mirror of
https://github.com/carbon-language/carbon-lang.git
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340 lines
12 KiB
C++
340 lines
12 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_FILE_H_
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#define CARBON_TOOLCHAIN_SEM_IR_FILE_H_
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#include "common/error.h"
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#include "llvm/ADT/SmallVector.h"
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#include "llvm/ADT/iterator_range.h"
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#include "llvm/Support/Allocator.h"
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#include "llvm/Support/FormatVariadic.h"
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#include "toolchain/base/int.h"
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#include "toolchain/base/shared_value_stores.h"
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#include "toolchain/base/value_store.h"
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#include "toolchain/base/yaml.h"
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#include "toolchain/parse/tree.h"
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#include "toolchain/sem_ir/class.h"
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#include "toolchain/sem_ir/constant.h"
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#include "toolchain/sem_ir/entity_name.h"
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#include "toolchain/sem_ir/facet_type_info.h"
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#include "toolchain/sem_ir/function.h"
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#include "toolchain/sem_ir/generic.h"
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#include "toolchain/sem_ir/ids.h"
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#include "toolchain/sem_ir/impl.h"
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#include "toolchain/sem_ir/import_ir.h"
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#include "toolchain/sem_ir/inst.h"
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#include "toolchain/sem_ir/interface.h"
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#include "toolchain/sem_ir/name.h"
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#include "toolchain/sem_ir/name_scope.h"
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#include "toolchain/sem_ir/singleton_insts.h"
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#include "toolchain/sem_ir/struct_type_field.h"
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#include "toolchain/sem_ir/type.h"
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#include "toolchain/sem_ir/type_info.h"
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namespace Carbon::SemIR {
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// An expression that may contain control flow, represented as a
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// single-entry/single-exit region. `block_ids` are the blocks that are part of
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// evaluation of the expression, and `result_id` represents the result of
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// evaluating the expression. `block_ids` consists of all blocks that are
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// dominated by `block_ids.front()` and post-dominated by `block_ids.back()`,
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// and should be in lexical order. `result_id` will be in `block_ids.back()` or
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// some block that dominates it.
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//
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// `block_ids` cannot be empty. If it has a single element, then the region
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// should be used via a `SpliceBlock` inst. Otherwise, the region should be used
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// by branching to the entry block, and the last inst in the exit block will
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// likewise be a branch.
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struct ExprRegion {
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llvm::SmallVector<InstBlockId> block_ids;
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InstId result_id;
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};
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// Provides semantic analysis on a Parse::Tree.
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class File : public Printable<File> {
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public:
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// Starts a new file for Check::CheckParseTree.
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explicit File(const Parse::Tree* parse_tree, CheckIRId check_ir_id,
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const std::optional<Parse::Tree::PackagingDecl>& packaging_decl,
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SharedValueStores& value_stores, std::string filename);
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File(const File&) = delete;
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auto operator=(const File&) -> File& = delete;
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// Verifies that invariants of the semantics IR hold.
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auto Verify() const -> ErrorOr<Success>;
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// Prints the full IR. Allow omitting singletons so that changes to the list
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// of singletons won't churn golden test file content.
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auto Print(llvm::raw_ostream& out, bool include_singletons = false) const
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-> void {
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Yaml::Print(out, OutputYaml(include_singletons));
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}
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auto OutputYaml(bool include_singletons) const -> Yaml::OutputMapping;
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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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// Returns array bound value from the bound instruction.
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auto GetArrayBoundValue(InstId bound_id) const -> std::optional<uint64_t> {
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if (auto bound = insts().TryGetAs<IntValue>(
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constant_values().GetConstantInstId(bound_id))) {
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return ints().Get(bound->int_id).getZExtValue();
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}
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return std::nullopt;
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}
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// Gets the pointee type of the given type, which must be a pointer type.
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auto GetPointeeType(TypeId pointer_id) const -> TypeId {
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return types().GetAs<PointerType>(pointer_id).pointee_id;
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}
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auto check_ir_id() const -> CheckIRId { return check_ir_id_; }
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auto package_id() const -> IdentifierId { return package_id_; }
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auto library_id() const -> SemIR::LibraryNameId { return library_id_; }
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// Directly expose SharedValueStores members.
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auto identifiers() -> SharedValueStores::IdentifierStore& {
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return value_stores_->identifiers();
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}
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auto identifiers() const -> const SharedValueStores::IdentifierStore& {
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return value_stores_->identifiers();
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}
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auto ints() -> SharedValueStores::IntStore& { return value_stores_->ints(); }
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auto ints() const -> const SharedValueStores::IntStore& {
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return value_stores_->ints();
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}
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auto reals() -> SharedValueStores::RealStore& {
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return value_stores_->reals();
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}
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auto reals() const -> const SharedValueStores::RealStore& {
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return value_stores_->reals();
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}
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auto floats() -> SharedValueStores::FloatStore& {
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return value_stores_->floats();
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}
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auto floats() const -> const SharedValueStores::FloatStore& {
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return value_stores_->floats();
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}
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auto string_literal_values() -> SharedValueStores::StringLiteralStore& {
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return value_stores_->string_literal_values();
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}
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auto string_literal_values() const
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-> const SharedValueStores::StringLiteralStore& {
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return value_stores_->string_literal_values();
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}
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auto entity_names() -> EntityNameStore& { return entity_names_; }
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auto entity_names() const -> const EntityNameStore& { return entity_names_; }
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auto functions() -> ValueStore<FunctionId>& { return functions_; }
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auto functions() const -> const ValueStore<FunctionId>& { return functions_; }
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auto classes() -> ValueStore<ClassId>& { return classes_; }
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auto classes() const -> const ValueStore<ClassId>& { return classes_; }
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auto interfaces() -> ValueStore<InterfaceId>& { return interfaces_; }
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auto interfaces() const -> const ValueStore<InterfaceId>& {
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return interfaces_;
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}
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auto facet_types() -> CanonicalValueStore<FacetTypeId>& {
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return facet_types_;
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}
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auto facet_types() const -> const CanonicalValueStore<FacetTypeId>& {
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return facet_types_;
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}
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auto impls() -> ImplStore& { return impls_; }
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auto impls() const -> const ImplStore& { return impls_; }
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auto generics() -> GenericStore& { return generics_; }
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auto generics() const -> const GenericStore& { return generics_; }
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auto specifics() -> SpecificStore& { return specifics_; }
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auto specifics() const -> const SpecificStore& { return specifics_; }
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auto import_irs() -> ValueStore<ImportIRId>& { return import_irs_; }
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auto import_irs() const -> const ValueStore<ImportIRId>& {
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return import_irs_;
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}
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auto import_ir_insts() -> ValueStore<ImportIRInstId>& {
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return import_ir_insts_;
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}
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auto import_ir_insts() const -> const ValueStore<ImportIRInstId>& {
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return import_ir_insts_;
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}
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auto names() const -> NameStoreWrapper {
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return NameStoreWrapper(&identifiers());
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}
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auto name_scopes() -> NameScopeStore& { return name_scopes_; }
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auto name_scopes() const -> const NameScopeStore& { return name_scopes_; }
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auto struct_type_fields() -> StructTypeFieldsStore& {
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return struct_type_fields_;
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}
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auto struct_type_fields() const -> const StructTypeFieldsStore& {
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return struct_type_fields_;
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}
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auto types() -> TypeStore& { return types_; }
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auto types() const -> const TypeStore& { return types_; }
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auto type_blocks() -> BlockValueStore<TypeBlockId>& { return type_blocks_; }
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auto type_blocks() const -> const BlockValueStore<TypeBlockId>& {
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return type_blocks_;
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}
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auto insts() -> InstStore& { return insts_; }
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auto insts() const -> const InstStore& { return insts_; }
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auto constant_values() -> ConstantValueStore& { return constant_values_; }
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auto constant_values() const -> const ConstantValueStore& {
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return constant_values_;
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}
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auto inst_blocks() -> InstBlockStore& { return inst_blocks_; }
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auto inst_blocks() const -> const InstBlockStore& { return inst_blocks_; }
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auto constants() -> ConstantStore& { return constants_; }
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auto constants() const -> const ConstantStore& { return constants_; }
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auto expr_regions() -> ValueStore<ExprRegionId>& { return expr_regions_; }
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auto expr_regions() const -> const ValueStore<ExprRegionId>& {
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return expr_regions_;
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}
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auto top_inst_block_id() const -> InstBlockId { return top_inst_block_id_; }
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auto set_top_inst_block_id(InstBlockId block_id) -> void {
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top_inst_block_id_ = block_id;
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}
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auto global_ctor_id() const -> FunctionId { return global_ctor_id_; }
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auto set_global_ctor_id(FunctionId function_id) -> void {
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global_ctor_id_ = function_id;
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}
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// Returns true if there were errors creating the semantics IR.
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auto has_errors() const -> bool { return has_errors_; }
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auto set_has_errors(bool has_errors) -> void { has_errors_ = has_errors; }
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auto filename() const -> llvm::StringRef { return filename_; }
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auto parse_tree() const -> const Parse::Tree& { return *parse_tree_; }
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private:
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const Parse::Tree* parse_tree_;
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// True if parts of the IR may be invalid.
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bool has_errors_ = false;
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// The file's ID.
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CheckIRId check_ir_id_;
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// The file's package.
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IdentifierId package_id_ = IdentifierId::Invalid;
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// The file's library.
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LibraryNameId library_id_ = LibraryNameId::Invalid;
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// Shared, compile-scoped values.
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SharedValueStores* value_stores_;
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// Slab allocator, used to allocate instruction and type blocks.
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llvm::BumpPtrAllocator allocator_;
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// The associated filename.
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// TODO: If SemIR starts linking back to tokens, reuse its filename.
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std::string filename_;
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// Storage for EntityNames.
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EntityNameStore entity_names_;
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// Storage for callable objects.
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ValueStore<FunctionId> functions_;
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// Storage for classes.
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ValueStore<ClassId> classes_;
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// Storage for interfaces.
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ValueStore<InterfaceId> interfaces_;
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// Storage for facet types.
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CanonicalValueStore<FacetTypeId> facet_types_;
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// Storage for impls.
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ImplStore impls_;
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// Storage for generics.
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GenericStore generics_;
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// Storage for specifics.
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SpecificStore specifics_;
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// Related IRs. There are some fixed entries at the start; see ImportIRId.
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ValueStore<ImportIRId> import_irs_;
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// Related IR instructions. These are created for LocIds for instructions
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// that are import-related.
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ValueStore<ImportIRInstId> import_ir_insts_;
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// Type blocks within the IR. These reference entries in types_. Storage for
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// the data is provided by allocator_.
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BlockValueStore<TypeBlockId> type_blocks_;
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// All instructions. The first entries will always be the singleton
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// instructions.
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InstStore insts_;
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// Storage for name scopes.
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NameScopeStore name_scopes_ = NameScopeStore(this);
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// Constant values for instructions.
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ConstantValueStore constant_values_;
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// Instruction blocks within the IR. These reference entries in
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// insts_. Storage for the data is provided by allocator_.
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InstBlockStore inst_blocks_;
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// The top instruction block ID.
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InstBlockId top_inst_block_id_ = InstBlockId::Invalid;
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// The global constructor function id.
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FunctionId global_ctor_id_ = FunctionId::Invalid;
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// Storage for instructions that represent computed global constants, such as
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// types.
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ConstantStore constants_;
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// Storage for StructTypeField lists.
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StructTypeFieldsStore struct_type_fields_ = StructTypeFieldsStore(allocator_);
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// Descriptions of types used in this file.
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TypeStore types_ = TypeStore(this);
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// Single-entry/single-exit regions that are referenced as units, e.g. because
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// they represent expressions.
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ValueStore<ExprRegionId> expr_regions_;
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};
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// The expression category of a sem_ir instruction. See /docs/design/values.md
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// for details.
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enum class ExprCategory : int8_t {
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// This instruction does not correspond to an expression, and as such has no
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// category.
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NotExpr,
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// The category of this instruction is not known due to an error.
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Error,
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// This instruction represents a value expression.
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Value,
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// This instruction represents a durable reference expression, that denotes an
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// object that outlives the current full expression context.
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DurableRef,
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// This instruction represents an ephemeral reference expression, that denotes
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// an object that does not outlive the current full expression context.
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EphemeralRef,
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// This instruction represents an initializing expression, that describes how
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// to initialize an object.
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Initializing,
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// This instruction represents a syntactic combination of expressions that are
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// permitted to have different expression categories. This is used for tuple
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// and struct literals, where the subexpressions for different elements can
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// have different categories.
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Mixed,
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Last = Mixed
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};
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// Returns the expression category for an instruction.
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auto GetExprCategory(const File& file, InstId inst_id) -> ExprCategory;
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} // namespace Carbon::SemIR
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#endif // CARBON_TOOLCHAIN_SEM_IR_FILE_H_
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