1use core::mem;
4use core::ops::{Bound, ControlFlow};
5
6use ast::mut_visit::{self, MutVisitor};
7use ast::token::IdentIsRaw;
8use ast::{ForLoopKind, MatchKind, Pat, Path, PathSegment, Recovered};
9use rustc_ast::token::{self, Delimiter, InvisibleOrigin, MetaVarKind, Token, TokenKind};
10use rustc_ast::util::case::Case;
11use rustc_ast::util::classify;
12use rustc_ast::util::parser::{AssocOp, ExprPrecedence, Fixity, prec_let_scrutinee_needs_par};
13use rustc_ast::visit::{Visitor, walk_expr};
14use rustc_ast::{
15 self as ast, AnonConst, Arm, AssignOp, AssignOpKind, AttrStyle, AttrVec, BinOp, BinOpKind,
16 BlockCheckMode, CaptureBy, ClosureBinder, CoroutineKind, DUMMY_NODE_ID, Expr, ExprField,
17 ExprKind, FnDecl, FnRetTy, ForLoop, Guard, Label, MacCall, MetaItemLit, Movability, Param,
18 RangeLimits, StmtKind, Ty, TyKind, UnOp, UnsafeBinderCastKind, YieldKind,
19};
20use rustc_ast_pretty::pprust;
21use rustc_errors::{Applicability, Diag, PResult, StashKey, Subdiagnostic};
22use rustc_lint_defs::builtin::BREAK_WITH_LABEL_AND_LOOP;
23use rustc_literal_escaper::unescape_char;
24use rustc_session::diagnostics::report_lit_error;
25use rustc_span::edition::Edition;
26use rustc_span::{BytePos, ErrorGuaranteed, Ident, Pos, Span, Spanned, Symbol, kw, respan, sym};
27use thin_vec::{ThinVec, thin_vec};
28use tracing::instrument;
29
30use super::diagnostics::SnapshotParser;
31use super::pat::{CommaRecoveryMode, Expected, RecoverColon, RecoverComma};
32use super::ty::{AllowPlus, RecoverQPath, RecoverReturnSign};
33use super::{
34 AttrWrapper, BlockMode, ClosureSpans, ExpTokenPair, ForceCollect, Parser, PathStyle,
35 Restrictions, SemiColonMode, SeqSep, TokenType, Trailing, UsePreAttrPos,
36};
37use crate::diagnostics::ExprParenthesesNeeded;
38use crate::{diagnostics, exp, maybe_recover_from_interpolated_ty_qpath};
39
40#[derive(#[automatically_derived]
impl ::core::fmt::Debug for DestructuredFloat {
#[inline]
fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
match self {
DestructuredFloat::Single(__self_0, __self_1) =>
::core::fmt::Formatter::debug_tuple_field2_finish(f, "Single",
__self_0, &__self_1),
DestructuredFloat::TrailingDot(__self_0, __self_1, __self_2) =>
::core::fmt::Formatter::debug_tuple_field3_finish(f,
"TrailingDot", __self_0, __self_1, &__self_2),
DestructuredFloat::MiddleDot(__self_0, __self_1, __self_2,
__self_3, __self_4) =>
::core::fmt::Formatter::debug_tuple_field5_finish(f,
"MiddleDot", __self_0, __self_1, __self_2, __self_3,
&__self_4),
DestructuredFloat::Error =>
::core::fmt::Formatter::write_str(f, "Error"),
}
}
}Debug)]
41pub(super) enum DestructuredFloat {
42 Single(Symbol, Span),
44 TrailingDot(Symbol, Span, Span),
46 MiddleDot(Symbol, Span, Span, Symbol, Span),
48 Error,
50}
51
52impl<'a> Parser<'a> {
53 #[inline]
55 pub fn parse_expr(&mut self) -> PResult<'a, Box<Expr>> {
56 self.current_closure.take();
57 self.parse_expr_res(Restrictions::empty())
58 }
59
60 pub fn parse_expr_force_collect(&mut self) -> PResult<'a, Box<Expr>> {
62 self.current_closure.take();
63
64 let pre_attr_pos = self.collect_pos();
69 let attrs = self.parse_outer_attributes()?;
70 self.collect_tokens(
71 Some(pre_attr_pos),
72 AttrWrapper::empty(),
73 ForceCollect::Yes,
74 |this, _empty_attrs| {
75 let (expr, is_assoc) =
76 this.parse_expr_res_after_attrs(Restrictions::empty(), attrs)?;
77 let use_pre_attr_pos =
78 if is_assoc { UsePreAttrPos::Yes } else { UsePreAttrPos::No };
79 Ok((expr, Trailing::No, use_pre_attr_pos))
80 },
81 )
82 }
83
84 pub fn parse_expr_anon_const(&mut self) -> PResult<'a, AnonConst> {
85 self.parse_expr().map(|value| AnonConst { id: DUMMY_NODE_ID, value })
86 }
87
88 fn parse_expr_paren_seq(&mut self) -> PResult<'a, ThinVec<Box<Expr>>> {
90 self.parse_paren_comma_seq(Self::parse_expr).map(|(r, _)| r)
91 }
92
93 #[inline]
95 pub(super) fn parse_expr_res(&mut self, r: Restrictions) -> PResult<'a, Box<Expr>> {
96 let attrs = self.parse_outer_attributes()?;
97 self.parse_expr_res_after_attrs(r, attrs).map(|(expr, _)| expr)
98 }
99
100 #[inline]
104 pub(super) fn parse_expr_res_after_attrs(
105 &mut self,
106 r: Restrictions,
107 attrs: AttrWrapper,
108 ) -> PResult<'a, (Box<Expr>, bool)> {
109 self.with_res(r, |this| this.parse_expr_assoc_after_attrs(Bound::Unbounded, attrs))
110 }
111
112 pub(super) fn parse_expr_assoc(
114 &mut self,
115 min_prec: Bound<ExprPrecedence>,
116 ) -> PResult<'a, Box<Expr>> {
117 let attrs = self.parse_outer_attributes()?;
118 self.parse_expr_assoc_after_attrs(min_prec, attrs).map(|(expr, _)| expr)
119 }
120
121 pub(super) fn parse_expr_assoc_after_attrs(
125 &mut self,
126 min_prec: Bound<ExprPrecedence>,
127 attrs: AttrWrapper,
128 ) -> PResult<'a, (Box<Expr>, bool)> {
129 let lhs = if self.token.is_range_separator() {
130 return self.parse_expr_prefix_range(attrs).map(|res| (res, false));
131 } else {
132 self.parse_expr_prefix(attrs)?
133 };
134 self.parse_expr_assoc_rest(min_prec, false, lhs)
135 }
136
137 pub(super) fn parse_expr_assoc_rest(
141 &mut self,
142 min_prec: Bound<ExprPrecedence>,
143 starts_stmt: bool,
144 mut lhs: Box<Expr>,
145 ) -> PResult<'a, (Box<Expr>, bool)> {
146 let mut parsed_something = false;
147 if !self.should_continue_as_assoc_expr(&lhs) {
148 return Ok((lhs, parsed_something));
149 }
150
151 self.expected_token_types.insert(TokenType::Operator);
152 while let Some(op) = self.check_assoc_op() {
153 let lhs_span = self.interpolated_or_expr_span(&lhs);
154 let cur_op_span = self.token.span;
155 let restrictions = if op.node.is_assign_like() {
156 self.restrictions & Restrictions::NO_STRUCT_LITERAL
157 } else {
158 self.restrictions
159 };
160 let prec = op.node.precedence();
161 if match min_prec {
162 Bound::Included(min_prec) => prec < min_prec,
163 Bound::Excluded(min_prec) => prec <= min_prec,
164 Bound::Unbounded => false,
165 } {
166 break;
167 }
168 if self.token == token::DotDotDot && op.node == AssocOp::Range(RangeLimits::Closed) {
170 self.err_dotdotdot_syntax(self.token.span);
171 }
172
173 if self.token == token::LArrow {
174 self.err_larrow_operator(self.token.span);
175 }
176
177 parsed_something = true;
178 self.bump();
179 if op.node.is_comparison() {
180 if let Some(expr) = self.check_no_chained_comparison(&lhs, &op)? {
181 return Ok((expr, parsed_something));
182 }
183 }
184
185 if let AssocOp::Binary(bop @ BinOpKind::Eq | bop @ BinOpKind::Ne) = op.node
187 && self.token == token::Eq
188 && self.prev_token.span.hi() == self.token.span.lo()
189 {
190 let sp = op.span.to(self.token.span);
191 let sugg = bop.as_str().into();
192 let invalid = ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}=", sugg))
})format!("{sugg}=");
193 self.dcx().emit_err(diagnostics::InvalidComparisonOperator {
194 span: sp,
195 invalid: invalid.clone(),
196 sub: diagnostics::InvalidComparisonOperatorSub::Correctable {
197 span: sp,
198 invalid,
199 correct: sugg,
200 },
201 });
202 self.bump();
203 }
204
205 if op.node == AssocOp::Binary(BinOpKind::Lt)
207 && self.token == token::Gt
208 && self.prev_token.span.hi() == self.token.span.lo()
209 {
210 let sp = op.span.to(self.token.span);
211 self.dcx().emit_err(diagnostics::InvalidComparisonOperator {
212 span: sp,
213 invalid: "<>".into(),
214 sub: diagnostics::InvalidComparisonOperatorSub::Correctable {
215 span: sp,
216 invalid: "<>".into(),
217 correct: "!=".into(),
218 },
219 });
220 self.bump();
221 }
222
223 if op.node == AssocOp::Binary(BinOpKind::Le)
225 && self.token == token::Gt
226 && self.prev_token.span.hi() == self.token.span.lo()
227 {
228 let sp = op.span.to(self.token.span);
229 self.dcx().emit_err(diagnostics::InvalidComparisonOperator {
230 span: sp,
231 invalid: "<=>".into(),
232 sub: diagnostics::InvalidComparisonOperatorSub::Spaceship(sp),
233 });
234 self.bump();
235 }
236
237 if self.prev_token == token::Plus
238 && self.token == token::Plus
239 && self.prev_token.span.between(self.token.span).is_empty()
240 {
241 let op_span = self.prev_token.span.to(self.token.span);
242 self.bump();
244 lhs = self.recover_from_postfix_increment(lhs, op_span, starts_stmt)?;
245 continue;
246 }
247
248 if self.prev_token == token::Minus
249 && self.token == token::Minus
250 && self.prev_token.span.between(self.token.span).is_empty()
251 && !self.look_ahead(1, |tok| tok.can_begin_expr())
252 {
253 let op_span = self.prev_token.span.to(self.token.span);
254 self.bump();
256 lhs = self.recover_from_postfix_decrement(lhs, op_span, starts_stmt)?;
257 continue;
258 }
259
260 let op_span = op.span;
261 let op = op.node;
262 if op == AssocOp::Cast {
264 lhs = self.parse_assoc_op_cast(lhs, lhs_span, op_span, ExprKind::Cast)?;
265 continue;
266 } else if let AssocOp::Range(limits) = op {
267 lhs = self.parse_expr_range(prec, lhs, limits, cur_op_span)?;
270 break;
271 }
272
273 let min_prec = match op.fixity() {
274 Fixity::Right => Bound::Included(prec),
275 Fixity::Left | Fixity::None => Bound::Excluded(prec),
276 };
277 let rhs = self.with_res(restrictions - Restrictions::STMT_EXPR, |this| {
278 this.parse_expr_assoc(min_prec)
279 })?;
280
281 let span = self.mk_expr_sp(&lhs, lhs_span, op_span, rhs.span);
282 lhs = match op {
283 AssocOp::Binary(ast_op) => {
284 let binary = self.mk_binary(respan(cur_op_span, ast_op), lhs, rhs);
285 self.mk_expr(span, binary)
286 }
287 AssocOp::Assign => self.mk_expr(span, ExprKind::Assign(lhs, rhs, cur_op_span)),
288 AssocOp::AssignOp(aop) => {
289 let aopexpr = self.mk_assign_op(respan(cur_op_span, aop), lhs, rhs);
290 self.mk_expr(span, aopexpr)
291 }
292 AssocOp::Cast | AssocOp::Range(_) => {
293 self.dcx().span_bug(span, "AssocOp should have been handled by special case")
294 }
295 };
296 }
297
298 Ok((lhs, parsed_something))
299 }
300
301 fn should_continue_as_assoc_expr(&mut self, lhs: &Expr) -> bool {
302 match (self.expr_is_complete(lhs), AssocOp::from_token(&self.token)) {
303 (true, None) => false,
306 (false, _) => true, (true, Some(AssocOp::Binary(
311 BinOpKind::Mul | BinOpKind::Sub | BinOpKind::Add | BinOpKind::And | BinOpKind::Or | BinOpKind::BitOr ))) => {
318 let sp = self.psess.source_map().start_point(self.token.span);
325 self.psess.ambiguous_block_expr_parse.borrow_mut().insert(sp, lhs.span);
326 false
327 }
328 (true, Some(op)) if !op.can_continue_expr_unambiguously() => false,
329 (true, Some(_)) => {
330 self.error_found_expr_would_be_stmt(lhs);
331 true
332 }
333 }
334 }
335
336 fn error_found_expr_would_be_stmt(&self, lhs: &Expr) {
340 self.dcx().emit_err(diagnostics::FoundExprWouldBeStmt {
341 span: self.token.span,
342 token: pprust::token_to_string(&self.token),
343 suggestion: ExprParenthesesNeeded::surrounding(lhs.span),
344 });
345 }
346
347 pub(super) fn check_assoc_op(&self) -> Option<Spanned<AssocOp>> {
352 let (op, span) = match (AssocOp::from_token(&self.token), self.token.ident()) {
353 (
355 Some(
356 AssocOp::Binary(BinOpKind::Shr | BinOpKind::Gt | BinOpKind::Ge)
357 | AssocOp::AssignOp(AssignOpKind::ShrAssign),
358 ),
359 _,
360 ) if self.restrictions.contains(Restrictions::CONST_EXPR) => {
361 return None;
362 }
363 (
366 Some(
367 AssocOp::Assign
368 | AssocOp::AssignOp(_)
369 | AssocOp::Binary(BinOpKind::BitOr)
370 | AssocOp::Range(_),
371 ),
372 _,
373 ) if self.restrictions.contains(Restrictions::IS_PAT) => {
374 return None;
375 }
376 (Some(op), _) => (op, self.token.span),
377 (None, Some((Ident { name: sym::and, span }, IdentIsRaw::No)))
378 if self.may_recover() =>
379 {
380 self.dcx().emit_err(diagnostics::InvalidLogicalOperator {
381 span: self.token.span,
382 incorrect: "and".into(),
383 sub: diagnostics::InvalidLogicalOperatorSub::Conjunction(self.token.span),
384 });
385 (AssocOp::Binary(BinOpKind::And), span)
386 }
387 (None, Some((Ident { name: sym::or, span }, IdentIsRaw::No))) if self.may_recover() => {
388 self.dcx().emit_err(diagnostics::InvalidLogicalOperator {
389 span: self.token.span,
390 incorrect: "or".into(),
391 sub: diagnostics::InvalidLogicalOperatorSub::Disjunction(self.token.span),
392 });
393 (AssocOp::Binary(BinOpKind::Or), span)
394 }
395 _ => return None,
396 };
397 Some(respan(span, op))
398 }
399
400 fn expr_is_complete(&self, e: &Expr) -> bool {
402 self.restrictions.contains(Restrictions::STMT_EXPR) && classify::expr_is_complete(e)
403 }
404
405 fn parse_expr_range(
408 &mut self,
409 prec: ExprPrecedence,
410 lhs: Box<Expr>,
411 limits: RangeLimits,
412 cur_op_span: Span,
413 ) -> PResult<'a, Box<Expr>> {
414 let rhs = if self.is_at_start_of_range_notation_rhs() {
415 let maybe_lt = self.token;
416 Some(
417 self.parse_expr_assoc(Bound::Excluded(prec))
418 .map_err(|err| self.maybe_err_dotdotlt_syntax(maybe_lt, err))?,
419 )
420 } else {
421 None
422 };
423 let rhs_span = rhs.as_ref().map_or(cur_op_span, |x| x.span);
424 let span = self.mk_expr_sp(&lhs, lhs.span, cur_op_span, rhs_span);
425 let range = self.mk_range(Some(lhs), rhs, limits);
426 Ok(self.mk_expr(span, range))
427 }
428
429 fn is_at_start_of_range_notation_rhs(&self) -> bool {
430 if self.token.can_begin_expr() {
431 if self.token == token::OpenBrace {
433 return !self.restrictions.contains(Restrictions::NO_STRUCT_LITERAL);
434 }
435 true
436 } else {
437 false
438 }
439 }
440
441 fn parse_expr_prefix_range(&mut self, attrs: AttrWrapper) -> PResult<'a, Box<Expr>> {
443 if !attrs.is_empty() {
444 let err = diagnostics::DotDotRangeAttribute { span: self.token.span };
445 self.dcx().emit_err(err);
446 }
447
448 if self.token == token::DotDotDot {
450 self.err_dotdotdot_syntax(self.token.span);
451 }
452
453 if true {
if !self.token.is_range_separator() {
{
::core::panicking::panic_fmt(format_args!("parse_prefix_range_expr: token {0:?} is not DotDot/DotDotEq",
self.token));
}
};
};debug_assert!(
454 self.token.is_range_separator(),
455 "parse_prefix_range_expr: token {:?} is not DotDot/DotDotEq",
456 self.token
457 );
458
459 let limits = match self.token.kind {
460 token::DotDot => RangeLimits::HalfOpen,
461 _ => RangeLimits::Closed,
462 };
463 let op = AssocOp::from_token(&self.token);
464 self.collect_tokens_for_expr(AttrWrapper::empty(), |this, _empty_attrs| {
465 let lo = this.token.span;
466 let maybe_lt = this.look_ahead(1, |t| t.clone());
467 this.bump();
468 let (span, opt_end) = if this.is_at_start_of_range_notation_rhs() {
469 this.parse_expr_assoc(Bound::Excluded(op.unwrap().precedence()))
471 .map(|expr| (lo.to(expr.span), Some(expr)))
472 .map_err(|err| this.maybe_err_dotdotlt_syntax(maybe_lt, err))?
473 } else {
474 (lo, None)
475 };
476 let range = this.mk_range(None, opt_end, limits);
477 Ok(this.mk_expr(span, range))
478 })
479 }
480
481 fn parse_expr_prefix(&mut self, attrs: AttrWrapper) -> PResult<'a, Box<Expr>> {
483 let lo = self.token.span;
484
485 macro_rules! make_it {
486 ($this:ident, $attrs:expr, |this, _| $body:expr) => {
487 $this.collect_tokens_for_expr($attrs, |$this, attrs| {
488 let (hi, ex) = $body?;
489 Ok($this.mk_expr_with_attrs(lo.to(hi), ex, attrs))
490 })
491 };
492 }
493
494 let this = self;
495
496 match this.token.uninterpolate().kind {
498 token::Bang => this.collect_tokens_for_expr(attrs,
|this, attrs|
{
let (hi, ex) = this.parse_expr_unary(lo, UnOp::Not)?;
Ok(this.mk_expr_with_attrs(lo.to(hi), ex, attrs))
})make_it!(this, attrs, |this, _| this.parse_expr_unary(lo, UnOp::Not)),
500 token::Tilde => this.collect_tokens_for_expr(attrs,
|this, attrs|
{
let (hi, ex) = this.recover_tilde_expr(lo)?;
Ok(this.mk_expr_with_attrs(lo.to(hi), ex, attrs))
})make_it!(this, attrs, |this, _| this.recover_tilde_expr(lo)),
502 token::Minus => {
504 this.collect_tokens_for_expr(attrs,
|this, attrs|
{
let (hi, ex) = this.parse_expr_unary(lo, UnOp::Neg)?;
Ok(this.mk_expr_with_attrs(lo.to(hi), ex, attrs))
})make_it!(this, attrs, |this, _| this.parse_expr_unary(lo, UnOp::Neg))
505 }
506 token::Star => {
508 this.collect_tokens_for_expr(attrs,
|this, attrs|
{
let (hi, ex) = this.parse_expr_unary(lo, UnOp::Deref)?;
Ok(this.mk_expr_with_attrs(lo.to(hi), ex, attrs))
})make_it!(this, attrs, |this, _| this.parse_expr_unary(lo, UnOp::Deref))
509 }
510 token::And | token::AndAnd => {
512 this.collect_tokens_for_expr(attrs,
|this, attrs|
{
let (hi, ex) = this.parse_expr_borrow(lo)?;
Ok(this.mk_expr_with_attrs(lo.to(hi), ex, attrs))
})make_it!(this, attrs, |this, _| this.parse_expr_borrow(lo))
513 }
514 token::Plus if this.look_ahead(1, |tok| tok.is_numeric_lit()) => {
516 let mut err = diagnostics::LeadingPlusNotSupported {
517 span: lo,
518 remove_plus: None,
519 add_parentheses: None,
520 };
521
522 if let Some(sp) = this.psess.ambiguous_block_expr_parse.borrow().get(&lo) {
524 err.add_parentheses = Some(ExprParenthesesNeeded::surrounding(*sp));
525 } else {
526 err.remove_plus = Some(lo);
527 }
528 this.dcx().emit_err(err);
529
530 this.bump(); Ok(this.parse_expr_prefix_common(lo)?.1)
532 }
533 token::Plus if this.look_ahead(1, |t| *t == token::Plus) => {
535 let starts_stmt =
536 this.prev_token == token::Semi || this.prev_token == token::CloseBrace;
537 let pre_span = this.token.span.to(this.look_ahead(1, |t| t.span));
538 this.bump();
540 this.bump();
541
542 let operand_expr = this.parse_expr_dot_or_call(attrs)?;
543 this.recover_from_prefix_increment(operand_expr, pre_span, starts_stmt)
544 }
545 token::Ident(..) if this.token.is_keyword(kw::Box) => {
546 this.collect_tokens_for_expr(attrs,
|this, attrs|
{
let (hi, ex) = this.parse_expr_box(lo)?;
Ok(this.mk_expr_with_attrs(lo.to(hi), ex, attrs))
})make_it!(this, attrs, |this, _| this.parse_expr_box(lo))
547 }
548 token::Ident(..)
549 if this.token.is_keyword(kw::Move)
550 && this.look_ahead(1, |t| *t == token::OpenParen) =>
551 {
552 this.collect_tokens_for_expr(attrs,
|this, attrs|
{
let (hi, ex) = this.parse_expr_move(lo)?;
Ok(this.mk_expr_with_attrs(lo.to(hi), ex, attrs))
})make_it!(this, attrs, |this, _| this.parse_expr_move(lo))
553 }
554 token::Ident(..) if this.may_recover() && this.is_mistaken_not_ident_negation() => {
555 this.collect_tokens_for_expr(attrs,
|this, attrs|
{
let (hi, ex) = this.recover_not_expr(lo)?;
Ok(this.mk_expr_with_attrs(lo.to(hi), ex, attrs))
})make_it!(this, attrs, |this, _| this.recover_not_expr(lo))
556 }
557 _ => return this.parse_expr_dot_or_call(attrs),
558 }
559 }
560
561 fn parse_expr_prefix_common(&mut self, lo: Span) -> PResult<'a, (Span, Box<Expr>)> {
562 let attrs = self.parse_outer_attributes()?;
563 let expr = if self.token.is_range_separator() {
564 self.parse_expr_prefix_range(attrs)
565 } else {
566 self.parse_expr_prefix(attrs)
567 }?;
568 let span = self.interpolated_or_expr_span(&expr);
569 Ok((lo.to(span), expr))
570 }
571
572 fn parse_expr_unary(&mut self, lo: Span, op: UnOp) -> PResult<'a, (Span, ExprKind)> {
573 self.bump(); let (span, expr) = self.parse_expr_prefix_common(lo)?;
575 Ok((span, self.mk_unary(op, expr)))
576 }
577
578 fn recover_tilde_expr(&mut self, lo: Span) -> PResult<'a, (Span, ExprKind)> {
580 self.dcx().emit_err(diagnostics::TildeAsUnaryOperator(lo));
581
582 self.parse_expr_unary(lo, UnOp::Not)
583 }
584
585 fn parse_expr_box(&mut self, box_kw: Span) -> PResult<'a, (Span, ExprKind)> {
588 self.bump(); let (span, expr) = self.parse_expr_prefix_common(box_kw)?;
590 let box_kw_and_lo = box_kw.until(self.interpolated_or_expr_span(&expr));
592 let hi = span.shrink_to_hi();
593 let sugg = diagnostics::AddBoxNew { box_kw_and_lo, hi };
594 let guar = self.dcx().emit_err(diagnostics::BoxSyntaxRemoved { span, sugg });
595 Ok((span, ExprKind::Err(guar)))
596 }
597
598 fn parse_expr_move(&mut self, move_kw: Span) -> PResult<'a, (Span, ExprKind)> {
599 self.bump();
600 self.psess.gated_spans.gate(sym::move_expr, move_kw);
601 self.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenParen,
token_type: crate::parser::token_type::TokenType::OpenParen,
}exp!(OpenParen))?;
602 let expr = self.parse_expr()?;
603 self.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseParen,
token_type: crate::parser::token_type::TokenType::CloseParen,
}exp!(CloseParen))?;
604 let span = move_kw.to(self.prev_token.span);
605 Ok((span, ExprKind::Move(expr, move_kw)))
606 }
607
608 fn is_mistaken_not_ident_negation(&self) -> bool {
609 let token_cannot_continue_expr = |t: &Token| match t.uninterpolate().kind {
610 token::Ident(name, is_raw) => token::ident_can_begin_expr(name, t.span, is_raw),
613 token::Literal(..) | token::Pound => true,
614 _ => t.is_metavar_expr(),
615 };
616 self.token.is_ident_named(sym::not) && self.look_ahead(1, token_cannot_continue_expr)
617 }
618
619 fn recover_not_expr(&mut self, lo: Span) -> PResult<'a, (Span, ExprKind)> {
621 let negated_token = self.look_ahead(1, |t| *t);
622
623 let sub_diag = if negated_token.is_numeric_lit() {
624 diagnostics::NotAsNegationOperatorSub::SuggestNotBitwise
625 } else if negated_token.is_bool_lit() {
626 diagnostics::NotAsNegationOperatorSub::SuggestNotLogical
627 } else {
628 diagnostics::NotAsNegationOperatorSub::SuggestNotDefault
629 };
630
631 self.dcx().emit_err(diagnostics::NotAsNegationOperator {
632 negated: negated_token.span,
633 negated_desc: super::token_descr(&negated_token),
634 sub: sub_diag(
637 self.psess.source_map().span_until_non_whitespace(lo.to(negated_token.span)),
638 ),
639 });
640
641 self.parse_expr_unary(lo, UnOp::Not)
642 }
643
644 fn interpolated_or_expr_span(&self, expr: &Expr) -> Span {
646 match self.prev_token.kind {
647 token::NtIdent(..) | token::NtLifetime(..) => self.prev_token.span,
648 token::CloseInvisible(InvisibleOrigin::MetaVar(_)) => {
649 self.prev_token.span
654 }
655 _ => expr.span,
656 }
657 }
658
659 fn parse_assoc_op_cast(
660 &mut self,
661 lhs: Box<Expr>,
662 lhs_span: Span,
663 op_span: Span,
664 expr_kind: fn(Box<Expr>, Box<Ty>) -> ExprKind,
665 ) -> PResult<'a, Box<Expr>> {
666 let mk_expr = |this: &mut Self, lhs: Box<Expr>, rhs: Box<Ty>| {
667 this.mk_expr(this.mk_expr_sp(&lhs, lhs_span, op_span, rhs.span), expr_kind(lhs, rhs))
668 };
669
670 let parser_snapshot_before_type = self.clone();
673 let cast_expr = match self.parse_as_cast_ty() {
674 Ok(rhs) => mk_expr(self, lhs, rhs),
675 Err(type_err) => {
676 if !self.may_recover() {
677 return Err(type_err);
678 }
679
680 let parser_snapshot_after_type = mem::replace(self, parser_snapshot_before_type);
684
685 match (&lhs.kind, &self.token.kind) {
687 (
688 ExprKind::Path(None, ast::Path { segments, .. }),
690 token::Ident(kw::For | kw::Loop | kw::While, IdentIsRaw::No),
691 ) if let [segment] = segments.as_slice() => {
692 let snapshot = self.create_snapshot_for_diagnostic();
693 let label = Label {
694 ident: Ident::from_str_and_span(
695 &::alloc::__export::must_use({
::alloc::fmt::format(format_args!("\'{0}", segment.ident))
})format!("'{}", segment.ident),
696 segment.ident.span,
697 ),
698 };
699 match self.parse_expr_labeled(label, false) {
700 Ok(expr) => {
701 type_err.cancel();
702 self.dcx().emit_err(diagnostics::MalformedLoopLabel {
703 span: label.ident.span,
704 suggestion: label.ident.span.shrink_to_lo(),
705 });
706 return Ok(expr);
707 }
708 Err(err) => {
709 err.cancel();
710 self.restore_snapshot(snapshot);
711 }
712 }
713 }
714 _ => {}
715 }
716
717 match self.parse_path(PathStyle::Expr) {
718 Ok(path) => {
719 let span_after_type = parser_snapshot_after_type.token.span;
720 let expr = mk_expr(
721 self,
722 lhs,
723 self.mk_ty(path.span, TyKind::Path(None, path.clone())),
724 );
725
726 let args_span = self.look_ahead(1, |t| t.span).to(span_after_type);
727 match self.token.kind {
728 token::Lt => {
729 self.dcx().emit_err(diagnostics::ComparisonInterpretedAsGeneric {
730 comparison: self.token.span,
731 r#type: pprust::path_to_string(&path),
732 args: args_span,
733 suggestion: diagnostics::ComparisonInterpretedAsGenericSugg {
734 left: expr.span.shrink_to_lo(),
735 right: expr.span.shrink_to_hi(),
736 },
737 })
738 }
739 token::Shl => {
740 self.dcx().emit_err(diagnostics::ShiftInterpretedAsGeneric {
741 shift: self.token.span,
742 r#type: pprust::path_to_string(&path),
743 args: args_span,
744 suggestion: diagnostics::ShiftInterpretedAsGenericSugg {
745 left: expr.span.shrink_to_lo(),
746 right: expr.span.shrink_to_hi(),
747 },
748 })
749 }
750 _ => {
751 *self = parser_snapshot_after_type;
756 return Err(type_err);
757 }
758 };
759
760 type_err.cancel();
762
763 expr
765 }
766 Err(path_err) => {
767 path_err.cancel();
769 *self = parser_snapshot_after_type;
770 return Err(type_err);
771 }
772 }
773 }
774 };
775
776 let span = cast_expr.span;
782
783 let with_postfix = self.parse_expr_dot_or_call_with(AttrVec::new(), cast_expr, span)?;
784
785 if !#[allow(non_exhaustive_omitted_patterns)] match with_postfix.kind {
ExprKind::Cast(_, _) => true,
_ => false,
}matches!(with_postfix.kind, ExprKind::Cast(_, _)) {
788 let msg = ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("cast cannot be followed by {0}",
match with_postfix.kind {
ExprKind::Index(..) => "indexing",
ExprKind::Try(_) => "`?`",
ExprKind::Field(_, _) => "a field access",
ExprKind::MethodCall(_) => "a method call",
ExprKind::Call(_, _) => "a function call",
ExprKind::Await(_, _) => "`.await`",
ExprKind::Use(_, _) => "`.use`",
ExprKind::Yield(YieldKind::Postfix(_)) => "`.yield`",
ExprKind::Match(_, _, MatchKind::Postfix) =>
"a postfix match",
ExprKind::Err(_) => return Ok(with_postfix),
_ => {
::core::panicking::panic_fmt(format_args!("internal error: entered unreachable code: {0}",
format_args!("did not expect {0:?} as an illegal postfix operator following cast",
with_postfix.kind)));
}
}))
})format!(
789 "cast cannot be followed by {}",
790 match with_postfix.kind {
791 ExprKind::Index(..) => "indexing",
792 ExprKind::Try(_) => "`?`",
793 ExprKind::Field(_, _) => "a field access",
794 ExprKind::MethodCall(_) => "a method call",
795 ExprKind::Call(_, _) => "a function call",
796 ExprKind::Await(_, _) => "`.await`",
797 ExprKind::Use(_, _) => "`.use`",
798 ExprKind::Yield(YieldKind::Postfix(_)) => "`.yield`",
799 ExprKind::Match(_, _, MatchKind::Postfix) => "a postfix match",
800 ExprKind::Err(_) => return Ok(with_postfix),
801 _ => unreachable!(
802 "did not expect {:?} as an illegal postfix operator following cast",
803 with_postfix.kind
804 ),
805 }
806 );
807 let mut err = self.dcx().struct_span_err(span, msg);
808
809 let suggest_parens = |err: &mut Diag<'_>| {
810 let suggestions = ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[(span.shrink_to_lo(), "(".to_string()),
(span.shrink_to_hi(), ")".to_string())]))vec![
811 (span.shrink_to_lo(), "(".to_string()),
812 (span.shrink_to_hi(), ")".to_string()),
813 ];
814 err.multipart_suggestion(
815 "try surrounding the expression in parentheses",
816 suggestions,
817 Applicability::MachineApplicable,
818 );
819 };
820
821 suggest_parens(&mut err);
822
823 err.emit();
824 };
825 Ok(with_postfix)
826 }
827
828 fn parse_expr_borrow(&mut self, lo: Span) -> PResult<'a, (Span, ExprKind)> {
830 self.expect_and()?;
831 let has_lifetime = self.token.is_lifetime() && self.look_ahead(1, |t| t != &token::Colon);
832 let lifetime = has_lifetime.then(|| self.expect_lifetime()); let (borrow_kind, mutbl) = self.parse_borrow_modifiers();
834 let (span, expr) = self.parse_expr_prefix_common(lo)?;
835 if let Some(lt) = lifetime {
836 self.error_remove_borrow_lifetime(span, lt.ident.span.until(expr.span));
837 }
838
839 if borrow_kind == ast::BorrowKind::Ref
843 && mutbl == ast::Mutability::Not
844 && #[allow(non_exhaustive_omitted_patterns)] match &expr.kind {
ExprKind::Path(None, p) if *p == kw::Raw => true,
_ => false,
}matches!(&expr.kind, ExprKind::Path(None, p) if *p == kw::Raw)
845 {
846 self.expected_token_types.insert(TokenType::KwMut);
847 self.expected_token_types.insert(TokenType::KwConst);
848 }
849
850 Ok((span, ExprKind::AddrOf(borrow_kind, mutbl, expr)))
851 }
852
853 fn error_remove_borrow_lifetime(&self, span: Span, lt_span: Span) {
854 self.dcx()
855 .emit_err(diagnostics::LifetimeInBorrowExpression { span, lifetime_span: lt_span });
856 }
857
858 fn parse_borrow_modifiers(&mut self) -> (ast::BorrowKind, ast::Mutability) {
860 if self.check_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Raw,
token_type: crate::parser::token_type::TokenType::KwRaw,
}exp!(Raw)) && self.look_ahead(1, Token::is_mutability) {
861 let found_raw = self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Raw,
token_type: crate::parser::token_type::TokenType::KwRaw,
}exp!(Raw));
863 if !found_raw { ::core::panicking::panic("assertion failed: found_raw") };assert!(found_raw);
864 let mutability = self.parse_mut_or_const().unwrap();
865 (ast::BorrowKind::Raw, mutability)
866 } else {
867 match self.parse_pin_and_mut() {
868 (ast::Pinnedness::Not, mutbl) => (ast::BorrowKind::Ref, mutbl),
870 (ast::Pinnedness::Pinned, mutbl) => (ast::BorrowKind::Pin, mutbl),
874 }
875 }
876 }
877
878 fn parse_expr_dot_or_call(&mut self, attrs: AttrWrapper) -> PResult<'a, Box<Expr>> {
880 self.collect_tokens_for_expr(attrs, |this, attrs| {
881 let base = this.parse_expr_bottom()?;
882 let span = this.interpolated_or_expr_span(&base);
883 this.parse_expr_dot_or_call_with(attrs, base, span)
884 })
885 }
886
887 pub(super) fn parse_expr_dot_or_call_with(
888 &mut self,
889 mut attrs: ast::AttrVec,
890 mut e: Box<Expr>,
891 lo: Span,
892 ) -> PResult<'a, Box<Expr>> {
893 let mut res = loop {
894 let has_question = if self.prev_token == TokenKind::Ident(kw::Return, IdentIsRaw::No) {
895 self.eat_noexpect(&token::Question)
898 } else {
899 self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Question,
token_type: crate::parser::token_type::TokenType::Question,
}exp!(Question))
900 };
901 if has_question {
902 e = self.mk_expr(lo.to(self.prev_token.span), ExprKind::Try(e));
904 continue;
905 }
906 let has_dot = if self.prev_token == TokenKind::Ident(kw::Return, IdentIsRaw::No) {
907 self.eat_noexpect(&token::Dot)
910 } else if self.token == TokenKind::RArrow && self.may_recover() {
911 self.bump();
913 let span = self.prev_token.span;
914 self.dcx().emit_err(diagnostics::ExprRArrowCall { span });
915 true
916 } else {
917 self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Dot,
token_type: crate::parser::token_type::TokenType::Dot,
}exp!(Dot))
918 };
919 if has_dot {
920 e = self.parse_dot_suffix_expr(lo, e)?;
922 continue;
923 }
924 if self.expr_is_complete(&e) {
925 break Ok(e);
926 }
927 e = match self.token.kind {
928 token::OpenParen => self.parse_expr_fn_call(lo, e),
929 token::OpenBracket => self.parse_expr_index(lo, e)?,
930 _ => break Ok(e),
931 }
932 };
933
934 if !attrs.is_empty()
937 && let Ok(expr) = &mut res
938 {
939 mem::swap(&mut expr.attrs, &mut attrs);
940 expr.attrs.extend(attrs)
941 }
942 res
943 }
944
945 pub(super) fn parse_dot_suffix_expr(
946 &mut self,
947 lo: Span,
948 base: Box<Expr>,
949 ) -> PResult<'a, Box<Expr>> {
950 match self.token.uninterpolate().kind {
953 token::Ident(..) => self.parse_dot_suffix(base, lo),
954 token::Literal(token::Lit { kind: token::Integer, symbol, suffix }) => {
955 let ident_span = self.token.span;
956 self.bump();
957 Ok(self.mk_expr_tuple_field_access(lo, ident_span, base, symbol, suffix))
958 }
959 token::Literal(token::Lit { kind: token::Float, symbol, suffix }) => {
960 Ok(match self.break_up_float(symbol, self.token.span) {
961 DestructuredFloat::Single(sym, _sp) => {
963 let ident_span = self.token.span;
967 self.bump();
968 self.mk_expr_tuple_field_access(lo, ident_span, base, sym, suffix)
969 }
970 DestructuredFloat::TrailingDot(sym, ident_span, dot_span) => {
972 if !suffix.is_none() {
::core::panicking::panic("assertion failed: suffix.is_none()")
};assert!(suffix.is_none());
976 self.token = Token::new(token::Ident(sym, IdentIsRaw::No), ident_span);
977 self.bump_with((Token::new(token::Dot, dot_span), self.token_spacing));
978 self.mk_expr_tuple_field_access(lo, ident_span, base, sym, None)
979 }
980 DestructuredFloat::MiddleDot(
982 sym1,
983 ident1_span,
984 _dot_span,
985 sym2,
986 ident2_span,
987 ) => {
988 let next_token2 =
992 Token::new(token::Ident(sym2, IdentIsRaw::No), ident2_span);
993 self.bump_with((next_token2, self.token_spacing));
994 self.bump();
995 let base1 =
996 self.mk_expr_tuple_field_access(lo, ident1_span, base, sym1, None);
997 self.mk_expr_tuple_field_access(lo, ident2_span, base1, sym2, suffix)
998 }
999 DestructuredFloat::Error => base,
1000 })
1001 }
1002 _ => {
1003 self.error_unexpected_after_dot();
1004 Ok(base)
1005 }
1006 }
1007 }
1008
1009 fn error_unexpected_after_dot(&self) {
1010 let actual = super::token_descr(&self.token);
1011 let span = self.token.span;
1012 let sm = self.psess.source_map();
1013 let (span, actual) = match (&self.token.kind, self.subparser_name) {
1014 (token::Eof, Some(_)) if let Ok(snippet) = sm.span_to_snippet(sm.next_point(span)) => {
1015 (span.shrink_to_hi(), ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("`{0}`", snippet))
})format!("`{}`", snippet))
1016 }
1017 (token::CloseInvisible(InvisibleOrigin::MetaVar(_)), _) => {
1018 self.dcx().span_delayed_bug(span, "bad dot expr in metavariable");
1033 return;
1034 }
1035 _ => (span, actual),
1036 };
1037 self.dcx().emit_err(diagnostics::UnexpectedTokenAfterDot { span, actual });
1038 }
1039
1040 pub(super) fn break_up_float(&self, float: Symbol, span: Span) -> DestructuredFloat {
1051 #[derive(#[automatically_derived]
impl ::core::fmt::Debug for FloatComponent {
#[inline]
fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
match self {
FloatComponent::IdentLike(__self_0) =>
::core::fmt::Formatter::debug_tuple_field1_finish(f,
"IdentLike", &__self_0),
FloatComponent::Punct(__self_0) =>
::core::fmt::Formatter::debug_tuple_field1_finish(f, "Punct",
&__self_0),
}
}
}Debug)]
1052 enum FloatComponent {
1053 IdentLike(String),
1054 Punct(char),
1055 }
1056 use FloatComponent::*;
1057
1058 let float_str = float.as_str();
1059 let mut components = Vec::new();
1060 let mut ident_like = String::new();
1061 for c in float_str.chars() {
1062 if c == '_' || c.is_ascii_alphanumeric() {
1063 ident_like.push(c);
1064 } else if #[allow(non_exhaustive_omitted_patterns)] match c {
'.' | '+' | '-' => true,
_ => false,
}matches!(c, '.' | '+' | '-') {
1065 if !ident_like.is_empty() {
1066 components.push(IdentLike(mem::take(&mut ident_like)));
1067 }
1068 components.push(Punct(c));
1069 } else {
1070 {
::core::panicking::panic_fmt(format_args!("unexpected character in a float token: {0:?}",
c));
}panic!("unexpected character in a float token: {c:?}")
1071 }
1072 }
1073 if !ident_like.is_empty() {
1074 components.push(IdentLike(ident_like));
1075 }
1076
1077 let can_take_span_apart =
1081 || self.span_to_snippet(span).as_deref() == Ok(float_str).as_deref();
1082
1083 match &*components {
1084 [IdentLike(i)] => DestructuredFloat::Single(Symbol::intern(i), span),
1086 [IdentLike(left), Punct('.')] => {
1088 let (left_span, dot_span) = if can_take_span_apart() {
1089 let left_span = span.with_hi(span.lo() + BytePos::from_usize(left.len()));
1090 let dot_span = span.with_lo(left_span.hi());
1091 (left_span, dot_span)
1092 } else {
1093 (span, span)
1094 };
1095 let left = Symbol::intern(left);
1096 DestructuredFloat::TrailingDot(left, left_span, dot_span)
1097 }
1098 [IdentLike(left), Punct('.'), IdentLike(right)] => {
1100 let (left_span, dot_span, right_span) = if can_take_span_apart() {
1101 let left_span = span.with_hi(span.lo() + BytePos::from_usize(left.len()));
1102 let dot_span =
1103 span.with_lo(left_span.hi()).with_hi(left_span.hi() + BytePos(1));
1104 let right_span = span.with_lo(dot_span.hi());
1105 (left_span, dot_span, right_span)
1106 } else {
1107 (span, span, span)
1108 };
1109 let left = Symbol::intern(left);
1110 let right = Symbol::intern(right);
1111 DestructuredFloat::MiddleDot(left, left_span, dot_span, right, right_span)
1112 }
1113 [IdentLike(_), Punct('+' | '-')] |
1115 [IdentLike(_), Punct('+' | '-'), IdentLike(_)] |
1117 [IdentLike(_), Punct('.'), IdentLike(_), Punct('+' | '-')] |
1119 [IdentLike(_), Punct('.'), IdentLike(_), Punct('+' | '-'), IdentLike(_)] => {
1121 self.error_unexpected_after_dot();
1123 DestructuredFloat::Error
1124 }
1125 _ => {
::core::panicking::panic_fmt(format_args!("unexpected components in a float token: {0:?}",
components));
}panic!("unexpected components in a float token: {components:?}"),
1126 }
1127 }
1128
1129 pub(crate) fn parse_floating_field_access(&mut self) -> PResult<'a, ThinVec<Ident>> {
1133 let mut fields = ThinVec::new();
1134 let mut trailing_dot = None;
1135
1136 loop {
1137 let expr = self.parse_expr()?;
1141 let mut current = &expr;
1142 let start_idx = fields.len();
1143 loop {
1144 match current.kind {
1145 ExprKind::Field(ref left, right) => {
1146 fields.insert(start_idx, right);
1148 trailing_dot = None;
1149 current = left;
1150 }
1151 ExprKind::Index(ref left, ref _right, span) => {
1154 self.dcx().emit_err(diagnostics::ArrayIndexInOffsetOf(span));
1155 current = left;
1156 }
1157 ExprKind::Lit(token::Lit {
1158 kind: token::Float | token::Integer,
1159 symbol,
1160 suffix,
1161 }) => {
1162 if let Some(suffix) = suffix {
1163 self.dcx().emit_err(diagnostics::InvalidLiteralSuffixOnTupleIndex {
1164 span: current.span,
1165 suffix,
1166 });
1167 }
1168 match self.break_up_float(symbol, current.span) {
1169 DestructuredFloat::Single(sym, sp) => {
1171 trailing_dot = None;
1172 fields.insert(start_idx, Ident::new(sym, sp));
1173 }
1174 DestructuredFloat::TrailingDot(sym, sym_span, dot_span) => {
1176 if !suffix.is_none() {
::core::panicking::panic("assertion failed: suffix.is_none()")
};assert!(suffix.is_none());
1177 trailing_dot = Some(dot_span);
1178 fields.insert(start_idx, Ident::new(sym, sym_span));
1179 }
1180 DestructuredFloat::MiddleDot(
1182 symbol1,
1183 span1,
1184 _dot_span,
1185 symbol2,
1186 span2,
1187 ) => {
1188 trailing_dot = None;
1189 fields.insert(start_idx, Ident::new(symbol2, span2));
1190 fields.insert(start_idx, Ident::new(symbol1, span1));
1191 }
1192 DestructuredFloat::Error => {
1193 trailing_dot = None;
1194 fields.insert(start_idx, Ident::new(symbol, self.prev_token.span));
1195 }
1196 }
1197 break;
1198 }
1199 ExprKind::Path(None, Path { ref segments, .. }) => {
1200 match &segments[..] {
1201 [PathSegment { ident, args: None, .. }] => {
1202 trailing_dot = None;
1203 fields.insert(start_idx, *ident)
1204 }
1205 _ => {
1206 self.dcx().emit_err(diagnostics::InvalidOffsetOf(current.span));
1207 break;
1208 }
1209 }
1210 break;
1211 }
1212 _ => {
1213 self.dcx().emit_err(diagnostics::InvalidOffsetOf(current.span));
1214 break;
1215 }
1216 }
1217 }
1218
1219 if self.token.kind.close_delim().is_some() || self.token.kind == token::Comma {
1220 break;
1221 } else if trailing_dot.is_none() {
1222 self.dcx().emit_err(diagnostics::InvalidOffsetOf(self.token.span));
1224 break;
1225 }
1226 }
1227 if let Some(dot) = trailing_dot {
1228 self.dcx().emit_err(diagnostics::InvalidOffsetOf(dot));
1229 }
1230 Ok(fields.into_iter().collect())
1231 }
1232
1233 fn mk_expr_tuple_field_access(
1234 &self,
1235 lo: Span,
1236 ident_span: Span,
1237 base: Box<Expr>,
1238 field: Symbol,
1239 suffix: Option<Symbol>,
1240 ) -> Box<Expr> {
1241 if let Some(suffix) = suffix {
1242 self.dcx().emit_err(diagnostics::InvalidLiteralSuffixOnTupleIndex {
1243 span: ident_span,
1244 suffix,
1245 });
1246 }
1247 self.mk_expr(lo.to(ident_span), ExprKind::Field(base, Ident::new(field, ident_span)))
1248 }
1249
1250 fn parse_expr_fn_call(&mut self, lo: Span, fun: Box<Expr>) -> Box<Expr> {
1252 let snapshot = if self.token == token::OpenParen {
1253 Some((self.create_snapshot_for_diagnostic(), fun.kind.clone()))
1254 } else {
1255 None
1256 };
1257 let open_paren = self.token.span;
1258 let call_depth = self.token_cursor.depth();
1259
1260 let seq = match self.parse_expr_paren_seq() {
1261 Ok(args) => Ok(self.mk_expr(lo.to(self.prev_token.span), self.mk_call(fun, args))),
1262 Err(err)
1263 if self.is_expected_raw_ref_mut() && self.token_cursor.depth() == call_depth =>
1264 {
1265 let guar = err.emit();
1266 let args = self.recover_raw_ref_call_args(guar);
1269 return self.mk_expr(lo.to(self.prev_token.span), self.mk_call(fun, args));
1270 }
1271 Err(err) => Err(err),
1272 };
1273 match self.maybe_recover_struct_lit_bad_delims(lo, open_paren, seq, snapshot) {
1274 Ok(expr) => expr,
1275 Err(err) => self.recover_seq_parse_error(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenParen,
token_type: crate::parser::token_type::TokenType::OpenParen,
}exp!(OpenParen), crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseParen,
token_type: crate::parser::token_type::TokenType::CloseParen,
}exp!(CloseParen), lo, err),
1276 }
1277 }
1278
1279 fn recover_raw_ref_call_args(&mut self, guar: ErrorGuaranteed) -> ThinVec<Box<Expr>> {
1280 let err_span = self.prev_token.span.to(self.token.span);
1281 let mut args = {
let len = [()].len();
let mut vec = ::thin_vec::ThinVec::with_capacity(len);
vec.push(self.mk_expr_err(err_span, guar));
vec
}thin_vec![self.mk_expr_err(err_span, guar)];
1282 while !self.token.kind.is_close_delim_or_eof() {
1283 if self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Comma,
token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma)) {
1284 if !self.token.kind.is_close_delim_or_eof() {
1285 args.push(self.mk_expr_err(self.prev_token.span.shrink_to_hi(), guar));
1286 }
1287 } else {
1288 self.parse_token_tree();
1289 }
1290 }
1291 let _ = self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseParen,
token_type: crate::parser::token_type::TokenType::CloseParen,
}exp!(CloseParen));
1292 args
1293 }
1294
1295 #[allow(clippy :: suspicious_else_formatting)]
{
let __tracing_attr_span;
let __tracing_attr_guard;
if ::tracing::Level::TRACE <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::TRACE <=
::tracing::level_filters::LevelFilter::current() ||
{ false } {
__tracing_attr_span =
{
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("maybe_recover_struct_lit_bad_delims",
"rustc_parse::parser::expr", ::tracing::Level::TRACE,
::tracing_core::__macro_support::Option::Some("compiler/rustc_parse/src/parser/expr.rs"),
::tracing_core::__macro_support::Option::Some(1297u32),
::tracing_core::__macro_support::Option::Some("rustc_parse::parser::expr"),
::tracing_core::field::FieldSet::new(&[{
const NAME:
::tracing::__macro_support::FieldName<{
::tracing::__macro_support::FieldName::len("lo")
}> =
::tracing::__macro_support::FieldName::new("lo");
NAME.as_str()
},
{
const NAME:
::tracing::__macro_support::FieldName<{
::tracing::__macro_support::FieldName::len("open_paren")
}> =
::tracing::__macro_support::FieldName::new("open_paren");
NAME.as_str()
}], ::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::SPAN)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let mut interest = ::tracing::subscriber::Interest::never();
if ::tracing::Level::TRACE <=
::tracing::level_filters::STATIC_MAX_LEVEL &&
::tracing::Level::TRACE <=
::tracing::level_filters::LevelFilter::current() &&
{ interest = __CALLSITE.interest(); !interest.is_never() }
&&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest) {
let meta = __CALLSITE.metadata();
::tracing::Span::new(meta,
&{
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
meta.fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&::tracing::field::debug(&lo)
as &dyn ::tracing::field::Value)),
(::tracing::__macro_support::Option::Some(&::tracing::field::debug(&open_paren)
as &dyn ::tracing::field::Value))])
})
} else {
let span =
::tracing::__macro_support::__disabled_span(__CALLSITE.metadata());
{};
span
}
};
__tracing_attr_guard = __tracing_attr_span.enter();
}
#[warn(clippy :: suspicious_else_formatting)]
{
#[allow(unknown_lints, unreachable_code, clippy ::
diverging_sub_expression, clippy :: empty_loop, clippy ::
let_unit_value, clippy :: let_with_type_underscore, clippy ::
needless_return, clippy :: unreachable)]
if false {
let __tracing_attr_fake_return: PResult<'a, Box<Expr>> = loop {};
return __tracing_attr_fake_return;
}
{
match (self.may_recover(), seq, snapshot) {
(true, Err(err),
Some((mut snapshot, ExprKind::Path(None, path)))) => {
snapshot.bump();
match snapshot.parse_struct_fields(path.clone(), false,
crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseParen,
token_type: crate::parser::token_type::TokenType::CloseParen,
}) {
Ok((fields, ..)) if
snapshot.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseParen,
token_type: crate::parser::token_type::TokenType::CloseParen,
}) => {
self.restore_snapshot(snapshot);
let close_paren = self.prev_token.span;
let span = lo.to(close_paren);
let fields: Vec<_> =
fields.into_iter().filter(|field|
!field.is_shorthand).collect();
let guar =
if !fields.is_empty() &&
self.span_to_snippet(close_paren).is_ok_and(|snippet|
snippet == ")") {
err.cancel();
let type_str = pprust::path_to_string(&path);
self.dcx().create_err(diagnostics::ParenthesesWithStructFields {
span,
braces_for_struct: diagnostics::BracesForStructLiteral {
first: open_paren,
second: close_paren,
r#type: type_str.clone(),
},
no_fields_for_fn: diagnostics::NoFieldsForFnCall {
r#type: type_str,
fields: fields.into_iter().map(|field|
field.span.until(field.expr.span)).collect(),
},
}).emit()
} else { err.emit() };
Ok(self.mk_expr_err(span, guar))
}
Ok(_) => Err(err),
Err(err2) => { err2.cancel(); Err(err) }
}
}
(_, seq, _) => seq,
}
}
}
}#[instrument(skip(self, seq, snapshot), level = "trace")]
1298 fn maybe_recover_struct_lit_bad_delims(
1299 &mut self,
1300 lo: Span,
1301 open_paren: Span,
1302 seq: PResult<'a, Box<Expr>>,
1303 snapshot: Option<(SnapshotParser<'a>, ExprKind)>,
1304 ) -> PResult<'a, Box<Expr>> {
1305 match (self.may_recover(), seq, snapshot) {
1306 (true, Err(err), Some((mut snapshot, ExprKind::Path(None, path)))) => {
1307 snapshot.bump(); match snapshot.parse_struct_fields(path.clone(), false, exp!(CloseParen)) {
1309 Ok((fields, ..)) if snapshot.eat(exp!(CloseParen)) => {
1310 self.restore_snapshot(snapshot);
1313 let close_paren = self.prev_token.span;
1314 let span = lo.to(close_paren);
1315 let fields: Vec<_> =
1317 fields.into_iter().filter(|field| !field.is_shorthand).collect();
1318
1319 let guar = if !fields.is_empty() &&
1320 self.span_to_snippet(close_paren).is_ok_and(|snippet| snippet == ")")
1325 {
1326 err.cancel();
1327 let type_str = pprust::path_to_string(&path);
1328 self.dcx()
1329 .create_err(diagnostics::ParenthesesWithStructFields {
1330 span,
1331 braces_for_struct: diagnostics::BracesForStructLiteral {
1332 first: open_paren,
1333 second: close_paren,
1334 r#type: type_str.clone(),
1335 },
1336 no_fields_for_fn: diagnostics::NoFieldsForFnCall {
1337 r#type: type_str,
1338 fields: fields
1339 .into_iter()
1340 .map(|field| field.span.until(field.expr.span))
1341 .collect(),
1342 },
1343 })
1344 .emit()
1345 } else {
1346 err.emit()
1347 };
1348 Ok(self.mk_expr_err(span, guar))
1349 }
1350 Ok(_) => Err(err),
1351 Err(err2) => {
1352 err2.cancel();
1353 Err(err)
1354 }
1355 }
1356 }
1357 (_, seq, _) => seq,
1358 }
1359 }
1360
1361 fn parse_expr_index(&mut self, lo: Span, base: Box<Expr>) -> PResult<'a, Box<Expr>> {
1363 let prev_token = self.prev_token;
1364 let open_delim_span = self.token.span;
1365 self.bump(); let index = self.parse_expr()?;
1367 self.suggest_missing_semicolon_before_array(prev_token.span, open_delim_span)?;
1368 self.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseBracket,
token_type: crate::parser::token_type::TokenType::CloseBracket,
}exp!(CloseBracket)).map_err(|mut e| {
1369 if let TokenKind::Ident(_, _) = prev_token.kind {
1370 e.span_suggestion_verbose(
1371 prev_token.span.shrink_to_hi(),
1372 "you might have meant to call a macro",
1373 "!".to_string(),
1374 Applicability::MaybeIncorrect,
1375 );
1376 }
1377 e
1378 })?;
1379 Ok(self.mk_expr(
1380 lo.to(self.prev_token.span),
1381 self.mk_index(base, index, open_delim_span.to(self.prev_token.span)),
1382 ))
1383 }
1384
1385 fn parse_dot_suffix(&mut self, self_arg: Box<Expr>, lo: Span) -> PResult<'a, Box<Expr>> {
1387 if self.token_uninterpolated_span().at_least_rust_2018() && self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Await,
token_type: crate::parser::token_type::TokenType::KwAwait,
}exp!(Await)) {
1388 return Ok(self.mk_await_expr(self_arg, lo));
1389 }
1390
1391 if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Use,
token_type: crate::parser::token_type::TokenType::KwUse,
}exp!(Use)) {
1392 let use_span = self.prev_token.span;
1393 self.psess.gated_spans.gate(sym::ergonomic_clones, use_span);
1394 return Ok(self.mk_use_expr(self_arg, lo));
1395 }
1396
1397 if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Match,
token_type: crate::parser::token_type::TokenType::KwMatch,
}exp!(Match)) {
1399 let match_span = self.prev_token.span;
1400 self.psess.gated_spans.gate(sym::postfix_match, match_span);
1401 return self.parse_match_block(lo, match_span, self_arg, MatchKind::Postfix);
1402 }
1403
1404 if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Yield,
token_type: crate::parser::token_type::TokenType::KwYield,
}exp!(Yield)) {
1406 let yield_span = self.prev_token.span;
1407 self.psess.gated_spans.gate(sym::yield_expr, yield_span);
1408 return Ok(
1409 self.mk_expr(lo.to(yield_span), ExprKind::Yield(YieldKind::Postfix(self_arg)))
1410 );
1411 }
1412
1413 let fn_span_lo = self.token.span;
1414 let mut seg = self.parse_path_segment(PathStyle::Expr, None)?;
1415 self.check_trailing_angle_brackets(&seg, &[crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenParen,
token_type: crate::parser::token_type::TokenType::OpenParen,
}exp!(OpenParen)]);
1416 self.check_turbofish_missing_angle_brackets(&mut seg);
1417
1418 if self.check(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenParen,
token_type: crate::parser::token_type::TokenType::OpenParen,
}exp!(OpenParen)) {
1419 let args = self.parse_expr_paren_seq()?;
1421 let fn_span = fn_span_lo.to(self.prev_token.span);
1422 let span = lo.to(self.prev_token.span);
1423 Ok(self.mk_expr(
1424 span,
1425 ExprKind::MethodCall(Box::new(ast::MethodCall {
1426 seg,
1427 receiver: self_arg,
1428 args,
1429 span: fn_span,
1430 })),
1431 ))
1432 } else {
1433 let span = lo.to(self.prev_token.span);
1435 if let Some(args) = seg.args {
1436 self.dcx()
1438 .create_err(diagnostics::FieldExpressionWithGeneric(args.span()))
1439 .stash(seg.ident.span, StashKey::GenericInFieldExpr);
1440 }
1441
1442 Ok(self.mk_expr(span, ExprKind::Field(self_arg, seg.ident)))
1443 }
1444 }
1445
1446 fn parse_expr_bottom(&mut self) -> PResult<'a, Box<Expr>> {
1452 if true && self.may_recover() &&
let Some(mv_kind) = self.token.is_metavar_seq() &&
let token::MetaVarKind::Ty { .. } = mv_kind &&
self.check_noexpect_past_close_delim(&token::PathSep) {
let ty =
self.eat_metavar_seq(mv_kind,
|this|
this.parse_ty_no_question_mark_recover()).expect("metavar seq ty");
return self.maybe_recover_from_bad_qpath_stage_2(self.prev_token.span,
ty);
};maybe_recover_from_interpolated_ty_qpath!(self, true);
1453
1454 let span = self.token.span;
1455 if let Some(expr) = self.eat_metavar_seq_with_matcher(
1456 |mv_kind| #[allow(non_exhaustive_omitted_patterns)] match mv_kind {
MetaVarKind::Expr { .. } => true,
_ => false,
}matches!(mv_kind, MetaVarKind::Expr { .. }),
1457 |this| {
1458 let expr = this.parse_expr_force_collect();
1461 if this.token.kind == token::Comma {
1466 this.bump();
1467 }
1468 expr
1469 },
1470 ) {
1471 return Ok(expr);
1472 } else if let Some(lit) =
1473 self.eat_metavar_seq(MetaVarKind::Literal, |this| this.parse_literal_maybe_minus())
1474 {
1475 return Ok(lit);
1476 } else if let Some(block) =
1477 self.eat_metavar_seq(MetaVarKind::Block, |this| this.parse_block())
1478 {
1479 return Ok(self.mk_expr(span, ExprKind::Block(block, None)));
1480 } else if let Some(path) =
1481 self.eat_metavar_seq(MetaVarKind::Path, |this| this.parse_path(PathStyle::Type))
1482 {
1483 return Ok(self.mk_expr(span, ExprKind::Path(None, path)));
1484 }
1485
1486 let restrictions = self.restrictions;
1490 self.with_res(restrictions - Restrictions::ALLOW_LET, |this| {
1491 let lo = this.token.span;
1493 if let token::Literal(_) = this.token.kind {
1494 this.parse_expr_lit()
1498 } else if this.check(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenParen,
token_type: crate::parser::token_type::TokenType::OpenParen,
}exp!(OpenParen)) {
1499 this.parse_expr_tuple_parens(restrictions)
1500 } else if this.check(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenBrace,
token_type: crate::parser::token_type::TokenType::OpenBrace,
}exp!(OpenBrace)) {
1501 if let Some(expr) = this.maybe_recover_bad_struct_literal_path(false)? {
1502 return Ok(expr);
1503 }
1504 this.parse_expr_block(None, lo, BlockCheckMode::Default)
1505 } else if this.check(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Or,
token_type: crate::parser::token_type::TokenType::Or,
}exp!(Or)) || this.check(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OrOr,
token_type: crate::parser::token_type::TokenType::OrOr,
}exp!(OrOr)) {
1506 this.parse_expr_closure().map_err(|mut err| {
1507 if let Some(sp) = this.psess.ambiguous_block_expr_parse.borrow().get(&lo) {
1510 err.subdiagnostic(ExprParenthesesNeeded::surrounding(*sp));
1511 }
1512 err
1513 })
1514 } else if this.check(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenBracket,
token_type: crate::parser::token_type::TokenType::OpenBracket,
}exp!(OpenBracket)) {
1515 this.parse_expr_array_or_repeat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseBracket,
token_type: crate::parser::token_type::TokenType::CloseBracket,
}exp!(CloseBracket))
1516 } else if this.is_builtin() {
1517 this.parse_expr_builtin()
1518 } else if this.check_path() {
1519 this.parse_expr_path_start()
1520 } else if this.check_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Move,
token_type: crate::parser::token_type::TokenType::KwMove,
}exp!(Move))
1521 || this.check_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Use,
token_type: crate::parser::token_type::TokenType::KwUse,
}exp!(Use))
1522 || this.check_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Static,
token_type: crate::parser::token_type::TokenType::KwStatic,
}exp!(Static))
1523 || this.check_const_closure()
1524 {
1525 this.parse_expr_closure()
1526 } else if this.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::If,
token_type: crate::parser::token_type::TokenType::KwIf,
}exp!(If)) {
1527 this.parse_expr_if()
1528 } else if this.check_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::For,
token_type: crate::parser::token_type::TokenType::KwFor,
}exp!(For)) {
1529 if this.choose_generics_over_qpath(1) {
1530 this.parse_expr_closure()
1531 } else {
1532 if !this.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::For,
token_type: crate::parser::token_type::TokenType::KwFor,
}) {
::core::panicking::panic("assertion failed: this.eat_keyword(exp!(For))")
};assert!(this.eat_keyword(exp!(For)));
1533 this.parse_expr_for(None, lo)
1534 }
1535 } else if this.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::While,
token_type: crate::parser::token_type::TokenType::KwWhile,
}exp!(While)) {
1536 this.parse_expr_while(None, lo)
1537 } else if let Some(label) = this.eat_label() {
1538 this.parse_expr_labeled(label, true)
1539 } else if this.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Loop,
token_type: crate::parser::token_type::TokenType::KwLoop,
}exp!(Loop)) {
1540 this.parse_expr_loop(None, lo).map_err(|mut err| {
1541 err.span_label(lo, "while parsing this `loop` expression");
1542 err
1543 })
1544 } else if this.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Match,
token_type: crate::parser::token_type::TokenType::KwMatch,
}exp!(Match)) {
1545 this.parse_expr_match().map_err(|mut err| {
1546 err.span_label(lo, "while parsing this `match` expression");
1547 err
1548 })
1549 } else if this.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Unsafe,
token_type: crate::parser::token_type::TokenType::KwUnsafe,
}exp!(Unsafe)) {
1550 this.parse_expr_block(None, lo, BlockCheckMode::Unsafe(ast::UserProvided)).map_err(
1551 |mut err| {
1552 err.span_label(lo, "while parsing this `unsafe` expression");
1553 err
1554 },
1555 )
1556 } else if this.check_inline_const(0) {
1557 this.parse_const_block(lo, false)
1558 } else if this.may_recover() && this.is_do_catch_block() {
1559 this.recover_do_catch()
1560 } else if this.is_try_block() {
1561 this.expect_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Try,
token_type: crate::parser::token_type::TokenType::KwTry,
}exp!(Try))?;
1562 this.parse_try_block(lo)
1563 } else if this.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Return,
token_type: crate::parser::token_type::TokenType::KwReturn,
}exp!(Return)) {
1564 this.parse_expr_return()
1565 } else if this.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Continue,
token_type: crate::parser::token_type::TokenType::KwContinue,
}exp!(Continue)) {
1566 this.parse_expr_continue(lo)
1567 } else if this.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Break,
token_type: crate::parser::token_type::TokenType::KwBreak,
}exp!(Break)) {
1568 this.parse_expr_break()
1569 } else if this.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Yield,
token_type: crate::parser::token_type::TokenType::KwYield,
}exp!(Yield)) {
1570 this.parse_expr_yield()
1571 } else if this.is_do_yeet() {
1572 this.parse_expr_yeet()
1573 } else if this.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Become,
token_type: crate::parser::token_type::TokenType::KwBecome,
}exp!(Become)) {
1574 this.parse_expr_become()
1575 } else if this.check_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Let,
token_type: crate::parser::token_type::TokenType::KwLet,
}exp!(Let)) {
1576 this.parse_expr_let(restrictions)
1577 } else if this.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Underscore,
token_type: crate::parser::token_type::TokenType::KwUnderscore,
}exp!(Underscore)) {
1578 if let Some(expr) = this.maybe_recover_bad_struct_literal_path(true)? {
1579 return Ok(expr);
1580 }
1581 Ok(this.mk_expr(this.prev_token.span, ExprKind::Underscore))
1582 } else if this.token_uninterpolated_span().at_least_rust_2018() {
1583 let at_async = this.check_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Async,
token_type: crate::parser::token_type::TokenType::KwAsync,
}exp!(Async));
1585 if this.token_uninterpolated_span().at_least_rust_2024()
1590 && this.is_gen_block(kw::Gen, at_async as usize)
1591 {
1592 this.parse_gen_block()
1593 } else if this.is_gen_block(kw::Async, 0) {
1595 this.parse_gen_block()
1596 } else if at_async {
1597 this.parse_expr_closure()
1598 } else if this.eat_keyword_noexpect(kw::Await) {
1599 this.recover_incorrect_await_syntax(lo)
1600 } else {
1601 this.parse_expr_lit()
1602 }
1603 } else {
1604 this.parse_expr_lit()
1605 }
1606 })
1607 }
1608
1609 fn parse_expr_lit(&mut self) -> PResult<'a, Box<Expr>> {
1610 let lo = self.token.span;
1611 match self.parse_opt_token_lit() {
1612 Some((token_lit, _)) => {
1613 let expr = self.mk_expr(lo.to(self.prev_token.span), ExprKind::Lit(token_lit));
1614 self.maybe_recover_from_bad_qpath(expr)
1615 }
1616 None => self.try_macro_suggestion(),
1617 }
1618 }
1619
1620 fn parse_expr_tuple_parens(&mut self, restrictions: Restrictions) -> PResult<'a, Box<Expr>> {
1621 let lo = self.token.span;
1622 self.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenParen,
token_type: crate::parser::token_type::TokenType::OpenParen,
}exp!(OpenParen))?;
1623 let (es, trailing_comma) = match self.parse_seq_to_end(
1624 crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseParen,
token_type: crate::parser::token_type::TokenType::CloseParen,
}exp!(CloseParen),
1625 SeqSep::trailing_allowed(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Comma,
token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma)),
1626 |p| p.parse_expr_res(restrictions.intersection(Restrictions::ALLOW_LET)),
1627 ) {
1628 Ok(x) => x,
1629 Err(err) => {
1630 return Ok(self.recover_seq_parse_error(
1631 crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenParen,
token_type: crate::parser::token_type::TokenType::OpenParen,
}exp!(OpenParen),
1632 crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseParen,
token_type: crate::parser::token_type::TokenType::CloseParen,
}exp!(CloseParen),
1633 lo,
1634 err,
1635 ));
1636 }
1637 };
1638 let kind = if es.len() == 1 && #[allow(non_exhaustive_omitted_patterns)] match trailing_comma {
Trailing::No => true,
_ => false,
}matches!(trailing_comma, Trailing::No) {
1639 ExprKind::Paren(es.into_iter().next().unwrap())
1641 } else {
1642 ExprKind::Tup(es)
1644 };
1645 let expr = self.mk_expr(lo.to(self.prev_token.span), kind);
1646 self.maybe_recover_from_bad_qpath(expr)
1647 }
1648
1649 fn parse_expr_array_or_repeat(&mut self, close: ExpTokenPair) -> PResult<'a, Box<Expr>> {
1650 let lo = self.token.span;
1651 self.bump(); let kind = if self.eat(close) {
1654 ExprKind::Array(ThinVec::new())
1656 } else {
1657 let first_expr = self.parse_expr()?;
1659 if self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Semi,
token_type: crate::parser::token_type::TokenType::Semi,
}exp!(Semi)) {
1660 let count = self.parse_expr_anon_const()?;
1662 self.expect(close)?;
1663 ExprKind::Repeat(first_expr, count)
1664 } else if self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Comma,
token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma)) {
1665 let sep = SeqSep::trailing_allowed(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Comma,
token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma));
1667 let (mut exprs, _) = self.parse_seq_to_end(close, sep, |p| p.parse_expr())?;
1668 exprs.insert(0, first_expr);
1669 ExprKind::Array(exprs)
1670 } else {
1671 self.expect(close)?;
1673 ExprKind::Array({
let len = [()].len();
let mut vec = ::thin_vec::ThinVec::with_capacity(len);
vec.push(first_expr);
vec
}thin_vec![first_expr])
1674 }
1675 };
1676 let expr = self.mk_expr(lo.to(self.prev_token.span), kind);
1677 self.maybe_recover_from_bad_qpath(expr)
1678 }
1679
1680 fn parse_expr_path_start(&mut self) -> PResult<'a, Box<Expr>> {
1681 let maybe_eq_tok = self.prev_token;
1682 let (qself, path) = if self.eat_lt() {
1683 let lt_span = self.prev_token.span;
1684 let (qself, path) = self.parse_qpath(PathStyle::Expr).map_err(|mut err| {
1685 if maybe_eq_tok == TokenKind::Eq && maybe_eq_tok.span.hi() == lt_span.lo() {
1689 let eq_lt = maybe_eq_tok.span.to(lt_span);
1690 err.span_suggestion_verbose(
1691 eq_lt,
1692 "you might have meant to write a \"less than or equal to\" comparison",
1693 "<=",
1694 Applicability::Unspecified,
1695 );
1696 }
1697 err
1698 })?;
1699 (Some(qself), path)
1700 } else {
1701 (None, self.parse_path(PathStyle::Expr)?)
1702 };
1703
1704 let (span, kind) = if self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Bang,
token_type: crate::parser::token_type::TokenType::Bang,
}exp!(Bang)) {
1706 if qself.is_some() {
1708 self.dcx().emit_err(diagnostics::MacroInvocationWithQualifiedPath(path.span));
1709 }
1710 let lo = path.span;
1711 let mac = Box::new(MacCall { path, args: self.parse_delim_args()? });
1712 (lo.to(self.prev_token.span), ExprKind::MacCall(mac))
1713 } else if self.check(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenBrace,
token_type: crate::parser::token_type::TokenType::OpenBrace,
}exp!(OpenBrace))
1714 && let Some(expr) = self.maybe_parse_struct_expr(&qself, &path)
1715 {
1716 if qself.is_some() {
1717 self.psess.gated_spans.gate(sym::more_qualified_paths, path.span);
1718 }
1719 return expr;
1720 } else {
1721 (path.span, ExprKind::Path(qself, path))
1722 };
1723
1724 let expr = self.mk_expr(span, kind);
1725 self.maybe_recover_from_bad_qpath(expr)
1726 }
1727
1728 pub(super) fn parse_expr_labeled(
1730 &mut self,
1731 label_: Label,
1732 mut consume_colon: bool,
1733 ) -> PResult<'a, Box<Expr>> {
1734 let lo = label_.ident.span;
1735 let label = Some(label_);
1736 let ate_colon = self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Colon,
token_type: crate::parser::token_type::TokenType::Colon,
}exp!(Colon));
1737 let tok_sp = self.token.span;
1738 let expr = if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::While,
token_type: crate::parser::token_type::TokenType::KwWhile,
}exp!(While)) {
1739 self.parse_expr_while(label, lo)
1740 } else if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::For,
token_type: crate::parser::token_type::TokenType::KwFor,
}exp!(For)) {
1741 self.parse_expr_for(label, lo)
1742 } else if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Loop,
token_type: crate::parser::token_type::TokenType::KwLoop,
}exp!(Loop)) {
1743 self.parse_expr_loop(label, lo)
1744 } else if self.check_noexpect(&token::OpenBrace) || self.token.is_metavar_block() {
1745 self.parse_expr_block(label, lo, BlockCheckMode::Default)
1746 } else if !ate_colon
1747 && self.may_recover()
1748 && (self.token.kind.close_delim().is_some() || self.token.is_punct())
1749 && could_be_unclosed_char_literal(label_.ident)
1750 {
1751 let (lit, _) =
1752 self.recover_unclosed_char(label_.ident, Parser::mk_token_lit_char, |self_| {
1753 self_.dcx().create_err(diagnostics::UnexpectedTokenAfterLabel {
1754 span: self_.token.span,
1755 remove_label: None,
1756 enclose_in_block: None,
1757 })
1758 });
1759 consume_colon = false;
1760 Ok(self.mk_expr(lo, ExprKind::Lit(lit)))
1761 } else if !ate_colon
1762 && (self.check_noexpect(&TokenKind::Comma) || self.check_noexpect(&TokenKind::Gt))
1763 {
1764 let guar = self.dcx().emit_err(diagnostics::UnexpectedTokenAfterLabel {
1766 span: self.token.span,
1767 remove_label: None,
1768 enclose_in_block: None,
1769 });
1770 consume_colon = false;
1771 Ok(self.mk_expr_err(lo, guar))
1772 } else {
1773 let mut err = diagnostics::UnexpectedTokenAfterLabel {
1774 span: self.token.span,
1775 remove_label: None,
1776 enclose_in_block: None,
1777 };
1778
1779 let expr = self.parse_expr().map(|expr| {
1781 let span = expr.span;
1782
1783 let found_labeled_breaks = {
1784 struct FindLabeledBreaksVisitor;
1785
1786 impl<'ast> Visitor<'ast> for FindLabeledBreaksVisitor {
1787 type Result = ControlFlow<()>;
1788 fn visit_expr(&mut self, ex: &'ast Expr) -> ControlFlow<()> {
1789 if let ExprKind::Break(Some(_label), _) = ex.kind {
1790 ControlFlow::Break(())
1791 } else {
1792 walk_expr(self, ex)
1793 }
1794 }
1795 }
1796
1797 FindLabeledBreaksVisitor.visit_expr(&expr).is_break()
1798 };
1799
1800 if !found_labeled_breaks {
1805 err.remove_label = Some(lo.until(span));
1806
1807 return expr;
1808 }
1809
1810 err.enclose_in_block = Some(diagnostics::UnexpectedTokenAfterLabelSugg {
1811 left: span.shrink_to_lo(),
1812 right: span.shrink_to_hi(),
1813 });
1814
1815 let stmt = self.mk_stmt(span, StmtKind::Expr(expr));
1817 let blk = self.mk_block({
let len = [()].len();
let mut vec = ::thin_vec::ThinVec::with_capacity(len);
vec.push(stmt);
vec
}thin_vec![stmt], BlockCheckMode::Default, span);
1818 self.mk_expr(span, ExprKind::Block(blk, label))
1819 });
1820
1821 self.dcx().emit_err(err);
1822 expr
1823 }?;
1824
1825 if !ate_colon && consume_colon {
1826 self.dcx().emit_err(diagnostics::RequireColonAfterLabeledExpression {
1827 span: expr.span,
1828 label: lo,
1829 label_end: lo.between(tok_sp),
1830 });
1831 }
1832
1833 Ok(expr)
1834 }
1835
1836 pub(super) fn recover_unclosed_char<L>(
1838 &self,
1839 ident: Ident,
1840 mk_lit_char: impl FnOnce(Symbol, Span) -> L,
1841 err: impl FnOnce(&Self) -> Diag<'a>,
1842 ) -> L {
1843 if !could_be_unclosed_char_literal(ident) {
::core::panicking::panic("assertion failed: could_be_unclosed_char_literal(ident)")
};assert!(could_be_unclosed_char_literal(ident));
1844 self.dcx()
1845 .try_steal_modify_and_emit_err(ident.span, StashKey::LifetimeIsChar, |err| {
1846 err.span_suggestion_verbose(
1847 ident.span.shrink_to_hi(),
1848 "add `'` to close the char literal",
1849 "'",
1850 Applicability::MaybeIncorrect,
1851 );
1852 })
1853 .unwrap_or_else(|| {
1854 err(self)
1855 .with_span_suggestion_verbose(
1856 ident.span.shrink_to_hi(),
1857 "add `'` to close the char literal",
1858 "'",
1859 Applicability::MaybeIncorrect,
1860 )
1861 .emit()
1862 });
1863 let name = ident.without_first_quote().name;
1864 mk_lit_char(name, ident.span)
1865 }
1866
1867 fn recover_do_catch(&mut self) -> PResult<'a, Box<Expr>> {
1869 let lo = self.token.span;
1870
1871 self.bump(); self.bump(); let span = lo.to(self.prev_token.span);
1875 self.dcx().emit_err(diagnostics::DoCatchSyntaxRemoved { span });
1876
1877 self.parse_try_block(lo)
1878 }
1879
1880 fn parse_expr_opt(&mut self) -> PResult<'a, Option<Box<Expr>>> {
1882 Ok(if self.token.can_begin_expr() { Some(self.parse_expr()?) } else { None })
1883 }
1884
1885 fn parse_expr_return(&mut self) -> PResult<'a, Box<Expr>> {
1887 let lo = self.prev_token.span;
1888 let kind = ExprKind::Ret(self.parse_expr_opt()?);
1889 let expr = self.mk_expr(lo.to(self.prev_token.span), kind);
1890 self.maybe_recover_from_bad_qpath(expr)
1891 }
1892
1893 fn parse_expr_yeet(&mut self) -> PResult<'a, Box<Expr>> {
1895 let lo = self.token.span;
1896
1897 self.bump(); self.bump(); let kind = ExprKind::Yeet(self.parse_expr_opt()?);
1901
1902 let span = lo.to(self.prev_token.span);
1903 self.psess.gated_spans.gate(sym::yeet_expr, span);
1904 let expr = self.mk_expr(span, kind);
1905 self.maybe_recover_from_bad_qpath(expr)
1906 }
1907
1908 fn parse_expr_become(&mut self) -> PResult<'a, Box<Expr>> {
1910 let lo = self.prev_token.span;
1911 let kind = ExprKind::Become(self.parse_expr()?);
1912 let span = lo.to(self.prev_token.span);
1913 self.psess.gated_spans.gate(sym::explicit_tail_calls, span);
1914 let expr = self.mk_expr(span, kind);
1915 self.maybe_recover_from_bad_qpath(expr)
1916 }
1917
1918 fn parse_expr_break(&mut self) -> PResult<'a, Box<Expr>> {
1927 let lo = self.prev_token.span;
1928 let mut label = self.eat_label();
1929 let kind = if self.token == token::Colon
1930 && let Some(label) = label.take()
1931 {
1932 let lexpr = self.parse_expr_labeled(label, true)?;
1935 self.dcx().emit_err(diagnostics::LabeledLoopInBreak {
1936 span: lexpr.span,
1937 sub: diagnostics::WrapInParentheses::Expression {
1938 left: lexpr.span.shrink_to_lo(),
1939 right: lexpr.span.shrink_to_hi(),
1940 },
1941 });
1942 Some(lexpr)
1943 } else if self.token != token::OpenBrace
1944 || !self.restrictions.contains(Restrictions::NO_STRUCT_LITERAL)
1945 {
1946 let mut expr = self.parse_expr_opt()?;
1947 if let Some(expr) = &mut expr {
1948 if label.is_some()
1949 && match &expr.kind {
1950 ExprKind::While(_, _, None)
1951 | ExprKind::ForLoop(ForLoop { label: None, .. })
1952 | ExprKind::Loop(_, None, _) => true,
1953 ExprKind::Block(block, None) => {
1954 #[allow(non_exhaustive_omitted_patterns)] match block.rules {
BlockCheckMode::Default => true,
_ => false,
}matches!(block.rules, BlockCheckMode::Default)
1955 }
1956 _ => false,
1957 }
1958 {
1959 let span = expr.span;
1960 self.psess.buffer_lint(
1961 BREAK_WITH_LABEL_AND_LOOP,
1962 lo.to(expr.span),
1963 ast::CRATE_NODE_ID,
1964 diagnostics::BreakWithLabelAndLoop {
1965 sub: diagnostics::BreakWithLabelAndLoopSub {
1966 left: span.shrink_to_lo(),
1967 right: span.shrink_to_hi(),
1968 },
1969 },
1970 );
1971 }
1972
1973 if self.may_recover()
1975 && let ExprKind::Path(None, p) = &expr.kind
1976 && let [segment] = &*p.segments
1977 && let &ast::PathSegment { ident, args: None, .. } = segment
1978 && let Some(next) = self.parse_expr_opt()?
1979 {
1980 label = Some(self.recover_ident_into_label(ident));
1981 *expr = next;
1982 }
1983 }
1984
1985 expr
1986 } else {
1987 None
1988 };
1989 let expr = self.mk_expr(lo.to(self.prev_token.span), ExprKind::Break(label, kind));
1990 self.maybe_recover_from_bad_qpath(expr)
1991 }
1992
1993 fn parse_expr_continue(&mut self, lo: Span) -> PResult<'a, Box<Expr>> {
1995 let mut label = self.eat_label();
1996
1997 if self.may_recover()
1999 && label.is_none()
2000 && let Some((ident, _)) = self.token.ident()
2001 {
2002 self.bump();
2003 label = Some(self.recover_ident_into_label(ident));
2004 }
2005
2006 let kind = ExprKind::Continue(label);
2007 Ok(self.mk_expr(lo.to(self.prev_token.span), kind))
2008 }
2009
2010 fn parse_expr_yield(&mut self) -> PResult<'a, Box<Expr>> {
2012 let lo = self.prev_token.span;
2013 let kind = ExprKind::Yield(YieldKind::Prefix(self.parse_expr_opt()?));
2014 let span = lo.to(self.prev_token.span);
2015 self.psess.gated_spans.gate(sym::yield_expr, span);
2016 let expr = self.mk_expr(span, kind);
2017 self.maybe_recover_from_bad_qpath(expr)
2018 }
2019
2020 fn parse_expr_builtin(&mut self) -> PResult<'a, Box<Expr>> {
2022 self.parse_builtin(|this, lo, ident| {
2023 Ok(match ident.name {
2024 sym::offset_of => Some(this.parse_expr_offset_of(lo)?),
2025 sym::type_ascribe => Some(this.parse_expr_type_ascribe(lo)?),
2026 sym::wrap_binder => {
2027 Some(this.parse_expr_unsafe_binder_cast(lo, UnsafeBinderCastKind::Wrap)?)
2028 }
2029 sym::unwrap_binder => {
2030 Some(this.parse_expr_unsafe_binder_cast(lo, UnsafeBinderCastKind::Unwrap)?)
2031 }
2032 _ => None,
2033 })
2034 })
2035 }
2036
2037 pub(crate) fn parse_builtin<T>(
2038 &mut self,
2039 parse: impl FnOnce(&mut Parser<'a>, Span, Ident) -> PResult<'a, Option<T>>,
2040 ) -> PResult<'a, T> {
2041 let lo = self.token.span;
2042
2043 self.bump(); self.bump(); let Some((ident, IdentIsRaw::No)) = self.token.ident() else {
2047 let err =
2048 self.dcx().create_err(diagnostics::ExpectedBuiltinIdent { span: self.token.span });
2049 return Err(err);
2050 };
2051 self.psess.gated_spans.gate(sym::builtin_syntax, ident.span);
2052 self.bump();
2053
2054 self.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenParen,
token_type: crate::parser::token_type::TokenType::OpenParen,
}exp!(OpenParen))?;
2055 let ret = if let Some(res) = parse(self, lo, ident)? {
2056 Ok(res)
2057 } else {
2058 let err = self.dcx().create_err(diagnostics::UnknownBuiltinConstruct {
2059 span: lo.to(ident.span),
2060 name: ident,
2061 });
2062 return Err(err);
2063 };
2064 self.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseParen,
token_type: crate::parser::token_type::TokenType::CloseParen,
}exp!(CloseParen))?;
2065
2066 ret
2067 }
2068
2069 pub(crate) fn parse_expr_offset_of(&mut self, lo: Span) -> PResult<'a, Box<Expr>> {
2071 let container = self.parse_ty()?;
2072 self.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Comma,
token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma))?;
2073
2074 let fields = self.parse_floating_field_access()?;
2075 let trailing_comma = self.eat_noexpect(&TokenKind::Comma);
2076
2077 if let Err(mut e) = self.expect_one_of(&[], &[crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseParen,
token_type: crate::parser::token_type::TokenType::CloseParen,
}exp!(CloseParen)]) {
2078 if trailing_comma {
2079 e.note("unexpected third argument to offset_of");
2080 } else {
2081 e.note("offset_of expects dot-separated field and variant names");
2082 }
2083 e.emit();
2084 }
2085
2086 if self.may_recover() {
2088 while !self.token.kind.is_close_delim_or_eof() {
2089 self.bump();
2090 }
2091 }
2092
2093 let span = lo.to(self.token.span);
2094 Ok(self.mk_expr(span, ExprKind::OffsetOf(container, fields)))
2095 }
2096
2097 pub(crate) fn parse_expr_type_ascribe(&mut self, lo: Span) -> PResult<'a, Box<Expr>> {
2099 let expr = self.parse_expr()?;
2100 self.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Comma,
token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma))?;
2101 let ty = self.parse_ty()?;
2102 let span = lo.to(self.token.span);
2103 Ok(self.mk_expr(span, ExprKind::Type(expr, ty)))
2104 }
2105
2106 pub(crate) fn parse_expr_unsafe_binder_cast(
2107 &mut self,
2108 lo: Span,
2109 kind: UnsafeBinderCastKind,
2110 ) -> PResult<'a, Box<Expr>> {
2111 let expr = self.parse_expr()?;
2112 let ty = if self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Comma,
token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma)) { Some(self.parse_ty()?) } else { None };
2113 let span = lo.to(self.token.span);
2114 Ok(self.mk_expr(span, ExprKind::UnsafeBinderCast(kind, expr, ty)))
2115 }
2116
2117 pub fn parse_str_lit(&mut self) -> Result<ast::StrLit, Option<MetaItemLit>> {
2121 match self.parse_opt_meta_item_lit() {
2122 Some(lit) => match lit.kind {
2123 ast::LitKind::Str(symbol_unescaped, style) => Ok(ast::StrLit {
2124 style,
2125 symbol: lit.symbol,
2126 suffix: lit.suffix,
2127 span: lit.span,
2128 symbol_unescaped,
2129 }),
2130 _ => Err(Some(lit)),
2131 },
2132 None => Err(None),
2133 }
2134 }
2135
2136 pub(crate) fn mk_token_lit_char(name: Symbol, span: Span) -> (token::Lit, Span) {
2137 (token::Lit { symbol: name, suffix: None, kind: token::Char }, span)
2138 }
2139
2140 fn mk_meta_item_lit_char(name: Symbol, span: Span) -> MetaItemLit {
2141 ast::MetaItemLit {
2142 symbol: name,
2143 suffix: None,
2144 kind: ast::LitKind::Char(name.as_str().chars().next().unwrap_or('_')),
2145 span,
2146 }
2147 }
2148
2149 fn handle_missing_lit<L>(
2150 &mut self,
2151 mk_lit_char: impl FnOnce(Symbol, Span) -> L,
2152 ) -> PResult<'a, L> {
2153 let token = self.token;
2154 let err = |self_: &Self| {
2155 let msg = ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("unexpected token: {0}",
super::token_descr(&token)))
})format!("unexpected token: {}", super::token_descr(&token));
2156 self_.dcx().struct_span_err(token.span, msg)
2157 };
2158 if let Some((ident, IdentIsRaw::No)) = self.token.lifetime()
2161 && could_be_unclosed_char_literal(ident)
2162 {
2163 let lt = self.expect_lifetime();
2164 Ok(self.recover_unclosed_char(lt.ident, mk_lit_char, err))
2165 } else {
2166 Err(err(self))
2167 }
2168 }
2169
2170 pub(super) fn parse_token_lit(&mut self) -> PResult<'a, (token::Lit, Span)> {
2171 self.parse_opt_token_lit()
2172 .ok_or(())
2173 .or_else(|()| self.handle_missing_lit(Parser::mk_token_lit_char))
2174 }
2175
2176 pub(super) fn parse_meta_item_lit(&mut self) -> PResult<'a, MetaItemLit> {
2177 self.parse_opt_meta_item_lit()
2178 .ok_or(())
2179 .or_else(|()| self.handle_missing_lit(Parser::mk_meta_item_lit_char))
2180 }
2181
2182 fn recover_after_dot(&mut self) {
2183 if self.token == token::Dot {
2184 let recovered = self.look_ahead(1, |next_token| {
2187 if let token::Literal(token::Lit { kind: token::Integer, symbol, suffix }) =
2194 next_token.kind
2195 && suffix.is_none_or(|s| s == sym::f32 || s == sym::f64)
2196 && symbol.as_str().chars().all(|c| c.is_numeric() || c == '_')
2197 && self.token.span.hi() == next_token.span.lo()
2198 {
2199 let s = String::from("0.") + symbol.as_str();
2200 let kind = TokenKind::lit(token::Float, Symbol::intern(&s), suffix);
2201 Some(Token::new(kind, self.token.span.to(next_token.span)))
2202 } else {
2203 None
2204 }
2205 });
2206 if let Some(recovered) = recovered {
2207 self.dcx().emit_err(diagnostics::FloatLiteralRequiresIntegerPart {
2208 span: recovered.span,
2209 suggestion: recovered.span.shrink_to_lo(),
2210 });
2211 self.bump();
2212 self.token = recovered;
2213 }
2214 }
2215 }
2216
2217 pub fn eat_token_lit(&mut self) -> Option<token::Lit> {
2220 let check_expr = |expr: Box<Expr>| {
2221 if let ast::ExprKind::Lit(token_lit) = expr.kind {
2222 Some(token_lit)
2223 } else if let ast::ExprKind::Unary(UnOp::Neg, inner) = &expr.kind
2224 && let ast::Expr { kind: ast::ExprKind::Lit(_), .. } = **inner
2225 {
2226 None
2227 } else {
2228 {
::core::panicking::panic_fmt(format_args!("unexpected reparsed expr/literal: {0:?}",
expr.kind));
};panic!("unexpected reparsed expr/literal: {:?}", expr.kind);
2229 }
2230 };
2231 match self.token.uninterpolate().kind {
2232 token::Ident(name, IdentIsRaw::No) if name.is_bool_lit() => {
2233 self.bump();
2234 Some(token::Lit::new(token::Bool, name, None))
2235 }
2236 token::Literal(token_lit) => {
2237 self.bump();
2238 Some(token_lit)
2239 }
2240 token::OpenInvisible(InvisibleOrigin::MetaVar(MetaVarKind::Literal)) => {
2241 let lit = self
2242 .eat_metavar_seq(MetaVarKind::Literal, |this| this.parse_literal_maybe_minus())
2243 .expect("metavar seq literal");
2244 check_expr(lit)
2245 }
2246 token::OpenInvisible(InvisibleOrigin::MetaVar(
2247 mv_kind @ MetaVarKind::Expr { can_begin_literal_maybe_minus: true, .. },
2248 )) => {
2249 let expr = self
2250 .eat_metavar_seq(mv_kind, |this| this.parse_expr())
2251 .expect("metavar seq expr");
2252 check_expr(expr)
2253 }
2254 _ => None,
2255 }
2256 }
2257
2258 fn parse_opt_token_lit(&mut self) -> Option<(token::Lit, Span)> {
2261 self.recover_after_dot();
2262 let span = self.token.span;
2263 self.eat_token_lit().map(|token_lit| (token_lit, span))
2264 }
2265
2266 fn parse_opt_meta_item_lit(&mut self) -> Option<MetaItemLit> {
2269 self.recover_after_dot();
2270 let span = self.token.span;
2271 let uninterpolated_span = self.token_uninterpolated_span();
2272 self.eat_token_lit().map(|token_lit| {
2273 match MetaItemLit::from_token_lit(token_lit, span) {
2274 Ok(lit) => lit,
2275 Err(err) => {
2276 let guar = report_lit_error(&self.psess, err, token_lit, uninterpolated_span);
2277 let suffixless_lit = token::Lit::new(token_lit.kind, token_lit.symbol, None);
2280 let symbol = Symbol::intern(&suffixless_lit.to_string());
2281 let token_lit = token::Lit::new(token::Err(guar), symbol, token_lit.suffix);
2282 MetaItemLit::from_token_lit(token_lit, uninterpolated_span).unwrap()
2283 }
2284 }
2285 })
2286 }
2287
2288 pub fn parse_literal_maybe_minus(&mut self) -> PResult<'a, Box<Expr>> {
2291 if let Some(expr) = self.eat_metavar_seq_with_matcher(
2292 |mv_kind| #[allow(non_exhaustive_omitted_patterns)] match mv_kind {
MetaVarKind::Expr { .. } => true,
_ => false,
}matches!(mv_kind, MetaVarKind::Expr { .. }),
2293 |this| {
2294 this.parse_expr()
2305 },
2306 ) {
2307 return Ok(expr);
2308 } else if let Some(lit) =
2309 self.eat_metavar_seq(MetaVarKind::Literal, |this| this.parse_literal_maybe_minus())
2310 {
2311 return Ok(lit);
2312 }
2313
2314 let lo = self.token.span;
2315 let minus_present = self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Minus,
token_type: crate::parser::token_type::TokenType::Minus,
}exp!(Minus));
2316 let (token_lit, span) = self.parse_token_lit()?;
2317 let expr = self.mk_expr(span, ExprKind::Lit(token_lit));
2318
2319 if minus_present {
2320 Ok(self.mk_expr(lo.to(self.prev_token.span), self.mk_unary(UnOp::Neg, expr)))
2321 } else {
2322 Ok(expr)
2323 }
2324 }
2325
2326 fn is_array_like_block(&mut self) -> bool {
2327 self.token.kind == TokenKind::OpenBrace
2328 && self
2329 .look_ahead(1, |t| #[allow(non_exhaustive_omitted_patterns)] match t.kind {
TokenKind::Ident(..) | TokenKind::Literal(_) => true,
_ => false,
}matches!(t.kind, TokenKind::Ident(..) | TokenKind::Literal(_)))
2330 && self.look_ahead(2, |t| t == &token::Comma)
2331 && self.look_ahead(3, |t| t.can_begin_expr())
2332 }
2333
2334 fn maybe_suggest_brackets_instead_of_braces(&mut self, lo: Span) -> Option<Box<Expr>> {
2338 let mut snapshot = self.create_snapshot_for_diagnostic();
2339 match snapshot.parse_expr_array_or_repeat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseBrace,
token_type: crate::parser::token_type::TokenType::CloseBrace,
}exp!(CloseBrace)) {
2340 Ok(arr) => {
2341 let guar = self.dcx().emit_err(diagnostics::ArrayBracketsInsteadOfBraces {
2342 span: arr.span,
2343 sub: diagnostics::ArrayBracketsInsteadOfBracesSugg {
2344 left: lo,
2345 right: snapshot.prev_token.span,
2346 },
2347 });
2348
2349 self.restore_snapshot(snapshot);
2350 Some(self.mk_expr_err(arr.span, guar))
2351 }
2352 Err(e) => {
2353 e.cancel();
2354 None
2355 }
2356 }
2357 }
2358
2359 fn suggest_missing_semicolon_before_array(
2360 &self,
2361 prev_span: Span,
2362 open_delim_span: Span,
2363 ) -> PResult<'a, ()> {
2364 if !self.may_recover() {
2365 return Ok(());
2366 }
2367
2368 if self.token == token::Comma {
2369 if !self.psess.source_map().is_multiline(prev_span.until(self.token.span)) {
2370 return Ok(());
2371 }
2372 let mut snapshot = self.create_snapshot_for_diagnostic();
2373 snapshot.bump();
2374 match snapshot.parse_seq_to_before_end(
2375 crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseBracket,
token_type: crate::parser::token_type::TokenType::CloseBracket,
}exp!(CloseBracket),
2376 SeqSep::trailing_allowed(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Comma,
token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma)),
2377 |p| p.parse_expr(),
2378 ) {
2379 Ok(_)
2380 if snapshot
2386 .span_to_snippet(snapshot.token.span)
2387 .is_ok_and(|snippet| snippet == "]") =>
2388 {
2389 return Err(self.dcx().create_err(diagnostics::MissingSemicolonBeforeArray {
2390 open_delim: open_delim_span,
2391 semicolon: prev_span.shrink_to_hi(),
2392 }));
2393 }
2394 Ok(_) => (),
2395 Err(err) => err.cancel(),
2396 }
2397 }
2398 Ok(())
2399 }
2400
2401 pub(super) fn parse_expr_block(
2403 &mut self,
2404 opt_label: Option<Label>,
2405 lo: Span,
2406 blk_mode: BlockCheckMode,
2407 ) -> PResult<'a, Box<Expr>> {
2408 if self.may_recover() && self.is_array_like_block() {
2409 if let Some(arr) = self.maybe_suggest_brackets_instead_of_braces(lo) {
2410 return Ok(arr);
2411 }
2412 }
2413
2414 if self.token.is_metavar_block() {
2415 self.dcx().emit_err(diagnostics::InvalidBlockMacroSegment {
2416 span: self.token.span,
2417 context: lo.to(self.token.span),
2418 wrap: diagnostics::WrapInExplicitBlock {
2419 lo: self.token.span.shrink_to_lo(),
2420 hi: self.token.span.shrink_to_hi(),
2421 },
2422 });
2423 }
2424
2425 let (attrs, blk) = self.parse_block_common(lo, blk_mode, None)?;
2426 Ok(self.mk_expr_with_attrs(blk.span, ExprKind::Block(blk, opt_label), attrs))
2427 }
2428
2429 fn parse_simple_block(&mut self) -> PResult<'a, Box<Expr>> {
2431 let blk = self.parse_block()?;
2432 Ok(self.mk_expr(blk.span, ExprKind::Block(blk, None)))
2433 }
2434
2435 fn parse_expr_closure(&mut self) -> PResult<'a, Box<Expr>> {
2437 let lo = self.token.span;
2438
2439 let before = self.prev_token;
2440 let binder = if self.check_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::For,
token_type: crate::parser::token_type::TokenType::KwFor,
}exp!(For)) {
2441 let lo = self.token.span;
2442 let (bound_vars, _) = self.parse_higher_ranked_binder()?;
2443 let span = lo.to(self.prev_token.span);
2444
2445 self.psess.gated_spans.gate(sym::closure_lifetime_binder, span);
2446
2447 ClosureBinder::For { span, generic_params: bound_vars }
2448 } else {
2449 ClosureBinder::NotPresent
2450 };
2451
2452 let constness = self.parse_closure_constness();
2453
2454 let movability = if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Static,
token_type: crate::parser::token_type::TokenType::KwStatic,
}exp!(Static)) {
2455 self.psess.gated_spans.gate(sym::coroutines, self.prev_token.span);
2456 Movability::Static
2457 } else {
2458 Movability::Movable
2459 };
2460
2461 let coroutine_marker = if self.token_uninterpolated_span().at_least_rust_2018() {
2462 self.parse_coroutine_marker(Case::Sensitive)
2463 } else {
2464 None
2465 };
2466
2467 if let ClosureBinder::NotPresent = binder
2468 && coroutine_marker.is_some()
2469 {
2470 self.expected_token_types.insert(TokenType::OpenBrace);
2473 }
2474
2475 let capture_clause = self.parse_capture_clause()?;
2476 let (fn_decl, fn_arg_span) = self.parse_fn_block_decl()?;
2477 let decl_hi = self.prev_token.span;
2478 let mut body = match &fn_decl.output {
2479 FnRetTy::Default(_) => {
2481 let restrictions =
2482 self.restrictions - Restrictions::STMT_EXPR - Restrictions::ALLOW_LET;
2483 let prev = self.prev_token;
2484 let token = self.token;
2485 match self.parse_expr_res(restrictions) {
2486 Ok(expr) => expr,
2487 Err(err) => self.recover_closure_body(err, before, prev, token, lo, decl_hi)?,
2488 }
2489 }
2490 FnRetTy::Ty(ty) => self.parse_closure_block_body(ty.span)?,
2492 };
2493
2494 if let Some(coroutine_marker) = coroutine_marker
2495 && coroutine_marker.kind.is_gen()
2496 {
2497 self.psess.gated_spans.gate(sym::gen_blocks, coroutine_marker.span);
2500 }
2501
2502 if self.token == TokenKind::Semi
2503 && let Some((Delimiter::Parenthesis, _)) = self.token_cursor.parent_delim_and_span()
2504 && self.may_recover()
2505 {
2506 body = self.mk_expr_err(
2510 body.span,
2511 self.dcx().span_delayed_bug(body.span, "recovered a closure body as a block"),
2512 );
2513 }
2514
2515 let body_span = body.span;
2516
2517 let closure = self.mk_expr(
2518 lo.to(body.span),
2519 ExprKind::Closure(Box::new(ast::Closure {
2520 binder,
2521 capture_clause,
2522 constness,
2523 coroutine_marker,
2524 movability,
2525 fn_decl,
2526 body,
2527 fn_decl_span: lo.to(decl_hi),
2528 fn_arg_span,
2529 })),
2530 );
2531
2532 let spans =
2534 ClosureSpans { whole_closure: closure.span, closing_pipe: decl_hi, body: body_span };
2535 self.current_closure = Some(spans);
2536
2537 Ok(closure)
2538 }
2539
2540 fn parse_closure_block_body(&mut self, ret_span: Span) -> PResult<'a, Box<Expr>> {
2542 if self.may_recover()
2543 && self.token.can_begin_expr()
2544 && self.token.kind != TokenKind::OpenBrace
2545 && !self.token.is_metavar_block()
2546 {
2547 let snapshot = self.create_snapshot_for_diagnostic();
2548 let restrictions =
2549 self.restrictions - Restrictions::STMT_EXPR - Restrictions::ALLOW_LET;
2550 let tok = self.token.clone();
2551 match self.parse_expr_res(restrictions) {
2552 Ok(expr) => {
2553 let descr = super::token_descr(&tok);
2554 let mut diag = self
2555 .dcx()
2556 .struct_span_err(tok.span, ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("expected `{{`, found {0}", descr))
})format!("expected `{{`, found {descr}"));
2557 diag.span_label(
2558 ret_span,
2559 "explicit return type requires closure body to be enclosed in braces",
2560 );
2561 diag.multipart_suggestion(
2562 "wrap the expression in curly braces",
2563 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[(expr.span.shrink_to_lo(), "{ ".to_string()),
(expr.span.shrink_to_hi(), " }".to_string())]))vec![
2564 (expr.span.shrink_to_lo(), "{ ".to_string()),
2565 (expr.span.shrink_to_hi(), " }".to_string()),
2566 ],
2567 Applicability::MachineApplicable,
2568 );
2569 diag.emit();
2570 return Ok(expr);
2571 }
2572 Err(diag) => {
2573 diag.cancel();
2574 self.restore_snapshot(snapshot);
2575 }
2576 }
2577 }
2578
2579 let body_lo = self.token.span;
2580 self.parse_expr_block(None, body_lo, BlockCheckMode::Default)
2581 }
2582
2583 fn parse_capture_clause(&mut self) -> PResult<'a, CaptureBy> {
2585 if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Move,
token_type: crate::parser::token_type::TokenType::KwMove,
}exp!(Move)) {
2586 let move_kw_span = self.prev_token.span;
2587 if self.check_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Async,
token_type: crate::parser::token_type::TokenType::KwAsync,
}exp!(Async)) {
2589 let move_async_span = self.token.span.with_lo(self.prev_token.span.data().lo);
2590 Err(self
2591 .dcx()
2592 .create_err(diagnostics::AsyncMoveOrderIncorrect { span: move_async_span }))
2593 } else {
2594 Ok(CaptureBy::Value { move_kw: move_kw_span })
2595 }
2596 } else if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Use,
token_type: crate::parser::token_type::TokenType::KwUse,
}exp!(Use)) {
2597 let use_kw_span = self.prev_token.span;
2598 self.psess.gated_spans.gate(sym::ergonomic_clones, use_kw_span);
2599 if self.check_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Async,
token_type: crate::parser::token_type::TokenType::KwAsync,
}exp!(Async)) {
2601 let use_async_span = self.token.span.with_lo(self.prev_token.span.data().lo);
2602 Err(self
2603 .dcx()
2604 .create_err(diagnostics::AsyncUseOrderIncorrect { span: use_async_span }))
2605 } else {
2606 Ok(CaptureBy::Use { use_kw: use_kw_span })
2607 }
2608 } else {
2609 Ok(CaptureBy::Ref)
2610 }
2611 }
2612
2613 fn parse_fn_block_decl(&mut self) -> PResult<'a, (Box<FnDecl>, Span)> {
2615 let arg_start = self.token.span.lo();
2616
2617 let inputs = if self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OrOr,
token_type: crate::parser::token_type::TokenType::OrOr,
}exp!(OrOr)) {
2618 ThinVec::new()
2619 } else {
2620 self.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Or,
token_type: crate::parser::token_type::TokenType::Or,
}exp!(Or))?;
2621 let args = self
2622 .parse_seq_to_before_tokens(
2623 &[crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Or,
token_type: crate::parser::token_type::TokenType::Or,
}exp!(Or)],
2624 &[&token::OrOr],
2625 SeqSep::trailing_allowed(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Comma,
token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma)),
2626 |p| p.parse_fn_block_param(),
2627 )?
2628 .0;
2629 self.expect_or()?;
2630 args
2631 };
2632 let arg_span = self.prev_token.span.with_lo(arg_start);
2633 let output =
2634 self.parse_ret_ty(AllowPlus::Yes, RecoverQPath::Yes, RecoverReturnSign::Yes)?;
2635
2636 Ok((Box::new(FnDecl { inputs, output }), arg_span))
2637 }
2638
2639 fn parse_fn_block_param(&mut self) -> PResult<'a, Param> {
2641 let lo = self.token.span;
2642 let attrs = self.parse_outer_attributes()?;
2643 self.collect_tokens(None, attrs, ForceCollect::No, |this, attrs| {
2644 let pat = Box::new(this.parse_pat_no_top_alt(Some(Expected::ParameterName), None)?);
2645 let ty = if this.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Colon,
token_type: crate::parser::token_type::TokenType::Colon,
}exp!(Colon)) {
2646 this.parse_ty()?
2647 } else {
2648 this.mk_ty(pat.span, TyKind::Infer)
2649 };
2650
2651 Ok((
2652 Param {
2653 attrs,
2654 ty,
2655 pat,
2656 span: lo.to(this.prev_token.span),
2657 id: DUMMY_NODE_ID,
2658 is_placeholder: false,
2659 },
2660 Trailing::from(this.token == token::Comma),
2661 UsePreAttrPos::No,
2662 ))
2663 })
2664 }
2665
2666 fn parse_expr_if(&mut self) -> PResult<'a, Box<Expr>> {
2668 let lo = self.prev_token.span;
2669 let let_chains_policy = LetChainsPolicy::EditionDependent { current_edition: lo.edition() };
2672 let cond = self.parse_expr_cond(let_chains_policy)?;
2673 self.parse_if_after_cond(lo, cond)
2674 }
2675
2676 fn parse_if_after_cond(&mut self, lo: Span, mut cond: Box<Expr>) -> PResult<'a, Box<Expr>> {
2677 let cond_span = cond.span;
2678 let mut recover_block_from_condition = |this: &mut Self| {
2682 let block = match &mut cond.kind {
2683 ExprKind::Binary(Spanned { span: binop_span, .. }, _, right)
2684 if let ExprKind::Block(_, None) = right.kind =>
2685 {
2686 let guar = this.dcx().emit_err(diagnostics::IfExpressionMissingThenBlock {
2687 if_span: lo,
2688 missing_then_block_sub:
2689 diagnostics::IfExpressionMissingThenBlockSub::UnfinishedCondition(
2690 cond_span.shrink_to_lo().to(*binop_span),
2691 ),
2692 let_else_sub: None,
2693 });
2694 std::mem::replace(right, this.mk_expr_err(binop_span.shrink_to_hi(), guar))
2695 }
2696 ExprKind::Block(_, None) => {
2697 let guar = this.dcx().emit_err(diagnostics::IfExpressionMissingCondition {
2698 if_span: lo.with_neighbor(cond.span).shrink_to_hi(),
2699 block_span: self.psess.source_map().start_point(cond_span),
2700 });
2701 std::mem::replace(&mut cond, this.mk_expr_err(cond_span.shrink_to_hi(), guar))
2702 }
2703 _ => {
2704 return None;
2705 }
2706 };
2707 if let ExprKind::Block(block, _) = &block.kind {
2708 Some(block.clone())
2709 } else {
2710 ::core::panicking::panic("internal error: entered unreachable code")unreachable!()
2711 }
2712 };
2713 let thn = if self.token.is_keyword(kw::Else) {
2715 if let Some(block) = recover_block_from_condition(self) {
2716 block
2717 } else {
2718 let let_else_sub = #[allow(non_exhaustive_omitted_patterns)] match cond.kind {
ExprKind::Let(..) => true,
_ => false,
}matches!(cond.kind, ExprKind::Let(..))
2719 .then(|| diagnostics::IfExpressionLetSomeSub { if_span: lo.until(cond_span) });
2720
2721 let guar = self.dcx().emit_err(diagnostics::IfExpressionMissingThenBlock {
2722 if_span: lo,
2723 missing_then_block_sub:
2724 diagnostics::IfExpressionMissingThenBlockSub::AddThenBlock(
2725 cond_span.shrink_to_hi(),
2726 ),
2727 let_else_sub,
2728 });
2729 self.mk_block_err(cond_span.shrink_to_hi(), guar)
2730 }
2731 } else {
2732 let attrs = self.parse_outer_attributes()?; let maybe_fatarrow = self.token;
2734 let block = if self.check(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenBrace,
token_type: crate::parser::token_type::TokenType::OpenBrace,
}exp!(OpenBrace)) {
2735 self.parse_block()?
2736 } else if let Some(block) = recover_block_from_condition(self) {
2737 block
2738 } else {
2739 self.error_on_extra_if(&cond)?;
2740 self.parse_block().map_err(|mut err| {
2742 if self.prev_token == token::Semi
2743 && self.token == token::AndAnd
2744 && let maybe_let = self.look_ahead(1, |t| t.clone())
2745 && maybe_let.is_keyword(kw::Let)
2746 {
2747 err.span_suggestion_verbose(
2748 self.prev_token.span,
2749 "consider removing this semicolon to parse the `let` as part of the same chain",
2750 "",
2751 Applicability::MachineApplicable,
2752 ).span_note(
2753 self.token.span.to(maybe_let.span),
2754 "you likely meant to continue parsing the let-chain starting here",
2755 );
2756 } else {
2757 if self.prev_token == token::Semi
2758 && (self.token == token::OpenBrace || AssocOp::from_token(&self.token).is_some())
2759 {
2760 err.span_suggestion_verbose(
2761 self.prev_token.span,
2762 "remove this semicolon",
2763 "",
2764 Applicability::MaybeIncorrect,
2765 );
2766 }
2767
2768 if maybe_fatarrow == token::FatArrow {
2770 err.span_suggestion_verbose(
2771 maybe_fatarrow.span,
2772 "you might have meant to write a \"greater than or equal to\" comparison",
2773 ">=",
2774 Applicability::MaybeIncorrect,
2775 );
2776 }
2777 err.span_note(
2778 cond_span,
2779 "the `if` expression is missing a block after this condition",
2780 );
2781 }
2782 err
2783 })?
2784 };
2785 self.error_on_if_block_attrs(lo, false, block.span, attrs);
2786 block
2787 };
2788 let els = if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Else,
token_type: crate::parser::token_type::TokenType::KwElse,
}exp!(Else)) { Some(self.parse_expr_else()?) } else { None };
2789 Ok(self.mk_expr(lo.to(self.prev_token.span), ExprKind::If(cond, thn, els)))
2790 }
2791
2792 pub fn parse_expr_cond(
2799 &mut self,
2800 let_chains_policy: LetChainsPolicy,
2801 ) -> PResult<'a, Box<Expr>> {
2802 let mut cond =
2803 self.parse_expr_res(Restrictions::NO_STRUCT_LITERAL | Restrictions::ALLOW_LET)?;
2804
2805 let mut checker = CondChecker::new(self, let_chains_policy);
2806 checker.visit_expr(&mut cond);
2807 Ok(if let Some(guar) = checker.found_incorrect_let_chain {
2808 self.mk_expr_err(cond.span, guar)
2809 } else {
2810 cond
2811 })
2812 }
2813
2814 fn parse_expr_let(&mut self, restrictions: Restrictions) -> PResult<'a, Box<Expr>> {
2816 let recovered: Recovered = if !restrictions.contains(Restrictions::ALLOW_LET) {
2817 let err = diagnostics::ExpectedExpressionFoundLet {
2818 span: self.token.span,
2819 reason: diagnostics::ForbiddenLetReason::OtherForbidden,
2820 missing_let: None,
2821 comparison: None,
2822 };
2823 if self.prev_token == token::Or {
2824 return Err(self.dcx().create_err(err));
2826 } else {
2827 Recovered::Yes(self.dcx().emit_err(err))
2828 }
2829 } else {
2830 Recovered::No
2831 };
2832 self.bump(); let lo = self.prev_token.span;
2834 let pat = self.parse_pat_no_top_guard(
2835 None,
2836 RecoverComma::Yes,
2837 RecoverColon::Yes,
2838 CommaRecoveryMode::LikelyTuple,
2839 )?;
2840 if self.token == token::EqEq {
2841 self.dcx().emit_err(diagnostics::ExpectedEqForLetExpr {
2842 span: self.token.span,
2843 sugg_span: self.token.span,
2844 });
2845 self.bump();
2846 } else {
2847 self.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Eq,
token_type: crate::parser::token_type::TokenType::Eq,
}exp!(Eq))?;
2848 }
2849 let expr = self.parse_expr_assoc(Bound::Excluded(prec_let_scrutinee_needs_par()))?;
2850 let span = lo.to(expr.span);
2851 Ok(self.mk_expr(span, ExprKind::Let(Box::new(pat), expr, span, recovered)))
2852 }
2853
2854 fn parse_expr_else(&mut self) -> PResult<'a, Box<Expr>> {
2856 let else_span = self.prev_token.span; let attrs = self.parse_outer_attributes()?; let expr = if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::If,
token_type: crate::parser::token_type::TokenType::KwIf,
}exp!(If)) {
2859 self.parse_expr_if()?
2860 } else if self.check(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenBrace,
token_type: crate::parser::token_type::TokenType::OpenBrace,
}exp!(OpenBrace)) {
2861 self.parse_simple_block()?
2862 } else {
2863 let snapshot = self.create_snapshot_for_diagnostic();
2864 let first_tok = super::token_descr(&self.token);
2865 let first_tok_span = self.token.span;
2866 match self.parse_expr() {
2867 Ok(cond)
2868 if self.check(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenBrace,
token_type: crate::parser::token_type::TokenType::OpenBrace,
}exp!(OpenBrace))
2903 && (classify::expr_requires_semi_to_be_stmt(&cond)
2904 || #[allow(non_exhaustive_omitted_patterns)] match cond.kind {
ExprKind::MacCall(..) => true,
_ => false,
}matches!(cond.kind, ExprKind::MacCall(..)))
2905 =>
2906 {
2907 self.dcx().emit_err(diagnostics::ExpectedElseBlock {
2908 first_tok_span,
2909 first_tok,
2910 else_span,
2911 condition_start: cond.span.shrink_to_lo(),
2912 });
2913 self.parse_if_after_cond(cond.span.shrink_to_lo(), cond)?
2914 }
2915 Err(e) => {
2916 e.cancel();
2917 self.restore_snapshot(snapshot);
2918 self.parse_simple_block()?
2919 },
2920 Ok(_) => {
2921 self.restore_snapshot(snapshot);
2922 self.parse_simple_block()?
2923 },
2924 }
2925 };
2926 self.error_on_if_block_attrs(else_span, true, expr.span, attrs);
2927 Ok(expr)
2928 }
2929
2930 fn error_on_if_block_attrs(
2931 &self,
2932 ctx_span: Span,
2933 is_ctx_else: bool,
2934 branch_span: Span,
2935 attrs: AttrWrapper,
2936 ) {
2937 if !attrs.is_empty()
2938 && let [x0 @ xn] | [x0, .., xn] = &*attrs.take_for_recovery(self.psess)
2939 {
2940 let attributes = x0.span.until(branch_span);
2941 let last = xn.span;
2942 let ctx = if is_ctx_else { "else" } else { "if" };
2943 self.dcx().emit_err(diagnostics::OuterAttributeNotAllowedOnIfElse {
2944 last,
2945 branch_span,
2946 ctx_span,
2947 ctx: ctx.to_string(),
2948 attributes,
2949 });
2950 }
2951 }
2952
2953 fn error_on_extra_if(&mut self, cond: &Box<Expr>) -> PResult<'a, ()> {
2954 if let ExprKind::Binary(Spanned { span: binop_span, node: binop }, _, right) = &cond.kind
2955 && let BinOpKind::And = binop
2956 && let ExprKind::If(cond, ..) = &right.kind
2957 {
2958 Err(self.dcx().create_err(diagnostics::UnexpectedIfWithIf(
2959 binop_span.shrink_to_hi().to(cond.span.shrink_to_lo()),
2960 )))
2961 } else {
2962 Ok(())
2963 }
2964 }
2965
2966 pub fn parse_for_head(&mut self) -> PResult<'a, (Pat, Box<Expr>)> {
2968 let begin_paren = if self.token == token::OpenParen {
2969 let start_span = self.token.span;
2973 let left = self.prev_token.span.between(self.look_ahead(1, |t| t.span));
2974 Some((start_span, left))
2975 } else {
2976 None
2977 };
2978 let pat = match (
2980 self.parse_pat_allow_top_guard(
2981 None,
2982 RecoverComma::Yes,
2983 RecoverColon::Yes,
2984 CommaRecoveryMode::LikelyTuple,
2985 ),
2986 begin_paren,
2987 ) {
2988 (Ok(pat), _) => pat, (Err(err), Some((start_span, left))) if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::In,
token_type: crate::parser::token_type::TokenType::KwIn,
}exp!(In)) => {
2990 let expr = match self.parse_expr_res(Restrictions::NO_STRUCT_LITERAL) {
2993 Ok(expr) => expr,
2994 Err(expr_err) => {
2995 expr_err.cancel();
2998 return Err(err);
2999 }
3000 };
3001 return if self.token == token::CloseParen {
3002 let span = ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[start_span, self.token.span]))vec![start_span, self.token.span];
3005 let right = self.prev_token.span.between(self.look_ahead(1, |t| t.span));
3006 self.bump(); err.cancel();
3008 self.dcx().emit_err(diagnostics::ParenthesesInForHead {
3009 span,
3010 sugg: diagnostics::ParenthesesInForHeadSugg { left, right },
3014 });
3015 Ok((self.mk_pat(start_span.to(right), ast::PatKind::Wild), expr))
3016 } else {
3017 Err(err) };
3019 }
3020 (Err(err), _) => return Err(err), };
3022 if !self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::In,
token_type: crate::parser::token_type::TokenType::KwIn,
}exp!(In)) {
3023 self.error_missing_in_for_loop();
3024 }
3025 self.check_for_for_in_in_typo(self.prev_token.span);
3026 let expr = self.parse_expr_res(Restrictions::NO_STRUCT_LITERAL)?;
3027 Ok((pat, expr))
3028 }
3029
3030 fn parse_expr_for(&mut self, opt_label: Option<Label>, lo: Span) -> PResult<'a, Box<Expr>> {
3032 let is_await =
3033 self.token_uninterpolated_span().at_least_rust_2018() && self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Await,
token_type: crate::parser::token_type::TokenType::KwAwait,
}exp!(Await));
3034
3035 if is_await {
3036 self.psess.gated_spans.gate(sym::async_for_loop, self.prev_token.span);
3037 }
3038
3039 let kind = if is_await { ForLoopKind::ForAwait } else { ForLoopKind::For };
3040
3041 let (pat, expr) = self.parse_for_head()?;
3042 let pat = Box::new(pat);
3043 if #[allow(non_exhaustive_omitted_patterns)] match expr.kind {
ExprKind::Block(..) => true,
_ => false,
}matches!(expr.kind, ExprKind::Block(..))
3045 && self.token.kind != token::OpenBrace
3046 && self.may_recover()
3047 {
3048 let guar = self.dcx().emit_err(diagnostics::MissingExpressionInForLoop {
3049 span: expr.span.shrink_to_lo(),
3050 });
3051 let err_expr = self.mk_expr(expr.span, ExprKind::Err(guar));
3052 let block = self.mk_block(::thin_vec::ThinVec::new()thin_vec![], BlockCheckMode::Default, self.prev_token.span);
3053 return Ok(self.mk_expr(
3054 lo.to(self.prev_token.span),
3055 ExprKind::ForLoop(Box::new(ForLoop {
3056 pat,
3057 iter: err_expr,
3058 body: block,
3059 label: opt_label,
3060 kind,
3061 })),
3062 ));
3063 }
3064
3065 let (attrs, loop_block) = self.parse_inner_attrs_and_block(
3066 opt_label.is_none().then_some(lo),
3069 )?;
3070
3071 let kind = ExprKind::ForLoop(Box::new(ForLoop {
3072 pat,
3073 iter: expr,
3074 body: loop_block,
3075 label: opt_label,
3076 kind,
3077 }));
3078
3079 self.recover_loop_else("for", lo)?;
3080
3081 Ok(self.mk_expr_with_attrs(lo.to(self.prev_token.span), kind, attrs))
3082 }
3083
3084 fn recover_loop_else(&mut self, loop_kind: &'static str, loop_kw: Span) -> PResult<'a, ()> {
3086 if self.token.is_keyword(kw::Else) && self.may_recover() {
3087 let else_span = self.token.span;
3088 self.bump();
3089 let else_clause = self.parse_expr_else()?;
3090 self.dcx().emit_err(diagnostics::LoopElseNotSupported {
3091 span: else_span.to(else_clause.span),
3092 loop_kind,
3093 loop_kw,
3094 });
3095 }
3096 Ok(())
3097 }
3098
3099 fn error_missing_in_for_loop(&mut self) {
3100 let (span, sub) = if self.token.is_ident_named(sym::of) {
3101 let span = self.token.span;
3103 self.bump();
3104 (span, Some(diagnostics::MissingInInForLoopSub::InNotOf(span)))
3105 } else if self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Eq,
token_type: crate::parser::token_type::TokenType::Eq,
}exp!(Eq)) {
3106 let span = self.prev_token.span;
3107 (span, Some(diagnostics::MissingInInForLoopSub::InNotEq(span)))
3108 } else {
3109 let span = self.prev_token.span.between(self.token.span);
3110 let sub = (!self.for_loop_head_has_in())
3111 .then_some(diagnostics::MissingInInForLoopSub::AddIn(span));
3112 (span, sub)
3113 };
3114
3115 self.dcx().emit_err(diagnostics::MissingInInForLoop { span, sub });
3116 }
3117
3118 fn for_loop_head_has_in(&self) -> bool {
3122 let mut dist = 0;
3123 loop {
3124 let (is_in, is_end) = self.look_ahead(dist, |t| {
3125 (t.is_keyword(kw::In), #[allow(non_exhaustive_omitted_patterns)] match t.kind {
token::OpenBrace | token::Eof => true,
_ => false,
}matches!(t.kind, token::OpenBrace | token::Eof))
3126 });
3127 if is_in {
3128 return true;
3129 }
3130 if is_end {
3131 return false;
3132 }
3133 dist += 1;
3134 }
3135 }
3136
3137 fn parse_expr_while(&mut self, opt_label: Option<Label>, lo: Span) -> PResult<'a, Box<Expr>> {
3139 let policy = LetChainsPolicy::EditionDependent { current_edition: lo.edition() };
3140 let cond = self.parse_expr_cond(policy).map_err(|mut err| {
3141 err.span_label(lo, "while parsing the condition of this `while` expression");
3142 err
3143 })?;
3144 let (attrs, body) = self
3145 .parse_inner_attrs_and_block(
3146 opt_label.is_none().then_some(lo),
3149 )
3150 .map_err(|mut err| {
3151 err.span_label(lo, "while parsing the body of this `while` expression");
3152 err.span_label(cond.span, "this `while` condition successfully parsed");
3153 err
3154 })?;
3155
3156 self.recover_loop_else("while", lo)?;
3157
3158 Ok(self.mk_expr_with_attrs(
3159 lo.to(self.prev_token.span),
3160 ExprKind::While(cond, body, opt_label),
3161 attrs,
3162 ))
3163 }
3164
3165 fn parse_expr_loop(&mut self, opt_label: Option<Label>, lo: Span) -> PResult<'a, Box<Expr>> {
3167 let loop_span = self.prev_token.span;
3168 let (attrs, body) = self.parse_inner_attrs_and_block(
3169 opt_label.is_none().then_some(lo),
3172 )?;
3173 self.recover_loop_else("loop", lo)?;
3174 Ok(self.mk_expr_with_attrs(
3175 lo.to(self.prev_token.span),
3176 ExprKind::Loop(body, opt_label, loop_span),
3177 attrs,
3178 ))
3179 }
3180
3181 pub(crate) fn eat_label(&mut self) -> Option<Label> {
3182 if let Some((ident, is_raw)) = self.token.lifetime() {
3183 if is_raw == IdentIsRaw::No && ident.without_first_quote().is_reserved() {
3185 self.dcx().emit_err(diagnostics::KeywordLabel { span: ident.span });
3186 }
3187
3188 self.bump();
3189 Some(Label { ident })
3190 } else {
3191 None
3192 }
3193 }
3194
3195 fn parse_expr_match(&mut self) -> PResult<'a, Box<Expr>> {
3197 let match_span = self.prev_token.span;
3198 let scrutinee = self.parse_expr_res(Restrictions::NO_STRUCT_LITERAL)?;
3199
3200 self.parse_match_block(match_span, match_span, scrutinee, MatchKind::Prefix)
3201 }
3202
3203 fn parse_match_block(
3206 &mut self,
3207 lo: Span,
3208 match_span: Span,
3209 scrutinee: Box<Expr>,
3210 match_kind: MatchKind,
3211 ) -> PResult<'a, Box<Expr>> {
3212 if let Err(mut e) = self.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenBrace,
token_type: crate::parser::token_type::TokenType::OpenBrace,
}exp!(OpenBrace)) {
3213 if self.token == token::Semi {
3214 e.span_suggestion_short(
3215 match_span,
3216 "try removing this `match`",
3217 "",
3218 Applicability::MaybeIncorrect, );
3220 }
3221 if self.maybe_recover_unexpected_block_label(None) {
3222 e.cancel();
3223 self.bump();
3224 } else {
3225 return Err(e);
3226 }
3227 }
3228 let attrs = self.parse_inner_attributes()?;
3229
3230 let mut arms = ThinVec::new();
3231 while self.token != token::CloseBrace {
3232 match self.parse_arm() {
3233 Ok(arm) => arms.push(arm),
3234 Err(e) => {
3235 let guar = e.emit();
3237 self.recover_stmt();
3238 let span = lo.to(self.token.span);
3239 if self.token == token::CloseBrace {
3240 self.bump();
3241 }
3242 arms.push(Arm {
3244 attrs: Default::default(),
3245 pat: Box::new(self.mk_pat(span, ast::PatKind::Err(guar))),
3246 guard: None,
3247 body: Some(self.mk_expr_err(span, guar)),
3248 span,
3249 id: DUMMY_NODE_ID,
3250 is_placeholder: false,
3251 });
3252 return Ok(self.mk_expr_with_attrs(
3253 span,
3254 ExprKind::Match(scrutinee, arms, match_kind),
3255 attrs,
3256 ));
3257 }
3258 }
3259 }
3260 let hi = self.token.span;
3261 self.bump();
3262 Ok(self.mk_expr_with_attrs(lo.to(hi), ExprKind::Match(scrutinee, arms, match_kind), attrs))
3263 }
3264
3265 fn parse_arm_body_missing_braces(
3267 &mut self,
3268 first_expr: &Box<Expr>,
3269 arrow_span: Span,
3270 ) -> Option<(Span, ErrorGuaranteed)> {
3271 if self.token != token::Semi {
3272 return None;
3273 }
3274 let start_snapshot = self.create_snapshot_for_diagnostic();
3275 let semi_sp = self.token.span;
3276 self.bump(); let mut stmts =
3278 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[self.mk_stmt(first_expr.span,
ast::StmtKind::Expr(first_expr.clone()))]))vec![self.mk_stmt(first_expr.span, ast::StmtKind::Expr(first_expr.clone()))];
3279 let err = |this: &Parser<'_>, stmts: Vec<ast::Stmt>| {
3280 let span = stmts[0].span.to(stmts[stmts.len() - 1].span);
3281
3282 let guar = this.dcx().emit_err(diagnostics::MatchArmBodyWithoutBraces {
3283 statements: span,
3284 arrow: arrow_span,
3285 num_statements: stmts.len(),
3286 sub: if stmts.len() > 1 {
3287 diagnostics::MatchArmBodyWithoutBracesSugg::AddBraces {
3288 left: span.shrink_to_lo(),
3289 right: span.shrink_to_hi(),
3290 num_statements: stmts.len(),
3291 }
3292 } else {
3293 diagnostics::MatchArmBodyWithoutBracesSugg::UseComma { semicolon: semi_sp }
3294 },
3295 });
3296 (span, guar)
3297 };
3298 loop {
3301 if self.token == token::CloseBrace {
3302 return Some(err(self, stmts));
3304 }
3305 if self.token == token::Comma {
3306 self.restore_snapshot(start_snapshot);
3307 return None;
3308 }
3309 let pre_pat_snapshot = self.create_snapshot_for_diagnostic();
3310 match self.parse_pat_no_top_alt(None, None) {
3311 Ok(_pat) => {
3312 if self.token == token::FatArrow {
3313 self.restore_snapshot(pre_pat_snapshot);
3315 return Some(err(self, stmts));
3316 }
3317 }
3318 Err(err) => {
3319 err.cancel();
3320 }
3321 }
3322
3323 self.restore_snapshot(pre_pat_snapshot);
3324 match self.parse_stmt_without_recovery(true, ForceCollect::No, false) {
3325 Ok(stmt) => {
3327 stmts.push(stmt);
3328 }
3329 Err(stmt_err) => {
3332 stmt_err.cancel();
3333 self.restore_snapshot(start_snapshot);
3334 break;
3335 }
3336 }
3337 }
3338 None
3339 }
3340
3341 pub(super) fn parse_arm(&mut self) -> PResult<'a, Arm> {
3342 let attrs = self.parse_outer_attributes()?;
3343 self.collect_tokens(None, attrs, ForceCollect::No, |this, attrs| {
3344 let lo = this.token.span;
3345 let (pat, guard) = this.parse_match_arm_pat_and_guard()?;
3346 let pat = Box::new(pat);
3347
3348 let span_before_body = this.prev_token.span;
3349 let arm_body;
3350 let is_fat_arrow = this.check(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::FatArrow,
token_type: crate::parser::token_type::TokenType::FatArrow,
}exp!(FatArrow));
3351 let is_almost_fat_arrow =
3352 TokenKind::FatArrow.similar_tokens().contains(&this.token.kind);
3353
3354 let armless = (!is_fat_arrow && !is_almost_fat_arrow && pat.could_be_never_pattern())
3357 || #[allow(non_exhaustive_omitted_patterns)] match this.token.kind {
token::Comma | token::CloseBrace => true,
_ => false,
}matches!(this.token.kind, token::Comma | token::CloseBrace);
3358
3359 let mut result = if armless {
3360 arm_body = None;
3362 let span = lo.to(this.prev_token.span);
3363 this.expect_one_of(&[crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Comma,
token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma)], &[crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseBrace,
token_type: crate::parser::token_type::TokenType::CloseBrace,
}exp!(CloseBrace)]).map(|x| {
3364 if !pat.contains_never_pattern() {
3366 this.psess.gated_spans.gate(sym::never_patterns, span);
3367 }
3368 x
3369 })
3370 } else {
3371 if let Err(mut err) = this.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::FatArrow,
token_type: crate::parser::token_type::TokenType::FatArrow,
}exp!(FatArrow)) {
3372 if is_almost_fat_arrow {
3374 err.span_suggestion_verbose(
3375 this.token.span,
3376 "use a fat arrow to start a match arm",
3377 "=>",
3378 Applicability::MachineApplicable,
3379 );
3380 if #[allow(non_exhaustive_omitted_patterns)] match (&this.prev_token.kind,
&this.token.kind) {
(token::DotDotEq, token::Gt) => true,
_ => false,
}matches!(
3381 (&this.prev_token.kind, &this.token.kind),
3382 (token::DotDotEq, token::Gt)
3383 ) {
3384 err.delay_as_bug();
3387 } else {
3388 err.emit();
3389 }
3390 this.bump();
3391 } else {
3392 return Err(err);
3393 }
3394 }
3395 let arrow_span = this.prev_token.span;
3396 let arm_start_span = this.token.span;
3397
3398 let expr =
3399 this.parse_expr_res(Restrictions::STMT_EXPR).map_err(|mut err| {
3400 err.span_label(arrow_span, "while parsing the `match` arm starting here");
3401 err
3402 })?;
3403
3404 let require_comma =
3405 !classify::expr_is_complete(&expr) && this.token != token::CloseBrace;
3406
3407 if !require_comma {
3408 arm_body = Some(expr);
3409 let _ = this.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Comma,
token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma));
3411 Ok(Recovered::No)
3412 } else if let Some((span, guar)) =
3413 this.parse_arm_body_missing_braces(&expr, arrow_span)
3414 {
3415 let body = this.mk_expr_err(span, guar);
3416 arm_body = Some(body);
3417 Ok(Recovered::Yes(guar))
3418 } else {
3419 let expr_span = expr.span;
3420 arm_body = Some(expr);
3421 this.expect_one_of(&[crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Comma,
token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma)], &[crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseBrace,
token_type: crate::parser::token_type::TokenType::CloseBrace,
}exp!(CloseBrace)]).map_err(|mut err| {
3422 if this.token == token::FatArrow {
3423 let sm = this.psess.source_map();
3424 if let Ok(expr_lines) = sm.span_to_lines(expr_span)
3425 && let Ok(arm_start_lines) = sm.span_to_lines(arm_start_span)
3426 && expr_lines.lines.len() == 2
3427 {
3428 if arm_start_lines.lines[0].end_col == expr_lines.lines[0].end_col {
3429 err.span_suggestion_short(
3441 arm_start_span.shrink_to_hi(),
3442 "missing a comma here to end this `match` arm",
3443 ",",
3444 Applicability::MachineApplicable,
3445 );
3446 } else if arm_start_lines.lines[0].end_col + rustc_span::CharPos(1)
3447 == expr_lines.lines[0].end_col
3448 {
3449 let comma_span = arm_start_span
3451 .shrink_to_hi()
3452 .with_hi(arm_start_span.hi() + rustc_span::BytePos(1));
3453 if let Ok(res) = sm.span_to_snippet(comma_span)
3454 && (res == "." || res == "/")
3455 {
3456 err.span_suggestion_short(
3457 comma_span,
3458 "you might have meant to write a `,` to end this `match` arm",
3459 ",",
3460 Applicability::MachineApplicable,
3461 );
3462 }
3463 }
3464 }
3465 } else {
3466 err.span_label(
3467 arrow_span,
3468 "while parsing the `match` arm starting here",
3469 );
3470 }
3471 err
3472 })
3473 }
3474 };
3475
3476 let hi_span = arm_body.as_ref().map_or(span_before_body, |body| body.span);
3477 let arm_span = lo.to(hi_span);
3478
3479 let recover_missing_comma = arm_body.is_some() || pat.could_be_never_pattern();
3493 if recover_missing_comma {
3494 result = result.or_else(|err| {
3495 let mut snapshot = this.create_snapshot_for_diagnostic();
3500 let pattern_follows = snapshot
3501 .parse_pat_no_top_guard(
3502 None,
3503 RecoverComma::Yes,
3504 RecoverColon::Yes,
3505 CommaRecoveryMode::EitherTupleOrPipe,
3506 )
3507 .map_err(|err| err.cancel())
3508 .is_ok();
3509 if pattern_follows && snapshot.check(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::FatArrow,
token_type: crate::parser::token_type::TokenType::FatArrow,
}exp!(FatArrow)) {
3510 err.cancel();
3511 let guar = this.dcx().emit_err(diagnostics::MissingCommaAfterMatchArm {
3512 span: arm_span.shrink_to_hi(),
3513 });
3514 return Ok(Recovered::Yes(guar));
3515 }
3516 Err(err)
3517 });
3518 }
3519 result?;
3520
3521 Ok((
3522 ast::Arm {
3523 attrs,
3524 pat,
3525 guard,
3526 body: arm_body,
3527 span: arm_span,
3528 id: DUMMY_NODE_ID,
3529 is_placeholder: false,
3530 },
3531 Trailing::No,
3532 UsePreAttrPos::No,
3533 ))
3534 })
3535 }
3536
3537 pub(crate) fn eat_metavar_guard(&mut self) -> Option<Box<Guard>> {
3538 self.eat_metavar_seq(MetaVarKind::Guard, |this| {
3539 this.expect_match_arm_guard(ForceCollect::Yes)
3540 })
3541 }
3542
3543 fn parse_match_arm_guard(&mut self) -> PResult<'a, Option<Box<Guard>>> {
3544 if let Some(guard) = self.eat_metavar_guard() {
3545 return Ok(Some(guard));
3546 }
3547
3548 if !self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::If,
token_type: crate::parser::token_type::TokenType::KwIf,
}exp!(If)) {
3549 return Ok(None);
3551 }
3552 self.expect_match_arm_guard_cond(ForceCollect::No).map(Some)
3553 }
3554
3555 pub(crate) fn expect_match_arm_guard(
3556 &mut self,
3557 force_collect: ForceCollect,
3558 ) -> PResult<'a, Box<Guard>> {
3559 if let Some(guard) = self.eat_metavar_guard() {
3560 return Ok(guard);
3561 }
3562
3563 self.expect_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::If,
token_type: crate::parser::token_type::TokenType::KwIf,
}exp!(If))?;
3564 self.expect_match_arm_guard_cond(force_collect)
3565 }
3566
3567 fn expect_match_arm_guard_cond(
3568 &mut self,
3569 force_collect: ForceCollect,
3570 ) -> PResult<'a, Box<Guard>> {
3571 let leading_if_span = self.prev_token.span;
3572
3573 let mut cond = self.parse_match_guard_condition(force_collect)?;
3574 let cond_span = cond.span;
3575
3576 CondChecker::new(self, LetChainsPolicy::AlwaysAllowed).visit_expr(&mut cond);
3577
3578 let guard = Guard { cond: *cond, span_with_leading_if: leading_if_span.to(cond_span) };
3579 Ok(Box::new(guard))
3580 }
3581
3582 fn parse_match_arm_pat_and_guard(&mut self) -> PResult<'a, (Pat, Option<Box<Guard>>)> {
3583 if self.token == token::OpenParen {
3584 let left = self.token.span;
3585 let pat = self.parse_pat_no_top_guard(
3586 None,
3587 RecoverComma::Yes,
3588 RecoverColon::Yes,
3589 CommaRecoveryMode::EitherTupleOrPipe,
3590 )?;
3591 if let ast::PatKind::Paren(subpat) = &pat.kind
3592 && let ast::PatKind::Guard(..) = &subpat.kind
3593 {
3594 let span = pat.span;
3597 let ast::PatKind::Paren(subpat) = pat.kind else { ::core::panicking::panic("internal error: entered unreachable code")unreachable!() };
3598 let ast::PatKind::Guard(_, mut guard) = subpat.kind else { ::core::panicking::panic("internal error: entered unreachable code")unreachable!() };
3599 self.psess.gated_spans.ungate_last(sym::guard_patterns, guard.span());
3600 let mut checker = CondChecker::new(self, LetChainsPolicy::AlwaysAllowed);
3601 checker.visit_expr(&mut guard.cond);
3602
3603 let right = self.prev_token.span;
3604 self.dcx().emit_err(diagnostics::ParenthesesInMatchPat {
3605 span: ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[left, right]))vec![left, right],
3606 sugg: diagnostics::ParenthesesInMatchPatSugg { left, right },
3607 });
3608
3609 if let Some(guar) = checker.found_incorrect_let_chain {
3610 guard.cond = *self.mk_expr_err(guard.span(), guar);
3611 }
3612 Ok((self.mk_pat(span, ast::PatKind::Wild), Some(guard)))
3613 } else {
3614 Ok((pat, self.parse_match_arm_guard()?))
3615 }
3616 } else {
3617 let pat = self.parse_pat_no_top_guard(
3619 None,
3620 RecoverComma::Yes,
3621 RecoverColon::Yes,
3622 CommaRecoveryMode::EitherTupleOrPipe,
3623 )?;
3624 Ok((pat, self.parse_match_arm_guard()?))
3625 }
3626 }
3627
3628 fn parse_match_guard_condition(
3629 &mut self,
3630 force_collect: ForceCollect,
3631 ) -> PResult<'a, Box<Expr>> {
3632 let attrs = self.parse_outer_attributes()?;
3633 let expr = self.collect_tokens(
3634 None,
3635 AttrWrapper::empty(),
3636 force_collect,
3637 |this, _empty_attrs| {
3638 match this.parse_expr_res_after_attrs(
3639 Restrictions::ALLOW_LET | Restrictions::IN_IF_GUARD,
3640 attrs,
3641 ) {
3642 Ok((expr, _)) => Ok((expr, Trailing::No, UsePreAttrPos::No)),
3643 Err(mut err) => {
3644 if this.prev_token == token::OpenBrace {
3645 let sugg_sp = this.prev_token.span.shrink_to_lo();
3646 this.recover_stmt_(SemiColonMode::Ignore, BlockMode::Ignore);
3649 let msg =
3650 "you might have meant to start a match arm after the match guard";
3651 if this.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseBrace,
token_type: crate::parser::token_type::TokenType::CloseBrace,
}exp!(CloseBrace)) {
3652 let applicability = if this.token != token::FatArrow {
3653 Applicability::MachineApplicable
3658 } else {
3659 Applicability::MaybeIncorrect
3660 };
3661 err.span_suggestion_verbose(sugg_sp, msg, "=> ", applicability);
3662 }
3663 }
3664 Err(err)
3665 }
3666 }
3667 },
3668 )?;
3669 Ok(expr)
3670 }
3671
3672 pub(crate) fn is_builtin(&self) -> bool {
3673 self.token.is_keyword(kw::Builtin) && self.look_ahead(1, |t| *t == token::Pound)
3674 }
3675
3676 fn parse_try_block(&mut self, span_lo: Span) -> PResult<'a, Box<Expr>> {
3678 let annotation =
3679 if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::sym::bikeshed,
token_type: crate::parser::token_type::TokenType::SymBikeshed,
}exp!(Bikeshed)) { Some(self.parse_ty()?) } else { None };
3680
3681 let (attrs, body) = self.parse_inner_attrs_and_block(None)?;
3682 if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Catch,
token_type: crate::parser::token_type::TokenType::KwCatch,
}exp!(Catch)) {
3683 Err(self.dcx().create_err(diagnostics::CatchAfterTry { span: self.prev_token.span }))
3684 } else {
3685 let span = span_lo.to(body.span);
3686 let gate_sym =
3687 if annotation.is_none() { sym::try_blocks } else { sym::try_blocks_heterogeneous };
3688 self.psess.gated_spans.gate(gate_sym, span);
3689 Ok(self.mk_expr_with_attrs(span, ExprKind::TryBlock(body, annotation), attrs))
3690 }
3691 }
3692
3693 fn is_do_catch_block(&self) -> bool {
3694 self.token.is_keyword(kw::Do)
3695 && self.is_keyword_ahead(1, &[kw::Catch])
3696 && self.look_ahead(2, |t| *t == token::OpenBrace || t.is_metavar_block())
3697 && !self.restrictions.contains(Restrictions::NO_STRUCT_LITERAL)
3698 }
3699
3700 fn is_do_yeet(&self) -> bool {
3701 self.token.is_keyword(kw::Do) && self.is_keyword_ahead(1, &[kw::Yeet])
3702 }
3703
3704 fn is_try_block(&self) -> bool {
3705 self.token.is_keyword(kw::Try)
3706 && self.look_ahead(1, |t| {
3707 *t == token::OpenBrace
3708 || t.is_metavar_block()
3709 || t.kind == TokenKind::Ident(sym::bikeshed, IdentIsRaw::No)
3710 })
3711 && self.token_uninterpolated_span().at_least_rust_2018()
3712 }
3713
3714 fn parse_gen_block(&mut self) -> PResult<'a, Box<Expr>> {
3716 let lo = self.token.span;
3717 let kind = if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Async,
token_type: crate::parser::token_type::TokenType::KwAsync,
}exp!(Async)) {
3718 if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Gen,
token_type: crate::parser::token_type::TokenType::KwGen,
}exp!(Gen)) { CoroutineKind::AsyncGen } else { CoroutineKind::Async }
3719 } else {
3720 if !self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
kw: rustc_span::symbol::kw::Gen,
token_type: crate::parser::token_type::TokenType::KwGen,
}) {
::core::panicking::panic("assertion failed: self.eat_keyword(exp!(Gen))")
};assert!(self.eat_keyword(exp!(Gen)));
3721 CoroutineKind::Gen
3722 };
3723 if kind.is_gen() {
3724 self.psess.gated_spans.gate(sym::gen_blocks, lo.to(self.prev_token.span));
3725 }
3726 let capture_clause = self.parse_capture_clause()?;
3727 let decl_span = lo.to(self.prev_token.span);
3728 let (attrs, body) = self.parse_inner_attrs_and_block(None)?;
3729 let kind = ExprKind::Gen(capture_clause, body, kind, decl_span);
3730 Ok(self.mk_expr_with_attrs(lo.to(self.prev_token.span), kind, attrs))
3731 }
3732
3733 fn is_gen_block(&self, kw: Symbol, lookahead: usize) -> bool {
3734 self.is_keyword_ahead(lookahead, &[kw])
3735 && ((
3736 self.is_keyword_ahead(lookahead + 1, &[kw::Move, kw::Use])
3738 && self.look_ahead(lookahead + 2, |t| {
3739 *t == token::OpenBrace || t.is_metavar_block()
3740 })
3741 ) || (
3742 self.look_ahead(lookahead + 1, |t| *t == token::OpenBrace || t.is_metavar_block())
3744 ))
3745 }
3746
3747 pub(super) fn is_async_gen_block(&self) -> bool {
3748 self.token.is_keyword(kw::Async) && self.is_gen_block(kw::Gen, 1)
3749 }
3750
3751 fn is_likely_struct_lit(&self) -> bool {
3752 self.look_ahead(1, |t| t.is_ident())
3754 && self.look_ahead(2, |t| t == &token::Comma || t == &token::Colon)
3755 }
3756
3757 fn maybe_parse_struct_expr(
3758 &mut self,
3759 qself: &Option<Box<ast::QSelf>>,
3760 path: &ast::Path,
3761 ) -> Option<PResult<'a, Box<Expr>>> {
3762 let struct_allowed = !self.restrictions.contains(Restrictions::NO_STRUCT_LITERAL);
3763 match (struct_allowed, self.is_likely_struct_lit()) {
3764 (false, false) => None,
3769 (true, _) => {
3770 if let Err(err) = self.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenBrace,
token_type: crate::parser::token_type::TokenType::OpenBrace,
}exp!(OpenBrace)) {
3773 return Some(Err(err));
3774 }
3775 Some(self.parse_expr_struct(qself.clone(), path.clone(), true))
3776 }
3777 (false, true) => {
3778 let snapshot = self.create_snapshot_for_diagnostic();
3782 if let Err(err) = self.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::OpenBrace,
token_type: crate::parser::token_type::TokenType::OpenBrace,
}exp!(OpenBrace)) {
3783 return Some(Err(err));
3784 }
3785 match self.parse_expr_struct(qself.clone(), path.clone(), false) {
3786 Ok(expr) => {
3787 self.dcx().emit_err(diagnostics::StructLiteralNotAllowedHere {
3789 span: expr.span,
3790 sub: diagnostics::StructLiteralNotAllowedHereSugg {
3791 left: path.span.shrink_to_lo(),
3792 right: expr.span.shrink_to_hi(),
3793 },
3794 });
3795 Some(Ok(expr))
3796 }
3797 Err(err) => {
3798 err.cancel();
3801 self.restore_snapshot(snapshot);
3802 None
3803 }
3804 }
3805 }
3806 }
3807 }
3808
3809 fn maybe_recover_bad_struct_literal_path(
3810 &mut self,
3811 is_underscore_entry_point: bool,
3812 ) -> PResult<'a, Option<Box<Expr>>> {
3813 if self.may_recover()
3814 && self.check_noexpect(&token::OpenBrace)
3815 && (!self.restrictions.contains(Restrictions::NO_STRUCT_LITERAL)
3816 && self.is_likely_struct_lit())
3817 {
3818 let span = if is_underscore_entry_point {
3819 self.prev_token.span
3820 } else {
3821 self.token.span.shrink_to_lo()
3822 };
3823
3824 self.bump(); let expr = self.parse_expr_struct(
3826 None,
3827 Path::from_ident(Ident::new(kw::Underscore, span)),
3828 false,
3829 )?;
3830
3831 let guar = if is_underscore_entry_point {
3832 self.dcx().create_err(diagnostics::StructLiteralPlaceholderPath { span }).emit()
3833 } else {
3834 self.dcx()
3835 .create_err(diagnostics::StructLiteralWithoutPathLate {
3836 span: expr.span,
3837 suggestion_span: expr.span.shrink_to_lo(),
3838 })
3839 .emit()
3840 };
3841
3842 Ok(Some(self.mk_expr_err(expr.span, guar)))
3843 } else {
3844 Ok(None)
3845 }
3846 }
3847
3848 pub(super) fn parse_struct_fields(
3849 &mut self,
3850 pth: ast::Path,
3851 recover: bool,
3852 close: ExpTokenPair,
3853 ) -> PResult<
3854 'a,
3855 (
3856 ThinVec<ExprField>,
3857 ast::StructRest,
3858 Option<ErrorGuaranteed>, ),
3860 > {
3861 let mut fields = ThinVec::new();
3862 let mut base = ast::StructRest::None;
3863 let mut recovered_async = None;
3864 let in_if_guard = self.restrictions.contains(Restrictions::IN_IF_GUARD);
3865
3866 let async_block_err = |e: &mut Diag<'_>, span: Span| {
3867 diagnostics::AsyncBlockIn2015 { span }.add_to_diag(e);
3868 diagnostics::HelpUseLatestEdition::new().add_to_diag(e);
3869 };
3870
3871 while self.token != close.tok {
3872 if self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::DotDot,
token_type: crate::parser::token_type::TokenType::DotDot,
}exp!(DotDot)) || self.recover_struct_field_dots(&close.tok) {
3873 let exp_span = self.prev_token.span;
3874 if self.check(close) {
3876 base = ast::StructRest::Rest(self.prev_token.span);
3877 break;
3878 }
3879 match self.parse_expr() {
3880 Ok(e) => base = ast::StructRest::Base(e),
3881 Err(e) if recover => {
3882 e.emit();
3883 self.recover_stmt();
3884 }
3885 Err(e) => return Err(e),
3886 }
3887 self.recover_struct_comma_after_dotdot(exp_span);
3888 break;
3889 }
3890
3891 let peek = self
3893 .token
3894 .ident()
3895 .filter(|(ident, is_raw)| {
3896 (!ident.is_reserved() || #[allow(non_exhaustive_omitted_patterns)] match is_raw {
IdentIsRaw::Yes => true,
_ => false,
}matches!(is_raw, IdentIsRaw::Yes))
3897 && self.look_ahead(1, |tok| *tok == token::Colon)
3898 })
3899 .map(|(ident, _)| ident);
3900
3901 let field_ident = |this: &Self, guar: ErrorGuaranteed| {
3903 peek.map(|ident| {
3904 let span = ident.span;
3905 ExprField {
3906 ident,
3907 span,
3908 expr: this.mk_expr_err(span, guar),
3909 is_shorthand: false,
3910 attrs: AttrVec::new(),
3911 id: DUMMY_NODE_ID,
3912 is_placeholder: false,
3913 }
3914 })
3915 };
3916
3917 let parsed_field = match self.parse_expr_field() {
3918 Ok(f) => Ok(f),
3919 Err(mut e) => {
3920 if pth == kw::Async {
3921 async_block_err(&mut e, pth.span);
3922 } else {
3923 e.span_label(pth.span, "while parsing this struct");
3924 }
3925
3926 if let Some((ident, _)) = self.token.ident()
3927 && !self.token.is_reserved_ident()
3928 && self.look_ahead(1, |t| {
3929 AssocOp::from_token(t).is_some()
3930 || #[allow(non_exhaustive_omitted_patterns)] match t.kind {
token::OpenParen | token::OpenBracket | token::OpenBrace => true,
_ => false,
}matches!(
3931 t.kind,
3932 token::OpenParen | token::OpenBracket | token::OpenBrace
3933 )
3934 || *t == token::Dot
3935 })
3936 {
3937 e.span_suggestion_verbose(
3940 self.token.span.shrink_to_lo(),
3941 "try naming a field",
3942 &::alloc::__export::must_use({
::alloc::fmt::format(format_args!("{0}: ", ident))
})format!("{ident}: ",),
3943 Applicability::MaybeIncorrect,
3944 );
3945 }
3946 if in_if_guard && close.token_type == TokenType::CloseBrace {
3947 return Err(e);
3948 }
3949
3950 if !recover {
3951 return Err(e);
3952 }
3953
3954 let guar = e.emit();
3955 if pth == kw::Async {
3956 recovered_async = Some(guar);
3957 }
3958
3959 base = ast::StructRest::NoneWithError(guar);
3967
3968 if self.token != token::Comma {
3972 self.recover_stmt_(SemiColonMode::Comma, BlockMode::Ignore);
3973 if self.token != token::Comma {
3974 break;
3975 }
3976 }
3977
3978 Err(guar)
3979 }
3980 };
3981
3982 let is_shorthand = parsed_field.as_ref().is_ok_and(|f| f.is_shorthand);
3983 self.check_or_expected(!is_shorthand, TokenType::Colon);
3986
3987 match self.expect_one_of(&[crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Comma,
token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma)], &[close]) {
3988 Ok(_) => {
3989 if let Ok(f) = parsed_field.or_else(|guar| field_ident(self, guar).ok_or(guar))
3990 {
3991 fields.push(f);
3993 }
3994 }
3995 Err(mut e) => {
3996 if pth == kw::Async {
3997 async_block_err(&mut e, pth.span);
3998 } else {
3999 e.span_label(pth.span, "while parsing this struct");
4000 if peek.is_some() {
4001 e.span_suggestion(
4002 self.prev_token.span.shrink_to_hi(),
4003 "try adding a comma",
4004 ",",
4005 Applicability::MachineApplicable,
4006 );
4007 }
4008 }
4009 if !recover {
4010 return Err(e);
4011 }
4012 let guar = e.emit();
4013 if pth == kw::Async {
4014 recovered_async = Some(guar);
4015 } else if let Some(f) = field_ident(self, guar) {
4016 fields.push(f);
4017 }
4018
4019 base = ast::StructRest::NoneWithError(guar);
4021
4022 self.recover_stmt_(SemiColonMode::Comma, BlockMode::Ignore);
4023 let _ = self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::Comma,
token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma));
4024 }
4025 }
4026 }
4027 Ok((fields, base, recovered_async))
4028 }
4029
4030 pub(super) fn parse_expr_struct(
4032 &mut self,
4033 qself: Option<Box<ast::QSelf>>,
4034 pth: ast::Path,
4035 recover: bool,
4036 ) -> PResult<'a, Box<Expr>> {
4037 let lo = pth.span;
4038 let (fields, base, recovered_async) =
4039 self.parse_struct_fields(pth.clone(), recover, crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseBrace,
token_type: crate::parser::token_type::TokenType::CloseBrace,
}exp!(CloseBrace))?;
4040 let span = lo.to(self.token.span);
4041 self.expect(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::CloseBrace,
token_type: crate::parser::token_type::TokenType::CloseBrace,
}exp!(CloseBrace))?;
4042 let expr = if let Some(guar) = recovered_async {
4043 ExprKind::Err(guar)
4044 } else {
4045 ExprKind::Struct(Box::new(ast::StructExpr { qself, path: pth, fields, rest: base }))
4046 };
4047 Ok(self.mk_expr(span, expr))
4048 }
4049
4050 fn recover_struct_comma_after_dotdot(&mut self, span: Span) {
4051 if self.token != token::Comma {
4052 return;
4053 }
4054 self.dcx().emit_err(diagnostics::CommaAfterBaseStruct {
4055 span: span.to(self.prev_token.span),
4056 comma: self.token.span,
4057 });
4058 self.recover_stmt();
4059 }
4060
4061 fn recover_struct_field_dots(&mut self, close: &TokenKind) -> bool {
4062 if !self.look_ahead(1, |t| t == close) && self.eat(crate::parser::token_type::ExpTokenPair {
tok: rustc_ast::token::DotDotDot,
token_type: crate::parser::token_type::TokenType::DotDotDot,
}exp!(DotDotDot)) {
4063 let span = self.prev_token.span;
4065 self.dcx().emit_err(diagnostics::MissingDotDot { token_span: span, sugg_span: span });
4066 return true;
4067 }
4068 false
4069 }
4070
4071 fn recover_ident_into_label(&mut self, ident: Ident) -> Label {
4073 let label = ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("\'{0}", ident.name))
})format!("'{}", ident.name);
4076 let ident = Ident::new(Symbol::intern(&label), ident.span);
4077
4078 self.dcx().emit_err(diagnostics::ExpectedLabelFoundIdent {
4079 span: ident.span,
4080 start: ident.span.shrink_to_lo(),
4081 });
4082
4083 Label { ident }
4084 }
4085
4086 fn parse_expr_field(&mut self) -> PResult<'a, ExprField> {
4088 let attrs = self.parse_outer_attributes()?;
4089 self.recover_vcs_conflict_marker();
4090 self.collect_tokens(None, attrs, ForceCollect::No, |this, attrs| {
4091 let lo = this.token.span;
4092
4093 let is_shorthand = !this.look_ahead(1, |t| t == &token::Colon || t == &token::Eq);
4095 let is_wrong = this.token.is_non_reserved_ident()
4097 && !this.look_ahead(1, |t| {
4098 t == &token::Colon
4099 || t == &token::Eq
4100 || t == &token::Comma
4101 || t == &token::CloseBrace
4102 || t == &token::CloseParen
4103 });
4104 if is_wrong {
4105 return Err(this.dcx().create_err(diagnostics::ExpectedStructField {
4106 span: this.look_ahead(1, |t| t.span),
4107 ident_span: this.token.span,
4108 token: pprust::token_to_string(&this.look_ahead(1, |t| *t)),
4109 }));
4110 }
4111 let (ident, expr) = if is_shorthand {
4112 let ident = this.parse_ident_common(false)?;
4114 let path = ast::Path::from_ident(ident);
4115 (ident, this.mk_expr(ident.span, ExprKind::Path(None, path)))
4116 } else {
4117 let ident = this.parse_field_name()?;
4118 this.error_on_eq_field_init(ident);
4119 this.bump(); (ident, this.parse_expr()?)
4121 };
4122
4123 Ok((
4124 ast::ExprField {
4125 ident,
4126 span: lo.to(expr.span),
4127 expr,
4128 is_shorthand,
4129 attrs,
4130 id: DUMMY_NODE_ID,
4131 is_placeholder: false,
4132 },
4133 Trailing::from(this.token == token::Comma),
4134 UsePreAttrPos::No,
4135 ))
4136 })
4137 }
4138
4139 fn error_on_eq_field_init(&self, field_name: Ident) {
4142 if self.token != token::Eq {
4143 return;
4144 }
4145
4146 self.dcx().emit_err(diagnostics::EqFieldInit {
4147 span: self.token.span,
4148 eq: field_name.span.shrink_to_hi().to(self.token.span),
4149 });
4150 }
4151
4152 fn err_dotdotdot_syntax(&self, span: Span) {
4153 self.dcx().emit_err(diagnostics::DotDotDot { span });
4154 }
4155
4156 fn err_larrow_operator(&self, span: Span) {
4157 self.dcx().emit_err(diagnostics::LeftArrowOperator { span });
4158 }
4159
4160 fn mk_assign_op(&self, assign_op: AssignOp, lhs: Box<Expr>, rhs: Box<Expr>) -> ExprKind {
4161 ExprKind::AssignOp(assign_op, lhs, rhs)
4162 }
4163
4164 fn mk_range(
4165 &mut self,
4166 start: Option<Box<Expr>>,
4167 end: Option<Box<Expr>>,
4168 limits: RangeLimits,
4169 ) -> ExprKind {
4170 if end.is_none() && limits == RangeLimits::Closed {
4171 let guar = self.inclusive_range_with_incorrect_end();
4172 ExprKind::Err(guar)
4173 } else {
4174 ExprKind::Range(start, end, limits)
4175 }
4176 }
4177
4178 fn mk_unary(&self, unop: UnOp, expr: Box<Expr>) -> ExprKind {
4179 ExprKind::Unary(unop, expr)
4180 }
4181
4182 fn mk_binary(&self, binop: BinOp, lhs: Box<Expr>, rhs: Box<Expr>) -> ExprKind {
4183 ExprKind::Binary(binop, lhs, rhs)
4184 }
4185
4186 fn mk_index(&self, expr: Box<Expr>, idx: Box<Expr>, brackets_span: Span) -> ExprKind {
4187 ExprKind::Index(expr, idx, brackets_span)
4188 }
4189
4190 fn mk_call(&self, f: Box<Expr>, args: ThinVec<Box<Expr>>) -> ExprKind {
4191 ExprKind::Call(f, args)
4192 }
4193
4194 fn mk_await_expr(&mut self, self_arg: Box<Expr>, lo: Span) -> Box<Expr> {
4195 let span = lo.to(self.prev_token.span);
4196 let await_expr = self.mk_expr(span, ExprKind::Await(self_arg, self.prev_token.span));
4197 self.recover_from_await_method_call();
4198 await_expr
4199 }
4200
4201 fn mk_use_expr(&mut self, self_arg: Box<Expr>, lo: Span) -> Box<Expr> {
4202 let span = lo.to(self.prev_token.span);
4203 let use_expr = self.mk_expr(span, ExprKind::Use(self_arg, self.prev_token.span));
4204 self.recover_from_use();
4205 use_expr
4206 }
4207
4208 pub(crate) fn mk_expr_with_attrs(
4209 &self,
4210 span: Span,
4211 kind: ExprKind,
4212 attrs: AttrVec,
4213 ) -> Box<Expr> {
4214 Box::new(Expr { kind, span, attrs, id: DUMMY_NODE_ID, tokens: None })
4215 }
4216
4217 pub(crate) fn mk_expr(&self, span: Span, kind: ExprKind) -> Box<Expr> {
4218 self.mk_expr_with_attrs(span, kind, AttrVec::new())
4219 }
4220
4221 pub(super) fn mk_expr_err(&self, span: Span, guar: ErrorGuaranteed) -> Box<Expr> {
4222 self.mk_expr(span, ExprKind::Err(guar))
4223 }
4224
4225 pub(crate) fn mk_unit_expr(&self, span: Span) -> Box<Expr> {
4226 self.mk_expr(span, ExprKind::Tup(Default::default()))
4227 }
4228
4229 pub(crate) fn mk_closure_expr(&self, span: Span, body: Box<Expr>) -> Box<Expr> {
4230 self.mk_expr(
4231 span,
4232 ast::ExprKind::Closure(Box::new(ast::Closure {
4233 binder: rustc_ast::ClosureBinder::NotPresent,
4234 constness: rustc_ast::Const::No,
4235 movability: rustc_ast::Movability::Movable,
4236 capture_clause: rustc_ast::CaptureBy::Ref,
4237 coroutine_marker: None,
4238 fn_decl: Box::new(rustc_ast::FnDecl {
4239 inputs: Default::default(),
4240 output: rustc_ast::FnRetTy::Default(span),
4241 }),
4242 fn_arg_span: span,
4243 fn_decl_span: span,
4244 body,
4245 })),
4246 )
4247 }
4248
4249 fn mk_expr_sp(&self, lhs: &Box<Expr>, lhs_span: Span, op_span: Span, rhs_span: Span) -> Span {
4252 lhs.attrs
4253 .iter()
4254 .find(|a| a.style == AttrStyle::Outer)
4255 .map_or(lhs_span, |a| a.span)
4256 .to(op_span)
4257 .to(rhs_span)
4258 }
4259
4260 fn collect_tokens_for_expr(
4261 &mut self,
4262 attrs: AttrWrapper,
4263 f: impl FnOnce(&mut Self, ast::AttrVec) -> PResult<'a, Box<Expr>>,
4264 ) -> PResult<'a, Box<Expr>> {
4265 self.collect_tokens(None, attrs, ForceCollect::No, |this, attrs| {
4266 let res = f(this, attrs)?;
4267 let trailing = Trailing::from(
4268 this.restrictions.contains(Restrictions::STMT_EXPR)
4269 && this.token == token::Semi
4270 || this.token == token::Comma,
4274 );
4275 Ok((res, trailing, UsePreAttrPos::No))
4276 })
4277 }
4278}
4279
4280pub(crate) fn could_be_unclosed_char_literal(ident: Ident) -> bool {
4283 ident.name.as_str().starts_with('\'')
4284 && unescape_char(ident.without_first_quote().name.as_str()).is_ok()
4285}
4286
4287pub enum LetChainsPolicy {
4290 AlwaysAllowed,
4291 EditionDependent { current_edition: Edition },
4292}
4293
4294struct CondChecker<'a> {
4304 parser: &'a Parser<'a>,
4305 let_chains_policy: LetChainsPolicy,
4306 depth: u32,
4307 forbid_let_reason: Option<diagnostics::ForbiddenLetReason>,
4308 missing_let: Option<diagnostics::MaybeMissingLet>,
4309 comparison: Option<diagnostics::MaybeComparison>,
4310 found_incorrect_let_chain: Option<ErrorGuaranteed>,
4311}
4312
4313impl<'a> CondChecker<'a> {
4314 fn new(parser: &'a Parser<'a>, let_chains_policy: LetChainsPolicy) -> Self {
4315 CondChecker {
4316 parser,
4317 forbid_let_reason: None,
4318 missing_let: None,
4319 comparison: None,
4320 let_chains_policy,
4321 found_incorrect_let_chain: None,
4322 depth: 0,
4323 }
4324 }
4325}
4326
4327impl MutVisitor for CondChecker<'_> {
4328 fn visit_expr(&mut self, e: &mut Expr) {
4329 self.depth += 1;
4330
4331 let span = e.span;
4332 match e.kind {
4333 ExprKind::Let(_, _, _, ref mut recovered @ Recovered::No) => {
4334 if let Some(reason) = self.forbid_let_reason {
4335 let error = match reason {
4336 diagnostics::ForbiddenLetReason::NotSupportedOr(or_span) => {
4337 self.parser.dcx().emit_err(diagnostics::OrInLetChain { span: or_span })
4338 }
4339 _ => {
4340 let guar = self.parser.dcx().emit_err(
4341 diagnostics::ExpectedExpressionFoundLet {
4342 span,
4343 reason,
4344 missing_let: self.missing_let,
4345 comparison: self.comparison,
4346 },
4347 );
4348 if let Some(_) = self.missing_let {
4349 self.found_incorrect_let_chain = Some(guar);
4350 }
4351 guar
4352 }
4353 };
4354 *recovered = Recovered::Yes(error);
4355 } else if self.depth > 1 {
4356 match self.let_chains_policy {
4358 LetChainsPolicy::AlwaysAllowed => (),
4359 LetChainsPolicy::EditionDependent { current_edition } => {
4360 if !current_edition.at_least_rust_2024() || !span.at_least_rust_2024() {
4361 self.parser.dcx().emit_err(diagnostics::LetChainPre2024 { span });
4362 }
4363 }
4364 }
4365 }
4366 }
4367 ExprKind::Binary(Spanned { node: BinOpKind::And, .. }, _, _) => {
4368 mut_visit::walk_expr(self, e);
4369 }
4370 ExprKind::Binary(Spanned { node: BinOpKind::Or, span: or_span }, _, _)
4371 if let None | Some(diagnostics::ForbiddenLetReason::NotSupportedOr(_)) =
4372 self.forbid_let_reason =>
4373 {
4374 let forbid_let_reason = self.forbid_let_reason;
4375 self.forbid_let_reason =
4376 Some(diagnostics::ForbiddenLetReason::NotSupportedOr(or_span));
4377 mut_visit::walk_expr(self, e);
4378 self.forbid_let_reason = forbid_let_reason;
4379 }
4380 ExprKind::Paren(ref inner)
4381 if let None | Some(diagnostics::ForbiddenLetReason::NotSupportedParentheses(_)) =
4382 self.forbid_let_reason =>
4383 {
4384 let forbid_let_reason = self.forbid_let_reason;
4385 self.forbid_let_reason =
4386 Some(diagnostics::ForbiddenLetReason::NotSupportedParentheses(inner.span));
4387 mut_visit::walk_expr(self, e);
4388 self.forbid_let_reason = forbid_let_reason;
4389 }
4390 ExprKind::Assign(ref lhs, ref rhs, span) => {
4391 if let ExprKind::Call(_, _) = &lhs.kind {
4392 fn get_path_from_rhs(e: &Expr) -> Option<(u32, &Path)> {
4393 fn inner(e: &Expr, depth: u32) -> Option<(u32, &Path)> {
4394 match &e.kind {
4395 ExprKind::Binary(_, lhs, _) => inner(lhs, depth + 1),
4396 ExprKind::Path(_, path) => Some((depth, path)),
4397 _ => None,
4398 }
4399 }
4400
4401 inner(e, 0)
4402 }
4403
4404 if let Some((depth, path)) = get_path_from_rhs(rhs) {
4405 fn find_let_some(expr: &Expr) -> Option<&Expr> {
4408 match &expr.kind {
4409 ExprKind::Let(..) => Some(expr),
4410
4411 ExprKind::Binary(op, lhs, rhs) if op.node == BinOpKind::And => {
4412 find_let_some(lhs).or_else(|| find_let_some(rhs))
4413 }
4414
4415 _ => None,
4416 }
4417 }
4418
4419 let expr_span = lhs.span.to(path.span);
4420
4421 if let Some(later_rhs) = find_let_some(rhs)
4422 && depth > 0
4423 {
4424 let guar =
4425 self.parser.dcx().emit_err(diagnostics::LetChainMissingLet {
4426 span: lhs.span,
4427 label_span: expr_span,
4428 rhs_span: later_rhs.span,
4429 sug_span: lhs.span.shrink_to_lo(),
4430 });
4431
4432 self.found_incorrect_let_chain = Some(guar);
4433 }
4434 }
4435 }
4436
4437 let forbid_let_reason = self.forbid_let_reason;
4438 self.forbid_let_reason = Some(diagnostics::ForbiddenLetReason::OtherForbidden);
4439 let missing_let = self.missing_let;
4440 if let ExprKind::Binary(_, _, rhs) = &lhs.kind
4441 && let ExprKind::Path(_, _)
4442 | ExprKind::Struct(_)
4443 | ExprKind::Call(_, _)
4444 | ExprKind::Array(_) = rhs.kind
4445 {
4446 self.missing_let =
4447 Some(diagnostics::MaybeMissingLet { span: rhs.span.shrink_to_lo() });
4448 }
4449 let comparison = self.comparison;
4450 self.comparison = Some(diagnostics::MaybeComparison { span: span.shrink_to_hi() });
4451 mut_visit::walk_expr(self, e);
4452 self.forbid_let_reason = forbid_let_reason;
4453 self.missing_let = missing_let;
4454 self.comparison = comparison;
4455 }
4456 ExprKind::Unary(_, _)
4457 | ExprKind::Await(_, _)
4458 | ExprKind::Move(_, _)
4459 | ExprKind::Use(_, _)
4460 | ExprKind::AssignOp(_, _, _)
4461 | ExprKind::Range(_, _, _)
4462 | ExprKind::Try(_)
4463 | ExprKind::AddrOf(_, _, _)
4464 | ExprKind::Binary(_, _, _)
4465 | ExprKind::Field(_, _)
4466 | ExprKind::Index(_, _, _)
4467 | ExprKind::Call(_, _)
4468 | ExprKind::MethodCall(_)
4469 | ExprKind::Tup(_)
4470 | ExprKind::Paren(_) => {
4471 let forbid_let_reason = self.forbid_let_reason;
4472 self.forbid_let_reason = Some(diagnostics::ForbiddenLetReason::OtherForbidden);
4473 mut_visit::walk_expr(self, e);
4474 self.forbid_let_reason = forbid_let_reason;
4475 }
4476 ExprKind::Cast(ref mut op, _)
4477 | ExprKind::Type(ref mut op, _)
4478 | ExprKind::UnsafeBinderCast(_, ref mut op, _) => {
4479 let forbid_let_reason = self.forbid_let_reason;
4480 self.forbid_let_reason = Some(diagnostics::ForbiddenLetReason::OtherForbidden);
4481 self.visit_expr(op);
4482 self.forbid_let_reason = forbid_let_reason;
4483 }
4484 ExprKind::Let(_, _, _, Recovered::Yes(_))
4485 | ExprKind::Array(_)
4486 | ExprKind::ConstBlock(_)
4487 | ExprKind::Lit(_)
4488 | ExprKind::If(_, _, _)
4489 | ExprKind::While(_, _, _)
4490 | ExprKind::ForLoop { .. }
4491 | ExprKind::Loop(_, _, _)
4492 | ExprKind::Match(_, _, _)
4493 | ExprKind::Closure(_)
4494 | ExprKind::Block(_, _)
4495 | ExprKind::Gen(_, _, _, _)
4496 | ExprKind::TryBlock(_, _)
4497 | ExprKind::Underscore
4498 | ExprKind::Path(_, _)
4499 | ExprKind::Break(_, _)
4500 | ExprKind::Continue(_)
4501 | ExprKind::Ret(_)
4502 | ExprKind::InlineAsm(_)
4503 | ExprKind::OffsetOf(_, _)
4504 | ExprKind::MacCall(_)
4505 | ExprKind::Struct(_)
4506 | ExprKind::Repeat(_, _)
4507 | ExprKind::Yield(_)
4508 | ExprKind::Yeet(_)
4509 | ExprKind::Become(_)
4510 | ExprKind::IncludedBytes(_)
4511 | ExprKind::FormatArgs(_)
4512 | ExprKind::Err(_)
4513 | ExprKind::DirectConstArg(_)
4514 | ExprKind::Dummy => {
4515 }
4517 }
4518 self.depth -= 1;
4519 }
4520}