context.h 18 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_PARSE_CONTEXT_H_
  5. #define CARBON_TOOLCHAIN_PARSE_CONTEXT_H_
  6. #include <optional>
  7. #include "common/check.h"
  8. #include "common/vlog.h"
  9. #include "toolchain/lex/token_kind.h"
  10. #include "toolchain/lex/tokenized_buffer.h"
  11. #include "toolchain/parse/node_kind.h"
  12. #include "toolchain/parse/precedence.h"
  13. #include "toolchain/parse/state.h"
  14. #include "toolchain/parse/tree.h"
  15. namespace Carbon::Parse {
  16. // An amount by which to look ahead of the current token. Lookahead should be
  17. // used sparingly, and unbounded lookahead should be avoided.
  18. //
  19. // TODO: Decide whether we want to avoid lookahead altogether.
  20. //
  21. // NOLINTNEXTLINE(performance-enum-size): Deliberately matches index size.
  22. enum class Lookahead : int32_t {
  23. CurrentToken = 0,
  24. NextToken = 1,
  25. };
  26. // Context and shared functionality for parser handlers. See state.def for state
  27. // documentation.
  28. class Context {
  29. public:
  30. // Possible operator fixities for errors.
  31. enum class OperatorFixity : int8_t { Prefix, Infix, Postfix };
  32. // Possible return values for FindListToken.
  33. enum class ListTokenKind : int8_t { Comma, Close, CommaClose };
  34. // Used for restricting ordering of `package` and `import` declarations.
  35. enum class PackagingState : int8_t {
  36. FileStart,
  37. InImports,
  38. AfterNonPackagingDecl,
  39. // A warning about `import` placement has been issued so we don't keep
  40. // issuing more (when `import` is repeated) until more non-`import`
  41. // declarations come up.
  42. InImportsAfterNonPackagingDecl,
  43. };
  44. // Used to track state on state_stack_.
  45. struct StateStackEntry : public Printable<StateStackEntry> {
  46. // Prints state information for verbose output.
  47. auto Print(llvm::raw_ostream& output) const -> void {
  48. output << state << " @" << token << " subtree_start=" << subtree_start
  49. << " has_error=" << has_error;
  50. }
  51. // The state.
  52. State state;
  53. // Set to true to indicate that an error was found, and that contextual
  54. // error recovery may be needed.
  55. bool has_error : 1 = false;
  56. // Set to true to indicate that this state is handling a pattern nested
  57. // inside a `var` pattern.
  58. // TODO: This is meaningful only for patterns, and the precedence fields
  59. // are meaningful only for expressions, so expressing them as a union
  60. // could help catch errors.
  61. bool in_var_pattern : 1 = false;
  62. // Precedence information used by expression states in order to determine
  63. // operator precedence. The ambient_precedence deals with how the expression
  64. // should interact with outside context, while the lhs_precedence is
  65. // specific to the lhs of an operator expression.
  66. PrecedenceGroup ambient_precedence = PrecedenceGroup::ForTopLevelExpr();
  67. PrecedenceGroup lhs_precedence = PrecedenceGroup::ForTopLevelExpr();
  68. // A token providing context based on the subtree. This will typically be
  69. // the first token in the subtree, but may sometimes be a token within. It
  70. // will typically be used for the subtree's root node.
  71. Lex::TokenIndex token;
  72. // The offset within the Tree of the subtree start.
  73. int32_t subtree_start;
  74. };
  75. // We expect StateStackEntry to fit into 12 bytes:
  76. // state = 1 byte
  77. // has_error and in_var_pattern = 1 byte
  78. // ambient_precedence = 1 byte
  79. // lhs_precedence = 1 byte
  80. // token = 4 bytes
  81. // subtree_start = 4 bytes
  82. // If it becomes bigger, it'd be worth examining better packing; it should be
  83. // feasible to pack the 1-byte entries more tightly.
  84. static_assert(sizeof(StateStackEntry) == 12,
  85. "StateStackEntry has unexpected size!");
  86. explicit Context(Tree* tree, Lex::TokenizedBuffer* tokens,
  87. DiagnosticConsumer* consumer,
  88. llvm::raw_ostream* vlog_stream);
  89. // Adds a node to the parse tree that has no children (a leaf).
  90. auto AddLeafNode(NodeKind kind, Lex::TokenIndex token, bool has_error = false)
  91. -> void {
  92. AddNode(kind, token, has_error);
  93. }
  94. // Adds a node to the parse tree that has children.
  95. auto AddNode(NodeKind kind, Lex::TokenIndex token, bool has_error) -> void {
  96. CARBON_CHECK(has_error || (kind != NodeKind::InvalidParse &&
  97. kind != NodeKind::InvalidParseStart &&
  98. kind != NodeKind::InvalidParseSubtree),
  99. "{0} nodes must always have an error", kind);
  100. tree_->node_impls_.push_back(Tree::NodeImpl(kind, has_error, token));
  101. }
  102. // Adds an invalid parse node.
  103. auto AddInvalidParse(Lex::TokenIndex token) -> void {
  104. AddNode(NodeKind::InvalidParse, token, /*has_error=*/true);
  105. }
  106. // Replaces the placeholder node at the indicated position with a leaf node.
  107. //
  108. // To reserve a position in the parse tree, you may add a placeholder parse
  109. // node using code like:
  110. // ```
  111. // context.PushState(State::WillFillInPlaceholder);
  112. // context.AddLeafNode(NodeKind::Placeholder, *context.position());
  113. // ```
  114. // It may be replaced with the intended leaf parse node with code like:
  115. // ```
  116. // auto HandleWillFillInPlaceholder(Context& context) -> void {
  117. // auto state = context.PopState();
  118. // context.ReplacePlaceholderNode(state.subtree_start, /* replacement */);
  119. // }
  120. // ```
  121. auto ReplacePlaceholderNode(int32_t position, NodeKind kind,
  122. Lex::TokenIndex token, bool has_error = false)
  123. -> void;
  124. // Returns the current position and moves past it.
  125. auto Consume() -> Lex::TokenIndex { return *(position_++); }
  126. // Consumes the current token. Does not return it.
  127. auto ConsumeAndDiscard() -> void { ++position_; }
  128. // Parses an open paren token, possibly diagnosing if necessary. Creates a
  129. // leaf parse node of the specified start kind. The default_token is used when
  130. // there's no open paren. Returns the open paren token if it was found.
  131. auto ConsumeAndAddOpenParen(Lex::TokenIndex default_token,
  132. NodeKind start_kind)
  133. -> std::optional<Lex::TokenIndex>;
  134. // Parses a closing symbol corresponding to the opening symbol
  135. // `expected_open`, possibly skipping forward and diagnosing if necessary.
  136. // Creates a parse node of the specified close kind. If `expected_open` is not
  137. // an opening symbol, the parse node will be associated with `state.token`,
  138. // no input will be consumed, and no diagnostic will be emitted.
  139. auto ConsumeAndAddCloseSymbol(Lex::TokenIndex expected_open,
  140. StateStackEntry state, NodeKind close_kind)
  141. -> void;
  142. // Composes `ConsumeIf` and `AddLeafNode`, returning false when ConsumeIf
  143. // fails.
  144. auto ConsumeAndAddLeafNodeIf(Lex::TokenKind token_kind, NodeKind node_kind)
  145. -> bool;
  146. // Returns the current position and moves past it. Requires the token is the
  147. // expected kind.
  148. auto ConsumeChecked(Lex::TokenKind kind) -> Lex::TokenIndex;
  149. // If the current position's token matches this `Kind`, returns it and
  150. // advances to the next position. Otherwise returns an empty optional.
  151. auto ConsumeIf(Lex::TokenKind kind) -> std::optional<Lex::TokenIndex> {
  152. if (!PositionIs(kind)) {
  153. return std::nullopt;
  154. }
  155. return Consume();
  156. }
  157. // Find the next token of any of the given kinds at the current bracketing
  158. // level.
  159. auto FindNextOf(std::initializer_list<Lex::TokenKind> desired_kinds)
  160. -> std::optional<Lex::TokenIndex>;
  161. // If the token is an opening symbol for a matched group, skips to the matched
  162. // closing symbol and returns true. Otherwise, returns false.
  163. auto SkipMatchingGroup() -> bool;
  164. // Skips forward to move past the likely end of a declaration or statement.
  165. //
  166. // Looks forward, skipping over any matched symbol groups, to find the next
  167. // position that is likely past the end of a declaration or statement. This
  168. // is a heuristic and should only be called when skipping past parse errors.
  169. //
  170. // The strategy for recognizing when we have likely passed the end of a
  171. // declaration or statement:
  172. // - If we get to a close curly brace, we likely ended the entire context.
  173. // - If we get to a semicolon, that should have ended the declaration or
  174. // statement.
  175. // - If we get to a new line from the `SkipRoot` token, but with the same or
  176. // less indentation, there is likely a missing semicolon. Continued
  177. // declarations or statements across multiple lines should be indented.
  178. //
  179. // Returns the last token consumed.
  180. auto SkipPastLikelyEnd(Lex::TokenIndex skip_root) -> Lex::TokenIndex;
  181. // Skip forward to the given token. Verifies that it is actually forward.
  182. auto SkipTo(Lex::TokenIndex t) -> void;
  183. // Returns true if the current token satisfies the lexical validity rules
  184. // for an infix operator.
  185. auto IsLexicallyValidInfixOperator() -> bool;
  186. // Determines whether the current trailing operator should be treated as
  187. // infix.
  188. auto IsTrailingOperatorInfix() -> bool;
  189. // Diagnoses whether the current token is not written properly for the given
  190. // fixity. For example, because mandatory whitespace is missing. Regardless of
  191. // whether there's an error, it's expected that parsing continues.
  192. auto DiagnoseOperatorFixity(OperatorFixity fixity) -> void;
  193. // If the current position is a `,`, consumes it, adds the provided token, and
  194. // returns `Comma`. Returns `Close` if the current position is close_token
  195. // (for example, `)`). `CommaClose` indicates it found both (for example,
  196. // `,)`). Handles cases where invalid tokens are present by advancing the
  197. // position, and may emit errors. Pass already_has_error in order to suppress
  198. // duplicate errors.
  199. auto ConsumeListToken(NodeKind comma_kind, Lex::TokenKind close_kind,
  200. bool already_has_error) -> ListTokenKind;
  201. // Gets the kind of the next token to be consumed. If `lookahead` is
  202. // provided, it specifies which token to inspect.
  203. auto PositionKind(Lookahead lookahead = Lookahead::CurrentToken) const
  204. -> Lex::TokenKind {
  205. return tokens_->GetKind(position_[static_cast<int32_t>(lookahead)]);
  206. }
  207. // Tests whether the next token to be consumed is of the specified kind. If
  208. // `lookahead` is provided, it specifies which token to inspect.
  209. auto PositionIs(Lex::TokenKind kind,
  210. Lookahead lookahead = Lookahead::CurrentToken) const -> bool {
  211. return PositionKind(lookahead) == kind;
  212. }
  213. // Pops the state and keeps the value for inspection.
  214. auto PopState() -> StateStackEntry {
  215. auto back = state_stack_.pop_back_val();
  216. CARBON_VLOG("Pop {0}: {1}\n", state_stack_.size(), back);
  217. return back;
  218. }
  219. // Pops the state and discards it.
  220. auto PopAndDiscardState() -> void {
  221. CARBON_VLOG("PopAndDiscard {0}: {1}\n", state_stack_.size() - 1,
  222. state_stack_.back());
  223. state_stack_.pop_back();
  224. }
  225. // Pushes a new state with the current position for context.
  226. auto PushState(State state) -> void { PushState(state, *position_); }
  227. // Pushes a new state with a specific token for context. Used when forming a
  228. // new subtree when the current position isn't the start of the subtree.
  229. auto PushState(State state, Lex::TokenIndex token) -> void {
  230. PushState({.state = state, .token = token, .subtree_start = tree_->size()});
  231. }
  232. // Pushes a new expression state with specific precedence.
  233. auto PushStateForExpr(PrecedenceGroup ambient_precedence) -> void {
  234. PushState({.state = State::Expr,
  235. .ambient_precedence = ambient_precedence,
  236. .token = *position_,
  237. .subtree_start = tree_->size()});
  238. }
  239. // Pushes a new state with detailed precedence for expression resume states.
  240. auto PushStateForExprLoop(State state, PrecedenceGroup ambient_precedence,
  241. PrecedenceGroup lhs_precedence) -> void {
  242. PushState({.state = state,
  243. .ambient_precedence = ambient_precedence,
  244. .lhs_precedence = lhs_precedence,
  245. .token = *position_,
  246. .subtree_start = tree_->size()});
  247. }
  248. // Pushes a new state for handling a pattern. `in_var_pattern` indicates
  249. // whether that pattern is nested inside a `var` pattern.
  250. auto PushStateForPattern(State state, bool in_var_pattern) -> void {
  251. PushState({.state = state,
  252. .in_var_pattern = in_var_pattern,
  253. .token = *position_,
  254. .subtree_start = tree_->size()});
  255. }
  256. // Pushes a constructed state onto the stack.
  257. auto PushState(StateStackEntry state) -> void {
  258. CARBON_VLOG("Push {0}: {1}\n", state_stack_.size(), state);
  259. state_stack_.push_back(state);
  260. CARBON_CHECK(state_stack_.size() < (1 << 20),
  261. "Excessive stack size: likely infinite loop");
  262. }
  263. // Pushes a constructed state onto the stack, with a different parse state.
  264. auto PushState(StateStackEntry state_entry, State parse_state) -> void {
  265. state_entry.state = parse_state;
  266. PushState(state_entry);
  267. }
  268. // Propagates an error up the state stack, to the parent state.
  269. auto ReturnErrorOnState() -> void { state_stack_.back().has_error = true; }
  270. // Adds a node for a declaration's semicolon. Includes error recovery when the
  271. // token is not a semicolon, using `decl_kind` and `is_def_allowed` to inform
  272. // diagnostics.
  273. auto AddNodeExpectingDeclSemi(StateStackEntry state, NodeKind node_kind,
  274. Lex::TokenKind decl_kind, bool is_def_allowed)
  275. -> void;
  276. // Emits a diagnostic for a declaration missing a semi.
  277. auto DiagnoseExpectedDeclSemi(Lex::TokenKind expected_kind) -> void;
  278. // Emits a diagnostic for a declaration missing a semi or definition.
  279. auto DiagnoseExpectedDeclSemiOrDefinition(Lex::TokenKind expected_kind)
  280. -> void;
  281. // Handles error recovery in a declaration, particularly before any possible
  282. // definition has started (although one could be present). Recover to a
  283. // semicolon when it makes sense as a possible end, otherwise use the
  284. // introducer token for the error.
  285. auto RecoverFromDeclError(StateStackEntry state, NodeKind node_kind,
  286. bool skip_past_likely_end) -> void;
  287. // Handles parsing of the library name. Returns the name's ID on success,
  288. // which may be invalid for `default`.
  289. // TODO: Add an invalid node on error, fix callers to adapt.
  290. auto ParseLibraryName(bool accept_default)
  291. -> std::optional<StringLiteralValueId>;
  292. // Handles parsing `library <name>`. Requires that the position is a `library`
  293. // token. Returns the name's ID on success, which may be invalid for
  294. // `default`.
  295. auto ParseLibrarySpecifier(bool accept_default)
  296. -> std::optional<StringLiteralValueId>;
  297. // Sets the package declaration information. Called at most once.
  298. auto set_packaging_decl(Tree::PackagingNames packaging_names, bool is_impl)
  299. -> void {
  300. CARBON_CHECK(!tree_->packaging_decl_);
  301. tree_->packaging_decl_ = {.names = packaging_names, .is_impl = is_impl};
  302. }
  303. // Adds an import.
  304. auto AddImport(Tree::PackagingNames package) -> void {
  305. tree_->imports_.push_back(package);
  306. }
  307. // Adds a function definition start node, and begins tracking a deferred
  308. // definition if necessary.
  309. auto AddFunctionDefinitionStart(Lex::TokenIndex token, bool has_error)
  310. -> void;
  311. // Adds a function definition node, and ends tracking a deferred definition if
  312. // necessary.
  313. auto AddFunctionDefinition(Lex::TokenIndex token, bool has_error) -> void;
  314. // Prints information for a stack dump.
  315. auto PrintForStackDump(llvm::raw_ostream& output) const -> void;
  316. auto tree() const -> const Tree& { return *tree_; }
  317. auto tokens() const -> const Lex::TokenizedBuffer& { return *tokens_; }
  318. auto has_errors() const -> bool { return err_tracker_.seen_error(); }
  319. auto emitter() -> Lex::TokenDiagnosticEmitter& { return emitter_; }
  320. auto position() -> Lex::TokenIterator& { return position_; }
  321. auto position() const -> Lex::TokenIterator { return position_; }
  322. auto state_stack() -> llvm::SmallVector<StateStackEntry>& {
  323. return state_stack_;
  324. }
  325. auto state_stack() const -> const llvm::SmallVector<StateStackEntry>& {
  326. return state_stack_;
  327. }
  328. auto packaging_state() const -> PackagingState { return packaging_state_; }
  329. auto set_packaging_state(PackagingState packaging_state) -> void {
  330. packaging_state_ = packaging_state;
  331. }
  332. auto first_non_packaging_token() const -> Lex::TokenIndex {
  333. return first_non_packaging_token_;
  334. }
  335. auto set_first_non_packaging_token(Lex::TokenIndex token) -> void {
  336. CARBON_CHECK(!first_non_packaging_token_.has_value());
  337. first_non_packaging_token_ = token;
  338. }
  339. private:
  340. // Applies the `position_` to the `last_byte_offset` returned by
  341. // `TokenToDiagnosticLoc`.
  342. class TokenDiagnosticConverterForParse
  343. : public DiagnosticConverter<Lex::TokenIndex> {
  344. public:
  345. explicit TokenDiagnosticConverterForParse(Lex::TokenizedBuffer* tokens,
  346. Lex::TokenIterator* position)
  347. : tokens_(tokens), position_(position) {}
  348. auto ConvertLoc(Lex::TokenIndex token, ContextFnT /*context_fn*/) const
  349. -> ConvertedDiagnosticLoc override {
  350. auto converted = tokens_->TokenToDiagnosticLoc(token);
  351. converted.last_byte_offset = std::max(
  352. converted.last_byte_offset, tokens_->GetByteOffset(**position_));
  353. return converted;
  354. }
  355. private:
  356. Lex::TokenizedBuffer* tokens_;
  357. // The position in `Parse()`.
  358. Lex::TokenIterator* position_;
  359. };
  360. // Prints a single token for a stack dump. Used by PrintForStackDump.
  361. auto PrintTokenForStackDump(llvm::raw_ostream& output,
  362. Lex::TokenIndex token) const -> void;
  363. Tree* tree_;
  364. Lex::TokenizedBuffer* tokens_;
  365. TokenDiagnosticConverterForParse converter_;
  366. ErrorTrackingDiagnosticConsumer err_tracker_;
  367. Lex::TokenDiagnosticEmitter emitter_;
  368. // Whether to print verbose output.
  369. llvm::raw_ostream* vlog_stream_;
  370. // The current position within the token buffer.
  371. Lex::TokenIterator position_;
  372. // The FileEnd token.
  373. Lex::TokenIterator end_;
  374. llvm::SmallVector<StateStackEntry> state_stack_;
  375. // The deferred definition indexes of functions whose definitions have begun
  376. // but not yet finished.
  377. llvm::SmallVector<DeferredDefinitionIndex> deferred_definition_stack_;
  378. // The current packaging state, whether `import`/`package` are allowed.
  379. PackagingState packaging_state_ = PackagingState::FileStart;
  380. // The first non-packaging token, starting as invalid. Used for packaging
  381. // state warnings.
  382. Lex::TokenIndex first_non_packaging_token_ = Lex::TokenIndex::None;
  383. };
  384. } // namespace Carbon::Parse
  385. #endif // CARBON_TOOLCHAIN_PARSE_CONTEXT_H_