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Report nicer lifetime errors for specialization
Add an obligation cause for these error so that the error points to the implementations that caused the error.
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@ -80,7 +80,7 @@ use rustc_middle::ty::{self, TyCtxt, TypeVisitableExt};
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use rustc_span::Span;
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use rustc_trait_selection::traits::error_reporting::TypeErrCtxtExt;
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use rustc_trait_selection::traits::outlives_bounds::InferCtxtExt as _;
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use rustc_trait_selection::traits::{self, translate_substs, wf, ObligationCtxt};
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use rustc_trait_selection::traits::{self, translate_substs_with_cause, wf, ObligationCtxt};
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pub(super) fn check_min_specialization(tcx: TyCtxt<'_>, impl_def_id: LocalDefId) {
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if let Some(node) = parent_specialization_node(tcx, impl_def_id) {
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@ -180,8 +180,21 @@ fn get_impl_substs(
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ocx.assumed_wf_types(param_env, tcx.def_span(impl1_def_id), impl1_def_id);
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let impl1_substs = InternalSubsts::identity_for_item(tcx, impl1_def_id);
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let impl2_substs =
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translate_substs(infcx, param_env, impl1_def_id.to_def_id(), impl1_substs, impl2_node);
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let impl1_span = tcx.def_span(impl1_def_id);
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let impl2_substs = translate_substs_with_cause(
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infcx,
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param_env,
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impl1_def_id.to_def_id(),
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impl1_substs,
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impl2_node,
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|_, span| {
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traits::ObligationCause::new(
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impl1_span,
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impl1_def_id,
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traits::ObligationCauseCode::BindingObligation(impl2_node.def_id(), span),
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)
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},
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);
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let errors = ocx.select_all_or_error();
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if !errors.is_empty() {
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@ -322,7 +322,9 @@ fn negative_impl(tcx: TyCtxt<'_>, impl1_def_id: DefId, impl2_def_id: DefId) -> b
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let selcx = &mut SelectionContext::new(&infcx);
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let impl2_substs = infcx.fresh_substs_for_item(DUMMY_SP, impl2_def_id);
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let (subject2, obligations) =
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impl_subject_and_oblig(selcx, impl_env, impl2_def_id, impl2_substs);
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impl_subject_and_oblig(selcx, impl_env, impl2_def_id, impl2_substs, |_, _| {
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ObligationCause::dummy()
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});
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!equate(&infcx, impl_env, subject1, subject2, obligations, impl1_def_id)
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}
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@ -54,7 +54,9 @@ pub use self::select::{EvaluationCache, SelectionCache, SelectionContext};
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pub use self::select::{EvaluationResult, IntercrateAmbiguityCause, OverflowError};
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pub use self::specialize::specialization_graph::FutureCompatOverlapError;
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pub use self::specialize::specialization_graph::FutureCompatOverlapErrorKind;
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pub use self::specialize::{specialization_graph, translate_substs, OverlapError};
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pub use self::specialize::{
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specialization_graph, translate_substs, translate_substs_with_cause, OverlapError,
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};
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pub use self::structural_match::{
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search_for_adt_const_param_violation, search_for_structural_match_violation,
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};
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@ -82,6 +82,30 @@ pub fn translate_substs<'tcx>(
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source_impl: DefId,
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source_substs: SubstsRef<'tcx>,
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target_node: specialization_graph::Node,
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) -> SubstsRef<'tcx> {
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translate_substs_with_cause(
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infcx,
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param_env,
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source_impl,
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source_substs,
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target_node,
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|_, _| ObligationCause::dummy(),
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)
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}
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/// Like [translate_substs], but obligations from the parent implementation
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/// are registered with the provided `ObligationCause`.
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///
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/// This is for reporting *region* errors from those bounds. Type errors should
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/// not happen because the specialization graph already checks for those, and
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/// will result in an ICE.
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pub fn translate_substs_with_cause<'tcx>(
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infcx: &InferCtxt<'tcx>,
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param_env: ty::ParamEnv<'tcx>,
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source_impl: DefId,
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source_substs: SubstsRef<'tcx>,
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target_node: specialization_graph::Node,
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cause: impl Fn(usize, Span) -> ObligationCause<'tcx>,
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) -> SubstsRef<'tcx> {
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debug!(
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"translate_substs({:?}, {:?}, {:?}, {:?})",
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@ -99,7 +123,7 @@ pub fn translate_substs<'tcx>(
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return source_substs;
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}
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fulfill_implication(infcx, param_env, source_trait_ref, source_impl, target_impl)
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fulfill_implication(infcx, param_env, source_trait_ref, source_impl, target_impl, cause)
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.unwrap_or_else(|()| {
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bug!(
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"When translating substitutions from {source_impl:?} to {target_impl:?}, \
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@ -154,7 +178,10 @@ pub(super) fn specializes(tcx: TyCtxt<'_>, (impl1_def_id, impl2_def_id): (DefId,
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let infcx = tcx.infer_ctxt().build();
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// Attempt to prove that impl2 applies, given all of the above.
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fulfill_implication(&infcx, penv, impl1_trait_ref, impl1_def_id, impl2_def_id).is_ok()
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fulfill_implication(&infcx, penv, impl1_trait_ref, impl1_def_id, impl2_def_id, |_, _| {
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ObligationCause::dummy()
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})
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.is_ok()
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}
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/// Attempt to fulfill all obligations of `target_impl` after unification with
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@ -168,6 +195,7 @@ fn fulfill_implication<'tcx>(
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source_trait_ref: ty::TraitRef<'tcx>,
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source_impl: DefId,
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target_impl: DefId,
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error_cause: impl Fn(usize, Span) -> ObligationCause<'tcx>,
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) -> Result<SubstsRef<'tcx>, ()> {
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debug!(
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"fulfill_implication({:?}, trait_ref={:?} |- {:?} applies)",
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@ -195,7 +223,7 @@ fn fulfill_implication<'tcx>(
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let selcx = &mut SelectionContext::new(&infcx);
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let target_substs = infcx.fresh_substs_for_item(DUMMY_SP, target_impl);
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let (target_trait, obligations) =
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util::impl_subject_and_oblig(selcx, param_env, target_impl, target_substs);
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util::impl_subject_and_oblig(selcx, param_env, target_impl, target_substs, error_cause);
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// do the impls unify? If not, no specialization.
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let Ok(InferOk { obligations: more_obligations, .. }) =
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@ -197,6 +197,7 @@ pub fn impl_subject_and_oblig<'a, 'tcx>(
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param_env: ty::ParamEnv<'tcx>,
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impl_def_id: DefId,
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impl_substs: SubstsRef<'tcx>,
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cause: impl Fn(usize, Span) -> ObligationCause<'tcx>,
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) -> (ImplSubject<'tcx>, impl Iterator<Item = PredicateObligation<'tcx>>) {
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let subject = selcx.tcx().impl_subject(impl_def_id);
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let subject = subject.subst(selcx.tcx(), impl_substs);
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@ -208,8 +209,7 @@ pub fn impl_subject_and_oblig<'a, 'tcx>(
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let predicates = predicates.instantiate(selcx.tcx(), impl_substs);
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let InferOk { value: predicates, obligations: normalization_obligations2 } =
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selcx.infcx.at(&ObligationCause::dummy(), param_env).normalize(predicates);
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let impl_obligations =
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super::predicates_for_generics(|_, _| ObligationCause::dummy(), param_env, predicates);
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let impl_obligations = super::predicates_for_generics(cause, param_env, predicates);
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let impl_obligations = impl_obligations
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.chain(normalization_obligations1.into_iter())
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@ -0,0 +1,50 @@
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// Regression test for #79457.
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#![feature(min_specialization)]
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use std::any::Any;
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pub trait Tr {
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fn method(self) -> Box<dyn Any + 'static>;
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fn other(self);
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}
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impl<T: Any + 'static> Tr for T {
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default fn method(self) -> Box<dyn Any + 'static> {
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Box::new(self)
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}
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default fn other(self) {}
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}
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impl<'a> Tr for &'a i32 {
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//~^ ERROR does not fulfill the required lifetime
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fn other(self) {}
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}
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fn promote_to_static<'a>(i: &'a i32) -> &'static i32 {
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*i.method().downcast().unwrap()
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}
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struct Wrapper<'a>(&'a i32);
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impl<'a> Tr for Wrapper<'a> {
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//~^ ERROR does not fulfill the required lifetime
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fn other(self) {}
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}
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fn promote_to_static_2<'a>(w: Wrapper<'a>) -> Wrapper<'static> {
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*w.method().downcast().unwrap()
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}
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fn main() {
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let i = Box::new(100_i32);
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let static_i: &'static i32 = promote_to_static(&*i);
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drop(i);
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println!("{}", *static_i);
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let j = Box::new(200_i32);
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let static_w: Wrapper<'static> = promote_to_static_2(Wrapper(&*j));
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drop(j);
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println!("{}", *static_w.0);
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}
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@ -0,0 +1,27 @@
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error[E0477]: the type `&'a i32` does not fulfill the required lifetime
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--> $DIR/specialize_with_generalize_lifetimes.rs:20:1
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LL | impl<'a> Tr for &'a i32 {
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| ^^^^^^^^^^^^^^^^^^^^^^^
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note: type must satisfy the static lifetime as required by this binding
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--> $DIR/specialize_with_generalize_lifetimes.rs:12:15
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LL | impl<T: Any + 'static> Tr for T {
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| ^^^^^^^
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error[E0477]: the type `Wrapper<'a>` does not fulfill the required lifetime
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--> $DIR/specialize_with_generalize_lifetimes.rs:31:1
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LL | impl<'a> Tr for Wrapper<'a> {
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| ^^^^^^^^^^^^^^^^^^^^^^^^^^^
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note: type must satisfy the static lifetime as required by this binding
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--> $DIR/specialize_with_generalize_lifetimes.rs:12:15
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LL | impl<T: Any + 'static> Tr for T {
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| ^^^^^^^
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error: aborting due to 2 previous errors
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For more information about this error, try `rustc --explain E0477`.
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