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rustc_hir/
hir.rs

1// ignore-tidy-filelength
2use std::borrow::Cow;
3use std::fmt;
4use std::ops::Not;
5
6use rustc_abi::ExternAbi;
7use rustc_ast::attr::AttributeExt;
8use rustc_ast::token::DocFragmentKind;
9use rustc_ast::util::parser::ExprPrecedence;
10use rustc_ast::{
11    self as ast, FloatTy, InlineAsmOptions, InlineAsmTemplatePiece, IntTy, Label, LitIntType,
12    LitKind, TraitObjectSyntax, UintTy, UnsafeBinderCastKind, join_path_idents,
13};
14pub use rustc_ast::{
15    AssignOp, AssignOpKind, AttrId, AttrStyle, BinOp, BinOpKind, BindingMode, BorrowKind,
16    BoundConstness, BoundPolarity, ByRef, CaptureBy, DelimArgs, ImplPolarity, IsAuto,
17    MetaItemInner, MetaItemLit, Movability, Mutability, Pinnedness, UnOp,
18};
19use rustc_data_structures::fingerprint::Fingerprint;
20use rustc_data_structures::sorted_map::SortedMap;
21use rustc_data_structures::steal::Steal;
22use rustc_data_structures::tagged_ptr::TaggedRef;
23use rustc_data_structures::unord::UnordMap;
24use rustc_error_messages::{DiagArgValue, IntoDiagArg};
25use rustc_index::IndexVec;
26use rustc_macros::{Decodable, Encodable, StableHash};
27use rustc_span::def_id::LocalDefId;
28use rustc_span::{
29    BytePos, DUMMY_SP, DesugaringKind, ErrorGuaranteed, Ident, LocalExpnId, Span, Spanned, Symbol,
30    kw, sym,
31};
32use rustc_target::asm::InlineAsmRegOrRegClass;
33use smallvec::SmallVec;
34use thin_vec::ThinVec;
35use tracing::debug;
36
37use crate::attrs::AttributeKind;
38use crate::def::{CtorKind, DefKind, MacroKinds, PerNS, Res};
39use crate::def_id::{DefId, LocalDefIdMap};
40pub(crate) use crate::hir_id::{HirId, ItemLocalId, ItemLocalMap, OwnerId};
41use crate::intravisit::{FnKind, VisitorExt};
42use crate::lints::DelayedLints;
43
44#[derive(#[automatically_derived]
impl ::core::fmt::Debug for AngleBrackets {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                AngleBrackets::Missing => "Missing",
                AngleBrackets::Empty => "Empty",
                AngleBrackets::Full => "Full",
            })
    }
}Debug, #[automatically_derived]
impl ::core::marker::Copy for AngleBrackets { }Copy, #[automatically_derived]
impl ::core::clone::Clone for AngleBrackets {
    #[inline]
    fn clone(&self) -> AngleBrackets { *self }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for AngleBrackets {
    #[inline]
    fn eq(&self, other: &AngleBrackets) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for AngleBrackets {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {}
}Eq, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            AngleBrackets {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    AngleBrackets::Missing => {}
                    AngleBrackets::Empty => {}
                    AngleBrackets::Full => {}
                }
            }
        }
    };StableHash)]
45pub enum AngleBrackets {
46    /// E.g. `Path`.
47    Missing,
48    /// E.g. `Path<>`.
49    Empty,
50    /// E.g. `Path<T>`.
51    Full,
52}
53
54#[derive(#[automatically_derived]
impl ::core::fmt::Debug for LifetimeSource {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            LifetimeSource::Reference =>
                ::core::fmt::Formatter::write_str(f, "Reference"),
            LifetimeSource::Path { angle_brackets: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f, "Path",
                    "angle_brackets", &__self_0),
            LifetimeSource::OutlivesBound =>
                ::core::fmt::Formatter::write_str(f, "OutlivesBound"),
            LifetimeSource::PreciseCapturing =>
                ::core::fmt::Formatter::write_str(f, "PreciseCapturing"),
            LifetimeSource::Other =>
                ::core::fmt::Formatter::write_str(f, "Other"),
        }
    }
}Debug, #[automatically_derived]
impl ::core::marker::Copy for LifetimeSource { }Copy, #[automatically_derived]
impl ::core::clone::Clone for LifetimeSource {
    #[inline]
    fn clone(&self) -> LifetimeSource {
        let _: ::core::clone::AssertParamIsClone<AngleBrackets>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for LifetimeSource {
    #[inline]
    fn eq(&self, other: &LifetimeSource) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (LifetimeSource::Path { angle_brackets: __self_0 },
                    LifetimeSource::Path { angle_brackets: __arg1_0 }) =>
                    __self_0 == __arg1_0,
                _ => true,
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for LifetimeSource {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<AngleBrackets>;
    }
}Eq, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            LifetimeSource {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    LifetimeSource::Reference => {}
                    LifetimeSource::Path { angle_brackets: ref __binding_0 } =>
                        {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    LifetimeSource::OutlivesBound => {}
                    LifetimeSource::PreciseCapturing => {}
                    LifetimeSource::Other => {}
                }
            }
        }
    };StableHash)]
55pub enum LifetimeSource {
56    /// E.g. `&Type`, `&'_ Type`, `&'a Type`, `&mut Type`, `&'_ mut Type`, `&'a mut Type`
57    Reference,
58
59    /// E.g. `ContainsLifetime`, `ContainsLifetime<>`, `ContainsLifetime<'_>`,
60    /// `ContainsLifetime<'a>`
61    Path { angle_brackets: AngleBrackets },
62
63    /// E.g. `impl Trait + '_`, `impl Trait + 'a`
64    OutlivesBound,
65
66    /// E.g. `impl Trait + use<'_>`, `impl Trait + use<'a>`
67    PreciseCapturing,
68
69    /// Other usages which have not yet been categorized. Feel free to
70    /// add new sources that you find useful.
71    ///
72    /// Some non-exhaustive examples:
73    /// - `where T: 'a`
74    /// - `fn(_: dyn Trait + 'a)`
75    Other,
76}
77
78#[derive(#[automatically_derived]
impl ::core::fmt::Debug for LifetimeSyntax {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                LifetimeSyntax::Implicit => "Implicit",
                LifetimeSyntax::ExplicitAnonymous => "ExplicitAnonymous",
                LifetimeSyntax::ExplicitBound => "ExplicitBound",
            })
    }
}Debug, #[automatically_derived]
impl ::core::marker::Copy for LifetimeSyntax { }Copy, #[automatically_derived]
impl ::core::clone::Clone for LifetimeSyntax {
    #[inline]
    fn clone(&self) -> LifetimeSyntax { *self }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for LifetimeSyntax {
    #[inline]
    fn eq(&self, other: &LifetimeSyntax) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for LifetimeSyntax {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {}
}Eq, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            LifetimeSyntax {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    LifetimeSyntax::Implicit => {}
                    LifetimeSyntax::ExplicitAnonymous => {}
                    LifetimeSyntax::ExplicitBound => {}
                }
            }
        }
    };StableHash)]
79pub enum LifetimeSyntax {
80    /// E.g. `&Type`, `ContainsLifetime`
81    Implicit,
82
83    /// E.g. `&'_ Type`, `ContainsLifetime<'_>`, `impl Trait + '_`, `impl Trait + use<'_>`
84    ExplicitAnonymous,
85
86    /// E.g. `&'a Type`, `ContainsLifetime<'a>`, `impl Trait + 'a`, `impl Trait + use<'a>`
87    ExplicitBound,
88}
89
90impl From<Ident> for LifetimeSyntax {
91    fn from(ident: Ident) -> Self {
92        let name = ident.name;
93
94        if name == sym::empty {
95            {
    ::core::panicking::panic_fmt(format_args!("internal error: entered unreachable code: {0}",
            format_args!("A lifetime name should never be empty")));
};unreachable!("A lifetime name should never be empty");
96        } else if name == kw::UnderscoreLifetime {
97            LifetimeSyntax::ExplicitAnonymous
98        } else {
99            if true {
    if !name.as_str().starts_with('\'') {
        ::core::panicking::panic("assertion failed: name.as_str().starts_with(\'\\\'\')")
    };
};debug_assert!(name.as_str().starts_with('\''));
100            LifetimeSyntax::ExplicitBound
101        }
102    }
103}
104
105/// A lifetime. The valid field combinations are non-obvious and not all
106/// combinations are possible. The following example shows some of
107/// them. See also the comments on `LifetimeKind` and `LifetimeSource`.
108///
109/// ```
110/// #[repr(C)]
111/// struct S<'a>(&'a u32);       // res=Param, name='a, source=Reference, syntax=ExplicitBound
112/// unsafe extern "C" {
113///     fn f1(s: S);             // res=Param, name='_, source=Path, syntax=Implicit
114///     fn f2(s: S<'_>);         // res=Param, name='_, source=Path, syntax=ExplicitAnonymous
115///     fn f3<'a>(s: S<'a>);     // res=Param, name='a, source=Path, syntax=ExplicitBound
116/// }
117///
118/// struct St<'a> { x: &'a u32 } // res=Param, name='a, source=Reference, syntax=ExplicitBound
119/// fn f() {
120///     _ = St { x: &0 };        // res=Infer, name='_, source=Path, syntax=Implicit
121///     _ = St::<'_> { x: &0 };  // res=Infer, name='_, source=Path, syntax=ExplicitAnonymous
122/// }
123///
124/// struct Name<'a>(&'a str);    // res=Param,  name='a, source=Reference, syntax=ExplicitBound
125/// const A: Name = Name("a");   // res=Static, name='_, source=Path, syntax=Implicit
126/// const B: &str = "";          // res=Static, name='_, source=Reference, syntax=Implicit
127/// static C: &'_ str = "";      // res=Static, name='_, source=Reference, syntax=ExplicitAnonymous
128/// static D: &'static str = ""; // res=Static, name='static, source=Reference, syntax=ExplicitBound
129///
130/// trait Tr {}
131/// fn tr(_: Box<dyn Tr>) {}     // res=ImplicitObjectLifetimeDefault, name='_, source=Other, syntax=Implicit
132///
133/// fn capture_outlives<'a>() ->
134///     impl FnOnce() + 'a       // res=Param, ident='a, source=OutlivesBound, syntax=ExplicitBound
135/// {
136///     || {}
137/// }
138///
139/// fn capture_precise<'a>() ->
140///     impl FnOnce() + use<'a>  // res=Param, ident='a, source=PreciseCapturing, syntax=ExplicitBound
141/// {
142///     || {}
143/// }
144///
145/// // (commented out because these cases trigger errors)
146/// // struct S1<'a>(&'a str);   // res=Param, name='a, source=Reference, syntax=ExplicitBound
147/// // struct S2(S1);            // res=Error, name='_, source=Path, syntax=Implicit
148/// // struct S3(S1<'_>);        // res=Error, name='_, source=Path, syntax=ExplicitAnonymous
149/// // struct S4(S1<'a>);        // res=Error, name='a, source=Path, syntax=ExplicitBound
150/// ```
151///
152/// Some combinations that cannot occur are `LifetimeSyntax::Implicit` with
153/// `LifetimeSource::OutlivesBound` or `LifetimeSource::PreciseCapturing`
154/// — there's no way to "elide" these lifetimes.
155#[derive(#[automatically_derived]
impl ::core::fmt::Debug for Lifetime {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field5_finish(f, "Lifetime",
            "hir_id", &self.hir_id, "ident", &self.ident, "kind", &self.kind,
            "source", &self.source, "syntax", &&self.syntax)
    }
}Debug, #[automatically_derived]
impl ::core::marker::Copy for Lifetime { }Copy, #[automatically_derived]
impl ::core::clone::Clone for Lifetime {
    #[inline]
    fn clone(&self) -> Lifetime {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<LifetimeKind>;
        let _: ::core::clone::AssertParamIsClone<LifetimeSource>;
        let _: ::core::clone::AssertParamIsClone<LifetimeSyntax>;
        *self
    }
}Clone, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for Lifetime {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Lifetime {
                        hir_id: ref __binding_0,
                        ident: ref __binding_1,
                        kind: ref __binding_2,
                        source: ref __binding_3,
                        syntax: ref __binding_4 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
156// Raise the alignment to at least 4 bytes.
157// This is relied on in other parts of the compiler (for pointer tagging):
158// <https://github.com/rust-lang/rust/blob/ce5fdd7d42aba9a2925692e11af2bd39cf37798a/compiler/rustc_data_structures/src/tagged_ptr.rs#L163>
159// Removing this `repr(4)` will cause the compiler to not build on platforms
160// like `m68k` Linux, where the alignment of u32 and usize is only 2.
161// Since `repr(align)` may only raise alignment, this has no effect on
162// platforms where the alignment is already sufficient.
163#[repr(align(4))]
164pub struct Lifetime {
165    #[stable_hash(ignore)]
166    pub hir_id: HirId,
167
168    /// Either a named lifetime definition (e.g. `'a`, `'static`) or an
169    /// anonymous lifetime (`'_`, either explicitly written, or inserted for
170    /// things like `&type`).
171    pub ident: Ident,
172
173    /// Semantics of this lifetime.
174    pub kind: LifetimeKind,
175
176    /// The context in which the lifetime occurred. See `Lifetime::suggestion`
177    /// for example use.
178    pub source: LifetimeSource,
179
180    /// The syntax that the user used to declare this lifetime. See
181    /// `Lifetime::suggestion` for example use.
182    pub syntax: LifetimeSyntax,
183}
184
185#[derive(#[automatically_derived]
impl ::core::fmt::Debug for ParamName {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            ParamName::Plain(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Plain",
                    &__self_0),
            ParamName::Error(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Error",
                    &__self_0),
            ParamName::Fresh => ::core::fmt::Formatter::write_str(f, "Fresh"),
        }
    }
}Debug, #[automatically_derived]
impl ::core::marker::Copy for ParamName { }Copy, #[automatically_derived]
impl ::core::clone::Clone for ParamName {
    #[inline]
    fn clone(&self) -> ParamName {
        let _: ::core::clone::AssertParamIsClone<Ident>;
        *self
    }
}Clone, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for ParamName {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    ParamName::Plain(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ParamName::Error(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ParamName::Fresh => {}
                }
            }
        }
    };StableHash)]
186pub enum ParamName {
187    /// Some user-given name like `T` or `'x`.
188    Plain(Ident),
189
190    /// Indicates an illegal name was given and an error has been
191    /// reported (so we should squelch other derived errors).
192    ///
193    /// Occurs when, e.g., `'_` is used in the wrong place, or a
194    /// lifetime name is duplicated.
195    Error(Ident),
196
197    /// Synthetic name generated when user elided a lifetime in an impl header.
198    ///
199    /// E.g., the lifetimes in cases like these:
200    /// ```ignore (fragment)
201    /// impl Foo for &u32
202    /// impl Foo<'_> for u32
203    /// ```
204    /// in that case, we rewrite to
205    /// ```ignore (fragment)
206    /// impl<'f> Foo for &'f u32
207    /// impl<'f> Foo<'f> for u32
208    /// ```
209    /// where `'f` is something like `Fresh(0)`. The indices are
210    /// unique per impl, but not necessarily continuous.
211    Fresh,
212}
213
214impl ParamName {
215    pub fn ident(&self) -> Ident {
216        match *self {
217            ParamName::Plain(ident) | ParamName::Error(ident) => ident,
218            ParamName::Fresh => Ident::with_dummy_span(kw::UnderscoreLifetime),
219        }
220    }
221}
222
223#[derive(#[automatically_derived]
impl ::core::fmt::Debug for LifetimeKind {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            LifetimeKind::Param(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Param",
                    &__self_0),
            LifetimeKind::ImplicitObjectLifetimeDefault =>
                ::core::fmt::Formatter::write_str(f,
                    "ImplicitObjectLifetimeDefault"),
            LifetimeKind::Error(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Error",
                    &__self_0),
            LifetimeKind::Infer =>
                ::core::fmt::Formatter::write_str(f, "Infer"),
            LifetimeKind::Static =>
                ::core::fmt::Formatter::write_str(f, "Static"),
        }
    }
}Debug, #[automatically_derived]
impl ::core::marker::Copy for LifetimeKind { }Copy, #[automatically_derived]
impl ::core::clone::Clone for LifetimeKind {
    #[inline]
    fn clone(&self) -> LifetimeKind {
        let _: ::core::clone::AssertParamIsClone<LocalDefId>;
        let _: ::core::clone::AssertParamIsClone<ErrorGuaranteed>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for LifetimeKind {
    #[inline]
    fn eq(&self, other: &LifetimeKind) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (LifetimeKind::Param(__self_0), LifetimeKind::Param(__arg1_0))
                    => __self_0 == __arg1_0,
                (LifetimeKind::Error(__self_0), LifetimeKind::Error(__arg1_0))
                    => __self_0 == __arg1_0,
                _ => true,
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for LifetimeKind {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<LocalDefId>;
        let _: ::core::cmp::AssertParamIsEq<ErrorGuaranteed>;
    }
}Eq, #[automatically_derived]
impl ::core::hash::Hash for LifetimeKind {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        ::core::hash::Hash::hash(&__self_discr, state);
        match self {
            LifetimeKind::Param(__self_0) =>
                ::core::hash::Hash::hash(__self_0, state),
            LifetimeKind::Error(__self_0) =>
                ::core::hash::Hash::hash(__self_0, state),
            _ => {}
        }
    }
}Hash, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for LifetimeKind
            {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    LifetimeKind::Param(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    LifetimeKind::ImplicitObjectLifetimeDefault => {}
                    LifetimeKind::Error(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    LifetimeKind::Infer => {}
                    LifetimeKind::Static => {}
                }
            }
        }
    };StableHash)]
224pub enum LifetimeKind {
225    /// User-given names or fresh (synthetic) names.
226    Param(LocalDefId),
227
228    /// Implicit lifetime in a context like `dyn Foo`. This is
229    /// distinguished from implicit lifetimes elsewhere because the
230    /// lifetime that they default to must appear elsewhere within the
231    /// enclosing type. This means that, in an `impl Trait` context, we
232    /// don't have to create a parameter for them. That is, `impl
233    /// Trait<Item = &u32>` expands to an opaque type like `type
234    /// Foo<'a> = impl Trait<Item = &'a u32>`, but `impl Trait<item =
235    /// dyn Bar>` expands to `type Foo = impl Trait<Item = dyn Bar +
236    /// 'static>`. The latter uses `ImplicitObjectLifetimeDefault` so
237    /// that surrounding code knows not to create a lifetime
238    /// parameter.
239    ImplicitObjectLifetimeDefault,
240
241    /// Indicates an error during lowering (usually `'_` in wrong place)
242    /// that was already reported.
243    Error(ErrorGuaranteed),
244
245    /// User wrote an anonymous lifetime, either `'_` or nothing (which gets
246    /// converted to `'_`). The semantics of this lifetime should be inferred
247    /// by typechecking code.
248    Infer,
249
250    /// User wrote `'static` or nothing (which gets converted to `'_`).
251    Static,
252}
253
254impl LifetimeKind {
255    fn is_elided(&self) -> bool {
256        match self {
257            LifetimeKind::ImplicitObjectLifetimeDefault | LifetimeKind::Infer => true,
258
259            // It might seem surprising that `Fresh` counts as not *elided*
260            // -- but this is because, as far as the code in the compiler is
261            // concerned -- `Fresh` variants act equivalently to "some fresh name".
262            // They correspond to early-bound regions on an impl, in other words.
263            LifetimeKind::Error(..) | LifetimeKind::Param(..) | LifetimeKind::Static => false,
264        }
265    }
266}
267
268impl fmt::Display for Lifetime {
269    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
270        self.ident.name.fmt(f)
271    }
272}
273
274impl Lifetime {
275    pub fn new(
276        hir_id: HirId,
277        ident: Ident,
278        kind: LifetimeKind,
279        source: LifetimeSource,
280        syntax: LifetimeSyntax,
281    ) -> Lifetime {
282        let lifetime = Lifetime { hir_id, ident, kind, source, syntax };
283
284        // Sanity check: elided lifetimes form a strict subset of anonymous lifetimes.
285        #[cfg(debug_assertions)]
286        match (lifetime.is_elided(), lifetime.is_anonymous()) {
287            (false, false) => {} // e.g. `'a`
288            (false, true) => {}  // e.g. explicit `'_`
289            (true, true) => {}   // e.g. `&x`
290            (true, false) => { ::core::panicking::panic_fmt(format_args!("bad Lifetime")); }panic!("bad Lifetime"),
291        }
292
293        lifetime
294    }
295
296    pub fn is_elided(&self) -> bool {
297        self.kind.is_elided()
298    }
299
300    pub fn is_anonymous(&self) -> bool {
301        self.ident.name == kw::UnderscoreLifetime
302    }
303
304    pub fn is_implicit(&self) -> bool {
305        #[allow(non_exhaustive_omitted_patterns)] match self.syntax {
    LifetimeSyntax::Implicit => true,
    _ => false,
}matches!(self.syntax, LifetimeSyntax::Implicit)
306    }
307
308    pub fn is_static(&self) -> bool {
309        self.kind == LifetimeKind::Static
310    }
311
312    pub fn suggestion(&self, new_lifetime: &str) -> (Span, String) {
313        use LifetimeSource::*;
314        use LifetimeSyntax::*;
315
316        if true {
    if !new_lifetime.starts_with('\'') {
        ::core::panicking::panic("assertion failed: new_lifetime.starts_with(\'\\\'\')")
    };
};debug_assert!(new_lifetime.starts_with('\''));
317
318        match (self.syntax, self.source) {
319            // The user wrote `'a` or `'_`.
320            (ExplicitBound | ExplicitAnonymous, _) => (self.ident.span, ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0}", new_lifetime))
    })format!("{new_lifetime}")),
321
322            // The user wrote `Path<T>`, and omitted the `'_,`.
323            (Implicit, Path { angle_brackets: AngleBrackets::Full }) => {
324                (self.ident.span, ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0}, ", new_lifetime))
    })format!("{new_lifetime}, "))
325            }
326
327            // The user wrote `Path<>`, and omitted the `'_`..
328            (Implicit, Path { angle_brackets: AngleBrackets::Empty }) => {
329                (self.ident.span, ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0}", new_lifetime))
    })format!("{new_lifetime}"))
330            }
331
332            // The user wrote `Path` and omitted the `<'_>`.
333            (Implicit, Path { angle_brackets: AngleBrackets::Missing }) => {
334                (self.ident.span.shrink_to_hi(), ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("<{0}>", new_lifetime))
    })format!("<{new_lifetime}>"))
335            }
336
337            // The user wrote `&type` or `&mut type`.
338            (Implicit, Reference) => (self.ident.span, ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0} ", new_lifetime))
    })format!("{new_lifetime} ")),
339
340            (Implicit, source) => {
341                {
    ::core::panicking::panic_fmt(format_args!("internal error: entered unreachable code: {0}",
            format_args!("can\'t suggest for a implicit lifetime of {0:?}",
                source)));
}unreachable!("can't suggest for a implicit lifetime of {source:?}")
342            }
343        }
344    }
345}
346
347/// A `Path` is essentially Rust's notion of a name; for instance,
348/// `std::cmp::PartialEq`. It's represented as a sequence of identifiers,
349/// along with a bunch of supporting information.
350#[derive(#[automatically_derived]
impl<'hir, R: ::core::fmt::Debug> ::core::fmt::Debug for Path<'hir, R> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f, "Path", "span",
            &self.span, "res", &self.res, "segments", &&self.segments)
    }
}Debug, #[automatically_derived]
impl<'hir, R: ::core::clone::Clone> ::core::clone::Clone for Path<'hir, R> {
    #[inline]
    fn clone(&self) -> Path<'hir, R> {
        Path {
            span: ::core::clone::Clone::clone(&self.span),
            res: ::core::clone::Clone::clone(&self.res),
            segments: ::core::clone::Clone::clone(&self.segments),
        }
    }
}Clone, #[automatically_derived]
impl<'hir, R: ::core::marker::Copy> ::core::marker::Copy for Path<'hir, R> { }Copy, const _: () =
    {
        impl<'hir, R> ::rustc_data_structures::stable_hash::StableHash for
            Path<'hir, R> where
            R: ::rustc_data_structures::stable_hash::StableHash {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Path {
                        span: ref __binding_0,
                        res: ref __binding_1,
                        segments: ref __binding_2 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
351pub struct Path<'hir, R = Res> {
352    pub span: Span,
353    /// The resolution for the path.
354    pub res: R,
355    /// The segments in the path: the things separated by `::`.
356    pub segments: &'hir [PathSegment<'hir>],
357}
358
359/// Up to three resolutions for type, value and macro namespaces.
360pub type UsePath<'hir> = Path<'hir, PerNS<Option<Res>>>;
361
362impl Path<'_> {
363    pub fn is_global(&self) -> bool {
364        self.segments.first().is_some_and(|segment| segment.ident.name == kw::PathRoot)
365    }
366}
367
368/// A segment of a path: an identifier, an optional lifetime, and a set of
369/// types.
370#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for PathSegment<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field5_finish(f, "PathSegment",
            "ident", &self.ident, "hir_id", &self.hir_id, "res", &self.res,
            "args", &self.args, "infer_args", &&self.infer_args)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for PathSegment<'hir> {
    #[inline]
    fn clone(&self) -> PathSegment<'hir> {
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<Res>;
        let _:
                ::core::clone::AssertParamIsClone<Option<&'hir GenericArgs<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for PathSegment<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            PathSegment<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    PathSegment {
                        ident: ref __binding_0,
                        hir_id: ref __binding_1,
                        res: ref __binding_2,
                        args: ref __binding_3,
                        infer_args: ref __binding_4 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        {}
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
371pub struct PathSegment<'hir> {
372    /// The identifier portion of this path segment.
373    pub ident: Ident,
374    #[stable_hash(ignore)]
375    pub hir_id: HirId,
376    pub res: Res,
377
378    /// Type/lifetime parameters attached to this path. They come in
379    /// two flavors: `Path<A,B,C>` and `Path(A,B) -> C`. Note that
380    /// this is more than just simple syntactic sugar; the use of
381    /// parens affects the region binding rules, so we preserve the
382    /// distinction.
383    pub args: Option<&'hir GenericArgs<'hir>>,
384
385    /// Whether to infer remaining type parameters, if any.
386    /// This only applies to expression and pattern paths, and
387    /// out of those only the segments with no type parameters
388    /// to begin with, e.g., `Vec::new` is `<Vec<..>>::new::<..>`.
389    pub infer_args: bool,
390}
391
392impl<'hir> PathSegment<'hir> {
393    /// Converts an identifier to the corresponding segment.
394    pub fn new(ident: Ident, hir_id: HirId, res: Res) -> PathSegment<'hir> {
395        PathSegment { ident, hir_id, res, infer_args: true, args: None }
396    }
397
398    pub fn invalid() -> Self {
399        Self::new(Ident::dummy(), HirId::INVALID, Res::Err)
400    }
401
402    pub fn args(&self) -> &GenericArgs<'hir> {
403        if let Some(ref args) = self.args { args } else { GenericArgs::NONE }
404    }
405}
406
407#[derive(#[automatically_derived]
impl<'hir> ::core::clone::Clone for ConstItemRhs<'hir> {
    #[inline]
    fn clone(&self) -> ConstItemRhs<'hir> {
        let _: ::core::clone::AssertParamIsClone<BodyId>;
        let _: ::core::clone::AssertParamIsClone<&'hir ConstArg<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for ConstItemRhs<'hir> { }Copy, #[automatically_derived]
impl<'hir> ::core::fmt::Debug for ConstItemRhs<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            ConstItemRhs::Body(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Body",
                    &__self_0),
            ConstItemRhs::TypeConst(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "TypeConst", &__self_0),
        }
    }
}Debug, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            ConstItemRhs<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    ConstItemRhs::Body(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ConstItemRhs::TypeConst(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
408pub enum ConstItemRhs<'hir> {
409    Body(BodyId),
410    TypeConst(&'hir ConstArg<'hir>),
411}
412
413impl<'hir> ConstItemRhs<'hir> {
414    pub fn hir_id(&self) -> HirId {
415        match self {
416            ConstItemRhs::Body(body_id) => body_id.hir_id,
417            ConstItemRhs::TypeConst(ct_arg) => ct_arg.hir_id,
418        }
419    }
420
421    pub fn span<'tcx>(&self, tcx: impl crate::intravisit::HirTyCtxt<'tcx>) -> Span {
422        match self {
423            ConstItemRhs::Body(body_id) => tcx.hir_body(*body_id).value.span,
424            ConstItemRhs::TypeConst(ct_arg) => ct_arg.span,
425        }
426    }
427}
428
429/// A constant that enters the type system, used for arguments to const generics (e.g. array lengths).
430///
431/// These are distinct from [`AnonConst`] as anon consts in the type system are not allowed
432/// to use any generic parameters, therefore we must represent `N` differently. Additionally
433/// future designs for supporting generic parameters in const arguments will likely not use
434/// an anon const based design.
435///
436/// So, `ConstArg` (specifically, [`ConstArgKind`]) distinguishes between const args
437/// that are [just paths](ConstArgKind::Path) (currently just bare const params)
438/// versus const args that are literals or have arbitrary computations (e.g., `{ 1 + 3 }`).
439///
440/// For an explanation of the `Unambig` generic parameter see the dev-guide:
441/// <https://rustc-dev-guide.rust-lang.org/ambig-unambig-ty-and-consts.html>
442#[derive(#[automatically_derived]
impl<'hir, Unambig: ::core::clone::Clone> ::core::clone::Clone for
    ConstArg<'hir, Unambig> {
    #[inline]
    fn clone(&self) -> ConstArg<'hir, Unambig> {
        ConstArg {
            hir_id: ::core::clone::Clone::clone(&self.hir_id),
            kind: ::core::clone::Clone::clone(&self.kind),
            span: ::core::clone::Clone::clone(&self.span),
        }
    }
}Clone, #[automatically_derived]
impl<'hir, Unambig: ::core::marker::Copy> ::core::marker::Copy for
    ConstArg<'hir, Unambig> {
}Copy, #[automatically_derived]
impl<'hir, Unambig: ::core::fmt::Debug> ::core::fmt::Debug for
    ConstArg<'hir, Unambig> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f, "ConstArg",
            "hir_id", &self.hir_id, "kind", &self.kind, "span", &&self.span)
    }
}Debug, const _: () =
    {
        impl<'hir, Unambig> ::rustc_data_structures::stable_hash::StableHash
            for ConstArg<'hir, Unambig> where
            Unambig: ::rustc_data_structures::stable_hash::StableHash {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    ConstArg {
                        hir_id: ref __binding_0,
                        kind: ref __binding_1,
                        span: ref __binding_2 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
443#[repr(C)]
444pub struct ConstArg<'hir, Unambig = ()> {
445    #[stable_hash(ignore)]
446    pub hir_id: HirId,
447    pub kind: ConstArgKind<'hir, Unambig>,
448    pub span: Span,
449}
450
451impl<'hir> ConstArg<'hir, AmbigArg> {
452    /// Converts a `ConstArg` in an ambiguous position to one in an unambiguous position.
453    ///
454    /// Functions accepting unambiguous consts may expect the [`ConstArgKind::Infer`] variant
455    /// to be used. Care should be taken to separately handle infer consts when calling this
456    /// function as it cannot be handled by downstream code making use of the returned const.
457    ///
458    /// In practice this may mean overriding the [`Visitor::visit_infer`][visit_infer] method on hir visitors, or
459    /// specifically matching on [`GenericArg::Infer`] when handling generic arguments.
460    ///
461    /// [visit_infer]: [rustc_hir::intravisit::Visitor::visit_infer]
462    pub fn as_unambig_ct(&self) -> &ConstArg<'hir> {
463        // SAFETY: `ConstArg` is `repr(C)` and `ConstArgKind` is marked `repr(u8)` so that the
464        // layout is the same across different ZST type arguments.
465        let ptr = self as *const ConstArg<'hir, AmbigArg> as *const ConstArg<'hir, ()>;
466        unsafe { &*ptr }
467    }
468}
469
470impl<'hir> ConstArg<'hir> {
471    /// Converts a `ConstArg` in an unambiguous position to one in an ambiguous position. This is
472    /// fallible as the [`ConstArgKind::Infer`] variant is not present in ambiguous positions.
473    ///
474    /// Functions accepting ambiguous consts will not handle the [`ConstArgKind::Infer`] variant, if
475    /// infer consts are relevant to you then care should be taken to handle them separately.
476    pub fn try_as_ambig_ct(&self) -> Option<&ConstArg<'hir, AmbigArg>> {
477        if let ConstArgKind::Infer(()) = self.kind {
478            return None;
479        }
480
481        // SAFETY: `ConstArg` is `repr(C)` and `ConstArgKind` is marked `repr(u8)` so that the layout is
482        // the same across different ZST type arguments. We also asserted that the `self` is
483        // not a `ConstArgKind::Infer` so there is no risk of transmuting a `()` to `AmbigArg`.
484        let ptr = self as *const ConstArg<'hir> as *const ConstArg<'hir, AmbigArg>;
485        Some(unsafe { &*ptr })
486    }
487}
488
489impl<'hir, Unambig> ConstArg<'hir, Unambig> {
490    pub fn anon_const_hir_id(&self) -> Option<HirId> {
491        match self.kind {
492            ConstArgKind::Anon(ac) => Some(ac.hir_id),
493            _ => None,
494        }
495    }
496}
497
498/// See [`ConstArg`].
499#[derive(#[automatically_derived]
impl<'hir, Unambig: ::core::clone::Clone> ::core::clone::Clone for
    ConstArgKind<'hir, Unambig> {
    #[inline]
    fn clone(&self) -> ConstArgKind<'hir, Unambig> {
        match self {
            ConstArgKind::Tup(__self_0) =>
                ConstArgKind::Tup(::core::clone::Clone::clone(__self_0)),
            ConstArgKind::Path(__self_0) =>
                ConstArgKind::Path(::core::clone::Clone::clone(__self_0)),
            ConstArgKind::Anon(__self_0) =>
                ConstArgKind::Anon(::core::clone::Clone::clone(__self_0)),
            ConstArgKind::Struct(__self_0, __self_1) =>
                ConstArgKind::Struct(::core::clone::Clone::clone(__self_0),
                    ::core::clone::Clone::clone(__self_1)),
            ConstArgKind::TupleCall(__self_0, __self_1) =>
                ConstArgKind::TupleCall(::core::clone::Clone::clone(__self_0),
                    ::core::clone::Clone::clone(__self_1)),
            ConstArgKind::Array(__self_0) =>
                ConstArgKind::Array(::core::clone::Clone::clone(__self_0)),
            ConstArgKind::Error(__self_0) =>
                ConstArgKind::Error(::core::clone::Clone::clone(__self_0)),
            ConstArgKind::Infer(__self_0) =>
                ConstArgKind::Infer(::core::clone::Clone::clone(__self_0)),
            ConstArgKind::Literal { lit: __self_0, negated: __self_1 } =>
                ConstArgKind::Literal {
                    lit: ::core::clone::Clone::clone(__self_0),
                    negated: ::core::clone::Clone::clone(__self_1),
                },
        }
    }
}Clone, #[automatically_derived]
impl<'hir, Unambig: ::core::marker::Copy> ::core::marker::Copy for
    ConstArgKind<'hir, Unambig> {
}Copy, #[automatically_derived]
impl<'hir, Unambig: ::core::fmt::Debug> ::core::fmt::Debug for
    ConstArgKind<'hir, Unambig> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            ConstArgKind::Tup(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Tup",
                    &__self_0),
            ConstArgKind::Path(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Path",
                    &__self_0),
            ConstArgKind::Anon(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Anon",
                    &__self_0),
            ConstArgKind::Struct(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Struct",
                    __self_0, &__self_1),
            ConstArgKind::TupleCall(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f,
                    "TupleCall", __self_0, &__self_1),
            ConstArgKind::Array(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Array",
                    &__self_0),
            ConstArgKind::Error(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Error",
                    &__self_0),
            ConstArgKind::Infer(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Infer",
                    &__self_0),
            ConstArgKind::Literal { lit: __self_0, negated: __self_1 } =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f,
                    "Literal", "lit", __self_0, "negated", &__self_1),
        }
    }
}Debug, const _: () =
    {
        impl<'hir, Unambig> ::rustc_data_structures::stable_hash::StableHash
            for ConstArgKind<'hir, Unambig> where
            Unambig: ::rustc_data_structures::stable_hash::StableHash {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    ConstArgKind::Tup(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ConstArgKind::Path(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ConstArgKind::Anon(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ConstArgKind::Struct(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ConstArgKind::TupleCall(ref __binding_0, ref __binding_1) =>
                        {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ConstArgKind::Array(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ConstArgKind::Error(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ConstArgKind::Infer(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ConstArgKind::Literal {
                        lit: ref __binding_0, negated: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
500#[repr(u8, C)]
501pub enum ConstArgKind<'hir, Unambig = ()> {
502    Tup(&'hir [&'hir ConstArg<'hir, Unambig>]),
503    /// **Note:** Currently this is only used for bare const params
504    /// (`N` where `fn foo<const N: usize>(...)`),
505    /// not paths to any const (`N` where `const N: usize = ...`).
506    ///
507    /// However, in the future, we'll be using it for all of those.
508    Path(QPath<'hir>),
509    Anon(&'hir AnonConst),
510    /// Represents construction of struct/struct variants
511    Struct(QPath<'hir>, &'hir [&'hir ConstArgExprField<'hir>]),
512    /// Tuple constructor variant
513    TupleCall(QPath<'hir>, &'hir [&'hir ConstArg<'hir>]),
514    /// Array literal argument
515    Array(&'hir ConstArgArrayExpr<'hir>),
516    /// Error const
517    Error(ErrorGuaranteed),
518    /// This variant is not always used to represent inference consts, sometimes
519    /// [`GenericArg::Infer`] is used instead.
520    Infer(Unambig),
521    Literal {
522        lit: LitKind,
523        negated: bool,
524    },
525}
526
527#[derive(#[automatically_derived]
impl<'hir> ::core::clone::Clone for ConstArgExprField<'hir> {
    #[inline]
    fn clone(&self) -> ConstArgExprField<'hir> {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<&'hir ConstArg<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for ConstArgExprField<'hir> { }Copy, #[automatically_derived]
impl<'hir> ::core::fmt::Debug for ConstArgExprField<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field4_finish(f,
            "ConstArgExprField", "hir_id", &self.hir_id, "span", &self.span,
            "field", &self.field, "expr", &&self.expr)
    }
}Debug, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            ConstArgExprField<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    ConstArgExprField {
                        hir_id: ref __binding_0,
                        span: ref __binding_1,
                        field: ref __binding_2,
                        expr: ref __binding_3 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
528pub struct ConstArgExprField<'hir> {
529    pub hir_id: HirId,
530    pub span: Span,
531    pub field: Ident,
532    pub expr: &'hir ConstArg<'hir>,
533}
534
535#[derive(#[automatically_derived]
impl<'hir> ::core::clone::Clone for ConstArgArrayExpr<'hir> {
    #[inline]
    fn clone(&self) -> ConstArgArrayExpr<'hir> {
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _:
                ::core::clone::AssertParamIsClone<&'hir [&'hir ConstArg<'hir>]>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for ConstArgArrayExpr<'hir> { }Copy, #[automatically_derived]
impl<'hir> ::core::fmt::Debug for ConstArgArrayExpr<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f,
            "ConstArgArrayExpr", "span", &self.span, "elems", &&self.elems)
    }
}Debug, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            ConstArgArrayExpr<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    ConstArgArrayExpr {
                        span: ref __binding_0, elems: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
536pub struct ConstArgArrayExpr<'hir> {
537    pub span: Span,
538    pub elems: &'hir [&'hir ConstArg<'hir>],
539}
540
541#[derive(#[automatically_derived]
impl ::core::clone::Clone for InferArg {
    #[inline]
    fn clone(&self) -> InferArg {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::marker::Copy for InferArg { }Copy, #[automatically_derived]
impl ::core::fmt::Debug for InferArg {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f, "InferArg",
            "hir_id", &self.hir_id, "span", &&self.span)
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for InferArg {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    InferArg { hir_id: ref __binding_0, span: ref __binding_1 }
                        => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
542pub struct InferArg {
543    #[stable_hash(ignore)]
544    pub hir_id: HirId,
545    pub span: Span,
546}
547
548impl InferArg {
549    pub fn to_ty(&self) -> Ty<'static> {
550        Ty { kind: TyKind::Infer(()), span: self.span, hir_id: self.hir_id }
551    }
552}
553
554#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for GenericArg<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            GenericArg::Lifetime(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "Lifetime", &__self_0),
            GenericArg::Type(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Type",
                    &__self_0),
            GenericArg::Const(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Const",
                    &__self_0),
            GenericArg::Infer(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Infer",
                    &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for GenericArg<'hir> {
    #[inline]
    fn clone(&self) -> GenericArg<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir Lifetime>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir, AmbigArg>>;
        let _:
                ::core::clone::AssertParamIsClone<&'hir ConstArg<'hir,
                AmbigArg>>;
        let _: ::core::clone::AssertParamIsClone<InferArg>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for GenericArg<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            GenericArg<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    GenericArg::Lifetime(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    GenericArg::Type(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    GenericArg::Const(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    GenericArg::Infer(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
555pub enum GenericArg<'hir> {
556    Lifetime(&'hir Lifetime),
557    Type(&'hir Ty<'hir, AmbigArg>),
558    Const(&'hir ConstArg<'hir, AmbigArg>),
559    /// Inference variables in [`GenericArg`] are always represented by
560    /// `GenericArg::Infer` instead of the `Infer` variants on [`TyKind`] and
561    /// [`ConstArgKind`] as it is not clear until hir ty lowering whether a
562    /// `_` argument is a type or const argument.
563    ///
564    /// However, some builtin types' generic arguments are represented by [`TyKind`]
565    /// without a [`GenericArg`], instead directly storing a [`Ty`] or [`ConstArg`]. In
566    /// such cases they *are* represented by the `Infer` variants on [`TyKind`] and
567    /// [`ConstArgKind`] as it is not ambiguous whether the argument is a type or const.
568    Infer(InferArg),
569}
570
571impl GenericArg<'_> {
572    pub fn span(&self) -> Span {
573        match self {
574            GenericArg::Lifetime(l) => l.ident.span,
575            GenericArg::Type(t) => t.span,
576            GenericArg::Const(c) => c.span,
577            GenericArg::Infer(i) => i.span,
578        }
579    }
580
581    pub fn hir_id(&self) -> HirId {
582        match self {
583            GenericArg::Lifetime(l) => l.hir_id,
584            GenericArg::Type(t) => t.hir_id,
585            GenericArg::Const(c) => c.hir_id,
586            GenericArg::Infer(i) => i.hir_id,
587        }
588    }
589
590    pub fn descr(&self) -> &'static str {
591        match self {
592            GenericArg::Lifetime(_) => "lifetime",
593            GenericArg::Type(_) => "type",
594            GenericArg::Const(_) => "constant",
595            GenericArg::Infer(_) => "placeholder",
596        }
597    }
598
599    pub fn to_ord(&self) -> ast::ParamKindOrd {
600        match self {
601            GenericArg::Lifetime(_) => ast::ParamKindOrd::Lifetime,
602            GenericArg::Type(_) | GenericArg::Const(_) | GenericArg::Infer(_) => {
603                ast::ParamKindOrd::TypeOrConst
604            }
605        }
606    }
607
608    pub fn is_ty_or_const(&self) -> bool {
609        match self {
610            GenericArg::Lifetime(_) => false,
611            GenericArg::Type(_) | GenericArg::Const(_) | GenericArg::Infer(_) => true,
612        }
613    }
614}
615
616/// The generic arguments and associated item constraints of a path segment.
617#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for GenericArgs<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field4_finish(f, "GenericArgs",
            "args", &self.args, "constraints", &self.constraints,
            "parenthesized", &self.parenthesized, "span_ext", &&self.span_ext)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for GenericArgs<'hir> {
    #[inline]
    fn clone(&self) -> GenericArgs<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir [GenericArg<'hir>]>;
        let _:
                ::core::clone::AssertParamIsClone<&'hir [AssocItemConstraint<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<GenericArgsParentheses>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for GenericArgs<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            GenericArgs<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    GenericArgs {
                        args: ref __binding_0,
                        constraints: ref __binding_1,
                        parenthesized: ref __binding_2,
                        span_ext: ref __binding_3 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
618pub struct GenericArgs<'hir> {
619    /// The generic arguments for this path segment.
620    pub args: &'hir [GenericArg<'hir>],
621    /// The associated item constraints for this path segment.
622    pub constraints: &'hir [AssocItemConstraint<'hir>],
623    /// Whether the arguments were written in parenthesized form (e.g., `Fn(T) -> U`).
624    ///
625    /// This is required mostly for pretty-printing and diagnostics,
626    /// but also for changing lifetime elision rules to be "function-like".
627    pub parenthesized: GenericArgsParentheses,
628    /// The span encompassing the arguments, constraints and the surrounding brackets (`<>` or `()`).
629    ///
630    /// For example:
631    ///
632    /// ```ignore (illustrative)
633    ///       Foo<A, B, AssocTy = D>           Fn(T, U, V) -> W
634    ///          ^^^^^^^^^^^^^^^^^^^             ^^^^^^^^^
635    /// ```
636    ///
637    /// Note that this may be:
638    /// - empty, if there are no generic brackets (but there may be hidden lifetimes)
639    /// - dummy, if this was generated during desugaring
640    pub span_ext: Span,
641}
642
643impl<'hir> GenericArgs<'hir> {
644    pub const NONE: &'hir GenericArgs<'hir> = &GenericArgs {
645        args: &[],
646        constraints: &[],
647        parenthesized: GenericArgsParentheses::No,
648        span_ext: DUMMY_SP,
649    };
650
651    /// Obtain the list of input types and the output type if the generic arguments are parenthesized.
652    ///
653    /// Returns the `Ty0, Ty1, ...` and the `RetTy` in `Trait(Ty0, Ty1, ...) -> RetTy`.
654    /// Panics if the parenthesized arguments have an incorrect form (this shouldn't happen).
655    pub fn paren_sugar_inputs_output(&self) -> Option<(&[Ty<'hir>], &Ty<'hir>)> {
656        if self.parenthesized != GenericArgsParentheses::ParenSugar {
657            return None;
658        }
659
660        let inputs = self
661            .args
662            .iter()
663            .find_map(|arg| {
664                let GenericArg::Type(ty) = arg else { return None };
665                let TyKind::Tup(tys) = &ty.kind else { return None };
666                Some(tys)
667            })
668            .unwrap();
669
670        Some((inputs, self.paren_sugar_output_inner()))
671    }
672
673    /// Obtain the output type if the generic arguments are parenthesized.
674    ///
675    /// Returns the `RetTy` in `Trait(Ty0, Ty1, ...) -> RetTy`.
676    /// Panics if the parenthesized arguments have an incorrect form (this shouldn't happen).
677    pub fn paren_sugar_output(&self) -> Option<&Ty<'hir>> {
678        (self.parenthesized == GenericArgsParentheses::ParenSugar)
679            .then(|| self.paren_sugar_output_inner())
680    }
681
682    fn paren_sugar_output_inner(&self) -> &Ty<'hir> {
683        let [constraint] = self.constraints.try_into().unwrap();
684        if true {
    match (&constraint.ident.name, &sym::Output) {
        (left_val, right_val) => {
            if !(*left_val == *right_val) {
                let kind = ::core::panicking::AssertKind::Eq;
                ::core::panicking::assert_failed(kind, &*left_val,
                    &*right_val, ::core::option::Option::None);
            }
        }
    };
};debug_assert_eq!(constraint.ident.name, sym::Output);
685        constraint.ty().unwrap()
686    }
687
688    pub fn has_err(&self) -> Option<ErrorGuaranteed> {
689        self.args
690            .iter()
691            .find_map(|arg| {
692                let GenericArg::Type(ty) = arg else { return None };
693                let TyKind::Err(guar) = ty.kind else { return None };
694                Some(guar)
695            })
696            .or_else(|| {
697                self.constraints.iter().find_map(|constraint| {
698                    let TyKind::Err(guar) = constraint.ty()?.kind else { return None };
699                    Some(guar)
700                })
701            })
702    }
703
704    #[inline]
705    pub fn num_lifetime_args(&self) -> usize {
706        self.args.iter().filter(|arg| #[allow(non_exhaustive_omitted_patterns)] match arg {
    GenericArg::Lifetime(_) => true,
    _ => false,
}matches!(arg, GenericArg::Lifetime(_))).count()
707    }
708
709    #[inline]
710    pub fn has_lifetime_args(&self) -> bool {
711        self.args.iter().any(|arg| #[allow(non_exhaustive_omitted_patterns)] match arg {
    GenericArg::Lifetime(_) => true,
    _ => false,
}matches!(arg, GenericArg::Lifetime(_)))
712    }
713
714    #[inline]
715    /// This function returns the number of type and const generic params.
716    /// It should only be used for diagnostics.
717    pub fn num_generic_params(&self) -> usize {
718        self.args.iter().filter(|arg| !#[allow(non_exhaustive_omitted_patterns)] match arg {
    GenericArg::Lifetime(_) => true,
    _ => false,
}matches!(arg, GenericArg::Lifetime(_))).count()
719    }
720
721    /// The span encompassing the arguments and constraints[^1] inside the surrounding brackets.
722    ///
723    /// Returns `None` if the span is empty (i.e., no brackets) or dummy.
724    ///
725    /// [^1]: Unless of the form `-> Ty` (see [`GenericArgsParentheses`]).
726    pub fn span(&self) -> Option<Span> {
727        let span_ext = self.span_ext()?;
728        Some(span_ext.with_lo(span_ext.lo() + BytePos(1)).with_hi(span_ext.hi() - BytePos(1)))
729    }
730
731    /// Returns span encompassing arguments and their surrounding `<>` or `()`
732    pub fn span_ext(&self) -> Option<Span> {
733        Some(self.span_ext).filter(|span| !span.is_empty())
734    }
735
736    pub fn is_empty(&self) -> bool {
737        self.args.is_empty()
738    }
739}
740
741#[derive(#[automatically_derived]
impl ::core::marker::Copy for GenericArgsParentheses { }Copy, #[automatically_derived]
impl ::core::clone::Clone for GenericArgsParentheses {
    #[inline]
    fn clone(&self) -> GenericArgsParentheses { *self }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for GenericArgsParentheses {
    #[inline]
    fn eq(&self, other: &GenericArgsParentheses) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for GenericArgsParentheses {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {}
}Eq, #[automatically_derived]
impl ::core::fmt::Debug for GenericArgsParentheses {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                GenericArgsParentheses::No => "No",
                GenericArgsParentheses::ReturnTypeNotation =>
                    "ReturnTypeNotation",
                GenericArgsParentheses::ParenSugar => "ParenSugar",
            })
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            GenericArgsParentheses {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    GenericArgsParentheses::No => {}
                    GenericArgsParentheses::ReturnTypeNotation => {}
                    GenericArgsParentheses::ParenSugar => {}
                }
            }
        }
    };StableHash)]
742pub enum GenericArgsParentheses {
743    No,
744    /// Bounds for `feature(return_type_notation)`, like `T: Trait<method(..): Send>`,
745    /// where the args are explicitly elided with `..`
746    ReturnTypeNotation,
747    /// parenthesized function-family traits, like `T: Fn(u32) -> i32`
748    ParenSugar,
749}
750
751/// The modifiers on a trait bound.
752#[derive(#[automatically_derived]
impl ::core::marker::Copy for TraitBoundModifiers { }Copy, #[automatically_derived]
impl ::core::clone::Clone for TraitBoundModifiers {
    #[inline]
    fn clone(&self) -> TraitBoundModifiers {
        let _: ::core::clone::AssertParamIsClone<BoundConstness>;
        let _: ::core::clone::AssertParamIsClone<BoundPolarity>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for TraitBoundModifiers {
    #[inline]
    fn eq(&self, other: &TraitBoundModifiers) -> bool {
        self.constness == other.constness && self.polarity == other.polarity
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for TraitBoundModifiers {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<BoundConstness>;
        let _: ::core::cmp::AssertParamIsEq<BoundPolarity>;
    }
}Eq, #[automatically_derived]
impl ::core::hash::Hash for TraitBoundModifiers {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        ::core::hash::Hash::hash(&self.constness, state);
        ::core::hash::Hash::hash(&self.polarity, state)
    }
}Hash, #[automatically_derived]
impl ::core::fmt::Debug for TraitBoundModifiers {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f,
            "TraitBoundModifiers", "constness", &self.constness, "polarity",
            &&self.polarity)
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            TraitBoundModifiers {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    TraitBoundModifiers {
                        constness: ref __binding_0, polarity: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
753pub struct TraitBoundModifiers {
754    pub constness: BoundConstness,
755    pub polarity: BoundPolarity,
756}
757
758impl TraitBoundModifiers {
759    pub const NONE: Self =
760        TraitBoundModifiers { constness: BoundConstness::Never, polarity: BoundPolarity::Positive };
761}
762
763#[derive(#[automatically_derived]
impl<'hir> ::core::clone::Clone for GenericBound<'hir> {
    #[inline]
    fn clone(&self) -> GenericBound<'hir> {
        let _: ::core::clone::AssertParamIsClone<PolyTraitRef<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Lifetime>;
        let _:
                ::core::clone::AssertParamIsClone<&'hir [PreciseCapturingArg<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for GenericBound<'hir> { }Copy, #[automatically_derived]
impl<'hir> ::core::fmt::Debug for GenericBound<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            GenericBound::Trait(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Trait",
                    &__self_0),
            GenericBound::Outlives(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "Outlives", &__self_0),
            GenericBound::Use(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Use",
                    __self_0, &__self_1),
        }
    }
}Debug, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            GenericBound<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    GenericBound::Trait(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    GenericBound::Outlives(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    GenericBound::Use(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
764pub enum GenericBound<'hir> {
765    Trait(PolyTraitRef<'hir>),
766    Outlives(&'hir Lifetime),
767    Use(&'hir [PreciseCapturingArg<'hir>], Span),
768}
769
770impl GenericBound<'_> {
771    pub fn trait_ref(&self) -> Option<&TraitRef<'_>> {
772        match self {
773            GenericBound::Trait(data) => Some(&data.trait_ref),
774            _ => None,
775        }
776    }
777
778    pub fn span(&self) -> Span {
779        match self {
780            GenericBound::Trait(t, ..) => t.span,
781            GenericBound::Outlives(l) => l.ident.span,
782            GenericBound::Use(_, span) => *span,
783        }
784    }
785}
786
787pub type GenericBounds<'hir> = &'hir [GenericBound<'hir>];
788
789#[derive(#[automatically_derived]
impl ::core::marker::Copy for MissingLifetimeKind { }Copy, #[automatically_derived]
impl ::core::clone::Clone for MissingLifetimeKind {
    #[inline]
    fn clone(&self) -> MissingLifetimeKind { *self }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for MissingLifetimeKind {
    #[inline]
    fn eq(&self, other: &MissingLifetimeKind) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for MissingLifetimeKind {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {}
}Eq, #[automatically_derived]
impl ::core::cmp::PartialOrd for MissingLifetimeKind {
    #[inline]
    fn partial_cmp(&self, other: &MissingLifetimeKind)
        -> ::core::option::Option<::core::cmp::Ordering> {
        ::core::option::Option::Some(::core::cmp::Ord::cmp(self, other))
    }
}PartialOrd, #[automatically_derived]
impl ::core::cmp::Ord for MissingLifetimeKind {
    #[inline]
    fn cmp(&self, other: &MissingLifetimeKind) -> ::core::cmp::Ordering {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        ::core::cmp::Ord::cmp(&__self_discr, &__arg1_discr)
    }
}Ord, #[automatically_derived]
impl ::core::hash::Hash for MissingLifetimeKind {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        ::core::hash::Hash::hash(&__self_discr, state)
    }
}Hash, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            MissingLifetimeKind {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    MissingLifetimeKind::Underscore => {}
                    MissingLifetimeKind::Ampersand => {}
                    MissingLifetimeKind::Comma => {}
                    MissingLifetimeKind::Brackets => {}
                }
            }
        }
    };StableHash, #[automatically_derived]
impl ::core::fmt::Debug for MissingLifetimeKind {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                MissingLifetimeKind::Underscore => "Underscore",
                MissingLifetimeKind::Ampersand => "Ampersand",
                MissingLifetimeKind::Comma => "Comma",
                MissingLifetimeKind::Brackets => "Brackets",
            })
    }
}Debug)]
790pub enum MissingLifetimeKind {
791    /// An explicit `'_`.
792    Underscore,
793    /// An elided lifetime `&' ty`.
794    Ampersand,
795    /// An elided lifetime in brackets with written brackets.
796    Comma,
797    /// An elided lifetime with elided brackets.
798    Brackets,
799}
800
801#[derive(#[automatically_derived]
impl ::core::marker::Copy for LifetimeParamKind { }Copy, #[automatically_derived]
impl ::core::clone::Clone for LifetimeParamKind {
    #[inline]
    fn clone(&self) -> LifetimeParamKind {
        let _: ::core::clone::AssertParamIsClone<MissingLifetimeKind>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for LifetimeParamKind {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            LifetimeParamKind::Explicit =>
                ::core::fmt::Formatter::write_str(f, "Explicit"),
            LifetimeParamKind::Elided(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Elided",
                    &__self_0),
            LifetimeParamKind::Error =>
                ::core::fmt::Formatter::write_str(f, "Error"),
        }
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            LifetimeParamKind {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    LifetimeParamKind::Explicit => {}
                    LifetimeParamKind::Elided(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    LifetimeParamKind::Error => {}
                }
            }
        }
    };StableHash)]
802pub enum LifetimeParamKind {
803    // Indicates that the lifetime definition was explicitly declared (e.g., in
804    // `fn foo<'a>(x: &'a u8) -> &'a u8 { x }`).
805    Explicit,
806
807    // Indication that the lifetime was elided (e.g., in both cases in
808    // `fn foo(x: &u8) -> &'_ u8 { x }`).
809    Elided(MissingLifetimeKind),
810
811    // Indication that the lifetime name was somehow in error.
812    Error,
813}
814
815#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for GenericParamKind<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            GenericParamKind::Lifetime { kind: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f,
                    "Lifetime", "kind", &__self_0),
            GenericParamKind::Type { default: __self_0, synthetic: __self_1 }
                =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f, "Type",
                    "default", __self_0, "synthetic", &__self_1),
            GenericParamKind::Const { ty: __self_0, default: __self_1 } =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f, "Const",
                    "ty", __self_0, "default", &__self_1),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for GenericParamKind<'hir> {
    #[inline]
    fn clone(&self) -> GenericParamKind<'hir> {
        let _: ::core::clone::AssertParamIsClone<LifetimeParamKind>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Ty<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _:
                ::core::clone::AssertParamIsClone<Option<&'hir ConstArg<'hir>>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for GenericParamKind<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            GenericParamKind<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    GenericParamKind::Lifetime { kind: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    GenericParamKind::Type {
                        default: ref __binding_0, synthetic: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    GenericParamKind::Const {
                        ty: ref __binding_0, default: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
816pub enum GenericParamKind<'hir> {
817    /// A lifetime definition (e.g., `'a: 'b + 'c + 'd`).
818    Lifetime {
819        kind: LifetimeParamKind,
820    },
821    Type {
822        default: Option<&'hir Ty<'hir>>,
823        synthetic: bool,
824    },
825    Const {
826        ty: &'hir Ty<'hir>,
827        /// Optional default value for the const generic param
828        default: Option<&'hir ConstArg<'hir>>,
829    },
830}
831
832#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for GenericParam<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        let names: &'static _ =
            &["hir_id", "def_id", "name", "span", "pure_wrt_drop", "kind",
                        "colon_span", "source"];
        let values: &[&dyn ::core::fmt::Debug] =
            &[&self.hir_id, &self.def_id, &self.name, &self.span,
                        &self.pure_wrt_drop, &self.kind, &self.colon_span,
                        &&self.source];
        ::core::fmt::Formatter::debug_struct_fields_finish(f, "GenericParam",
            names, values)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for GenericParam<'hir> {
    #[inline]
    fn clone(&self) -> GenericParam<'hir> {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<LocalDefId>;
        let _: ::core::clone::AssertParamIsClone<ParamName>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        let _: ::core::clone::AssertParamIsClone<GenericParamKind<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Option<Span>>;
        let _: ::core::clone::AssertParamIsClone<GenericParamSource>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for GenericParam<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            GenericParam<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    GenericParam {
                        hir_id: ref __binding_0,
                        def_id: ref __binding_1,
                        name: ref __binding_2,
                        span: ref __binding_3,
                        pure_wrt_drop: ref __binding_4,
                        kind: ref __binding_5,
                        colon_span: ref __binding_6,
                        source: ref __binding_7 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                        { __binding_5.stable_hash(__hcx, __hasher); }
                        { __binding_6.stable_hash(__hcx, __hasher); }
                        { __binding_7.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
833pub struct GenericParam<'hir> {
834    #[stable_hash(ignore)]
835    pub hir_id: HirId,
836    pub def_id: LocalDefId,
837    pub name: ParamName,
838    pub span: Span,
839    pub pure_wrt_drop: bool,
840    pub kind: GenericParamKind<'hir>,
841    pub colon_span: Option<Span>,
842    pub source: GenericParamSource,
843}
844
845impl<'hir> GenericParam<'hir> {
846    /// Synthetic type-parameters are inserted after normal ones.
847    /// In order for normal parameters to be able to refer to synthetic ones,
848    /// scans them first.
849    pub fn is_impl_trait(&self) -> bool {
850        #[allow(non_exhaustive_omitted_patterns)] match self.kind {
    GenericParamKind::Type { synthetic: true, .. } => true,
    _ => false,
}matches!(self.kind, GenericParamKind::Type { synthetic: true, .. })
851    }
852
853    /// This can happen for `async fn`, e.g. `async fn f<'_>(&'_ self)`.
854    ///
855    /// See `lifetime_to_generic_param` in `rustc_ast_lowering` for more information.
856    pub fn is_elided_lifetime(&self) -> bool {
857        #[allow(non_exhaustive_omitted_patterns)] match self.kind {
    GenericParamKind::Lifetime { kind: LifetimeParamKind::Elided(_) } => true,
    _ => false,
}matches!(self.kind, GenericParamKind::Lifetime { kind: LifetimeParamKind::Elided(_) })
858    }
859
860    pub fn is_lifetime(&self) -> bool {
861        #[allow(non_exhaustive_omitted_patterns)] match self.kind {
    GenericParamKind::Lifetime { .. } => true,
    _ => false,
}matches!(self.kind, GenericParamKind::Lifetime { .. })
862    }
863}
864
865/// Records where the generic parameter originated from.
866///
867/// This can either be from an item's generics, in which case it's typically
868/// early-bound (but can be a late-bound lifetime in functions, for example),
869/// or from a `for<...>` binder, in which case it's late-bound (and notably,
870/// does not show up in the parent item's generics).
871#[derive(#[automatically_derived]
impl ::core::fmt::Debug for GenericParamSource {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                GenericParamSource::Generics => "Generics",
                GenericParamSource::Binder => "Binder",
            })
    }
}Debug, #[automatically_derived]
impl ::core::clone::Clone for GenericParamSource {
    #[inline]
    fn clone(&self) -> GenericParamSource { *self }
}Clone, #[automatically_derived]
impl ::core::marker::Copy for GenericParamSource { }Copy, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            GenericParamSource {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    GenericParamSource::Generics => {}
                    GenericParamSource::Binder => {}
                }
            }
        }
    };StableHash)]
872pub enum GenericParamSource {
873    // Early or late-bound parameters defined on an item
874    Generics,
875    // Late-bound parameters defined via a `for<...>`
876    Binder,
877}
878
879#[derive(#[automatically_derived]
impl ::core::default::Default for GenericParamCount {
    #[inline]
    fn default() -> GenericParamCount {
        GenericParamCount {
            lifetimes: ::core::default::Default::default(),
            types: ::core::default::Default::default(),
            consts: ::core::default::Default::default(),
            infer: ::core::default::Default::default(),
        }
    }
}Default)]
880pub struct GenericParamCount {
881    pub lifetimes: usize,
882    pub types: usize,
883    pub consts: usize,
884    pub infer: usize,
885}
886
887/// Represents lifetimes and type parameters attached to a declaration
888/// of a function, enum, trait, etc.
889#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for Generics<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field5_finish(f, "Generics",
            "params", &self.params, "predicates", &self.predicates,
            "has_where_clause_predicates", &self.has_where_clause_predicates,
            "where_clause_span", &self.where_clause_span, "span", &&self.span)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Generics<'hir> {
    #[inline]
    fn clone(&self) -> Generics<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir [GenericParam<'hir>]>;
        let _:
                ::core::clone::AssertParamIsClone<&'hir [WherePredicate<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for Generics<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Generics<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Generics {
                        params: ref __binding_0,
                        predicates: ref __binding_1,
                        has_where_clause_predicates: ref __binding_2,
                        where_clause_span: ref __binding_3,
                        span: ref __binding_4 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
890pub struct Generics<'hir> {
891    pub params: &'hir [GenericParam<'hir>],
892    pub predicates: &'hir [WherePredicate<'hir>],
893    pub has_where_clause_predicates: bool,
894    pub where_clause_span: Span,
895    pub span: Span,
896}
897
898impl<'hir> Generics<'hir> {
899    pub const fn empty() -> &'hir Generics<'hir> {
900        const NOPE: Generics<'_> = Generics {
901            params: &[],
902            predicates: &[],
903            has_where_clause_predicates: false,
904            where_clause_span: DUMMY_SP,
905            span: DUMMY_SP,
906        };
907        &NOPE
908    }
909
910    pub fn get_named(&self, name: Symbol) -> Option<&GenericParam<'hir>> {
911        self.params.iter().find(|&param| name == param.name.ident().name)
912    }
913
914    /// If there are generic parameters, return where to introduce a new one.
915    pub fn span_for_lifetime_suggestion(&self) -> Option<Span> {
916        if let Some(first) = self.params.first()
917            && self.span.contains(first.span)
918        {
919            // `fn foo<A>(t: impl Trait)`
920            //         ^ suggest `'a, ` here
921            Some(first.span.shrink_to_lo())
922        } else {
923            None
924        }
925    }
926
927    /// If there are generic parameters, return where to introduce a new one.
928    pub fn span_for_param_suggestion(&self) -> Option<Span> {
929        self.params.iter().any(|p| self.span.contains(p.span)).then(|| {
930            // `fn foo<A>(t: impl Trait)`
931            //          ^ suggest `, T: Trait` here
932            self.span.with_lo(self.span.hi() - BytePos(1)).shrink_to_lo()
933        })
934    }
935
936    /// `Span` where further predicates would be suggested, accounting for trailing commas, like
937    ///  in `fn foo<T>(t: T) where T: Foo,` so we don't suggest two trailing commas.
938    pub fn tail_span_for_predicate_suggestion(&self) -> Span {
939        let end = self.where_clause_span.shrink_to_hi();
940        if self.has_where_clause_predicates {
941            self.predicates
942                .iter()
943                .rfind(|&p| p.kind.in_where_clause())
944                .map_or(end, |p| p.span)
945                .shrink_to_hi()
946                .to(end)
947        } else {
948            end
949        }
950    }
951
952    pub fn add_where_or_trailing_comma(&self) -> &'static str {
953        if self.has_where_clause_predicates {
954            ","
955        } else if self.where_clause_span.is_empty() {
956            " where"
957        } else {
958            // No where clause predicates, but we have `where` token
959            ""
960        }
961    }
962
963    pub fn bounds_for_param(
964        &self,
965        param_def_id: LocalDefId,
966    ) -> impl Iterator<Item = &WhereBoundPredicate<'hir>> {
967        self.predicates.iter().filter_map(move |pred| match pred.kind {
968            WherePredicateKind::BoundPredicate(bp)
969                if bp.is_param_bound(param_def_id.to_def_id()) =>
970            {
971                Some(bp)
972            }
973            _ => None,
974        })
975    }
976
977    pub fn outlives_for_param(
978        &self,
979        param_def_id: LocalDefId,
980    ) -> impl Iterator<Item = &WhereRegionPredicate<'_>> {
981        self.predicates.iter().filter_map(move |pred| match pred.kind {
982            WherePredicateKind::RegionPredicate(rp) if rp.is_param_bound(param_def_id) => Some(rp),
983            _ => None,
984        })
985    }
986
987    /// Returns a suggestable empty span right after the "final" bound of the generic parameter.
988    ///
989    /// If that bound needs to be wrapped in parentheses to avoid ambiguity with
990    /// subsequent bounds, it also returns an empty span for an open parenthesis
991    /// as the second component.
992    ///
993    /// E.g., adding `+ 'static` after `Fn() -> dyn Future<Output = ()>` or
994    /// `Fn() -> &'static dyn Debug` requires parentheses:
995    /// `Fn() -> (dyn Future<Output = ()>) + 'static` and
996    /// `Fn() -> &'static (dyn Debug) + 'static`, respectively.
997    pub fn bounds_span_for_suggestions(
998        &self,
999        param_def_id: LocalDefId,
1000    ) -> Option<(Span, Option<Span>)> {
1001        self.bounds_for_param(param_def_id).flat_map(|bp| bp.bounds.iter().rev()).find_map(
1002            |bound| {
1003                let span_for_parentheses = if let Some(trait_ref) = bound.trait_ref()
1004                    && let [.., segment] = trait_ref.path.segments
1005                    && let Some(ret_ty) = segment.args().paren_sugar_output()
1006                    && let ret_ty = ret_ty.peel_refs()
1007                    && let TyKind::TraitObject(_, tagged_ptr) = ret_ty.kind
1008                    && let TraitObjectSyntax::Dyn = tagged_ptr.tag()
1009                    && ret_ty.span.can_be_used_for_suggestions()
1010                {
1011                    Some(ret_ty.span)
1012                } else {
1013                    None
1014                };
1015
1016                span_for_parentheses.map_or_else(
1017                    || {
1018                        // We include bounds that come from a `#[derive(_)]` but point at the user's
1019                        // code, as we use this method to get a span appropriate for suggestions.
1020                        let bs = bound.span();
1021                        // We use `from_expansion` instead of `can_be_used_for_suggestions` because
1022                        // the trait bound from imperfect derives do point at the type parameter,
1023                        // but expanded to a where clause, so we want to ignore those. This is only
1024                        // true for derive intrinsics.
1025                        bs.from_expansion().not().then(|| (bs.shrink_to_hi(), None))
1026                    },
1027                    |span| Some((span.shrink_to_hi(), Some(span.shrink_to_lo()))),
1028                )
1029            },
1030        )
1031    }
1032
1033    pub fn span_for_predicate_removal(&self, pos: usize) -> Span {
1034        let predicate = &self.predicates[pos];
1035        let span = predicate.span;
1036
1037        if !predicate.kind.in_where_clause() {
1038            // <T: ?Sized, U>
1039            //   ^^^^^^^^
1040            return span;
1041        }
1042
1043        // We need to find out which comma to remove.
1044        if pos < self.predicates.len() - 1 {
1045            let next_pred = &self.predicates[pos + 1];
1046            if next_pred.kind.in_where_clause() {
1047                // where T: ?Sized, Foo: Bar,
1048                //       ^^^^^^^^^^^
1049                return span.until(next_pred.span);
1050            }
1051        }
1052
1053        if pos > 0 {
1054            let prev_pred = &self.predicates[pos - 1];
1055            if prev_pred.kind.in_where_clause() {
1056                // where Foo: Bar, T: ?Sized,
1057                //               ^^^^^^^^^^^
1058                return prev_pred.span.shrink_to_hi().to(span);
1059            }
1060        }
1061
1062        // This is the only predicate in the where clause.
1063        // where T: ?Sized
1064        // ^^^^^^^^^^^^^^^
1065        self.where_clause_span
1066    }
1067
1068    pub fn span_for_bound_removal(&self, predicate_pos: usize, bound_pos: usize) -> Span {
1069        let predicate = &self.predicates[predicate_pos];
1070        let bounds = predicate.kind.bounds();
1071
1072        if bounds.len() == 1 {
1073            return self.span_for_predicate_removal(predicate_pos);
1074        }
1075
1076        let bound_span = bounds[bound_pos].span();
1077        if bound_pos < bounds.len() - 1 {
1078            // If there's another bound after the current bound
1079            // include the following '+' e.g.:
1080            //
1081            //  `T: Foo + CurrentBound + Bar`
1082            //            ^^^^^^^^^^^^^^^
1083            bound_span.to(bounds[bound_pos + 1].span().shrink_to_lo())
1084        } else {
1085            // If the current bound is the last bound
1086            // include the preceding '+' E.g.:
1087            //
1088            //  `T: Foo + Bar + CurrentBound`
1089            //               ^^^^^^^^^^^^^^^
1090            bound_span.with_lo(bounds[bound_pos - 1].span().hi())
1091        }
1092    }
1093
1094    /// Computes the span representing the removal of a generic parameter at `param_index`.
1095    ///
1096    /// This function identifies the correct slice of source code to delete so that the
1097    /// remaining generic list remains syntactically valid (handling commas and brackets).
1098    ///
1099    /// ### Examples
1100    ///
1101    /// 1. **With a following parameter:** (Includes the trailing comma)
1102    ///    - Input: `<T, U>` (index 0)
1103    ///    - Produces span for: `T, `
1104    ///
1105    /// 2. **With a previous parameter:** (Includes the leading comma and bounds)
1106    ///    - Input: `<T: Clone, U>` (index 1)
1107    ///    - Produces span for: `, U`
1108    ///
1109    /// 3. **The only parameter:** (Includes the angle brackets)
1110    ///    - Input: `<T>` (index 0)
1111    ///    - Produces span for: `<T>`
1112    ///
1113    /// 4. **Parameter with where-clause bounds:**
1114    ///    - Input: `fn foo<T, U>() where T: Copy` (index 0)
1115    ///    - Produces span for: `T, ` (The where-clause remains for other logic to handle).
1116    pub fn span_for_param_removal(&self, param_index: usize) -> Span {
1117        if param_index >= self.params.len() {
1118            return self.span.shrink_to_hi();
1119        }
1120
1121        let is_param_explicit = |par: &&GenericParam<'_>| match par.kind {
1122            GenericParamKind::Type { .. }
1123            | GenericParamKind::Const { .. }
1124            | GenericParamKind::Lifetime { kind: LifetimeParamKind::Explicit } => true,
1125            _ => false,
1126        };
1127
1128        // Find the span of the type parameter.
1129        if let Some(next) = self.params[param_index + 1..].iter().find(is_param_explicit) {
1130            self.params[param_index].span.until(next.span)
1131        } else if let Some(prev) = self.params[..param_index].iter().rfind(is_param_explicit) {
1132            let mut prev_span = prev.span;
1133            // Consider the span of the bounds with the previous generic parameter when there is.
1134            if let Some(prev_bounds_span) = self.span_for_param_bounds(prev) {
1135                prev_span = prev_span.to(prev_bounds_span);
1136            }
1137
1138            // Consider the span of the bounds with the current generic parameter when there is.
1139            prev_span.shrink_to_hi().to(
1140                if let Some(cur_bounds_span) = self.span_for_param_bounds(&self.params[param_index])
1141                {
1142                    cur_bounds_span
1143                } else {
1144                    self.params[param_index].span
1145                },
1146            )
1147        } else {
1148            // Remove also angle brackets <> when there is just ONE generic parameter.
1149            self.span
1150        }
1151    }
1152
1153    /// Returns the span of the `WherePredicate` associated with the given `GenericParam`, if any.
1154    ///
1155    /// This looks specifically for predicates in the `where` clause that were generated
1156    /// from the parameter definition (e.g., `T` in `where T: Bound`).
1157    ///
1158    /// ### Example
1159    ///
1160    /// - Input: `param` representing `T`
1161    /// - Context: `where T: Clone + Default, U: Copy`
1162    /// - Returns: Span of `T: Clone + Default`
1163    fn span_for_param_bounds(&self, param: &GenericParam<'hir>) -> Option<Span> {
1164        self.predicates
1165            .iter()
1166            .find(|pred| {
1167                if let WherePredicateKind::BoundPredicate(WhereBoundPredicate {
1168                    origin: PredicateOrigin::GenericParam,
1169                    bounded_ty,
1170                    ..
1171                }) = pred.kind
1172                {
1173                    bounded_ty.span == param.span
1174                } else {
1175                    false
1176                }
1177            })
1178            .map(|pred| pred.span)
1179    }
1180}
1181
1182/// A single predicate in a where-clause.
1183#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for WherePredicate<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f,
            "WherePredicate", "hir_id", &self.hir_id, "span", &self.span,
            "kind", &&self.kind)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for WherePredicate<'hir> {
    #[inline]
    fn clone(&self) -> WherePredicate<'hir> {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _:
                ::core::clone::AssertParamIsClone<&'hir WherePredicateKind<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for WherePredicate<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            WherePredicate<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    WherePredicate {
                        hir_id: ref __binding_0,
                        span: ref __binding_1,
                        kind: ref __binding_2 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
1184pub struct WherePredicate<'hir> {
1185    #[stable_hash(ignore)]
1186    pub hir_id: HirId,
1187    pub span: Span,
1188    pub kind: &'hir WherePredicateKind<'hir>,
1189}
1190
1191/// The kind of a single predicate in a where-clause.
1192#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for WherePredicateKind<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            WherePredicateKind::BoundPredicate(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "BoundPredicate", &__self_0),
            WherePredicateKind::RegionPredicate(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "RegionPredicate", &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for WherePredicateKind<'hir> {
    #[inline]
    fn clone(&self) -> WherePredicateKind<'hir> {
        let _: ::core::clone::AssertParamIsClone<WhereBoundPredicate<'hir>>;
        let _: ::core::clone::AssertParamIsClone<WhereRegionPredicate<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for WherePredicateKind<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            WherePredicateKind<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    WherePredicateKind::BoundPredicate(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    WherePredicateKind::RegionPredicate(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
1193pub enum WherePredicateKind<'hir> {
1194    /// A type bound (e.g., `for<'c> Foo: Send + Clone + 'c`).
1195    BoundPredicate(WhereBoundPredicate<'hir>),
1196    /// A lifetime predicate (e.g., `'a: 'b + 'c`).
1197    RegionPredicate(WhereRegionPredicate<'hir>),
1198}
1199
1200impl<'hir> WherePredicateKind<'hir> {
1201    pub fn in_where_clause(&self) -> bool {
1202        match self {
1203            WherePredicateKind::BoundPredicate(p) => p.origin == PredicateOrigin::WhereClause,
1204            WherePredicateKind::RegionPredicate(p) => p.in_where_clause,
1205        }
1206    }
1207
1208    pub fn bounds(&self) -> GenericBounds<'hir> {
1209        match self {
1210            WherePredicateKind::BoundPredicate(p) => p.bounds,
1211            WherePredicateKind::RegionPredicate(p) => p.bounds,
1212        }
1213    }
1214}
1215
1216#[derive(#[automatically_derived]
impl ::core::marker::Copy for PredicateOrigin { }Copy, #[automatically_derived]
impl ::core::clone::Clone for PredicateOrigin {
    #[inline]
    fn clone(&self) -> PredicateOrigin { *self }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for PredicateOrigin {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                PredicateOrigin::WhereClause => "WhereClause",
                PredicateOrigin::GenericParam => "GenericParam",
                PredicateOrigin::ImplTrait => "ImplTrait",
            })
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            PredicateOrigin {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    PredicateOrigin::WhereClause => {}
                    PredicateOrigin::GenericParam => {}
                    PredicateOrigin::ImplTrait => {}
                }
            }
        }
    };StableHash, #[automatically_derived]
impl ::core::cmp::PartialEq for PredicateOrigin {
    #[inline]
    fn eq(&self, other: &PredicateOrigin) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for PredicateOrigin {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {}
}Eq)]
1217pub enum PredicateOrigin {
1218    WhereClause,
1219    GenericParam,
1220    ImplTrait,
1221}
1222
1223/// A type bound (e.g., `for<'c> Foo: Send + Clone + 'c`).
1224#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for WhereBoundPredicate<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field4_finish(f,
            "WhereBoundPredicate", "origin", &self.origin,
            "bound_generic_params", &self.bound_generic_params, "bounded_ty",
            &self.bounded_ty, "bounds", &&self.bounds)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for WhereBoundPredicate<'hir> {
    #[inline]
    fn clone(&self) -> WhereBoundPredicate<'hir> {
        let _: ::core::clone::AssertParamIsClone<PredicateOrigin>;
        let _: ::core::clone::AssertParamIsClone<&'hir [GenericParam<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<GenericBounds<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for WhereBoundPredicate<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            WhereBoundPredicate<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    WhereBoundPredicate {
                        origin: ref __binding_0,
                        bound_generic_params: ref __binding_1,
                        bounded_ty: ref __binding_2,
                        bounds: ref __binding_3 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
1225pub struct WhereBoundPredicate<'hir> {
1226    /// Origin of the predicate.
1227    pub origin: PredicateOrigin,
1228    /// Any generics from a `for` binding.
1229    pub bound_generic_params: &'hir [GenericParam<'hir>],
1230    /// The type being bounded.
1231    pub bounded_ty: &'hir Ty<'hir>,
1232    /// Trait and lifetime bounds (e.g., `Clone + Send + 'static`).
1233    pub bounds: GenericBounds<'hir>,
1234}
1235
1236impl<'hir> WhereBoundPredicate<'hir> {
1237    /// Returns `true` if `param_def_id` matches the `bounded_ty` of this predicate.
1238    pub fn is_param_bound(&self, param_def_id: DefId) -> bool {
1239        self.bounded_ty.as_generic_param().is_some_and(|(def_id, _)| def_id == param_def_id)
1240    }
1241}
1242
1243/// A lifetime predicate (e.g., `'a: 'b + 'c`).
1244#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for WhereRegionPredicate<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f,
            "WhereRegionPredicate", "in_where_clause", &self.in_where_clause,
            "lifetime", &self.lifetime, "bounds", &&self.bounds)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for WhereRegionPredicate<'hir> {
    #[inline]
    fn clone(&self) -> WhereRegionPredicate<'hir> {
        let _: ::core::clone::AssertParamIsClone<bool>;
        let _: ::core::clone::AssertParamIsClone<&'hir Lifetime>;
        let _: ::core::clone::AssertParamIsClone<GenericBounds<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for WhereRegionPredicate<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            WhereRegionPredicate<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    WhereRegionPredicate {
                        in_where_clause: ref __binding_0,
                        lifetime: ref __binding_1,
                        bounds: ref __binding_2 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
1245pub struct WhereRegionPredicate<'hir> {
1246    pub in_where_clause: bool,
1247    pub lifetime: &'hir Lifetime,
1248    pub bounds: GenericBounds<'hir>,
1249}
1250
1251impl<'hir> WhereRegionPredicate<'hir> {
1252    /// Returns `true` if `param_def_id` matches the `lifetime` of this predicate.
1253    fn is_param_bound(&self, param_def_id: LocalDefId) -> bool {
1254        self.lifetime.kind == LifetimeKind::Param(param_def_id)
1255    }
1256}
1257
1258/// An equality predicate (e.g., `T = int`); currently unsupported.
1259#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for WhereEqPredicate<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f,
            "WhereEqPredicate", "lhs_ty", &self.lhs_ty, "rhs_ty",
            &&self.rhs_ty)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for WhereEqPredicate<'hir> {
    #[inline]
    fn clone(&self) -> WhereEqPredicate<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for WhereEqPredicate<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            WhereEqPredicate<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    WhereEqPredicate {
                        lhs_ty: ref __binding_0, rhs_ty: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
1260pub struct WhereEqPredicate<'hir> {
1261    pub lhs_ty: &'hir Ty<'hir>,
1262    pub rhs_ty: &'hir Ty<'hir>,
1263}
1264
1265/// HIR node coupled with its parent's id in the same HIR owner.
1266///
1267/// The parent is trash when the node is a HIR owner.
1268#[derive(#[automatically_derived]
impl<'tcx> ::core::clone::Clone for ParentedNode<'tcx> {
    #[inline]
    fn clone(&self) -> ParentedNode<'tcx> {
        let _: ::core::clone::AssertParamIsClone<ItemLocalId>;
        let _: ::core::clone::AssertParamIsClone<Node<'tcx>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'tcx> ::core::marker::Copy for ParentedNode<'tcx> { }Copy, #[automatically_derived]
impl<'tcx> ::core::fmt::Debug for ParentedNode<'tcx> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f, "ParentedNode",
            "parent", &self.parent, "node", &&self.node)
    }
}Debug)]
1269pub struct ParentedNode<'tcx> {
1270    pub parent: ItemLocalId,
1271    pub node: Node<'tcx>,
1272}
1273
1274/// Arguments passed to an attribute macro.
1275#[derive(#[automatically_derived]
impl ::core::clone::Clone for AttrArgs {
    #[inline]
    fn clone(&self) -> AttrArgs {
        match self {
            AttrArgs::Empty => AttrArgs::Empty,
            AttrArgs::Delimited(__self_0) =>
                AttrArgs::Delimited(::core::clone::Clone::clone(__self_0)),
            AttrArgs::Eq { eq_span: __self_0, expr: __self_1 } =>
                AttrArgs::Eq {
                    eq_span: ::core::clone::Clone::clone(__self_0),
                    expr: ::core::clone::Clone::clone(__self_1),
                },
        }
    }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for AttrArgs {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            AttrArgs::Empty => ::core::fmt::Formatter::write_str(f, "Empty"),
            AttrArgs::Delimited(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "Delimited", &__self_0),
            AttrArgs::Eq { eq_span: __self_0, expr: __self_1 } =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f, "Eq",
                    "eq_span", __self_0, "expr", &__self_1),
        }
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for AttrArgs {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    AttrArgs::Empty => {}
                    AttrArgs::Delimited(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    AttrArgs::Eq {
                        eq_span: ref __binding_0, expr: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for AttrArgs {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        AttrArgs::Empty => { 0usize }
                        AttrArgs::Delimited(ref __binding_0) => { 1usize }
                        AttrArgs::Eq {
                            eq_span: ref __binding_0, expr: ref __binding_1 } => {
                            2usize
                        }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    AttrArgs::Empty => {}
                    AttrArgs::Delimited(ref __binding_0) => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                    AttrArgs::Eq {
                        eq_span: ref __binding_0, expr: ref __binding_1 } => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_1,
                            __encoder);
                    }
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for AttrArgs {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => { AttrArgs::Empty }
                    1usize => {
                        AttrArgs::Delimited(::rustc_serialize::Decodable::decode(__decoder))
                    }
                    2usize => {
                        AttrArgs::Eq {
                            eq_span: ::rustc_serialize::Decodable::decode(__decoder),
                            expr: ::rustc_serialize::Decodable::decode(__decoder),
                        }
                    }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `AttrArgs`, expected 0..3, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable)]
1276pub enum AttrArgs {
1277    /// No arguments: `#[attr]`.
1278    Empty,
1279    /// Delimited arguments: `#[attr()/[]/{}]`.
1280    Delimited(DelimArgs),
1281    /// Arguments of a key-value attribute: `#[attr = "value"]`.
1282    Eq {
1283        /// Span of the `=` token.
1284        eq_span: Span,
1285        /// The "value".
1286        expr: MetaItemLit,
1287    },
1288}
1289
1290#[derive(#[automatically_derived]
impl ::core::clone::Clone for AttrPath {
    #[inline]
    fn clone(&self) -> AttrPath {
        AttrPath {
            segments: ::core::clone::Clone::clone(&self.segments),
            span: ::core::clone::Clone::clone(&self.span),
        }
    }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for AttrPath {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f, "AttrPath",
            "segments", &self.segments, "span", &&self.span)
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for AttrPath {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    AttrPath { segments: ref __binding_0, span: ref __binding_1
                        } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for AttrPath {
            fn encode(&self, __encoder: &mut __E) {
                match *self {
                    AttrPath { segments: ref __binding_0, span: ref __binding_1
                        } => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_1,
                            __encoder);
                    }
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for AttrPath {
            fn decode(__decoder: &mut __D) -> Self {
                AttrPath {
                    segments: ::rustc_serialize::Decodable::decode(__decoder),
                    span: ::rustc_serialize::Decodable::decode(__decoder),
                }
            }
        }
    };Decodable)]
1291pub struct AttrPath {
1292    pub segments: Box<[Symbol]>,
1293    pub span: Span,
1294}
1295
1296impl IntoDiagArg for AttrPath {
1297    fn into_diag_arg(self, path: &mut Option<std::path::PathBuf>) -> DiagArgValue {
1298        self.to_string().into_diag_arg(path)
1299    }
1300}
1301
1302impl AttrPath {
1303    pub fn from_ast(path: &ast::Path, lower_span: impl Copy + Fn(Span) -> Span) -> Self {
1304        AttrPath {
1305            segments: path
1306                .segments
1307                .iter()
1308                .map(|i| i.ident.name)
1309                .collect::<Vec<_>>()
1310                .into_boxed_slice(),
1311            span: lower_span(path.span),
1312        }
1313    }
1314}
1315
1316impl fmt::Display for AttrPath {
1317    fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
1318        f.write_fmt(format_args!("{0}",
        join_path_idents(self.segments.iter().map(|i|
                    Ident { name: *i, span: DUMMY_SP }))))write!(
1319            f,
1320            "{}",
1321            join_path_idents(self.segments.iter().map(|i| Ident { name: *i, span: DUMMY_SP }))
1322        )
1323    }
1324}
1325
1326#[derive(#[automatically_derived]
impl ::core::clone::Clone for AttrItem {
    #[inline]
    fn clone(&self) -> AttrItem {
        AttrItem {
            path: ::core::clone::Clone::clone(&self.path),
            args: ::core::clone::Clone::clone(&self.args),
            id: ::core::clone::Clone::clone(&self.id),
            style: ::core::clone::Clone::clone(&self.style),
            span: ::core::clone::Clone::clone(&self.span),
        }
    }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for AttrItem {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field5_finish(f, "AttrItem",
            "path", &self.path, "args", &self.args, "id", &self.id, "style",
            &self.style, "span", &&self.span)
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for AttrItem {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    AttrItem {
                        path: ref __binding_0,
                        args: ref __binding_1,
                        id: ref __binding_2,
                        style: ref __binding_3,
                        span: ref __binding_4 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for AttrItem {
            fn encode(&self, __encoder: &mut __E) {
                match *self {
                    AttrItem {
                        path: ref __binding_0,
                        args: ref __binding_1,
                        id: ref __binding_2,
                        style: ref __binding_3,
                        span: ref __binding_4 } => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_1,
                            __encoder);
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_2,
                            __encoder);
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_3,
                            __encoder);
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_4,
                            __encoder);
                    }
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for AttrItem {
            fn decode(__decoder: &mut __D) -> Self {
                AttrItem {
                    path: ::rustc_serialize::Decodable::decode(__decoder),
                    args: ::rustc_serialize::Decodable::decode(__decoder),
                    id: ::rustc_serialize::Decodable::decode(__decoder),
                    style: ::rustc_serialize::Decodable::decode(__decoder),
                    span: ::rustc_serialize::Decodable::decode(__decoder),
                }
            }
        }
    };Decodable)]
1327pub struct AttrItem {
1328    // Not lowered to hir::Path because we have no NodeId to resolve to.
1329    pub path: AttrPath,
1330    pub args: AttrArgs,
1331    pub id: HashIgnoredAttrId,
1332    /// Denotes if the attribute decorates the following construct (outer)
1333    /// or the construct this attribute is contained within (inner).
1334    pub style: AttrStyle,
1335    /// Span of the entire attribute
1336    pub span: Span,
1337}
1338
1339/// The derived implementation of [`StableHash`] on [`Attribute`]s shouldn't hash
1340/// [`AttrId`]s. By wrapping them in this, we make sure we never do.
1341#[derive(#[automatically_derived]
impl ::core::marker::Copy for HashIgnoredAttrId { }Copy, #[automatically_derived]
impl ::core::fmt::Debug for HashIgnoredAttrId {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field1_finish(f,
            "HashIgnoredAttrId", "attr_id", &&self.attr_id)
    }
}Debug, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for HashIgnoredAttrId {
            fn encode(&self, __encoder: &mut __E) {
                match *self {
                    HashIgnoredAttrId { attr_id: ref __binding_0 } => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for HashIgnoredAttrId {
            fn decode(__decoder: &mut __D) -> Self {
                HashIgnoredAttrId {
                    attr_id: ::rustc_serialize::Decodable::decode(__decoder),
                }
            }
        }
    };Decodable, #[automatically_derived]
impl ::core::clone::Clone for HashIgnoredAttrId {
    #[inline]
    fn clone(&self) -> HashIgnoredAttrId {
        let _: ::core::clone::AssertParamIsClone<AttrId>;
        *self
    }
}Clone)]
1342pub struct HashIgnoredAttrId {
1343    pub attr_id: AttrId,
1344}
1345
1346/// Many functions on this type have their documentation in the [`AttributeExt`] trait,
1347/// since they defer their implementation directly to that trait.
1348#[derive(#[automatically_derived]
impl ::core::clone::Clone for Attribute {
    #[inline]
    fn clone(&self) -> Attribute {
        match self {
            Attribute::Parsed(__self_0) =>
                Attribute::Parsed(::core::clone::Clone::clone(__self_0)),
            Attribute::Unparsed(__self_0) =>
                Attribute::Unparsed(::core::clone::Clone::clone(__self_0)),
        }
    }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for Attribute {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            Attribute::Parsed(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Parsed",
                    &__self_0),
            Attribute::Unparsed(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "Unparsed", &__self_0),
        }
    }
}Debug, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for Attribute {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        Attribute::Parsed(ref __binding_0) => { 0usize }
                        Attribute::Unparsed(ref __binding_0) => { 1usize }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    Attribute::Parsed(ref __binding_0) => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                    Attribute::Unparsed(ref __binding_0) => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for Attribute {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => {
                        Attribute::Parsed(::rustc_serialize::Decodable::decode(__decoder))
                    }
                    1usize => {
                        Attribute::Unparsed(::rustc_serialize::Decodable::decode(__decoder))
                    }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `Attribute`, expected 0..2, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for Attribute {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    Attribute::Parsed(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Attribute::Unparsed(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
1349pub enum Attribute {
1350    /// A parsed built-in attribute.
1351    ///
1352    /// Each attribute has a span connected to it. However, you must be somewhat careful using it.
1353    /// That's because sometimes we merge multiple attributes together, like when an item has
1354    /// multiple `repr` attributes. In this case the span might not be very useful.
1355    Parsed(AttributeKind),
1356
1357    /// An attribute that could not be parsed, out of a token-like representation.
1358    /// This is the case for custom tool attributes.
1359    Unparsed(Box<AttrItem>),
1360}
1361
1362impl Attribute {
1363    pub fn get_normal_item(&self) -> &AttrItem {
1364        match &self {
1365            Attribute::Unparsed(normal) => &normal,
1366            _ => { ::core::panicking::panic_fmt(format_args!("unexpected parsed attribute")); }panic!("unexpected parsed attribute"),
1367        }
1368    }
1369
1370    pub fn unwrap_normal_item(self) -> AttrItem {
1371        match self {
1372            Attribute::Unparsed(normal) => *normal,
1373            _ => { ::core::panicking::panic_fmt(format_args!("unexpected parsed attribute")); }panic!("unexpected parsed attribute"),
1374        }
1375    }
1376
1377    pub fn value_lit(&self) -> Option<&MetaItemLit> {
1378        match &self {
1379            Attribute::Unparsed(n) => match n.as_ref() {
1380                AttrItem { args: AttrArgs::Eq { eq_span: _, expr }, .. } => Some(expr),
1381                _ => None,
1382            },
1383            _ => None,
1384        }
1385    }
1386
1387    pub fn is_parsed_attr(&self) -> bool {
1388        match self {
1389            Attribute::Parsed(_) => true,
1390            Attribute::Unparsed(_) => false,
1391        }
1392    }
1393
1394    pub fn is_prefix_attr_for_suggestions(&self) -> bool {
1395        match self {
1396            Attribute::Unparsed(attr) => attr.span.desugaring_kind().is_none(),
1397            // Other parsed attributes that can appear on expressions originate from source and
1398            // should make suggestions treat the expression like a prefixed form.
1399            Attribute::Parsed(_) => true,
1400        }
1401    }
1402}
1403
1404impl AttributeExt for Attribute {
1405    #[inline]
1406    fn id(&self) -> AttrId {
1407        match &self {
1408            Attribute::Unparsed(u) => u.id.attr_id,
1409            _ => ::core::panicking::panic("explicit panic")panic!(),
1410        }
1411    }
1412
1413    #[inline]
1414    fn meta_item_list(&self) -> Option<ThinVec<ast::MetaItemInner>> {
1415        match &self {
1416            Attribute::Unparsed(n) => match n.as_ref() {
1417                AttrItem { args: AttrArgs::Delimited(d), .. } => {
1418                    ast::MetaItemKind::list_from_tokens(d.tokens.clone())
1419                }
1420                _ => None,
1421            },
1422            _ => None,
1423        }
1424    }
1425
1426    #[inline]
1427    fn value_str(&self) -> Option<Symbol> {
1428        self.value_lit().and_then(|x| x.value_as_str())
1429    }
1430
1431    #[inline]
1432    fn value_span(&self) -> Option<Span> {
1433        self.value_lit().map(|i| i.span)
1434    }
1435
1436    /// For a single-segment attribute, returns its name; otherwise, returns `None`.
1437    #[inline]
1438    fn name(&self) -> Option<Symbol> {
1439        match &self {
1440            Attribute::Unparsed(n) => {
1441                if let [ident] = n.path.segments.as_ref() {
1442                    Some(*ident)
1443                } else {
1444                    None
1445                }
1446            }
1447            _ => None,
1448        }
1449    }
1450
1451    #[inline]
1452    fn path_matches(&self, name: &[Symbol]) -> bool {
1453        match &self {
1454            Attribute::Unparsed(n) => n.path.segments.iter().eq(name),
1455            _ => false,
1456        }
1457    }
1458
1459    #[inline]
1460    fn is_doc_comment(&self) -> Option<Span> {
1461        if let Attribute::Parsed(AttributeKind::DocComment { span, .. }) = self {
1462            Some(*span)
1463        } else {
1464            None
1465        }
1466    }
1467
1468    #[inline]
1469    fn span(&self) -> Span {
1470        match &self {
1471            Attribute::Unparsed(u) => u.span,
1472            // FIXME: should not be needed anymore when all attrs are parsed
1473            Attribute::Parsed(AttributeKind::DocComment { span, .. }) => *span,
1474            Attribute::Parsed(AttributeKind::Deprecated { span, .. }) => *span,
1475            Attribute::Parsed(AttributeKind::CfgTrace(cfgs)) => cfgs[0].1,
1476            a => {
    ::core::panicking::panic_fmt(format_args!("can\'t get the span of an arbitrary parsed attribute: {0:?}",
            a));
}panic!("can't get the span of an arbitrary parsed attribute: {a:?}"),
1477        }
1478    }
1479
1480    #[inline]
1481    fn is_word(&self) -> bool {
1482        match &self {
1483            Attribute::Unparsed(n) => {
1484                #[allow(non_exhaustive_omitted_patterns)] match n.args {
    AttrArgs::Empty => true,
    _ => false,
}matches!(n.args, AttrArgs::Empty)
1485            }
1486            _ => false,
1487        }
1488    }
1489
1490    #[inline]
1491    fn symbol_path(&self) -> Option<SmallVec<[Symbol; 1]>> {
1492        match &self {
1493            Attribute::Unparsed(n) => Some(n.path.segments.iter().copied().collect()),
1494            _ => None,
1495        }
1496    }
1497
1498    fn path_span(&self) -> Option<Span> {
1499        match &self {
1500            Attribute::Unparsed(attr) => Some(attr.path.span),
1501            Attribute::Parsed(_) => None,
1502        }
1503    }
1504
1505    #[inline]
1506    fn doc_str(&self) -> Option<Symbol> {
1507        match &self {
1508            Attribute::Parsed(AttributeKind::DocComment { comment, .. }) => Some(*comment),
1509            _ => None,
1510        }
1511    }
1512
1513    fn is_automatically_derived_attr(&self) -> bool {
1514        #[allow(non_exhaustive_omitted_patterns)] match self {
    Attribute::Parsed(AttributeKind::AutomaticallyDerived) => true,
    _ => false,
}matches!(self, Attribute::Parsed(AttributeKind::AutomaticallyDerived))
1515    }
1516
1517    #[inline]
1518    fn doc_str_and_fragment_kind(&self) -> Option<(Symbol, DocFragmentKind)> {
1519        match &self {
1520            Attribute::Parsed(AttributeKind::DocComment { kind, comment, .. }) => {
1521                Some((*comment, *kind))
1522            }
1523            _ => None,
1524        }
1525    }
1526
1527    fn doc_resolution_scope(&self) -> Option<AttrStyle> {
1528        match self {
1529            Attribute::Parsed(AttributeKind::DocComment { style, .. }) => Some(*style),
1530            Attribute::Unparsed(attr) if self.has_name(sym::doc) && self.value_str().is_some() => {
1531                Some(attr.style)
1532            }
1533            _ => None,
1534        }
1535    }
1536
1537    fn is_proc_macro_attr(&self) -> bool {
1538        #[allow(non_exhaustive_omitted_patterns)] match self {
    Attribute::Parsed(AttributeKind::ProcMacro |
        AttributeKind::ProcMacroAttribute | AttributeKind::ProcMacroDerive {
        .. }) => true,
    _ => false,
}matches!(
1539            self,
1540            Attribute::Parsed(
1541                AttributeKind::ProcMacro
1542                    | AttributeKind::ProcMacroAttribute
1543                    | AttributeKind::ProcMacroDerive { .. }
1544            )
1545        )
1546    }
1547
1548    fn is_doc_hidden(&self) -> bool {
1549        #[allow(non_exhaustive_omitted_patterns)] match self {
    Attribute::Parsed(AttributeKind::Doc(d)) if d.hidden.is_some() => true,
    _ => false,
}matches!(self, Attribute::Parsed(AttributeKind::Doc(d)) if d.hidden.is_some())
1550    }
1551
1552    fn is_doc_keyword_or_attribute(&self) -> bool {
1553        #[allow(non_exhaustive_omitted_patterns)] match self {
    Attribute::Parsed(AttributeKind::Doc(d)) if
        d.attribute.is_some() || d.keyword.is_some() => true,
    _ => false,
}matches!(self, Attribute::Parsed(AttributeKind::Doc(d)) if d.attribute.is_some() || d.keyword.is_some())
1554    }
1555
1556    fn is_rustc_doc_primitive(&self) -> bool {
1557        #[allow(non_exhaustive_omitted_patterns)] match self {
    Attribute::Parsed(AttributeKind::RustcDocPrimitive(..)) => true,
    _ => false,
}matches!(self, Attribute::Parsed(AttributeKind::RustcDocPrimitive(..)))
1558    }
1559}
1560
1561// FIXME(fn_delegation): use function delegation instead of manually forwarding
1562impl Attribute {
1563    #[inline]
1564    pub fn id(&self) -> AttrId {
1565        AttributeExt::id(self)
1566    }
1567
1568    #[inline]
1569    pub fn name(&self) -> Option<Symbol> {
1570        AttributeExt::name(self)
1571    }
1572
1573    #[inline]
1574    pub fn meta_item_list(&self) -> Option<ThinVec<MetaItemInner>> {
1575        AttributeExt::meta_item_list(self)
1576    }
1577
1578    #[inline]
1579    pub fn value_str(&self) -> Option<Symbol> {
1580        AttributeExt::value_str(self)
1581    }
1582
1583    #[inline]
1584    pub fn value_span(&self) -> Option<Span> {
1585        AttributeExt::value_span(self)
1586    }
1587
1588    #[inline]
1589    pub fn path_matches(&self, name: &[Symbol]) -> bool {
1590        AttributeExt::path_matches(self, name)
1591    }
1592
1593    #[inline]
1594    pub fn is_doc_comment(&self) -> Option<Span> {
1595        AttributeExt::is_doc_comment(self)
1596    }
1597
1598    #[inline]
1599    pub fn has_name(&self, name: Symbol) -> bool {
1600        AttributeExt::has_name(self, name)
1601    }
1602
1603    #[inline]
1604    pub fn has_any_name(&self, names: &[Symbol]) -> bool {
1605        AttributeExt::has_any_name(self, names)
1606    }
1607
1608    #[inline]
1609    pub fn span(&self) -> Span {
1610        AttributeExt::span(self)
1611    }
1612
1613    #[inline]
1614    pub fn is_word(&self) -> bool {
1615        AttributeExt::is_word(self)
1616    }
1617
1618    #[inline]
1619    pub fn path(&self) -> SmallVec<[Symbol; 1]> {
1620        AttributeExt::path(self)
1621    }
1622
1623    #[inline]
1624    pub fn doc_str(&self) -> Option<Symbol> {
1625        AttributeExt::doc_str(self)
1626    }
1627
1628    #[inline]
1629    pub fn is_proc_macro_attr(&self) -> bool {
1630        AttributeExt::is_proc_macro_attr(self)
1631    }
1632
1633    #[inline]
1634    pub fn doc_str_and_fragment_kind(&self) -> Option<(Symbol, DocFragmentKind)> {
1635        AttributeExt::doc_str_and_fragment_kind(self)
1636    }
1637}
1638
1639/// Attributes owned by a HIR owner.
1640#[derive(#[automatically_derived]
impl<'tcx> ::core::fmt::Debug for AttributeMap<'tcx> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f, "AttributeMap",
            "map", &self.map, "define_opaque", &self.define_opaque,
            "opt_hash", &&self.opt_hash)
    }
}Debug)]
1641pub struct AttributeMap<'tcx> {
1642    pub map: SortedMap<ItemLocalId, &'tcx [Attribute]>,
1643    /// Preprocessed `#[define_opaque]` attribute.
1644    pub define_opaque: Option<&'tcx [(Span, LocalDefId)]>,
1645    // Only present when the crate hash is needed.
1646    pub opt_hash: Option<Fingerprint>,
1647}
1648
1649impl<'tcx> AttributeMap<'tcx> {
1650    pub const EMPTY: &'static AttributeMap<'static> = &AttributeMap {
1651        map: SortedMap::new(),
1652        opt_hash: Some(Fingerprint::ZERO),
1653        define_opaque: None,
1654    };
1655
1656    #[inline]
1657    pub fn get(&self, id: ItemLocalId) -> &'tcx [Attribute] {
1658        self.map.get(&id).copied().unwrap_or(&[])
1659    }
1660}
1661
1662/// Map of all HIR nodes inside the current owner.
1663/// These nodes are mapped by `ItemLocalId` alongside the index of their parent node.
1664/// The HIR tree, including bodies, is pre-hashed.
1665pub struct OwnerNodes<'tcx> {
1666    /// Pre-computed hash of the full HIR, including bodies. Used in the crate hash.
1667    /// Only present when incr. comp. is enabled.
1668    pub opt_hash: Option<Fingerprint>,
1669    /// Full HIR for the current owner.
1670    // The zeroth node's parent should never be accessed: the owner's parent is computed by the
1671    // hir_owner_parent query. It is set to `ItemLocalId::INVALID` to force an ICE if accidentally
1672    // used.
1673    pub nodes: IndexVec<ItemLocalId, ParentedNode<'tcx>>,
1674    /// Content of local bodies.
1675    pub bodies: SortedMap<ItemLocalId, &'tcx Body<'tcx>>,
1676}
1677
1678impl<'tcx> OwnerNodes<'tcx> {
1679    pub fn node(&self) -> OwnerNode<'tcx> {
1680        // Indexing must ensure it is an OwnerNode.
1681        self.nodes[ItemLocalId::ZERO].node.as_owner().unwrap()
1682    }
1683
1684    /// Return an instance of `OwnerNodes` suitable for definitions that have no corresponding AST.
1685    pub fn synthetic() -> OwnerNodes<'tcx> {
1686        OwnerNodes {
1687            // There is no reason to bother computing a hash for a synthetic body.
1688            // Just use a constant value.
1689            opt_hash: Some(Fingerprint::ZERO),
1690            nodes: IndexVec::from_elem_n(
1691                ParentedNode { parent: ItemLocalId::INVALID, node: OwnerNode::Synthetic.into() },
1692                1,
1693            ),
1694            bodies: SortedMap::new(),
1695        }
1696    }
1697}
1698
1699impl fmt::Debug for OwnerNodes<'_> {
1700    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
1701        f.debug_struct("OwnerNodes")
1702            // Do not print all the pointers to all the nodes, as it would be unreadable.
1703            .field("node", &self.nodes[ItemLocalId::ZERO])
1704            .field(
1705                "parents",
1706                &fmt::from_fn(|f| {
1707                    f.debug_list()
1708                        .entries(self.nodes.iter_enumerated().map(|(id, parented_node)| {
1709                            fmt::from_fn(move |f| f.write_fmt(format_args!("({1:?}, {0:?})", parented_node.parent, id))write!(f, "({id:?}, {:?})", parented_node.parent))
1710                        }))
1711                        .finish()
1712                }),
1713            )
1714            .field("bodies", &self.bodies)
1715            .field("opt_hash", &self.opt_hash)
1716            .finish()
1717    }
1718}
1719
1720/// Full information resulting from lowering an AST node.
1721#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for OwnerInfo<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        let names: &'static _ =
            &["nodes", "parenting", "attrs", "trait_map", "children",
                        "delayed_lints", "opt_hash"];
        let values: &[&dyn ::core::fmt::Debug] =
            &[&self.nodes, &self.parenting, &self.attrs, &self.trait_map,
                        &self.children, &self.delayed_lints, &&self.opt_hash];
        ::core::fmt::Formatter::debug_struct_fields_finish(f, "OwnerInfo",
            names, values)
    }
}Debug)]
1722pub struct OwnerInfo<'hir> {
1723    /// Contents of the HIR.
1724    pub nodes: OwnerNodes<'hir>,
1725    /// Map from each nested owner to its parent's local id.
1726    pub parenting: LocalDefIdMap<ItemLocalId>,
1727    /// Collected attributes of the HIR nodes.
1728    pub attrs: AttributeMap<'hir>,
1729    /// Map indicating what traits are in scope for places where this
1730    /// is relevant; generated by resolve.
1731    pub trait_map: ItemLocalMap<&'hir [TraitCandidate<'hir>]>,
1732    /// Owners generated as side-effect by lowering.
1733    pub children: UnordMap<LocalDefId, MaybeOwner<'hir>>,
1734
1735    /// Lints delayed during ast lowering to be emitted
1736    /// after hir has completely built
1737    ///
1738    /// WARNING: The delayed lints are not hashed as a part of the `OwnerInfo`, and therefore
1739    ///          should only be accessed in `eval_always` queries.
1740    pub delayed_lints: Steal<DelayedLints>,
1741
1742    // Only present when the crate hash is needed.
1743    pub opt_hash: Option<Fingerprint>,
1744}
1745
1746impl<'tcx> OwnerInfo<'tcx> {
1747    #[inline]
1748    pub fn node(&self) -> OwnerNode<'tcx> {
1749        self.nodes.node()
1750    }
1751}
1752
1753#[derive(#[automatically_derived]
impl<'tcx> ::core::marker::Copy for MaybeOwner<'tcx> { }Copy, #[automatically_derived]
impl<'tcx> ::core::clone::Clone for MaybeOwner<'tcx> {
    #[inline]
    fn clone(&self) -> MaybeOwner<'tcx> {
        let _: ::core::clone::AssertParamIsClone<&'tcx OwnerInfo<'tcx>>;
        let _: ::core::clone::AssertParamIsClone<HirId>;
        *self
    }
}Clone, #[automatically_derived]
impl<'tcx> ::core::fmt::Debug for MaybeOwner<'tcx> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            MaybeOwner::Owner(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Owner",
                    &__self_0),
            MaybeOwner::NonOwner(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "NonOwner", &__self_0),
        }
    }
}Debug, const _: () =
    {
        impl<'tcx> ::rustc_data_structures::stable_hash::StableHash for
            MaybeOwner<'tcx> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    MaybeOwner::Owner(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    MaybeOwner::NonOwner(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
1754pub enum MaybeOwner<'tcx> {
1755    Owner(&'tcx OwnerInfo<'tcx>),
1756    NonOwner(HirId),
1757}
1758
1759impl<'tcx> MaybeOwner<'tcx> {
1760    #[inline]
1761    pub fn as_owner(self) -> Option<&'tcx OwnerInfo<'tcx>> {
1762        match self {
1763            MaybeOwner::Owner(i) => Some(i),
1764            MaybeOwner::NonOwner(_) => None,
1765        }
1766    }
1767
1768    #[inline]
1769    pub fn unwrap(self) -> &'tcx OwnerInfo<'tcx> {
1770        self.as_owner().unwrap_or_else(|| { ::core::panicking::panic_fmt(format_args!("Not a HIR owner")); }panic!("Not a HIR owner"))
1771    }
1772}
1773
1774#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for Closure<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        let names: &'static _ =
            &["def_id", "binder", "constness", "capture_clause",
                        "bound_generic_params", "fn_decl", "body", "fn_decl_span",
                        "fn_arg_span", "kind", "explicit_captures"];
        let values: &[&dyn ::core::fmt::Debug] =
            &[&self.def_id, &self.binder, &self.constness,
                        &self.capture_clause, &self.bound_generic_params,
                        &self.fn_decl, &self.body, &self.fn_decl_span,
                        &self.fn_arg_span, &self.kind, &&self.explicit_captures];
        ::core::fmt::Formatter::debug_struct_fields_finish(f, "Closure",
            names, values)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Closure<'hir> {
    #[inline]
    fn clone(&self) -> Closure<'hir> {
        let _: ::core::clone::AssertParamIsClone<LocalDefId>;
        let _: ::core::clone::AssertParamIsClone<ClosureBinder>;
        let _: ::core::clone::AssertParamIsClone<Constness>;
        let _: ::core::clone::AssertParamIsClone<CaptureBy>;
        let _: ::core::clone::AssertParamIsClone<&'hir [GenericParam<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<&'hir FnDecl<'hir>>;
        let _: ::core::clone::AssertParamIsClone<BodyId>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<Option<Span>>;
        let _: ::core::clone::AssertParamIsClone<ClosureKind>;
        let _: ::core::clone::AssertParamIsClone<&'hir [ExplicitCapture]>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for Closure<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Closure<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Closure {
                        def_id: ref __binding_0,
                        binder: ref __binding_1,
                        constness: ref __binding_2,
                        capture_clause: ref __binding_3,
                        bound_generic_params: ref __binding_4,
                        fn_decl: ref __binding_5,
                        body: ref __binding_6,
                        fn_decl_span: ref __binding_7,
                        fn_arg_span: ref __binding_8,
                        kind: ref __binding_9,
                        explicit_captures: ref __binding_10 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                        { __binding_5.stable_hash(__hcx, __hasher); }
                        { __binding_6.stable_hash(__hcx, __hasher); }
                        { __binding_7.stable_hash(__hcx, __hasher); }
                        { __binding_8.stable_hash(__hcx, __hasher); }
                        { __binding_9.stable_hash(__hcx, __hasher); }
                        { __binding_10.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
1775pub struct Closure<'hir> {
1776    pub def_id: LocalDefId,
1777    pub binder: ClosureBinder,
1778    pub constness: Constness,
1779    pub capture_clause: CaptureBy,
1780    pub bound_generic_params: &'hir [GenericParam<'hir>],
1781    pub fn_decl: &'hir FnDecl<'hir>,
1782    pub body: BodyId,
1783    /// The span of the declaration block: 'move |...| -> ...'
1784    pub fn_decl_span: Span,
1785    /// The span of the argument block `|...|`
1786    pub fn_arg_span: Option<Span>,
1787    pub kind: ClosureKind,
1788    pub explicit_captures: &'hir [ExplicitCapture],
1789}
1790
1791/// A HIR local that must be captured by value even if ordinary closure capture
1792/// analysis would infer a weaker capture kind from its uses in the body.
1793#[derive(#[automatically_derived]
impl ::core::fmt::Debug for ExplicitCapture {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field1_finish(f,
            "ExplicitCapture", "var_hir_id", &&self.var_hir_id)
    }
}Debug, #[automatically_derived]
impl ::core::clone::Clone for ExplicitCapture {
    #[inline]
    fn clone(&self) -> ExplicitCapture {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::marker::Copy for ExplicitCapture { }Copy, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            ExplicitCapture {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    ExplicitCapture { var_hir_id: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
1794pub struct ExplicitCapture {
1795    pub var_hir_id: HirId,
1796}
1797
1798#[derive(#[automatically_derived]
impl ::core::clone::Clone for ClosureKind {
    #[inline]
    fn clone(&self) -> ClosureKind {
        let _: ::core::clone::AssertParamIsClone<CoroutineKind>;
        let _: ::core::clone::AssertParamIsClone<CoroutineDesugaring>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for ClosureKind {
    #[inline]
    fn eq(&self, other: &ClosureKind) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (ClosureKind::Coroutine(__self_0),
                    ClosureKind::Coroutine(__arg1_0)) => __self_0 == __arg1_0,
                (ClosureKind::CoroutineClosure(__self_0),
                    ClosureKind::CoroutineClosure(__arg1_0)) =>
                    __self_0 == __arg1_0,
                _ => true,
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for ClosureKind {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<CoroutineKind>;
        let _: ::core::cmp::AssertParamIsEq<CoroutineDesugaring>;
    }
}Eq, #[automatically_derived]
impl ::core::fmt::Debug for ClosureKind {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            ClosureKind::Closure =>
                ::core::fmt::Formatter::write_str(f, "Closure"),
            ClosureKind::Coroutine(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "Coroutine", &__self_0),
            ClosureKind::CoroutineClosure(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "CoroutineClosure", &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl ::core::marker::Copy for ClosureKind { }Copy, #[automatically_derived]
impl ::core::hash::Hash for ClosureKind {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        ::core::hash::Hash::hash(&__self_discr, state);
        match self {
            ClosureKind::Coroutine(__self_0) =>
                ::core::hash::Hash::hash(__self_0, state),
            ClosureKind::CoroutineClosure(__self_0) =>
                ::core::hash::Hash::hash(__self_0, state),
            _ => {}
        }
    }
}Hash, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for ClosureKind
            {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    ClosureKind::Closure => {}
                    ClosureKind::Coroutine(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ClosureKind::CoroutineClosure(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for ClosureKind {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        ClosureKind::Closure => { 0usize }
                        ClosureKind::Coroutine(ref __binding_0) => { 1usize }
                        ClosureKind::CoroutineClosure(ref __binding_0) => { 2usize }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    ClosureKind::Closure => {}
                    ClosureKind::Coroutine(ref __binding_0) => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                    ClosureKind::CoroutineClosure(ref __binding_0) => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for ClosureKind {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => { ClosureKind::Closure }
                    1usize => {
                        ClosureKind::Coroutine(::rustc_serialize::Decodable::decode(__decoder))
                    }
                    2usize => {
                        ClosureKind::CoroutineClosure(::rustc_serialize::Decodable::decode(__decoder))
                    }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `ClosureKind`, expected 0..3, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable)]
1799pub enum ClosureKind {
1800    /// This is a plain closure expression.
1801    Closure,
1802    /// This is a coroutine expression -- i.e. a closure expression in which
1803    /// we've found a `yield`. These can arise either from "plain" coroutine
1804    ///  usage (e.g. `let x = || { yield (); }`) or from a desugared expression
1805    /// (e.g. `async` and `gen` blocks).
1806    Coroutine(CoroutineKind),
1807    /// This is a coroutine-closure, which is a special sugared closure that
1808    /// returns one of the sugared coroutine (`async`/`gen`/`async gen`). It
1809    /// additionally allows capturing the coroutine's upvars by ref, and therefore
1810    /// needs to be specially treated during analysis and borrowck.
1811    CoroutineClosure(CoroutineDesugaring),
1812}
1813
1814/// A block of statements `{ .. }`, which may have a label (in this case the
1815/// `targeted_by_break` field will be `true`) and may be `unsafe` by means of
1816/// the `rules` being anything but `DefaultBlock`.
1817#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for Block<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        let names: &'static _ =
            &["stmts", "expr", "hir_id", "rules", "span",
                        "targeted_by_break"];
        let values: &[&dyn ::core::fmt::Debug] =
            &[&self.stmts, &self.expr, &self.hir_id, &self.rules, &self.span,
                        &&self.targeted_by_break];
        ::core::fmt::Formatter::debug_struct_fields_finish(f, "Block", names,
            values)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Block<'hir> {
    #[inline]
    fn clone(&self) -> Block<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir [Stmt<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Expr<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<BlockCheckMode>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for Block<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Block<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Block {
                        stmts: ref __binding_0,
                        expr: ref __binding_1,
                        hir_id: ref __binding_2,
                        rules: ref __binding_3,
                        span: ref __binding_4,
                        targeted_by_break: ref __binding_5 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        {}
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                        { __binding_5.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
1818pub struct Block<'hir> {
1819    /// Statements in a block.
1820    pub stmts: &'hir [Stmt<'hir>],
1821    /// An expression at the end of the block
1822    /// without a semicolon, if any.
1823    pub expr: Option<&'hir Expr<'hir>>,
1824    #[stable_hash(ignore)]
1825    pub hir_id: HirId,
1826    /// Distinguishes between `unsafe { ... }` and `{ ... }`.
1827    pub rules: BlockCheckMode,
1828    /// The span includes the curly braces `{` and `}` around the block.
1829    pub span: Span,
1830    /// If true, then there may exist `break 'a` values that aim to
1831    /// break out of this block early.
1832    /// Used by `'label: {}` blocks and by `try {}` blocks.
1833    pub targeted_by_break: bool,
1834}
1835
1836impl<'hir> Block<'hir> {
1837    pub fn innermost_block(&self) -> &Block<'hir> {
1838        let mut block = self;
1839        while let Some(Expr { kind: ExprKind::Block(inner_block, _), .. }) = block.expr {
1840            block = inner_block;
1841        }
1842        block
1843    }
1844}
1845
1846#[derive(#[automatically_derived]
impl ::core::fmt::Debug for TyFieldPath {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f, "TyFieldPath",
            "variant", &self.variant, "field", &&self.field)
    }
}Debug, #[automatically_derived]
impl ::core::clone::Clone for TyFieldPath {
    #[inline]
    fn clone(&self) -> TyFieldPath {
        let _: ::core::clone::AssertParamIsClone<Option<Ident>>;
        let _: ::core::clone::AssertParamIsClone<Ident>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::marker::Copy for TyFieldPath { }Copy, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for TyFieldPath
            {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    TyFieldPath {
                        variant: ref __binding_0, field: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
1847pub struct TyFieldPath {
1848    pub variant: Option<Ident>,
1849    pub field: Ident,
1850}
1851
1852#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for TyPat<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f, "TyPat",
            "hir_id", &self.hir_id, "kind", &self.kind, "span", &&self.span)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for TyPat<'hir> {
    #[inline]
    fn clone(&self) -> TyPat<'hir> {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<TyPatKind<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for TyPat<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            TyPat<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    TyPat {
                        hir_id: ref __binding_0,
                        kind: ref __binding_1,
                        span: ref __binding_2 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
1853pub struct TyPat<'hir> {
1854    #[stable_hash(ignore)]
1855    pub hir_id: HirId,
1856    pub kind: TyPatKind<'hir>,
1857    pub span: Span,
1858}
1859
1860#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for Pat<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field4_finish(f, "Pat", "hir_id",
            &self.hir_id, "kind", &self.kind, "span", &self.span,
            "default_binding_modes", &&self.default_binding_modes)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Pat<'hir> {
    #[inline]
    fn clone(&self) -> Pat<'hir> {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<PatKind<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for Pat<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Pat<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Pat {
                        hir_id: ref __binding_0,
                        kind: ref __binding_1,
                        span: ref __binding_2,
                        default_binding_modes: ref __binding_3 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
1861pub struct Pat<'hir> {
1862    #[stable_hash(ignore)]
1863    pub hir_id: HirId,
1864    pub kind: PatKind<'hir>,
1865    pub span: Span,
1866    /// Whether to use default binding modes.
1867    /// At present, this is false only for destructuring assignment.
1868    pub default_binding_modes: bool,
1869}
1870
1871impl<'hir> Pat<'hir> {
1872    fn walk_short_(&self, it: &mut impl FnMut(&Pat<'hir>) -> bool) -> bool {
1873        if !it(self) {
1874            return false;
1875        }
1876
1877        use PatKind::*;
1878        match self.kind {
1879            Missing => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
1880            Wild | Never | Expr(_) | Range(..) | Binding(.., None) | Err(_) => true,
1881            Box(s) | Deref(s) | Ref(s, _, _) | Binding(.., Some(s)) | Guard(s, _) => {
1882                s.walk_short_(it)
1883            }
1884            Struct(_, fields, _) => fields.iter().all(|field| field.pat.walk_short_(it)),
1885            TupleStruct(_, s, _) | Tuple(s, _) | Or(s) => s.iter().all(|p| p.walk_short_(it)),
1886            Slice(before, slice, after) => {
1887                before.iter().chain(slice).chain(after.iter()).all(|p| p.walk_short_(it))
1888            }
1889        }
1890    }
1891
1892    /// Walk the pattern in left-to-right order,
1893    /// short circuiting (with `.all(..)`) if `false` is returned.
1894    ///
1895    /// Note that when visiting e.g. `Tuple(ps)`,
1896    /// if visiting `ps[0]` returns `false`,
1897    /// then `ps[1]` will not be visited.
1898    pub fn walk_short(&self, mut it: impl FnMut(&Pat<'hir>) -> bool) -> bool {
1899        self.walk_short_(&mut it)
1900    }
1901
1902    fn walk_(&self, it: &mut impl FnMut(&Pat<'hir>) -> bool) {
1903        if !it(self) {
1904            return;
1905        }
1906
1907        use PatKind::*;
1908        match self.kind {
1909            Missing | Wild | Never | Expr(_) | Range(..) | Binding(.., None) | Err(_) => {}
1910            Box(s) | Deref(s) | Ref(s, _, _) | Binding(.., Some(s)) | Guard(s, _) => s.walk_(it),
1911            Struct(_, fields, _) => fields.iter().for_each(|field| field.pat.walk_(it)),
1912            TupleStruct(_, s, _) | Tuple(s, _) | Or(s) => s.iter().for_each(|p| p.walk_(it)),
1913            Slice(before, slice, after) => {
1914                before.iter().chain(slice).chain(after.iter()).for_each(|p| p.walk_(it))
1915            }
1916        }
1917    }
1918
1919    /// Walk the pattern in left-to-right order.
1920    ///
1921    /// If `it(pat)` returns `false`, the children are not visited.
1922    pub fn walk(&self, mut it: impl FnMut(&Pat<'hir>) -> bool) {
1923        self.walk_(&mut it)
1924    }
1925
1926    /// Walk the pattern in left-to-right order.
1927    ///
1928    /// If you always want to recurse, prefer this method over `walk`.
1929    pub fn walk_always(&self, mut it: impl FnMut(&Pat<'_>)) {
1930        self.walk(|p| {
1931            it(p);
1932            true
1933        })
1934    }
1935
1936    /// Whether this a never pattern.
1937    pub fn is_never_pattern(&self) -> bool {
1938        let mut is_never_pattern = false;
1939        self.walk(|pat| match &pat.kind {
1940            PatKind::Never => {
1941                is_never_pattern = true;
1942                false
1943            }
1944            PatKind::Or(s) => {
1945                is_never_pattern = s.iter().all(|p| p.is_never_pattern());
1946                false
1947            }
1948            _ => true,
1949        });
1950        is_never_pattern
1951    }
1952
1953    /// Whether this pattern constitutes a read of value of the scrutinee that
1954    /// it is matching against. This is used to determine whether we should
1955    /// perform `NeverToAny` coercions.
1956    ///
1957    /// See [`expr_guaranteed_to_constitute_read_for_never`][m] for the nuances of
1958    /// what happens when this returns true.
1959    ///
1960    /// [m]: ../../rustc_middle/ty/struct.TyCtxt.html#method.expr_guaranteed_to_constitute_read_for_never
1961    pub fn is_guaranteed_to_constitute_read_for_never(&self) -> bool {
1962        match self.kind {
1963            // Does not constitute a read.
1964            PatKind::Wild => false,
1965
1966            // The guard cannot affect if we make a read or not (it runs after the inner pattern
1967            // has matched), therefore it's irrelevant.
1968            PatKind::Guard(pat, _) => pat.is_guaranteed_to_constitute_read_for_never(),
1969
1970            // This is unnecessarily restrictive when the pattern that doesn't
1971            // constitute a read is unreachable.
1972            //
1973            // For example `match *never_ptr { value => {}, _ => {} }` or
1974            // `match *never_ptr { _ if false => {}, value => {} }`.
1975            //
1976            // It is however fine to be restrictive here; only returning `true`
1977            // can lead to unsoundness.
1978            PatKind::Or(subpats) => {
1979                subpats.iter().all(|pat| pat.is_guaranteed_to_constitute_read_for_never())
1980            }
1981
1982            // Does constitute a read, since it is equivalent to a discriminant read.
1983            PatKind::Never => true,
1984
1985            // All of these constitute a read, or match on something that isn't `!`,
1986            // which would require a `NeverToAny` coercion.
1987            PatKind::Missing
1988            | PatKind::Binding(_, _, _, _)
1989            | PatKind::Struct(_, _, _)
1990            | PatKind::TupleStruct(_, _, _)
1991            | PatKind::Tuple(_, _)
1992            | PatKind::Box(_)
1993            | PatKind::Ref(_, _, _)
1994            | PatKind::Deref(_)
1995            | PatKind::Expr(_)
1996            | PatKind::Range(_, _, _)
1997            | PatKind::Slice(_, _, _)
1998            | PatKind::Err(_) => true,
1999        }
2000    }
2001}
2002
2003/// A single field in a struct pattern.
2004///
2005/// Patterns like the fields of Foo `{ x, ref y, ref mut z }`
2006/// are treated the same as` x: x, y: ref y, z: ref mut z`,
2007/// except `is_shorthand` is true.
2008#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for PatField<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field5_finish(f, "PatField",
            "hir_id", &self.hir_id, "ident", &self.ident, "pat", &self.pat,
            "is_shorthand", &self.is_shorthand, "span", &&self.span)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for PatField<'hir> {
    #[inline]
    fn clone(&self) -> PatField<'hir> {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<&'hir Pat<'hir>>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for PatField<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            PatField<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    PatField {
                        hir_id: ref __binding_0,
                        ident: ref __binding_1,
                        pat: ref __binding_2,
                        is_shorthand: ref __binding_3,
                        span: ref __binding_4 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2009pub struct PatField<'hir> {
2010    #[stable_hash(ignore)]
2011    pub hir_id: HirId,
2012    /// The identifier for the field.
2013    pub ident: Ident,
2014    /// The pattern the field is destructured to.
2015    pub pat: &'hir Pat<'hir>,
2016    pub is_shorthand: bool,
2017    pub span: Span,
2018}
2019
2020#[derive(#[automatically_derived]
impl ::core::marker::Copy for RangeEnd { }Copy, #[automatically_derived]
impl ::core::clone::Clone for RangeEnd {
    #[inline]
    fn clone(&self) -> RangeEnd { *self }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for RangeEnd {
    #[inline]
    fn eq(&self, other: &RangeEnd) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq, #[automatically_derived]
impl ::core::fmt::Debug for RangeEnd {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                RangeEnd::Included => "Included",
                RangeEnd::Excluded => "Excluded",
            })
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for RangeEnd {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    RangeEnd::Included => {}
                    RangeEnd::Excluded => {}
                }
            }
        }
    };StableHash, #[automatically_derived]
impl ::core::hash::Hash for RangeEnd {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        ::core::hash::Hash::hash(&__self_discr, state)
    }
}Hash, #[automatically_derived]
impl ::core::cmp::Eq for RangeEnd {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {}
}Eq, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for RangeEnd {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        RangeEnd::Included => { 0usize }
                        RangeEnd::Excluded => { 1usize }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    RangeEnd::Included => {}
                    RangeEnd::Excluded => {}
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for RangeEnd {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => { RangeEnd::Included }
                    1usize => { RangeEnd::Excluded }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `RangeEnd`, expected 0..2, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable)]
2021pub enum RangeEnd {
2022    Included,
2023    Excluded,
2024}
2025
2026impl fmt::Display for RangeEnd {
2027    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
2028        f.write_str(match self {
2029            RangeEnd::Included => "..=",
2030            RangeEnd::Excluded => "..",
2031        })
2032    }
2033}
2034
2035// Equivalent to `Option<usize>`. That type takes up 16 bytes on 64-bit, but
2036// this type only takes up 4 bytes, at the cost of being restricted to a
2037// maximum value of `u32::MAX - 1`. In practice, this is more than enough.
2038#[derive(#[automatically_derived]
impl ::core::clone::Clone for DotDotPos {
    #[inline]
    fn clone(&self) -> DotDotPos {
        let _: ::core::clone::AssertParamIsClone<u32>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::marker::Copy for DotDotPos { }Copy, #[automatically_derived]
impl ::core::cmp::PartialEq for DotDotPos {
    #[inline]
    fn eq(&self, other: &DotDotPos) -> bool { self.0 == other.0 }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for DotDotPos {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<u32>;
    }
}Eq, #[automatically_derived]
impl ::core::hash::Hash for DotDotPos {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        ::core::hash::Hash::hash(&self.0, state)
    }
}Hash, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for DotDotPos {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    DotDotPos(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2039pub struct DotDotPos(u32);
2040
2041impl DotDotPos {
2042    /// Panics if n >= u32::MAX.
2043    pub fn new(n: Option<usize>) -> Self {
2044        match n {
2045            Some(n) => {
2046                if !(n < u32::MAX as usize) {
    ::core::panicking::panic("assertion failed: n < u32::MAX as usize")
};assert!(n < u32::MAX as usize);
2047                Self(n as u32)
2048            }
2049            None => Self(u32::MAX),
2050        }
2051    }
2052
2053    pub fn as_opt_usize(&self) -> Option<usize> {
2054        if self.0 == u32::MAX { None } else { Some(self.0 as usize) }
2055    }
2056}
2057
2058impl fmt::Debug for DotDotPos {
2059    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
2060        self.as_opt_usize().fmt(f)
2061    }
2062}
2063
2064#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for PatExpr<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f, "PatExpr",
            "hir_id", &self.hir_id, "span", &self.span, "kind", &&self.kind)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for PatExpr<'hir> {
    #[inline]
    fn clone(&self) -> PatExpr<'hir> {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<PatExprKind<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for PatExpr<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            PatExpr<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    PatExpr {
                        hir_id: ref __binding_0,
                        span: ref __binding_1,
                        kind: ref __binding_2 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2065pub struct PatExpr<'hir> {
2066    #[stable_hash(ignore)]
2067    pub hir_id: HirId,
2068    pub span: Span,
2069    pub kind: PatExprKind<'hir>,
2070}
2071
2072#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for PatExprKind<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            PatExprKind::Lit { lit: __self_0, negated: __self_1 } =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f, "Lit",
                    "lit", __self_0, "negated", &__self_1),
            PatExprKind::Path(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Path",
                    &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for PatExprKind<'hir> {
    #[inline]
    fn clone(&self) -> PatExprKind<'hir> {
        let _: ::core::clone::AssertParamIsClone<Lit>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        let _: ::core::clone::AssertParamIsClone<QPath<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for PatExprKind<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            PatExprKind<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    PatExprKind::Lit {
                        lit: ref __binding_0, negated: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    PatExprKind::Path(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2073pub enum PatExprKind<'hir> {
2074    Lit {
2075        lit: Lit,
2076        negated: bool,
2077    },
2078    /// A path pattern for a unit struct/variant or a (maybe-associated) constant.
2079    Path(QPath<'hir>),
2080}
2081
2082#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for TyPatKind<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            TyPatKind::Range(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Range",
                    __self_0, &__self_1),
            TyPatKind::NotNull =>
                ::core::fmt::Formatter::write_str(f, "NotNull"),
            TyPatKind::Or(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Or",
                    &__self_0),
            TyPatKind::Err(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Err",
                    &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for TyPatKind<'hir> {
    #[inline]
    fn clone(&self) -> TyPatKind<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir ConstArg<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir ConstArg<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [TyPat<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<ErrorGuaranteed>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for TyPatKind<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            TyPatKind<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    TyPatKind::Range(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    TyPatKind::NotNull => {}
                    TyPatKind::Or(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    TyPatKind::Err(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2083pub enum TyPatKind<'hir> {
2084    /// A range pattern (e.g., `1..=2` or `1..2`).
2085    Range(&'hir ConstArg<'hir>, &'hir ConstArg<'hir>),
2086
2087    /// A pattern that excludes null pointers
2088    NotNull,
2089
2090    /// A list of patterns where only one needs to be satisfied
2091    Or(&'hir [TyPat<'hir>]),
2092
2093    /// A placeholder for a pattern that wasn't well formed in some way.
2094    Err(ErrorGuaranteed),
2095}
2096
2097#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for PatKind<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            PatKind::Missing =>
                ::core::fmt::Formatter::write_str(f, "Missing"),
            PatKind::Wild => ::core::fmt::Formatter::write_str(f, "Wild"),
            PatKind::Binding(__self_0, __self_1, __self_2, __self_3) =>
                ::core::fmt::Formatter::debug_tuple_field4_finish(f,
                    "Binding", __self_0, __self_1, __self_2, &__self_3),
            PatKind::Struct(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Struct",
                    __self_0, __self_1, &__self_2),
            PatKind::TupleStruct(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f,
                    "TupleStruct", __self_0, __self_1, &__self_2),
            PatKind::Or(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Or",
                    &__self_0),
            PatKind::Never => ::core::fmt::Formatter::write_str(f, "Never"),
            PatKind::Tuple(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Tuple",
                    __self_0, &__self_1),
            PatKind::Box(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Box",
                    &__self_0),
            PatKind::Deref(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Deref",
                    &__self_0),
            PatKind::Ref(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Ref",
                    __self_0, __self_1, &__self_2),
            PatKind::Expr(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Expr",
                    &__self_0),
            PatKind::Guard(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Guard",
                    __self_0, &__self_1),
            PatKind::Range(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Range",
                    __self_0, __self_1, &__self_2),
            PatKind::Slice(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Slice",
                    __self_0, __self_1, &__self_2),
            PatKind::Err(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Err",
                    &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for PatKind<'hir> {
    #[inline]
    fn clone(&self) -> PatKind<'hir> {
        let _: ::core::clone::AssertParamIsClone<BindingMode>;
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Pat<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<QPath<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [PatField<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<Option<Span>>;
        let _: ::core::clone::AssertParamIsClone<QPath<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [Pat<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<DotDotPos>;
        let _: ::core::clone::AssertParamIsClone<&'hir [Pat<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<&'hir [Pat<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<&'hir Pat<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Pat<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Pat<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Pinnedness>;
        let _: ::core::clone::AssertParamIsClone<Mutability>;
        let _: ::core::clone::AssertParamIsClone<&'hir PatExpr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Pat<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir PatExpr<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir PatExpr<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<RangeEnd>;
        let _: ::core::clone::AssertParamIsClone<&'hir [Pat<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Pat<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [Pat<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<ErrorGuaranteed>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for PatKind<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            PatKind<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    PatKind::Missing => {}
                    PatKind::Wild => {}
                    PatKind::Binding(ref __binding_0, ref __binding_1,
                        ref __binding_2, ref __binding_3) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                    PatKind::Struct(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    PatKind::TupleStruct(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    PatKind::Or(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    PatKind::Never => {}
                    PatKind::Tuple(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    PatKind::Box(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    PatKind::Deref(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    PatKind::Ref(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    PatKind::Expr(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    PatKind::Guard(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    PatKind::Range(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    PatKind::Slice(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    PatKind::Err(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2098pub enum PatKind<'hir> {
2099    /// A missing pattern, e.g. for an anonymous param in a bare fn like `fn f(u32)`.
2100    Missing,
2101
2102    /// Represents a wildcard pattern (i.e., `_`).
2103    Wild,
2104
2105    /// A fresh binding `ref mut binding @ OPT_SUBPATTERN`.
2106    /// The `HirId` is the canonical ID for the variable being bound,
2107    /// (e.g., in `Ok(x) | Err(x)`, both `x` use the same canonical ID),
2108    /// which is the pattern ID of the first `x`.
2109    ///
2110    /// The `BindingMode` is what's provided by the user, before match
2111    /// ergonomics are applied. For the binding mode actually in use,
2112    /// see [`TypeckResults::extract_binding_mode`].
2113    ///
2114    /// [`TypeckResults::extract_binding_mode`]: ../../rustc_middle/ty/struct.TypeckResults.html#method.extract_binding_mode
2115    Binding(BindingMode, HirId, Ident, Option<&'hir Pat<'hir>>),
2116
2117    /// A struct or struct variant pattern (e.g., `Variant {x, y, ..}`).
2118    /// The `Option` contains the span of a possible `..`.
2119    Struct(QPath<'hir>, &'hir [PatField<'hir>], Option<Span>),
2120
2121    /// A tuple struct/variant pattern `Variant(x, y, .., z)`.
2122    /// If the `..` pattern fragment is present, then `DotDotPos` denotes its position.
2123    /// `0 <= position <= subpats.len()`
2124    TupleStruct(QPath<'hir>, &'hir [Pat<'hir>], DotDotPos),
2125
2126    /// An or-pattern `A | B | C`.
2127    /// Invariant: `pats.len() >= 2`.
2128    Or(&'hir [Pat<'hir>]),
2129
2130    /// A never pattern `!`.
2131    Never,
2132
2133    /// A tuple pattern (e.g., `(a, b)`).
2134    /// If the `..` pattern fragment is present, then `DotDotPos` denotes its position.
2135    /// `0 <= position <= subpats.len()`
2136    Tuple(&'hir [Pat<'hir>], DotDotPos),
2137
2138    /// A `box` pattern.
2139    Box(&'hir Pat<'hir>),
2140
2141    /// A `deref` pattern (currently `deref!()` macro-based syntax).
2142    Deref(&'hir Pat<'hir>),
2143
2144    /// A reference pattern (e.g., `&mut (a, b)`).
2145    Ref(&'hir Pat<'hir>, Pinnedness, Mutability),
2146
2147    /// A literal, const block or path.
2148    Expr(&'hir PatExpr<'hir>),
2149
2150    /// A guard pattern (e.g., `x if guard(x)`).
2151    Guard(&'hir Pat<'hir>, &'hir Expr<'hir>),
2152
2153    /// A range pattern (e.g., `1..=2` or `1..2`).
2154    Range(Option<&'hir PatExpr<'hir>>, Option<&'hir PatExpr<'hir>>, RangeEnd),
2155
2156    /// A slice pattern, `[before_0, ..., before_n, (slice, after_0, ..., after_n)?]`.
2157    ///
2158    /// Here, `slice` is lowered from the syntax `($binding_mode $ident @)? ..`.
2159    /// If `slice` exists, then `after` can be non-empty.
2160    ///
2161    /// The representation for e.g., `[a, b, .., c, d]` is:
2162    /// ```ignore (illustrative)
2163    /// PatKind::Slice([Binding(a), Binding(b)], Some(Wild), [Binding(c), Binding(d)])
2164    /// ```
2165    Slice(&'hir [Pat<'hir>], Option<&'hir Pat<'hir>>, &'hir [Pat<'hir>]),
2166
2167    /// A placeholder for a pattern that wasn't well formed in some way.
2168    Err(ErrorGuaranteed),
2169}
2170
2171/// A statement.
2172#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for Stmt<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f, "Stmt",
            "hir_id", &self.hir_id, "kind", &self.kind, "span", &&self.span)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Stmt<'hir> {
    #[inline]
    fn clone(&self) -> Stmt<'hir> {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<StmtKind<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for Stmt<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Stmt<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Stmt {
                        hir_id: ref __binding_0,
                        kind: ref __binding_1,
                        span: ref __binding_2 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2173pub struct Stmt<'hir> {
2174    #[stable_hash(ignore)]
2175    pub hir_id: HirId,
2176    pub kind: StmtKind<'hir>,
2177    pub span: Span,
2178}
2179
2180/// The contents of a statement.
2181#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for StmtKind<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            StmtKind::Let(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Let",
                    &__self_0),
            StmtKind::Item(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Item",
                    &__self_0),
            StmtKind::Expr(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Expr",
                    &__self_0),
            StmtKind::Semi(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Semi",
                    &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for StmtKind<'hir> {
    #[inline]
    fn clone(&self) -> StmtKind<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir LetStmt<'hir>>;
        let _: ::core::clone::AssertParamIsClone<ItemId>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for StmtKind<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            StmtKind<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    StmtKind::Let(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    StmtKind::Item(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    StmtKind::Expr(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    StmtKind::Semi(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2182pub enum StmtKind<'hir> {
2183    /// A local (`let`) binding.
2184    Let(&'hir LetStmt<'hir>),
2185
2186    /// An item binding.
2187    Item(ItemId),
2188
2189    /// An expression without a trailing semi-colon (must have unit type).
2190    Expr(&'hir Expr<'hir>),
2191
2192    /// An expression with a trailing semi-colon (may have any type).
2193    Semi(&'hir Expr<'hir>),
2194}
2195
2196/// Represents a `let` statement (i.e., `let <pat>:<ty> = <init>;`).
2197#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for LetStmt<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        let names: &'static _ =
            &["super_", "pat", "ty", "init", "els", "hir_id", "span",
                        "source"];
        let values: &[&dyn ::core::fmt::Debug] =
            &[&self.super_, &self.pat, &self.ty, &self.init, &self.els,
                        &self.hir_id, &self.span, &&self.source];
        ::core::fmt::Formatter::debug_struct_fields_finish(f, "LetStmt",
            names, values)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for LetStmt<'hir> {
    #[inline]
    fn clone(&self) -> LetStmt<'hir> {
        let _: ::core::clone::AssertParamIsClone<Option<Span>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Pat<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Ty<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Expr<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Block<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<LocalSource>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for LetStmt<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            LetStmt<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    LetStmt {
                        super_: ref __binding_0,
                        pat: ref __binding_1,
                        ty: ref __binding_2,
                        init: ref __binding_3,
                        els: ref __binding_4,
                        hir_id: ref __binding_5,
                        span: ref __binding_6,
                        source: ref __binding_7 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                        {}
                        { __binding_6.stable_hash(__hcx, __hasher); }
                        { __binding_7.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2198pub struct LetStmt<'hir> {
2199    /// Span of `super` in `super let`.
2200    pub super_: Option<Span>,
2201    pub pat: &'hir Pat<'hir>,
2202    /// Type annotation, if any (otherwise the type will be inferred).
2203    pub ty: Option<&'hir Ty<'hir>>,
2204    /// Initializer expression to set the value, if any.
2205    pub init: Option<&'hir Expr<'hir>>,
2206    /// Else block for a `let...else` binding.
2207    pub els: Option<&'hir Block<'hir>>,
2208    #[stable_hash(ignore)]
2209    pub hir_id: HirId,
2210    pub span: Span,
2211    /// Can be `ForLoopDesugar` if the `let` statement is part of a `for` loop
2212    /// desugaring, or `AssignDesugar` if it is the result of a complex
2213    /// assignment desugaring. Otherwise will be `Normal`.
2214    pub source: LocalSource,
2215}
2216
2217/// Represents a single arm of a `match` expression, e.g.
2218/// `<pat> (if <guard>) => <body>`.
2219#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for Arm<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field5_finish(f, "Arm", "hir_id",
            &self.hir_id, "span", &self.span, "pat", &self.pat, "guard",
            &self.guard, "body", &&self.body)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Arm<'hir> {
    #[inline]
    fn clone(&self) -> Arm<'hir> {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<&'hir Pat<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Expr<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for Arm<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Arm<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Arm {
                        hir_id: ref __binding_0,
                        span: ref __binding_1,
                        pat: ref __binding_2,
                        guard: ref __binding_3,
                        body: ref __binding_4 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2220pub struct Arm<'hir> {
2221    #[stable_hash(ignore)]
2222    pub hir_id: HirId,
2223    pub span: Span,
2224    /// If this pattern and the optional guard matches, then `body` is evaluated.
2225    pub pat: &'hir Pat<'hir>,
2226    /// Optional guard clause.
2227    pub guard: Option<&'hir Expr<'hir>>,
2228    /// The expression the arm evaluates to if this arm matches.
2229    pub body: &'hir Expr<'hir>,
2230}
2231
2232/// Represents a `let <pat>[: <ty>] = <expr>` expression (not a [`LetStmt`]), occurring in an `if-let`
2233/// or `let-else`, evaluating to a boolean. Typically the pattern is refutable.
2234///
2235/// In an `if let`, imagine it as `if (let <pat> = <expr>) { ... }`; in a let-else, it is part of
2236/// the desugaring to if-let. Only let-else supports the type annotation at present.
2237#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for LetExpr<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field5_finish(f, "LetExpr",
            "span", &self.span, "pat", &self.pat, "ty", &self.ty, "init",
            &self.init, "recovered", &&self.recovered)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for LetExpr<'hir> {
    #[inline]
    fn clone(&self) -> LetExpr<'hir> {
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<&'hir Pat<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Ty<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<ast::Recovered>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for LetExpr<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            LetExpr<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    LetExpr {
                        span: ref __binding_0,
                        pat: ref __binding_1,
                        ty: ref __binding_2,
                        init: ref __binding_3,
                        recovered: ref __binding_4 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2238pub struct LetExpr<'hir> {
2239    pub span: Span,
2240    pub pat: &'hir Pat<'hir>,
2241    pub ty: Option<&'hir Ty<'hir>>,
2242    pub init: &'hir Expr<'hir>,
2243    /// `Recovered::Yes` when this let expressions is not in a syntactically valid location.
2244    /// Used to prevent building MIR in such situations.
2245    pub recovered: ast::Recovered,
2246}
2247
2248#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for ExprField<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field5_finish(f, "ExprField",
            "hir_id", &self.hir_id, "ident", &self.ident, "expr", &self.expr,
            "span", &self.span, "is_shorthand", &&self.is_shorthand)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for ExprField<'hir> {
    #[inline]
    fn clone(&self) -> ExprField<'hir> {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for ExprField<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            ExprField<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    ExprField {
                        hir_id: ref __binding_0,
                        ident: ref __binding_1,
                        expr: ref __binding_2,
                        span: ref __binding_3,
                        is_shorthand: ref __binding_4 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2249pub struct ExprField<'hir> {
2250    #[stable_hash(ignore)]
2251    pub hir_id: HirId,
2252    pub ident: Ident,
2253    pub expr: &'hir Expr<'hir>,
2254    pub span: Span,
2255    pub is_shorthand: bool,
2256}
2257
2258#[derive(#[automatically_derived]
impl ::core::marker::Copy for BlockCheckMode { }Copy, #[automatically_derived]
impl ::core::clone::Clone for BlockCheckMode {
    #[inline]
    fn clone(&self) -> BlockCheckMode {
        let _: ::core::clone::AssertParamIsClone<UnsafeSource>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for BlockCheckMode {
    #[inline]
    fn eq(&self, other: &BlockCheckMode) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (BlockCheckMode::UnsafeBlock(__self_0),
                    BlockCheckMode::UnsafeBlock(__arg1_0)) =>
                    __self_0 == __arg1_0,
                _ => true,
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::fmt::Debug for BlockCheckMode {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            BlockCheckMode::DefaultBlock =>
                ::core::fmt::Formatter::write_str(f, "DefaultBlock"),
            BlockCheckMode::UnsafeBlock(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "UnsafeBlock", &__self_0),
        }
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            BlockCheckMode {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    BlockCheckMode::DefaultBlock => {}
                    BlockCheckMode::UnsafeBlock(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2259pub enum BlockCheckMode {
2260    DefaultBlock,
2261    UnsafeBlock(UnsafeSource),
2262}
2263
2264#[derive(#[automatically_derived]
impl ::core::marker::Copy for UnsafeSource { }Copy, #[automatically_derived]
impl ::core::clone::Clone for UnsafeSource {
    #[inline]
    fn clone(&self) -> UnsafeSource { *self }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for UnsafeSource {
    #[inline]
    fn eq(&self, other: &UnsafeSource) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq, #[automatically_derived]
impl ::core::fmt::Debug for UnsafeSource {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                UnsafeSource::CompilerGenerated => "CompilerGenerated",
                UnsafeSource::UserProvided => "UserProvided",
            })
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for UnsafeSource
            {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    UnsafeSource::CompilerGenerated => {}
                    UnsafeSource::UserProvided => {}
                }
            }
        }
    };StableHash)]
2265pub enum UnsafeSource {
2266    CompilerGenerated,
2267    UserProvided,
2268}
2269
2270#[derive(#[automatically_derived]
impl ::core::marker::Copy for BodyId { }Copy, #[automatically_derived]
impl ::core::clone::Clone for BodyId {
    #[inline]
    fn clone(&self) -> BodyId {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for BodyId {
    #[inline]
    fn eq(&self, other: &BodyId) -> bool { self.hir_id == other.hir_id }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for BodyId {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<HirId>;
    }
}Eq, #[automatically_derived]
impl ::core::hash::Hash for BodyId {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        ::core::hash::Hash::hash(&self.hir_id, state)
    }
}Hash, #[automatically_derived]
impl ::core::fmt::Debug for BodyId {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field1_finish(f, "BodyId",
            "hir_id", &&self.hir_id)
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for BodyId {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    BodyId { hir_id: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2271pub struct BodyId {
2272    pub hir_id: HirId,
2273}
2274
2275/// The body of a function, closure, or constant value. In the case of
2276/// a function, the body contains not only the function body itself
2277/// (which is an expression), but also the argument patterns, since
2278/// those are something that the caller doesn't really care about.
2279///
2280/// # Examples
2281///
2282/// ```
2283/// fn foo((x, y): (u32, u32)) -> u32 {
2284///     x + y
2285/// }
2286/// ```
2287///
2288/// Here, the `Body` associated with `foo()` would contain:
2289///
2290/// - an `params` array containing the `(x, y)` pattern
2291/// - a `value` containing the `x + y` expression (maybe wrapped in a block)
2292/// - `coroutine_kind` would be `None`
2293///
2294/// All bodies have an **owner**, which can be accessed via the HIR
2295/// map using `body_owner_def_id()`.
2296#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for Body<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f, "Body",
            "params", &self.params, "value", &&self.value)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Body<'hir> {
    #[inline]
    fn clone(&self) -> Body<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir [Param<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for Body<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Body<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Body { params: ref __binding_0, value: ref __binding_1 } =>
                        {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2297pub struct Body<'hir> {
2298    pub params: &'hir [Param<'hir>],
2299    pub value: &'hir Expr<'hir>,
2300}
2301
2302impl<'hir> Body<'hir> {
2303    pub fn id(&self) -> BodyId {
2304        BodyId { hir_id: self.value.hir_id }
2305    }
2306}
2307
2308/// The type of source expression that caused this coroutine to be created.
2309#[derive(#[automatically_derived]
impl ::core::clone::Clone for CoroutineKind {
    #[inline]
    fn clone(&self) -> CoroutineKind {
        let _: ::core::clone::AssertParamIsClone<CoroutineDesugaring>;
        let _: ::core::clone::AssertParamIsClone<CoroutineSource>;
        let _: ::core::clone::AssertParamIsClone<Movability>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for CoroutineKind {
    #[inline]
    fn eq(&self, other: &CoroutineKind) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (CoroutineKind::Desugared(__self_0, __self_1),
                    CoroutineKind::Desugared(__arg1_0, __arg1_1)) =>
                    __self_0 == __arg1_0 && __self_1 == __arg1_1,
                (CoroutineKind::Coroutine(__self_0),
                    CoroutineKind::Coroutine(__arg1_0)) => __self_0 == __arg1_0,
                _ => unsafe { ::core::intrinsics::unreachable() }
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for CoroutineKind {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<CoroutineDesugaring>;
        let _: ::core::cmp::AssertParamIsEq<CoroutineSource>;
        let _: ::core::cmp::AssertParamIsEq<Movability>;
    }
}Eq, #[automatically_derived]
impl ::core::fmt::Debug for CoroutineKind {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            CoroutineKind::Desugared(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f,
                    "Desugared", __self_0, &__self_1),
            CoroutineKind::Coroutine(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "Coroutine", &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl ::core::marker::Copy for CoroutineKind { }Copy, #[automatically_derived]
impl ::core::hash::Hash for CoroutineKind {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        ::core::hash::Hash::hash(&__self_discr, state);
        match self {
            CoroutineKind::Desugared(__self_0, __self_1) => {
                ::core::hash::Hash::hash(__self_0, state);
                ::core::hash::Hash::hash(__self_1, state)
            }
            CoroutineKind::Coroutine(__self_0) =>
                ::core::hash::Hash::hash(__self_0, state),
        }
    }
}Hash, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            CoroutineKind {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    CoroutineKind::Desugared(ref __binding_0, ref __binding_1)
                        => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    CoroutineKind::Coroutine(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for CoroutineKind {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        CoroutineKind::Desugared(ref __binding_0, ref __binding_1)
                            => {
                            0usize
                        }
                        CoroutineKind::Coroutine(ref __binding_0) => { 1usize }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    CoroutineKind::Desugared(ref __binding_0, ref __binding_1)
                        => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_1,
                            __encoder);
                    }
                    CoroutineKind::Coroutine(ref __binding_0) => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for CoroutineKind {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => {
                        CoroutineKind::Desugared(::rustc_serialize::Decodable::decode(__decoder),
                            ::rustc_serialize::Decodable::decode(__decoder))
                    }
                    1usize => {
                        CoroutineKind::Coroutine(::rustc_serialize::Decodable::decode(__decoder))
                    }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `CoroutineKind`, expected 0..2, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable)]
2310pub enum CoroutineKind {
2311    /// A coroutine that comes from a desugaring.
2312    Desugared(CoroutineDesugaring, CoroutineSource),
2313
2314    /// A coroutine literal created via a `yield` inside a closure.
2315    Coroutine(Movability),
2316}
2317
2318impl CoroutineKind {
2319    pub fn movability(self) -> Movability {
2320        match self {
2321            CoroutineKind::Desugared(CoroutineDesugaring::Async, _)
2322            | CoroutineKind::Desugared(CoroutineDesugaring::AsyncGen, _) => Movability::Static,
2323            CoroutineKind::Desugared(CoroutineDesugaring::Gen, _) => Movability::Movable,
2324            CoroutineKind::Coroutine(mov) => mov,
2325        }
2326    }
2327
2328    pub fn is_fn_like(self) -> bool {
2329        #[allow(non_exhaustive_omitted_patterns)] match self {
    CoroutineKind::Desugared(_, CoroutineSource::Fn) => true,
    _ => false,
}matches!(self, CoroutineKind::Desugared(_, CoroutineSource::Fn))
2330    }
2331
2332    pub fn is_async_desugaring(self) -> bool {
2333        #[allow(non_exhaustive_omitted_patterns)] match self {
    CoroutineKind::Desugared(CoroutineDesugaring::Async |
        CoroutineDesugaring::AsyncGen, _) => true,
    _ => false,
}matches!(
2334            self,
2335            CoroutineKind::Desugared(CoroutineDesugaring::Async | CoroutineDesugaring::AsyncGen, _)
2336        )
2337    }
2338
2339    pub fn to_plural_string(&self) -> String {
2340        match self {
2341            CoroutineKind::Desugared(d, CoroutineSource::Fn) => ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0:#}fn bodies", d))
    })format!("{d:#}fn bodies"),
2342            CoroutineKind::Desugared(d, CoroutineSource::Block) => ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0:#}blocks", d))
    })format!("{d:#}blocks"),
2343            CoroutineKind::Desugared(d, CoroutineSource::Closure) => ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0:#}closure bodies", d))
    })format!("{d:#}closure bodies"),
2344            CoroutineKind::Coroutine(_) => "coroutines".to_string(),
2345        }
2346    }
2347}
2348
2349impl fmt::Display for CoroutineKind {
2350    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
2351        match self {
2352            CoroutineKind::Desugared(d, k) => {
2353                d.fmt(f)?;
2354                k.fmt(f)
2355            }
2356            CoroutineKind::Coroutine(_) => f.write_str("coroutine"),
2357        }
2358    }
2359}
2360
2361/// In the case of a coroutine created as part of an async/gen construct,
2362/// which kind of async/gen construct caused it to be created?
2363///
2364/// This helps error messages but is also used to drive coercions in
2365/// type-checking (see #60424).
2366#[derive(#[automatically_derived]
impl ::core::clone::Clone for CoroutineSource {
    #[inline]
    fn clone(&self) -> CoroutineSource { *self }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for CoroutineSource {
    #[inline]
    fn eq(&self, other: &CoroutineSource) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for CoroutineSource {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {}
}Eq, #[automatically_derived]
impl ::core::hash::Hash for CoroutineSource {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        ::core::hash::Hash::hash(&__self_discr, state)
    }
}Hash, #[automatically_derived]
impl ::core::fmt::Debug for CoroutineSource {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                CoroutineSource::Block => "Block",
                CoroutineSource::Closure => "Closure",
                CoroutineSource::Fn => "Fn",
            })
    }
}Debug, #[automatically_derived]
impl ::core::marker::Copy for CoroutineSource { }Copy, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            CoroutineSource {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    CoroutineSource::Block => {}
                    CoroutineSource::Closure => {}
                    CoroutineSource::Fn => {}
                }
            }
        }
    };StableHash, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for CoroutineSource {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        CoroutineSource::Block => { 0usize }
                        CoroutineSource::Closure => { 1usize }
                        CoroutineSource::Fn => { 2usize }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    CoroutineSource::Block => {}
                    CoroutineSource::Closure => {}
                    CoroutineSource::Fn => {}
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for CoroutineSource {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => { CoroutineSource::Block }
                    1usize => { CoroutineSource::Closure }
                    2usize => { CoroutineSource::Fn }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `CoroutineSource`, expected 0..3, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable)]
2367pub enum CoroutineSource {
2368    /// An explicit `async`/`gen` block written by the user.
2369    Block,
2370
2371    /// An explicit `async`/`gen` closure written by the user.
2372    Closure,
2373
2374    /// The `async`/`gen` block generated as the body of an async/gen function.
2375    Fn,
2376}
2377
2378impl fmt::Display for CoroutineSource {
2379    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
2380        match self {
2381            CoroutineSource::Block => "block",
2382            CoroutineSource::Closure => "closure body",
2383            CoroutineSource::Fn => "fn body",
2384        }
2385        .fmt(f)
2386    }
2387}
2388
2389#[derive(#[automatically_derived]
impl ::core::clone::Clone for CoroutineDesugaring {
    #[inline]
    fn clone(&self) -> CoroutineDesugaring { *self }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for CoroutineDesugaring {
    #[inline]
    fn eq(&self, other: &CoroutineDesugaring) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for CoroutineDesugaring {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {}
}Eq, #[automatically_derived]
impl ::core::fmt::Debug for CoroutineDesugaring {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                CoroutineDesugaring::Async => "Async",
                CoroutineDesugaring::Gen => "Gen",
                CoroutineDesugaring::AsyncGen => "AsyncGen",
            })
    }
}Debug, #[automatically_derived]
impl ::core::marker::Copy for CoroutineDesugaring { }Copy, #[automatically_derived]
impl ::core::hash::Hash for CoroutineDesugaring {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        ::core::hash::Hash::hash(&__self_discr, state)
    }
}Hash, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            CoroutineDesugaring {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    CoroutineDesugaring::Async => {}
                    CoroutineDesugaring::Gen => {}
                    CoroutineDesugaring::AsyncGen => {}
                }
            }
        }
    };StableHash, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for CoroutineDesugaring {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        CoroutineDesugaring::Async => { 0usize }
                        CoroutineDesugaring::Gen => { 1usize }
                        CoroutineDesugaring::AsyncGen => { 2usize }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    CoroutineDesugaring::Async => {}
                    CoroutineDesugaring::Gen => {}
                    CoroutineDesugaring::AsyncGen => {}
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for CoroutineDesugaring {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => { CoroutineDesugaring::Async }
                    1usize => { CoroutineDesugaring::Gen }
                    2usize => { CoroutineDesugaring::AsyncGen }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `CoroutineDesugaring`, expected 0..3, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable)]
2390pub enum CoroutineDesugaring {
2391    /// An explicit `async` block or the body of an `async` function.
2392    Async,
2393
2394    /// An explicit `gen` block or the body of a `gen` function.
2395    Gen,
2396
2397    /// An explicit `async gen` block or the body of an `async gen` function,
2398    /// which is able to both `yield` and `.await`.
2399    AsyncGen,
2400}
2401
2402impl fmt::Display for CoroutineDesugaring {
2403    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
2404        match self {
2405            CoroutineDesugaring::Async => {
2406                if f.alternate() {
2407                    f.write_str("`async` ")?;
2408                } else {
2409                    f.write_str("async ")?
2410                }
2411            }
2412            CoroutineDesugaring::Gen => {
2413                if f.alternate() {
2414                    f.write_str("`gen` ")?;
2415                } else {
2416                    f.write_str("gen ")?
2417                }
2418            }
2419            CoroutineDesugaring::AsyncGen => {
2420                if f.alternate() {
2421                    f.write_str("`async gen` ")?;
2422                } else {
2423                    f.write_str("async gen ")?
2424                }
2425            }
2426        }
2427
2428        Ok(())
2429    }
2430}
2431
2432#[derive(#[automatically_derived]
impl ::core::marker::Copy for BodyOwnerKind { }Copy, #[automatically_derived]
impl ::core::clone::Clone for BodyOwnerKind {
    #[inline]
    fn clone(&self) -> BodyOwnerKind {
        let _: ::core::clone::AssertParamIsClone<bool>;
        let _: ::core::clone::AssertParamIsClone<Mutability>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for BodyOwnerKind {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            BodyOwnerKind::Fn => ::core::fmt::Formatter::write_str(f, "Fn"),
            BodyOwnerKind::Closure =>
                ::core::fmt::Formatter::write_str(f, "Closure"),
            BodyOwnerKind::Const { inline: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f, "Const",
                    "inline", &__self_0),
            BodyOwnerKind::Static(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Static",
                    &__self_0),
            BodyOwnerKind::GlobalAsm =>
                ::core::fmt::Formatter::write_str(f, "GlobalAsm"),
        }
    }
}Debug)]
2433pub enum BodyOwnerKind {
2434    /// Functions and methods.
2435    Fn,
2436
2437    /// Closures
2438    Closure,
2439
2440    /// Constants and associated constants, also including inline constants.
2441    Const { inline: bool },
2442
2443    /// Initializer of a `static` item.
2444    Static(Mutability),
2445
2446    /// Fake body for a global asm to store its const-like value types.
2447    GlobalAsm,
2448}
2449
2450impl BodyOwnerKind {
2451    pub fn is_fn_or_closure(self) -> bool {
2452        match self {
2453            BodyOwnerKind::Fn | BodyOwnerKind::Closure => true,
2454            BodyOwnerKind::Const { .. } | BodyOwnerKind::Static(_) | BodyOwnerKind::GlobalAsm => {
2455                false
2456            }
2457        }
2458    }
2459}
2460
2461/// The kind of an item that requires const-checking.
2462#[derive(#[automatically_derived]
impl ::core::clone::Clone for ConstContext {
    #[inline]
    fn clone(&self) -> ConstContext {
        let _: ::core::clone::AssertParamIsClone<Mutability>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::marker::Copy for ConstContext { }Copy, #[automatically_derived]
impl ::core::fmt::Debug for ConstContext {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            ConstContext::ConstFn =>
                ::core::fmt::Formatter::write_str(f, "ConstFn"),
            ConstContext::Static(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Static",
                    &__self_0),
            ConstContext::Const { allow_const_fn_promotion: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f, "Const",
                    "allow_const_fn_promotion", &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl ::core::cmp::PartialEq for ConstContext {
    #[inline]
    fn eq(&self, other: &ConstContext) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (ConstContext::Static(__self_0),
                    ConstContext::Static(__arg1_0)) => __self_0 == __arg1_0,
                (ConstContext::Const { allow_const_fn_promotion: __self_0 },
                    ConstContext::Const { allow_const_fn_promotion: __arg1_0 })
                    => __self_0 == __arg1_0,
                _ => true,
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for ConstContext {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<Mutability>;
        let _: ::core::cmp::AssertParamIsEq<bool>;
    }
}Eq)]
2463pub enum ConstContext {
2464    /// A `const fn`.
2465    ConstFn,
2466
2467    /// A `static` or `static mut`.
2468    Static(Mutability),
2469
2470    /// A `const`, associated `const`, or other const context.
2471    ///
2472    /// Other contexts include:
2473    /// - Array length expressions
2474    /// - Enum discriminants
2475    /// - Const generics
2476    Const {
2477        /// For backwards compatibility `const` items allow
2478        /// calls to `const fn` to get promoted.
2479        /// We forbid that in comptime fns and inline consts.
2480        allow_const_fn_promotion: bool,
2481    },
2482}
2483
2484impl ConstContext {
2485    /// A description of this const context that can appear between backticks in an error message.
2486    ///
2487    /// E.g. `const` or `static mut`.
2488    pub fn keyword_name(self) -> &'static str {
2489        match self {
2490            Self::Const { .. } => "const",
2491            Self::Static(Mutability::Not) => "static",
2492            Self::Static(Mutability::Mut) => "static mut",
2493            Self::ConstFn => "const fn",
2494        }
2495    }
2496}
2497
2498/// A colloquial, trivially pluralizable description of this const context for use in error
2499/// messages.
2500impl fmt::Display for ConstContext {
2501    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
2502        match *self {
2503            Self::Const { .. } => f.write_fmt(format_args!("constant"))write!(f, "constant"),
2504            Self::Static(_) => f.write_fmt(format_args!("static"))write!(f, "static"),
2505            Self::ConstFn => f.write_fmt(format_args!("constant function"))write!(f, "constant function"),
2506        }
2507    }
2508}
2509
2510impl IntoDiagArg for ConstContext {
2511    fn into_diag_arg(self, _: &mut Option<std::path::PathBuf>) -> DiagArgValue {
2512        DiagArgValue::Str(Cow::Borrowed(match self {
2513            ConstContext::ConstFn => "constant function",
2514            ConstContext::Static(_) => "static",
2515            ConstContext::Const { .. } => "constant",
2516        }))
2517    }
2518}
2519
2520/// A literal.
2521pub type Lit = Spanned<LitKind>;
2522
2523/// A constant (expression) that's not an item or associated item,
2524/// but needs its own `DefId` for type-checking, const-eval, etc.
2525/// These are usually found nested inside types (e.g., array lengths)
2526/// or expressions (e.g., repeat counts), and also used to define
2527/// explicit discriminant values for enum variants.
2528///
2529/// You can check if this anon const is a default in a const param
2530/// `const N: usize = { ... }` with `tcx.hir_opt_const_param_default_param_def_id(..)`
2531#[derive(#[automatically_derived]
impl ::core::marker::Copy for AnonConst { }Copy, #[automatically_derived]
impl ::core::clone::Clone for AnonConst {
    #[inline]
    fn clone(&self) -> AnonConst {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<LocalDefId>;
        let _: ::core::clone::AssertParamIsClone<BodyId>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for AnonConst {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field4_finish(f, "AnonConst",
            "hir_id", &self.hir_id, "def_id", &self.def_id, "body",
            &self.body, "span", &&self.span)
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for AnonConst {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    AnonConst {
                        hir_id: ref __binding_0,
                        def_id: ref __binding_1,
                        body: ref __binding_2,
                        span: ref __binding_3 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2532pub struct AnonConst {
2533    #[stable_hash(ignore)]
2534    pub hir_id: HirId,
2535    pub def_id: LocalDefId,
2536    pub body: BodyId,
2537    pub span: Span,
2538}
2539
2540/// An inline constant expression `const { something }`.
2541#[derive(#[automatically_derived]
impl ::core::marker::Copy for ConstBlock { }Copy, #[automatically_derived]
impl ::core::clone::Clone for ConstBlock {
    #[inline]
    fn clone(&self) -> ConstBlock {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<LocalDefId>;
        let _: ::core::clone::AssertParamIsClone<BodyId>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for ConstBlock {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f, "ConstBlock",
            "hir_id", &self.hir_id, "def_id", &self.def_id, "body",
            &&self.body)
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for ConstBlock {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    ConstBlock {
                        hir_id: ref __binding_0,
                        def_id: ref __binding_1,
                        body: ref __binding_2 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2542pub struct ConstBlock {
2543    #[stable_hash(ignore)]
2544    pub hir_id: HirId,
2545    pub def_id: LocalDefId,
2546    pub body: BodyId,
2547}
2548
2549/// An expression.
2550///
2551/// For more details, see the [rust lang reference].
2552/// Note that the reference does not document nightly-only features.
2553/// There may be also slight differences in the names and representation of AST nodes between
2554/// the compiler and the reference.
2555///
2556/// [rust lang reference]: https://doc.rust-lang.org/reference/expressions.html
2557#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for Expr<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f, "Expr",
            "hir_id", &self.hir_id, "kind", &self.kind, "span", &&self.span)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Expr<'hir> {
    #[inline]
    fn clone(&self) -> Expr<'hir> {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<ExprKind<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for Expr<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Expr<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Expr {
                        hir_id: ref __binding_0,
                        kind: ref __binding_1,
                        span: ref __binding_2 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2558pub struct Expr<'hir> {
2559    #[stable_hash(ignore)]
2560    pub hir_id: HirId,
2561    pub kind: ExprKind<'hir>,
2562    pub span: Span,
2563}
2564
2565impl Expr<'_> {
2566    pub fn precedence(&self, has_attr: &dyn Fn(HirId) -> bool) -> ExprPrecedence {
2567        let prefix_attrs_precedence = || -> ExprPrecedence {
2568            if has_attr(self.hir_id) { ExprPrecedence::Prefix } else { ExprPrecedence::Unambiguous }
2569        };
2570
2571        match &self.kind {
2572            ExprKind::Closure(closure) => match closure.fn_decl.output {
2573                FnRetTy::DefaultReturn(_) => ExprPrecedence::Jump,
2574                FnRetTy::Return(_) => prefix_attrs_precedence(),
2575            },
2576
2577            ExprKind::Break(..)
2578            | ExprKind::Ret(..)
2579            | ExprKind::Yield(..)
2580            | ExprKind::Become(..) => ExprPrecedence::Jump,
2581
2582            // Binop-like expr kinds, handled by `AssocOp`.
2583            ExprKind::Binary(op, ..) => op.node.precedence(),
2584            ExprKind::Cast(..) => ExprPrecedence::Cast,
2585
2586            ExprKind::Assign(..) | ExprKind::AssignOp(..) => ExprPrecedence::Assign,
2587
2588            // Unary, prefix
2589            ExprKind::AddrOf(..) => ExprPrecedence::Prefix,
2590
2591            // Here `let pats = expr` has `let pats =` as a "unary" prefix of `expr`.
2592            // However, this is not exactly right. When `let _ = a` is the LHS of a binop we
2593            // need parens sometimes. E.g. we can print `(let _ = a) && b` as `let _ = a && b`
2594            // but we need to print `(let _ = a) < b` as-is with parens.
2595            ExprKind::Let(..) | ExprKind::Unary(..) => ExprPrecedence::Prefix,
2596
2597            // Need parens if and only if there are prefix attributes.
2598            ExprKind::Array(_)
2599            | ExprKind::Block(..)
2600            | ExprKind::Call(..)
2601            | ExprKind::ConstBlock(_)
2602            | ExprKind::Continue(..)
2603            | ExprKind::Field(..)
2604            | ExprKind::If(..)
2605            | ExprKind::Index(..)
2606            | ExprKind::InlineAsm(..)
2607            | ExprKind::Lit(_)
2608            | ExprKind::Loop(..)
2609            | ExprKind::Match(..)
2610            | ExprKind::MethodCall(..)
2611            | ExprKind::OffsetOf(..)
2612            | ExprKind::Path(..)
2613            | ExprKind::Repeat(..)
2614            | ExprKind::Struct(..)
2615            | ExprKind::Tup(_)
2616            | ExprKind::Type(..)
2617            | ExprKind::UnsafeBinderCast(..)
2618            | ExprKind::Use(..)
2619            | ExprKind::Err(_) => prefix_attrs_precedence(),
2620
2621            ExprKind::DropTemps(expr, ..) => expr.precedence(has_attr),
2622        }
2623    }
2624
2625    /// Whether this looks like a place expr, without checking for deref
2626    /// adjustments.
2627    /// This will return `true` in some potentially surprising cases such as
2628    /// `CONSTANT.field`.
2629    pub fn is_syntactic_place_expr(&self) -> bool {
2630        self.is_place_expr(|_| true)
2631    }
2632
2633    /// Whether this is a place expression.
2634    ///
2635    /// `allow_projections_from` should return `true` if indexing a field or index expression based
2636    /// on the given expression should be considered a place expression.
2637    pub fn is_place_expr(&self, mut allow_projections_from: impl FnMut(&Self) -> bool) -> bool {
2638        match self.kind {
2639            ExprKind::Path(QPath::Resolved(_, ref path)) => {
2640                #[allow(non_exhaustive_omitted_patterns)] match path.res {
    Res::Local(..) | Res::Def(DefKind::Static { .. }, _) | Res::Err => true,
    _ => false,
}matches!(path.res, Res::Local(..) | Res::Def(DefKind::Static { .. }, _) | Res::Err)
2641            }
2642
2643            // Type ascription inherits its place expression kind from its
2644            // operand. See:
2645            // https://github.com/rust-lang/rfcs/blob/master/text/0803-type-ascription.md#type-ascription-and-temporaries
2646            ExprKind::Type(ref e, _) => e.is_place_expr(allow_projections_from),
2647
2648            // Unsafe binder cast preserves place-ness of the sub-expression.
2649            ExprKind::UnsafeBinderCast(_, e, _) => e.is_place_expr(allow_projections_from),
2650
2651            ExprKind::Unary(UnOp::Deref, _) => true,
2652
2653            ExprKind::Field(ref base, _) | ExprKind::Index(ref base, _, _) => {
2654                allow_projections_from(base) || base.is_place_expr(allow_projections_from)
2655            }
2656
2657            // Suppress errors for bad expressions.
2658            ExprKind::Err(_guar)
2659            | ExprKind::Let(&LetExpr { recovered: ast::Recovered::Yes(_guar), .. }) => true,
2660
2661            // Partially qualified paths in expressions can only legally
2662            // refer to associated items which are always rvalues.
2663            ExprKind::Path(QPath::TypeRelative(..))
2664            | ExprKind::Call(..)
2665            | ExprKind::MethodCall(..)
2666            | ExprKind::Use(..)
2667            | ExprKind::Struct(..)
2668            | ExprKind::Tup(..)
2669            | ExprKind::If(..)
2670            | ExprKind::Match(..)
2671            | ExprKind::Closure { .. }
2672            | ExprKind::Block(..)
2673            | ExprKind::Repeat(..)
2674            | ExprKind::Array(..)
2675            | ExprKind::Break(..)
2676            | ExprKind::Continue(..)
2677            | ExprKind::Ret(..)
2678            | ExprKind::Become(..)
2679            | ExprKind::Let(..)
2680            | ExprKind::Loop(..)
2681            | ExprKind::Assign(..)
2682            | ExprKind::InlineAsm(..)
2683            | ExprKind::OffsetOf(..)
2684            | ExprKind::AssignOp(..)
2685            | ExprKind::Lit(_)
2686            | ExprKind::ConstBlock(..)
2687            | ExprKind::Unary(..)
2688            | ExprKind::AddrOf(..)
2689            | ExprKind::Binary(..)
2690            | ExprKind::Yield(..)
2691            | ExprKind::Cast(..)
2692            | ExprKind::DropTemps(..) => false,
2693        }
2694    }
2695
2696    /// If this is a desugared range expression,
2697    /// returns the span of the range without desugaring context.
2698    pub fn range_span(&self) -> Option<Span> {
2699        is_range_literal(self).then(|| self.span.parent_callsite().unwrap())
2700    }
2701
2702    /// Check if expression is an integer literal that can be used
2703    /// where `usize` is expected.
2704    pub fn is_size_lit(&self) -> bool {
2705        #[allow(non_exhaustive_omitted_patterns)] match self.kind {
    ExprKind::Lit(Lit {
        node: LitKind::Int(_,
            LitIntType::Unsuffixed | LitIntType::Unsigned(UintTy::Usize)), ..
        }) => true,
    _ => false,
}matches!(
2706            self.kind,
2707            ExprKind::Lit(Lit {
2708                node: LitKind::Int(_, LitIntType::Unsuffixed | LitIntType::Unsigned(UintTy::Usize)),
2709                ..
2710            })
2711        )
2712    }
2713
2714    /// If `Self.kind` is `ExprKind::DropTemps(expr)`, drill down until we get a non-`DropTemps`
2715    /// `Expr`. This is used in suggestions to ignore this `ExprKind` as it is semantically
2716    /// silent, only signaling the ownership system. By doing this, suggestions that check the
2717    /// `ExprKind` of any given `Expr` for presentation don't have to care about `DropTemps`
2718    /// beyond remembering to call this function before doing analysis on it.
2719    pub fn peel_drop_temps(&self) -> &Self {
2720        let mut expr = self;
2721        while let ExprKind::DropTemps(inner) = &expr.kind {
2722            expr = inner;
2723        }
2724        expr
2725    }
2726
2727    pub fn peel_blocks(&self) -> &Self {
2728        let mut expr = self;
2729        while let ExprKind::Block(Block { expr: Some(inner), .. }, _) = &expr.kind {
2730            expr = inner;
2731        }
2732        expr
2733    }
2734
2735    pub fn peel_borrows(&self) -> &Self {
2736        let mut expr = self;
2737        while let ExprKind::AddrOf(.., inner) = &expr.kind {
2738            expr = inner;
2739        }
2740        expr
2741    }
2742
2743    pub fn can_have_side_effects(&self) -> bool {
2744        match self.peel_drop_temps().kind {
2745            ExprKind::Path(_) | ExprKind::Lit(_) | ExprKind::OffsetOf(..) | ExprKind::Use(..) => {
2746                false
2747            }
2748            ExprKind::Type(base, _)
2749            | ExprKind::Unary(_, base)
2750            | ExprKind::Field(base, _)
2751            | ExprKind::Index(base, _, _)
2752            | ExprKind::AddrOf(.., base)
2753            | ExprKind::Cast(base, _)
2754            | ExprKind::UnsafeBinderCast(_, base, _) => {
2755                // This isn't exactly true for `Index` and all `Unary`, but we are using this
2756                // method exclusively for diagnostics and there's a *cultural* pressure against
2757                // them being used only for its side-effects.
2758                base.can_have_side_effects()
2759            }
2760            ExprKind::Binary(_, lhs, rhs) => {
2761                // This isn't exactly true for all `Binary`, but we are using this
2762                // method exclusively for diagnostics and there's a *cultural* pressure against
2763                // them being used only for its side-effects.
2764                lhs.can_have_side_effects() || rhs.can_have_side_effects()
2765            }
2766            ExprKind::Struct(_, fields, init) => {
2767                let init_side_effects = match init {
2768                    StructTailExpr::Base(init) => init.can_have_side_effects(),
2769                    StructTailExpr::DefaultFields(_)
2770                    | StructTailExpr::None
2771                    | StructTailExpr::NoneWithError(_) => false,
2772                };
2773                fields.iter().map(|field| field.expr).any(|e| e.can_have_side_effects())
2774                    || init_side_effects
2775            }
2776
2777            ExprKind::Array(args)
2778            | ExprKind::Tup(args)
2779            | ExprKind::Call(
2780                Expr {
2781                    kind:
2782                        ExprKind::Path(QPath::Resolved(
2783                            None,
2784                            Path { res: Res::Def(DefKind::Ctor(_, CtorKind::Fn), _), .. },
2785                        )),
2786                    ..
2787                },
2788                args,
2789            ) => args.iter().any(|arg| arg.can_have_side_effects()),
2790            ExprKind::Repeat(arg, _) => arg.can_have_side_effects(),
2791            ExprKind::If(..)
2792            | ExprKind::Match(..)
2793            | ExprKind::MethodCall(..)
2794            | ExprKind::Call(..)
2795            | ExprKind::Closure { .. }
2796            | ExprKind::Block(..)
2797            | ExprKind::Break(..)
2798            | ExprKind::Continue(..)
2799            | ExprKind::Ret(..)
2800            | ExprKind::Become(..)
2801            | ExprKind::Let(..)
2802            | ExprKind::Loop(..)
2803            | ExprKind::Assign(..)
2804            | ExprKind::InlineAsm(..)
2805            | ExprKind::AssignOp(..)
2806            | ExprKind::ConstBlock(..)
2807            | ExprKind::Yield(..)
2808            | ExprKind::DropTemps(..)
2809            | ExprKind::Err(_) => true,
2810        }
2811    }
2812
2813    /// To a first-order approximation, is this a pattern?
2814    pub fn is_approximately_pattern(&self) -> bool {
2815        match &self.kind {
2816            ExprKind::Array(_)
2817            | ExprKind::Call(..)
2818            | ExprKind::Tup(_)
2819            | ExprKind::Lit(_)
2820            | ExprKind::Path(_)
2821            | ExprKind::Struct(..) => true,
2822            _ => false,
2823        }
2824    }
2825
2826    /// Whether this and the `other` expression are the same for purposes of an indexing operation.
2827    ///
2828    /// This is only used for diagnostics to see if we have things like `foo[i]` where `foo` is
2829    /// borrowed multiple times with `i`.
2830    pub fn equivalent_for_indexing(&self, other: &Expr<'_>) -> bool {
2831        match (self.kind, other.kind) {
2832            (ExprKind::Lit(lit1), ExprKind::Lit(lit2)) => lit1.node == lit2.node,
2833            (
2834                ExprKind::Path(QPath::Resolved(None, path1)),
2835                ExprKind::Path(QPath::Resolved(None, path2)),
2836            ) => path1.res == path2.res,
2837            (
2838                ExprKind::Struct(
2839                    &QPath::Resolved(None, &Path { res: Res::Def(_, path1_def_id), .. }),
2840                    args1,
2841                    StructTailExpr::None,
2842                ),
2843                ExprKind::Struct(
2844                    &QPath::Resolved(None, &Path { res: Res::Def(_, path2_def_id), .. }),
2845                    args2,
2846                    StructTailExpr::None,
2847                ),
2848            ) => {
2849                path2_def_id == path1_def_id
2850                    && is_range_literal(self)
2851                    && is_range_literal(other)
2852                    && std::iter::zip(args1, args2)
2853                        .all(|(a, b)| a.expr.equivalent_for_indexing(b.expr))
2854            }
2855            _ => false,
2856        }
2857    }
2858
2859    pub fn method_ident(&self) -> Option<Ident> {
2860        match self.kind {
2861            ExprKind::MethodCall(receiver_method, ..) => Some(receiver_method.ident),
2862            ExprKind::Unary(_, expr) | ExprKind::AddrOf(.., expr) => expr.method_ident(),
2863            _ => None,
2864        }
2865    }
2866}
2867
2868/// Checks if the specified expression is a built-in range literal.
2869/// (See: `LoweringContext::lower_expr()`).
2870pub fn is_range_literal(expr: &Expr<'_>) -> bool {
2871    if let ExprKind::Struct(QPath::Resolved(None, path), _, StructTailExpr::None) = expr.kind
2872        && let [.., segment] = path.segments
2873        && let sym::RangeFrom
2874        | sym::RangeFull
2875        | sym::Range
2876        | sym::RangeToInclusive
2877        | sym::RangeTo
2878        | sym::RangeFromCopy
2879        | sym::RangeCopy
2880        | sym::RangeInclusiveCopy
2881        | sym::RangeToInclusiveCopy = segment.ident.name
2882        && expr.span.is_desugaring(DesugaringKind::RangeExpr)
2883    {
2884        true
2885    } else if let ExprKind::Call(func, _) = &expr.kind
2886        && let ExprKind::Path(QPath::Resolved(None, path)) = func.kind
2887        && let [.., segment] = path.segments
2888        && let sym::range_inclusive_new = segment.ident.name
2889        && expr.span.is_desugaring(DesugaringKind::RangeExpr)
2890    {
2891        true
2892    } else {
2893        false
2894    }
2895}
2896
2897/// Checks if the specified expression needs parentheses for prefix
2898/// or postfix suggestions to be valid.
2899/// For example, `a + b` requires parentheses to suggest `&(a + b)`,
2900/// but just `a` does not.
2901/// Similarly, `(a + b).c()` also requires parentheses.
2902/// This should not be used for other types of suggestions.
2903pub fn expr_needs_parens(expr: &Expr<'_>) -> bool {
2904    match expr.kind {
2905        // parenthesize if needed (Issue #46756)
2906        ExprKind::Cast(_, _) | ExprKind::Binary(_, _, _) => true,
2907        // parenthesize borrows of range literals (Issue #54505)
2908        _ if is_range_literal(expr) => true,
2909        _ => false,
2910    }
2911}
2912
2913#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for ExprKind<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            ExprKind::ConstBlock(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "ConstBlock", &__self_0),
            ExprKind::Array(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Array",
                    &__self_0),
            ExprKind::Call(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Call",
                    __self_0, &__self_1),
            ExprKind::MethodCall(__self_0, __self_1, __self_2, __self_3) =>
                ::core::fmt::Formatter::debug_tuple_field4_finish(f,
                    "MethodCall", __self_0, __self_1, __self_2, &__self_3),
            ExprKind::Use(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Use",
                    __self_0, &__self_1),
            ExprKind::Tup(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Tup",
                    &__self_0),
            ExprKind::Binary(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Binary",
                    __self_0, __self_1, &__self_2),
            ExprKind::Unary(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Unary",
                    __self_0, &__self_1),
            ExprKind::Lit(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Lit",
                    &__self_0),
            ExprKind::Cast(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Cast",
                    __self_0, &__self_1),
            ExprKind::Type(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Type",
                    __self_0, &__self_1),
            ExprKind::DropTemps(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "DropTemps", &__self_0),
            ExprKind::Let(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Let",
                    &__self_0),
            ExprKind::If(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "If",
                    __self_0, __self_1, &__self_2),
            ExprKind::Loop(__self_0, __self_1, __self_2, __self_3) =>
                ::core::fmt::Formatter::debug_tuple_field4_finish(f, "Loop",
                    __self_0, __self_1, __self_2, &__self_3),
            ExprKind::Match(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Match",
                    __self_0, __self_1, &__self_2),
            ExprKind::Closure(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "Closure", &__self_0),
            ExprKind::Block(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Block",
                    __self_0, &__self_1),
            ExprKind::Assign(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Assign",
                    __self_0, __self_1, &__self_2),
            ExprKind::AssignOp(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f,
                    "AssignOp", __self_0, __self_1, &__self_2),
            ExprKind::Field(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Field",
                    __self_0, &__self_1),
            ExprKind::Index(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Index",
                    __self_0, __self_1, &__self_2),
            ExprKind::Path(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Path",
                    &__self_0),
            ExprKind::AddrOf(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "AddrOf",
                    __self_0, __self_1, &__self_2),
            ExprKind::Break(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Break",
                    __self_0, &__self_1),
            ExprKind::Continue(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "Continue", &__self_0),
            ExprKind::Ret(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Ret",
                    &__self_0),
            ExprKind::Become(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Become",
                    &__self_0),
            ExprKind::InlineAsm(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "InlineAsm", &__self_0),
            ExprKind::OffsetOf(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f,
                    "OffsetOf", __self_0, &__self_1),
            ExprKind::Struct(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Struct",
                    __self_0, __self_1, &__self_2),
            ExprKind::Repeat(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Repeat",
                    __self_0, &__self_1),
            ExprKind::Yield(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Yield",
                    __self_0, &__self_1),
            ExprKind::UnsafeBinderCast(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f,
                    "UnsafeBinderCast", __self_0, __self_1, &__self_2),
            ExprKind::Err(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Err",
                    &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for ExprKind<'hir> {
    #[inline]
    fn clone(&self) -> ExprKind<'hir> {
        let _: ::core::clone::AssertParamIsClone<ConstBlock>;
        let _: ::core::clone::AssertParamIsClone<&'hir [Expr<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [Expr<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<&'hir PathSegment<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [Expr<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [Expr<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<BinOp>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<UnOp>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Lit>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir LetExpr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Expr<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Block<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Option<Label>>;
        let _: ::core::clone::AssertParamIsClone<LoopSource>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [Arm<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<MatchSource>;
        let _: ::core::clone::AssertParamIsClone<&'hir Closure<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Block<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Option<Label>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<AssignOp>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<QPath<'hir>>;
        let _: ::core::clone::AssertParamIsClone<BorrowKind>;
        let _: ::core::clone::AssertParamIsClone<Mutability>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Destination>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Expr<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Expr<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir InlineAsm<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [Ident]>;
        let _: ::core::clone::AssertParamIsClone<&'hir QPath<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [ExprField<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<StructTailExpr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir ConstArg<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<YieldSource>;
        let _: ::core::clone::AssertParamIsClone<UnsafeBinderCastKind>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Ty<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<rustc_span::ErrorGuaranteed>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for ExprKind<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            ExprKind<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    ExprKind::ConstBlock(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Array(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Call(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::MethodCall(ref __binding_0, ref __binding_1,
                        ref __binding_2, ref __binding_3) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Use(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Tup(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Binary(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Unary(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Lit(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Cast(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Type(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::DropTemps(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Let(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::If(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Loop(ref __binding_0, ref __binding_1,
                        ref __binding_2, ref __binding_3) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Match(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Closure(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Block(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Assign(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::AssignOp(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Field(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Index(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Path(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::AddrOf(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Break(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Continue(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Ret(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Become(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::InlineAsm(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::OffsetOf(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Struct(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Repeat(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Yield(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::UnsafeBinderCast(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ExprKind::Err(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
2914pub enum ExprKind<'hir> {
2915    /// Allow anonymous constants from an inline `const` block
2916    ConstBlock(ConstBlock),
2917    /// An array (e.g., `[a, b, c, d]`).
2918    Array(&'hir [Expr<'hir>]),
2919    /// A function call.
2920    ///
2921    /// The first field resolves to the function itself (usually an `ExprKind::Path`),
2922    /// and the second field is the list of arguments.
2923    /// This also represents calling the constructor of
2924    /// tuple-like ADTs such as tuple structs and enum variants.
2925    Call(&'hir Expr<'hir>, &'hir [Expr<'hir>]),
2926    /// A method call (e.g., `x.foo::<'static, Bar, Baz>(a, b, c, d)`).
2927    ///
2928    /// The `PathSegment` represents the method name and its generic arguments
2929    /// (within the angle brackets).
2930    /// The `&Expr` is the expression that evaluates
2931    /// to the object on which the method is being called on (the receiver),
2932    /// and the `&[Expr]` is the rest of the arguments.
2933    /// Thus, `x.foo::<Bar, Baz>(a, b, c, d)` is represented as
2934    /// `ExprKind::MethodCall(PathSegment { foo, [Bar, Baz] }, x, [a, b, c, d], span)`.
2935    /// The final `Span` represents the span of the function and arguments
2936    /// (e.g. `foo::<Bar, Baz>(a, b, c, d)` in `x.foo::<Bar, Baz>(a, b, c, d)`
2937    ///
2938    /// To resolve the called method to a `DefId`, call [`type_dependent_def_id`] with
2939    /// the `hir_id` of the `MethodCall` node itself.
2940    ///
2941    /// [`type_dependent_def_id`]: ../../rustc_middle/ty/struct.TypeckResults.html#method.type_dependent_def_id
2942    MethodCall(&'hir PathSegment<'hir>, &'hir Expr<'hir>, &'hir [Expr<'hir>], Span),
2943    /// An use expression (e.g., `var.use`).
2944    Use(&'hir Expr<'hir>, Span),
2945    /// A tuple (e.g., `(a, b, c, d)`).
2946    Tup(&'hir [Expr<'hir>]),
2947    /// A binary operation (e.g., `a + b`, `a * b`).
2948    Binary(BinOp, &'hir Expr<'hir>, &'hir Expr<'hir>),
2949    /// A unary operation (e.g., `!x`, `*x`).
2950    Unary(UnOp, &'hir Expr<'hir>),
2951    /// A literal (e.g., `1`, `"foo"`).
2952    Lit(Lit),
2953    /// A cast (e.g., `foo as f64`).
2954    Cast(&'hir Expr<'hir>, &'hir Ty<'hir>),
2955    /// A type ascription (e.g., `x: Foo`). See RFC 3307.
2956    Type(&'hir Expr<'hir>, &'hir Ty<'hir>),
2957    /// Wraps the expression in a terminating scope.
2958    /// This makes it semantically equivalent to `{ let _t = expr; _t }`.
2959    ///
2960    /// This construct only exists to tweak the drop order in AST lowering.
2961    /// An example of that is the desugaring of `for` loops.
2962    DropTemps(&'hir Expr<'hir>),
2963    /// A `let $pat = $expr` expression.
2964    ///
2965    /// These are not [`LetStmt`] and only occur as expressions.
2966    /// The `let Some(x) = foo()` in `if let Some(x) = foo()` is an example of `Let(..)`.
2967    Let(&'hir LetExpr<'hir>),
2968    /// An `if` block, with an optional else block.
2969    ///
2970    /// I.e., `if <expr> { <expr> } else { <expr> }`.
2971    ///
2972    /// The "then" expr is always `ExprKind::Block`. If present, the "else" expr is always
2973    /// `ExprKind::Block` (for `else`) or `ExprKind::If` (for `else if`).
2974    /// Note that using an `Expr` instead of a `Block` for the "then" part is intentional,
2975    /// as it simplifies the type coercion machinery.
2976    If(&'hir Expr<'hir>, &'hir Expr<'hir>, Option<&'hir Expr<'hir>>),
2977    /// A conditionless loop (can be exited with `break`, `continue`, or `return`).
2978    ///
2979    /// I.e., `'label: loop { <block> }`.
2980    ///
2981    /// The `Span` is the loop header (`for x in y`/`while let pat = expr`).
2982    Loop(&'hir Block<'hir>, Option<Label>, LoopSource, Span),
2983    /// A `match` block, with a source that indicates whether or not it is
2984    /// the result of a desugaring, and if so, which kind.
2985    Match(&'hir Expr<'hir>, &'hir [Arm<'hir>], MatchSource),
2986    /// A closure (e.g., `move |a, b, c| {a + b + c}`).
2987    ///
2988    /// The `Span` is the argument block `|...|`.
2989    ///
2990    /// This may also be a coroutine literal or an `async block` as indicated by the
2991    /// `Option<Movability>`.
2992    Closure(&'hir Closure<'hir>),
2993    /// A block (e.g., `'label: { ... }`).
2994    Block(&'hir Block<'hir>, Option<Label>),
2995
2996    /// An assignment (e.g., `a = foo()`).
2997    Assign(&'hir Expr<'hir>, &'hir Expr<'hir>, Span),
2998    /// An assignment with an operator.
2999    ///
3000    /// E.g., `a += 1`.
3001    AssignOp(AssignOp, &'hir Expr<'hir>, &'hir Expr<'hir>),
3002    /// Access of a named (e.g., `obj.foo`) or unnamed (e.g., `obj.0`) struct or tuple field.
3003    Field(&'hir Expr<'hir>, Ident),
3004    /// An indexing operation (`foo[2]`).
3005    /// Similar to [`ExprKind::MethodCall`], the final `Span` represents the span of the brackets
3006    /// and index.
3007    Index(&'hir Expr<'hir>, &'hir Expr<'hir>, Span),
3008
3009    /// Path to a definition, possibly containing lifetime or type parameters.
3010    Path(QPath<'hir>),
3011
3012    /// A referencing operation (i.e., `&a` or `&mut a`).
3013    AddrOf(BorrowKind, Mutability, &'hir Expr<'hir>),
3014    /// A `break`, with an optional label to break.
3015    Break(Destination, Option<&'hir Expr<'hir>>),
3016    /// A `continue`, with an optional label.
3017    Continue(Destination),
3018    /// A `return`, with an optional value to be returned.
3019    Ret(Option<&'hir Expr<'hir>>),
3020    /// A `become`, with the value to be returned.
3021    Become(&'hir Expr<'hir>),
3022
3023    /// Inline assembly (from `asm!`), with its outputs and inputs.
3024    InlineAsm(&'hir InlineAsm<'hir>),
3025
3026    /// Field offset (`offset_of!`)
3027    OffsetOf(&'hir Ty<'hir>, &'hir [Ident]),
3028
3029    /// A struct or struct-like variant literal expression.
3030    ///
3031    /// E.g., `Foo {x: 1, y: 2}`, or `Foo {x: 1, .. base}`,
3032    /// where `base` is the `Option<Expr>`.
3033    Struct(&'hir QPath<'hir>, &'hir [ExprField<'hir>], StructTailExpr<'hir>),
3034
3035    /// An array literal constructed from one repeated element.
3036    ///
3037    /// E.g., `[1; 5]`. The first expression is the element
3038    /// to be repeated; the second is the number of times to repeat it.
3039    Repeat(&'hir Expr<'hir>, &'hir ConstArg<'hir>),
3040
3041    /// A suspension point for coroutines (i.e., `yield <expr>`).
3042    Yield(&'hir Expr<'hir>, YieldSource),
3043
3044    /// Operators which can be used to interconvert `unsafe` binder types.
3045    /// e.g. `unsafe<'a> &'a i32` <=> `&i32`.
3046    UnsafeBinderCast(UnsafeBinderCastKind, &'hir Expr<'hir>, Option<&'hir Ty<'hir>>),
3047
3048    /// A placeholder for an expression that wasn't syntactically well formed in some way.
3049    Err(rustc_span::ErrorGuaranteed),
3050}
3051
3052#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for StructTailExpr<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            StructTailExpr::None =>
                ::core::fmt::Formatter::write_str(f, "None"),
            StructTailExpr::Base(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Base",
                    &__self_0),
            StructTailExpr::DefaultFields(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "DefaultFields", &__self_0),
            StructTailExpr::NoneWithError(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "NoneWithError", &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for StructTailExpr<'hir> {
    #[inline]
    fn clone(&self) -> StructTailExpr<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<ErrorGuaranteed>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for StructTailExpr<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            StructTailExpr<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    StructTailExpr::None => {}
                    StructTailExpr::Base(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    StructTailExpr::DefaultFields(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    StructTailExpr::NoneWithError(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3053pub enum StructTailExpr<'hir> {
3054    /// A struct expression where all the fields are explicitly enumerated: `Foo { a, b }`.
3055    None,
3056    /// A struct expression with a "base", an expression of the same type as the outer struct that
3057    /// will be used to populate any fields not explicitly mentioned: `Foo { ..base }`
3058    Base(&'hir Expr<'hir>),
3059    /// A struct expression with a `..` tail but no "base" expression. The values from the struct
3060    /// fields' default values will be used to populate any fields not explicitly mentioned:
3061    /// `Foo { .. }`.
3062    DefaultFields(Span),
3063    /// No trailing `..` was written, and also, a parse error occurred inside the struct braces.
3064    ///
3065    /// This struct should be treated similarly to as if it had an `..` in it,
3066    /// in particular rather than reporting missing fields, because the parse error
3067    /// makes which fields the struct was intended to have not fully known.
3068    NoneWithError(ErrorGuaranteed),
3069}
3070
3071/// Represents an optionally `Self`-qualified value/type path or associated extension.
3072///
3073/// To resolve the path to a `DefId`, call [`qpath_res`].
3074///
3075/// [`qpath_res`]: ../../rustc_middle/ty/struct.TypeckResults.html#method.qpath_res
3076#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for QPath<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            QPath::Resolved(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f,
                    "Resolved", __self_0, &__self_1),
            QPath::TypeRelative(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f,
                    "TypeRelative", __self_0, &__self_1),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for QPath<'hir> {
    #[inline]
    fn clone(&self) -> QPath<'hir> {
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Ty<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Path<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir PathSegment<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for QPath<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            QPath<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    QPath::Resolved(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    QPath::TypeRelative(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3077pub enum QPath<'hir> {
3078    /// Path to a definition, optionally "fully-qualified" with a `Self`
3079    /// type, if the path points to an associated item in a trait.
3080    ///
3081    /// E.g., an unqualified path like `Clone::clone` has `None` for `Self`,
3082    /// while `<Vec<T> as Clone>::clone` has `Some(Vec<T>)` for `Self`,
3083    /// even though they both have the same two-segment `Clone::clone` `Path`.
3084    Resolved(Option<&'hir Ty<'hir>>, &'hir Path<'hir>),
3085
3086    /// Type-related paths (e.g., `<T>::default` or `<T>::Output`).
3087    /// Will be resolved by type-checking to an associated item.
3088    ///
3089    /// UFCS source paths can desugar into this, with `Vec::new` turning into
3090    /// `<Vec>::new`, and `T::X::Y::method` into `<<<T>::X>::Y>::method`,
3091    /// the `X` and `Y` nodes each being a `TyKind::Path(QPath::TypeRelative(..))`.
3092    TypeRelative(&'hir Ty<'hir>, &'hir PathSegment<'hir>),
3093}
3094
3095impl<'hir> QPath<'hir> {
3096    /// Returns the span of this `QPath`.
3097    pub fn span(&self) -> Span {
3098        match *self {
3099            QPath::Resolved(_, path) => path.span,
3100            QPath::TypeRelative(qself, ps) => qself.span.to(ps.ident.span),
3101        }
3102    }
3103
3104    /// Returns the span of the qself of this `QPath`. For example, `()` in
3105    /// `<() as Trait>::method`.
3106    pub fn qself_span(&self) -> Span {
3107        match *self {
3108            QPath::Resolved(_, path) => path.span,
3109            QPath::TypeRelative(qself, _) => qself.span,
3110        }
3111    }
3112}
3113
3114/// Hints at the original code for a let statement.
3115#[derive(#[automatically_derived]
impl ::core::marker::Copy for LocalSource { }Copy, #[automatically_derived]
impl ::core::clone::Clone for LocalSource {
    #[inline]
    fn clone(&self) -> LocalSource { *self }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for LocalSource {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                LocalSource::Normal => "Normal",
                LocalSource::AsyncFn => "AsyncFn",
                LocalSource::AwaitDesugar => "AwaitDesugar",
                LocalSource::AssignDesugar => "AssignDesugar",
                LocalSource::Contract => "Contract",
            })
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for LocalSource
            {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    LocalSource::Normal => {}
                    LocalSource::AsyncFn => {}
                    LocalSource::AwaitDesugar => {}
                    LocalSource::AssignDesugar => {}
                    LocalSource::Contract => {}
                }
            }
        }
    };StableHash)]
3116pub enum LocalSource {
3117    /// A `match _ { .. }`.
3118    Normal,
3119    /// When lowering async functions, we create locals within the `async move` so that
3120    /// all parameters are dropped after the future is polled.
3121    ///
3122    /// ```ignore (pseudo-Rust)
3123    /// async fn foo(<pattern> @ x: Type) {
3124    ///     async move {
3125    ///         let <pattern> = x;
3126    ///     }
3127    /// }
3128    /// ```
3129    AsyncFn,
3130    /// A desugared `<expr>.await`.
3131    AwaitDesugar,
3132    /// A desugared `expr = expr`, where the LHS is a tuple, struct, array or underscore expression.
3133    AssignDesugar,
3134    /// A contract `#[ensures(..)]` attribute injects a let binding for the check that runs at point of return.
3135    Contract,
3136}
3137
3138/// Hints at the original code for a `match _ { .. }`.
3139#[derive(#[automatically_derived]
impl ::core::marker::Copy for MatchSource { }Copy, #[automatically_derived]
impl ::core::clone::Clone for MatchSource {
    #[inline]
    fn clone(&self) -> MatchSource {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for MatchSource {
    #[inline]
    fn eq(&self, other: &MatchSource) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (MatchSource::TryDesugar(__self_0),
                    MatchSource::TryDesugar(__arg1_0)) => __self_0 == __arg1_0,
                _ => true,
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for MatchSource {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<HirId>;
    }
}Eq, #[automatically_derived]
impl ::core::hash::Hash for MatchSource {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        ::core::hash::Hash::hash(&__self_discr, state);
        match self {
            MatchSource::TryDesugar(__self_0) =>
                ::core::hash::Hash::hash(__self_0, state),
            _ => {}
        }
    }
}Hash, #[automatically_derived]
impl ::core::fmt::Debug for MatchSource {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            MatchSource::Normal =>
                ::core::fmt::Formatter::write_str(f, "Normal"),
            MatchSource::Postfix =>
                ::core::fmt::Formatter::write_str(f, "Postfix"),
            MatchSource::ForLoopDesugar =>
                ::core::fmt::Formatter::write_str(f, "ForLoopDesugar"),
            MatchSource::TryDesugar(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "TryDesugar", &__self_0),
            MatchSource::AwaitDesugar =>
                ::core::fmt::Formatter::write_str(f, "AwaitDesugar"),
            MatchSource::FormatArgs =>
                ::core::fmt::Formatter::write_str(f, "FormatArgs"),
        }
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for MatchSource
            {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    MatchSource::Normal => {}
                    MatchSource::Postfix => {}
                    MatchSource::ForLoopDesugar => {}
                    MatchSource::TryDesugar(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    MatchSource::AwaitDesugar => {}
                    MatchSource::FormatArgs => {}
                }
            }
        }
    };StableHash, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for MatchSource {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        MatchSource::Normal => { 0usize }
                        MatchSource::Postfix => { 1usize }
                        MatchSource::ForLoopDesugar => { 2usize }
                        MatchSource::TryDesugar(ref __binding_0) => { 3usize }
                        MatchSource::AwaitDesugar => { 4usize }
                        MatchSource::FormatArgs => { 5usize }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    MatchSource::Normal => {}
                    MatchSource::Postfix => {}
                    MatchSource::ForLoopDesugar => {}
                    MatchSource::TryDesugar(ref __binding_0) => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                    MatchSource::AwaitDesugar => {}
                    MatchSource::FormatArgs => {}
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for MatchSource {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => { MatchSource::Normal }
                    1usize => { MatchSource::Postfix }
                    2usize => { MatchSource::ForLoopDesugar }
                    3usize => {
                        MatchSource::TryDesugar(::rustc_serialize::Decodable::decode(__decoder))
                    }
                    4usize => { MatchSource::AwaitDesugar }
                    5usize => { MatchSource::FormatArgs }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `MatchSource`, expected 0..6, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable)]
3140pub enum MatchSource {
3141    /// A `match _ { .. }`.
3142    Normal,
3143    /// A `expr.match { .. }`.
3144    Postfix,
3145    /// A desugared `for _ in _ { .. }` loop.
3146    ForLoopDesugar,
3147    /// A desugared `?` operator.
3148    TryDesugar(HirId),
3149    /// A desugared `<expr>.await`.
3150    AwaitDesugar,
3151    /// A desugared `format_args!()`.
3152    FormatArgs,
3153}
3154
3155impl MatchSource {
3156    #[inline]
3157    pub const fn name(self) -> &'static str {
3158        use MatchSource::*;
3159        match self {
3160            Normal => "match",
3161            Postfix => ".match",
3162            ForLoopDesugar => "for",
3163            TryDesugar(_) => "?",
3164            AwaitDesugar => ".await",
3165            FormatArgs => "format_args!()",
3166        }
3167    }
3168}
3169
3170/// The loop type that yielded an `ExprKind::Loop`.
3171#[derive(#[automatically_derived]
impl ::core::marker::Copy for LoopSource { }Copy, #[automatically_derived]
impl ::core::clone::Clone for LoopSource {
    #[inline]
    fn clone(&self) -> LoopSource { *self }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for LoopSource {
    #[inline]
    fn eq(&self, other: &LoopSource) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq, #[automatically_derived]
impl ::core::fmt::Debug for LoopSource {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                LoopSource::Loop => "Loop",
                LoopSource::While => "While",
                LoopSource::ForLoop => "ForLoop",
            })
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for LoopSource {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    LoopSource::Loop => {}
                    LoopSource::While => {}
                    LoopSource::ForLoop => {}
                }
            }
        }
    };StableHash)]
3172pub enum LoopSource {
3173    /// A `loop { .. }` loop.
3174    Loop,
3175    /// A `while _ { .. }` loop.
3176    While,
3177    /// A `for _ in _ { .. }` loop.
3178    ForLoop,
3179}
3180
3181impl LoopSource {
3182    pub fn name(self) -> &'static str {
3183        match self {
3184            LoopSource::Loop => "loop",
3185            LoopSource::While => "while",
3186            LoopSource::ForLoop => "for",
3187        }
3188    }
3189}
3190
3191#[derive(#[automatically_derived]
impl ::core::marker::Copy for LoopIdError { }Copy, #[automatically_derived]
impl ::core::clone::Clone for LoopIdError {
    #[inline]
    fn clone(&self) -> LoopIdError { *self }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for LoopIdError {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                LoopIdError::OutsideLoopScope => "OutsideLoopScope",
                LoopIdError::UnlabeledCfInWhileCondition =>
                    "UnlabeledCfInWhileCondition",
                LoopIdError::UnresolvedLabel => "UnresolvedLabel",
            })
    }
}Debug, #[automatically_derived]
impl ::core::cmp::PartialEq for LoopIdError {
    #[inline]
    fn eq(&self, other: &LoopIdError) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for LoopIdError
            {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    LoopIdError::OutsideLoopScope => {}
                    LoopIdError::UnlabeledCfInWhileCondition => {}
                    LoopIdError::UnresolvedLabel => {}
                }
            }
        }
    };StableHash)]
3192pub enum LoopIdError {
3193    OutsideLoopScope,
3194    UnlabeledCfInWhileCondition,
3195    UnresolvedLabel,
3196}
3197
3198impl fmt::Display for LoopIdError {
3199    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
3200        f.write_str(match self {
3201            LoopIdError::OutsideLoopScope => "not inside loop scope",
3202            LoopIdError::UnlabeledCfInWhileCondition => {
3203                "unlabeled control flow (break or continue) in while condition"
3204            }
3205            LoopIdError::UnresolvedLabel => "label not found",
3206        })
3207    }
3208}
3209
3210#[derive(#[automatically_derived]
impl ::core::marker::Copy for Destination { }Copy, #[automatically_derived]
impl ::core::clone::Clone for Destination {
    #[inline]
    fn clone(&self) -> Destination {
        let _: ::core::clone::AssertParamIsClone<Option<Label>>;
        let _: ::core::clone::AssertParamIsClone<Result<HirId, LoopIdError>>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for Destination {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f, "Destination",
            "label", &self.label, "target_id", &&self.target_id)
    }
}Debug, #[automatically_derived]
impl ::core::cmp::PartialEq for Destination {
    #[inline]
    fn eq(&self, other: &Destination) -> bool {
        self.label == other.label && self.target_id == other.target_id
    }
}PartialEq, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for Destination
            {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Destination {
                        label: ref __binding_0, target_id: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3211pub struct Destination {
3212    /// This is `Some(_)` iff there is an explicit user-specified 'label
3213    pub label: Option<Label>,
3214
3215    /// These errors are caught and then reported during the diagnostics pass in
3216    /// `librustc_passes/loops.rs`
3217    pub target_id: Result<HirId, LoopIdError>,
3218}
3219
3220/// The yield kind that caused an `ExprKind::Yield`.
3221#[derive(#[automatically_derived]
impl ::core::marker::Copy for YieldSource { }Copy, #[automatically_derived]
impl ::core::clone::Clone for YieldSource {
    #[inline]
    fn clone(&self) -> YieldSource {
        let _: ::core::clone::AssertParamIsClone<Option<HirId>>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for YieldSource {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            YieldSource::Await { expr: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f, "Await",
                    "expr", &__self_0),
            YieldSource::Yield =>
                ::core::fmt::Formatter::write_str(f, "Yield"),
        }
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for YieldSource
            {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    YieldSource::Await { expr: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    YieldSource::Yield => {}
                }
            }
        }
    };StableHash)]
3222pub enum YieldSource {
3223    /// An `<expr>.await`.
3224    Await { expr: Option<HirId> },
3225    /// A plain `yield`.
3226    Yield,
3227}
3228
3229impl fmt::Display for YieldSource {
3230    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
3231        f.write_str(match self {
3232            YieldSource::Await { .. } => "`await`",
3233            YieldSource::Yield => "`yield`",
3234        })
3235    }
3236}
3237
3238// N.B., if you change this, you'll probably want to change the corresponding
3239// type structure in middle/ty.rs as well.
3240#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for MutTy<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f, "MutTy", "ty",
            &self.ty, "mutbl", &&self.mutbl)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for MutTy<'hir> {
    #[inline]
    fn clone(&self) -> MutTy<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Mutability>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for MutTy<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            MutTy<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    MutTy { ty: ref __binding_0, mutbl: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3241pub struct MutTy<'hir> {
3242    pub ty: &'hir Ty<'hir>,
3243    pub mutbl: Mutability,
3244}
3245
3246/// Represents a function's signature in a trait declaration,
3247/// trait implementation, or a free function.
3248#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for FnSig<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f, "FnSig",
            "header", &self.header, "decl", &self.decl, "span", &&self.span)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for FnSig<'hir> {
    #[inline]
    fn clone(&self) -> FnSig<'hir> {
        let _: ::core::clone::AssertParamIsClone<FnHeader>;
        let _: ::core::clone::AssertParamIsClone<&'hir FnDecl<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for FnSig<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            FnSig<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    FnSig {
                        header: ref __binding_0,
                        decl: ref __binding_1,
                        span: ref __binding_2 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3249pub struct FnSig<'hir> {
3250    pub header: FnHeader,
3251    pub decl: &'hir FnDecl<'hir>,
3252    pub span: Span,
3253}
3254
3255// The bodies for items are stored "out of line", in a separate
3256// hashmap in the `Crate`. Here we just record the hir-id of the item
3257// so it can fetched later.
3258#[derive(#[automatically_derived]
impl ::core::marker::Copy for TraitItemId { }Copy, #[automatically_derived]
impl ::core::clone::Clone for TraitItemId {
    #[inline]
    fn clone(&self) -> TraitItemId {
        let _: ::core::clone::AssertParamIsClone<OwnerId>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for TraitItemId {
    #[inline]
    fn eq(&self, other: &TraitItemId) -> bool {
        self.owner_id == other.owner_id
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for TraitItemId {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<OwnerId>;
    }
}Eq, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for TraitItemId {
            fn encode(&self, __encoder: &mut __E) {
                match *self {
                    TraitItemId { owner_id: ref __binding_0 } => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for TraitItemId {
            fn decode(__decoder: &mut __D) -> Self {
                TraitItemId {
                    owner_id: ::rustc_serialize::Decodable::decode(__decoder),
                }
            }
        }
    };Decodable, #[automatically_derived]
impl ::core::fmt::Debug for TraitItemId {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field1_finish(f, "TraitItemId",
            "owner_id", &&self.owner_id)
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for TraitItemId
            {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    TraitItemId { owner_id: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3259pub struct TraitItemId {
3260    pub owner_id: OwnerId,
3261}
3262
3263impl TraitItemId {
3264    #[inline]
3265    pub fn hir_id(&self) -> HirId {
3266        // Items are always HIR owners.
3267        HirId::make_owner(self.owner_id.def_id)
3268    }
3269}
3270
3271/// Represents an item declaration within a trait declaration,
3272/// possibly including a default implementation. A trait item is
3273/// either required (meaning it doesn't have an implementation, just a
3274/// signature) or provided (meaning it has a default implementation).
3275#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for TraitItem<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        let names: &'static _ =
            &["ident", "owner_id", "generics", "kind", "span", "defaultness",
                        "has_delayed_lints"];
        let values: &[&dyn ::core::fmt::Debug] =
            &[&self.ident, &self.owner_id, &self.generics, &self.kind,
                        &self.span, &self.defaultness, &&self.has_delayed_lints];
        ::core::fmt::Formatter::debug_struct_fields_finish(f, "TraitItem",
            names, values)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for TraitItem<'hir> {
    #[inline]
    fn clone(&self) -> TraitItem<'hir> {
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<OwnerId>;
        let _: ::core::clone::AssertParamIsClone<&'hir Generics<'hir>>;
        let _: ::core::clone::AssertParamIsClone<TraitItemKind<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<Defaultness>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for TraitItem<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            TraitItem<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    TraitItem {
                        ident: ref __binding_0,
                        owner_id: ref __binding_1,
                        generics: ref __binding_2,
                        kind: ref __binding_3,
                        span: ref __binding_4,
                        defaultness: ref __binding_5,
                        has_delayed_lints: ref __binding_6 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                        { __binding_5.stable_hash(__hcx, __hasher); }
                        { __binding_6.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3276pub struct TraitItem<'hir> {
3277    pub ident: Ident,
3278    pub owner_id: OwnerId,
3279    pub generics: &'hir Generics<'hir>,
3280    pub kind: TraitItemKind<'hir>,
3281    pub span: Span,
3282    pub defaultness: Defaultness,
3283    pub has_delayed_lints: bool,
3284}
3285
3286macro_rules! expect_methods_self_kind {
3287    ( $( $name:ident, $ret_ty:ty, $pat:pat, $ret_val:expr; )* ) => {
3288        $(
3289            #[track_caller]
3290            pub fn $name(&self) -> $ret_ty {
3291                let $pat = &self.kind else { expect_failed(stringify!($name), self) };
3292                $ret_val
3293            }
3294        )*
3295    }
3296}
3297
3298macro_rules! expect_methods_self {
3299    ( $( $name:ident, $ret_ty:ty, $pat:pat, $ret_val:expr; )* ) => {
3300        $(
3301            #[track_caller]
3302            pub fn $name(&self) -> $ret_ty {
3303                let $pat = self else { expect_failed(stringify!($name), self) };
3304                $ret_val
3305            }
3306        )*
3307    }
3308}
3309
3310#[track_caller]
3311fn expect_failed<T: fmt::Debug>(ident: &'static str, found: T) -> ! {
3312    {
    ::core::panicking::panic_fmt(format_args!("{0}: found {1:?}", ident,
            found));
}panic!("{ident}: found {found:?}")
3313}
3314
3315impl<'hir> TraitItem<'hir> {
3316    #[inline]
3317    pub fn hir_id(&self) -> HirId {
3318        // Items are always HIR owners.
3319        HirId::make_owner(self.owner_id.def_id)
3320    }
3321
3322    pub fn trait_item_id(&self) -> TraitItemId {
3323        TraitItemId { owner_id: self.owner_id }
3324    }
3325
3326    #[track_caller]
pub fn expect_type(&self) -> (GenericBounds<'hir>, Option<&'hir Ty<'hir>>) {
    let TraitItemKind::Type(bounds, ty) =
        &self.kind else { expect_failed("expect_type", self) };
    (bounds, *ty)
}expect_methods_self_kind! {
3327        expect_const, (&'hir Ty<'hir>, Option<ConstItemRhs<'hir>>),
3328            TraitItemKind::Const(ty, rhs), (ty, *rhs);
3329
3330        expect_fn, (&FnSig<'hir>, &TraitFn<'hir>),
3331            TraitItemKind::Fn(ty, trfn), (ty, trfn);
3332
3333        expect_type, (GenericBounds<'hir>, Option<&'hir Ty<'hir>>),
3334            TraitItemKind::Type(bounds, ty), (bounds, *ty);
3335    }
3336}
3337
3338/// Represents a trait method's body (or just argument names).
3339#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for TraitFn<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            TraitFn::Required(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "Required", &__self_0),
            TraitFn::Provided(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "Provided", &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for TraitFn<'hir> {
    #[inline]
    fn clone(&self) -> TraitFn<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir [Option<Ident>]>;
        let _: ::core::clone::AssertParamIsClone<BodyId>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for TraitFn<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            TraitFn<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    TraitFn::Required(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    TraitFn::Provided(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3340pub enum TraitFn<'hir> {
3341    /// No default body in the trait, just a signature.
3342    Required(&'hir [Option<Ident>]),
3343
3344    /// Both signature and body are provided in the trait.
3345    Provided(BodyId),
3346}
3347
3348/// Represents a trait method or associated constant or type
3349#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for TraitItemKind<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            TraitItemKind::Const(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Const",
                    __self_0, &__self_1),
            TraitItemKind::Fn(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Fn",
                    __self_0, &__self_1),
            TraitItemKind::Type(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Type",
                    __self_0, &__self_1),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for TraitItemKind<'hir> {
    #[inline]
    fn clone(&self) -> TraitItemKind<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Option<ConstItemRhs<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<FnSig<'hir>>;
        let _: ::core::clone::AssertParamIsClone<TraitFn<'hir>>;
        let _: ::core::clone::AssertParamIsClone<GenericBounds<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Ty<'hir>>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for TraitItemKind<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            TraitItemKind<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    TraitItemKind::Const(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    TraitItemKind::Fn(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    TraitItemKind::Type(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3350pub enum TraitItemKind<'hir> {
3351    /// An associated constant with an optional value (otherwise `impl`s must contain a value).
3352    Const(&'hir Ty<'hir>, Option<ConstItemRhs<'hir>>),
3353    /// An associated function with an optional body.
3354    Fn(FnSig<'hir>, TraitFn<'hir>),
3355    /// An associated type with (possibly empty) bounds and optional concrete
3356    /// type.
3357    Type(GenericBounds<'hir>, Option<&'hir Ty<'hir>>),
3358}
3359
3360// The bodies for items are stored "out of line", in a separate
3361// hashmap in the `Crate`. Here we just record the hir-id of the item
3362// so it can fetched later.
3363#[derive(#[automatically_derived]
impl ::core::marker::Copy for ImplItemId { }Copy, #[automatically_derived]
impl ::core::clone::Clone for ImplItemId {
    #[inline]
    fn clone(&self) -> ImplItemId {
        let _: ::core::clone::AssertParamIsClone<OwnerId>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for ImplItemId {
    #[inline]
    fn eq(&self, other: &ImplItemId) -> bool {
        self.owner_id == other.owner_id
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for ImplItemId {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<OwnerId>;
    }
}Eq, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for ImplItemId {
            fn encode(&self, __encoder: &mut __E) {
                match *self {
                    ImplItemId { owner_id: ref __binding_0 } => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for ImplItemId {
            fn decode(__decoder: &mut __D) -> Self {
                ImplItemId {
                    owner_id: ::rustc_serialize::Decodable::decode(__decoder),
                }
            }
        }
    };Decodable, #[automatically_derived]
impl ::core::fmt::Debug for ImplItemId {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field1_finish(f, "ImplItemId",
            "owner_id", &&self.owner_id)
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for ImplItemId {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    ImplItemId { owner_id: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3364pub struct ImplItemId {
3365    pub owner_id: OwnerId,
3366}
3367
3368impl ImplItemId {
3369    #[inline]
3370    pub fn hir_id(&self) -> HirId {
3371        // Items are always HIR owners.
3372        HirId::make_owner(self.owner_id.def_id)
3373    }
3374}
3375
3376/// Represents an associated item within an impl block.
3377///
3378/// Refer to [`Impl`] for an impl block declaration.
3379#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for ImplItem<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        let names: &'static _ =
            &["ident", "owner_id", "generics", "kind", "impl_kind", "span",
                        "has_delayed_lints"];
        let values: &[&dyn ::core::fmt::Debug] =
            &[&self.ident, &self.owner_id, &self.generics, &self.kind,
                        &self.impl_kind, &self.span, &&self.has_delayed_lints];
        ::core::fmt::Formatter::debug_struct_fields_finish(f, "ImplItem",
            names, values)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for ImplItem<'hir> {
    #[inline]
    fn clone(&self) -> ImplItem<'hir> {
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<OwnerId>;
        let _: ::core::clone::AssertParamIsClone<&'hir Generics<'hir>>;
        let _: ::core::clone::AssertParamIsClone<ImplItemKind<'hir>>;
        let _: ::core::clone::AssertParamIsClone<ImplItemImplKind>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for ImplItem<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            ImplItem<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    ImplItem {
                        ident: ref __binding_0,
                        owner_id: ref __binding_1,
                        generics: ref __binding_2,
                        kind: ref __binding_3,
                        impl_kind: ref __binding_4,
                        span: ref __binding_5,
                        has_delayed_lints: ref __binding_6 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                        { __binding_5.stable_hash(__hcx, __hasher); }
                        { __binding_6.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3380pub struct ImplItem<'hir> {
3381    pub ident: Ident,
3382    pub owner_id: OwnerId,
3383    pub generics: &'hir Generics<'hir>,
3384    pub kind: ImplItemKind<'hir>,
3385    pub impl_kind: ImplItemImplKind,
3386    pub span: Span,
3387    pub has_delayed_lints: bool,
3388}
3389
3390#[derive(#[automatically_derived]
impl ::core::fmt::Debug for ImplItemImplKind {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            ImplItemImplKind::Inherent { vis_span: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f,
                    "Inherent", "vis_span", &__self_0),
            ImplItemImplKind::Trait {
                defaultness: __self_0, trait_item_def_id: __self_1 } =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f, "Trait",
                    "defaultness", __self_0, "trait_item_def_id", &__self_1),
        }
    }
}Debug, #[automatically_derived]
impl ::core::clone::Clone for ImplItemImplKind {
    #[inline]
    fn clone(&self) -> ImplItemImplKind {
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<Defaultness>;
        let _:
                ::core::clone::AssertParamIsClone<Result<DefId,
                ErrorGuaranteed>>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::marker::Copy for ImplItemImplKind { }Copy, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            ImplItemImplKind {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    ImplItemImplKind::Inherent { vis_span: ref __binding_0 } =>
                        {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    ImplItemImplKind::Trait {
                        defaultness: ref __binding_0,
                        trait_item_def_id: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3391pub enum ImplItemImplKind {
3392    Inherent {
3393        vis_span: Span,
3394    },
3395    Trait {
3396        defaultness: Defaultness,
3397        /// Item in the trait that this item implements
3398        trait_item_def_id: Result<DefId, ErrorGuaranteed>,
3399    },
3400}
3401
3402impl<'hir> ImplItem<'hir> {
3403    #[inline]
3404    pub fn hir_id(&self) -> HirId {
3405        // Items are always HIR owners.
3406        HirId::make_owner(self.owner_id.def_id)
3407    }
3408
3409    pub fn impl_item_id(&self) -> ImplItemId {
3410        ImplItemId { owner_id: self.owner_id }
3411    }
3412
3413    pub fn vis_span(&self) -> Option<Span> {
3414        match self.impl_kind {
3415            ImplItemImplKind::Trait { .. } => None,
3416            ImplItemImplKind::Inherent { vis_span, .. } => Some(vis_span),
3417        }
3418    }
3419
3420    #[track_caller]
pub fn expect_type(&self) -> &'hir Ty<'hir> {
    let ImplItemKind::Type(ty) =
        &self.kind else { expect_failed("expect_type", self) };
    ty
}expect_methods_self_kind! {
3421        expect_const, (&'hir Ty<'hir>, ConstItemRhs<'hir>), ImplItemKind::Const(ty, rhs), (ty, *rhs);
3422        expect_fn,    (&FnSig<'hir>, BodyId),               ImplItemKind::Fn(ty, body),   (ty, *body);
3423        expect_type,  &'hir Ty<'hir>,                       ImplItemKind::Type(ty),       ty;
3424    }
3425}
3426
3427/// Represents various kinds of content within an `impl`.
3428#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for ImplItemKind<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            ImplItemKind::Const(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Const",
                    __self_0, &__self_1),
            ImplItemKind::Fn(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Fn",
                    __self_0, &__self_1),
            ImplItemKind::Type(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Type",
                    &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for ImplItemKind<'hir> {
    #[inline]
    fn clone(&self) -> ImplItemKind<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<ConstItemRhs<'hir>>;
        let _: ::core::clone::AssertParamIsClone<FnSig<'hir>>;
        let _: ::core::clone::AssertParamIsClone<BodyId>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for ImplItemKind<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            ImplItemKind<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    ImplItemKind::Const(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ImplItemKind::Fn(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ImplItemKind::Type(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3429pub enum ImplItemKind<'hir> {
3430    /// An associated constant of the given type, set to the constant result
3431    /// of the expression.
3432    Const(&'hir Ty<'hir>, ConstItemRhs<'hir>),
3433    /// An associated function implementation with the given signature and body.
3434    Fn(FnSig<'hir>, BodyId),
3435    /// An associated type.
3436    Type(&'hir Ty<'hir>),
3437}
3438
3439/// A constraint on an associated item.
3440///
3441/// ### Examples
3442///
3443/// * the `A = Ty` and `B = Ty` in `Trait<A = Ty, B = Ty>`
3444/// * the `G<Ty> = Ty` in `Trait<G<Ty> = Ty>`
3445/// * the `A: Bound` in `Trait<A: Bound>`
3446/// * the `RetTy` in `Trait(ArgTy, ArgTy) -> RetTy`
3447/// * the `C = { Ct }` in `Trait<C = { Ct }>` (feature `min_generic_const_args`)
3448/// * the `f(..): Bound` in `Trait<f(..): Bound>` (feature `return_type_notation`)
3449#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for AssocItemConstraint<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field5_finish(f,
            "AssocItemConstraint", "hir_id", &self.hir_id, "ident",
            &self.ident, "gen_args", &self.gen_args, "kind", &self.kind,
            "span", &&self.span)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for AssocItemConstraint<'hir> {
    #[inline]
    fn clone(&self) -> AssocItemConstraint<'hir> {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<&'hir GenericArgs<'hir>>;
        let _:
                ::core::clone::AssertParamIsClone<AssocItemConstraintKind<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for AssocItemConstraint<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            AssocItemConstraint<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    AssocItemConstraint {
                        hir_id: ref __binding_0,
                        ident: ref __binding_1,
                        gen_args: ref __binding_2,
                        kind: ref __binding_3,
                        span: ref __binding_4 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3450pub struct AssocItemConstraint<'hir> {
3451    #[stable_hash(ignore)]
3452    pub hir_id: HirId,
3453    pub ident: Ident,
3454    pub gen_args: &'hir GenericArgs<'hir>,
3455    pub kind: AssocItemConstraintKind<'hir>,
3456    pub span: Span,
3457}
3458
3459impl<'hir> AssocItemConstraint<'hir> {
3460    /// Obtain the type on the RHS of an assoc ty equality constraint if applicable.
3461    pub fn ty(self) -> Option<&'hir Ty<'hir>> {
3462        match self.kind {
3463            AssocItemConstraintKind::Equality { term: Term::Ty(ty) } => Some(ty),
3464            _ => None,
3465        }
3466    }
3467
3468    /// Obtain the const on the RHS of an assoc const equality constraint if applicable.
3469    pub fn ct(self) -> Option<&'hir ConstArg<'hir>> {
3470        match self.kind {
3471            AssocItemConstraintKind::Equality { term: Term::Const(ct) } => Some(ct),
3472            _ => None,
3473        }
3474    }
3475}
3476
3477#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for Term<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            Term::Ty(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Ty",
                    &__self_0),
            Term::Const(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Const",
                    &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Term<'hir> {
    #[inline]
    fn clone(&self) -> Term<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir ConstArg<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for Term<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Term<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    Term::Ty(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Term::Const(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3478pub enum Term<'hir> {
3479    Ty(&'hir Ty<'hir>),
3480    Const(&'hir ConstArg<'hir>),
3481}
3482
3483impl<'hir> From<&'hir Ty<'hir>> for Term<'hir> {
3484    fn from(ty: &'hir Ty<'hir>) -> Self {
3485        Term::Ty(ty)
3486    }
3487}
3488
3489impl<'hir> From<&'hir ConstArg<'hir>> for Term<'hir> {
3490    fn from(c: &'hir ConstArg<'hir>) -> Self {
3491        Term::Const(c)
3492    }
3493}
3494
3495/// The kind of [associated item constraint][AssocItemConstraint].
3496#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for AssocItemConstraintKind<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            AssocItemConstraintKind::Equality { term: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f,
                    "Equality", "term", &__self_0),
            AssocItemConstraintKind::Bound { bounds: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f, "Bound",
                    "bounds", &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for AssocItemConstraintKind<'hir> {
    #[inline]
    fn clone(&self) -> AssocItemConstraintKind<'hir> {
        let _: ::core::clone::AssertParamIsClone<Term<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [GenericBound<'hir>]>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for AssocItemConstraintKind<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            AssocItemConstraintKind<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    AssocItemConstraintKind::Equality { term: ref __binding_0 }
                        => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    AssocItemConstraintKind::Bound { bounds: ref __binding_0 }
                        => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3497pub enum AssocItemConstraintKind<'hir> {
3498    /// An equality constraint for an associated item (e.g., `AssocTy = Ty` in `Trait<AssocTy = Ty>`).
3499    ///
3500    /// Also known as an *associated item binding* (we *bind* an associated item to a term).
3501    ///
3502    /// Furthermore, associated type equality constraints can also be referred to as *associated type
3503    /// bindings*. Similarly with associated const equality constraints and *associated const bindings*.
3504    Equality { term: Term<'hir> },
3505    /// A bound on an associated type (e.g., `AssocTy: Bound` in `Trait<AssocTy: Bound>`).
3506    Bound { bounds: &'hir [GenericBound<'hir>] },
3507}
3508
3509impl<'hir> AssocItemConstraintKind<'hir> {
3510    pub fn descr(&self) -> &'static str {
3511        match self {
3512            AssocItemConstraintKind::Equality { .. } => "binding",
3513            AssocItemConstraintKind::Bound { .. } => "constraint",
3514        }
3515    }
3516}
3517
3518/// An uninhabited enum used to make `Infer` variants on [`Ty`] and [`ConstArg`] be
3519/// unreachable. Zero-Variant enums are guaranteed to have the same layout as the never
3520/// type.
3521#[derive(#[automatically_derived]
impl ::core::fmt::Debug for AmbigArg {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match *self {}
    }
}Debug, #[automatically_derived]
impl ::core::clone::Clone for AmbigArg {
    #[inline]
    fn clone(&self) -> AmbigArg { *self }
}Clone, #[automatically_derived]
impl ::core::marker::Copy for AmbigArg { }Copy, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for AmbigArg {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {}
            }
        }
    };StableHash)]
3522pub enum AmbigArg {}
3523
3524/// Represents a type in the `HIR`.
3525///
3526/// For an explanation of the `Unambig` generic parameter see the dev-guide:
3527/// <https://rustc-dev-guide.rust-lang.org/ambig-unambig-ty-and-consts.html>
3528#[derive(#[automatically_derived]
impl<'hir, Unambig: ::core::fmt::Debug> ::core::fmt::Debug for
    Ty<'hir, Unambig> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f, "Ty", "hir_id",
            &self.hir_id, "span", &self.span, "kind", &&self.kind)
    }
}Debug, #[automatically_derived]
impl<'hir, Unambig: ::core::clone::Clone> ::core::clone::Clone for
    Ty<'hir, Unambig> {
    #[inline]
    fn clone(&self) -> Ty<'hir, Unambig> {
        Ty {
            hir_id: ::core::clone::Clone::clone(&self.hir_id),
            span: ::core::clone::Clone::clone(&self.span),
            kind: ::core::clone::Clone::clone(&self.kind),
        }
    }
}Clone, #[automatically_derived]
impl<'hir, Unambig: ::core::marker::Copy> ::core::marker::Copy for
    Ty<'hir, Unambig> {
}Copy, const _: () =
    {
        impl<'hir, Unambig> ::rustc_data_structures::stable_hash::StableHash
            for Ty<'hir, Unambig> where
            Unambig: ::rustc_data_structures::stable_hash::StableHash {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Ty {
                        hir_id: ref __binding_0,
                        span: ref __binding_1,
                        kind: ref __binding_2 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3529#[repr(C)]
3530pub struct Ty<'hir, Unambig = ()> {
3531    #[stable_hash(ignore)]
3532    pub hir_id: HirId,
3533    pub span: Span,
3534    pub kind: TyKind<'hir, Unambig>,
3535}
3536
3537impl<'hir> Ty<'hir, AmbigArg> {
3538    /// Converts a `Ty` in an ambiguous position to one in an unambiguous position.
3539    ///
3540    /// Functions accepting an unambiguous types may expect the [`TyKind::Infer`] variant
3541    /// to be used. Care should be taken to separately handle infer types when calling this
3542    /// function as it cannot be handled by downstream code making use of the returned ty.
3543    ///
3544    /// In practice this may mean overriding the [`Visitor::visit_infer`][visit_infer] method on hir visitors, or
3545    /// specifically matching on [`GenericArg::Infer`] when handling generic arguments.
3546    ///
3547    /// [visit_infer]: [rustc_hir::intravisit::Visitor::visit_infer]
3548    pub fn as_unambig_ty(&self) -> &Ty<'hir> {
3549        // SAFETY: `Ty` is `repr(C)` and `TyKind` is marked `repr(u8)` so that the layout is
3550        // the same across different ZST type arguments.
3551        let ptr = self as *const Ty<'hir, AmbigArg> as *const Ty<'hir, ()>;
3552        unsafe { &*ptr }
3553    }
3554}
3555
3556impl<'hir> Ty<'hir> {
3557    /// Converts a `Ty` in an unambiguous position to one in an ambiguous position. This is
3558    /// fallible as the [`TyKind::Infer`] variant is not present in ambiguous positions.
3559    ///
3560    /// Functions accepting ambiguous types will not handle the [`TyKind::Infer`] variant, if
3561    /// infer types are relevant to you then care should be taken to handle them separately.
3562    pub fn try_as_ambig_ty(&self) -> Option<&Ty<'hir, AmbigArg>> {
3563        if let TyKind::Infer(()) = self.kind {
3564            return None;
3565        }
3566
3567        // SAFETY: `Ty` is `repr(C)` and `TyKind` is marked `repr(u8)` so that the layout is
3568        // the same across different ZST type arguments. We also asserted that the `self` is
3569        // not a `TyKind::Infer` so there is no risk of transmuting a `()` to `AmbigArg`.
3570        let ptr = self as *const Ty<'hir> as *const Ty<'hir, AmbigArg>;
3571        Some(unsafe { &*ptr })
3572    }
3573}
3574
3575impl<'hir> Ty<'hir, AmbigArg> {
3576    pub fn peel_refs(&self) -> &Ty<'hir> {
3577        let mut final_ty = self.as_unambig_ty();
3578        while let TyKind::Ref(_, MutTy { ty, .. }) = &final_ty.kind {
3579            final_ty = ty;
3580        }
3581        final_ty
3582    }
3583}
3584
3585impl<'hir> Ty<'hir> {
3586    pub fn peel_refs(&self) -> &Self {
3587        let mut final_ty = self;
3588        while let TyKind::Ref(_, MutTy { ty, .. }) = &final_ty.kind {
3589            final_ty = ty;
3590        }
3591        final_ty
3592    }
3593
3594    /// Returns `true` if `param_def_id` matches the `bounded_ty` of this predicate.
3595    pub fn as_generic_param(&self) -> Option<(DefId, Ident)> {
3596        let TyKind::Path(QPath::Resolved(None, path)) = self.kind else {
3597            return None;
3598        };
3599        let [segment] = &path.segments else {
3600            return None;
3601        };
3602        match path.res {
3603            Res::Def(DefKind::TyParam, def_id) | Res::SelfTyParam { trait_: def_id } => {
3604                Some((def_id, segment.ident))
3605            }
3606            _ => None,
3607        }
3608    }
3609
3610    pub fn find_self_aliases(&self) -> Vec<Span> {
3611        use crate::intravisit::Visitor;
3612        struct MyVisitor(Vec<Span>);
3613        impl<'v> Visitor<'v> for MyVisitor {
3614            fn visit_ty(&mut self, t: &'v Ty<'v, AmbigArg>) {
3615                if #[allow(non_exhaustive_omitted_patterns)] match &t.kind {
    TyKind::Path(QPath::Resolved(_, Path {
        res: crate::def::Res::SelfTyAlias { .. }, .. })) => true,
    _ => false,
}matches!(
3616                    &t.kind,
3617                    TyKind::Path(QPath::Resolved(
3618                        _,
3619                        Path { res: crate::def::Res::SelfTyAlias { .. }, .. },
3620                    ))
3621                ) {
3622                    self.0.push(t.span);
3623                    return;
3624                }
3625                crate::intravisit::walk_ty(self, t);
3626            }
3627        }
3628
3629        let mut my_visitor = MyVisitor(::alloc::vec::Vec::new()vec![]);
3630        my_visitor.visit_ty_unambig(self);
3631        my_visitor.0
3632    }
3633
3634    /// Whether `ty` is a type with `_` placeholders that can be inferred. Used in diagnostics only to
3635    /// use inference to provide suggestions for the appropriate type if possible.
3636    pub fn is_suggestable_infer_ty(&self) -> bool {
3637        fn are_suggestable_generic_args(generic_args: &[GenericArg<'_>]) -> bool {
3638            generic_args.iter().any(|arg| match arg {
3639                GenericArg::Type(ty) => ty.as_unambig_ty().is_suggestable_infer_ty(),
3640                GenericArg::Infer(_) => true,
3641                _ => false,
3642            })
3643        }
3644        {
    use ::tracing::__macro_support::Callsite as _;
    static __CALLSITE: ::tracing::callsite::DefaultCallsite =
        {
            static META: ::tracing::Metadata<'static> =
                {
                    ::tracing_core::metadata::Metadata::new("event compiler/rustc_hir/src/hir.rs:3644",
                        "rustc_hir::hir", ::tracing::Level::DEBUG,
                        ::tracing_core::__macro_support::Option::Some("compiler/rustc_hir/src/hir.rs"),
                        ::tracing_core::__macro_support::Option::Some(3644u32),
                        ::tracing_core::__macro_support::Option::Some("rustc_hir::hir"),
                        ::tracing_core::field::FieldSet::new(&["self"],
                            ::tracing_core::callsite::Identifier(&__CALLSITE)),
                        ::tracing::metadata::Kind::EVENT)
                };
            ::tracing::callsite::DefaultCallsite::new(&META)
        };
    let enabled =
        ::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::DEBUG <=
                    ::tracing::level_filters::LevelFilter::current() &&
            {
                let interest = __CALLSITE.interest();
                !interest.is_never() &&
                    ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                        interest)
            };
    if enabled {
        (|value_set: ::tracing::field::ValueSet|
                    {
                        let meta = __CALLSITE.metadata();
                        ::tracing::Event::dispatch(meta, &value_set);
                        ;
                    })({
                #[allow(unused_imports)]
                use ::tracing::field::{debug, display, Value};
                let mut iter = __CALLSITE.metadata().fields().iter();
                __CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
                                    ::tracing::__macro_support::Option::Some(&debug(&self) as
                                            &dyn Value))])
            });
    } else { ; }
};debug!(?self);
3645        match &self.kind {
3646            TyKind::Infer(()) => true,
3647            TyKind::Slice(ty) => ty.is_suggestable_infer_ty(),
3648            TyKind::Array(ty, length) => {
3649                ty.is_suggestable_infer_ty() || #[allow(non_exhaustive_omitted_patterns)] match length.kind {
    ConstArgKind::Infer(..) => true,
    _ => false,
}matches!(length.kind, ConstArgKind::Infer(..))
3650            }
3651            TyKind::Tup(tys) => tys.iter().any(Self::is_suggestable_infer_ty),
3652            TyKind::Ptr(mut_ty) | TyKind::Ref(_, mut_ty) => mut_ty.ty.is_suggestable_infer_ty(),
3653            TyKind::Path(QPath::TypeRelative(ty, segment)) => {
3654                ty.is_suggestable_infer_ty() || are_suggestable_generic_args(segment.args().args)
3655            }
3656            TyKind::Path(QPath::Resolved(ty_opt, Path { segments, .. })) => {
3657                ty_opt.is_some_and(Self::is_suggestable_infer_ty)
3658                    || segments
3659                        .iter()
3660                        .any(|segment| are_suggestable_generic_args(segment.args().args))
3661            }
3662            _ => false,
3663        }
3664    }
3665}
3666
3667/// Not represented directly in the AST; referred to by name through a `ty_path`.
3668#[derive(#[automatically_derived]
impl ::core::marker::Copy for PrimTy { }Copy, #[automatically_derived]
impl ::core::clone::Clone for PrimTy {
    #[inline]
    fn clone(&self) -> PrimTy {
        let _: ::core::clone::AssertParamIsClone<IntTy>;
        let _: ::core::clone::AssertParamIsClone<UintTy>;
        let _: ::core::clone::AssertParamIsClone<FloatTy>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for PrimTy {
    #[inline]
    fn eq(&self, other: &PrimTy) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (PrimTy::Int(__self_0), PrimTy::Int(__arg1_0)) =>
                    __self_0 == __arg1_0,
                (PrimTy::Uint(__self_0), PrimTy::Uint(__arg1_0)) =>
                    __self_0 == __arg1_0,
                (PrimTy::Float(__self_0), PrimTy::Float(__arg1_0)) =>
                    __self_0 == __arg1_0,
                _ => true,
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for PrimTy {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<IntTy>;
        let _: ::core::cmp::AssertParamIsEq<UintTy>;
        let _: ::core::cmp::AssertParamIsEq<FloatTy>;
    }
}Eq, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for PrimTy {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        PrimTy::Int(ref __binding_0) => { 0usize }
                        PrimTy::Uint(ref __binding_0) => { 1usize }
                        PrimTy::Float(ref __binding_0) => { 2usize }
                        PrimTy::Str => { 3usize }
                        PrimTy::Bool => { 4usize }
                        PrimTy::Char => { 5usize }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    PrimTy::Int(ref __binding_0) => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                    PrimTy::Uint(ref __binding_0) => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                    PrimTy::Float(ref __binding_0) => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                    PrimTy::Str => {}
                    PrimTy::Bool => {}
                    PrimTy::Char => {}
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for PrimTy {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => {
                        PrimTy::Int(::rustc_serialize::Decodable::decode(__decoder))
                    }
                    1usize => {
                        PrimTy::Uint(::rustc_serialize::Decodable::decode(__decoder))
                    }
                    2usize => {
                        PrimTy::Float(::rustc_serialize::Decodable::decode(__decoder))
                    }
                    3usize => { PrimTy::Str }
                    4usize => { PrimTy::Bool }
                    5usize => { PrimTy::Char }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `PrimTy`, expected 0..6, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable, #[automatically_derived]
impl ::core::hash::Hash for PrimTy {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        ::core::hash::Hash::hash(&__self_discr, state);
        match self {
            PrimTy::Int(__self_0) =>
                ::core::hash::Hash::hash(__self_0, state),
            PrimTy::Uint(__self_0) =>
                ::core::hash::Hash::hash(__self_0, state),
            PrimTy::Float(__self_0) =>
                ::core::hash::Hash::hash(__self_0, state),
            _ => {}
        }
    }
}Hash, #[automatically_derived]
impl ::core::fmt::Debug for PrimTy {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            PrimTy::Int(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Int",
                    &__self_0),
            PrimTy::Uint(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Uint",
                    &__self_0),
            PrimTy::Float(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Float",
                    &__self_0),
            PrimTy::Str => ::core::fmt::Formatter::write_str(f, "Str"),
            PrimTy::Bool => ::core::fmt::Formatter::write_str(f, "Bool"),
            PrimTy::Char => ::core::fmt::Formatter::write_str(f, "Char"),
        }
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for PrimTy {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    PrimTy::Int(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    PrimTy::Uint(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    PrimTy::Float(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    PrimTy::Str => {}
                    PrimTy::Bool => {}
                    PrimTy::Char => {}
                }
            }
        }
    };StableHash)]
3669pub enum PrimTy {
3670    Int(IntTy),
3671    Uint(UintTy),
3672    Float(FloatTy),
3673    Str,
3674    Bool,
3675    Char,
3676}
3677
3678impl PrimTy {
3679    /// All of the primitive types
3680    pub const ALL: [Self; 19] = [
3681        // any changes here should also be reflected in `PrimTy::from_name`
3682        Self::Int(IntTy::I8),
3683        Self::Int(IntTy::I16),
3684        Self::Int(IntTy::I32),
3685        Self::Int(IntTy::I64),
3686        Self::Int(IntTy::I128),
3687        Self::Int(IntTy::Isize),
3688        Self::Uint(UintTy::U8),
3689        Self::Uint(UintTy::U16),
3690        Self::Uint(UintTy::U32),
3691        Self::Uint(UintTy::U64),
3692        Self::Uint(UintTy::U128),
3693        Self::Uint(UintTy::Usize),
3694        Self::Float(FloatTy::F16),
3695        Self::Float(FloatTy::F32),
3696        Self::Float(FloatTy::F64),
3697        Self::Float(FloatTy::F128),
3698        Self::Bool,
3699        Self::Char,
3700        Self::Str,
3701    ];
3702
3703    /// Like [`PrimTy::name`], but returns a &str instead of a symbol.
3704    ///
3705    /// Used by clippy.
3706    pub fn name_str(self) -> &'static str {
3707        match self {
3708            PrimTy::Int(i) => i.name_str(),
3709            PrimTy::Uint(u) => u.name_str(),
3710            PrimTy::Float(f) => f.name_str(),
3711            PrimTy::Str => "str",
3712            PrimTy::Bool => "bool",
3713            PrimTy::Char => "char",
3714        }
3715    }
3716
3717    pub fn name(self) -> Symbol {
3718        match self {
3719            PrimTy::Int(i) => i.name(),
3720            PrimTy::Uint(u) => u.name(),
3721            PrimTy::Float(f) => f.name(),
3722            PrimTy::Str => sym::str,
3723            PrimTy::Bool => sym::bool,
3724            PrimTy::Char => sym::char,
3725        }
3726    }
3727
3728    /// Returns the matching `PrimTy` for a `Symbol` such as "str" or "i32".
3729    /// Returns `None` if no matching type is found.
3730    pub fn from_name(name: Symbol) -> Option<Self> {
3731        let ty = match name {
3732            // any changes here should also be reflected in `PrimTy::ALL`
3733            sym::i8 => Self::Int(IntTy::I8),
3734            sym::i16 => Self::Int(IntTy::I16),
3735            sym::i32 => Self::Int(IntTy::I32),
3736            sym::i64 => Self::Int(IntTy::I64),
3737            sym::i128 => Self::Int(IntTy::I128),
3738            sym::isize => Self::Int(IntTy::Isize),
3739            sym::u8 => Self::Uint(UintTy::U8),
3740            sym::u16 => Self::Uint(UintTy::U16),
3741            sym::u32 => Self::Uint(UintTy::U32),
3742            sym::u64 => Self::Uint(UintTy::U64),
3743            sym::u128 => Self::Uint(UintTy::U128),
3744            sym::usize => Self::Uint(UintTy::Usize),
3745            sym::f16 => Self::Float(FloatTy::F16),
3746            sym::f32 => Self::Float(FloatTy::F32),
3747            sym::f64 => Self::Float(FloatTy::F64),
3748            sym::f128 => Self::Float(FloatTy::F128),
3749            sym::bool => Self::Bool,
3750            sym::char => Self::Char,
3751            sym::str => Self::Str,
3752            _ => return None,
3753        };
3754        Some(ty)
3755    }
3756}
3757
3758#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for FnPtrTy<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field5_finish(f, "FnPtrTy",
            "safety", &self.safety, "abi", &self.abi, "generic_params",
            &self.generic_params, "decl", &self.decl, "param_idents",
            &&self.param_idents)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for FnPtrTy<'hir> {
    #[inline]
    fn clone(&self) -> FnPtrTy<'hir> {
        let _: ::core::clone::AssertParamIsClone<Safety>;
        let _: ::core::clone::AssertParamIsClone<ExternAbi>;
        let _: ::core::clone::AssertParamIsClone<&'hir [GenericParam<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<&'hir FnDecl<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [Option<Ident>]>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for FnPtrTy<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            FnPtrTy<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    FnPtrTy {
                        safety: ref __binding_0,
                        abi: ref __binding_1,
                        generic_params: ref __binding_2,
                        decl: ref __binding_3,
                        param_idents: ref __binding_4 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3759pub struct FnPtrTy<'hir> {
3760    pub safety: Safety,
3761    pub abi: ExternAbi,
3762    pub generic_params: &'hir [GenericParam<'hir>],
3763    pub decl: &'hir FnDecl<'hir>,
3764    // `Option` because bare fn parameter identifiers are optional. We also end up
3765    // with `None` in some error cases, e.g. invalid parameter patterns.
3766    pub param_idents: &'hir [Option<Ident>],
3767}
3768
3769#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for UnsafeBinderTy<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f,
            "UnsafeBinderTy", "generic_params", &self.generic_params,
            "inner_ty", &&self.inner_ty)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for UnsafeBinderTy<'hir> {
    #[inline]
    fn clone(&self) -> UnsafeBinderTy<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir [GenericParam<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for UnsafeBinderTy<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            UnsafeBinderTy<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    UnsafeBinderTy {
                        generic_params: ref __binding_0, inner_ty: ref __binding_1 }
                        => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3770pub struct UnsafeBinderTy<'hir> {
3771    pub generic_params: &'hir [GenericParam<'hir>],
3772    pub inner_ty: &'hir Ty<'hir>,
3773}
3774
3775#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for OpaqueTy<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field5_finish(f, "OpaqueTy",
            "hir_id", &self.hir_id, "def_id", &self.def_id, "bounds",
            &self.bounds, "origin", &self.origin, "span", &&self.span)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for OpaqueTy<'hir> {
    #[inline]
    fn clone(&self) -> OpaqueTy<'hir> {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<LocalDefId>;
        let _: ::core::clone::AssertParamIsClone<GenericBounds<'hir>>;
        let _: ::core::clone::AssertParamIsClone<OpaqueTyOrigin<LocalDefId>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for OpaqueTy<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            OpaqueTy<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    OpaqueTy {
                        hir_id: ref __binding_0,
                        def_id: ref __binding_1,
                        bounds: ref __binding_2,
                        origin: ref __binding_3,
                        span: ref __binding_4 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3776pub struct OpaqueTy<'hir> {
3777    #[stable_hash(ignore)]
3778    pub hir_id: HirId,
3779    pub def_id: LocalDefId,
3780    pub bounds: GenericBounds<'hir>,
3781    pub origin: OpaqueTyOrigin<LocalDefId>,
3782    pub span: Span,
3783}
3784
3785#[derive(#[automatically_derived]
impl<T: ::core::fmt::Debug, U: ::core::fmt::Debug> ::core::fmt::Debug for
    PreciseCapturingArgKind<T, U> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            PreciseCapturingArgKind::Lifetime(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "Lifetime", &__self_0),
            PreciseCapturingArgKind::Param(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Param",
                    &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<T: ::core::clone::Clone, U: ::core::clone::Clone> ::core::clone::Clone
    for PreciseCapturingArgKind<T, U> {
    #[inline]
    fn clone(&self) -> PreciseCapturingArgKind<T, U> {
        match self {
            PreciseCapturingArgKind::Lifetime(__self_0) =>
                PreciseCapturingArgKind::Lifetime(::core::clone::Clone::clone(__self_0)),
            PreciseCapturingArgKind::Param(__self_0) =>
                PreciseCapturingArgKind::Param(::core::clone::Clone::clone(__self_0)),
        }
    }
}Clone, #[automatically_derived]
impl<T: ::core::marker::Copy, U: ::core::marker::Copy> ::core::marker::Copy
    for PreciseCapturingArgKind<T, U> {
}Copy, const _: () =
    {
        impl<T, U> ::rustc_data_structures::stable_hash::StableHash for
            PreciseCapturingArgKind<T, U> where
            T: ::rustc_data_structures::stable_hash::StableHash,
            U: ::rustc_data_structures::stable_hash::StableHash {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    PreciseCapturingArgKind::Lifetime(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    PreciseCapturingArgKind::Param(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash, const _: () =
    {
        impl<T, U, __E: ::rustc_span::SpanEncoder>
            ::rustc_serialize::Encodable<__E> for
            PreciseCapturingArgKind<T, U> where
            T: ::rustc_serialize::Encodable<__E>,
            U: ::rustc_serialize::Encodable<__E> {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        PreciseCapturingArgKind::Lifetime(ref __binding_0) => {
                            0usize
                        }
                        PreciseCapturingArgKind::Param(ref __binding_0) => {
                            1usize
                        }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    PreciseCapturingArgKind::Lifetime(ref __binding_0) => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                    PreciseCapturingArgKind::Param(ref __binding_0) => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<T, U, __D: ::rustc_span::SpanDecoder>
            ::rustc_serialize::Decodable<__D> for
            PreciseCapturingArgKind<T, U> where
            T: ::rustc_serialize::Decodable<__D>,
            U: ::rustc_serialize::Decodable<__D> {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => {
                        PreciseCapturingArgKind::Lifetime(::rustc_serialize::Decodable::decode(__decoder))
                    }
                    1usize => {
                        PreciseCapturingArgKind::Param(::rustc_serialize::Decodable::decode(__decoder))
                    }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `PreciseCapturingArgKind`, expected 0..2, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable)]
3786pub enum PreciseCapturingArgKind<T, U> {
3787    Lifetime(T),
3788    /// Non-lifetime argument (type or const)
3789    Param(U),
3790}
3791
3792pub type PreciseCapturingArg<'hir> =
3793    PreciseCapturingArgKind<&'hir Lifetime, PreciseCapturingNonLifetimeArg>;
3794
3795impl PreciseCapturingArg<'_> {
3796    pub fn hir_id(self) -> HirId {
3797        match self {
3798            PreciseCapturingArg::Lifetime(lt) => lt.hir_id,
3799            PreciseCapturingArg::Param(param) => param.hir_id,
3800        }
3801    }
3802
3803    pub fn name(self) -> Symbol {
3804        match self {
3805            PreciseCapturingArg::Lifetime(lt) => lt.ident.name,
3806            PreciseCapturingArg::Param(param) => param.ident.name,
3807        }
3808    }
3809}
3810
3811/// We need to have a [`Node`] for the [`HirId`] that we attach the type/const param
3812/// resolution to. Lifetimes don't have this problem, and for them, it's actually
3813/// kind of detrimental to use a custom node type versus just using [`Lifetime`],
3814/// since resolve_bound_vars operates on `Lifetime`s.
3815#[derive(#[automatically_derived]
impl ::core::fmt::Debug for PreciseCapturingNonLifetimeArg {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f,
            "PreciseCapturingNonLifetimeArg", "hir_id", &self.hir_id, "ident",
            &self.ident, "res", &&self.res)
    }
}Debug, #[automatically_derived]
impl ::core::clone::Clone for PreciseCapturingNonLifetimeArg {
    #[inline]
    fn clone(&self) -> PreciseCapturingNonLifetimeArg {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<Res>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::marker::Copy for PreciseCapturingNonLifetimeArg { }Copy, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            PreciseCapturingNonLifetimeArg {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    PreciseCapturingNonLifetimeArg {
                        hir_id: ref __binding_0,
                        ident: ref __binding_1,
                        res: ref __binding_2 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3816pub struct PreciseCapturingNonLifetimeArg {
3817    #[stable_hash(ignore)]
3818    pub hir_id: HirId,
3819    pub ident: Ident,
3820    pub res: Res,
3821}
3822
3823#[derive(#[automatically_derived]
impl ::core::marker::Copy for RpitContext { }Copy, #[automatically_derived]
impl ::core::clone::Clone for RpitContext {
    #[inline]
    fn clone(&self) -> RpitContext { *self }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for RpitContext {
    #[inline]
    fn eq(&self, other: &RpitContext) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for RpitContext {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {}
}Eq, #[automatically_derived]
impl ::core::fmt::Debug for RpitContext {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                RpitContext::Trait => "Trait",
                RpitContext::TraitImpl => "TraitImpl",
            })
    }
}Debug)]
3824#[derive(const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for RpitContext
            {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    RpitContext::Trait => {}
                    RpitContext::TraitImpl => {}
                }
            }
        }
    };StableHash, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for RpitContext {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        RpitContext::Trait => { 0usize }
                        RpitContext::TraitImpl => { 1usize }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    RpitContext::Trait => {}
                    RpitContext::TraitImpl => {}
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for RpitContext {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => { RpitContext::Trait }
                    1usize => { RpitContext::TraitImpl }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `RpitContext`, expected 0..2, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable)]
3825pub enum RpitContext {
3826    Trait,
3827    TraitImpl,
3828}
3829
3830/// From whence the opaque type came.
3831#[derive(#[automatically_derived]
impl<D: ::core::marker::Copy> ::core::marker::Copy for OpaqueTyOrigin<D> { }Copy, #[automatically_derived]
impl<D: ::core::clone::Clone> ::core::clone::Clone for OpaqueTyOrigin<D> {
    #[inline]
    fn clone(&self) -> OpaqueTyOrigin<D> {
        match self {
            OpaqueTyOrigin::FnReturn {
                parent: __self_0, in_trait_or_impl: __self_1 } =>
                OpaqueTyOrigin::FnReturn {
                    parent: ::core::clone::Clone::clone(__self_0),
                    in_trait_or_impl: ::core::clone::Clone::clone(__self_1),
                },
            OpaqueTyOrigin::AsyncFn {
                parent: __self_0, in_trait_or_impl: __self_1 } =>
                OpaqueTyOrigin::AsyncFn {
                    parent: ::core::clone::Clone::clone(__self_0),
                    in_trait_or_impl: ::core::clone::Clone::clone(__self_1),
                },
            OpaqueTyOrigin::TyAlias { parent: __self_0, in_assoc_ty: __self_1
                } =>
                OpaqueTyOrigin::TyAlias {
                    parent: ::core::clone::Clone::clone(__self_0),
                    in_assoc_ty: ::core::clone::Clone::clone(__self_1),
                },
        }
    }
}Clone, #[automatically_derived]
impl<D: ::core::cmp::PartialEq> ::core::cmp::PartialEq for OpaqueTyOrigin<D> {
    #[inline]
    fn eq(&self, other: &OpaqueTyOrigin<D>) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (OpaqueTyOrigin::FnReturn {
                    parent: __self_0, in_trait_or_impl: __self_1 },
                    OpaqueTyOrigin::FnReturn {
                    parent: __arg1_0, in_trait_or_impl: __arg1_1 }) =>
                    __self_0 == __arg1_0 && __self_1 == __arg1_1,
                (OpaqueTyOrigin::AsyncFn {
                    parent: __self_0, in_trait_or_impl: __self_1 },
                    OpaqueTyOrigin::AsyncFn {
                    parent: __arg1_0, in_trait_or_impl: __arg1_1 }) =>
                    __self_0 == __arg1_0 && __self_1 == __arg1_1,
                (OpaqueTyOrigin::TyAlias {
                    parent: __self_0, in_assoc_ty: __self_1 },
                    OpaqueTyOrigin::TyAlias {
                    parent: __arg1_0, in_assoc_ty: __arg1_1 }) =>
                    __self_1 == __arg1_1 && __self_0 == __arg1_0,
                _ => unsafe { ::core::intrinsics::unreachable() }
            }
    }
}PartialEq, #[automatically_derived]
impl<D: ::core::cmp::Eq> ::core::cmp::Eq for OpaqueTyOrigin<D> {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<D>;
        let _: ::core::cmp::AssertParamIsEq<Option<RpitContext>>;
        let _: ::core::cmp::AssertParamIsEq<Option<RpitContext>>;
        let _: ::core::cmp::AssertParamIsEq<bool>;
    }
}Eq, #[automatically_derived]
impl<D: ::core::fmt::Debug> ::core::fmt::Debug for OpaqueTyOrigin<D> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            OpaqueTyOrigin::FnReturn {
                parent: __self_0, in_trait_or_impl: __self_1 } =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f,
                    "FnReturn", "parent", __self_0, "in_trait_or_impl",
                    &__self_1),
            OpaqueTyOrigin::AsyncFn {
                parent: __self_0, in_trait_or_impl: __self_1 } =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f,
                    "AsyncFn", "parent", __self_0, "in_trait_or_impl",
                    &__self_1),
            OpaqueTyOrigin::TyAlias { parent: __self_0, in_assoc_ty: __self_1
                } =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f,
                    "TyAlias", "parent", __self_0, "in_assoc_ty", &__self_1),
        }
    }
}Debug)]
3832#[derive(const _: () =
    {
        impl<D> ::rustc_data_structures::stable_hash::StableHash for
            OpaqueTyOrigin<D> where
            D: ::rustc_data_structures::stable_hash::StableHash {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    OpaqueTyOrigin::FnReturn {
                        parent: ref __binding_0, in_trait_or_impl: ref __binding_1 }
                        => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    OpaqueTyOrigin::AsyncFn {
                        parent: ref __binding_0, in_trait_or_impl: ref __binding_1 }
                        => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    OpaqueTyOrigin::TyAlias {
                        parent: ref __binding_0, in_assoc_ty: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash, const _: () =
    {
        impl<D, __E: ::rustc_span::SpanEncoder>
            ::rustc_serialize::Encodable<__E> for OpaqueTyOrigin<D> where
            D: ::rustc_serialize::Encodable<__E> {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        OpaqueTyOrigin::FnReturn {
                            parent: ref __binding_0, in_trait_or_impl: ref __binding_1 }
                            => {
                            0usize
                        }
                        OpaqueTyOrigin::AsyncFn {
                            parent: ref __binding_0, in_trait_or_impl: ref __binding_1 }
                            => {
                            1usize
                        }
                        OpaqueTyOrigin::TyAlias {
                            parent: ref __binding_0, in_assoc_ty: ref __binding_1 } => {
                            2usize
                        }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    OpaqueTyOrigin::FnReturn {
                        parent: ref __binding_0, in_trait_or_impl: ref __binding_1 }
                        => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_1,
                            __encoder);
                    }
                    OpaqueTyOrigin::AsyncFn {
                        parent: ref __binding_0, in_trait_or_impl: ref __binding_1 }
                        => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_1,
                            __encoder);
                    }
                    OpaqueTyOrigin::TyAlias {
                        parent: ref __binding_0, in_assoc_ty: ref __binding_1 } => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_1,
                            __encoder);
                    }
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<D, __D: ::rustc_span::SpanDecoder>
            ::rustc_serialize::Decodable<__D> for OpaqueTyOrigin<D> where
            D: ::rustc_serialize::Decodable<__D> {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => {
                        OpaqueTyOrigin::FnReturn {
                            parent: ::rustc_serialize::Decodable::decode(__decoder),
                            in_trait_or_impl: ::rustc_serialize::Decodable::decode(__decoder),
                        }
                    }
                    1usize => {
                        OpaqueTyOrigin::AsyncFn {
                            parent: ::rustc_serialize::Decodable::decode(__decoder),
                            in_trait_or_impl: ::rustc_serialize::Decodable::decode(__decoder),
                        }
                    }
                    2usize => {
                        OpaqueTyOrigin::TyAlias {
                            parent: ::rustc_serialize::Decodable::decode(__decoder),
                            in_assoc_ty: ::rustc_serialize::Decodable::decode(__decoder),
                        }
                    }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `OpaqueTyOrigin`, expected 0..3, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable)]
3833pub enum OpaqueTyOrigin<D> {
3834    /// `-> impl Trait`
3835    FnReturn {
3836        /// The defining function.
3837        parent: D,
3838        // Whether this is an RPITIT (return position impl trait in trait)
3839        in_trait_or_impl: Option<RpitContext>,
3840    },
3841    /// `async fn`
3842    AsyncFn {
3843        /// The defining function.
3844        parent: D,
3845        // Whether this is an AFIT (async fn in trait)
3846        in_trait_or_impl: Option<RpitContext>,
3847    },
3848    /// type aliases: `type Foo = impl Trait;`
3849    TyAlias {
3850        /// The type alias or associated type parent of the TAIT/ATPIT
3851        parent: D,
3852        /// associated types in impl blocks for traits.
3853        in_assoc_ty: bool,
3854    },
3855}
3856
3857#[derive(#[automatically_derived]
impl ::core::fmt::Debug for DelegationInfo {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        let names: &'static _ =
            &["call_expr_id", "call_path_res", "parent_args_segment_id",
                        "child_args_segment_id", "self_ty_id", "propagate_self_ty",
                        "group_id"];
        let values: &[&dyn ::core::fmt::Debug] =
            &[&self.call_expr_id, &self.call_path_res,
                        &self.parent_args_segment_id, &self.child_args_segment_id,
                        &self.self_ty_id, &self.propagate_self_ty, &&self.group_id];
        ::core::fmt::Formatter::debug_struct_fields_finish(f,
            "DelegationInfo", names, values)
    }
}Debug, #[automatically_derived]
impl ::core::clone::Clone for DelegationInfo {
    #[inline]
    fn clone(&self) -> DelegationInfo {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<Option<DefId>>;
        let _: ::core::clone::AssertParamIsClone<Option<HirId>>;
        let _: ::core::clone::AssertParamIsClone<Option<HirId>>;
        let _: ::core::clone::AssertParamIsClone<Option<HirId>>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        let _: ::core::clone::AssertParamIsClone<Option<(LocalExpnId, bool)>>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::marker::Copy for DelegationInfo { }Copy, #[automatically_derived]
impl ::core::cmp::PartialEq for DelegationInfo {
    #[inline]
    fn eq(&self, other: &DelegationInfo) -> bool {
        self.propagate_self_ty == other.propagate_self_ty &&
                                self.call_expr_id == other.call_expr_id &&
                            self.call_path_res == other.call_path_res &&
                        self.parent_args_segment_id == other.parent_args_segment_id
                    && self.child_args_segment_id == other.child_args_segment_id
                && self.self_ty_id == other.self_ty_id &&
            self.group_id == other.group_id
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for DelegationInfo {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<HirId>;
        let _: ::core::cmp::AssertParamIsEq<Option<DefId>>;
        let _: ::core::cmp::AssertParamIsEq<Option<HirId>>;
        let _: ::core::cmp::AssertParamIsEq<Option<HirId>>;
        let _: ::core::cmp::AssertParamIsEq<Option<HirId>>;
        let _: ::core::cmp::AssertParamIsEq<bool>;
        let _: ::core::cmp::AssertParamIsEq<Option<(LocalExpnId, bool)>>;
    }
}Eq, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            DelegationInfo {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    DelegationInfo {
                        call_expr_id: ref __binding_0,
                        call_path_res: ref __binding_1,
                        parent_args_segment_id: ref __binding_2,
                        child_args_segment_id: ref __binding_3,
                        self_ty_id: ref __binding_4,
                        propagate_self_ty: ref __binding_5,
                        group_id: ref __binding_6 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                        { __binding_5.stable_hash(__hcx, __hasher); }
                        { __binding_6.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3858pub struct DelegationInfo {
3859    pub call_expr_id: HirId,
3860    pub call_path_res: Option<DefId>,
3861    pub parent_args_segment_id: Option<HirId>,
3862    pub child_args_segment_id: Option<HirId>,
3863    pub self_ty_id: Option<HirId>,
3864    pub propagate_self_ty: bool,
3865    pub group_id: Option<(LocalExpnId, bool /* unused_target_expr */)>,
3866}
3867
3868#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for InferDelegationSig<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            InferDelegationSig::Input(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Input",
                    &__self_0),
            InferDelegationSig::Output(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Output",
                    &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for InferDelegationSig<'hir> {
    #[inline]
    fn clone(&self) -> InferDelegationSig<'hir> {
        let _: ::core::clone::AssertParamIsClone<usize>;
        let _: ::core::clone::AssertParamIsClone<&'hir DelegationInfo>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for InferDelegationSig<'hir> { }Copy, #[automatically_derived]
impl<'hir> ::core::cmp::PartialEq for InferDelegationSig<'hir> {
    #[inline]
    fn eq(&self, other: &InferDelegationSig<'hir>) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (InferDelegationSig::Input(__self_0),
                    InferDelegationSig::Input(__arg1_0)) =>
                    __self_0 == __arg1_0,
                (InferDelegationSig::Output(__self_0),
                    InferDelegationSig::Output(__arg1_0)) =>
                    __self_0 == __arg1_0,
                _ => unsafe { ::core::intrinsics::unreachable() }
            }
    }
}PartialEq, #[automatically_derived]
impl<'hir> ::core::cmp::Eq for InferDelegationSig<'hir> {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<usize>;
        let _: ::core::cmp::AssertParamIsEq<&'hir DelegationInfo>;
    }
}Eq, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            InferDelegationSig<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    InferDelegationSig::Input(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    InferDelegationSig::Output(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3869pub enum InferDelegationSig<'hir> {
3870    Input(usize),
3871    // Place delegation info here, as we always specify output type for delegations.
3872    Output(&'hir DelegationInfo),
3873}
3874
3875#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for InferDelegation<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            InferDelegation::DefId(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "DefId",
                    &__self_0),
            InferDelegation::Sig(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Sig",
                    __self_0, &__self_1),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for InferDelegation<'hir> {
    #[inline]
    fn clone(&self) -> InferDelegation<'hir> {
        let _: ::core::clone::AssertParamIsClone<DefId>;
        let _: ::core::clone::AssertParamIsClone<InferDelegationSig<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for InferDelegation<'hir> { }Copy, #[automatically_derived]
impl<'hir> ::core::cmp::PartialEq for InferDelegation<'hir> {
    #[inline]
    fn eq(&self, other: &InferDelegation<'hir>) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (InferDelegation::DefId(__self_0),
                    InferDelegation::DefId(__arg1_0)) => __self_0 == __arg1_0,
                (InferDelegation::Sig(__self_0, __self_1),
                    InferDelegation::Sig(__arg1_0, __arg1_1)) =>
                    __self_0 == __arg1_0 && __self_1 == __arg1_1,
                _ => unsafe { ::core::intrinsics::unreachable() }
            }
    }
}PartialEq, #[automatically_derived]
impl<'hir> ::core::cmp::Eq for InferDelegation<'hir> {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<DefId>;
        let _: ::core::cmp::AssertParamIsEq<InferDelegationSig<'hir>>;
    }
}Eq, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            InferDelegation<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    InferDelegation::DefId(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    InferDelegation::Sig(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3876pub enum InferDelegation<'hir> {
3877    /// Infer the type of this `DefId` through `tcx.type_of(def_id).instantiate_identity()`,
3878    /// used for const types propagation.
3879    DefId(DefId),
3880    /// Used during signature inheritance, `DefId` corresponds to the signature function.
3881    Sig(DefId, InferDelegationSig<'hir>),
3882}
3883
3884/// The various kinds of types recognized by the compiler.
3885///
3886/// For an explanation of the `Unambig` generic parameter see the dev-guide:
3887/// <https://rustc-dev-guide.rust-lang.org/ambig-unambig-ty-and-consts.html>
3888// SAFETY: `repr(u8)` is required so that `TyKind<()>` and `TyKind<!>` are layout compatible
3889#[repr(u8, C)]
3890#[derive(#[automatically_derived]
impl<'hir, Unambig: ::core::fmt::Debug> ::core::fmt::Debug for
    TyKind<'hir, Unambig> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            TyKind::InferDelegation(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "InferDelegation", &__self_0),
            TyKind::Slice(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Slice",
                    &__self_0),
            TyKind::Array(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Array",
                    __self_0, &__self_1),
            TyKind::Ptr(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Ptr",
                    &__self_0),
            TyKind::Ref(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Ref",
                    __self_0, &__self_1),
            TyKind::FnPtr(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "FnPtr",
                    &__self_0),
            TyKind::UnsafeBinder(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "UnsafeBinder", &__self_0),
            TyKind::Never => ::core::fmt::Formatter::write_str(f, "Never"),
            TyKind::Tup(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Tup",
                    &__self_0),
            TyKind::Path(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Path",
                    &__self_0),
            TyKind::OpaqueDef(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "OpaqueDef", &__self_0),
            TyKind::TraitAscription(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "TraitAscription", &__self_0),
            TyKind::TraitObject(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f,
                    "TraitObject", __self_0, &__self_1),
            TyKind::Err(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Err",
                    &__self_0),
            TyKind::Pat(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Pat",
                    __self_0, &__self_1),
            TyKind::FieldOf(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f,
                    "FieldOf", __self_0, &__self_1),
            TyKind::Infer(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Infer",
                    &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir, Unambig: ::core::clone::Clone> ::core::clone::Clone for
    TyKind<'hir, Unambig> {
    #[inline]
    fn clone(&self) -> TyKind<'hir, Unambig> {
        match self {
            TyKind::InferDelegation(__self_0) =>
                TyKind::InferDelegation(::core::clone::Clone::clone(__self_0)),
            TyKind::Slice(__self_0) =>
                TyKind::Slice(::core::clone::Clone::clone(__self_0)),
            TyKind::Array(__self_0, __self_1) =>
                TyKind::Array(::core::clone::Clone::clone(__self_0),
                    ::core::clone::Clone::clone(__self_1)),
            TyKind::Ptr(__self_0) =>
                TyKind::Ptr(::core::clone::Clone::clone(__self_0)),
            TyKind::Ref(__self_0, __self_1) =>
                TyKind::Ref(::core::clone::Clone::clone(__self_0),
                    ::core::clone::Clone::clone(__self_1)),
            TyKind::FnPtr(__self_0) =>
                TyKind::FnPtr(::core::clone::Clone::clone(__self_0)),
            TyKind::UnsafeBinder(__self_0) =>
                TyKind::UnsafeBinder(::core::clone::Clone::clone(__self_0)),
            TyKind::Never => TyKind::Never,
            TyKind::Tup(__self_0) =>
                TyKind::Tup(::core::clone::Clone::clone(__self_0)),
            TyKind::Path(__self_0) =>
                TyKind::Path(::core::clone::Clone::clone(__self_0)),
            TyKind::OpaqueDef(__self_0) =>
                TyKind::OpaqueDef(::core::clone::Clone::clone(__self_0)),
            TyKind::TraitAscription(__self_0) =>
                TyKind::TraitAscription(::core::clone::Clone::clone(__self_0)),
            TyKind::TraitObject(__self_0, __self_1) =>
                TyKind::TraitObject(::core::clone::Clone::clone(__self_0),
                    ::core::clone::Clone::clone(__self_1)),
            TyKind::Err(__self_0) =>
                TyKind::Err(::core::clone::Clone::clone(__self_0)),
            TyKind::Pat(__self_0, __self_1) =>
                TyKind::Pat(::core::clone::Clone::clone(__self_0),
                    ::core::clone::Clone::clone(__self_1)),
            TyKind::FieldOf(__self_0, __self_1) =>
                TyKind::FieldOf(::core::clone::Clone::clone(__self_0),
                    ::core::clone::Clone::clone(__self_1)),
            TyKind::Infer(__self_0) =>
                TyKind::Infer(::core::clone::Clone::clone(__self_0)),
        }
    }
}Clone, #[automatically_derived]
impl<'hir, Unambig: ::core::marker::Copy> ::core::marker::Copy for
    TyKind<'hir, Unambig> {
}Copy, const _: () =
    {
        impl<'hir, Unambig> ::rustc_data_structures::stable_hash::StableHash
            for TyKind<'hir, Unambig> where
            Unambig: ::rustc_data_structures::stable_hash::StableHash {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    TyKind::InferDelegation(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::Slice(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::Array(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::Ptr(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::Ref(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::FnPtr(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::UnsafeBinder(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::Never => {}
                    TyKind::Tup(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::Path(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::OpaqueDef(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::TraitAscription(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::TraitObject(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::Err(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::Pat(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::FieldOf(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    TyKind::Infer(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3891pub enum TyKind<'hir, Unambig = ()> {
3892    /// Actual type should be inherited from `DefId` signature
3893    InferDelegation(InferDelegation<'hir>),
3894    /// A variable length slice (i.e., `[T]`).
3895    Slice(&'hir Ty<'hir>),
3896    /// A fixed length array (i.e., `[T; n]`).
3897    Array(&'hir Ty<'hir>, &'hir ConstArg<'hir>),
3898    /// A raw pointer (i.e., `*const T` or `*mut T`).
3899    Ptr(MutTy<'hir>),
3900    /// A reference (i.e., `&'a T` or `&'a mut T`).
3901    Ref(&'hir Lifetime, MutTy<'hir>),
3902    /// A function pointer (e.g., `fn(usize) -> bool`).
3903    FnPtr(&'hir FnPtrTy<'hir>),
3904    /// An unsafe binder type (e.g. `unsafe<'a> Foo<'a>`).
3905    UnsafeBinder(&'hir UnsafeBinderTy<'hir>),
3906    /// The never type (`!`).
3907    Never,
3908    /// A tuple (`(A, B, C, D, ...)`).
3909    Tup(&'hir [Ty<'hir>]),
3910    /// A path to a type definition (`module::module::...::Type`), or an
3911    /// associated type (e.g., `<Vec<T> as Trait>::Type` or `<T>::Target`).
3912    ///
3913    /// Type parameters may be stored in each `PathSegment`.
3914    Path(QPath<'hir>),
3915    /// An opaque type definition itself. This is only used for `impl Trait`.
3916    OpaqueDef(&'hir OpaqueTy<'hir>),
3917    /// A trait ascription type, which is `impl Trait` within a local binding.
3918    TraitAscription(GenericBounds<'hir>),
3919    /// A trait object type `Bound1 + Bound2 + Bound3`
3920    /// where `Bound` is a trait or a lifetime.
3921    ///
3922    /// We use pointer tagging to represent a `&'hir Lifetime` and `TraitObjectSyntax` pair
3923    /// as otherwise this type being `repr(C)` would result in `TyKind` increasing in size.
3924    TraitObject(&'hir [PolyTraitRef<'hir>], TaggedRef<'hir, Lifetime, TraitObjectSyntax>),
3925    /// Placeholder for a type that has failed to be defined.
3926    Err(rustc_span::ErrorGuaranteed),
3927    /// Pattern types (`pattern_type!(u32 is 1..)`)
3928    Pat(&'hir Ty<'hir>, &'hir TyPat<'hir>),
3929    /// Field representing type (`field_of!(Struct, field)`).
3930    ///
3931    /// The optional ident is the variant when an enum is passed `field_of!(Enum, Variant.field)`.
3932    FieldOf(&'hir Ty<'hir>, &'hir TyFieldPath),
3933    /// `TyKind::Infer` means the type should be inferred instead of it having been
3934    /// specified. This can appear anywhere in a type.
3935    ///
3936    /// This variant is not always used to represent inference types, sometimes
3937    /// [`GenericArg::Infer`] is used instead.
3938    Infer(Unambig),
3939}
3940
3941#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for InlineAsmOperand<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            InlineAsmOperand::In { reg: __self_0, expr: __self_1 } =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f, "In",
                    "reg", __self_0, "expr", &__self_1),
            InlineAsmOperand::Out {
                reg: __self_0, late: __self_1, expr: __self_2 } =>
                ::core::fmt::Formatter::debug_struct_field3_finish(f, "Out",
                    "reg", __self_0, "late", __self_1, "expr", &__self_2),
            InlineAsmOperand::InOut {
                reg: __self_0, late: __self_1, expr: __self_2 } =>
                ::core::fmt::Formatter::debug_struct_field3_finish(f, "InOut",
                    "reg", __self_0, "late", __self_1, "expr", &__self_2),
            InlineAsmOperand::SplitInOut {
                reg: __self_0,
                late: __self_1,
                in_expr: __self_2,
                out_expr: __self_3 } =>
                ::core::fmt::Formatter::debug_struct_field4_finish(f,
                    "SplitInOut", "reg", __self_0, "late", __self_1, "in_expr",
                    __self_2, "out_expr", &__self_3),
            InlineAsmOperand::Const { anon_const: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f, "Const",
                    "anon_const", &__self_0),
            InlineAsmOperand::SymFn { expr: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f, "SymFn",
                    "expr", &__self_0),
            InlineAsmOperand::SymStatic { path: __self_0, def_id: __self_1 }
                =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f,
                    "SymStatic", "path", __self_0, "def_id", &__self_1),
            InlineAsmOperand::Label { block: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f, "Label",
                    "block", &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for InlineAsmOperand<'hir> {
    #[inline]
    fn clone(&self) -> InlineAsmOperand<'hir> {
        let _: ::core::clone::AssertParamIsClone<InlineAsmRegOrRegClass>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Expr<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir Expr<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<ConstBlock>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<QPath<'hir>>;
        let _: ::core::clone::AssertParamIsClone<DefId>;
        let _: ::core::clone::AssertParamIsClone<&'hir Block<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for InlineAsmOperand<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            InlineAsmOperand<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    InlineAsmOperand::In {
                        reg: ref __binding_0, expr: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    InlineAsmOperand::Out {
                        reg: ref __binding_0,
                        late: ref __binding_1,
                        expr: ref __binding_2 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    InlineAsmOperand::InOut {
                        reg: ref __binding_0,
                        late: ref __binding_1,
                        expr: ref __binding_2 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    InlineAsmOperand::SplitInOut {
                        reg: ref __binding_0,
                        late: ref __binding_1,
                        in_expr: ref __binding_2,
                        out_expr: ref __binding_3 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                    InlineAsmOperand::Const { anon_const: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    InlineAsmOperand::SymFn { expr: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    InlineAsmOperand::SymStatic {
                        path: ref __binding_0, def_id: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    InlineAsmOperand::Label { block: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
3942pub enum InlineAsmOperand<'hir> {
3943    In {
3944        reg: InlineAsmRegOrRegClass,
3945        expr: &'hir Expr<'hir>,
3946    },
3947    Out {
3948        reg: InlineAsmRegOrRegClass,
3949        late: bool,
3950        expr: Option<&'hir Expr<'hir>>,
3951    },
3952    InOut {
3953        reg: InlineAsmRegOrRegClass,
3954        late: bool,
3955        expr: &'hir Expr<'hir>,
3956    },
3957    SplitInOut {
3958        reg: InlineAsmRegOrRegClass,
3959        late: bool,
3960        in_expr: &'hir Expr<'hir>,
3961        out_expr: Option<&'hir Expr<'hir>>,
3962    },
3963    Const {
3964        anon_const: ConstBlock,
3965    },
3966    SymFn {
3967        expr: &'hir Expr<'hir>,
3968    },
3969    SymStatic {
3970        path: QPath<'hir>,
3971        def_id: DefId,
3972    },
3973    Label {
3974        block: &'hir Block<'hir>,
3975    },
3976}
3977
3978impl<'hir> InlineAsmOperand<'hir> {
3979    pub fn reg(&self) -> Option<InlineAsmRegOrRegClass> {
3980        match *self {
3981            Self::In { reg, .. }
3982            | Self::Out { reg, .. }
3983            | Self::InOut { reg, .. }
3984            | Self::SplitInOut { reg, .. } => Some(reg),
3985            Self::Const { .. }
3986            | Self::SymFn { .. }
3987            | Self::SymStatic { .. }
3988            | Self::Label { .. } => None,
3989        }
3990    }
3991
3992    pub fn is_clobber(&self) -> bool {
3993        #[allow(non_exhaustive_omitted_patterns)] match self {
    InlineAsmOperand::Out {
        reg: InlineAsmRegOrRegClass::Reg(_), late: _, expr: None } => true,
    _ => false,
}matches!(
3994            self,
3995            InlineAsmOperand::Out { reg: InlineAsmRegOrRegClass::Reg(_), late: _, expr: None }
3996        )
3997    }
3998}
3999
4000#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for InlineAsm<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        let names: &'static _ =
            &["asm_macro", "template", "template_strs", "operands", "options",
                        "line_spans"];
        let values: &[&dyn ::core::fmt::Debug] =
            &[&self.asm_macro, &self.template, &self.template_strs,
                        &self.operands, &self.options, &&self.line_spans];
        ::core::fmt::Formatter::debug_struct_fields_finish(f, "InlineAsm",
            names, values)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for InlineAsm<'hir> {
    #[inline]
    fn clone(&self) -> InlineAsm<'hir> {
        let _: ::core::clone::AssertParamIsClone<ast::AsmMacro>;
        let _:
                ::core::clone::AssertParamIsClone<&'hir [InlineAsmTemplatePiece]>;
        let _:
                ::core::clone::AssertParamIsClone<&'hir [(Symbol,
                Option<Symbol>, Span)]>;
        let _:
                ::core::clone::AssertParamIsClone<&'hir [(InlineAsmOperand<'hir>,
                Span)]>;
        let _: ::core::clone::AssertParamIsClone<InlineAsmOptions>;
        let _: ::core::clone::AssertParamIsClone<&'hir [Span]>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for InlineAsm<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            InlineAsm<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    InlineAsm {
                        asm_macro: ref __binding_0,
                        template: ref __binding_1,
                        template_strs: ref __binding_2,
                        operands: ref __binding_3,
                        options: ref __binding_4,
                        line_spans: ref __binding_5 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                        { __binding_5.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4001pub struct InlineAsm<'hir> {
4002    pub asm_macro: ast::AsmMacro,
4003    pub template: &'hir [InlineAsmTemplatePiece],
4004    pub template_strs: &'hir [(Symbol, Option<Symbol>, Span)],
4005    pub operands: &'hir [(InlineAsmOperand<'hir>, Span)],
4006    pub options: InlineAsmOptions,
4007    pub line_spans: &'hir [Span],
4008}
4009
4010impl InlineAsm<'_> {
4011    pub fn contains_label(&self) -> bool {
4012        self.operands.iter().any(|x| #[allow(non_exhaustive_omitted_patterns)] match x.0 {
    InlineAsmOperand::Label { .. } => true,
    _ => false,
}matches!(x.0, InlineAsmOperand::Label { .. }))
4013    }
4014}
4015
4016/// Represents a parameter in a function header.
4017#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for Param<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field4_finish(f, "Param",
            "hir_id", &self.hir_id, "pat", &self.pat, "ty_span",
            &self.ty_span, "span", &&self.span)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Param<'hir> {
    #[inline]
    fn clone(&self) -> Param<'hir> {
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<&'hir Pat<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for Param<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Param<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Param {
                        hir_id: ref __binding_0,
                        pat: ref __binding_1,
                        ty_span: ref __binding_2,
                        span: ref __binding_3 } => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4018pub struct Param<'hir> {
4019    #[stable_hash(ignore)]
4020    pub hir_id: HirId,
4021    pub pat: &'hir Pat<'hir>,
4022    pub ty_span: Span,
4023    pub span: Span,
4024}
4025
4026/// Error type for splatted argument index errors.
4027#[derive(#[automatically_derived]
impl ::core::fmt::Debug for SplattedArgIndexError {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            SplattedArgIndexError::InvalidIndex { splatted_arg_index: __self_0
                } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f,
                    "InvalidIndex", "splatted_arg_index", &__self_0),
            SplattedArgIndexError::OutOfBounds {
                splatted_arg_index: __self_0, args_len: __self_1 } =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f,
                    "OutOfBounds", "splatted_arg_index", __self_0, "args_len",
                    &__self_1),
        }
    }
}Debug, #[automatically_derived]
impl ::core::clone::Clone for SplattedArgIndexError {
    #[inline]
    fn clone(&self) -> SplattedArgIndexError {
        let _: ::core::clone::AssertParamIsClone<u16>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::marker::Copy for SplattedArgIndexError { }Copy, #[automatically_derived]
impl ::core::cmp::PartialEq for SplattedArgIndexError {
    #[inline]
    fn eq(&self, other: &SplattedArgIndexError) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (SplattedArgIndexError::InvalidIndex {
                    splatted_arg_index: __self_0 },
                    SplattedArgIndexError::InvalidIndex {
                    splatted_arg_index: __arg1_0 }) => __self_0 == __arg1_0,
                (SplattedArgIndexError::OutOfBounds {
                    splatted_arg_index: __self_0, args_len: __self_1 },
                    SplattedArgIndexError::OutOfBounds {
                    splatted_arg_index: __arg1_0, args_len: __arg1_1 }) =>
                    __self_0 == __arg1_0 && __self_1 == __arg1_1,
                _ => unsafe { ::core::intrinsics::unreachable() }
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for SplattedArgIndexError {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<u16>;
    }
}Eq)]
4028pub enum SplattedArgIndexError {
4029    /// The splatted argument index is invalid.
4030    /// Currently the only unsupported index is `u16::MAX`, which is used to indicate that no argument
4031    /// is splatted.
4032    InvalidIndex { splatted_arg_index: u16 },
4033
4034    /// The splatted argument index is outside the bounds of the function arguments.
4035    OutOfBounds { splatted_arg_index: u16, args_len: u16 },
4036}
4037
4038/// Contains the packed non-type fields of a function declaration.
4039#[derive(#[automatically_derived]
impl ::core::marker::Copy for FnDeclFlags { }Copy, #[automatically_derived]
impl ::core::clone::Clone for FnDeclFlags {
    #[inline]
    fn clone(&self) -> FnDeclFlags {
        let _: ::core::clone::AssertParamIsClone<u8>;
        let _: ::core::clone::AssertParamIsClone<u16>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for FnDeclFlags {
    #[inline]
    fn eq(&self, other: &FnDeclFlags) -> bool {
        self.flags == other.flags && self.splatted == other.splatted
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for FnDeclFlags {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<u8>;
        let _: ::core::cmp::AssertParamIsEq<u16>;
    }
}Eq, #[automatically_derived]
impl ::core::cmp::PartialOrd for FnDeclFlags {
    #[inline]
    fn partial_cmp(&self, other: &FnDeclFlags)
        -> ::core::option::Option<::core::cmp::Ordering> {
        ::core::option::Option::Some(::core::cmp::Ord::cmp(self, other))
    }
}PartialOrd, #[automatically_derived]
impl ::core::cmp::Ord for FnDeclFlags {
    #[inline]
    fn cmp(&self, other: &FnDeclFlags) -> ::core::cmp::Ordering {
        match ::core::cmp::Ord::cmp(&self.flags, &other.flags) {
            ::core::cmp::Ordering::Equal =>
                ::core::cmp::Ord::cmp(&self.splatted, &other.splatted),
            cmp => cmp,
        }
    }
}Ord, #[automatically_derived]
impl ::core::hash::Hash for FnDeclFlags {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        ::core::hash::Hash::hash(&self.flags, state);
        ::core::hash::Hash::hash(&self.splatted, state)
    }
}Hash)]
4040#[derive(const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for FnDeclFlags {
            fn encode(&self, __encoder: &mut __E) {
                match *self {
                    FnDeclFlags {
                        flags: ref __binding_0, splatted: ref __binding_1 } => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_1,
                            __encoder);
                    }
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for FnDeclFlags {
            fn decode(__decoder: &mut __D) -> Self {
                FnDeclFlags {
                    flags: ::rustc_serialize::Decodable::decode(__decoder),
                    splatted: ::rustc_serialize::Decodable::decode(__decoder),
                }
            }
        }
    };Decodable, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for FnDeclFlags
            {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    FnDeclFlags {
                        flags: ref __binding_0, splatted: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4041pub struct FnDeclFlags {
4042    /// Holds the c_variadic and lifetime_elision_allowed bitflags, and 3 bits for the `ImplicitSelfKind`.
4043    flags: u8,
4044
4045    /// Which function argument is splatted into multiple arguments in callers, if any?
4046    /// Splatting functions with `u16::MAX` arguments is not supported, see `FnSigKind` for
4047    /// details.
4048    splatted: u16,
4049}
4050
4051impl fmt::Debug for FnDeclFlags {
4052    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
4053        let mut f = f.debug_tuple("FnDeclFlags");
4054        f.field(&::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("ImplicitSelfKind({0:?})",
                self.implicit_self()))
    })format!("ImplicitSelfKind({:?})", self.implicit_self()));
4055
4056        if self.lifetime_elision_allowed() {
4057            f.field(&"LifetimeElisionAllowed");
4058        } else {
4059            f.field(&"NoLifetimeElision");
4060        }
4061
4062        if self.c_variadic() {
4063            f.field(&"CVariadic");
4064        }
4065
4066        if let Some(index) = self.splatted() {
4067            f.field(&::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("Splatted({0})", index))
    })format!("Splatted({})", index));
4068        }
4069
4070        f.finish()
4071    }
4072}
4073
4074impl FnDeclFlags {
4075    /// Mask for the implicit self kind.
4076    const IMPLICIT_SELF_MASK: u8 = 0b111;
4077
4078    /// Bitflag for a trailing C-style variadic argument.
4079    const C_VARIADIC_FLAG: u8 = 1 << 3;
4080
4081    /// Bitflag for lifetime elision.
4082    const LIFETIME_ELISION_ALLOWED_FLAG: u8 = 1 << 4;
4083
4084    /// Marker index for "no splatted argument".
4085    /// Must have the same value as `FnSigKind::NO_SPLATTED_ARG_INDEX` and `rustc_ast::FnDecl::NO_SPLATTED_ARG_INDEX`.
4086    const NO_SPLATTED_ARG_INDEX: u16 = u16::MAX;
4087
4088    /// Create a new FnDeclKind with no implicit self, no lifetime elision, no C-style variadic
4089    /// argument, and no splatting.
4090    /// To modify these flags, use the `set_*` methods, for readability.
4091    // FIXME: use Default instead when that trait is const stable.
4092    pub const fn default() -> Self {
4093        Self { flags: 0, splatted: 0 }
4094            .set_implicit_self(ImplicitSelfKind::None)
4095            .set_lifetime_elision_allowed(false)
4096            .set_c_variadic(false)
4097            .set_no_splatted_args()
4098    }
4099
4100    /// Set the implicit self kind.
4101    #[must_use = "this method does not modify the receiver"]
4102    pub const fn set_implicit_self(mut self, implicit_self: ImplicitSelfKind) -> Self {
4103        self.flags &= !Self::IMPLICIT_SELF_MASK;
4104
4105        match implicit_self {
4106            ImplicitSelfKind::None => self.flags |= 0,
4107            ImplicitSelfKind::Imm => self.flags |= 1,
4108            ImplicitSelfKind::Mut => self.flags |= 2,
4109            ImplicitSelfKind::RefImm => self.flags |= 3,
4110            ImplicitSelfKind::RefMut => self.flags |= 4,
4111        }
4112
4113        self
4114    }
4115
4116    /// Set the C-style variadic argument flag.
4117    #[must_use = "this method does not modify the receiver"]
4118    pub const fn set_c_variadic(mut self, c_variadic: bool) -> Self {
4119        if c_variadic {
4120            self.flags |= Self::C_VARIADIC_FLAG;
4121        } else {
4122            self.flags &= !Self::C_VARIADIC_FLAG;
4123        }
4124
4125        self
4126    }
4127
4128    /// Set the lifetime elision allowed flag.
4129    #[must_use = "this method does not modify the receiver"]
4130    pub const fn set_lifetime_elision_allowed(mut self, allowed: bool) -> Self {
4131        if allowed {
4132            self.flags |= Self::LIFETIME_ELISION_ALLOWED_FLAG;
4133        } else {
4134            self.flags &= !Self::LIFETIME_ELISION_ALLOWED_FLAG;
4135        }
4136
4137        self
4138    }
4139
4140    /// Set the splatted argument index.
4141    /// The number of function arguments is used for error checking.
4142    #[must_use = "this method does not modify the receiver"]
4143    pub const fn set_splatted(
4144        mut self,
4145        splatted: Option<u16>,
4146        args_len: usize,
4147    ) -> Result<Self, SplattedArgIndexError> {
4148        if let Some(splatted_arg_index) = splatted {
4149            if splatted_arg_index == Self::NO_SPLATTED_ARG_INDEX {
4150                // This index value is used as a marker for "no splatting", so it is unsupported.
4151                return Err(SplattedArgIndexError::InvalidIndex { splatted_arg_index });
4152            } else if splatted_arg_index as usize >= args_len {
4153                return Err(SplattedArgIndexError::OutOfBounds {
4154                    splatted_arg_index,
4155                    args_len: args_len as u16,
4156                });
4157            }
4158
4159            self.splatted = splatted_arg_index;
4160        } else {
4161            self.splatted = Self::NO_SPLATTED_ARG_INDEX;
4162        }
4163
4164        Ok(self)
4165    }
4166
4167    /// Set "no splatted arguments" for the function declaration.
4168    #[must_use = "this method does not modify the receiver"]
4169    pub const fn set_no_splatted_args(mut self) -> Self {
4170        self.splatted = Self::NO_SPLATTED_ARG_INDEX;
4171
4172        self
4173    }
4174
4175    /// Get the implicit self kind.
4176    pub const fn implicit_self(self) -> ImplicitSelfKind {
4177        match self.flags & Self::IMPLICIT_SELF_MASK {
4178            0 => ImplicitSelfKind::None,
4179            1 => ImplicitSelfKind::Imm,
4180            2 => ImplicitSelfKind::Mut,
4181            3 => ImplicitSelfKind::RefImm,
4182            4 => ImplicitSelfKind::RefMut,
4183            _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
4184        }
4185    }
4186
4187    /// Do the function arguments end with a C-style variadic argument?
4188    pub const fn c_variadic(self) -> bool {
4189        self.flags & Self::C_VARIADIC_FLAG != 0
4190    }
4191
4192    /// Is lifetime elision allowed?
4193    pub const fn lifetime_elision_allowed(self) -> bool {
4194        self.flags & Self::LIFETIME_ELISION_ALLOWED_FLAG != 0
4195    }
4196
4197    /// Get the splatted argument index, if any.
4198    pub const fn splatted(self) -> Option<u16> {
4199        if self.splatted == Self::NO_SPLATTED_ARG_INDEX { None } else { Some(self.splatted) }
4200    }
4201}
4202
4203/// Represents the header (not the body) of a function declaration.
4204#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for FnDecl<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f, "FnDecl",
            "inputs", &self.inputs, "output", &self.output, "fn_decl_kind",
            &&self.fn_decl_kind)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for FnDecl<'hir> {
    #[inline]
    fn clone(&self) -> FnDecl<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir [Ty<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<FnRetTy<'hir>>;
        let _: ::core::clone::AssertParamIsClone<FnDeclFlags>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for FnDecl<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            FnDecl<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    FnDecl {
                        inputs: ref __binding_0,
                        output: ref __binding_1,
                        fn_decl_kind: ref __binding_2 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4205pub struct FnDecl<'hir> {
4206    /// The types of the function's parameters.
4207    ///
4208    /// Additional argument data is stored in the function's [body](Body::params).
4209    pub inputs: &'hir [Ty<'hir>],
4210    pub output: FnRetTy<'hir>,
4211    /// The packed function declaration attributes.
4212    pub fn_decl_kind: FnDeclFlags,
4213}
4214
4215impl<'hir> FnDecl<'hir> {
4216    pub fn opt_delegation_sig_id(&self) -> Option<DefId> {
4217        if let FnRetTy::Return(ty) = self.output
4218            && let TyKind::InferDelegation(InferDelegation::Sig(sig_id, _)) = ty.kind
4219        {
4220            return Some(sig_id);
4221        }
4222        None
4223    }
4224
4225    pub fn opt_delegation_info(&self) -> Option<&'hir DelegationInfo> {
4226        if let FnRetTy::Return(ty) = self.output
4227            && let TyKind::InferDelegation(InferDelegation::Sig(_, kind)) = ty.kind
4228            && let InferDelegationSig::Output(generics) = kind
4229        {
4230            return Some(generics);
4231        }
4232
4233        None
4234    }
4235
4236    pub fn implicit_self(&self) -> ImplicitSelfKind {
4237        self.fn_decl_kind.implicit_self()
4238    }
4239
4240    pub fn c_variadic(&self) -> bool {
4241        self.fn_decl_kind.c_variadic()
4242    }
4243
4244    pub fn lifetime_elision_allowed(&self) -> bool {
4245        self.fn_decl_kind.lifetime_elision_allowed()
4246    }
4247
4248    pub fn splatted(&self) -> Option<u16> {
4249        self.fn_decl_kind.splatted()
4250    }
4251
4252    pub fn dummy(span: Span) -> Self {
4253        Self {
4254            inputs: &[],
4255            output: FnRetTy::DefaultReturn(span),
4256            fn_decl_kind: FnDeclFlags::default().set_lifetime_elision_allowed(true),
4257        }
4258    }
4259}
4260
4261/// Represents what type of implicit self a function has, if any.
4262#[derive(#[automatically_derived]
impl ::core::marker::Copy for ImplicitSelfKind { }Copy, #[automatically_derived]
impl ::core::clone::Clone for ImplicitSelfKind {
    #[inline]
    fn clone(&self) -> ImplicitSelfKind { *self }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for ImplicitSelfKind {
    #[inline]
    fn eq(&self, other: &ImplicitSelfKind) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for ImplicitSelfKind {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {}
}Eq, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for ImplicitSelfKind {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        ImplicitSelfKind::Imm => { 0usize }
                        ImplicitSelfKind::Mut => { 1usize }
                        ImplicitSelfKind::RefImm => { 2usize }
                        ImplicitSelfKind::RefMut => { 3usize }
                        ImplicitSelfKind::None => { 4usize }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    ImplicitSelfKind::Imm => {}
                    ImplicitSelfKind::Mut => {}
                    ImplicitSelfKind::RefImm => {}
                    ImplicitSelfKind::RefMut => {}
                    ImplicitSelfKind::None => {}
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for ImplicitSelfKind {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => { ImplicitSelfKind::Imm }
                    1usize => { ImplicitSelfKind::Mut }
                    2usize => { ImplicitSelfKind::RefImm }
                    3usize => { ImplicitSelfKind::RefMut }
                    4usize => { ImplicitSelfKind::None }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `ImplicitSelfKind`, expected 0..5, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable, #[automatically_derived]
impl ::core::fmt::Debug for ImplicitSelfKind {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                ImplicitSelfKind::Imm => "Imm",
                ImplicitSelfKind::Mut => "Mut",
                ImplicitSelfKind::RefImm => "RefImm",
                ImplicitSelfKind::RefMut => "RefMut",
                ImplicitSelfKind::None => "None",
            })
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            ImplicitSelfKind {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    ImplicitSelfKind::Imm => {}
                    ImplicitSelfKind::Mut => {}
                    ImplicitSelfKind::RefImm => {}
                    ImplicitSelfKind::RefMut => {}
                    ImplicitSelfKind::None => {}
                }
            }
        }
    };StableHash)]
4263pub enum ImplicitSelfKind {
4264    /// Represents a `fn x(self);`.
4265    Imm,
4266    /// Represents a `fn x(mut self);`.
4267    Mut,
4268    /// Represents a `fn x(&self);`.
4269    RefImm,
4270    /// Represents a `fn x(&mut self);`.
4271    RefMut,
4272    /// Represents when a function does not have a self argument or
4273    /// when a function has a `self: X` argument.
4274    None,
4275}
4276
4277impl ImplicitSelfKind {
4278    /// Does this represent an implicit self?
4279    pub fn has_implicit_self(&self) -> bool {
4280        !#[allow(non_exhaustive_omitted_patterns)] match *self {
    ImplicitSelfKind::None => true,
    _ => false,
}matches!(*self, ImplicitSelfKind::None)
4281    }
4282}
4283
4284#[derive(#[automatically_derived]
impl ::core::marker::Copy for IsAsync { }Copy, #[automatically_derived]
impl ::core::clone::Clone for IsAsync {
    #[inline]
    fn clone(&self) -> IsAsync {
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for IsAsync {
    #[inline]
    fn eq(&self, other: &IsAsync) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (IsAsync::Async(__self_0), IsAsync::Async(__arg1_0)) =>
                    __self_0 == __arg1_0,
                _ => true,
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for IsAsync {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<Span>;
    }
}Eq, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for IsAsync {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        IsAsync::Async(ref __binding_0) => { 0usize }
                        IsAsync::NotAsync => { 1usize }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    IsAsync::Async(ref __binding_0) => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                    IsAsync::NotAsync => {}
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for IsAsync {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => {
                        IsAsync::Async(::rustc_serialize::Decodable::decode(__decoder))
                    }
                    1usize => { IsAsync::NotAsync }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `IsAsync`, expected 0..2, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable, #[automatically_derived]
impl ::core::fmt::Debug for IsAsync {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            IsAsync::Async(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Async",
                    &__self_0),
            IsAsync::NotAsync =>
                ::core::fmt::Formatter::write_str(f, "NotAsync"),
        }
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for IsAsync {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    IsAsync::Async(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    IsAsync::NotAsync => {}
                }
            }
        }
    };StableHash)]
4285pub enum IsAsync {
4286    Async(Span),
4287    NotAsync,
4288}
4289
4290impl IsAsync {
4291    pub fn is_async(self) -> bool {
4292        #[allow(non_exhaustive_omitted_patterns)] match self {
    IsAsync::Async(_) => true,
    _ => false,
}matches!(self, IsAsync::Async(_))
4293    }
4294}
4295
4296#[derive(#[automatically_derived]
impl ::core::marker::Copy for Defaultness { }Copy, #[automatically_derived]
impl ::core::clone::Clone for Defaultness {
    #[inline]
    fn clone(&self) -> Defaultness {
        let _: ::core::clone::AssertParamIsClone<bool>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for Defaultness {
    #[inline]
    fn eq(&self, other: &Defaultness) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (Defaultness::Default { has_value: __self_0 },
                    Defaultness::Default { has_value: __arg1_0 }) =>
                    __self_0 == __arg1_0,
                _ => true,
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for Defaultness {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<bool>;
    }
}Eq, #[automatically_derived]
impl ::core::fmt::Debug for Defaultness {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            Defaultness::Default { has_value: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f,
                    "Default", "has_value", &__self_0),
            Defaultness::Final =>
                ::core::fmt::Formatter::write_str(f, "Final"),
        }
    }
}Debug, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for Defaultness {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        Defaultness::Default { has_value: ref __binding_0 } => {
                            0usize
                        }
                        Defaultness::Final => { 1usize }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    Defaultness::Default { has_value: ref __binding_0 } => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                    Defaultness::Final => {}
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for Defaultness {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => {
                        Defaultness::Default {
                            has_value: ::rustc_serialize::Decodable::decode(__decoder),
                        }
                    }
                    1usize => { Defaultness::Final }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `Defaultness`, expected 0..2, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for Defaultness
            {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    Defaultness::Default { has_value: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Defaultness::Final => {}
                }
            }
        }
    };StableHash)]
4297#[derive(#[automatically_derived]
impl ::core::default::Default for Defaultness {
    #[inline]
    fn default() -> Defaultness { Self::Final }
}Default)]
4298pub enum Defaultness {
4299    Default {
4300        has_value: bool,
4301    },
4302    #[default]
4303    Final,
4304}
4305
4306impl Defaultness {
4307    pub fn has_value(&self) -> bool {
4308        match *self {
4309            Defaultness::Default { has_value } => has_value,
4310            Defaultness::Final => true,
4311        }
4312    }
4313
4314    pub fn is_final(&self) -> bool {
4315        *self == Defaultness::Final
4316    }
4317
4318    pub fn is_default(&self) -> bool {
4319        #[allow(non_exhaustive_omitted_patterns)] match *self {
    Defaultness::Default { .. } => true,
    _ => false,
}matches!(*self, Defaultness::Default { .. })
4320    }
4321}
4322
4323#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for FnRetTy<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            FnRetTy::DefaultReturn(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "DefaultReturn", &__self_0),
            FnRetTy::Return(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Return",
                    &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for FnRetTy<'hir> {
    #[inline]
    fn clone(&self) -> FnRetTy<'hir> {
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for FnRetTy<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            FnRetTy<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    FnRetTy::DefaultReturn(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    FnRetTy::Return(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4324pub enum FnRetTy<'hir> {
4325    /// Return type is not specified.
4326    ///
4327    /// Functions default to `()` and
4328    /// closures default to inference. Span points to where return
4329    /// type would be inserted.
4330    DefaultReturn(Span),
4331    /// Everything else.
4332    Return(&'hir Ty<'hir>),
4333}
4334
4335impl<'hir> FnRetTy<'hir> {
4336    #[inline]
4337    pub fn span(&self) -> Span {
4338        match *self {
4339            Self::DefaultReturn(span) => span,
4340            Self::Return(ref ty) => ty.span,
4341        }
4342    }
4343
4344    pub fn is_suggestable_infer_ty(&self) -> Option<&'hir Ty<'hir>> {
4345        if let Self::Return(ty) = self
4346            && ty.is_suggestable_infer_ty()
4347        {
4348            return Some(*ty);
4349        }
4350        None
4351    }
4352}
4353
4354/// Represents `for<...>` binder before a closure
4355#[derive(#[automatically_derived]
impl ::core::marker::Copy for ClosureBinder { }Copy, #[automatically_derived]
impl ::core::clone::Clone for ClosureBinder {
    #[inline]
    fn clone(&self) -> ClosureBinder {
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for ClosureBinder {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            ClosureBinder::Default =>
                ::core::fmt::Formatter::write_str(f, "Default"),
            ClosureBinder::For { span: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f, "For",
                    "span", &__self_0),
        }
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            ClosureBinder {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    ClosureBinder::Default => {}
                    ClosureBinder::For { span: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4356pub enum ClosureBinder {
4357    /// Binder is not specified.
4358    Default,
4359    /// Binder is specified.
4360    ///
4361    /// Span points to the whole `for<...>`.
4362    For { span: Span },
4363}
4364
4365#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for Mod<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f, "Mod", "spans",
            &self.spans, "item_ids", &&self.item_ids)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Mod<'hir> {
    #[inline]
    fn clone(&self) -> Mod<'hir> {
        let _: ::core::clone::AssertParamIsClone<ModSpans>;
        let _: ::core::clone::AssertParamIsClone<&'hir [ItemId]>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for Mod<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Mod<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Mod { spans: ref __binding_0, item_ids: ref __binding_1 } =>
                        {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4366pub struct Mod<'hir> {
4367    pub spans: ModSpans,
4368    pub item_ids: &'hir [ItemId],
4369}
4370
4371#[derive(#[automatically_derived]
impl ::core::marker::Copy for ModSpans { }Copy, #[automatically_derived]
impl ::core::clone::Clone for ModSpans {
    #[inline]
    fn clone(&self) -> ModSpans {
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for ModSpans {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f, "ModSpans",
            "inner_span", &self.inner_span, "inject_use_span",
            &&self.inject_use_span)
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for ModSpans {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    ModSpans {
                        inner_span: ref __binding_0,
                        inject_use_span: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4372pub struct ModSpans {
4373    /// A span from the first token past `{` to the last token until `}`.
4374    /// For `mod foo;`, the inner span ranges from the first token
4375    /// to the last token in the external file.
4376    pub inner_span: Span,
4377    pub inject_use_span: Span,
4378}
4379
4380#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for EnumDef<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field1_finish(f, "EnumDef",
            "variants", &&self.variants)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for EnumDef<'hir> {
    #[inline]
    fn clone(&self) -> EnumDef<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir [Variant<'hir>]>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for EnumDef<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            EnumDef<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    EnumDef { variants: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4381pub struct EnumDef<'hir> {
4382    pub variants: &'hir [Variant<'hir>],
4383}
4384
4385#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for Variant<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        let names: &'static _ =
            &["ident", "hir_id", "def_id", "data", "disr_expr", "span"];
        let values: &[&dyn ::core::fmt::Debug] =
            &[&self.ident, &self.hir_id, &self.def_id, &self.data,
                        &self.disr_expr, &&self.span];
        ::core::fmt::Formatter::debug_struct_fields_finish(f, "Variant",
            names, values)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Variant<'hir> {
    #[inline]
    fn clone(&self) -> Variant<'hir> {
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<LocalDefId>;
        let _: ::core::clone::AssertParamIsClone<VariantData<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir AnonConst>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for Variant<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Variant<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Variant {
                        ident: ref __binding_0,
                        hir_id: ref __binding_1,
                        def_id: ref __binding_2,
                        data: ref __binding_3,
                        disr_expr: ref __binding_4,
                        span: ref __binding_5 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        {}
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                        { __binding_5.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4386pub struct Variant<'hir> {
4387    /// Name of the variant.
4388    pub ident: Ident,
4389    /// Id of the variant (not the constructor, see `VariantData::ctor_hir_id()`).
4390    #[stable_hash(ignore)]
4391    pub hir_id: HirId,
4392    pub def_id: LocalDefId,
4393    /// Fields and constructor id of the variant.
4394    pub data: VariantData<'hir>,
4395    /// Explicit discriminant (e.g., `Foo = 1`).
4396    pub disr_expr: Option<&'hir AnonConst>,
4397    /// Span
4398    pub span: Span,
4399}
4400
4401#[derive(#[automatically_derived]
impl ::core::marker::Copy for UseKind { }Copy, #[automatically_derived]
impl ::core::clone::Clone for UseKind {
    #[inline]
    fn clone(&self) -> UseKind {
        let _: ::core::clone::AssertParamIsClone<Ident>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for UseKind {
    #[inline]
    fn eq(&self, other: &UseKind) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (UseKind::Single(__self_0), UseKind::Single(__arg1_0)) =>
                    __self_0 == __arg1_0,
                _ => true,
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::fmt::Debug for UseKind {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            UseKind::Single(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Single",
                    &__self_0),
            UseKind::Glob => ::core::fmt::Formatter::write_str(f, "Glob"),
            UseKind::ListStem =>
                ::core::fmt::Formatter::write_str(f, "ListStem"),
        }
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for UseKind {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    UseKind::Single(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    UseKind::Glob => {}
                    UseKind::ListStem => {}
                }
            }
        }
    };StableHash)]
4402pub enum UseKind {
4403    /// One import, e.g., `use foo::bar` or `use foo::bar as baz`.
4404    /// Also produced for each element of a list `use`, e.g.
4405    /// `use foo::{a, b}` lowers to `use foo::a; use foo::b;`.
4406    ///
4407    /// The identifier is the name defined by the import. E.g. for `use
4408    /// foo::bar` it is `bar`, for `use foo::bar as baz` it is `baz`.
4409    Single(Ident),
4410
4411    /// Glob import, e.g., `use foo::*`.
4412    Glob,
4413
4414    /// Degenerate list import, e.g., `use foo::{a, b}` produces
4415    /// an additional `use foo::{}` for performing checks such as
4416    /// unstable feature gating. May be removed in the future.
4417    ListStem,
4418}
4419
4420/// References to traits in impls.
4421///
4422/// `resolve` maps each `TraitRef`'s `ref_id` to its defining trait; that's all
4423/// that the `ref_id` is for. Note that `ref_id`'s value is not the `HirId` of the
4424/// trait being referred to but just a unique `HirId` that serves as a key
4425/// within the resolution map.
4426#[derive(#[automatically_derived]
impl<'hir> ::core::clone::Clone for TraitRef<'hir> {
    #[inline]
    fn clone(&self) -> TraitRef<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir Path<'hir>>;
        let _: ::core::clone::AssertParamIsClone<HirId>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::fmt::Debug for TraitRef<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f, "TraitRef",
            "path", &self.path, "hir_ref_id", &&self.hir_ref_id)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::marker::Copy for TraitRef<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            TraitRef<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    TraitRef {
                        path: ref __binding_0, hir_ref_id: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        {}
                    }
                }
            }
        }
    };StableHash)]
4427pub struct TraitRef<'hir> {
4428    pub path: &'hir Path<'hir>,
4429    // Don't hash the `ref_id`. It is tracked via the thing it is used to access.
4430    #[stable_hash(ignore)]
4431    pub hir_ref_id: HirId,
4432}
4433
4434impl TraitRef<'_> {
4435    /// Gets the `DefId` of the referenced trait. It _must_ actually be a trait or trait alias.
4436    pub fn trait_def_id(&self) -> Option<DefId> {
4437        match self.path.res {
4438            Res::Def(DefKind::Trait | DefKind::TraitAlias, did) => Some(did),
4439            Res::Err => None,
4440            res => {
    ::core::panicking::panic_fmt(format_args!("{0:?} did not resolve to a trait or trait alias",
            res));
}panic!("{res:?} did not resolve to a trait or trait alias"),
4441        }
4442    }
4443}
4444
4445#[derive(#[automatically_derived]
impl<'hir> ::core::clone::Clone for PolyTraitRef<'hir> {
    #[inline]
    fn clone(&self) -> PolyTraitRef<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir [GenericParam<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<TraitBoundModifiers>;
        let _: ::core::clone::AssertParamIsClone<TraitRef<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::fmt::Debug for PolyTraitRef<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field4_finish(f, "PolyTraitRef",
            "bound_generic_params", &self.bound_generic_params, "modifiers",
            &self.modifiers, "trait_ref", &self.trait_ref, "span",
            &&self.span)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::marker::Copy for PolyTraitRef<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            PolyTraitRef<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    PolyTraitRef {
                        bound_generic_params: ref __binding_0,
                        modifiers: ref __binding_1,
                        trait_ref: ref __binding_2,
                        span: ref __binding_3 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4446pub struct PolyTraitRef<'hir> {
4447    /// The `'a` in `for<'a> Foo<&'a T>`.
4448    pub bound_generic_params: &'hir [GenericParam<'hir>],
4449
4450    /// The constness and polarity of the trait ref.
4451    ///
4452    /// The `async` modifier is lowered directly into a different trait for now.
4453    pub modifiers: TraitBoundModifiers,
4454
4455    /// The `Foo<&'a T>` in `for<'a> Foo<&'a T>`.
4456    pub trait_ref: TraitRef<'hir>,
4457
4458    pub span: Span,
4459}
4460
4461#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for FieldDef<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        let names: &'static _ =
            &["span", "vis_span", "ident", "hir_id", "def_id", "ty", "safety",
                        "default"];
        let values: &[&dyn ::core::fmt::Debug] =
            &[&self.span, &self.vis_span, &self.ident, &self.hir_id,
                        &self.def_id, &self.ty, &self.safety, &&self.default];
        ::core::fmt::Formatter::debug_struct_fields_finish(f, "FieldDef",
            names, values)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for FieldDef<'hir> {
    #[inline]
    fn clone(&self) -> FieldDef<'hir> {
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<LocalDefId>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Safety>;
        let _: ::core::clone::AssertParamIsClone<Option<&'hir AnonConst>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for FieldDef<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            FieldDef<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    FieldDef {
                        span: ref __binding_0,
                        vis_span: ref __binding_1,
                        ident: ref __binding_2,
                        hir_id: ref __binding_3,
                        def_id: ref __binding_4,
                        ty: ref __binding_5,
                        safety: ref __binding_6,
                        default: ref __binding_7 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        {}
                        { __binding_4.stable_hash(__hcx, __hasher); }
                        { __binding_5.stable_hash(__hcx, __hasher); }
                        { __binding_6.stable_hash(__hcx, __hasher); }
                        { __binding_7.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4462pub struct FieldDef<'hir> {
4463    pub span: Span,
4464    pub vis_span: Span,
4465    pub ident: Ident,
4466    #[stable_hash(ignore)]
4467    pub hir_id: HirId,
4468    pub def_id: LocalDefId,
4469    pub ty: &'hir Ty<'hir>,
4470    pub safety: Safety,
4471    pub default: Option<&'hir AnonConst>,
4472}
4473
4474impl FieldDef<'_> {
4475    // Still necessary in couple of places
4476    pub fn is_positional(&self) -> bool {
4477        self.ident.as_str().as_bytes()[0].is_ascii_digit()
4478    }
4479}
4480
4481/// Fields and constructor IDs of enum variants and structs.
4482#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for VariantData<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            VariantData::Struct { fields: __self_0, recovered: __self_1 } =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f,
                    "Struct", "fields", __self_0, "recovered", &__self_1),
            VariantData::Tuple(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Tuple",
                    __self_0, __self_1, &__self_2),
            VariantData::Unit(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Unit",
                    __self_0, &__self_1),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for VariantData<'hir> {
    #[inline]
    fn clone(&self) -> VariantData<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir [FieldDef<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<ast::Recovered>;
        let _: ::core::clone::AssertParamIsClone<&'hir [FieldDef<'hir>]>;
        let _: ::core::clone::AssertParamIsClone<HirId>;
        let _: ::core::clone::AssertParamIsClone<LocalDefId>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for VariantData<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            VariantData<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    VariantData::Struct {
                        fields: ref __binding_0, recovered: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    VariantData::Tuple(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        {}
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    VariantData::Unit(ref __binding_0, ref __binding_1) => {
                        {}
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4483pub enum VariantData<'hir> {
4484    /// A struct variant.
4485    ///
4486    /// E.g., `Bar { .. }` as in `enum Foo { Bar { .. } }`.
4487    Struct { fields: &'hir [FieldDef<'hir>], recovered: ast::Recovered },
4488    /// A tuple variant.
4489    ///
4490    /// E.g., `Bar(..)` as in `enum Foo { Bar(..) }`.
4491    Tuple(&'hir [FieldDef<'hir>], #[stable_hash(ignore)] HirId, LocalDefId),
4492    /// A unit variant.
4493    ///
4494    /// E.g., `Bar = ..` as in `enum Foo { Bar = .. }`.
4495    Unit(#[stable_hash(ignore)] HirId, LocalDefId),
4496}
4497
4498impl<'hir> VariantData<'hir> {
4499    /// Return the fields of this variant.
4500    pub fn fields(&self) -> &'hir [FieldDef<'hir>] {
4501        match *self {
4502            VariantData::Struct { fields, .. } | VariantData::Tuple(fields, ..) => fields,
4503            _ => &[],
4504        }
4505    }
4506
4507    pub fn ctor(&self) -> Option<(CtorKind, HirId, LocalDefId)> {
4508        match *self {
4509            VariantData::Tuple(_, hir_id, def_id) => Some((CtorKind::Fn, hir_id, def_id)),
4510            VariantData::Unit(hir_id, def_id) => Some((CtorKind::Const, hir_id, def_id)),
4511            VariantData::Struct { .. } => None,
4512        }
4513    }
4514
4515    #[inline]
4516    pub fn ctor_kind(&self) -> Option<CtorKind> {
4517        self.ctor().map(|(kind, ..)| kind)
4518    }
4519
4520    /// Return the `HirId` of this variant's constructor, if it has one.
4521    #[inline]
4522    pub fn ctor_hir_id(&self) -> Option<HirId> {
4523        self.ctor().map(|(_, hir_id, _)| hir_id)
4524    }
4525
4526    /// Return the `LocalDefId` of this variant's constructor, if it has one.
4527    #[inline]
4528    pub fn ctor_def_id(&self) -> Option<LocalDefId> {
4529        self.ctor().map(|(.., def_id)| def_id)
4530    }
4531}
4532
4533// The bodies for items are stored "out of line", in a separate
4534// hashmap in the `Crate`. Here we just record the hir-id of the item
4535// so it can fetched later.
4536#[derive(#[automatically_derived]
impl ::core::marker::Copy for ItemId { }Copy, #[automatically_derived]
impl ::core::clone::Clone for ItemId {
    #[inline]
    fn clone(&self) -> ItemId {
        let _: ::core::clone::AssertParamIsClone<OwnerId>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for ItemId {
    #[inline]
    fn eq(&self, other: &ItemId) -> bool { self.owner_id == other.owner_id }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for ItemId {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<OwnerId>;
    }
}Eq, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for ItemId {
            fn encode(&self, __encoder: &mut __E) {
                match *self {
                    ItemId { owner_id: ref __binding_0 } => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for ItemId {
            fn decode(__decoder: &mut __D) -> Self {
                ItemId {
                    owner_id: ::rustc_serialize::Decodable::decode(__decoder),
                }
            }
        }
    };Decodable, #[automatically_derived]
impl ::core::fmt::Debug for ItemId {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field1_finish(f, "ItemId",
            "owner_id", &&self.owner_id)
    }
}Debug, #[automatically_derived]
impl ::core::hash::Hash for ItemId {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        ::core::hash::Hash::hash(&self.owner_id, state)
    }
}Hash, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for ItemId {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    ItemId { owner_id: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4537pub struct ItemId {
4538    pub owner_id: OwnerId,
4539}
4540
4541impl ItemId {
4542    #[inline]
4543    pub fn hir_id(&self) -> HirId {
4544        // Items are always HIR owners.
4545        HirId::make_owner(self.owner_id.def_id)
4546    }
4547}
4548
4549/// An item
4550///
4551/// For more details, see the [rust lang reference].
4552/// Note that the reference does not document nightly-only features.
4553/// There may be also slight differences in the names and representation of AST nodes between
4554/// the compiler and the reference.
4555///
4556/// [rust lang reference]: https://doc.rust-lang.org/reference/items.html
4557#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for Item<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        let names: &'static _ =
            &["owner_id", "kind", "span", "vis_span", "has_delayed_lints",
                        "eii"];
        let values: &[&dyn ::core::fmt::Debug] =
            &[&self.owner_id, &self.kind, &self.span, &self.vis_span,
                        &self.has_delayed_lints, &&self.eii];
        ::core::fmt::Formatter::debug_struct_fields_finish(f, "Item", names,
            values)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Item<'hir> {
    #[inline]
    fn clone(&self) -> Item<'hir> {
        let _: ::core::clone::AssertParamIsClone<OwnerId>;
        let _: ::core::clone::AssertParamIsClone<ItemKind<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for Item<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Item<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Item {
                        owner_id: ref __binding_0,
                        kind: ref __binding_1,
                        span: ref __binding_2,
                        vis_span: ref __binding_3,
                        has_delayed_lints: ref __binding_4,
                        eii: ref __binding_5 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                        { __binding_5.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4558pub struct Item<'hir> {
4559    pub owner_id: OwnerId,
4560    pub kind: ItemKind<'hir>,
4561    pub span: Span,
4562    pub vis_span: Span,
4563    pub has_delayed_lints: bool,
4564    /// hint to speed up collection: true if the item is a static or function and has
4565    /// either an `EiiImpls` or `EiiExternTarget` attribute
4566    pub eii: bool,
4567}
4568
4569impl<'hir> Item<'hir> {
4570    #[inline]
4571    pub fn hir_id(&self) -> HirId {
4572        // Items are always HIR owners.
4573        HirId::make_owner(self.owner_id.def_id)
4574    }
4575
4576    pub fn item_id(&self) -> ItemId {
4577        ItemId { owner_id: self.owner_id }
4578    }
4579
4580    /// Check if this is an [`ItemKind::Enum`], [`ItemKind::Struct`] or
4581    /// [`ItemKind::Union`].
4582    pub fn is_adt(&self) -> bool {
4583        #[allow(non_exhaustive_omitted_patterns)] match self.kind {
    ItemKind::Enum(..) | ItemKind::Struct(..) | ItemKind::Union(..) => true,
    _ => false,
}matches!(self.kind, ItemKind::Enum(..) | ItemKind::Struct(..) | ItemKind::Union(..))
4584    }
4585
4586    /// Check if this is an [`ItemKind::Struct`] or [`ItemKind::Union`].
4587    pub fn is_struct_or_union(&self) -> bool {
4588        #[allow(non_exhaustive_omitted_patterns)] match self.kind {
    ItemKind::Struct(..) | ItemKind::Union(..) => true,
    _ => false,
}matches!(self.kind, ItemKind::Struct(..) | ItemKind::Union(..))
4589    }
4590
4591    #[track_caller]
pub fn expect_impl(&self) -> &Impl<'hir> {
    let ItemKind::Impl(imp) =
        &self.kind else { expect_failed("expect_impl", self) };
    imp
}expect_methods_self_kind! {
4592        expect_extern_crate, (Option<Symbol>, Ident),
4593            ItemKind::ExternCrate(s, ident), (*s, *ident);
4594
4595        expect_use, (&'hir UsePath<'hir>, UseKind), ItemKind::Use(p, uk), (p, *uk);
4596
4597        expect_static, (Mutability, Ident, &'hir Ty<'hir>, BodyId),
4598            ItemKind::Static(mutbl, ident, ty, body), (*mutbl, *ident, ty, *body);
4599
4600        expect_const, (Ident, &'hir Generics<'hir>, &'hir Ty<'hir>, ConstItemRhs<'hir>),
4601            ItemKind::Const(ident, generics, ty, rhs), (*ident, generics, ty, *rhs);
4602
4603        expect_fn, (Ident, &FnSig<'hir>, &'hir Generics<'hir>, BodyId),
4604            ItemKind::Fn { ident, sig, generics, body, .. }, (*ident, sig, generics, *body);
4605
4606        expect_macro, (Ident, &ast::MacroDef, MacroKinds),
4607            ItemKind::Macro(ident, def, mk), (*ident, def, *mk);
4608
4609        expect_mod, (Ident, &'hir Mod<'hir>), ItemKind::Mod(ident, m), (*ident, m);
4610
4611        expect_foreign_mod, (ExternAbi, &'hir [ForeignItemId]),
4612            ItemKind::ForeignMod { abi, items }, (*abi, items);
4613
4614        expect_global_asm, &'hir InlineAsm<'hir>, ItemKind::GlobalAsm { asm, .. }, asm;
4615
4616        expect_ty_alias, (Ident, &'hir Generics<'hir>, &'hir Ty<'hir>),
4617            ItemKind::TyAlias(ident, generics, ty), (*ident, generics, ty);
4618
4619        expect_enum, (Ident, &'hir Generics<'hir>, &EnumDef<'hir>),
4620            ItemKind::Enum(ident, generics, def), (*ident, generics, def);
4621
4622        expect_struct, (Ident, &'hir Generics<'hir>, &VariantData<'hir>),
4623            ItemKind::Struct(ident, generics, data), (*ident, generics, data);
4624
4625        expect_union, (Ident, &'hir Generics<'hir>, &VariantData<'hir>),
4626            ItemKind::Union(ident, generics, data), (*ident, generics, data);
4627
4628        expect_trait,
4629            (
4630                &'hir ImplRestriction<'hir>,
4631                Constness,
4632                IsAuto,
4633                Safety,
4634                Ident,
4635                &'hir Generics<'hir>,
4636                GenericBounds<'hir>,
4637                &'hir [TraitItemId]
4638            ),
4639            ItemKind::Trait { impl_restriction, constness, is_auto, safety, ident, generics, bounds, items },
4640            (impl_restriction, *constness, *is_auto, *safety, *ident, generics, bounds, items);
4641
4642        expect_trait_alias, (Constness, Ident, &'hir Generics<'hir>, GenericBounds<'hir>),
4643            ItemKind::TraitAlias(constness, ident, generics, bounds), (*constness, *ident, generics, bounds);
4644
4645        expect_impl, &Impl<'hir>, ItemKind::Impl(imp), imp;
4646    }
4647}
4648
4649#[derive(#[automatically_derived]
impl ::core::marker::Copy for Safety { }Copy, #[automatically_derived]
impl ::core::clone::Clone for Safety {
    #[inline]
    fn clone(&self) -> Safety { *self }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for Safety {
    #[inline]
    fn eq(&self, other: &Safety) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for Safety {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {}
}Eq, #[automatically_derived]
impl ::core::cmp::PartialOrd for Safety {
    #[inline]
    fn partial_cmp(&self, other: &Safety)
        -> ::core::option::Option<::core::cmp::Ordering> {
        ::core::option::Option::Some(::core::cmp::Ord::cmp(self, other))
    }
}PartialOrd, #[automatically_derived]
impl ::core::cmp::Ord for Safety {
    #[inline]
    fn cmp(&self, other: &Safety) -> ::core::cmp::Ordering {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        ::core::cmp::Ord::cmp(&__self_discr, &__arg1_discr)
    }
}Ord, #[automatically_derived]
impl ::core::hash::Hash for Safety {
    #[inline]
    fn hash<__H: ::core::hash::Hasher>(&self, state: &mut __H) {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        ::core::hash::Hash::hash(&__self_discr, state)
    }
}Hash, #[automatically_derived]
impl ::core::fmt::Debug for Safety {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::write_str(f,
            match self {
                Safety::Unsafe => "Unsafe",
                Safety::Safe => "Safe",
            })
    }
}Debug)]
4650#[derive(const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for Safety {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        Safety::Unsafe => { 0usize }
                        Safety::Safe => { 1usize }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self { Safety::Unsafe => {} Safety::Safe => {} }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for Safety {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => { Safety::Unsafe }
                    1usize => { Safety::Safe }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `Safety`, expected 0..2, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for Safety {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self { Safety::Unsafe => {} Safety::Safe => {} }
            }
        }
    };StableHash, #[automatically_derived]
impl ::core::default::Default for Safety {
    #[inline]
    fn default() -> Safety { Self::Unsafe }
}Default)]
4651pub enum Safety {
4652    /// This is the default variant, because the compiler messing up
4653    /// metadata encoding and failing to encode a `Safe` flag, means
4654    /// downstream crates think a thing is `Unsafe` instead of silently
4655    /// treating an unsafe thing as safe.
4656    #[default]
4657    Unsafe,
4658    Safe,
4659}
4660
4661impl Safety {
4662    pub fn prefix_str(self) -> &'static str {
4663        match self {
4664            Self::Unsafe => "unsafe ",
4665            Self::Safe => "",
4666        }
4667    }
4668
4669    #[inline]
4670    pub fn is_unsafe(self) -> bool {
4671        !self.is_safe()
4672    }
4673
4674    #[inline]
4675    pub fn is_safe(self) -> bool {
4676        match self {
4677            Self::Unsafe => false,
4678            Self::Safe => true,
4679        }
4680    }
4681}
4682
4683impl fmt::Display for Safety {
4684    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
4685        f.write_str(match *self {
4686            Self::Unsafe => "unsafe",
4687            Self::Safe => "safe",
4688        })
4689    }
4690}
4691
4692#[derive(#[automatically_derived]
impl ::core::marker::Copy for Constness { }Copy, #[automatically_derived]
impl ::core::clone::Clone for Constness {
    #[inline]
    fn clone(&self) -> Constness {
        let _: ::core::clone::AssertParamIsClone<bool>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for Constness {
    #[inline]
    fn eq(&self, other: &Constness) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (Constness::Const { always: __self_0 }, Constness::Const {
                    always: __arg1_0 }) => __self_0 == __arg1_0,
                _ => true,
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for Constness {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<bool>;
    }
}Eq, #[automatically_derived]
impl ::core::fmt::Debug for Constness {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            Constness::Const { always: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f, "Const",
                    "always", &__self_0),
            Constness::NotConst =>
                ::core::fmt::Formatter::write_str(f, "NotConst"),
        }
    }
}Debug, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for Constness {
            fn encode(&self, __encoder: &mut __E) {
                let disc =
                    match *self {
                        Constness::Const { always: ref __binding_0 } => { 0usize }
                        Constness::NotConst => { 1usize }
                    };
                ::rustc_serialize::Encoder::emit_u8(__encoder, disc as u8);
                match *self {
                    Constness::Const { always: ref __binding_0 } => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                    Constness::NotConst => {}
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for Constness {
            fn decode(__decoder: &mut __D) -> Self {
                match ::rustc_serialize::Decoder::read_u8(__decoder) as usize
                    {
                    0usize => {
                        Constness::Const {
                            always: ::rustc_serialize::Decodable::decode(__decoder),
                        }
                    }
                    1usize => { Constness::NotConst }
                    n => {
                        ::core::panicking::panic_fmt(format_args!("invalid enum variant tag while decoding `Constness`, expected 0..2, actual {0}",
                                n));
                    }
                }
            }
        }
    };Decodable, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for Constness {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    Constness::Const { always: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Constness::NotConst => {}
                }
            }
        }
    };StableHash)]
4693pub enum Constness {
4694    Const { always: bool },
4695    NotConst,
4696}
4697
4698/// This impl exists as an optimization so that metadata deserialization can
4699/// store the value directly and not have to encode it wrapped in another `Option`.
4700impl Default for Constness {
4701    fn default() -> Self {
4702        Self::Const { always: false }
4703    }
4704}
4705
4706impl fmt::Display for Constness {
4707    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
4708        f.write_str(match *self {
4709            Self::Const { always: true } => "comptime",
4710            Self::Const { always: false } => "const",
4711            Self::NotConst => "non-const",
4712        })
4713    }
4714}
4715
4716#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for ImplRestriction<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f,
            "ImplRestriction", "kind", &self.kind, "span", &&self.span)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for ImplRestriction<'hir> {
    #[inline]
    fn clone(&self) -> ImplRestriction<'hir> {
        let _: ::core::clone::AssertParamIsClone<RestrictionKind<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for ImplRestriction<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            ImplRestriction<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    ImplRestriction {
                        kind: ref __binding_0, span: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4717pub struct ImplRestriction<'hir> {
4718    pub kind: RestrictionKind<'hir>,
4719    pub span: Span,
4720}
4721
4722#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for RestrictionKind<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            RestrictionKind::Unrestricted =>
                ::core::fmt::Formatter::write_str(f, "Unrestricted"),
            RestrictionKind::Restricted(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "Restricted", &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for RestrictionKind<'hir> {
    #[inline]
    fn clone(&self) -> RestrictionKind<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir Path<'hir, DefId>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for RestrictionKind<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            RestrictionKind<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    RestrictionKind::Unrestricted => {}
                    RestrictionKind::Restricted(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4723pub enum RestrictionKind<'hir> {
4724    /// The restriction does not affect the item.
4725    Unrestricted,
4726    /// The restriction only applies outside of this path.
4727    Restricted(&'hir Path<'hir, DefId>),
4728}
4729
4730/// The actual safety specified in syntax. We may treat
4731/// its safety different within the type system to create a
4732/// "sound by default" system that needs checking this enum
4733/// explicitly to allow unsafe operations.
4734#[derive(#[automatically_derived]
impl ::core::marker::Copy for HeaderSafety { }Copy, #[automatically_derived]
impl ::core::clone::Clone for HeaderSafety {
    #[inline]
    fn clone(&self) -> HeaderSafety {
        let _: ::core::clone::AssertParamIsClone<Safety>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for HeaderSafety {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            HeaderSafety::SafeTargetFeatures =>
                ::core::fmt::Formatter::write_str(f, "SafeTargetFeatures"),
            HeaderSafety::Normal(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Normal",
                    &__self_0),
        }
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for HeaderSafety
            {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    HeaderSafety::SafeTargetFeatures => {}
                    HeaderSafety::Normal(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash, #[automatically_derived]
impl ::core::cmp::PartialEq for HeaderSafety {
    #[inline]
    fn eq(&self, other: &HeaderSafety) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (HeaderSafety::Normal(__self_0),
                    HeaderSafety::Normal(__arg1_0)) => __self_0 == __arg1_0,
                _ => true,
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for HeaderSafety {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<Safety>;
    }
}Eq)]
4735pub enum HeaderSafety {
4736    /// A safe function annotated with `#[target_features]`.
4737    /// The type system treats this function as an unsafe function,
4738    /// but safety checking will check this enum to treat it as safe
4739    /// and allowing calling other safe target feature functions with
4740    /// the same features without requiring an additional unsafe block.
4741    SafeTargetFeatures,
4742    Normal(Safety),
4743}
4744
4745impl From<Safety> for HeaderSafety {
4746    fn from(v: Safety) -> Self {
4747        Self::Normal(v)
4748    }
4749}
4750
4751#[derive(#[automatically_derived]
impl ::core::marker::Copy for FnHeader { }Copy, #[automatically_derived]
impl ::core::clone::Clone for FnHeader {
    #[inline]
    fn clone(&self) -> FnHeader {
        let _: ::core::clone::AssertParamIsClone<HeaderSafety>;
        let _: ::core::clone::AssertParamIsClone<Constness>;
        let _: ::core::clone::AssertParamIsClone<IsAsync>;
        let _: ::core::clone::AssertParamIsClone<ExternAbi>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::fmt::Debug for FnHeader {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field4_finish(f, "FnHeader",
            "safety", &self.safety, "constness", &self.constness, "asyncness",
            &self.asyncness, "abi", &&self.abi)
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for FnHeader {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    FnHeader {
                        safety: ref __binding_0,
                        constness: ref __binding_1,
                        asyncness: ref __binding_2,
                        abi: ref __binding_3 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4752pub struct FnHeader {
4753    pub safety: HeaderSafety,
4754    pub constness: Constness,
4755    pub asyncness: IsAsync,
4756    pub abi: ExternAbi,
4757}
4758
4759impl FnHeader {
4760    pub fn is_async(&self) -> bool {
4761        #[allow(non_exhaustive_omitted_patterns)] match self.asyncness {
    IsAsync::Async(_) => true,
    _ => false,
}matches!(self.asyncness, IsAsync::Async(_))
4762    }
4763
4764    pub fn is_unsafe(&self) -> bool {
4765        self.safety().is_unsafe()
4766    }
4767
4768    pub fn is_safe(&self) -> bool {
4769        self.safety().is_safe()
4770    }
4771
4772    pub fn safety(&self) -> Safety {
4773        match self.safety {
4774            HeaderSafety::SafeTargetFeatures => Safety::Unsafe,
4775            HeaderSafety::Normal(safety) => safety,
4776        }
4777    }
4778}
4779
4780#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for ItemKind<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            ItemKind::ExternCrate(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f,
                    "ExternCrate", __self_0, &__self_1),
            ItemKind::Use(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Use",
                    __self_0, &__self_1),
            ItemKind::Static(__self_0, __self_1, __self_2, __self_3) =>
                ::core::fmt::Formatter::debug_tuple_field4_finish(f, "Static",
                    __self_0, __self_1, __self_2, &__self_3),
            ItemKind::Const(__self_0, __self_1, __self_2, __self_3) =>
                ::core::fmt::Formatter::debug_tuple_field4_finish(f, "Const",
                    __self_0, __self_1, __self_2, &__self_3),
            ItemKind::Fn {
                sig: __self_0,
                ident: __self_1,
                generics: __self_2,
                body: __self_3,
                has_body: __self_4 } =>
                ::core::fmt::Formatter::debug_struct_field5_finish(f, "Fn",
                    "sig", __self_0, "ident", __self_1, "generics", __self_2,
                    "body", __self_3, "has_body", &__self_4),
            ItemKind::Macro(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Macro",
                    __self_0, __self_1, &__self_2),
            ItemKind::Mod(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f, "Mod",
                    __self_0, &__self_1),
            ItemKind::ForeignMod { abi: __self_0, items: __self_1 } =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f,
                    "ForeignMod", "abi", __self_0, "items", &__self_1),
            ItemKind::GlobalAsm { asm: __self_0, fake_body: __self_1 } =>
                ::core::fmt::Formatter::debug_struct_field2_finish(f,
                    "GlobalAsm", "asm", __self_0, "fake_body", &__self_1),
            ItemKind::TyAlias(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f,
                    "TyAlias", __self_0, __self_1, &__self_2),
            ItemKind::Enum(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Enum",
                    __self_0, __self_1, &__self_2),
            ItemKind::Struct(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Struct",
                    __self_0, __self_1, &__self_2),
            ItemKind::Union(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Union",
                    __self_0, __self_1, &__self_2),
            ItemKind::Trait {
                impl_restriction: __self_0,
                constness: __self_1,
                is_auto: __self_2,
                safety: __self_3,
                ident: __self_4,
                generics: __self_5,
                bounds: __self_6,
                items: __self_7 } => {
                let names: &'static _ =
                    &["impl_restriction", "constness", "is_auto", "safety",
                                "ident", "generics", "bounds", "items"];
                let values: &[&dyn ::core::fmt::Debug] =
                    &[__self_0, __self_1, __self_2, __self_3, __self_4,
                                __self_5, __self_6, &__self_7];
                ::core::fmt::Formatter::debug_struct_fields_finish(f, "Trait",
                    names, values)
            }
            ItemKind::TraitAlias(__self_0, __self_1, __self_2, __self_3) =>
                ::core::fmt::Formatter::debug_tuple_field4_finish(f,
                    "TraitAlias", __self_0, __self_1, __self_2, &__self_3),
            ItemKind::Impl(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Impl",
                    &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for ItemKind<'hir> {
    #[inline]
    fn clone(&self) -> ItemKind<'hir> {
        let _: ::core::clone::AssertParamIsClone<Option<Symbol>>;
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<&'hir UsePath<'hir>>;
        let _: ::core::clone::AssertParamIsClone<UseKind>;
        let _: ::core::clone::AssertParamIsClone<Mutability>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<BodyId>;
        let _: ::core::clone::AssertParamIsClone<&'hir Generics<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<ConstItemRhs<'hir>>;
        let _: ::core::clone::AssertParamIsClone<FnSig<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Generics<'hir>>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        let _: ::core::clone::AssertParamIsClone<&'hir ast::MacroDef>;
        let _: ::core::clone::AssertParamIsClone<MacroKinds>;
        let _: ::core::clone::AssertParamIsClone<&'hir Mod<'hir>>;
        let _: ::core::clone::AssertParamIsClone<ExternAbi>;
        let _: ::core::clone::AssertParamIsClone<&'hir [ForeignItemId]>;
        let _: ::core::clone::AssertParamIsClone<&'hir InlineAsm<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Generics<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Generics<'hir>>;
        let _: ::core::clone::AssertParamIsClone<EnumDef<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Generics<'hir>>;
        let _: ::core::clone::AssertParamIsClone<VariantData<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Generics<'hir>>;
        let _: ::core::clone::AssertParamIsClone<VariantData<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir ImplRestriction<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Constness>;
        let _: ::core::clone::AssertParamIsClone<IsAuto>;
        let _: ::core::clone::AssertParamIsClone<Safety>;
        let _: ::core::clone::AssertParamIsClone<&'hir Generics<'hir>>;
        let _: ::core::clone::AssertParamIsClone<GenericBounds<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [TraitItemId]>;
        let _: ::core::clone::AssertParamIsClone<&'hir Generics<'hir>>;
        let _: ::core::clone::AssertParamIsClone<GenericBounds<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Impl<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for ItemKind<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            ItemKind<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    ItemKind::ExternCrate(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::Use(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::Static(ref __binding_0, ref __binding_1,
                        ref __binding_2, ref __binding_3) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::Const(ref __binding_0, ref __binding_1,
                        ref __binding_2, ref __binding_3) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::Fn {
                        sig: ref __binding_0,
                        ident: ref __binding_1,
                        generics: ref __binding_2,
                        body: ref __binding_3,
                        has_body: ref __binding_4 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::Macro(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::Mod(ref __binding_0, ref __binding_1) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::ForeignMod {
                        abi: ref __binding_0, items: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::GlobalAsm {
                        asm: ref __binding_0, fake_body: ref __binding_1 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::TyAlias(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::Enum(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::Struct(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::Union(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::Trait {
                        impl_restriction: ref __binding_0,
                        constness: ref __binding_1,
                        is_auto: ref __binding_2,
                        safety: ref __binding_3,
                        ident: ref __binding_4,
                        generics: ref __binding_5,
                        bounds: ref __binding_6,
                        items: ref __binding_7 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                        { __binding_5.stable_hash(__hcx, __hasher); }
                        { __binding_6.stable_hash(__hcx, __hasher); }
                        { __binding_7.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::TraitAlias(ref __binding_0, ref __binding_1,
                        ref __binding_2, ref __binding_3) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                    }
                    ItemKind::Impl(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4781pub enum ItemKind<'hir> {
4782    /// An `extern crate` item, with optional *original* crate name if the crate was renamed.
4783    ///
4784    /// E.g., `extern crate foo` or `extern crate foo_bar as foo`.
4785    ExternCrate(Option<Symbol>, Ident),
4786
4787    /// `use foo::bar::*;` or `use foo::bar::baz as quux;`
4788    ///
4789    /// or just
4790    ///
4791    /// `use foo::bar::baz;` (with `as baz` implicitly on the right).
4792    Use(&'hir UsePath<'hir>, UseKind),
4793
4794    /// A `static` item.
4795    Static(Mutability, Ident, &'hir Ty<'hir>, BodyId),
4796    /// A `const` item.
4797    Const(Ident, &'hir Generics<'hir>, &'hir Ty<'hir>, ConstItemRhs<'hir>),
4798    /// A function declaration.
4799    Fn {
4800        sig: FnSig<'hir>,
4801        ident: Ident,
4802        generics: &'hir Generics<'hir>,
4803        body: BodyId,
4804        /// Whether this function actually has a body.
4805        /// For functions without a body, `body` is synthesized (to avoid ICEs all over the
4806        /// compiler), but that code should never be translated.
4807        has_body: bool,
4808    },
4809    /// A MBE macro definition (`macro_rules!` or `macro`).
4810    Macro(Ident, &'hir ast::MacroDef, MacroKinds),
4811    /// A module.
4812    Mod(Ident, &'hir Mod<'hir>),
4813    /// An external module, e.g. `extern { .. }`.
4814    ForeignMod { abi: ExternAbi, items: &'hir [ForeignItemId] },
4815    /// Module-level inline assembly (from `global_asm!`).
4816    GlobalAsm {
4817        asm: &'hir InlineAsm<'hir>,
4818        /// A fake body which stores typeck results for the global asm's sym_fn
4819        /// operands, which are represented as path expressions. This body contains
4820        /// a single [`ExprKind::InlineAsm`] which points to the asm in the field
4821        /// above, and which is typechecked like a inline asm expr just for the
4822        /// typeck results.
4823        fake_body: BodyId,
4824    },
4825    /// A type alias, e.g., `type Foo = Bar<u8>`.
4826    TyAlias(Ident, &'hir Generics<'hir>, &'hir Ty<'hir>),
4827    /// An enum definition, e.g., `enum Foo<A, B> { C<A>, D<B> }`.
4828    Enum(Ident, &'hir Generics<'hir>, EnumDef<'hir>),
4829    /// A struct definition, e.g., `struct Foo<A> {x: A}`.
4830    Struct(Ident, &'hir Generics<'hir>, VariantData<'hir>),
4831    /// A union definition, e.g., `union Foo<A, B> {x: A, y: B}`.
4832    Union(Ident, &'hir Generics<'hir>, VariantData<'hir>),
4833    /// A trait definition.
4834    Trait {
4835        impl_restriction: &'hir ImplRestriction<'hir>,
4836        constness: Constness,
4837        is_auto: IsAuto,
4838        safety: Safety,
4839        ident: Ident,
4840        generics: &'hir Generics<'hir>,
4841        bounds: GenericBounds<'hir>,
4842        items: &'hir [TraitItemId],
4843    },
4844    /// A trait alias.
4845    TraitAlias(Constness, Ident, &'hir Generics<'hir>, GenericBounds<'hir>),
4846
4847    /// An implementation, e.g., `impl<A> Trait for Foo { .. }`.
4848    Impl(Impl<'hir>),
4849}
4850
4851/// Represents an impl block declaration.
4852///
4853/// E.g., `impl $Type { .. }` or `impl $Trait for $Type { .. }`
4854/// Refer to [`ImplItem`] for an associated item within an impl block.
4855#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for Impl<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field5_finish(f, "Impl",
            "generics", &self.generics, "of_trait", &self.of_trait, "self_ty",
            &self.self_ty, "items", &self.items, "constness",
            &&self.constness)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Impl<'hir> {
    #[inline]
    fn clone(&self) -> Impl<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir Generics<'hir>>;
        let _:
                ::core::clone::AssertParamIsClone<Option<&'hir TraitImplHeader<'hir>>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [ImplItemId]>;
        let _: ::core::clone::AssertParamIsClone<Constness>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for Impl<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Impl<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Impl {
                        generics: ref __binding_0,
                        of_trait: ref __binding_1,
                        self_ty: ref __binding_2,
                        items: ref __binding_3,
                        constness: ref __binding_4 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4856pub struct Impl<'hir> {
4857    pub generics: &'hir Generics<'hir>,
4858    pub of_trait: Option<&'hir TraitImplHeader<'hir>>,
4859    pub self_ty: &'hir Ty<'hir>,
4860    pub items: &'hir [ImplItemId],
4861    pub constness: Constness,
4862}
4863
4864#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for TraitImplHeader<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field5_finish(f,
            "TraitImplHeader", "safety", &self.safety, "polarity",
            &self.polarity, "defaultness", &self.defaultness,
            "defaultness_span", &self.defaultness_span, "trait_ref",
            &&self.trait_ref)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for TraitImplHeader<'hir> {
    #[inline]
    fn clone(&self) -> TraitImplHeader<'hir> {
        let _: ::core::clone::AssertParamIsClone<Safety>;
        let _: ::core::clone::AssertParamIsClone<ImplPolarity>;
        let _: ::core::clone::AssertParamIsClone<Defaultness>;
        let _: ::core::clone::AssertParamIsClone<Option<Span>>;
        let _: ::core::clone::AssertParamIsClone<TraitRef<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for TraitImplHeader<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            TraitImplHeader<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    TraitImplHeader {
                        safety: ref __binding_0,
                        polarity: ref __binding_1,
                        defaultness: ref __binding_2,
                        defaultness_span: ref __binding_3,
                        trait_ref: ref __binding_4 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4865pub struct TraitImplHeader<'hir> {
4866    pub safety: Safety,
4867    pub polarity: ImplPolarity,
4868    pub defaultness: Defaultness,
4869    // We do not put a `Span` in `Defaultness` because it breaks foreign crate metadata
4870    // decoding as `Span`s cannot be decoded when a `Session` is not available.
4871    pub defaultness_span: Option<Span>,
4872    pub trait_ref: TraitRef<'hir>,
4873}
4874
4875impl ItemKind<'_> {
4876    pub fn ident(&self) -> Option<Ident> {
4877        match *self {
4878            ItemKind::ExternCrate(_, ident)
4879            | ItemKind::Use(_, UseKind::Single(ident))
4880            | ItemKind::Static(_, ident, ..)
4881            | ItemKind::Const(ident, ..)
4882            | ItemKind::Fn { ident, .. }
4883            | ItemKind::Macro(ident, ..)
4884            | ItemKind::Mod(ident, ..)
4885            | ItemKind::TyAlias(ident, ..)
4886            | ItemKind::Enum(ident, ..)
4887            | ItemKind::Struct(ident, ..)
4888            | ItemKind::Union(ident, ..)
4889            | ItemKind::Trait { ident, .. }
4890            | ItemKind::TraitAlias(_, ident, ..) => Some(ident),
4891
4892            ItemKind::Use(_, UseKind::Glob | UseKind::ListStem)
4893            | ItemKind::ForeignMod { .. }
4894            | ItemKind::GlobalAsm { .. }
4895            | ItemKind::Impl(_) => None,
4896        }
4897    }
4898
4899    pub fn generics(&self) -> Option<&Generics<'_>> {
4900        Some(match self {
4901            ItemKind::Fn { generics, .. }
4902            | ItemKind::TyAlias(_, generics, _)
4903            | ItemKind::Const(_, generics, _, _)
4904            | ItemKind::Enum(_, generics, _)
4905            | ItemKind::Struct(_, generics, _)
4906            | ItemKind::Union(_, generics, _)
4907            | ItemKind::Trait { generics, .. }
4908            | ItemKind::TraitAlias(_, _, generics, _)
4909            | ItemKind::Impl(Impl { generics, .. }) => generics,
4910            _ => return None,
4911        })
4912    }
4913
4914    pub fn recovered(&self) -> bool {
4915        match self {
4916            ItemKind::Struct(
4917                _,
4918                _,
4919                VariantData::Struct { recovered: ast::Recovered::Yes(_), .. },
4920            ) => true,
4921            ItemKind::Union(
4922                _,
4923                _,
4924                VariantData::Struct { recovered: ast::Recovered::Yes(_), .. },
4925            ) => true,
4926            ItemKind::Enum(_, _, def) => def.variants.iter().any(|v| match v.data {
4927                VariantData::Struct { recovered: ast::Recovered::Yes(_), .. } => true,
4928                _ => false,
4929            }),
4930            _ => false,
4931        }
4932    }
4933}
4934
4935// The bodies for items are stored "out of line", in a separate
4936// hashmap in the `Crate`. Here we just record the hir-id of the item
4937// so it can fetched later.
4938#[derive(#[automatically_derived]
impl ::core::marker::Copy for ForeignItemId { }Copy, #[automatically_derived]
impl ::core::clone::Clone for ForeignItemId {
    #[inline]
    fn clone(&self) -> ForeignItemId {
        let _: ::core::clone::AssertParamIsClone<OwnerId>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for ForeignItemId {
    #[inline]
    fn eq(&self, other: &ForeignItemId) -> bool {
        self.owner_id == other.owner_id
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for ForeignItemId {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<OwnerId>;
    }
}Eq, const _: () =
    {
        impl<__E: ::rustc_span::SpanEncoder> ::rustc_serialize::Encodable<__E>
            for ForeignItemId {
            fn encode(&self, __encoder: &mut __E) {
                match *self {
                    ForeignItemId { owner_id: ref __binding_0 } => {
                        ::rustc_serialize::Encodable::<__E>::encode(__binding_0,
                            __encoder);
                    }
                }
            }
        }
    };Encodable, const _: () =
    {
        impl<__D: ::rustc_span::SpanDecoder> ::rustc_serialize::Decodable<__D>
            for ForeignItemId {
            fn decode(__decoder: &mut __D) -> Self {
                ForeignItemId {
                    owner_id: ::rustc_serialize::Decodable::decode(__decoder),
                }
            }
        }
    };Decodable, #[automatically_derived]
impl ::core::fmt::Debug for ForeignItemId {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field1_finish(f, "ForeignItemId",
            "owner_id", &&self.owner_id)
    }
}Debug, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for
            ForeignItemId {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    ForeignItemId { owner_id: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4939pub struct ForeignItemId {
4940    pub owner_id: OwnerId,
4941}
4942
4943impl ForeignItemId {
4944    #[inline]
4945    pub fn hir_id(&self) -> HirId {
4946        // Items are always HIR owners.
4947        HirId::make_owner(self.owner_id.def_id)
4948    }
4949}
4950
4951#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for ForeignItem<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        let names: &'static _ =
            &["ident", "kind", "owner_id", "span", "vis_span",
                        "has_delayed_lints"];
        let values: &[&dyn ::core::fmt::Debug] =
            &[&self.ident, &self.kind, &self.owner_id, &self.span,
                        &self.vis_span, &&self.has_delayed_lints];
        ::core::fmt::Formatter::debug_struct_fields_finish(f, "ForeignItem",
            names, values)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for ForeignItem<'hir> {
    #[inline]
    fn clone(&self) -> ForeignItem<'hir> {
        let _: ::core::clone::AssertParamIsClone<Ident>;
        let _: ::core::clone::AssertParamIsClone<ForeignItemKind<'hir>>;
        let _: ::core::clone::AssertParamIsClone<OwnerId>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for ForeignItem<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            ForeignItem<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    ForeignItem {
                        ident: ref __binding_0,
                        kind: ref __binding_1,
                        owner_id: ref __binding_2,
                        span: ref __binding_3,
                        vis_span: ref __binding_4,
                        has_delayed_lints: ref __binding_5 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                        { __binding_3.stable_hash(__hcx, __hasher); }
                        { __binding_4.stable_hash(__hcx, __hasher); }
                        { __binding_5.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4952pub struct ForeignItem<'hir> {
4953    pub ident: Ident,
4954    pub kind: ForeignItemKind<'hir>,
4955    pub owner_id: OwnerId,
4956    pub span: Span,
4957    pub vis_span: Span,
4958    pub has_delayed_lints: bool,
4959}
4960
4961impl ForeignItem<'_> {
4962    #[inline]
4963    pub fn hir_id(&self) -> HirId {
4964        // Items are always HIR owners.
4965        HirId::make_owner(self.owner_id.def_id)
4966    }
4967
4968    pub fn foreign_item_id(&self) -> ForeignItemId {
4969        ForeignItemId { owner_id: self.owner_id }
4970    }
4971}
4972
4973/// An item within an `extern` block.
4974#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for ForeignItemKind<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            ForeignItemKind::Fn(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Fn",
                    __self_0, __self_1, &__self_2),
            ForeignItemKind::Static(__self_0, __self_1, __self_2) =>
                ::core::fmt::Formatter::debug_tuple_field3_finish(f, "Static",
                    __self_0, __self_1, &__self_2),
            ForeignItemKind::Type =>
                ::core::fmt::Formatter::write_str(f, "Type"),
        }
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for ForeignItemKind<'hir> {
    #[inline]
    fn clone(&self) -> ForeignItemKind<'hir> {
        let _: ::core::clone::AssertParamIsClone<FnSig<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir [Option<Ident>]>;
        let _: ::core::clone::AssertParamIsClone<&'hir Generics<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _: ::core::clone::AssertParamIsClone<Mutability>;
        let _: ::core::clone::AssertParamIsClone<Safety>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for ForeignItemKind<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            ForeignItemKind<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    ForeignItemKind::Fn(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ForeignItemKind::Static(ref __binding_0, ref __binding_1,
                        ref __binding_2) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                    ForeignItemKind::Type => {}
                }
            }
        }
    };StableHash)]
4975pub enum ForeignItemKind<'hir> {
4976    /// A foreign function.
4977    ///
4978    /// All argument idents are actually always present (i.e. `Some`), but
4979    /// `&[Option<Ident>]` is used because of code paths shared with `TraitFn`
4980    /// and `FnPtrTy`. The sharing is due to all of these cases not allowing
4981    /// arbitrary patterns for parameters.
4982    Fn(FnSig<'hir>, &'hir [Option<Ident>], &'hir Generics<'hir>),
4983    /// A foreign static item (`static ext: u8`).
4984    Static(&'hir Ty<'hir>, Mutability, Safety),
4985    /// A foreign type.
4986    Type,
4987}
4988
4989/// A variable captured by a closure.
4990#[derive(#[automatically_derived]
impl ::core::fmt::Debug for Upvar {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field1_finish(f, "Upvar", "span",
            &&self.span)
    }
}Debug, #[automatically_derived]
impl ::core::marker::Copy for Upvar { }Copy, #[automatically_derived]
impl ::core::clone::Clone for Upvar {
    #[inline]
    fn clone(&self) -> Upvar {
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, const _: () =
    {
        impl ::rustc_data_structures::stable_hash::StableHash for Upvar {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    Upvar { span: ref __binding_0 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
4991pub struct Upvar {
4992    /// First span where it is accessed (there can be multiple).
4993    pub span: Span,
4994}
4995
4996// The TraitCandidate's import_ids is empty if the trait is defined in the same module, and
4997// has length > 0 if the trait is found through an chain of imports, starting with the
4998// import/use statement in the scope where the trait is used.
4999#[derive(#[automatically_derived]
impl<'hir> ::core::fmt::Debug for TraitCandidate<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f,
            "TraitCandidate", "def_id", &self.def_id, "import_ids",
            &self.import_ids, "lint_ambiguous", &&self.lint_ambiguous)
    }
}Debug, #[automatically_derived]
impl<'hir> ::core::clone::Clone for TraitCandidate<'hir> {
    #[inline]
    fn clone(&self) -> TraitCandidate<'hir> {
        let _: ::core::clone::AssertParamIsClone<DefId>;
        let _: ::core::clone::AssertParamIsClone<&'hir [LocalDefId]>;
        let _: ::core::clone::AssertParamIsClone<bool>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::marker::Copy for TraitCandidate<'hir> { }Copy, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            TraitCandidate<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                match *self {
                    TraitCandidate {
                        def_id: ref __binding_0,
                        import_ids: ref __binding_1,
                        lint_ambiguous: ref __binding_2 } => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                        { __binding_1.stable_hash(__hcx, __hasher); }
                        { __binding_2.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
5000pub struct TraitCandidate<'hir> {
5001    pub def_id: DefId,
5002    pub import_ids: &'hir [LocalDefId],
5003    // Indicates whether this trait candidate is ambiguously glob imported
5004    // in it's scope. Related to the AMBIGUOUS_GLOB_IMPORTED_TRAITS lint.
5005    // If this is set to true and the trait is used as a result of method lookup, this
5006    // lint is thrown.
5007    pub lint_ambiguous: bool,
5008}
5009
5010#[derive(#[automatically_derived]
impl<'hir> ::core::marker::Copy for OwnerNode<'hir> { }Copy, #[automatically_derived]
impl<'hir> ::core::clone::Clone for OwnerNode<'hir> {
    #[inline]
    fn clone(&self) -> OwnerNode<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir Item<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir ForeignItem<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir TraitItem<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir ImplItem<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Mod<'hir>>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::fmt::Debug for OwnerNode<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            OwnerNode::Item(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Item",
                    &__self_0),
            OwnerNode::ForeignItem(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "ForeignItem", &__self_0),
            OwnerNode::TraitItem(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "TraitItem", &__self_0),
            OwnerNode::ImplItem(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "ImplItem", &__self_0),
            OwnerNode::Crate(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Crate",
                    &__self_0),
            OwnerNode::Synthetic =>
                ::core::fmt::Formatter::write_str(f, "Synthetic"),
        }
    }
}Debug, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            OwnerNode<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    OwnerNode::Item(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    OwnerNode::ForeignItem(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    OwnerNode::TraitItem(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    OwnerNode::ImplItem(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    OwnerNode::Crate(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    OwnerNode::Synthetic => {}
                }
            }
        }
    };StableHash)]
5011pub enum OwnerNode<'hir> {
5012    Item(&'hir Item<'hir>),
5013    ForeignItem(&'hir ForeignItem<'hir>),
5014    TraitItem(&'hir TraitItem<'hir>),
5015    ImplItem(&'hir ImplItem<'hir>),
5016    Crate(&'hir Mod<'hir>),
5017    Synthetic,
5018}
5019
5020impl<'hir> OwnerNode<'hir> {
5021    pub fn span(&self) -> Span {
5022        match self {
5023            OwnerNode::Item(Item { span, .. })
5024            | OwnerNode::ForeignItem(ForeignItem { span, .. })
5025            | OwnerNode::ImplItem(ImplItem { span, .. })
5026            | OwnerNode::TraitItem(TraitItem { span, .. }) => *span,
5027            OwnerNode::Crate(Mod { spans: ModSpans { inner_span, .. }, .. }) => *inner_span,
5028            OwnerNode::Synthetic => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
5029        }
5030    }
5031
5032    pub fn fn_sig(self) -> Option<&'hir FnSig<'hir>> {
5033        match self {
5034            OwnerNode::TraitItem(TraitItem { kind: TraitItemKind::Fn(fn_sig, _), .. })
5035            | OwnerNode::ImplItem(ImplItem { kind: ImplItemKind::Fn(fn_sig, _), .. })
5036            | OwnerNode::Item(Item { kind: ItemKind::Fn { sig: fn_sig, .. }, .. })
5037            | OwnerNode::ForeignItem(ForeignItem {
5038                kind: ForeignItemKind::Fn(fn_sig, _, _), ..
5039            }) => Some(fn_sig),
5040            _ => None,
5041        }
5042    }
5043
5044    pub fn fn_decl(self) -> Option<&'hir FnDecl<'hir>> {
5045        match self {
5046            OwnerNode::TraitItem(TraitItem { kind: TraitItemKind::Fn(fn_sig, _), .. })
5047            | OwnerNode::ImplItem(ImplItem { kind: ImplItemKind::Fn(fn_sig, _), .. })
5048            | OwnerNode::Item(Item { kind: ItemKind::Fn { sig: fn_sig, .. }, .. })
5049            | OwnerNode::ForeignItem(ForeignItem {
5050                kind: ForeignItemKind::Fn(fn_sig, _, _), ..
5051            }) => Some(fn_sig.decl),
5052            _ => None,
5053        }
5054    }
5055
5056    pub fn body_id(&self) -> Option<BodyId> {
5057        match self {
5058            OwnerNode::Item(Item {
5059                kind:
5060                    ItemKind::Static(_, _, _, body)
5061                    | ItemKind::Const(.., ConstItemRhs::Body(body))
5062                    | ItemKind::Fn { body, .. },
5063                ..
5064            })
5065            | OwnerNode::TraitItem(TraitItem {
5066                kind:
5067                    TraitItemKind::Fn(_, TraitFn::Provided(body))
5068                    | TraitItemKind::Const(_, Some(ConstItemRhs::Body(body))),
5069                ..
5070            })
5071            | OwnerNode::ImplItem(ImplItem {
5072                kind: ImplItemKind::Fn(_, body) | ImplItemKind::Const(_, ConstItemRhs::Body(body)),
5073                ..
5074            }) => Some(*body),
5075            _ => None,
5076        }
5077    }
5078
5079    pub fn generics(self) -> Option<&'hir Generics<'hir>> {
5080        Node::generics(self.into())
5081    }
5082
5083    pub fn def_id(self) -> OwnerId {
5084        match self {
5085            OwnerNode::Item(Item { owner_id, .. })
5086            | OwnerNode::TraitItem(TraitItem { owner_id, .. })
5087            | OwnerNode::ImplItem(ImplItem { owner_id, .. })
5088            | OwnerNode::ForeignItem(ForeignItem { owner_id, .. }) => *owner_id,
5089            OwnerNode::Crate(..) => crate::CRATE_HIR_ID.owner,
5090            OwnerNode::Synthetic => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
5091        }
5092    }
5093
5094    /// Check if node is an impl block.
5095    pub fn is_impl_block(&self) -> bool {
5096        #[allow(non_exhaustive_omitted_patterns)] match self {
    OwnerNode::Item(Item { kind: ItemKind::Impl(_), .. }) => true,
    _ => false,
}matches!(self, OwnerNode::Item(Item { kind: ItemKind::Impl(_), .. }))
5097    }
5098
5099    #[track_caller]
pub fn expect_trait_item(&self) -> &'hir TraitItem<'hir> {
    let OwnerNode::TraitItem(n) =
        self else { expect_failed("expect_trait_item", self) };
    n
}expect_methods_self! {
5100        expect_item,         &'hir Item<'hir>,        OwnerNode::Item(n),        n;
5101        expect_foreign_item, &'hir ForeignItem<'hir>, OwnerNode::ForeignItem(n), n;
5102        expect_impl_item,    &'hir ImplItem<'hir>,    OwnerNode::ImplItem(n),    n;
5103        expect_trait_item,   &'hir TraitItem<'hir>,   OwnerNode::TraitItem(n),   n;
5104    }
5105}
5106
5107impl<'hir> From<&'hir Item<'hir>> for OwnerNode<'hir> {
5108    fn from(val: &'hir Item<'hir>) -> Self {
5109        OwnerNode::Item(val)
5110    }
5111}
5112
5113impl<'hir> From<&'hir ForeignItem<'hir>> for OwnerNode<'hir> {
5114    fn from(val: &'hir ForeignItem<'hir>) -> Self {
5115        OwnerNode::ForeignItem(val)
5116    }
5117}
5118
5119impl<'hir> From<&'hir ImplItem<'hir>> for OwnerNode<'hir> {
5120    fn from(val: &'hir ImplItem<'hir>) -> Self {
5121        OwnerNode::ImplItem(val)
5122    }
5123}
5124
5125impl<'hir> From<&'hir TraitItem<'hir>> for OwnerNode<'hir> {
5126    fn from(val: &'hir TraitItem<'hir>) -> Self {
5127        OwnerNode::TraitItem(val)
5128    }
5129}
5130
5131impl<'hir> From<OwnerNode<'hir>> for Node<'hir> {
5132    fn from(val: OwnerNode<'hir>) -> Self {
5133        match val {
5134            OwnerNode::Item(n) => Node::Item(n),
5135            OwnerNode::ForeignItem(n) => Node::ForeignItem(n),
5136            OwnerNode::ImplItem(n) => Node::ImplItem(n),
5137            OwnerNode::TraitItem(n) => Node::TraitItem(n),
5138            OwnerNode::Crate(n) => Node::Crate(n),
5139            OwnerNode::Synthetic => Node::Synthetic,
5140        }
5141    }
5142}
5143
5144#[derive(#[automatically_derived]
impl<'hir> ::core::marker::Copy for Node<'hir> { }Copy, #[automatically_derived]
impl<'hir> ::core::clone::Clone for Node<'hir> {
    #[inline]
    fn clone(&self) -> Node<'hir> {
        let _: ::core::clone::AssertParamIsClone<&'hir Param<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Item<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir ForeignItem<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir TraitItem<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir ImplItem<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Variant<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir FieldDef<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir AnonConst>;
        let _: ::core::clone::AssertParamIsClone<&'hir ConstBlock>;
        let _: ::core::clone::AssertParamIsClone<&'hir ConstArg<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Expr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir ExprField<'hir>>;
        let _:
                ::core::clone::AssertParamIsClone<&'hir ConstArgExprField<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Stmt<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir PathSegment<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Ty<'hir>>;
        let _:
                ::core::clone::AssertParamIsClone<&'hir AssocItemConstraint<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir TraitRef<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir OpaqueTy<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir TyPat<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Pat<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir PatField<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir PatExpr<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Arm<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Block<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir LetStmt<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir VariantData<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Lifetime>;
        let _: ::core::clone::AssertParamIsClone<&'hir GenericParam<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir Mod<'hir>>;
        let _: ::core::clone::AssertParamIsClone<&'hir InferArg>;
        let _: ::core::clone::AssertParamIsClone<&'hir WherePredicate<'hir>>;
        let _:
                ::core::clone::AssertParamIsClone<&'hir PreciseCapturingNonLifetimeArg>;
        let _: ::core::clone::AssertParamIsClone<Span>;
        *self
    }
}Clone, #[automatically_derived]
impl<'hir> ::core::fmt::Debug for Node<'hir> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            Node::Param(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Param",
                    &__self_0),
            Node::Item(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Item",
                    &__self_0),
            Node::ForeignItem(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "ForeignItem", &__self_0),
            Node::TraitItem(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "TraitItem", &__self_0),
            Node::ImplItem(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "ImplItem", &__self_0),
            Node::Variant(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "Variant", &__self_0),
            Node::Field(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Field",
                    &__self_0),
            Node::AnonConst(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "AnonConst", &__self_0),
            Node::ConstBlock(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "ConstBlock", &__self_0),
            Node::ConstArg(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "ConstArg", &__self_0),
            Node::Expr(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Expr",
                    &__self_0),
            Node::ExprField(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "ExprField", &__self_0),
            Node::ConstArgExprField(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "ConstArgExprField", &__self_0),
            Node::Stmt(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Stmt",
                    &__self_0),
            Node::PathSegment(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "PathSegment", &__self_0),
            Node::Ty(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Ty",
                    &__self_0),
            Node::AssocItemConstraint(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "AssocItemConstraint", &__self_0),
            Node::TraitRef(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "TraitRef", &__self_0),
            Node::OpaqueTy(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "OpaqueTy", &__self_0),
            Node::TyPat(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "TyPat",
                    &__self_0),
            Node::Pat(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Pat",
                    &__self_0),
            Node::PatField(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "PatField", &__self_0),
            Node::PatExpr(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "PatExpr", &__self_0),
            Node::Arm(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Arm",
                    &__self_0),
            Node::Block(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Block",
                    &__self_0),
            Node::LetStmt(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "LetStmt", &__self_0),
            Node::Ctor(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Ctor",
                    &__self_0),
            Node::Lifetime(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "Lifetime", &__self_0),
            Node::GenericParam(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "GenericParam", &__self_0),
            Node::Crate(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Crate",
                    &__self_0),
            Node::Infer(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Infer",
                    &__self_0),
            Node::WherePredicate(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "WherePredicate", &__self_0),
            Node::PreciseCapturingNonLifetimeArg(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f,
                    "PreciseCapturingNonLifetimeArg", &__self_0),
            Node::Synthetic =>
                ::core::fmt::Formatter::write_str(f, "Synthetic"),
            Node::Err(__self_0) =>
                ::core::fmt::Formatter::debug_tuple_field1_finish(f, "Err",
                    &__self_0),
        }
    }
}Debug, const _: () =
    {
        impl<'hir> ::rustc_data_structures::stable_hash::StableHash for
            Node<'hir> {
            #[inline]
            fn stable_hash<__Hcx: ::rustc_data_structures::stable_hash::StableHashCtxt>(&self,
                __hcx: &mut __Hcx,
                __hasher:
                    &mut ::rustc_data_structures::stable_hash::StableHasher) {
                ::std::mem::discriminant(self).stable_hash(__hcx, __hasher);
                match *self {
                    Node::Param(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::Item(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::ForeignItem(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::TraitItem(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::ImplItem(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::Variant(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::Field(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::AnonConst(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::ConstBlock(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::ConstArg(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::Expr(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::ExprField(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::ConstArgExprField(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::Stmt(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::PathSegment(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::Ty(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::AssocItemConstraint(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::TraitRef(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::OpaqueTy(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::TyPat(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::Pat(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::PatField(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::PatExpr(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::Arm(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::Block(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::LetStmt(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::Ctor(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::Lifetime(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::GenericParam(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::Crate(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::Infer(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::WherePredicate(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::PreciseCapturingNonLifetimeArg(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                    Node::Synthetic => {}
                    Node::Err(ref __binding_0) => {
                        { __binding_0.stable_hash(__hcx, __hasher); }
                    }
                }
            }
        }
    };StableHash)]
5145pub enum Node<'hir> {
5146    Param(&'hir Param<'hir>),
5147    Item(&'hir Item<'hir>),
5148    ForeignItem(&'hir ForeignItem<'hir>),
5149    TraitItem(&'hir TraitItem<'hir>),
5150    ImplItem(&'hir ImplItem<'hir>),
5151    Variant(&'hir Variant<'hir>),
5152    Field(&'hir FieldDef<'hir>),
5153    AnonConst(&'hir AnonConst),
5154    ConstBlock(&'hir ConstBlock),
5155    ConstArg(&'hir ConstArg<'hir>),
5156    Expr(&'hir Expr<'hir>),
5157    ExprField(&'hir ExprField<'hir>),
5158    ConstArgExprField(&'hir ConstArgExprField<'hir>),
5159    Stmt(&'hir Stmt<'hir>),
5160    PathSegment(&'hir PathSegment<'hir>),
5161    Ty(&'hir Ty<'hir>),
5162    AssocItemConstraint(&'hir AssocItemConstraint<'hir>),
5163    TraitRef(&'hir TraitRef<'hir>),
5164    OpaqueTy(&'hir OpaqueTy<'hir>),
5165    TyPat(&'hir TyPat<'hir>),
5166    Pat(&'hir Pat<'hir>),
5167    PatField(&'hir PatField<'hir>),
5168    /// Needed as its own node with its own HirId for tracking
5169    /// the unadjusted type of literals within patterns
5170    /// (e.g. byte str literals not being of slice type).
5171    PatExpr(&'hir PatExpr<'hir>),
5172    Arm(&'hir Arm<'hir>),
5173    Block(&'hir Block<'hir>),
5174    LetStmt(&'hir LetStmt<'hir>),
5175    /// `Ctor` refers to the constructor of an enum variant or struct. Only tuple or unit variants
5176    /// with synthesized constructors.
5177    Ctor(&'hir VariantData<'hir>),
5178    Lifetime(&'hir Lifetime),
5179    GenericParam(&'hir GenericParam<'hir>),
5180    Crate(&'hir Mod<'hir>),
5181    Infer(&'hir InferArg),
5182    WherePredicate(&'hir WherePredicate<'hir>),
5183    PreciseCapturingNonLifetimeArg(&'hir PreciseCapturingNonLifetimeArg),
5184    // Created by query feeding
5185    Synthetic,
5186    Err(Span),
5187}
5188
5189impl<'hir> Node<'hir> {
5190    /// Get the identifier of this `Node`, if applicable.
5191    ///
5192    /// # Edge cases
5193    ///
5194    /// Calling `.ident()` on a [`Node::Ctor`] will return `None`
5195    /// because `Ctor`s do not have identifiers themselves.
5196    /// Instead, call `.ident()` on the parent struct/variant, like so:
5197    ///
5198    /// ```ignore (illustrative)
5199    /// ctor
5200    ///     .ctor_hir_id()
5201    ///     .map(|ctor_id| tcx.parent_hir_node(ctor_id))
5202    ///     .and_then(|parent| parent.ident())
5203    /// ```
5204    pub fn ident(&self) -> Option<Ident> {
5205        match self {
5206            Node::Item(item) => item.kind.ident(),
5207            Node::TraitItem(TraitItem { ident, .. })
5208            | Node::ImplItem(ImplItem { ident, .. })
5209            | Node::ForeignItem(ForeignItem { ident, .. })
5210            | Node::Field(FieldDef { ident, .. })
5211            | Node::Variant(Variant { ident, .. })
5212            | Node::PathSegment(PathSegment { ident, .. }) => Some(*ident),
5213            Node::Lifetime(lt) => Some(lt.ident),
5214            Node::GenericParam(p) => Some(p.name.ident()),
5215            Node::AssocItemConstraint(c) => Some(c.ident),
5216            Node::PatField(f) => Some(f.ident),
5217            Node::ExprField(f) => Some(f.ident),
5218            Node::ConstArgExprField(f) => Some(f.field),
5219            Node::PreciseCapturingNonLifetimeArg(a) => Some(a.ident),
5220            Node::Param(..)
5221            | Node::AnonConst(..)
5222            | Node::ConstBlock(..)
5223            | Node::ConstArg(..)
5224            | Node::Expr(..)
5225            | Node::Stmt(..)
5226            | Node::Block(..)
5227            | Node::Ctor(..)
5228            | Node::Pat(..)
5229            | Node::TyPat(..)
5230            | Node::PatExpr(..)
5231            | Node::Arm(..)
5232            | Node::LetStmt(..)
5233            | Node::Crate(..)
5234            | Node::Ty(..)
5235            | Node::TraitRef(..)
5236            | Node::OpaqueTy(..)
5237            | Node::Infer(..)
5238            | Node::WherePredicate(..)
5239            | Node::Synthetic
5240            | Node::Err(..) => None,
5241        }
5242    }
5243
5244    pub fn fn_decl(self) -> Option<&'hir FnDecl<'hir>> {
5245        match self {
5246            Node::TraitItem(TraitItem { kind: TraitItemKind::Fn(fn_sig, _), .. })
5247            | Node::ImplItem(ImplItem { kind: ImplItemKind::Fn(fn_sig, _), .. })
5248            | Node::Item(Item { kind: ItemKind::Fn { sig: fn_sig, .. }, .. })
5249            | Node::ForeignItem(ForeignItem { kind: ForeignItemKind::Fn(fn_sig, _, _), .. }) => {
5250                Some(fn_sig.decl)
5251            }
5252            Node::Expr(Expr { kind: ExprKind::Closure(Closure { fn_decl, .. }), .. }) => {
5253                Some(fn_decl)
5254            }
5255            _ => None,
5256        }
5257    }
5258
5259    /// Get a `hir::Impl` if the node is an impl block for the given `trait_def_id`.
5260    pub fn impl_block_of_trait(self, trait_def_id: DefId) -> Option<&'hir Impl<'hir>> {
5261        if let Node::Item(Item { kind: ItemKind::Impl(impl_block), .. }) = self
5262            && let Some(of_trait) = impl_block.of_trait
5263            && let Some(trait_id) = of_trait.trait_ref.trait_def_id()
5264            && trait_id == trait_def_id
5265        {
5266            Some(impl_block)
5267        } else {
5268            None
5269        }
5270    }
5271
5272    pub fn fn_sig(self) -> Option<&'hir FnSig<'hir>> {
5273        match self {
5274            Node::TraitItem(TraitItem { kind: TraitItemKind::Fn(fn_sig, _), .. })
5275            | Node::ImplItem(ImplItem { kind: ImplItemKind::Fn(fn_sig, _), .. })
5276            | Node::Item(Item { kind: ItemKind::Fn { sig: fn_sig, .. }, .. })
5277            | Node::ForeignItem(ForeignItem { kind: ForeignItemKind::Fn(fn_sig, _, _), .. }) => {
5278                Some(fn_sig)
5279            }
5280            _ => None,
5281        }
5282    }
5283
5284    /// Get the type for constants, assoc types, type aliases and statics.
5285    pub fn ty(self) -> Option<&'hir Ty<'hir>> {
5286        match self {
5287            Node::Item(it) => match it.kind {
5288                ItemKind::TyAlias(_, _, ty)
5289                | ItemKind::Static(_, _, ty, _)
5290                | ItemKind::Const(_, _, ty, _) => Some(ty),
5291                ItemKind::Impl(impl_item) => Some(&impl_item.self_ty),
5292                _ => None,
5293            },
5294            Node::TraitItem(it) => match it.kind {
5295                TraitItemKind::Const(ty, _) => Some(ty),
5296                TraitItemKind::Type(_, ty) => ty,
5297                _ => None,
5298            },
5299            Node::ImplItem(it) => match it.kind {
5300                ImplItemKind::Const(ty, _) => Some(ty),
5301                ImplItemKind::Type(ty) => Some(ty),
5302                _ => None,
5303            },
5304            Node::ForeignItem(it) => match it.kind {
5305                ForeignItemKind::Static(ty, ..) => Some(ty),
5306                _ => None,
5307            },
5308            Node::GenericParam(param) => match param.kind {
5309                GenericParamKind::Lifetime { .. } => None,
5310                GenericParamKind::Type { default, .. } => default,
5311                GenericParamKind::Const { ty, .. } => Some(ty),
5312            },
5313            Node::Field(f) => Some(f.ty),
5314            _ => None,
5315        }
5316    }
5317
5318    pub fn alias_ty(self) -> Option<&'hir Ty<'hir>> {
5319        match self {
5320            Node::Item(Item { kind: ItemKind::TyAlias(_, _, ty), .. }) => Some(ty),
5321            _ => None,
5322        }
5323    }
5324
5325    #[inline]
5326    pub fn associated_body(&self) -> Option<(LocalDefId, BodyId)> {
5327        match self {
5328            Node::Item(Item {
5329                owner_id,
5330                kind:
5331                    ItemKind::Const(.., ConstItemRhs::Body(body))
5332                    | ItemKind::Static(.., body)
5333                    | ItemKind::Fn { body, .. },
5334                ..
5335            })
5336            | Node::TraitItem(TraitItem {
5337                owner_id,
5338                kind:
5339                    TraitItemKind::Const(_, Some(ConstItemRhs::Body(body)))
5340                    | TraitItemKind::Fn(_, TraitFn::Provided(body)),
5341                ..
5342            })
5343            | Node::ImplItem(ImplItem {
5344                owner_id,
5345                kind: ImplItemKind::Const(.., ConstItemRhs::Body(body)) | ImplItemKind::Fn(_, body),
5346                ..
5347            }) => Some((owner_id.def_id, *body)),
5348
5349            Node::Item(Item {
5350                owner_id, kind: ItemKind::GlobalAsm { asm: _, fake_body }, ..
5351            }) => Some((owner_id.def_id, *fake_body)),
5352
5353            Node::Expr(Expr { kind: ExprKind::Closure(Closure { def_id, body, .. }), .. }) => {
5354                Some((*def_id, *body))
5355            }
5356
5357            Node::AnonConst(constant) => Some((constant.def_id, constant.body)),
5358            Node::ConstBlock(constant) => Some((constant.def_id, constant.body)),
5359
5360            _ => None,
5361        }
5362    }
5363
5364    pub fn body_id(&self) -> Option<BodyId> {
5365        Some(self.associated_body()?.1)
5366    }
5367
5368    pub fn generics(self) -> Option<&'hir Generics<'hir>> {
5369        match self {
5370            Node::ForeignItem(ForeignItem {
5371                kind: ForeignItemKind::Fn(_, _, generics), ..
5372            })
5373            | Node::TraitItem(TraitItem { generics, .. })
5374            | Node::ImplItem(ImplItem { generics, .. }) => Some(generics),
5375            Node::Item(item) => item.kind.generics(),
5376            _ => None,
5377        }
5378    }
5379
5380    pub fn as_owner(self) -> Option<OwnerNode<'hir>> {
5381        match self {
5382            Node::Item(i) => Some(OwnerNode::Item(i)),
5383            Node::ForeignItem(i) => Some(OwnerNode::ForeignItem(i)),
5384            Node::TraitItem(i) => Some(OwnerNode::TraitItem(i)),
5385            Node::ImplItem(i) => Some(OwnerNode::ImplItem(i)),
5386            Node::Crate(i) => Some(OwnerNode::Crate(i)),
5387            Node::Synthetic => Some(OwnerNode::Synthetic),
5388            _ => None,
5389        }
5390    }
5391
5392    pub fn fn_kind(self) -> Option<FnKind<'hir>> {
5393        match self {
5394            Node::Item(i) => match i.kind {
5395                ItemKind::Fn { ident, sig, generics, .. } => {
5396                    Some(FnKind::ItemFn(ident, generics, sig.header))
5397                }
5398                _ => None,
5399            },
5400            Node::TraitItem(ti) => match ti.kind {
5401                TraitItemKind::Fn(ref sig, _) => Some(FnKind::Method(ti.ident, sig)),
5402                _ => None,
5403            },
5404            Node::ImplItem(ii) => match ii.kind {
5405                ImplItemKind::Fn(ref sig, _) => Some(FnKind::Method(ii.ident, sig)),
5406                _ => None,
5407            },
5408            Node::Expr(e) => match e.kind {
5409                ExprKind::Closure { .. } => Some(FnKind::Closure),
5410                _ => None,
5411            },
5412            _ => None,
5413        }
5414    }
5415
5416    #[track_caller]
pub fn expect_closure(&self) -> &'hir Closure<'hir> {
    let Node::Expr(Expr { kind: ExprKind::Closure(n), .. }) =
        self else { expect_failed("expect_closure", self) };
    n
}expect_methods_self! {
5417        expect_param,         &'hir Param<'hir>,        Node::Param(n),        n;
5418        expect_item,          &'hir Item<'hir>,         Node::Item(n),         n;
5419        expect_foreign_item,  &'hir ForeignItem<'hir>,  Node::ForeignItem(n),  n;
5420        expect_trait_item,    &'hir TraitItem<'hir>,    Node::TraitItem(n),    n;
5421        expect_impl_item,     &'hir ImplItem<'hir>,     Node::ImplItem(n),     n;
5422        expect_variant,       &'hir Variant<'hir>,      Node::Variant(n),      n;
5423        expect_field,         &'hir FieldDef<'hir>,     Node::Field(n),        n;
5424        expect_anon_const,    &'hir AnonConst,          Node::AnonConst(n),    n;
5425        expect_inline_const,  &'hir ConstBlock,         Node::ConstBlock(n),   n;
5426        expect_expr,          &'hir Expr<'hir>,         Node::Expr(n),         n;
5427        expect_expr_field,    &'hir ExprField<'hir>,    Node::ExprField(n),    n;
5428        expect_stmt,          &'hir Stmt<'hir>,         Node::Stmt(n),         n;
5429        expect_path_segment,  &'hir PathSegment<'hir>,  Node::PathSegment(n),  n;
5430        expect_ty,            &'hir Ty<'hir>,           Node::Ty(n),           n;
5431        expect_assoc_item_constraint,  &'hir AssocItemConstraint<'hir>,  Node::AssocItemConstraint(n),  n;
5432        expect_trait_ref,     &'hir TraitRef<'hir>,     Node::TraitRef(n),     n;
5433        expect_opaque_ty,     &'hir OpaqueTy<'hir>,     Node::OpaqueTy(n),     n;
5434        expect_pat,           &'hir Pat<'hir>,          Node::Pat(n),          n;
5435        expect_pat_field,     &'hir PatField<'hir>,     Node::PatField(n),     n;
5436        expect_arm,           &'hir Arm<'hir>,          Node::Arm(n),          n;
5437        expect_block,         &'hir Block<'hir>,        Node::Block(n),        n;
5438        expect_let_stmt,      &'hir LetStmt<'hir>,      Node::LetStmt(n),      n;
5439        expect_ctor,          &'hir VariantData<'hir>,  Node::Ctor(n),         n;
5440        expect_lifetime,      &'hir Lifetime,           Node::Lifetime(n),     n;
5441        expect_generic_param, &'hir GenericParam<'hir>, Node::GenericParam(n), n;
5442        expect_crate,         &'hir Mod<'hir>,          Node::Crate(n),        n;
5443        expect_infer,         &'hir InferArg,           Node::Infer(n),        n;
5444        expect_closure,       &'hir Closure<'hir>, Node::Expr(Expr { kind: ExprKind::Closure(n), .. }), n;
5445    }
5446}
5447
5448// Some nodes are used a lot. Make sure they don't unintentionally get bigger.
5449#[cfg(target_pointer_width = "64")]
5450mod size_asserts {
5451    use rustc_data_structures::static_assert_size;
5452
5453    use super::*;
5454    // tidy-alphabetical-start
5455    const _: [(); 48] = [(); ::std::mem::size_of::<Block<'_>>()];static_assert_size!(Block<'_>, 48);
5456    const _: [(); 24] = [(); ::std::mem::size_of::<Body<'_>>()];static_assert_size!(Body<'_>, 24);
5457    const _: [(); 64] = [(); ::std::mem::size_of::<Expr<'_>>()];static_assert_size!(Expr<'_>, 64);
5458    const _: [(); 48] = [(); ::std::mem::size_of::<ExprKind<'_>>()];static_assert_size!(ExprKind<'_>, 48);
5459    const _: [(); 40] = [(); ::std::mem::size_of::<FnDecl<'_>>()];static_assert_size!(FnDecl<'_>, 40);
5460    const _: [(); 96] = [(); ::std::mem::size_of::<ForeignItem<'_>>()];static_assert_size!(ForeignItem<'_>, 96);
5461    const _: [(); 56] = [(); ::std::mem::size_of::<ForeignItemKind<'_>>()];static_assert_size!(ForeignItemKind<'_>, 56);
5462    const _: [(); 16] = [(); ::std::mem::size_of::<GenericArg<'_>>()];static_assert_size!(GenericArg<'_>, 16);
5463    const _: [(); 64] = [(); ::std::mem::size_of::<GenericBound<'_>>()];static_assert_size!(GenericBound<'_>, 64);
5464    const _: [(); 56] = [(); ::std::mem::size_of::<Generics<'_>>()];static_assert_size!(Generics<'_>, 56);
5465    const _: [(); 48] = [(); ::std::mem::size_of::<Impl<'_>>()];static_assert_size!(Impl<'_>, 48);
5466    const _: [(); 88] = [(); ::std::mem::size_of::<ImplItem<'_>>()];static_assert_size!(ImplItem<'_>, 88);
5467    const _: [(); 40] = [(); ::std::mem::size_of::<ImplItemKind<'_>>()];static_assert_size!(ImplItemKind<'_>, 40);
5468    const _: [(); 88] = [(); ::std::mem::size_of::<Item<'_>>()];static_assert_size!(Item<'_>, 88);
5469    const _: [(); 64] = [(); ::std::mem::size_of::<ItemKind<'_>>()];static_assert_size!(ItemKind<'_>, 64);
5470    const _: [(); 64] = [(); ::std::mem::size_of::<LetStmt<'_>>()];static_assert_size!(LetStmt<'_>, 64);
5471    const _: [(); 32] = [(); ::std::mem::size_of::<Param<'_>>()];static_assert_size!(Param<'_>, 32);
5472    const _: [(); 80] = [(); ::std::mem::size_of::<Pat<'_>>()];static_assert_size!(Pat<'_>, 80);
5473    const _: [(); 56] = [(); ::std::mem::size_of::<PatKind<'_>>()];static_assert_size!(PatKind<'_>, 56);
5474    const _: [(); 40] = [(); ::std::mem::size_of::<Path<'_>>()];static_assert_size!(Path<'_>, 40);
5475    const _: [(); 48] = [(); ::std::mem::size_of::<PathSegment<'_>>()];static_assert_size!(PathSegment<'_>, 48);
5476    const _: [(); 24] = [(); ::std::mem::size_of::<QPath<'_>>()];static_assert_size!(QPath<'_>, 24);
5477    const _: [(); 12] = [(); ::std::mem::size_of::<Res>()];static_assert_size!(Res, 12);
5478    const _: [(); 32] = [(); ::std::mem::size_of::<Stmt<'_>>()];static_assert_size!(Stmt<'_>, 32);
5479    const _: [(); 16] = [(); ::std::mem::size_of::<StmtKind<'_>>()];static_assert_size!(StmtKind<'_>, 16);
5480    const _: [(); 48] = [(); ::std::mem::size_of::<TraitImplHeader<'_>>()];static_assert_size!(TraitImplHeader<'_>, 48);
5481    const _: [(); 88] = [(); ::std::mem::size_of::<TraitItem<'_>>()];static_assert_size!(TraitItem<'_>, 88);
5482    const _: [(); 48] = [(); ::std::mem::size_of::<TraitItemKind<'_>>()];static_assert_size!(TraitItemKind<'_>, 48);
5483    const _: [(); 48] = [(); ::std::mem::size_of::<Ty<'_>>()];static_assert_size!(Ty<'_>, 48);
5484    const _: [(); 32] = [(); ::std::mem::size_of::<TyKind<'_>>()];static_assert_size!(TyKind<'_>, 32);
5485    // tidy-alphabetical-end
5486}
5487
5488#[cfg(test)]
5489mod tests;