Enum EitherConn6
pub enum EitherConn6<A, B, C, D, E, F> {
A(A),
B(B),
C(C),
D(D),
E(E),
F(F),
}net only.Expand description
A type to allow you to use multiple types as a single type.
and will delegate the functionality to the type that is wrapped in the Either type.
To keep it easy all wrapped types are expected to work with the same inputs and outputs.
You can use [crate::combinators::impl_either] to
implement the Either type for the available number of type parameters
on your own Trait implementations.
Variants§
A(A)
one of the Either variants
B(B)
one of the Either variants
C(C)
one of the Either variants
D(D)
one of the Either variants
E(E)
one of the Either variants
F(F)
one of the Either variants
Implementations§
§impl<A, B, C, D, E, F> EitherConn6<A, B, C, D, E, F>
impl<A, B, C, D, E, F> EitherConn6<A, B, C, D, E, F>
pub fn as_pin_mut(
self: Pin<&mut EitherConn6<A, B, C, D, E, F>>,
) -> EitherConn6<Pin<&mut A>, Pin<&mut B>, Pin<&mut C>, Pin<&mut D>, Pin<&mut E>, Pin<&mut F>> ⓘ
pub fn as_pin_mut( self: Pin<&mut EitherConn6<A, B, C, D, E, F>>, ) -> EitherConn6<Pin<&mut A>, Pin<&mut B>, Pin<&mut C>, Pin<&mut D>, Pin<&mut E>, Pin<&mut F>> ⓘ
Convert Pin<&mut Either<A, B>> to Either<Pin<&mut A>, Pin<&mut B>>,
pinned projections of the inner variants.
This is the pin-projection used to implement pinned traits (e.g.
Future/AsyncRead) for Either; it is public so downstream
crates can implement their own pinned traits over Either too.
Trait Implementations§
§impl<A, B, C, D, E, F> Clone for EitherConn6<A, B, C, D, E, F>
impl<A, B, C, D, E, F> Clone for EitherConn6<A, B, C, D, E, F>
§fn clone(&self) -> EitherConn6<A, B, C, D, E, F> ⓘ
fn clone(&self) -> EitherConn6<A, B, C, D, E, F> ⓘ
1.0.0 (const: unstable) · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
source. Read more§impl<A, B, C, D, E, F> Debug for EitherConn6<A, B, C, D, E, F>
impl<A, B, C, D, E, F> Debug for EitherConn6<A, B, C, D, E, F>
§impl<A, B, C, D, E, F> Display for EitherConn6<A, B, C, D, E, F>
impl<A, B, C, D, E, F> Display for EitherConn6<A, B, C, D, E, F>
§impl<A, B, C, D, E, F, Output> Future for EitherConn6<A, B, C, D, E, F>
impl<A, B, C, D, E, F, Output> Future for EitherConn6<A, B, C, D, E, F>
§fn poll(
self: Pin<&mut EitherConn6<A, B, C, D, E, F>>,
cx: &mut Context<'_>,
) -> Poll<<EitherConn6<A, B, C, D, E, F> as Future>::Output>
fn poll( self: Pin<&mut EitherConn6<A, B, C, D, E, F>>, cx: &mut Context<'_>, ) -> Poll<<EitherConn6<A, B, C, D, E, F> as Future>::Output>
§impl<A, B, C, D, E, F, Item> Iterator for EitherConn6<A, B, C, D, E, F>
impl<A, B, C, D, E, F, Item> Iterator for EitherConn6<A, B, C, D, E, F>
§fn size_hint(&self) -> (usize, Option<usize>)
fn size_hint(&self) -> (usize, Option<usize>)
Source§fn next_chunk<const N: usize>(
&mut self,
) -> Result<[Self::Item; N], IntoIter<Self::Item, N>>where
Self: Sized,
fn next_chunk<const N: usize>(
&mut self,
) -> Result<[Self::Item; N], IntoIter<Self::Item, N>>where
Self: Sized,
iter_next_chunk)N values. Read more1.0.0 (const: unstable) · Source§fn count(self) -> usizewhere
Self: Sized,
fn count(self) -> usizewhere
Self: Sized,
1.0.0 (const: unstable) · Source§fn last(self) -> Option<Self::Item>where
Self: Sized,
fn last(self) -> Option<Self::Item>where
Self: Sized,
Source§fn advance_by(&mut self, n: usize) -> Result<(), NonZero<usize>>
fn advance_by(&mut self, n: usize) -> Result<(), NonZero<usize>>
iter_advance_by)n elements. Read more1.0.0 (const: unstable) · Source§fn nth(&mut self, n: usize) -> Option<Self::Item>
fn nth(&mut self, n: usize) -> Option<Self::Item>
nth element of the iterator. Read more1.28.0 (const: unstable) · Source§fn step_by(self, step: usize) -> StepBy<Self> ⓘwhere
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fn step_by(self, step: usize) -> StepBy<Self> ⓘwhere
Self: Sized,
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fn intersperse(self, separator: Self::Item) -> Intersperse<Self> ⓘ
iter_intersperse)separator between items
of the original iterator. Read moreSource§fn intersperse_with<G>(self, separator: G) -> IntersperseWith<Self, G> ⓘ
fn intersperse_with<G>(self, separator: G) -> IntersperseWith<Self, G> ⓘ
iter_intersperse)separator
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fn for_each<F>(self, f: F)
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Self: Sized,
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n elements, or fewer
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fn flatten(self) -> Flatten<Self> ⓘ
Source§fn map_windows<F, R, const N: usize>(self, f: F) -> MapWindows<Self, F, N> ⓘ
fn map_windows<F, R, const N: usize>(self, f: F) -> MapWindows<Self, F, N> ⓘ
iter_map_windows)f for each contiguous window of size N over
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&mut self,
) -> <<Self::Item as Try>::Residual as Residual<B>>::TryType
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&mut self,
f: impl FnMut(Self::Item, Self::Item) -> R,
) -> <<R as Try>::Residual as Residual<Option<<R as Try>::Output>>>::TryType
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fn all<F>(&mut self, f: F) -> bool
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fn any<F>(&mut self, f: F) -> bool
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fn max(self) -> Option<Self::Item>
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fn min(self) -> Option<Self::Item>
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fn array_chunks<const N: usize>(self) -> ArrayChunks<Self, N> ⓘwhere
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iter_array_chunks)N elements of the iterator at a time. Read more1.11.0 (const: unstable) · Source§fn product<P>(self) -> P
fn product<P>(self) -> P
Source§fn cmp_by<I, F>(self, other: I, cmp: F) -> Ordering
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iter_order_by)Iterator with those
of another with respect to the specified comparison function. Read more1.5.0 (const: unstable) · Source§fn partial_cmp<I>(self, other: I) -> Option<Ordering>
fn partial_cmp<I>(self, other: I) -> Option<Ordering>
PartialOrd elements of
this Iterator with those of another. The comparison works like short-circuit
evaluation, returning a result without comparing the remaining elements.
As soon as an order can be determined, the evaluation stops and a result is returned. Read moreSource§fn partial_cmp_by<I, F>(self, other: I, partial_cmp: F) -> Option<Ordering>where
Self: Sized,
I: IntoIterator,
F: FnMut(Self::Item, <I as IntoIterator>::Item) -> Option<Ordering>,
fn partial_cmp_by<I, F>(self, other: I, partial_cmp: F) -> Option<Ordering>where
Self: Sized,
I: IntoIterator,
F: FnMut(Self::Item, <I as IntoIterator>::Item) -> Option<Ordering>,
iter_order_by)Iterator with those
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fn lt<I>(self, other: I) -> bool
Iterator are lexicographically
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Iterator are lexicographically
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Iterator are lexicographically
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fn ge<I>(self, other: I) -> bool
Iterator are lexicographically
greater than or equal to those of another. Read more1.82.0 (const: unstable) · Source§fn is_sorted(self) -> bool
fn is_sorted(self) -> bool
1.82.0 (const: unstable) · Source§fn is_sorted_by<F>(self, compare: F) -> bool
fn is_sorted_by<F>(self, compare: F) -> bool
§impl<A, ConnA, B, ConnB, C, ConnC, D, ConnD, E, ConnE, F, ConnF, Input> Service<Input> for EitherConn6<A, B, C, D, E, F>where
A: Service<Input, Output = EstablishedClientConnection<ConnA, Input>>,
<A as Service<Input>>::Error: Into<Box<dyn Error + Sync + Send>>,
ConnA: Send + 'static,
B: Service<Input, Output = EstablishedClientConnection<ConnB, Input>>,
<B as Service<Input>>::Error: Into<Box<dyn Error + Sync + Send>>,
ConnB: Send + 'static,
C: Service<Input, Output = EstablishedClientConnection<ConnC, Input>>,
<C as Service<Input>>::Error: Into<Box<dyn Error + Sync + Send>>,
ConnC: Send + 'static,
D: Service<Input, Output = EstablishedClientConnection<ConnD, Input>>,
<D as Service<Input>>::Error: Into<Box<dyn Error + Sync + Send>>,
ConnD: Send + 'static,
E: Service<Input, Output = EstablishedClientConnection<ConnE, Input>>,
<E as Service<Input>>::Error: Into<Box<dyn Error + Sync + Send>>,
ConnE: Send + 'static,
F: Service<Input, Output = EstablishedClientConnection<ConnF, Input>>,
<F as Service<Input>>::Error: Into<Box<dyn Error + Sync + Send>>,
ConnF: Send + 'static,
Input: Send + 'static,
impl<A, ConnA, B, ConnB, C, ConnC, D, ConnD, E, ConnE, F, ConnF, Input> Service<Input> for EitherConn6<A, B, C, D, E, F>where
A: Service<Input, Output = EstablishedClientConnection<ConnA, Input>>,
<A as Service<Input>>::Error: Into<Box<dyn Error + Sync + Send>>,
ConnA: Send + 'static,
B: Service<Input, Output = EstablishedClientConnection<ConnB, Input>>,
<B as Service<Input>>::Error: Into<Box<dyn Error + Sync + Send>>,
ConnB: Send + 'static,
C: Service<Input, Output = EstablishedClientConnection<ConnC, Input>>,
<C as Service<Input>>::Error: Into<Box<dyn Error + Sync + Send>>,
ConnC: Send + 'static,
D: Service<Input, Output = EstablishedClientConnection<ConnD, Input>>,
<D as Service<Input>>::Error: Into<Box<dyn Error + Sync + Send>>,
ConnD: Send + 'static,
E: Service<Input, Output = EstablishedClientConnection<ConnE, Input>>,
<E as Service<Input>>::Error: Into<Box<dyn Error + Sync + Send>>,
ConnE: Send + 'static,
F: Service<Input, Output = EstablishedClientConnection<ConnF, Input>>,
<F as Service<Input>>::Error: Into<Box<dyn Error + Sync + Send>>,
ConnF: Send + 'static,
Input: Send + 'static,
§type Output = EstablishedClientConnection<EitherConn6Connected<ConnA, ConnB, ConnC, ConnD, ConnE, ConnF>, Input>
type Output = EstablishedClientConnection<EitherConn6Connected<ConnA, ConnB, ConnC, ConnD, ConnE, ConnF>, Input>
§async fn serve(
&self,
input: Input,
) -> Result<<EitherConn6<A, B, C, D, E, F> as Service<Input>>::Output, <EitherConn6<A, B, C, D, E, F> as Service<Input>>::Error>
async fn serve( &self, input: Input, ) -> Result<<EitherConn6<A, B, C, D, E, F> as Service<Input>>::Output, <EitherConn6<A, B, C, D, E, F> as Service<Input>>::Error>
§fn boxed(self) -> BoxService<Input, Self::Output, Self::Error>
fn boxed(self) -> BoxService<Input, Self::Output, Self::Error>
Auto Trait Implementations§
impl<A, B, C, D, E, F> Freeze for EitherConn6<A, B, C, D, E, F>
impl<A, B, C, D, E, F> RefUnwindSafe for EitherConn6<A, B, C, D, E, F>where
A: RefUnwindSafe,
B: RefUnwindSafe,
C: RefUnwindSafe,
D: RefUnwindSafe,
E: RefUnwindSafe,
F: RefUnwindSafe,
impl<A, B, C, D, E, F> Send for EitherConn6<A, B, C, D, E, F>
impl<A, B, C, D, E, F> Sync for EitherConn6<A, B, C, D, E, F>
impl<A, B, C, D, E, F> Unpin for EitherConn6<A, B, C, D, E, F>
impl<A, B, C, D, E, F> UnsafeUnpin for EitherConn6<A, B, C, D, E, F>where
A: UnsafeUnpin,
B: UnsafeUnpin,
C: UnsafeUnpin,
D: UnsafeUnpin,
E: UnsafeUnpin,
F: UnsafeUnpin,
impl<A, B, C, D, E, F> UnwindSafe for EitherConn6<A, B, C, D, E, F>
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use_alloc only.§fn k_largest_relaxed(self, k: usize) -> IntoIter<Self::Item> ⓘ
fn k_largest_relaxed(self, k: usize) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn k_largest_relaxed_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item> ⓘ
fn k_largest_relaxed_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn k_largest_relaxed_by_key<F, K>(
self,
k: usize,
key: F,
) -> IntoIter<Self::Item> ⓘ
fn k_largest_relaxed_by_key<F, K>( self, k: usize, key: F, ) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn tail(self, n: usize) -> IntoIter<Self::Item> ⓘwhere
Self: Sized,
fn tail(self, n: usize) -> IntoIter<Self::Item> ⓘwhere
Self: Sized,
use_alloc only.n elements. Read more§fn partition_map<A, B, F, L, R>(self, predicate: F) -> (A, B)
fn partition_map<A, B, F, L, R>(self, predicate: F) -> (A, B)
Iterator::partition, each partition may
have a distinct type. Read more§fn partition_result<A, B, T, E>(self) -> (A, B)
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Results into one list of all the Ok elements
and another list of all the Err elements. Read more§fn min_set(self) -> Vec<Self::Item>
fn min_set(self) -> Vec<Self::Item>
use_alloc only.§fn min_set_by<F>(self, compare: F) -> Vec<Self::Item>
fn min_set_by<F>(self, compare: F) -> Vec<Self::Item>
use_alloc only.§fn min_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
fn min_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
use_alloc only.§fn max_set(self) -> Vec<Self::Item>
fn max_set(self) -> Vec<Self::Item>
use_alloc only.§fn max_set_by<F>(self, compare: F) -> Vec<Self::Item>
fn max_set_by<F>(self, compare: F) -> Vec<Self::Item>
use_alloc only.§fn max_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
fn max_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
use_alloc only.§fn minmax(self) -> MinMaxResult<Self::Item>
fn minmax(self) -> MinMaxResult<Self::Item>
§fn minmax_by_key<K, F>(self, key: F) -> MinMaxResult<Self::Item>
fn minmax_by_key<K, F>(self, key: F) -> MinMaxResult<Self::Item>
§fn minmax_by<F>(self, compare: F) -> MinMaxResult<Self::Item>
fn minmax_by<F>(self, compare: F) -> MinMaxResult<Self::Item>
§fn position_max(self) -> Option<usize>
fn position_max(self) -> Option<usize>
§fn position_max_by_key<K, F>(self, key: F) -> Option<usize>
fn position_max_by_key<K, F>(self, key: F) -> Option<usize>
§fn position_max_by<F>(self, compare: F) -> Option<usize>
fn position_max_by<F>(self, compare: F) -> Option<usize>
§fn position_min(self) -> Option<usize>
fn position_min(self) -> Option<usize>
§fn position_min_by_key<K, F>(self, key: F) -> Option<usize>
fn position_min_by_key<K, F>(self, key: F) -> Option<usize>
§fn position_min_by<F>(self, compare: F) -> Option<usize>
fn position_min_by<F>(self, compare: F) -> Option<usize>
§fn position_minmax(self) -> MinMaxResult<usize>
fn position_minmax(self) -> MinMaxResult<usize>
§fn position_minmax_by_key<K, F>(self, key: F) -> MinMaxResult<usize>
fn position_minmax_by_key<K, F>(self, key: F) -> MinMaxResult<usize>
§fn position_minmax_by<F>(self, compare: F) -> MinMaxResult<usize>
fn position_minmax_by<F>(self, compare: F) -> MinMaxResult<usize>
§fn exactly_one(self) -> Result<Self::Item, ExactlyOneError<Self>>where
Self: Sized,
fn exactly_one(self) -> Result<Self::Item, ExactlyOneError<Self>>where
Self: Sized,
§fn at_most_one(self) -> Result<Option<Self::Item>, ExactlyOneError<Self>>where
Self: Sized,
fn at_most_one(self) -> Result<Option<Self::Item>, ExactlyOneError<Self>>where
Self: Sized,
Ok(None) will be returned. If the iterator yields
exactly one element, that element will be returned, otherwise an error will be returned
containing an iterator that has the same output as the input iterator. Read more§fn multipeek(self) -> MultiPeek<Self> ⓘwhere
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Self: Sized,
use_alloc only..next()
values without advancing the base iterator. Read more§fn multiunzip<FromI>(self) -> FromIwhere
Self: Sized + MultiUnzip<FromI>,
fn multiunzip<FromI>(self) -> FromIwhere
Self: Sized + MultiUnzip<FromI>,
§impl<T> Itertools for T
impl<T> Itertools for T
§fn interleave<J>(
self,
other: J,
) -> Interleave<Self, <J as IntoIterator>::IntoIter> ⓘ
fn interleave<J>( self, other: J, ) -> Interleave<Self, <J as IntoIterator>::IntoIter> ⓘ
§fn interleave_shortest<J>(
self,
other: J,
) -> InterleaveShortest<Self, <J as IntoIterator>::IntoIter> ⓘ
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§fn intersperse(
self,
element: Self::Item,
) -> IntersperseWith<Self, IntersperseElementSimple<Self::Item>> ⓘ
fn intersperse( self, element: Self::Item, ) -> IntersperseWith<Self, IntersperseElementSimple<Self::Item>> ⓘ
§fn intersperse_with<F>(self, element: F) -> IntersperseWith<Self, F> ⓘ
fn intersperse_with<F>(self, element: F) -> IntersperseWith<Self, F> ⓘ
§fn get<R>(self, index: R) -> <R as IteratorIndex<Self>>::Outputwhere
Self: Sized,
R: IteratorIndex<Self>,
fn get<R>(self, index: R) -> <R as IteratorIndex<Self>>::Outputwhere
Self: Sized,
R: IteratorIndex<Self>,
§fn zip_longest<J>(
self,
other: J,
) -> ZipLongest<Self, <J as IntoIterator>::IntoIter> ⓘwhere
J: IntoIterator,
Self: Sized,
fn zip_longest<J>(
self,
other: J,
) -> ZipLongest<Self, <J as IntoIterator>::IntoIter> ⓘwhere
J: IntoIterator,
Self: Sized,
§fn zip_eq<J>(self, other: J) -> ZipEq<Self, <J as IntoIterator>::IntoIter> ⓘwhere
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Self: Sized,
§fn batching<B, F>(self, f: F) -> Batching<Self, F> ⓘ
fn batching<B, F>(self, f: F) -> Batching<Self, F> ⓘ
§fn chunk_by<K, F>(self, key: F) -> ChunkBy<K, Self, F>
fn chunk_by<K, F>(self, key: F) -> ChunkBy<K, Self, F>
use_alloc only.§fn group_by<K, F>(self, key: F) -> ChunkBy<K, Self, F>
fn group_by<K, F>(self, key: F) -> ChunkBy<K, Self, F>
Use .chunk_by() instead
use_alloc only..chunk_by().§fn chunks(self, size: usize) -> IntoChunks<Self>where
Self: Sized,
fn chunks(self, size: usize) -> IntoChunks<Self>where
Self: Sized,
use_alloc only.§fn tuple_windows<T>(self) -> TupleWindows<Self, T> ⓘ
fn tuple_windows<T>(self) -> TupleWindows<Self, T> ⓘ
§fn circular_tuple_windows<T>(self) -> CircularTupleWindows<Self, T> ⓘ
fn circular_tuple_windows<T>(self) -> CircularTupleWindows<Self, T> ⓘ
§fn tuples<T>(self) -> Tuples<Self, T> ⓘ
fn tuples<T>(self) -> Tuples<Self, T> ⓘ
§fn array_windows<const N: usize>(self) -> ArrayWindows<Self, N> ⓘ
fn array_windows<const N: usize>(self) -> ArrayWindows<Self, N> ⓘ
N. Read more§fn circular_array_windows<const N: usize>(self) -> CircularArrayWindows<Self, N> ⓘ
fn circular_array_windows<const N: usize>(self) -> CircularArrayWindows<Self, N> ⓘ
N. Read more§fn tee(self) -> (Tee<Self>, Tee<Self>)
fn tee(self) -> (Tee<Self>, Tee<Self>)
use_alloc only.§fn map_ok<F, T, U, E>(self, f: F) -> MapSpecialCase<Self, MapSpecialCaseFnOk<F>>
fn map_ok<F, T, U, E>(self, f: F) -> MapSpecialCase<Self, MapSpecialCaseFnOk<F>>
Result::Ok value. Result::Err values are
unchanged. Read more§fn filter_ok<F, T, E>(self, f: F) -> FilterOk<Self, F> ⓘ
fn filter_ok<F, T, E>(self, f: F) -> FilterOk<Self, F> ⓘ
Result::Ok
value with the provided closure. Result::Err values are
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fn filter_map_ok<F, T, U, E>(self, f: F) -> FilterMapOk<Self, F> ⓘ
Result::Ok value with the provided closure. Result::Err
values are unchanged. Read more§fn flatten_ok<T, E>(self) -> FlattenOk<Self, T, E> ⓘ
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Result::Ok value into
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fn process_results<F, T, E, R>(self, processor: F) -> Result<R, E>
Result values instead. Read more§fn merge<J>(
self,
other: J,
) -> MergeBy<Self, <J as IntoIterator>::IntoIter, MergeLte> ⓘ
fn merge<J>( self, other: J, ) -> MergeBy<Self, <J as IntoIterator>::IntoIter, MergeLte> ⓘ
§fn merge_by<J, F>(
self,
other: J,
is_first: F,
) -> MergeBy<Self, <J as IntoIterator>::IntoIter, F> ⓘ
fn merge_by<J, F>( self, other: J, is_first: F, ) -> MergeBy<Self, <J as IntoIterator>::IntoIter, F> ⓘ
§fn merge_join_by<J, F, T>(
self,
other: J,
cmp_fn: F,
) -> MergeBy<Self, <J as IntoIterator>::IntoIter, MergeFuncLR<F, <F as FuncLR<Self::Item, <<J as IntoIterator>::IntoIter as Iterator>::Item>>::T>> ⓘ
fn merge_join_by<J, F, T>( self, other: J, cmp_fn: F, ) -> MergeBy<Self, <J as IntoIterator>::IntoIter, MergeFuncLR<F, <F as FuncLR<Self::Item, <<J as IntoIterator>::IntoIter as Iterator>::Item>>::T>> ⓘ
§fn kmerge(self) -> KMergeBy<<Self::Item as IntoIterator>::IntoIter, KMergeByLt> ⓘ
fn kmerge(self) -> KMergeBy<<Self::Item as IntoIterator>::IntoIter, KMergeByLt> ⓘ
use_alloc only.§fn kmerge_by<F>(
self,
first: F,
) -> KMergeBy<<Self::Item as IntoIterator>::IntoIter, F> ⓘwhere
Self: Sized,
Self::Item: IntoIterator,
F: FnMut(&<Self::Item as IntoIterator>::Item, &<Self::Item as IntoIterator>::Item) -> bool,
fn kmerge_by<F>(
self,
first: F,
) -> KMergeBy<<Self::Item as IntoIterator>::IntoIter, F> ⓘwhere
Self: Sized,
Self::Item: IntoIterator,
F: FnMut(&<Self::Item as IntoIterator>::Item, &<Self::Item as IntoIterator>::Item) -> bool,
use_alloc only.§fn cartesian_product<J>(
self,
other: J,
) -> Product<Self, <J as IntoIterator>::IntoIter> ⓘ
fn cartesian_product<J>( self, other: J, ) -> Product<Self, <J as IntoIterator>::IntoIter> ⓘ
self and J. Read more§fn multi_cartesian_product(
self,
) -> MultiProduct<<Self::Item as IntoIterator>::IntoIter> ⓘwhere
Self: Sized,
Self::Item: IntoIterator,
<Self::Item as IntoIterator>::IntoIter: Clone,
<Self::Item as IntoIterator>::Item: Clone,
fn multi_cartesian_product(
self,
) -> MultiProduct<<Self::Item as IntoIterator>::IntoIter> ⓘwhere
Self: Sized,
Self::Item: IntoIterator,
<Self::Item as IntoIterator>::IntoIter: Clone,
<Self::Item as IntoIterator>::Item: Clone,
use_alloc only.self. Read more§fn coalesce<F>(self, f: F) -> CoalesceBy<Self, F, NoCount>
fn coalesce<F>(self, f: F) -> CoalesceBy<Self, F, NoCount>
§fn dedup(self) -> CoalesceBy<Self, DedupPred2CoalescePred<DedupEq>, NoCount>
fn dedup(self) -> CoalesceBy<Self, DedupPred2CoalescePred<DedupEq>, NoCount>
§fn dedup_by<Cmp>(
self,
cmp: Cmp,
) -> CoalesceBy<Self, DedupPred2CoalescePred<Cmp>, NoCount>
fn dedup_by<Cmp>( self, cmp: Cmp, ) -> CoalesceBy<Self, DedupPred2CoalescePred<Cmp>, NoCount>
§fn dedup_with_count(
self,
) -> CoalesceBy<Self, DedupPredWithCount2CoalescePred<DedupEq>, WithCount>where
Self: Sized,
fn dedup_with_count(
self,
) -> CoalesceBy<Self, DedupPredWithCount2CoalescePred<DedupEq>, WithCount>where
Self: Sized,
§fn dedup_by_with_count<Cmp>(
self,
cmp: Cmp,
) -> CoalesceBy<Self, DedupPredWithCount2CoalescePred<Cmp>, WithCount>
fn dedup_by_with_count<Cmp>( self, cmp: Cmp, ) -> CoalesceBy<Self, DedupPredWithCount2CoalescePred<Cmp>, WithCount>
§fn duplicates(self) -> DuplicatesBy<Self, Self::Item, ById>
fn duplicates(self) -> DuplicatesBy<Self, Self::Item, ById>
use_std only.§fn duplicates_with_hasher<S>(
self,
hash_builder: S,
) -> DuplicatesBy<Self, Self::Item, ById, S>
fn duplicates_with_hasher<S>( self, hash_builder: S, ) -> DuplicatesBy<Self, Self::Item, ById, S>
use_std only.§fn duplicates_by<V, F>(self, f: F) -> DuplicatesBy<Self, V, ByFn<F>>
fn duplicates_by<V, F>(self, f: F) -> DuplicatesBy<Self, V, ByFn<F>>
use_std only.§fn duplicates_by_with_hasher<V, F, S>(
self,
f: F,
hash_builder: S,
) -> DuplicatesBy<Self, V, ByFn<F>, S>
fn duplicates_by_with_hasher<V, F, S>( self, f: F, hash_builder: S, ) -> DuplicatesBy<Self, V, ByFn<F>, S>
use_std only.§fn unique(self) -> Unique<Self> ⓘ
fn unique(self) -> Unique<Self> ⓘ
use_std only.§fn unique_with_hasher<S>(self, hash_builder: S) -> Unique<Self, S> ⓘ
fn unique_with_hasher<S>(self, hash_builder: S) -> Unique<Self, S> ⓘ
use_std only.§fn unique_by<V, F>(self, f: F) -> UniqueBy<Self, V, F> ⓘ
fn unique_by<V, F>(self, f: F) -> UniqueBy<Self, V, F> ⓘ
use_std only.§fn unique_by_with_hasher<V, F, S>(
self,
f: F,
hash_builder: S,
) -> UniqueBy<Self, V, F, S> ⓘ
fn unique_by_with_hasher<V, F, S>( self, f: F, hash_builder: S, ) -> UniqueBy<Self, V, F, S> ⓘ
use_std only.§fn peeking_take_while<F>(&mut self, accept: F) -> PeekingTakeWhile<'_, Self, F> ⓘ
fn peeking_take_while<F>(&mut self, accept: F) -> PeekingTakeWhile<'_, Self, F> ⓘ
accept returns true. Read more§fn take_while_ref<F>(&mut self, accept: F) -> TakeWhileRef<'_, Self, F> ⓘ
fn take_while_ref<F>(&mut self, accept: F) -> TakeWhileRef<'_, Self, F> ⓘ
Clone-able iterator
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fn take_while_inclusive<F>(self, accept: F) -> TakeWhileInclusive<Self, F> ⓘ
true, including the element for which the predicate
first returned false. Read more§fn while_some<A>(self) -> WhileSome<Self> ⓘ
fn while_some<A>(self) -> WhileSome<Self> ⓘ
Option<A> iterator elements
and produces A. Stops on the first None encountered. Read more§fn tuple_combinations<T>(self) -> TupleCombinations<Self, T> ⓘ
fn tuple_combinations<T>(self) -> TupleCombinations<Self, T> ⓘ
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§fn array_combinations<const K: usize>(
self,
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fn array_combinations<const K: usize>( self, ) -> CombinationsGeneric<Self, [usize; K]>
use_alloc only.§fn combinations(self, k: usize) -> CombinationsGeneric<Self, Vec<usize>>
fn combinations(self, k: usize) -> CombinationsGeneric<Self, Vec<usize>>
use_alloc only.k-length combinations of
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self,
k: usize,
) -> CombinationsWithReplacementGeneric<Self, Box<[usize]>>
fn combinations_with_replacement( self, k: usize, ) -> CombinationsWithReplacementGeneric<Self, Box<[usize]>>
use_alloc only.k-length combinations of
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self,
) -> CombinationsWithReplacementGeneric<Self, [usize; K]>
fn array_combinations_with_replacement<const K: usize>( self, ) -> CombinationsWithReplacementGeneric<Self, [usize; K]>
use_alloc only.k-length combinations of
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fn permutations(self, k: usize) -> Permutations<Self> ⓘ
use_alloc only.§fn powerset(self) -> Powerset<Self> ⓘ
fn powerset(self) -> Powerset<Self> ⓘ
use_alloc only.§fn pad_using<F>(self, min: usize, f: F) -> PadUsing<Self, F> ⓘ
fn pad_using<F>(self, min: usize, f: F) -> PadUsing<Self, F> ⓘ
min by filling missing elements using a closure f. Read more§fn with_position(self) -> WithPosition<Self> ⓘwhere
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Position
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fn positions<P>(self, predicate: P) -> Positions<Self, P> ⓘ
§fn update<F>(self, updater: F) -> Update<Self, F> ⓘ
fn update<F>(self, updater: F) -> Update<Self, F> ⓘ
§fn next_array<const N: usize>(&mut self) -> Option<[Self::Item; N]>where
Self: Sized,
fn next_array<const N: usize>(&mut self) -> Option<[Self::Item; N]>where
Self: Sized,
§fn collect_array<const N: usize>(self) -> Option<[Self::Item; N]>where
Self: Sized,
fn collect_array<const N: usize>(self) -> Option<[Self::Item; N]>where
Self: Sized,
§fn next_tuple<T>(&mut self) -> Option<T>
fn next_tuple<T>(&mut self) -> Option<T>
§fn collect_tuple<T>(self) -> Option<T>
fn collect_tuple<T>(self) -> Option<T>
§fn find_position<P>(&mut self, pred: P) -> Option<(usize, Self::Item)>
fn find_position<P>(&mut self, pred: P) -> Option<(usize, Self::Item)>
§fn find_or_last<P>(self, predicate: P) -> Option<Self::Item>
fn find_or_last<P>(self, predicate: P) -> Option<Self::Item>
§fn find_or_first<P>(self, predicate: P) -> Option<Self::Item>
fn find_or_first<P>(self, predicate: P) -> Option<Self::Item>
§fn contains<Q>(&mut self, query: &Q) -> bool
fn contains<Q>(&mut self, query: &Q) -> bool
true if the given item is present in this iterator. Read more§fn all_equal_value(
&mut self,
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fn all_equal_value( &mut self, ) -> Result<Self::Item, AllEqualValueError<Self::Item>>
§fn all_unique(&mut self) -> bool
fn all_unique(&mut self) -> bool
use_std only.§fn all_unique_with_hasher<S>(&mut self, hash_builder: S) -> bool
fn all_unique_with_hasher<S>(&mut self, hash_builder: S) -> bool
use_std only.§fn dropping(self, n: usize) -> Selfwhere
Self: Sized,
fn dropping(self, n: usize) -> Selfwhere
Self: Sized,
n elements from the iterator eagerly,
and return the same iterator again. Read more§fn dropping_back(self, n: usize) -> Selfwhere
Self: Sized + DoubleEndedIterator,
fn dropping_back(self, n: usize) -> Selfwhere
Self: Sized + DoubleEndedIterator,
n elements from the iterator eagerly,
and return the same iterator again. Read more§fn collect_vec(self) -> Vec<Self::Item>where
Self: Sized,
fn collect_vec(self) -> Vec<Self::Item>where
Self: Sized,
use_alloc only..collect_vec() is simply a type specialization of Iterator::collect,
for convenience.§fn try_collect<T, U, E>(self) -> Result<U, E>
fn try_collect<T, U, E>(self) -> Result<U, E>
§fn set_from<'a, A, J>(&mut self, from: J) -> usize
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self from the from iterator,
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fn format(self, sep: &str) -> Format<'_, Self>where
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sep. Read more§fn format_with<F>(self, sep: &str, format: F) -> FormatWith<'_, Self, F>
fn format_with<F>(self, sep: &str, format: F) -> FormatWith<'_, Self, F>
sep. Read more§fn fold_ok<A, E, B, F>(&mut self, start: B, f: F) -> Result<B, E>
fn fold_ok<A, E, B, F>(&mut self, start: B, f: F) -> Result<B, E>
Result values from an iterator. Read more§fn fold_options<A, B, F>(&mut self, start: B, f: F) -> Option<B>
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Option values from an iterator. Read more§fn fold1<F>(self, f: F) -> Option<Self::Item>
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§fn tree_reduce<F>(self, f: F) -> Option<Self::Item>
fn tree_reduce<F>(self, f: F) -> Option<Self::Item>
§fn tree_fold1<F>(self, f: F) -> Option<Self::Item>
fn tree_fold1<F>(self, f: F) -> Option<Self::Item>
Use .tree_reduce() instead
.tree_reduce().§fn fold_while<B, F>(&mut self, init: B, f: F) -> FoldWhile<B>
fn fold_while<B, F>(&mut self, init: B, f: F) -> FoldWhile<B>
§fn product1<P>(self) -> Option<P>
fn product1<P>(self) -> Option<P>
§fn sorted_unstable(self) -> IntoIter<Self::Item> ⓘ
fn sorted_unstable(self) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn sorted_unstable_by<F>(self, cmp: F) -> IntoIter<Self::Item> ⓘ
fn sorted_unstable_by<F>(self, cmp: F) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn sorted_unstable_by_key<K, F>(self, f: F) -> IntoIter<Self::Item> ⓘ
fn sorted_unstable_by_key<K, F>(self, f: F) -> IntoIter<Self::Item> ⓘ
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fn sorted(self) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn sorted_by<F>(self, cmp: F) -> IntoIter<Self::Item> ⓘ
fn sorted_by<F>(self, cmp: F) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn sorted_by_key<K, F>(self, f: F) -> IntoIter<Self::Item> ⓘ
fn sorted_by_key<K, F>(self, f: F) -> IntoIter<Self::Item> ⓘ
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fn sorted_by_cached_key<K, F>(self, f: F) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn k_smallest(self, k: usize) -> IntoIter<Self::Item> ⓘ
fn k_smallest(self, k: usize) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn k_smallest_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item> ⓘ
fn k_smallest_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn k_smallest_by_key<F, K>(self, k: usize, key: F) -> IntoIter<Self::Item> ⓘ
fn k_smallest_by_key<F, K>(self, k: usize, key: F) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn k_smallest_relaxed(self, k: usize) -> IntoIter<Self::Item> ⓘ
fn k_smallest_relaxed(self, k: usize) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn k_smallest_relaxed_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item> ⓘ
fn k_smallest_relaxed_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn k_smallest_relaxed_by_key<F, K>(
self,
k: usize,
key: F,
) -> IntoIter<Self::Item> ⓘ
fn k_smallest_relaxed_by_key<F, K>( self, k: usize, key: F, ) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn k_largest(self, k: usize) -> IntoIter<Self::Item> ⓘ
fn k_largest(self, k: usize) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn k_largest_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item> ⓘ
fn k_largest_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn k_largest_by_key<F, K>(self, k: usize, key: F) -> IntoIter<Self::Item> ⓘ
fn k_largest_by_key<F, K>(self, k: usize, key: F) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn k_largest_relaxed(self, k: usize) -> IntoIter<Self::Item> ⓘ
fn k_largest_relaxed(self, k: usize) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn k_largest_relaxed_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item> ⓘ
fn k_largest_relaxed_by<F>(self, k: usize, cmp: F) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn k_largest_relaxed_by_key<F, K>(
self,
k: usize,
key: F,
) -> IntoIter<Self::Item> ⓘ
fn k_largest_relaxed_by_key<F, K>( self, k: usize, key: F, ) -> IntoIter<Self::Item> ⓘ
use_alloc only.§fn tail(self, n: usize) -> IntoIter<Self::Item> ⓘwhere
Self: Sized,
fn tail(self, n: usize) -> IntoIter<Self::Item> ⓘwhere
Self: Sized,
use_alloc only.n elements. Read more§fn partition_map<A, B, F, L, R>(self, predicate: F) -> (A, B)
fn partition_map<A, B, F, L, R>(self, predicate: F) -> (A, B)
Iterator::partition, each partition may
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Results into one list of all the Ok elements
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fn into_group_map<K, V>(self) -> HashMap<K, Vec<V>>
use_std only.HashMap of keys mapped to Vecs of values. Keys and values
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self,
hash_builder: S,
) -> HashMap<K, Vec<V>, S>
fn into_group_map_with_hasher<K, V, S>( self, hash_builder: S, ) -> HashMap<K, Vec<V>, S>
use_std only.HashMap of keys mapped to Vecs of values, using the hash builder for hashing.
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fn into_group_map_by<K, V, F>(self, f: F) -> HashMap<K, Vec<V>>
use_std only.HashMap of keys mapped to Vecs of values. The key is specified
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self,
f: F,
hash_builder: S,
) -> HashMap<K, Vec<V>, S>
fn into_group_map_by_with_hasher<K, V, F, S>( self, f: F, hash_builder: S, ) -> HashMap<K, Vec<V>, S>
use_std only.HashMap of keys mapped to Vecs of values, using the hash builder for hashing.
See .into_group_map_by() for more information. Read more§fn into_grouping_map<K, V>(self) -> GroupingMap<Self>
fn into_grouping_map<K, V>(self) -> GroupingMap<Self>
use_std only.GroupingMap to be used later with one of the efficient
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self,
hash_builder: S,
) -> GroupingMap<Self, S>
fn into_grouping_map_with_hasher<K, V, S>( self, hash_builder: S, ) -> GroupingMap<Self, S>
use_std only.GroupingMap to be used later with one of the efficient
group-and-fold operations it allows to perform, using the specified hash builder for
hashing the elements.
See .into_grouping_map() for more information.§fn into_grouping_map_by<K, V, F>(
self,
key_mapper: F,
) -> GroupingMap<MapSpecialCase<Self, GroupingMapFn<F>>>
fn into_grouping_map_by<K, V, F>( self, key_mapper: F, ) -> GroupingMap<MapSpecialCase<Self, GroupingMapFn<F>>>
use_std only.GroupingMap to be used later with one of the efficient
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self,
key_mapper: F,
hash_builder: S,
) -> GroupingMap<MapSpecialCase<Self, GroupingMapFn<F>>, S>
fn into_grouping_map_by_with_hasher<K, V, F, S>( self, key_mapper: F, hash_builder: S, ) -> GroupingMap<MapSpecialCase<Self, GroupingMapFn<F>>, S>
use_std only.GroupingMap to be used later with one of the efficient
group-and-fold operations it allows to perform, using the specified hash builder for
hashing the keys.
See .into_grouping_map_by() for more information.§fn min_set(self) -> Vec<Self::Item>
fn min_set(self) -> Vec<Self::Item>
use_alloc only.§fn min_set_by<F>(self, compare: F) -> Vec<Self::Item>
fn min_set_by<F>(self, compare: F) -> Vec<Self::Item>
use_alloc only.§fn min_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
fn min_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
use_alloc only.§fn max_set(self) -> Vec<Self::Item>
fn max_set(self) -> Vec<Self::Item>
use_alloc only.§fn max_set_by<F>(self, compare: F) -> Vec<Self::Item>
fn max_set_by<F>(self, compare: F) -> Vec<Self::Item>
use_alloc only.§fn max_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
fn max_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
use_alloc only.§fn minmax(self) -> MinMaxResult<Self::Item>
fn minmax(self) -> MinMaxResult<Self::Item>
§fn minmax_by_key<K, F>(self, key: F) -> MinMaxResult<Self::Item>
fn minmax_by_key<K, F>(self, key: F) -> MinMaxResult<Self::Item>
§fn minmax_by<F>(self, compare: F) -> MinMaxResult<Self::Item>
fn minmax_by<F>(self, compare: F) -> MinMaxResult<Self::Item>
§fn position_max(self) -> Option<usize>
fn position_max(self) -> Option<usize>
§fn position_max_by_key<K, F>(self, key: F) -> Option<usize>
fn position_max_by_key<K, F>(self, key: F) -> Option<usize>
§fn position_max_by<F>(self, compare: F) -> Option<usize>
fn position_max_by<F>(self, compare: F) -> Option<usize>
§fn position_min(self) -> Option<usize>
fn position_min(self) -> Option<usize>
§fn position_min_by_key<K, F>(self, key: F) -> Option<usize>
fn position_min_by_key<K, F>(self, key: F) -> Option<usize>
§fn position_min_by<F>(self, compare: F) -> Option<usize>
fn position_min_by<F>(self, compare: F) -> Option<usize>
§fn position_minmax(self) -> MinMaxResult<usize>
fn position_minmax(self) -> MinMaxResult<usize>
§fn position_minmax_by_key<K, F>(self, key: F) -> MinMaxResult<usize>
fn position_minmax_by_key<K, F>(self, key: F) -> MinMaxResult<usize>
§fn position_minmax_by<F>(self, compare: F) -> MinMaxResult<usize>
fn position_minmax_by<F>(self, compare: F) -> MinMaxResult<usize>
§fn exactly_one(self) -> Result<Self::Item, ExactlyOneError<Self>>where
Self: Sized,
fn exactly_one(self) -> Result<Self::Item, ExactlyOneError<Self>>where
Self: Sized,
§fn at_most_one(self) -> Result<Option<Self::Item>, ExactlyOneError<Self>>where
Self: Sized,
fn at_most_one(self) -> Result<Option<Self::Item>, ExactlyOneError<Self>>where
Self: Sized,
Ok(None) will be returned. If the iterator yields
exactly one element, that element will be returned, otherwise an error will be returned
containing an iterator that has the same output as the input iterator. Read more§fn multipeek(self) -> MultiPeek<Self> ⓘwhere
Self: Sized,
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Self: Sized,
use_alloc only..next()
values without advancing the base iterator. Read more§fn counts(self) -> HashMap<Self::Item, usize>
fn counts(self) -> HashMap<Self::Item, usize>
use_std only.HashMap which
contains each item that appears in the iterator and the number
of times it appears. Read more§fn counts_with_hasher<S>(self, hash_builder: S) -> HashMap<Self::Item, usize, S>
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use_std only.HashMap the same way
.counts() does, but use the specified hash builder for hashing.§fn counts_by<K, F>(self, f: F) -> HashMap<K, usize>
fn counts_by<K, F>(self, f: F) -> HashMap<K, usize>
use_std only.HashMap which
contains each item that appears in the iterator and the number
of times it appears,
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self,
f: F,
hash_builder: S,
) -> HashMap<K, usize, S>
fn counts_by_with_hasher<K, F, S>( self, f: F, hash_builder: S, ) -> HashMap<K, usize, S>
use_std only.HashMap the same way
.counts_by() does, but use the specified hash builder for hashing.§fn multiunzip<FromI>(self) -> FromIwhere
Self: Sized + MultiUnzip<FromI>,
fn multiunzip<FromI>(self) -> FromIwhere
Self: Sized + MultiUnzip<FromI>,
§fn try_len(&self) -> Result<usize, (usize, Option<usize>)>
fn try_len(&self) -> Result<usize, (usize, Option<usize>)>
self.size_hint(). Read more§fn strip_prefix<Prefix>(
self,
prefix: Prefix,
) -> Result<Self, StripPrefixError<Self, <Prefix as IntoIterator>::IntoIter, Self::Item>>
fn strip_prefix<Prefix>( self, prefix: Prefix, ) -> Result<Self, StripPrefixError<Self, <Prefix as IntoIterator>::IntoIter, Self::Item>>
§fn strip_prefix_by<Prefix, F>(
self,
prefix: Prefix,
eq: F,
) -> Result<Self, StripPrefixError<Self, <Prefix as IntoIterator>::IntoIter, Self::Item>>where
Self: Sized,
Prefix: IntoIterator,
F: FnMut(&Self::Item, &<Prefix as IntoIterator>::Item) -> bool,
fn strip_prefix_by<Prefix, F>(
self,
prefix: Prefix,
eq: F,
) -> Result<Self, StripPrefixError<Self, <Prefix as IntoIterator>::IntoIter, Self::Item>>where
Self: Sized,
Prefix: IntoIterator,
F: FnMut(&Self::Item, &<Prefix as IntoIterator>::Item) -> bool,
eq to compare items. Read more§impl<IT> MultiUnzip<()> for IT
impl<IT> MultiUnzip<()> for IT
§fn multiunzip(self)
fn multiunzip(self)
§impl<IT> MultiUnzip<()> for IT
impl<IT> MultiUnzip<()> for IT
§fn multiunzip(self)
fn multiunzip(self)
§impl<IT, A, FromA, B, FromB> MultiUnzip<(FromA, FromB)> for IT
impl<IT, A, FromA, B, FromB> MultiUnzip<(FromA, FromB)> for IT
§fn multiunzip(self) -> (FromA, FromB)
fn multiunzip(self) -> (FromA, FromB)
§impl<IT, A, FromA, B, FromB> MultiUnzip<(FromA, FromB)> for IT
impl<IT, A, FromA, B, FromB> MultiUnzip<(FromA, FromB)> for IT
§fn multiunzip(self) -> (FromA, FromB)
fn multiunzip(self) -> (FromA, FromB)
§impl<IT, A, FromA, B, FromB, C, FromC> MultiUnzip<(FromA, FromB, FromC)> for IT
impl<IT, A, FromA, B, FromB, C, FromC> MultiUnzip<(FromA, FromB, FromC)> for IT
§fn multiunzip(self) -> (FromA, FromB, FromC)
fn multiunzip(self) -> (FromA, FromB, FromC)
§impl<IT, A, FromA, B, FromB, C, FromC> MultiUnzip<(FromA, FromB, FromC)> for IT
impl<IT, A, FromA, B, FromB, C, FromC> MultiUnzip<(FromA, FromB, FromC)> for IT
§fn multiunzip(self) -> (FromA, FromB, FromC)
fn multiunzip(self) -> (FromA, FromB, FromC)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD> MultiUnzip<(FromA, FromB, FromC, FromD)> for IT
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD> MultiUnzip<(FromA, FromB, FromC, FromD)> for IT
§fn multiunzip(self) -> (FromA, FromB, FromC, FromD)
fn multiunzip(self) -> (FromA, FromB, FromC, FromD)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD> MultiUnzip<(FromA, FromB, FromC, FromD)> for IT
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD> MultiUnzip<(FromA, FromB, FromC, FromD)> for IT
§fn multiunzip(self) -> (FromA, FromB, FromC, FromD)
fn multiunzip(self) -> (FromA, FromB, FromC, FromD)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE> MultiUnzip<(FromA, FromB, FromC, FromD, FromE)> for IT
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE> MultiUnzip<(FromA, FromB, FromC, FromD, FromE)> for IT
§fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE)
fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE> MultiUnzip<(FromA, FromB, FromC, FromD, FromE)> for IT
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE> MultiUnzip<(FromA, FromB, FromC, FromD, FromE)> for IT
§fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE)
fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF)> for IT
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF)> for IT
§fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF)
fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF)> for IT
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF)> for IT
§fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF)
fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG)> for IT
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG)> for IT
§fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG)
fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG)> for IT
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG)> for IT
§fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG)
fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH)> for IT
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH)> for IT
§fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH)
fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH)> for IT
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH)> for IT
§fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH)
fn multiunzip(self) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
§fn multiunzip(
self,
) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI)
fn multiunzip( self, ) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
§fn multiunzip(
self,
) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI)
fn multiunzip( self, ) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
FromJ: Default + Extend<J>,
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
FromJ: Default + Extend<J>,
§fn multiunzip(
self,
) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ)
fn multiunzip( self, ) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
FromJ: Default + Extend<J>,
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
FromJ: Default + Extend<J>,
§fn multiunzip(
self,
) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ)
fn multiunzip( self, ) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ, K, FromK> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J, K)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
FromJ: Default + Extend<J>,
FromK: Default + Extend<K>,
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ, K, FromK> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J, K)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
FromJ: Default + Extend<J>,
FromK: Default + Extend<K>,
§fn multiunzip(
self,
) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK)
fn multiunzip( self, ) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ, K, FromK> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J, K)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
FromJ: Default + Extend<J>,
FromK: Default + Extend<K>,
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ, K, FromK> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J, K)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
FromJ: Default + Extend<J>,
FromK: Default + Extend<K>,
§fn multiunzip(
self,
) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK)
fn multiunzip( self, ) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ, K, FromK, L, FromL> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK, FromL)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J, K, L)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
FromJ: Default + Extend<J>,
FromK: Default + Extend<K>,
FromL: Default + Extend<L>,
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ, K, FromK, L, FromL> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK, FromL)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J, K, L)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
FromJ: Default + Extend<J>,
FromK: Default + Extend<K>,
FromL: Default + Extend<L>,
§fn multiunzip(
self,
) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK, FromL)
fn multiunzip( self, ) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK, FromL)
§impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ, K, FromK, L, FromL> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK, FromL)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J, K, L)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
FromJ: Default + Extend<J>,
FromK: Default + Extend<K>,
FromL: Default + Extend<L>,
impl<IT, A, FromA, B, FromB, C, FromC, D, FromD, E, FromE, F, FromF, G, FromG, H, FromH, I, FromI, J, FromJ, K, FromK, L, FromL> MultiUnzip<(FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK, FromL)> for ITwhere
IT: Iterator<Item = (A, B, C, D, E, F, G, H, I, J, K, L)>,
FromA: Default + Extend<A>,
FromB: Default + Extend<B>,
FromC: Default + Extend<C>,
FromD: Default + Extend<D>,
FromE: Default + Extend<E>,
FromF: Default + Extend<F>,
FromG: Default + Extend<G>,
FromH: Default + Extend<H>,
FromI: Default + Extend<I>,
FromJ: Default + Extend<J>,
FromK: Default + Extend<K>,
FromL: Default + Extend<L>,
§fn multiunzip(
self,
) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK, FromL)
fn multiunzip( self, ) -> (FromA, FromB, FromC, FromD, FromE, FromF, FromG, FromH, FromI, FromJ, FromK, FromL)
§impl<IT, A, FromA> MultiUnzip<(FromA,)> for IT
impl<IT, A, FromA> MultiUnzip<(FromA,)> for IT
§fn multiunzip(self) -> (FromA,)
fn multiunzip(self) -> (FromA,)
§impl<IT, A, FromA> MultiUnzip<(FromA,)> for IT
impl<IT, A, FromA> MultiUnzip<(FromA,)> for IT
§fn multiunzip(self) -> (FromA,)
fn multiunzip(self) -> (FromA,)
§impl<T> Pointable for T
impl<T> Pointable for T
§impl<T> PolicyExt for Twhere
T: ?Sized,
impl<T> PolicyExt for Twhere
T: ?Sized,
§fn and<P, B, E>(self, other: P) -> And<T, P>
fn and<P, B, E>(self, other: P) -> And<T, P>
Policy that returns Action::Follow only if self and other return
Action::Follow. Read more§impl<T, U> RamaTryFrom<T> for Uwhere
U: TryFrom<T>,
impl<T, U> RamaTryFrom<T> for Uwhere
U: TryFrom<T>,
type Error = <U as TryFrom<T>>::Error
fn rama_try_from(value: T) -> Result<U, <U as RamaTryFrom<T>>::Error>
§impl<T, U, CrateMarker> RamaTryInto<U, CrateMarker> for Twhere
U: RamaTryFrom<T, CrateMarker>,
impl<T, U, CrateMarker> RamaTryInto<U, CrateMarker> for Twhere
U: RamaTryFrom<T, CrateMarker>,
type Error = <U as RamaTryFrom<T, CrateMarker>>::Error
fn rama_try_into(self) -> Result<U, <U as RamaTryFrom<T, CrateMarker>>::Error>
impl<T> Read<Exclusive, BecauseExclusive> for Twhere
T: ?Sized,
§impl<T> ToStringFallible for Twhere
T: Display,
impl<T> ToStringFallible for Twhere
T: Display,
§fn try_to_string(&self) -> Result<String, TryReserveError>
fn try_to_string(&self) -> Result<String, TryReserveError>
ToString::to_string, but without panic on OOM.
§impl<Fut> TryFutureExt for Fut
impl<Fut> TryFutureExt for Fut
§fn flatten_sink<Item>(self) -> FlattenSink<Self, Self::Ok>
fn flatten_sink<Item>(self) -> FlattenSink<Self, Self::Ok>
sink only.§fn map_ok<T, F>(self, f: F) -> MapOk<Self, F> ⓘ
fn map_ok<T, F>(self, f: F) -> MapOk<Self, F> ⓘ
§fn map_ok_or_else<T, E, F>(self, e: E, f: F) -> MapOkOrElse<Self, F, E> ⓘ
fn map_ok_or_else<T, E, F>(self, e: E, f: F) -> MapOkOrElse<Self, F, E> ⓘ
§fn map_err<E, F>(self, f: F) -> MapErr<Self, F> ⓘ
fn map_err<E, F>(self, f: F) -> MapErr<Self, F> ⓘ
§fn and_then<Fut, F>(self, f: F) -> AndThen<Self, Fut, F> ⓘ
fn and_then<Fut, F>(self, f: F) -> AndThen<Self, Fut, F> ⓘ
§fn or_else<Fut, F>(self, f: F) -> OrElse<Self, Fut, F> ⓘ
fn or_else<Fut, F>(self, f: F) -> OrElse<Self, Fut, F> ⓘ
§fn inspect_ok<F>(self, f: F) -> InspectOk<Self, F> ⓘ
fn inspect_ok<F>(self, f: F) -> InspectOk<Self, F> ⓘ
§fn inspect_err<F>(self, f: F) -> InspectErr<Self, F> ⓘ
fn inspect_err<F>(self, f: F) -> InspectErr<Self, F> ⓘ
§fn try_flatten(self) -> TryFlatten<Self, Self::Ok> ⓘ
fn try_flatten(self) -> TryFlatten<Self, Self::Ok> ⓘ
§fn try_flatten_stream(self) -> TryFlattenStream<Self>
fn try_flatten_stream(self) -> TryFlattenStream<Self>
§fn unwrap_or_else<F>(self, f: F) -> UnwrapOrElse<Self, F> ⓘ
fn unwrap_or_else<F>(self, f: F) -> UnwrapOrElse<Self, F> ⓘ
§fn into_future(self) -> IntoFuture<Self> ⓘwhere
Self: Sized,
fn into_future(self) -> IntoFuture<Self> ⓘwhere
Self: Sized,
§fn try_poll_unpin(
&mut self,
cx: &mut Context<'_>,
) -> Poll<Result<Self::Ok, Self::Error>>where
Self: Unpin,
fn try_poll_unpin(
&mut self,
cx: &mut Context<'_>,
) -> Poll<Result<Self::Ok, Self::Error>>where
Self: Unpin,
TryFuture::try_poll on Unpin
future types.§impl<I> UnicodeNormalization<I> for I
impl<I> UnicodeNormalization<I> for I
§fn nfd(self) -> Decompositions<I> ⓘ
fn nfd(self) -> Decompositions<I> ⓘ
§fn nfkd(self) -> Decompositions<I> ⓘ
fn nfkd(self) -> Decompositions<I> ⓘ
§fn nfc(self) -> Recompositions<I> ⓘ
fn nfc(self) -> Recompositions<I> ⓘ
§fn nfkc(self) -> Recompositions<I> ⓘ
fn nfkc(self) -> Recompositions<I> ⓘ
§fn cjk_compat_variants(self) -> Replacements<I> ⓘ
fn cjk_compat_variants(self) -> Replacements<I> ⓘ
§fn stream_safe(self) -> StreamSafe<I> ⓘ
fn stream_safe(self) -> StreamSafe<I> ⓘ
§impl<V, F> ValueFormatter<&V> for F
impl<V, F> ValueFormatter<&V> for F
§fn format_value(writer: impl ValueWriter, value: &&V)
fn format_value(writer: impl ValueWriter, value: &&V)
value to writer§impl<V, F> ValueFormatter<Arc<V>> for F
impl<V, F> ValueFormatter<Arc<V>> for F
§fn format_value(writer: impl ValueWriter, value: &Arc<V>)
fn format_value(writer: impl ValueWriter, value: &Arc<V>)
value to writer§impl<V, F> ValueFormatter<Box<V>> for F
impl<V, F> ValueFormatter<Box<V>> for F
§fn format_value(writer: impl ValueWriter, value: &Box<V>)
fn format_value(writer: impl ValueWriter, value: &Box<V>)
value to writer§impl<V, F> ValueFormatter<Cow<'_, V>> for F
impl<V, F> ValueFormatter<Cow<'_, V>> for F
§fn format_value(writer: impl ValueWriter, value: &Cow<'_, V>)
fn format_value(writer: impl ValueWriter, value: &Cow<'_, V>)
value to writer§impl<V, F> ValueFormatter<Option<V>> for Fwhere
F: ValueFormatter<V> + ?Sized,
impl<V, F> ValueFormatter<Option<V>> for Fwhere
F: ValueFormatter<V> + ?Sized,
§fn format_value(writer: impl ValueWriter, value: &Option<V>)
fn format_value(writer: impl ValueWriter, value: &Option<V>)
value to writer