Get rid of infer vars in inherent assoc types selection by using probe
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4b26bb544e
commit
440f46dc16
@ -26,12 +26,12 @@
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use rustc_hir::def_id::{DefId, LocalDefId};
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use rustc_hir::intravisit::{walk_generics, Visitor as _};
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use rustc_hir::{GenericArg, GenericArgs, OpaqueTyOrigin};
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use rustc_infer::infer::{InferCtxt, InferOk, TyCtxtInferExt};
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use rustc_infer::traits::{Obligation, ObligationCause};
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use rustc_infer::infer::{InferCtxt, TyCtxtInferExt};
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use rustc_infer::traits::ObligationCause;
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use rustc_middle::middle::stability::AllowUnstable;
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use rustc_middle::ty::GenericParamDefKind;
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use rustc_middle::ty::{
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self, Const, GenericArgKind, GenericArgsRef, IsSuggestable, ParamEnv, Predicate, Ty, TyCtxt,
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self, Const, GenericArgKind, GenericArgsRef, IsSuggestable, ParamEnv, Ty, TyCtxt,
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TypeVisitableExt,
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};
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use rustc_session::lint::builtin::AMBIGUOUS_ASSOCIATED_ITEMS;
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@ -40,7 +40,7 @@
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use rustc_span::{sym, BytePos, Span, DUMMY_SP};
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use rustc_target::spec::abi;
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use rustc_trait_selection::traits::wf::object_region_bounds;
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use rustc_trait_selection::traits::{self, NormalizeExt, ObligationCtxt};
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use rustc_trait_selection::traits::{self, ObligationCtxt};
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use std::fmt::Display;
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use std::slice;
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@ -1606,7 +1606,6 @@ fn lookup_inherent_assoc_ty(
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// FIXME(inherent_associated_types): Acquiring the ParamEnv this early leads to cycle errors
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// when inside of an ADT (#108491) or where clause.
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let param_env = tcx.param_env(block.owner);
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let cause = ObligationCause::misc(span, block.owner.def_id);
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let mut universes = if self_ty.has_escaping_bound_vars() {
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vec![None; self_ty.outer_exclusive_binder().as_usize()]
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@ -1614,44 +1613,33 @@ fn lookup_inherent_assoc_ty(
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vec![]
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};
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crate::traits::project::with_replaced_escaping_bound_vars(
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infcx,
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&mut universes,
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self_ty,
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|self_ty| {
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let tcx = self.tcx();
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let InferOk { value: self_ty, obligations } =
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infcx.at(&cause, param_env).normalize(self_ty);
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let (impl_, (assoc_item, def_scope)) =
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crate::traits::project::with_replaced_escaping_bound_vars(
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infcx,
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&mut universes,
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self_ty,
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|self_ty| {
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self.select_inherent_assoc_type_candidates(
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infcx, name, span, self_ty, param_env, candidates,
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)
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},
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)?;
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let (impl_, (assoc_item, def_scope)) = self.select_inherent_assoc_type_candidates(
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infcx,
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name,
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span,
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self_ty,
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cause,
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param_env,
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obligations,
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candidates,
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)?;
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self.check_assoc_ty(assoc_item, name, def_scope, block, span);
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self.check_assoc_ty(assoc_item, name, def_scope, block, span);
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// FIXME(fmease): Currently creating throwaway `parent_args` to please
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// `create_args_for_associated_item`. Modify the latter instead (or sth. similar) to
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// not require the parent args logic.
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let parent_args = ty::GenericArgs::identity_for_item(tcx, impl_);
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let args = self.create_args_for_associated_item(span, assoc_item, segment, parent_args);
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let args = tcx.mk_args_from_iter(
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std::iter::once(ty::GenericArg::from(self_ty))
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.chain(args.into_iter().skip(parent_args.len())),
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);
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// FIXME(fmease): Currently creating throwaway `parent_args` to please
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// `create_args_for_associated_item`. Modify the latter instead (or sth. similar) to
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// not require the parent args logic.
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let parent_args = ty::GenericArgs::identity_for_item(tcx, impl_);
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let args =
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self.create_args_for_associated_item(span, assoc_item, segment, parent_args);
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let args = tcx.mk_args_from_iter(
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std::iter::once(ty::GenericArg::from(self_ty))
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.chain(args.into_iter().skip(parent_args.len())),
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);
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let ty = Ty::new_alias(tcx, ty::Inherent, ty::AliasTy::new(tcx, assoc_item, args));
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let ty = Ty::new_alias(tcx, ty::Inherent, ty::AliasTy::new(tcx, assoc_item, args));
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Ok(Some((ty, assoc_item)))
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},
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)
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Ok(Some((ty, assoc_item)))
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}
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fn select_inherent_assoc_type_candidates(
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@ -1660,9 +1648,7 @@ fn select_inherent_assoc_type_candidates(
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name: Ident,
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span: Span,
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self_ty: Ty<'tcx>,
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cause: ObligationCause<'tcx>,
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param_env: ParamEnv<'tcx>,
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obligations: Vec<Obligation<'tcx, Predicate<'tcx>>>,
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candidates: Vec<(DefId, (DefId, DefId))>,
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) -> Result<(DefId, (DefId, DefId)), ErrorGuaranteed> {
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let tcx = self.tcx();
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@ -1674,11 +1660,11 @@ fn select_inherent_assoc_type_candidates(
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.filter(|&(impl_, _)| {
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infcx.probe(|_| {
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let ocx = ObligationCtxt::new(infcx);
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ocx.register_obligations(obligations.clone());
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let self_ty = ocx.normalize(&ObligationCause::dummy(), param_env, self_ty);
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let impl_args = infcx.fresh_args_for_item(span, impl_);
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let impl_ty = tcx.type_of(impl_).instantiate(tcx, impl_args);
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let impl_ty = ocx.normalize(&cause, param_env, impl_ty);
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let impl_ty = ocx.normalize(&ObligationCause::dummy(), param_env, impl_ty);
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// Check that the self types can be related.
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if ocx.eq(&ObligationCause::dummy(), param_env, impl_ty, self_ty).is_err() {
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@ -1687,9 +1673,10 @@ fn select_inherent_assoc_type_candidates(
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// Check whether the impl imposes obligations we have to worry about.
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let impl_bounds = tcx.predicates_of(impl_).instantiate(tcx, impl_args);
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let impl_bounds = ocx.normalize(&cause, param_env, impl_bounds);
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let impl_bounds =
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ocx.normalize(&ObligationCause::dummy(), param_env, impl_bounds);
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let impl_obligations = traits::predicates_for_generics(
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|_, _| cause.clone(),
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|_, _| ObligationCause::dummy(),
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param_env,
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impl_bounds,
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);
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@ -1454,7 +1454,18 @@ pub fn compute_inherent_assoc_ty_args<'a, 'b, 'tcx>(
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// Infer the generic parameters of the impl by unifying the
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// impl type with the self type of the projection.
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let self_ty = alias_ty.self_ty();
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let mut self_ty = alias_ty.self_ty();
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if !selcx.infcx.next_trait_solver() {
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self_ty = normalize_with_depth_to(
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selcx,
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param_env,
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cause.clone(),
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depth + 1,
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self_ty,
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obligations,
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);
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}
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match selcx.infcx.at(&cause, param_env).eq(DefineOpaqueTypes::No, impl_ty, self_ty) {
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Ok(mut ok) => obligations.append(&mut ok.obligations),
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Err(_) => {
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@ -0,0 +1,14 @@
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// check-pass
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#![feature(inherent_associated_types)]
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#![allow(incomplete_features)]
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struct Foo<T>(T);
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impl<'a> Foo<fn(&'a ())> {
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type Assoc = &'a ();
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}
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fn bar(_: for<'a> fn(Foo<fn(Foo<fn(&'static ())>::Assoc)>::Assoc)) {}
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fn main() {}
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