Auto merge of #111047 - compiler-errors:rtn-no-ty-ct-params, r=spastorino
Emit an error when return-type-notation is used with type/const params These are not intended to be supported initially, even though the compiler supports them internally...
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commit
e94bda3bf1
@ -195,6 +195,13 @@ hir_analysis_return_type_notation_conflicting_bound =
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hir_analysis_return_type_notation_equality_bound =
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return type notation is not allowed to use type equality
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hir_analysis_return_type_notation_illegal_param_const =
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return type notation is not allowed for functions that have const parameters
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.label = const parameter declared here
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hir_analysis_return_type_notation_illegal_param_type =
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return type notation is not allowed for functions that have type parameters
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.label = type parameter declared here
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hir_analysis_return_type_notation_missing_method =
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cannot find associated function `{$assoc_name}` for `{$ty_name}`
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@ -26,10 +26,8 @@ use rustc_hir::def::{CtorOf, DefKind, Namespace, Res};
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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::type_variable::{TypeVariableOrigin, TypeVariableOriginKind};
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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::infer::unify_key::{ConstVariableOrigin, ConstVariableOriginKind};
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use rustc_middle::middle::stability::AllowUnstable;
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use rustc_middle::ty::fold::FnMutDelegate;
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use rustc_middle::ty::subst::{self, GenericArgKind, InternalSubsts, SubstsRef};
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@ -1215,6 +1213,7 @@ impl<'o, 'tcx> dyn AstConv<'tcx> + 'o {
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}
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let projection_ty = if return_type_notation {
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let mut emitted_bad_param_err = false;
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// If we have an method return type bound, then we need to substitute
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// the method's early bound params with suitable late-bound params.
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let mut num_bound_vars = candidate.bound_vars().len();
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@ -1230,16 +1229,35 @@ impl<'o, 'tcx> dyn AstConv<'tcx> + 'o {
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},
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)
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.into(),
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GenericParamDefKind::Type { .. } => tcx
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.mk_bound(
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GenericParamDefKind::Type { .. } => {
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if !emitted_bad_param_err {
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tcx.sess.emit_err(
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crate::errors::ReturnTypeNotationIllegalParam::Type {
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span: path_span,
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param_span: tcx.def_span(param.def_id),
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},
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);
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emitted_bad_param_err = true;
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}
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tcx.mk_bound(
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ty::INNERMOST,
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ty::BoundTy {
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var: ty::BoundVar::from_usize(num_bound_vars),
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kind: ty::BoundTyKind::Param(param.def_id, param.name),
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},
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)
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.into(),
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.into()
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}
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GenericParamDefKind::Const { .. } => {
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if !emitted_bad_param_err {
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tcx.sess.emit_err(
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crate::errors::ReturnTypeNotationIllegalParam::Const {
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span: path_span,
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param_span: tcx.def_span(param.def_id),
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},
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);
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emitted_bad_param_err = true;
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}
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let ty = tcx
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.type_of(param.def_id)
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.no_bound_vars()
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@ -2472,7 +2490,7 @@ impl<'o, 'tcx> dyn AstConv<'tcx> + 'o {
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infcx.probe(|_| {
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let ocx = ObligationCtxt::new_in_snapshot(&infcx);
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let impl_substs = infcx.fresh_item_substs(impl_);
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let impl_substs = infcx.fresh_substs_for_item(span, impl_);
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let impl_ty = tcx.type_of(impl_).subst(tcx, impl_substs);
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let impl_ty = ocx.normalize(&cause, param_env, impl_ty);
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@ -3759,36 +3777,3 @@ impl<'o, 'tcx> dyn AstConv<'tcx> + 'o {
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}
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}
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}
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pub trait InferCtxtExt<'tcx> {
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fn fresh_item_substs(&self, def_id: DefId) -> SubstsRef<'tcx>;
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}
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impl<'tcx> InferCtxtExt<'tcx> for InferCtxt<'tcx> {
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fn fresh_item_substs(&self, def_id: DefId) -> SubstsRef<'tcx> {
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InternalSubsts::for_item(self.tcx, def_id, |param, _| match param.kind {
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GenericParamDefKind::Lifetime => self.tcx.lifetimes.re_erased.into(),
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GenericParamDefKind::Type { .. } => self
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.next_ty_var(TypeVariableOrigin {
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kind: TypeVariableOriginKind::SubstitutionPlaceholder,
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span: self.tcx.def_span(def_id),
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})
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.into(),
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GenericParamDefKind::Const { .. } => {
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let span = self.tcx.def_span(def_id);
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let origin = ConstVariableOrigin {
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kind: ConstVariableOriginKind::SubstitutionPlaceholder,
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span,
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};
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self.next_const_var(
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self.tcx
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.type_of(param.def_id)
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.no_bound_vars()
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.expect("const parameter types cannot be generic"),
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origin,
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)
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.into()
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}
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})
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}
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}
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@ -857,3 +857,21 @@ pub(crate) enum DropImplPolarity {
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span: Span,
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},
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}
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#[derive(Diagnostic)]
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pub(crate) enum ReturnTypeNotationIllegalParam {
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#[diag(hir_analysis_return_type_notation_illegal_param_type)]
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Type {
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#[primary_span]
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span: Span,
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#[label]
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param_span: Span,
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},
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#[diag(hir_analysis_return_type_notation_illegal_param_const)]
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Const {
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#[primary_span]
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span: Span,
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#[label]
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param_span: Span,
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},
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}
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@ -9,7 +9,6 @@ use rustc_data_structures::fx::FxHashSet;
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use rustc_errors::Applicability;
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use rustc_hir as hir;
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use rustc_hir::def::DefKind;
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use rustc_hir_analysis::astconv::InferCtxtExt as _;
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use rustc_hir_analysis::autoderef::{self, Autoderef};
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use rustc_infer::infer::canonical::OriginalQueryValues;
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use rustc_infer::infer::canonical::{Canonical, QueryResponse};
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@ -954,7 +953,7 @@ impl<'a, 'tcx> ProbeContext<'a, 'tcx> {
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trait_def_id: DefId,
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) {
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debug!("assemble_extension_candidates_for_trait(trait_def_id={:?})", trait_def_id);
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let trait_substs = self.fresh_item_substs(trait_def_id);
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let trait_substs = self.fresh_substs_for_item(self.span, trait_def_id);
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let trait_ref = ty::TraitRef::new(self.tcx, trait_def_id, trait_substs);
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if self.tcx.is_trait_alias(trait_def_id) {
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@ -1899,7 +1898,7 @@ impl<'a, 'tcx> ProbeContext<'a, 'tcx> {
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&self,
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impl_def_id: DefId,
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) -> (ty::EarlyBinder<Ty<'tcx>>, SubstsRef<'tcx>) {
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(self.tcx.type_of(impl_def_id), self.fresh_item_substs(impl_def_id))
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(self.tcx.type_of(impl_def_id), self.fresh_substs_for_item(self.span, impl_def_id))
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}
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/// Replaces late-bound-regions bound by `value` with `'static` using
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@ -129,7 +129,6 @@ pub enum TypeVariableOriginKind {
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/// (before it has been determined).
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// FIXME(eddyb) distinguish upvar inference variables from the rest.
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ClosureSynthetic,
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SubstitutionPlaceholder,
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AutoDeref,
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AdjustmentType,
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@ -116,7 +116,6 @@ pub enum ConstVariableOriginKind {
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MiscVariable,
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ConstInference,
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ConstParameterDefinition(Symbol, DefId),
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SubstitutionPlaceholder,
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}
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#[derive(Copy, Clone, Debug)]
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20
tests/ui/async-await/return-type-notation/ty-or-ct-params.rs
Normal file
20
tests/ui/async-await/return-type-notation/ty-or-ct-params.rs
Normal file
@ -0,0 +1,20 @@
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// edition: 2021
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#![feature(async_fn_in_trait, return_type_notation)]
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//~^ WARN the feature `return_type_notation` is incomplete
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trait Foo {
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async fn bar<T>() {}
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async fn baz<const N: usize>() {}
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}
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fn test<T>()
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where
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T: Foo<bar(): Send, baz(): Send>,
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//~^ ERROR return type notation is not allowed for functions that have const parameters
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//~| ERROR return type notation is not allowed for functions that have type parameters
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{
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}
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fn main() {}
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@ -0,0 +1,29 @@
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warning: the feature `return_type_notation` is incomplete and may not be safe to use and/or cause compiler crashes
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--> $DIR/ty-or-ct-params.rs:3:31
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LL | #![feature(async_fn_in_trait, return_type_notation)]
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| ^^^^^^^^^^^^^^^^^^^^
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= note: see issue #109417 <https://github.com/rust-lang/rust/issues/109417> for more information
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= note: `#[warn(incomplete_features)]` on by default
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error: return type notation is not allowed for functions that have type parameters
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--> $DIR/ty-or-ct-params.rs:14:12
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LL | async fn bar<T>() {}
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| - type parameter declared here
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...
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LL | T: Foo<bar(): Send, baz(): Send>,
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| ^^^^^^^^^^^
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error: return type notation is not allowed for functions that have const parameters
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--> $DIR/ty-or-ct-params.rs:14:25
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LL | async fn baz<const N: usize>() {}
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| -------------- const parameter declared here
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...
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LL | T: Foo<bar(): Send, baz(): Send>,
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| ^^^^^^^^^^^
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error: aborting due to 2 previous errors; 1 warning emitted
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