Rollup merge of #118146 - compiler-errors:deref-into-dyn-regions, r=lcnr
Rework supertrait lint once again I accidentally pushed the wrong commits because I totally didn't check I was on the right computer when updating #118026. Sorry, this should address all the nits in #118026. r? lcnr
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commit
add423bcf7
@ -491,8 +491,9 @@ lint_requested_level = requested on the command line with `{$level} {$lint_name}
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lint_span_use_eq_ctxt = use `.eq_ctxt()` instead of `.ctxt() == .ctxt()`
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lint_supertrait_as_deref_target = this `Deref` implementation is covered by an implicit supertrait coercion
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.label = `{$self_ty}` implements `Deref<Target = dyn {$target_principal}>` which conflicts with supertrait `{$supertrait_principal}`
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.label2 = target type is a supertrait of `{$self_ty}`
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.help = consider removing this implementation or replacing it with a method instead
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.label = target type is a supertrait of `{$t}`
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lint_suspicious_double_ref_clone =
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using `.clone()` on a double reference, which returns `{$ty}` instead of cloning the inner type
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@ -53,35 +53,43 @@ fn check_item(&mut self, cx: &LateContext<'tcx>, item: &'tcx hir::Item<'tcx>) {
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let tcx = cx.tcx;
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// `Deref` is being implemented for `t`
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if let hir::ItemKind::Impl(impl_) = item.kind
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// the trait is a `Deref` implementation
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&& let Some(trait_) = &impl_.of_trait
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&& let t = tcx.type_of(item.owner_id).instantiate_identity()
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&& let opt_did @ Some(did) = trait_.trait_def_id()
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&& opt_did == tcx.lang_items().deref_trait()
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// `t` is `dyn t_principal`
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&& let ty::Dynamic(data, _, ty::Dyn) = t.kind()
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&& let Some(t_principal) = data.principal()
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&& let Some(did) = trait_.trait_def_id()
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&& Some(did) == tcx.lang_items().deref_trait()
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// the self type is `dyn t_principal`
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&& let self_ty = tcx.type_of(item.owner_id).instantiate_identity()
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&& let ty::Dynamic(data, _, ty::Dyn) = self_ty.kind()
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&& let Some(self_principal) = data.principal()
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// `<T as Deref>::Target` is `dyn target_principal`
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&& let Some(target) = cx.get_associated_type(t, did, "Target")
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&& let Some(target) = cx.get_associated_type(self_ty, did, "Target")
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&& let ty::Dynamic(data, _, ty::Dyn) = target.kind()
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&& let Some(target_principal) = data.principal()
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// `target_principal` is a supertrait of `t_principal`
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&& supertraits(tcx, t_principal.with_self_ty(tcx, tcx.types.trait_object_dummy_self))
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.any(|sup| {
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tcx.erase_regions(
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sup.map_bound(|x| ty::ExistentialTraitRef::erase_self_ty(tcx, x)),
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) == tcx.erase_regions(target_principal)
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})
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&& let Some(supertrait_principal) = supertraits(tcx, self_principal.with_self_ty(tcx, self_ty))
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.find(|supertrait| supertrait.def_id() == target_principal.def_id())
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{
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let t = tcx.erase_regions(t);
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let label = impl_
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// erase regions in self type for better diagnostic presentation
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let (self_ty, target_principal, supertrait_principal) =
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tcx.erase_regions((self_ty, target_principal, supertrait_principal));
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let label2 = impl_
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.items
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.iter()
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.find_map(|i| (i.ident.name == sym::Target).then_some(i.span))
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.map(|label| SupertraitAsDerefTargetLabel { label });
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let span = tcx.def_span(item.owner_id.def_id);
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cx.emit_spanned_lint(
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DEREF_INTO_DYN_SUPERTRAIT,
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tcx.def_span(item.owner_id.def_id),
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SupertraitAsDerefTarget { t, label },
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span,
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SupertraitAsDerefTarget {
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self_ty,
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supertrait_principal: supertrait_principal.map_bound(|trait_ref| {
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ty::ExistentialTraitRef::erase_self_ty(tcx, trait_ref)
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}),
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target_principal,
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label: span,
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label2,
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},
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);
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}
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}
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@ -10,7 +10,9 @@
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};
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use rustc_hir::def_id::DefId;
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use rustc_macros::{LintDiagnostic, Subdiagnostic};
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use rustc_middle::ty::{inhabitedness::InhabitedPredicate, Clause, Ty, TyCtxt};
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use rustc_middle::ty::{
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inhabitedness::InhabitedPredicate, Clause, PolyExistentialTraitRef, Ty, TyCtxt,
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};
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use rustc_session::parse::ParseSess;
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use rustc_span::{edition::Edition, sym, symbol::Ident, Span, Symbol};
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@ -556,13 +558,17 @@ pub enum BuiltinSpecialModuleNameUsed {
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#[diag(lint_supertrait_as_deref_target)]
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#[help]
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pub struct SupertraitAsDerefTarget<'a> {
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pub t: Ty<'a>,
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pub self_ty: Ty<'a>,
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pub supertrait_principal: PolyExistentialTraitRef<'a>,
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pub target_principal: PolyExistentialTraitRef<'a>,
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#[label]
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pub label: Span,
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#[subdiagnostic]
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pub label: Option<SupertraitAsDerefTargetLabel>,
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pub label2: Option<SupertraitAsDerefTargetLabel>,
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}
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#[derive(Subdiagnostic)]
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#[label(lint_label)]
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#[label(lint_label2)]
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pub struct SupertraitAsDerefTargetLabel {
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#[primary_span]
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pub label: Span,
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@ -2,7 +2,7 @@ warning: this `Deref` implementation is covered by an implicit supertrait coerci
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--> $DIR/deref-lint-regions.rs:8:1
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LL | impl<'a> Deref for dyn Foo<'a> {
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| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
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| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ `dyn Foo<'_>` implements `Deref<Target = dyn Bar<'_>>` which conflicts with supertrait `Bar<'_>`
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LL |
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LL | type Target = dyn Bar<'a>;
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| -------------------------- target type is a supertrait of `dyn Foo<'_>`
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@ -8,6 +8,7 @@ trait B: A {}
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impl<'a> Deref for dyn 'a + B {
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//~^ WARN this `Deref` implementation is covered by an implicit supertrait coercion
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type Target = dyn A;
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fn deref(&self) -> &Self::Target {
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todo!()
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@ -2,8 +2,8 @@ warning: this `Deref` implementation is covered by an implicit supertrait coerci
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--> $DIR/deref-lint.rs:9:1
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LL | impl<'a> Deref for dyn 'a + B {
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| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
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LL |
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| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ `dyn B` implements `Deref<Target = dyn A>` which conflicts with supertrait `A`
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...
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LL | type Target = dyn A;
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| -------------------- target type is a supertrait of `dyn B`
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@ -0,0 +1,34 @@
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#![deny(deref_into_dyn_supertrait)]
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use std::ops::Deref;
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trait Bar<T> {}
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impl<T, U> Bar<U> for T {}
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trait Foo: Bar<i32> {
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fn as_dyn_bar_u32<'a>(&self) -> &(dyn Bar<u32> + 'a);
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}
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impl Foo for () {
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fn as_dyn_bar_u32<'a>(&self) -> &(dyn Bar<u32> + 'a) {
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self
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}
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}
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impl<'a> Deref for dyn Foo + 'a {
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type Target = dyn Bar<u32> + 'a;
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fn deref(&self) -> &Self::Target {
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self.as_dyn_bar_u32()
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}
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}
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fn take_dyn<T>(x: &dyn Bar<T>) -> T {
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todo!()
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}
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fn main() {
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let x: &dyn Foo = &();
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let y = take_dyn(x);
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let z: u32 = y;
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//~^ ERROR mismatched types
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}
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@ -0,0 +1,16 @@
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error[E0308]: mismatched types
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--> $DIR/deref-upcast-behavioral-change.rs:32:18
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LL | let z: u32 = y;
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| --- ^ expected `u32`, found `i32`
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| |
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| expected due to this
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help: you can convert an `i32` to a `u32` and panic if the converted value doesn't fit
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LL | let z: u32 = y.try_into().unwrap();
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| ++++++++++++++++++++
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error: aborting due to previous error
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For more information about this error, try `rustc --explain E0308`.
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@ -0,0 +1,20 @@
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// check-pass
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use std::ops::Deref;
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trait Bar<T> {}
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trait Foo: Bar<i32> {
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fn as_dyn_bar_u32<'a>(&self) -> &(dyn Bar<u32> + 'a);
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}
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impl<'a> Deref for dyn Foo + 'a {
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//~^ WARN this `Deref` implementation is covered by an implicit supertrait coercion
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type Target = dyn Bar<u32> + 'a;
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fn deref(&self) -> &Self::Target {
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self.as_dyn_bar_u32()
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}
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}
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fn main() {}
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@ -0,0 +1,14 @@
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warning: this `Deref` implementation is covered by an implicit supertrait coercion
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--> $DIR/migrate-lint-different-substs.rs:11:1
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LL | impl<'a> Deref for dyn Foo + 'a {
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| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ `dyn Foo` implements `Deref<Target = dyn Bar<u32>>` which conflicts with supertrait `Bar<i32>`
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LL |
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LL | type Target = dyn Bar<u32> + 'a;
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| -------------------------------- target type is a supertrait of `dyn Foo`
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= help: consider removing this implementation or replacing it with a method instead
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= note: `#[warn(deref_into_dyn_supertrait)]` on by default
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warning: 1 warning emitted
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