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Auto merge of #99137 - jackh726:wf-no-infcx, r=estebank
Don't pass InferCtxt to WfPredicates Simple cleanup. Infer vars will get passed up as obligations and shallowed resolved later. This actually improves one test output.
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commit
2fa64d0e53
@ -60,12 +60,19 @@ pub fn obligations<'a, 'tcx>(
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GenericArgKind::Lifetime(..) => return Some(Vec::new()),
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};
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let mut wf =
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WfPredicates { infcx, param_env, body_id, span, out: vec![], recursion_depth, item: None };
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let mut wf = WfPredicates {
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tcx: infcx.tcx,
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param_env,
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body_id,
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span,
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out: vec![],
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recursion_depth,
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item: None,
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};
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wf.compute(arg);
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debug!("wf::obligations({:?}, body_id={:?}) = {:?}", arg, body_id, wf.out);
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let result = wf.normalize();
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let result = wf.normalize(infcx);
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debug!("wf::obligations({:?}, body_id={:?}) ~~> {:?}", arg, body_id, result);
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Some(result)
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}
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@ -83,7 +90,7 @@ pub fn trait_obligations<'a, 'tcx>(
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item: &'tcx hir::Item<'tcx>,
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) -> Vec<traits::PredicateObligation<'tcx>> {
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let mut wf = WfPredicates {
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infcx,
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tcx: infcx.tcx,
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param_env,
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body_id,
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span,
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@ -93,7 +100,7 @@ pub fn trait_obligations<'a, 'tcx>(
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};
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wf.compute_trait_ref(trait_ref, Elaborate::All);
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debug!(obligations = ?wf.out);
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wf.normalize()
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wf.normalize(infcx)
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}
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pub fn predicate_obligations<'a, 'tcx>(
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@ -104,7 +111,7 @@ pub fn predicate_obligations<'a, 'tcx>(
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span: Span,
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) -> Vec<traits::PredicateObligation<'tcx>> {
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let mut wf = WfPredicates {
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infcx,
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tcx: infcx.tcx,
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param_env,
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body_id,
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span,
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@ -159,11 +166,11 @@ pub fn predicate_obligations<'a, 'tcx>(
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}
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}
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wf.normalize()
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wf.normalize(infcx)
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}
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struct WfPredicates<'a, 'tcx> {
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infcx: &'a InferCtxt<'a, 'tcx>,
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struct WfPredicates<'tcx> {
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tcx: TyCtxt<'tcx>,
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param_env: ty::ParamEnv<'tcx>,
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body_id: hir::HirId,
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span: Span,
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@ -260,18 +267,17 @@ fn extend_cause_with_original_assoc_item_obligation<'tcx>(
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}
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}
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impl<'a, 'tcx> WfPredicates<'a, 'tcx> {
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impl<'tcx> WfPredicates<'tcx> {
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fn tcx(&self) -> TyCtxt<'tcx> {
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self.infcx.tcx
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self.tcx
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}
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fn cause(&self, code: traits::ObligationCauseCode<'tcx>) -> traits::ObligationCause<'tcx> {
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traits::ObligationCause::new(self.span, self.body_id, code)
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}
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fn normalize(mut self) -> Vec<traits::PredicateObligation<'tcx>> {
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fn normalize(self, infcx: &InferCtxt<'_, 'tcx>) -> Vec<traits::PredicateObligation<'tcx>> {
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let cause = self.cause(traits::WellFormed(None));
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let infcx = &mut self.infcx;
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let param_env = self.param_env;
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let mut obligations = Vec::with_capacity(self.out.len());
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for mut obligation in self.out {
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@ -296,7 +302,7 @@ impl<'a, 'tcx> WfPredicates<'a, 'tcx> {
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/// Pushes the obligations required for `trait_ref` to be WF into `self.out`.
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fn compute_trait_ref(&mut self, trait_ref: &ty::TraitRef<'tcx>, elaborate: Elaborate) {
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let tcx = self.infcx.tcx;
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let tcx = self.tcx;
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let obligations = self.nominal_obligations(trait_ref.def_id, trait_ref.substs);
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debug!("compute_trait_ref obligations {:?}", obligations);
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@ -410,14 +416,14 @@ impl<'a, 'tcx> WfPredicates<'a, 'tcx> {
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if !subty.has_escaping_bound_vars() {
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let cause = self.cause(cause);
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let trait_ref = ty::TraitRef {
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def_id: self.infcx.tcx.require_lang_item(LangItem::Sized, None),
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substs: self.infcx.tcx.mk_substs_trait(subty, &[]),
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def_id: self.tcx.require_lang_item(LangItem::Sized, None),
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substs: self.tcx.mk_substs_trait(subty, &[]),
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};
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self.out.push(traits::Obligation::with_depth(
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cause,
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self.recursion_depth,
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self.param_env,
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ty::Binder::dummy(trait_ref).without_const().to_predicate(self.infcx.tcx),
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ty::Binder::dummy(trait_ref).without_const().to_predicate(self.tcx),
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));
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}
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}
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@ -452,26 +458,16 @@ impl<'a, 'tcx> WfPredicates<'a, 'tcx> {
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predicate,
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));
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}
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ty::ConstKind::Infer(infer) => {
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let resolved = self.infcx.shallow_resolve(infer);
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// the `InferConst` changed, meaning that we made progress.
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if resolved != infer {
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let cause = self.cause(traits::WellFormed(None));
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ty::ConstKind::Infer(_) => {
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let cause = self.cause(traits::WellFormed(None));
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let resolved_constant = self.infcx.tcx.mk_const(ty::ConstS {
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kind: ty::ConstKind::Infer(resolved),
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ty: constant.ty(),
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});
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self.out.push(traits::Obligation::with_depth(
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cause,
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self.recursion_depth,
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self.param_env,
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ty::Binder::dummy(ty::PredicateKind::WellFormed(
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resolved_constant.into(),
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))
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self.out.push(traits::Obligation::with_depth(
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cause,
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self.recursion_depth,
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self.param_env,
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ty::Binder::dummy(ty::PredicateKind::WellFormed(constant.into()))
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.to_predicate(self.tcx()),
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));
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}
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));
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}
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ty::ConstKind::Error(_)
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| ty::ConstKind::Param(_)
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@ -627,7 +623,7 @@ impl<'a, 'tcx> WfPredicates<'a, 'tcx> {
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// of whatever returned this exact `impl Trait`.
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// for named opaque `impl Trait` types we still need to check them
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if ty::is_impl_trait_defn(self.infcx.tcx, did).is_none() {
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if ty::is_impl_trait_defn(self.tcx, did).is_none() {
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let obligations = self.nominal_obligations(did, substs);
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self.out.extend(obligations);
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}
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@ -675,22 +671,14 @@ impl<'a, 'tcx> WfPredicates<'a, 'tcx> {
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// See also the comment on `fn obligations`, describing "livelock"
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// prevention, which happens before this can be reached.
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ty::Infer(_) => {
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let ty = self.infcx.shallow_resolve(ty);
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if let ty::Infer(ty::TyVar(_)) = ty.kind() {
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// Not yet resolved, but we've made progress.
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let cause = self.cause(traits::WellFormed(None));
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self.out.push(traits::Obligation::with_depth(
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cause,
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self.recursion_depth,
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param_env,
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ty::Binder::dummy(ty::PredicateKind::WellFormed(ty.into()))
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.to_predicate(self.tcx()),
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));
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} else {
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// Yes, resolved, proceed with the result.
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// FIXME(eddyb) add the type to `walker` instead of recursing.
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self.compute(ty.into());
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}
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let cause = self.cause(traits::WellFormed(None));
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self.out.push(traits::Obligation::with_depth(
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cause,
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self.recursion_depth,
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param_env,
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ty::Binder::dummy(ty::PredicateKind::WellFormed(ty.into()))
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.to_predicate(self.tcx()),
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));
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}
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}
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}
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@ -701,15 +689,15 @@ impl<'a, 'tcx> WfPredicates<'a, 'tcx> {
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def_id: DefId,
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substs: SubstsRef<'tcx>,
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) -> Vec<traits::PredicateObligation<'tcx>> {
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let predicates = self.infcx.tcx.predicates_of(def_id);
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let predicates = self.tcx.predicates_of(def_id);
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let mut origins = vec![def_id; predicates.predicates.len()];
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let mut head = predicates;
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while let Some(parent) = head.parent {
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head = self.infcx.tcx.predicates_of(parent);
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head = self.tcx.predicates_of(parent);
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origins.extend(iter::repeat(parent).take(head.predicates.len()));
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}
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let predicates = predicates.instantiate(self.infcx.tcx, substs);
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let predicates = predicates.instantiate(self.tcx, substs);
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debug_assert_eq!(predicates.predicates.len(), origins.len());
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iter::zip(iter::zip(predicates.predicates, predicates.spans), origins.into_iter().rev())
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@ -764,7 +752,7 @@ impl<'a, 'tcx> WfPredicates<'a, 'tcx> {
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// Note: in fact we only permit builtin traits, not `Bar<'d>`, I
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// am looking forward to the future here.
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if !data.has_escaping_bound_vars() && !region.has_escaping_bound_vars() {
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let implicit_bounds = object_region_bounds(self.infcx.tcx, data);
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let implicit_bounds = object_region_bounds(self.tcx, data);
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let explicit_bound = region;
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@ -777,7 +765,7 @@ impl<'a, 'tcx> WfPredicates<'a, 'tcx> {
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cause,
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self.recursion_depth,
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self.param_env,
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outlives.to_predicate(self.infcx.tcx),
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outlives.to_predicate(self.tcx),
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));
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}
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}
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@ -1,8 +1,13 @@
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error[E0282]: type annotations needed
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--> $DIR/issue-98299.rs:4:5
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error[E0282]: type annotations needed for `SmallCString<N>`
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--> $DIR/issue-98299.rs:4:36
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LL | SmallCString::try_from(p).map(|cstr| cstr);
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| ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ cannot infer type for enum `Result<SmallCString<{_: usize}>, ()>`
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| ^^^^
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help: consider giving this closure parameter an explicit type, where the the value of const parameter `N` is specified
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LL | SmallCString::try_from(p).map(|cstr: SmallCString<N>| cstr);
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| +++++++++++++++++
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error: aborting due to previous error
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