handle_class.cpp 32 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 "toolchain/base/kind_switch.h"
  5. #include "toolchain/check/context.h"
  6. #include "toolchain/check/convert.h"
  7. #include "toolchain/check/decl_name_stack.h"
  8. #include "toolchain/check/diagnostic_helpers.h"
  9. #include "toolchain/check/eval.h"
  10. #include "toolchain/check/generic.h"
  11. #include "toolchain/check/handle.h"
  12. #include "toolchain/check/import.h"
  13. #include "toolchain/check/import_ref.h"
  14. #include "toolchain/check/inst.h"
  15. #include "toolchain/check/merge.h"
  16. #include "toolchain/check/modifiers.h"
  17. #include "toolchain/check/name_component.h"
  18. #include "toolchain/check/name_lookup.h"
  19. #include "toolchain/check/type.h"
  20. #include "toolchain/check/type_completion.h"
  21. #include "toolchain/parse/node_ids.h"
  22. #include "toolchain/sem_ir/function.h"
  23. #include "toolchain/sem_ir/ids.h"
  24. #include "toolchain/sem_ir/inst.h"
  25. #include "toolchain/sem_ir/typed_insts.h"
  26. namespace Carbon::Check {
  27. // If `type_id` is a class type, get its corresponding `SemIR::Class` object.
  28. // Otherwise returns `nullptr`.
  29. static auto TryGetAsClass(Context& context, SemIR::TypeId type_id)
  30. -> SemIR::Class* {
  31. auto class_type = context.types().TryGetAs<SemIR::ClassType>(type_id);
  32. if (!class_type) {
  33. return nullptr;
  34. }
  35. return &context.classes().Get(class_type->class_id);
  36. }
  37. auto HandleParseNode(Context& context, Parse::ClassIntroducerId node_id)
  38. -> bool {
  39. // Create an instruction block to hold the instructions created as part of the
  40. // class signature, such as generic parameters.
  41. context.inst_block_stack().Push();
  42. // Push the bracketing node.
  43. context.node_stack().Push(node_id);
  44. // Optional modifiers and the name follow.
  45. context.decl_introducer_state_stack().Push<Lex::TokenKind::Class>();
  46. context.decl_name_stack().PushScopeAndStartName();
  47. // This class is potentially generic.
  48. StartGenericDecl(context);
  49. return true;
  50. }
  51. // Tries to merge new_class into prev_class_id. Since new_class won't have a
  52. // definition even if one is upcoming, set is_definition to indicate the planned
  53. // result.
  54. //
  55. // If merging is successful, returns true and may update the previous class.
  56. // Otherwise, returns false. Prints a diagnostic when appropriate.
  57. static auto MergeClassRedecl(Context& context, Parse::AnyClassDeclId node_id,
  58. SemIR::Class& new_class, bool new_is_definition,
  59. SemIR::ClassId prev_class_id,
  60. SemIR::ImportIRId prev_import_ir_id) -> bool {
  61. auto& prev_class = context.classes().Get(prev_class_id);
  62. SemIRLoc prev_loc = prev_class.latest_decl_id();
  63. // Check the generic parameters match, if they were specified.
  64. if (!CheckRedeclParamsMatch(context, DeclParams(new_class),
  65. DeclParams(prev_class))) {
  66. return false;
  67. }
  68. DiagnoseIfInvalidRedecl(
  69. context, Lex::TokenKind::Class, prev_class.name_id,
  70. RedeclInfo(new_class, node_id, new_is_definition),
  71. RedeclInfo(prev_class, prev_loc, prev_class.has_definition_started()),
  72. prev_import_ir_id);
  73. if (new_is_definition && prev_class.has_definition_started()) {
  74. // Don't attempt to merge multiple definitions.
  75. return false;
  76. }
  77. if (new_is_definition) {
  78. prev_class.MergeDefinition(new_class);
  79. prev_class.scope_id = new_class.scope_id;
  80. prev_class.body_block_id = new_class.body_block_id;
  81. prev_class.adapt_id = new_class.adapt_id;
  82. prev_class.base_id = new_class.base_id;
  83. prev_class.complete_type_witness_id = new_class.complete_type_witness_id;
  84. }
  85. if (prev_import_ir_id.has_value() ||
  86. (prev_class.is_extern && !new_class.is_extern)) {
  87. prev_class.first_owning_decl_id = new_class.first_owning_decl_id;
  88. ReplacePrevInstForMerge(context, new_class.parent_scope_id,
  89. prev_class.name_id, new_class.first_owning_decl_id);
  90. }
  91. return true;
  92. }
  93. // Adds the name to name lookup. If there's a conflict, tries to merge. May
  94. // update class_decl and class_info when merging.
  95. static auto MergeOrAddName(Context& context, Parse::AnyClassDeclId node_id,
  96. const DeclNameStack::NameContext& name_context,
  97. SemIR::InstId class_decl_id,
  98. SemIR::ClassDecl& class_decl,
  99. SemIR::Class& class_info, bool is_definition,
  100. SemIR::AccessKind access_kind) -> void {
  101. SemIR::ScopeLookupResult lookup_result =
  102. context.decl_name_stack().LookupOrAddName(name_context, class_decl_id,
  103. access_kind);
  104. if (lookup_result.is_poisoned()) {
  105. // This is a declaration of a poisoned name.
  106. DiagnosePoisonedName(context, name_context.name_id_for_new_inst(),
  107. lookup_result.poisoning_loc_id(), name_context.loc_id);
  108. return;
  109. }
  110. if (!lookup_result.is_found()) {
  111. return;
  112. }
  113. SemIR::InstId prev_id = lookup_result.target_inst_id();
  114. auto prev_class_id = SemIR::ClassId::None;
  115. auto prev_import_ir_id = SemIR::ImportIRId::None;
  116. auto prev = context.insts().Get(prev_id);
  117. CARBON_KIND_SWITCH(prev) {
  118. case CARBON_KIND(SemIR::ClassDecl class_decl): {
  119. prev_class_id = class_decl.class_id;
  120. break;
  121. }
  122. case CARBON_KIND(SemIR::ImportRefLoaded import_ref): {
  123. auto import_ir_inst =
  124. context.import_ir_insts().Get(import_ref.import_ir_inst_id);
  125. // Verify the decl so that things like aliases are name conflicts.
  126. const auto* import_ir =
  127. context.import_irs().Get(import_ir_inst.ir_id).sem_ir;
  128. if (!import_ir->insts().Is<SemIR::ClassDecl>(import_ir_inst.inst_id)) {
  129. break;
  130. }
  131. // Use the constant value to get the ID.
  132. auto decl_value = context.insts().Get(
  133. context.constant_values().GetConstantInstId(prev_id));
  134. if (auto class_type = decl_value.TryAs<SemIR::ClassType>()) {
  135. prev_class_id = class_type->class_id;
  136. prev_import_ir_id = import_ir_inst.ir_id;
  137. } else if (auto generic_class_type =
  138. context.types().TryGetAs<SemIR::GenericClassType>(
  139. decl_value.type_id())) {
  140. prev_class_id = generic_class_type->class_id;
  141. prev_import_ir_id = import_ir_inst.ir_id;
  142. }
  143. break;
  144. }
  145. default:
  146. break;
  147. }
  148. if (!prev_class_id.has_value()) {
  149. // This is a redeclaration of something other than a class.
  150. DiagnoseDuplicateName(context, name_context.name_id, name_context.loc_id,
  151. prev_id);
  152. return;
  153. }
  154. // TODO: Fix `extern` logic. It doesn't work correctly, but doesn't seem worth
  155. // ripping out because existing code may incrementally help.
  156. if (MergeClassRedecl(context, node_id, class_info, is_definition,
  157. prev_class_id, prev_import_ir_id)) {
  158. // When merging, use the existing entity rather than adding a new one.
  159. class_decl.class_id = prev_class_id;
  160. class_decl.type_id = prev.type_id();
  161. // TODO: Validate that the redeclaration doesn't set an access modifier.
  162. }
  163. }
  164. static auto BuildClassDecl(Context& context, Parse::AnyClassDeclId node_id,
  165. bool is_definition)
  166. -> std::tuple<SemIR::ClassId, SemIR::InstId> {
  167. auto name = PopNameComponent(context);
  168. auto name_context = context.decl_name_stack().FinishName(name);
  169. context.node_stack()
  170. .PopAndDiscardSoloNodeId<Parse::NodeKind::ClassIntroducer>();
  171. // Process modifiers.
  172. auto [_, parent_scope_inst] =
  173. context.name_scopes().GetInstIfValid(name_context.parent_scope_id);
  174. auto introducer =
  175. context.decl_introducer_state_stack().Pop<Lex::TokenKind::Class>();
  176. CheckAccessModifiersOnDecl(context, introducer, parent_scope_inst);
  177. auto always_acceptable_modifiers =
  178. KeywordModifierSet::Access | KeywordModifierSet::Extern;
  179. LimitModifiersOnDecl(context, introducer,
  180. always_acceptable_modifiers | KeywordModifierSet::Class);
  181. if (!is_definition) {
  182. LimitModifiersOnNotDefinition(context, introducer,
  183. always_acceptable_modifiers);
  184. }
  185. RestrictExternModifierOnDecl(context, introducer, parent_scope_inst,
  186. is_definition);
  187. bool is_extern = introducer.modifier_set.HasAnyOf(KeywordModifierSet::Extern);
  188. if (introducer.extern_library.has_value()) {
  189. context.TODO(node_id, "extern library");
  190. }
  191. auto inheritance_kind =
  192. introducer.modifier_set.ToEnum<SemIR::Class::InheritanceKind>()
  193. .Case(KeywordModifierSet::Abstract, SemIR::Class::Abstract)
  194. .Case(KeywordModifierSet::Base, SemIR::Class::Base)
  195. .Default(SemIR::Class::Final);
  196. auto decl_block_id = context.inst_block_stack().Pop();
  197. // Add the class declaration.
  198. auto class_decl =
  199. SemIR::ClassDecl{.type_id = SemIR::TypeType::SingletonTypeId,
  200. .class_id = SemIR::ClassId::None,
  201. .decl_block_id = decl_block_id};
  202. auto class_decl_id = AddPlaceholderInst(context, node_id, class_decl);
  203. // TODO: Store state regarding is_extern.
  204. SemIR::Class class_info = {
  205. name_context.MakeEntityWithParamsBase(name, class_decl_id, is_extern,
  206. SemIR::LibraryNameId::None),
  207. {// `.self_type_id` depends on the ClassType, so is set below.
  208. .self_type_id = SemIR::TypeId::None,
  209. .inheritance_kind = inheritance_kind}};
  210. DiagnoseIfGenericMissingExplicitParameters(context, class_info);
  211. MergeOrAddName(context, node_id, name_context, class_decl_id, class_decl,
  212. class_info, is_definition,
  213. introducer.modifier_set.GetAccessKind());
  214. // Create a new class if this isn't a valid redeclaration.
  215. bool is_new_class = !class_decl.class_id.has_value();
  216. if (is_new_class) {
  217. // TODO: If this is an invalid redeclaration of a non-class entity or there
  218. // was an error in the qualifier, we will have lost track of the class name
  219. // here. We should keep track of it even if the name is invalid.
  220. class_info.generic_id = BuildGenericDecl(context, class_decl_id);
  221. class_decl.class_id = context.classes().Add(class_info);
  222. if (class_info.has_parameters()) {
  223. class_decl.type_id = GetGenericClassType(
  224. context, class_decl.class_id, context.scope_stack().PeekSpecificId());
  225. }
  226. } else {
  227. auto prev_decl_generic_id =
  228. context.classes().Get(class_decl.class_id).generic_id;
  229. FinishGenericRedecl(context, prev_decl_generic_id);
  230. }
  231. // Write the class ID into the ClassDecl.
  232. ReplaceInstBeforeConstantUse(context, class_decl_id, class_decl);
  233. if (is_new_class) {
  234. // Build the `Self` type using the resulting type constant.
  235. // TODO: Form this as part of building the definition, not as part of the
  236. // declaration.
  237. auto& class_info = context.classes().Get(class_decl.class_id);
  238. auto specific_id =
  239. context.generics().GetSelfSpecific(class_info.generic_id);
  240. class_info.self_type_id =
  241. context.types().GetTypeIdForTypeConstantId(TryEvalInst(
  242. context, SemIR::InstId::None,
  243. SemIR::ClassType{.type_id = SemIR::TypeType::SingletonTypeId,
  244. .class_id = class_decl.class_id,
  245. .specific_id = specific_id}));
  246. }
  247. if (!is_definition && context.sem_ir().is_impl() && !is_extern) {
  248. context.definitions_required_by_decl().push_back(class_decl_id);
  249. }
  250. return {class_decl.class_id, class_decl_id};
  251. }
  252. auto HandleParseNode(Context& context, Parse::ClassDeclId node_id) -> bool {
  253. BuildClassDecl(context, node_id, /*is_definition=*/false);
  254. context.decl_name_stack().PopScope();
  255. return true;
  256. }
  257. auto HandleParseNode(Context& context, Parse::ClassDefinitionStartId node_id)
  258. -> bool {
  259. auto [class_id, class_decl_id] =
  260. BuildClassDecl(context, node_id, /*is_definition=*/true);
  261. auto& class_info = context.classes().Get(class_id);
  262. // Track that this declaration is the definition.
  263. CARBON_CHECK(!class_info.has_definition_started());
  264. class_info.definition_id = class_decl_id;
  265. class_info.scope_id = context.name_scopes().Add(
  266. class_decl_id, SemIR::NameId::None, class_info.parent_scope_id);
  267. // Enter the class scope.
  268. context.scope_stack().Push(
  269. class_decl_id, class_info.scope_id,
  270. context.generics().GetSelfSpecific(class_info.generic_id));
  271. StartGenericDefinition(context);
  272. // Introduce `Self`.
  273. context.name_scopes().AddRequiredName(
  274. class_info.scope_id, SemIR::NameId::SelfType,
  275. context.types().GetInstId(class_info.self_type_id));
  276. context.inst_block_stack().Push();
  277. context.node_stack().Push(node_id, class_id);
  278. context.field_decls_stack().PushArray();
  279. context.vtable_stack().Push();
  280. // TODO: Handle the case where there's control flow in the class body. For
  281. // example:
  282. //
  283. // class C {
  284. // var v: if true then i32 else f64;
  285. // }
  286. //
  287. // We may need to track a list of instruction blocks here, as we do for a
  288. // function.
  289. class_info.body_block_id = context.inst_block_stack().PeekOrAdd();
  290. return true;
  291. }
  292. // Diagnoses a class-specific declaration appearing outside a class.
  293. static auto DiagnoseClassSpecificDeclOutsideClass(Context& context,
  294. SemIRLoc loc,
  295. Lex::TokenKind tok) -> void {
  296. CARBON_DIAGNOSTIC(ClassSpecificDeclOutsideClass, Error,
  297. "`{0}` declaration outside class", Lex::TokenKind);
  298. context.emitter().Emit(loc, ClassSpecificDeclOutsideClass, tok);
  299. }
  300. // Returns the current scope's class declaration, or diagnoses if it isn't a
  301. // class.
  302. static auto GetCurrentScopeAsClassOrDiagnose(Context& context, SemIRLoc loc,
  303. Lex::TokenKind tok)
  304. -> std::optional<SemIR::ClassDecl> {
  305. auto class_scope =
  306. context.scope_stack().GetCurrentScopeAs<SemIR::ClassDecl>();
  307. if (!class_scope) {
  308. DiagnoseClassSpecificDeclOutsideClass(context, loc, tok);
  309. }
  310. return class_scope;
  311. }
  312. // Diagnoses a class-specific declaration that is repeated within a class, but
  313. // is not permitted to be repeated.
  314. static auto DiagnoseClassSpecificDeclRepeated(Context& context,
  315. SemIRLoc new_loc,
  316. SemIRLoc prev_loc,
  317. Lex::TokenKind tok) -> void {
  318. CARBON_DIAGNOSTIC(AdaptDeclRepeated, Error,
  319. "multiple `adapt` declarations in class");
  320. CARBON_DIAGNOSTIC(BaseDeclRepeated, Error,
  321. "multiple `base` declarations in class; multiple "
  322. "inheritance is not permitted");
  323. CARBON_DIAGNOSTIC(ClassSpecificDeclPrevious, Note,
  324. "previous `{0}` declaration is here", Lex::TokenKind);
  325. CARBON_CHECK(tok == Lex::TokenKind::Adapt || tok == Lex::TokenKind::Base);
  326. context.emitter()
  327. .Build(new_loc, tok == Lex::TokenKind::Adapt ? AdaptDeclRepeated
  328. : BaseDeclRepeated)
  329. .Note(prev_loc, ClassSpecificDeclPrevious, tok)
  330. .Emit();
  331. }
  332. auto HandleParseNode(Context& context, Parse::AdaptIntroducerId /*node_id*/)
  333. -> bool {
  334. context.decl_introducer_state_stack().Push<Lex::TokenKind::Adapt>();
  335. return true;
  336. }
  337. auto HandleParseNode(Context& context, Parse::AdaptDeclId node_id) -> bool {
  338. auto [adapted_type_node, adapted_type_expr_id] =
  339. context.node_stack().PopExprWithNodeId();
  340. // Process modifiers. `extend` is permitted, no others are allowed.
  341. auto introducer =
  342. context.decl_introducer_state_stack().Pop<Lex::TokenKind::Adapt>();
  343. LimitModifiersOnDecl(context, introducer, KeywordModifierSet::Extend);
  344. auto parent_class_decl =
  345. GetCurrentScopeAsClassOrDiagnose(context, node_id, Lex::TokenKind::Adapt);
  346. if (!parent_class_decl) {
  347. return true;
  348. }
  349. auto& class_info = context.classes().Get(parent_class_decl->class_id);
  350. if (class_info.adapt_id.has_value()) {
  351. DiagnoseClassSpecificDeclRepeated(context, node_id, class_info.adapt_id,
  352. Lex::TokenKind::Adapt);
  353. return true;
  354. }
  355. auto [adapted_inst_id, adapted_type_id] =
  356. ExprAsType(context, node_id, adapted_type_expr_id);
  357. adapted_type_id = AsConcreteType(
  358. context, adapted_type_id, node_id,
  359. [&] {
  360. CARBON_DIAGNOSTIC(IncompleteTypeInAdaptDecl, Error,
  361. "adapted type {0} is an incomplete type",
  362. InstIdAsType);
  363. return context.emitter().Build(node_id, IncompleteTypeInAdaptDecl,
  364. adapted_inst_id);
  365. },
  366. [&] {
  367. CARBON_DIAGNOSTIC(AbstractTypeInAdaptDecl, Error,
  368. "adapted type {0} is an abstract type", InstIdAsType);
  369. return context.emitter().Build(node_id, AbstractTypeInAdaptDecl,
  370. adapted_inst_id);
  371. });
  372. if (adapted_type_id == SemIR::ErrorInst::SingletonTypeId) {
  373. adapted_inst_id = SemIR::ErrorInst::SingletonInstId;
  374. }
  375. // Build a SemIR representation for the declaration.
  376. class_info.adapt_id = AddInst<SemIR::AdaptDecl>(
  377. context, node_id, {.adapted_type_inst_id = adapted_inst_id});
  378. // Extend the class scope with the adapted type's scope if requested.
  379. if (introducer.modifier_set.HasAnyOf(KeywordModifierSet::Extend)) {
  380. auto& class_scope = context.name_scopes().Get(class_info.scope_id);
  381. class_scope.AddExtendedScope(adapted_inst_id);
  382. }
  383. return true;
  384. }
  385. auto HandleParseNode(Context& context, Parse::BaseIntroducerId /*node_id*/)
  386. -> bool {
  387. context.decl_introducer_state_stack().Push<Lex::TokenKind::Base>();
  388. return true;
  389. }
  390. auto HandleParseNode(Context& /*context*/, Parse::BaseColonId /*node_id*/)
  391. -> bool {
  392. return true;
  393. }
  394. namespace {
  395. // Information gathered about a base type specified in a `base` declaration.
  396. struct BaseInfo {
  397. // A `BaseInfo` representing an erroneous base.
  398. static const BaseInfo Error;
  399. SemIR::TypeId type_id;
  400. SemIR::NameScopeId scope_id;
  401. SemIR::InstId inst_id;
  402. };
  403. constexpr BaseInfo BaseInfo::Error = {
  404. .type_id = SemIR::ErrorInst::SingletonTypeId,
  405. .scope_id = SemIR::NameScopeId::None,
  406. .inst_id = SemIR::ErrorInst::SingletonInstId};
  407. } // namespace
  408. // Diagnoses an attempt to derive from a final type.
  409. static auto DiagnoseBaseIsFinal(Context& context, Parse::NodeId node_id,
  410. SemIR::InstId base_type_inst_id) -> void {
  411. CARBON_DIAGNOSTIC(BaseIsFinal, Error,
  412. "deriving from final type {0}; base type must be an "
  413. "`abstract` or `base` class",
  414. InstIdAsType);
  415. context.emitter().Emit(node_id, BaseIsFinal, base_type_inst_id);
  416. }
  417. // Checks that the specified base type is valid.
  418. static auto CheckBaseType(Context& context, Parse::NodeId node_id,
  419. SemIR::InstId base_expr_id) -> BaseInfo {
  420. auto [base_type_inst_id, base_type_id] =
  421. ExprAsType(context, node_id, base_expr_id);
  422. base_type_id = AsCompleteType(context, base_type_id, node_id, [&] {
  423. CARBON_DIAGNOSTIC(IncompleteTypeInBaseDecl, Error,
  424. "base {0} is an incomplete type", InstIdAsType);
  425. return context.emitter().Build(node_id, IncompleteTypeInBaseDecl,
  426. base_type_inst_id);
  427. });
  428. if (base_type_id == SemIR::ErrorInst::SingletonTypeId) {
  429. return BaseInfo::Error;
  430. }
  431. auto* base_class_info = TryGetAsClass(context, base_type_id);
  432. // The base must not be a final class.
  433. if (!base_class_info) {
  434. // For now, we treat all types that aren't introduced by a `class`
  435. // declaration as being final classes.
  436. // TODO: Once we have a better idea of which types are considered to be
  437. // classes, produce a better diagnostic for deriving from a non-class type.
  438. DiagnoseBaseIsFinal(context, node_id, base_type_inst_id);
  439. return BaseInfo::Error;
  440. }
  441. if (base_class_info->inheritance_kind == SemIR::Class::Final) {
  442. DiagnoseBaseIsFinal(context, node_id, base_type_inst_id);
  443. }
  444. CARBON_CHECK(base_class_info->scope_id.has_value(),
  445. "Complete class should have a scope");
  446. return {.type_id = base_type_id,
  447. .scope_id = base_class_info->scope_id,
  448. .inst_id = base_type_inst_id};
  449. }
  450. auto HandleParseNode(Context& context, Parse::BaseDeclId node_id) -> bool {
  451. auto [base_type_node_id, base_type_expr_id] =
  452. context.node_stack().PopExprWithNodeId();
  453. // Process modifiers. `extend` is required, no others are allowed.
  454. auto introducer =
  455. context.decl_introducer_state_stack().Pop<Lex::TokenKind::Base>();
  456. LimitModifiersOnDecl(context, introducer, KeywordModifierSet::Extend);
  457. if (!introducer.modifier_set.HasAnyOf(KeywordModifierSet::Extend)) {
  458. CARBON_DIAGNOSTIC(BaseMissingExtend, Error,
  459. "missing `extend` before `base` declaration");
  460. context.emitter().Emit(node_id, BaseMissingExtend);
  461. }
  462. auto parent_class_decl =
  463. GetCurrentScopeAsClassOrDiagnose(context, node_id, Lex::TokenKind::Base);
  464. if (!parent_class_decl) {
  465. return true;
  466. }
  467. auto& class_info = context.classes().Get(parent_class_decl->class_id);
  468. if (class_info.base_id.has_value()) {
  469. DiagnoseClassSpecificDeclRepeated(context, node_id, class_info.base_id,
  470. Lex::TokenKind::Base);
  471. return true;
  472. }
  473. if (!context.field_decls_stack().PeekArray().empty()) {
  474. // TODO: Add note that includes the first field location as an example.
  475. CARBON_DIAGNOSTIC(
  476. BaseDeclAfterFieldDecl, Error,
  477. "`base` declaration must appear before field declarations");
  478. context.emitter().Emit(node_id, BaseDeclAfterFieldDecl);
  479. return true;
  480. }
  481. auto base_info = CheckBaseType(context, base_type_node_id, base_type_expr_id);
  482. // TODO: Should we diagnose if there are already any fields?
  483. // The `base` value in the class scope has an unbound element type. Instance
  484. // binding will be performed when it's found by name lookup into an instance.
  485. auto field_type_id = GetUnboundElementType(context, class_info.self_type_id,
  486. base_info.type_id);
  487. class_info.base_id =
  488. AddInst<SemIR::BaseDecl>(context, node_id,
  489. {.type_id = field_type_id,
  490. .base_type_inst_id = base_info.inst_id,
  491. .index = SemIR::ElementIndex::None});
  492. if (base_info.type_id != SemIR::ErrorInst::SingletonTypeId) {
  493. auto base_class_info = context.classes().Get(
  494. context.types().GetAs<SemIR::ClassType>(base_info.type_id).class_id);
  495. class_info.is_dynamic |= base_class_info.is_dynamic;
  496. }
  497. // Bind the name `base` in the class to the base field.
  498. context.decl_name_stack().AddNameOrDiagnose(
  499. context.decl_name_stack().MakeUnqualifiedName(node_id,
  500. SemIR::NameId::Base),
  501. class_info.base_id, introducer.modifier_set.GetAccessKind());
  502. // Extend the class scope with the base class.
  503. if (introducer.modifier_set.HasAnyOf(KeywordModifierSet::Extend)) {
  504. auto& class_scope = context.name_scopes().Get(class_info.scope_id);
  505. if (base_info.scope_id.has_value()) {
  506. class_scope.AddExtendedScope(base_info.inst_id);
  507. } else {
  508. class_scope.set_has_error();
  509. }
  510. }
  511. return true;
  512. }
  513. // Checks that the specified finished adapter definition is valid and builds and
  514. // returns a corresponding complete type witness instruction.
  515. static auto CheckCompleteAdapterClassType(Context& context,
  516. Parse::NodeId node_id,
  517. SemIR::ClassId class_id)
  518. -> SemIR::InstId {
  519. const auto& class_info = context.classes().Get(class_id);
  520. if (class_info.base_id.has_value()) {
  521. CARBON_DIAGNOSTIC(AdaptWithBase, Error, "adapter with base class");
  522. CARBON_DIAGNOSTIC(AdaptWithBaseHere, Note, "`base` declaration is here");
  523. context.emitter()
  524. .Build(class_info.adapt_id, AdaptWithBase)
  525. .Note(class_info.base_id, AdaptWithBaseHere)
  526. .Emit();
  527. return SemIR::ErrorInst::SingletonInstId;
  528. }
  529. auto field_decls = context.field_decls_stack().PeekArray();
  530. if (!field_decls.empty()) {
  531. CARBON_DIAGNOSTIC(AdaptWithFields, Error, "adapter with fields");
  532. CARBON_DIAGNOSTIC(AdaptWithFieldHere, Note,
  533. "first field declaration is here");
  534. context.emitter()
  535. .Build(class_info.adapt_id, AdaptWithFields)
  536. .Note(field_decls.front(), AdaptWithFieldHere)
  537. .Emit();
  538. return SemIR::ErrorInst::SingletonInstId;
  539. }
  540. for (auto inst_id : context.inst_block_stack().PeekCurrentBlockContents()) {
  541. if (auto function_decl =
  542. context.insts().TryGetAs<SemIR::FunctionDecl>(inst_id)) {
  543. auto& function = context.functions().Get(function_decl->function_id);
  544. if (function.virtual_modifier ==
  545. SemIR::Function::VirtualModifier::Virtual) {
  546. CARBON_DIAGNOSTIC(AdaptWithVirtual, Error,
  547. "adapter with virtual function");
  548. CARBON_DIAGNOSTIC(AdaptWithVirtualHere, Note,
  549. "first virtual function declaration is here");
  550. context.emitter()
  551. .Build(class_info.adapt_id, AdaptWithVirtual)
  552. .Note(inst_id, AdaptWithVirtualHere)
  553. .Emit();
  554. return SemIR::ErrorInst::SingletonInstId;
  555. }
  556. }
  557. }
  558. // The object representation of the adapter is the object representation
  559. // of the adapted type.
  560. auto adapted_type_id =
  561. class_info.GetAdaptedType(context.sem_ir(), SemIR::SpecificId::None);
  562. auto object_repr_id = context.types().GetObjectRepr(adapted_type_id);
  563. return AddInst<SemIR::CompleteTypeWitness>(
  564. context, node_id,
  565. {.type_id =
  566. GetSingletonType(context, SemIR::WitnessType::SingletonInstId),
  567. .object_repr_id = object_repr_id});
  568. }
  569. static auto AddStructTypeFields(
  570. Context& context,
  571. llvm::SmallVector<SemIR::StructTypeField>& struct_type_fields)
  572. -> SemIR::StructTypeFieldsId {
  573. for (auto field_decl_id : context.field_decls_stack().PeekArray()) {
  574. auto field_decl = context.insts().GetAs<SemIR::FieldDecl>(field_decl_id);
  575. field_decl.index =
  576. SemIR::ElementIndex{static_cast<int>(struct_type_fields.size())};
  577. ReplaceInstPreservingConstantValue(context, field_decl_id, field_decl);
  578. if (field_decl.type_id == SemIR::ErrorInst::SingletonTypeId) {
  579. struct_type_fields.push_back(
  580. {.name_id = field_decl.name_id,
  581. .type_id = SemIR::ErrorInst::SingletonTypeId});
  582. continue;
  583. }
  584. auto unbound_element_type =
  585. context.sem_ir().types().GetAs<SemIR::UnboundElementType>(
  586. field_decl.type_id);
  587. struct_type_fields.push_back(
  588. {.name_id = field_decl.name_id,
  589. .type_id = unbound_element_type.element_type_id});
  590. }
  591. auto fields_id =
  592. context.struct_type_fields().AddCanonical(struct_type_fields);
  593. return fields_id;
  594. }
  595. // Builds and returns a vtable for the current class. Assumes that the virtual
  596. // functions for the class are listed as the top element of the `vtable_stack`.
  597. static auto BuildVtable(Context& context, Parse::NodeId node_id,
  598. SemIR::InstId base_vtable_id) -> SemIR::InstId {
  599. llvm::SmallVector<SemIR::InstId> vtable;
  600. if (base_vtable_id.has_value()) {
  601. LoadImportRef(context, base_vtable_id);
  602. auto canonical_base_vtable_id =
  603. context.constant_values().GetConstantInstId(base_vtable_id);
  604. if (canonical_base_vtable_id == SemIR::ErrorInst::SingletonInstId) {
  605. return SemIR::ErrorInst::SingletonInstId;
  606. }
  607. auto base_vtable_inst_block = context.inst_blocks().Get(
  608. context.insts()
  609. .GetAs<SemIR::Vtable>(canonical_base_vtable_id)
  610. .virtual_functions_id);
  611. // TODO: Avoid quadratic search. Perhaps build a map from `NameId` to the
  612. // elements of the top of `vtable_stack`.
  613. for (auto fn_decl_id : base_vtable_inst_block) {
  614. auto fn_decl = GetCalleeFunction(context.sem_ir(), fn_decl_id);
  615. const auto& fn = context.functions().Get(fn_decl.function_id);
  616. for (auto override_fn_decl_id :
  617. context.vtable_stack().PeekCurrentBlockContents()) {
  618. auto override_fn_decl =
  619. context.insts().GetAs<SemIR::FunctionDecl>(override_fn_decl_id);
  620. const auto& override_fn =
  621. context.functions().Get(override_fn_decl.function_id);
  622. if (override_fn.virtual_modifier ==
  623. SemIR::FunctionFields::VirtualModifier::Impl &&
  624. override_fn.name_id == fn.name_id) {
  625. // TODO: Support generic base classes, rather than passing
  626. // `SpecificId::None`.
  627. CheckFunctionTypeMatches(context, override_fn, fn,
  628. SemIR::SpecificId::None,
  629. /*check_syntax=*/false,
  630. /*check_self=*/false);
  631. fn_decl_id = override_fn_decl_id;
  632. }
  633. }
  634. vtable.push_back(fn_decl_id);
  635. }
  636. }
  637. for (auto inst_id : context.vtable_stack().PeekCurrentBlockContents()) {
  638. auto fn_decl = context.insts().GetAs<SemIR::FunctionDecl>(inst_id);
  639. const auto& fn = context.functions().Get(fn_decl.function_id);
  640. if (fn.virtual_modifier != SemIR::FunctionFields::VirtualModifier::Impl) {
  641. vtable.push_back(inst_id);
  642. }
  643. }
  644. return AddInst<SemIR::Vtable>(
  645. context, node_id,
  646. {.type_id = GetSingletonType(context, SemIR::VtableType::SingletonInstId),
  647. .virtual_functions_id = context.inst_blocks().Add(vtable)});
  648. }
  649. // Checks that the specified finished class definition is valid and builds and
  650. // returns a corresponding complete type witness instruction.
  651. static auto CheckCompleteClassType(Context& context, Parse::NodeId node_id,
  652. SemIR::ClassId class_id) -> SemIR::InstId {
  653. auto& class_info = context.classes().Get(class_id);
  654. if (class_info.adapt_id.has_value()) {
  655. return CheckCompleteAdapterClassType(context, node_id, class_id);
  656. }
  657. bool defining_vptr = class_info.is_dynamic;
  658. auto base_type_id =
  659. class_info.GetBaseType(context.sem_ir(), SemIR::SpecificId::None);
  660. SemIR::Class* base_class_info = nullptr;
  661. if (base_type_id.has_value()) {
  662. // TODO: If the base class is template dependent, we will need to decide
  663. // whether to add a vptr as part of instantiation.
  664. base_class_info = TryGetAsClass(context, base_type_id);
  665. if (base_class_info && base_class_info->is_dynamic) {
  666. defining_vptr = false;
  667. }
  668. }
  669. auto field_decls = context.field_decls_stack().PeekArray();
  670. llvm::SmallVector<SemIR::StructTypeField> struct_type_fields;
  671. struct_type_fields.reserve(defining_vptr + class_info.base_id.has_value() +
  672. field_decls.size());
  673. if (defining_vptr) {
  674. struct_type_fields.push_back(
  675. {.name_id = SemIR::NameId::Vptr,
  676. .type_id = GetPointerType(
  677. context,
  678. GetSingletonType(context, SemIR::VtableType::SingletonInstId))});
  679. }
  680. if (base_type_id.has_value()) {
  681. auto base_decl = context.insts().GetAs<SemIR::BaseDecl>(class_info.base_id);
  682. base_decl.index =
  683. SemIR::ElementIndex{static_cast<int>(struct_type_fields.size())};
  684. ReplaceInstPreservingConstantValue(context, class_info.base_id, base_decl);
  685. struct_type_fields.push_back(
  686. {.name_id = SemIR::NameId::Base, .type_id = base_type_id});
  687. }
  688. if (class_info.is_dynamic) {
  689. class_info.vtable_id = BuildVtable(
  690. context, node_id,
  691. defining_vptr ? SemIR::InstId::None : base_class_info->vtable_id);
  692. }
  693. return AddInst<SemIR::CompleteTypeWitness>(
  694. context, node_id,
  695. {.type_id =
  696. GetSingletonType(context, SemIR::WitnessType::SingletonInstId),
  697. .object_repr_id = GetStructType(
  698. context, AddStructTypeFields(context, struct_type_fields))});
  699. }
  700. auto HandleParseNode(Context& context, Parse::ClassDefinitionId node_id)
  701. -> bool {
  702. auto class_id =
  703. context.node_stack().Pop<Parse::NodeKind::ClassDefinitionStart>();
  704. // The class type is now fully defined. Compute its object representation.
  705. auto complete_type_witness_id =
  706. CheckCompleteClassType(context, node_id, class_id);
  707. auto& class_info = context.classes().Get(class_id);
  708. class_info.complete_type_witness_id = complete_type_witness_id;
  709. context.inst_block_stack().Pop();
  710. context.field_decls_stack().PopArray();
  711. context.vtable_stack().Pop();
  712. FinishGenericDefinition(context, class_info.generic_id);
  713. // The decl_name_stack and scopes are popped by `ProcessNodeIds`.
  714. return true;
  715. }
  716. } // namespace Carbon::Check