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This is for more clearly distinct names, and to make it a clearer transition from `BuiltinInst` for name conflicts. `FloatType` is also an instruction, and we have `Carbon::Error` (common/error.h). This avoids affecting tests, although the name is embedded in the builtin test. In `LegacyFloatType`, `Legacy` because I was having trouble coming up with a more appropriate name. I'm not clear this is a `FloatLiteralType` at present, it needs some work to mirror `IntLiteralType`. In `ErrorInst`, the suffix `Inst` was discussed as good and similar to `BuiltinInst` (although I'm trying to get rid of that).
239 lines
8.8 KiB
C++
239 lines
8.8 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 "toolchain/check/scope_stack.h"
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#include "common/check.h"
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#include "toolchain/sem_ir/ids.h"
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namespace Carbon::Check {
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auto ScopeStack::VerifyOnFinish() -> void {
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CARBON_CHECK(scope_stack_.empty(), "{0}", scope_stack_.size());
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}
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auto ScopeStack::VerifyNextCompileTimeBindIndex(llvm::StringLiteral label,
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const ScopeStackEntry& scope)
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-> void {
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CARBON_CHECK(
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static_cast<int32_t>(compile_time_binding_stack_.all_values_size()) ==
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scope.next_compile_time_bind_index.index,
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"Wrong number of entries in compile-time binding stack after {0}: have "
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"{1}, expected {2}",
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label, compile_time_binding_stack_.all_values_size(),
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scope.next_compile_time_bind_index.index);
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}
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auto ScopeStack::Push(SemIR::InstId scope_inst_id, SemIR::NameScopeId scope_id,
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SemIR::SpecificId specific_id,
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bool lexical_lookup_has_load_error) -> void {
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// If this scope doesn't have a specific of its own, it lives in the enclosing
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// scope's specific, if any.
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auto enclosing_specific_id = specific_id;
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if (!specific_id.is_valid() && !scope_stack_.empty()) {
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enclosing_specific_id = PeekSpecificId();
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}
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compile_time_binding_stack_.PushArray();
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scope_stack_.push_back(
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{.index = next_scope_index_,
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.scope_inst_id = scope_inst_id,
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.scope_id = scope_id,
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.specific_id = enclosing_specific_id,
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.next_compile_time_bind_index = SemIR::CompileTimeBindIndex(
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compile_time_binding_stack_.all_values_size()),
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.lexical_lookup_has_load_error =
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LexicalLookupHasLoadError() || lexical_lookup_has_load_error});
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if (scope_id.is_valid()) {
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non_lexical_scope_stack_.push_back({.scope_index = next_scope_index_,
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.name_scope_id = scope_id,
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.specific_id = enclosing_specific_id});
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} else {
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// For lexical lookups, unqualified lookup doesn't know how to find the
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// associated specific, so if we start adding lexical scopes associated with
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// specifics, we'll need to somehow track them in lookup.
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CARBON_CHECK(!specific_id.is_valid(),
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"Lexical scope should not have an associated specific.");
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}
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// TODO: Handle this case more gracefully.
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CARBON_CHECK(next_scope_index_.index != std::numeric_limits<int32_t>::max(),
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"Ran out of scopes");
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++next_scope_index_.index;
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VerifyNextCompileTimeBindIndex("Push", scope_stack_.back());
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}
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auto ScopeStack::Pop() -> void {
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auto scope = scope_stack_.pop_back_val();
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scope.names.ForEach([&](SemIR::NameId str_id) {
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auto& lexical_results = lexical_lookup_.Get(str_id);
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CARBON_CHECK(lexical_results.back().scope_index == scope.index,
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"Inconsistent scope index for name {0}", str_id);
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lexical_results.pop_back();
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});
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if (scope.scope_id.is_valid()) {
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CARBON_CHECK(non_lexical_scope_stack_.back().scope_index == scope.index);
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non_lexical_scope_stack_.pop_back();
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}
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if (scope.has_returned_var) {
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CARBON_CHECK(!return_scope_stack_.empty());
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CARBON_CHECK(return_scope_stack_.back().returned_var.is_valid());
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return_scope_stack_.back().returned_var = SemIR::InstId::Invalid;
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}
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VerifyNextCompileTimeBindIndex("Pop", scope);
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compile_time_binding_stack_.PopArray();
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}
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auto ScopeStack::PopTo(ScopeIndex index) -> void {
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while (PeekIndex() > index) {
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Pop();
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}
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CARBON_CHECK(PeekIndex() == index,
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"Scope index {0} does not enclose the current scope {1}", index,
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PeekIndex());
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}
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auto ScopeStack::LookupInCurrentScope(SemIR::NameId name_id) -> SemIR::InstId {
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auto& lexical_results = lexical_lookup_.Get(name_id);
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if (lexical_results.empty()) {
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return SemIR::InstId::Invalid;
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}
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auto result = lexical_results.back();
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if (result.scope_index != PeekIndex()) {
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return SemIR::InstId::Invalid;
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}
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return result.inst_id;
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}
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auto ScopeStack::LookupInLexicalScopes(SemIR::NameId name_id)
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-> std::pair<SemIR::InstId, llvm::ArrayRef<NonLexicalScope>> {
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// Find the results from lexical scopes. These will be combined with results
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// from non-lexical scopes such as namespaces and classes.
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llvm::ArrayRef<LexicalLookup::Result> lexical_results =
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lexical_lookup_.Get(name_id);
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// If we have no lexical results, check all non-lexical scopes.
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if (lexical_results.empty()) {
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return {LexicalLookupHasLoadError() ? SemIR::InstId::BuiltinErrorInst
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: SemIR::InstId::Invalid,
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non_lexical_scope_stack_};
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}
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// Find the first non-lexical scope that is within the scope of the lexical
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// lookup result.
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auto* first_non_lexical_scope = std::lower_bound(
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non_lexical_scope_stack_.begin(), non_lexical_scope_stack_.end(),
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lexical_results.back().scope_index,
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[](const NonLexicalScope& scope, ScopeIndex index) {
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return scope.scope_index < index;
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});
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return {
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lexical_results.back().inst_id,
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llvm::ArrayRef(first_non_lexical_scope, non_lexical_scope_stack_.end())};
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}
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auto ScopeStack::LookupOrAddName(SemIR::NameId name_id, SemIR::InstId target_id)
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-> SemIR::InstId {
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if (!scope_stack_.back().names.Insert(name_id).is_inserted()) {
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auto existing = lexical_lookup_.Get(name_id).back().inst_id;
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CARBON_CHECK(existing.is_valid(),
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"Name in scope but not in lexical lookups");
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return existing;
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}
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++scope_stack_.back().num_names;
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// TODO: Reject if we previously performed a failed lookup for this name
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// in this scope or a scope nested within it.
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auto& lexical_results = lexical_lookup_.Get(name_id);
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CARBON_CHECK(
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lexical_results.empty() ||
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lexical_results.back().scope_index < PeekIndex(),
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"Failed to clean up after scope nested within the current scope");
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lexical_results.push_back({.inst_id = target_id, .scope_index = PeekIndex()});
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return SemIR::InstId::Invalid;
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}
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auto ScopeStack::SetReturnedVarOrGetExisting(SemIR::InstId inst_id)
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-> SemIR::InstId {
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CARBON_CHECK(!return_scope_stack_.empty(), "`returned var` in no function");
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auto& returned_var = return_scope_stack_.back().returned_var;
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if (returned_var.is_valid()) {
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return returned_var;
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}
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returned_var = inst_id;
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CARBON_CHECK(!scope_stack_.back().has_returned_var,
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"Scope has returned var but none is set");
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if (inst_id.is_valid()) {
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scope_stack_.back().has_returned_var = true;
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}
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return SemIR::InstId::Invalid;
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}
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auto ScopeStack::Suspend() -> SuspendedScope {
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CARBON_CHECK(!scope_stack_.empty(), "No scope to suspend");
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SuspendedScope result = {.entry = scope_stack_.pop_back_val(),
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.suspended_items = {}};
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if (result.entry.scope_id.is_valid()) {
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non_lexical_scope_stack_.pop_back();
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}
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auto peek_compile_time_bindings = compile_time_binding_stack_.PeekArray();
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result.suspended_items.reserve(result.entry.num_names +
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peek_compile_time_bindings.size());
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result.entry.names.ForEach([&](SemIR::NameId name_id) {
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auto [index, inst_id] = lexical_lookup_.Suspend(name_id);
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CARBON_CHECK(index !=
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SuspendedScope::ScopeItem::IndexForCompileTimeBinding);
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result.suspended_items.push_back({.index = index, .inst_id = inst_id});
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});
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CARBON_CHECK(static_cast<int>(result.suspended_items.size()) ==
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result.entry.num_names);
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// Move any compile-time bindings into the suspended scope.
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for (auto inst_id : peek_compile_time_bindings) {
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result.suspended_items.push_back(
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{.index = SuspendedScope::ScopeItem::IndexForCompileTimeBinding,
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.inst_id = inst_id});
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}
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compile_time_binding_stack_.PopArray();
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// This would be easy to support if we had a need, but currently we do not.
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CARBON_CHECK(!result.entry.has_returned_var,
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"Should not suspend a scope with a returned var.");
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return result;
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}
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auto ScopeStack::Restore(SuspendedScope scope) -> void {
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compile_time_binding_stack_.PushArray();
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for (auto [index, inst_id] : scope.suspended_items) {
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if (index == SuspendedScope::ScopeItem::IndexForCompileTimeBinding) {
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compile_time_binding_stack_.AppendToTop(inst_id);
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} else {
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lexical_lookup_.Restore({.index = index, .inst_id = inst_id},
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scope.entry.index);
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}
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}
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VerifyNextCompileTimeBindIndex("Restore", scope.entry);
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if (scope.entry.scope_id.is_valid()) {
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non_lexical_scope_stack_.push_back(
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{.scope_index = scope.entry.index,
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.name_scope_id = scope.entry.scope_id,
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.specific_id = scope.entry.specific_id});
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}
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scope_stack_.push_back(std::move(scope.entry));
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}
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} // namespace Carbon::Check
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