mirror of
https://github.com/carbon-language/carbon-lang.git
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google-readability-function-size and readability-function-size were _both_ triggering on TypeCheckExp. It looks like the Google version may be a subset of the general version, so I've disabled the Google version while keeping the general version and adding a NOLINT for it. I manually removed the `const` in cases like `Nonnull<const VTable* const>` based on the readability-const-return-type warning. i.e., where a return type is a pointer, the `const` isn't meaningful and the tidy check was warning about that. Added a NOLINT for misc-definitions-in-headers on IsRecursivelyTransformable. I think that's the right choice for the `constexpr`, the warning didn't feel accurate and may be getting confused by the templating. I changed the structure of `carbon_files` in the fuzzer because the `new` was causing a warning about exceptions. However, also disabling bugprone-exception-escape because it's what was flagging this and it's not really a helpful warning. Other changes were automated. Co-authored-by: Richard Smith <richard@metafoo.co.uk>
453 lines
14 KiB
C++
453 lines
14 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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#include "explorer/ast/declaration.h"
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#include "llvm/ADT/StringExtras.h"
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#include "llvm/Support/Casting.h"
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namespace Carbon {
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using llvm::cast;
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Declaration::~Declaration() = default;
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void Declaration::Print(llvm::raw_ostream& out) const {
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switch (kind()) {
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case DeclarationKind::NamespaceDeclaration:
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PrintID(out);
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out << ";";
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break;
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case DeclarationKind::InterfaceDeclaration:
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case DeclarationKind::ConstraintDeclaration: {
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const auto& iface_decl = cast<ConstraintTypeDeclaration>(*this);
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PrintID(out);
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out << " {\n";
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for (Nonnull<Declaration*> m : iface_decl.members()) {
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out << *m;
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}
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out << "}\n";
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break;
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}
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case DeclarationKind::ImplDeclaration: {
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const auto& impl_decl = cast<ImplDeclaration>(*this);
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PrintID(out);
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out << " {\n";
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for (Nonnull<Declaration*> m : impl_decl.members()) {
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out << *m;
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}
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out << "}\n";
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break;
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}
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case DeclarationKind::MatchFirstDeclaration: {
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const auto& match_first_decl = cast<MatchFirstDeclaration>(*this);
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PrintID(out);
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out << " {\n";
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for (Nonnull<const ImplDeclaration*> m : match_first_decl.impls()) {
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out << *m;
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}
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out << "}\n";
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break;
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}
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case DeclarationKind::FunctionDeclaration:
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cast<FunctionDeclaration>(*this).PrintDepth(-1, out);
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break;
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case DeclarationKind::DestructorDeclaration:
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cast<DestructorDeclaration>(*this).PrintDepth(-1, out);
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break;
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case DeclarationKind::ClassDeclaration: {
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const auto& class_decl = cast<ClassDeclaration>(*this);
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PrintID(out);
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if (class_decl.type_params().has_value()) {
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out << **class_decl.type_params();
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}
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out << " {\n";
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for (Nonnull<Declaration*> m : class_decl.members()) {
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out << *m;
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}
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out << "}\n";
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break;
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}
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case DeclarationKind::MixinDeclaration: {
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const auto& mixin_decl = cast<MixinDeclaration>(*this);
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PrintID(out);
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out << "{\n";
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for (Nonnull<Declaration*> m : mixin_decl.members()) {
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out << *m;
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}
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out << "}\n";
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break;
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}
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case DeclarationKind::MixDeclaration: {
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const auto& mix_decl = cast<MixDeclaration>(*this);
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PrintID(out);
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out << mix_decl.mixin() << ";";
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break;
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}
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case DeclarationKind::ChoiceDeclaration: {
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const auto& choice = cast<ChoiceDeclaration>(*this);
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PrintID(out);
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out << " {\n";
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for (Nonnull<const AlternativeSignature*> alt : choice.alternatives()) {
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out << *alt << ";\n";
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}
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out << "}\n";
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break;
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}
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case DeclarationKind::VariableDeclaration: {
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const auto& var = cast<VariableDeclaration>(*this);
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PrintID(out);
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if (var.has_initializer()) {
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out << " = " << var.initializer();
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}
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out << ";\n";
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break;
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}
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case DeclarationKind::InterfaceExtendsDeclaration:
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case DeclarationKind::InterfaceImplDeclaration:
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case DeclarationKind::AssociatedConstantDeclaration: {
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PrintID(out);
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out << ";\n";
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break;
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}
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case DeclarationKind::SelfDeclaration: {
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out << "Self";
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break;
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}
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case DeclarationKind::AliasDeclaration: {
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const auto& alias = cast<AliasDeclaration>(*this);
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PrintID(out);
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out << " = " << alias.target() << ";\n";
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break;
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}
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}
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}
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void Declaration::PrintID(llvm::raw_ostream& out) const {
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switch (kind()) {
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case DeclarationKind::NamespaceDeclaration:
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out << "namespace " << cast<NamespaceDeclaration>(*this).name();
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break;
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case DeclarationKind::InterfaceDeclaration: {
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const auto& iface_decl = cast<InterfaceDeclaration>(*this);
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out << "interface " << iface_decl.name();
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break;
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}
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case DeclarationKind::ConstraintDeclaration: {
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const auto& constraint_decl = cast<ConstraintDeclaration>(*this);
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out << "constraint " << constraint_decl.name();
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break;
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}
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case DeclarationKind::ImplDeclaration: {
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const auto& impl_decl = cast<ImplDeclaration>(*this);
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switch (impl_decl.kind()) {
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case ImplKind::InternalImpl:
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break;
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case ImplKind::ExternalImpl:
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out << "external ";
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break;
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}
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out << "impl " << *impl_decl.impl_type() << " as "
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<< impl_decl.interface();
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break;
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}
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case DeclarationKind::MatchFirstDeclaration:
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out << "match_first";
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break;
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case DeclarationKind::FunctionDeclaration:
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out << "fn " << cast<FunctionDeclaration>(*this).name();
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break;
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case DeclarationKind::DestructorDeclaration:
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out << *GetName(*this);
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break;
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case DeclarationKind::ClassDeclaration: {
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const auto& class_decl = cast<ClassDeclaration>(*this);
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out << "class " << class_decl.name();
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break;
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}
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case DeclarationKind::MixinDeclaration: {
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const auto& mixin_decl = cast<MixinDeclaration>(*this);
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out << "__mixin " << mixin_decl.name();
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if (mixin_decl.self()->type().kind() != ExpressionKind::TypeTypeLiteral) {
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out << " for " << mixin_decl.self()->type();
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}
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break;
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}
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case DeclarationKind::MixDeclaration: {
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out << "__mix ";
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break;
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}
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case DeclarationKind::ChoiceDeclaration: {
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const auto& choice = cast<ChoiceDeclaration>(*this);
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out << "choice " << choice.name();
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break;
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}
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case DeclarationKind::VariableDeclaration: {
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const auto& var = cast<VariableDeclaration>(*this);
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out << "var " << var.binding();
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break;
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}
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case DeclarationKind::InterfaceExtendsDeclaration: {
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const auto& extends = cast<InterfaceExtendsDeclaration>(*this);
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out << "extends " << *extends.base();
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break;
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}
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case DeclarationKind::InterfaceImplDeclaration: {
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const auto& impl = cast<InterfaceImplDeclaration>(*this);
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out << "impl " << *impl.impl_type() << " as " << *impl.constraint();
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break;
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}
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case DeclarationKind::AssociatedConstantDeclaration: {
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const auto& let = cast<AssociatedConstantDeclaration>(*this);
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out << "let " << let.binding();
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break;
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}
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case DeclarationKind::SelfDeclaration: {
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out << "Self";
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break;
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}
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case DeclarationKind::AliasDeclaration: {
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const auto& alias = cast<AliasDeclaration>(*this);
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out << "alias " << alias.name();
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break;
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}
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}
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}
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void DeclaredName::Print(llvm::raw_ostream& out) const {
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for (const auto& [loc, name] : qualifiers()) {
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out << name << ".";
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}
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out << inner_name();
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}
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auto GetName(const Declaration& declaration)
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-> std::optional<std::string_view> {
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switch (declaration.kind()) {
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case DeclarationKind::NamespaceDeclaration:
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return cast<NamespaceDeclaration>(declaration).name().inner_name();
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case DeclarationKind::FunctionDeclaration:
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return cast<FunctionDeclaration>(declaration).name().inner_name();
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case DeclarationKind::DestructorDeclaration:
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return "destructor";
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case DeclarationKind::ClassDeclaration:
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return cast<ClassDeclaration>(declaration).name().inner_name();
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case DeclarationKind::MixinDeclaration: {
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return cast<MixinDeclaration>(declaration).name().inner_name();
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}
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case DeclarationKind::MixDeclaration: {
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return std::nullopt;
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}
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case DeclarationKind::ChoiceDeclaration:
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return cast<ChoiceDeclaration>(declaration).name().inner_name();
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case DeclarationKind::InterfaceDeclaration:
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case DeclarationKind::ConstraintDeclaration:
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return cast<ConstraintTypeDeclaration>(declaration).name().inner_name();
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case DeclarationKind::VariableDeclaration:
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return cast<VariableDeclaration>(declaration).binding().name();
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case DeclarationKind::AssociatedConstantDeclaration:
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return cast<AssociatedConstantDeclaration>(declaration).binding().name();
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case DeclarationKind::InterfaceExtendsDeclaration:
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case DeclarationKind::InterfaceImplDeclaration:
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case DeclarationKind::ImplDeclaration:
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case DeclarationKind::MatchFirstDeclaration:
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return std::nullopt;
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case DeclarationKind::SelfDeclaration:
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return SelfDeclaration::name();
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case DeclarationKind::AliasDeclaration: {
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return cast<AliasDeclaration>(declaration).name().inner_name();
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}
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}
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}
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void GenericBinding::Print(llvm::raw_ostream& out) const {
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out << name() << ":! " << type();
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}
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void GenericBinding::PrintID(llvm::raw_ostream& out) const { out << name(); }
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void ReturnTerm::Print(llvm::raw_ostream& out) const {
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switch (kind_) {
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case ReturnKind::Omitted:
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return;
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case ReturnKind::Auto:
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out << "-> auto";
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return;
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case ReturnKind::Expression:
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CARBON_CHECK(type_expression_.has_value());
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out << "-> " << **type_expression_;
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return;
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}
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}
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namespace {
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// The deduced parameters of a function declaration.
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struct DeducedParameters {
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// The `self` parameter, if any.
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std::optional<Nonnull<Pattern*>> self_pattern;
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// All other deduced parameters.
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std::vector<Nonnull<GenericBinding*>> resolved_params;
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};
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// Split the `self` pattern (if any) out of `deduced_params`.
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auto SplitDeducedParameters(
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SourceLocation source_loc,
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const std::vector<Nonnull<AstNode*>>& deduced_params)
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-> ErrorOr<DeducedParameters> {
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DeducedParameters result;
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for (Nonnull<AstNode*> param : deduced_params) {
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switch (param->kind()) {
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case AstNodeKind::GenericBinding:
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result.resolved_params.push_back(&cast<GenericBinding>(*param));
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break;
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case AstNodeKind::BindingPattern: {
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Nonnull<BindingPattern*> binding = &cast<BindingPattern>(*param);
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if (binding->name() != "self") {
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return ProgramError(source_loc)
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<< "illegal binding pattern in implicit parameter list";
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}
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if (result.self_pattern.has_value()) {
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return ProgramError(source_loc)
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<< "parameter list cannot contain more than one `self` "
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"parameter";
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}
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result.self_pattern = binding;
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break;
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}
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case AstNodeKind::AddrPattern: {
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Nonnull<AddrPattern*> addr_pattern = &cast<AddrPattern>(*param);
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Nonnull<BindingPattern*> binding =
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&cast<BindingPattern>(addr_pattern->binding());
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if (binding->name() != "self") {
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return ProgramError(source_loc)
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<< "illegal binding pattern in implicit parameter list";
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}
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if (result.self_pattern.has_value()) {
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return ProgramError(source_loc)
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<< "parameter list cannot contain more than one `self` "
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"parameter";
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}
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result.self_pattern = addr_pattern;
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break;
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}
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default:
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return ProgramError(source_loc)
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<< "illegal AST node in implicit parameter list";
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}
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}
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return result;
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}
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} // namespace
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auto DestructorDeclaration::CreateDestructor(
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Nonnull<Arena*> arena, SourceLocation source_loc,
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std::vector<Nonnull<AstNode*>> deduced_params,
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Nonnull<TuplePattern*> param_pattern, ReturnTerm return_term,
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std::optional<Nonnull<Block*>> body)
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-> ErrorOr<Nonnull<DestructorDeclaration*>> {
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DeducedParameters split_params;
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CARBON_ASSIGN_OR_RETURN(split_params,
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SplitDeducedParameters(source_loc, deduced_params));
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return arena->New<DestructorDeclaration>(
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source_loc, std::move(split_params.resolved_params),
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split_params.self_pattern, param_pattern, return_term, body);
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}
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auto FunctionDeclaration::Create(Nonnull<Arena*> arena,
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SourceLocation source_loc, 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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DeducedParameters split_params;
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CARBON_ASSIGN_OR_RETURN(split_params,
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SplitDeducedParameters(source_loc, deduced_params));
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return arena->New<FunctionDeclaration>(
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source_loc, std::move(name), std::move(split_params.resolved_params),
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split_params.self_pattern, param_pattern, return_term, body,
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virt_override);
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}
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void CallableDeclaration::PrintDepth(int depth, llvm::raw_ostream& out) const {
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auto name = GetName(*this);
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CARBON_CHECK(name) << "Unexpected missing name for `" << *this << "`.";
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out << "fn " << *name << " ";
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if (!deduced_parameters_.empty()) {
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out << "[";
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llvm::ListSeparator sep;
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for (Nonnull<const GenericBinding*> deduced : deduced_parameters_) {
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out << sep << *deduced;
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}
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out << "]";
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}
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out << *param_pattern_ << return_term_;
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if (body_) {
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out << " {\n";
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(*body_)->PrintDepth(depth, out);
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out << "\n}\n";
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} else {
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out << ";\n";
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}
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}
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auto ImplDeclaration::Create(Nonnull<Arena*> arena, SourceLocation source_loc,
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ImplKind kind, Nonnull<Expression*> impl_type,
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Nonnull<Expression*> interface,
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std::vector<Nonnull<AstNode*>> deduced_params,
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std::vector<Nonnull<Declaration*>> members)
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-> ErrorOr<Nonnull<ImplDeclaration*>> {
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std::vector<Nonnull<GenericBinding*>> resolved_params;
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for (Nonnull<AstNode*> param : deduced_params) {
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switch (param->kind()) {
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case AstNodeKind::GenericBinding:
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resolved_params.push_back(&cast<GenericBinding>(*param));
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break;
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default:
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return ProgramError(source_loc)
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<< "illegal AST node in implicit parameter list of impl";
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}
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}
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Nonnull<SelfDeclaration*> self_decl =
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arena->New<SelfDeclaration>(impl_type->source_loc());
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return arena->New<ImplDeclaration>(source_loc, kind, impl_type, self_decl,
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interface, resolved_params, members);
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}
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void AlternativeSignature::Print(llvm::raw_ostream& out) const {
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out << "alt " << name();
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if (auto params = parameters()) {
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out << **params;
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}
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}
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void AlternativeSignature::PrintID(llvm::raw_ostream& out) const {
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out << name();
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}
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auto ChoiceDeclaration::FindAlternative(std::string_view name) const
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-> std::optional<const AlternativeSignature*> {
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for (const auto* alt : alternatives()) {
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if (alt->name() == name) {
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return alt;
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}
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}
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return std::nullopt;
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}
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} // namespace Carbon
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