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toolchain/check/action.cpp
297 строк
12 KB
Geoff Romer
Basic support for symbolic forms (#7408)
26 июн 2026, 01:46
Не верифицирован
26 июн 2026, 01:46
8158d4f
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// Part of the Carbon Language project, under the Apache License v2.0 with LLVM // Exceptions. See /LICENSE for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception #include "toolchain/check/action.h" #include "toolchain/base/kind_switch.h" #include "toolchain/check/generic_region_stack.h" #include "toolchain/check/inst.h" #include "toolchain/check/type.h" #include "toolchain/sem_ir/constant.h" #include "toolchain/sem_ir/copy_on_write_block.h" #include "toolchain/sem_ir/id_kind.h" #include "toolchain/sem_ir/inst.h" #include "toolchain/sem_ir/typed_insts.h" namespace Carbon::Check { auto PerformAction(Context& context, SemIR::LocId loc_id, SemIR::RefineTypeAction action) -> SemIR::InstId { return AddInst<SemIR::AsCompatible>( context, loc_id, {.type_id = context.types().GetTypeIdForTypeInstId(action.inst_type_inst_id), .source_id = action.inst_id}); } static auto OperandDependence(Context& context, SemIR::ConstantId const_id) -> SemIR::ConstantDependence { // A type operand makes the instruction dependent if it is a // template-dependent constant. if (!const_id.is_symbolic()) { return SemIR::ConstantDependence::None; } return context.constant_values().GetSymbolicConstant(const_id).dependence; } auto OperandDependence(Context& context, SemIR::TypeId type_id) -> SemIR::ConstantDependence { // A type operand makes the instruction dependent if it is a // template-dependent type. return OperandDependence(context, context.types().GetConstantId(type_id)); } auto OperandDependence(Context& context, SemIR::InstId inst_id) -> SemIR::ConstantDependence { // An instruction operand makes the instruction dependent if its type or // constant value is dependent. return std::max( OperandDependence(context, context.insts().Get(inst_id).type_id()), OperandDependence(context, context.constant_values().Get(inst_id))); } static auto OperandDependence(Context& context, SemIR::MetaInstId inst_id) -> SemIR::ConstantDependence { // A meta-instruction operand makes the instruction dependent if its type or // constant value is dependent. return OperandDependence(context, SemIR::InstId{inst_id}); } auto OperandDependence(Context& context, SemIR::TypeInstId inst_id) -> SemIR::ConstantDependence { // An instruction operand makes the instruction dependent if its type or // constant value is dependent. TypeInstId has type `TypeType` which is // concrete, so we only need to look at the constant value. return OperandDependence(context, context.constant_values().Get(inst_id)); } template <typename IdT> requires SemIR::Internal::IsIdKindType<IdT> && SameAsOneOf<IdT, SemIR::IdAndKind::NoneType, SemIR::AbsoluteInstId, SemIR::CallParamIndex, SemIR::NameId> static auto OperandDependence(Context& /*context*/, IdT /*id*/) -> SemIR::ConstantDependence { return SemIR::ConstantDependence::None; } template <typename BundleT> static auto OperandDependence(Context& context, SemIR::BundleId<BundleT> bundle_id) -> SemIR::ConstantDependence { return std::apply( [&](auto... ids) { return std::max({OperandDependence(context, ids)...}); }, context.bundles().GetAsTuple(bundle_id)); } static auto OperandDependence(Context& context, SemIR::SpecificId specific_id) -> SemIR::ConstantDependence { auto specific = context.specifics().Get(specific_id); auto result = SemIR::ConstantDependence::None; for (auto arg_id : context.inst_blocks().Get(specific.args_id)) { result = std::max(result, OperandDependence(context, arg_id)); } return result; } template <typename IdT> requires SemIR::Internal::IsIdKindType<IdT> static auto OperandDependence(Context& /*context*/, IdT /*id*/) -> SemIR::ConstantDependence { // TODO: Properly handle different argument kinds. CARBON_FATAL("Unexpected argument kind for action: {}", IdT::Label); } static auto OperandDependence(Context& context, SemIR::IdAndKind arg) -> SemIR::ConstantDependence { return arg.Dispatch<SemIR::ConstantDependence>( [&](auto id) { return OperandDependence(context, id); }); } auto ActionIsPerformable(Context& context, SemIR::Inst action_inst) -> bool { if (auto refine_action = action_inst.TryAs<SemIR::RefineTypeAction>()) { // `RefineTypeAction` can be performed whenever the type is not template- // dependent, even if we don't know the instruction yet. return OperandDependence(context, refine_action->inst_type_inst_id) < SemIR::ConstantDependence::Template; } // A form-parameterized action is performable if we can see at least the top // level of its form's structure (i.e. it is not an action or a splice). if (auto form_parameterized_action = action_inst.TryAs<SemIR::AnyFormParamAction>()) { auto form_const_id = context.constant_values().Get(form_parameterized_action->form_id); auto form_id = context.constant_values().GetInstIdIfValid(form_const_id); if (!form_id.has_value()) { // This is an error which will be diagnosed elsewhere, so we should just // get out of its way. return true; } auto form_inst = context.insts().Get(form_id); switch (form_inst.kind()) { case SemIR::InitForm::Kind: case SemIR::RefForm::Kind: case SemIR::ValueForm::Kind: case SemIR::ErrorInst::Kind: return true; default: return false; } } return OperandDependence(context, action_inst.type_id()) < SemIR::ConstantDependence::Template && OperandDependence(context, action_inst.arg0_and_kind()) < SemIR::ConstantDependence::Template && OperandDependence(context, action_inst.arg1_and_kind()) < SemIR::ConstantDependence::Template; } static auto AddDependentActionSpliceImpl(Context& context, SemIR::LocIdAndInst action, SemIR::TypeInstId result_type_inst_id) -> SemIR::InstId { auto inst_id = AddDependentActionInst(context, action); if (!result_type_inst_id.has_value()) { result_type_inst_id = AddDependentActionTypeInst( context, action.loc_id, SemIR::TypeOfInst{.type_id = SemIR::TypeType::TypeId, .inst_id = inst_id}); } return AddInst( context, action.loc_id, SemIR::SpliceInst{.type_id = context.types().GetTypeIdForTypeInstId( result_type_inst_id), .inst_id = inst_id}); } // Refine one operand of an action. Given an argument from a template, this // produces an argument that has the template-dependent parts replaced with // their concrete values, so that the action doesn't need to know which specific // it is operating on. // // This is the default case, for ID kinds that can't be refined. template <typename IdT> requires SemIR::Internal::IsIdKindType<IdT> static auto RefineTypedOperand(Context& /*context*/, SemIR::LocId /*loc_id*/, IdT id) -> IdT { return id; } static auto RefineTypedOperand(Context& context, SemIR::LocId loc_id, SemIR::MetaInstId inst_id) -> SemIR::MetaInstId { auto inst = context.insts().Get(inst_id); if (inst.Is<SemIR::SpliceInst>()) { // The argument will evaluate to the spliced instruction, which is already // refined. return inst_id; } // If the type of the action argument is dependent, refine to an instruction // with a concrete type. if (OperandDependence(context, inst.type_id()) == SemIR::ConstantDependence::Template) { auto type_inst_id = context.types().GetTypeInstId(inst.type_id()); inst_id = AddDependentActionSpliceImpl( context, SemIR::LocIdAndInst( loc_id, SemIR::RefineTypeAction{.type_id = GetSingletonType( context, SemIR::InstType::TypeInstId), .inst_id = inst_id, .inst_type_inst_id = type_inst_id}), type_inst_id); } // TODO: Handle the case where the constant value of the instruction is // template-dependent. return inst_id; } template <typename BundleT> static auto RefineTypedOperand(Context& context, SemIR::LocId loc_id, SemIR::BundleId<BundleT> bundle_id) -> SemIR::BundleId<BundleT> { auto bundle_tuple = context.bundles().GetAsTuple(bundle_id); BundleT refined_bundle = std::apply( [&](auto... bundle_fields) { // This can't actually recurse, because bundles can't contain bundle // IDs. return BundleT{RefineTypedOperand(context, loc_id, bundle_fields)...}; }, bundle_tuple); return context.bundles().AddCanonical(refined_bundle); } // Dynamically dispatched wrapper for RefineTypedOperand. static auto RefineOperand(Context& context, SemIR::LocId loc_id, SemIR::IdAndKind arg) -> int32_t { return arg.Dispatch<int32_t>([&](auto id) { return SemIR::ToRaw(RefineTypedOperand(context, loc_id, id)); }); } // Refine the operands of an action, ensuring that they will refer to concrete // instructions that don't have template-dependent types. static auto RefineOperands(Context& context, SemIR::LocId loc_id, SemIR::Inst action) -> SemIR::Inst { auto arg0 = RefineOperand(context, loc_id, action.arg0_and_kind()); auto arg1 = RefineOperand(context, loc_id, action.arg1_and_kind()); action.SetArgs(arg0, arg1); return action; } auto AddDependentActionSplice(Context& context, SemIR::LocIdAndInst action, SemIR::TypeInstId result_type_inst_id) -> SemIR::InstId { action.inst = RefineOperands(context, action.loc_id, action.inst); return AddDependentActionSpliceImpl(context, action, result_type_inst_id); } auto Internal::BeginPerformDelayedAction(Context& context) -> void { // Push an `InstBlock` to hold any instructions created by the action. // Note that we assume that actions don't need to create multiple blocks. If // this changes, we should push a region too. context.inst_block_stack().Push(); context.pattern_block_stack().Push(); } auto Internal::EndPerformDelayedAction(Context& context, SemIR::InstId result_id) -> SemIR::InstId { // If the only created instruction is the result, then we can use it directly. auto contents = context.inst_block_stack().PeekCurrentBlockContents(); auto pattern_contents = context.pattern_block_stack().PeekCurrentBlockContents(); if ((contents == llvm::ArrayRef(result_id) && pattern_contents.empty()) || (pattern_contents == llvm::ArrayRef(result_id) && contents.empty())) { context.inst_block_stack().PopAndDiscard(); context.pattern_block_stack().PopAndDiscard(); return result_id; } // Otherwise, create a splice_block to represent the sequence of instructions // created by the action. auto block_id = SemIR::InstBlockId::None; if (pattern_contents.empty()) { block_id = context.inst_block_stack().Pop(); context.pattern_block_stack().PopAndDiscard(); } else { // TODO: pattern insts can depend on non-pattern insts, so we'll probably // eventually need to support actions that produce both. CARBON_CHECK(contents.empty()); block_id = context.pattern_block_stack().Pop(); context.inst_block_stack().PopAndDiscard(); } auto result = context.insts().GetWithLocId(result_id); return AddInstInNoBlock(context, result.loc_id, SemIR::SpliceBlock{.type_id = result.inst.type_id(), .block_id = block_id, .result_id = result_id}); } } // namespace Carbon::Check