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This switches `DCHECK` and `FATAL` as well. The goal is to reduce the code size impact of these assertions so that we can keep more of them enabled. Currently, the largest cost I see from `CHECK` is not the actual check or the cold code itself, but actually the failure to inline trivial functions due to the presence of the cold code. This means that our goal isn't to reduce apparent code size in the final binary but the LLVM IR cost assessed for these routines in the inliner, which closely correlates with code size but is a bit different. As discussed in #4283, experimentation shows that a single function call with a minimal number of arguments is the lowest cost model for these. This is easily achieved with a format-string API that internally uses `llvm::formatv`. This PR is essentially the `CHECK` version of #4283. However, the check macros are substantially harder to make work with both format strings and streaming because they also take a condition. Also, unexpectedly, I was very successful at devising a regular expression based automated rewrite from the streaming to the format string form with only low 10s of manual fixes. This includes compacting strings broken up across lines, etc. Given how well that went, I've prepared this PR which just directly switches to the format string API and migrate everything to use it. One nice side-effect is that the format string approach ends up greatly simplifying the implementation here as well. This is ... *shockingly* effective. Parsing speeds up by more than 3% with just this change. And checking speeds up by **8%** with this change alone: ``` BM_CompileAPIFileDenseDecls<Phase::Parse>/256 86.3µs ± 1% 82.9µs ± 1% -3.94% (p=0.000 n=17+19) BM_CompileAPIFileDenseDecls<Phase::Parse>/1024 431µs ± 1% 415µs ± 1% -3.76% (p=0.000 n=18+19) BM_CompileAPIFileDenseDecls<Phase::Parse>/4096 1.77ms ± 1% 1.71ms ± 1% -3.18% (p=0.000 n=18+19) BM_CompileAPIFileDenseDecls<Phase::Parse>/16384 7.44ms ± 1% 7.17ms ± 2% -3.56% (p=0.000 n=18+20) BM_CompileAPIFileDenseDecls<Phase::Parse>/65536 30.7ms ± 1% 29.7ms ± 1% -3.15% (p=0.000 n=18+20) BM_CompileAPIFileDenseDecls<Phase::Parse>/262144 131ms ± 1% 127ms ± 1% -2.81% (p=0.000 n=18+18) BM_CompileAPIFileDenseDecls<Phase::Check>/256 878µs ± 2% 800µs ± 1% -8.91% (p=0.000 n=19+20) BM_CompileAPIFileDenseDecls<Phase::Check>/1024 1.88ms ± 2% 1.72ms ± 1% -8.56% (p=0.000 n=19+20) BM_CompileAPIFileDenseDecls<Phase::Check>/4096 5.78ms ± 2% 5.28ms ± 1% -8.70% (p=0.000 n=20+18) BM_CompileAPIFileDenseDecls<Phase::Check>/16384 21.9ms ± 1% 20.1ms ± 1% -8.02% (p=0.000 n=18+20) BM_CompileAPIFileDenseDecls<Phase::Check>/65536 90.4ms ± 2% 83.1ms ± 1% -8.04% (p=0.000 n=19+20) BM_CompileAPIFileDenseDecls<Phase::Check>/262144 381ms ± 2% 352ms ± 1% -7.79% (p=0.000 n=19+19) ``` --------- Co-authored-by: Richard Smith <richard@metafoo.co.uk> Co-authored-by: josh11b <15258583+josh11b@users.noreply.github.com>
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 declarations.
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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:
|
|
using ImplementsCarbonValueNode = void;
|
|
|
|
MixinDeclaration(SourceLocation source_loc, DeclaredName name,
|
|
std::optional<Nonnull<TuplePattern*>> params,
|
|
Nonnull<GenericBinding*> self,
|
|
std::vector<Nonnull<Declaration*>> members)
|
|
: Declaration(AstNodeKind::MixinDeclaration, source_loc),
|
|
name_(std::move(name)),
|
|
params_(params),
|
|
self_(self),
|
|
members_(std::move(members)) {}
|
|
|
|
explicit MixinDeclaration(CloneContext& context,
|
|
const MixinDeclaration& other)
|
|
: Declaration(context, other),
|
|
name_(other.name_),
|
|
params_(context.Clone(other.params_)),
|
|
self_(context.Clone(other.self_)),
|
|
members_(context.Clone(other.members_)) {}
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromMixinDeclaration(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_; }
|
|
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;
|
|
}
|
|
|
|
private:
|
|
DeclaredName name_;
|
|
std::optional<Nonnull<TuplePattern*>> params_;
|
|
Nonnull<GenericBinding*> self_;
|
|
std::vector<Nonnull<Declaration*>> members_;
|
|
};
|
|
|
|
// EXPERIMENTAL MIXIN FEATURE
|
|
class MixDeclaration : public Declaration {
|
|
public:
|
|
MixDeclaration(SourceLocation source_loc,
|
|
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;
|
|
|
|
explicit AliasDeclaration(SourceLocation source_loc, DeclaredName name,
|
|
Nonnull<Expression*> target)
|
|
: Declaration(AstNodeKind::AliasDeclaration, source_loc),
|
|
name_(std::move(name)),
|
|
target_(target) {}
|
|
|
|
explicit AliasDeclaration(CloneContext& context,
|
|
const AliasDeclaration& other)
|
|
: Declaration(context, other),
|
|
name_(other.name_),
|
|
target_(context.Clone(other.target_)) {}
|
|
|
|
static auto classof(const AstNode* node) -> bool {
|
|
return InheritsFromAliasDeclaration(node->kind());
|
|
}
|
|
|
|
auto name() const -> const DeclaredName& { return name_; }
|
|
auto target() const -> const Expression& { return *target_; }
|
|
auto target() -> Expression& { return *target_; }
|
|
auto expression_category() const -> ExpressionCategory {
|
|
return ExpressionCategory::Value;
|
|
}
|
|
// Sets the resolved declaration of alias target. Should only be called once,
|
|
// during name resolution.
|
|
void set_resolved_declaration(Nonnull<const Declaration*> decl) {
|
|
CARBON_CHECK(!resolved_declaration_.has_value());
|
|
resolved_declaration_ = decl;
|
|
}
|
|
// Get the resolved declaration of alias target, if any exists.
|
|
auto resolved_declaration() const
|
|
-> std::optional<Nonnull<const Declaration*>> {
|
|
return resolved_declaration_;
|
|
}
|
|
|
|
private:
|
|
DeclaredName name_;
|
|
Nonnull<Expression*> target_;
|
|
std::optional<Nonnull<const Declaration*>> resolved_declaration_;
|
|
};
|
|
|
|
// Return the unqualified name of a declaration, if it has one.
|
|
auto GetName(const Declaration&) -> std::optional<std::string_view>;
|
|
|
|
} // namespace Carbon
|
|
|
|
#endif // CARBON_EXPLORER_AST_DECLARATION_H_
|