]> git.lizzy.rs Git - rust.git/blob - compiler/rustc_parse/src/parser/stmt.rs
Rollup merge of #106783 - WaffleLapkin:break-my-ident, r=wesleywiser
[rust.git] / compiler / rustc_parse / src / parser / stmt.rs
1 use super::attr::InnerAttrForbiddenReason;
2 use super::diagnostics::AttemptLocalParseRecovery;
3 use super::expr::LhsExpr;
4 use super::pat::RecoverComma;
5 use super::path::PathStyle;
6 use super::TrailingToken;
7 use super::{
8     AttrWrapper, BlockMode, FnParseMode, ForceCollect, Parser, Restrictions, SemiColonMode,
9 };
10 use crate::errors::{
11     AssignmentElseNotAllowed, CompoundAssignmentExpressionInLet, ConstLetMutuallyExclusive,
12     DocCommentDoesNotDocumentAnything, ExpectedStatementAfterOuterAttr, InvalidCurlyInLetElse,
13     InvalidExpressionInLetElse, InvalidIdentiferStartsWithNumber, InvalidVariableDeclaration,
14     InvalidVariableDeclarationSub, WrapExpressionInParentheses,
15 };
16 use crate::maybe_whole;
17
18 use rustc_ast as ast;
19 use rustc_ast::ptr::P;
20 use rustc_ast::token::{self, Delimiter, TokenKind};
21 use rustc_ast::util::classify;
22 use rustc_ast::{AttrStyle, AttrVec, LocalKind, MacCall, MacCallStmt, MacStmtStyle};
23 use rustc_ast::{Block, BlockCheckMode, Expr, ExprKind, HasAttrs, Local, Stmt};
24 use rustc_ast::{StmtKind, DUMMY_NODE_ID};
25 use rustc_errors::{Applicability, DiagnosticBuilder, ErrorGuaranteed, PResult};
26 use rustc_span::source_map::{BytePos, Span};
27 use rustc_span::symbol::{kw, sym};
28
29 use std::mem;
30
31 impl<'a> Parser<'a> {
32     /// Parses a statement. This stops just before trailing semicolons on everything but items.
33     /// e.g., a `StmtKind::Semi` parses to a `StmtKind::Expr`, leaving the trailing `;` unconsumed.
34     // Public for rustfmt usage.
35     pub fn parse_stmt(&mut self, force_collect: ForceCollect) -> PResult<'a, Option<Stmt>> {
36         Ok(self.parse_stmt_without_recovery(false, force_collect).unwrap_or_else(|mut e| {
37             e.emit();
38             self.recover_stmt_(SemiColonMode::Break, BlockMode::Ignore);
39             None
40         }))
41     }
42
43     /// If `force_collect` is [`ForceCollect::Yes`], forces collection of tokens regardless of whether
44     /// or not we have attributes
45     pub(crate) fn parse_stmt_without_recovery(
46         &mut self,
47         capture_semi: bool,
48         force_collect: ForceCollect,
49     ) -> PResult<'a, Option<Stmt>> {
50         let attrs = self.parse_outer_attributes()?;
51         let lo = self.token.span;
52
53         // Don't use `maybe_whole` so that we have precise control
54         // over when we bump the parser
55         if let token::Interpolated(nt) = &self.token.kind && let token::NtStmt(stmt) = &**nt {
56             let mut stmt = stmt.clone();
57             self.bump();
58             stmt.visit_attrs(|stmt_attrs| {
59                 attrs.prepend_to_nt_inner(stmt_attrs);
60             });
61             return Ok(Some(stmt.into_inner()));
62         }
63
64         if self.token.is_keyword(kw::Mut) && self.is_keyword_ahead(1, &[kw::Let]) {
65             self.bump();
66             let mut_let_span = lo.to(self.token.span);
67             self.sess.emit_err(InvalidVariableDeclaration {
68                 span: mut_let_span,
69                 sub: InvalidVariableDeclarationSub::SwitchMutLetOrder(mut_let_span),
70             });
71         }
72
73         Ok(Some(if self.token.is_keyword(kw::Let) {
74             self.parse_local_mk(lo, attrs, capture_semi, force_collect)?
75         } else if self.is_kw_followed_by_ident(kw::Mut) && self.may_recover() {
76             self.recover_stmt_local_after_let(lo, attrs, InvalidVariableDeclarationSub::MissingLet)?
77         } else if self.is_kw_followed_by_ident(kw::Auto) && self.may_recover() {
78             self.bump(); // `auto`
79             self.recover_stmt_local_after_let(
80                 lo,
81                 attrs,
82                 InvalidVariableDeclarationSub::UseLetNotAuto,
83             )?
84         } else if self.is_kw_followed_by_ident(sym::var) && self.may_recover() {
85             self.bump(); // `var`
86             self.recover_stmt_local_after_let(
87                 lo,
88                 attrs,
89                 InvalidVariableDeclarationSub::UseLetNotVar,
90             )?
91         } else if self.check_path() && !self.token.is_qpath_start() && !self.is_path_start_item() {
92             // We have avoided contextual keywords like `union`, items with `crate` visibility,
93             // or `auto trait` items. We aim to parse an arbitrary path `a::b` but not something
94             // that starts like a path (1 token), but it fact not a path.
95             // Also, we avoid stealing syntax from `parse_item_`.
96             if force_collect == ForceCollect::Yes {
97                 self.collect_tokens_no_attrs(|this| this.parse_stmt_path_start(lo, attrs))
98             } else {
99                 self.parse_stmt_path_start(lo, attrs)
100             }?
101         } else if let Some(item) = self.parse_item_common(
102             attrs.clone(),
103             false,
104             true,
105             FnParseMode { req_name: |_| true, req_body: true },
106             force_collect,
107         )? {
108             // FIXME: Bad copy of attrs
109             self.mk_stmt(lo.to(item.span), StmtKind::Item(P(item)))
110         } else if self.eat(&token::Semi) {
111             // Do not attempt to parse an expression if we're done here.
112             self.error_outer_attrs(attrs);
113             self.mk_stmt(lo, StmtKind::Empty)
114         } else if self.token != token::CloseDelim(Delimiter::Brace) {
115             // Remainder are line-expr stmts.
116             let e = if force_collect == ForceCollect::Yes {
117                 self.collect_tokens_no_attrs(|this| {
118                     this.parse_expr_res(Restrictions::STMT_EXPR, Some(attrs))
119                 })
120             } else {
121                 self.parse_expr_res(Restrictions::STMT_EXPR, Some(attrs))
122             }?;
123             if matches!(e.kind, ExprKind::Assign(..)) && self.eat_keyword(kw::Else) {
124                 let bl = self.parse_block()?;
125                 // Destructuring assignment ... else.
126                 // This is not allowed, but point it out in a nice way.
127                 self.sess.emit_err(AssignmentElseNotAllowed { span: e.span.to(bl.span) });
128             }
129             self.mk_stmt(lo.to(e.span), StmtKind::Expr(e))
130         } else {
131             self.error_outer_attrs(attrs);
132             return Ok(None);
133         }))
134     }
135
136     fn parse_stmt_path_start(&mut self, lo: Span, attrs: AttrWrapper) -> PResult<'a, Stmt> {
137         let stmt = self.collect_tokens_trailing_token(attrs, ForceCollect::No, |this, attrs| {
138             let path = this.parse_path(PathStyle::Expr)?;
139
140             if this.eat(&token::Not) {
141                 let stmt_mac = this.parse_stmt_mac(lo, attrs, path)?;
142                 if this.token == token::Semi {
143                     return Ok((stmt_mac, TrailingToken::Semi));
144                 } else {
145                     return Ok((stmt_mac, TrailingToken::None));
146                 }
147             }
148
149             let expr = if this.eat(&token::OpenDelim(Delimiter::Brace)) {
150                 this.parse_struct_expr(None, path, true)?
151             } else {
152                 let hi = this.prev_token.span;
153                 this.mk_expr(lo.to(hi), ExprKind::Path(None, path))
154             };
155
156             let expr = this.with_res(Restrictions::STMT_EXPR, |this| {
157                 this.parse_dot_or_call_expr_with(expr, lo, attrs)
158             })?;
159             // `DUMMY_SP` will get overwritten later in this function
160             Ok((this.mk_stmt(rustc_span::DUMMY_SP, StmtKind::Expr(expr)), TrailingToken::None))
161         })?;
162
163         if let StmtKind::Expr(expr) = stmt.kind {
164             // Perform this outside of the `collect_tokens_trailing_token` closure,
165             // since our outer attributes do not apply to this part of the expression
166             let expr = self.with_res(Restrictions::STMT_EXPR, |this| {
167                 this.parse_assoc_expr_with(
168                     0,
169                     LhsExpr::AlreadyParsed { expr, starts_statement: true },
170                 )
171             })?;
172             Ok(self.mk_stmt(lo.to(self.prev_token.span), StmtKind::Expr(expr)))
173         } else {
174             Ok(stmt)
175         }
176     }
177
178     /// Parses a statement macro `mac!(args)` provided a `path` representing `mac`.
179     /// At this point, the `!` token after the path has already been eaten.
180     fn parse_stmt_mac(&mut self, lo: Span, attrs: AttrVec, path: ast::Path) -> PResult<'a, Stmt> {
181         let args = self.parse_delim_args()?;
182         let delim = args.delim.to_token();
183         let hi = self.prev_token.span;
184
185         let style = match delim {
186             Delimiter::Brace => MacStmtStyle::Braces,
187             _ => MacStmtStyle::NoBraces,
188         };
189
190         let mac = P(MacCall { path, args, prior_type_ascription: self.last_type_ascription });
191
192         let kind = if (style == MacStmtStyle::Braces
193             && self.token != token::Dot
194             && self.token != token::Question)
195             || self.token == token::Semi
196             || self.token == token::Eof
197         {
198             StmtKind::MacCall(P(MacCallStmt { mac, style, attrs, tokens: None }))
199         } else {
200             // Since none of the above applied, this is an expression statement macro.
201             let e = self.mk_expr(lo.to(hi), ExprKind::MacCall(mac));
202             let e = self.maybe_recover_from_bad_qpath(e)?;
203             let e = self.parse_dot_or_call_expr_with(e, lo, attrs)?;
204             let e = self.parse_assoc_expr_with(
205                 0,
206                 LhsExpr::AlreadyParsed { expr: e, starts_statement: false },
207             )?;
208             StmtKind::Expr(e)
209         };
210         Ok(self.mk_stmt(lo.to(hi), kind))
211     }
212
213     /// Error on outer attributes in this context.
214     /// Also error if the previous token was a doc comment.
215     fn error_outer_attrs(&self, attrs: AttrWrapper) {
216         if !attrs.is_empty()
217         && let attrs = attrs.take_for_recovery(self.sess)
218         && let attrs @ [.., last] = &*attrs {
219             if last.is_doc_comment() {
220                 self.sess.emit_err(DocCommentDoesNotDocumentAnything {
221                     span: last.span,
222                     missing_comma: None,
223                 });
224             } else if attrs.iter().any(|a| a.style == AttrStyle::Outer) {
225                 self.sess.emit_err(ExpectedStatementAfterOuterAttr { span: last.span });
226             }
227         }
228     }
229
230     fn recover_stmt_local_after_let(
231         &mut self,
232         lo: Span,
233         attrs: AttrWrapper,
234         subdiagnostic: fn(Span) -> InvalidVariableDeclarationSub,
235     ) -> PResult<'a, Stmt> {
236         let stmt =
237             self.collect_tokens_trailing_token(attrs, ForceCollect::Yes, |this, attrs| {
238                 let local = this.parse_local(attrs)?;
239                 // FIXME - maybe capture semicolon in recovery?
240                 Ok((
241                     this.mk_stmt(lo.to(this.prev_token.span), StmtKind::Local(local)),
242                     TrailingToken::None,
243                 ))
244             })?;
245         self.sess.emit_err(InvalidVariableDeclaration { span: lo, sub: subdiagnostic(lo) });
246         Ok(stmt)
247     }
248
249     fn parse_local_mk(
250         &mut self,
251         lo: Span,
252         attrs: AttrWrapper,
253         capture_semi: bool,
254         force_collect: ForceCollect,
255     ) -> PResult<'a, Stmt> {
256         self.collect_tokens_trailing_token(attrs, force_collect, |this, attrs| {
257             this.expect_keyword(kw::Let)?;
258             let local = this.parse_local(attrs)?;
259             let trailing = if capture_semi && this.token.kind == token::Semi {
260                 TrailingToken::Semi
261             } else {
262                 TrailingToken::None
263             };
264             Ok((this.mk_stmt(lo.to(this.prev_token.span), StmtKind::Local(local)), trailing))
265         })
266     }
267
268     /// Parses a local variable declaration.
269     fn parse_local(&mut self, attrs: AttrVec) -> PResult<'a, P<Local>> {
270         let lo = self.prev_token.span;
271
272         if self.token.is_keyword(kw::Const) && self.look_ahead(1, |t| t.is_ident()) {
273             self.sess.emit_err(ConstLetMutuallyExclusive { span: lo.to(self.token.span) });
274             self.bump();
275         }
276
277         self.report_invalid_identifier_error()?;
278         let (pat, colon) = self.parse_pat_before_ty(None, RecoverComma::Yes, "`let` bindings")?;
279
280         let (err, ty) = if colon {
281             // Save the state of the parser before parsing type normally, in case there is a `:`
282             // instead of an `=` typo.
283             let parser_snapshot_before_type = self.clone();
284             let colon_sp = self.prev_token.span;
285             match self.parse_ty() {
286                 Ok(ty) => (None, Some(ty)),
287                 Err(mut err) => {
288                     if let Ok(snip) = self.span_to_snippet(pat.span) {
289                         err.span_label(pat.span, format!("while parsing the type for `{}`", snip));
290                     }
291                     // we use noexpect here because we don't actually expect Eq to be here
292                     // but we are still checking for it in order to be able to handle it if
293                     // it is there
294                     let err = if self.check_noexpect(&token::Eq) {
295                         err.emit();
296                         None
297                     } else {
298                         // Rewind to before attempting to parse the type and continue parsing.
299                         let parser_snapshot_after_type =
300                             mem::replace(self, parser_snapshot_before_type);
301                         Some((parser_snapshot_after_type, colon_sp, err))
302                     };
303                     (err, None)
304                 }
305             }
306         } else {
307             (None, None)
308         };
309         let init = match (self.parse_initializer(err.is_some()), err) {
310             (Ok(init), None) => {
311                 // init parsed, ty parsed
312                 init
313             }
314             (Ok(init), Some((_, colon_sp, mut err))) => {
315                 // init parsed, ty error
316                 // Could parse the type as if it were the initializer, it is likely there was a
317                 // typo in the code: `:` instead of `=`. Add suggestion and emit the error.
318                 err.span_suggestion_short(
319                     colon_sp,
320                     "use `=` if you meant to assign",
321                     " =",
322                     Applicability::MachineApplicable,
323                 );
324                 err.emit();
325                 // As this was parsed successfully, continue as if the code has been fixed for the
326                 // rest of the file. It will still fail due to the emitted error, but we avoid
327                 // extra noise.
328                 init
329             }
330             (Err(init_err), Some((snapshot, _, ty_err))) => {
331                 // init error, ty error
332                 init_err.cancel();
333                 // Couldn't parse the type nor the initializer, only raise the type error and
334                 // return to the parser state before parsing the type as the initializer.
335                 // let x: <parse_error>;
336                 *self = snapshot;
337                 return Err(ty_err);
338             }
339             (Err(err), None) => {
340                 // init error, ty parsed
341                 // Couldn't parse the initializer and we're not attempting to recover a failed
342                 // parse of the type, return the error.
343                 return Err(err);
344             }
345         };
346         let kind = match init {
347             None => LocalKind::Decl,
348             Some(init) => {
349                 if self.eat_keyword(kw::Else) {
350                     if self.token.is_keyword(kw::If) {
351                         // `let...else if`. Emit the same error that `parse_block()` would,
352                         // but explicitly point out that this pattern is not allowed.
353                         let msg = "conditional `else if` is not supported for `let...else`";
354                         return Err(self.error_block_no_opening_brace_msg(msg));
355                     }
356                     let els = self.parse_block()?;
357                     self.check_let_else_init_bool_expr(&init);
358                     self.check_let_else_init_trailing_brace(&init);
359                     LocalKind::InitElse(init, els)
360                 } else {
361                     LocalKind::Init(init)
362                 }
363             }
364         };
365         let hi = if self.token == token::Semi { self.token.span } else { self.prev_token.span };
366         Ok(P(ast::Local { ty, pat, kind, id: DUMMY_NODE_ID, span: lo.to(hi), attrs, tokens: None }))
367     }
368
369     /// report error for `let 1x = 123`
370     pub fn report_invalid_identifier_error(&mut self) -> PResult<'a, ()> {
371         if let token::Literal(lit) = self.token.uninterpolate().kind &&
372             rustc_ast::MetaItemLit::from_token(&self.token).is_none() &&
373             (lit.kind == token::LitKind::Integer || lit.kind == token::LitKind::Float) &&
374             self.look_ahead(1, |t| matches!(t.kind, token::Eq) || matches!(t.kind, token::Colon ) ) {
375                 return Err(self.sess.create_err(InvalidIdentiferStartsWithNumber { span: self.token.span }));
376         }
377         Ok(())
378     }
379
380     fn check_let_else_init_bool_expr(&self, init: &ast::Expr) {
381         if let ast::ExprKind::Binary(op, ..) = init.kind {
382             if op.node.lazy() {
383                 self.sess.emit_err(InvalidExpressionInLetElse {
384                     span: init.span,
385                     operator: op.node.to_string(),
386                     sugg: WrapExpressionInParentheses {
387                         left: init.span.shrink_to_lo(),
388                         right: init.span.shrink_to_hi(),
389                     },
390                 });
391             }
392         }
393     }
394
395     fn check_let_else_init_trailing_brace(&self, init: &ast::Expr) {
396         if let Some(trailing) = classify::expr_trailing_brace(init) {
397             self.sess.emit_err(InvalidCurlyInLetElse {
398                 span: trailing.span.with_lo(trailing.span.hi() - BytePos(1)),
399                 sugg: WrapExpressionInParentheses {
400                     left: trailing.span.shrink_to_lo(),
401                     right: trailing.span.shrink_to_hi(),
402                 },
403             });
404         }
405     }
406
407     /// Parses the RHS of a local variable declaration (e.g., `= 14;`).
408     fn parse_initializer(&mut self, eq_optional: bool) -> PResult<'a, Option<P<Expr>>> {
409         let eq_consumed = match self.token.kind {
410             token::BinOpEq(..) => {
411                 // Recover `let x <op>= 1` as `let x = 1`
412                 self.sess.emit_err(CompoundAssignmentExpressionInLet { span: self.token.span });
413                 self.bump();
414                 true
415             }
416             _ => self.eat(&token::Eq),
417         };
418
419         Ok(if eq_consumed || eq_optional { Some(self.parse_expr()?) } else { None })
420     }
421
422     /// Parses a block. No inner attributes are allowed.
423     pub(super) fn parse_block(&mut self) -> PResult<'a, P<Block>> {
424         let (attrs, block) = self.parse_inner_attrs_and_block()?;
425         if let [.., last] = &*attrs {
426             self.error_on_forbidden_inner_attr(
427                 last.span,
428                 super::attr::InnerAttrPolicy::Forbidden(Some(
429                     InnerAttrForbiddenReason::InCodeBlock,
430                 )),
431             );
432         }
433         Ok(block)
434     }
435
436     fn error_block_no_opening_brace_msg(
437         &mut self,
438         msg: &str,
439     ) -> DiagnosticBuilder<'a, ErrorGuaranteed> {
440         let sp = self.token.span;
441         let mut e = self.struct_span_err(sp, msg);
442         let do_not_suggest_help = self.token.is_keyword(kw::In) || self.token == token::Colon;
443
444         // Check to see if the user has written something like
445         //
446         //    if (cond)
447         //      bar;
448         //
449         // which is valid in other languages, but not Rust.
450         match self.parse_stmt_without_recovery(false, ForceCollect::No) {
451             // If the next token is an open brace, e.g., we have:
452             //
453             //     if expr other_expr {
454             //        ^    ^          ^- lookahead(1) is a brace
455             //        |    |- current token is not "else"
456             //        |- (statement we just parsed)
457             //
458             // the place-inside-a-block suggestion would be more likely wrong than right.
459             //
460             // FIXME(compiler-errors): this should probably parse an arbitrary expr and not
461             // just lookahead one token, so we can see if there's a brace after _that_,
462             // since we want to protect against:
463             //     `if 1 1 + 1 {` being suggested as  `if { 1 } 1 + 1 {`
464             //                                            +   +
465             Ok(Some(_))
466                 if (!self.token.is_keyword(kw::Else)
467                     && self.look_ahead(1, |t| t == &token::OpenDelim(Delimiter::Brace)))
468                     || do_not_suggest_help => {}
469             // Do not suggest `if foo println!("") {;}` (as would be seen in test for #46836).
470             Ok(Some(Stmt { kind: StmtKind::Empty, .. })) => {}
471             Ok(Some(stmt)) => {
472                 let stmt_own_line = self.sess.source_map().is_line_before_span_empty(sp);
473                 let stmt_span = if stmt_own_line && self.eat(&token::Semi) {
474                     // Expand the span to include the semicolon.
475                     stmt.span.with_hi(self.prev_token.span.hi())
476                 } else {
477                     stmt.span
478                 };
479                 e.multipart_suggestion(
480                     "try placing this code inside a block",
481                     vec![
482                         (stmt_span.shrink_to_lo(), "{ ".to_string()),
483                         (stmt_span.shrink_to_hi(), " }".to_string()),
484                     ],
485                     // Speculative; has been misleading in the past (#46836).
486                     Applicability::MaybeIncorrect,
487                 );
488             }
489             Err(e) => {
490                 self.recover_stmt_(SemiColonMode::Break, BlockMode::Ignore);
491                 e.cancel();
492             }
493             _ => {}
494         }
495         e.span_label(sp, "expected `{`");
496         e
497     }
498
499     fn error_block_no_opening_brace<T>(&mut self) -> PResult<'a, T> {
500         let tok = super::token_descr(&self.token);
501         let msg = format!("expected `{{`, found {}", tok);
502         Err(self.error_block_no_opening_brace_msg(&msg))
503     }
504
505     /// Parses a block. Inner attributes are allowed.
506     pub(super) fn parse_inner_attrs_and_block(&mut self) -> PResult<'a, (AttrVec, P<Block>)> {
507         self.parse_block_common(self.token.span, BlockCheckMode::Default, true)
508     }
509
510     /// Parses a block. Inner attributes are allowed.
511     pub(super) fn parse_block_common(
512         &mut self,
513         lo: Span,
514         blk_mode: BlockCheckMode,
515         can_be_struct_literal: bool,
516     ) -> PResult<'a, (AttrVec, P<Block>)> {
517         maybe_whole!(self, NtBlock, |x| (AttrVec::new(), x));
518
519         let maybe_ident = self.prev_token.clone();
520         self.maybe_recover_unexpected_block_label();
521         if !self.eat(&token::OpenDelim(Delimiter::Brace)) {
522             return self.error_block_no_opening_brace();
523         }
524
525         let attrs = self.parse_inner_attributes()?;
526         let tail = match self.maybe_suggest_struct_literal(
527             lo,
528             blk_mode,
529             maybe_ident,
530             can_be_struct_literal,
531         ) {
532             Some(tail) => tail?,
533             None => self.parse_block_tail(lo, blk_mode, AttemptLocalParseRecovery::Yes)?,
534         };
535         Ok((attrs, tail))
536     }
537
538     /// Parses the rest of a block expression or function body.
539     /// Precondition: already parsed the '{'.
540     pub(crate) fn parse_block_tail(
541         &mut self,
542         lo: Span,
543         s: BlockCheckMode,
544         recover: AttemptLocalParseRecovery,
545     ) -> PResult<'a, P<Block>> {
546         let mut stmts = vec![];
547         let mut snapshot = None;
548         while !self.eat(&token::CloseDelim(Delimiter::Brace)) {
549             if self.token == token::Eof {
550                 break;
551             }
552             if self.is_diff_marker(&TokenKind::BinOp(token::Shl), &TokenKind::Lt) {
553                 // Account for `<<<<<<<` diff markers. We can't proactively error here because
554                 // that can be a valid path start, so we snapshot and reparse only we've
555                 // encountered another parse error.
556                 snapshot = Some(self.create_snapshot_for_diagnostic());
557             }
558             let stmt = match self.parse_full_stmt(recover) {
559                 Err(mut err) if recover.yes() => {
560                     self.maybe_annotate_with_ascription(&mut err, false);
561                     if let Some(ref mut snapshot) = snapshot {
562                         snapshot.recover_diff_marker();
563                     }
564                     err.emit();
565                     self.recover_stmt_(SemiColonMode::Ignore, BlockMode::Ignore);
566                     Some(self.mk_stmt_err(self.token.span))
567                 }
568                 Ok(stmt) => stmt,
569                 Err(err) => return Err(err),
570             };
571             if let Some(stmt) = stmt {
572                 stmts.push(stmt);
573             } else {
574                 // Found only `;` or `}`.
575                 continue;
576             };
577         }
578         Ok(self.mk_block(stmts, s, lo.to(self.prev_token.span)))
579     }
580
581     /// Parses a statement, including the trailing semicolon.
582     pub fn parse_full_stmt(
583         &mut self,
584         recover: AttemptLocalParseRecovery,
585     ) -> PResult<'a, Option<Stmt>> {
586         // Skip looking for a trailing semicolon when we have an interpolated statement.
587         maybe_whole!(self, NtStmt, |x| Some(x.into_inner()));
588
589         let Some(mut stmt) = self.parse_stmt_without_recovery(true, ForceCollect::No)? else {
590             return Ok(None);
591         };
592
593         let mut eat_semi = true;
594         match &mut stmt.kind {
595             // Expression without semicolon.
596             StmtKind::Expr(expr)
597                 if self.token != token::Eof && classify::expr_requires_semi_to_be_stmt(expr) => {
598                 // Just check for errors and recover; do not eat semicolon yet.
599                 // `expect_one_of` returns PResult<'a, bool /* recovered */>
600                 let replace_with_err =
601                     match self.expect_one_of(&[], &[token::Semi, token::CloseDelim(Delimiter::Brace)]) {
602                     // Recover from parser, skip type error to avoid extra errors.
603                     Ok(true) => true,
604                     Err(mut e) => {
605                         if let TokenKind::DocComment(..) = self.token.kind &&
606                             let Ok(snippet) = self.span_to_snippet(self.token.span) {
607                                 let sp = self.token.span;
608                                 let marker = &snippet[..3];
609                                 let (comment_marker, doc_comment_marker) = marker.split_at(2);
610
611                                 e.span_suggestion(
612                                     sp.with_hi(sp.lo() + BytePos(marker.len() as u32)),
613                                     &format!(
614                                         "add a space before `{}` to use a regular comment",
615                                         doc_comment_marker,
616                                     ),
617                                     format!("{} {}", comment_marker, doc_comment_marker),
618                                     Applicability::MaybeIncorrect,
619                                 );
620                         }
621
622                         if let Err(mut e) =
623                             self.check_mistyped_turbofish_with_multiple_type_params(e, expr)
624                         {
625                             if recover.no() {
626                                 return Err(e);
627                             }
628                             e.emit();
629                             self.recover_stmt();
630                         }
631                         true
632                     }
633                     _ => false
634                 };
635                 if replace_with_err {
636                     // We already emitted an error, so don't emit another type error
637                     let sp = expr.span.to(self.prev_token.span);
638                     *expr = self.mk_expr_err(sp);
639                 }
640             }
641             StmtKind::Expr(_) | StmtKind::MacCall(_) => {}
642             StmtKind::Local(local) if let Err(e) = self.expect_semi() => {
643                 // We might be at the `,` in `let x = foo<bar, baz>;`. Try to recover.
644                 match &mut local.kind {
645                     LocalKind::Init(expr) | LocalKind::InitElse(expr, _) => {
646                         self.check_mistyped_turbofish_with_multiple_type_params(e, expr)?;
647                         // We found `foo<bar, baz>`, have we fully recovered?
648                         self.expect_semi()?;
649                     }
650                     LocalKind::Decl => return Err(e),
651                 }
652                 eat_semi = false;
653             }
654             StmtKind::Empty | StmtKind::Item(_) | StmtKind::Local(_) | StmtKind::Semi(_) => eat_semi = false,
655         }
656
657         if eat_semi && self.eat(&token::Semi) {
658             stmt = stmt.add_trailing_semicolon();
659         }
660         stmt.span = stmt.span.to(self.prev_token.span);
661         Ok(Some(stmt))
662     }
663
664     pub(super) fn mk_block(&self, stmts: Vec<Stmt>, rules: BlockCheckMode, span: Span) -> P<Block> {
665         P(Block {
666             stmts,
667             id: DUMMY_NODE_ID,
668             rules,
669             span,
670             tokens: None,
671             could_be_bare_literal: false,
672         })
673     }
674
675     pub(super) fn mk_stmt(&self, span: Span, kind: StmtKind) -> Stmt {
676         Stmt { id: DUMMY_NODE_ID, kind, span }
677     }
678
679     pub(super) fn mk_stmt_err(&self, span: Span) -> Stmt {
680         self.mk_stmt(span, StmtKind::Expr(self.mk_expr_err(span)))
681     }
682
683     pub(super) fn mk_block_err(&self, span: Span) -> P<Block> {
684         self.mk_block(vec![self.mk_stmt_err(span)], BlockCheckMode::Default, span)
685     }
686 }