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- Adds an empty prelude.carbon file - Imports that file in any non-Core package file - Adds --disable-prelude-import to avoid that - Adds --exclude-dump-file-prefix to be able to hide files from dumping - Used to hide core files (we can't do this by package name due to lex dumps, for example) - Restructures some tests to not rely on `i32`, particularly `alias` tests (which rely on a name ref) and tests with no prelude. I'm adding the framework for switching i32 to calling Int32 in the prelude, but I'm running into a separate error actually switching over. So that *mostly* works, but isn't quite ready for prime time. However, maybe the current state of this PR is still useful to review since it does a lot of the infrastructure work and adds the %Core everywhere?
550 lines
21 KiB
C++
550 lines
21 KiB
C++
// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
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// Exceptions. See /LICENSE for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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#ifndef CARBON_TOOLCHAIN_CHECK_NODE_STACK_H_
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#define CARBON_TOOLCHAIN_CHECK_NODE_STACK_H_
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#include "common/vlog.h"
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#include "llvm/ADT/SmallVector.h"
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#include "toolchain/parse/node_ids.h"
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#include "toolchain/parse/node_kind.h"
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#include "toolchain/parse/tree.h"
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#include "toolchain/parse/typed_nodes.h"
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#include "toolchain/sem_ir/id_kind.h"
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#include "toolchain/sem_ir/ids.h"
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namespace Carbon::Check {
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// A non-discriminated union of ID types.
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class IdUnion {
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public:
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// The default constructor forms an invalid ID.
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explicit constexpr IdUnion() : index(IdBase::InvalidIndex) {}
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template <typename IdT>
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requires SemIR::IdKind::Contains<IdT>
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explicit constexpr IdUnion(IdT id) : index(id.index) {}
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using Kind = SemIR::IdKind::RawEnumType;
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// Returns the ID given its type.
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template <typename IdT>
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requires SemIR::IdKind::Contains<IdT>
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constexpr auto As() const -> IdT {
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return IdT(index);
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}
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// Returns the ID given its kind.
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template <SemIR::IdKind::RawEnumType K>
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constexpr auto As() const -> SemIR::IdKind::TypeFor<K> {
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return As<SemIR::IdKind::TypeFor<K>>();
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}
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// Translates an ID type to the enum ID kind. Returns Invalid if `IdT` isn't
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// a type that can be stored in this union.
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template <typename IdT>
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static constexpr auto KindFor() -> Kind {
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return SemIR::IdKind::For<IdT>;
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}
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private:
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decltype(IdBase::index) index;
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};
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// The stack of parse nodes representing the current state of a Check::Context.
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// Each parse node can have an associated id of some kind (instruction,
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// instruction block, function, class, ...).
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//
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// All pushes and pops will be vlogged.
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//
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// Pop APIs will run basic verification:
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//
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// - If receiving a Parse::NodeKind, verify that the node_id being popped has
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// that kind. Similarly, if receiving a Parse::NodeCategory, make sure the
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// of the popped node_id overlaps that category.
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// - Validates the kind of id data in the node based on the kind or category of
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// the node_id.
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//
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// These should be assumed API constraints unless otherwise mentioned on a
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// method. The main exception is PopAndIgnore, which doesn't do verification.
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class NodeStack {
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public:
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explicit NodeStack(const Parse::Tree& parse_tree,
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llvm::raw_ostream* vlog_stream)
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: parse_tree_(&parse_tree), vlog_stream_(vlog_stream) {}
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// Pushes a solo parse tree node onto the stack. Used when there is no
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// IR generated by the node.
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auto Push(Parse::NodeId node_id) -> void {
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auto kind = parse_tree_->node_kind(node_id);
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CARBON_CHECK(NodeKindToIdKind(kind) == Id::Kind::None)
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<< "Parse kind expects an Id: " << kind;
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CARBON_VLOG() << "Node Push " << stack_.size() << ": " << kind
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<< " -> <none>\n";
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CARBON_CHECK(stack_.size() < (1 << 20))
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<< "Excessive stack size: likely infinite loop";
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stack_.push_back(Entry{node_id, Id()});
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}
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// Pushes a parse tree node onto the stack with an ID.
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template <typename IdT>
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auto Push(Parse::NodeId node_id, IdT id) -> void {
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auto kind = parse_tree_->node_kind(node_id);
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CARBON_CHECK(NodeKindToIdKind(kind) == Id::KindFor<IdT>())
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<< "Parse kind expected a different IdT: " << kind << " -> " << id
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<< "\n";
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CARBON_CHECK(id.is_valid())
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<< "Push called with invalid id: " << parse_tree_->node_kind(node_id);
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CARBON_VLOG() << "Node Push " << stack_.size() << ": " << kind << " -> "
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<< id << "\n";
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CARBON_CHECK(stack_.size() < (1 << 20))
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<< "Excessive stack size: likely infinite loop";
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stack_.push_back(Entry{node_id, Id(id)});
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}
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// Returns whether there is a node of the specified kind on top of the stack.
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auto PeekIs(Parse::NodeKind kind) const -> bool {
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return !stack_.empty() && PeekNodeKind() == kind;
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}
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// Returns whether there is a node of the specified kind on top of the stack.
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// Templated for consistency with other functions taking a parse node kind.
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template <const Parse::NodeKind& RequiredParseKind>
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auto PeekIs() const -> bool {
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return PeekIs(RequiredParseKind);
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}
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// Returns whether the node on the top of the stack has an overlapping
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// category.
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auto PeekIs(Parse::NodeCategory category) const -> bool {
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return !stack_.empty() && !!(PeekNodeKind().category() & category);
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}
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// Returns whether the node on the top of the stack has an overlapping
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// category. Templated for consistency with other functions taking a parse
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// node category.
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template <Parse::NodeCategory RequiredParseCategory>
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auto PeekIs() const -> bool {
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return PeekIs(RequiredParseCategory);
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}
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// Returns whether there is a name on top of the stack.
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auto PeekIsName() const -> bool {
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return !stack_.empty() &&
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NodeKindToIdKind(PeekNodeKind()) == Id::KindFor<SemIR::NameId>();
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}
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// Returns whether the *next* node on the stack is a given kind. This doesn't
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// have the breadth of support versus other Peek functions because it's
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// expected to be used in narrow circumstances when determining how to treat
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// the *current* top of the stack.
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template <const Parse::NodeKind& RequiredParseKind>
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auto PeekNextIs() const -> bool {
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CARBON_CHECK(stack_.size() >= 2);
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return parse_tree_->node_kind(stack_[stack_.size() - 2].node_id) ==
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RequiredParseKind;
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}
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// Pops the top of the stack without any verification.
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auto PopAndIgnore() -> void {
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Entry back = stack_.pop_back_val();
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CARBON_VLOG() << "Node Pop " << stack_.size() << ": "
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<< parse_tree_->node_kind(back.node_id) << " -> <ignored>\n";
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}
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// Pops the top of the stack and returns the node_id.
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template <const Parse::NodeKind& RequiredParseKind>
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auto PopForSoloNodeId() -> Parse::NodeIdForKind<RequiredParseKind> {
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Entry back = PopEntry<SemIR::InstId>();
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RequireIdKind(RequiredParseKind, Id::Kind::None);
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RequireParseKind<RequiredParseKind>(back.node_id);
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return Parse::NodeIdForKind<RequiredParseKind>(back.node_id);
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}
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// Pops the top of the stack if it is the given kind, and returns the
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// node_id. Otherwise, returns std::nullopt.
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template <const Parse::NodeKind& RequiredParseKind>
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auto PopForSoloNodeIdIf()
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-> std::optional<Parse::NodeIdForKind<RequiredParseKind>> {
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if (PeekIs<RequiredParseKind>()) {
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return PopForSoloNodeId<RequiredParseKind>();
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}
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return std::nullopt;
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}
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// Pops the top of the stack.
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template <const Parse::NodeKind& RequiredParseKind>
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auto PopAndDiscardSoloNodeId() -> void {
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PopForSoloNodeId<RequiredParseKind>();
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}
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// Pops the top of the stack if it is the given kind. Returns `true` if a node
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// was popped.
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template <const Parse::NodeKind& RequiredParseKind>
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auto PopAndDiscardSoloNodeIdIf() -> bool {
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if (!PeekIs<RequiredParseKind>()) {
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return false;
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}
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PopForSoloNodeId<RequiredParseKind>();
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return true;
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}
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// Pops an expression from the top of the stack and returns the node_id and
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// the ID.
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auto PopExprWithNodeId() -> std::pair<Parse::AnyExprId, SemIR::InstId>;
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// Pops a pattern from the top of the stack and returns the node_id and
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// the ID.
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auto PopPatternWithNodeId() -> std::pair<Parse::NodeId, SemIR::InstId> {
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return PopWithNodeId<SemIR::InstId>();
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}
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// Pops a name from the top of the stack and returns the node_id and
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// the ID.
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auto PopNameWithNodeId() -> std::pair<Parse::NodeId, SemIR::NameId> {
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return PopWithNodeId<SemIR::NameId>();
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}
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// Pops the top of the stack and returns the node_id and the ID.
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template <const Parse::NodeKind& RequiredParseKind>
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auto PopWithNodeId() -> auto {
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auto id = Peek<RequiredParseKind>();
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Parse::NodeIdForKind<RequiredParseKind> node_id(
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stack_.pop_back_val().node_id);
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return std::make_pair(node_id, id);
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}
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// Pops the top of the stack and returns the node_id and the ID.
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template <Parse::NodeCategory RequiredParseCategory>
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auto PopWithNodeId() -> auto {
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auto id = Peek<RequiredParseCategory>();
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Parse::NodeIdInCategory<RequiredParseCategory> node_id(
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stack_.pop_back_val().node_id);
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return std::make_pair(node_id, id);
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}
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// Pops an expression from the top of the stack and returns the ID.
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// Expressions always map Parse::NodeCategory::Expr nodes to SemIR::InstId.
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auto PopExpr() -> SemIR::InstId { return PopExprWithNodeId().second; }
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// Pops a pattern from the top of the stack and returns the ID.
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// Patterns map multiple Parse::NodeKinds to SemIR::InstId always.
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auto PopPattern() -> SemIR::InstId { return PopPatternWithNodeId().second; }
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// Pops a name from the top of the stack and returns the ID.
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auto PopName() -> SemIR::NameId { return PopNameWithNodeId().second; }
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// Pops the top of the stack and returns the ID.
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template <const Parse::NodeKind& RequiredParseKind>
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auto Pop() -> auto {
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return PopWithNodeId<RequiredParseKind>().second;
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}
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// Pops the top of the stack and returns the ID.
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template <Parse::NodeCategory RequiredParseCategory>
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auto Pop() -> auto {
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return PopWithNodeId<RequiredParseCategory>().second;
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}
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// Pops the top of the stack and returns the ID.
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template <typename IdT>
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auto Pop() -> IdT {
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return PopWithNodeId<IdT>().second;
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}
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// Pops the top of the stack if it has the given kind, and returns the ID.
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// Otherwise returns std::nullopt.
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template <const Parse::NodeKind& RequiredParseKind>
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auto PopIf() -> std::optional<decltype(Pop<RequiredParseKind>())> {
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if (PeekIs<RequiredParseKind>()) {
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return Pop<RequiredParseKind>();
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}
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return std::nullopt;
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}
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// Pops the top of the stack if it has the given category, and returns the ID.
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// Otherwise returns std::nullopt.
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template <Parse::NodeCategory RequiredParseCategory>
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auto PopIf() -> std::optional<decltype(Pop<RequiredParseCategory>())> {
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if (PeekIs<RequiredParseCategory>()) {
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return Pop<RequiredParseCategory>();
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}
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return std::nullopt;
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}
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// Pops the top of the stack and returns the node_id and the ID if it is
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// of the specified kind.
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template <const Parse::NodeKind& RequiredParseKind>
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auto PopWithNodeIdIf() -> std::pair<Parse::NodeIdForKind<RequiredParseKind>,
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decltype(PopIf<RequiredParseKind>())> {
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if (!PeekIs<RequiredParseKind>()) {
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return {Parse::NodeId::Invalid, std::nullopt};
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}
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return PopWithNodeId<RequiredParseKind>();
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}
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// Pops the top of the stack and returns the node_id and the ID if it is
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// of the specified category.
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template <Parse::NodeCategory RequiredParseCategory>
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auto PopWithNodeIdIf()
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-> std::pair<Parse::NodeIdInCategory<RequiredParseCategory>,
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decltype(PopIf<RequiredParseCategory>())> {
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if (!PeekIs<RequiredParseCategory>()) {
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return {Parse::NodeId::Invalid, std::nullopt};
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}
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return PopWithNodeId<RequiredParseCategory>();
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}
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// Peeks at the parse node of the top of the node stack.
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auto PeekNodeId() const -> Parse::NodeId { return stack_.back().node_id; }
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// Peeks at the kind of the parse node of the top of the node stack.
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auto PeekNodeKind() const -> Parse::NodeKind {
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return parse_tree_->node_kind(PeekNodeId());
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}
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// Peeks at the ID associated with the top of the name stack.
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template <const Parse::NodeKind& RequiredParseKind>
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auto Peek() const -> auto {
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Entry back = stack_.back();
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RequireParseKind<RequiredParseKind>(back.node_id);
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constexpr Id::Kind RequiredIdKind = NodeKindToIdKind(RequiredParseKind);
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return Peek<RequiredIdKind>();
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}
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// Peeks at the ID associated with the top of the name stack.
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template <Parse::NodeCategory RequiredParseCategory>
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auto Peek() const -> auto {
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Entry back = stack_.back();
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RequireParseCategory<RequiredParseCategory>(back.node_id);
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constexpr std::optional<Id::Kind> RequiredIdKind =
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NodeCategoryToIdKind(RequiredParseCategory, false);
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static_assert(RequiredIdKind.has_value());
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return Peek<*RequiredIdKind>();
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}
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// Prints the stack for a stack dump.
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auto PrintForStackDump(llvm::raw_ostream& output) const -> void;
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auto empty() const -> bool { return stack_.empty(); }
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auto size() const -> size_t { return stack_.size(); }
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protected:
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// An ID that can be associated with a parse node.
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//
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// Each parse node kind has a corresponding Id::Kind indicating which kind of
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// ID is stored, computed by NodeKindToIdKind. Id::Kind::None indicates
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// that the parse node has no associated ID, in which case the *SoloNodeId
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// functions should be used to push and pop it. Id::Kind::Invalid indicates
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// that the parse node should not appear in the node stack at all.
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using Id = IdUnion;
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// An entry in stack_.
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struct Entry {
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// The parse node associated with the stack entry.
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Parse::NodeId node_id;
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// The ID associated with this parse node. The kind of ID is determined by
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// the kind of the parse node, so a separate discriminiator is not needed.
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Id id;
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};
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static_assert(sizeof(Entry) == 8, "Unexpected Entry size");
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// Translate a parse node category to the enum ID kind it should always
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// provide, if it is consistent.
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static constexpr auto NodeCategoryToIdKind(Parse::NodeCategory category,
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bool for_node_kind)
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-> std::optional<Id::Kind> {
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std::optional<Id::Kind> result;
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auto set_id_if_category_is = [&](Parse::NodeCategory cat, Id::Kind kind) {
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if (!!(category & cat)) {
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// Check for no consistent Id::Kind due to category with multiple bits
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// set. When computing the Id::Kind for a node kind, a partial category
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// match is OK, so long as we don't match two inconsistent categories.
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// When computing the Id::Kind for a category query, the query can't
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// have any extra bits set or we could be popping a node that is not in
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// this category.
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if (for_node_kind ? result.has_value() : !!(category & ~cat)) {
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result = Id::Kind::Invalid;
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} else {
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result = kind;
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}
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}
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};
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// TODO: Patterns should also produce an `InstId`, but currently
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// `TuplePattern` produces an `InstBlockId`.
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set_id_if_category_is(Parse::NodeCategory::Expr,
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Id::KindFor<SemIR::InstId>());
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set_id_if_category_is(Parse::NodeCategory::MemberName,
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Id::KindFor<SemIR::NameId>());
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set_id_if_category_is(Parse::NodeCategory::ImplAs,
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Id::KindFor<SemIR::TypeId>());
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set_id_if_category_is(Parse::NodeCategory::Decl |
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Parse::NodeCategory::Statement |
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Parse::NodeCategory::Modifier,
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Id::Kind::None);
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return result;
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}
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using IdKindTableType = std::array<Id::Kind, Parse::NodeKind::ValidCount>;
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// Lookup table to implement `NodeKindToIdKind`. Initialized to the
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// return value of `ComputeIdKindTable()`.
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static const IdKindTableType IdKindTable;
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static constexpr auto ComputeIdKindTable() -> IdKindTableType {
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IdKindTableType table = {};
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auto to_id_kind =
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[](const Parse::NodeKind::Definition& node_kind) -> Id::Kind {
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if (auto from_category =
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NodeCategoryToIdKind(node_kind.category(), true)) {
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return *from_category;
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}
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switch (node_kind) {
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case Parse::NodeKind::Addr:
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case Parse::NodeKind::BindingPattern:
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case Parse::NodeKind::CallExprStart:
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case Parse::NodeKind::CompileTimeBindingPattern:
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case Parse::NodeKind::IfExprThen:
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case Parse::NodeKind::ReturnType:
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case Parse::NodeKind::ShortCircuitOperandAnd:
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case Parse::NodeKind::ShortCircuitOperandOr:
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case Parse::NodeKind::StructField:
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case Parse::NodeKind::StructTypeField:
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return Id::KindFor<SemIR::InstId>();
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case Parse::NodeKind::IfCondition:
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case Parse::NodeKind::IfExprIf:
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case Parse::NodeKind::ImplForall:
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case Parse::NodeKind::ImplicitParamList:
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case Parse::NodeKind::TuplePattern:
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case Parse::NodeKind::WhileCondition:
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case Parse::NodeKind::WhileConditionStart:
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return Id::KindFor<SemIR::InstBlockId>();
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case Parse::NodeKind::FunctionDefinitionStart:
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case Parse::NodeKind::BuiltinFunctionDefinitionStart:
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return Id::KindFor<SemIR::FunctionId>();
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case Parse::NodeKind::ClassDefinitionStart:
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return Id::KindFor<SemIR::ClassId>();
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case Parse::NodeKind::InterfaceDefinitionStart:
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return Id::KindFor<SemIR::InterfaceId>();
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case Parse::NodeKind::ImplDefinitionStart:
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return Id::KindFor<SemIR::ImplId>();
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case Parse::NodeKind::SelfValueName:
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return Id::KindFor<SemIR::NameId>();
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case Parse::NodeKind::ArrayExprSemi:
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case Parse::NodeKind::BuiltinName:
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case Parse::NodeKind::ClassIntroducer:
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case Parse::NodeKind::CodeBlockStart:
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case Parse::NodeKind::FunctionIntroducer:
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case Parse::NodeKind::IfStatementElse:
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case Parse::NodeKind::ImplicitParamListStart:
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case Parse::NodeKind::ImplIntroducer:
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case Parse::NodeKind::InterfaceIntroducer:
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case Parse::NodeKind::LetInitializer:
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case Parse::NodeKind::LetIntroducer:
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case Parse::NodeKind::QualifiedName:
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case Parse::NodeKind::ReturnedModifier:
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case Parse::NodeKind::ReturnStatementStart:
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case Parse::NodeKind::ReturnVarModifier:
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case Parse::NodeKind::StructLiteralStart:
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case Parse::NodeKind::StructTypeLiteralStart:
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|
case Parse::NodeKind::TupleLiteralStart:
|
|
case Parse::NodeKind::TuplePatternStart:
|
|
case Parse::NodeKind::VariableInitializer:
|
|
case Parse::NodeKind::VariableIntroducer:
|
|
return Id::Kind::None;
|
|
default:
|
|
return Id::Kind::Invalid;
|
|
}
|
|
};
|
|
|
|
#define CARBON_PARSE_NODE_KIND(Name) \
|
|
table[Parse::Name::Kind.AsInt()] = to_id_kind(Parse::Name::Kind);
|
|
#include "toolchain/parse/node_kind.def"
|
|
|
|
return table;
|
|
}
|
|
|
|
// Translate a parse node kind to the enum ID kind it should always provide.
|
|
static constexpr auto NodeKindToIdKind(Parse::NodeKind kind) -> Id::Kind {
|
|
return IdKindTable[kind.AsInt()];
|
|
}
|
|
|
|
// Peeks at the ID associated with the top of the name stack.
|
|
template <Id::Kind RequiredIdKind>
|
|
auto Peek() const -> auto {
|
|
Id id = stack_.back().id;
|
|
return id.As<RequiredIdKind>();
|
|
}
|
|
|
|
// Pops an entry.
|
|
template <typename IdT>
|
|
auto PopEntry() -> Entry {
|
|
Entry back = stack_.pop_back_val();
|
|
CARBON_VLOG() << "Node Pop " << stack_.size() << ": "
|
|
<< parse_tree_->node_kind(back.node_id) << " -> "
|
|
<< back.id.template As<IdT>() << "\n";
|
|
return back;
|
|
}
|
|
|
|
// Pops the top of the stack and returns the node_id and the ID.
|
|
template <typename IdT>
|
|
auto PopWithNodeId() -> std::pair<Parse::NodeId, IdT> {
|
|
Entry back = PopEntry<IdT>();
|
|
RequireIdKind(parse_tree_->node_kind(back.node_id), Id::KindFor<IdT>());
|
|
return {back.node_id, back.id.template As<IdT>()};
|
|
}
|
|
|
|
// Require a Parse::NodeKind be mapped to a particular Id::Kind.
|
|
auto RequireIdKind(Parse::NodeKind parse_kind, Id::Kind id_kind) const
|
|
-> void {
|
|
CARBON_CHECK(NodeKindToIdKind(parse_kind) == id_kind)
|
|
<< "Unexpected Id::Kind mapping for " << parse_kind << ": expected "
|
|
<< static_cast<int>(id_kind) << ", found "
|
|
<< static_cast<int>(NodeKindToIdKind(parse_kind));
|
|
}
|
|
|
|
// Require an entry to have the given Parse::NodeKind.
|
|
template <const Parse::NodeKind& RequiredParseKind>
|
|
auto RequireParseKind(Parse::NodeId node_id) const -> void {
|
|
auto actual_kind = parse_tree_->node_kind(node_id);
|
|
CARBON_CHECK(RequiredParseKind == actual_kind)
|
|
<< "Expected " << RequiredParseKind << ", found " << actual_kind;
|
|
}
|
|
|
|
// Require an entry to have the given Parse::NodeCategory.
|
|
template <Parse::NodeCategory RequiredParseCategory>
|
|
auto RequireParseCategory(Parse::NodeId node_id) const -> void {
|
|
auto kind = parse_tree_->node_kind(node_id);
|
|
CARBON_CHECK(!!(RequiredParseCategory & kind.category()))
|
|
<< "Expected " << RequiredParseCategory << ", found " << kind
|
|
<< " with category " << kind.category();
|
|
}
|
|
|
|
// The file's parse tree.
|
|
const Parse::Tree* parse_tree_;
|
|
|
|
// Whether to print verbose output.
|
|
llvm::raw_ostream* vlog_stream_;
|
|
|
|
// The actual stack.
|
|
// PushEntry and PopEntry control modification in order to centralize
|
|
// vlogging.
|
|
llvm::SmallVector<Entry> stack_;
|
|
};
|
|
|
|
constexpr NodeStack::IdKindTableType NodeStack::IdKindTable =
|
|
ComputeIdKindTable();
|
|
|
|
inline auto NodeStack::PopExprWithNodeId()
|
|
-> std::pair<Parse::AnyExprId, SemIR::InstId> {
|
|
return PopWithNodeId<Parse::NodeCategory::Expr>();
|
|
}
|
|
|
|
} // namespace Carbon::Check
|
|
|
|
#endif // CARBON_TOOLCHAIN_CHECK_NODE_STACK_H_
|