Don't re-elaborated already elaborated caller bounds in method probe
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5367673014
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34e087890c
@ -774,18 +774,23 @@ fn assemble_inherent_candidates_from_object(&mut self, self_ty: Ty<'tcx>) {
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// instantiation that replaces `Self` with the object type itself. Hence,
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// a `&self` method will wind up with an argument type like `&dyn Trait`.
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let trait_ref = principal.with_self_ty(self.tcx, self_ty);
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self.elaborate_bounds(iter::once(trait_ref), |this, new_trait_ref, item| {
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this.push_candidate(
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Candidate { item, kind: ObjectCandidate(new_trait_ref), import_ids: smallvec![] },
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true,
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);
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});
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self.assemble_candidates_for_bounds(
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traits::supertraits(self.tcx, trait_ref),
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|this, new_trait_ref, item| {
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this.push_candidate(
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Candidate {
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item,
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kind: ObjectCandidate(new_trait_ref),
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import_ids: smallvec![],
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},
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true,
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);
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},
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);
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}
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#[instrument(level = "debug", skip(self))]
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fn assemble_inherent_candidates_from_param(&mut self, param_ty: ty::ParamTy) {
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// FIXME: do we want to commit to this behavior for param bounds?
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let bounds = self.param_env.caller_bounds().iter().filter_map(|predicate| {
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let bound_predicate = predicate.kind();
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match bound_predicate.skip_binder() {
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@ -806,7 +811,7 @@ fn assemble_inherent_candidates_from_param(&mut self, param_ty: ty::ParamTy) {
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}
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});
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self.elaborate_bounds(bounds, |this, poly_trait_ref, item| {
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self.assemble_candidates_for_bounds(bounds, |this, poly_trait_ref, item| {
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this.push_candidate(
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Candidate {
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item,
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@ -820,15 +825,14 @@ fn assemble_inherent_candidates_from_param(&mut self, param_ty: ty::ParamTy) {
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// Do a search through a list of bounds, using a callback to actually
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// create the candidates.
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fn elaborate_bounds<F>(
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fn assemble_candidates_for_bounds<F>(
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&mut self,
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bounds: impl Iterator<Item = ty::PolyTraitRef<'tcx>>,
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mut mk_cand: F,
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) where
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F: for<'b> FnMut(&mut ProbeContext<'b, 'tcx>, ty::PolyTraitRef<'tcx>, ty::AssocItem),
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{
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let tcx = self.tcx;
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for bound_trait_ref in traits::transitive_bounds(tcx, bounds) {
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for bound_trait_ref in bounds {
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debug!("elaborate_bounds(bound_trait_ref={:?})", bound_trait_ref);
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for item in self.impl_or_trait_item(bound_trait_ref.def_id()) {
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if !self.has_applicable_self(&item) {
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@ -62,7 +62,7 @@
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};
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pub use self::structural_normalize::StructurallyNormalizeExt;
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pub use self::util::{
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elaborate, expand_trait_aliases, impl_item_is_final, supertraits, transitive_bounds,
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elaborate, expand_trait_aliases, impl_item_is_final, supertraits,
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transitive_bounds_that_define_assoc_item, upcast_choices, with_replaced_escaping_bound_vars,
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BoundVarReplacer, PlaceholderReplacer, TraitAliasExpander, TraitAliasExpansionInfo,
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};
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@ -264,15 +264,6 @@ pub fn supertraits<I: Interner>(
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elaborate(cx, [trait_ref.upcast(cx)]).filter_only_self().filter_to_traits()
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}
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pub fn transitive_bounds<I: Interner>(
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cx: I,
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trait_refs: impl Iterator<Item = ty::Binder<I, ty::TraitRef<I>>>,
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) -> FilterToTraits<I, Elaborator<I, I::Clause>> {
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elaborate(cx, trait_refs.map(|trait_ref| trait_ref.upcast(cx)))
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.filter_only_self()
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.filter_to_traits()
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}
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impl<I: Interner> Elaborator<I, I::Clause> {
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fn filter_to_traits(self) -> FilterToTraits<I, Self> {
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FilterToTraits { _cx: PhantomData, base_iterator: self }
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