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rustc_trait_selection/error_reporting/traits/
mod.rs

1pub mod ambiguity;
2pub mod call_kind;
3pub mod fulfillment_errors;
4pub mod on_unimplemented;
5mod overflow;
6pub mod suggestions;
7
8use std::{fmt, iter};
9
10use rustc_data_structures::fx::{FxIndexMap, FxIndexSet};
11use rustc_data_structures::unord::UnordSet;
12use rustc_errors::{Applicability, Diag, E0038, E0276, MultiSpan, struct_span_code_err};
13use rustc_hir::def_id::{DefId, LOCAL_CRATE, LocalDefId};
14use rustc_hir::intravisit::Visitor;
15use rustc_hir::{self as hir, AmbigArg};
16use rustc_infer::traits::solve::Goal;
17use rustc_infer::traits::{
18    DynCompatibilityViolation, Obligation, ObligationCause, ObligationCauseCode,
19    PredicateObligation, SelectionError,
20};
21use rustc_middle::ty::print::{PrintTraitRefExt as _, with_no_trimmed_paths};
22use rustc_middle::ty::{self, Ty, TyCtxt, TypeVisitableExt as _};
23use rustc_session::cstore::{ExternCrate, ExternCrateSource};
24use rustc_span::{DesugaringKind, ErrorGuaranteed, ExpnKind, Span};
25use thin_vec::ThinVec;
26use tracing::{info, instrument};
27
28pub use self::overflow::*;
29use crate::error_reporting::TypeErrCtxt;
30use crate::traits::{FulfillmentError, FulfillmentErrorCode};
31
32// When outputting impl candidates, prefer showing those that are more similar.
33//
34// We also compare candidates after skipping lifetimes, which has a lower
35// priority than exact matches.
36#[derive(#[automatically_derived]
impl ::core::fmt::Debug for CandidateSimilarity {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            CandidateSimilarity::Exact { ignoring_lifetimes: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f, "Exact",
                    "ignoring_lifetimes", &__self_0),
            CandidateSimilarity::Fuzzy { ignoring_lifetimes: __self_0 } =>
                ::core::fmt::Formatter::debug_struct_field1_finish(f, "Fuzzy",
                    "ignoring_lifetimes", &__self_0),
        }
    }
}Debug, #[automatically_derived]
impl ::core::marker::Copy for CandidateSimilarity { }Copy, #[automatically_derived]
impl ::core::clone::Clone for CandidateSimilarity {
    #[inline]
    fn clone(&self) -> CandidateSimilarity {
        let _: ::core::clone::AssertParamIsClone<bool>;
        *self
    }
}Clone, #[automatically_derived]
impl ::core::cmp::PartialEq for CandidateSimilarity {
    #[inline]
    fn eq(&self, other: &CandidateSimilarity) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (CandidateSimilarity::Exact { ignoring_lifetimes: __self_0 },
                    CandidateSimilarity::Exact { ignoring_lifetimes: __arg1_0 })
                    => __self_0 == __arg1_0,
                (CandidateSimilarity::Fuzzy { ignoring_lifetimes: __self_0 },
                    CandidateSimilarity::Fuzzy { ignoring_lifetimes: __arg1_0 })
                    => __self_0 == __arg1_0,
                _ => unsafe { ::core::intrinsics::unreachable() }
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for CandidateSimilarity {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<bool>;
    }
}Eq, #[automatically_derived]
impl ::core::cmp::PartialOrd for CandidateSimilarity {
    #[inline]
    fn partial_cmp(&self, other: &CandidateSimilarity)
        -> ::core::option::Option<::core::cmp::Ordering> {
        ::core::option::Option::Some(::core::cmp::Ord::cmp(self, other))
    }
}PartialOrd, #[automatically_derived]
impl ::core::cmp::Ord for CandidateSimilarity {
    #[inline]
    fn cmp(&self, other: &CandidateSimilarity) -> ::core::cmp::Ordering {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        match ::core::cmp::Ord::cmp(&__self_discr, &__arg1_discr) {
            ::core::cmp::Ordering::Equal =>
                match (self, other) {
                    (CandidateSimilarity::Exact { ignoring_lifetimes: __self_0
                        }, CandidateSimilarity::Exact { ignoring_lifetimes: __arg1_0
                        }) => ::core::cmp::Ord::cmp(__self_0, __arg1_0),
                    (CandidateSimilarity::Fuzzy { ignoring_lifetimes: __self_0
                        }, CandidateSimilarity::Fuzzy { ignoring_lifetimes: __arg1_0
                        }) => ::core::cmp::Ord::cmp(__self_0, __arg1_0),
                    _ => unsafe { ::core::intrinsics::unreachable() }
                },
            cmp => cmp,
        }
    }
}Ord)]
37pub enum CandidateSimilarity {
38    Exact { ignoring_lifetimes: bool },
39    Fuzzy { ignoring_lifetimes: bool },
40}
41
42#[derive(#[automatically_derived]
impl<'tcx> ::core::fmt::Debug for ImplCandidate<'tcx> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field3_finish(f, "ImplCandidate",
            "trait_ref", &self.trait_ref, "similarity", &self.similarity,
            "impl_def_id", &&self.impl_def_id)
    }
}Debug, #[automatically_derived]
impl<'tcx> ::core::clone::Clone for ImplCandidate<'tcx> {
    #[inline]
    fn clone(&self) -> ImplCandidate<'tcx> {
        let _: ::core::clone::AssertParamIsClone<ty::TraitRef<'tcx>>;
        let _: ::core::clone::AssertParamIsClone<CandidateSimilarity>;
        let _: ::core::clone::AssertParamIsClone<DefId>;
        *self
    }
}Clone, #[automatically_derived]
impl<'tcx> ::core::marker::Copy for ImplCandidate<'tcx> { }Copy, #[automatically_derived]
impl<'tcx> ::core::cmp::PartialEq for ImplCandidate<'tcx> {
    #[inline]
    fn eq(&self, other: &ImplCandidate<'tcx>) -> bool {
        self.trait_ref == other.trait_ref &&
                self.similarity == other.similarity &&
            self.impl_def_id == other.impl_def_id
    }
}PartialEq, #[automatically_derived]
impl<'tcx> ::core::cmp::Eq for ImplCandidate<'tcx> {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<ty::TraitRef<'tcx>>;
        let _: ::core::cmp::AssertParamIsEq<CandidateSimilarity>;
        let _: ::core::cmp::AssertParamIsEq<DefId>;
    }
}Eq)]
43pub struct ImplCandidate<'tcx> {
44    pub trait_ref: ty::TraitRef<'tcx>,
45    pub similarity: CandidateSimilarity,
46    impl_def_id: DefId,
47}
48
49enum GetSafeTransmuteErrorAndReason {
50    Silent,
51    Default,
52    Error { err_msg: String, safe_transmute_explanation: Option<String> },
53}
54
55/// Crude way of getting back an `Expr` from a `Span`.
56pub struct FindExprBySpan<'hir> {
57    pub span: Span,
58    pub result: Option<&'hir hir::Expr<'hir>>,
59    pub ty_result: Option<&'hir hir::Ty<'hir>>,
60    pub include_closures: bool,
61    pub tcx: TyCtxt<'hir>,
62}
63
64impl<'hir> FindExprBySpan<'hir> {
65    pub fn new(span: Span, tcx: TyCtxt<'hir>) -> Self {
66        Self { span, result: None, ty_result: None, tcx, include_closures: false }
67    }
68}
69
70impl<'v> Visitor<'v> for FindExprBySpan<'v> {
71    type NestedFilter = rustc_middle::hir::nested_filter::OnlyBodies;
72
73    fn maybe_tcx(&mut self) -> Self::MaybeTyCtxt {
74        self.tcx
75    }
76
77    fn visit_expr(&mut self, ex: &'v hir::Expr<'v>) {
78        if self.span == ex.span {
79            self.result = Some(ex);
80        } else {
81            if let hir::ExprKind::Closure(..) = ex.kind
82                && self.include_closures
83                && let closure_header_sp = self.span.with_hi(ex.span.hi())
84                && closure_header_sp == ex.span
85            {
86                self.result = Some(ex);
87            }
88            hir::intravisit::walk_expr(self, ex);
89        }
90    }
91
92    fn visit_ty(&mut self, ty: &'v hir::Ty<'v, AmbigArg>) {
93        if self.span == ty.span {
94            self.ty_result = Some(ty.as_unambig_ty());
95        } else {
96            hir::intravisit::walk_ty(self, ty);
97        }
98    }
99}
100
101/// Summarizes information
102#[derive(#[automatically_derived]
impl ::core::clone::Clone for ArgKind {
    #[inline]
    fn clone(&self) -> ArgKind {
        match self {
            ArgKind::Arg(__self_0, __self_1) =>
                ArgKind::Arg(::core::clone::Clone::clone(__self_0),
                    ::core::clone::Clone::clone(__self_1)),
            ArgKind::Tuple(__self_0, __self_1) =>
                ArgKind::Tuple(::core::clone::Clone::clone(__self_0),
                    ::core::clone::Clone::clone(__self_1)),
        }
    }
}Clone)]
103pub enum ArgKind {
104    /// An argument of non-tuple type. Parameters are (name, ty)
105    Arg(String, String),
106
107    /// An argument of tuple type. For a "found" argument, the span is
108    /// the location in the source of the pattern. For an "expected"
109    /// argument, it will be None. The vector is a list of (name, ty)
110    /// strings for the components of the tuple.
111    Tuple(Option<Span>, Vec<(String, String)>),
112}
113
114impl ArgKind {
115    fn empty() -> ArgKind {
116        ArgKind::Arg("_".to_owned(), "_".to_owned())
117    }
118
119    /// Creates an `ArgKind` from the expected type of an
120    /// argument. It has no name (`_`) and an optional source span.
121    pub fn from_expected_ty(t: Ty<'_>, span: Option<Span>) -> ArgKind {
122        match t.kind() {
123            ty::Tuple(tys) => ArgKind::Tuple(
124                span,
125                tys.iter().map(|ty| ("_".to_owned(), ty.to_string())).collect::<Vec<_>>(),
126            ),
127            _ => ArgKind::Arg("_".to_owned(), t.to_string()),
128        }
129    }
130}
131
132#[derive(#[automatically_derived]
impl ::core::marker::Copy for DefIdOrName { }Copy, #[automatically_derived]
impl ::core::clone::Clone for DefIdOrName {
    #[inline]
    fn clone(&self) -> DefIdOrName {
        let _: ::core::clone::AssertParamIsClone<DefId>;
        let _: ::core::clone::AssertParamIsClone<&'static str>;
        *self
    }
}Clone)]
133pub enum DefIdOrName {
134    DefId(DefId),
135    Name(&'static str),
136}
137
138impl<'a, 'tcx> TypeErrCtxt<'a, 'tcx> {
139    pub fn report_fulfillment_errors(
140        &self,
141        mut errors: ThinVec<FulfillmentError<'tcx>>,
142    ) -> ErrorGuaranteed {
143        #[derive(#[automatically_derived]
impl<'tcx> ::core::fmt::Debug for ErrorDescriptor<'tcx> {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f,
            "ErrorDescriptor", "goal", &self.goal, "index", &&self.index)
    }
}Debug)]
144        struct ErrorDescriptor<'tcx> {
145            goal: Goal<'tcx, ty::Predicate<'tcx>>,
146            index: Option<usize>, // None if this is an old error
147        }
148
149        let mut error_map: FxIndexMap<_, Vec<_>> = self
150            .reported_trait_errors
151            .borrow()
152            .iter()
153            .map(|(&span, goals)| {
154                (span, goals.0.iter().map(|&goal| ErrorDescriptor { goal, index: None }).collect())
155            })
156            .collect();
157
158        // Ensure `T: Sized`, `T: MetaSized`, `T: PointeeSized` and `T: WF` obligations come last,
159        // and `Subtype` obligations from `FormatLiteral` desugarings come first.
160        // This lets us display diagnostics with more relevant type information and hide redundant
161        // E0282 errors.
162        #[derive(#[automatically_derived]
impl ::core::fmt::Debug for ErrorSortKey {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        match self {
            ErrorSortKey::SubtypeFormat(__self_0, __self_1) =>
                ::core::fmt::Formatter::debug_tuple_field2_finish(f,
                    "SubtypeFormat", __self_0, &__self_1),
            ErrorSortKey::OtherKind =>
                ::core::fmt::Formatter::write_str(f, "OtherKind"),
            ErrorSortKey::SizedTrait =>
                ::core::fmt::Formatter::write_str(f, "SizedTrait"),
            ErrorSortKey::MetaSizedTrait =>
                ::core::fmt::Formatter::write_str(f, "MetaSizedTrait"),
            ErrorSortKey::PointeeSizedTrait =>
                ::core::fmt::Formatter::write_str(f, "PointeeSizedTrait"),
            ErrorSortKey::Coerce =>
                ::core::fmt::Formatter::write_str(f, "Coerce"),
            ErrorSortKey::WellFormed =>
                ::core::fmt::Formatter::write_str(f, "WellFormed"),
        }
    }
}Debug, #[automatically_derived]
impl ::core::cmp::PartialEq for ErrorSortKey {
    #[inline]
    fn eq(&self, other: &ErrorSortKey) -> bool {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        __self_discr == __arg1_discr &&
            match (self, other) {
                (ErrorSortKey::SubtypeFormat(__self_0, __self_1),
                    ErrorSortKey::SubtypeFormat(__arg1_0, __arg1_1)) =>
                    __self_0 == __arg1_0 && __self_1 == __arg1_1,
                _ => true,
            }
    }
}PartialEq, #[automatically_derived]
impl ::core::cmp::Eq for ErrorSortKey {
    #[inline]
    #[doc(hidden)]
    #[coverage(off)]
    fn assert_fields_are_eq(&self) {
        let _: ::core::cmp::AssertParamIsEq<usize>;
    }
}Eq, #[automatically_derived]
impl ::core::cmp::PartialOrd for ErrorSortKey {
    #[inline]
    fn partial_cmp(&self, other: &ErrorSortKey)
        -> ::core::option::Option<::core::cmp::Ordering> {
        ::core::option::Option::Some(::core::cmp::Ord::cmp(self, other))
    }
}PartialOrd, #[automatically_derived]
impl ::core::cmp::Ord for ErrorSortKey {
    #[inline]
    fn cmp(&self, other: &ErrorSortKey) -> ::core::cmp::Ordering {
        let __self_discr = ::core::intrinsics::discriminant_value(self);
        let __arg1_discr = ::core::intrinsics::discriminant_value(other);
        match ::core::cmp::Ord::cmp(&__self_discr, &__arg1_discr) {
            ::core::cmp::Ordering::Equal =>
                match (self, other) {
                    (ErrorSortKey::SubtypeFormat(__self_0, __self_1),
                        ErrorSortKey::SubtypeFormat(__arg1_0, __arg1_1)) =>
                        match ::core::cmp::Ord::cmp(__self_0, __arg1_0) {
                            ::core::cmp::Ordering::Equal =>
                                ::core::cmp::Ord::cmp(__self_1, __arg1_1),
                            cmp => cmp,
                        },
                    _ => ::core::cmp::Ordering::Equal,
                },
            cmp => cmp,
        }
    }
}Ord)]
163        enum ErrorSortKey {
164            SubtypeFormat(usize, usize),
165            OtherKind,
166            SizedTrait,
167            MetaSizedTrait,
168            PointeeSizedTrait,
169            Coerce,
170            WellFormed,
171        }
172        errors.sort_by_key(|e| {
173            let maybe_sizedness_did = match e.obligation.predicate.kind().skip_binder() {
174                ty::PredicateKind::Clause(ty::ClauseKind::Trait(pred)) => Some(pred.def_id()),
175                ty::PredicateKind::Clause(ty::ClauseKind::HostEffect(pred)) => Some(pred.def_id()),
176                _ => None,
177            };
178
179            match e.obligation.predicate.kind().skip_binder() {
180                ty::PredicateKind::Subtype(_)
181                    if #[allow(non_exhaustive_omitted_patterns)] match e.obligation.cause.span.desugaring_kind()
    {
    Some(DesugaringKind::FormatLiteral { .. }) => true,
    _ => false,
}matches!(
182                        e.obligation.cause.span.desugaring_kind(),
183                        Some(DesugaringKind::FormatLiteral { .. })
184                    ) =>
185                {
186                    let (_, row, col, ..) =
187                        self.tcx.sess.source_map().span_to_location_info(e.obligation.cause.span);
188                    ErrorSortKey::SubtypeFormat(row, col)
189                }
190                _ if maybe_sizedness_did == self.tcx.lang_items().sized_trait() => {
191                    ErrorSortKey::SizedTrait
192                }
193                _ if maybe_sizedness_did == self.tcx.lang_items().meta_sized_trait() => {
194                    ErrorSortKey::MetaSizedTrait
195                }
196                _ if maybe_sizedness_did == self.tcx.lang_items().pointee_sized_trait() => {
197                    ErrorSortKey::PointeeSizedTrait
198                }
199                ty::PredicateKind::Coerce(_) => ErrorSortKey::Coerce,
200                ty::PredicateKind::Clause(ty::ClauseKind::WellFormed(_)) => {
201                    ErrorSortKey::WellFormed
202                }
203                _ => ErrorSortKey::OtherKind,
204            }
205        });
206
207        for (index, error) in errors.iter().enumerate() {
208            // We want to ignore desugarings here: spans are equivalent even
209            // if one is the result of a desugaring and the other is not.
210            let mut span = error.obligation.cause.span;
211            let expn_data = span.ctxt().outer_expn_data();
212            if let ExpnKind::Desugaring(_) = expn_data.kind {
213                span = expn_data.call_site;
214            }
215
216            error_map
217                .entry(span)
218                .or_default()
219                .push(ErrorDescriptor { goal: error.obligation.as_goal(), index: Some(index) });
220        }
221
222        // We do this in 2 passes because we want to display errors in order, though
223        // maybe it *is* better to sort errors by span or something.
224        let mut is_suppressed = ::alloc::vec::from_elem(false, errors.len())vec![false; errors.len()];
225        for (_, error_set) in error_map.iter() {
226            // We want to suppress "duplicate" errors with the same span.
227            for error in error_set {
228                if let Some(index) = error.index {
229                    // Suppress errors that are either:
230                    // 1) strictly implied by another error.
231                    // 2) implied by an error with a smaller index.
232                    for error2 in error_set {
233                        if error2.index.is_some_and(|index2| is_suppressed[index2]) {
234                            // Avoid errors being suppressed by already-suppressed
235                            // errors, to prevent all errors from being suppressed
236                            // at once.
237                            continue;
238                        }
239
240                        if self.error_implies(error2.goal, error.goal)
241                            && !(error2.index >= error.index
242                                && self.error_implies(error.goal, error2.goal))
243                        {
244                            {
    use ::tracing::__macro_support::Callsite as _;
    static __CALLSITE: ::tracing::callsite::DefaultCallsite =
        {
            static META: ::tracing::Metadata<'static> =
                {
                    ::tracing_core::metadata::Metadata::new("event compiler/rustc_trait_selection/src/error_reporting/traits/mod.rs:244",
                        "rustc_trait_selection::error_reporting::traits",
                        ::tracing::Level::INFO,
                        ::tracing_core::__macro_support::Option::Some("compiler/rustc_trait_selection/src/error_reporting/traits/mod.rs"),
                        ::tracing_core::__macro_support::Option::Some(244u32),
                        ::tracing_core::__macro_support::Option::Some("rustc_trait_selection::error_reporting::traits"),
                        ::tracing_core::field::FieldSet::new(&["message"],
                            ::tracing_core::callsite::Identifier(&__CALLSITE)),
                        ::tracing::metadata::Kind::EVENT)
                };
            ::tracing::callsite::DefaultCallsite::new(&META)
        };
    let enabled =
        ::tracing::Level::INFO <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::INFO <=
                    ::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};
                __CALLSITE.metadata().fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&format_args!("skipping {0:?} (implied by {1:?})",
                                                    error, error2) as &dyn ::tracing::field::Value))])
            });
    } else { ; }
};info!("skipping {:?} (implied by {:?})", error, error2);
245                            is_suppressed[index] = true;
246                            break;
247                        }
248                    }
249                }
250            }
251        }
252
253        let mut reported = None;
254        for from_expansion in [false, true] {
255            for (error, suppressed) in iter::zip(&errors, &is_suppressed) {
256                if !suppressed && error.obligation.cause.span.from_expansion() == from_expansion {
257                    if !error.references_error() {
258                        let guar = self.report_fulfillment_error(error);
259                        self.infcx.set_tainted_by_errors(guar);
260                        reported = Some(guar);
261                        // We want to ignore desugarings here: spans are equivalent even
262                        // if one is the result of a desugaring and the other is not.
263                        let mut span = error.obligation.cause.span;
264                        let expn_data = span.ctxt().outer_expn_data();
265                        if let ExpnKind::Desugaring(_) = expn_data.kind {
266                            span = expn_data.call_site;
267                        }
268                        self.reported_trait_errors
269                            .borrow_mut()
270                            .entry(span)
271                            .or_insert_with(|| (::alloc::vec::Vec::new()vec![], guar))
272                            .0
273                            .push(error.obligation.as_goal());
274                    }
275                    if let Some(guar) = self.dcx().has_errors() {
276                        self.infcx.set_tainted_by_errors(guar);
277                    }
278                }
279            }
280        }
281
282        // It could be that we don't report an error because we have seen an `ErrorReported` from
283        // another source. We should probably be able to fix most of these, but some are delayed
284        // bugs that get a proper error after this function.
285        reported.unwrap_or_else(|| self.dcx().delayed_bug("failed to report fulfillment errors"))
286    }
287
288    #[allow(clippy :: suspicious_else_formatting)]
{
    let __tracing_attr_span;
    let __tracing_attr_guard;
    if ::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
                &&
                ::tracing::Level::DEBUG <=
                    ::tracing::level_filters::LevelFilter::current() ||
            { false } {
        __tracing_attr_span =
            {
                use ::tracing::__macro_support::Callsite as _;
                static __CALLSITE: ::tracing::callsite::DefaultCallsite =
                    {
                        static META: ::tracing::Metadata<'static> =
                            {
                                ::tracing_core::metadata::Metadata::new("report_fulfillment_error",
                                    "rustc_trait_selection::error_reporting::traits",
                                    ::tracing::Level::DEBUG,
                                    ::tracing_core::__macro_support::Option::Some("compiler/rustc_trait_selection/src/error_reporting/traits/mod.rs"),
                                    ::tracing_core::__macro_support::Option::Some(288u32),
                                    ::tracing_core::__macro_support::Option::Some("rustc_trait_selection::error_reporting::traits"),
                                    ::tracing_core::field::FieldSet::new(&[{
                                                        const NAME:
                                                            ::tracing::__macro_support::FieldName<{
                                                                ::tracing::__macro_support::FieldName::len("error")
                                                            }> =
                                                            ::tracing::__macro_support::FieldName::new("error");
                                                        NAME.as_str()
                                                    }], ::tracing_core::callsite::Identifier(&__CALLSITE)),
                                    ::tracing::metadata::Kind::SPAN)
                            };
                        ::tracing::callsite::DefaultCallsite::new(&META)
                    };
                let mut interest = ::tracing::subscriber::Interest::never();
                if ::tracing::Level::DEBUG <=
                                    ::tracing::level_filters::STATIC_MAX_LEVEL &&
                                ::tracing::Level::DEBUG <=
                                    ::tracing::level_filters::LevelFilter::current() &&
                            { interest = __CALLSITE.interest(); !interest.is_never() }
                        &&
                        ::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
                            interest) {
                    let meta = __CALLSITE.metadata();
                    ::tracing::Span::new(meta,
                        &{
                                #[allow(unused_imports)]
                                use ::tracing::field::{debug, display, Value};
                                meta.fields().value_set_all(&[(::tracing::__macro_support::Option::Some(&::tracing::field::debug(&error)
                                                            as &dyn ::tracing::field::Value))])
                            })
                } else {
                    let span =
                        ::tracing::__macro_support::__disabled_span(__CALLSITE.metadata());
                    {};
                    span
                }
            };
        __tracing_attr_guard = __tracing_attr_span.enter();
    }

    #[warn(clippy :: suspicious_else_formatting)]
    {

        #[allow(unknown_lints, unreachable_code, clippy ::
        diverging_sub_expression, clippy :: empty_loop, clippy ::
        let_unit_value, clippy :: let_with_type_underscore, clippy ::
        needless_return, clippy :: unreachable)]
        if false {
            let __tracing_attr_fake_return: ErrorGuaranteed = loop {};
            return __tracing_attr_fake_return;
        }
        {
            let mut error =
                FulfillmentError {
                    obligation: error.obligation.clone(),
                    code: error.code.clone(),
                    root_obligation: error.root_obligation.clone(),
                };
            if #[allow(non_exhaustive_omitted_patterns)] match error.code {
                        FulfillmentErrorCode::Select(crate::traits::SelectionError::Unimplemented)
                            | FulfillmentErrorCode::Project(_) => true,
                        _ => false,
                    } &&
                    self.apply_do_not_recommend(&mut error.obligation,
                        &error.root_obligation) {
                error.code =
                    FulfillmentErrorCode::Select(SelectionError::Unimplemented);
            }
            match error.code {
                FulfillmentErrorCode::Select(ref selection_error) =>
                    self.report_selection_error(error.obligation.clone(),
                        &error.root_obligation, selection_error),
                FulfillmentErrorCode::Project(ref e) => {
                    self.report_projection_error(&error.obligation, e)
                }
                FulfillmentErrorCode::Ambiguity { overflow: None } => {
                    self.maybe_report_ambiguity(&error.obligation)
                }
                FulfillmentErrorCode::Ambiguity {
                    overflow: Some(suggest_increasing_limit) } => {
                    self.report_overflow_no_abort(error.obligation.clone(),
                        suggest_increasing_limit)
                }
                FulfillmentErrorCode::Subtype(ref expected_found, ref err) =>
                    self.report_mismatched_types(&error.obligation.cause,
                            error.obligation.param_env, expected_found.expected,
                            expected_found.found, *err).emit(),
                FulfillmentErrorCode::ConstEquate(ref expected_found, ref err)
                    => {
                    let mut diag =
                        self.report_mismatched_consts(&error.obligation.cause,
                            error.obligation.param_env, expected_found.expected,
                            expected_found.found, *err);
                    let code =
                        error.obligation.cause.code().peel_derives().peel_match_impls();
                    if let ObligationCauseCode::WhereClause(..) |
                            ObligationCauseCode::WhereClauseInExpr(..) = code {
                        self.note_obligation_cause_code(error.obligation.cause.body_def_id,
                            &mut diag, error.obligation.predicate,
                            error.obligation.param_env, code,
                            &mut ::alloc::vec::Vec::new(), &mut Default::default());
                    }
                    diag.emit()
                }
                FulfillmentErrorCode::Cycle(ref cycle) =>
                    self.report_overflow_obligation_cycle(cycle),
            }
        }
    }
}#[instrument(skip(self), level = "debug")]
289    fn report_fulfillment_error(&self, error: &FulfillmentError<'tcx>) -> ErrorGuaranteed {
290        let mut error = FulfillmentError {
291            obligation: error.obligation.clone(),
292            code: error.code.clone(),
293            root_obligation: error.root_obligation.clone(),
294        };
295        if matches!(
296            error.code,
297            FulfillmentErrorCode::Select(crate::traits::SelectionError::Unimplemented)
298                | FulfillmentErrorCode::Project(_)
299        ) && self.apply_do_not_recommend(&mut error.obligation, &error.root_obligation)
300        {
301            error.code = FulfillmentErrorCode::Select(SelectionError::Unimplemented);
302        }
303
304        match error.code {
305            FulfillmentErrorCode::Select(ref selection_error) => self.report_selection_error(
306                error.obligation.clone(),
307                &error.root_obligation,
308                selection_error,
309            ),
310            FulfillmentErrorCode::Project(ref e) => {
311                self.report_projection_error(&error.obligation, e)
312            }
313            FulfillmentErrorCode::Ambiguity { overflow: None } => {
314                self.maybe_report_ambiguity(&error.obligation)
315            }
316            FulfillmentErrorCode::Ambiguity { overflow: Some(suggest_increasing_limit) } => {
317                self.report_overflow_no_abort(error.obligation.clone(), suggest_increasing_limit)
318            }
319            FulfillmentErrorCode::Subtype(ref expected_found, ref err) => self
320                .report_mismatched_types(
321                    &error.obligation.cause,
322                    error.obligation.param_env,
323                    expected_found.expected,
324                    expected_found.found,
325                    *err,
326                )
327                .emit(),
328            FulfillmentErrorCode::ConstEquate(ref expected_found, ref err) => {
329                let mut diag = self.report_mismatched_consts(
330                    &error.obligation.cause,
331                    error.obligation.param_env,
332                    expected_found.expected,
333                    expected_found.found,
334                    *err,
335                );
336                let code = error.obligation.cause.code().peel_derives().peel_match_impls();
337                if let ObligationCauseCode::WhereClause(..)
338                | ObligationCauseCode::WhereClauseInExpr(..) = code
339                {
340                    self.note_obligation_cause_code(
341                        error.obligation.cause.body_def_id,
342                        &mut diag,
343                        error.obligation.predicate,
344                        error.obligation.param_env,
345                        code,
346                        &mut vec![],
347                        &mut Default::default(),
348                    );
349                }
350                diag.emit()
351            }
352            FulfillmentErrorCode::Cycle(ref cycle) => self.report_overflow_obligation_cycle(cycle),
353        }
354    }
355
356    /// If the crates of `expected_def_id` and `trait_def_id` are imported as extern crate
357    /// under the same name (`extern crate foo as a` and `extern crate bar as a`) returns true,
358    /// otherwise returns false.
359    fn extern_crates_with_the_same_name(
360        &self,
361        expected_def_id: DefId,
362        trait_def_id: DefId,
363    ) -> bool {
364        if expected_def_id.is_local() || trait_def_id.is_local() {
365            return false;
366        }
367        // We only compare direct dependencies of the current crate, so it avoids unnecessary
368        // processing and excludes indirect dependencies, like `std` or `core`. In such a case
369        // both would be imported under the same name `std`.
370        match (
371            self.tcx.extern_crate(expected_def_id.krate),
372            self.tcx.extern_crate(trait_def_id.krate),
373        ) {
374            (
375                Some(&ExternCrate {
376                    src: ExternCrateSource::Extern(expected_def_id),
377                    dependency_of: LOCAL_CRATE,
378                    ..
379                }),
380                Some(&ExternCrate {
381                    src: ExternCrateSource::Extern(trait_def_id),
382                    dependency_of: LOCAL_CRATE,
383                    ..
384                }),
385            ) => self.tcx.item_name(expected_def_id) == self.tcx.item_name(trait_def_id),
386            _ => false,
387        }
388    }
389
390    pub fn check_same_definition_different_crate<F>(
391        &self,
392        err: &mut Diag<'_>,
393        expected_did: DefId,
394        found_dids: impl Iterator<Item = DefId>,
395        get_impls: F,
396        ty: &str,
397    ) -> bool
398    where
399        F: Fn(DefId) -> Vec<Span>,
400    {
401        let krate = self.tcx.crate_name(expected_did.krate);
402        let name = self.tcx.item_name(expected_did);
403        let definitions_with_same_path: UnordSet<_> = found_dids
404            .filter(|&def_id| {
405                def_id.krate != expected_did.krate
406                    && (self.extern_crates_with_the_same_name(expected_did, def_id)
407                        || self.tcx.crate_name(def_id.krate) == krate)
408                    && self.tcx.item_name(def_id) == name
409            })
410            .map(|def_id| (self.tcx.def_path_str(def_id), def_id))
411            .collect();
412
413        let definitions_with_same_path =
414            definitions_with_same_path.into_items().into_sorted_stable_ord_by_key(|(p, _)| p);
415        let mut suggested = false;
416        let mut trait_is_impl = false;
417
418        if !definitions_with_same_path.is_empty() {
419            let mut span: MultiSpan = self.tcx.def_span(expected_did).into();
420            span.push_span_label(
421                self.tcx.def_span(expected_did),
422                ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("this is the expected {0}", ty))
    })format!("this is the expected {ty}"),
423            );
424            suggested = true;
425            for (_, definition_with_same_path) in &definitions_with_same_path {
426                let definitions_impls = get_impls(*definition_with_same_path);
427                if definitions_impls.is_empty() {
428                    continue;
429                }
430
431                for candidate_span in definitions_impls {
432                    span.push_span_label(candidate_span, ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("this is the found {0}", ty))
    })format!("this is the found {ty}"));
433                    trait_is_impl = true;
434                }
435            }
436            if !trait_is_impl {
437                for (_, def_id) in definitions_with_same_path {
438                    span.push_span_label(
439                        self.tcx.def_span(def_id),
440                        ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("this is the {0} that was imported",
                ty))
    })format!("this is the {ty} that was imported"),
441                    );
442                }
443            }
444            self.note_two_crate_versions(expected_did.krate, span, err);
445            err.help("you can use `cargo tree` to explore your dependency tree");
446        }
447        suggested
448    }
449}
450
451/// Recovers the "impl X for Y" signature from `impl_def_id` and returns it as a
452/// string.
453pub(crate) fn to_pretty_impl_header(tcx: TyCtxt<'_>, impl_def_id: DefId) -> Option<String> {
454    use std::fmt::Write;
455
456    let trait_ref = tcx.impl_opt_trait_ref(impl_def_id)?.instantiate_identity().skip_norm_wip();
457    let mut w = "impl".to_owned();
458
459    #[derive(#[automatically_derived]
impl ::core::fmt::Debug for SizednessFound {
    #[inline]
    fn fmt(&self, f: &mut ::core::fmt::Formatter) -> ::core::fmt::Result {
        ::core::fmt::Formatter::debug_struct_field2_finish(f,
            "SizednessFound", "sized", &self.sized, "meta_sized",
            &&self.meta_sized)
    }
}Debug, #[automatically_derived]
impl ::core::default::Default for SizednessFound {
    #[inline]
    fn default() -> SizednessFound {
        SizednessFound {
            sized: ::core::default::Default::default(),
            meta_sized: ::core::default::Default::default(),
        }
    }
}Default)]
460    struct SizednessFound {
461        sized: bool,
462        meta_sized: bool,
463    }
464
465    let mut types_with_sizedness_bounds = FxIndexMap::<_, SizednessFound>::default();
466
467    let args = ty::GenericArgs::identity_for_item(tcx, impl_def_id);
468
469    let arg_names = args.iter().map(|k| k.to_string()).filter(|k| k != "'_").collect::<Vec<_>>();
470    if !arg_names.is_empty() {
471        w.push('<');
472        w.push_str(&arg_names.join(", "));
473        w.push('>');
474
475        for ty in args.types() {
476            // `PointeeSized` params might have no predicates.
477            types_with_sizedness_bounds.insert(ty, SizednessFound::default());
478        }
479    }
480
481    w.write_fmt(format_args!(" {0}{1} for {2}",
        tcx.impl_polarity(impl_def_id).as_str(),
        trait_ref.print_only_trait_path(),
        tcx.type_of(impl_def_id).instantiate_identity().skip_norm_wip()))write!(
482        w,
483        " {}{} for {}",
484        tcx.impl_polarity(impl_def_id).as_str(),
485        trait_ref.print_only_trait_path(),
486        tcx.type_of(impl_def_id).instantiate_identity().skip_norm_wip()
487    )
488    .unwrap();
489
490    let clauses = tcx.clauses_of(impl_def_id).clauses;
491    let mut pretty_clauses = Vec::with_capacity(clauses.len());
492
493    let sized_trait = tcx.lang_items().sized_trait();
494    let meta_sized_trait = tcx.lang_items().meta_sized_trait();
495
496    for (c, _) in clauses {
497        // Accumulate the sizedness bounds for each self ty.
498        if let Some(trait_clause) = c.as_trait_clause() {
499            let self_ty = trait_clause.self_ty().skip_binder();
500            let sizedness_of = types_with_sizedness_bounds.entry(self_ty).or_default();
501            if Some(trait_clause.def_id()) == sized_trait {
502                sizedness_of.sized = true;
503                continue;
504            } else if Some(trait_clause.def_id()) == meta_sized_trait {
505                sizedness_of.meta_sized = true;
506                continue;
507            }
508        }
509
510        pretty_clauses.push(c.to_string());
511    }
512
513    for (ty, sizedness) in types_with_sizedness_bounds {
514        if !tcx.features().sized_hierarchy() {
515            if sizedness.sized {
516                // Maybe a default bound, don't write anything.
517            } else {
518                pretty_clauses.push(::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0}: ?Sized", ty))
    })format!("{ty}: ?Sized"));
519            }
520        } else {
521            if sizedness.sized {
522                // Maybe a default bound, don't write anything.
523                pretty_clauses.push(::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0}: Sized", ty))
    })format!("{ty}: Sized"));
524            } else if sizedness.meta_sized {
525                pretty_clauses.push(::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0}: MetaSized", ty))
    })format!("{ty}: MetaSized"));
526            } else {
527                pretty_clauses.push(::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("{0}: PointeeSized", ty))
    })format!("{ty}: PointeeSized"));
528            }
529        }
530    }
531
532    if !pretty_clauses.is_empty() {
533        w.write_fmt(format_args!("\n  where {0}", pretty_clauses.join(", ")))write!(w, "\n  where {}", pretty_clauses.join(", ")).unwrap();
534    }
535
536    w.push(';');
537    Some(w)
538}
539
540impl<'a, 'tcx> TypeErrCtxt<'a, 'tcx> {
541    pub fn report_extra_impl_obligation(
542        &self,
543        error_span: Span,
544        impl_item_def_id: LocalDefId,
545        trait_item_def_id: DefId,
546        requirement: &dyn fmt::Display,
547    ) -> Diag<'a> {
548        let mut err = {
    self.dcx().struct_span_err(error_span,
            ::alloc::__export::must_use({
                    ::alloc::fmt::format(format_args!("impl has stricter requirements than trait"))
                })).with_code(E0276)
}struct_span_code_err!(
549            self.dcx(),
550            error_span,
551            E0276,
552            "impl has stricter requirements than trait"
553        );
554
555        if !self.tcx.is_impl_trait_in_trait(trait_item_def_id) {
556            if let Some(span) = self.tcx.hir_span_if_local(trait_item_def_id) {
557                let item_name = self.tcx.item_name(impl_item_def_id.to_def_id());
558                err.span_label(span, ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("definition of `{0}` from trait",
                item_name))
    })format!("definition of `{item_name}` from trait"));
559            }
560        }
561
562        err.span_label(error_span, ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("impl has extra requirement {0}",
                requirement))
    })format!("impl has extra requirement {requirement}"));
563
564        err
565    }
566}
567
568pub fn report_dyn_incompatibility<'tcx>(
569    tcx: TyCtxt<'tcx>,
570    span: Span,
571    hir_id: Option<hir::HirId>,
572    trait_def_id: DefId,
573    violations: &[DynCompatibilityViolation],
574) -> Diag<'tcx> {
575    let trait_str = tcx.def_path_str(trait_def_id);
576    let trait_span = tcx.hir_get_if_local(trait_def_id).and_then(|node| match node {
577        hir::Node::Item(item) => match item.kind {
578            hir::ItemKind::Trait { ident, .. } | hir::ItemKind::TraitAlias(_, ident, _, _) => {
579                Some(ident.span)
580            }
581            _ => ::core::panicking::panic("internal error: entered unreachable code")unreachable!(),
582        },
583        _ => None,
584    });
585
586    let mut err = {
    tcx.dcx().struct_span_err(span,
            ::alloc::__export::must_use({
                    ::alloc::fmt::format(format_args!("the {0} `{1}` is not dyn compatible",
                            tcx.def_descr(trait_def_id), trait_str))
                })).with_code(E0038)
}struct_span_code_err!(
587        tcx.dcx(),
588        span,
589        E0038,
590        "the {} `{}` is not dyn compatible",
591        tcx.def_descr(trait_def_id),
592        trait_str
593    );
594    err.span_label(span, ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("`{0}` is not dyn compatible",
                trait_str))
    })format!("`{trait_str}` is not dyn compatible"));
595
596    attempt_dyn_to_impl_suggestion(tcx, hir_id, &mut err);
597
598    let mut reported_violations = FxIndexSet::default();
599    let mut multi_span = ::alloc::vec::Vec::new()vec![];
600    let mut messages = ::alloc::vec::Vec::new()vec![];
601    for violation in violations {
602        if let DynCompatibilityViolation::SizedSelf(sp) = &violation
603            && !sp.is_empty()
604        {
605            // Do not report `SizedSelf` without spans pointing at `SizedSelf` obligations
606            // with a `Span`.
607            reported_violations.insert(DynCompatibilityViolation::SizedSelf(::alloc::vec::Vec::new()vec![].into()));
608        }
609        if reported_violations.insert(violation.clone()) {
610            let spans = violation.spans();
611            let msg = if trait_span.is_none() || spans.is_empty() {
612                ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("the trait is not dyn compatible because {0}",
                violation.error_msg()))
    })format!("the trait is not dyn compatible because {}", violation.error_msg())
613            } else {
614                ::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("...because {0}",
                violation.error_msg()))
    })format!("...because {}", violation.error_msg())
615            };
616            if spans.is_empty() {
617                err.note(msg);
618            } else {
619                for span in spans {
620                    multi_span.push(span);
621                    messages.push(msg.clone());
622                }
623            }
624        }
625    }
626    let has_multi_span = !multi_span.is_empty();
627    let mut note_span = MultiSpan::from_spans(multi_span.clone());
628    if let (Some(trait_span), true) = (trait_span, has_multi_span) {
629        note_span.push_span_label(trait_span, "this trait is not dyn compatible...");
630    }
631    for (span, msg) in iter::zip(multi_span, messages) {
632        note_span.push_span_label(span, msg);
633    }
634    err.span_note(
635        note_span,
636        "for a trait to be dyn compatible it needs to allow building a vtable\n\
637        for more information, visit <https://doc.rust-lang.org/reference/items/traits.html#dyn-compatibility>",
638    );
639
640    // Only provide the help if its a local trait, otherwise it's not actionable.
641    if trait_span.is_some() {
642        let mut potential_solutions: Vec<_> =
643            reported_violations.into_iter().map(|violation| violation.solution()).collect();
644        potential_solutions.sort();
645        // Allows us to skip suggesting that the same item should be moved to another trait multiple times.
646        potential_solutions.dedup();
647        for solution in potential_solutions {
648            solution.add_to(&mut err);
649        }
650    }
651
652    attempt_dyn_to_enum_suggestion(tcx, trait_def_id, &*trait_str, &mut err);
653
654    err
655}
656
657/// Attempt to suggest converting the `dyn Trait` argument to an enumeration
658/// over the types that implement `Trait`.
659fn attempt_dyn_to_enum_suggestion(
660    tcx: TyCtxt<'_>,
661    trait_def_id: DefId,
662    trait_str: &str,
663    err: &mut Diag<'_>,
664) {
665    let impls_of = tcx.trait_impls_of(trait_def_id);
666
667    if !impls_of.blanket_impls().is_empty() {
668        return;
669    }
670
671    let concrete_impls: Option<Vec<Ty<'_>>> = impls_of
672        .non_blanket_impls()
673        .values()
674        .flatten()
675        .map(|impl_id| {
676            // Don't suggest conversion to enum if the impl types have type parameters.
677            // It's unlikely the user wants to define a generic enum.
678            let Some(impl_type) = tcx.type_of(*impl_id).no_bound_vars() else { return None };
679
680            // Obviously unsized impl types won't be usable in an enum.
681            // Note: this doesn't use `Ty::has_trivial_sizedness` because that function
682            // defaults to assuming that things are *not* sized, whereas we want to
683            // fall back to assuming that things may be sized.
684            match impl_type.kind() {
685                ty::Str | ty::Slice(_) | ty::Dynamic(_, _) => {
686                    return None;
687                }
688                _ => {}
689            }
690            Some(impl_type)
691        })
692        .collect();
693    let Some(concrete_impls) = concrete_impls else { return };
694
695    const MAX_IMPLS_TO_SUGGEST_CONVERTING_TO_ENUM: usize = 9;
696    if concrete_impls.is_empty() || concrete_impls.len() > MAX_IMPLS_TO_SUGGEST_CONVERTING_TO_ENUM {
697        return;
698    }
699
700    let externally_visible = if let Some(def_id) = trait_def_id.as_local() {
701        // We may be executing this during typeck, which would result in cycle
702        // if we used effective_visibilities query, which looks into opaque types
703        // (and therefore calls typeck).
704        tcx.resolutions(()).effective_visibilities.is_exported(def_id)
705    } else {
706        false
707    };
708
709    if let [only_impl] = &concrete_impls[..] {
710        let within = if externally_visible { " within this crate" } else { "" };
711        err.help({
    let _guard = NoTrimmedGuard::new();
    ::alloc::__export::must_use({
            ::alloc::fmt::format(format_args!("only type `{0}` implements `{1}`{2}; consider using it directly instead.",
                    only_impl, trait_str, within))
        })
}with_no_trimmed_paths!(format!(
712            "only type `{only_impl}` implements `{trait_str}`{within}; \
713            consider using it directly instead."
714        )));
715    } else {
716        let types = concrete_impls
717            .iter()
718            .map(|t| {
    let _guard = NoTrimmedGuard::new();
    ::alloc::__export::must_use({
            ::alloc::fmt::format(format_args!("  {0}", t))
        })
}with_no_trimmed_paths!(format!("  {}", t)))
719            .collect::<Vec<String>>()
720            .join("\n");
721
722        err.help(::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("the following types implement `{0}`:\n{1}\nconsider defining an enum where each variant holds one of these types,\nimplementing `{0}` for this new enum and using it instead",
                trait_str, types))
    })format!(
723            "the following types implement `{trait_str}`:\n\
724             {types}\n\
725             consider defining an enum where each variant holds one of these types,\n\
726             implementing `{trait_str}` for this new enum and using it instead",
727        ));
728    }
729
730    if externally_visible {
731        err.note(::alloc::__export::must_use({
        ::alloc::fmt::format(format_args!("`{0}` may be implemented in other crates; if you want to support your users passing their own types here, you can\'t refer to a specific type",
                trait_str))
    })format!(
732            "`{trait_str}` may be implemented in other crates; if you want to support your users \
733             passing their own types here, you can't refer to a specific type",
734        ));
735    }
736}
737
738/// Attempt to suggest that a `dyn Trait` argument or return type be converted
739/// to use `impl Trait`.
740fn attempt_dyn_to_impl_suggestion(tcx: TyCtxt<'_>, hir_id: Option<hir::HirId>, err: &mut Diag<'_>) {
741    let Some(hir_id) = hir_id else { return };
742    let hir::Node::Ty(ty) = tcx.hir_node(hir_id) else { return };
743    let hir::TyKind::TraitObject([trait_ref, ..], ..) = ty.kind else { return };
744
745    // Only suggest converting `dyn` to `impl` if we're in a function signature.
746    // This ensures that we don't suggest converting e.g.
747    //   `type Alias = Box<dyn DynIncompatibleTrait>;` to
748    //   `type Alias = Box<impl DynIncompatibleTrait>;`
749    let Some((_id, first_non_type_parent_node)) =
750        tcx.hir_parent_iter(hir_id).find(|(_id, node)| !#[allow(non_exhaustive_omitted_patterns)] match node {
    hir::Node::Ty(_) => true,
    _ => false,
}matches!(node, hir::Node::Ty(_)))
751    else {
752        return;
753    };
754    if first_non_type_parent_node.fn_sig().is_none() {
755        return;
756    }
757
758    err.span_suggestion_verbose(
759        ty.span.until(trait_ref.span),
760        "consider using an opaque type instead",
761        "impl ",
762        Applicability::MaybeIncorrect,
763    );
764}