1use crate::syntax::*;
5use crate::token::{Token, TokenKind, lex as lex_tokens};
6
7pub fn parse(tokens: Vec<Token>) -> Result<Program, ParseError> {
8 parse_with_src("", tokens)
12}
13
14pub fn parse_with_src(src: &str, tokens: Vec<Token>) -> Result<Program, ParseError> {
19 let mut p = Parser::new(src, tokens);
20 let program = p.parse_program()?;
21 p.skip_newlines();
22 if !p.at_eof() {
23 return Err(p.error("unexpected token after program"));
24 }
25 Ok(program)
26}
27
28#[derive(Debug, thiserror::Error)]
29#[error("parse error at byte {pos}: {msg}")]
30pub struct ParseError {
31 pub pos: usize,
32 pub msg: String,
33}
34
35struct Parser<'a> {
36 src: &'a str,
41 tokens: Vec<Token>,
42 idx: usize,
43 depth: u32,
48 discard_counter: u32,
54}
55
56const MAX_DEPTH: u32 = 96;
65
66enum InterpPart<'a> {
68 Text(&'a str),
69 Expr(&'a str),
70}
71
72fn split_interp_parts(s: &str) -> Result<Vec<InterpPart<'_>>, String> {
75 let mut parts = Vec::new();
76 let mut rest = s;
77 while let Some(open) = rest.find('{') {
78 if open > 0 {
79 parts.push(InterpPart::Text(&rest[..open]));
80 }
81 let after_open = &rest[open + 1..];
82 let close = find_closing_brace(after_open)
83 .ok_or_else(|| "unclosed `{` in string interpolation".to_string())?;
84 let expr_content = &after_open[..close];
85 if expr_content.trim().is_empty() {
86 return Err("empty `{}` in string interpolation".to_string());
87 }
88 parts.push(InterpPart::Expr(expr_content));
89 rest = &after_open[close + 1..];
90 }
91 if !rest.is_empty() {
92 parts.push(InterpPart::Text(rest));
93 }
94 Ok(parts)
95}
96
97fn find_closing_brace(s: &str) -> Option<usize> {
100 let mut depth: usize = 1;
101 for (i, c) in s.char_indices() {
102 match c {
103 '{' => depth += 1,
104 '}' => {
105 depth -= 1;
106 if depth == 0 {
107 return Some(i);
108 }
109 }
110 _ => {}
111 }
112 }
113 None
114}
115
116fn str_concat_expr(left: Expr, right: Expr) -> Expr {
118 Expr::Call {
119 callee: Box::new(Expr::Field {
120 value: Box::new(Expr::Var("str".into())),
121 field: "concat".into(),
122 }),
123 args: vec![left, right],
124 }
125}
126
127impl<'a> Parser<'a> {
128 fn new(src: &'a str, tokens: Vec<Token>) -> Self {
129 Self { src, tokens, idx: 0, depth: 0, discard_counter: 0 }
130 }
131
132 fn desugar_string_interpolation(&self, s: &str) -> Result<Expr, ParseError> {
135 let parts = match split_interp_parts(s) {
136 Ok(p) => p,
137 Err(msg) => return Err(ParseError { pos: 0, msg }),
138 };
139 let mut exprs: Vec<Expr> = Vec::new();
140 for part in parts {
141 match part {
142 InterpPart::Text(t) => {
143 if !t.is_empty() {
144 exprs.push(Expr::Lit(Literal::Str(t.to_string())));
145 }
146 }
147 InterpPart::Expr(content) => {
148 let tokens = lex_tokens(content.trim()).map_err(|e| ParseError {
149 pos: 0,
150 msg: format!("in string interpolation `{{{content}}}`': {e}"),
151 })?;
152 let mut sub = Parser::new("", tokens);
153 exprs.push(sub.parse_expr()?);
154 if !sub.at_eof() {
155 return Err(ParseError {
156 pos: 0,
157 msg: format!("unexpected tokens after expression in `{{{content}}}`"),
158 });
159 }
160 }
161 }
162 }
163 if exprs.is_empty() {
164 return Ok(Expr::Lit(Literal::Str(String::new())));
165 }
166 let mut result = exprs.remove(0);
167 for next in exprs {
168 result = str_concat_expr(result, next);
169 }
170 Ok(result)
171 }
172
173 fn extract_comments(&self, start: usize, end: usize) -> Vec<String> {
187 if start >= end || end > self.src.len() {
188 return Vec::new();
189 }
190 self.src[start..end]
191 .lines()
192 .filter_map(|line| {
193 let trimmed = line.trim_start();
194 if trimmed.starts_with('#') {
195 Some(trimmed.trim_end().to_string())
196 } else {
197 None
198 }
199 })
200 .collect()
201 }
202
203 fn at_eof(&self) -> bool {
204 self.idx >= self.tokens.len()
205 }
206
207 fn peek(&self) -> Option<&TokenKind> {
208 self.tokens.get(self.idx).map(|t| &t.kind)
209 }
210
211 fn bump(&mut self) -> Option<Token> {
212 let t = self.tokens.get(self.idx).cloned();
213 if t.is_some() {
214 self.idx += 1;
215 }
216 t
217 }
218
219 fn current_pos(&self) -> usize {
220 self.tokens
221 .get(self.idx)
222 .map(|t| t.span.start)
223 .unwrap_or_else(|| self.tokens.last().map(|t| t.span.end).unwrap_or(0))
224 }
225
226 fn error(&self, msg: impl Into<String>) -> ParseError {
227 ParseError { pos: self.current_pos(), msg: msg.into() }
228 }
229
230 fn skip_newlines(&mut self) {
231 while matches!(self.peek(), Some(TokenKind::Newline) | Some(TokenKind::Semi)) {
232 self.idx += 1;
233 }
234 }
235
236 fn expect(&mut self, expected: &TokenKind, ctx: &str) -> Result<Token, ParseError> {
237 self.skip_newlines();
238 match self.peek() {
239 Some(k) if std::mem::discriminant(k) == std::mem::discriminant(expected) => {
240 Ok(self.bump().unwrap())
241 }
242 Some(other) => Err(self.error(format!(
243 "expected {expected:?} {ctx}, got {other:?}"
244 ))),
245 None => Err(self.error(format!("expected {expected:?} {ctx}, got EOF"))),
246 }
247 }
248
249 fn eat(&mut self, k: &TokenKind) -> bool {
250 self.skip_newlines();
251 if let Some(cur) = self.peek() {
252 if std::mem::discriminant(cur) == std::mem::discriminant(k) {
253 self.bump();
254 return true;
255 }
256 }
257 false
258 }
259
260 fn expect_ident(&mut self, ctx: &str) -> Result<String, ParseError> {
261 self.skip_newlines();
262 match self.peek() {
263 Some(TokenKind::Ident(_)) => match self.bump().unwrap().kind {
264 TokenKind::Ident(name) => Ok(name),
265 _ => unreachable!(),
266 },
267 other => Err(self.error(format!("expected identifier {ctx}, got {other:?}"))),
268 }
269 }
270
271 fn parse_program(&mut self) -> Result<Program, ParseError> {
274 let mut items = Vec::new();
275 let mut leading_comments: Vec<String> = Vec::new();
276 let mut gap_start: usize = 0;
280 loop {
281 self.skip_newlines();
282 if self.at_eof() {
283 break;
284 }
285 let item_start = self.tokens[self.idx].span.start;
286 let gap_comments = self.extract_comments(gap_start, item_start);
287 let pending_comments = if items.is_empty() {
288 leading_comments = gap_comments;
289 Vec::new()
290 } else {
291 gap_comments
292 };
293 let mut item = self.parse_item()?;
294 if !pending_comments.is_empty() {
295 attach_leading_comments(&mut item, pending_comments);
296 }
297 gap_start = self
298 .tokens
299 .get(self.idx.saturating_sub(1))
300 .map(|t| t.span.end)
301 .unwrap_or(gap_start);
302 items.push(item);
303 }
304 let trailing_comments = self.extract_comments(gap_start, self.src.len());
307 Ok(Program { items, leading_comments, trailing_comments })
308 }
309
310 fn parse_item(&mut self) -> Result<Item, ParseError> {
311 match self.peek() {
312 Some(TokenKind::Import) => self.parse_import().map(Item::Import),
313 Some(TokenKind::Type) => self.parse_type_decl().map(Item::TypeDecl),
314 Some(TokenKind::Fn) => self.parse_fn_decl().map(Item::FnDecl),
315 other => Err(self.error(format!(
316 "expected `import`, `type`, or `fn` at top level, got {other:?}"
317 ))),
318 }
319 }
320
321 fn parse_import(&mut self) -> Result<Import, ParseError> {
322 self.expect(&TokenKind::Import, "in import")?;
323 let reference = match self.bump().map(|t| t.kind) {
324 Some(TokenKind::Str(s)) => s,
325 other => return Err(self.error(format!("expected string after `import`, got {other:?}"))),
326 };
327 self.expect(&TokenKind::As, "in import")?;
328 let alias = self.expect_ident("for import alias")?;
329 Ok(Import { reference, alias, leading_comments: Vec::new() })
330 }
331
332 fn parse_type_decl(&mut self) -> Result<TypeDecl, ParseError> {
333 self.expect(&TokenKind::Type, "in type decl")?;
334 let name = self.expect_ident("for type name")?;
335 let params = if self.eat(&TokenKind::LBracket) {
336 let ps = self.parse_ident_list()?;
337 self.expect(&TokenKind::RBracket, "after type params")?;
338 ps
339 } else {
340 Vec::new()
341 };
342 self.expect(&TokenKind::Eq, "in type decl")?;
343 let definition = self.parse_type_decl_rhs()?;
344 Ok(TypeDecl { name, params, definition, leading_comments: Vec::new() })
345 }
346
347 fn parse_ident_list(&mut self) -> Result<Vec<String>, ParseError> {
348 let mut out = Vec::new();
349 out.push(self.expect_ident("in identifier list")?);
350 while self.eat(&TokenKind::Comma) {
351 if matches!(self.peek_skip_newlines(), Some(TokenKind::RBracket)) { break; }
352 out.push(self.expect_ident("in identifier list")?);
353 }
354 Ok(out)
355 }
356
357 fn parse_type_decl_rhs(&mut self) -> Result<TypeExpr, ParseError> {
359 let first = self.parse_type_expr()?;
360 if matches!(self.peek_skip_newlines(), Some(TokenKind::Bar)) {
362 let mut variants = Vec::new();
363 variants.push(type_to_variant(first)?);
364 while self.eat(&TokenKind::Bar) {
365 let next = self.parse_type_expr()?;
366 variants.push(type_to_variant(next)?);
367 }
368 Ok(TypeExpr::Union(variants))
369 } else {
370 let last_was_rparen = self.idx > 0 && matches!(
376 self.tokens.get(self.idx - 1).map(|t| &t.kind),
377 Some(TokenKind::RParen)
378 );
379 if last_was_rparen {
380 if let TypeExpr::Named { ref name, .. } = first {
381 let unqual = name.split('.').next_back().unwrap_or(name.as_str());
382 if unqual.chars().next().map(|c| c.is_ascii_uppercase()).unwrap_or(false) {
383 return Ok(TypeExpr::Union(vec![type_to_variant(first)?]));
384 }
385 }
386 }
387 Ok(first)
388 }
389 }
390
391 fn peek_skip_newlines(&mut self) -> Option<TokenKind> {
392 let saved = self.idx;
393 self.skip_newlines();
394 let out = self.peek().cloned();
395 self.idx = saved;
396 out
397 }
398
399 fn parse_type_expr(&mut self) -> Result<TypeExpr, ParseError> {
400 let base = self.parse_type_expr_base()?;
401 self.maybe_wrap_refinement(base)
402 }
403
404 fn parse_type_expr_base(&mut self) -> Result<TypeExpr, ParseError> {
405 self.skip_newlines();
406 match self.peek() {
407 Some(TokenKind::LBrace) => self.parse_record_type(),
408 Some(TokenKind::LParen) => self.parse_paren_type_or_function(),
409 Some(TokenKind::Ident(_)) => {
410 let mut name = self.expect_ident("in type expr")?;
411 while matches!(self.peek(), Some(TokenKind::Dot)) {
416 self.bump();
417 let next = self.expect_ident("after `.` in qualified type")?;
418 name.push('.');
419 name.push_str(&next);
420 }
421 let args = if matches!(self.peek(), Some(TokenKind::LBracket)) {
422 self.bump();
423 let mut args = Vec::new();
424 args.push(self.parse_type_expr()?);
425 while self.eat(&TokenKind::Comma) {
426 if matches!(self.peek_skip_newlines(), Some(TokenKind::RBracket)) { break; }
427 args.push(self.parse_type_expr()?);
428 }
429 self.expect(&TokenKind::RBracket, "after type args")?;
430 args
431 } else if matches!(self.peek(), Some(TokenKind::LParen)) {
432 self.bump();
434 let mut args = Vec::new();
435 if !matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) {
436 args.push(self.parse_type_expr()?);
437 while self.eat(&TokenKind::Comma) {
438 if matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) { break; }
439 args.push(self.parse_type_expr()?);
440 }
441 }
442 self.expect(&TokenKind::RParen, "after constructor payload")?;
443 args
444 } else {
445 Vec::new()
446 };
447 Ok(TypeExpr::Named { name, args })
448 }
449 other => Err(self.error(format!("expected type expression, got {other:?}"))),
450 }
451 }
452
453 fn maybe_wrap_refinement(&mut self, base: TypeExpr) -> Result<TypeExpr, ParseError> {
461 let next0 = self.tokens.get(self.idx).map(|t| &t.kind);
462 let next1 = self.tokens.get(self.idx + 1).map(|t| &t.kind);
463 let next2 = self.tokens.get(self.idx + 2).map(|t| &t.kind);
464 let is_refinement_lookahead = matches!(next0, Some(TokenKind::LBrace))
465 && matches!(next1, Some(TokenKind::Ident(_)))
466 && matches!(next2, Some(TokenKind::Bar));
467 if !is_refinement_lookahead {
468 return Ok(base);
469 }
470 self.bump(); let binding = self.expect_ident("for refinement binding")?;
472 self.expect(&TokenKind::Bar, "after refinement binding")?;
473 let predicate = self.parse_expr()?;
474 self.expect(&TokenKind::RBrace, "to close refinement")?;
475 Ok(TypeExpr::Refined {
476 base: Box::new(base),
477 binding,
478 predicate: Box::new(predicate),
479 })
480 }
481
482 fn parse_record_type(&mut self) -> Result<TypeExpr, ParseError> {
483 self.expect(&TokenKind::LBrace, "in record type")?;
484 let mut fields = Vec::new();
485 let mut spreads = Vec::new();
486 if !matches!(self.peek_skip_newlines(), Some(TokenKind::RBrace)) {
487 loop {
488 self.skip_newlines();
489 if matches!(self.peek(), Some(TokenKind::DotDotDot)) {
490 self.bump(); let name = self.expect_ident("after `...` in record type spread")?;
492 spreads.push(name);
493 } else {
494 let name = self.expect_ident("in record field")?;
495 self.expect(&TokenKind::ColonColon, "after record field name")?;
496 let ty = self.parse_type_expr()?;
497 fields.push(TypeField { name, ty });
498 }
499 self.skip_newlines();
500 if !self.eat(&TokenKind::Comma) { break; }
501 if matches!(self.peek_skip_newlines(), Some(TokenKind::RBrace)) { break; }
502 }
503 }
504 self.expect(&TokenKind::RBrace, "in record type")?;
505 if spreads.is_empty() {
506 Ok(TypeExpr::Record(fields))
507 } else {
508 Ok(TypeExpr::RecordWithSpreads { spreads, fields })
509 }
510 }
511
512 fn parse_paren_type_or_function(&mut self) -> Result<TypeExpr, ParseError> {
513 self.expect(&TokenKind::LParen, "in type")?;
514 let mut args = Vec::new();
515 if !matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) {
516 args.push(self.parse_type_expr()?);
517 while self.eat(&TokenKind::Comma) {
518 if matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) { break; }
519 args.push(self.parse_type_expr()?);
520 }
521 }
522 self.expect(&TokenKind::RParen, "in type")?;
523 if matches!(self.peek_skip_newlines(), Some(TokenKind::Arrow)) {
525 self.skip_newlines();
526 self.bump();
527 let effects = self.parse_effects()?;
528 let ret = self.parse_type_expr()?;
529 Ok(TypeExpr::Function {
530 params: args,
531 effects,
532 ret: Box::new(ret),
533 })
534 } else if args.len() == 1 {
535 Ok(args.into_iter().next().unwrap())
537 } else {
538 Ok(TypeExpr::Tuple(args))
539 }
540 }
541
542 fn parse_fn_decl(&mut self) -> Result<FnDecl, ParseError> {
543 self.expect(&TokenKind::Fn, "in fn decl")?;
544 let name = self.expect_ident("for function name")?;
545 let type_params = if self.eat(&TokenKind::LBracket) {
546 let ps = self.parse_ident_list()?;
547 self.expect(&TokenKind::RBracket, "after type params")?;
548 ps
549 } else {
550 Vec::new()
551 };
552 self.expect(&TokenKind::LParen, "before params")?;
553 let mut params = Vec::new();
554 if !matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) {
555 params.push(self.parse_param()?);
556 while self.eat(&TokenKind::Comma) {
557 if matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) { break; }
558 params.push(self.parse_param()?);
559 }
560 }
561 self.expect(&TokenKind::RParen, "after params")?;
562 self.expect(&TokenKind::Arrow, "before return type")?;
563 let effects = self.parse_effects()?;
564 let return_type = self.parse_type_expr()?;
565 let examples = self.parse_examples_block()?;
566 let body = self.parse_block()?;
567 Ok(FnDecl { name, type_params, params, effects, return_type, body, examples, leading_comments: Vec::new() })
568 }
569
570 fn parse_examples_block(&mut self) -> Result<Vec<Example>, ParseError> {
574 let is_examples_kw = matches!(
577 self.peek_skip_newlines(),
578 Some(TokenKind::Ident(s)) if s == "examples"
579 );
580 if !is_examples_kw {
581 return Ok(Vec::new());
582 }
583 self.skip_newlines();
584 self.bump(); self.expect(&TokenKind::LBrace, "after `examples`")?;
586 let mut cases = Vec::new();
587 loop {
588 self.skip_newlines();
589 if matches!(self.peek(), Some(TokenKind::RBrace)) { break; }
590 let call = self.parse_expr()?;
591 self.expect(&TokenKind::FatArrow, "in example case (between call and expected)")?;
592 let expected = self.parse_expr()?;
593 let (args, _) = match call {
594 Expr::Call { callee: _, args } => (args, ()),
595 other => return Err(self.error(
596 format!("example case must be a call to the function under definition; got {other:?}")
597 )),
598 };
599 cases.push(Example { args, expected });
600 self.skip_newlines();
601 if !self.eat(&TokenKind::Comma) {
602 self.skip_newlines();
603 break;
604 }
605 }
606 self.expect(&TokenKind::RBrace, "to close examples block")?;
607 Ok(cases)
608 }
609
610 fn parse_param(&mut self) -> Result<Param, ParseError> {
611 let name = if matches!(self.peek_skip_newlines(), Some(TokenKind::Underscore)) {
612 self.skip_newlines();
613 self.bump();
614 self.discard_counter += 1;
615 format!("__lex_discard_{}", self.discard_counter)
616 } else {
617 self.expect_ident("for parameter name")?
618 };
619 self.expect(&TokenKind::ColonColon, "after parameter name")?;
620 let ty = self.parse_type_expr()?;
621 Ok(Param { name, ty })
622 }
623
624 fn parse_effects(&mut self) -> Result<Vec<Effect>, ParseError> {
625 if !self.eat(&TokenKind::LBracket) {
626 return Ok(Vec::new());
627 }
628 let mut out = Vec::new();
629 if !matches!(self.peek_skip_newlines(), Some(TokenKind::RBracket)) {
630 out.push(self.parse_effect()?);
631 while self.eat(&TokenKind::Comma) {
632 if matches!(self.peek_skip_newlines(), Some(TokenKind::RBracket)) { break; }
633 out.push(self.parse_effect()?);
634 }
635 }
636 self.expect(&TokenKind::RBracket, "after effects")?;
637 Ok(out)
638 }
639
640 fn parse_effect(&mut self) -> Result<Effect, ParseError> {
641 let name = self.expect_ident("for effect name")?;
642 let arg = if self.eat(&TokenKind::LParen) {
643 let arg = match self.bump().map(|t| t.kind) {
644 Some(TokenKind::Str(s)) => EffectArg::Str(s),
645 Some(TokenKind::Int(n)) => EffectArg::Int(n),
646 Some(TokenKind::Ident(s)) => EffectArg::Ident(s),
647 other => return Err(self.error(format!("invalid effect arg: {other:?}"))),
648 };
649 self.expect(&TokenKind::RParen, "after effect arg")?;
650 Some(arg)
651 } else {
652 None
653 };
654 Ok(Effect { name, arg })
655 }
656
657 fn parse_block(&mut self) -> Result<Block, ParseError> {
660 self.expect(&TokenKind::LBrace, "before block")?;
661 let mut statements = Vec::new();
662 let result;
663 loop {
664 self.skip_newlines();
665 if matches!(self.peek(), Some(TokenKind::RBrace)) {
666 result = Box::new(Expr::Lit(Literal::Unit));
668 break;
669 }
670 if matches!(self.peek(), Some(TokenKind::Let)) {
672 let stmt = self.parse_let_statement()?;
673 statements.push(stmt);
674 self.skip_newlines();
675 continue;
676 }
677 let expr = self.parse_expr()?;
678 self.skip_newlines();
679 if matches!(self.peek(), Some(TokenKind::RBrace)) {
681 result = Box::new(expr);
682 break;
683 }
684 statements.push(Statement::Expr(expr));
685 }
686 self.expect(&TokenKind::RBrace, "to close block")?;
687 Ok(Block { statements, result })
688 }
689
690 fn parse_let_statement(&mut self) -> Result<Statement, ParseError> {
691 self.expect(&TokenKind::Let, "in let")?;
692 let name = if matches!(self.peek_skip_newlines(), Some(TokenKind::Underscore)) {
698 self.skip_newlines();
699 self.bump();
700 self.discard_counter += 1;
701 format!("__lex_discard_{}", self.discard_counter)
702 } else {
703 self.expect_ident("after `let`")?
704 };
705 let ty = if self.eat(&TokenKind::ColonColon) {
706 Some(self.parse_type_expr()?)
707 } else {
708 None
709 };
710 self.expect(&TokenKind::ColonEq, "in let")?;
711 let value = self.parse_expr()?;
712 Ok(Statement::Let { name, ty, value })
713 }
714
715 fn parse_expr(&mut self) -> Result<Expr, ParseError> {
718 if self.depth >= MAX_DEPTH {
723 return Err(ParseError {
724 pos: self.current_pos(),
725 msg: format!(
726 "expression nests too deeply (max {MAX_DEPTH}); \
727 malformed or hand-crafted input?"),
728 });
729 }
730 self.depth += 1;
731 let r = self.parse_expr_inner();
732 self.depth -= 1;
733 r
734 }
735
736 fn parse_expr_inner(&mut self) -> Result<Expr, ParseError> {
737 let mut left = self.parse_binary_expr(0)?;
739 while matches!(self.peek_skip_newlines(), Some(TokenKind::Pipe)) {
740 self.skip_newlines();
741 self.bump();
742 let right = self.parse_binary_expr(0)?;
743 left = Expr::Pipe { left: Box::new(left), right: Box::new(right) };
744 }
745 Ok(left)
746 }
747
748 fn parse_binary_expr(&mut self, min_prec: u8) -> Result<Expr, ParseError> {
749 let mut lhs = self.parse_unary()?;
750 loop {
751 let op = match self.peek_binop() {
752 Some(op) if op.precedence() >= min_prec => op,
753 _ => break,
754 };
755 self.skip_newlines();
756 self.bump();
757 let rhs = self.parse_binary_expr(op.precedence() + 1)?;
758 lhs = Expr::BinOp { op, lhs: Box::new(lhs), rhs: Box::new(rhs) };
759 }
760 Ok(lhs)
761 }
762
763 fn peek_binop(&mut self) -> Option<BinOp> {
764 match self.peek_skip_newlines()? {
765 TokenKind::Plus => Some(BinOp::Add),
766 TokenKind::Minus => Some(BinOp::Sub),
767 TokenKind::Star => Some(BinOp::Mul),
768 TokenKind::Slash => Some(BinOp::Div),
769 TokenKind::Percent => Some(BinOp::Mod),
770 TokenKind::EqEq => Some(BinOp::Eq),
771 TokenKind::BangEq => Some(BinOp::Neq),
772 TokenKind::Lt => Some(BinOp::Lt),
773 TokenKind::LtEq => Some(BinOp::Lte),
774 TokenKind::Gt => Some(BinOp::Gt),
775 TokenKind::GtEq => Some(BinOp::Gte),
776 TokenKind::And => Some(BinOp::And),
777 TokenKind::Or => Some(BinOp::Or),
778 _ => None,
779 }
780 }
781
782 fn parse_unary(&mut self) -> Result<Expr, ParseError> {
783 self.skip_newlines();
784 match self.peek() {
785 Some(TokenKind::Not) => {
786 self.bump();
787 let inner = self.parse_unary()?;
788 Ok(Expr::UnaryOp { op: UnaryOp::Not, expr: Box::new(inner) })
789 }
790 Some(TokenKind::Minus) => {
791 self.bump();
792 let inner = self.parse_unary()?;
793 Ok(Expr::UnaryOp { op: UnaryOp::Neg, expr: Box::new(inner) })
794 }
795 _ => self.parse_postfix(),
796 }
797 }
798
799 fn parse_postfix(&mut self) -> Result<Expr, ParseError> {
800 let mut expr = self.parse_primary()?;
801 loop {
802 match self.peek() {
804 Some(TokenKind::Dot) => {
805 self.bump();
806 let field = self.expect_ident("after `.`")?;
807 expr = Expr::Field { value: Box::new(expr), field };
808 }
809 Some(TokenKind::LParen) => {
810 self.bump();
811 let mut args = Vec::new();
812 if !matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) {
813 args.push(self.parse_expr()?);
814 while self.eat(&TokenKind::Comma) {
815 if matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) { break; }
816 args.push(self.parse_expr()?);
817 }
818 }
819 self.expect(&TokenKind::RParen, "in call")?;
820 expr = Expr::Call { callee: Box::new(expr), args };
821 }
822 Some(TokenKind::Question) => {
823 self.bump();
824 expr = Expr::Try(Box::new(expr));
825 }
826 _ => break,
827 }
828 }
829 Ok(expr)
830 }
831
832 fn parse_primary(&mut self) -> Result<Expr, ParseError> {
833 self.skip_newlines();
834 match self.peek() {
835 Some(TokenKind::Int(_)) => match self.bump().unwrap().kind {
836 TokenKind::Int(n) => Ok(Expr::Lit(Literal::Int(n))),
837 _ => unreachable!(),
838 },
839 Some(TokenKind::Float(_)) => match self.bump().unwrap().kind {
840 TokenKind::Float(n) => Ok(Expr::Lit(Literal::Float(n))),
841 _ => unreachable!(),
842 },
843 Some(TokenKind::Str(_)) => match self.bump().unwrap().kind {
844 TokenKind::Str(s) => Ok(Expr::Lit(Literal::Str(s))),
845 _ => unreachable!(),
846 },
847 Some(TokenKind::FStr(_)) => match self.bump().unwrap().kind {
848 TokenKind::FStr(s) => self.desugar_string_interpolation(&s),
849 _ => unreachable!(),
850 },
851 Some(TokenKind::Bytes(_)) => match self.bump().unwrap().kind {
852 TokenKind::Bytes(b) => Ok(Expr::Lit(Literal::Bytes(b))),
853 _ => unreachable!(),
854 },
855 Some(TokenKind::True) => { self.bump(); Ok(Expr::Lit(Literal::Bool(true))) }
856 Some(TokenKind::False) => { self.bump(); Ok(Expr::Lit(Literal::Bool(false))) }
857 Some(TokenKind::If) => self.parse_if(),
858 Some(TokenKind::Match) => self.parse_match(),
859 Some(TokenKind::Fn) => self.parse_lambda(),
860 Some(TokenKind::LBrace) => self.parse_brace_expr(),
861 Some(TokenKind::LBracket) => self.parse_list_literal(),
862 Some(TokenKind::LParen) => self.parse_paren_or_tuple(),
863 Some(TokenKind::Ident(_)) => self.parse_ident_or_record(),
864 other => Err(self.error(format!("expected expression, got {other:?}"))),
865 }
866 }
867
868 fn parse_brace_expr(&mut self) -> Result<Expr, ParseError> {
872 let saved = self.idx;
874 self.bump(); while matches!(self.peek(), Some(TokenKind::Newline) | Some(TokenKind::Semi)) {
877 self.idx += 1;
878 }
879 let is_record = matches!(self.peek(), Some(TokenKind::RBrace))
880 || (matches!(self.peek(), Some(TokenKind::Ident(_)))
881 && matches!(self.tokens.get(self.idx + 1).map(|t| &t.kind), Some(TokenKind::Colon) | Some(TokenKind::Comma) | Some(TokenKind::RBrace)));
882 self.idx = saved;
883 if is_record {
884 self.parse_record_literal()
885 } else {
886 Ok(Expr::Block(self.parse_block()?))
887 }
888 }
889
890 fn parse_record_literal(&mut self) -> Result<Expr, ParseError> {
891 self.expect(&TokenKind::LBrace, "in record literal")?;
892 let mut fields = Vec::new();
893 if !matches!(self.peek_skip_newlines(), Some(TokenKind::RBrace)) {
894 loop {
895 self.skip_newlines();
896 let name = self.expect_ident("in record literal")?;
897 let value = if self.eat(&TokenKind::Colon) {
898 self.parse_expr()?
899 } else {
900 Expr::Var(name.clone())
902 };
903 fields.push(RecordLitField { name, value });
904 self.skip_newlines();
905 if !self.eat(&TokenKind::Comma) { break; }
906 if matches!(self.peek_skip_newlines(), Some(TokenKind::RBrace)) { break; }
907 }
908 }
909 self.expect(&TokenKind::RBrace, "after record literal")?;
910 Ok(Expr::RecordLit(fields))
911 }
912
913 fn parse_if(&mut self) -> Result<Expr, ParseError> {
914 self.expect(&TokenKind::If, "in if")?;
915 let cond = self.parse_expr()?;
916 let then_block = self.parse_block()?;
917 self.expect(&TokenKind::Else, "expected `else`")?;
918 let else_block = self.parse_block()?;
919 Ok(Expr::If { cond: Box::new(cond), then_block, else_block })
920 }
921
922 fn parse_match(&mut self) -> Result<Expr, ParseError> {
923 self.expect(&TokenKind::Match, "in match")?;
924 let scrutinee = self.parse_expr()?;
925 self.expect(&TokenKind::LBrace, "before match arms")?;
926 let mut arms = Vec::new();
927 loop {
928 self.skip_newlines();
929 if matches!(self.peek(), Some(TokenKind::RBrace)) { break; }
930 let pattern = self.parse_pattern()?;
931 self.expect(&TokenKind::FatArrow, "in match arm")?;
932 let body = self.parse_expr()?;
933 arms.push(Arm { pattern, body });
934 self.skip_newlines();
935 if !self.eat(&TokenKind::Comma) { break; }
936 }
937 self.expect(&TokenKind::RBrace, "after match arms")?;
938 Ok(Expr::Match { scrutinee: Box::new(scrutinee), arms })
939 }
940
941 fn parse_lambda(&mut self) -> Result<Expr, ParseError> {
942 self.expect(&TokenKind::Fn, "in lambda")?;
943 self.expect(&TokenKind::LParen, "before lambda params")?;
944 let mut params = Vec::new();
945 if !matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) {
946 params.push(self.parse_param()?);
947 while self.eat(&TokenKind::Comma) {
948 if matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) { break; }
949 params.push(self.parse_param()?);
950 }
951 }
952 self.expect(&TokenKind::RParen, "after lambda params")?;
953 self.expect(&TokenKind::Arrow, "before lambda return type")?;
954 let effects = self.parse_effects()?;
955 let return_type = self.parse_type_expr()?;
956 let body = self.parse_block()?;
957 Ok(Expr::Lambda(Box::new(Lambda { params, effects, return_type, body })))
958 }
959
960 fn parse_list_literal(&mut self) -> Result<Expr, ParseError> {
961 self.expect(&TokenKind::LBracket, "before list literal")?;
962 let mut items = Vec::new();
963 if !matches!(self.peek_skip_newlines(), Some(TokenKind::RBracket)) {
964 items.push(self.parse_expr()?);
965 while self.eat(&TokenKind::Comma) {
966 if matches!(self.peek_skip_newlines(), Some(TokenKind::RBracket)) { break; }
967 items.push(self.parse_expr()?);
968 }
969 }
970 self.expect(&TokenKind::RBracket, "after list literal")?;
971 Ok(Expr::ListLit(items))
972 }
973
974 fn parse_paren_or_tuple(&mut self) -> Result<Expr, ParseError> {
975 self.expect(&TokenKind::LParen, "")?;
976 if matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) {
977 self.bump();
978 return Ok(Expr::Lit(Literal::Unit));
979 }
980 let first = self.parse_expr()?;
981 if self.eat(&TokenKind::ColonColon) {
984 let ty = self.parse_type_expr()?;
985 self.expect(&TokenKind::RParen, "after type ascription")?;
986 return Ok(Expr::Ascription { value: Box::new(first), ty });
987 }
988 if self.eat(&TokenKind::Comma) {
989 let mut items = vec![first];
990 if !matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) {
991 items.push(self.parse_expr()?);
992 while self.eat(&TokenKind::Comma) {
993 if matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) { break; }
994 items.push(self.parse_expr()?);
995 }
996 }
997 self.expect(&TokenKind::RParen, "after tuple")?;
998 Ok(Expr::TupleLit(items))
999 } else {
1000 self.expect(&TokenKind::RParen, "after parenthesized expression")?;
1001 Ok(first)
1002 }
1003 }
1004
1005 fn parse_ident_or_record(&mut self) -> Result<Expr, ParseError> {
1006 let name = self.expect_ident("")?;
1008 Ok(Expr::Var(name))
1009 }
1010
1011 fn parse_pattern(&mut self) -> Result<Pattern, ParseError> {
1014 self.skip_newlines();
1015 match self.peek() {
1016 Some(TokenKind::Minus) => {
1017 self.bump();
1018 self.skip_newlines();
1019 match self.peek() {
1020 Some(TokenKind::Int(_)) => match self.bump().unwrap().kind {
1021 TokenKind::Int(n) => Ok(Pattern::Lit(Literal::Int(-n))),
1022 _ => unreachable!(),
1023 },
1024 Some(TokenKind::Float(_)) => match self.bump().unwrap().kind {
1025 TokenKind::Float(n) => Ok(Pattern::Lit(Literal::Float(-n))),
1026 _ => unreachable!(),
1027 },
1028 other => Err(self.error(format!("expected Int or Float after `-` in pattern, got {other:?}"))),
1029 }
1030 }
1031 Some(TokenKind::Underscore) => { self.bump(); Ok(Pattern::Wild) }
1032 Some(TokenKind::Int(_)) => match self.bump().unwrap().kind {
1033 TokenKind::Int(n) => Ok(Pattern::Lit(Literal::Int(n))),
1034 _ => unreachable!(),
1035 },
1036 Some(TokenKind::Float(_)) => match self.bump().unwrap().kind {
1037 TokenKind::Float(n) => Ok(Pattern::Lit(Literal::Float(n))),
1038 _ => unreachable!(),
1039 },
1040 Some(TokenKind::Str(_)) => match self.bump().unwrap().kind {
1041 TokenKind::Str(s) => Ok(Pattern::Lit(Literal::Str(s))),
1042 _ => unreachable!(),
1043 },
1044 Some(TokenKind::True) => { self.bump(); Ok(Pattern::Lit(Literal::Bool(true))) }
1045 Some(TokenKind::False) => { self.bump(); Ok(Pattern::Lit(Literal::Bool(false))) }
1046 Some(TokenKind::LBrace) => self.parse_record_pattern(),
1047 Some(TokenKind::LParen) => self.parse_tuple_pattern(),
1048 Some(TokenKind::Ident(_)) => {
1049 let mut name = self.expect_ident("")?;
1050 while matches!(self.peek(), Some(TokenKind::Dot)) {
1054 self.bump();
1055 name = self.expect_ident("after `.` in qualified pattern")?;
1056 }
1057 if matches!(self.peek(), Some(TokenKind::LParen)) {
1058 self.bump();
1059 let mut args = Vec::new();
1060 if !matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) {
1061 args.push(self.parse_pattern()?);
1062 while self.eat(&TokenKind::Comma) {
1063 if matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) { break; }
1064 args.push(self.parse_pattern()?);
1065 }
1066 }
1067 self.expect(&TokenKind::RParen, "after constructor pattern")?;
1068 Ok(Pattern::Constructor { name, args })
1069 } else {
1070 Ok(Pattern::Var(name))
1071 }
1072 }
1073 other => Err(self.error(format!("expected pattern, got {other:?}"))),
1074 }
1075 }
1076
1077 fn parse_record_pattern(&mut self) -> Result<Pattern, ParseError> {
1078 self.expect(&TokenKind::LBrace, "")?;
1079 let mut fields = Vec::new();
1080 let rest = false;
1081 if !matches!(self.peek_skip_newlines(), Some(TokenKind::RBrace)) {
1082 loop {
1083 self.skip_newlines();
1084 let name = self.expect_ident("in record pattern")?;
1085 let pattern = if self.eat(&TokenKind::Colon) {
1086 Some(self.parse_pattern()?)
1087 } else {
1088 None
1089 };
1090 fields.push(RecordPatField { name, pattern });
1091 self.skip_newlines();
1092 if !self.eat(&TokenKind::Comma) { break; }
1093 if matches!(self.peek_skip_newlines(), Some(TokenKind::RBrace)) { break; }
1094 }
1095 }
1096 self.expect(&TokenKind::RBrace, "after record pattern")?;
1097 Ok(Pattern::Record { fields, rest })
1098 }
1099
1100 fn parse_tuple_pattern(&mut self) -> Result<Pattern, ParseError> {
1101 self.expect(&TokenKind::LParen, "")?;
1102 let mut items = Vec::new();
1103 if !matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) {
1104 items.push(self.parse_pattern()?);
1105 while self.eat(&TokenKind::Comma) {
1106 if matches!(self.peek_skip_newlines(), Some(TokenKind::RParen)) { break; }
1107 items.push(self.parse_pattern()?);
1108 }
1109 }
1110 self.expect(&TokenKind::RParen, "after tuple pattern")?;
1111 if items.len() == 1 {
1112 Ok(items.into_iter().next().unwrap())
1113 } else {
1114 Ok(Pattern::Tuple(items))
1115 }
1116 }
1117}
1118
1119fn type_to_variant(t: TypeExpr) -> Result<UnionVariant, ParseError> {
1122 match t {
1123 TypeExpr::Named { name, args } => {
1124 let payload = match args.len() {
1125 0 => None,
1126 1 => Some(args.into_iter().next().unwrap()),
1127 _ => Some(TypeExpr::Tuple(args)),
1128 };
1129 Ok(UnionVariant { name, payload })
1130 }
1131 _ => Err(ParseError {
1133 pos: 0,
1134 msg: "union variant must be a constructor name".into(),
1135 }),
1136 }
1137}
1138
1139fn attach_leading_comments(item: &mut Item, comments: Vec<String>) {
1143 if comments.is_empty() {
1144 return;
1145 }
1146 match item {
1147 Item::Import(i) => i.leading_comments = comments,
1148 Item::TypeDecl(t) => t.leading_comments = comments,
1149 Item::FnDecl(f) => f.leading_comments = comments,
1150 }
1151}