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This adds SemIR structs and implements building `observe` lists, as well as naming, formatting, and importing `observe` declarations. --------- Co-authored-by: Dana Jansens <danakj@orodu.net>
176 lines
8.2 KiB
C++
176 lines
8.2 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_GENERIC_H_
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#define CARBON_TOOLCHAIN_CHECK_GENERIC_H_
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#include "common/enum_mask_base.h"
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#include "toolchain/check/context.h"
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#include "toolchain/sem_ir/entity_with_params_base.h"
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#include "toolchain/sem_ir/ids.h"
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namespace Carbon::Check {
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// Start processing a declaration or definition that might be a generic entity.
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auto StartGenericDecl(Context& context) -> void;
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// Start processing a declaration or definition that might be a generic entity.
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auto StartGenericDefinition(Context& context, SemIR::GenericId generic_id)
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-> void;
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#define CARBON_DEPENDENT_INST_KIND(X) \
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/* The type of the instruction depends on a checked generic parameter. */ \
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X(SymbolicType) \
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/* The constant value of the instruction depends on a checked generic \
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* parameter. */ \
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X(SymbolicConstant) \
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X(Template)
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CARBON_DEFINE_RAW_ENUM_MASK(DependentInstKind, uint8_t) {
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CARBON_DEPENDENT_INST_KIND(CARBON_RAW_ENUM_MASK_ENUMERATOR)
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};
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// Represents a set of keyword modifiers, using a separate bit per modifier.
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class DependentInstKind : public CARBON_ENUM_MASK_BASE(DependentInstKind) {
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public:
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CARBON_DEPENDENT_INST_KIND(CARBON_ENUM_MASK_CONSTANT_DECL)
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};
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#define CARBON_DEPENDENT_INST_KIND_WITH_TYPE(X) \
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CARBON_ENUM_MASK_CONSTANT_DEFINITION(DependentInstKind, X)
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CARBON_DEPENDENT_INST_KIND(CARBON_DEPENDENT_INST_KIND_WITH_TYPE)
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#undef CARBON_DEPENDENT_INST_KIND_WITH_TYPE
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// An instruction that depends on a generic parameter in some way.
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struct DependentInst {
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SemIR::InstId inst_id;
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DependentInstKind kind;
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};
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// Attach a dependent instruction to the current generic, updating its type and
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// constant value as necessary.
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auto AttachDependentInstToCurrentGeneric(Context& context,
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DependentInst dependent_inst) -> void;
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// Discard the information about the current generic entity. This should be
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// called instead of `FinishGenericDecl` if the corresponding `Generic` object
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// would not actually be used, or when recovering from an error.
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auto DiscardGenericDecl(Context& context) -> void;
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// Finish processing a potentially generic declaration and produce a
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// corresponding generic object. Returns SemIR::GenericId::None if this
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// declaration is not actually generic.
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auto BuildGeneric(Context& context, SemIR::InstId decl_id) -> SemIR::GenericId;
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// Builds eval block for the declaration.
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auto FinishGenericDecl(Context& context, SemIR::LocId loc_id,
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SemIR::GenericId generic_id) -> void;
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// BuildGeneric() and FinishGenericDecl() combined. Normally you would call this
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// function unless the caller has work to do between the two steps.
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auto BuildGenericDecl(Context& context, SemIR::InstId decl_id)
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-> SemIR::GenericId;
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// Merge a redeclaration of an entity that might be a generic into the original
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// declaration.
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auto FinishGenericRedecl(Context& context, SemIR::GenericId generic_id) -> void;
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// Finish processing a potentially generic definition.
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auto FinishGenericDefinition(Context& context, SemIR::GenericId generic_id)
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-> void;
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// Builds and returns an eval block, given the list of canonical symbolic
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// constants that the instructions in the eval block should produce. This is
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// used when importing a generic.
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auto RebuildGenericEvalBlock(Context& context, SemIR::GenericId generic_id,
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SemIR::GenericInstIndex::Region region,
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llvm::ArrayRef<SemIR::InstId> const_ids)
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-> SemIR::InstBlockId;
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// Builds a new specific with a given argument list, or finds an existing one if
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// this generic has already been referenced with these arguments. Performs
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// substitution into the declaration, but not the definition, of the generic.
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auto MakeSpecific(Context& context, SemIR::LocId loc_id,
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SemIR::GenericId generic_id,
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llvm::ArrayRef<SemIR::InstId> args) -> SemIR::SpecificId;
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// Builds a new specific or finds an existing one in the case where the argument
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// list has already been converted into an instruction block. `args_id` should
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// be a canonical instruction block referring to constants.
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auto MakeSpecific(Context& context, SemIR::LocId loc_id,
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SemIR::GenericId generic_id, SemIR::InstBlockId args_id)
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-> SemIR::SpecificId;
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// Builds the specific that describes how the generic should refer to itself.
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// For example, for a generic `G(T:! type)`, this is the specific `G(T)`. If
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// `generic_id` is `None`, returns `None`.
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auto MakeSelfSpecific(Context& context, SemIR::LocId loc_id,
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SemIR::GenericId generic_id) -> SemIR::SpecificId;
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// Resolve the declaration of the given specific, by evaluating the eval block
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// of the corresponding generic and storing a corresponding value block in the
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// specific.
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auto ResolveSpecificDecl(Context& context, SemIR::LocId loc_id,
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SemIR::SpecificId specific_id) -> void;
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// Attempts to resolve the definition of the given specific, by evaluating the
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// eval block of the corresponding generic and storing a corresponding value
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// block in the specific. Returns false if a definition is not available.
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auto ResolveSpecificDefinition(Context& context, SemIR::LocId loc_id,
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SemIR::SpecificId specific_id) -> bool;
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// Diagnoses if an entity has implicit parameters, indicating it's generic, but
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// is missing explicit parameters.
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auto DiagnoseIfGenericMissingExplicitParameters(
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Context& context, const SemIR::EntityWithParamsBase& entity_base) -> void;
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// Given a generic and specific for an entity, construct the specific for the
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// inner generic-with-self.
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//
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// Interfaces and named constraints each have two generics.
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// * A regular outward facing generic which includes just the generic bindings
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// as written in the declaration.
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// * An inner generic-with-self which includes an additional generic binding of
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// the `Self` facet value. Associated entities are located inside this inner
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// generic-with-self.
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//
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// This function moves from a specific for the outer generic to a specific for
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// the inner generic-with-self. An entity which has no generic bindings will
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// have no outer generic-without-self and thus no specific-without-self, but
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// there is always an inner generic-with-self regardless, because of the
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// additional `Self` binding.
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//
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// If the generic-without-self has its definition completed, the resulting
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// specific will also. Note that during construction of an interface/constraint,
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// the definition cannot be complete yet.
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//
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// TODO: This should take a `diagnoser` parameter which is passed through to
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// MakeSpecific() and TryEvalBlockForSpecific(), so that monomorphization errors
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// get diagnosed to the correct semantic operation, instead of just to specific
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// instantiation.
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auto MakeSpecificWithInnerSelf(Context& context, SemIR::LocId loc_id,
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SemIR::GenericId generic_without_self_id,
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SemIR::GenericId generic_with_self_id,
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SemIR::SpecificId specific_without_self_id,
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SemIR::ConstantId self_facet)
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-> SemIR::SpecificId;
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// Copy the arguments of a specific into the context of another generic. The
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// target generic must have the exact same bindings as the specific's generic.
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//
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// TODO: This should take a `diagnoser` parameter which is passed through to
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// MakeSpecific() and TryEvalBlockForSpecific(), so that monomorphization errors
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// get diagnosed to the correct semantic operation, instead of just to specific
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// instantiation.
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auto CopySpecificToGeneric(Context& context, SemIR::LocId loc_id,
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SemIR::SpecificId specific_id,
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SemIR::GenericId target_generic_id)
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-> SemIR::SpecificId;
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auto DiagnoseImplsOnNonFacetType(Context& context, SemIR::LocId loc_id) -> void;
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} // namespace Carbon::Check
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#endif // CARBON_TOOLCHAIN_CHECK_GENERIC_H_
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