Struct RChunksMut
pub struct RChunksMut<'a, T, O>{ /* private fields */ }Expand description
§Exclusive Bit-Slice Chunking
This iterator yields successive non-overlapping mutable chunks of a bit-slice. Chunking advances one subslice at a time, starting at the end of the bit-slice.
If the original bit-slice’s length is not evenly divided by the chunk width, then the final chunk will be the remainder, and will be shorter than requested.
It is created by the BitSlice::chunks_mut method.
§Original
§API Differences
This iterator marks all yielded bit-slices as ::Aliased.
§Examples
use bitvec::prelude::*;
let bits = bits![mut 0, 1, 0, 0, 0, 1, 1, 1];
let mut chunks = unsafe {
bits.rchunks_mut(3).remove_alias()
};
chunks.next().unwrap().fill(false);
chunks.next().unwrap().fill(true);
chunks.next().unwrap().copy_from_bitslice(bits![1, 0]);
assert!(chunks.next().is_none());
assert_eq!(bits, bits![1, 0, 1, 1, 1, 0, 0, 0]);Implementations§
§impl<'a, T, O> RChunksMut<'a, T, O>
impl<'a, T, O> RChunksMut<'a, T, O>
pub unsafe fn remove_alias(self) -> RChunksMutNoAlias<'a, T, O> ⓘ
pub unsafe fn remove_alias(self) -> RChunksMutNoAlias<'a, T, O> ⓘ
Removes a layer of ::Alias tainting from the yielded item.
§Safety
You must consume the adapted iterator in a loop that does not allow multiple yielded items to exist in the same scope. Each yielded item must have a completely non-overlapping lifetime from all the others.
The items yielded by this iterator will not have an additional alias marker applied to them, so their use in an iteration sequence will not be penalized when the surrounding code ensures that each item yielded by the iterator is destroyed before the next is produced.
This adapter does not convert the iterator to use the
T::Mem raw underlying type, as it can be applied to an
iterator over an already-aliased bit-slice and must preserve the
initial condition. Its only effect is to remove the additional
T::Alias marker imposed by the mutable iterators.
Violating this requirement causes memory-unsafety and breaks Rust’s data-race guarantees.
Trait Implementations§
§impl<'a, T, O> Debug for RChunksMut<'a, T, O>
impl<'a, T, O> Debug for RChunksMut<'a, T, O>
§impl<T, O> DoubleEndedIterator for RChunksMut<'_, T, O>
impl<T, O> DoubleEndedIterator for RChunksMut<'_, T, O>
§fn next_back(&mut self) -> Option<<RChunksMut<'_, T, O> as Iterator>::Item>
fn next_back(&mut self) -> Option<<RChunksMut<'_, T, O> as Iterator>::Item>
§fn nth_back(
&mut self,
n: usize,
) -> Option<<RChunksMut<'_, T, O> as Iterator>::Item>
fn nth_back( &mut self, n: usize, ) -> Option<<RChunksMut<'_, T, O> as Iterator>::Item>
nth element from the end of the iterator. Read moreSource§fn advance_back_by(&mut self, n: usize) -> Result<(), NonZero<usize>>
fn advance_back_by(&mut self, n: usize) -> Result<(), NonZero<usize>>
iter_advance_by #77404)n elements. Read more1.27.0 · Source§fn try_rfold<B, F, R>(&mut self, init: B, f: F) -> R
fn try_rfold<B, F, R>(&mut self, init: B, f: F) -> R
Iterator::try_fold(): it takes
elements starting from the back of the iterator. Read more§impl<T, O> ExactSizeIterator for RChunksMut<'_, T, O>
impl<T, O> ExactSizeIterator for RChunksMut<'_, T, O>
§impl<'a, T, O> Iterator for RChunksMut<'a, T, O>
impl<'a, T, O> Iterator for RChunksMut<'a, T, O>
§type Item = &'a mut BitSlice<<T as BitStore>::Alias, O>
type Item = &'a mut BitSlice<<T as BitStore>::Alias, O>
§fn next(&mut self) -> Option<<RChunksMut<'a, T, O> as Iterator>::Item>
fn next(&mut self) -> Option<<RChunksMut<'a, T, O> as Iterator>::Item>
§fn nth(&mut self, n: usize) -> Option<<RChunksMut<'a, T, O> as Iterator>::Item>
fn nth(&mut self, n: usize) -> Option<<RChunksMut<'a, T, O> as Iterator>::Item>
nth element of the iterator. Read more§fn size_hint(&self) -> (usize, Option<usize>)
fn size_hint(&self) -> (usize, Option<usize>)
§fn count(self) -> usize
fn count(self) -> usize
§fn last(self) -> Option<<RChunksMut<'a, T, O> as Iterator>::Item>
fn last(self) -> Option<<RChunksMut<'a, T, O> as Iterator>::Item>
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 #98326)N values. Read moreSource§fn advance_by(&mut self, n: usize) -> Result<(), NonZero<usize>>
fn advance_by(&mut self, n: usize) -> Result<(), NonZero<usize>>
iter_advance_by #77404)n elements. Read more1.28.0 · Source§fn step_by(self, step: usize) -> StepBy<Self> ⓘwhere
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fn intersperse(self, separator: Self::Item) -> Intersperse<Self> ⓘ
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fn intersperse_with<G>(self, separator: G) -> IntersperseWith<Self, G> ⓘ
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between adjacent items of the original iterator. Read more1.0.0 · Source§fn map<B, F>(self, f: F) -> Map<Self, F> ⓘ
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fn max(self) -> Option<Self::Item>
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fn min(self) -> Option<Self::Item>
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iter_array_chunks #100450)N elements of the iterator at a time. Read more1.11.0 · Source§fn product<P>(self) -> P
fn product<P>(self) -> P
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fn partial_cmp<I>(self, other: I) -> Option<Ordering>
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Iterator are lexicographically
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impl<T, O> FusedIterator for RChunksMut<'_, T, O>
Auto Trait Implementations§
impl<'a, T, O> Freeze for RChunksMut<'a, T, O>
impl<'a, T, O> RefUnwindSafe for RChunksMut<'a, T, O>
impl<'a, T, O> Send for RChunksMut<'a, T, O>
impl<'a, T, O> Sync for RChunksMut<'a, T, O>
impl<'a, T, O> Unpin for RChunksMut<'a, T, O>
impl<'a, T, O> !UnwindSafe for RChunksMut<'a, T, O>
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self,
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F: FnMut(&<Self::Item as IntoIterator>::Item, &<Self::Item as IntoIterator>::Item) -> bool,
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self,
first: F,
) -> KMergeBy<<Self::Item as IntoIterator>::IntoIter, F> ⓘwhere
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Self::Item: IntoIterator,
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Self::Item: IntoIterator,
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) -> MultiProduct<<Self::Item as IntoIterator>::IntoIter> ⓘwhere
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Self::Item: IntoIterator,
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§fn dedup(self) -> CoalesceBy<Self, DedupPred2CoalescePred<DedupEq>, NoCount>
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§fn dedup_with_count(
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§fn dedup_by_with_count<Cmp>(
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§fn duplicates(self) -> DuplicatesBy<Self, Self::Item, ById>
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§fn duplicates_by<V, F>(self, f: F) -> DuplicatesBy<Self, V, ByFn<F>>
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§fn unique(self) -> Unique<Self> ⓘ
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§fn unique_by<V, F>(self, f: F) -> UniqueBy<Self, V, F> ⓘ
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§fn peeking_take_while<F>(&mut self, accept: F) -> PeekingTakeWhile<'_, Self, F> ⓘ
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§fn combinations(self, k: usize) -> Combinations<Self> ⓘ
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) -> CombinationsWithReplacement<Self> ⓘ
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§fn find_position<P>(&mut self, pred: P) -> Option<(usize, Self::Item)>
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§fn find_or_last<P>(self, predicate: P) -> Option<Self::Item>
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§fn contains<Q>(&mut self, query: &Q) -> bool
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§fn all_unique(&mut self) -> bool
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§fn dropping(self, n: usize) -> Selfwhere
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§fn set_from<'a, A, J>(&mut self, from: J) -> usize
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§fn product1<P>(self) -> Option<P>
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§fn sorted_unstable(self) -> IntoIter<Self::Item> ⓘ
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§fn sorted_unstable_by<F>(self, cmp: F) -> IntoIter<Self::Item> ⓘ
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§fn sorted_unstable_by_key<K, F>(self, f: F) -> IntoIter<Self::Item> ⓘ
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Iterator::partition, each partition may
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§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>
§fn max_set_by<F>(self, compare: F) -> Vec<Self::Item>
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§fn max_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
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§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>
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§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
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fn exactly_one(self) -> Result<Self::Item, ExactlyOneError<Self>>where
Self: Sized,
§fn at_most_one(self) -> Result<Option<Self::Item>, ExactlyOneError<Self>>where
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fn at_most_one(self) -> Result<Option<Self::Item>, ExactlyOneError<Self>>where
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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,
.next()
values without advancing the base iterator. Read more§fn counts(self) -> HashMap<Self::Item, usize>
fn counts(self) -> HashMap<Self::Item, usize>
HashMap which
contains each item that appears in the iterator and the number
of times it appears. Read more§fn counts_by<K, F>(self, f: F) -> HashMap<K, usize>
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contains each item that appears in the iterator and the number
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§impl<T> Itertools for T
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§fn interleave<J>(
self,
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§fn interleave_shortest<J>(
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§fn intersperse(
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§fn intersperse_with<F>(self, element: F) -> IntersperseWith<Self, F> ⓘ
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§fn get<R>(self, index: R) -> <R as IteratorIndex<Self>>::Outputwhere
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§fn zip_longest<J>(
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§fn zip_eq<J>(self, other: J) -> ZipEq<Self, <J as IntoIterator>::IntoIter> ⓘwhere
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§fn batching<B, F>(self, f: F) -> Batching<Self, F> ⓘ
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§fn chunk_by<K, F>(self, key: F) -> ChunkBy<K, Self, F>
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§fn group_by<K, F>(self, key: F) -> ChunkBy<K, Self, F>
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.chunk_by().§fn chunks(self, size: usize) -> IntoChunks<Self>where
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§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> ⓘ
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§fn tuples<T>(self) -> Tuples<Self, T> ⓘ
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§fn tee(self) -> (Tee<Self>, Tee<Self>)
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§fn map_ok<F, T, U, E>(self, f: F) -> MapSpecialCase<Self, MapSpecialCaseFnOk<F>>
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Result values instead. Read more§fn merge<J>(
self,
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§fn merge_by<J, F>(
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§fn merge_join_by<J, F, T>(
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§fn kmerge_by<F>(
self,
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F: FnMut(&<Self::Item as IntoIterator>::Item, &<Self::Item as IntoIterator>::Item) -> bool,
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self,
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) -> KMergeBy<<Self::Item as IntoIterator>::IntoIter, F> ⓘwhere
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Self::Item: IntoIterator,
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§fn cartesian_product<J>(
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Self: Sized,
Self::Item: IntoIterator,
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Self: Sized,
Self::Item: IntoIterator,
<Self::Item as IntoIterator>::IntoIter: Clone,
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§fn dedup_with_count(
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§fn dedup_by_with_count<Cmp>(
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§fn unique_by<V, F>(self, f: F) -> UniqueBy<Self, V, F> ⓘ
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§fn peeking_take_while<F>(&mut self, accept: F) -> PeekingTakeWhile<'_, Self, F> ⓘ
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§fn collect_array<const N: usize>(self) -> Option<[Self::Item; N]>where
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§fn contains<Q>(&mut self, query: &Q) -> bool
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§fn dropping(self, n: usize) -> Selfwhere
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§fn set_from<'a, A, J>(&mut self, from: J) -> usize
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§fn sorted_unstable(self) -> IntoIter<Self::Item> ⓘ
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§fn min_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
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§fn max_set_by<F>(self, compare: F) -> Vec<Self::Item>
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§fn max_set_by_key<K, F>(self, key: F) -> Vec<Self::Item>
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§fn minmax(self) -> MinMaxResult<Self::Item>
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§fn minmax_by_key<K, F>(self, key: F) -> MinMaxResult<Self::Item>
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§fn minmax_by<F>(self, compare: F) -> MinMaxResult<Self::Item>
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§fn position_max(self) -> Option<usize>
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§fn position_max_by_key<K, F>(self, key: F) -> Option<usize>
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§fn position_max_by<F>(self, compare: F) -> Option<usize>
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§fn position_min_by<F>(self, compare: F) -> Option<usize>
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§fn position_minmax(self) -> MinMaxResult<usize>
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§fn position_minmax_by_key<K, F>(self, key: F) -> MinMaxResult<usize>
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§fn position_minmax_by<F>(self, compare: F) -> MinMaxResult<usize>
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§impl<T> Pipe for Twhere
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.tap_borrow_mut() only in debug builds, and is erased in release
builds.§fn tap_ref_dbg<R>(self, func: impl FnOnce(&R)) -> Self
fn tap_ref_dbg<R>(self, func: impl FnOnce(&R)) -> Self
.tap_ref() only in debug builds, and is erased in release
builds.§fn tap_ref_mut_dbg<R>(self, func: impl FnOnce(&mut R)) -> Self
fn tap_ref_mut_dbg<R>(self, func: impl FnOnce(&mut R)) -> Self
.tap_ref_mut() only in debug builds, and is erased in release
builds.§fn tap_deref_dbg<T>(self, func: impl FnOnce(&T)) -> Self
fn tap_deref_dbg<T>(self, func: impl FnOnce(&T)) -> Self
.tap_deref() only in debug builds, and is erased in release
builds.§impl<T> TryConv for T
impl<T> TryConv for T
§impl<T> WithSubscriber for T
impl<T> WithSubscriber for T
§fn with_subscriber<S>(self, subscriber: S) -> WithDispatch<Self> ⓘwhere
S: Into<Dispatch>,
fn with_subscriber<S>(self, subscriber: S) -> WithDispatch<Self> ⓘwhere
S: Into<Dispatch>,
§fn with_current_subscriber(self) -> WithDispatch<Self> ⓘ
fn with_current_subscriber(self) -> WithDispatch<Self> ⓘ
Source§impl<T> WithSubscriber for T
impl<T> WithSubscriber for T
Source§fn with_subscriber<S>(self, subscriber: S) -> WithDispatch<Self> ⓘwhere
S: Into<Dispatch>,
fn with_subscriber<S>(self, subscriber: S) -> WithDispatch<Self> ⓘwhere
S: Into<Dispatch>,
Source§fn with_current_subscriber(self) -> WithDispatch<Self> ⓘ
fn with_current_subscriber(self) -> WithDispatch<Self> ⓘ
impl<T> ErasedDestructor for Twhere
T: 'static,
impl<T> MaybeDebug for Twhere
T: Debug,
impl<T> MaybeSend for Twhere
T: Send,
Layout§
Note: Most layout information is completely unstable and may even differ between compilations. The only exception is types with certain repr(...) attributes. Please see the Rust Reference's “Type Layout” chapter for details on type layout guarantees.
Size: 24 bytes