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Change the implementation to use an explicit `is_poisoned` bit instead of `InstId::PoisonedName` value. Zero behavior change. This would allow to more easily change the API to support accessing the poisoning declaration so we can have better name poisoning diagnosis. #4622
236 lines
7.9 KiB
C++
236 lines
7.9 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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#ifndef CARBON_TOOLCHAIN_SEM_IR_NAME_SCOPE_H_
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#define CARBON_TOOLCHAIN_SEM_IR_NAME_SCOPE_H_
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#include "common/map.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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namespace Carbon::SemIR {
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// Access control for an entity.
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enum class AccessKind : int8_t {
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Public,
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Protected,
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Private,
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};
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class NameScope : public Printable<NameScope> {
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public:
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struct Entry {
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NameId name_id;
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InstId inst_id;
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AccessKind access_kind;
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bool is_poisoned = false;
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};
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static_assert(sizeof(Entry) == 12);
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struct EntryId : public IdBase<EntryId> {
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static constexpr llvm::StringLiteral Label = "name_scope_entry";
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using IdBase::IdBase;
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};
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explicit NameScope(InstId inst_id, NameId name_id,
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NameScopeId parent_scope_id)
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: inst_id_(inst_id),
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name_id_(name_id),
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parent_scope_id_(parent_scope_id) {}
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auto Print(llvm::raw_ostream& out) const -> void;
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auto entries() const -> llvm::ArrayRef<Entry> { return names_; }
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// Get a specific Name entry based on an EntryId that return from a lookup.
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//
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// The Entry could become invalidated if the scope object is invalidated or if
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// a name is added.
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auto GetEntry(EntryId entry_id) const -> const Entry& {
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return names_[entry_id.index];
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}
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auto GetEntry(EntryId entry_id) -> Entry& { return names_[entry_id.index]; }
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// Searches for the given name and returns an EntryId if found or nullopt if
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// not. The returned entry may be poisoned.
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auto Lookup(NameId name_id) const -> std::optional<EntryId> {
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auto lookup = name_map_.Lookup(name_id);
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if (!lookup) {
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return std::nullopt;
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}
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return lookup.value();
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}
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// Adds a new name known to not exist. Must not be poisoned.
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auto AddRequired(Entry name_entry) -> void;
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// If the given name already exists, return true with the EntryId; the entry
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// might be poisoned. Otherwise, adds the name using inst_id and access_kind
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// and returns false with the new EntryId.
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//
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// This cannot be used to add poisoned entries; use AddPoison instead.
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auto LookupOrAdd(SemIR::NameId name_id, InstId inst_id,
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AccessKind access_kind) -> std::pair<bool, EntryId>;
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// Adds a new poisoned name.
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auto AddPoison(NameId name_id) -> void;
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auto extended_scopes() const -> llvm::ArrayRef<InstId> {
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return extended_scopes_;
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}
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auto AddExtendedScope(SemIR::InstId extended_scope) -> void {
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extended_scopes_.push_back(extended_scope);
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}
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auto inst_id() const -> InstId { return inst_id_; }
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auto name_id() const -> NameId { return name_id_; }
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auto parent_scope_id() const -> NameScopeId { return parent_scope_id_; }
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auto has_error() const -> bool { return has_error_; }
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// Mark that we have diagnosed an error in a construct that would have added
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// names to this scope.
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auto set_has_error() -> void { has_error_ = true; }
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auto is_closed_import() const -> bool { return is_closed_import_; }
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auto set_is_closed_import(bool is_closed_import) -> void {
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is_closed_import_ = is_closed_import;
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}
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// Returns true if this name scope describes an imported package.
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auto is_imported_package() const -> bool {
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return is_closed_import() && parent_scope_id() == NameScopeId::Package;
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}
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auto import_ir_scopes() const
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-> llvm::ArrayRef<std::pair<SemIR::ImportIRId, SemIR::NameScopeId>> {
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return import_ir_scopes_;
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}
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auto AddImportIRScope(
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const std::pair<SemIR::ImportIRId, SemIR::NameScopeId>& import_ir_scope)
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-> void {
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import_ir_scopes_.push_back(import_ir_scope);
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}
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private:
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// Names in the scope, including poisoned names.
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//
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// Entries could become invalidated if the scope object is invalidated or if a
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// name is added.
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//
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// We store both an insertion-ordered vector for iterating
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// and a map from `NameId` to the index of that vector for name lookup.
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//
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// Optimization notes: this is somewhat memory inefficient. If this ends up
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// either hot or a significant source of memory allocation, we should consider
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// switching to a SOA model where the `AccessKind` is stored in a separate
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// vector so that these can pack densely. If this ends up both cold and memory
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// intensive, we can also switch the lookup to a set of indices into the
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// vector rather than a map from `NameId` to index.
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llvm::SmallVector<Entry> names_;
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Map<NameId, EntryId> name_map_;
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// Instructions returning values that are extended by this scope.
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//
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// Small vector size is set to 1: we expect that there will rarely be more
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// than a single extended scope.
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// TODO: Revisit this once we have more kinds of extended scope and data.
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// TODO: Consider using something like `TinyPtrVector` for this.
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llvm::SmallVector<InstId, 1> extended_scopes_;
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// The instruction which owns the scope.
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InstId inst_id_;
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// When the scope is a namespace, the name. Otherwise, invalid.
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NameId name_id_;
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// The parent scope.
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NameScopeId parent_scope_id_;
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// Whether we have diagnosed an error in a construct that would have added
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// names to this scope. For example, this can happen if an `import` failed or
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// an `extend` declaration was ill-formed. If true, names are assumed to be
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// missing as a result of the error, and no further errors are produced for
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// lookup failures in this scope.
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bool has_error_ = false;
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// True if this is a closed namespace created by importing a package.
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bool is_closed_import_ = false;
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// Imported IR scopes that compose this namespace. This will be empty for
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// scopes that correspond to the current package.
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llvm::SmallVector<std::pair<SemIR::ImportIRId, SemIR::NameScopeId>, 0>
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import_ir_scopes_;
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};
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// Provides a ValueStore wrapper for an API specific to name scopes.
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class NameScopeStore {
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public:
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explicit NameScopeStore(const File* file) : file_(file) {}
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// Adds a name scope, returning an ID to reference it.
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auto Add(InstId inst_id, NameId name_id, NameScopeId parent_scope_id)
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-> NameScopeId {
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return values_.Add(NameScope(inst_id, name_id, parent_scope_id));
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}
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// Adds a name that is required to exist in a name scope, such as `Self`.
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// The name must never conflict. inst_id must not be poisoned.
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auto AddRequiredName(NameScopeId scope_id, NameId name_id, InstId inst_id)
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-> void {
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Get(scope_id).AddRequired({.name_id = name_id,
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.inst_id = inst_id,
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.access_kind = AccessKind::Public});
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}
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// Returns the requested name scope.
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auto Get(NameScopeId scope_id) -> NameScope& { return values_.Get(scope_id); }
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// Returns the requested name scope.
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auto Get(NameScopeId scope_id) const -> const NameScope& {
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return values_.Get(scope_id);
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}
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// Returns the instruction owning the requested name scope, or Invalid with
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// nullopt if the scope is either invalid or has no associated instruction.
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auto GetInstIfValid(NameScopeId scope_id) const
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-> std::pair<InstId, std::optional<Inst>>;
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// Returns whether the provided scope ID is for a package scope.
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auto IsPackage(NameScopeId scope_id) const -> bool {
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if (!scope_id.is_valid()) {
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return false;
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}
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// A package is either the current package or an imported package.
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return scope_id == SemIR::NameScopeId::Package ||
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Get(scope_id).is_imported_package();
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}
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// Returns whether the provided scope ID is for the Core package.
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auto IsCorePackage(NameScopeId scope_id) const -> bool;
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auto OutputYaml() const -> Yaml::OutputMapping {
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return values_.OutputYaml();
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}
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// Collects memory usage of members.
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auto CollectMemUsage(MemUsage& mem_usage, llvm::StringRef label) const
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-> void {
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mem_usage.Collect(std::string(label), values_);
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}
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private:
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const File* file_;
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ValueStore<NameScopeId> values_;
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};
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} // namespace Carbon::SemIR
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#endif // CARBON_TOOLCHAIN_SEM_IR_NAME_SCOPE_H_
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