[−][src]Struct amadeus::par_sink::GroupBy
Implementations
impl<A, B> GroupBy<A, B>
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Trait Implementations
impl<A, B, Item, T, U> DistributedSink<Item> for GroupBy<A, B> where
A: DistributedPipe<Item, Output = (T, U)>,
B: DistributedSink<U>,
T: Eq + Hash + ProcessSend + 'static,
<<B as DistributedSink<U>>::Pipe as DistributedPipe<U>>::Task: Clone,
<<B as DistributedSink<U>>::Pipe as DistributedPipe<U>>::Task: ProcessSend,
<<B as DistributedSink<U>>::Pipe as DistributedPipe<U>>::Task: 'static,
<B as DistributedSink<U>>::ReduceA: Clone,
<B as DistributedSink<U>>::ReduceA: ProcessSend,
<B as DistributedSink<U>>::ReduceA: 'static,
<B as DistributedSink<U>>::ReduceB: Clone,
<B as DistributedSink<U>>::ReduceC: Clone,
<B as DistributedSink<U>>::Done: ProcessSend,
<B as DistributedSink<U>>::Done: 'static,
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A: DistributedPipe<Item, Output = (T, U)>,
B: DistributedSink<U>,
T: Eq + Hash + ProcessSend + 'static,
<<B as DistributedSink<U>>::Pipe as DistributedPipe<U>>::Task: Clone,
<<B as DistributedSink<U>>::Pipe as DistributedPipe<U>>::Task: ProcessSend,
<<B as DistributedSink<U>>::Pipe as DistributedPipe<U>>::Task: 'static,
<B as DistributedSink<U>>::ReduceA: Clone,
<B as DistributedSink<U>>::ReduceA: ProcessSend,
<B as DistributedSink<U>>::ReduceA: 'static,
<B as DistributedSink<U>>::ReduceB: Clone,
<B as DistributedSink<U>>::ReduceC: Clone,
<B as DistributedSink<U>>::Done: ProcessSend,
<B as DistributedSink<U>>::Done: 'static,
type Done = IndexMap<T, <B as DistributedSink<U>>::Done, RandomState>
type Pipe = A
type ReduceA = GroupByReducerA<<<B as DistributedSink<U>>::Pipe as DistributedPipe<U>>::Task, <B as DistributedSink<U>>::ReduceA, T, U>
type ReduceB = GroupByReducerB<<B as DistributedSink<U>>::ReduceB, T, <<B as DistributedSink<U>>::ReduceA as ReducerSend<<<B as DistributedSink<U>>::Pipe as DistributedPipe<U>>::Output>>::Done>
type ReduceC = GroupByReducerB<<B as DistributedSink<U>>::ReduceC, T, <<B as DistributedSink<U>>::ReduceB as ReducerProcessSend<<<B as DistributedSink<U>>::ReduceA as Reducer<<<B as DistributedSink<U>>::Pipe as DistributedPipe<U>>::Output>>::Done>>::Done>
fn reducers(
self
) -> (<GroupBy<A, B> as DistributedSink<Item>>::Pipe, <GroupBy<A, B> as DistributedSink<Item>>::ReduceA, <GroupBy<A, B> as DistributedSink<Item>>::ReduceB, <GroupBy<A, B> as DistributedSink<Item>>::ReduceC)
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self
) -> (<GroupBy<A, B> as DistributedSink<Item>>::Pipe, <GroupBy<A, B> as DistributedSink<Item>>::ReduceA, <GroupBy<A, B> as DistributedSink<Item>>::ReduceB, <GroupBy<A, B> as DistributedSink<Item>>::ReduceC)
impl<A, B, Item, T, U> ParallelSink<Item> for GroupBy<A, B> where
A: ParallelPipe<Item, Output = (T, U)>,
B: ParallelSink<U>,
T: Eq + Hash + Send + 'static,
<<B as ParallelSink<U>>::Pipe as ParallelPipe<U>>::Task: Clone,
<<B as ParallelSink<U>>::Pipe as ParallelPipe<U>>::Task: Send,
<<B as ParallelSink<U>>::Pipe as ParallelPipe<U>>::Task: 'static,
<B as ParallelSink<U>>::ReduceA: Clone,
<B as ParallelSink<U>>::ReduceA: Send,
<B as ParallelSink<U>>::ReduceA: 'static,
<B as ParallelSink<U>>::ReduceC: Clone,
<B as ParallelSink<U>>::Done: Send,
<B as ParallelSink<U>>::Done: 'static,
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A: ParallelPipe<Item, Output = (T, U)>,
B: ParallelSink<U>,
T: Eq + Hash + Send + 'static,
<<B as ParallelSink<U>>::Pipe as ParallelPipe<U>>::Task: Clone,
<<B as ParallelSink<U>>::Pipe as ParallelPipe<U>>::Task: Send,
<<B as ParallelSink<U>>::Pipe as ParallelPipe<U>>::Task: 'static,
<B as ParallelSink<U>>::ReduceA: Clone,
<B as ParallelSink<U>>::ReduceA: Send,
<B as ParallelSink<U>>::ReduceA: 'static,
<B as ParallelSink<U>>::ReduceC: Clone,
<B as ParallelSink<U>>::Done: Send,
<B as ParallelSink<U>>::Done: 'static,
type Done = IndexMap<T, <B as ParallelSink<U>>::Done, RandomState>
type Pipe = A
type ReduceA = GroupByReducerA<<<B as ParallelSink<U>>::Pipe as ParallelPipe<U>>::Task, <B as ParallelSink<U>>::ReduceA, T, U>
type ReduceC = GroupByReducerB<<B as ParallelSink<U>>::ReduceC, T, <<B as ParallelSink<U>>::ReduceA as ReducerSend<<<B as ParallelSink<U>>::Pipe as ParallelPipe<U>>::Output>>::Done>
fn reducers(
self
) -> (<GroupBy<A, B> as ParallelSink<Item>>::Pipe, <GroupBy<A, B> as ParallelSink<Item>>::ReduceA, <GroupBy<A, B> as ParallelSink<Item>>::ReduceC)
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self
) -> (<GroupBy<A, B> as ParallelSink<Item>>::Pipe, <GroupBy<A, B> as ParallelSink<Item>>::ReduceA, <GroupBy<A, B> as ParallelSink<Item>>::ReduceC)
Auto Trait Implementations
impl<A, B> RefUnwindSafe for GroupBy<A, B> where
A: RefUnwindSafe,
B: RefUnwindSafe,
A: RefUnwindSafe,
B: RefUnwindSafe,
impl<A, B> Send for GroupBy<A, B> where
A: Send,
B: Send,
A: Send,
B: Send,
impl<A, B> Sync for GroupBy<A, B> where
A: Sync,
B: Sync,
A: Sync,
B: Sync,
impl<A, B> Unpin for GroupBy<A, B> where
A: Unpin,
B: Unpin,
A: Unpin,
B: Unpin,
impl<A, B> UnwindSafe for GroupBy<A, B> where
A: UnwindSafe,
B: UnwindSafe,
A: UnwindSafe,
B: UnwindSafe,
Blanket Implementations
impl<T> Any for T where
T: 'static + ?Sized,
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T: 'static + ?Sized,
impl<T> Borrow<T> for T where
T: ?Sized,
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T: ?Sized,
impl<T> BorrowMut<T> for T where
T: ?Sized,
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T: ?Sized,
fn borrow_mut(&mut self) -> &mut T
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impl<A, B> Downcast<A> for B where
A: DowncastFrom<B>,
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A: DowncastFrom<B>,
fn downcast(self) -> Result<A, DowncastError>
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impl<T> From<T> for T
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impl<T, U> Into<U> for T where
U: From<T>,
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U: From<T>,
impl<T> Same<T> for T
type Output = T
Should always be Self
impl<T> Sealed<T> for T where
T: ?Sized,
T: ?Sized,
impl<T, U> TryFrom<U> for T where
U: Into<T>,
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U: Into<T>,
type Error = Infallible
The type returned in the event of a conversion error.
fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>
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impl<T, U> TryInto<U> for T where
U: TryFrom<T>,
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U: TryFrom<T>,
type Error = <U as TryFrom<T>>::Error
The type returned in the event of a conversion error.
fn try_into(self) -> Result<U, <U as TryFrom<T>>::Error>
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impl<T> Type for T
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const METATYPE: MetaType
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type Meta = Concrete
Type of metadata for type.
fn meta(self: *const T) -> <T as Type>::Meta
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fn data(self: *const T) -> *const ()
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fn data_mut(self: *mut T) -> *mut ()
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fn dangling(_t: <T as Type>::Meta) -> NonNull<T>
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fn fatten(thin: *mut (), _t: <T as Type>::Meta) -> *mut T
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fn meta_type(self: *const Self) -> MetaType
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impl<T> Type for T where
T: ?Sized,
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T: ?Sized,
default fn meta(self: *const T) -> <T as Type>::Meta
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default fn data(self: *const T) -> *const ()
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default fn data_mut(self: *mut T) -> *mut ()
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default fn dangling(t: <T as Type>::Meta) -> NonNull<T>
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default fn fatten(thin: *mut (), t: <T as Type>::Meta) -> *mut T
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const METATYPE: MetaType
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type Meta: 'static
fn meta_type(self: *const Self) -> MetaType
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impl<V, T> VZip<V> for T where
V: MultiLane<T>,
V: MultiLane<T>,