parser.cpp 59 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. #include "toolchain/parser/parser.h"
  5. #include <cstdlib>
  6. #include <memory>
  7. #include <optional>
  8. #include "common/check.h"
  9. #include "llvm/Support/PrettyStackTrace.h"
  10. #include "toolchain/lexer/token_kind.h"
  11. #include "toolchain/lexer/tokenized_buffer.h"
  12. #include "toolchain/parser/parse_node_kind.h"
  13. #include "toolchain/parser/parse_tree.h"
  14. namespace Carbon {
  15. // May be emitted a couple different ways as part of operator parsing.
  16. CARBON_DIAGNOSTIC(
  17. OperatorRequiresParentheses, Error,
  18. "Parentheses are required to disambiguate operator precedence.");
  19. CARBON_DIAGNOSTIC(ExpectedParenAfter, Error, "Expected `(` after `{0}`.",
  20. TokenKind);
  21. CARBON_DIAGNOSTIC(ExpectedSemiAfterExpression, Error,
  22. "Expected `;` after expression.");
  23. CARBON_DIAGNOSTIC(UnrecognizedDeclaration, Error,
  24. "Unrecognized declaration introducer.");
  25. // A relative location for characters in errors.
  26. enum class RelativeLocation : int8_t {
  27. Around,
  28. After,
  29. Before,
  30. };
  31. // Adapts RelativeLocation for use with formatv.
  32. static auto operator<<(llvm::raw_ostream& out, RelativeLocation loc)
  33. -> llvm::raw_ostream& {
  34. switch (loc) {
  35. case RelativeLocation::Around:
  36. out << "around";
  37. break;
  38. case RelativeLocation::After:
  39. out << "after";
  40. break;
  41. case RelativeLocation::Before:
  42. out << "before";
  43. break;
  44. }
  45. return out;
  46. }
  47. class Parser::PrettyStackTraceParseState : public llvm::PrettyStackTraceEntry {
  48. public:
  49. explicit PrettyStackTraceParseState(const Parser* parser) : parser_(parser) {}
  50. ~PrettyStackTraceParseState() override = default;
  51. auto print(llvm::raw_ostream& output) const -> void override {
  52. output << "Parser stack:\n";
  53. for (int i = 0; i < static_cast<int>(parser_->state_stack_.size()); ++i) {
  54. const auto& entry = parser_->state_stack_[i];
  55. output << "\t" << i << ".\t" << entry.state;
  56. Print(output, entry.token);
  57. }
  58. output << "\tcursor\tposition_";
  59. Print(output, *parser_->position_);
  60. }
  61. private:
  62. auto Print(llvm::raw_ostream& output, TokenizedBuffer::Token token) const
  63. -> void {
  64. auto line = parser_->tokens_->GetLine(token);
  65. output << " @ " << parser_->tokens_->GetLineNumber(line) << ":"
  66. << parser_->tokens_->GetColumnNumber(token) << ":"
  67. << " token " << token << " : "
  68. << parser_->tokens_->GetKind(token).name() << "\n";
  69. }
  70. const Parser* parser_;
  71. };
  72. Parser::Parser(ParseTree& tree, TokenizedBuffer& tokens,
  73. TokenDiagnosticEmitter& emitter, llvm::raw_ostream* vlog_stream)
  74. : tree_(&tree),
  75. tokens_(&tokens),
  76. emitter_(&emitter),
  77. vlog_stream_(vlog_stream),
  78. position_(tokens_->tokens().begin()),
  79. end_(tokens_->tokens().end()),
  80. stack_context_(ParseContext::File) {
  81. CARBON_CHECK(position_ != end_) << "Empty TokenizedBuffer";
  82. --end_;
  83. CARBON_CHECK(tokens_->GetKind(*end_) == TokenKind::EndOfFile())
  84. << "TokenizedBuffer should end with EndOfFile, ended with "
  85. << tokens_->GetKind(*end_).name();
  86. }
  87. auto Parser::AddLeafNode(ParseNodeKind kind, TokenizedBuffer::Token token,
  88. bool has_error) -> void {
  89. tree_->node_impls_.push_back(
  90. ParseTree::NodeImpl(kind, has_error, token, /*subtree_size=*/1));
  91. if (has_error) {
  92. tree_->has_errors_ = true;
  93. }
  94. }
  95. auto Parser::AddNode(ParseNodeKind kind, TokenizedBuffer::Token token,
  96. int subtree_start, bool has_error) -> void {
  97. int subtree_size = tree_->size() - subtree_start + 1;
  98. tree_->node_impls_.push_back(
  99. ParseTree::NodeImpl(kind, has_error, token, subtree_size));
  100. if (has_error) {
  101. tree_->has_errors_ = true;
  102. }
  103. }
  104. auto Parser::ConsumeAndAddOpenParen(TokenizedBuffer::Token default_token,
  105. ParseNodeKind start_kind) -> void {
  106. if (auto open_paren = ConsumeIf(TokenKind::OpenParen())) {
  107. AddLeafNode(start_kind, *open_paren, /*has_error=*/false);
  108. } else {
  109. emitter_->Emit(*position_, ExpectedParenAfter,
  110. tokens_->GetKind(default_token));
  111. AddLeafNode(start_kind, default_token, /*has_error=*/true);
  112. }
  113. }
  114. auto Parser::ConsumeAndAddCloseParen(StateStackEntry state,
  115. ParseNodeKind close_kind) -> void {
  116. // state.token should point at the introducer, with the paren one after the
  117. // introducer.
  118. auto expected_paren = *(TokenizedBuffer::TokenIterator(state.token) + 1);
  119. if (tokens_->GetKind(expected_paren) != TokenKind::OpenParen()) {
  120. AddNode(close_kind, state.token, state.subtree_start, /*has_error=*/true);
  121. } else if (auto close_token = ConsumeIf(TokenKind::CloseParen())) {
  122. AddNode(close_kind, *close_token, state.subtree_start, state.has_error);
  123. } else {
  124. // TODO: Include the location of the matching open_paren in the diagnostic.
  125. CARBON_DIAGNOSTIC(ExpectedCloseParen, Error,
  126. "Unexpected tokens before `)`.");
  127. emitter_->Emit(*position_, ExpectedCloseParen);
  128. SkipTo(tokens_->GetMatchedClosingToken(expected_paren));
  129. AddNode(close_kind, Consume(), state.subtree_start, /*has_error=*/true);
  130. }
  131. }
  132. auto Parser::ConsumeAndAddLeafNodeIf(TokenKind token_kind,
  133. ParseNodeKind node_kind) -> bool {
  134. auto token = ConsumeIf(token_kind);
  135. if (!token) {
  136. return false;
  137. }
  138. AddLeafNode(node_kind, *token);
  139. return true;
  140. }
  141. auto Parser::ConsumeChecked(TokenKind kind) -> TokenizedBuffer::Token {
  142. CARBON_CHECK(PositionIs(kind))
  143. << "Required " << kind.name() << ", found " << PositionKind().name();
  144. return Consume();
  145. }
  146. auto Parser::ConsumeIf(TokenKind kind)
  147. -> std::optional<TokenizedBuffer::Token> {
  148. if (!PositionIs(kind)) {
  149. return std::nullopt;
  150. }
  151. return Consume();
  152. }
  153. auto Parser::FindNextOf(std::initializer_list<TokenKind> desired_kinds)
  154. -> std::optional<TokenizedBuffer::Token> {
  155. auto new_position = position_;
  156. while (true) {
  157. TokenizedBuffer::Token token = *new_position;
  158. TokenKind kind = tokens_->GetKind(token);
  159. if (kind.IsOneOf(desired_kinds)) {
  160. return token;
  161. }
  162. // Step to the next token at the current bracketing level.
  163. if (kind.is_closing_symbol() || kind == TokenKind::EndOfFile()) {
  164. // There are no more tokens at this level.
  165. return std::nullopt;
  166. } else if (kind.is_opening_symbol()) {
  167. new_position = TokenizedBuffer::TokenIterator(
  168. tokens_->GetMatchedClosingToken(token));
  169. // Advance past the closing token.
  170. ++new_position;
  171. } else {
  172. ++new_position;
  173. }
  174. }
  175. }
  176. auto Parser::SkipMatchingGroup() -> bool {
  177. if (!PositionKind().is_opening_symbol()) {
  178. return false;
  179. }
  180. SkipTo(tokens_->GetMatchedClosingToken(*position_));
  181. ++position_;
  182. return true;
  183. }
  184. auto Parser::SkipPastLikelyEnd(TokenizedBuffer::Token skip_root)
  185. -> std::optional<TokenizedBuffer::Token> {
  186. if (position_ == end_) {
  187. return std::nullopt;
  188. }
  189. TokenizedBuffer::Line root_line = tokens_->GetLine(skip_root);
  190. int root_line_indent = tokens_->GetIndentColumnNumber(root_line);
  191. // We will keep scanning through tokens on the same line as the root or
  192. // lines with greater indentation than root's line.
  193. auto is_same_line_or_indent_greater_than_root =
  194. [&](TokenizedBuffer::Token t) {
  195. TokenizedBuffer::Line l = tokens_->GetLine(t);
  196. if (l == root_line) {
  197. return true;
  198. }
  199. return tokens_->GetIndentColumnNumber(l) > root_line_indent;
  200. };
  201. do {
  202. if (PositionIs(TokenKind::CloseCurlyBrace())) {
  203. // Immediately bail out if we hit an unmatched close curly, this will
  204. // pop us up a level of the syntax grouping.
  205. return std::nullopt;
  206. }
  207. // We assume that a semicolon is always intended to be the end of the
  208. // current construct.
  209. if (auto semi = ConsumeIf(TokenKind::Semi())) {
  210. return semi;
  211. }
  212. // Skip over any matching group of tokens_->
  213. if (SkipMatchingGroup()) {
  214. continue;
  215. }
  216. // Otherwise just step forward one token.
  217. ++position_;
  218. } while (position_ != end_ &&
  219. is_same_line_or_indent_greater_than_root(*position_));
  220. return std::nullopt;
  221. }
  222. auto Parser::SkipTo(TokenizedBuffer::Token t) -> void {
  223. CARBON_CHECK(t >= *position_) << "Tried to skip backwards from " << position_
  224. << " to " << TokenizedBuffer::TokenIterator(t);
  225. position_ = TokenizedBuffer::TokenIterator(t);
  226. CARBON_CHECK(position_ != end_) << "Skipped past EOF.";
  227. }
  228. auto Parser::HandleCodeBlockState() -> void {
  229. PopAndDiscardState();
  230. PushState(ParserState::CodeBlockFinish);
  231. if (ConsumeAndAddLeafNodeIf(TokenKind::OpenCurlyBrace(),
  232. ParseNodeKind::CodeBlockStart())) {
  233. PushState(ParserState::StatementScopeLoop);
  234. } else {
  235. AddLeafNode(ParseNodeKind::CodeBlockStart(), *position_,
  236. /*has_error=*/true);
  237. // Recover by parsing a single statement.
  238. CARBON_DIAGNOSTIC(ExpectedCodeBlock, Error, "Expected braced code block.");
  239. emitter_->Emit(*position_, ExpectedCodeBlock);
  240. PushState(ParserState::Statement);
  241. }
  242. }
  243. // Determines whether the given token is considered to be the start of an
  244. // operand according to the rules for infix operator parsing.
  245. static auto IsAssumedStartOfOperand(TokenKind kind) -> bool {
  246. return kind.IsOneOf({TokenKind::OpenParen(), TokenKind::Identifier(),
  247. TokenKind::IntegerLiteral(), TokenKind::RealLiteral(),
  248. TokenKind::StringLiteral()});
  249. }
  250. // Determines whether the given token is considered to be the end of an
  251. // operand according to the rules for infix operator parsing.
  252. static auto IsAssumedEndOfOperand(TokenKind kind) -> bool {
  253. return kind.IsOneOf({TokenKind::CloseParen(), TokenKind::CloseCurlyBrace(),
  254. TokenKind::CloseSquareBracket(), TokenKind::Identifier(),
  255. TokenKind::IntegerLiteral(), TokenKind::RealLiteral(),
  256. TokenKind::StringLiteral()});
  257. }
  258. // Determines whether the given token could possibly be the start of an
  259. // operand. This is conservatively correct, and will never incorrectly return
  260. // `false`, but can incorrectly return `true`.
  261. static auto IsPossibleStartOfOperand(TokenKind kind) -> bool {
  262. return !kind.IsOneOf({TokenKind::CloseParen(), TokenKind::CloseCurlyBrace(),
  263. TokenKind::CloseSquareBracket(), TokenKind::Comma(),
  264. TokenKind::Semi(), TokenKind::Colon()});
  265. }
  266. auto Parser::IsLexicallyValidInfixOperator() -> bool {
  267. CARBON_CHECK(position_ != end_) << "Expected an operator token.";
  268. bool leading_space = tokens_->HasLeadingWhitespace(*position_);
  269. bool trailing_space = tokens_->HasTrailingWhitespace(*position_);
  270. // If there's whitespace on both sides, it's an infix operator.
  271. if (leading_space && trailing_space) {
  272. return true;
  273. }
  274. // If there's whitespace on exactly one side, it's not an infix operator.
  275. if (leading_space || trailing_space) {
  276. return false;
  277. }
  278. // Otherwise, for an infix operator, the preceding token must be any close
  279. // bracket, identifier, or literal and the next token must be an open paren,
  280. // identifier, or literal.
  281. if (position_ == tokens_->tokens().begin() ||
  282. !IsAssumedEndOfOperand(tokens_->GetKind(*(position_ - 1))) ||
  283. !IsAssumedStartOfOperand(tokens_->GetKind(*(position_ + 1)))) {
  284. return false;
  285. }
  286. return true;
  287. }
  288. auto Parser::IsTrailingOperatorInfix() -> bool {
  289. if (position_ == end_) {
  290. return false;
  291. }
  292. // An operator that follows the infix operator rules is parsed as
  293. // infix, unless the next token means that it can't possibly be.
  294. if (IsLexicallyValidInfixOperator() &&
  295. IsPossibleStartOfOperand(tokens_->GetKind(*(position_ + 1)))) {
  296. return true;
  297. }
  298. // A trailing operator with leading whitespace that's not valid as infix is
  299. // not valid at all. If the next token looks like the start of an operand,
  300. // then parse as infix, otherwise as postfix. Either way we'll produce a
  301. // diagnostic later on.
  302. if (tokens_->HasLeadingWhitespace(*position_) &&
  303. IsAssumedStartOfOperand(tokens_->GetKind(*(position_ + 1)))) {
  304. return true;
  305. }
  306. return false;
  307. }
  308. auto Parser::DiagnoseOperatorFixity(OperatorFixity fixity) -> void {
  309. if (fixity == OperatorFixity::Infix) {
  310. // Infix operators must satisfy the infix operator rules.
  311. if (!IsLexicallyValidInfixOperator()) {
  312. CARBON_DIAGNOSTIC(BinaryOperatorRequiresWhitespace, Error,
  313. "Whitespace missing {0} binary operator.",
  314. RelativeLocation);
  315. emitter_->Emit(*position_, BinaryOperatorRequiresWhitespace,
  316. tokens_->HasLeadingWhitespace(*position_)
  317. ? RelativeLocation::After
  318. : (tokens_->HasTrailingWhitespace(*position_)
  319. ? RelativeLocation::Before
  320. : RelativeLocation::Around));
  321. }
  322. } else {
  323. bool prefix = fixity == OperatorFixity::Prefix;
  324. // Whitespace is not permitted between a symbolic pre/postfix operator and
  325. // its operand.
  326. if (PositionKind().is_symbol() &&
  327. (prefix ? tokens_->HasTrailingWhitespace(*position_)
  328. : tokens_->HasLeadingWhitespace(*position_))) {
  329. CARBON_DIAGNOSTIC(UnaryOperatorHasWhitespace, Error,
  330. "Whitespace is not allowed {0} this unary operator.",
  331. RelativeLocation);
  332. emitter_->Emit(
  333. *position_, UnaryOperatorHasWhitespace,
  334. prefix ? RelativeLocation::After : RelativeLocation::Before);
  335. }
  336. // Pre/postfix operators must not satisfy the infix operator rules.
  337. if (IsLexicallyValidInfixOperator()) {
  338. CARBON_DIAGNOSTIC(UnaryOperatorRequiresWhitespace, Error,
  339. "Whitespace is required {0} this unary operator.",
  340. RelativeLocation);
  341. emitter_->Emit(
  342. *position_, UnaryOperatorRequiresWhitespace,
  343. prefix ? RelativeLocation::Before : RelativeLocation::After);
  344. }
  345. }
  346. }
  347. auto Parser::ConsumeListToken(ParseNodeKind comma_kind, TokenKind close_kind,
  348. bool already_has_error) -> ListTokenKind {
  349. if (!PositionIs(TokenKind::Comma()) && !PositionIs(close_kind)) {
  350. // Don't error a second time on the same element.
  351. if (!already_has_error) {
  352. CARBON_DIAGNOSTIC(UnexpectedTokenAfterListElement, Error,
  353. "Expected `,` or `{0}`.", TokenKind);
  354. emitter_->Emit(*position_, UnexpectedTokenAfterListElement, close_kind);
  355. ReturnErrorOnState();
  356. }
  357. // Recover from the invalid token.
  358. auto end_of_element = FindNextOf({TokenKind::Comma(), close_kind});
  359. // The lexer guarantees that parentheses are balanced.
  360. CARBON_CHECK(end_of_element)
  361. << "missing matching `" << close_kind.opening_symbol() << "` for `"
  362. << close_kind << "`";
  363. SkipTo(*end_of_element);
  364. }
  365. if (PositionIs(close_kind)) {
  366. return ListTokenKind::Close;
  367. } else {
  368. AddLeafNode(comma_kind, Consume());
  369. return PositionIs(close_kind) ? ListTokenKind::CommaClose
  370. : ListTokenKind::Comma;
  371. }
  372. }
  373. auto Parser::Parse() -> void {
  374. // Traces state_stack_. This runs even in opt because it's low overhead.
  375. PrettyStackTraceParseState pretty_stack(this);
  376. PushState(ParserState::DeclarationLoop);
  377. while (!state_stack_.empty()) {
  378. switch (state_stack_.back().state) {
  379. #define CARBON_PARSER_STATE(Name) \
  380. case ParserState::Name: \
  381. Handle##Name##State(); \
  382. break;
  383. #include "toolchain/parser/parser_state.def"
  384. }
  385. }
  386. AddLeafNode(ParseNodeKind::FileEnd(), *position_);
  387. }
  388. auto Parser::HandleBraceExpressionState() -> void {
  389. auto state = PopState();
  390. state.state = ParserState::BraceExpressionFinishAsUnknown;
  391. PushState(state);
  392. CARBON_CHECK(ConsumeAndAddLeafNodeIf(
  393. TokenKind::OpenCurlyBrace(),
  394. ParseNodeKind::StructLiteralOrStructTypeLiteralStart()));
  395. if (!PositionIs(TokenKind::CloseCurlyBrace())) {
  396. PushState(ParserState::BraceExpressionParameterAsUnknown);
  397. }
  398. }
  399. auto Parser::BraceExpressionKindToParserState(BraceExpressionKind kind,
  400. ParserState type,
  401. ParserState value,
  402. ParserState unknown)
  403. -> ParserState {
  404. switch (kind) {
  405. case BraceExpressionKind::Type: {
  406. return type;
  407. }
  408. case BraceExpressionKind::Value: {
  409. return value;
  410. }
  411. case BraceExpressionKind::Unknown: {
  412. return unknown;
  413. }
  414. }
  415. }
  416. auto Parser::HandleBraceExpressionParameterError(StateStackEntry state,
  417. BraceExpressionKind kind)
  418. -> void {
  419. CARBON_DIAGNOSTIC(ExpectedStructLiteralField, Error, "Expected {0}{1}{2}.",
  420. llvm::StringRef, llvm::StringRef, llvm::StringRef);
  421. bool can_be_type = kind != BraceExpressionKind::Value;
  422. bool can_be_value = kind != BraceExpressionKind::Type;
  423. emitter_->Emit(*position_, ExpectedStructLiteralField,
  424. can_be_type ? "`.field: type`" : "",
  425. (can_be_type && can_be_value) ? " or " : "",
  426. can_be_value ? "`.field = value`" : "");
  427. state.state = BraceExpressionKindToParserState(
  428. kind, ParserState::BraceExpressionParameterFinishAsType,
  429. ParserState::BraceExpressionParameterFinishAsValue,
  430. ParserState::BraceExpressionParameterFinishAsUnknown);
  431. state.has_error = true;
  432. PushState(state);
  433. }
  434. auto Parser::HandleBraceExpressionParameter(BraceExpressionKind kind) -> void {
  435. auto state = PopState();
  436. if (!PositionIs(TokenKind::Period())) {
  437. HandleBraceExpressionParameterError(state, kind);
  438. return;
  439. }
  440. state.state = BraceExpressionKindToParserState(
  441. kind, ParserState::BraceExpressionParameterAfterDesignatorAsType,
  442. ParserState::BraceExpressionParameterAfterDesignatorAsValue,
  443. ParserState::BraceExpressionParameterAfterDesignatorAsUnknown);
  444. PushState(state);
  445. PushState(ParserState::DesignatorAsStruct);
  446. }
  447. auto Parser::HandleBraceExpressionParameterAsTypeState() -> void {
  448. HandleBraceExpressionParameter(BraceExpressionKind::Type);
  449. }
  450. auto Parser::HandleBraceExpressionParameterAsValueState() -> void {
  451. HandleBraceExpressionParameter(BraceExpressionKind::Value);
  452. }
  453. auto Parser::HandleBraceExpressionParameterAsUnknownState() -> void {
  454. HandleBraceExpressionParameter(BraceExpressionKind::Unknown);
  455. }
  456. auto Parser::HandleBraceExpressionParameterAfterDesignator(
  457. BraceExpressionKind kind) -> void {
  458. auto state = PopState();
  459. if (state.has_error) {
  460. auto recovery_pos = FindNextOf(
  461. {TokenKind::Equal(), TokenKind::Colon(), TokenKind::Comma()});
  462. if (!recovery_pos ||
  463. tokens_->GetKind(*recovery_pos) == TokenKind::Comma()) {
  464. state.state = BraceExpressionKindToParserState(
  465. kind, ParserState::BraceExpressionParameterFinishAsType,
  466. ParserState::BraceExpressionParameterFinishAsValue,
  467. ParserState::BraceExpressionParameterFinishAsUnknown);
  468. PushState(state);
  469. return;
  470. }
  471. SkipTo(*recovery_pos);
  472. }
  473. // Work out the kind of this element.
  474. auto elem_kind = BraceExpressionKind::Unknown;
  475. if (PositionIs(TokenKind::Colon())) {
  476. elem_kind = BraceExpressionKind::Type;
  477. } else if (PositionIs(TokenKind::Equal())) {
  478. elem_kind = BraceExpressionKind::Value;
  479. }
  480. // Unknown kinds and changes between type and value are errors.
  481. if (elem_kind == BraceExpressionKind::Unknown ||
  482. (kind != BraceExpressionKind::Unknown && elem_kind != kind)) {
  483. HandleBraceExpressionParameterError(state, kind);
  484. return;
  485. }
  486. // If we're setting the kind, update the BraceExpressionFinish state.
  487. if (kind == BraceExpressionKind::Unknown) {
  488. kind = elem_kind;
  489. auto finish_state = PopState();
  490. CARBON_CHECK(finish_state.state ==
  491. ParserState::BraceExpressionFinishAsUnknown);
  492. finish_state.state = BraceExpressionKindToParserState(
  493. kind, ParserState::BraceExpressionFinishAsType,
  494. ParserState::BraceExpressionFinishAsValue,
  495. ParserState::BraceExpressionFinishAsUnknown);
  496. PushState(finish_state);
  497. }
  498. state.state = BraceExpressionKindToParserState(
  499. kind, ParserState::BraceExpressionParameterFinishAsType,
  500. ParserState::BraceExpressionParameterFinishAsValue,
  501. ParserState::BraceExpressionParameterFinishAsUnknown);
  502. state.token = Consume();
  503. // Struct type fields and value fields use the same grammar except
  504. // that one has a `:` separator and the other has an `=` separator.
  505. PushState(state);
  506. PushState(ParserState::Expression);
  507. }
  508. auto Parser::HandleBraceExpressionParameterAfterDesignatorAsTypeState()
  509. -> void {
  510. HandleBraceExpressionParameterAfterDesignator(BraceExpressionKind::Type);
  511. }
  512. auto Parser::HandleBraceExpressionParameterAfterDesignatorAsValueState()
  513. -> void {
  514. HandleBraceExpressionParameterAfterDesignator(BraceExpressionKind::Value);
  515. }
  516. auto Parser::HandleBraceExpressionParameterAfterDesignatorAsUnknownState()
  517. -> void {
  518. HandleBraceExpressionParameterAfterDesignator(BraceExpressionKind::Unknown);
  519. }
  520. auto Parser::HandleBraceExpressionParameterFinish(BraceExpressionKind kind)
  521. -> void {
  522. auto state = PopState();
  523. if (state.has_error) {
  524. AddLeafNode(ParseNodeKind::StructFieldUnknown(), state.token,
  525. /*has_error=*/true);
  526. } else {
  527. AddNode(kind == BraceExpressionKind::Type
  528. ? ParseNodeKind::StructFieldType()
  529. : ParseNodeKind::StructFieldValue(),
  530. state.token, state.subtree_start, /*has_error=*/false);
  531. }
  532. if (ConsumeListToken(ParseNodeKind::StructComma(),
  533. TokenKind::CloseCurlyBrace(),
  534. state.has_error) == ListTokenKind::Comma) {
  535. PushState(BraceExpressionKindToParserState(
  536. kind, ParserState::BraceExpressionParameterAsType,
  537. ParserState::BraceExpressionParameterAsValue,
  538. ParserState::BraceExpressionParameterAsUnknown));
  539. }
  540. }
  541. auto Parser::HandleBraceExpressionParameterFinishAsTypeState() -> void {
  542. HandleBraceExpressionParameterFinish(BraceExpressionKind::Type);
  543. }
  544. auto Parser::HandleBraceExpressionParameterFinishAsValueState() -> void {
  545. HandleBraceExpressionParameterFinish(BraceExpressionKind::Value);
  546. }
  547. auto Parser::HandleBraceExpressionParameterFinishAsUnknownState() -> void {
  548. HandleBraceExpressionParameterFinish(BraceExpressionKind::Unknown);
  549. }
  550. auto Parser::HandleBraceExpressionFinish(BraceExpressionKind kind) -> void {
  551. auto state = PopState();
  552. AddNode(kind == BraceExpressionKind::Type ? ParseNodeKind::StructTypeLiteral()
  553. : ParseNodeKind::StructLiteral(),
  554. Consume(), state.subtree_start, state.has_error);
  555. }
  556. auto Parser::HandleBraceExpressionFinishAsTypeState() -> void {
  557. HandleBraceExpressionFinish(BraceExpressionKind::Type);
  558. }
  559. auto Parser::HandleBraceExpressionFinishAsValueState() -> void {
  560. HandleBraceExpressionFinish(BraceExpressionKind::Value);
  561. }
  562. auto Parser::HandleBraceExpressionFinishAsUnknownState() -> void {
  563. HandleBraceExpressionFinish(BraceExpressionKind::Unknown);
  564. }
  565. auto Parser::HandleCallExpressionState() -> void {
  566. auto state = PopState();
  567. state.state = ParserState::CallExpressionFinish;
  568. PushState(state);
  569. AddNode(ParseNodeKind::CallExpressionStart(), Consume(), state.subtree_start,
  570. state.has_error);
  571. if (!PositionIs(TokenKind::CloseParen())) {
  572. PushState(ParserState::CallExpressionParameterFinish);
  573. PushState(ParserState::Expression);
  574. }
  575. }
  576. auto Parser::HandleCallExpressionParameterFinishState() -> void {
  577. auto state = PopState();
  578. if (state.has_error) {
  579. ReturnErrorOnState();
  580. }
  581. if (ConsumeListToken(ParseNodeKind::CallExpressionComma(),
  582. TokenKind::CloseParen(),
  583. state.has_error) == ListTokenKind::Comma) {
  584. PushState(ParserState::CallExpressionParameterFinish);
  585. PushState(ParserState::Expression);
  586. }
  587. }
  588. auto Parser::HandleCallExpressionFinishState() -> void {
  589. auto state = PopState();
  590. AddNode(ParseNodeKind::CallExpression(), Consume(), state.subtree_start,
  591. state.has_error);
  592. }
  593. auto Parser::HandleCodeBlockFinishState() -> void {
  594. auto state = PopState();
  595. // If the block started with an open curly, this is a close curly.
  596. if (tokens_->GetKind(state.token) == TokenKind::OpenCurlyBrace()) {
  597. AddNode(ParseNodeKind::CodeBlock(), Consume(), state.subtree_start,
  598. state.has_error);
  599. } else {
  600. AddNode(ParseNodeKind::CodeBlock(), state.token, state.subtree_start,
  601. /*has_error=*/true);
  602. }
  603. }
  604. auto Parser::HandleDeclarationLoopState() -> void {
  605. // This maintains the current state unless we're at the end of the file.
  606. switch (PositionKind()) {
  607. case TokenKind::EndOfFile(): {
  608. PopAndDiscardState();
  609. break;
  610. }
  611. case TokenKind::Fn(): {
  612. PushState(ParserState::FunctionIntroducer);
  613. AddLeafNode(ParseNodeKind::FunctionIntroducer(), Consume());
  614. break;
  615. }
  616. case TokenKind::Package(): {
  617. PushState(ParserState::Package);
  618. break;
  619. }
  620. case TokenKind::Semi(): {
  621. AddLeafNode(ParseNodeKind::EmptyDeclaration(), Consume());
  622. break;
  623. }
  624. case TokenKind::Var(): {
  625. PushState(ParserState::VarAsSemicolon);
  626. break;
  627. }
  628. case TokenKind::Interface(): {
  629. PushState(ParserState::InterfaceIntroducer);
  630. ++position_;
  631. break;
  632. }
  633. default: {
  634. emitter_->Emit(*position_, UnrecognizedDeclaration);
  635. auto cursor = *position_;
  636. auto semi = SkipPastLikelyEnd(cursor);
  637. // Locate the EmptyDeclaration at the semi when found, but use the
  638. // original cursor location for an error when not.
  639. AddLeafNode(ParseNodeKind::EmptyDeclaration(), semi ? *semi : cursor,
  640. /*has_error=*/true);
  641. break;
  642. }
  643. }
  644. }
  645. auto Parser::HandleDeducedParameterListFinishState() -> void {
  646. auto state = PopState();
  647. CARBON_CHECK(tokens_->GetKind(*position_) == TokenKind::CloseSquareBracket())
  648. << "Expected current token to be: `]`, found: "
  649. << tokens_->GetKind(state.token);
  650. AddNode(ParseNodeKind::DeducedParameterList(), Consume(), state.subtree_start,
  651. state.has_error);
  652. }
  653. auto Parser::HandleDesignator(bool as_struct) -> void {
  654. auto state = PopState();
  655. // `.` identifier
  656. auto dot = ConsumeChecked(TokenKind::Period());
  657. if (!ConsumeAndAddLeafNodeIf(TokenKind::Identifier(),
  658. ParseNodeKind::DesignatedName())) {
  659. CARBON_DIAGNOSTIC(ExpectedIdentifierAfterDot, Error,
  660. "Expected identifier after `.`.");
  661. emitter_->Emit(*position_, ExpectedIdentifierAfterDot);
  662. // If we see a keyword, assume it was intended to be the designated name.
  663. // TODO: Should keywords be valid in designators?
  664. if (PositionKind().is_keyword()) {
  665. AddLeafNode(ParseNodeKind::DesignatedName(), Consume(),
  666. /*has_error=*/true);
  667. } else {
  668. AddLeafNode(ParseNodeKind::DesignatedName(), *position_,
  669. /*has_error=*/true);
  670. // Indicate the error to the parent state so that it can avoid producing
  671. // more errors.
  672. ReturnErrorOnState();
  673. }
  674. }
  675. AddNode(as_struct ? ParseNodeKind::StructFieldDesignator()
  676. : ParseNodeKind::DesignatorExpression(),
  677. dot, state.subtree_start, state.has_error);
  678. }
  679. auto Parser::HandleDesignatorAsExpressionState() -> void {
  680. HandleDesignator(/*as_struct=*/false);
  681. }
  682. auto Parser::HandleDesignatorAsStructState() -> void {
  683. HandleDesignator(/*as_struct=*/true);
  684. }
  685. auto Parser::HandleExpressionState() -> void {
  686. auto state = PopState();
  687. // Check for a prefix operator.
  688. if (auto operator_precedence = PrecedenceGroup::ForLeading(PositionKind())) {
  689. if (PrecedenceGroup::GetPriority(state.ambient_precedence,
  690. *operator_precedence) !=
  691. OperatorPriority::RightFirst) {
  692. // The precedence rules don't permit this prefix operator in this
  693. // context. Diagnose this, but carry on and parse it anyway.
  694. emitter_->Emit(*position_, OperatorRequiresParentheses);
  695. } else {
  696. // Check that this operator follows the proper whitespace rules.
  697. DiagnoseOperatorFixity(OperatorFixity::Prefix);
  698. }
  699. PushStateForExpressionLoop(ParserState::ExpressionLoopForPrefix,
  700. state.ambient_precedence, *operator_precedence);
  701. ++position_;
  702. PushStateForExpression(*operator_precedence);
  703. } else {
  704. PushStateForExpressionLoop(ParserState::ExpressionLoop,
  705. state.ambient_precedence,
  706. PrecedenceGroup::ForPostfixExpression());
  707. PushState(ParserState::ExpressionInPostfix);
  708. }
  709. }
  710. auto Parser::HandleExpressionInPostfixState() -> void {
  711. auto state = PopState();
  712. // Continue to the loop state.
  713. state.state = ParserState::ExpressionInPostfixLoop;
  714. // Parses a primary expression, which is either a terminal portion of an
  715. // expression tree, such as an identifier or literal, or a parenthesized
  716. // expression.
  717. switch (PositionKind()) {
  718. case TokenKind::Identifier(): {
  719. AddLeafNode(ParseNodeKind::NameReference(), Consume());
  720. PushState(state);
  721. break;
  722. }
  723. case TokenKind::IntegerLiteral():
  724. case TokenKind::RealLiteral():
  725. case TokenKind::StringLiteral():
  726. case TokenKind::IntegerTypeLiteral():
  727. case TokenKind::UnsignedIntegerTypeLiteral():
  728. case TokenKind::FloatingPointTypeLiteral(): {
  729. AddLeafNode(ParseNodeKind::Literal(), Consume());
  730. PushState(state);
  731. break;
  732. }
  733. case TokenKind::OpenCurlyBrace(): {
  734. PushState(state);
  735. PushState(ParserState::BraceExpression);
  736. break;
  737. }
  738. case TokenKind::OpenParen(): {
  739. PushState(state);
  740. PushState(ParserState::ParenExpression);
  741. break;
  742. }
  743. case TokenKind::SelfType(): {
  744. AddLeafNode(ParseNodeKind::SelfType(), Consume());
  745. PushState(state);
  746. break;
  747. }
  748. default: {
  749. CARBON_DIAGNOSTIC(ExpectedExpression, Error, "Expected expression.");
  750. emitter_->Emit(*position_, ExpectedExpression);
  751. ReturnErrorOnState();
  752. break;
  753. }
  754. }
  755. }
  756. auto Parser::HandleExpressionInPostfixLoopState() -> void {
  757. // This is a cyclic state that repeats, so this state is typically pushed back
  758. // on.
  759. auto state = PopState();
  760. state.token = *position_;
  761. switch (PositionKind()) {
  762. case TokenKind::Period(): {
  763. PushState(state);
  764. state.state = ParserState::DesignatorAsExpression;
  765. PushState(state);
  766. break;
  767. }
  768. case TokenKind::OpenParen(): {
  769. PushState(state);
  770. state.state = ParserState::CallExpression;
  771. PushState(state);
  772. break;
  773. }
  774. default: {
  775. if (state.has_error) {
  776. ReturnErrorOnState();
  777. }
  778. break;
  779. }
  780. }
  781. }
  782. auto Parser::HandleExpressionLoopState() -> void {
  783. auto state = PopState();
  784. auto trailing_operator =
  785. PrecedenceGroup::ForTrailing(PositionKind(), IsTrailingOperatorInfix());
  786. if (!trailing_operator) {
  787. if (state.has_error) {
  788. ReturnErrorOnState();
  789. }
  790. return;
  791. }
  792. auto [operator_precedence, is_binary] = *trailing_operator;
  793. // TODO: If this operator is ambiguous with either the ambient precedence
  794. // or the LHS precedence, and there's a variant with a different fixity
  795. // that would work, use that one instead for error recovery.
  796. if (PrecedenceGroup::GetPriority(state.ambient_precedence,
  797. operator_precedence) !=
  798. OperatorPriority::RightFirst) {
  799. // The precedence rules don't permit this operator in this context. Try
  800. // again in the enclosing expression context.
  801. if (state.has_error) {
  802. ReturnErrorOnState();
  803. }
  804. return;
  805. }
  806. if (PrecedenceGroup::GetPriority(state.lhs_precedence, operator_precedence) !=
  807. OperatorPriority::LeftFirst) {
  808. // Either the LHS operator and this operator are ambiguous, or the
  809. // LHS operator is a unary operator that can't be nested within
  810. // this operator. Either way, parentheses are required.
  811. emitter_->Emit(*position_, OperatorRequiresParentheses);
  812. state.has_error = true;
  813. } else {
  814. DiagnoseOperatorFixity(is_binary ? OperatorFixity::Infix
  815. : OperatorFixity::Postfix);
  816. }
  817. state.token = Consume();
  818. state.lhs_precedence = operator_precedence;
  819. if (is_binary) {
  820. state.state = ParserState::ExpressionLoopForBinary;
  821. PushState(state);
  822. PushStateForExpression(operator_precedence);
  823. } else {
  824. AddNode(ParseNodeKind::PostfixOperator(), state.token, state.subtree_start,
  825. state.has_error);
  826. state.has_error = false;
  827. PushState(state);
  828. }
  829. }
  830. auto Parser::HandleExpressionLoopForBinaryState() -> void {
  831. auto state = PopState();
  832. AddNode(ParseNodeKind::InfixOperator(), state.token, state.subtree_start,
  833. state.has_error);
  834. state.state = ParserState::ExpressionLoop;
  835. state.has_error = false;
  836. PushState(state);
  837. }
  838. auto Parser::HandleExpressionLoopForPrefixState() -> void {
  839. auto state = PopState();
  840. AddNode(ParseNodeKind::PrefixOperator(), state.token, state.subtree_start,
  841. state.has_error);
  842. state.state = ParserState::ExpressionLoop;
  843. state.has_error = false;
  844. PushState(state);
  845. }
  846. auto Parser::HandleExpressionStatementFinishState() -> void {
  847. auto state = PopState();
  848. if (auto semi = ConsumeIf(TokenKind::Semi())) {
  849. AddNode(ParseNodeKind::ExpressionStatement(), *semi, state.subtree_start,
  850. state.has_error);
  851. return;
  852. }
  853. if (!state.has_error) {
  854. emitter_->Emit(*position_, ExpectedSemiAfterExpression);
  855. }
  856. if (auto semi_token = SkipPastLikelyEnd(state.token)) {
  857. AddNode(ParseNodeKind::ExpressionStatement(), *semi_token,
  858. state.subtree_start,
  859. /*has_error=*/true);
  860. return;
  861. }
  862. // Found junk not even followed by a `;`, no node to add.
  863. ReturnErrorOnState();
  864. }
  865. auto Parser::HandleFunctionError(StateStackEntry state,
  866. bool skip_past_likely_end) -> void {
  867. auto token = state.token;
  868. if (skip_past_likely_end) {
  869. if (auto semi = SkipPastLikelyEnd(token)) {
  870. token = *semi;
  871. }
  872. }
  873. AddNode(ParseNodeKind::FunctionDeclaration(), token, state.subtree_start,
  874. /*has_error=*/true);
  875. }
  876. auto Parser::HandleFunctionIntroducerState() -> void {
  877. auto state = PopState();
  878. if (!ConsumeAndAddLeafNodeIf(TokenKind::Identifier(),
  879. ParseNodeKind::DeclaredName())) {
  880. CARBON_DIAGNOSTIC(ExpectedFunctionName, Error,
  881. "Expected function name after `fn` keyword.");
  882. emitter_->Emit(*position_, ExpectedFunctionName);
  883. // TODO: We could change the lexer to allow us to synthesize certain
  884. // kinds of tokens and try to "recover" here, but unclear that this is
  885. // really useful.
  886. HandleFunctionError(state, true);
  887. return;
  888. }
  889. state.state = ParserState::FunctionAfterDeducedParameterList;
  890. PushState(state);
  891. // If there are deduced params handle them next.
  892. if (PositionIs(TokenKind::OpenSquareBracket())) {
  893. PushState(ParserState::DeducedParameterListFinish);
  894. // This is for sure a `[`, we can safely create the corresponding node.
  895. AddLeafNode(ParseNodeKind::DeducedParameterListStart(), Consume());
  896. if (PositionIs(TokenKind::CloseSquareBracket())) {
  897. return;
  898. }
  899. // TODO: For now only `self` is supported. When other types of deduced
  900. // parameters need to be added, we will probably need to push a more
  901. // general state.
  902. // Push state to handle `self`'s pattern binding.
  903. PushState(ParserState::SelfPattern);
  904. return;
  905. }
  906. }
  907. auto Parser::HandleFunctionAfterDeducedParameterListState() -> void {
  908. auto state = PopState();
  909. if (!PositionIs(TokenKind::OpenParen())) {
  910. CARBON_DIAGNOSTIC(ExpectedFunctionParams, Error,
  911. "Expected `(` after function name.");
  912. emitter_->Emit(*position_, ExpectedFunctionParams);
  913. HandleFunctionError(state, true);
  914. return;
  915. }
  916. // Parse the parameter list as its own subtree; once that pops, resume
  917. // function parsing.
  918. state.state = ParserState::FunctionAfterParameterList;
  919. PushState(state);
  920. PushState(ParserState::FunctionParameterListFinish);
  921. AddLeafNode(ParseNodeKind::ParameterListStart(), Consume());
  922. if (!PositionIs(TokenKind::CloseParen())) {
  923. PushState(ParserState::FunctionParameter);
  924. }
  925. }
  926. auto Parser::HandleFunctionParameterState() -> void {
  927. PopAndDiscardState();
  928. PushState(ParserState::FunctionParameterFinish);
  929. PushState(ParserState::PatternAsFunctionParameter);
  930. }
  931. auto Parser::HandleFunctionParameterFinishState() -> void {
  932. auto state = PopState();
  933. if (state.has_error) {
  934. ReturnErrorOnState();
  935. }
  936. if (ConsumeListToken(ParseNodeKind::ParameterListComma(),
  937. TokenKind::CloseParen(),
  938. state.has_error) == ListTokenKind::Comma) {
  939. PushState(ParserState::PatternAsFunctionParameter);
  940. }
  941. }
  942. auto Parser::HandleFunctionParameterListFinishState() -> void {
  943. auto state = PopState();
  944. AddNode(ParseNodeKind::ParameterList(),
  945. ConsumeChecked(TokenKind::CloseParen()), state.subtree_start,
  946. state.has_error);
  947. }
  948. auto Parser::HandleFunctionAfterParameterListState() -> void {
  949. auto state = PopState();
  950. // Regardless of whether there's a return type, we'll finish the signature.
  951. state.state = ParserState::FunctionSignatureFinish;
  952. PushState(state);
  953. // If there is a return type, parse the expression before adding the return
  954. // type nod.e
  955. if (PositionIs(TokenKind::MinusGreater())) {
  956. PushState(ParserState::FunctionReturnTypeFinish);
  957. ++position_;
  958. PushStateForExpression(PrecedenceGroup::ForType());
  959. }
  960. }
  961. auto Parser::HandleFunctionReturnTypeFinishState() -> void {
  962. auto state = PopState();
  963. AddNode(ParseNodeKind::ReturnType(), state.token, state.subtree_start,
  964. state.has_error);
  965. }
  966. auto Parser::HandleFunctionSignatureFinishState() -> void {
  967. auto state = PopState();
  968. switch (PositionKind()) {
  969. case TokenKind::Semi(): {
  970. AddNode(ParseNodeKind::FunctionDeclaration(), Consume(),
  971. state.subtree_start, state.has_error);
  972. break;
  973. }
  974. case TokenKind::OpenCurlyBrace(): {
  975. if (stack_context_ == ParseContext::Interface) {
  976. CARBON_DIAGNOSTIC(
  977. MethodImplNotAllowed, Error,
  978. "Method implementations are not allowed in interfaces.");
  979. emitter_->Emit(*position_, MethodImplNotAllowed);
  980. HandleFunctionError(state, /*skip_past_likely_end=*/true);
  981. break;
  982. }
  983. AddNode(ParseNodeKind::FunctionDefinitionStart(), Consume(),
  984. state.subtree_start, state.has_error);
  985. // Any error is recorded on the FunctionDefinitionStart.
  986. state.has_error = false;
  987. state.state = ParserState::FunctionDefinitionFinish;
  988. PushState(state);
  989. PushState(ParserState::StatementScopeLoop);
  990. break;
  991. }
  992. default: {
  993. CARBON_DIAGNOSTIC(
  994. ExpectedFunctionBodyOrSemi, Error,
  995. "Expected function definition or `;` after function declaration.");
  996. emitter_->Emit(*position_, ExpectedFunctionBodyOrSemi);
  997. // Only need to skip if we've not already found a new line.
  998. bool skip_past_likely_end =
  999. tokens_->GetLine(*position_) == tokens_->GetLine(state.token);
  1000. HandleFunctionError(state, skip_past_likely_end);
  1001. break;
  1002. }
  1003. }
  1004. }
  1005. auto Parser::HandleFunctionDefinitionFinishState() -> void {
  1006. auto state = PopState();
  1007. AddNode(ParseNodeKind::FunctionDefinition(), Consume(), state.subtree_start,
  1008. state.has_error);
  1009. }
  1010. auto Parser::HandleInterfaceIntroducerState() -> void {
  1011. auto state = PopState();
  1012. CARBON_CHECK(stack_context_ == ParseContext::File)
  1013. << "TODO: Support nesting.";
  1014. stack_context_ = ParseContext::Interface;
  1015. if (!ConsumeAndAddLeafNodeIf(TokenKind::Identifier(),
  1016. ParseNodeKind::DeclaredName())) {
  1017. CARBON_DIAGNOSTIC(ExpectedInterfaceName, Error,
  1018. "Expected interface name after `interface` keyword.");
  1019. emitter_->Emit(*position_, ExpectedInterfaceName);
  1020. state.has_error = true;
  1021. // Add a name node even when it's not present because it's used for subtree
  1022. // bracketing on interfaces.
  1023. // TODO: Either fix this or normalize it, still deciding on the right
  1024. // approach.
  1025. AddLeafNode(ParseNodeKind::DeclaredName(), state.token, /*has_error=*/true);
  1026. }
  1027. bool parse_body = true;
  1028. if (!PositionIs(TokenKind::OpenCurlyBrace())) {
  1029. CARBON_DIAGNOSTIC(ExpectedInterfaceOpenCurlyBrace, Error,
  1030. "Expected `{{` to start interface definition.");
  1031. emitter_->Emit(*position_, ExpectedInterfaceOpenCurlyBrace);
  1032. state.has_error = true;
  1033. SkipPastLikelyEnd(state.token);
  1034. parse_body = false;
  1035. }
  1036. state.state = ParserState::InterfaceDefinitionFinish;
  1037. PushState(state);
  1038. if (parse_body) {
  1039. PushState(ParserState::InterfaceDefinitionLoop);
  1040. AddLeafNode(ParseNodeKind::InterfaceBodyStart(), Consume());
  1041. }
  1042. }
  1043. auto Parser::HandleInterfaceDefinitionLoopState() -> void {
  1044. // This maintains the current state unless we're at the end of the interface
  1045. // definition.
  1046. switch (PositionKind()) {
  1047. case TokenKind::CloseCurlyBrace(): {
  1048. auto state = PopState();
  1049. AddNode(ParseNodeKind::InterfaceBody(), Consume(), state.subtree_start,
  1050. state.has_error);
  1051. break;
  1052. }
  1053. case TokenKind::Fn(): {
  1054. PushState(ParserState::FunctionIntroducer);
  1055. AddLeafNode(ParseNodeKind::FunctionIntroducer(), Consume());
  1056. break;
  1057. }
  1058. default: {
  1059. emitter_->Emit(*position_, UnrecognizedDeclaration);
  1060. if (auto semi = SkipPastLikelyEnd(*position_)) {
  1061. AddLeafNode(ParseNodeKind::EmptyDeclaration(), *semi,
  1062. /*has_error=*/true);
  1063. } else {
  1064. ReturnErrorOnState();
  1065. }
  1066. break;
  1067. }
  1068. }
  1069. }
  1070. auto Parser::HandleInterfaceDefinitionFinishState() -> void {
  1071. auto state = PopState();
  1072. AddNode(ParseNodeKind::InterfaceDefinition(), state.token,
  1073. state.subtree_start, state.has_error);
  1074. stack_context_ = ParseContext::File;
  1075. }
  1076. auto Parser::HandlePackageState() -> void {
  1077. auto state = PopState();
  1078. AddLeafNode(ParseNodeKind::PackageIntroducer(), Consume());
  1079. auto exit_on_parse_error = [&]() {
  1080. auto semi_token = SkipPastLikelyEnd(state.token);
  1081. return AddNode(ParseNodeKind::PackageDirective(),
  1082. semi_token ? *semi_token : state.token, state.subtree_start,
  1083. /*has_error=*/true);
  1084. };
  1085. if (!ConsumeAndAddLeafNodeIf(TokenKind::Identifier(),
  1086. ParseNodeKind::DeclaredName())) {
  1087. CARBON_DIAGNOSTIC(ExpectedIdentifierAfterPackage, Error,
  1088. "Expected identifier after `package`.");
  1089. emitter_->Emit(*position_, ExpectedIdentifierAfterPackage);
  1090. exit_on_parse_error();
  1091. return;
  1092. }
  1093. bool library_parsed = false;
  1094. if (auto library_token = ConsumeIf(TokenKind::Library())) {
  1095. auto library_start = tree_->size();
  1096. if (!ConsumeAndAddLeafNodeIf(TokenKind::StringLiteral(),
  1097. ParseNodeKind::Literal())) {
  1098. CARBON_DIAGNOSTIC(
  1099. ExpectedLibraryName, Error,
  1100. "Expected a string literal to specify the library name.");
  1101. emitter_->Emit(*position_, ExpectedLibraryName);
  1102. exit_on_parse_error();
  1103. return;
  1104. }
  1105. AddNode(ParseNodeKind::PackageLibrary(), *library_token, library_start,
  1106. /*has_error=*/false);
  1107. library_parsed = true;
  1108. }
  1109. switch (auto api_or_impl_token = tokens_->GetKind(*(position_))) {
  1110. case TokenKind::Api(): {
  1111. AddLeafNode(ParseNodeKind::PackageApi(), Consume());
  1112. break;
  1113. }
  1114. case TokenKind::Impl(): {
  1115. AddLeafNode(ParseNodeKind::PackageImpl(), Consume());
  1116. break;
  1117. }
  1118. default: {
  1119. if (!library_parsed && api_or_impl_token == TokenKind::StringLiteral()) {
  1120. // If we come acroess a string literal and we didn't parse `library
  1121. // "..."` yet, then most probably the user forgot to add `library`
  1122. // before the library name.
  1123. CARBON_DIAGNOSTIC(MissingLibraryKeyword, Error,
  1124. "Missing `library` keyword.");
  1125. emitter_->Emit(*position_, MissingLibraryKeyword);
  1126. } else {
  1127. CARBON_DIAGNOSTIC(ExpectedApiOrImpl, Error,
  1128. "Expected a `api` or `impl`.");
  1129. emitter_->Emit(*position_, ExpectedApiOrImpl);
  1130. }
  1131. exit_on_parse_error();
  1132. return;
  1133. }
  1134. }
  1135. if (!PositionIs(TokenKind::Semi())) {
  1136. CARBON_DIAGNOSTIC(ExpectedSemiToEndPackageDirective, Error,
  1137. "Expected `;` to end package directive.");
  1138. emitter_->Emit(*position_, ExpectedSemiToEndPackageDirective);
  1139. exit_on_parse_error();
  1140. return;
  1141. }
  1142. AddNode(ParseNodeKind::PackageDirective(), Consume(), state.subtree_start,
  1143. /*has_error=*/false);
  1144. }
  1145. auto Parser::HandleParenCondition(ParseNodeKind start_kind,
  1146. ParserState finish_state) -> void {
  1147. auto state = PopState();
  1148. ConsumeAndAddOpenParen(state.token, start_kind);
  1149. state.state = finish_state;
  1150. PushState(state);
  1151. PushState(ParserState::Expression);
  1152. }
  1153. auto Parser::HandleParenConditionAsIfState() -> void {
  1154. HandleParenCondition(ParseNodeKind::IfConditionStart(),
  1155. ParserState::ParenConditionFinishAsIf);
  1156. }
  1157. auto Parser::HandleParenConditionAsWhileState() -> void {
  1158. HandleParenCondition(ParseNodeKind::WhileConditionStart(),
  1159. ParserState::ParenConditionFinishAsWhile);
  1160. }
  1161. auto Parser::HandleParenConditionFinishAsIfState() -> void {
  1162. auto state = PopState();
  1163. ConsumeAndAddCloseParen(state, ParseNodeKind::IfCondition());
  1164. }
  1165. auto Parser::HandleParenConditionFinishAsWhileState() -> void {
  1166. auto state = PopState();
  1167. ConsumeAndAddCloseParen(state, ParseNodeKind::WhileCondition());
  1168. }
  1169. auto Parser::HandleParenExpressionState() -> void {
  1170. auto state = PopState();
  1171. // Advance past the open paren.
  1172. AddLeafNode(ParseNodeKind::ParenExpressionOrTupleLiteralStart(),
  1173. ConsumeChecked(TokenKind::OpenParen()));
  1174. if (PositionIs(TokenKind::CloseParen())) {
  1175. state.state = ParserState::ParenExpressionFinishAsTuple;
  1176. PushState(state);
  1177. } else {
  1178. state.state = ParserState::ParenExpressionFinish;
  1179. PushState(state);
  1180. PushState(ParserState::ParenExpressionParameterFinishAsUnknown);
  1181. PushState(ParserState::Expression);
  1182. }
  1183. }
  1184. auto Parser::HandleParenExpressionParameterFinish(bool as_tuple) -> void {
  1185. auto state = PopState();
  1186. auto list_token_kind =
  1187. ConsumeListToken(ParseNodeKind::TupleLiteralComma(),
  1188. TokenKind::CloseParen(), state.has_error);
  1189. if (list_token_kind == ListTokenKind::Close) {
  1190. return;
  1191. }
  1192. // If this is the first item and a comma was found, switch to tuple handling.
  1193. // Note this could be `(expr,)` so we may not reuse the current state, but
  1194. // it's still necessary to switch the parent.
  1195. if (!as_tuple) {
  1196. state.state = ParserState::ParenExpressionParameterFinishAsTuple;
  1197. auto finish_state = PopState();
  1198. CARBON_CHECK(finish_state.state == ParserState::ParenExpressionFinish)
  1199. << "Unexpected parent state, found: " << finish_state.state;
  1200. finish_state.state = ParserState::ParenExpressionFinishAsTuple;
  1201. PushState(finish_state);
  1202. }
  1203. // On a comma, push another expression handler.
  1204. if (list_token_kind == ListTokenKind::Comma) {
  1205. PushState(state);
  1206. PushState(ParserState::Expression);
  1207. }
  1208. }
  1209. auto Parser::HandleParenExpressionParameterFinishAsUnknownState() -> void {
  1210. HandleParenExpressionParameterFinish(/*as_tuple=*/false);
  1211. }
  1212. auto Parser::HandleParenExpressionParameterFinishAsTupleState() -> void {
  1213. HandleParenExpressionParameterFinish(/*as_tuple=*/true);
  1214. }
  1215. auto Parser::HandleParenExpressionFinishState() -> void {
  1216. auto state = PopState();
  1217. AddNode(ParseNodeKind::ParenExpression(), Consume(), state.subtree_start,
  1218. state.has_error);
  1219. }
  1220. auto Parser::HandleParenExpressionFinishAsTupleState() -> void {
  1221. auto state = PopState();
  1222. AddNode(ParseNodeKind::TupleLiteral(), Consume(), state.subtree_start,
  1223. state.has_error);
  1224. }
  1225. auto Parser::HandlePattern(PatternKind pattern_kind) -> void {
  1226. auto state = PopState();
  1227. // Ensure the finish state always follows.
  1228. state.state = ParserState::PatternFinish;
  1229. // Handle an invalid pattern introducer for parameters and variables.
  1230. if (!PositionIs(TokenKind::Identifier()) ||
  1231. tokens_->GetKind(*(position_ + 1)) != TokenKind::Colon()) {
  1232. switch (pattern_kind) {
  1233. case PatternKind::Parameter: {
  1234. CARBON_DIAGNOSTIC(ExpectedParameterName, Error,
  1235. "Expected parameter declaration.");
  1236. emitter_->Emit(*position_, ExpectedParameterName);
  1237. break;
  1238. }
  1239. case PatternKind::Variable: {
  1240. CARBON_DIAGNOSTIC(ExpectedVariableName, Error,
  1241. "Expected pattern in `var` declaration.");
  1242. emitter_->Emit(*position_, ExpectedVariableName);
  1243. break;
  1244. }
  1245. }
  1246. state.has_error = true;
  1247. PushState(state);
  1248. return;
  1249. }
  1250. // Switch the context token to the colon, so that it'll be used for the root
  1251. // node.
  1252. state.token = *(position_ + 1);
  1253. PushState(state);
  1254. PushStateForExpression(PrecedenceGroup::ForType());
  1255. AddLeafNode(ParseNodeKind::DeclaredName(), *position_);
  1256. position_ += 2;
  1257. }
  1258. auto Parser::HandlePatternAsFunctionParameterState() -> void {
  1259. HandlePattern(PatternKind::Parameter);
  1260. }
  1261. auto Parser::HandlePatternAsVariableState() -> void {
  1262. HandlePattern(PatternKind::Variable);
  1263. }
  1264. auto Parser::HandlePatternFinishState() -> void {
  1265. auto state = PopState();
  1266. // If an error was encountered, propagate it without adding a node.
  1267. if (state.has_error) {
  1268. ReturnErrorOnState();
  1269. return;
  1270. }
  1271. // TODO: may need to mark has_error if !type.
  1272. AddNode(ParseNodeKind::PatternBinding(), state.token, state.subtree_start,
  1273. /*has_error=*/false);
  1274. }
  1275. auto Parser::HandlePatternAddressState() -> void {
  1276. auto state = PopState();
  1277. // If an error was encountered, propagate it without adding a node.
  1278. if (state.has_error) {
  1279. ReturnErrorOnState();
  1280. return;
  1281. }
  1282. AddNode(ParseNodeKind::Address(), state.token, state.subtree_start,
  1283. /*has_error=*/false);
  1284. }
  1285. // TODO: This can possibly be merged with `HandlePattern`. Regular function
  1286. // parameters support `addr` as well but it is not implemented yet.
  1287. auto Parser::HandleSelfPatternState() -> void {
  1288. auto state = PopState();
  1289. // self `:` type
  1290. auto possible_self_param =
  1291. (PositionIs(TokenKind::SelfParameter()) &&
  1292. tokens_->GetKind(*(position_ + 1)) == TokenKind::Colon());
  1293. if (possible_self_param) {
  1294. // Ensure the finish state always follows.
  1295. state.state = ParserState::PatternFinish;
  1296. // Switch the context token to the colon, so that it'll be used for the root
  1297. // node.
  1298. state.token = *(position_ + 1);
  1299. PushState(state);
  1300. PushStateForExpression(PrecedenceGroup::ForType());
  1301. AddLeafNode(ParseNodeKind::SelfDeducedParameter(), *position_);
  1302. position_ += 2;
  1303. return;
  1304. }
  1305. // addr self `:` type
  1306. auto possible_addr_self_param =
  1307. (PositionIs(TokenKind::Addr()) &&
  1308. tokens_->GetKind(*(position_ + 1)) == TokenKind::SelfParameter() &&
  1309. tokens_->GetKind(*(position_ + 2)) == TokenKind::Colon());
  1310. if (possible_addr_self_param) {
  1311. // Ensure the finish state always follows.
  1312. state.state = ParserState::PatternAddress;
  1313. state.token = Consume();
  1314. PushState(state);
  1315. PushState(ParserState::PatternFinish);
  1316. PushStateForExpression(PrecedenceGroup::ForType());
  1317. AddLeafNode(ParseNodeKind::SelfDeducedParameter(), *(position_ + 1));
  1318. position_ += 2;
  1319. return;
  1320. }
  1321. CARBON_DIAGNOSTIC(ExpectedDeducedParam, Error,
  1322. "Deduced parameters must be of the form: `<name>: <Type>` "
  1323. "or `addr <name>: <Type>`.");
  1324. emitter_->Emit(*position_, ExpectedDeducedParam);
  1325. state.state = ParserState::PatternFinish;
  1326. state.has_error = true;
  1327. // Try to recover by skipping to the next `]`.
  1328. if (auto next_close_square_bracket =
  1329. FindNextOf({TokenKind::CloseSquareBracket()});
  1330. next_close_square_bracket) {
  1331. SkipTo(*next_close_square_bracket);
  1332. }
  1333. PushState(state);
  1334. }
  1335. auto Parser::HandleStatementState() -> void {
  1336. PopAndDiscardState();
  1337. switch (PositionKind()) {
  1338. case TokenKind::Break(): {
  1339. PushState(ParserState::StatementBreakFinish);
  1340. AddLeafNode(ParseNodeKind::BreakStatementStart(), Consume());
  1341. break;
  1342. }
  1343. case TokenKind::Continue(): {
  1344. PushState(ParserState::StatementContinueFinish);
  1345. AddLeafNode(ParseNodeKind::ContinueStatementStart(), Consume());
  1346. break;
  1347. }
  1348. case TokenKind::For(): {
  1349. PushState(ParserState::StatementForFinish);
  1350. PushState(ParserState::StatementForHeader);
  1351. ++position_;
  1352. break;
  1353. }
  1354. case TokenKind::If(): {
  1355. PushState(ParserState::StatementIf);
  1356. break;
  1357. }
  1358. case TokenKind::Return(): {
  1359. PushState(ParserState::StatementReturn);
  1360. break;
  1361. }
  1362. case TokenKind::Var(): {
  1363. PushState(ParserState::VarAsSemicolon);
  1364. break;
  1365. }
  1366. case TokenKind::While(): {
  1367. PushState(ParserState::StatementWhile);
  1368. break;
  1369. }
  1370. default: {
  1371. PushState(ParserState::ExpressionStatementFinish);
  1372. PushState(ParserState::Expression);
  1373. break;
  1374. }
  1375. }
  1376. }
  1377. auto Parser::HandleStatementBreakFinishState() -> void {
  1378. HandleStatementKeywordFinish(ParseNodeKind::BreakStatement());
  1379. }
  1380. auto Parser::HandleStatementContinueFinishState() -> void {
  1381. HandleStatementKeywordFinish(ParseNodeKind::ContinueStatement());
  1382. }
  1383. auto Parser::HandleStatementForHeaderState() -> void {
  1384. auto state = PopState();
  1385. ConsumeAndAddOpenParen(state.token, ParseNodeKind::ForHeaderStart());
  1386. state.state = ParserState::StatementForHeaderIn;
  1387. if (PositionIs(TokenKind::Var())) {
  1388. PushState(state);
  1389. PushState(ParserState::VarAsFor);
  1390. } else {
  1391. CARBON_DIAGNOSTIC(ExpectedVariableDeclaration, Error,
  1392. "Expected `var` declaration.");
  1393. emitter_->Emit(*position_, ExpectedVariableDeclaration);
  1394. if (auto next_in = FindNextOf({TokenKind::In()})) {
  1395. SkipTo(*next_in);
  1396. ++position_;
  1397. }
  1398. state.has_error = true;
  1399. PushState(state);
  1400. }
  1401. }
  1402. auto Parser::HandleStatementForHeaderInState() -> void {
  1403. auto state = PopState();
  1404. state.state = ParserState::StatementForHeaderFinish;
  1405. PushState(state);
  1406. PushState(ParserState::Expression);
  1407. }
  1408. auto Parser::HandleStatementForHeaderFinishState() -> void {
  1409. auto state = PopState();
  1410. ConsumeAndAddCloseParen(state, ParseNodeKind::ForHeader());
  1411. PushState(ParserState::CodeBlock);
  1412. }
  1413. auto Parser::HandleStatementForFinishState() -> void {
  1414. auto state = PopState();
  1415. AddNode(ParseNodeKind::ForStatement(), state.token, state.subtree_start,
  1416. state.has_error);
  1417. }
  1418. auto Parser::HandleStatementIfState() -> void {
  1419. PopAndDiscardState();
  1420. PushState(ParserState::StatementIfConditionFinish);
  1421. PushState(ParserState::ParenConditionAsIf);
  1422. ++position_;
  1423. }
  1424. auto Parser::HandleStatementIfConditionFinishState() -> void {
  1425. auto state = PopState();
  1426. state.state = ParserState::StatementIfThenBlockFinish;
  1427. PushState(state);
  1428. PushState(ParserState::CodeBlock);
  1429. }
  1430. auto Parser::HandleStatementIfThenBlockFinishState() -> void {
  1431. auto state = PopState();
  1432. if (ConsumeAndAddLeafNodeIf(TokenKind::Else(),
  1433. ParseNodeKind::IfStatementElse())) {
  1434. state.state = ParserState::StatementIfElseBlockFinish;
  1435. PushState(state);
  1436. // `else if` is permitted as a special case.
  1437. PushState(PositionIs(TokenKind::If()) ? ParserState::StatementIf
  1438. : ParserState::CodeBlock);
  1439. } else {
  1440. AddNode(ParseNodeKind::IfStatement(), state.token, state.subtree_start,
  1441. state.has_error);
  1442. }
  1443. }
  1444. auto Parser::HandleStatementIfElseBlockFinishState() -> void {
  1445. auto state = PopState();
  1446. AddNode(ParseNodeKind::IfStatement(), state.token, state.subtree_start,
  1447. state.has_error);
  1448. }
  1449. auto Parser::HandleStatementKeywordFinish(ParseNodeKind node_kind) -> void {
  1450. auto state = PopState();
  1451. auto semi = ConsumeIf(TokenKind::Semi());
  1452. if (!semi) {
  1453. CARBON_DIAGNOSTIC(ExpectedSemiAfter, Error, "Expected `;` after `{0}`.",
  1454. TokenKind);
  1455. emitter_->Emit(*position_, ExpectedSemiAfter,
  1456. tokens_->GetKind(state.token));
  1457. state.has_error = true;
  1458. // Recover to the next semicolon if possible, otherwise indicate the
  1459. // keyword for the error.
  1460. semi = SkipPastLikelyEnd(state.token);
  1461. if (!semi) {
  1462. semi = state.token;
  1463. }
  1464. }
  1465. AddNode(node_kind, *semi, state.subtree_start, state.has_error);
  1466. }
  1467. auto Parser::HandleStatementReturnState() -> void {
  1468. auto state = PopState();
  1469. state.state = ParserState::StatementReturnFinish;
  1470. PushState(state);
  1471. AddLeafNode(ParseNodeKind::ReturnStatementStart(), Consume());
  1472. if (!PositionIs(TokenKind::Semi())) {
  1473. PushState(ParserState::Expression);
  1474. }
  1475. }
  1476. auto Parser::HandleStatementReturnFinishState() -> void {
  1477. HandleStatementKeywordFinish(ParseNodeKind::ReturnStatement());
  1478. }
  1479. auto Parser::HandleStatementScopeLoopState() -> void {
  1480. // This maintains the current state until we're at the end of the scope.
  1481. auto token_kind = PositionKind();
  1482. if (token_kind == TokenKind::CloseCurlyBrace()) {
  1483. auto state = PopState();
  1484. if (state.has_error) {
  1485. ReturnErrorOnState();
  1486. }
  1487. } else {
  1488. PushState(ParserState::Statement);
  1489. }
  1490. }
  1491. auto Parser::HandleStatementWhileState() -> void {
  1492. PopAndDiscardState();
  1493. PushState(ParserState::StatementWhileConditionFinish);
  1494. PushState(ParserState::ParenConditionAsWhile);
  1495. ++position_;
  1496. }
  1497. auto Parser::HandleStatementWhileConditionFinishState() -> void {
  1498. auto state = PopState();
  1499. state.state = ParserState::StatementWhileBlockFinish;
  1500. PushState(state);
  1501. PushState(ParserState::CodeBlock);
  1502. }
  1503. auto Parser::HandleStatementWhileBlockFinishState() -> void {
  1504. auto state = PopState();
  1505. AddNode(ParseNodeKind::WhileStatement(), state.token, state.subtree_start,
  1506. state.has_error);
  1507. }
  1508. auto Parser::HandleVar(ParserState finish_state) -> void {
  1509. PopAndDiscardState();
  1510. // These will start at the `var`.
  1511. PushState(finish_state);
  1512. PushState(ParserState::VarAfterPattern);
  1513. AddLeafNode(ParseNodeKind::VariableIntroducer(), Consume());
  1514. // This will start at the pattern.
  1515. PushState(ParserState::PatternAsVariable);
  1516. }
  1517. auto Parser::HandleVarAsSemicolonState() -> void {
  1518. HandleVar(ParserState::VarFinishAsSemicolon);
  1519. }
  1520. auto Parser::HandleVarAsForState() -> void {
  1521. HandleVar(ParserState::VarFinishAsFor);
  1522. }
  1523. auto Parser::HandleVarAfterPatternState() -> void {
  1524. auto state = PopState();
  1525. if (state.has_error) {
  1526. if (auto after_pattern =
  1527. FindNextOf({TokenKind::Equal(), TokenKind::Semi()})) {
  1528. SkipTo(*after_pattern);
  1529. }
  1530. }
  1531. if (auto equals = ConsumeIf(TokenKind::Equal())) {
  1532. AddLeafNode(ParseNodeKind::VariableInitializer(), *equals);
  1533. PushState(ParserState::Expression);
  1534. }
  1535. }
  1536. auto Parser::HandleVarFinishAsSemicolonState() -> void {
  1537. auto state = PopState();
  1538. auto end_token = state.token;
  1539. if (PositionIs(TokenKind::Semi())) {
  1540. end_token = Consume();
  1541. } else {
  1542. emitter_->Emit(*position_, ExpectedSemiAfterExpression);
  1543. state.has_error = true;
  1544. if (auto semi_token = SkipPastLikelyEnd(state.token)) {
  1545. end_token = *semi_token;
  1546. }
  1547. }
  1548. AddNode(ParseNodeKind::VariableDeclaration(), end_token, state.subtree_start,
  1549. state.has_error);
  1550. }
  1551. auto Parser::HandleVarFinishAsForState() -> void {
  1552. auto state = PopState();
  1553. auto end_token = state.token;
  1554. if (PositionIs(TokenKind::In())) {
  1555. end_token = Consume();
  1556. } else if (PositionIs(TokenKind::Colon())) {
  1557. CARBON_DIAGNOSTIC(ExpectedInNotColon, Error,
  1558. "`:` should be replaced by `in`.");
  1559. emitter_->Emit(*position_, ExpectedInNotColon);
  1560. state.has_error = true;
  1561. end_token = Consume();
  1562. } else {
  1563. CARBON_DIAGNOSTIC(ExpectedIn, Error,
  1564. "Expected `in` after loop `var` declaration.");
  1565. emitter_->Emit(*position_, ExpectedIn);
  1566. state.has_error = true;
  1567. }
  1568. AddNode(ParseNodeKind::ForIn(), end_token, state.subtree_start,
  1569. state.has_error);
  1570. }
  1571. } // namespace Carbon