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This is for more clearly distinct names, and to make it a clearer transition from `BuiltinInst` for name conflicts. `FloatType` is also an instruction, and we have `Carbon::Error` (common/error.h). This avoids affecting tests, although the name is embedded in the builtin test. In `LegacyFloatType`, `Legacy` because I was having trouble coming up with a more appropriate name. I'm not clear this is a `FloatLiteralType` at present, it needs some work to mirror `IntLiteralType`. In `ErrorInst`, the suffix `Inst` was discussed as good and similar to `BuiltinInst` (although I'm trying to get rid of that).
714 lines
29 KiB
C++
714 lines
29 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_CHECK_CONTEXT_H_
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#define CARBON_TOOLCHAIN_CHECK_CONTEXT_H_
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#include "common/map.h"
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#include "llvm/ADT/FoldingSet.h"
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#include "llvm/ADT/SmallVector.h"
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#include "toolchain/check/decl_introducer_state.h"
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#include "toolchain/check/decl_name_stack.h"
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#include "toolchain/check/diagnostic_helpers.h"
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#include "toolchain/check/generic_region_stack.h"
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#include "toolchain/check/global_init.h"
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#include "toolchain/check/inst_block_stack.h"
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#include "toolchain/check/node_stack.h"
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#include "toolchain/check/param_and_arg_refs_stack.h"
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#include "toolchain/check/scope_stack.h"
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#include "toolchain/parse/node_ids.h"
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#include "toolchain/parse/tree.h"
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#include "toolchain/parse/tree_and_subtrees.h"
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#include "toolchain/sem_ir/file.h"
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#include "toolchain/sem_ir/ids.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/name_scope.h"
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#include "toolchain/sem_ir/typed_insts.h"
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namespace Carbon::Check {
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// Information about a scope in which we can perform name lookup.
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struct LookupScope {
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// The name scope in which names are searched.
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SemIR::NameScopeId name_scope_id;
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// The specific for the name scope, or `Invalid` if the name scope is not
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// defined by a generic or we should perform lookup into the generic itself.
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SemIR::SpecificId specific_id;
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};
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// A result produced by name lookup.
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struct LookupResult {
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// The specific in which the lookup result was found. `Invalid` if the result
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// was not found in a specific.
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SemIR::SpecificId specific_id;
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// The declaration that was found by name lookup.
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SemIR::InstId inst_id;
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};
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// Information about an access.
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struct AccessInfo {
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// The constant being accessed.
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SemIR::ConstantId constant_id;
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// The highest allowed access for a lookup. For example, `Protected` allows
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// access to `Public` and `Protected` names, but not `Private`.
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SemIR::AccessKind highest_allowed_access;
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};
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// Context and shared functionality for semantics handlers.
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class Context {
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public:
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using DiagnosticEmitter = Carbon::DiagnosticEmitter<SemIRLoc>;
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using DiagnosticBuilder = DiagnosticEmitter::DiagnosticBuilder;
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// A function that forms a diagnostic for some kind of problem. The
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// DiagnosticBuilder is returned rather than emitted so that the caller can
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// add contextual notes as appropriate.
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using BuildDiagnosticFn =
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llvm::function_ref<auto()->Context::DiagnosticBuilder>;
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// Stores references for work.
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explicit Context(const Lex::TokenizedBuffer& tokens,
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DiagnosticEmitter& emitter, const Parse::Tree& parse_tree,
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llvm::function_ref<const Parse::TreeAndSubtrees&()>
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get_parse_tree_and_subtrees,
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SemIR::File& sem_ir, llvm::raw_ostream* vlog_stream);
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// Marks an implementation TODO. Always returns false.
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auto TODO(SemIRLoc loc, std::string label) -> bool;
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// Runs verification that the processing cleanly finished.
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auto VerifyOnFinish() -> void;
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// Adds an instruction to the current block, returning the produced ID.
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auto AddInst(SemIR::LocIdAndInst loc_id_and_inst) -> SemIR::InstId {
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auto inst_id = AddInstInNoBlock(loc_id_and_inst);
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inst_block_stack_.AddInstId(inst_id);
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return inst_id;
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}
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// Convenience for AddInst with typed nodes.
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template <typename InstT, typename LocT>
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auto AddInst(LocT loc, InstT inst)
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-> decltype(AddInst(SemIR::LocIdAndInst(loc, inst))) {
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return AddInst(SemIR::LocIdAndInst(loc, inst));
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}
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// Returns a LocIdAndInst for an instruction with an imported location. Checks
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// that the imported location is compatible with the kind of instruction being
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// created.
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template <typename InstT>
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requires SemIR::Internal::HasNodeId<InstT>
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auto MakeImportedLocAndInst(SemIR::ImportIRInstId imported_loc_id, InstT inst)
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-> SemIR::LocIdAndInst {
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if constexpr (!SemIR::Internal::HasUntypedNodeId<InstT>) {
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CheckCompatibleImportedNodeKind(imported_loc_id, InstT::Kind);
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}
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return SemIR::LocIdAndInst::UncheckedLoc(imported_loc_id, inst);
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}
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// Adds an instruction in no block, returning the produced ID. Should be used
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// rarely.
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auto AddInstInNoBlock(SemIR::LocIdAndInst loc_id_and_inst) -> SemIR::InstId {
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auto inst_id = sem_ir().insts().AddInNoBlock(loc_id_and_inst);
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CARBON_VLOG("AddInst: {0}\n", loc_id_and_inst.inst);
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FinishInst(inst_id, loc_id_and_inst.inst);
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return inst_id;
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}
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// Convenience for AddInstInNoBlock with typed nodes.
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template <typename InstT, typename LocT>
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auto AddInstInNoBlock(LocT loc, InstT inst)
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-> decltype(AddInstInNoBlock(SemIR::LocIdAndInst(loc, inst))) {
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return AddInstInNoBlock(SemIR::LocIdAndInst(loc, inst));
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}
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// If the instruction has an implicit location and a constant value, returns
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// the constant value's instruction ID. Otherwise, same as AddInst.
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auto GetOrAddInst(SemIR::LocIdAndInst loc_id_and_inst) -> SemIR::InstId;
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// Convenience for GetOrAddInst with typed nodes.
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template <typename InstT, typename LocT>
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auto GetOrAddInst(LocT loc, InstT inst)
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-> decltype(GetOrAddInst(SemIR::LocIdAndInst(loc, inst))) {
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return GetOrAddInst(SemIR::LocIdAndInst(loc, inst));
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}
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// Adds an instruction to the current block, returning the produced ID. The
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// instruction is a placeholder that is expected to be replaced by
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// `ReplaceInstBeforeConstantUse`.
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auto AddPlaceholderInst(SemIR::LocIdAndInst loc_id_and_inst) -> SemIR::InstId;
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// Adds an instruction in no block, returning the produced ID. Should be used
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// rarely. The instruction is a placeholder that is expected to be replaced by
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// `ReplaceInstBeforeConstantUse`.
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auto AddPlaceholderInstInNoBlock(SemIR::LocIdAndInst loc_id_and_inst)
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-> SemIR::InstId;
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// Adds an instruction to the current pattern block, returning the produced
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// ID.
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auto AddPatternInst(SemIR::LocIdAndInst loc_id_and_inst) -> SemIR::InstId {
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auto inst_id = AddInstInNoBlock(loc_id_and_inst);
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pattern_block_stack_.AddInstId(inst_id);
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return inst_id;
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}
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// Convenience for AddPatternInst with typed nodes.
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template <typename InstT>
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requires(SemIR::Internal::HasNodeId<InstT>)
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auto AddPatternInst(decltype(InstT::Kind)::TypedNodeId node_id, InstT inst)
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-> SemIR::InstId {
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return AddPatternInst(SemIR::LocIdAndInst(node_id, inst));
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}
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// Adds an instruction to the constants block, returning the produced ID.
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auto AddConstant(SemIR::Inst inst, bool is_symbolic) -> SemIR::ConstantId {
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auto const_id = constants().GetOrAdd(inst, is_symbolic);
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CARBON_VLOG("AddConstant: {0}\n", inst);
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return const_id;
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}
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// Pushes a parse tree node onto the stack, storing the SemIR::Inst as the
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// result.
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template <typename InstT>
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requires(SemIR::Internal::HasNodeId<InstT>)
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auto AddInstAndPush(decltype(InstT::Kind)::TypedNodeId node_id, InstT inst)
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-> void {
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node_stack_.Push(node_id, AddInst(node_id, inst));
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}
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// Replaces the instruction `inst_id` with `loc_id_and_inst`. The instruction
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// is required to not have been used in any constant evaluation, either
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// because it's newly created and entirely unused, or because it's only used
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// in a position that constant evaluation ignores, such as a return slot.
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auto ReplaceLocIdAndInstBeforeConstantUse(SemIR::InstId inst_id,
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SemIR::LocIdAndInst loc_id_and_inst)
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-> void;
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// Replaces the instruction `inst_id` with `inst`, not affecting location.
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// The instruction is required to not have been used in any constant
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// evaluation, either because it's newly created and entirely unused, or
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// because it's only used in a position that constant evaluation ignores, such
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// as a return slot.
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auto ReplaceInstBeforeConstantUse(SemIR::InstId inst_id, SemIR::Inst inst)
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-> void;
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// Sets only the parse node of an instruction. This is only used when setting
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// the parse node of an imported namespace. Versus
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// ReplaceInstBeforeConstantUse, it is safe to use after the namespace is used
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// in constant evaluation. It's exposed this way mainly so that `insts()` can
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// remain const.
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auto SetNamespaceNodeId(SemIR::InstId inst_id, Parse::NodeId node_id)
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-> void {
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sem_ir().insts().SetLocId(inst_id, SemIR::LocId(node_id));
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}
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// Adds a name to name lookup. Prints a diagnostic for name conflicts.
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auto AddNameToLookup(SemIR::NameId name_id, SemIR::InstId target_id) -> void;
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// Performs name lookup in a specified scope for a name appearing in a
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// declaration, returning the referenced instruction. If scope_id is invalid,
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// uses the current contextual scope.
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auto LookupNameInDecl(SemIR::LocId loc_id, SemIR::NameId name_id,
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SemIR::NameScopeId scope_id) -> SemIR::InstId;
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// Performs an unqualified name lookup, returning the referenced instruction.
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auto LookupUnqualifiedName(Parse::NodeId node_id, SemIR::NameId name_id,
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bool required = true) -> LookupResult;
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// Performs a name lookup in a specified scope, returning the referenced
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// instruction. Does not look into extended scopes. Returns an invalid
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// instruction if the name is not found.
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auto LookupNameInExactScope(SemIRLoc loc, SemIR::NameId name_id,
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SemIR::NameScopeId scope_id,
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const SemIR::NameScope& scope)
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-> std::pair<SemIR::InstId, SemIR::AccessKind>;
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// Appends the lookup scopes corresponding to `base_const_id` to `*scopes`.
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// Returns `false` if not a scope. On invalid scopes, prints a diagnostic, but
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// still updates `*scopes` and returns `true`.
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auto AppendLookupScopesForConstant(SemIRLoc loc,
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SemIR::ConstantId base_const_id,
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llvm::SmallVector<LookupScope>* scopes)
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-> bool;
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// Performs a qualified name lookup in a specified scopes and in scopes that
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// they extend, returning the referenced instruction.
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auto LookupQualifiedName(SemIRLoc loc, SemIR::NameId name_id,
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llvm::ArrayRef<LookupScope> lookup_scopes,
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bool required = true,
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std::optional<AccessInfo> access_info = std::nullopt)
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-> LookupResult;
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// Returns the instruction corresponding to a name in the core package, or
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// BuiltinErrorInst if not found.
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auto LookupNameInCore(SemIRLoc loc, llvm::StringRef name) -> SemIR::InstId;
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// Prints a diagnostic for a duplicate name.
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auto DiagnoseDuplicateName(SemIRLoc dup_def, SemIRLoc prev_def) -> void;
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// Prints a diagnostic for a missing name.
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auto DiagnoseNameNotFound(SemIRLoc loc, SemIR::NameId name_id) -> void;
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// Adds a note to a diagnostic explaining that a class is incomplete.
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auto NoteIncompleteClass(SemIR::ClassId class_id, DiagnosticBuilder& builder)
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-> void;
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// Adds a note to a diagnostic explaining that a class is abstract.
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auto NoteAbstractClass(SemIR::ClassId class_id, DiagnosticBuilder& builder)
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-> void;
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// Adds a note to a diagnostic explaining that an interface is not defined.
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auto NoteUndefinedInterface(SemIR::InterfaceId interface_id,
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DiagnosticBuilder& builder) -> void;
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// Returns the current scope, if it is of the specified kind. Otherwise,
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// returns nullopt.
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template <typename InstT>
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auto GetCurrentScopeAs() -> std::optional<InstT> {
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return scope_stack().GetCurrentScopeAs<InstT>(sem_ir());
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}
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// Adds a `Branch` instruction branching to a new instruction block, and
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// returns the ID of the new block. All paths to the branch target must go
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// through the current block, though not necessarily through this branch.
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auto AddDominatedBlockAndBranch(Parse::NodeId node_id) -> SemIR::InstBlockId;
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// Adds a `Branch` instruction branching to a new instruction block with a
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// value, and returns the ID of the new block. All paths to the branch target
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// must go through the current block.
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auto AddDominatedBlockAndBranchWithArg(Parse::NodeId node_id,
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SemIR::InstId arg_id)
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-> SemIR::InstBlockId;
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// Adds a `BranchIf` instruction branching to a new instruction block, and
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// returns the ID of the new block. All paths to the branch target must go
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// through the current block.
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auto AddDominatedBlockAndBranchIf(Parse::NodeId node_id,
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SemIR::InstId cond_id)
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-> SemIR::InstBlockId;
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// Handles recovergence of control flow. Adds branches from the top
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// `num_blocks` on the instruction block stack to a new block, pops the
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// existing blocks, and pushes the new block onto the instruction block stack.
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auto AddConvergenceBlockAndPush(Parse::NodeId node_id, int num_blocks)
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-> void;
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// Handles recovergence of control flow with a result value. Adds branches
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// from the top few blocks on the instruction block stack to a new block, pops
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// the existing blocks, and pushes the new block onto the instruction block
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// stack. The number of blocks popped is the size of `block_args`, and the
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// corresponding result values are the elements of `block_args`. Returns an
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// instruction referring to the result value.
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auto AddConvergenceBlockWithArgAndPush(
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Parse::NodeId node_id, std::initializer_list<SemIR::InstId> block_args)
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-> SemIR::InstId;
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// Sets the constant value of a block argument created as the result of a
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// branch. `select_id` should be a `BlockArg` that selects between two
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// values. `cond_id` is the condition, `if_false` is the value to use if the
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// condition is false, and `if_true` is the value to use if the condition is
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// true. We don't track enough information in the `BlockArg` inst for
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// `TryEvalInst` to do this itself.
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auto SetBlockArgResultBeforeConstantUse(SemIR::InstId select_id,
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SemIR::InstId cond_id,
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SemIR::InstId if_true,
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SemIR::InstId if_false) -> void;
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// Add the current code block to the enclosing function.
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// TODO: The node_id is taken for expressions, which can occur in
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// non-function contexts. This should be refactored to support non-function
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// contexts, and node_id removed.
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auto AddCurrentCodeBlockToFunction(
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Parse::NodeId node_id = Parse::NodeId::Invalid) -> void;
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// Returns whether the current position in the current block is reachable.
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auto is_current_position_reachable() -> bool;
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// Returns the type ID for a constant of type `type`.
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auto GetTypeIdForTypeConstant(SemIR::ConstantId constant_id) -> SemIR::TypeId;
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// Returns the type ID for an instruction whose constant value is of type
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// `type`.
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auto GetTypeIdForTypeInst(SemIR::InstId inst_id) -> SemIR::TypeId {
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return GetTypeIdForTypeConstant(constant_values().Get(inst_id));
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}
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// Attempts to complete the type `type_id`. Returns `true` if the type is
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// complete, or `false` if it could not be completed. A complete type has
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// known object and value representations.
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//
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// If the type is not complete, `diagnoser` is invoked to diagnose the issue,
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// if a `diagnoser` is provided. The builder it returns will be annotated to
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// describe the reason why the type is not complete.
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auto TryToCompleteType(SemIR::TypeId type_id,
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BuildDiagnosticFn diagnoser = nullptr,
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BuildDiagnosticFn abstract_diagnoser = nullptr)
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-> bool;
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// Attempts to complete and define the type `type_id`. Returns `true` if the
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// type is defined, or `false` if no definition is available. A defined type
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// has known members.
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//
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// This is the same as `TryToCompleteType` except for interfaces, which are
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// complete before they are fully defined.
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auto TryToDefineType(SemIR::TypeId type_id,
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BuildDiagnosticFn diagnoser = nullptr) -> bool;
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// Returns the type `type_id` as a complete type, or produces an incomplete
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// type error and returns an error type. This is a convenience wrapper around
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// TryToCompleteType. `diagnoser` must not be null.
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auto AsCompleteType(SemIR::TypeId type_id, BuildDiagnosticFn diagnoser,
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BuildDiagnosticFn abstract_diagnoser = nullptr)
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-> SemIR::TypeId {
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return TryToCompleteType(type_id, diagnoser, abstract_diagnoser)
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? type_id
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: SemIR::TypeId::Error;
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}
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// Returns whether `type_id` represents a facet type.
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auto IsFacetType(SemIR::TypeId type_id) -> bool {
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return type_id == SemIR::TypeId::TypeType ||
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types().Is<SemIR::FacetType>(type_id);
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}
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// Create a FacetType typed instruction object consisting of a single
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// interface.
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auto FacetTypeFromInterface(SemIR::InterfaceId interface_id,
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SemIR::SpecificId specific_id)
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-> SemIR::FacetType;
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// TODO: Consider moving these `Get*Type` functions to a separate class.
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// Gets the type for the name of an associated entity.
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auto GetAssociatedEntityType(SemIR::TypeId interface_type_id,
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SemIR::TypeId entity_type_id) -> SemIR::TypeId;
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// Gets a builtin type. The returned type will be complete.
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auto GetBuiltinType(SemIR::BuiltinInstKind kind) -> SemIR::TypeId;
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// Gets a function type. The returned type will be complete.
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auto GetFunctionType(SemIR::FunctionId fn_id, SemIR::SpecificId specific_id)
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-> SemIR::TypeId;
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// Gets a generic class type, which is the type of a name of a generic class,
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// such as the type of `Vector` given `class Vector(T:! type)`. The returned
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// type will be complete.
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auto GetGenericClassType(SemIR::ClassId class_id,
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SemIR::SpecificId enclosing_specific_id)
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-> SemIR::TypeId;
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// Gets a generic interface type, which is the type of a name of a generic
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// interface, such as the type of `AddWith` given
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// `interface AddWith(T:! type)`. The returned type will be complete.
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auto GetGenericInterfaceType(SemIR::InterfaceId interface_id,
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SemIR::SpecificId enclosing_specific_id)
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-> SemIR::TypeId;
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// Returns the type `i32`.
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auto GetInt32Type() -> SemIR::TypeId;
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// Gets the facet type corresponding to a particular interface.
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auto GetInterfaceType(SemIR::InterfaceId interface_id,
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SemIR::SpecificId specific_id) -> SemIR::TypeId;
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// Returns a pointer type whose pointee type is `pointee_type_id`.
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auto GetPointerType(SemIR::TypeId pointee_type_id) -> SemIR::TypeId;
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// Returns a struct type with the given fields.
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auto GetStructType(SemIR::StructTypeFieldsId fields_id) -> SemIR::TypeId;
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// Returns a tuple type with the given element types.
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auto GetTupleType(llvm::ArrayRef<SemIR::TypeId> type_ids) -> SemIR::TypeId;
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|
|
|
// Returns an unbound element type.
|
|
auto GetUnboundElementType(SemIR::TypeId class_type_id,
|
|
SemIR::TypeId element_type_id) -> SemIR::TypeId;
|
|
|
|
// Removes any top-level `const` qualifiers from a type.
|
|
auto GetUnqualifiedType(SemIR::TypeId type_id) -> SemIR::TypeId;
|
|
|
|
// Adds an exported name.
|
|
auto AddExport(SemIR::InstId inst_id) -> void { exports_.push_back(inst_id); }
|
|
|
|
auto Finalize() -> void;
|
|
|
|
// Sets the total number of IRs which exist. This is used to prepare a map
|
|
// from IR to imported IR.
|
|
auto SetTotalIRCount(int num_irs) -> void {
|
|
CARBON_CHECK(check_ir_map_.empty(), "SetTotalIRCount is only called once");
|
|
check_ir_map_.resize(num_irs, SemIR::ImportIRId::Invalid);
|
|
}
|
|
|
|
// Returns the imported IR ID for an IR, or invalid if not imported.
|
|
auto GetImportIRId(const SemIR::File& sem_ir) -> SemIR::ImportIRId& {
|
|
return check_ir_map_[sem_ir.check_ir_id().index];
|
|
}
|
|
|
|
// True if the current file is an impl file.
|
|
auto IsImplFile() -> bool {
|
|
return sem_ir_->import_irs().Get(SemIR::ImportIRId::ApiForImpl).sem_ir !=
|
|
nullptr;
|
|
}
|
|
|
|
// Prints information for a stack dump.
|
|
auto PrintForStackDump(llvm::raw_ostream& output) const -> void;
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|
|
|
// Prints the the formatted sem_ir to stderr.
|
|
LLVM_DUMP_METHOD auto DumpFormattedFile() const -> void;
|
|
|
|
// Get the Lex::TokenKind of a node for diagnostics.
|
|
auto token_kind(Parse::NodeId node_id) -> Lex::TokenKind {
|
|
return tokens().GetKind(parse_tree().node_token(node_id));
|
|
}
|
|
|
|
auto tokens() -> const Lex::TokenizedBuffer& { return *tokens_; }
|
|
|
|
auto emitter() -> DiagnosticEmitter& { return *emitter_; }
|
|
|
|
auto parse_tree() -> const Parse::Tree& { return *parse_tree_; }
|
|
|
|
auto parse_tree_and_subtrees() -> const Parse::TreeAndSubtrees& {
|
|
return get_parse_tree_and_subtrees_();
|
|
}
|
|
|
|
auto sem_ir() -> SemIR::File& { return *sem_ir_; }
|
|
|
|
auto node_stack() -> NodeStack& { return node_stack_; }
|
|
|
|
auto inst_block_stack() -> InstBlockStack& { return inst_block_stack_; }
|
|
auto pattern_block_stack() -> InstBlockStack& { return pattern_block_stack_; }
|
|
|
|
auto param_and_arg_refs_stack() -> ParamAndArgRefsStack& {
|
|
return param_and_arg_refs_stack_;
|
|
}
|
|
|
|
auto args_type_info_stack() -> InstBlockStack& {
|
|
return args_type_info_stack_;
|
|
}
|
|
|
|
auto struct_type_fields_stack() -> ArrayStack<SemIR::StructTypeField>& {
|
|
return struct_type_fields_stack_;
|
|
}
|
|
|
|
auto decl_name_stack() -> DeclNameStack& { return decl_name_stack_; }
|
|
|
|
auto decl_introducer_state_stack() -> DeclIntroducerStateStack& {
|
|
return decl_introducer_state_stack_;
|
|
}
|
|
|
|
auto scope_stack() -> ScopeStack& { return scope_stack_; }
|
|
|
|
auto return_scope_stack() -> llvm::SmallVector<ScopeStack::ReturnScope>& {
|
|
return scope_stack().return_scope_stack();
|
|
}
|
|
|
|
auto break_continue_stack()
|
|
-> llvm::SmallVector<ScopeStack::BreakContinueScope>& {
|
|
return scope_stack().break_continue_stack();
|
|
}
|
|
|
|
auto generic_region_stack() -> GenericRegionStack& {
|
|
return generic_region_stack_;
|
|
}
|
|
|
|
auto import_ir_constant_values()
|
|
-> llvm::SmallVector<SemIR::ConstantValueStore, 0>& {
|
|
return import_ir_constant_values_;
|
|
}
|
|
|
|
// Directly expose SemIR::File data accessors for brevity in calls.
|
|
|
|
auto identifiers() -> SharedValueStores::IdentifierStore& {
|
|
return sem_ir().identifiers();
|
|
}
|
|
auto ints() -> SharedValueStores::IntStore& { return sem_ir().ints(); }
|
|
auto reals() -> SharedValueStores::RealStore& { return sem_ir().reals(); }
|
|
auto floats() -> SharedValueStores::FloatStore& { return sem_ir().floats(); }
|
|
auto string_literal_values() -> SharedValueStores::StringLiteralStore& {
|
|
return sem_ir().string_literal_values();
|
|
}
|
|
auto entity_names() -> SemIR::EntityNameStore& {
|
|
return sem_ir().entity_names();
|
|
}
|
|
auto functions() -> ValueStore<SemIR::FunctionId>& {
|
|
return sem_ir().functions();
|
|
}
|
|
auto classes() -> ValueStore<SemIR::ClassId>& { return sem_ir().classes(); }
|
|
auto interfaces() -> ValueStore<SemIR::InterfaceId>& {
|
|
return sem_ir().interfaces();
|
|
}
|
|
auto facet_types() -> CanonicalValueStore<SemIR::FacetTypeId>& {
|
|
return sem_ir().facet_types();
|
|
}
|
|
auto impls() -> SemIR::ImplStore& { return sem_ir().impls(); }
|
|
auto generics() -> SemIR::GenericStore& { return sem_ir().generics(); }
|
|
auto specifics() -> SemIR::SpecificStore& { return sem_ir().specifics(); }
|
|
auto import_irs() -> ValueStore<SemIR::ImportIRId>& {
|
|
return sem_ir().import_irs();
|
|
}
|
|
auto import_ir_insts() -> ValueStore<SemIR::ImportIRInstId>& {
|
|
return sem_ir().import_ir_insts();
|
|
}
|
|
auto names() -> SemIR::NameStoreWrapper { return sem_ir().names(); }
|
|
auto name_scopes() -> SemIR::NameScopeStore& {
|
|
return sem_ir().name_scopes();
|
|
}
|
|
auto struct_type_fields() -> SemIR::StructTypeFieldsStore& {
|
|
return sem_ir().struct_type_fields();
|
|
}
|
|
auto types() -> SemIR::TypeStore& { return sem_ir().types(); }
|
|
auto type_blocks() -> SemIR::BlockValueStore<SemIR::TypeBlockId>& {
|
|
return sem_ir().type_blocks();
|
|
}
|
|
// Instructions should be added with `AddInst` or `AddInstInNoBlock`. This is
|
|
// `const` to prevent accidental misuse.
|
|
auto insts() -> const SemIR::InstStore& { return sem_ir().insts(); }
|
|
auto constant_values() -> SemIR::ConstantValueStore& {
|
|
return sem_ir().constant_values();
|
|
}
|
|
auto inst_blocks() -> SemIR::InstBlockStore& {
|
|
return sem_ir().inst_blocks();
|
|
}
|
|
auto constants() -> SemIR::ConstantStore& { return sem_ir().constants(); }
|
|
|
|
auto definitions_required() -> llvm::SmallVector<SemIR::InstId>& {
|
|
return definitions_required_;
|
|
}
|
|
|
|
auto global_init() -> GlobalInit& { return global_init_; }
|
|
|
|
auto import_ref_ids() -> llvm::SmallVector<SemIR::InstId>& {
|
|
return import_ref_ids_;
|
|
}
|
|
|
|
auto bind_name_cache() -> Map<SemIR::EntityNameId, SemIR::InstId>& {
|
|
return bind_name_cache_;
|
|
}
|
|
|
|
private:
|
|
// A FoldingSet node for a type.
|
|
class TypeNode : public llvm::FastFoldingSetNode {
|
|
public:
|
|
explicit TypeNode(const llvm::FoldingSetNodeID& node_id,
|
|
SemIR::TypeId type_id)
|
|
: llvm::FastFoldingSetNode(node_id), type_id_(type_id) {}
|
|
|
|
auto type_id() -> SemIR::TypeId { return type_id_; }
|
|
|
|
private:
|
|
SemIR::TypeId type_id_;
|
|
};
|
|
|
|
// Checks that the provided imported location has a node kind that is
|
|
// compatible with that of the given instruction.
|
|
auto CheckCompatibleImportedNodeKind(SemIR::ImportIRInstId imported_loc_id,
|
|
SemIR::InstKind kind) -> void;
|
|
|
|
// Finish producing an instruction. Set its constant value, and register it in
|
|
// any applicable instruction lists.
|
|
auto FinishInst(SemIR::InstId inst_id, SemIR::Inst inst) -> void;
|
|
|
|
// Tokens for getting data on literals.
|
|
const Lex::TokenizedBuffer* tokens_;
|
|
|
|
// Handles diagnostics.
|
|
DiagnosticEmitter* emitter_;
|
|
|
|
// The file's parse tree.
|
|
const Parse::Tree* parse_tree_;
|
|
|
|
// Returns a lazily constructed TreeAndSubtrees.
|
|
llvm::function_ref<const Parse::TreeAndSubtrees&()>
|
|
get_parse_tree_and_subtrees_;
|
|
|
|
// The SemIR::File being added to.
|
|
SemIR::File* sem_ir_;
|
|
|
|
// Whether to print verbose output.
|
|
llvm::raw_ostream* vlog_stream_;
|
|
|
|
// The stack during Build. Will contain file-level parse nodes on return.
|
|
NodeStack node_stack_;
|
|
|
|
// The stack of instruction blocks being used for general IR generation.
|
|
InstBlockStack inst_block_stack_;
|
|
|
|
// The stack of instruction blocks that contain pattern instructions.
|
|
InstBlockStack pattern_block_stack_;
|
|
|
|
// The stack of instruction blocks being used for param and arg ref blocks.
|
|
ParamAndArgRefsStack param_and_arg_refs_stack_;
|
|
|
|
// The stack of instruction blocks being used for type information while
|
|
// processing arguments. This is used in parallel with
|
|
// param_and_arg_refs_stack_. It's currently only used for struct literals,
|
|
// where we need to track names for a type separate from the literal
|
|
// arguments.
|
|
InstBlockStack args_type_info_stack_;
|
|
|
|
// The stack of StructTypeFields for in-progress StructTypeLiterals and Class
|
|
// object representations.
|
|
ArrayStack<SemIR::StructTypeField> struct_type_fields_stack_;
|
|
|
|
// The stack used for qualified declaration name construction.
|
|
DeclNameStack decl_name_stack_;
|
|
|
|
// The stack of declarations that could have modifiers.
|
|
DeclIntroducerStateStack decl_introducer_state_stack_;
|
|
|
|
// The stack of scopes we are currently within.
|
|
ScopeStack scope_stack_;
|
|
|
|
// The stack of generic regions we are currently within.
|
|
GenericRegionStack generic_region_stack_;
|
|
|
|
// Cache of reverse mapping from type constants to types.
|
|
//
|
|
// TODO: Instead of mapping to a dense `TypeId` space, we could make `TypeId`
|
|
// be a thin wrapper around `ConstantId` and only perform the lookup only when
|
|
// we want to access the completeness and value representation of a type. It's
|
|
// not clear whether that would result in more or fewer lookups.
|
|
//
|
|
// TODO: Should this be part of the `TypeStore`?
|
|
Map<SemIR::ConstantId, SemIR::TypeId> type_ids_for_type_constants_;
|
|
|
|
// The list which will form NodeBlockId::Exports.
|
|
llvm::SmallVector<SemIR::InstId> exports_;
|
|
|
|
// Maps CheckIRId to ImportIRId.
|
|
llvm::SmallVector<SemIR::ImportIRId> check_ir_map_;
|
|
|
|
// Per-import constant values. These refer to the main IR and mainly serve as
|
|
// a lookup table for quick access.
|
|
//
|
|
// Inline 0 elements because it's expected to require heap allocation.
|
|
llvm::SmallVector<SemIR::ConstantValueStore, 0> import_ir_constant_values_;
|
|
|
|
// Declaration instructions of entities that should have definitions by the
|
|
// end of the current source file.
|
|
llvm::SmallVector<SemIR::InstId> definitions_required_;
|
|
|
|
// State for global initialization.
|
|
GlobalInit global_init_;
|
|
|
|
// A list of import refs which can't be inserted into their current context.
|
|
// They're typically added during name lookup or import ref resolution, where
|
|
// the current block on inst_block_stack_ is unrelated.
|
|
//
|
|
// These are instead added here because they're referenced by other
|
|
// instructions and needs to be visible in textual IR.
|
|
// FinalizeImportRefBlock() will produce an inst block for them.
|
|
llvm::SmallVector<SemIR::InstId> import_ref_ids_;
|
|
|
|
// Cache of allocated AnyBindName insts, keyed by the entity names they refer
|
|
// to. These are allocated while generating the pattern IR, but are emitted
|
|
// later as part of the pattern-match IR.
|
|
Map<SemIR::EntityNameId, SemIR::InstId> bind_name_cache_;
|
|
};
|
|
|
|
} // namespace Carbon::Check
|
|
|
|
#endif // CARBON_TOOLCHAIN_CHECK_CONTEXT_H_
|