scope_stack.h 11 KB

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  1. // Part of the Carbon Language project, under the Apache License v2.0 with LLVM
  2. // Exceptions. See /LICENSE for license information.
  3. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  4. #ifndef CARBON_TOOLCHAIN_CHECK_SCOPE_STACK_H_
  5. #define CARBON_TOOLCHAIN_CHECK_SCOPE_STACK_H_
  6. #include "common/array_stack.h"
  7. #include "common/set.h"
  8. #include "llvm/ADT/SmallVector.h"
  9. #include "toolchain/check/full_pattern_stack.h"
  10. #include "toolchain/check/lexical_lookup.h"
  11. #include "toolchain/check/scope_index.h"
  12. #include "toolchain/sem_ir/file.h"
  13. #include "toolchain/sem_ir/ids.h"
  14. namespace Carbon::Check {
  15. // A stack of lexical and semantic scopes that we are currently performing
  16. // checking within.
  17. class ScopeStack {
  18. public:
  19. explicit ScopeStack(const SemIR::File* sem_ir)
  20. : sem_ir_(sem_ir),
  21. lexical_lookup_(sem_ir->identifiers()),
  22. full_pattern_stack_(&lexical_lookup_) {}
  23. // A scope in which `break` and `continue` can be used.
  24. struct BreakContinueScope {
  25. SemIR::InstBlockId break_target;
  26. SemIR::InstBlockId continue_target;
  27. };
  28. // A scope in which `return` can be used.
  29. struct ReturnScope {
  30. // The declaration from which we can return. Inside a function, this will
  31. // be a `FunctionDecl`.
  32. SemIR::InstId decl_id;
  33. // The value corresponding to the current `returned var`, if any. Will be
  34. // set and unset as `returned var`s are declared and go out of scope.
  35. SemIR::InstId returned_var = SemIR::InstId::None;
  36. };
  37. // A non-lexical scope in which unqualified lookup may be required.
  38. struct NonLexicalScope {
  39. // The index of the scope in the scope stack.
  40. ScopeIndex scope_index;
  41. // The corresponding name scope.
  42. SemIR::NameScopeId name_scope_id;
  43. // The corresponding specific.
  44. SemIR::SpecificId specific_id;
  45. };
  46. // Information about a scope that has been temporarily removed from the stack.
  47. struct SuspendedScope;
  48. // Pushes a scope onto scope_stack_. NameScopeId::None is used for new
  49. // scopes. lexical_lookup_has_load_error is used to limit diagnostics when a
  50. // given namespace may contain a mix of both successful and failed name
  51. // imports.
  52. auto Push(SemIR::InstId scope_inst_id = SemIR::InstId::None,
  53. SemIR::NameScopeId scope_id = SemIR::NameScopeId::None,
  54. SemIR::SpecificId specific_id = SemIR::SpecificId::None,
  55. bool lexical_lookup_has_load_error = false) -> void;
  56. // Pops the top scope from scope_stack_, cleaning up names from
  57. // lexical_lookup_.
  58. auto Pop() -> void;
  59. // Pops the top scope from scope_stack_ if it contains no names.
  60. auto PopIfEmpty() -> void {
  61. if (scope_stack_.back().num_names == 0) {
  62. Pop();
  63. }
  64. }
  65. // Pops scopes until we return to the specified scope index.
  66. auto PopTo(ScopeIndex index) -> void;
  67. // Returns the scope index associated with the current scope.
  68. auto PeekIndex() const -> ScopeIndex { return Peek().index; }
  69. // Returns the name scope associated with the current lexical scope, if any.
  70. auto PeekNameScopeId() const -> SemIR::NameScopeId { return Peek().scope_id; }
  71. // Returns the instruction associated with the current scope, or `None` if
  72. // there is no such instruction, such as for a block scope.
  73. auto PeekInstId() const -> SemIR::InstId { return Peek().scope_inst_id; }
  74. // Returns the specific associated with the innermost enclosing scope that is
  75. // associated with a specific. This will generally be the self specific of the
  76. // innermost enclosing generic, as there is no way to enter any other specific
  77. // scope.
  78. auto PeekSpecificId() const -> SemIR::SpecificId {
  79. return Peek().specific_id;
  80. }
  81. // Returns the current scope, if it is of the specified kind. Otherwise,
  82. // returns nullopt.
  83. template <typename InstT>
  84. auto GetCurrentScopeAs() -> std::optional<InstT> {
  85. auto inst_id = PeekInstId();
  86. if (!inst_id.has_value()) {
  87. return std::nullopt;
  88. }
  89. return sem_ir_->insts().TryGetAs<InstT>(inst_id);
  90. }
  91. // If there is no `returned var` in scope, sets the given instruction to be
  92. // the current `returned var` and returns an `None`. If there
  93. // is already a `returned var`, returns it instead.
  94. auto SetReturnedVarOrGetExisting(SemIR::InstId inst_id) -> SemIR::InstId;
  95. // Looks up the name `name_id` in the current scope and enclosing scopes, but
  96. // do not look past `scope_index`. Returns the existing lookup result, if any.
  97. auto LookupInLexicalScopesWithin(SemIR::NameId name_id,
  98. ScopeIndex scope_index) -> SemIR::InstId;
  99. // Looks up the name `name_id` in the current scope and related lexical
  100. // scopes. Returns the innermost lexical lookup result, if any, along with a
  101. // list of non-lexical scopes in which lookup should also be performed,
  102. // ordered from outermost to innermost.
  103. auto LookupInLexicalScopes(SemIR::NameId name_id)
  104. -> std::pair<SemIR::InstId, llvm::ArrayRef<NonLexicalScope>>;
  105. // Looks up the name `name_id` in the current scope, or in `scope_index` if
  106. // specified. Returns the existing instruction if the name is already declared
  107. // in that scope or any unfinished scope within it, and otherwise adds the
  108. // name with the value `target_id` and returns `None`.
  109. auto LookupOrAddName(SemIR::NameId name_id, SemIR::InstId target_id,
  110. ScopeIndex scope_index = ScopeIndex::None)
  111. -> SemIR::InstId;
  112. // Prepares to add a compile-time binding in the current scope, and returns
  113. // its index. The added binding must then be pushed using
  114. // `PushCompileTimeBinding`.
  115. auto AddCompileTimeBinding() -> SemIR::CompileTimeBindIndex {
  116. auto index = scope_stack_.back().next_compile_time_bind_index;
  117. ++scope_stack_.back().next_compile_time_bind_index.index;
  118. return index;
  119. }
  120. // Pushes a compile-time binding into the current scope.
  121. auto PushCompileTimeBinding(SemIR::InstId bind_id) -> void {
  122. compile_time_binding_stack_.AppendToTop(bind_id);
  123. }
  124. // Temporarily removes the top of the stack and its lexical lookup results.
  125. auto Suspend() -> SuspendedScope;
  126. // Restores a suspended scope stack entry.
  127. auto Restore(SuspendedScope scope) -> void;
  128. // Runs verification that the processing cleanly finished.
  129. auto VerifyOnFinish() -> void;
  130. auto return_scope_stack() -> llvm::SmallVector<ReturnScope>& {
  131. return return_scope_stack_;
  132. }
  133. auto break_continue_stack() -> llvm::SmallVector<BreakContinueScope>& {
  134. return break_continue_stack_;
  135. }
  136. auto compile_time_bindings_stack() -> ArrayStack<SemIR::InstId>& {
  137. return compile_time_binding_stack_;
  138. }
  139. auto full_pattern_stack() -> FullPatternStack& { return full_pattern_stack_; }
  140. private:
  141. // An entry in scope_stack_.
  142. struct ScopeStackEntry {
  143. // The sequential index of this scope entry within the file.
  144. ScopeIndex index;
  145. // The instruction associated with this entry, if any. This can be one of:
  146. //
  147. // - A `ClassDecl`, for a class definition scope.
  148. // - A `FunctionDecl`, for the outermost scope in a function
  149. // definition.
  150. // - Invalid, for any other scope.
  151. SemIR::InstId scope_inst_id;
  152. // The name scope associated with this entry, if any.
  153. SemIR::NameScopeId scope_id;
  154. // The specific associated with this entry, if any.
  155. SemIR::SpecificId specific_id;
  156. // The next compile-time binding index to allocate in this scope.
  157. SemIR::CompileTimeBindIndex next_compile_time_bind_index;
  158. // Whether lexical_lookup_ has load errors from this scope or an ancestor
  159. // scope.
  160. bool lexical_lookup_has_load_error;
  161. // Whether a `returned var` was introduced in this scope, and needs to be
  162. // unregistered when the scope ends.
  163. bool has_returned_var = false;
  164. // Whether there are any ids in the `names` set.
  165. int num_names = 0;
  166. // Names which are registered with lexical_lookup_, and will need to be
  167. // unregistered when the scope ends.
  168. Set<SemIR::NameId> names = {};
  169. // TODO: This likely needs to track things which need to be destructed.
  170. };
  171. auto Peek() const -> const ScopeStackEntry& { return scope_stack_.back(); }
  172. // Returns whether lexical lookup currently has any load errors.
  173. auto LexicalLookupHasLoadError() const -> bool {
  174. return !scope_stack_.empty() &&
  175. scope_stack_.back().lexical_lookup_has_load_error;
  176. }
  177. // Checks that the provided scope's `next_compile_time_bind_index` matches the
  178. // full size of the current `compile_time_binding_stack_`. The values should
  179. // always match, and this is used to validate the correspondence during
  180. // significant changes.
  181. auto VerifyNextCompileTimeBindIndex(llvm::StringLiteral label,
  182. const ScopeStackEntry& scope) -> void;
  183. // The current file.
  184. const SemIR::File* sem_ir_;
  185. // A stack of scopes from which we can `return`.
  186. llvm::SmallVector<ReturnScope> return_scope_stack_;
  187. // A stack of `break` and `continue` targets.
  188. llvm::SmallVector<BreakContinueScope> break_continue_stack_;
  189. // A stack for scope context.
  190. llvm::SmallVector<ScopeStackEntry> scope_stack_;
  191. // Information about non-lexical scopes. This is a subset of the entries and
  192. // the information in scope_stack_.
  193. llvm::SmallVector<NonLexicalScope> non_lexical_scope_stack_;
  194. // A stack of the current compile time bindings.
  195. ArrayStack<SemIR::InstId> compile_time_binding_stack_;
  196. // The index of the next scope that will be pushed onto scope_stack_. The
  197. // first is always the package scope.
  198. ScopeIndex next_scope_index_ = ScopeIndex::Package;
  199. // Tracks lexical lookup results.
  200. LexicalLookup lexical_lookup_;
  201. // Stack of full-patterns currently being checked.
  202. FullPatternStack full_pattern_stack_;
  203. };
  204. struct ScopeStack::SuspendedScope {
  205. // An item that was suspended within this scope. This represents either a
  206. // lexical lookup entry in this scope, or a compile time binding entry in this
  207. // scope.
  208. //
  209. // TODO: For compile-time bindings, the common case is that they will both
  210. // have a suspended lexical lookup entry and a suspended compile time binding
  211. // entry. We should be able to store that as a single ScopeItem rather than
  212. // two.
  213. struct ScopeItem {
  214. static constexpr uint32_t IndexForCompileTimeBinding = -1;
  215. // The scope index for a LexicalLookup::SuspendedResult, or
  216. // CompileTimeBindingIndex for a suspended compile time binding.
  217. uint32_t index;
  218. // The instruction within the scope.
  219. SemIR::InstId inst_id;
  220. };
  221. // The suspended scope stack entry.
  222. ScopeStackEntry entry;
  223. // The list of items that were within this scope when it was suspended. The
  224. // inline size is an attempt to keep the size of a `SuspendedFunction`
  225. // reasonable while avoiding heap allocations most of the time.
  226. llvm::SmallVector<ScopeItem, 8> suspended_items;
  227. };
  228. } // namespace Carbon::Check
  229. #endif // CARBON_TOOLCHAIN_CHECK_SCOPE_STACK_H_