression() = ExpressionToProto(ret.expression());
  320. } else {
  321. ret_proto->set_is_omitted_expression(true);
  322. }
  323. break;
  324. }
  325. case StatementKind::Block:
  326. *statement_proto.mutable_block() =
  327. BlockStatementToProto(cast<Block>(statement));
  328. break;
  329. case StatementKind::While: {
  330. const auto& while_stmt = cast<While>(statement);
  331. auto* while_proto = statement_proto.mutable_while_statement();
  332. *while_proto->mutable_condition() =
  333. ExpressionToProto(while_stmt.condition());
  334. *while_proto->mutable_body() = BlockStatementToProto(while_stmt.body());
  335. break;
  336. }
  337. case StatementKind::Match: {
  338. const auto& match = cast<Match>(statement);
  339. auto* match_proto = statement_proto.mutable_match();
  340. *match_proto->mutable_expression() =
  341. ExpressionToProto(match.expression());
  342. for (const Match::Clause& clause : match.clauses()) {
  343. auto* clause_proto = match_proto->add_clauses();
  344. const bool is_default_clause =
  345. clause.pattern().kind() == PatternKind::BindingPattern &&
  346. cast<BindingPattern>(clause.pattern()).name() == AnonymousName;
  347. if (is_default_clause) {
  348. clause_proto->set_is_default(true);
  349. } else {
  350. *clause_proto->mutable_pattern() = PatternToProto(clause.pattern());
  351. }
  352. *clause_proto->mutable_statement() =
  353. StatementToProto(clause.statement());
  354. }
  355. break;
  356. }
  357. case StatementKind::Continuation: {
  358. const auto& continuation = cast<Continuation>(statement);
  359. auto* continuation_proto = statement_proto.mutable_continuation();
  360. continuation_proto->set_name(continuation.name());
  361. *continuation_proto->mutable_body() =
  362. BlockStatementToProto(continuation.body());
  363. break;
  364. }
  365. case StatementKind::Run:
  366. *statement_proto.mutable_run()->mutable_argument() =
  367. ExpressionToProto(cast<Run>(statement).argument());
  368. break;
  369. case StatementKind::Await:
  370. // Initializes with the default value; there's nothing to set.
  371. statement_proto.mutable_await_statement();
  372. break;
  373. case StatementKind::Break:
  374. // Initializes with the default value; there's nothing to set.
  375. statement_proto.mutable_break_statement();
  376. break;
  377. case StatementKind::Continue:
  378. // Initializes with the default value; there's nothing to set.
  379. statement_proto.mutable_continue_statement();
  380. break;
  381. }
  382. return statement_proto;
  383. }
  384. static auto ReturnTermToProto(const ReturnTerm& return_term)
  385. -> Fuzzing::ReturnTerm {
  386. Fuzzing::ReturnTerm return_term_proto;
  387. if (return_term.is_omitted()) {
  388. return_term_proto.set_kind(Fuzzing::ReturnTerm::Omitted);
  389. } else if (return_term.is_auto()) {
  390. return_term_proto.set_kind(Fuzzing::ReturnTerm::Auto);
  391. } else {
  392. return_term_proto.set_kind(Fuzzing::ReturnTerm::Expression);
  393. *return_term_proto.mutable_type() =
  394. ExpressionToProto(**return_term.type_expression());
  395. }
  396. return return_term_proto;
  397. }
  398. static auto DeclarationToProto(const Declaration& declaration)
  399. -> Fuzzing::Declaration {
  400. Fuzzing::Declaration declaration_proto;
  401. switch (declaration.kind()) {
  402. case DeclarationKind::FunctionDeclaration: {
  403. const auto& function = cast<FunctionDeclaration>(declaration);
  404. auto* function_proto = declaration_proto.mutable_function();
  405. function_proto->set_name(function.name());
  406. for (Nonnull<const GenericBinding*> binding :
  407. function.deduced_parameters()) {
  408. *function_proto->add_deduced_parameters() =
  409. GenericBindingToProto(*binding);
  410. }
  411. if (function.is_method()) {
  412. *function_proto->mutable_me_pattern() =
  413. BindingPatternToProto(function.me_pattern());
  414. }
  415. *function_proto->mutable_param_pattern() =
  416. TuplePatternToProto(function.param_pattern());
  417. *function_proto->mutable_return_term() =
  418. ReturnTermToProto(function.return_term());
  419. if (function.body().has_value()) {
  420. *function_proto->mutable_body() =
  421. BlockStatementToProto(**function.body());
  422. }
  423. break;
  424. }
  425. case DeclarationKind::ClassDeclaration: {
  426. const auto& class_decl = cast<ClassDeclaration>(declaration);
  427. auto* class_proto = declaration_proto.mutable_class_declaration();
  428. class_proto->set_name(class_decl.name());
  429. if (class_decl.type_params().has_value()) {
  430. *class_proto->mutable_type_params() =
  431. TuplePatternToProto(**class_decl.type_params());
  432. }
  433. for (Nonnull<const Declaration*> member : class_decl.members()) {
  434. *class_proto->add_members() = DeclarationToProto(*member);
  435. }
  436. break;
  437. }
  438. case DeclarationKind::ChoiceDeclaration: {
  439. const auto& choice = cast<ChoiceDeclaration>(declaration);
  440. auto* choice_proto = declaration_proto.mutable_choice();
  441. choice_proto->set_name(choice.name());
  442. for (Nonnull<const AlternativeSignature*> alternative :
  443. choice.alternatives()) {
  444. auto* alternative_proto = choice_proto->add_alternatives();
  445. alternative_proto->set_name(alternative->name());
  446. *alternative_proto->mutable_signature() =
  447. ExpressionToProto(alternative->signature());
  448. }
  449. break;
  450. }
  451. case DeclarationKind::VariableDeclaration: {
  452. const auto& var = cast<VariableDeclaration>(declaration);
  453. auto* var_proto = declaration_proto.mutable_variable();
  454. *var_proto->mutable_binding() = BindingPatternToProto(var.binding());
  455. if (var.has_initializer()) {
  456. *var_proto->mutable_initializer() =
  457. ExpressionToProto(var.initializer());
  458. }
  459. break;
  460. }
  461. case DeclarationKind::InterfaceDeclaration: {
  462. const auto& interface = cast<InterfaceDeclaration>(declaration);
  463. auto* interface_proto = declaration_proto.mutable_interface();
  464. interface_proto->set_name(interface.name());
  465. for (const auto& member : interface.members()) {
  466. *interface_proto->add_members() = DeclarationToProto(*member);
  467. }
  468. *interface_proto->mutable_self() =
  469. GenericBindingToProto(*interface.self());
  470. break;
  471. }
  472. case DeclarationKind::ImplDeclaration: {
  473. const auto& impl = cast<ImplDeclaration>(declaration);
  474. auto* impl_proto = declaration_proto.mutable_impl();
  475. switch (impl.kind()) {
  476. case ImplKind::InternalImpl:
  477. impl_proto->set_kind(Fuzzing::ImplDeclaration::InternalImpl);
  478. break;
  479. case ImplKind::ExternalImpl:
  480. impl_proto->set_kind(Fuzzing::ImplDeclaration::ExternalImpl);
  481. break;
  482. }
  483. *impl_proto->mutable_impl_type() = ExpressionToProto(*impl.impl_type());
  484. *impl_proto->mutable_interface() = ExpressionToProto(impl.interface());
  485. for (const auto& member : impl.members()) {
  486. *impl_proto->add_members() = DeclarationToProto(*member);
  487. }
  488. break;
  489. }
  490. }
  491. return declaration_proto;
  492. }
  493. Fuzzing::CompilationUnit AstToProto(const AST& ast) {
  494. Fuzzing::CompilationUnit compilation_unit;
  495. *compilation_unit.mutable_package_statement() =
  496. LibraryNameToProto(ast.package);
  497. compilation_unit.set_is_api(ast.is_api);
  498. for (const Declaration* declaration : ast.declarations) {
  499. *compilation_unit.add_declarations() = DeclarationToProto(*declaration);
  500. }
  501. return compilation_unit;
  502. }
  503. } // namespace Carbon