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289 lines
8.1 KiB
Rust
289 lines
8.1 KiB
Rust
fn require_sync<T: Sync>(_: T) {}
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fn require_send_sync<T: Send + Sync>(_: T) {}
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struct NotSend(#[allow(dead_code)] *const ());
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unsafe impl Sync for NotSend {}
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#[test]
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fn test_btree_map() {
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// Tests of this form are prone to https://github.com/rust-lang/rust/issues/64552.
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//
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// In theory the async block's future would be Send if the value we hold
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// across the await point is Send, and Sync if the value we hold across the
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// await point is Sync.
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//
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// We test autotraits in this convoluted way, instead of a straightforward
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// `require_send_sync::<TypeIWantToTest>()`, because the interaction with
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// coroutines exposes some current limitations in rustc's ability to prove a
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// lifetime bound on the erased coroutine witness types. See the above link.
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//
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// A typical way this would surface in real code is:
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//
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// fn spawn<T: Future + Send>(_: T) {}
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//
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// async fn f() {
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// let map = BTreeMap::<u32, Box<dyn Send + Sync>>::new();
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// for _ in &map {
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// async {}.await;
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// }
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// }
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//
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// fn main() {
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// spawn(f());
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// }
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//
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// where with some unintentionally overconstrained Send impls in alloc's
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// internals, the future might incorrectly not be Send even though every
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// single type involved in the program is Send and Sync.
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::Iter<'_, &u32, &u32>>;
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async {}.await;
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});
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// Testing like this would not catch all issues that the above form catches.
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require_send_sync(None::<alloc::collections::btree_map::Iter<'_, &u32, &u32>>);
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require_sync(async {
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let _v = None::<alloc::collections::btree_map::Iter<'_, u32, NotSend>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::BTreeMap<&u32, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<
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alloc::collections::btree_map::ExtractIf<'_, &u32, &u32, fn(&&u32, &mut &u32) -> bool>,
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>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::Entry<'_, &u32, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::IntoIter<&u32, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::IntoKeys<&u32, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::IntoValues<&u32, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::Iter<'_, &u32, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::IterMut<'_, &u32, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::Keys<'_, &u32, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::OccupiedEntry<'_, &u32, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::OccupiedError<'_, &u32, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::Range<'_, &u32, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::RangeMut<'_, &u32, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::VacantEntry<'_, &u32, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::Values<'_, &u32, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_map::ValuesMut<'_, &u32, &u32>>;
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async {}.await;
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});
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}
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#[test]
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fn test_btree_set() {
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_set::BTreeSet<&u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_set::Difference<'_, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_set::ExtractIf<'_, &u32, fn(&&u32) -> bool>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_set::Intersection<'_, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_set::IntoIter<&u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_set::Iter<'_, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_set::Range<'_, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_set::SymmetricDifference<'_, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::btree_set::Union<'_, &u32>>;
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async {}.await;
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});
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}
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#[test]
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fn test_binary_heap() {
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require_send_sync(async {
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let _v = None::<alloc::collections::binary_heap::BinaryHeap<&u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::binary_heap::Drain<'_, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::binary_heap::DrainSorted<'_, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::binary_heap::IntoIter<&u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::binary_heap::IntoIterSorted<&u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::binary_heap::Iter<'_, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::binary_heap::PeekMut<'_, &u32>>;
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async {}.await;
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});
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}
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#[test]
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fn test_linked_list() {
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require_send_sync(async {
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let _v = None::<alloc::collections::linked_list::Cursor<'_, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::linked_list::CursorMut<'_, &u32>>;
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async {}.await;
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});
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// FIXME
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/*
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require_send_sync(async {
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let _v =
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None::<alloc::collections::linked_list::ExtractIf<'_, &u32, fn(&mut &u32) -> bool>>;
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async {}.await;
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});
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*/
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require_send_sync(async {
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let _v = None::<alloc::collections::linked_list::IntoIter<&u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::linked_list::Iter<'_, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::linked_list::IterMut<'_, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::linked_list::LinkedList<&u32>>;
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async {}.await;
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});
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}
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#[test]
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fn test_vec_deque() {
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require_send_sync(async {
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let _v = None::<alloc::collections::vec_deque::Drain<'_, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::vec_deque::IntoIter<&u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::vec_deque::Iter<'_, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::vec_deque::IterMut<'_, &u32>>;
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async {}.await;
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});
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require_send_sync(async {
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let _v = None::<alloc::collections::vec_deque::VecDeque<&u32>>;
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async {}.await;
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});
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}
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