handle_expr.cpp 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. #include "toolchain/lex/token_kind.h"
  5. #include "toolchain/parse/context.h"
  6. #include "toolchain/parse/handle.h"
  7. namespace Carbon::Parse {
  8. static auto DiagnoseStatementOperatorAsSubExpr(Context& context) -> void {
  9. CARBON_DIAGNOSTIC(StatementOperatorAsSubExpr, Error,
  10. "operator `{0}` can only be used as a complete statement",
  11. Lex::TokenKind);
  12. context.emitter().Emit(*context.position(), StatementOperatorAsSubExpr,
  13. context.PositionKind());
  14. }
  15. auto HandleExpr(Context& context) -> void {
  16. auto state = context.PopState();
  17. // Check for a prefix operator.
  18. if (auto operator_precedence =
  19. PrecedenceGroup::ForLeading(context.PositionKind())) {
  20. if (PrecedenceGroup::GetPriority(state.ambient_precedence,
  21. *operator_precedence) !=
  22. OperatorPriority::RightFirst) {
  23. // The precedence rules don't permit this prefix operator in this
  24. // context. Diagnose this, but carry on and parse it anyway.
  25. if (PrecedenceGroup::GetPriority(PrecedenceGroup::ForTopLevelExpr(),
  26. *operator_precedence) ==
  27. OperatorPriority::RightFirst) {
  28. CARBON_DIAGNOSTIC(
  29. UnaryOperatorRequiresParentheses, Error,
  30. "parentheses are required around this unary `{0}` operator",
  31. Lex::TokenKind);
  32. context.emitter().Emit(*context.position(),
  33. UnaryOperatorRequiresParentheses,
  34. context.PositionKind());
  35. } else {
  36. // This operator wouldn't be allowed even if parenthesized.
  37. DiagnoseStatementOperatorAsSubExpr(context);
  38. }
  39. } else {
  40. // Check that this operator follows the proper whitespace rules.
  41. context.DiagnoseOperatorFixity(Context::OperatorFixity::Prefix);
  42. }
  43. if (context.PositionIs(Lex::TokenKind::If)) {
  44. context.PushState(StateKind::IfExprFinish);
  45. context.PushState(StateKind::IfExprFinishCondition);
  46. } else {
  47. context.PushStateForExprLoop(StateKind::ExprLoopForPrefixOperator,
  48. state.ambient_precedence,
  49. *operator_precedence);
  50. }
  51. context.ConsumeAndDiscard();
  52. context.PushStateForExpr(*operator_precedence);
  53. } else {
  54. context.PushStateForExprLoop(StateKind::ExprLoop, state.ambient_precedence,
  55. PrecedenceGroup::ForPostfixExpr());
  56. context.PushState(StateKind::ExprInPostfix);
  57. }
  58. }
  59. auto HandleExprInPostfix(Context& context) -> void {
  60. auto state = context.PopState();
  61. // Continue to the loop state.
  62. state.kind = StateKind::ExprInPostfixLoop;
  63. // Parses a primary expression, which is either a terminal portion of an
  64. // expression tree, such as an identifier or literal, or a parenthesized
  65. // expression.
  66. switch (auto token_kind = context.PositionKind()) {
  67. case Lex::TokenKind::Identifier: {
  68. context.AddLeafNode(NodeKind::IdentifierNameExpr, context.Consume());
  69. context.PushState(state);
  70. break;
  71. }
  72. case Lex::TokenKind::Fn: {
  73. context.PushState(state);
  74. context.PushState(StateKind::LambdaIntroducer);
  75. break;
  76. }
  77. case Lex::TokenKind::False: {
  78. context.AddLeafNode(NodeKind::BoolLiteralFalse, context.Consume());
  79. context.PushState(state);
  80. break;
  81. }
  82. case Lex::TokenKind::True: {
  83. context.AddLeafNode(NodeKind::BoolLiteralTrue, context.Consume());
  84. context.PushState(state);
  85. break;
  86. }
  87. case Lex::TokenKind::CharLiteral: {
  88. context.AddLeafNode(NodeKind::CharLiteral, context.Consume());
  89. context.PushState(state);
  90. break;
  91. }
  92. case Lex::TokenKind::IntLiteral: {
  93. context.AddLeafNode(NodeKind::IntLiteral, context.Consume());
  94. context.PushState(state);
  95. break;
  96. }
  97. case Lex::TokenKind::RealLiteral: {
  98. context.AddLeafNode(NodeKind::RealLiteral, context.Consume());
  99. context.PushState(state);
  100. break;
  101. }
  102. case Lex::TokenKind::StringLiteral: {
  103. context.AddLeafNode(NodeKind::StringLiteral, context.Consume());
  104. context.PushState(state);
  105. break;
  106. }
  107. case Lex::TokenKind::Bool: {
  108. context.AddLeafNode(NodeKind::BoolTypeLiteral, context.Consume());
  109. context.PushState(state);
  110. break;
  111. }
  112. case Lex::TokenKind::Char: {
  113. context.AddLeafNode(NodeKind::CharTypeLiteral, context.Consume());
  114. context.PushState(state);
  115. break;
  116. }
  117. case Lex::TokenKind::IntTypeLiteral: {
  118. context.AddLeafNode(NodeKind::IntTypeLiteral, context.Consume());
  119. context.PushState(state);
  120. break;
  121. }
  122. case Lex::TokenKind::UnsignedIntTypeLiteral: {
  123. context.AddLeafNode(NodeKind::UnsignedIntTypeLiteral, context.Consume());
  124. context.PushState(state);
  125. break;
  126. }
  127. case Lex::TokenKind::FloatTypeLiteral: {
  128. context.AddLeafNode(NodeKind::FloatTypeLiteral, context.Consume());
  129. context.PushState(state);
  130. break;
  131. }
  132. case Lex::TokenKind::Str: {
  133. context.AddLeafNode(NodeKind::StringTypeLiteral, context.Consume());
  134. context.PushState(state);
  135. break;
  136. }
  137. case Lex::TokenKind::Type: {
  138. context.AddLeafNode(NodeKind::TypeTypeLiteral, context.Consume());
  139. context.PushState(state);
  140. break;
  141. }
  142. case Lex::TokenKind::Auto: {
  143. context.AddLeafNode(NodeKind::AutoTypeLiteral, context.Consume());
  144. context.PushState(state);
  145. break;
  146. }
  147. case Lex::TokenKind::OpenCurlyBrace: {
  148. context.PushState(state);
  149. context.PushState(StateKind::BraceExpr);
  150. break;
  151. }
  152. case Lex::TokenKind::OpenParen: {
  153. context.PushState(state);
  154. context.PushState(StateKind::ParenExpr);
  155. break;
  156. }
  157. case Lex::TokenKind::Array: {
  158. context.PushState(state);
  159. context.PushState(StateKind::ArrayExpr);
  160. break;
  161. }
  162. case Lex::TokenKind::Package: {
  163. context.AddLeafNode(NodeKind::PackageExpr, context.Consume());
  164. if (context.PositionKind() != Lex::TokenKind::Period) {
  165. CARBON_DIAGNOSTIC(ExpectedPeriodAfterPackage, Error,
  166. "expected `.` after `package` expression");
  167. context.emitter().Emit(*context.position(), ExpectedPeriodAfterPackage);
  168. state.has_error = true;
  169. }
  170. context.PushState(state);
  171. break;
  172. }
  173. case Lex::TokenKind::Core: {
  174. context.AddLeafNode(NodeKind::CoreNameExpr, context.Consume());
  175. context.PushState(state);
  176. break;
  177. }
  178. case Lex::TokenKind::Cpp: {
  179. context.AddLeafNode(NodeKind::CppNameExpr, context.Consume());
  180. context.PushState(state);
  181. break;
  182. }
  183. case Lex::TokenKind::SelfValueIdentifier: {
  184. context.AddLeafNode(NodeKind::SelfValueNameExpr, context.Consume());
  185. context.PushState(state);
  186. break;
  187. }
  188. case Lex::TokenKind::SelfTypeIdentifier: {
  189. context.AddLeafNode(NodeKind::SelfTypeNameExpr, context.Consume());
  190. context.PushState(state);
  191. break;
  192. }
  193. case Lex::TokenKind::Period: {
  194. // For periods, we look at the next token to form a designator like
  195. // `.Member` or `.Self`.
  196. auto period = context.Consume();
  197. if (context.ConsumeAndAddLeafNodeIf(
  198. Lex::TokenKind::Identifier,
  199. NodeKind::IdentifierNameNotBeforeParams)) {
  200. // OK, `.` identifier.
  201. } else if (context.ConsumeAndAddLeafNodeIf(
  202. Lex::TokenKind::SelfTypeIdentifier,
  203. NodeKind::SelfTypeName)) {
  204. // OK, `.Self`.
  205. } else {
  206. CARBON_DIAGNOSTIC(ExpectedIdentifierOrSelfAfterPeriod, Error,
  207. "expected identifier or `Self` after `.`");
  208. context.emitter().Emit(*context.position(),
  209. ExpectedIdentifierOrSelfAfterPeriod);
  210. // Only consume if it is a number or word.
  211. if (context.PositionKind().is_keyword()) {
  212. context.AddLeafNode(NodeKind::IdentifierNameNotBeforeParams,
  213. context.Consume(), /*has_error=*/true);
  214. } else if (context.PositionIs(Lex::TokenKind::IntLiteral)) {
  215. context.AddInvalidParse(context.Consume());
  216. } else {
  217. context.AddInvalidParse(*context.position());
  218. // Indicate the error to the parent state so that it can avoid
  219. // producing more errors. We only do this on this path where we don't
  220. // consume the token after the period, where we expect further errors
  221. // since we likely haven't recovered.
  222. context.ReturnErrorOnState();
  223. }
  224. state.has_error = true;
  225. }
  226. context.AddNode(NodeKind::DesignatorExpr, period, state.has_error);
  227. context.PushState(state);
  228. break;
  229. }
  230. default: {
  231. // If not already diagnosed in the lexer, diagnose it here.
  232. if (token_kind != Lex::TokenKind::Error) {
  233. CARBON_DIAGNOSTIC(ExpectedExpr, Error, "expected expression");
  234. context.emitter().Emit(*context.position(), ExpectedExpr);
  235. }
  236. // Add a node to keep the parse tree balanced.
  237. context.AddInvalidParse(*context.position());
  238. context.ReturnErrorOnState();
  239. break;
  240. }
  241. }
  242. }
  243. auto HandleExprInPostfixLoop(Context& context) -> void {
  244. // This is a cyclic state that repeats, so this state is typically pushed back
  245. // on.
  246. auto state = context.PopState();
  247. state.token = *context.position();
  248. switch (context.PositionKind()) {
  249. case Lex::TokenKind::Period: {
  250. context.PushState(state);
  251. context.PushState(state, StateKind::PeriodAsExpr);
  252. break;
  253. }
  254. case Lex::TokenKind::MinusGreater: {
  255. context.PushState(state);
  256. context.PushState(state, StateKind::ArrowExpr);
  257. break;
  258. }
  259. case Lex::TokenKind::OpenParen: {
  260. context.PushState(state);
  261. context.PushState(state, StateKind::CallExpr);
  262. break;
  263. }
  264. case Lex::TokenKind::OpenSquareBracket: {
  265. context.PushState(state);
  266. context.PushState(state, StateKind::IndexExpr);
  267. break;
  268. }
  269. default: {
  270. if (state.has_error) {
  271. context.ReturnErrorOnState();
  272. }
  273. break;
  274. }
  275. }
  276. }
  277. auto HandleExprLoop(Context& context) -> void {
  278. auto state = context.PopState();
  279. auto operator_kind = context.PositionKind();
  280. auto trailing_operator = PrecedenceGroup::ForTrailing(
  281. operator_kind, context.IsTrailingOperatorInfix());
  282. if (!trailing_operator) {
  283. // TODO: Generalize this to handle a sequence of operator modifiers once we
  284. // have more than one.
  285. if (context.PositionIs(Lex::TokenKind::Unsafe)) {
  286. operator_kind = context.PositionKind(Lookahead::NextToken);
  287. trailing_operator = PrecedenceGroup::ForTrailing(
  288. operator_kind, context.IsTrailingOperatorInfix());
  289. }
  290. if (!trailing_operator) {
  291. if (state.has_error) {
  292. context.ReturnErrorOnState();
  293. }
  294. return;
  295. }
  296. }
  297. auto [operator_precedence, is_binary] = *trailing_operator;
  298. // TODO: If this operator is ambiguous with either the ambient precedence
  299. // or the LHS precedence, and there's a variant with a different fixity
  300. // that would work, use that one instead for error recovery.
  301. if (PrecedenceGroup::GetPriority(state.ambient_precedence,
  302. operator_precedence) !=
  303. OperatorPriority::RightFirst) {
  304. // The precedence rules don't permit this operator in this context. Try
  305. // again in the enclosing expression context.
  306. if (state.has_error) {
  307. context.ReturnErrorOnState();
  308. }
  309. return;
  310. }
  311. if (PrecedenceGroup::GetPriority(state.lhs_precedence, operator_precedence) !=
  312. OperatorPriority::LeftFirst) {
  313. // Either the LHS operator and this operator are ambiguous, or the
  314. // LHS operator is a unary operator that can't be nested within
  315. // this operator. Either way, parentheses are required.
  316. if (PrecedenceGroup::GetPriority(PrecedenceGroup::ForTopLevelExpr(),
  317. operator_precedence) ==
  318. OperatorPriority::RightFirst) {
  319. CARBON_DIAGNOSTIC(
  320. OperatorRequiresParentheses, Error,
  321. "parentheses are required to disambiguate operator precedence");
  322. context.emitter().Emit(*context.position(), OperatorRequiresParentheses);
  323. } else {
  324. // This operator wouldn't be allowed even if parenthesized.
  325. DiagnoseStatementOperatorAsSubExpr(context);
  326. }
  327. state.has_error = true;
  328. } else {
  329. context.DiagnoseOperatorFixity(is_binary
  330. ? Context::OperatorFixity::Infix
  331. : Context::OperatorFixity::Postfix);
  332. }
  333. // For operator modifiers, wrap the first operand in the modifier.
  334. if (context.PositionIs(Lex::TokenKind::Unsafe)) {
  335. if (context.PositionIs(Lex::TokenKind::As, Lookahead::NextToken)) {
  336. context.AddNode<NodeKind::UnsafeModifier>(context.Consume(),
  337. state.has_error);
  338. } else {
  339. CARBON_DIAGNOSTIC(ModifierNotAllowedOnOperator, Error,
  340. "`{0}` not allowed on operator `{1}`", Lex::TokenKind,
  341. Lex::TokenKind);
  342. context.emitter().Emit(*context.position(), ModifierNotAllowedOnOperator,
  343. context.PositionKind(),
  344. context.PositionKind(Lookahead::NextToken));
  345. context.Consume();
  346. state.has_error = true;
  347. }
  348. }
  349. state.token = context.Consume();
  350. state.lhs_precedence = operator_precedence;
  351. if (is_binary) {
  352. switch (operator_kind) {
  353. // For `and` and `or`, wrap the first operand in a virtual parse tree
  354. // node so that checking can insert control flow here.
  355. case Lex::TokenKind::And:
  356. context.AddNode(NodeKind::ShortCircuitOperandAnd, state.token,
  357. state.has_error);
  358. state.kind = StateKind::ExprLoopForShortCircuitOperatorAsAnd;
  359. break;
  360. case Lex::TokenKind::Or:
  361. context.AddNode(NodeKind::ShortCircuitOperandOr, state.token,
  362. state.has_error);
  363. state.kind = StateKind::ExprLoopForShortCircuitOperatorAsOr;
  364. break;
  365. // `where` also needs a virtual parse tree node, and parses its right
  366. // argument in a mode where it can handle requirement operators like
  367. // `impls` and `=`.
  368. case Lex::TokenKind::Where:
  369. context.AddNode(NodeKind::WhereOperand, state.token, state.has_error);
  370. context.PushState(state, StateKind::WhereFinish);
  371. context.PushState(StateKind::RequirementBegin);
  372. return;
  373. default:
  374. state.kind = StateKind::ExprLoopForInfixOperator;
  375. break;
  376. }
  377. context.PushState(state);
  378. context.PushStateForExpr(operator_precedence);
  379. } else {
  380. NodeKind node_kind;
  381. switch (operator_kind) {
  382. #define CARBON_PARSE_NODE_KIND(Name)
  383. #define CARBON_PARSE_NODE_KIND_POSTFIX_OPERATOR(Name) \
  384. case Lex::TokenKind::Name: \
  385. node_kind = NodeKind::PostfixOperator##Name; \
  386. break;
  387. #include "toolchain/parse/node_kind.def"
  388. default:
  389. CARBON_FATAL("Unexpected token kind for postfix operator: {0}",
  390. operator_kind);
  391. }
  392. context.AddNode(node_kind, state.token, state.has_error);
  393. state.has_error = false;
  394. context.PushState(state);
  395. }
  396. }
  397. // Adds the operator node and returns the main expression loop.
  398. static auto HandleExprLoopForOperator(Context& context, Context::State state,
  399. NodeKind node_kind) -> void {
  400. context.AddNode(node_kind, state.token, state.has_error);
  401. state.has_error = false;
  402. context.PushState(state, StateKind::ExprLoop);
  403. }
  404. auto HandleExprLoopForInfixOperator(Context& context) -> void {
  405. auto state = context.PopState();
  406. switch (auto token_kind = context.tokens().GetKind(state.token)) {
  407. #define CARBON_PARSE_NODE_KIND(Name)
  408. #define CARBON_PARSE_NODE_KIND_INFIX_OPERATOR(Name) \
  409. case Lex::TokenKind::Name: \
  410. HandleExprLoopForOperator(context, state, NodeKind::InfixOperator##Name); \
  411. break;
  412. #include "toolchain/parse/node_kind.def"
  413. default:
  414. CARBON_FATAL("Unexpected token kind for infix operator: {0}", token_kind);
  415. }
  416. }
  417. auto HandleExprLoopForPrefixOperator(Context& context) -> void {
  418. auto state = context.PopState();
  419. switch (auto token_kind = context.tokens().GetKind(state.token)) {
  420. #define CARBON_PARSE_NODE_KIND(Name)
  421. #define CARBON_PARSE_NODE_KIND_PREFIX_OPERATOR(Name) \
  422. case Lex::TokenKind::Name: \
  423. HandleExprLoopForOperator(context, state, NodeKind::PrefixOperator##Name); \
  424. break;
  425. #include "toolchain/parse/node_kind.def"
  426. default:
  427. CARBON_FATAL("Unexpected token kind for prefix operator: {0}",
  428. token_kind);
  429. }
  430. }
  431. auto HandleExprLoopForShortCircuitOperatorAsAnd(Context& context) -> void {
  432. auto state = context.PopState();
  433. HandleExprLoopForOperator(context, state, NodeKind::ShortCircuitOperatorAnd);
  434. }
  435. auto HandleExprLoopForShortCircuitOperatorAsOr(Context& context) -> void {
  436. auto state = context.PopState();
  437. HandleExprLoopForOperator(context, state, NodeKind::ShortCircuitOperatorOr);
  438. }
  439. auto HandleExprStatementFinish(Context& context) -> void {
  440. auto state = context.PopState();
  441. if (auto semi = context.ConsumeIf(Lex::TokenKind::Semi)) {
  442. context.AddNode(NodeKind::ExprStatement, *semi, state.has_error);
  443. return;
  444. }
  445. if (!state.has_error) {
  446. CARBON_DIAGNOSTIC(ExpectedExprSemi, Error,
  447. "expected `;` after expression statement");
  448. context.emitter().Emit(*context.position(), ExpectedExprSemi);
  449. }
  450. context.AddNode(NodeKind::ExprStatement,
  451. context.SkipPastLikelyEnd(state.token), /*has_error=*/true);
  452. }
  453. } // namespace Carbon::Parse