pub struct RwLockMappedWriteGuard<'a, T>
where T: ?Sized,
{ /* private fields */ }
Expand description

RAII structure used to release the exclusive write access of a lock when dropped.

This structure is created by mapping an RwLockWriteGuard. It is a separate type from RwLockWriteGuard to disallow downgrading a mapped guard, since doing so can cause undefined behavior.

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impl<'a, T> RwLockMappedWriteGuard<'a, T>
where T: ?Sized,

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pub fn map<F, U>( this: RwLockMappedWriteGuard<'a, T>, f: F ) -> RwLockMappedWriteGuard<'a, U>
where F: FnOnce(&mut T) -> &mut U, U: ?Sized,

Makes a new RwLockMappedWriteGuard for a component of the locked data.

This operation cannot fail as the RwLockMappedWriteGuard passed in already locked the data.

This is an associated function that needs to be used as RwLockMappedWriteGuard::map(..). A method would interfere with methods of the same name on the contents of the locked data.

This is an asynchronous version of RwLockWriteGuard::map from the parking_lot crate.

§Examples
use tokio::sync::{RwLock, RwLockWriteGuard};

#[derive(Debug, Clone, Copy, PartialEq, Eq)]
struct Foo(u32);

let lock = RwLock::new(Foo(1));

{
    let mut mapped = RwLockWriteGuard::map(lock.write().await, |f| &mut f.0);
    *mapped = 2;
}

assert_eq!(Foo(2), *lock.read().await);
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pub fn try_map<F, U>( this: RwLockMappedWriteGuard<'a, T>, f: F ) -> Result<RwLockMappedWriteGuard<'a, U>, RwLockMappedWriteGuard<'a, T>>
where F: FnOnce(&mut T) -> Option<&mut U>, U: ?Sized,

Attempts to make a new RwLockMappedWriteGuard for a component of the locked data. The original guard is returned if the closure returns None.

This operation cannot fail as the RwLockMappedWriteGuard passed in already locked the data.

This is an associated function that needs to be used as RwLockMappedWriteGuard::try_map(...). A method would interfere with methods of the same name on the contents of the locked data.

This is an asynchronous version of RwLockWriteGuard::try_map from the parking_lot crate.

§Examples
use tokio::sync::{RwLock, RwLockWriteGuard};

#[derive(Debug, Clone, Copy, PartialEq, Eq)]
struct Foo(u32);

let lock = RwLock::new(Foo(1));

{
    let guard = lock.write().await;
    let mut guard = RwLockWriteGuard::try_map(guard, |f| Some(&mut f.0)).expect("should not fail");
    *guard = 2;
}

assert_eq!(Foo(2), *lock.read().await);

Trait Implementations§

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impl<'a, T> Debug for RwLockMappedWriteGuard<'a, T>
where T: Debug + ?Sized,

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fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>

Formats the value using the given formatter. Read more
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impl<T> Deref for RwLockMappedWriteGuard<'_, T>
where T: ?Sized,

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type Target = T

The resulting type after dereferencing.
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fn deref(&self) -> &T

Dereferences the value.
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impl<T> DerefMut for RwLockMappedWriteGuard<'_, T>
where T: ?Sized,

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fn deref_mut(&mut self) -> &mut T

Mutably dereferences the value.
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impl<'a, T> Display for RwLockMappedWriteGuard<'a, T>
where T: Display + ?Sized,

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fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>

Formats the value using the given formatter. Read more
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impl<'a, T> Drop for RwLockMappedWriteGuard<'a, T>
where T: ?Sized,

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fn drop(&mut self)

Executes the destructor for this type. Read more
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impl<T> Send for RwLockMappedWriteGuard<'_, T>
where T: Send + Sync + ?Sized,

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impl<T> Sync for RwLockMappedWriteGuard<'_, T>
where T: Send + Sync + ?Sized,

Auto Trait Implementations§

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impl<'a, T> !RefUnwindSafe for RwLockMappedWriteGuard<'a, T>

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impl<'a, T: ?Sized> Unpin for RwLockMappedWriteGuard<'a, T>

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impl<'a, T> !UnwindSafe for RwLockMappedWriteGuard<'a, T>

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impl<T> Any for T
where T: 'static + ?Sized,

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fn type_id(&self) -> TypeId

Gets the TypeId of self. Read more
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impl<T> Any for T
where T: Any,

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fn into_any(self: Box<T>) -> Box<dyn Any>

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fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>

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fn type_name(&self) -> &'static str

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impl<T> AnySync for T
where T: Any + Send + Sync,

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fn into_any_arc(self: Arc<T>) -> Arc<dyn Any + Sync + Send>

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impl<T> ArchivePointee for T

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type ArchivedMetadata = ()

The archived version of the pointer metadata for this type.
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fn pointer_metadata( _: &<T as ArchivePointee>::ArchivedMetadata ) -> <T as Pointee>::Metadata

Converts some archived metadata to the pointer metadata for itself.
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impl<P> AsEngineRef for P
where P: Deref, <P as Deref>::Target: AsEngineRef,

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fn as_engine_ref(&self) -> EngineRef<'_>

Returns a EngineRef pointing to the underlying context.
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impl<P> AsStoreMut for P
where P: DerefMut, <P as Deref>::Target: AsStoreMut,

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fn as_store_mut(&mut self) -> StoreMut<'_>

Returns a StoreMut pointing to the underlying context.
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fn objects_mut(&mut self) -> &mut StoreObjects

Returns the ObjectMutable
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impl<P> AsStoreRef for P
where P: Deref, <P as Deref>::Target: AsStoreRef,

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fn as_store_ref(&self) -> StoreRef<'_>

Returns a StoreRef pointing to the underlying context.
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impl<T> Borrow<T> for T
where T: ?Sized,

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fn borrow(&self) -> &T

Immutably borrows from an owned value. Read more
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impl<T> BorrowMut<T> for T
where T: ?Sized,

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fn borrow_mut(&mut self) -> &mut T

Mutably borrows from an owned value. Read more
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impl<F, W, T, D> Deserialize<With<T, W>, D> for F
where W: DeserializeWith<F, T, D>, D: Fallible + ?Sized, F: ?Sized,

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fn deserialize( &self, deserializer: &mut D ) -> Result<With<T, W>, <D as Fallible>::Error>

Deserializes using the given deserializer
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fn from(t: T) -> T

Returns the argument unchanged.

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impl<T> FutureExt for T

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fn with_context(self, otel_cx: Context) -> WithContext<Self>

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fn instrument(self, span: Span) -> Instrumented<Self>

Instruments this type with the provided Span, returning an Instrumented wrapper. Read more
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Instruments this type with the provided Span, returning an Instrumented wrapper. Read more
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Calls U::from(self).

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const ALIGN: usize = _

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type Init = T

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unsafe fn init(init: <T as Pointable>::Init) -> usize

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Dereferences the given pointer. Read more
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Mutably dereferences the given pointer. Read more
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unsafe fn drop(ptr: usize)

Drops the object pointed to by the given pointer. Read more
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type Metadata = ()

The type for metadata in pointers and references to Self.
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impl<T> Same for T

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type Output = T

Should always be Self
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The inverse inclusion map: attempts to construct self from the equivalent element of its superset. Read more
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Checks if self is actually part of its subset T (and can be converted to it).
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Use with care! Same as self.to_subset but without any property checks. Always succeeds.
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The inclusion map: converts self to the equivalent element of its superset.
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where S: Into<Dispatch>,

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