Always use the stronger outlives version for opaque types
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16e356ebdf
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664c8ed301
@ -284,18 +284,40 @@ impl<'a, 'gcx, 'tcx> InferCtxt<'a, 'gcx, 'tcx> {
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debug!("constrain_opaque_type: def_id={:?}", def_id);
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debug!("constrain_opaque_type: opaque_defn={:#?}", opaque_defn);
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let tcx = self.tcx;
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let concrete_ty = self.resolve_type_vars_if_possible(&opaque_defn.concrete_ty);
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debug!("constrain_opaque_type: concrete_ty={:?}", concrete_ty);
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let abstract_type_generics = self.tcx.generics_of(def_id);
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let abstract_type_generics = tcx.generics_of(def_id);
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let span = self.tcx.def_span(def_id);
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let span = tcx.def_span(def_id);
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// If there are required region bounds, we can just skip
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// ahead. There will already be a registered region
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// obligation related `concrete_ty` to those regions.
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// If there are required region bounds, we can use them.
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if opaque_defn.has_required_region_bounds {
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let predicates_of = tcx.predicates_of(def_id);
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debug!(
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"constrain_opaque_type: predicates: {:#?}",
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predicates_of,
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);
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let bounds = predicates_of.instantiate(tcx, opaque_defn.substs);
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debug!("constrain_opaque_type: bounds={:#?}", bounds);
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let opaque_type = tcx.mk_opaque(def_id, opaque_defn.substs);
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let required_region_bounds = tcx.required_region_bounds(
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opaque_type,
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bounds.predicates.clone(),
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);
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debug_assert!(!required_region_bounds.is_empty());
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for region in required_region_bounds {
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concrete_ty.visit_with(&mut OpaqueTypeOutlivesVisitor {
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infcx: self,
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least_region: region,
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span,
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});
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}
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return;
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}
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@ -371,7 +393,7 @@ impl<'a, 'gcx, 'tcx> InferCtxt<'a, 'gcx, 'tcx> {
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}
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}
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let least_region = least_region.unwrap_or(self.tcx.lifetimes.re_static);
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let least_region = least_region.unwrap_or(tcx.lifetimes.re_static);
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debug!("constrain_opaque_types: least_region={:?}", least_region);
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concrete_ty.visit_with(&mut OpaqueTypeOutlivesVisitor {
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@ -16,4 +16,8 @@ fn make_identity() -> impl Sized {
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|x: &'static i32| x
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}
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fn make_identity_static() -> impl Sized + 'static {
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|x: &'static i32| x
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}
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fn main() {}
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@ -17,6 +17,13 @@ fn wrapped_closure() -> impl Sized {
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A(f)
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}
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fn wrapped_closure_with_bound() -> impl Sized + 'static {
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let f = |x| x;
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f(&0);
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A(f)
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}
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fn main() {
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let x: Box<dyn Send> = Box::new(wrapped_closure());
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let y: Box<dyn Send> = Box::new(wrapped_closure_with_bound());
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}
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