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Make it clear that args default to being related invariantly
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@ -56,7 +56,7 @@ impl<'tcx> TypeRelation<'tcx> for Equate<'_, '_, 'tcx> {
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// performing trait matching (which then performs equality
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// unification).
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relate::relate_args(self, a_arg, b_arg)
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relate::relate_args_invariantly(self, a_arg, b_arg)
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}
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fn relate_with_variance<T: Relate<'tcx>>(
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@ -183,7 +183,7 @@ where
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// Avoid fetching the variance if we are in an invariant
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// context; no need, and it can induce dependency cycles
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// (e.g., #41849).
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relate::relate_args(self, a_subst, b_subst)
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relate::relate_args_invariantly(self, a_subst, b_subst)
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} else {
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let tcx = self.tcx();
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let opt_variances = tcx.variances_of(item_def_id);
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@ -135,7 +135,7 @@ pub fn relate_type_and_mut<'tcx, R: TypeRelation<'tcx>>(
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}
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#[inline]
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pub fn relate_args<'tcx, R: TypeRelation<'tcx>>(
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pub fn relate_args_invariantly<'tcx, R: TypeRelation<'tcx>>(
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relation: &mut R,
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a_arg: GenericArgsRef<'tcx>,
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b_arg: GenericArgsRef<'tcx>,
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@ -284,7 +284,7 @@ impl<'tcx> Relate<'tcx> for ty::AliasTy<'tcx> {
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false, // do not fetch `type_of(a_def_id)`, as it will cause a cycle
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)?,
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DefKind::AssocTy | DefKind::AssocConst | DefKind::TyAlias => {
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relation.relate(a.args, b.args)?
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relate_args_invariantly(relation, a.args, b.args)?
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}
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def => bug!("unknown alias DefKind: {def:?}"),
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};
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@ -329,7 +329,7 @@ impl<'tcx> Relate<'tcx> for ty::TraitRef<'tcx> {
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if a.def_id != b.def_id {
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Err(TypeError::Traits(expected_found(relation, a.def_id, b.def_id)))
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} else {
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let args = relate_args(relation, a.args, b.args)?;
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let args = relate_args_invariantly(relation, a.args, b.args)?;
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Ok(ty::TraitRef::new(relation.tcx(), a.def_id, args))
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}
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}
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@ -345,7 +345,7 @@ impl<'tcx> Relate<'tcx> for ty::ExistentialTraitRef<'tcx> {
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if a.def_id != b.def_id {
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Err(TypeError::Traits(expected_found(relation, a.def_id, b.def_id)))
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} else {
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let args = relate_args(relation, a.args, b.args)?;
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let args = relate_args_invariantly(relation, a.args, b.args)?;
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Ok(ty::ExistentialTraitRef { def_id: a.def_id, args })
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}
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}
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@ -463,7 +463,7 @@ pub fn structurally_relate_tys<'tcx, R: TypeRelation<'tcx>>(
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// All Generator types with the same id represent
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// the (anonymous) type of the same generator expression. So
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// all of their regions should be equated.
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let args = relation.relate(a_args, b_args)?;
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let args = relate_args_invariantly(relation, a_args, b_args)?;
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Ok(Ty::new_generator(tcx, a_id, args, movability))
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}
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@ -473,7 +473,7 @@ pub fn structurally_relate_tys<'tcx, R: TypeRelation<'tcx>>(
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// All GeneratorWitness types with the same id represent
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// the (anonymous) type of the same generator expression. So
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// all of their regions should be equated.
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let args = relation.relate(a_args, b_args)?;
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let args = relate_args_invariantly(relation, a_args, b_args)?;
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Ok(Ty::new_generator_witness(tcx, a_id, args))
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}
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@ -481,7 +481,7 @@ pub fn structurally_relate_tys<'tcx, R: TypeRelation<'tcx>>(
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// All Closure types with the same id represent
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// the (anonymous) type of the same closure expression. So
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// all of their regions should be equated.
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let args = relation.relate(a_args, b_args)?;
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let args = relate_args_invariantly(relation, a_args, b_args)?;
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Ok(Ty::new_closure(tcx, a_id, &args))
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}
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@ -705,7 +705,7 @@ impl<'tcx> Relate<'tcx> for ty::ClosureArgs<'tcx> {
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a: ty::ClosureArgs<'tcx>,
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b: ty::ClosureArgs<'tcx>,
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) -> RelateResult<'tcx, ty::ClosureArgs<'tcx>> {
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let args = relate_args(relation, a.args, b.args)?;
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let args = relate_args_invariantly(relation, a.args, b.args)?;
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Ok(ty::ClosureArgs { args })
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}
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}
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@ -716,7 +716,7 @@ impl<'tcx> Relate<'tcx> for ty::GeneratorArgs<'tcx> {
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a: ty::GeneratorArgs<'tcx>,
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b: ty::GeneratorArgs<'tcx>,
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) -> RelateResult<'tcx, ty::GeneratorArgs<'tcx>> {
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let args = relate_args(relation, a.args, b.args)?;
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let args = relate_args_invariantly(relation, a.args, b.args)?;
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Ok(ty::GeneratorArgs { args })
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}
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}
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@ -727,7 +727,7 @@ impl<'tcx> Relate<'tcx> for GenericArgsRef<'tcx> {
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a: GenericArgsRef<'tcx>,
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b: GenericArgsRef<'tcx>,
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) -> RelateResult<'tcx, GenericArgsRef<'tcx>> {
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relate_args(relation, a, b)
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relate_args_invariantly(relation, a, b)
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}
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}
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