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Replace SemIRLoc typedef uses with explicitly SemIR::LocId, loc -> loc_id for consistency.
579 lines
23 KiB
C++
579 lines
23 KiB
C++
// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
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// Exceptions. See /LICENSE for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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#include "toolchain/base/kind_switch.h"
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#include "toolchain/check/class.h"
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#include "toolchain/check/context.h"
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#include "toolchain/check/convert.h"
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#include "toolchain/check/decl_name_stack.h"
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#include "toolchain/check/diagnostic_helpers.h"
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#include "toolchain/check/eval.h"
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#include "toolchain/check/generic.h"
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#include "toolchain/check/handle.h"
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#include "toolchain/check/import.h"
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#include "toolchain/check/import_ref.h"
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#include "toolchain/check/inst.h"
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#include "toolchain/check/merge.h"
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#include "toolchain/check/modifiers.h"
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#include "toolchain/check/name_component.h"
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#include "toolchain/check/name_lookup.h"
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#include "toolchain/check/type.h"
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#include "toolchain/check/type_completion.h"
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#include "toolchain/parse/node_ids.h"
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#include "toolchain/sem_ir/function.h"
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#include "toolchain/sem_ir/ids.h"
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#include "toolchain/sem_ir/inst.h"
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#include "toolchain/sem_ir/typed_insts.h"
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namespace Carbon::Check {
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auto HandleParseNode(Context& context, Parse::ClassIntroducerId node_id)
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-> bool {
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// Create an instruction block to hold the instructions created as part of the
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// class signature, such as generic parameters.
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context.inst_block_stack().Push();
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// Push the bracketing node.
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context.node_stack().Push(node_id);
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// Optional modifiers and the name follow.
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context.decl_introducer_state_stack().Push<Lex::TokenKind::Class>();
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context.decl_name_stack().PushScopeAndStartName();
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// This class is potentially generic.
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StartGenericDecl(context);
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return true;
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}
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// Tries to merge new_class into prev_class_id. Since new_class won't have a
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// definition even if one is upcoming, set is_definition to indicate the planned
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// result.
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//
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// If merging is successful, returns true and may update the previous class.
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// Otherwise, returns false. Prints a diagnostic when appropriate.
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static auto MergeClassRedecl(Context& context, Parse::AnyClassDeclId node_id,
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SemIR::Class& new_class, bool new_is_definition,
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SemIR::ClassId prev_class_id,
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SemIR::ImportIRId prev_import_ir_id) -> bool {
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auto& prev_class = context.classes().Get(prev_class_id);
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SemIR::LocId prev_loc_id = prev_class.latest_decl_id();
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// Check the generic parameters match, if they were specified.
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if (!CheckRedeclParamsMatch(context, DeclParams(new_class),
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DeclParams(prev_class))) {
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return false;
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}
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DiagnoseIfInvalidRedecl(
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context, Lex::TokenKind::Class, prev_class.name_id,
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RedeclInfo(new_class, node_id, new_is_definition),
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RedeclInfo(prev_class, prev_loc_id, prev_class.has_definition_started()),
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prev_import_ir_id);
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if (new_is_definition && prev_class.has_definition_started()) {
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// Don't attempt to merge multiple definitions.
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return false;
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}
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if (new_is_definition) {
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prev_class.MergeDefinition(new_class);
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prev_class.scope_id = new_class.scope_id;
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prev_class.body_block_id = new_class.body_block_id;
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prev_class.adapt_id = new_class.adapt_id;
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prev_class.base_id = new_class.base_id;
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prev_class.complete_type_witness_id = new_class.complete_type_witness_id;
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}
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if (prev_import_ir_id.has_value() ||
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(prev_class.is_extern && !new_class.is_extern)) {
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prev_class.first_owning_decl_id = new_class.first_owning_decl_id;
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ReplacePrevInstForMerge(context, new_class.parent_scope_id,
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prev_class.name_id, new_class.first_owning_decl_id);
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}
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return true;
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}
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// Adds the name to name lookup. If there's a conflict, tries to merge. May
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// update class_decl and class_info when merging.
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static auto MergeOrAddName(Context& context, Parse::AnyClassDeclId node_id,
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const DeclNameStack::NameContext& name_context,
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SemIR::InstId class_decl_id,
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SemIR::ClassDecl& class_decl,
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SemIR::Class& class_info, bool is_definition,
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SemIR::AccessKind access_kind) -> void {
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SemIR::ScopeLookupResult lookup_result =
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context.decl_name_stack().LookupOrAddName(name_context, class_decl_id,
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access_kind);
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if (lookup_result.is_poisoned()) {
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// This is a declaration of a poisoned name.
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DiagnosePoisonedName(context, name_context.name_id_for_new_inst(),
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lookup_result.poisoning_loc_id(), name_context.loc_id);
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return;
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}
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if (!lookup_result.is_found()) {
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return;
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}
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SemIR::InstId prev_id = lookup_result.target_inst_id();
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auto prev_class_id = SemIR::ClassId::None;
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auto prev_import_ir_id = SemIR::ImportIRId::None;
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auto prev = context.insts().Get(prev_id);
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CARBON_KIND_SWITCH(prev) {
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case CARBON_KIND(SemIR::ClassDecl class_decl): {
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prev_class_id = class_decl.class_id;
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break;
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}
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case CARBON_KIND(SemIR::ImportRefLoaded import_ref): {
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auto import_ir_inst =
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context.import_ir_insts().Get(import_ref.import_ir_inst_id);
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// Verify the decl so that things like aliases are name conflicts.
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const auto* import_ir =
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context.import_irs().Get(import_ir_inst.ir_id).sem_ir;
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if (!import_ir->insts().Is<SemIR::ClassDecl>(import_ir_inst.inst_id)) {
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break;
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}
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// Use the constant value to get the ID.
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auto decl_value = context.insts().Get(
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context.constant_values().GetConstantInstId(prev_id));
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if (auto class_type = decl_value.TryAs<SemIR::ClassType>()) {
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prev_class_id = class_type->class_id;
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prev_import_ir_id = import_ir_inst.ir_id;
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} else if (auto generic_class_type =
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context.types().TryGetAs<SemIR::GenericClassType>(
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decl_value.type_id())) {
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prev_class_id = generic_class_type->class_id;
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prev_import_ir_id = import_ir_inst.ir_id;
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}
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break;
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}
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default:
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break;
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}
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if (!prev_class_id.has_value()) {
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// This is a redeclaration of something other than a class.
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DiagnoseDuplicateName(context, name_context.name_id, name_context.loc_id,
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prev_id);
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return;
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}
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// TODO: Fix `extern` logic. It doesn't work correctly, but doesn't seem worth
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// ripping out because existing code may incrementally help.
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if (MergeClassRedecl(context, node_id, class_info, is_definition,
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prev_class_id, prev_import_ir_id)) {
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// When merging, use the existing entity rather than adding a new one.
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class_decl.class_id = prev_class_id;
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class_decl.type_id = prev.type_id();
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// TODO: Validate that the redeclaration doesn't set an access modifier.
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}
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}
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static auto BuildClassDecl(Context& context, Parse::AnyClassDeclId node_id,
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bool is_definition)
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-> std::tuple<SemIR::ClassId, SemIR::InstId> {
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auto name = PopNameComponent(context);
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auto name_context = context.decl_name_stack().FinishName(name);
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context.node_stack()
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.PopAndDiscardSoloNodeId<Parse::NodeKind::ClassIntroducer>();
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// Process modifiers.
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auto [_, parent_scope_inst] =
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context.name_scopes().GetInstIfValid(name_context.parent_scope_id);
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auto introducer =
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context.decl_introducer_state_stack().Pop<Lex::TokenKind::Class>();
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CheckAccessModifiersOnDecl(context, introducer, parent_scope_inst);
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auto always_acceptable_modifiers =
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KeywordModifierSet::Access | KeywordModifierSet::Extern;
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LimitModifiersOnDecl(context, introducer,
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always_acceptable_modifiers | KeywordModifierSet::Class);
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if (!is_definition) {
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LimitModifiersOnNotDefinition(context, introducer,
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always_acceptable_modifiers);
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}
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RestrictExternModifierOnDecl(context, introducer, parent_scope_inst,
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is_definition);
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bool is_extern = introducer.modifier_set.HasAnyOf(KeywordModifierSet::Extern);
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if (introducer.extern_library.has_value()) {
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context.TODO(node_id, "extern library");
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}
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auto inheritance_kind =
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introducer.modifier_set.ToEnum<SemIR::Class::InheritanceKind>()
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.Case(KeywordModifierSet::Abstract, SemIR::Class::Abstract)
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.Case(KeywordModifierSet::Base, SemIR::Class::Base)
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.Default(SemIR::Class::Final);
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auto decl_block_id = context.inst_block_stack().Pop();
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// Add the class declaration.
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auto class_decl =
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SemIR::ClassDecl{.type_id = SemIR::TypeType::SingletonTypeId,
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.class_id = SemIR::ClassId::None,
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.decl_block_id = decl_block_id};
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auto class_decl_id = AddPlaceholderInst(context, node_id, class_decl);
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// TODO: Store state regarding is_extern.
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SemIR::Class class_info = {
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name_context.MakeEntityWithParamsBase(name, class_decl_id, is_extern,
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SemIR::LibraryNameId::None),
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{// `.self_type_id` depends on the ClassType, so is set below.
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.self_type_id = SemIR::TypeId::None,
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.inheritance_kind = inheritance_kind}};
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DiagnoseIfGenericMissingExplicitParameters(context, class_info);
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MergeOrAddName(context, node_id, name_context, class_decl_id, class_decl,
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class_info, is_definition,
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introducer.modifier_set.GetAccessKind());
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// Create a new class if this isn't a valid redeclaration.
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bool is_new_class = !class_decl.class_id.has_value();
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if (is_new_class) {
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// TODO: If this is an invalid redeclaration of a non-class entity or there
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// was an error in the qualifier, we will have lost track of the class name
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// here. We should keep track of it even if the name is invalid.
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class_info.generic_id = BuildGenericDecl(context, class_decl_id);
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class_decl.class_id = context.classes().Add(class_info);
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if (class_info.has_parameters()) {
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class_decl.type_id = GetGenericClassType(
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context, class_decl.class_id, context.scope_stack().PeekSpecificId());
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}
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} else {
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auto prev_decl_generic_id =
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context.classes().Get(class_decl.class_id).generic_id;
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FinishGenericRedecl(context, prev_decl_generic_id);
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}
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// Write the class ID into the ClassDecl.
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ReplaceInstBeforeConstantUse(context, class_decl_id, class_decl);
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if (is_new_class) {
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// TODO: Form this as part of building the definition, not as part of the
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// declaration.
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SetClassSelfType(context, class_decl.class_id);
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}
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if (!is_definition && context.sem_ir().is_impl() && !is_extern) {
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context.definitions_required_by_decl().push_back(class_decl_id);
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}
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return {class_decl.class_id, class_decl_id};
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}
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auto HandleParseNode(Context& context, Parse::ClassDeclId node_id) -> bool {
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BuildClassDecl(context, node_id, /*is_definition=*/false);
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context.decl_name_stack().PopScope();
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return true;
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}
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auto HandleParseNode(Context& context, Parse::ClassDefinitionStartId node_id)
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-> bool {
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auto [class_id, class_decl_id] =
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BuildClassDecl(context, node_id, /*is_definition=*/true);
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auto& class_info = context.classes().Get(class_id);
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StartClassDefinition(context, class_info, class_decl_id);
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// Enter the class scope.
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context.scope_stack().Push(
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class_decl_id, class_info.scope_id,
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context.generics().GetSelfSpecific(class_info.generic_id));
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StartGenericDefinition(context);
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context.inst_block_stack().Push();
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context.node_stack().Push(node_id, class_id);
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context.field_decls_stack().PushArray();
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context.vtable_stack().Push();
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// TODO: Handle the case where there's control flow in the class body. For
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// example:
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//
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// class C {
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// var v: if true then i32 else f64;
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// }
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//
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// We may need to track a list of instruction blocks here, as we do for a
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// function.
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class_info.body_block_id = context.inst_block_stack().PeekOrAdd();
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return true;
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}
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// Diagnoses a class-specific declaration appearing outside a class.
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static auto DiagnoseClassSpecificDeclOutsideClass(Context& context,
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SemIR::LocId loc_id,
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Lex::TokenKind tok) -> void {
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CARBON_DIAGNOSTIC(ClassSpecificDeclOutsideClass, Error,
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"`{0}` declaration outside class", Lex::TokenKind);
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context.emitter().Emit(loc_id, ClassSpecificDeclOutsideClass, tok);
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}
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// Returns the current scope's class declaration, or diagnoses if it isn't a
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// class.
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static auto GetCurrentScopeAsClassOrDiagnose(Context& context,
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SemIR::LocId loc_id,
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Lex::TokenKind tok)
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-> std::optional<SemIR::ClassDecl> {
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auto class_scope =
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context.scope_stack().GetCurrentScopeAs<SemIR::ClassDecl>();
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if (!class_scope) {
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DiagnoseClassSpecificDeclOutsideClass(context, loc_id, tok);
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}
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return class_scope;
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}
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// Diagnoses a class-specific declaration that is repeated within a class, but
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// is not permitted to be repeated.
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static auto DiagnoseClassSpecificDeclRepeated(Context& context,
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SemIR::LocId new_loc_id,
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SemIR::LocId prev_loc_id,
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Lex::TokenKind tok) -> void {
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CARBON_DIAGNOSTIC(AdaptDeclRepeated, Error,
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"multiple `adapt` declarations in class");
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CARBON_DIAGNOSTIC(BaseDeclRepeated, Error,
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"multiple `base` declarations in class; multiple "
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"inheritance is not permitted");
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CARBON_DIAGNOSTIC(ClassSpecificDeclPrevious, Note,
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"previous `{0}` declaration is here", Lex::TokenKind);
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CARBON_CHECK(tok == Lex::TokenKind::Adapt || tok == Lex::TokenKind::Base);
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context.emitter()
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.Build(new_loc_id, tok == Lex::TokenKind::Adapt ? AdaptDeclRepeated
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: BaseDeclRepeated)
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.Note(prev_loc_id, ClassSpecificDeclPrevious, tok)
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.Emit();
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}
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auto HandleParseNode(Context& context, Parse::AdaptIntroducerId /*node_id*/)
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-> bool {
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context.decl_introducer_state_stack().Push<Lex::TokenKind::Adapt>();
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return true;
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}
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auto HandleParseNode(Context& context, Parse::AdaptDeclId node_id) -> bool {
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auto [adapted_type_node, adapted_type_expr_id] =
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context.node_stack().PopExprWithNodeId();
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// Process modifiers. `extend` is permitted, no others are allowed.
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auto introducer =
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context.decl_introducer_state_stack().Pop<Lex::TokenKind::Adapt>();
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LimitModifiersOnDecl(context, introducer, KeywordModifierSet::Extend);
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auto parent_class_decl =
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GetCurrentScopeAsClassOrDiagnose(context, node_id, Lex::TokenKind::Adapt);
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if (!parent_class_decl) {
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return true;
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}
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auto& class_info = context.classes().Get(parent_class_decl->class_id);
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if (class_info.adapt_id.has_value()) {
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DiagnoseClassSpecificDeclRepeated(context, node_id, class_info.adapt_id,
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Lex::TokenKind::Adapt);
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return true;
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}
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auto [adapted_type_inst_id, adapted_type_id] =
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ExprAsType(context, node_id, adapted_type_expr_id);
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adapted_type_id = AsConcreteType(
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context, adapted_type_id, node_id,
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[&] {
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CARBON_DIAGNOSTIC(IncompleteTypeInAdaptDecl, Error,
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"adapted type {0} is an incomplete type",
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InstIdAsType);
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return context.emitter().Build(node_id, IncompleteTypeInAdaptDecl,
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adapted_type_inst_id);
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},
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[&] {
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CARBON_DIAGNOSTIC(AbstractTypeInAdaptDecl, Error,
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"adapted type {0} is an abstract type", InstIdAsType);
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return context.emitter().Build(node_id, AbstractTypeInAdaptDecl,
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adapted_type_inst_id);
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});
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if (adapted_type_id == SemIR::ErrorInst::SingletonTypeId) {
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adapted_type_inst_id = SemIR::ErrorInst::SingletonTypeInstId;
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}
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// Build a SemIR representation for the declaration.
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class_info.adapt_id = AddInst<SemIR::AdaptDecl>(
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context, node_id, {.adapted_type_inst_id = adapted_type_inst_id});
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// Extend the class scope with the adapted type's scope if requested.
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if (introducer.modifier_set.HasAnyOf(KeywordModifierSet::Extend)) {
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auto& class_scope = context.name_scopes().Get(class_info.scope_id);
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class_scope.AddExtendedScope(adapted_type_inst_id);
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}
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return true;
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}
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auto HandleParseNode(Context& context, Parse::BaseIntroducerId /*node_id*/)
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-> bool {
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context.decl_introducer_state_stack().Push<Lex::TokenKind::Base>();
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return true;
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}
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auto HandleParseNode(Context& /*context*/, Parse::BaseColonId /*node_id*/)
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-> bool {
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return true;
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}
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namespace {
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// Information gathered about a base type specified in a `base` declaration.
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struct BaseInfo {
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// A `BaseInfo` representing an erroneous base.
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static const BaseInfo Error;
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SemIR::TypeId type_id;
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SemIR::NameScopeId scope_id;
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SemIR::TypeInstId inst_id;
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};
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constexpr BaseInfo BaseInfo::Error = {
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.type_id = SemIR::ErrorInst::SingletonTypeId,
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.scope_id = SemIR::NameScopeId::None,
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.inst_id = SemIR::ErrorInst::SingletonTypeInstId};
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} // namespace
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// Diagnoses an attempt to derive from a final type.
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static auto DiagnoseBaseIsFinal(Context& context, Parse::NodeId node_id,
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SemIR::TypeInstId base_type_inst_id) -> void {
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CARBON_DIAGNOSTIC(BaseIsFinal, Error,
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"deriving from final type {0}; base type must be an "
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"`abstract` or `base` class",
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InstIdAsType);
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context.emitter().Emit(node_id, BaseIsFinal, base_type_inst_id);
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}
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// Checks that the specified base type is valid.
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static auto CheckBaseType(Context& context, Parse::NodeId node_id,
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SemIR::InstId base_expr_id) -> BaseInfo {
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auto [base_type_inst_id, base_type_id] =
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ExprAsType(context, node_id, base_expr_id);
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base_type_id = AsCompleteType(context, base_type_id, node_id, [&] {
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CARBON_DIAGNOSTIC(IncompleteTypeInBaseDecl, Error,
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"base {0} is an incomplete type", InstIdAsType);
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return context.emitter().Build(node_id, IncompleteTypeInBaseDecl,
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base_type_inst_id);
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});
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if (base_type_id == SemIR::ErrorInst::SingletonTypeId) {
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return BaseInfo::Error;
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}
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auto* base_class_info = TryGetAsClass(context, base_type_id);
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// The base must not be a final class.
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if (!base_class_info) {
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// For now, we treat all types that aren't introduced by a `class`
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// declaration as being final classes.
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// TODO: Once we have a better idea of which types are considered to be
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// classes, produce a better diagnostic for deriving from a non-class type.
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DiagnoseBaseIsFinal(context, node_id, base_type_inst_id);
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return BaseInfo::Error;
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}
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if (base_class_info->inheritance_kind == SemIR::Class::Final) {
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DiagnoseBaseIsFinal(context, node_id, base_type_inst_id);
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}
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CARBON_CHECK(base_class_info->scope_id.has_value(),
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"Complete class should have a scope");
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return {.type_id = base_type_id,
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.scope_id = base_class_info->scope_id,
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.inst_id = base_type_inst_id};
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}
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auto HandleParseNode(Context& context, Parse::BaseDeclId node_id) -> bool {
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auto [base_type_node_id, base_type_expr_id] =
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context.node_stack().PopExprWithNodeId();
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// Process modifiers. `extend` is required, no others are allowed.
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auto introducer =
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context.decl_introducer_state_stack().Pop<Lex::TokenKind::Base>();
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LimitModifiersOnDecl(context, introducer, KeywordModifierSet::Extend);
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if (!introducer.modifier_set.HasAnyOf(KeywordModifierSet::Extend)) {
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CARBON_DIAGNOSTIC(BaseMissingExtend, Error,
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"missing `extend` before `base` declaration");
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context.emitter().Emit(node_id, BaseMissingExtend);
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}
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auto parent_class_decl =
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GetCurrentScopeAsClassOrDiagnose(context, node_id, Lex::TokenKind::Base);
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if (!parent_class_decl) {
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return true;
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}
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auto& class_info = context.classes().Get(parent_class_decl->class_id);
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if (class_info.base_id.has_value()) {
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DiagnoseClassSpecificDeclRepeated(context, node_id, class_info.base_id,
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Lex::TokenKind::Base);
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return true;
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}
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if (!context.field_decls_stack().PeekArray().empty()) {
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// TODO: Add note that includes the first field location as an example.
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CARBON_DIAGNOSTIC(
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BaseDeclAfterFieldDecl, Error,
|
|
"`base` declaration must appear before field declarations");
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context.emitter().Emit(node_id, BaseDeclAfterFieldDecl);
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return true;
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}
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|
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auto base_info = CheckBaseType(context, base_type_node_id, base_type_expr_id);
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|
|
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// TODO: Should we diagnose if there are already any fields?
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|
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// The `base` value in the class scope has an unbound element type. Instance
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// binding will be performed when it's found by name lookup into an instance.
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auto field_type_id = GetUnboundElementType(
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context, context.types().GetInstId(class_info.self_type_id),
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base_info.inst_id);
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class_info.base_id =
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AddInst<SemIR::BaseDecl>(context, node_id,
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{.type_id = field_type_id,
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|
.base_type_inst_id = base_info.inst_id,
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|
.index = SemIR::ElementIndex::None});
|
|
|
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if (base_info.type_id != SemIR::ErrorInst::SingletonTypeId) {
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|
auto base_class_info = context.classes().Get(
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context.types().GetAs<SemIR::ClassType>(base_info.type_id).class_id);
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class_info.is_dynamic |= base_class_info.is_dynamic;
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}
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|
|
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// Bind the name `base` in the class to the base field.
|
|
context.decl_name_stack().AddNameOrDiagnose(
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|
context.decl_name_stack().MakeUnqualifiedName(node_id,
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SemIR::NameId::Base),
|
|
class_info.base_id, introducer.modifier_set.GetAccessKind());
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|
|
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// Extend the class scope with the base class.
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|
if (introducer.modifier_set.HasAnyOf(KeywordModifierSet::Extend)) {
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auto& class_scope = context.name_scopes().Get(class_info.scope_id);
|
|
if (base_info.scope_id.has_value()) {
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|
class_scope.AddExtendedScope(base_info.inst_id);
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|
} else {
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|
class_scope.set_has_error();
|
|
}
|
|
}
|
|
return true;
|
|
}
|
|
|
|
auto HandleParseNode(Context& context, Parse::ClassDefinitionId node_id)
|
|
-> bool {
|
|
auto class_id =
|
|
context.node_stack().Pop<Parse::NodeKind::ClassDefinitionStart>();
|
|
|
|
// The class type is now fully defined. Compute its object representation.
|
|
ComputeClassObjectRepr(context, node_id, class_id,
|
|
context.field_decls_stack().PeekArray(),
|
|
context.vtable_stack().PeekCurrentBlockContents(),
|
|
context.inst_block_stack().PeekCurrentBlockContents());
|
|
|
|
context.inst_block_stack().Pop();
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|
context.field_decls_stack().PopArray();
|
|
context.vtable_stack().Pop();
|
|
|
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FinishGenericDefinition(context, context.classes().Get(class_id).generic_id);
|
|
|
|
// The decl_name_stack and scopes are popped by `ProcessNodeIds`.
|
|
return true;
|
|
}
|
|
|
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} // namespace Carbon::Check
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