mirror of
https://github.com/carbon-language/carbon-lang.git
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Change representation of package names from `IdentifierId` to `PackageNameId`, and add a special value `PackageNameId::Core` for the Core package. Add a `Core` expression to name the Core package, and support for parsing the `Core` keyword in `package` and `import` declarations. For now, I've made no changes to instruction fingerprinting or name mangling. This means that fingerprints and mangled names will collide between names in the `Core` package and names in a `r#Core` package. See #4908. --------- Co-authored-by: Jon Ross-Perkins <jperkins@google.com>
377 lines
13 KiB
C++
377 lines
13 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/sem_ir/file.h"
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#include "common/check.h"
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#include "llvm/ADT/STLExtras.h"
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#include "llvm/ADT/SmallVector.h"
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#include "toolchain/base/kind_switch.h"
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#include "toolchain/base/shared_value_stores.h"
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#include "toolchain/base/yaml.h"
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#include "toolchain/parse/node_ids.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/inst_kind.h"
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#include "toolchain/sem_ir/typed_insts.h"
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namespace Carbon::SemIR {
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File::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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: parse_tree_(parse_tree),
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check_ir_id_(check_ir_id),
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package_id_(packaging_decl ? packaging_decl->names.package_id
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: PackageNameId::None),
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library_id_(packaging_decl ? LibraryNameId::ForStringLiteralValueId(
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packaging_decl->names.library_id)
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: LibraryNameId::Default),
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value_stores_(&value_stores),
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filename_(std::move(filename)),
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impls_(*this),
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type_blocks_(allocator_),
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constant_values_(ConstantId::NotConstant),
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inst_blocks_(allocator_),
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constants_(this) {
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// `type` and the error type are both complete types.
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types_.SetValueRepr(
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TypeType::SingletonTypeId,
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{.kind = ValueRepr::Copy, .type_id = TypeType::SingletonTypeId});
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types_.SetValueRepr(
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ErrorInst::SingletonTypeId,
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{.kind = ValueRepr::Copy, .type_id = ErrorInst::SingletonTypeId});
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insts_.Reserve(SingletonInstKinds.size());
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for (auto kind : SingletonInstKinds) {
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auto inst_id =
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insts_.AddInNoBlock(LocIdAndInst::NoLoc(Inst::MakeSingleton(kind)));
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constant_values_.Set(inst_id,
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SemIR::ConstantId::ForTemplateConstant(inst_id));
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}
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}
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auto File::Verify() const -> ErrorOr<Success> {
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// Invariants don't necessarily hold for invalid IR.
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if (has_errors_) {
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return Success();
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}
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// Check that every code block has a terminator sequence that appears at the
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// end of the block.
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for (const Function& function : functions_.array_ref()) {
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for (InstBlockId block_id : function.body_block_ids) {
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TerminatorKind prior_kind = TerminatorKind::NotTerminator;
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for (InstId inst_id : inst_blocks().Get(block_id)) {
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TerminatorKind inst_kind =
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insts().Get(inst_id).kind().terminator_kind();
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if (prior_kind == TerminatorKind::Terminator) {
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return Error(llvm::formatv("Inst {0} in block {1} follows terminator",
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inst_id, block_id));
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}
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if (prior_kind > inst_kind) {
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return Error(
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llvm::formatv("Non-terminator inst {0} in block {1} follows "
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"terminator sequence",
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inst_id, block_id));
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}
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prior_kind = inst_kind;
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}
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if (prior_kind != TerminatorKind::Terminator) {
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return Error(llvm::formatv("No terminator in block {0}", block_id));
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}
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}
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}
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// TODO: Check that an instruction only references other instructions that are
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// either global or that dominate it.
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return Success();
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}
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auto File::OutputYaml(bool include_singletons) const -> Yaml::OutputMapping {
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return Yaml::OutputMapping([this, include_singletons](
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Yaml::OutputMapping::Map map) {
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map.Add("filename", filename_);
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map.Add(
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"sem_ir", Yaml::OutputMapping([&](Yaml::OutputMapping::Map map) {
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map.Add("import_irs", import_irs_.OutputYaml());
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map.Add("import_ir_insts", import_ir_insts_.OutputYaml());
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map.Add("name_scopes", name_scopes_.OutputYaml());
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map.Add("entity_names", entity_names_.OutputYaml());
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map.Add("functions", functions_.OutputYaml());
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map.Add("classes", classes_.OutputYaml());
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map.Add("generics", generics_.OutputYaml());
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map.Add("specifics", specifics_.OutputYaml());
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map.Add("struct_type_fields", struct_type_fields_.OutputYaml());
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map.Add("types", types_.OutputYaml());
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map.Add("type_blocks", type_blocks_.OutputYaml());
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map.Add(
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"insts", Yaml::OutputMapping([&](Yaml::OutputMapping::Map map) {
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int start = include_singletons ? 0 : SingletonInstKinds.size();
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for (int i : llvm::seq(start, insts_.size())) {
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auto id = InstId(i);
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map.Add(PrintToString(id),
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Yaml::OutputScalar(insts_.Get(id)));
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}
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}));
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map.Add("constant_values",
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Yaml::OutputMapping([&](Yaml::OutputMapping::Map map) {
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int start =
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include_singletons ? 0 : SingletonInstKinds.size();
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for (int i : llvm::seq(start, insts_.size())) {
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auto id = InstId(i);
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auto value = constant_values_.Get(id);
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if (!value.has_value() || value.is_constant()) {
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map.Add(PrintToString(id), Yaml::OutputScalar(value));
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}
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}
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}));
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map.Add(
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"symbolic_constants",
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Yaml::OutputMapping([&](Yaml::OutputMapping::Map map) {
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for (const auto& [i, symbolic] :
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llvm::enumerate(constant_values().symbolic_constants())) {
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map.Add(
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PrintToString(ConstantId::ForSymbolicConstantIndex(i)),
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Yaml::OutputScalar(symbolic));
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}
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}));
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map.Add("inst_blocks", inst_blocks_.OutputYaml());
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}));
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});
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}
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auto File::CollectMemUsage(MemUsage& mem_usage, llvm::StringRef label) const
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-> void {
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mem_usage.Collect(MemUsage::ConcatLabel(label, "allocator_"), allocator_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "entity_names_"),
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entity_names_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "functions_"), functions_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "classes_"), classes_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "interfaces_"), interfaces_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "impls_"), impls_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "generics_"), generics_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "specifics_"), specifics_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "import_irs_"), import_irs_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "import_ir_insts_"),
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import_ir_insts_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "struct_type_fields_"),
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struct_type_fields_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "type_blocks_"), type_blocks_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "insts_"), insts_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "name_scopes_"), name_scopes_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "constant_values_"),
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constant_values_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "inst_blocks_"), inst_blocks_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "constants_"), constants_);
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mem_usage.Collect(MemUsage::ConcatLabel(label, "types_"), types_);
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}
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auto GetExprCategory(const File& file, InstId inst_id) -> ExprCategory {
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const File* ir = &file;
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// The overall expression category if the current instruction is a value
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// expression.
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ExprCategory value_category = ExprCategory::Value;
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while (true) {
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auto untyped_inst = ir->insts().Get(inst_id);
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CARBON_KIND_SWITCH(untyped_inst) {
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case AdaptDecl::Kind:
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case AddrPattern::Kind:
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case Assign::Kind:
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case BaseDecl::Kind:
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case BindingPattern::Kind:
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case Branch::Kind:
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case BranchIf::Kind:
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case BranchWithArg::Kind:
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case FieldDecl::Kind:
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case FunctionDecl::Kind:
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case ImplDecl::Kind:
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case NameBindingDecl::Kind:
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case Namespace::Kind:
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case OutParamPattern::Kind:
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case RequirementEquivalent::Kind:
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case RequirementImpls::Kind:
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case RequirementRewrite::Kind:
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case Return::Kind:
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case ReturnSlotPattern::Kind:
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case Vtable::Kind:
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case ReturnExpr::Kind:
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case VarPattern::Kind:
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return ExprCategory::NotExpr;
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case ImportRefUnloaded::Kind:
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case ImportRefLoaded::Kind: {
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auto import_ir_inst = ir->import_ir_insts().Get(
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untyped_inst.As<SemIR::AnyImportRef>().import_ir_inst_id);
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ir = ir->import_irs().Get(import_ir_inst.ir_id).sem_ir;
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inst_id = import_ir_inst.inst_id;
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continue;
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}
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case CARBON_KIND(AsCompatible inst): {
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inst_id = inst.source_id;
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continue;
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}
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case CARBON_KIND(BindAlias inst): {
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inst_id = inst.value_id;
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continue;
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}
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case CARBON_KIND(ExportDecl inst): {
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inst_id = inst.value_id;
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continue;
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}
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case CARBON_KIND(NameRef inst): {
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inst_id = inst.value_id;
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continue;
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}
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case CARBON_KIND(Converted inst): {
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inst_id = inst.result_id;
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continue;
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}
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case CARBON_KIND(SpecificConstant inst): {
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inst_id = inst.inst_id;
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continue;
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}
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case AddrOf::Kind:
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case ArrayType::Kind:
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case AssociatedConstantDecl::Kind:
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case AssociatedEntity::Kind:
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case AssociatedEntityType::Kind:
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case AutoType::Kind:
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case BindSymbolicName::Kind:
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case BindValue::Kind:
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case BlockArg::Kind:
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case BoolLiteral::Kind:
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case BoolType::Kind:
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case BoundMethod::Kind:
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case BoundMethodType::Kind:
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case ClassDecl::Kind:
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case ClassType::Kind:
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case CompleteTypeWitness::Kind:
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case ConstType::Kind:
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case FacetAccessType::Kind:
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case FacetAccessWitness::Kind:
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case FacetType::Kind:
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case FacetValue::Kind:
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case FloatLiteral::Kind:
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case FloatType::Kind:
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case FunctionType::Kind:
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case FunctionTypeWithSelfType::Kind:
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case GenericClassType::Kind:
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case GenericInterfaceType::Kind:
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case ImplWitness::Kind:
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case ImplWitnessAccess::Kind:
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case ImportDecl::Kind:
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case IntLiteralType::Kind:
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case IntType::Kind:
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case IntValue::Kind:
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case InterfaceDecl::Kind:
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case LegacyFloatType::Kind:
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case NamespaceType::Kind:
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case PointerType::Kind:
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case RequireCompleteType::Kind:
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case SpecificFunction::Kind:
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case SpecificFunctionType::Kind:
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case StringLiteral::Kind:
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case StringType::Kind:
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case StructType::Kind:
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case StructValue::Kind:
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case SymbolicBindingPattern::Kind:
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case TupleType::Kind:
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case TupleValue::Kind:
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case TypeType::Kind:
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case UnaryOperatorNot::Kind:
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case UnboundElementType::Kind:
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case ValueOfInitializer::Kind:
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case ValueParam::Kind:
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case ValueParamPattern::Kind:
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case VtableType::Kind:
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case WhereExpr::Kind:
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case WitnessType::Kind:
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return value_category;
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case ErrorInst::Kind:
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return ExprCategory::Error;
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case CARBON_KIND(BindName inst): {
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// TODO: Don't rely on value_id for expression category, since it may
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// not be valid yet. This workaround only works because we don't support
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// `var` in function signatures yet.
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if (!inst.value_id.has_value()) {
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return value_category;
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}
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inst_id = inst.value_id;
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continue;
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}
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case CARBON_KIND(ArrayIndex inst): {
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inst_id = inst.array_id;
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continue;
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}
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case VtablePtr::Kind:
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return ExprCategory::EphemeralRef;
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case CARBON_KIND(ClassElementAccess inst): {
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inst_id = inst.base_id;
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// A value of class type is a pointer to an object representation.
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// Therefore, if the base is a value, the result is an ephemeral
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// reference.
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value_category = ExprCategory::EphemeralRef;
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continue;
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}
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case CARBON_KIND(StructAccess inst): {
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inst_id = inst.struct_id;
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continue;
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}
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case CARBON_KIND(TupleAccess inst): {
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inst_id = inst.tuple_id;
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continue;
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}
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case CARBON_KIND(SpliceBlock inst): {
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inst_id = inst.result_id;
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continue;
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}
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case StructLiteral::Kind:
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case TupleLiteral::Kind:
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return ExprCategory::Mixed;
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case ArrayInit::Kind:
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case Call::Kind:
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case InitializeFrom::Kind:
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case ClassInit::Kind:
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case StructInit::Kind:
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case TupleInit::Kind:
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return ExprCategory::Initializing;
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case Deref::Kind:
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case VarStorage::Kind:
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case ReturnSlot::Kind:
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return ExprCategory::DurableRef;
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case Temporary::Kind:
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case TemporaryStorage::Kind:
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case ValueAsRef::Kind:
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return ExprCategory::EphemeralRef;
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case OutParam::Kind:
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// TODO: Consider introducing a separate category for OutParam:
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// unlike other DurableRefs, it permits initialization.
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return ExprCategory::DurableRef;
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}
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}
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}
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} // namespace Carbon::SemIR
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