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With the toolchain splitting namespaces, ostream.h's `operator<<` templates aren't reliably found with name lookup, likely due to the loss of associated namespaces (zygoloid commented on this at https://github.com/carbon-language/carbon-lang/pull/3161#discussion_r1307941999). This is especially a barrier to moving the lex files into `Carbon::Lex`; versus other parts of the toolchain, they contain more printable types which are used cross-namespace, including `Carbon::Testing`. As a consequence, I'm looking at migrating ostream.h to a more reliable approach that doesn't rely as much on everything being in the `Carbon` namespace.
1059 lines
39 KiB
C++
1059 lines
39 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_EXPLORER_AST_DECLARATION_H_
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#define CARBON_EXPLORER_AST_DECLARATION_H_
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#include <string>
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#include <string_view>
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#include <utility>
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#include <vector>
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#include "common/check.h"
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#include "common/ostream.h"
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#include "explorer/ast/ast_node.h"
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#include "explorer/ast/clone_context.h"
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#include "explorer/ast/expression_category.h"
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#include "explorer/ast/impl_binding.h"
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#include "explorer/ast/pattern.h"
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#include "explorer/ast/return_term.h"
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#include "explorer/ast/statement.h"
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#include "explorer/ast/value_node.h"
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#include "explorer/base/nonnull.h"
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#include "explorer/base/source_location.h"
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#include "llvm/ADT/ArrayRef.h"
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#include "llvm/Support/Compiler.h"
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namespace Carbon {
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class MixinPseudoType;
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class ConstraintType;
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class NominalClassType;
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class MatchFirstDeclaration;
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// Abstract base class of all AST nodes representing patterns.
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//
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// Declaration and its derived classes support LLVM-style RTTI, including
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// llvm::isa, llvm::cast, and llvm::dyn_cast. To support this, every
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// class derived from Declaration must provide a `classof` operation, and
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// every concrete derived class must have a corresponding enumerator
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// in `Kind`; see https://llvm.org/docs/HowToSetUpLLVMStyleRTTI.html for
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// details.
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class Declaration : public AstNode {
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public:
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~Declaration() override = 0;
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Declaration(const Declaration&) = delete;
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auto operator=(const Declaration&) -> Declaration& = delete;
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void Print(llvm::raw_ostream& out) const override;
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void PrintID(llvm::raw_ostream& out) const override;
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virtual void PrintIndent(int indent_num_spaces, llvm::raw_ostream& out) const;
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static auto classof(const AstNode* node) -> bool {
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return InheritsFromDeclaration(node->kind());
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}
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// Returns the enumerator corresponding to the most-derived type of this
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// object.
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auto kind() const -> DeclarationKind {
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return static_cast<DeclarationKind>(root_kind());
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}
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// The static type of the declared entity. Cannot be called before
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// typechecking.
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auto static_type() const -> const Value& { return **static_type_; }
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// Sets the static type of the declared entity. Can only be called once,
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// during typechecking.
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void set_static_type(Nonnull<const Value*> type) {
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CARBON_CHECK(!static_type_.has_value());
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static_type_ = type;
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}
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// Returns whether the static type has been set. Should only be called
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// during typechecking: before typechecking it's guaranteed to be false,
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// and after typechecking it's guaranteed to be true.
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auto has_static_type() const -> bool { return static_type_.has_value(); }
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// Sets the value returned by constant_value(). Can only be called once,
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// during typechecking.
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void set_constant_value(Nonnull<const Value*> value) {
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CARBON_CHECK(!constant_value_.has_value());
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constant_value_ = value;
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}
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// See value_node.h for API.
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auto constant_value() const -> std::optional<Nonnull<const Value*>> {
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return constant_value_;
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}
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// See value_node.h for API.
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auto symbolic_identity() const -> std::optional<Nonnull<const Value*>> {
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return constant_value_;
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}
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// Returns whether this node has been declared.
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auto is_declared() const -> bool { return is_declared_; }
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// Set that this node is declared. Should only be called once, by the
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// type-checker, once the node is ready to be named and used.
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void set_is_declared() {
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CARBON_CHECK(!is_declared_) << "should not be declared twice";
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is_declared_ = true;
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}
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// Returns whether this node has been fully type-checked.
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auto is_type_checked() const -> bool { return is_type_checked_; }
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// Set that this node is type-checked. Should only be called once, by the
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// type-checker, once full type-checking is complete.
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void set_is_type_checked() {
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CARBON_CHECK(!is_type_checked_) << "should not be type-checked twice";
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is_type_checked_ = true;
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}
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protected:
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// Constructs a Declaration representing syntax at the given line number.
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// `kind` must be the enumerator corresponding to the most-derived type being
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// constructed.
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explicit Declaration(AstNodeKind kind, SourceLocation source_loc)
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: AstNode(kind, source_loc) {}
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explicit Declaration(CloneContext& context, const Declaration& other)
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: AstNode(context, other),
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static_type_(context.Clone(other.static_type_)),
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constant_value_(context.Clone(other.constant_value_)),
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is_declared_(other.is_declared_),
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is_type_checked_(other.is_type_checked_) {}
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private:
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std::optional<Nonnull<const Value*>> static_type_;
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std::optional<Nonnull<const Value*>> constant_value_;
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bool is_declared_ = false;
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bool is_type_checked_ = false;
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};
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// Determine whether two declarations declare the same entity.
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inline auto DeclaresSameEntity(const Declaration& first,
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const Declaration& second) -> bool {
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return &first == &second;
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}
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// A name being declared in a named declaration.
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class DeclaredName : public Printable<DeclaredName> {
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public:
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struct NameComponent {
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SourceLocation source_loc;
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std::string name;
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};
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explicit DeclaredName(SourceLocation loc, std::string name)
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: components_{{loc, std::move(name)}} {}
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void Print(llvm::raw_ostream& out) const;
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void Append(SourceLocation loc, std::string name) {
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components_.push_back({loc, std::move(name)});
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}
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// Returns the location of the first name component.
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auto source_loc() const -> SourceLocation {
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return components_.front().source_loc;
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}
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// Returns whether this is a qualified name, as opposed to a simple
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// single-identifier name.
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auto is_qualified() const { return components_.size() > 1; }
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// Returns a range containing the components of the name other than the final
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// component.
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auto qualifiers() const -> llvm::ArrayRef<NameComponent> {
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return llvm::ArrayRef(components_).drop_back();
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}
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// Returns the innermost name, which is the unqualified name of the entity
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// being declared. For example in `fn Namespace.Func();`, returns `"Func"`.
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auto inner_name() const -> std::string_view {
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return components_.back().name;
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}
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private:
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std::vector<NameComponent> components_;
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};
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// A declaration of a namespace.
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class NamespaceDeclaration : public Declaration {
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public:
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using ImplementsCarbonValueNode = void;
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explicit NamespaceDeclaration(SourceLocation source_loc, DeclaredName name)
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: Declaration(AstNodeKind::NamespaceDeclaration, source_loc),
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name_(std::move(name)) {}
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explicit NamespaceDeclaration(CloneContext& context,
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const NamespaceDeclaration& other)
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: Declaration(context, other), name_(other.name_) {}
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static auto classof(const AstNode* node) -> bool {
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return InheritsFromNamespaceDeclaration(node->kind());
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}
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auto name() const -> const DeclaredName& { return name_; }
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auto expression_category() const -> ExpressionCategory {
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return ExpressionCategory::Value;
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}
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private:
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DeclaredName name_;
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};
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// A function's virtual override keyword.
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enum class VirtualOverride { None, Abstract, Virtual, Impl };
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class CallableDeclaration : public Declaration {
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public:
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CallableDeclaration(AstNodeKind kind, SourceLocation loc,
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std::vector<Nonnull<GenericBinding*>> deduced_params,
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std::optional<Nonnull<Pattern*>> self_pattern,
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Nonnull<TuplePattern*> param_pattern,
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ReturnTerm return_term,
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std::optional<Nonnull<Block*>> body,
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VirtualOverride virt_override)
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: Declaration(kind, loc),
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deduced_parameters_(std::move(deduced_params)),
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self_pattern_(self_pattern),
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param_pattern_(param_pattern),
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return_term_(return_term),
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body_(body),
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virt_override_(virt_override) {}
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explicit CallableDeclaration(CloneContext& context,
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const CallableDeclaration& other)
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: Declaration(context, other),
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deduced_parameters_(context.Clone(other.deduced_parameters_)),
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self_pattern_(context.Clone(other.self_pattern_)),
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param_pattern_(context.Clone(other.param_pattern_)),
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return_term_(context.Clone(other.return_term_)),
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body_(context.Clone(other.body_)),
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virt_override_(other.virt_override_) {}
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void PrintIndent(int indent_num_spaces,
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llvm::raw_ostream& out) const override;
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auto deduced_parameters() const
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-> llvm::ArrayRef<Nonnull<const GenericBinding*>> {
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return deduced_parameters_;
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}
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auto deduced_parameters() -> llvm::ArrayRef<Nonnull<GenericBinding*>> {
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return deduced_parameters_;
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}
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auto self_pattern() const -> const Pattern& { return **self_pattern_; }
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auto self_pattern() -> Pattern& { return **self_pattern_; }
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auto param_pattern() const -> const TuplePattern& { return *param_pattern_; }
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auto param_pattern() -> TuplePattern& { return *param_pattern_; }
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auto return_term() const -> const ReturnTerm& { return return_term_; }
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auto return_term() -> ReturnTerm& { return return_term_; }
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auto body() const -> std::optional<Nonnull<const Block*>> { return body_; }
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auto body() -> std::optional<Nonnull<Block*>> { return body_; }
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auto virt_override() const -> VirtualOverride { return virt_override_; }
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auto expression_category() const -> ExpressionCategory {
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return ExpressionCategory::Value;
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}
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auto is_method() const -> bool { return self_pattern_.has_value(); }
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private:
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std::vector<Nonnull<GenericBinding*>> deduced_parameters_;
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std::optional<Nonnull<Pattern*>> self_pattern_;
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Nonnull<TuplePattern*> param_pattern_;
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ReturnTerm return_term_;
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std::optional<Nonnull<Block*>> body_;
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VirtualOverride virt_override_;
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};
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class FunctionDeclaration : public CallableDeclaration {
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public:
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using ImplementsCarbonValueNode = void;
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static auto Create(Nonnull<Arena*> arena, SourceLocation source_loc,
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DeclaredName name,
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std::vector<Nonnull<AstNode*>> deduced_params,
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Nonnull<TuplePattern*> param_pattern,
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ReturnTerm return_term,
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std::optional<Nonnull<Block*>> body,
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VirtualOverride virt_override)
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-> ErrorOr<Nonnull<FunctionDeclaration*>>;
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// Use `Create()` instead. This is public only so Arena::New() can call it.
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FunctionDeclaration(SourceLocation source_loc, DeclaredName name,
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std::vector<Nonnull<GenericBinding*>> deduced_params,
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std::optional<Nonnull<Pattern*>> self_pattern,
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Nonnull<TuplePattern*> param_pattern,
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ReturnTerm return_term,
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std::optional<Nonnull<Block*>> body,
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VirtualOverride virt_override)
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: CallableDeclaration(AstNodeKind::FunctionDeclaration, source_loc,
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std::move(deduced_params), self_pattern,
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param_pattern, return_term, body, virt_override),
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name_(std::move(name)) {}
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explicit FunctionDeclaration(CloneContext& context,
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const FunctionDeclaration& other)
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: CallableDeclaration(context, other), name_(other.name_) {}
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static auto classof(const AstNode* node) -> bool {
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return InheritsFromFunctionDeclaration(node->kind());
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}
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auto name() const -> const DeclaredName& { return name_; }
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private:
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DeclaredName name_;
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};
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class DestructorDeclaration : public CallableDeclaration {
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public:
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using ImplementsCarbonValueNode = void;
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static auto CreateDestructor(Nonnull<Arena*> arena, SourceLocation source_loc,
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std::vector<Nonnull<AstNode*>> deduced_params,
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Nonnull<TuplePattern*> param_pattern,
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ReturnTerm return_term,
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std::optional<Nonnull<Block*>> body,
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VirtualOverride virt_override)
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-> ErrorOr<Nonnull<DestructorDeclaration*>>;
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// Use `Create()` instead. This is public only so Arena::New() can call it.
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DestructorDeclaration(SourceLocation source_loc,
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std::vector<Nonnull<GenericBinding*>> deduced_params,
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std::optional<Nonnull<Pattern*>> self_pattern,
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Nonnull<TuplePattern*> param_pattern,
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ReturnTerm return_term,
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std::optional<Nonnull<Block*>> body,
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VirtualOverride virt_override)
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: CallableDeclaration(AstNodeKind::DestructorDeclaration, source_loc,
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std::move(deduced_params), self_pattern,
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param_pattern, return_term, body, virt_override) {}
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explicit DestructorDeclaration(CloneContext& context,
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const DestructorDeclaration& other)
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: CallableDeclaration(context, other) {}
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static auto classof(const AstNode* node) -> bool {
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return InheritsFromDestructorDeclaration(node->kind());
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}
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};
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class SelfDeclaration : public Declaration {
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public:
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using ImplementsCarbonValueNode = void;
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explicit SelfDeclaration(SourceLocation source_loc)
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: Declaration(AstNodeKind::SelfDeclaration, source_loc) {}
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explicit SelfDeclaration(CloneContext& context, const SelfDeclaration& other)
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: Declaration(context, other) {}
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static auto classof(const AstNode* node) -> bool {
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return InheritsFromSelfDeclaration(node->kind());
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}
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static auto name() -> std::string_view { return "Self"; }
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auto expression_category() const -> ExpressionCategory {
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return ExpressionCategory::Value;
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}
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};
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enum class ClassExtensibility { None, Base, Abstract };
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class ClassDeclaration : public Declaration {
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public:
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using ImplementsCarbonValueNode = void;
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ClassDeclaration(SourceLocation source_loc, DeclaredName name,
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Nonnull<SelfDeclaration*> self_decl,
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ClassExtensibility extensibility,
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std::optional<Nonnull<TuplePattern*>> type_params,
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std::vector<Nonnull<Declaration*>> members)
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: Declaration(AstNodeKind::ClassDeclaration, source_loc),
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name_(std::move(name)),
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extensibility_(extensibility),
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self_decl_(self_decl),
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type_params_(type_params),
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members_(std::move(members)) {}
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explicit ClassDeclaration(CloneContext& context,
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const ClassDeclaration& other);
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static auto classof(const AstNode* node) -> bool {
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return InheritsFromClassDeclaration(node->kind());
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}
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auto name() const -> const DeclaredName& { return name_; }
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auto extensibility() const -> ClassExtensibility { return extensibility_; }
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auto type_params() const -> std::optional<Nonnull<const TuplePattern*>> {
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return type_params_;
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}
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auto type_params() -> std::optional<Nonnull<TuplePattern*>> {
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return type_params_;
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}
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auto self() const -> Nonnull<const SelfDeclaration*> { return self_decl_; }
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auto self() -> Nonnull<SelfDeclaration*> { return self_decl_; }
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auto members() const -> llvm::ArrayRef<Nonnull<Declaration*>> {
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return members_;
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}
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auto destructor() const
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-> std::optional<Nonnull<const DestructorDeclaration*>> {
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for (const auto& x : members_) {
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if (x->kind() == DeclarationKind::DestructorDeclaration) {
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return llvm::cast<DestructorDeclaration>(x);
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}
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}
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return std::nullopt;
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}
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auto expression_category() const -> ExpressionCategory {
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return ExpressionCategory::Value;
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}
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// Returns the original base type, before instantiation & substitutions
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// Use `NominalClassType::base()` to get the instantiated type.
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auto base_type() const -> std::optional<Nonnull<const NominalClassType*>> {
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return base_type_;
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}
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void set_base_type(
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std::optional<Nonnull<const NominalClassType*>> base_type) {
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base_type_ = base_type;
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}
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private:
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DeclaredName name_;
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ClassExtensibility extensibility_;
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Nonnull<SelfDeclaration*> self_decl_;
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std::optional<Nonnull<TuplePattern*>> type_params_;
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std::vector<Nonnull<Declaration*>> members_;
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std::optional<Nonnull<const NominalClassType*>> base_type_;
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};
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// EXPERIMENTAL MIXIN FEATURE
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class MixinDeclaration : public Declaration {
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public:
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using ImplementsCarbonValueNode = void;
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MixinDeclaration(SourceLocation source_loc, DeclaredName name,
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std::optional<Nonnull<TuplePattern*>> params,
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Nonnull<GenericBinding*> self,
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std::vector<Nonnull<Declaration*>> members)
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: Declaration(AstNodeKind::MixinDeclaration, source_loc),
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name_(std::move(name)),
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params_(params),
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self_(self),
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members_(std::move(members)) {}
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explicit MixinDeclaration(CloneContext& context,
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const MixinDeclaration& other)
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: Declaration(context, other),
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name_(other.name_),
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params_(context.Clone(other.params_)),
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self_(context.Clone(other.self_)),
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members_(context.Clone(other.members_)) {}
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static auto classof(const AstNode* node) -> bool {
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return InheritsFromMixinDeclaration(node->kind());
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}
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auto name() const -> const DeclaredName& { return name_; }
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auto params() const -> std::optional<Nonnull<const TuplePattern*>> {
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return params_;
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}
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auto params() -> std::optional<Nonnull<TuplePattern*>> { return params_; }
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auto self() const -> Nonnull<const GenericBinding*> { return self_; }
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auto self() -> Nonnull<GenericBinding*> { return self_; }
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auto members() const -> llvm::ArrayRef<Nonnull<Declaration*>> {
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return members_;
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}
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auto expression_category() const -> ExpressionCategory {
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return ExpressionCategory::Value;
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}
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private:
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DeclaredName name_;
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std::optional<Nonnull<TuplePattern*>> params_;
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Nonnull<GenericBinding*> self_;
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std::vector<Nonnull<Declaration*>> members_;
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};
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// EXPERIMENTAL MIXIN FEATURE
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class MixDeclaration : public Declaration {
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public:
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MixDeclaration(SourceLocation source_loc,
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std::optional<Nonnull<Expression*>> mixin_type)
|
|
: Declaration(AstNodeKind::MixDeclaration, source_loc),
|
|
mixin_(mixin_type) {}
|
|
|
|
explicit MixDeclaration(CloneContext& context, const MixDeclaration& other);
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromMixDeclaration(node->kind());
|
|
}
|
|
|
|
auto mixin() const -> const Expression& { return **mixin_; }
|
|
auto mixin() -> Expression& { return **mixin_; }
|
|
|
|
auto mixin_value() const -> const MixinPseudoType& { return **mixin_value_; }
|
|
void set_mixin_value(Nonnull<const MixinPseudoType*> mixin_value) {
|
|
mixin_value_ = mixin_value;
|
|
}
|
|
|
|
private:
|
|
std::optional<Nonnull<Expression*>> mixin_;
|
|
std::optional<Nonnull<const MixinPseudoType*>> mixin_value_;
|
|
};
|
|
|
|
class ExtendBaseDeclaration : public Declaration {
|
|
public:
|
|
ExtendBaseDeclaration(SourceLocation source_loc,
|
|
Nonnull<Expression*> base_class)
|
|
: Declaration(AstNodeKind::ExtendBaseDeclaration, source_loc),
|
|
base_class_(base_class) {}
|
|
|
|
explicit ExtendBaseDeclaration(CloneContext& context,
|
|
const ExtendBaseDeclaration& other);
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromExtendBaseDeclaration(node->kind());
|
|
}
|
|
|
|
auto base_class() const -> Nonnull<const Expression*> { return base_class_; }
|
|
auto base_class() -> Nonnull<Expression*> { return base_class_; }
|
|
|
|
private:
|
|
Nonnull<Expression*> base_class_;
|
|
};
|
|
|
|
class AlternativeSignature : public AstNode {
|
|
public:
|
|
AlternativeSignature(SourceLocation source_loc, std::string name,
|
|
std::optional<Nonnull<TupleLiteral*>> parameters)
|
|
: AstNode(AstNodeKind::AlternativeSignature, source_loc),
|
|
name_(std::move(name)),
|
|
parameters_(parameters) {}
|
|
|
|
explicit AlternativeSignature(CloneContext& context,
|
|
const AlternativeSignature& other)
|
|
: AstNode(context, other),
|
|
name_(other.name_),
|
|
parameters_(context.Clone(other.parameters_)),
|
|
parameters_static_type_(context.Clone(other.parameters_static_type_)) {}
|
|
|
|
void Print(llvm::raw_ostream& out) const override;
|
|
void PrintID(llvm::raw_ostream& out) const override;
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromAlternativeSignature(node->kind());
|
|
}
|
|
|
|
auto name() const -> const std::string& { return name_; }
|
|
auto parameters() const -> std::optional<Nonnull<const TupleLiteral*>> {
|
|
return parameters_;
|
|
}
|
|
auto parameters() -> std::optional<Nonnull<TupleLiteral*>> {
|
|
return parameters_;
|
|
}
|
|
|
|
// The static type described by the parameters expression, if any. Cannot be
|
|
// called before type checking. This will be nullopt after type checking if
|
|
// this alternative does not have a parameter list.
|
|
auto parameters_static_type() const -> std::optional<Nonnull<const Value*>> {
|
|
return parameters_static_type_;
|
|
}
|
|
|
|
// Sets the static type of the declared entity. Can only be called once,
|
|
// during typechecking.
|
|
void set_parameters_static_type(Nonnull<const Value*> type) {
|
|
CARBON_CHECK(!parameters_static_type_.has_value());
|
|
parameters_static_type_ = type;
|
|
}
|
|
|
|
private:
|
|
std::string name_;
|
|
std::optional<Nonnull<TupleLiteral*>> parameters_;
|
|
std::optional<Nonnull<const Value*>> parameters_static_type_;
|
|
};
|
|
|
|
class ChoiceDeclaration : public Declaration {
|
|
public:
|
|
using ImplementsCarbonValueNode = void;
|
|
|
|
ChoiceDeclaration(SourceLocation source_loc, DeclaredName name,
|
|
std::optional<Nonnull<TuplePattern*>> type_params,
|
|
std::vector<Nonnull<AlternativeSignature*>> alternatives)
|
|
: Declaration(AstNodeKind::ChoiceDeclaration, source_loc),
|
|
name_(std::move(name)),
|
|
type_params_(type_params),
|
|
alternatives_(std::move(alternatives)) {}
|
|
|
|
explicit ChoiceDeclaration(CloneContext& context,
|
|
const ChoiceDeclaration& other)
|
|
: Declaration(context, other),
|
|
name_(other.name_),
|
|
type_params_(context.Clone(other.type_params_)),
|
|
alternatives_(context.Clone(other.alternatives_)) {}
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromChoiceDeclaration(node->kind());
|
|
}
|
|
|
|
auto name() const -> const DeclaredName& { return name_; }
|
|
|
|
auto type_params() const -> std::optional<Nonnull<const TuplePattern*>> {
|
|
return type_params_;
|
|
}
|
|
auto type_params() -> std::optional<Nonnull<TuplePattern*>> {
|
|
return type_params_;
|
|
}
|
|
|
|
auto alternatives() const
|
|
-> llvm::ArrayRef<Nonnull<const AlternativeSignature*>> {
|
|
return alternatives_;
|
|
}
|
|
auto alternatives() -> llvm::ArrayRef<Nonnull<AlternativeSignature*>> {
|
|
return alternatives_;
|
|
}
|
|
|
|
auto expression_category() const -> ExpressionCategory {
|
|
return ExpressionCategory::Value;
|
|
}
|
|
|
|
auto FindAlternative(std::string_view name) const
|
|
-> std::optional<const AlternativeSignature*>;
|
|
|
|
private:
|
|
DeclaredName name_;
|
|
std::optional<Nonnull<TuplePattern*>> type_params_;
|
|
std::vector<Nonnull<AlternativeSignature*>> alternatives_;
|
|
};
|
|
|
|
// Global variable definition implements the Declaration concept.
|
|
class VariableDeclaration : public Declaration {
|
|
public:
|
|
VariableDeclaration(SourceLocation source_loc,
|
|
Nonnull<BindingPattern*> binding,
|
|
std::optional<Nonnull<Expression*>> initializer,
|
|
ExpressionCategory expression_category)
|
|
: Declaration(AstNodeKind::VariableDeclaration, source_loc),
|
|
binding_(binding),
|
|
initializer_(initializer),
|
|
expression_category_(expression_category) {}
|
|
|
|
explicit VariableDeclaration(CloneContext& context,
|
|
const VariableDeclaration& other)
|
|
: Declaration(context, other),
|
|
binding_(context.Clone(other.binding_)),
|
|
initializer_(context.Clone(other.initializer_)),
|
|
expression_category_(other.expression_category_) {}
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromVariableDeclaration(node->kind());
|
|
}
|
|
|
|
auto binding() const -> const BindingPattern& { return *binding_; }
|
|
auto binding() -> BindingPattern& { return *binding_; }
|
|
auto initializer() const -> const Expression& { return **initializer_; }
|
|
auto initializer() -> Expression& { return **initializer_; }
|
|
auto expression_category() const -> ExpressionCategory {
|
|
return expression_category_;
|
|
}
|
|
|
|
auto has_initializer() const -> bool { return initializer_.has_value(); }
|
|
|
|
// Can only be called by type-checking, if a conversion was required.
|
|
void set_initializer(Nonnull<Expression*> initializer) {
|
|
CARBON_CHECK(has_initializer()) << "should not add a new initializer";
|
|
initializer_ = initializer;
|
|
}
|
|
|
|
private:
|
|
Nonnull<BindingPattern*> binding_;
|
|
std::optional<Nonnull<Expression*>> initializer_;
|
|
ExpressionCategory expression_category_;
|
|
};
|
|
|
|
// Base class for constraint and interface declarations. Interfaces and named
|
|
// constraints behave the same in most respects, but only interfaces can
|
|
// introduce new associated functions and constants.
|
|
class ConstraintTypeDeclaration : public Declaration {
|
|
public:
|
|
using ImplementsCarbonValueNode = void;
|
|
|
|
ConstraintTypeDeclaration(AstNodeKind kind, Nonnull<Arena*> arena,
|
|
SourceLocation source_loc, DeclaredName name,
|
|
std::optional<Nonnull<TuplePattern*>> params,
|
|
std::vector<Nonnull<Declaration*>> members)
|
|
: Declaration(kind, source_loc),
|
|
name_(std::move(name)),
|
|
params_(params),
|
|
self_type_(arena->New<SelfDeclaration>(source_loc)),
|
|
members_(std::move(members)) {
|
|
// `interface X` has `Self:! X`.
|
|
auto* self_type_ref = arena->New<IdentifierExpression>(
|
|
source_loc, std::string(name_.inner_name()));
|
|
self_type_ref->set_value_node(self_type_);
|
|
self_ = arena->New<GenericBinding>(source_loc, "Self", self_type_ref,
|
|
GenericBinding::BindingKind::Checked);
|
|
}
|
|
|
|
explicit ConstraintTypeDeclaration(CloneContext& context,
|
|
const ConstraintTypeDeclaration& other);
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromConstraintTypeDeclaration(node->kind());
|
|
}
|
|
|
|
auto name() const -> const DeclaredName& { return name_; }
|
|
auto params() const -> std::optional<Nonnull<const TuplePattern*>> {
|
|
return params_;
|
|
}
|
|
auto params() -> std::optional<Nonnull<TuplePattern*>> { return params_; }
|
|
// Get the type of `Self`, which is a reference to the interface itself, with
|
|
// parameters mapped to their values. For example, in `interface X(T:!
|
|
// type)`, the self type is `X(T)`.
|
|
auto self_type() const -> Nonnull<const SelfDeclaration*> {
|
|
return self_type_;
|
|
}
|
|
auto self_type() -> Nonnull<SelfDeclaration*> { return self_type_; }
|
|
auto self() const -> Nonnull<const GenericBinding*> { return self_; }
|
|
auto self() -> Nonnull<GenericBinding*> { return self_; }
|
|
auto members() const -> llvm::ArrayRef<Nonnull<Declaration*>> {
|
|
return members_;
|
|
}
|
|
|
|
auto expression_category() const -> ExpressionCategory {
|
|
return ExpressionCategory::Value;
|
|
}
|
|
|
|
// Get the constraint type corresponding to this interface, or nullopt if
|
|
// this interface is incomplete.
|
|
auto constraint_type() const
|
|
-> std::optional<Nonnull<const ConstraintType*>> {
|
|
return constraint_type_;
|
|
}
|
|
|
|
// Set the constraint type corresponding to this interface. Can only be set
|
|
// once, by type-checking.
|
|
void set_constraint_type(Nonnull<const ConstraintType*> constraint_type) {
|
|
CARBON_CHECK(!constraint_type_);
|
|
constraint_type_ = constraint_type;
|
|
}
|
|
|
|
private:
|
|
DeclaredName name_;
|
|
std::optional<Nonnull<TuplePattern*>> params_;
|
|
Nonnull<SelfDeclaration*> self_type_;
|
|
Nonnull<GenericBinding*> self_;
|
|
std::vector<Nonnull<Declaration*>> members_;
|
|
std::optional<Nonnull<const ConstraintType*>> constraint_type_;
|
|
};
|
|
|
|
// A `interface` declaration.
|
|
class InterfaceDeclaration : public ConstraintTypeDeclaration {
|
|
public:
|
|
using ImplementsCarbonValueNode = void;
|
|
|
|
InterfaceDeclaration(Nonnull<Arena*> arena, SourceLocation source_loc,
|
|
DeclaredName name,
|
|
std::optional<Nonnull<TuplePattern*>> params,
|
|
std::vector<Nonnull<Declaration*>> members)
|
|
: ConstraintTypeDeclaration(AstNodeKind::InterfaceDeclaration, arena,
|
|
source_loc, std::move(name), params,
|
|
std::move(members)) {}
|
|
|
|
explicit InterfaceDeclaration(CloneContext& context,
|
|
const InterfaceDeclaration& other)
|
|
: ConstraintTypeDeclaration(context, other) {}
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromInterfaceDeclaration(node->kind());
|
|
}
|
|
};
|
|
|
|
// A `constraint` declaration, such as `constraint X { impl as Y; }`.
|
|
class ConstraintDeclaration : public ConstraintTypeDeclaration {
|
|
public:
|
|
using ImplementsCarbonValueNode = void;
|
|
|
|
ConstraintDeclaration(Nonnull<Arena*> arena, SourceLocation source_loc,
|
|
DeclaredName name,
|
|
std::optional<Nonnull<TuplePattern*>> params,
|
|
std::vector<Nonnull<Declaration*>> members)
|
|
: ConstraintTypeDeclaration(AstNodeKind::ConstraintDeclaration, arena,
|
|
source_loc, std::move(name), params,
|
|
std::move(members)) {}
|
|
|
|
explicit ConstraintDeclaration(CloneContext& context,
|
|
const ConstraintDeclaration& other)
|
|
: ConstraintTypeDeclaration(context, other) {}
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromConstraintDeclaration(node->kind());
|
|
}
|
|
};
|
|
|
|
// An `extends` declaration in an interface.
|
|
class InterfaceExtendDeclaration : public Declaration {
|
|
public:
|
|
InterfaceExtendDeclaration(SourceLocation source_loc,
|
|
Nonnull<Expression*> base)
|
|
: Declaration(AstNodeKind::InterfaceExtendDeclaration, source_loc),
|
|
base_(base) {}
|
|
|
|
explicit InterfaceExtendDeclaration(CloneContext& context,
|
|
const InterfaceExtendDeclaration& other)
|
|
: Declaration(context, other), base_(context.Clone(other.base_)) {}
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromInterfaceExtendDeclaration(node->kind());
|
|
}
|
|
|
|
auto base() const -> const Expression* { return base_; }
|
|
auto base() -> Expression* { return base_; }
|
|
|
|
private:
|
|
Nonnull<Expression*> base_;
|
|
};
|
|
|
|
// A `require ... impls` declaration in an interface.
|
|
class InterfaceRequireDeclaration : public Declaration {
|
|
public:
|
|
InterfaceRequireDeclaration(SourceLocation source_loc,
|
|
Nonnull<Expression*> impl_type,
|
|
Nonnull<Expression*> constraint)
|
|
: Declaration(AstNodeKind::InterfaceRequireDeclaration, source_loc),
|
|
impl_type_(impl_type),
|
|
constraint_(constraint) {}
|
|
|
|
explicit InterfaceRequireDeclaration(CloneContext& context,
|
|
const InterfaceRequireDeclaration& other)
|
|
: Declaration(context, other),
|
|
impl_type_(context.Clone(other.impl_type_)),
|
|
constraint_(context.Clone(other.constraint_)) {}
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromInterfaceRequireDeclaration(node->kind());
|
|
}
|
|
|
|
auto impl_type() const -> const Expression* { return impl_type_; }
|
|
auto impl_type() -> Expression* { return impl_type_; }
|
|
|
|
auto constraint() const -> const Expression* { return constraint_; }
|
|
auto constraint() -> Expression* { return constraint_; }
|
|
|
|
private:
|
|
Nonnull<Expression*> impl_type_;
|
|
Nonnull<Expression*> constraint_;
|
|
};
|
|
|
|
class AssociatedConstantDeclaration : public Declaration {
|
|
public:
|
|
using ImplementsCarbonValueNode = void;
|
|
|
|
AssociatedConstantDeclaration(SourceLocation source_loc,
|
|
Nonnull<GenericBinding*> binding)
|
|
: Declaration(AstNodeKind::AssociatedConstantDeclaration, source_loc),
|
|
binding_(binding) {}
|
|
|
|
explicit AssociatedConstantDeclaration(
|
|
CloneContext& context, const AssociatedConstantDeclaration& other)
|
|
: Declaration(context, other), binding_(context.Clone(other.binding_)) {}
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromAssociatedConstantDeclaration(node->kind());
|
|
}
|
|
|
|
auto binding() const -> const GenericBinding& { return *binding_; }
|
|
auto binding() -> GenericBinding& { return *binding_; }
|
|
|
|
auto expression_category() const -> ExpressionCategory {
|
|
return ExpressionCategory::Value;
|
|
}
|
|
|
|
private:
|
|
Nonnull<GenericBinding*> binding_;
|
|
};
|
|
|
|
enum class ImplKind { InternalImpl, ExternalImpl };
|
|
|
|
class ImplDeclaration : public Declaration {
|
|
public:
|
|
static auto Create(Nonnull<Arena*> arena, SourceLocation source_loc,
|
|
ImplKind kind, Nonnull<Expression*> impl_type,
|
|
Nonnull<Expression*> interface,
|
|
std::vector<Nonnull<AstNode*>> deduced_params,
|
|
std::vector<Nonnull<Declaration*>> members)
|
|
-> ErrorOr<Nonnull<ImplDeclaration*>>;
|
|
|
|
// Use `Create` instead.
|
|
ImplDeclaration(SourceLocation source_loc, ImplKind kind,
|
|
Nonnull<Expression*> impl_type,
|
|
Nonnull<SelfDeclaration*> self_decl,
|
|
Nonnull<Expression*> interface,
|
|
std::vector<Nonnull<GenericBinding*>> deduced_params,
|
|
std::vector<Nonnull<Declaration*>> members)
|
|
: Declaration(AstNodeKind::ImplDeclaration, source_loc),
|
|
kind_(kind),
|
|
deduced_parameters_(std::move(deduced_params)),
|
|
impl_type_(impl_type),
|
|
self_decl_(self_decl),
|
|
interface_(interface),
|
|
members_(std::move(members)) {}
|
|
|
|
explicit ImplDeclaration(CloneContext& context, const ImplDeclaration& other);
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromImplDeclaration(node->kind());
|
|
}
|
|
// Return whether this is an external or internal impl.
|
|
auto kind() const -> ImplKind { return kind_; }
|
|
// Return the type that is doing the implementing.
|
|
auto impl_type() const -> Nonnull<Expression*> { return impl_type_; }
|
|
// Return the interface that is being implemented.
|
|
auto interface() const -> const Expression& { return *interface_; }
|
|
auto interface() -> Expression& { return *interface_; }
|
|
void set_constraint_type(Nonnull<const ConstraintType*> constraint_type) {
|
|
constraint_type_ = constraint_type;
|
|
}
|
|
auto constraint_type() const -> Nonnull<const ConstraintType*> {
|
|
return *constraint_type_;
|
|
}
|
|
// Returns the deduced parameters specified on the impl declaration. This
|
|
// does not include any generic parameters from enclosing scopes.
|
|
auto deduced_parameters() const
|
|
-> llvm::ArrayRef<Nonnull<const GenericBinding*>> {
|
|
return deduced_parameters_;
|
|
}
|
|
auto deduced_parameters() -> llvm::ArrayRef<Nonnull<GenericBinding*>> {
|
|
return deduced_parameters_;
|
|
}
|
|
auto members() const -> llvm::ArrayRef<Nonnull<Declaration*>> {
|
|
return members_;
|
|
}
|
|
auto expression_category() const -> ExpressionCategory {
|
|
return ExpressionCategory::Value;
|
|
}
|
|
void set_impl_bindings(llvm::ArrayRef<Nonnull<const ImplBinding*>> imps) {
|
|
impl_bindings_ = imps;
|
|
}
|
|
auto impl_bindings() const -> llvm::ArrayRef<Nonnull<const ImplBinding*>> {
|
|
return impl_bindings_;
|
|
}
|
|
auto self() const -> Nonnull<const SelfDeclaration*> { return self_decl_; }
|
|
auto self() -> Nonnull<SelfDeclaration*> { return self_decl_; }
|
|
|
|
// Set the enclosing match_first declaration. Should only be called once,
|
|
// during type-checking.
|
|
void set_match_first(Nonnull<const MatchFirstDeclaration*> match_first) {
|
|
match_first_ = match_first;
|
|
}
|
|
// Get the enclosing match_first declaration, if any exists.
|
|
auto match_first() const
|
|
-> std::optional<Nonnull<const MatchFirstDeclaration*>> {
|
|
return match_first_;
|
|
}
|
|
|
|
private:
|
|
ImplKind kind_;
|
|
std::vector<Nonnull<GenericBinding*>> deduced_parameters_;
|
|
Nonnull<Expression*> impl_type_;
|
|
Nonnull<SelfDeclaration*> self_decl_;
|
|
Nonnull<Expression*> interface_;
|
|
std::optional<Nonnull<const ConstraintType*>> constraint_type_;
|
|
std::vector<Nonnull<Declaration*>> members_;
|
|
std::vector<Nonnull<const ImplBinding*>> impl_bindings_;
|
|
std::optional<Nonnull<const MatchFirstDeclaration*>> match_first_;
|
|
};
|
|
|
|
class MatchFirstDeclaration : public Declaration {
|
|
public:
|
|
MatchFirstDeclaration(
|
|
SourceLocation source_loc,
|
|
std::vector<Nonnull<ImplDeclaration*>> impl_declarations)
|
|
: Declaration(AstNodeKind::MatchFirstDeclaration, source_loc),
|
|
impl_declarations_(std::move(impl_declarations)) {}
|
|
|
|
explicit MatchFirstDeclaration(CloneContext& context,
|
|
const MatchFirstDeclaration& other)
|
|
: Declaration(context, other),
|
|
impl_declarations_(context.Clone(other.impl_declarations_)) {}
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromMatchFirstDeclaration(node->kind());
|
|
}
|
|
|
|
auto impl_declarations() const
|
|
-> llvm::ArrayRef<Nonnull<const ImplDeclaration*>> {
|
|
return impl_declarations_;
|
|
}
|
|
auto impl_declarations() -> llvm::ArrayRef<Nonnull<ImplDeclaration*>> {
|
|
return impl_declarations_;
|
|
}
|
|
|
|
private:
|
|
std::vector<Nonnull<ImplDeclaration*>> impl_declarations_;
|
|
};
|
|
|
|
class AliasDeclaration : public Declaration {
|
|
public:
|
|
using ImplementsCarbonValueNode = void;
|
|
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explicit AliasDeclaration(SourceLocation source_loc, DeclaredName name,
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Nonnull<Expression*> target)
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: Declaration(AstNodeKind::AliasDeclaration, source_loc),
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name_(std::move(name)),
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target_(target) {}
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explicit AliasDeclaration(CloneContext& context,
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const AliasDeclaration& other)
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: Declaration(context, other),
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name_(other.name_),
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target_(context.Clone(other.target_)) {}
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static auto classof(const AstNode* node) -> bool {
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return InheritsFromAliasDeclaration(node->kind());
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}
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auto name() const -> const DeclaredName& { return name_; }
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auto target() const -> const Expression& { return *target_; }
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auto target() -> Expression& { return *target_; }
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auto expression_category() const -> ExpressionCategory {
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return ExpressionCategory::Value;
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}
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// Sets the resolved declaration of alias target. Should only be called once,
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// during name resolution.
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void set_resolved_declaration(Nonnull<const Declaration*> decl) {
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CARBON_CHECK(!resolved_declaration_.has_value());
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resolved_declaration_ = decl;
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}
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// Get the resolved declaration of alias target, if any exists.
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auto resolved_declaration() const
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-> std::optional<Nonnull<const Declaration*>> {
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return resolved_declaration_;
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}
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private:
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DeclaredName name_;
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Nonnull<Expression*> target_;
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std::optional<Nonnull<const Declaration*>> resolved_declaration_;
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};
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// Return the unqualified name of a declaration, if it has one.
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auto GetName(const Declaration&) -> std::optional<std::string_view>;
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} // namespace Carbon
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#endif // CARBON_EXPLORER_AST_DECLARATION_H_
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