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Handle multiple applicable projection candidates
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@ -157,7 +157,7 @@ rustc_queries! {
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}
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/// Returns the list of bounds that can be used for
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/// `SelectionCandidate::ProjectionCandidate` and
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/// `SelectionCandidate::ProjectionCandidate(_)` and
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/// `ProjectionTyCandidate::TraitDef`.
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/// Specifically this is the bounds written on the trait's type
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/// definition, or those after the `impl` keyword
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@ -105,9 +105,10 @@ pub enum SelectionCandidate<'tcx> {
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ImplCandidate(DefId),
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AutoImplCandidate(DefId),
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/// This is a trait matching with a projected type as `Self`, and
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/// we found an applicable bound in the trait definition.
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ProjectionCandidate,
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/// This is a trait matching with a projected type as `Self`, and we found
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/// an applicable bound in the trait definition. The `usize` is an index
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/// into the list returned by `tcx.item_bounds`.
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ProjectionCandidate(usize),
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/// Implementation of a `Fn`-family trait by one of the anonymous types
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/// generated for a `||` expression.
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@ -323,12 +323,12 @@ impl<'cx, 'tcx> SelectionContext<'cx, 'tcx> {
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_ => return,
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}
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let result = self.infcx.probe(|_| {
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self.match_projection_obligation_against_definition_bounds(obligation).is_some()
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});
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let result = self
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.infcx
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.probe(|_| self.match_projection_obligation_against_definition_bounds(obligation));
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if result {
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candidates.vec.push(ProjectionCandidate);
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for predicate_index in result {
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candidates.vec.push(ProjectionCandidate(predicate_index));
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}
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}
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@ -70,8 +70,8 @@ impl<'cx, 'tcx> SelectionContext<'cx, 'tcx> {
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Ok(ImplSource::AutoImpl(data))
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}
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ProjectionCandidate => {
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let obligations = self.confirm_projection_candidate(obligation);
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ProjectionCandidate(idx) => {
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let obligations = self.confirm_projection_candidate(obligation, idx);
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Ok(ImplSource::Param(obligations))
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}
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@ -121,11 +121,22 @@ impl<'cx, 'tcx> SelectionContext<'cx, 'tcx> {
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fn confirm_projection_candidate(
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&mut self,
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obligation: &TraitObligation<'tcx>,
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idx: usize,
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) -> Vec<PredicateObligation<'tcx>> {
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self.infcx.commit_unconditionally(|_| {
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let candidate = self
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.match_projection_obligation_against_definition_bounds(obligation)
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.unwrap_or_else(|| bug!("Can't find selected projection candidate"));
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let tcx = self.tcx();
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let bound_self_ty = self.infcx.shallow_resolve(obligation.self_ty());
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let (def_id, substs) = match bound_self_ty.skip_binder().kind {
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ty::Projection(proj) => (proj.item_def_id, proj.substs),
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ty::Opaque(def_id, substs) => (def_id, substs),
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_ => bug!("projection candidate for unexpected type: {:?}", bound_self_ty),
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};
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let candidate_predicate = tcx.item_bounds(def_id)[idx].subst(tcx, substs);
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let candidate = candidate_predicate
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.to_opt_poly_trait_ref()
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.expect("projection candidate is not a trait predicate");
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let mut obligations = self
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.infcx
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.at(&obligation.cause, obligation.param_env)
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@ -139,7 +150,7 @@ impl<'cx, 'tcx> SelectionContext<'cx, 'tcx> {
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);
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});
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// Require that the projection is well-formed.
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let self_ty = self.infcx.replace_bound_vars_with_placeholders(&obligation.self_ty());
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let self_ty = self.infcx.replace_bound_vars_with_placeholders(&bound_self_ty);
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let self_ty = normalize_with_depth_to(
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self,
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obligation.param_env,
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@ -152,7 +163,7 @@ impl<'cx, 'tcx> SelectionContext<'cx, 'tcx> {
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obligation.cause.clone(),
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obligation.recursion_depth + 1,
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obligation.param_env,
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ty::PredicateKind::WellFormed(self_ty.into()).to_predicate(self.tcx()),
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ty::PredicateKind::WellFormed(self_ty.into()).to_predicate(tcx),
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));
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obligations
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})
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@ -1163,11 +1163,12 @@ impl<'cx, 'tcx> SelectionContext<'cx, 'tcx> {
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///
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/// Given an obligation like `<T as Foo>::Bar: Baz` where the self type is
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/// a projection, look at the bounds of `T::Bar`, see if we can find a
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/// `Baz` bound and it there is one it returns it.
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/// `Baz` bound. We return indexes into the list returned by
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/// `tcx.item_bounds` for any applicable bounds.
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fn match_projection_obligation_against_definition_bounds(
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&mut self,
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obligation: &TraitObligation<'tcx>,
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) -> Option<ty::PolyTraitRef<'tcx>> {
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) -> smallvec::SmallVec<[usize; 2]> {
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let poly_trait_predicate = self.infcx().resolve_vars_if_possible(&obligation.predicate);
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let placeholder_trait_predicate =
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self.infcx().replace_bound_vars_with_placeholders(&poly_trait_predicate);
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@ -1192,25 +1193,33 @@ impl<'cx, 'tcx> SelectionContext<'cx, 'tcx> {
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};
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let bounds = tcx.item_bounds(def_id).subst(tcx, substs);
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let matching_bound = bounds.iter().find_map(|bound| {
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if let ty::PredicateAtom::Trait(pred, _) = bound.skip_binders() {
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let bound = ty::Binder::bind(pred.trait_ref);
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if self.infcx.probe(|_| {
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self.match_projection(obligation, bound, placeholder_trait_predicate.trait_ref)
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let matching_bounds = bounds
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.iter()
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.enumerate()
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.filter_map(|(idx, bound)| {
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if let ty::PredicateAtom::Trait(pred, _) = bound.skip_binders() {
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let bound = ty::Binder::bind(pred.trait_ref);
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if self.infcx.probe(|_| {
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self.match_projection(
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obligation,
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bound,
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placeholder_trait_predicate.trait_ref,
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)
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.is_ok()
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}) {
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return Some(bound);
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}) {
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return Some(idx);
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}
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}
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}
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None
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});
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None
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})
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.collect();
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debug!(
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"match_projection_obligation_against_definition_bounds: \
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matching_bound={:?}",
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matching_bound
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matching_bounds={:?}",
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matching_bounds
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);
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matching_bound
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matching_bounds
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}
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fn match_projection(
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@ -1299,14 +1308,14 @@ impl<'cx, 'tcx> SelectionContext<'cx, 'tcx> {
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// clause so don't go around looking for impls.
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!is_global(cand)
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}
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ObjectCandidate | ProjectionCandidate => {
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ObjectCandidate | ProjectionCandidate(_) => {
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// Arbitrarily give param candidates priority
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// over projection and object candidates.
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!is_global(cand)
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}
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ParamCandidate(..) => false,
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},
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ObjectCandidate | ProjectionCandidate => match victim.candidate {
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ObjectCandidate | ProjectionCandidate(_) => match victim.candidate {
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AutoImplCandidate(..) => {
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bug!(
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"default implementations shouldn't be recorded \
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@ -1323,10 +1332,11 @@ impl<'cx, 'tcx> SelectionContext<'cx, 'tcx> {
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| BuiltinUnsizeCandidate
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| BuiltinCandidate { .. }
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| TraitAliasCandidate(..) => true,
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ObjectCandidate | ProjectionCandidate => {
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// Arbitrarily give param candidates priority
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// over projection and object candidates.
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true
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ObjectCandidate | ProjectionCandidate(_) => {
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// Shouldn't have both an object and projection candidate,
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// nor multiple object candidates. Multiple projection
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// candidates are ambiguous.
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false
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}
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ParamCandidate(ref cand) => is_global(cand),
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},
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@ -0,0 +1,23 @@
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// Make sure that if there are multiple applicable bounds on a projection, we
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// consider them ambiguous. In this test we are initially trying to solve
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// `Self::Repr: From<_>`, which is ambiguous until we later infer `_` to
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// `{integer}`.
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// check-pass
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trait PrimeField: Sized {
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type Repr: From<u64> + From<Self>;
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type Repr2: From<Self> + From<u64>;
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fn method() {
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Self::Repr::from(10);
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Self::Repr2::from(10);
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}
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}
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fn function<T: PrimeField>() {
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T::Repr::from(10);
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T::Repr2::from(10);
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}
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fn main() {}
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