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When declaring a name such as `fn Ns.Class.F() { ... }`, enter the
scopes of `Ns` and `Ns.Class` as we form the name, and remain in those
non-lexical scopes until the end of the declaration.
When performing an unqualified lookup, look in any enclosing non-lexical
scopes in addition to looking into the lexical name table.
We now track a scope index with each lookup result in the lexical name
lookup table. This is used to determine whether a lexical or non-lexcial
result is the innermost result and whether a declared name is in the
same scope as some previous introduction of that name or in a nested
scope. For now, this could just be the index into the scope_stack, but
the intent is to also use this to detect names being declared after they
are first looked up, which requires the indexes to outlive their scopes,
so we use a persistent numbering of all scopes instead. The persistent
numbering also permits more invariant checking.
222 lines
8.7 KiB
C++
222 lines
8.7 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/check/declaration_name_stack.h"
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#include "toolchain/check/context.h"
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namespace Carbon::Check {
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auto DeclarationNameStack::MakeEmptyNameContext() -> NameContext {
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return NameContext{.enclosing_scope = context_->current_scope_index(),
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.target_scope_id = context_->current_scope_id()};
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}
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auto DeclarationNameStack::MakeUnqualifiedName(Parse::Node parse_node,
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IdentifierId name_id)
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-> NameContext {
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NameContext context = MakeEmptyNameContext();
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ApplyNameQualifierTo(context, parse_node, name_id);
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return context;
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}
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auto DeclarationNameStack::PushScopeAndStartName() -> void {
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declaration_name_stack_.push_back(MakeEmptyNameContext());
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}
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auto DeclarationNameStack::FinishName() -> NameContext {
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CARBON_CHECK(declaration_name_stack_.back().state !=
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NameContext::State::Finished)
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<< "Finished name twice";
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if (context_->parse_tree().node_kind(
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context_->node_stack().PeekParseNode()) ==
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Parse::NodeKind::QualifiedDeclaration) {
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// Any parts from a QualifiedDeclaration will already have been processed
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// into the name.
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context_->node_stack()
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.PopAndDiscardSoloParseNode<Parse::NodeKind::QualifiedDeclaration>();
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} else {
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// The name had no qualifiers, so we need to process the node now.
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auto [parse_node, name_id] =
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context_->node_stack().PopWithParseNode<Parse::NodeKind::Name>();
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ApplyNameQualifier(parse_node, name_id);
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}
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NameContext result = declaration_name_stack_.back();
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declaration_name_stack_.back().state = NameContext::State::Finished;
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return result;
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}
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auto DeclarationNameStack::PopScope() -> void {
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CARBON_CHECK(declaration_name_stack_.back().state ==
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NameContext::State::Finished)
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<< "Missing call to FinishName before PopScope";
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context_->PopToScope(declaration_name_stack_.back().enclosing_scope);
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declaration_name_stack_.pop_back();
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}
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auto DeclarationNameStack::LookupOrAddName(NameContext name_context,
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SemIR::InstId target_id)
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-> SemIR::InstId {
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switch (name_context.state) {
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case NameContext::State::Error:
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// The name is invalid and a diagnostic has already been emitted.
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return SemIR::InstId::Invalid;
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case NameContext::State::Empty:
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CARBON_FATAL() << "Name is missing, not expected to call AddNameToLookup "
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"(but that may change based on error handling).";
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case NameContext::State::Resolved:
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case NameContext::State::ResolvedNonScope:
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return name_context.resolved_inst_id;
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case NameContext::State::Unresolved:
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if (name_context.target_scope_id == SemIR::NameScopeId::Invalid) {
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context_->AddNameToLookup(name_context.parse_node,
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name_context.unresolved_name_id, target_id);
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} else {
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// TODO: Reject unless the scope is a namespace scope or the name is
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// unqualified.
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bool success = context_->name_scopes().AddEntry(
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name_context.target_scope_id, name_context.unresolved_name_id,
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target_id);
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CARBON_CHECK(success)
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<< "Duplicate names should have been resolved previously: "
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<< name_context.unresolved_name_id << " in "
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<< name_context.target_scope_id;
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}
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return SemIR::InstId::Invalid;
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case NameContext::State::Finished:
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CARBON_FATAL() << "Finished state should only be used internally";
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}
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}
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auto DeclarationNameStack::AddNameToLookup(NameContext name_context,
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SemIR::InstId target_id) -> void {
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auto existing_inst_id = LookupOrAddName(name_context, target_id);
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if (existing_inst_id.is_valid()) {
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context_->DiagnoseDuplicateName(name_context.parse_node, existing_inst_id);
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}
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}
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auto DeclarationNameStack::ApplyNameQualifier(Parse::Node parse_node,
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IdentifierId name_id) -> void {
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ApplyNameQualifierTo(declaration_name_stack_.back(), parse_node, name_id);
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}
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auto DeclarationNameStack::ApplyNameQualifierTo(NameContext& name_context,
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Parse::Node parse_node,
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IdentifierId name_id) -> void {
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if (CanResolveQualifier(name_context, parse_node)) {
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// For identifier nodes, we need to perform a lookup on the identifier.
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auto resolved_inst_id = context_->LookupNameInDeclaration(
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name_context.parse_node, name_id, name_context.target_scope_id);
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if (!resolved_inst_id.is_valid()) {
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// Invalid indicates an unresolved name. Store it and return.
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name_context.state = NameContext::State::Unresolved;
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name_context.unresolved_name_id = name_id;
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return;
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} else {
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// Store the resolved instruction and continue for the target scope
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// update.
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name_context.resolved_inst_id = resolved_inst_id;
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}
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UpdateScopeIfNeeded(name_context);
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}
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}
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auto DeclarationNameStack::UpdateScopeIfNeeded(NameContext& name_context)
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-> void {
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// This will only be reached for resolved instructions. We update the target
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// scope based on the resolved type.
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auto resolved_inst = context_->insts().Get(name_context.resolved_inst_id);
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switch (resolved_inst.kind()) {
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case SemIR::ClassDeclaration::Kind: {
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const auto& class_info = context_->classes().Get(
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resolved_inst.As<SemIR::ClassDeclaration>().class_id);
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if (class_info.is_defined()) {
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name_context.state = NameContext::State::Resolved;
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name_context.target_scope_id = class_info.scope_id;
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context_->PushScope(name_context.resolved_inst_id, class_info.scope_id);
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} else {
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name_context.state = NameContext::State::ResolvedNonScope;
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}
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break;
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}
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case SemIR::Namespace::Kind: {
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auto scope_id = resolved_inst.As<SemIR::Namespace>().name_scope_id;
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name_context.state = NameContext::State::Resolved;
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name_context.target_scope_id = scope_id;
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context_->PushScope(name_context.resolved_inst_id, scope_id);
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break;
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}
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default:
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name_context.state = NameContext::State::ResolvedNonScope;
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break;
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}
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}
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auto DeclarationNameStack::CanResolveQualifier(NameContext& name_context,
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Parse::Node parse_node) -> bool {
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switch (name_context.state) {
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case NameContext::State::Error:
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// Already in an error state, so return without examining.
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return false;
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case NameContext::State::Unresolved:
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// Because more qualifiers were found, we diagnose that the earlier
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// qualifier failed to resolve.
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name_context.state = NameContext::State::Error;
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context_->DiagnoseNameNotFound(name_context.parse_node,
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name_context.unresolved_name_id);
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return false;
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case NameContext::State::ResolvedNonScope: {
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// Because more qualifiers were found, we diagnose that the earlier
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// qualifier didn't resolve to a scoped entity.
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if (auto class_decl = context_->insts()
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.Get(name_context.resolved_inst_id)
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.TryAs<SemIR::ClassDeclaration>()) {
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CARBON_DIAGNOSTIC(QualifiedDeclarationInIncompleteClassScope, Error,
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"Cannot declare a member of incomplete class `{0}`.",
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std::string);
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auto builder = context_->emitter().Build(
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name_context.parse_node, QualifiedDeclarationInIncompleteClassScope,
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context_->sem_ir().StringifyType(
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context_->classes().Get(class_decl->class_id).self_type_id,
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true));
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context_->NoteIncompleteClass(class_decl->class_id, builder);
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builder.Emit();
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} else {
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CARBON_DIAGNOSTIC(
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QualifiedDeclarationInNonScope, Error,
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"Declaration qualifiers are only allowed for entities "
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"that provide a scope.");
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CARBON_DIAGNOSTIC(QualifiedDeclarationNonScopeEntity, Note,
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"Non-scope entity referenced here.");
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context_->emitter()
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.Build(parse_node, QualifiedDeclarationInNonScope)
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.Note(name_context.parse_node, QualifiedDeclarationNonScopeEntity)
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.Emit();
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}
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name_context.state = NameContext::State::Error;
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return false;
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}
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case NameContext::State::Empty:
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case NameContext::State::Resolved: {
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name_context.parse_node = parse_node;
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return true;
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}
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case NameContext::State::Finished:
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CARBON_FATAL() << "Added a qualifier after calling FinishName";
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}
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}
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} // namespace Carbon::Check
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