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Check generators for well formedness
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@ -295,6 +295,7 @@ impl<'a, 'b, 'tcx> ObligationProcessor for FulfillProcessor<'a, 'b, 'tcx> {
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/// This is called much less often than `needs_process_obligation`, so we
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/// never inline it.
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#[inline(never)]
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#[instrument(level = "debug", skip(self, pending_obligation))]
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fn process_obligation(
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&mut self,
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pending_obligation: &mut PendingPredicateObligation<'tcx>,
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@ -303,7 +304,7 @@ impl<'a, 'b, 'tcx> ObligationProcessor for FulfillProcessor<'a, 'b, 'tcx> {
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let obligation = &mut pending_obligation.obligation;
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debug!(?obligation, "process_obligation pre-resolve");
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debug!(?obligation, "pre-resolve");
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if obligation.predicate.has_infer_types_or_consts() {
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obligation.predicate =
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@ -312,8 +313,6 @@ impl<'a, 'b, 'tcx> ObligationProcessor for FulfillProcessor<'a, 'b, 'tcx> {
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let obligation = &pending_obligation.obligation;
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debug!(?obligation, ?obligation.cause, "process_obligation");
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let infcx = self.selcx.infcx();
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if obligation.predicate.has_projections() {
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@ -559,7 +559,7 @@ impl<'tcx> WfPredicates<'tcx> {
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}
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}
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ty::Generator(..) => {
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ty::Generator(did, substs, ..) => {
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// Walk ALL the types in the generator: this will
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// include the upvar types as well as the yield
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// type. Note that this is mildly distinct from
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@ -567,6 +567,8 @@ impl<'tcx> WfPredicates<'tcx> {
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// about the signature of the closure. We don't
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// have the problem of implied bounds here since
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// generators don't take arguments.
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let obligations = self.nominal_obligations(did, substs);
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self.out.extend(obligations);
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}
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ty::Closure(did, substs) => {
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@ -618,11 +620,9 @@ impl<'tcx> WfPredicates<'tcx> {
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}
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ty::Opaque(did, substs) => {
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// all of the requirements on type parameters
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// should've been checked by the instantiation
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// of whatever returned this exact `impl Trait`.
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// for named opaque `impl Trait` types we still need to check them
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// All of the requirements on type parameters
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// have already been checked for `impl Trait` in
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// return position. We do need to check type-alias-impl-trait though.
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if ty::is_impl_trait_defn(self.tcx, did).is_none() {
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let obligations = self.nominal_obligations(did, substs);
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self.out.extend(obligations);
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@ -684,6 +684,7 @@ impl<'tcx> WfPredicates<'tcx> {
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}
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}
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#[instrument(level = "debug", skip(self))]
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fn nominal_obligations(
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&mut self,
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def_id: DefId,
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@ -698,6 +699,7 @@ impl<'tcx> WfPredicates<'tcx> {
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}
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let predicates = predicates.instantiate(self.tcx, substs);
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trace!("{:#?}", predicates);
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debug_assert_eq!(predicates.predicates.len(), origins.len());
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iter::zip(iter::zip(predicates.predicates, predicates.spans), origins.into_iter().rev())
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@ -1,4 +1,3 @@
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// check-pass
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// edition:2018
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#![feature(generic_associated_types)]
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@ -34,6 +33,7 @@ where
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fn search<'c>(&'c self, _client: &'c ()) -> Self::Future<'c, Self, Criteria> {
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async move { todo!() }
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//~^ ERROR: the size for values of type `A` cannot be known at compilation time
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}
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}
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27
src/test/ui/generic-associated-types/issue-88287.stderr
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src/test/ui/generic-associated-types/issue-88287.stderr
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@ -0,0 +1,27 @@
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error[E0277]: the size for values of type `A` cannot be known at compilation time
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--> $DIR/issue-88287.rs:35:9
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LL | type SearchFutureTy<'f, A, B: 'f>
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| - this type parameter needs to be `std::marker::Sized`
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...
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LL | async move { todo!() }
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| ^^^^^^^^^^^^^^^^^^^^^^ doesn't have a size known at compile-time
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note: required by a bound in `<T as SearchableResourceExt<Criteria>>`
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--> $DIR/issue-88287.rs:25:6
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LL | impl<T, Criteria> SearchableResourceExt<Criteria> for T
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| ^ required by this bound in `<T as SearchableResourceExt<Criteria>>`
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help: consider removing the `?Sized` bound to make the type parameter `Sized`
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LL - A: SearchableResource<B> + ?Sized + 'f,
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LL + A: SearchableResource<B> + 'f,
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help: consider relaxing the implicit `Sized` restriction
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LL | T: SearchableResource<Criteria> + ?Sized,
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| ++++++++
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error: aborting due to previous error
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For more information about this error, try `rustc --explain E0277`.
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src/test/ui/lifetimes/issue-76168-hr-outlives-2.rs
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src/test/ui/lifetimes/issue-76168-hr-outlives-2.rs
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@ -0,0 +1,22 @@
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// edition:2018
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// check-pass
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trait Trait<Input> {
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type Output;
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}
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async fn walk<F>(filter: F)
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where
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for<'a> F: Trait<&'a u32> + 'a,
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for<'a> <F as Trait<&'a u32>>::Output: 'a,
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{
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}
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async fn walk2<F: 'static>(filter: F)
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where
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for<'a> F: Trait<&'a u32> + 'a,
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for<'a> <F as Trait<&'a u32>>::Output: 'a,
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{
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}
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fn main() {}
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src/test/ui/type-alias-impl-trait/future.rs
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22
src/test/ui/type-alias-impl-trait/future.rs
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@ -0,0 +1,22 @@
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#![feature(type_alias_impl_trait)]
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// edition:2021
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// compile-flags: --crate-type=lib
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use std::future::Future;
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trait Bar {
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fn bar(&self);
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}
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type FooFuture<B> = impl Future<Output = ()>;
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fn foo<B: Bar>(bar: B) -> FooFuture<B> {
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async move { bar.bar() }
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//~^ ERROR: the trait bound `B: Bar` is not satisfied
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}
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pub fn mainish(ctx: &mut std::task::Context) {
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let boom: FooFuture<u32> = unsafe { core::mem::zeroed() };
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Box::pin(boom).as_mut().poll(ctx);
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}
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src/test/ui/type-alias-impl-trait/future.stderr
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19
src/test/ui/type-alias-impl-trait/future.stderr
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@ -0,0 +1,19 @@
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error[E0277]: the trait bound `B: Bar` is not satisfied
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--> $DIR/future.rs:15:5
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LL | async move { bar.bar() }
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| ^^^^^^^^^^^^^^^^^^^^^^^^ the trait `Bar` is not implemented for `B`
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note: required by a bound in `foo`
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--> $DIR/future.rs:14:11
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LL | fn foo<B: Bar>(bar: B) -> FooFuture<B> {
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| ^^^ required by this bound in `foo`
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help: consider restricting type parameter `B`
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LL | type FooFuture<B: Bar> = impl Future<Output = ()>;
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| +++++
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error: aborting due to previous error
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For more information about this error, try `rustc --explain E0277`.
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