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Improve error message for AsyncFn trait failure for RPIT
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@ -829,7 +829,9 @@ impl<'a, 'tcx> TypeErrCtxt<'a, 'tcx> {
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&& let ty::Closure(closure_def_id, _) | ty::CoroutineClosure(closure_def_id, _) =
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*typeck_results.node_type(arg_hir_id).kind()
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{
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// Otherwise, extract the closure kind from the obligation.
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// Otherwise, extract the closure kind from the obligation,
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// but only if we actually have an argument to deduce the
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// closure type from...
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let mut err = self.report_closure_error(
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&obligation,
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closure_def_id,
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@ -844,63 +846,72 @@ impl<'a, 'tcx> TypeErrCtxt<'a, 'tcx> {
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let self_ty = trait_pred.self_ty().skip_binder();
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if let Some(expected_kind) = self.tcx.fn_trait_kind_from_def_id(trait_pred.def_id()) {
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let (closure_def_id, found_args, by_ref_captures) = match *self_ty.kind() {
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ty::Closure(def_id, args) => {
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(def_id, args.as_closure().sig().map_bound(|sig| sig.inputs()[0]), None)
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}
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ty::CoroutineClosure(def_id, args) => (
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def_id,
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args.as_coroutine_closure()
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.coroutine_closure_sig()
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.map_bound(|sig| sig.tupled_inputs_ty),
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Some(args.as_coroutine_closure().coroutine_captures_by_ref_ty()),
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),
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_ => return None,
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let (expected_kind, trait_prefix) =
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if let Some(expected_kind) = self.tcx.fn_trait_kind_from_def_id(trait_pred.def_id()) {
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(expected_kind, "")
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} else if let Some(expected_kind) =
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self.tcx.async_fn_trait_kind_from_def_id(trait_pred.def_id())
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{
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(expected_kind, "Async")
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} else {
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return None;
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};
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let expected_args =
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trait_pred.map_bound(|trait_pred| trait_pred.trait_ref.args.type_at(1));
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// Verify that the arguments are compatible. If the signature is
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// mismatched, then we have a totally different error to report.
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if self.enter_forall(found_args, |found_args| {
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self.enter_forall(expected_args, |expected_args| {
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!self.can_eq(obligation.param_env, expected_args, found_args)
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})
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}) {
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return None;
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let (closure_def_id, found_args, by_ref_captures) = match *self_ty.kind() {
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ty::Closure(def_id, args) => {
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(def_id, args.as_closure().sig().map_bound(|sig| sig.inputs()[0]), None)
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}
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ty::CoroutineClosure(def_id, args) => (
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def_id,
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args.as_coroutine_closure()
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.coroutine_closure_sig()
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.map_bound(|sig| sig.tupled_inputs_ty),
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Some(args.as_coroutine_closure().coroutine_captures_by_ref_ty()),
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),
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_ => return None,
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};
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if let Some(found_kind) = self.closure_kind(self_ty)
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&& !found_kind.extends(expected_kind)
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{
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let mut err = self.report_closure_error(
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&obligation,
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closure_def_id,
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found_kind,
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expected_kind,
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"",
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);
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self.note_obligation_cause(&mut err, &obligation);
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return Some(err.emit());
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}
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let expected_args = trait_pred.map_bound(|trait_pred| trait_pred.trait_ref.args.type_at(1));
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// If the closure has captures, then perhaps the reason that the trait
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// is unimplemented is because async closures don't implement `Fn`/`FnMut`
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// if they have captures.
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if let Some(by_ref_captures) = by_ref_captures
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&& let ty::FnPtr(sig_tys, _) = by_ref_captures.kind()
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&& !sig_tys.skip_binder().output().is_unit()
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{
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let mut err = self.dcx().create_err(AsyncClosureNotFn {
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span: self.tcx.def_span(closure_def_id),
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kind: expected_kind.as_str(),
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});
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self.note_obligation_cause(&mut err, &obligation);
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return Some(err.emit());
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}
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// Verify that the arguments are compatible. If the signature is
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// mismatched, then we have a totally different error to report.
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if self.enter_forall(found_args, |found_args| {
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self.enter_forall(expected_args, |expected_args| {
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!self.can_eq(obligation.param_env, expected_args, found_args)
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})
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}) {
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return None;
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}
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if let Some(found_kind) = self.closure_kind(self_ty)
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&& !found_kind.extends(expected_kind)
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{
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let mut err = self.report_closure_error(
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&obligation,
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closure_def_id,
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found_kind,
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expected_kind,
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trait_prefix,
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);
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self.note_obligation_cause(&mut err, &obligation);
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return Some(err.emit());
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}
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// If the closure has captures, then perhaps the reason that the trait
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// is unimplemented is because async closures don't implement `Fn`/`FnMut`
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// if they have captures.
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if let Some(by_ref_captures) = by_ref_captures
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&& let ty::FnPtr(sig_tys, _) = by_ref_captures.kind()
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&& !sig_tys.skip_binder().output().is_unit()
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{
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let mut err = self.dcx().create_err(AsyncClosureNotFn {
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span: self.tcx.def_span(closure_def_id),
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kind: expected_kind.as_str(),
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});
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self.note_obligation_cause(&mut err, &obligation);
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return Some(err.emit());
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}
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None
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}
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@ -3191,7 +3191,10 @@ impl<'a, 'tcx> TypeErrCtxt<'a, 'tcx> {
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false
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};
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if !is_upvar_tys_infer_tuple {
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let is_builtin_async_fn_trait =
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tcx.async_fn_trait_kind_from_def_id(data.parent_trait_pred.def_id()).is_some();
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if !is_upvar_tys_infer_tuple && !is_builtin_async_fn_trait {
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let ty_str = tcx.short_string(ty, err.long_ty_path());
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let msg = format!("required because it appears within the type `{ty_str}`");
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match ty.kind() {
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@ -984,8 +984,10 @@ impl<'cx, 'tcx> SelectionContext<'cx, 'tcx> {
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return Err(SelectionError::Unimplemented);
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}
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} else {
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nested.push(obligation.with(
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nested.push(Obligation::new(
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self.tcx(),
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obligation.derived_cause(ObligationCauseCode::BuiltinDerived),
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obligation.param_env,
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ty::TraitRef::new(
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self.tcx(),
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self.tcx().require_lang_item(
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14
tests/ui/async-await/async-closures/kind-due-to-rpit.rs
Normal file
14
tests/ui/async-await/async-closures/kind-due-to-rpit.rs
Normal file
@ -0,0 +1,14 @@
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//@ edition: 2024
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// Make sure the error message is understandable when an `AsyncFn` goal is not satisfied
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// (due to closure kind), and that goal originates from an RPIT.
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fn repro(foo: impl Into<bool>) -> impl AsyncFn() {
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let inner_fn = async move || {
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//~^ ERROR expected a closure that implements the `AsyncFn` trait
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let _ = foo.into();
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};
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inner_fn
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}
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fn main() {}
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tests/ui/async-await/async-closures/kind-due-to-rpit.stderr
Normal file
17
tests/ui/async-await/async-closures/kind-due-to-rpit.stderr
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@ -0,0 +1,17 @@
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error[E0525]: expected a closure that implements the `AsyncFn` trait, but this closure only implements `AsyncFnOnce`
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--> $DIR/kind-due-to-rpit.rs:7:20
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LL | fn repro(foo: impl Into<bool>) -> impl AsyncFn() {
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| -------------- the requirement to implement `AsyncFn` derives from here
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LL | let inner_fn = async move || {
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| ^^^^^^^^^^^^^ this closure implements `AsyncFnOnce`, not `AsyncFn`
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LL |
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LL | let _ = foo.into();
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| --- closure is `AsyncFnOnce` because it moves the variable `foo` out of its environment
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LL | };
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LL | inner_fn
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| -------- return type was inferred to be `{async closure@$DIR/kind-due-to-rpit.rs:7:20: 7:33}` here
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error: aborting due to 1 previous error
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For more information about this error, try `rustc --explain E0525`.
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