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https://github.com/carbon-language/carbon-lang.git
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380 lines
14 KiB
C++
380 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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#ifndef CARBON_TOOLCHAIN_SEMANTICS_SEMANTICS_NODE_H_
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#define CARBON_TOOLCHAIN_SEMANTICS_SEMANTICS_NODE_H_
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#include <cstdint>
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#include "common/check.h"
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#include "common/ostream.h"
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#include "toolchain/parser/parse_tree.h"
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#include "toolchain/semantics/semantics_builtin_kind.h"
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#include "toolchain/semantics/semantics_node_kind.h"
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namespace Carbon {
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// The ID of a node.
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struct SemanticsNodeId : public IndexBase {
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// An explicitly invalid node ID.
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static const SemanticsNodeId Invalid;
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// Builtin node IDs.
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#define CARBON_SEMANTICS_BUILTIN_KIND_NAME(Name) \
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static const SemanticsNodeId Builtin##Name;
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#include "toolchain/semantics/semantics_builtin_kind.def"
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using IndexBase::IndexBase;
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auto Print(llvm::raw_ostream& out) const -> void {
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out << "node";
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if (!is_valid()) {
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IndexBase::Print(out);
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} else if (index < SemanticsBuiltinKind::ValidCount) {
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out << SemanticsBuiltinKind::FromInt(index);
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} else {
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// Use the `+` as a small reminder that this is a delta, rather than an
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// absolute index.
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out << "+" << index - SemanticsBuiltinKind::ValidCount;
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}
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}
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};
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constexpr SemanticsNodeId SemanticsNodeId::Invalid =
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SemanticsNodeId(SemanticsNodeId::InvalidIndex);
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// Uses the cross-reference node ID for a builtin. This relies on SemanticsIR
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// guarantees for builtin cross-reference placement.
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#define CARBON_SEMANTICS_BUILTIN_KIND_NAME(Name) \
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constexpr SemanticsNodeId SemanticsNodeId::Builtin##Name = \
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SemanticsNodeId(SemanticsBuiltinKind::Name.AsInt());
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#include "toolchain/semantics/semantics_builtin_kind.def"
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// The ID of a call.
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struct SemanticsCallId : public IndexBase {
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using IndexBase::IndexBase;
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auto Print(llvm::raw_ostream& out) const -> void {
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out << "call";
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IndexBase::Print(out);
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}
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};
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// The ID of a callable, such as a function.
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struct SemanticsCallableId : public IndexBase {
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using IndexBase::IndexBase;
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auto Print(llvm::raw_ostream& out) const -> void {
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out << "callable";
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IndexBase::Print(out);
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}
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};
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// The ID of a cross-referenced IR.
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struct SemanticsCrossReferenceIRId : public IndexBase {
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using IndexBase::IndexBase;
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auto Print(llvm::raw_ostream& out) const -> void {
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out << "ir";
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IndexBase::Print(out);
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}
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};
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// The ID of an integer literal.
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struct SemanticsIntegerLiteralId : public IndexBase {
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using IndexBase::IndexBase;
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auto Print(llvm::raw_ostream& out) const -> void {
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out << "int";
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IndexBase::Print(out);
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}
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};
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// The ID of a node block.
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struct SemanticsNodeBlockId : public IndexBase {
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// All SemanticsIR instances must provide the 0th node block as empty.
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static const SemanticsNodeBlockId Empty;
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// An explicitly invalid ID.
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static const SemanticsNodeBlockId Invalid;
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using IndexBase::IndexBase;
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auto Print(llvm::raw_ostream& out) const -> void {
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out << "block";
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IndexBase::Print(out);
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}
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};
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constexpr SemanticsNodeBlockId SemanticsNodeBlockId::Empty =
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SemanticsNodeBlockId(0);
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constexpr SemanticsNodeBlockId SemanticsNodeBlockId::Invalid =
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SemanticsNodeBlockId(SemanticsNodeBlockId::InvalidIndex);
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// The ID of a real literal.
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struct SemanticsRealLiteralId : public IndexBase {
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using IndexBase::IndexBase;
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auto Print(llvm::raw_ostream& out) const -> void {
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out << "real";
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IndexBase::Print(out);
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}
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};
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// The ID of a string.
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struct SemanticsStringId : public IndexBase {
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using IndexBase::IndexBase;
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auto Print(llvm::raw_ostream& out) const -> void {
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out << "str";
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IndexBase::Print(out);
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}
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};
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// An index for member access.
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struct SemanticsMemberIndex : public IndexBase {
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using IndexBase::IndexBase;
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auto Print(llvm::raw_ostream& out) const -> void {
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out << "member";
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IndexBase::Print(out);
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}
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};
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// The standard structure for SemanticsNode. This is trying to provide a minimal
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// amount of information for a node:
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//
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// - parse_node for error placement.
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// - kind for run-time logic when the input Kind is unknown.
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// - type_id for quick type checking.
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// - Up to two Kind-specific members.
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//
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// For each Kind in SemanticsNodeKind, a typical flow looks like:
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//
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// - Create a `SemanticsNode` using `SemanticsNode::Kind::Make()`
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// - Access cross-Kind members using `node.type_id()` and similar.
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// - Access Kind-specific members using `node.GetAsKind()`, which depending on
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// the number of members will return one of NoArgs, a single value, or a
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// `std::pair` of values.
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// - Using the wrong `node.GetAsKind()` is a programming error, and should
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// CHECK-fail in debug modes (opt may too, but it's not an API guarantee).
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//
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// Internally, each Kind uses the `Factory*` types to provide a boilerplate
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// `Make` and `Get` methods.
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class SemanticsNode {
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public:
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struct NoArgs {};
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// Factory base classes are private, then used for public classes. This class
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// has two public and two private sections to prevent accidents.
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private:
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// Factory templates need to use the raw enum instead of the class wrapper.
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using KindTemplateEnum = Internal::SemanticsNodeKindRawEnum;
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// Provides Make and Get to support 0, 1, or 2 arguments for a SemanticsNode.
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// These are protected so that child factories can opt in to what pieces they
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// want to use.
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template <KindTemplateEnum Kind, typename... ArgTypes>
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class FactoryBase {
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protected:
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static auto Make(ParseTree::Node parse_node, SemanticsNodeId type_id,
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ArgTypes... arg_ids) -> SemanticsNode {
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return SemanticsNode(parse_node, SemanticsNodeKind::Create(Kind), type_id,
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arg_ids.index...);
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}
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static auto Get(SemanticsNode node) {
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struct Unused {};
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return GetImpl<ArgTypes..., Unused>(node);
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}
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private:
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// GetImpl handles the different return types based on ArgTypes.
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template <typename Arg0Type, typename Arg1Type, typename>
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static auto GetImpl(SemanticsNode node) -> std::pair<Arg0Type, Arg1Type> {
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CARBON_CHECK(node.kind() == Kind);
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return {Arg0Type(node.arg0_), Arg1Type(node.arg1_)};
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}
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template <typename Arg0Type, typename>
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static auto GetImpl(SemanticsNode node) -> Arg0Type {
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CARBON_CHECK(node.kind() == Kind);
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return Arg0Type(node.arg0_);
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}
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template <typename>
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static auto GetImpl(SemanticsNode node) -> NoArgs {
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CARBON_CHECK(node.kind() == Kind);
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return NoArgs();
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}
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};
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// Provide Get along with a Make that requires a type.
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template <KindTemplateEnum Kind, typename... ArgTypes>
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class Factory : public FactoryBase<Kind, ArgTypes...> {
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public:
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using FactoryBase<Kind, ArgTypes...>::Make;
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using FactoryBase<Kind, ArgTypes...>::Get;
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};
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// Provides Get along with a Make that assumes a non-changing type.
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template <KindTemplateEnum Kind, int32_t TypeIndex, typename... ArgTypes>
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class FactoryPreTyped : public FactoryBase<Kind, ArgTypes...> {
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public:
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static auto Make(ParseTree::Node parse_node, ArgTypes... args) {
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SemanticsNodeId type_id(TypeIndex);
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return FactoryBase<Kind, ArgTypes...>::Make(parse_node, type_id, args...);
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}
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using FactoryBase<Kind, ArgTypes...>::Get;
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};
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public:
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// Invalid is in the SemanticsNodeKind enum, but should never be used.
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class Invalid {
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public:
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static auto Get(SemanticsNode /*node*/) -> SemanticsNode::NoArgs {
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CARBON_FATAL() << "Invalid access";
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}
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};
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using Assign = SemanticsNode::Factory<SemanticsNodeKind::Assign,
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SemanticsNodeId /*lhs_id*/,
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SemanticsNodeId /*rhs_id*/>;
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using BinaryOperatorAdd =
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SemanticsNode::Factory<SemanticsNodeKind::BinaryOperatorAdd,
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SemanticsNodeId /*lhs_id*/,
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SemanticsNodeId /*rhs_id*/>;
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using BindName = SemanticsNode::Factory<SemanticsNodeKind::BindName,
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SemanticsStringId /*name_id*/,
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SemanticsNodeId /*node_id*/>;
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class Builtin {
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public:
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static auto Make(SemanticsBuiltinKind builtin_kind, SemanticsNodeId type_id)
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-> SemanticsNode {
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// Builtins won't have a ParseTree node associated, so we provide the
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// default invalid one.
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// This can't use the standard Make function because of the `AsInt()` cast
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// instead of `.index`.
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return SemanticsNode(ParseTree::Node::Invalid, SemanticsNodeKind::Builtin,
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type_id, builtin_kind.AsInt());
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}
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static auto Get(SemanticsNode node) -> SemanticsBuiltinKind {
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return SemanticsBuiltinKind::FromInt(node.arg0_);
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}
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};
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using Call = Factory<SemanticsNodeKind::Call, SemanticsCallId /*call_id*/,
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SemanticsCallableId /*callable_id*/>;
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using CodeBlock = FactoryPreTyped<SemanticsNodeKind::CodeBlock,
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SemanticsNodeId::InvalidIndex,
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SemanticsNodeBlockId /*node_block_id*/>;
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class CrossReference
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: public FactoryBase<SemanticsNodeKind::CrossReference,
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SemanticsCrossReferenceIRId /*ir_id*/,
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SemanticsNodeId /*node_id*/> {
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public:
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static auto Make(SemanticsNodeId type_id, SemanticsCrossReferenceIRId ir_id,
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SemanticsNodeId node_id) -> SemanticsNode {
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// A node's parse tree node must refer to a node in the current parse
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// tree. This cannot use the cross-referenced node's parse tree node
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// because it will be in a different parse tree.
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return FactoryBase::Make(ParseTree::Node::Invalid, type_id, ir_id,
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node_id);
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}
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using FactoryBase::Get;
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};
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using FunctionDeclaration = FactoryPreTyped<
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SemanticsNodeKind::FunctionDeclaration, SemanticsNodeId::InvalidIndex,
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SemanticsStringId /*name_id*/, SemanticsCallableId /*signature_id*/>;
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using FunctionDefinition = FactoryPreTyped<
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SemanticsNodeKind::FunctionDefinition, SemanticsNodeId::InvalidIndex,
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SemanticsNodeId /*decl_id*/, SemanticsNodeBlockId /*node_block_id*/>;
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using IntegerLiteral =
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FactoryPreTyped<SemanticsNodeKind::IntegerLiteral,
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SemanticsBuiltinKind::IntegerType.AsInt(),
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SemanticsIntegerLiteralId /*integer_id*/>;
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using RealLiteral =
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FactoryPreTyped<SemanticsNodeKind::RealLiteral,
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SemanticsBuiltinKind::FloatingPointType.AsInt(),
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SemanticsRealLiteralId /*real_id*/>;
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using Return =
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FactoryPreTyped<SemanticsNodeKind::Return, SemanticsNodeId::InvalidIndex>;
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using ReturnExpression =
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Factory<SemanticsNodeKind::ReturnExpression, SemanticsNodeId /*expr_id*/>;
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using StringLiteral =
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FactoryPreTyped<SemanticsNodeKind::StringLiteral,
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SemanticsBuiltinKind::StringType.AsInt(),
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SemanticsStringId /*string_id*/>;
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using StructMemberAccess = Factory<SemanticsNodeKind::StructMemberAccess,
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SemanticsNodeId /*struct_id*/,
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SemanticsMemberIndex /*ref_index*/>;
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using StructType = FactoryPreTyped<
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SemanticsNodeKind::StructType, SemanticsBuiltinKind::TypeType.AsInt(),
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SemanticsNodeBlockId /*ir_id*/, SemanticsNodeBlockId /*refs_id*/>;
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using StructTypeField = Factory<SemanticsNodeKind::StructTypeField,
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SemanticsStringId /*name_id*/>;
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using StructValue =
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Factory<SemanticsNodeKind::StructValue, SemanticsNodeBlockId /*ir_id*/,
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SemanticsNodeBlockId /*refs_id*/>;
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using StubReference =
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Factory<SemanticsNodeKind::StubReference, SemanticsNodeId /*node_id*/>;
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using VarStorage = Factory<SemanticsNodeKind::VarStorage>;
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SemanticsNode()
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: SemanticsNode(ParseTree::Node::Invalid, SemanticsNodeKind::Invalid,
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SemanticsNodeId::Invalid) {}
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// Provide `node.GetAsKind()` as an instance method for all kinds, essentially
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// an alias for`SemanticsNode::Kind::Get(node)`.
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#define CARBON_SEMANTICS_NODE_KIND(Name) \
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auto GetAs##Name() const { return Name::Get(*this); }
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#include "toolchain/semantics/semantics_node_kind.def"
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auto parse_node() const -> ParseTree::Node { return parse_node_; }
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auto kind() const -> SemanticsNodeKind { return kind_; }
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auto type_id() const -> SemanticsNodeId { return type_id_; }
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auto Print(llvm::raw_ostream& out) const -> void;
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private:
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// Builtins have peculiar construction, so they are a friend rather than using
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// a factory base class.
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friend struct SemanticsNodeForBuiltin;
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explicit SemanticsNode(ParseTree::Node parse_node, SemanticsNodeKind kind,
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SemanticsNodeId type_id,
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int32_t arg0 = SemanticsNodeId::InvalidIndex,
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int32_t arg1 = SemanticsNodeId::InvalidIndex)
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: parse_node_(parse_node),
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kind_(kind),
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type_id_(type_id),
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arg0_(arg0),
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arg1_(arg1) {}
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ParseTree::Node parse_node_;
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SemanticsNodeKind kind_;
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SemanticsNodeId type_id_;
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// Use GetAsKind to access arg0 and arg1.
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int32_t arg0_;
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int32_t arg1_;
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};
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// TODO: This is currently 20 bytes because we sometimes have 2 arguments for a
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// pair of SemanticsNodes. However, SemanticsNodeKind is 1 byte; if args
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// were 3.5 bytes, we could potentially shrink SemanticsNode by 4 bytes. This
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// may be worth investigating further.
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static_assert(sizeof(SemanticsNode) == 20, "Unexpected SemanticsNode size");
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} // namespace Carbon
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#endif // CARBON_TOOLCHAIN_SEMANTICS_SEMANTICS_NODE_H_
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