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rustc_parse/parser/
ty.rs

1use rustc_ast::token::{self, IdentIsRaw, MetaVarKind, Token, TokenKind};
2use rustc_ast::util::case::Case;
3use rustc_ast::{
4    self as ast, BoundAsyncness, BoundConstness, BoundPolarity, DUMMY_NODE_ID, FnPtrTy, FnRetTy,
5    GenericBound, GenericBounds, GenericParam, Generics, Lifetime, MacCall, MutTy, Mutability,
6    Pinnedness, PolyTraitRef, PreciseCapturingArg, TraitBoundModifiers, TraitObjectSyntax, Ty,
7    TyKind, UnsafeBinderTy,
8};
9use rustc_errors::{Applicability, Diag, E0516, PResult};
10use rustc_span::{ErrorGuaranteed, Ident, Span, kw, sym};
11use thin_vec::{ThinVec, thin_vec};
12
13use super::{Parser, PathStyle, SeqSep, TokenType, Trailing};
14use crate::diagnostics::{
15    self, AttributeOnEmptyType, AttributeOnType, DynAfterMut, ExpectedFnPathFoundFnKeyword,
16    ExpectedMutOrConstInRawPointerType, FnPtrWithGenerics, FnPtrWithGenericsSugg,
17    HelpUseLatestEdition, InvalidCVariadicType, InvalidDynKeyword, LifetimeAfterMut,
18    NeedPlusAfterTraitObjectLifetime, NestedCVariadicType, ReturnTypesUseThinArrow,
19};
20use crate::parser::{FnContext, FnParseMode, FrontMatterParsingMode};
21use crate::{exp, maybe_recover_from_interpolated_ty_qpath};
22
23/// Signals whether parsing a type should allow `+`.
24///
25/// For example, let T be the type `impl Default + 'static`
26/// With `AllowPlus::Yes`, T will be parsed successfully
27/// With `AllowPlus::No`, parsing T will return a parse error
28#[derive(#[automatically_derived]
impl ::core::marker::Copy for AllowPlus { }Copy, #[automatically_derived]
impl ::core::clone::Clone for AllowPlus {
    #[inline]
    fn clone(&self) -> AllowPlus { *self }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for AllowPlus {
    #[inline]
    fn eq(&self, other: &AllowPlus) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq)]
29pub(super) enum AllowPlus {
30    Yes,
31    No,
32}
33
34#[derive(#[automatically_derived]
impl ::core::cmp::PartialEq for RecoverQPath {
    #[inline]
    fn eq(&self, other: &RecoverQPath) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq)]
35pub(super) enum RecoverQPath {
36    Yes,
37    No,
38}
39
40pub(super) enum RecoverQuestionMark {
41    Yes,
42    No,
43}
44
45/// Signals whether parsing a type should recover `->`.
46///
47/// More specifically, when parsing a function like:
48/// ```compile_fail
49/// fn foo() => u8 { 0 }
50/// fn bar(): u8 { 0 }
51/// ```
52/// The compiler will try to recover interpreting `foo() => u8` as `foo() -> u8` when calling
53/// `parse_ty` with anything except `RecoverReturnSign::No`, and it will try to recover `bar(): u8`
54/// as `bar() -> u8` when passing `RecoverReturnSign::Yes` to `parse_ty`
55#[derive(#[automatically_derived]
impl ::core::marker::Copy for RecoverReturnSign { }Copy, #[automatically_derived]
impl ::core::clone::Clone for RecoverReturnSign {
    #[inline]
    fn clone(&self) -> RecoverReturnSign { *self }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for RecoverReturnSign {
    #[inline]
    fn eq(&self, other: &RecoverReturnSign) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq)]
56pub(super) enum RecoverReturnSign {
57    Yes,
58    OnlyFatArrow,
59    No,
60}
61
62impl RecoverReturnSign {
63    /// [RecoverReturnSign::Yes] allows for recovering `fn foo() => u8` and `fn foo(): u8`,
64    /// [RecoverReturnSign::OnlyFatArrow] allows for recovering only `fn foo() => u8` (recovering
65    /// colons can cause problems when parsing where clauses), and
66    /// [RecoverReturnSign::No] doesn't allow for any recovery of the return type arrow
67    fn can_recover(self, token: &TokenKind) -> bool {
68        match self {
69            Self::Yes => #[allow(non_exhaustive_omitted_patterns)] match token {
    token::FatArrow | token::Colon => true,
    _ => false,
}matches!(token, token::FatArrow | token::Colon),
70            Self::OnlyFatArrow => #[allow(non_exhaustive_omitted_patterns)] match token {
    token::FatArrow => true,
    _ => false,
}matches!(token, token::FatArrow),
71            Self::No => false,
72        }
73    }
74}
75
76// Is `...` (`CVarArgs`) legal at this level of type parsing?
77#[derive(#[automatically_derived]
impl ::core::cmp::PartialEq for AllowCVariadic {
    #[inline]
    fn eq(&self, other: &AllowCVariadic) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq)]
78enum AllowCVariadic {
79    Yes,
80    No,
81}
82
83/// Determine if the given token can begin a bound assuming it follows Rust 2015 identifier `dyn`.
84///
85/// In Rust 2015, `dyn` is a contextual keyword, not a full one.
86fn can_begin_dyn_bound_in_edition_2015(t: Token) -> bool {
87    if t.is_path_start() {
88        // In `dyn::x`, `dyn<X>` and `dyn<<X>::Y>`, `dyn` should (continue to) denote a regular path
89        // segment for backward compatibility. We make an exception for `dyn(X)` which used to be
90        // interpreted as a path with parenthesized generic arguments which can be semantically
91        // well-formed (consider: `use std::ops::Fn as dyn;`). Instead, we treat it as a trait
92        // object type whose first bound is parenthesized.
93        return t != token::PathSep && t != token::Lt && t != token::Shl;
94    }
95
96    // Contrary to `Parser::can_begin_bound`, `!`, `const`, `[` and `async` are deliberately not
97    // part of this list to contain the number of potential regressions esp. in MBE code.
98    // `const` and `[` would regress UI test `macro-dyn-const-2015.rs` and
99    // `!` would regress `dyn!(...)` macro calls in Rust 2015 for example.
100    t == token::OpenParen || t == token::Question || t.is_lifetime() || t.is_keyword(kw::For)
101}
102
103impl<'a> Parser<'a> {
104    /// Parses a type.
105    pub fn parse_ty(&mut self) -> PResult<'a, Box<Ty>> {
106        if self.token == token::DotDotDot {
107            // We special case this so that we don't talk about "nested C-variadics" in types.
108            // We still pass in `AllowCVariadic::No` so that `parse_ty_common` can complain about
109            // things like `Vec<...>`.
110            let span = self.token.span;
111            self.bump();
112            let kind = TyKind::Err(self.dcx().emit_err(InvalidCVariadicType { span }));
113            return Ok(self.mk_ty(span, kind));
114        }
115        self.parse_ty_common(
116            AllowPlus::Yes,
117            AllowCVariadic::No,
118            RecoverQPath::Yes,
119            RecoverReturnSign::Yes,
120            None,
121            RecoverQuestionMark::Yes,
122        )
123    }
124
125    pub(super) fn parse_ty_with_generics_recovery(
126        &mut self,
127        ty_params: &Generics,
128    ) -> PResult<'a, Box<Ty>> {
129        self.parse_ty_common(
130            AllowPlus::Yes,
131            AllowCVariadic::No,
132            RecoverQPath::Yes,
133            RecoverReturnSign::Yes,
134            Some(ty_params),
135            RecoverQuestionMark::Yes,
136        )
137    }
138
139    /// Parse a type suitable for a function or function pointer parameter.
140    /// The difference from `parse_ty` is that this version allows `...`
141    /// (`CVarArgs`) at the top level of the type.
142    pub(super) fn parse_ty_for_param(&mut self) -> PResult<'a, Box<Ty>> {
143        let ty = self.parse_ty_common(
144            AllowPlus::Yes,
145            AllowCVariadic::Yes,
146            RecoverQPath::Yes,
147            RecoverReturnSign::Yes,
148            None,
149            RecoverQuestionMark::Yes,
150        )?;
151
152        // Recover a trailing `= EXPR` if present.
153        if self.may_recover()
154            && self.check_noexpect(&token::Eq)
155            && self.look_ahead(1, |tok| tok.can_begin_expr())
156        {
157            let snapshot = self.create_snapshot_for_diagnostic();
158            self.bump();
159            let eq_span = self.prev_token.span;
160            match self.parse_expr() {
161                Ok(e) => {
162                    self.dcx()
163                        .struct_span_err(eq_span.to(e.span), "parameter defaults are not supported")
164                        .emit();
165                }
166                Err(diag) => {
167                    diag.cancel();
168                    self.restore_snapshot(snapshot);
169                }
170            }
171        }
172
173        Ok(ty)
174    }
175
176    /// Parses a type in restricted contexts where `+` is not permitted.
177    ///
178    /// Example 1: `&'a TYPE`
179    ///     `+` is prohibited to maintain operator priority (P(+) < P(&)).
180    /// Example 2: `value1 as TYPE + value2`
181    ///     `+` is prohibited to avoid interactions with expression grammar.
182    pub(super) fn parse_ty_no_plus(&mut self) -> PResult<'a, Box<Ty>> {
183        self.parse_ty_common(
184            AllowPlus::No,
185            AllowCVariadic::No,
186            RecoverQPath::Yes,
187            RecoverReturnSign::Yes,
188            None,
189            RecoverQuestionMark::Yes,
190        )
191    }
192
193    /// Parses a type following an `as` cast. Similar to `parse_ty_no_plus`, but signaling origin
194    /// for better diagnostics involving `?`.
195    pub(super) fn parse_as_cast_ty(&mut self) -> PResult<'a, Box<Ty>> {
196        self.parse_ty_common(
197            AllowPlus::No,
198            AllowCVariadic::No,
199            RecoverQPath::Yes,
200            RecoverReturnSign::Yes,
201            None,
202            RecoverQuestionMark::No,
203        )
204    }
205
206    pub(super) fn parse_ty_no_question_mark_recover(&mut self) -> PResult<'a, Box<Ty>> {
207        self.parse_ty_common(
208            AllowPlus::Yes,
209            AllowCVariadic::No,
210            RecoverQPath::Yes,
211            RecoverReturnSign::Yes,
212            None,
213            RecoverQuestionMark::No,
214        )
215    }
216
217    /// Parse a type without recovering `:` as `->` to avoid breaking code such
218    /// as `where fn() : for<'a>`.
219    pub(super) fn parse_ty_for_where_clause(&mut self) -> PResult<'a, Box<Ty>> {
220        self.parse_ty_common(
221            AllowPlus::Yes,
222            AllowCVariadic::No,
223            RecoverQPath::Yes,
224            RecoverReturnSign::OnlyFatArrow,
225            None,
226            RecoverQuestionMark::Yes,
227        )
228    }
229
230    /// Parses an optional return type `[ -> TY ]` in a function declaration.
231    pub(super) fn parse_ret_ty(
232        &mut self,
233        allow_plus: AllowPlus,
234        recover_qpath: RecoverQPath,
235        recover_return_sign: RecoverReturnSign,
236    ) -> PResult<'a, FnRetTy> {
237        let lo = self.prev_token.span;
238        Ok(if self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::RArrow,
    token_type: crate::parser::token_type::TokenType::RArrow,
}exp!(RArrow)) {
239            // FIXME(Centril): Can we unconditionally `allow_plus`?
240            let ty = self.parse_ty_common(
241                allow_plus,
242                AllowCVariadic::No,
243                recover_qpath,
244                recover_return_sign,
245                None,
246                RecoverQuestionMark::Yes,
247            )?;
248            FnRetTy::Ty(ty)
249        } else if recover_return_sign.can_recover(&self.token.kind) {
250            // Don't `eat` to prevent `=>` from being added as an expected token which isn't
251            // actually expected and could only confuse users
252            self.bump();
253            self.dcx().emit_err(ReturnTypesUseThinArrow {
254                span: self.prev_token.span,
255                suggestion: lo.between(self.token.span),
256            });
257            let ty = self.parse_ty_common(
258                allow_plus,
259                AllowCVariadic::No,
260                recover_qpath,
261                recover_return_sign,
262                None,
263                RecoverQuestionMark::Yes,
264            )?;
265            FnRetTy::Ty(ty)
266        } else {
267            FnRetTy::Default(self.prev_token.span.shrink_to_hi())
268        })
269    }
270
271    fn parse_ty_common(
272        &mut self,
273        allow_plus: AllowPlus,
274        allow_c_variadic: AllowCVariadic,
275        recover_qpath: RecoverQPath,
276        recover_return_sign: RecoverReturnSign,
277        ty_generics: Option<&Generics>,
278        recover_question_mark: RecoverQuestionMark,
279    ) -> PResult<'a, Box<Ty>> {
280        let allow_qpath_recovery = recover_qpath == RecoverQPath::Yes;
281        if allow_qpath_recovery && 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, allow_qpath_recovery);
282        if self.token == token::Pound && self.look_ahead(1, |t| *t == token::OpenBracket) {
283            let attrs_wrapper = self.parse_outer_attributes()?;
284            let raw_attrs = attrs_wrapper.take_for_recovery(self.psess);
285            let attr_span = raw_attrs[0].span.to(raw_attrs.last().unwrap().span);
286            let (full_span, guar) = match self.parse_ty() {
287                Ok(ty) => {
288                    let full_span = attr_span.until(ty.span);
289                    let guar = self
290                        .dcx()
291                        .emit_err(AttributeOnType { span: attr_span, fix_span: full_span });
292                    (attr_span, guar)
293                }
294                Err(err) => {
295                    err.cancel();
296                    let guar = self.dcx().emit_err(AttributeOnEmptyType { span: attr_span });
297                    (attr_span, guar)
298                }
299            };
300
301            return Ok(self.mk_ty(full_span, TyKind::Err(guar)));
302        }
303        if let Some(ty) = self.eat_metavar_seq_with_matcher(
304            |mv_kind| #[allow(non_exhaustive_omitted_patterns)] match mv_kind {
    MetaVarKind::Ty { .. } => true,
    _ => false,
}matches!(mv_kind, MetaVarKind::Ty { .. }),
305            |this| this.parse_ty_no_question_mark_recover(),
306        ) {
307            return Ok(ty);
308        }
309
310        let lo = self.token.span;
311        let mut impl_dyn_multi = false;
312        let kind = if self.check(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::OpenParen,
    token_type: crate::parser::token_type::TokenType::OpenParen,
}exp!(OpenParen)) {
313            self.parse_ty_tuple_or_parens(lo, allow_plus)?
314        } else if self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Bang,
    token_type: crate::parser::token_type::TokenType::Bang,
}exp!(Bang)) {
315            // Never type `!`
316            TyKind::Never
317        } else if self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Star,
    token_type: crate::parser::token_type::TokenType::Star,
}exp!(Star)) {
318            self.parse_ty_ptr()?
319        } else if self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::OpenBracket,
    token_type: crate::parser::token_type::TokenType::OpenBracket,
}exp!(OpenBracket)) {
320            self.parse_array_or_slice_ty()?
321        } else if self.check(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::And,
    token_type: crate::parser::token_type::TokenType::And,
}exp!(And)) || self.check(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::AndAnd,
    token_type: crate::parser::token_type::TokenType::AndAnd,
}exp!(AndAnd)) {
322            // Reference
323            self.expect_and()?;
324            self.parse_borrowed_pointee()?
325        } else if self.eat_keyword_noexpect(kw::Typeof) {
326            self.parse_typeof_ty(lo)?
327        } else if self.is_builtin() {
328            self.parse_builtin_ty()?
329        } else if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
    kw: rustc_span::symbol::kw::Underscore,
    token_type: crate::parser::token_type::TokenType::KwUnderscore,
}exp!(Underscore)) {
330            // A type to be inferred `_`
331            TyKind::Infer
332        } else if self.check_fn_front_matter(false, Case::Sensitive) {
333            // Function pointer type
334            self.parse_ty_fn_ptr(lo, ThinVec::new(), None, recover_return_sign)?
335        } else 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)) {
336            // Function pointer type or bound list (trait object type) starting with a poly-trait.
337            //   `for<'lt> [unsafe] [extern "ABI"] fn (&'lt S) -> T`
338            //   `for<'lt> Trait1<'lt> + Trait2 + 'a`
339            let (bound_vars, _) = self.parse_higher_ranked_binder()?;
340            if self.check_fn_front_matter(false, Case::Sensitive) {
341                self.parse_ty_fn_ptr(
342                    lo,
343                    bound_vars,
344                    Some(self.prev_token.span.shrink_to_lo()),
345                    recover_return_sign,
346                )?
347            } else {
348                // Try to recover `for<'a> dyn Trait` or `for<'a> impl Trait`.
349                if self.may_recover()
350                    && (self.eat_keyword_noexpect(kw::Impl) || self.eat_keyword_noexpect(kw::Dyn))
351                {
352                    let kw = self.prev_token.ident().unwrap().0;
353                    let removal_span = kw.span.with_hi(self.token.span.lo());
354                    let path = self.parse_path(PathStyle::Type)?;
355                    let parse_plus = allow_plus == AllowPlus::Yes && self.check_plus();
356                    let kind = self.parse_remaining_bounds_path(
357                        bound_vars,
358                        path,
359                        lo,
360                        parse_plus,
361                        ast::Parens::No,
362                    )?;
363                    let err = self.dcx().create_err(diagnostics::TransposeDynOrImpl {
364                        span: kw.span,
365                        kw: kw.name.as_str(),
366                        sugg: diagnostics::TransposeDynOrImplSugg {
367                            removal_span,
368                            insertion_span: lo.shrink_to_lo(),
369                            kw: kw.name.as_str(),
370                        },
371                    });
372
373                    // Take the parsed bare trait object and turn it either
374                    // into a `dyn` object or an `impl Trait`.
375                    let kind = match (kind, kw.name) {
376                        (TyKind::TraitObject(bounds, _), kw::Dyn) => {
377                            TyKind::TraitObject(bounds, TraitObjectSyntax::Dyn)
378                        }
379                        (TyKind::TraitObject(bounds, _), kw::Impl) => {
380                            TyKind::ImplTrait(ast::DUMMY_NODE_ID, bounds)
381                        }
382                        _ => return Err(err),
383                    };
384                    err.emit();
385                    kind
386                } else {
387                    let path = self.parse_path(PathStyle::Type)?;
388                    let parse_plus = allow_plus == AllowPlus::Yes && self.check_plus();
389                    self.parse_remaining_bounds_path(
390                        bound_vars,
391                        path,
392                        lo,
393                        parse_plus,
394                        ast::Parens::No,
395                    )?
396                }
397            }
398        } else if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
    kw: rustc_span::symbol::kw::Impl,
    token_type: crate::parser::token_type::TokenType::KwImpl,
}exp!(Impl)) {
399            self.parse_impl_ty(&mut impl_dyn_multi)?
400        } else if self.is_explicit_dyn_type() {
401            self.parse_dyn_ty(&mut impl_dyn_multi)?
402        } else if self.eat_lt() {
403            // Qualified path
404            let (qself, path) = self.parse_qpath(PathStyle::Type)?;
405            TyKind::Path(Some(qself), path)
406        } else if (self.token.is_keyword(kw::Const) || self.token.is_keyword(kw::Mut))
407            && self.look_ahead(1, |t| *t == token::Star)
408        {
409            self.parse_ty_c_style_pointer()?
410        } else if self.check_path() {
411            self.parse_path_start_ty(lo, allow_plus, ty_generics)?
412        } else if self.can_begin_bound() {
413            self.parse_bare_trait_object(lo, allow_plus)?
414        } else if self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::DotDotDot,
    token_type: crate::parser::token_type::TokenType::DotDotDot,
}exp!(DotDotDot)) {
415            match allow_c_variadic {
416                AllowCVariadic::Yes => TyKind::CVarArgs,
417                AllowCVariadic::No => {
418                    // FIXME(c_variadic): Should we just allow `...` syntactically
419                    // anywhere in a type and use semantic restrictions instead?
420                    // NOTE: This may regress certain MBE calls if done incorrectly.
421                    let guar = self.dcx().emit_err(NestedCVariadicType { span: lo });
422                    TyKind::Err(guar)
423                }
424            }
425        } else if self.check_keyword(crate::parser::token_type::ExpKeywordPair {
    kw: rustc_span::symbol::kw::Unsafe,
    token_type: crate::parser::token_type::TokenType::KwUnsafe,
}exp!(Unsafe))
426            && self.look_ahead(1, |tok| tok.kind == token::Lt)
427        {
428            self.parse_unsafe_binder_ty()?
429        } else {
430            let msg = ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("expected type, found {0}",
                super::token_descr(&self.token)))
    })format!("expected type, found {}", super::token_descr(&self.token));
431            let mut err = self.dcx().struct_span_err(lo, msg);
432            err.span_label(lo, "expected type");
433            return Err(err);
434        };
435
436        let span = lo.to(self.prev_token.span);
437        let mut ty = self.mk_ty(span, kind);
438
439        // Try to recover from use of `+` with incorrect priority.
440        match allow_plus {
441            AllowPlus::Yes => self.maybe_recover_from_bad_type_plus(&ty)?,
442            AllowPlus::No => self.maybe_report_ambiguous_plus(impl_dyn_multi, &ty),
443        }
444        if let RecoverQuestionMark::Yes = recover_question_mark {
445            ty = self.maybe_recover_from_question_mark(ty);
446        }
447        if allow_qpath_recovery { self.maybe_recover_from_bad_qpath(ty) } else { Ok(ty) }
448    }
449
450    fn parse_unsafe_binder_ty(&mut self) -> PResult<'a, TyKind> {
451        let lo = self.token.span;
452        if !self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
                kw: rustc_span::symbol::kw::Unsafe,
                token_type: crate::parser::token_type::TokenType::KwUnsafe,
            }) {
    ::core::panicking::panic("assertion failed: self.eat_keyword(exp!(Unsafe))")
};assert!(self.eat_keyword(exp!(Unsafe)));
453        self.expect_lt()?;
454        let generic_params = self.parse_generic_params()?;
455        self.expect_gt()?;
456        let inner_ty = self.parse_ty()?;
457        let span = lo.to(self.prev_token.span);
458        self.psess.gated_spans.gate(sym::unsafe_binders, span);
459
460        Ok(TyKind::UnsafeBinder(Box::new(UnsafeBinderTy { generic_params, inner_ty })))
461    }
462
463    /// Parses either:
464    /// - `(TYPE)`, a parenthesized type.
465    /// - `(TYPE,)`, a tuple with a single field of type TYPE.
466    fn parse_ty_tuple_or_parens(&mut self, lo: Span, allow_plus: AllowPlus) -> PResult<'a, TyKind> {
467        let mut trailing_plus = false;
468        let (ts, trailing) = self.parse_paren_comma_seq(|p| {
469            let ty = p.parse_ty()?;
470            trailing_plus = p.prev_token == TokenKind::Plus;
471            Ok(ty)
472        })?;
473
474        if ts.len() == 1 && #[allow(non_exhaustive_omitted_patterns)] match trailing {
    Trailing::No => true,
    _ => false,
}matches!(trailing, Trailing::No) {
475            let ty = ts.into_iter().next().unwrap();
476            let maybe_bounds = allow_plus == AllowPlus::Yes && self.token.is_like_plus();
477            match ty.kind {
478                // `"(" BareTraitBound ")" "+" Bound "+" ...`.
479                TyKind::Path(None, path) if maybe_bounds => self.parse_remaining_bounds_path(
480                    ThinVec::new(),
481                    path,
482                    lo,
483                    true,
484                    ast::Parens::Yes,
485                ),
486                // For `('a) + …`, we know that `'a` in type position already lead to an error being
487                // emitted. To reduce output, let's indirectly suppress E0178 (bad `+` in type) and
488                // other irrelevant consequential errors.
489                TyKind::TraitObject(bounds, TraitObjectSyntax::None)
490                    if maybe_bounds && bounds.len() == 1 && !trailing_plus =>
491                {
492                    self.parse_remaining_bounds(bounds, true)
493                }
494                // `(TYPE)`
495                _ => Ok(TyKind::Paren(ty)),
496            }
497        } else {
498            Ok(TyKind::Tup(ts))
499        }
500    }
501
502    fn parse_bare_trait_object(&mut self, lo: Span, allow_plus: AllowPlus) -> PResult<'a, TyKind> {
503        // A lifetime only begins a bare trait object type if it is followed by `+`!
504        if self.token.is_lifetime() && !self.look_ahead(1, |t| t.is_like_plus()) {
505            // In Rust 2021 and beyond, we assume that the user didn't intend to write a bare trait
506            // object type with a leading lifetime bound since that seems very unlikely given the
507            // fact that `dyn`-less trait objects are *semantically* invalid.
508            if self.psess.edition.at_least_rust_2021() {
509                let lt = self.expect_lifetime();
510                let mut err = self.dcx().struct_span_err(lo, "expected type, found lifetime");
511                err.span_label(lo, "expected type");
512                return Ok(match self.maybe_recover_ref_ty_no_leading_ampersand(lt, lo, err) {
513                    Ok(ref_ty) => ref_ty,
514                    Err(err) => TyKind::Err(err.emit()),
515                });
516            }
517
518            self.dcx().emit_err(NeedPlusAfterTraitObjectLifetime {
519                span: lo,
520                suggestion: lo.shrink_to_hi(),
521            });
522        }
523        Ok(TyKind::TraitObject(
524            self.parse_generic_bounds_common(allow_plus)?,
525            TraitObjectSyntax::None,
526        ))
527    }
528
529    fn maybe_recover_ref_ty_no_leading_ampersand<'cx>(
530        &mut self,
531        lt: Lifetime,
532        lo: Span,
533        mut err: Diag<'cx>,
534    ) -> Result<TyKind, Diag<'cx>> {
535        if !self.may_recover() {
536            return Err(err);
537        }
538        let snapshot = self.create_snapshot_for_diagnostic();
539        let mutbl = self.parse_mutability();
540        match self.parse_ty_no_plus() {
541            Ok(ty) => {
542                err.span_suggestion_verbose(
543                    lo.shrink_to_lo(),
544                    "you might have meant to write a reference type here",
545                    "&",
546                    Applicability::MaybeIncorrect,
547                );
548                err.emit();
549                Ok(TyKind::Ref(Some(lt), MutTy { ty, mutbl }))
550            }
551            Err(diag) => {
552                diag.cancel();
553                self.restore_snapshot(snapshot);
554                Err(err)
555            }
556        }
557    }
558
559    fn parse_remaining_bounds_path(
560        &mut self,
561        generic_params: ThinVec<GenericParam>,
562        path: ast::Path,
563        lo: Span,
564        parse_plus: bool,
565        parens: ast::Parens,
566    ) -> PResult<'a, TyKind> {
567        let poly_trait_ref = PolyTraitRef::new(
568            generic_params,
569            path,
570            TraitBoundModifiers::NONE,
571            lo.to(self.prev_token.span),
572            parens,
573        );
574        let bounds = {
    let len = [()].len();
    let mut vec = ::thin_vec::ThinVec::with_capacity(len);
    vec.push(GenericBound::Trait(poly_trait_ref));
    vec
}thin_vec![GenericBound::Trait(poly_trait_ref)];
575        self.parse_remaining_bounds(bounds, parse_plus)
576    }
577
578    /// Parse the remainder of a bare trait object type given an already parsed list.
579    fn parse_remaining_bounds(
580        &mut self,
581        mut bounds: GenericBounds,
582        plus: bool,
583    ) -> PResult<'a, TyKind> {
584        if plus {
585            self.eat_plus(); // `+`, or `+=` gets split and `+` is discarded
586            bounds.append(&mut self.parse_generic_bounds()?);
587        }
588        Ok(TyKind::TraitObject(bounds, TraitObjectSyntax::None))
589    }
590
591    /// Parses a raw pointer with a C-style typo
592    fn parse_ty_c_style_pointer(&mut self) -> PResult<'a, TyKind> {
593        let kw_span = self.token.span;
594        let mutbl = self.parse_mut_or_const();
595
596        if let Some(mutbl) = mutbl
597            && self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Star,
    token_type: crate::parser::token_type::TokenType::Star,
}exp!(Star))
598        {
599            let star_span = self.prev_token.span;
600
601            let mutability = match mutbl {
602                Mutability::Not => "const",
603                Mutability::Mut => "mut",
604            };
605
606            let ty = self.parse_ty_no_question_mark_recover()?;
607
608            self.dcx()
609                .struct_span_err(
610                    kw_span,
611                    ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("raw pointer types must be written as `*{0} T`",
                mutability))
    })format!("raw pointer types must be written as `*{mutability} T`"),
612                )
613                .with_multipart_suggestion(
614                    ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("put the `*` before `{0}`",
                mutability))
    })format!("put the `*` before `{mutability}`"),
615                    ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
        [(star_span, String::new()),
                (kw_span.shrink_to_lo(), "*".to_string())]))vec![(star_span, String::new()), (kw_span.shrink_to_lo(), "*".to_string())],
616                    Applicability::MachineApplicable,
617                )
618                .emit();
619
620            return Ok(TyKind::Ptr(MutTy { ty, mutbl }));
621        }
622        // This is unreachable because we always get into if above and return from it
623        {
    ::core::panicking::panic_fmt(format_args!("internal error: entered unreachable code: {0}",
            format_args!("this could never happen")));
}unreachable!("this could never happen")
624    }
625
626    /// Parses a raw pointer type: `*[const | mut] $type`.
627    fn parse_ty_ptr(&mut self) -> PResult<'a, TyKind> {
628        let mutbl = self.parse_mut_or_const().unwrap_or_else(|| {
629            let span = self.prev_token.span;
630            self.dcx().emit_err(ExpectedMutOrConstInRawPointerType {
631                span,
632                after_asterisk: span.shrink_to_hi(),
633            });
634            Mutability::Not
635        });
636        let ty = self.parse_ty_no_plus()?;
637        Ok(TyKind::Ptr(MutTy { ty, mutbl }))
638    }
639
640    /// Parses an array (`[TYPE; EXPR]`) or slice (`[TYPE]`) type.
641    /// The opening `[` bracket is already eaten.
642    fn parse_array_or_slice_ty(&mut self) -> PResult<'a, TyKind> {
643        let elt_ty = match self.parse_ty() {
644            Ok(ty) => ty,
645            Err(err)
646                if self.look_ahead(1, |t| *t == token::CloseBracket)
647                    | self.look_ahead(1, |t| *t == token::Semi) =>
648            {
649                // Recover from `[LIT; EXPR]` and `[LIT]`
650                self.bump();
651                let guar = err.emit();
652                self.mk_ty(self.prev_token.span, TyKind::Err(guar))
653            }
654            Err(err) => return Err(err),
655        };
656
657        let ty = if self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Semi,
    token_type: crate::parser::token_type::TokenType::Semi,
}exp!(Semi)) {
658            let mut length = self.parse_expr_anon_const()?;
659
660            if let Err(e) = self.expect(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::CloseBracket,
    token_type: crate::parser::token_type::TokenType::CloseBracket,
}exp!(CloseBracket)) {
661                // Try to recover from `X<Y, ...>` when `X::<Y, ...>` works
662                self.check_mistyped_turbofish_with_multiple_type_params(e, &mut length.value)?;
663                self.expect(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::CloseBracket,
    token_type: crate::parser::token_type::TokenType::CloseBracket,
}exp!(CloseBracket))?;
664            }
665            TyKind::Array(elt_ty, length)
666        } else if self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::CloseBracket,
    token_type: crate::parser::token_type::TokenType::CloseBracket,
}exp!(CloseBracket)) {
667            TyKind::Slice(elt_ty)
668        } else {
669            self.maybe_recover_array_ty_without_semi(elt_ty)?
670        };
671
672        Ok(ty)
673    }
674
675    /// Recover from malformed array type syntax.
676    ///
677    /// This method attempts to recover from cases like:
678    /// - `[u8, 5]` → suggests using `;`, return a Array type
679    /// - `[u8 5]` → suggests using `;`, return a Array type
680    /// Consider to add more cases in the future.
681    fn maybe_recover_array_ty_without_semi(&mut self, elt_ty: Box<Ty>) -> PResult<'a, TyKind> {
682        let span = self.token.span;
683        let token_descr = super::token_descr(&self.token);
684        let mut err =
685            self.dcx().struct_span_err(span, ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("expected `;` or `]`, found {0}",
                token_descr))
    })format!("expected `;` or `]`, found {}", token_descr));
686        err.span_label(span, "expected `;` or `]`");
687
688        // If we cannot recover, return the error immediately.
689        if !self.may_recover() {
690            return Err(err);
691        }
692
693        let snapshot = self.create_snapshot_for_diagnostic();
694
695        // Consume common erroneous separators.
696        let hi = self.prev_token.span.hi();
697        _ = self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Comma,
    token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma)) || self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Colon,
    token_type: crate::parser::token_type::TokenType::Colon,
}exp!(Colon)) || self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Star,
    token_type: crate::parser::token_type::TokenType::Star,
}exp!(Star));
698        let suggestion_span = self.prev_token.span.with_lo(hi);
699
700        // FIXME(mgca): recovery is broken for `const {` args
701        // we first try to parse pattern like `[u8 5]`
702        let length = match self.parse_expr_anon_const() {
703            Ok(length) => length,
704            Err(e) => {
705                e.cancel();
706                self.restore_snapshot(snapshot);
707                return Err(err);
708            }
709        };
710
711        if let Err(e) = self.expect(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::CloseBracket,
    token_type: crate::parser::token_type::TokenType::CloseBracket,
}exp!(CloseBracket)) {
712            e.cancel();
713            self.restore_snapshot(snapshot);
714            return Err(err);
715        }
716
717        err.span_suggestion_verbose(
718            suggestion_span,
719            "you might have meant to use `;` as the separator",
720            ";",
721            Applicability::MaybeIncorrect,
722        );
723        err.emit();
724        Ok(TyKind::Array(elt_ty, length))
725    }
726
727    fn parse_borrowed_pointee(&mut self) -> PResult<'a, TyKind> {
728        let and_span = self.prev_token.span;
729        let mut opt_lifetime = self.check_lifetime().then(|| self.expect_lifetime());
730        let (pinned, mut mutbl) = self.parse_pin_and_mut();
731        if self.token.is_lifetime() && mutbl == Mutability::Mut && opt_lifetime.is_none() {
732            // A lifetime is invalid here: it would be part of a bare trait bound, which requires
733            // it to be followed by a plus, but we disallow plus in the pointee type.
734            // So we can handle this case as an error here, and suggest `'a mut`.
735            // If there *is* a plus next though, handling the error later provides better suggestions
736            // (like adding parentheses)
737            if !self.look_ahead(1, |t| t.is_like_plus()) {
738                let lifetime_span = self.token.span;
739                let span = and_span.to(lifetime_span);
740
741                let (suggest_lifetime, snippet) =
742                    if let Ok(lifetime_src) = self.span_to_snippet(lifetime_span) {
743                        (Some(span), lifetime_src)
744                    } else {
745                        (None, String::new())
746                    };
747                self.dcx().emit_err(LifetimeAfterMut { span, suggest_lifetime, snippet });
748
749                opt_lifetime = Some(self.expect_lifetime());
750            }
751        } else if self.token.is_keyword(kw::Dyn)
752            && mutbl == Mutability::Not
753            && self.look_ahead(1, |t| t.is_keyword(kw::Mut))
754        {
755            // We have `&dyn mut ...`, which is invalid and should be `&mut dyn ...`.
756            let span = and_span.to(self.look_ahead(1, |t| t.span));
757            self.dcx().emit_err(DynAfterMut { span });
758
759            // Recovery
760            mutbl = Mutability::Mut;
761            let (dyn_tok, dyn_tok_sp) = (self.token, self.token_spacing);
762            self.bump();
763            self.bump_with((dyn_tok, dyn_tok_sp));
764        }
765        let ty = self.parse_ty_no_plus()?;
766        Ok(match pinned {
767            Pinnedness::Not => TyKind::Ref(opt_lifetime, MutTy { ty, mutbl }),
768            Pinnedness::Pinned => TyKind::PinnedRef(opt_lifetime, MutTy { ty, mutbl }),
769        })
770    }
771
772    /// Parse nothing, mutability or `pin` followed by "explicit" mutability.
773    ///
774    /// ```ebnf
775    /// PinAndMut = "pin" MutOrConst | "mut"
776    /// ```
777    pub(crate) fn parse_pin_and_mut(&mut self) -> (Pinnedness, Mutability) {
778        if self.token.is_ident_named(sym::pin) && self.look_ahead(1, Token::is_mutability) {
779            self.psess.gated_spans.gate(sym::pin_ergonomics, self.token.span);
780            if !self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
                kw: rustc_span::symbol::sym::pin,
                token_type: crate::parser::token_type::TokenType::SymPin,
            }) {
    ::core::panicking::panic("assertion failed: self.eat_keyword(exp!(Pin))")
};assert!(self.eat_keyword(exp!(Pin)));
781            let mutbl = self.parse_mut_or_const().unwrap();
782            (Pinnedness::Pinned, mutbl)
783        } else {
784            (Pinnedness::Not, self.parse_mutability())
785        }
786    }
787
788    /// Parses the `typeof(EXPR)` for better diagnostics before returning
789    /// an error type.
790    fn parse_typeof_ty(&mut self, lo: Span) -> PResult<'a, TyKind> {
791        self.expect(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::OpenParen,
    token_type: crate::parser::token_type::TokenType::OpenParen,
}exp!(OpenParen))?;
792        let _expr = self.parse_expr_anon_const()?;
793        self.expect(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::CloseParen,
    token_type: crate::parser::token_type::TokenType::CloseParen,
}exp!(CloseParen))?;
794        let span = lo.to(self.prev_token.span);
795        let guar = self
796            .dcx()
797            .struct_span_err(span, "`typeof` is a reserved keyword but unimplemented")
798            .with_note("consider replacing `typeof(...)` with an actual type")
799            .with_code(E0516)
800            .emit();
801        Ok(TyKind::Err(guar))
802    }
803
804    fn parse_builtin_ty(&mut self) -> PResult<'a, TyKind> {
805        self.parse_builtin(|this, lo, ident| {
806            Ok(match ident.name {
807                sym::field_of => Some(this.parse_ty_field_of(lo)?),
808                _ => None,
809            })
810        })
811    }
812
813    pub(crate) fn parse_ty_field_of(&mut self, _lo: Span) -> PResult<'a, TyKind> {
814        let container = self.parse_ty()?;
815        self.expect(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Comma,
    token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma))?;
816
817        let fields = self.parse_floating_field_access()?;
818        let trailing_comma = self.eat_noexpect(&TokenKind::Comma);
819
820        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)]) {
821            if trailing_comma {
822                e.note("unexpected third argument to field_of");
823            } else {
824                e.note("field_of expects dot-separated field and variant names");
825            }
826            e.emit();
827        }
828
829        // Eat tokens until the macro call ends.
830        if self.may_recover() {
831            while !self.token.kind.is_close_delim_or_eof() {
832                self.bump();
833            }
834        }
835
836        match *fields {
837            [] => Err(self.dcx().struct_span_err(
838                self.token.span,
839                "`field_of!` expects dot-separated field and variant names",
840            )),
841            [field] => Ok(TyKind::FieldOf(container, None, field)),
842            [variant, field] => Ok(TyKind::FieldOf(container, Some(variant), field)),
843            _ => Err(self.dcx().struct_span_err(
844                fields.iter().map(|f| f.span).collect::<Vec<_>>(),
845                "`field_of!` only supports a single field or a variant with a field",
846            )),
847        }
848    }
849
850    /// Parses a function pointer type (`TyKind::FnPtr`).
851    /// ```ignore (illustrative)
852    ///    [unsafe] [extern "ABI"] fn (S) -> T
853    /// //  ^~~~~^          ^~~~^     ^~^    ^
854    /// //    |               |        |     |
855    /// //    |               |        |   Return type
856    /// // Function Style    ABI  Parameter types
857    /// ```
858    /// We actually parse `FnHeader FnDecl`, but we error on `const` and `async` qualifiers.
859    fn parse_ty_fn_ptr(
860        &mut self,
861        lo: Span,
862        mut params: ThinVec<GenericParam>,
863        param_insertion_point: Option<Span>,
864        recover_return_sign: RecoverReturnSign,
865    ) -> PResult<'a, TyKind> {
866        let inherited_vis = rustc_ast::Visibility {
867            span: rustc_span::DUMMY_SP,
868            kind: rustc_ast::VisibilityKind::Inherited,
869        };
870        let span_start = self.token.span;
871        let ast::FnHeader { ext, safety, .. } = self.parse_fn_front_matter(
872            &inherited_vis,
873            Case::Sensitive,
874            FrontMatterParsingMode::FunctionPtrType,
875        )?;
876        if self.may_recover() && self.token == TokenKind::Lt {
877            self.recover_fn_ptr_with_generics(lo, &mut params, param_insertion_point)?;
878        }
879        let mode = crate::parser::FnParseMode {
880            req_name: |_, _| false,
881            context: FnContext::FunctionPtrType,
882            req_body: false,
883        };
884        let decl = self.parse_fn_decl(&mode, AllowPlus::No, recover_return_sign)?;
885
886        let decl_span = span_start.to(self.prev_token.span);
887        Ok(TyKind::FnPtr(Box::new(FnPtrTy {
888            ext,
889            safety,
890            generic_params: params,
891            decl,
892            decl_span,
893        })))
894    }
895
896    /// Recover from function pointer types with a generic parameter list (e.g. `fn<'a>(&'a str)`).
897    fn recover_fn_ptr_with_generics(
898        &mut self,
899        lo: Span,
900        params: &mut ThinVec<GenericParam>,
901        param_insertion_point: Option<Span>,
902    ) -> PResult<'a, ()> {
903        let generics = self.parse_generics()?;
904        let arity = generics.params.len();
905
906        let mut lifetimes: ThinVec<_> = generics
907            .params
908            .into_iter()
909            .filter(|param| #[allow(non_exhaustive_omitted_patterns)] match param.kind {
    ast::GenericParamKind::Lifetime => true,
    _ => false,
}matches!(param.kind, ast::GenericParamKind::Lifetime))
910            .collect();
911
912        let sugg = if !lifetimes.is_empty() {
913            let snippet =
914                lifetimes.iter().map(|param| param.ident.as_str()).intersperse(", ").collect();
915
916            let (left, snippet) = if let Some(span) = param_insertion_point {
917                (span, if params.is_empty() { snippet } else { ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!(", {0}", snippet))
    })format!(", {snippet}") })
918            } else {
919                (lo.shrink_to_lo(), ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("for<{0}> ", snippet))
    })format!("for<{snippet}> "))
920            };
921
922            Some(FnPtrWithGenericsSugg {
923                left,
924                snippet,
925                right: generics.span,
926                arity,
927                for_param_list_exists: param_insertion_point.is_some(),
928            })
929        } else {
930            None
931        };
932
933        self.dcx().emit_err(FnPtrWithGenerics { span: generics.span, sugg });
934        params.append(&mut lifetimes);
935        Ok(())
936    }
937
938    /// Parses an `impl B0 + ... + Bn` type.
939    fn parse_impl_ty(&mut self, impl_dyn_multi: &mut bool) -> PResult<'a, TyKind> {
940        if self.token.is_lifetime() {
941            self.look_ahead(1, |t| {
942                if let token::Ident(sym, _) = t.kind {
943                    // parse pattern with "'a Sized" we're supposed to give suggestion like
944                    // "'a + Sized"
945                    self.dcx().emit_err(diagnostics::MissingPlusBounds {
946                        span: self.token.span,
947                        hi: self.token.span.shrink_to_hi(),
948                        sym,
949                    });
950                }
951            })
952        }
953
954        // Always parse bounds greedily for better error recovery.
955        let bounds = self.parse_generic_bounds()?;
956
957        *impl_dyn_multi = bounds.len() > 1 || self.prev_token == TokenKind::Plus;
958
959        Ok(TyKind::ImplTrait(ast::DUMMY_NODE_ID, bounds))
960    }
961
962    /// Parse a use-bound aka precise capturing list.
963    ///
964    /// ```ebnf
965    /// UseBound = "use" "<" (PreciseCapture ("," PreciseCapture)* ","?)? ">"
966    /// PreciseCapture = "Self" | Ident | Lifetime
967    /// ```
968    fn parse_use_bound(&mut self, lo: Span, parens: ast::Parens) -> PResult<'a, GenericBound> {
969        self.expect_lt()?;
970        let (args, _, _) = self.parse_seq_to_before_tokens(
971            &[crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Gt,
    token_type: crate::parser::token_type::TokenType::Gt,
}exp!(Gt)],
972            &[&TokenKind::Ge, &TokenKind::Shr, &TokenKind::Shr],
973            SeqSep::trailing_allowed(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Comma,
    token_type: crate::parser::token_type::TokenType::Comma,
}exp!(Comma)),
974            |self_| {
975                if self_.check_keyword(crate::parser::token_type::ExpKeywordPair {
    kw: rustc_span::symbol::kw::SelfUpper,
    token_type: crate::parser::token_type::TokenType::KwSelfUpper,
}exp!(SelfUpper)) {
976                    self_.bump();
977                    Ok(PreciseCapturingArg::Arg(
978                        ast::Path::from_ident(self_.prev_token.ident().unwrap().0),
979                        DUMMY_NODE_ID,
980                    ))
981                } else if self_.check_ident() {
982                    Ok(PreciseCapturingArg::Arg(
983                        ast::Path::from_ident(self_.parse_ident()?),
984                        DUMMY_NODE_ID,
985                    ))
986                } else if self_.check_lifetime() {
987                    Ok(PreciseCapturingArg::Lifetime(self_.expect_lifetime()))
988                } else {
989                    self_.unexpected_any()
990                }
991            },
992        )?;
993        self.expect_gt()?;
994
995        if let ast::Parens::Yes = parens {
996            self.expect(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::CloseParen,
    token_type: crate::parser::token_type::TokenType::CloseParen,
}exp!(CloseParen))?;
997            self.report_parenthesized_bound(lo, self.prev_token.span, "precise capturing lists");
998        }
999
1000        Ok(GenericBound::Use(args, lo.to(self.prev_token.span)))
1001    }
1002
1003    /// Is a `dyn B0 + ... + Bn` type allowed here?
1004    fn is_explicit_dyn_type(&mut self) -> bool {
1005        self.check_keyword(crate::parser::token_type::ExpKeywordPair {
    kw: rustc_span::symbol::kw::Dyn,
    token_type: crate::parser::token_type::TokenType::KwDyn,
}exp!(Dyn))
1006            && (self.token_uninterpolated_span().at_least_rust_2018()
1007                || self.look_ahead(1, |&t| can_begin_dyn_bound_in_edition_2015(t)))
1008    }
1009
1010    /// Parses a `dyn B0 + ... + Bn` type.
1011    ///
1012    /// Note that this does *not* parse bare trait objects.
1013    fn parse_dyn_ty(&mut self, impl_dyn_multi: &mut bool) -> PResult<'a, TyKind> {
1014        self.bump(); // `dyn`
1015
1016        // Always parse bounds greedily for better error recovery.
1017        let bounds = self.parse_generic_bounds()?;
1018        *impl_dyn_multi = bounds.len() > 1 || self.prev_token == TokenKind::Plus;
1019
1020        Ok(TyKind::TraitObject(bounds, TraitObjectSyntax::Dyn))
1021    }
1022
1023    /// Parses a type starting with a path.
1024    ///
1025    /// This can be:
1026    /// 1. a type macro, `mac!(...)`,
1027    /// 2. a bare trait object, `B0 + ... + Bn`,
1028    /// 3. or a path, `path::to::MyType`.
1029    fn parse_path_start_ty(
1030        &mut self,
1031        lo: Span,
1032        allow_plus: AllowPlus,
1033        ty_generics: Option<&Generics>,
1034    ) -> PResult<'a, TyKind> {
1035        // Simple path
1036        let path = self.parse_path_inner(PathStyle::Type, ty_generics)?;
1037        if self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Bang,
    token_type: crate::parser::token_type::TokenType::Bang,
}exp!(Bang)) {
1038            // Macro invocation in type position
1039            Ok(TyKind::MacCall(Box::new(MacCall { path, args: self.parse_delim_args()? })))
1040        } else if allow_plus == AllowPlus::Yes && self.check_plus() {
1041            // `Trait1 + Trait2 + 'a`
1042            self.parse_remaining_bounds_path(ThinVec::new(), path, lo, true, ast::Parens::No)
1043        } else {
1044            // Just a type path.
1045            Ok(TyKind::Path(None, path))
1046        }
1047    }
1048
1049    pub(super) fn parse_generic_bounds(&mut self) -> PResult<'a, GenericBounds> {
1050        self.parse_generic_bounds_common(AllowPlus::Yes)
1051    }
1052
1053    /// Parse generic bounds.
1054    ///
1055    /// Only if `allow_plus` this parses a `+`-separated list of bounds (trailing `+` is admitted).
1056    /// Otherwise, this only parses a single bound or none.
1057    fn parse_generic_bounds_common(&mut self, allow_plus: AllowPlus) -> PResult<'a, GenericBounds> {
1058        let mut bounds = ThinVec::new();
1059
1060        // In addition to looping while we find generic bounds:
1061        // We continue even if we find a keyword. This is necessary for error recovery on,
1062        // for example, `impl fn()`. The only keyword that can go after generic bounds is
1063        // `where`, so stop if it's it.
1064        // We also continue if we find types (not traits), again for error recovery.
1065        while self.can_begin_bound()
1066            || (self.may_recover()
1067                && (self.token.can_begin_type()
1068                    || (self.token.is_reserved_ident() && !self.token.is_keyword(kw::Where))))
1069        {
1070            if self.token.is_keyword(kw::Dyn) && self.token.span.edition().at_least_rust_2018() {
1071                // Account for `&dyn Trait + dyn Other`.
1072                self.bump();
1073                self.dcx().emit_err(InvalidDynKeyword {
1074                    span: self.prev_token.span,
1075                    suggestion: self.prev_token.span.until(self.token.span),
1076                });
1077            }
1078            bounds.push(self.parse_generic_bound()?);
1079            if allow_plus == AllowPlus::No || !self.eat_plus() {
1080                break;
1081            }
1082        }
1083
1084        Ok(bounds)
1085    }
1086
1087    /// Can the current token begin a bound?
1088    fn can_begin_bound(&mut self) -> bool {
1089        self.check_path()
1090            || self.check_lifetime()
1091            || self.check(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Bang,
    token_type: crate::parser::token_type::TokenType::Bang,
}exp!(Bang))
1092            || self.check(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Question,
    token_type: crate::parser::token_type::TokenType::Question,
}exp!(Question))
1093            || self.check(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Tilde,
    token_type: crate::parser::token_type::TokenType::Tilde,
}exp!(Tilde))
1094            || self.check_keyword(crate::parser::token_type::ExpKeywordPair {
    kw: rustc_span::symbol::kw::For,
    token_type: crate::parser::token_type::TokenType::KwFor,
}exp!(For))
1095            || self.check(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::OpenParen,
    token_type: crate::parser::token_type::TokenType::OpenParen,
}exp!(OpenParen))
1096            || self.can_begin_maybe_const_bound()
1097            || self.check_keyword(crate::parser::token_type::ExpKeywordPair {
    kw: rustc_span::symbol::kw::Const,
    token_type: crate::parser::token_type::TokenType::KwConst,
}exp!(Const))
1098            || self.check_keyword(crate::parser::token_type::ExpKeywordPair {
    kw: rustc_span::symbol::kw::Async,
    token_type: crate::parser::token_type::TokenType::KwAsync,
}exp!(Async))
1099            || self.check_keyword(crate::parser::token_type::ExpKeywordPair {
    kw: rustc_span::symbol::kw::Use,
    token_type: crate::parser::token_type::TokenType::KwUse,
}exp!(Use))
1100    }
1101
1102    fn can_begin_maybe_const_bound(&mut self) -> bool {
1103        self.check(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::OpenBracket,
    token_type: crate::parser::token_type::TokenType::OpenBracket,
}exp!(OpenBracket))
1104            && self.look_ahead(1, |t| t.is_keyword(kw::Const))
1105            && self.look_ahead(2, |t| *t == token::CloseBracket)
1106    }
1107
1108    /// Parse a bound.
1109    ///
1110    /// ```ebnf
1111    /// Bound = LifetimeBound | UseBound | TraitBound
1112    /// ```
1113    fn parse_generic_bound(&mut self) -> PResult<'a, GenericBound> {
1114        let leading_token = self.prev_token;
1115        let lo = self.token.span;
1116
1117        // We only admit parenthesized *trait* bounds. However, we want to gracefully recover from
1118        // other kinds of parenthesized bounds, so parse the opening parenthesis *here*.
1119        //
1120        // In the future we might want to lift this syntactic restriction and
1121        // introduce "`GenericBound::Paren(Box<GenericBound>)`".
1122        let parens = if self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::OpenParen,
    token_type: crate::parser::token_type::TokenType::OpenParen,
}exp!(OpenParen)) { ast::Parens::Yes } else { ast::Parens::No };
1123
1124        if self.token.is_lifetime() {
1125            self.parse_lifetime_bound(lo, parens)
1126        } 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)) {
1127            self.parse_use_bound(lo, parens)
1128        } else {
1129            self.parse_trait_bound(lo, parens, &leading_token)
1130        }
1131    }
1132
1133    /// Parse a lifetime-bound aka outlives-bound.
1134    ///
1135    /// ```ebnf
1136    /// LifetimeBound = Lifetime
1137    /// ```
1138    fn parse_lifetime_bound(&mut self, lo: Span, parens: ast::Parens) -> PResult<'a, GenericBound> {
1139        let lt = self.expect_lifetime();
1140
1141        if let ast::Parens::Yes = parens {
1142            self.expect(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::CloseParen,
    token_type: crate::parser::token_type::TokenType::CloseParen,
}exp!(CloseParen))?;
1143            self.report_parenthesized_bound(lo, self.prev_token.span, "lifetime bounds");
1144        }
1145
1146        Ok(GenericBound::Outlives(lt))
1147    }
1148
1149    fn report_parenthesized_bound(&self, lo: Span, hi: Span, kind: &str) -> ErrorGuaranteed {
1150        let mut diag =
1151            self.dcx().struct_span_err(lo.to(hi), ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0} may not be parenthesized",
                kind))
    })format!("{kind} may not be parenthesized"));
1152        diag.multipart_suggestion(
1153            "remove the parentheses",
1154            ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
        [(lo, String::new()), (hi, String::new())]))vec![(lo, String::new()), (hi, String::new())],
1155            Applicability::MachineApplicable,
1156        );
1157        diag.emit()
1158    }
1159
1160    /// Emits an error if any trait bound modifiers were present.
1161    fn error_lt_bound_with_modifiers(
1162        &self,
1163        modifiers: TraitBoundModifiers,
1164        binder_span: Option<Span>,
1165    ) -> ErrorGuaranteed {
1166        let TraitBoundModifiers { constness, asyncness, polarity } = modifiers;
1167
1168        match constness {
1169            BoundConstness::Never => {}
1170            BoundConstness::Always(span) | BoundConstness::Maybe(span) => {
1171                return self.dcx().emit_err(diagnostics::ModifierLifetime {
1172                    span,
1173                    modifier: constness.as_str(),
1174                });
1175            }
1176        }
1177
1178        match polarity {
1179            BoundPolarity::Positive => {}
1180            BoundPolarity::Negative(span) | BoundPolarity::Maybe(span) => {
1181                return self
1182                    .dcx()
1183                    .emit_err(diagnostics::ModifierLifetime { span, modifier: polarity.as_str() });
1184            }
1185        }
1186
1187        match asyncness {
1188            BoundAsyncness::Normal => {}
1189            BoundAsyncness::Async(span) => {
1190                return self.dcx().emit_err(diagnostics::ModifierLifetime {
1191                    span,
1192                    modifier: asyncness.as_str(),
1193                });
1194            }
1195        }
1196
1197        if let Some(span) = binder_span {
1198            return self
1199                .dcx()
1200                .emit_err(diagnostics::ModifierLifetime { span, modifier: "for<...>" });
1201        }
1202
1203        {
    ::core::panicking::panic_fmt(format_args!("internal error: entered unreachable code: {0}",
            format_args!("lifetime bound intercepted in `parse_generic_ty_bound` but no modifiers?")));
}unreachable!("lifetime bound intercepted in `parse_generic_ty_bound` but no modifiers?")
1204    }
1205
1206    /// Parses the modifiers that may precede a trait in a bound, e.g. `?Trait` or `[const] Trait`.
1207    ///
1208    /// If no modifiers are present, this does not consume any tokens.
1209    ///
1210    /// ```ebnf
1211    /// Constness = ("const" | "[" "const" "]")?
1212    /// Asyncness = "async"?
1213    /// Polarity = ("?" | "!")?
1214    /// ```
1215    ///
1216    /// See `parse_trait_bound` for more context.
1217    fn parse_trait_bound_modifiers(&mut self) -> PResult<'a, TraitBoundModifiers> {
1218        let modifier_lo = self.token.span;
1219        let constness = self.parse_bound_constness()?;
1220
1221        let asyncness = if self.token_uninterpolated_span().at_least_rust_2018()
1222            && self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
    kw: rustc_span::symbol::kw::Async,
    token_type: crate::parser::token_type::TokenType::KwAsync,
}exp!(Async))
1223        {
1224            self.psess.gated_spans.gate(sym::async_trait_bounds, self.prev_token.span);
1225            BoundAsyncness::Async(self.prev_token.span)
1226        } else if self.may_recover()
1227            && self.token_uninterpolated_span().is_rust_2015()
1228            && self.is_kw_followed_by_ident(kw::Async)
1229        {
1230            self.bump(); // eat `async`
1231            self.dcx().emit_err(diagnostics::AsyncBoundModifierIn2015 {
1232                span: self.prev_token.span,
1233                help: HelpUseLatestEdition::new(),
1234            });
1235            self.psess.gated_spans.gate(sym::async_trait_bounds, self.prev_token.span);
1236            BoundAsyncness::Async(self.prev_token.span)
1237        } else {
1238            BoundAsyncness::Normal
1239        };
1240        let modifier_hi = self.prev_token.span;
1241
1242        let polarity = if self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Question,
    token_type: crate::parser::token_type::TokenType::Question,
}exp!(Question)) {
1243            BoundPolarity::Maybe(self.prev_token.span)
1244        } else if self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Bang,
    token_type: crate::parser::token_type::TokenType::Bang,
}exp!(Bang)) {
1245            self.psess.gated_spans.gate(sym::negative_bounds, self.prev_token.span);
1246            BoundPolarity::Negative(self.prev_token.span)
1247        } else {
1248            BoundPolarity::Positive
1249        };
1250
1251        // Enforce the mutual-exclusivity of `const`/`async` and `?`/`!`.
1252        match polarity {
1253            BoundPolarity::Positive => {
1254                // All trait bound modifiers allowed to combine with positive polarity
1255            }
1256            BoundPolarity::Maybe(polarity_span) | BoundPolarity::Negative(polarity_span) => {
1257                match (asyncness, constness) {
1258                    (BoundAsyncness::Normal, BoundConstness::Never) => {
1259                        // Ok, no modifiers.
1260                    }
1261                    (_, _) => {
1262                        let constness = constness.as_str();
1263                        let asyncness = asyncness.as_str();
1264                        let glue =
1265                            if !constness.is_empty() && !asyncness.is_empty() { " " } else { "" };
1266                        let modifiers_concatenated = ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0}{1}{2}", constness, glue,
                asyncness))
    })format!("{constness}{glue}{asyncness}");
1267                        self.dcx().emit_err(diagnostics::PolarityAndModifiers {
1268                            polarity_span,
1269                            polarity: polarity.as_str(),
1270                            modifiers_span: modifier_lo.to(modifier_hi),
1271                            modifiers_concatenated,
1272                        });
1273                    }
1274                }
1275            }
1276        }
1277
1278        Ok(TraitBoundModifiers { constness, asyncness, polarity })
1279    }
1280
1281    pub fn parse_bound_constness(&mut self) -> PResult<'a, BoundConstness> {
1282        // FIXME(const_trait_impl): remove `~const` parser support once bootstrap has the new syntax
1283        // in rustfmt
1284        Ok(if self.eat(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::Tilde,
    token_type: crate::parser::token_type::TokenType::Tilde,
}exp!(Tilde)) {
1285            let tilde = self.prev_token.span;
1286            self.expect_keyword(crate::parser::token_type::ExpKeywordPair {
    kw: rustc_span::symbol::kw::Const,
    token_type: crate::parser::token_type::TokenType::KwConst,
}exp!(Const))?;
1287            let span = tilde.to(self.prev_token.span);
1288            self.psess.gated_spans.gate(sym::const_trait_impl, span);
1289            BoundConstness::Maybe(span)
1290        } else if self.can_begin_maybe_const_bound() {
1291            let start = self.token.span;
1292            self.bump();
1293            self.expect_keyword(crate::parser::token_type::ExpKeywordPair {
    kw: rustc_span::symbol::kw::Const,
    token_type: crate::parser::token_type::TokenType::KwConst,
}exp!(Const)).unwrap();
1294            self.bump();
1295            let span = start.to(self.prev_token.span);
1296            self.psess.gated_spans.gate(sym::const_trait_impl, span);
1297            BoundConstness::Maybe(span)
1298        } else if self.eat_keyword(crate::parser::token_type::ExpKeywordPair {
    kw: rustc_span::symbol::kw::Const,
    token_type: crate::parser::token_type::TokenType::KwConst,
}exp!(Const)) {
1299            self.psess.gated_spans.gate(sym::const_trait_impl, self.prev_token.span);
1300            BoundConstness::Always(self.prev_token.span)
1301        } else {
1302            BoundConstness::Never
1303        })
1304    }
1305
1306    /// Parse a trait bound.
1307    ///
1308    /// ```ebnf
1309    /// TraitBound = BareTraitBound | "(" BareTraitBound ")"
1310    /// BareTraitBound =
1311    ///     (HigherRankedBinder Constness Asyncness | Polarity)
1312    ///     TypePath
1313    /// ```
1314    fn parse_trait_bound(
1315        &mut self,
1316        lo: Span,
1317        parens: ast::Parens,
1318        leading_token: &Token,
1319    ) -> PResult<'a, GenericBound> {
1320        let (mut bound_vars, binder_span) = self.parse_higher_ranked_binder()?;
1321
1322        let modifiers_lo = self.token.span;
1323        let modifiers = self.parse_trait_bound_modifiers()?;
1324        let modifiers_span = modifiers_lo.to(self.prev_token.span);
1325
1326        if let Some(binder_span) = binder_span {
1327            match modifiers.polarity {
1328                BoundPolarity::Negative(polarity_span) | BoundPolarity::Maybe(polarity_span) => {
1329                    self.dcx().emit_err(diagnostics::BinderAndPolarity {
1330                        binder_span,
1331                        polarity_span,
1332                        polarity: modifiers.polarity.as_str(),
1333                    });
1334                }
1335                BoundPolarity::Positive => {}
1336            }
1337        }
1338
1339        // Recover erroneous lifetime bound with modifiers or binder.
1340        // e.g. `T: for<'a> 'a` or `T: [const] 'a`.
1341        if self.token.is_lifetime() {
1342            let _: ErrorGuaranteed = self.error_lt_bound_with_modifiers(modifiers, binder_span);
1343            return self.parse_lifetime_bound(lo, parens);
1344        }
1345
1346        if let (more_bound_vars, Some(binder_span)) = self.parse_higher_ranked_binder()? {
1347            bound_vars.extend(more_bound_vars);
1348            self.dcx().emit_err(diagnostics::BinderBeforeModifiers { binder_span, modifiers_span });
1349        }
1350
1351        let mut path = if self.token.is_keyword(kw::Fn)
1352            && self.look_ahead(1, |t| *t == TokenKind::OpenParen)
1353            && let Some(path) = self.recover_path_from_fn()
1354        {
1355            path
1356        } else if !self.token.is_path_start() && self.token.can_begin_type() {
1357            let ty = self.parse_ty_no_plus()?;
1358            // Instead of finding a path (a trait), we found a type.
1359            let mut err = self.dcx().struct_span_err(ty.span, "expected a trait, found type");
1360
1361            // If we can recover, try to extract a path from the type. Note
1362            // that we do not use the try operator when parsing the type because
1363            // if it fails then we get a parser error which we don't want (we're trying
1364            // to recover from errors, not make more).
1365            let path = if self.may_recover() {
1366                let (span, message, sugg, path, applicability) = match &ty.kind {
1367                    TyKind::Ptr(..) | TyKind::Ref(..)
1368                        if let TyKind::Path(_, path) = &ty.peel_refs().kind =>
1369                    {
1370                        (
1371                            ty.span.until(path.span),
1372                            "consider removing the indirection",
1373                            "",
1374                            path,
1375                            Applicability::MaybeIncorrect,
1376                        )
1377                    }
1378                    TyKind::ImplTrait(_, bounds)
1379                        if let [GenericBound::Trait(tr, ..), ..] = bounds.as_slice() =>
1380                    {
1381                        (
1382                            ty.span.until(tr.span),
1383                            "use the trait bounds directly",
1384                            "",
1385                            &tr.trait_ref.path,
1386                            Applicability::MachineApplicable,
1387                        )
1388                    }
1389                    _ => return Err(err),
1390                };
1391
1392                err.span_suggestion_verbose(span, message, sugg, applicability);
1393
1394                path.clone()
1395            } else {
1396                return Err(err);
1397            };
1398
1399            err.emit();
1400
1401            path
1402        } else {
1403            self.parse_path(PathStyle::Type)?
1404        };
1405
1406        if self.may_recover() && self.token == TokenKind::OpenParen {
1407            self.recover_fn_trait_with_lifetime_params(&mut path, &mut bound_vars)?;
1408        }
1409
1410        if let ast::Parens::Yes = parens {
1411            // Someone has written something like `&dyn (Trait + Other)`. The correct code
1412            // would be `&(dyn Trait + Other)`
1413            if self.token.is_like_plus() && leading_token.is_keyword(kw::Dyn) {
1414                let bounds = ::thin_vec::ThinVec::new()thin_vec![];
1415                self.parse_remaining_bounds(bounds, true)?;
1416                self.expect(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::CloseParen,
    token_type: crate::parser::token_type::TokenType::CloseParen,
}exp!(CloseParen))?;
1417                self.dcx().emit_err(diagnostics::IncorrectParensTraitBounds {
1418                    span: ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
        [lo, self.prev_token.span]))vec![lo, self.prev_token.span],
1419                    sugg: diagnostics::IncorrectParensTraitBoundsSugg {
1420                        wrong_span: leading_token.span.shrink_to_hi().to(lo),
1421                        new_span: leading_token.span.shrink_to_lo(),
1422                    },
1423                });
1424            } else {
1425                self.expect(crate::parser::token_type::ExpTokenPair {
    tok: rustc_ast::token::CloseParen,
    token_type: crate::parser::token_type::TokenType::CloseParen,
}exp!(CloseParen))?;
1426            }
1427        }
1428
1429        let poly_trait =
1430            PolyTraitRef::new(bound_vars, path, modifiers, lo.to(self.prev_token.span), parens);
1431        Ok(GenericBound::Trait(poly_trait))
1432    }
1433
1434    // recovers a `Fn(..)` parenthesized-style path from `fn(..)`
1435    fn recover_path_from_fn(&mut self) -> Option<ast::Path> {
1436        let fn_token_span = self.token.span;
1437        self.bump();
1438        let args_lo = self.token.span;
1439        let snapshot = self.create_snapshot_for_diagnostic();
1440        let mode =
1441            FnParseMode { req_name: |_, _| false, context: FnContext::Free, req_body: false };
1442        match self.parse_fn_decl(&mode, AllowPlus::No, RecoverReturnSign::OnlyFatArrow) {
1443            Ok(decl) => {
1444                self.dcx().emit_err(ExpectedFnPathFoundFnKeyword { fn_token_span });
1445                Some(ast::Path {
1446                    span: fn_token_span.to(self.prev_token.span),
1447                    segments: {
    let len = [()].len();
    let mut vec = ::thin_vec::ThinVec::with_capacity(len);
    vec.push(ast::PathSegment {
            ident: Ident::new(sym::Fn, fn_token_span),
            id: DUMMY_NODE_ID,
            args: Some(Box::new(ast::GenericArgs::Parenthesized(ast::ParenthesizedArgs {
                            span: args_lo.to(self.prev_token.span),
                            inputs: decl.inputs.iter().map(|a| a.clone()).collect(),
                            inputs_span: args_lo.until(decl.output.span()),
                            output: decl.output.clone(),
                        }))),
        });
    vec
}thin_vec![ast::PathSegment {
1448                        ident: Ident::new(sym::Fn, fn_token_span),
1449                        id: DUMMY_NODE_ID,
1450                        args: Some(Box::new(ast::GenericArgs::Parenthesized(
1451                            ast::ParenthesizedArgs {
1452                                span: args_lo.to(self.prev_token.span),
1453                                inputs: decl.inputs.iter().map(|a| a.clone()).collect(),
1454                                inputs_span: args_lo.until(decl.output.span()),
1455                                output: decl.output.clone(),
1456                            }
1457                        ))),
1458                    }],
1459                })
1460            }
1461            Err(diag) => {
1462                diag.cancel();
1463                self.restore_snapshot(snapshot);
1464                None
1465            }
1466        }
1467    }
1468
1469    /// Parse an optional higher-ranked binder.
1470    ///
1471    /// ```ebnf
1472    /// HigherRankedBinder = ("for" "<" GenericParams ">")?
1473    /// ```
1474    pub(super) fn parse_higher_ranked_binder(
1475        &mut self,
1476    ) -> PResult<'a, (ThinVec<GenericParam>, Option<Span>)> {
1477        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)) {
1478            let lo = self.token.span;
1479            self.expect_lt()?;
1480            let params = self.parse_generic_params()?;
1481            self.expect_gt()?;
1482            // We rely on AST validation to rule out invalid cases: There must not be
1483            // type or const parameters, and parameters must not have bounds.
1484            Ok((params, Some(lo.to(self.prev_token.span))))
1485        } else {
1486            Ok((ThinVec::new(), None))
1487        }
1488    }
1489
1490    /// Recover from `Fn`-family traits (Fn, FnMut, FnOnce) with lifetime arguments
1491    /// (e.g. `FnOnce<'a>(&'a str) -> bool`). Up to generic arguments have already
1492    /// been eaten.
1493    fn recover_fn_trait_with_lifetime_params(
1494        &mut self,
1495        fn_path: &mut ast::Path,
1496        lifetime_defs: &mut ThinVec<GenericParam>,
1497    ) -> PResult<'a, ()> {
1498        let fn_path_segment = fn_path.segments.last_mut().unwrap();
1499        let generic_args = if let Some(p_args) = &fn_path_segment.args {
1500            *p_args.clone()
1501        } else {
1502            // Normally it wouldn't come here because the upstream should have parsed
1503            // generic parameters (otherwise it's impossible to call this function).
1504            return Ok(());
1505        };
1506        let lifetimes =
1507            if let ast::GenericArgs::AngleBracketed(ast::AngleBracketedArgs { span: _, args }) =
1508                &generic_args
1509            {
1510                args.into_iter()
1511                    .filter_map(|arg| {
1512                        if let ast::AngleBracketedArg::Arg(generic_arg) = arg
1513                            && let ast::GenericArg::Lifetime(lifetime) = generic_arg
1514                        {
1515                            Some(lifetime)
1516                        } else {
1517                            None
1518                        }
1519                    })
1520                    .collect()
1521            } else {
1522                Vec::new()
1523            };
1524        // Only try to recover if the trait has lifetime params.
1525        if lifetimes.is_empty() {
1526            return Ok(());
1527        }
1528
1529        let snapshot = if self.parsing_generics {
1530            // The snapshot is only relevant if we're parsing the generics of an `fn` to avoid
1531            // incorrect recovery.
1532            Some(self.create_snapshot_for_diagnostic())
1533        } else {
1534            None
1535        };
1536        // Parse `(T, U) -> R`.
1537        let inputs_lo = self.token.span;
1538        let mode =
1539            FnParseMode { req_name: |_, _| false, context: FnContext::Free, req_body: false };
1540        let inputs = match self.parse_fn_params(&mode) {
1541            Ok(params) => params,
1542            Err(err) => {
1543                if let Some(snapshot) = snapshot {
1544                    self.restore_snapshot(snapshot);
1545                    err.cancel();
1546                    return Ok(());
1547                } else {
1548                    return Err(err);
1549                }
1550            }
1551        };
1552        let inputs_span = inputs_lo.to(self.prev_token.span);
1553        let output = match self.parse_ret_ty(AllowPlus::No, RecoverQPath::No, RecoverReturnSign::No)
1554        {
1555            Ok(output) => output,
1556            Err(err) => {
1557                if let Some(snapshot) = snapshot {
1558                    self.restore_snapshot(snapshot);
1559                    err.cancel();
1560                    return Ok(());
1561                } else {
1562                    return Err(err);
1563                }
1564            }
1565        };
1566        let args = ast::ParenthesizedArgs {
1567            span: fn_path_segment.span().to(self.prev_token.span),
1568            inputs,
1569            inputs_span,
1570            output,
1571        }
1572        .into();
1573
1574        if let Some(snapshot) = snapshot
1575            && ![token::Comma, token::Gt, token::Plus].contains(&self.token.kind)
1576        {
1577            // We would expect another bound or the end of type params by now. Most likely we've
1578            // encountered a `(` *not* representing `Trait()`, but rather the start of the `fn`'s
1579            // argument list where the generic param list wasn't properly closed.
1580            self.restore_snapshot(snapshot);
1581            return Ok(());
1582        }
1583
1584        *fn_path_segment = ast::PathSegment {
1585            ident: fn_path_segment.ident,
1586            args: Some(args),
1587            id: ast::DUMMY_NODE_ID,
1588        };
1589
1590        // Convert parsed `<'a>` in `Fn<'a>` into `for<'a>`.
1591        let mut generic_params = lifetimes
1592            .iter()
1593            .map(|lt| GenericParam {
1594                id: lt.id,
1595                ident: lt.ident,
1596                attrs: ast::AttrVec::new(),
1597                bounds: ThinVec::new(),
1598                is_placeholder: false,
1599                kind: ast::GenericParamKind::Lifetime,
1600                colon_span: None,
1601            })
1602            .collect::<ThinVec<GenericParam>>();
1603        lifetime_defs.append(&mut generic_params);
1604
1605        let generic_args_span = generic_args.span();
1606        let snippet = ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("for<{0}> ",
                lifetimes.iter().map(|lt|
                                lt.ident.as_str()).intersperse(", ").collect::<String>()))
    })format!(
1607            "for<{}> ",
1608            lifetimes.iter().map(|lt| lt.ident.as_str()).intersperse(", ").collect::<String>(),
1609        );
1610        let before_fn_path = fn_path.span.shrink_to_lo();
1611        self.dcx()
1612            .struct_span_err(generic_args_span, "`Fn` traits cannot take lifetime parameters")
1613            .with_multipart_suggestion(
1614                "consider using a higher-ranked trait bound instead",
1615                ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
        [(generic_args_span, "".to_owned()), (before_fn_path, snippet)]))vec![(generic_args_span, "".to_owned()), (before_fn_path, snippet)],
1616                Applicability::MaybeIncorrect,
1617            )
1618            .emit();
1619        Ok(())
1620    }
1621
1622    pub(super) fn check_lifetime(&mut self) -> bool {
1623        self.expected_token_types.insert(TokenType::Lifetime);
1624        self.token.is_lifetime()
1625    }
1626
1627    /// Parses a single lifetime `'a` or panics.
1628    pub(super) fn expect_lifetime(&mut self) -> Lifetime {
1629        if let Some((ident, is_raw)) = self.token.lifetime() {
1630            if is_raw == IdentIsRaw::No && ident.without_first_quote().is_reserved_lifetime() {
1631                self.dcx().emit_err(diagnostics::KeywordLifetime { span: ident.span });
1632            }
1633
1634            self.bump();
1635            Lifetime { ident, id: ast::DUMMY_NODE_ID }
1636        } else {
1637            self.dcx().span_bug(self.token.span, "not a lifetime")
1638        }
1639    }
1640
1641    pub(super) fn mk_ty(&self, span: Span, kind: TyKind) -> Box<Ty> {
1642        Box::new(Ty { kind, span, id: ast::DUMMY_NODE_ID })
1643    }
1644}