1use std::ops::Bound;
2
3use rustc_ast::mut_visit::{self, MutVisitor};
4use rustc_ast::token::NtPatKind::*;
5use rustc_ast::token::{self, IdentIsRaw, MetaVarKind, Token};
6use rustc_ast::util::parser::ExprPrecedence;
7use rustc_ast::visit::{self, Visitor};
8use rustc_ast::{
9 self as ast, Arm, AttrVec, BindingMode, ByRef, Expr, ExprKind, LocalKind, MacCall, Mutability,
10 Pat, PatField, PatFieldsRest, PatKind, Path, QSelf, RangeEnd, RangeSyntax, Stmt, StmtKind,
11};
12use rustc_ast_pretty::pprust;
13use rustc_errors::{Applicability, Diag, DiagArgValue, PResult, StashKey};
14use rustc_session::errors::ExprParenthesesNeeded;
15use rustc_span::source_map::{Spanned, respan};
16use rustc_span::{BytePos, ErrorGuaranteed, Ident, Span, kw, sym};
17use thin_vec::{ThinVec, thin_vec};
18
19use super::{ForceCollect, Parser, PathStyle, Restrictions, Trailing, UsePreAttrPos};
20use crate::errors::{
21 self, AmbiguousRangePattern, AtDotDotInStructPattern, AtInStructPattern,
22 DotDotDotForRemainingFields, DotDotDotRangeToPatternNotAllowed, DotDotDotRestPattern,
23 EnumPatternInsteadOfIdentifier, ExpectedBindingLeftOfAt, ExpectedCommaAfterPatternField,
24 GenericArgsInPatRequireTurbofishSyntax, InclusiveRangeExtraEquals, InclusiveRangeMatchArrow,
25 InclusiveRangeNoEnd, InvalidMutInPattern, ParenRangeSuggestion, PatternOnWrongSideOfAt,
26 RemoveLet, RepeatedMutInPattern, SwitchRefBoxOrder, TopLevelOrPatternNotAllowed,
27 TopLevelOrPatternNotAllowedSugg, TrailingVertNotAllowed, TrailingVertSuggestion,
28 UnexpectedExpressionInPattern, UnexpectedExpressionInPatternSugg, UnexpectedLifetimeInPattern,
29 UnexpectedParenInRangePat, UnexpectedParenInRangePatSugg,
30 UnexpectedVertVertBeforeFunctionParam, UnexpectedVertVertInPattern, WrapInParens,
31};
32use crate::parser::expr::{DestructuredFloat, could_be_unclosed_char_literal};
33use crate::{exp, maybe_recover_from_interpolated_ty_qpath};
34
35#[derive(PartialEq, Copy, Clone)]
36pub enum Expected {
37 ParameterName,
38 ArgumentName,
39 Identifier,
40 BindingPattern,
41}
42
43impl Expected {
44 fn to_string_or_fallback(expected: Option<Expected>) -> &'static str {
46 match expected {
47 Some(Expected::ParameterName) => "parameter name",
48 Some(Expected::ArgumentName) => "argument name",
49 Some(Expected::Identifier) => "identifier",
50 Some(Expected::BindingPattern) => "binding pattern",
51 None => "pattern",
52 }
53 }
54}
55
56const WHILE_PARSING_OR_MSG: &str = "while parsing this or-pattern starting here";
57
58#[derive(PartialEq, Copy, Clone)]
60pub enum RecoverComma {
61 Yes,
62 No,
63}
64
65#[derive(PartialEq, Copy, Clone)]
67pub enum RecoverColon {
68 Yes,
69 No,
70}
71
72#[derive(PartialEq, Copy, Clone)]
74pub enum CommaRecoveryMode {
75 LikelyTuple,
76 EitherTupleOrPipe,
77}
78
79#[derive(Debug, Clone, Copy)]
82enum EatOrResult {
83 TrailingVert,
85 AteOr,
87 None,
89}
90
91#[derive(Clone, Copy)]
93pub enum PatternLocation {
94 LetBinding,
95 FunctionParameter,
96}
97
98impl<'a> Parser<'a> {
99 pub fn parse_pat_allow_top_guard(
105 &mut self,
106 expected: Option<Expected>,
107 rc: RecoverComma,
108 ra: RecoverColon,
109 rt: CommaRecoveryMode,
110 ) -> PResult<'a, Pat> {
111 let pat = self.parse_pat_no_top_guard(expected, rc, ra, rt)?;
112
113 if self.eat_keyword(exp!(If)) {
114 let cond = self.parse_expr()?;
115 self.psess.gated_spans.gate(sym::guard_patterns, cond.span);
117 let span = pat.span.to(cond.span);
118 Ok(self.mk_pat(span, PatKind::Guard(Box::new(pat), cond)))
119 } else {
120 Ok(pat)
121 }
122 }
123
124 pub fn parse_pat_no_top_alt(
130 &mut self,
131 expected: Option<Expected>,
132 syntax_loc: Option<PatternLocation>,
133 ) -> PResult<'a, Pat> {
134 self.parse_pat_with_range_pat(true, expected, syntax_loc)
135 }
136
137 pub fn parse_pat_no_top_guard(
147 &mut self,
148 expected: Option<Expected>,
149 rc: RecoverComma,
150 ra: RecoverColon,
151 rt: CommaRecoveryMode,
152 ) -> PResult<'a, Pat> {
153 self.parse_pat_no_top_guard_inner(expected, rc, ra, rt, None).map(|(pat, _)| pat)
154 }
155
156 fn parse_pat_no_top_guard_inner(
159 &mut self,
160 expected: Option<Expected>,
161 rc: RecoverComma,
162 ra: RecoverColon,
163 rt: CommaRecoveryMode,
164 syntax_loc: Option<PatternLocation>,
165 ) -> PResult<'a, (Pat, bool)> {
166 let (leading_vert_span, mut trailing_vert) = match self.eat_or_separator(None) {
171 EatOrResult::AteOr => (Some(self.prev_token.span), false),
172 EatOrResult::TrailingVert => (None, true),
173 EatOrResult::None => (None, false),
174 };
175
176 let mut first_pat = match self.parse_pat_no_top_alt(expected, syntax_loc) {
178 Ok(pat) => pat,
179 Err(err)
180 if self.token.is_reserved_ident()
181 && !self.token.is_keyword(kw::In)
182 && !self.token.is_keyword(kw::If) =>
183 {
184 err.emit();
185 self.bump();
186 self.mk_pat(self.token.span, PatKind::Wild)
187 }
188 Err(err) => return Err(err),
189 };
190 if rc == RecoverComma::Yes && !first_pat.could_be_never_pattern() {
191 self.maybe_recover_unexpected_comma(first_pat.span, rt)?;
192 }
193
194 if !self.check(exp!(Or)) && self.token != token::OrOr {
197 if ra == RecoverColon::Yes && token::Colon == self.token.kind {
203 first_pat = self.recover_colon_colon_in_pat_typo(first_pat, expected);
204 }
205
206 if let Some(leading_vert_span) = leading_vert_span {
207 let span = leading_vert_span.to(self.prev_token.span);
210 return Ok((self.mk_pat(span, PatKind::Or(thin_vec![first_pat])), trailing_vert));
211 }
212
213 return Ok((first_pat, trailing_vert));
214 }
215
216 let lo = leading_vert_span.unwrap_or(first_pat.span);
218 let mut pats = thin_vec![first_pat];
219 loop {
220 match self.eat_or_separator(Some(lo)) {
221 EatOrResult::AteOr => {}
222 EatOrResult::None => break,
223 EatOrResult::TrailingVert => {
224 trailing_vert = true;
225 break;
226 }
227 }
228 let pat = self.parse_pat_no_top_alt(expected, syntax_loc).map_err(|mut err| {
229 err.span_label(lo, WHILE_PARSING_OR_MSG);
230 err
231 })?;
232 if rc == RecoverComma::Yes && !pat.could_be_never_pattern() {
233 self.maybe_recover_unexpected_comma(pat.span, rt)?;
234 }
235 pats.push(pat);
236 }
237 let or_pattern_span = lo.to(self.prev_token.span);
238
239 Ok((self.mk_pat(or_pattern_span, PatKind::Or(pats)), trailing_vert))
240 }
241
242 pub(super) fn parse_pat_before_ty(
251 &mut self,
252 expected: Option<Expected>,
253 rc: RecoverComma,
254 syntax_loc: PatternLocation,
255 ) -> PResult<'a, (Box<Pat>, bool)> {
256 let (pat, trailing_vert) = self.parse_pat_no_top_guard_inner(
260 expected,
261 rc,
262 RecoverColon::No,
263 CommaRecoveryMode::LikelyTuple,
264 Some(syntax_loc),
265 )?;
266 let pat = Box::new(pat);
267 let colon = self.eat(exp!(Colon));
268
269 if let PatKind::Or(pats) = &pat.kind {
270 let span = pat.span;
271 let sub = if let [_] = &pats[..] {
272 let span = span.with_hi(span.lo() + BytePos(1));
273 Some(TopLevelOrPatternNotAllowedSugg::RemoveLeadingVert { span })
274 } else {
275 Some(TopLevelOrPatternNotAllowedSugg::WrapInParens {
276 span,
277 suggestion: WrapInParens { lo: span.shrink_to_lo(), hi: span.shrink_to_hi() },
278 })
279 };
280
281 let err = self.dcx().create_err(match syntax_loc {
282 PatternLocation::LetBinding => {
283 TopLevelOrPatternNotAllowed::LetBinding { span, sub }
284 }
285 PatternLocation::FunctionParameter => {
286 TopLevelOrPatternNotAllowed::FunctionParameter { span, sub }
287 }
288 });
289 if trailing_vert {
290 err.delay_as_bug();
291 } else {
292 err.emit();
293 }
294 }
295
296 Ok((pat, colon))
297 }
298
299 pub(super) fn parse_fn_param_pat_colon(&mut self) -> PResult<'a, (Box<Pat>, bool)> {
304 if let token::OrOr = self.token.kind {
309 self.dcx().emit_err(UnexpectedVertVertBeforeFunctionParam { span: self.token.span });
310 self.bump();
311 }
312
313 self.parse_pat_before_ty(
314 Some(Expected::ParameterName),
315 RecoverComma::No,
316 PatternLocation::FunctionParameter,
317 )
318 }
319
320 fn eat_or_separator(&mut self, lo: Option<Span>) -> EatOrResult {
323 if self.recover_trailing_vert(lo) {
324 EatOrResult::TrailingVert
325 } else if self.token.kind == token::OrOr {
326 self.dcx().emit_err(UnexpectedVertVertInPattern { span: self.token.span, start: lo });
328 self.bump();
329 EatOrResult::AteOr
330 } else if self.eat(exp!(Or)) {
331 EatOrResult::AteOr
332 } else {
333 EatOrResult::None
334 }
335 }
336
337 fn recover_trailing_vert(&mut self, lo: Option<Span>) -> bool {
345 let is_end_ahead = self.look_ahead(1, |token| {
346 matches!(
347 &token.uninterpolate().kind,
348 token::FatArrow | token::Ident(kw::If, token::IdentIsRaw::No) | token::Eq | token::Semi | token::Colon | token::Comma | token::CloseBracket | token::CloseParen | token::CloseBrace )
358 });
359 match (is_end_ahead, &self.token.kind) {
360 (true, token::Or | token::OrOr) => {
361 self.dcx().emit_err(TrailingVertNotAllowed {
363 span: self.token.span,
364 start: lo,
365 suggestion: TrailingVertSuggestion {
366 span: self.prev_token.span.shrink_to_hi().with_hi(self.token.span.hi()),
367 },
368 token: self.token,
369 note_double_vert: self.token.kind == token::OrOr,
370 });
371 self.bump();
372 true
373 }
374 _ => false,
375 }
376 }
377
378 #[must_use = "the pattern must be discarded as `PatKind::Err` if this function returns Some"]
390 fn maybe_recover_trailing_expr(
391 &mut self,
392 pat_span: Span,
393 is_end_bound: bool,
394 ) -> Option<(ErrorGuaranteed, Span)> {
395 if self.prev_token.is_keyword(kw::Underscore) || !self.may_recover() {
396 return None;
398 }
399
400 let is_one_tuple_index = |_: &Self, token: &Token| -> bool {
402 use token::{Lit, LitKind};
403
404 matches!(
405 token.kind,
406 token::Literal(Lit { kind: LitKind::Integer, symbol: _, suffix: None })
407 )
408 };
409
410 let is_two_tuple_indexes = |this: &Self, token: &Token| -> bool {
412 use token::{Lit, LitKind};
413
414 if let token::Literal(Lit { kind: LitKind::Float, symbol, suffix: None }) = token.kind
415 && let DestructuredFloat::MiddleDot(..) = this.break_up_float(symbol, token.span)
416 {
417 true
418 } else {
419 false
420 }
421 };
422
423 let has_dot_expr = self.check_noexpect(&token::Dot) && self.look_ahead(1, |tok| {
426 tok.is_ident() || is_one_tuple_index(&self, &tok) || is_two_tuple_indexes(&self, &tok) });
430
431 let has_trailing_operator = matches!(
438 self.token.kind,
439 token::Plus | token::Minus | token::Star | token::Slash | token::Percent
440 | token::Caret | token::And | token::Shl | token::Shr )
442 || self.token == token::Question
443 || (self.token == token::OpenBracket
444 && self.look_ahead(1, |t| *t != token::CloseBracket)) || self.token.is_keyword(kw::As);
446
447 if !has_dot_expr && !has_trailing_operator {
448 return None;
450 }
451
452 let mut snapshot = self.create_snapshot_for_diagnostic();
454 snapshot.restrictions.insert(Restrictions::IS_PAT);
455
456 let Ok(expr) = snapshot
458 .parse_expr_dot_or_call_with(
459 AttrVec::new(),
460 self.mk_expr(pat_span, ExprKind::Dummy), pat_span,
462 )
463 .map_err(|err| err.cancel())
464 else {
465 return None;
467 };
468
469 let Ok((expr, _)) = snapshot
472 .parse_expr_assoc_rest_with(Bound::Unbounded, false, expr)
473 .map_err(|err| err.cancel())
474 else {
475 return None;
477 };
478
479 self.restore_snapshot(snapshot);
481 self.restrictions.remove(Restrictions::IS_PAT);
482
483 let is_bound = is_end_bound
484 || self.token.is_range_separator()
486 || self.token == token::CloseParen
487 && self.look_ahead(1, Token::is_range_separator);
488
489 let span = expr.span;
490
491 Some((
492 self.dcx()
493 .create_err(UnexpectedExpressionInPattern {
494 span,
495 is_bound,
496 expr_precedence: expr.precedence(),
497 })
498 .stash(span, StashKey::ExprInPat)
499 .unwrap(),
500 span,
501 ))
502 }
503
504 pub(super) fn maybe_augment_stashed_expr_in_pats_with_suggestions(&mut self, stmt: &Stmt) {
507 if self.dcx().has_errors().is_none() {
508 return;
510 }
511
512 struct PatVisitor<'a> {
513 parser: &'a Parser<'a>,
515 stmt: &'a Stmt,
517 arm: Option<&'a Arm>,
519 field: Option<&'a PatField>,
521 }
522
523 impl<'a> PatVisitor<'a> {
524 fn maybe_add_suggestions_then_emit(
534 &self,
535 stash_span: Span,
536 expr_span: Span,
537 is_range_bound: bool,
538 ) {
539 self.parser.dcx().try_steal_modify_and_emit_err(
540 stash_span,
541 StashKey::ExprInPat,
542 |err| {
543 err.span.replace(stash_span, expr_span);
545
546 let sm = self.parser.psess.source_map();
547 let stmt = self.stmt;
548 let line_lo = sm.span_extend_to_line(stmt.span).shrink_to_lo();
549 let indentation = sm.indentation_before(stmt.span).unwrap_or_default();
550 let Ok(expr) = self.parser.span_to_snippet(expr_span) else {
551 return;
553 };
554
555 if let StmtKind::Let(local) = &stmt.kind {
556 match &local.kind {
557 LocalKind::Decl | LocalKind::Init(_) => {
558 return;
560 }
561
562 LocalKind::InitElse(_, _) => {}
563 }
564 }
565
566 if let Some(arm) = &self.arm
569 && !is_range_bound
570 {
571 let (ident, ident_span) = match self.field {
572 Some(field) => {
573 (field.ident.to_string(), field.ident.span.to(expr_span))
574 }
575 None => ("val".to_owned(), expr_span),
576 };
577
578 let expr = match &err.args["expr_precedence"] {
581 DiagArgValue::Number(expr_precedence) => {
582 if *expr_precedence <= ExprPrecedence::Compare as i32 {
583 format!("({expr})")
584 } else {
585 format!("{expr}")
586 }
587 }
588 _ => unreachable!(),
589 };
590
591 match &arm.guard {
592 None => {
593 err.subdiagnostic(
594 UnexpectedExpressionInPatternSugg::CreateGuard {
595 ident_span,
596 pat_hi: arm.pat.span.shrink_to_hi(),
597 ident,
598 expr,
599 },
600 );
601 }
602 Some(guard) => {
603 let wrap_guard = guard.precedence() <= ExprPrecedence::LAnd;
605
606 err.subdiagnostic(
607 UnexpectedExpressionInPatternSugg::UpdateGuard {
608 ident_span,
609 guard_lo: if wrap_guard {
610 Some(guard.span.shrink_to_lo())
611 } else {
612 None
613 },
614 guard_hi: guard.span.shrink_to_hi(),
615 guard_hi_paren: if wrap_guard { ")" } else { "" },
616 ident,
617 expr,
618 },
619 );
620 }
621 }
622 }
623
624 let ident = match self.field {
626 Some(field) => field.ident.as_str().to_uppercase(),
627 None => "VAL".to_owned(),
628 };
629 err.subdiagnostic(UnexpectedExpressionInPatternSugg::Const {
630 stmt_lo: line_lo,
631 ident_span: expr_span,
632 expr,
633 ident,
634 indentation,
635 });
636 },
637 );
638 }
639 }
640
641 impl<'a> Visitor<'a> for PatVisitor<'a> {
642 fn visit_arm(&mut self, a: &'a Arm) -> Self::Result {
643 self.arm = Some(a);
644 visit::walk_arm(self, a);
645 self.arm = None;
646 }
647
648 fn visit_pat_field(&mut self, fp: &'a PatField) -> Self::Result {
649 self.field = Some(fp);
650 visit::walk_pat_field(self, fp);
651 self.field = None;
652 }
653
654 fn visit_pat(&mut self, p: &'a Pat) -> Self::Result {
655 match &p.kind {
656 PatKind::Err(_) | PatKind::Expr(_) => {
658 self.maybe_add_suggestions_then_emit(p.span, p.span, false)
659 }
660
661 PatKind::Box(subpat) | PatKind::Ref(subpat, _)
664 if matches!(subpat.kind, PatKind::Err(_) | PatKind::Expr(_)) =>
665 {
666 self.maybe_add_suggestions_then_emit(subpat.span, p.span, false)
667 }
668
669 PatKind::Range(start, end, _) => {
671 if let Some(start) = start {
672 self.maybe_add_suggestions_then_emit(start.span, start.span, true);
673 }
674
675 if let Some(end) = end {
676 self.maybe_add_suggestions_then_emit(end.span, end.span, true);
677 }
678 }
679
680 _ => visit::walk_pat(self, p),
682 }
683 }
684 }
685
686 PatVisitor { parser: self, stmt, arm: None, field: None }.visit_stmt(stmt);
688 }
689
690 fn eat_metavar_pat(&mut self) -> Option<Pat> {
691 if let Some(pat) = self.eat_metavar_seq_with_matcher(
693 |mv_kind| matches!(mv_kind, MetaVarKind::Pat(PatParam { .. })),
694 |this| this.parse_pat_no_top_alt(None, None),
695 ) {
696 Some(pat)
697 } else if let Some(pat) = self.eat_metavar_seq(MetaVarKind::Pat(PatWithOr), |this| {
698 this.parse_pat_no_top_guard(
699 None,
700 RecoverComma::No,
701 RecoverColon::No,
702 CommaRecoveryMode::EitherTupleOrPipe,
703 )
704 }) {
705 Some(pat)
706 } else {
707 None
708 }
709 }
710
711 fn parse_pat_with_range_pat(
714 &mut self,
715 allow_range_pat: bool,
716 expected: Option<Expected>,
717 syntax_loc: Option<PatternLocation>,
718 ) -> PResult<'a, Pat> {
719 maybe_recover_from_interpolated_ty_qpath!(self, true);
720
721 if let Some(pat) = self.eat_metavar_pat() {
722 return Ok(pat);
723 }
724
725 let mut lo = self.token.span;
726
727 if self.token.is_keyword(kw::Let)
728 && self.look_ahead(1, |tok| {
729 tok.can_begin_pattern(token::NtPatKind::PatParam { inferred: false })
730 })
731 {
732 self.bump();
733 let span = lo.with_hi(self.token.span.lo());
735 self.dcx().emit_err(RemoveLet { span: lo, suggestion: span });
736 lo = self.token.span;
737 }
738
739 let pat = if self.check(exp!(And)) || self.token == token::AndAnd {
740 self.parse_pat_deref(expected)?
741 } else if self.check(exp!(OpenParen)) {
742 self.parse_pat_tuple_or_parens()?
743 } else if self.check(exp!(OpenBracket)) {
744 let (pats, _) =
746 self.parse_delim_comma_seq(exp!(OpenBracket), exp!(CloseBracket), |p| {
747 p.parse_pat_allow_top_guard(
748 None,
749 RecoverComma::No,
750 RecoverColon::No,
751 CommaRecoveryMode::EitherTupleOrPipe,
752 )
753 })?;
754 PatKind::Slice(pats)
755 } else if self.check(exp!(DotDot)) && !self.is_pat_range_end_start(1) {
756 self.bump(); PatKind::Rest
759 } else if self.check(exp!(DotDotDot)) && !self.is_pat_range_end_start(1) {
760 self.recover_dotdotdot_rest_pat(lo, expected)
761 } else if let Some(form) = self.parse_range_end() {
762 self.parse_pat_range_to(form)? } else if self.eat(exp!(Bang)) {
764 self.psess.gated_spans.gate(sym::never_patterns, self.prev_token.span);
766 PatKind::Never
767 } else if self.eat_keyword(exp!(Underscore)) {
768 PatKind::Wild
770 } else if self.eat_keyword(exp!(Mut)) {
771 self.parse_pat_ident_mut()?
772 } else if self.eat_keyword(exp!(Ref)) {
773 if self.check_keyword(exp!(Box)) {
774 let span = self.prev_token.span.to(self.token.span);
776 self.bump();
777 self.dcx().emit_err(SwitchRefBoxOrder { span });
778 }
779 let mutbl = self.parse_mutability();
781 self.parse_pat_ident(BindingMode(ByRef::Yes(mutbl), Mutability::Not), syntax_loc)?
782 } else if self.eat_keyword(exp!(Box)) {
783 self.parse_pat_box()?
784 } else if self.check_inline_const(0) {
785 let const_expr = self.parse_const_block(lo.to(self.token.span), true)?;
787
788 if let Some(re) = self.parse_range_end() {
789 self.parse_pat_range_begin_with(const_expr, re)?
790 } else {
791 PatKind::Expr(const_expr)
792 }
793 } else if self.is_builtin() {
794 self.parse_pat_builtin()?
795 }
796 else if self.can_be_ident_pat()
801 || (self.is_lit_bad_ident().is_some() && self.may_recover())
802 {
803 self.parse_pat_ident(BindingMode::NONE, syntax_loc)?
807 } else if self.is_start_of_pat_with_path() {
808 let (qself, path) = if self.eat_lt() {
810 let (qself, path) = self.parse_qpath(PathStyle::Pat)?;
812 (Some(qself), path)
813 } else {
814 (None, self.parse_path(PathStyle::Pat)?)
816 };
817 let span = lo.to(self.prev_token.span);
818
819 if qself.is_none() && self.check(exp!(Bang)) {
820 self.parse_pat_mac_invoc(path)?
821 } else if let Some(form) = self.parse_range_end() {
822 let begin = self.mk_expr(span, ExprKind::Path(qself, path));
823 self.parse_pat_range_begin_with(begin, form)?
824 } else if self.check(exp!(OpenBrace)) {
825 self.parse_pat_struct(qself, path)?
826 } else if self.check(exp!(OpenParen)) {
827 self.parse_pat_tuple_struct(qself, path)?
828 } else {
829 match self.maybe_recover_trailing_expr(span, false) {
830 Some((guar, _)) => PatKind::Err(guar),
831 None => PatKind::Path(qself, path),
832 }
833 }
834 } else if let Some((lt, IdentIsRaw::No)) = self.token.lifetime()
835 && could_be_unclosed_char_literal(lt)
840 && !self.look_ahead(1, |token| token.kind == token::Colon)
841 {
842 let lt = self.expect_lifetime();
844 let (lit, _) =
845 self.recover_unclosed_char(lt.ident, Parser::mk_token_lit_char, |self_| {
846 let expected = Expected::to_string_or_fallback(expected);
847 let msg = format!(
848 "expected {}, found {}",
849 expected,
850 super::token_descr(&self_.token)
851 );
852
853 self_
854 .dcx()
855 .struct_span_err(self_.token.span, msg)
856 .with_span_label(self_.token.span, format!("expected {expected}"))
857 });
858 PatKind::Expr(self.mk_expr(lo, ExprKind::Lit(lit)))
859 } else {
860 match self.parse_literal_maybe_minus() {
862 Ok(begin) => {
863 let begin = self
864 .maybe_recover_trailing_expr(begin.span, false)
865 .map(|(guar, sp)| self.mk_expr_err(sp, guar))
866 .unwrap_or(begin);
867
868 match self.parse_range_end() {
869 Some(form) => self.parse_pat_range_begin_with(begin, form)?,
870 None => PatKind::Expr(begin),
871 }
872 }
873 Err(err) => return self.fatal_unexpected_non_pat(err, expected),
874 }
875 };
876
877 let mut pat = self.mk_pat(lo.to(self.prev_token.span), pat);
878
879 pat = self.maybe_recover_from_bad_qpath(pat)?;
880 if self.eat_noexpect(&token::At) {
881 pat = self.recover_intersection_pat(pat)?;
882 }
883
884 if !allow_range_pat {
885 self.ban_pat_range_if_ambiguous(&pat)
886 }
887
888 Ok(pat)
889 }
890
891 fn recover_dotdotdot_rest_pat(&mut self, lo: Span, expected: Option<Expected>) -> PatKind {
894 self.bump(); if let Some(Expected::ParameterName) = expected {
898 PatKind::Err(self.dcx().emit_err(DotDotDotRestPattern {
901 span: lo,
902 suggestion: None,
903 var_args: Some(()),
904 }))
905 } else {
906 self.dcx().emit_err(DotDotDotRestPattern {
908 span: lo,
909 suggestion: Some(lo.with_lo(lo.hi() - BytePos(1))),
910 var_args: None,
911 });
912 PatKind::Rest
913 }
914 }
915
916 #[cold]
929 fn recover_intersection_pat(&mut self, lhs: Pat) -> PResult<'a, Pat> {
930 let mut rhs = self.parse_pat_no_top_alt(None, None)?;
931 let whole_span = lhs.span.to(rhs.span);
932
933 if let PatKind::Ident(_, _, sub @ None) = &mut rhs.kind {
934 let lhs_span = lhs.span;
936 *sub = Some(Box::new(lhs));
939
940 self.dcx().emit_err(PatternOnWrongSideOfAt {
941 whole_span,
942 whole_pat: pprust::pat_to_string(&rhs),
943 pattern: lhs_span,
944 binding: rhs.span,
945 });
946 } else {
947 rhs.kind = PatKind::Wild;
949 self.dcx().emit_err(ExpectedBindingLeftOfAt {
950 whole_span,
951 lhs: lhs.span,
952 rhs: rhs.span,
953 });
954 }
955
956 rhs.span = whole_span;
957 Ok(rhs)
958 }
959
960 fn ban_pat_range_if_ambiguous(&self, pat: &Pat) {
962 match pat.kind {
963 PatKind::Range(
964 ..,
965 Spanned { node: RangeEnd::Included(RangeSyntax::DotDotDot), .. },
966 ) => return,
967 PatKind::Range(..) => {}
968 _ => return,
969 }
970
971 self.dcx().emit_err(AmbiguousRangePattern {
972 span: pat.span,
973 suggestion: ParenRangeSuggestion {
974 lo: pat.span.shrink_to_lo(),
975 hi: pat.span.shrink_to_hi(),
976 },
977 });
978 }
979
980 fn parse_pat_deref(&mut self, expected: Option<Expected>) -> PResult<'a, PatKind> {
982 self.expect_and()?;
983 if let Some((lifetime, _)) = self.token.lifetime() {
984 self.bump(); self.dcx().emit_err(UnexpectedLifetimeInPattern {
987 span: self.prev_token.span,
988 symbol: lifetime.name,
989 suggestion: self.prev_token.span.until(self.token.span),
990 });
991 }
992
993 let mutbl = self.parse_mutability();
994 let subpat = self.parse_pat_with_range_pat(false, expected, None)?;
995 Ok(PatKind::Ref(Box::new(subpat), mutbl))
996 }
997
998 fn parse_pat_tuple_or_parens(&mut self) -> PResult<'a, PatKind> {
1000 let open_paren = self.token.span;
1001
1002 let (fields, trailing_comma) = self.parse_paren_comma_seq(|p| {
1003 p.parse_pat_allow_top_guard(
1004 None,
1005 RecoverComma::No,
1006 RecoverColon::No,
1007 CommaRecoveryMode::LikelyTuple,
1008 )
1009 })?;
1010
1011 let paren_pattern =
1014 fields.len() == 1 && !(matches!(trailing_comma, Trailing::Yes) || fields[0].is_rest());
1015
1016 let pat = if paren_pattern {
1017 let pat = fields.into_iter().next().unwrap();
1018 let close_paren = self.prev_token.span;
1019
1020 match &pat.kind {
1021 PatKind::Expr(begin)
1023 if self.may_recover()
1024 && let Some(form) = self.parse_range_end() =>
1025 {
1026 self.dcx().emit_err(UnexpectedParenInRangePat {
1027 span: vec![open_paren, close_paren],
1028 sugg: UnexpectedParenInRangePatSugg {
1029 start_span: open_paren,
1030 end_span: close_paren,
1031 },
1032 });
1033
1034 self.parse_pat_range_begin_with(begin.clone(), form)?
1035 }
1036 PatKind::Err(guar)
1038 if self.may_recover()
1039 && let Some(form) = self.parse_range_end() =>
1040 {
1041 self.dcx().emit_err(UnexpectedParenInRangePat {
1042 span: vec![open_paren, close_paren],
1043 sugg: UnexpectedParenInRangePatSugg {
1044 start_span: open_paren,
1045 end_span: close_paren,
1046 },
1047 });
1048
1049 self.parse_pat_range_begin_with(self.mk_expr_err(pat.span, *guar), form)?
1050 }
1051
1052 _ => PatKind::Paren(Box::new(pat)),
1054 }
1055 } else {
1056 PatKind::Tuple(fields)
1057 };
1058
1059 Ok(match self.maybe_recover_trailing_expr(open_paren.to(self.prev_token.span), false) {
1060 None => pat,
1061 Some((guar, _)) => PatKind::Err(guar),
1062 })
1063 }
1064
1065 fn parse_pat_ident_mut(&mut self) -> PResult<'a, PatKind> {
1067 let mut_span = self.prev_token.span;
1068
1069 self.recover_additional_muts();
1070
1071 let byref = self.parse_byref();
1072
1073 self.recover_additional_muts();
1074
1075 if let Some(MetaVarKind::Pat(_)) = self.token.is_metavar_seq() {
1077 self.expected_ident_found_err().emit();
1078 }
1079
1080 let mut pat = self.parse_pat_no_top_alt(Some(Expected::Identifier), None)?;
1082
1083 if let PatKind::Ident(BindingMode(br @ ByRef::No, m @ Mutability::Not), ..) = &mut pat.kind
1085 {
1086 *br = byref;
1089 *m = Mutability::Mut;
1090 } else {
1091 let changed_any_binding = Self::make_all_value_bindings_mutable(&mut pat);
1093 self.ban_mut_general_pat(mut_span, &pat, changed_any_binding);
1094 }
1095
1096 if matches!(pat.kind, PatKind::Ident(BindingMode(ByRef::Yes(_), Mutability::Mut), ..)) {
1097 self.psess.gated_spans.gate(sym::mut_ref, pat.span);
1098 }
1099 Ok(pat.kind)
1100 }
1101
1102 fn make_all_value_bindings_mutable(pat: &mut Pat) -> bool {
1105 struct AddMut(bool);
1106 impl MutVisitor for AddMut {
1107 fn visit_pat(&mut self, pat: &mut Pat) {
1108 if let PatKind::Ident(BindingMode(ByRef::No, m @ Mutability::Not), ..) =
1109 &mut pat.kind
1110 {
1111 self.0 = true;
1112 *m = Mutability::Mut;
1113 }
1114 mut_visit::walk_pat(self, pat);
1115 }
1116 }
1117
1118 let mut add_mut = AddMut(false);
1119 add_mut.visit_pat(pat);
1120 add_mut.0
1121 }
1122
1123 fn ban_mut_general_pat(&self, lo: Span, pat: &Pat, changed_any_binding: bool) {
1125 self.dcx().emit_err(if changed_any_binding {
1126 InvalidMutInPattern::NestedIdent {
1127 span: lo.to(pat.span),
1128 pat: pprust::pat_to_string(pat),
1129 }
1130 } else {
1131 InvalidMutInPattern::NonIdent { span: lo.until(pat.span) }
1132 });
1133 }
1134
1135 fn recover_additional_muts(&mut self) {
1137 let lo = self.token.span;
1138 while self.eat_keyword(exp!(Mut)) {}
1139 if lo == self.token.span {
1140 return;
1141 }
1142
1143 let span = lo.to(self.prev_token.span);
1144 let suggestion = span.with_hi(self.token.span.lo());
1145 self.dcx().emit_err(RepeatedMutInPattern { span, suggestion });
1146 }
1147
1148 fn parse_pat_mac_invoc(&mut self, path: Path) -> PResult<'a, PatKind> {
1150 self.bump();
1151 let args = self.parse_delim_args()?;
1152 let mac = Box::new(MacCall { path, args });
1153 Ok(PatKind::MacCall(mac))
1154 }
1155
1156 fn fatal_unexpected_non_pat(
1157 &mut self,
1158 err: Diag<'a>,
1159 expected: Option<Expected>,
1160 ) -> PResult<'a, Pat> {
1161 err.cancel();
1162
1163 let expected = Expected::to_string_or_fallback(expected);
1164 let msg = format!("expected {}, found {}", expected, super::token_descr(&self.token));
1165
1166 let mut err = self.dcx().struct_span_err(self.token.span, msg);
1167 err.span_label(self.token.span, format!("expected {expected}"));
1168
1169 let sp = self.psess.source_map().start_point(self.token.span);
1170 if let Some(sp) = self.psess.ambiguous_block_expr_parse.borrow().get(&sp) {
1171 err.subdiagnostic(ExprParenthesesNeeded::surrounding(*sp));
1172 }
1173
1174 Err(err)
1175 }
1176
1177 fn parse_range_end(&mut self) -> Option<Spanned<RangeEnd>> {
1179 let re = if self.eat(exp!(DotDotDot)) {
1180 RangeEnd::Included(RangeSyntax::DotDotDot)
1181 } else if self.eat(exp!(DotDotEq)) {
1182 RangeEnd::Included(RangeSyntax::DotDotEq)
1183 } else if self.eat(exp!(DotDot)) {
1184 RangeEnd::Excluded
1185 } else {
1186 return None;
1187 };
1188 Some(respan(self.prev_token.span, re))
1189 }
1190
1191 fn parse_pat_range_begin_with(
1194 &mut self,
1195 begin: Box<Expr>,
1196 re: Spanned<RangeEnd>,
1197 ) -> PResult<'a, PatKind> {
1198 let end = if self.is_pat_range_end_start(0) {
1199 Some(self.parse_pat_range_end()?)
1201 } else {
1202 if let RangeEnd::Included(_) = re.node {
1204 self.inclusive_range_with_incorrect_end();
1206 }
1207 None
1208 };
1209 Ok(PatKind::Range(Some(begin), end, re))
1210 }
1211
1212 pub(super) fn inclusive_range_with_incorrect_end(&mut self) -> ErrorGuaranteed {
1213 let tok = &self.token;
1214 let span = self.prev_token.span;
1215 let no_space = tok.span.lo() == span.hi();
1221 match tok.kind {
1222 token::Eq if no_space => {
1223 let span_with_eq = span.to(tok.span);
1224
1225 self.bump();
1227 if self.is_pat_range_end_start(0) {
1228 let _ = self.parse_pat_range_end().map_err(|e| e.cancel());
1229 }
1230
1231 self.dcx().emit_err(InclusiveRangeExtraEquals { span: span_with_eq })
1232 }
1233 token::Gt if no_space => {
1234 let after_pat = span.with_hi(span.hi() - BytePos(1)).shrink_to_hi();
1235 self.dcx().emit_err(InclusiveRangeMatchArrow { span, arrow: tok.span, after_pat })
1236 }
1237 _ => self.dcx().emit_err(InclusiveRangeNoEnd {
1238 span,
1239 suggestion: span.with_lo(span.hi() - BytePos(1)),
1240 }),
1241 }
1242 }
1243
1244 fn parse_pat_range_to(&mut self, mut re: Spanned<RangeEnd>) -> PResult<'a, PatKind> {
1249 let end = self.parse_pat_range_end()?;
1250 if let RangeEnd::Included(syn @ RangeSyntax::DotDotDot) = &mut re.node {
1251 *syn = RangeSyntax::DotDotEq;
1252 self.dcx().emit_err(DotDotDotRangeToPatternNotAllowed { span: re.span });
1253 }
1254 Ok(PatKind::Range(None, Some(end), re))
1255 }
1256
1257 fn is_pat_range_end_start(&self, dist: usize) -> bool {
1259 self.check_inline_const(dist)
1260 || self.look_ahead(dist, |t| {
1261 t.is_path_start() || *t == token::Dot || matches!(t.kind, token::Literal(..) | token::Minus)
1264 || t.is_bool_lit()
1265 || t.is_metavar_expr()
1266 || t.is_lifetime() || (self.may_recover() && *t == token::OpenParen
1269 && self.look_ahead(dist + 1, |t| *t != token::OpenParen)
1270 && self.is_pat_range_end_start(dist + 1))
1271 })
1272 }
1273
1274 fn parse_pat_range_end(&mut self) -> PResult<'a, Box<Expr>> {
1276 let open_paren = (self.may_recover() && self.eat_noexpect(&token::OpenParen))
1278 .then_some(self.prev_token.span);
1279
1280 let bound = if self.check_inline_const(0) {
1281 self.parse_const_block(self.token.span, true)
1282 } else if self.check_path() {
1283 let lo = self.token.span;
1284 let (qself, path) = if self.eat_lt() {
1285 let (qself, path) = self.parse_qpath(PathStyle::Pat)?;
1287 (Some(qself), path)
1288 } else {
1289 (None, self.parse_path(PathStyle::Pat)?)
1291 };
1292 let hi = self.prev_token.span;
1293 Ok(self.mk_expr(lo.to(hi), ExprKind::Path(qself, path)))
1294 } else {
1295 self.parse_literal_maybe_minus()
1296 }?;
1297
1298 let recovered = self.maybe_recover_trailing_expr(bound.span, true);
1299
1300 if let Some(open_paren) = open_paren {
1302 self.expect(exp!(CloseParen))?;
1303
1304 self.dcx().emit_err(UnexpectedParenInRangePat {
1305 span: vec![open_paren, self.prev_token.span],
1306 sugg: UnexpectedParenInRangePatSugg {
1307 start_span: open_paren,
1308 end_span: self.prev_token.span,
1309 },
1310 });
1311 }
1312
1313 Ok(match recovered {
1314 Some((guar, sp)) => self.mk_expr_err(sp, guar),
1315 None => bound,
1316 })
1317 }
1318
1319 fn is_start_of_pat_with_path(&mut self) -> bool {
1321 self.check_path()
1322 || self.token.is_ident() && !self.token.is_bool_lit() && !self.token.is_keyword(kw::In)
1324 }
1325
1326 fn can_be_ident_pat(&mut self) -> bool {
1328 self.check_ident()
1329 && !self.token.is_bool_lit() && !self.token.is_path_segment_keyword() && !self.token.is_keyword(kw::In)
1333 && self.look_ahead(1, |t| !matches!(t.kind, token::OpenParen | token::OpenBrace | token::DotDotDot | token::DotDotEq | token::DotDot | token::PathSep | token::Bang)) }
1340
1341 fn parse_pat_ident(
1345 &mut self,
1346 binding_annotation: BindingMode,
1347 syntax_loc: Option<PatternLocation>,
1348 ) -> PResult<'a, PatKind> {
1349 let ident = self.parse_ident_common(false)?;
1350
1351 if self.may_recover()
1352 && !matches!(syntax_loc, Some(PatternLocation::FunctionParameter))
1353 && self.check_noexpect(&token::Lt)
1354 && self.look_ahead(1, |t| t.can_begin_type())
1355 {
1356 return Err(self.dcx().create_err(GenericArgsInPatRequireTurbofishSyntax {
1357 span: self.token.span,
1358 suggest_turbofish: self.token.span.shrink_to_lo(),
1359 }));
1360 }
1361
1362 let sub = if self.eat(exp!(At)) {
1363 Some(Box::new(self.parse_pat_no_top_alt(Some(Expected::BindingPattern), None)?))
1364 } else {
1365 None
1366 };
1367
1368 if self.token == token::OpenParen {
1374 return Err(self
1375 .dcx()
1376 .create_err(EnumPatternInsteadOfIdentifier { span: self.prev_token.span }));
1377 }
1378
1379 let pat = if sub.is_none()
1383 && let Some((guar, _)) = self.maybe_recover_trailing_expr(ident.span, false)
1384 {
1385 PatKind::Err(guar)
1386 } else {
1387 PatKind::Ident(binding_annotation, ident, sub)
1388 };
1389 Ok(pat)
1390 }
1391
1392 fn parse_pat_struct(&mut self, qself: Option<Box<QSelf>>, path: Path) -> PResult<'a, PatKind> {
1394 if qself.is_some() {
1395 self.psess.gated_spans.gate(sym::more_qualified_paths, path.span);
1397 }
1398 self.bump();
1399 let (fields, etc) = self.parse_pat_fields().unwrap_or_else(|mut e| {
1400 e.span_label(path.span, "while parsing the fields for this pattern");
1401 let guar = e.emit();
1402 self.recover_stmt();
1403 (ThinVec::new(), PatFieldsRest::Recovered(guar))
1405 });
1406 self.bump();
1407 Ok(PatKind::Struct(qself, path, fields, etc))
1408 }
1409
1410 fn parse_pat_tuple_struct(
1412 &mut self,
1413 qself: Option<Box<QSelf>>,
1414 path: Path,
1415 ) -> PResult<'a, PatKind> {
1416 let (fields, _) = self.parse_paren_comma_seq(|p| {
1417 p.parse_pat_allow_top_guard(
1418 None,
1419 RecoverComma::No,
1420 RecoverColon::No,
1421 CommaRecoveryMode::EitherTupleOrPipe,
1422 )
1423 })?;
1424 if qself.is_some() {
1425 self.psess.gated_spans.gate(sym::more_qualified_paths, path.span);
1426 }
1427 Ok(PatKind::TupleStruct(qself, path, fields))
1428 }
1429
1430 fn isnt_pattern_start(&self) -> bool {
1435 [
1436 token::Eq,
1437 token::Colon,
1438 token::Comma,
1439 token::Semi,
1440 token::At,
1441 token::OpenBrace,
1442 token::CloseBrace,
1443 token::CloseParen,
1444 ]
1445 .contains(&self.token.kind)
1446 }
1447
1448 fn parse_pat_builtin(&mut self) -> PResult<'a, PatKind> {
1449 self.parse_builtin(|self_, _lo, ident| {
1450 Ok(match ident.name {
1451 sym::deref => {
1453 Some(ast::PatKind::Deref(Box::new(self_.parse_pat_allow_top_guard(
1454 None,
1455 RecoverComma::Yes,
1456 RecoverColon::Yes,
1457 CommaRecoveryMode::LikelyTuple,
1458 )?)))
1459 }
1460 _ => None,
1461 })
1462 })
1463 }
1464
1465 fn parse_pat_box(&mut self) -> PResult<'a, PatKind> {
1467 let box_span = self.prev_token.span;
1468
1469 if self.isnt_pattern_start() {
1470 let descr = super::token_descr(&self.token);
1471 self.dcx().emit_err(errors::BoxNotPat {
1472 span: self.token.span,
1473 kw: box_span,
1474 lo: box_span.shrink_to_lo(),
1475 descr,
1476 });
1477
1478 let sub = if self.eat(exp!(At)) {
1481 Some(Box::new(self.parse_pat_no_top_alt(Some(Expected::BindingPattern), None)?))
1482 } else {
1483 None
1484 };
1485
1486 Ok(PatKind::Ident(BindingMode::NONE, Ident::new(kw::Box, box_span), sub))
1487 } else {
1488 let pat = Box::new(self.parse_pat_with_range_pat(false, None, None)?);
1489 self.psess.gated_spans.gate(sym::box_patterns, box_span.to(self.prev_token.span));
1490 Ok(PatKind::Box(pat))
1491 }
1492 }
1493
1494 fn parse_pat_fields(&mut self) -> PResult<'a, (ThinVec<PatField>, PatFieldsRest)> {
1496 let mut fields: ThinVec<PatField> = ThinVec::new();
1497 let mut etc = PatFieldsRest::None;
1498 let mut ate_comma = true;
1499 let mut delayed_err: Option<Diag<'a>> = None;
1500 let mut first_etc_and_maybe_comma_span = None;
1501 let mut last_non_comma_dotdot_span = None;
1502
1503 while self.token != token::CloseBrace {
1504 if !ate_comma {
1506 let err = if self.token == token::At {
1507 let prev_field = fields
1508 .last()
1509 .expect("Unreachable on first iteration, not empty otherwise")
1510 .ident;
1511 self.report_misplaced_at_in_struct_pat(prev_field)
1512 } else {
1513 let mut err = self
1514 .dcx()
1515 .create_err(ExpectedCommaAfterPatternField { span: self.token.span });
1516 self.recover_misplaced_pattern_modifiers(&fields, &mut err);
1517 err
1518 };
1519 if let Some(delayed) = delayed_err {
1520 delayed.emit();
1521 }
1522 return Err(err);
1523 }
1524 ate_comma = false;
1525
1526 if self.check(exp!(DotDot))
1527 || self.check_noexpect(&token::DotDotDot)
1528 || self.check_keyword(exp!(Underscore))
1529 {
1530 etc = PatFieldsRest::Rest(self.token.span);
1531 let mut etc_sp = self.token.span;
1532 if first_etc_and_maybe_comma_span.is_none() {
1533 if let Some(comma_tok) =
1534 self.look_ahead(1, |&t| if t == token::Comma { Some(t) } else { None })
1535 {
1536 let nw_span = self
1537 .psess
1538 .source_map()
1539 .span_extend_to_line(comma_tok.span)
1540 .trim_start(comma_tok.span.shrink_to_lo())
1541 .map(|s| self.psess.source_map().span_until_non_whitespace(s));
1542 first_etc_and_maybe_comma_span = nw_span.map(|s| etc_sp.to(s));
1543 } else {
1544 first_etc_and_maybe_comma_span =
1545 Some(self.psess.source_map().span_until_non_whitespace(etc_sp));
1546 }
1547 }
1548
1549 self.recover_bad_dot_dot();
1550 self.bump(); if self.token == token::CloseBrace {
1553 break;
1554 }
1555 let token_str = super::token_descr(&self.token);
1556 let msg = format!("expected `}}`, found {token_str}");
1557 let mut err = self.dcx().struct_span_err(self.token.span, msg);
1558
1559 err.span_label(self.token.span, "expected `}`");
1560 let mut comma_sp = None;
1561 if self.token == token::Comma {
1562 let nw_span =
1564 self.psess.source_map().span_until_non_whitespace(self.token.span);
1565 etc_sp = etc_sp.to(nw_span);
1566 err.span_label(
1567 etc_sp,
1568 "`..` must be at the end and cannot have a trailing comma",
1569 );
1570 comma_sp = Some(self.token.span);
1571 self.bump();
1572 ate_comma = true;
1573 }
1574
1575 if self.token == token::CloseBrace {
1576 if let Some(sp) = comma_sp {
1578 err.span_suggestion_short(
1579 sp,
1580 "remove this comma",
1581 "",
1582 Applicability::MachineApplicable,
1583 );
1584 }
1585 err.emit();
1586 break;
1587 } else if self.token.is_ident() && ate_comma {
1588 if let Some(delayed_err) = delayed_err {
1593 delayed_err.emit();
1594 return Err(err);
1595 } else {
1596 delayed_err = Some(err);
1597 }
1598 } else {
1599 if let Some(err) = delayed_err {
1600 err.emit();
1601 }
1602 return Err(err);
1603 }
1604 }
1605
1606 let attrs = match self.parse_outer_attributes() {
1607 Ok(attrs) => attrs,
1608 Err(err) => {
1609 if let Some(delayed) = delayed_err {
1610 delayed.emit();
1611 }
1612 return Err(err);
1613 }
1614 };
1615 let lo = self.token.span;
1616
1617 let field = self.collect_tokens(None, attrs, ForceCollect::No, |this, attrs| {
1618 let field = match this.parse_pat_field(lo, attrs) {
1619 Ok(field) => Ok(field),
1620 Err(err) => {
1621 if let Some(delayed_err) = delayed_err.take() {
1622 delayed_err.emit();
1623 }
1624 return Err(err);
1625 }
1626 }?;
1627 ate_comma = this.eat(exp!(Comma));
1628
1629 last_non_comma_dotdot_span = Some(this.prev_token.span);
1630
1631 Ok((field, Trailing::No, UsePreAttrPos::No))
1633 })?;
1634
1635 fields.push(field)
1636 }
1637
1638 if let Some(mut err) = delayed_err {
1639 if let Some(first_etc_span) = first_etc_and_maybe_comma_span {
1640 if self.prev_token == token::DotDot {
1641 err.multipart_suggestion(
1643 "remove the starting `..`",
1644 vec![(first_etc_span, String::new())],
1645 Applicability::MachineApplicable,
1646 );
1647 } else if let Some(last_non_comma_dotdot_span) = last_non_comma_dotdot_span {
1648 err.multipart_suggestion(
1650 "move the `..` to the end of the field list",
1651 vec![
1652 (first_etc_span, String::new()),
1653 (
1654 self.token.span.to(last_non_comma_dotdot_span.shrink_to_hi()),
1655 format!("{} .. }}", if ate_comma { "" } else { "," }),
1656 ),
1657 ],
1658 Applicability::MachineApplicable,
1659 );
1660 }
1661 }
1662 err.emit();
1663 }
1664 Ok((fields, etc))
1665 }
1666
1667 #[deny(rustc::untranslatable_diagnostic)]
1668 fn report_misplaced_at_in_struct_pat(&self, prev_field: Ident) -> Diag<'a> {
1669 debug_assert_eq!(self.token, token::At);
1670 let span = prev_field.span.to(self.token.span);
1671 if let Some(dot_dot_span) =
1672 self.look_ahead(1, |t| if t == &token::DotDot { Some(t.span) } else { None })
1673 {
1674 self.dcx().create_err(AtDotDotInStructPattern {
1675 span: span.to(dot_dot_span),
1676 remove: span.until(dot_dot_span),
1677 ident: prev_field,
1678 })
1679 } else {
1680 self.dcx().create_err(AtInStructPattern { span })
1681 }
1682 }
1683
1684 fn recover_misplaced_pattern_modifiers(&self, fields: &ThinVec<PatField>, err: &mut Diag<'a>) {
1687 if let Some(last) = fields.iter().last()
1688 && last.is_shorthand
1689 && let PatKind::Ident(binding, ident, None) = last.pat.kind
1690 && binding != BindingMode::NONE
1691 && self.token == token::Colon
1692 && let Some(name_span) = self.look_ahead(1, |t| t.is_ident().then(|| t.span))
1694 && self.look_ahead(2, |t| {
1695 t == &token::Comma || t == &token::CloseBrace
1696 })
1697 {
1698 let span = last.pat.span.with_hi(ident.span.lo());
1699 err.multipart_suggestion(
1701 "the pattern modifiers belong after the `:`",
1702 vec![
1703 (span, String::new()),
1704 (name_span.shrink_to_lo(), binding.prefix_str().to_string()),
1705 ],
1706 Applicability::MachineApplicable,
1707 );
1708 }
1709 }
1710
1711 fn recover_bad_dot_dot(&self) {
1714 if self.token == token::DotDot {
1715 return;
1716 }
1717
1718 let token_str = pprust::token_to_string(&self.token);
1719 self.dcx().emit_err(DotDotDotForRemainingFields { span: self.token.span, token_str });
1720 }
1721
1722 fn parse_pat_field(&mut self, lo: Span, attrs: AttrVec) -> PResult<'a, PatField> {
1723 let hi;
1725 let (subpat, fieldname, is_shorthand) = if self.look_ahead(1, |t| t == &token::Colon) {
1726 let fieldname = self.parse_field_name()?;
1728 self.bump();
1729 let pat = self.parse_pat_allow_top_guard(
1730 None,
1731 RecoverComma::No,
1732 RecoverColon::No,
1733 CommaRecoveryMode::EitherTupleOrPipe,
1734 )?;
1735 hi = pat.span;
1736 (pat, fieldname, false)
1737 } else {
1738 let is_box = self.eat_keyword(exp!(Box));
1740 let boxed_span = self.token.span;
1741 let mutability = self.parse_mutability();
1742 let by_ref = self.parse_byref();
1743
1744 let fieldname = self.parse_field_name()?;
1745 hi = self.prev_token.span;
1746 let ann = BindingMode(by_ref, mutability);
1747 let fieldpat = self.mk_pat_ident(boxed_span.to(hi), ann, fieldname);
1748 let subpat = if is_box {
1749 self.mk_pat(lo.to(hi), PatKind::Box(Box::new(fieldpat)))
1750 } else {
1751 fieldpat
1752 };
1753 (subpat, fieldname, true)
1754 };
1755
1756 Ok(PatField {
1757 ident: fieldname,
1758 pat: Box::new(subpat),
1759 is_shorthand,
1760 attrs,
1761 id: ast::DUMMY_NODE_ID,
1762 span: lo.to(hi),
1763 is_placeholder: false,
1764 })
1765 }
1766
1767 pub(super) fn mk_pat_ident(&self, span: Span, ann: BindingMode, ident: Ident) -> Pat {
1768 self.mk_pat(span, PatKind::Ident(ann, ident, None))
1769 }
1770
1771 pub(super) fn mk_pat(&self, span: Span, kind: PatKind) -> Pat {
1772 Pat { kind, span, id: ast::DUMMY_NODE_ID, tokens: None }
1773 }
1774}