pub struct Peekable<I>where
I: Iterator,{ /* private fields */ }
Expand description
Implementations§
Source§impl<I> Peekable<I>where
I: Iterator,
impl<I> Peekable<I>where
I: Iterator,
1.0.0 · Sourcepub fn peek(&mut self) -> Option<&<I as Iterator>::Item>
pub fn peek(&mut self) -> Option<&<I as Iterator>::Item>
Returns a reference to the next() value without advancing the iterator.
Like next
, if there is a value, it is wrapped in a Some(T)
.
But if the iteration is over, None
is returned.
Because peek()
returns a reference, and many iterators iterate over
references, there can be a possibly confusing situation where the
return value is a double reference. You can see this effect in the
examples below.
§Examples
Basic usage:
let xs = [1, 2, 3];
let mut iter = xs.iter().peekable();
// peek() lets us see into the future
assert_eq!(iter.peek(), Some(&&1));
assert_eq!(iter.next(), Some(&1));
assert_eq!(iter.next(), Some(&2));
// The iterator does not advance even if we `peek` multiple times
assert_eq!(iter.peek(), Some(&&3));
assert_eq!(iter.peek(), Some(&&3));
assert_eq!(iter.next(), Some(&3));
// After the iterator is finished, so is `peek()`
assert_eq!(iter.peek(), None);
assert_eq!(iter.next(), None);
1.53.0 · Sourcepub fn peek_mut(&mut self) -> Option<&mut <I as Iterator>::Item>
pub fn peek_mut(&mut self) -> Option<&mut <I as Iterator>::Item>
Returns a mutable reference to the next() value without advancing the iterator.
Like next
, if there is a value, it is wrapped in a Some(T)
.
But if the iteration is over, None
is returned.
Because peek_mut()
returns a reference, and many iterators iterate over
references, there can be a possibly confusing situation where the
return value is a double reference. You can see this effect in the examples
below.
§Examples
Basic usage:
let mut iter = [1, 2, 3].iter().peekable();
// Like with `peek()`, we can see into the future without advancing the iterator.
assert_eq!(iter.peek_mut(), Some(&mut &1));
assert_eq!(iter.peek_mut(), Some(&mut &1));
assert_eq!(iter.next(), Some(&1));
// Peek into the iterator and set the value behind the mutable reference.
if let Some(p) = iter.peek_mut() {
assert_eq!(*p, &2);
*p = &5;
}
// The value we put in reappears as the iterator continues.
assert_eq!(iter.collect::<Vec<_>>(), vec![&5, &3]);
1.51.0 · Sourcepub fn next_if(
&mut self,
func: impl FnOnce(&<I as Iterator>::Item) -> bool,
) -> Option<<I as Iterator>::Item>
pub fn next_if( &mut self, func: impl FnOnce(&<I as Iterator>::Item) -> bool, ) -> Option<<I as Iterator>::Item>
Consume and return the next value of this iterator if a condition is true.
If func
returns true
for the next value of this iterator, consume and return it.
Otherwise, return None
.
§Examples
Consume a number if it’s equal to 0.
let mut iter = (0..5).peekable();
// The first item of the iterator is 0; consume it.
assert_eq!(iter.next_if(|&x| x == 0), Some(0));
// The next item returned is now 1, so `next_if` will return `None`.
assert_eq!(iter.next_if(|&x| x == 0), None);
// `next_if` saves the value of the next item if it was not equal to `expected`.
assert_eq!(iter.next(), Some(1));
Consume any number less than 10.
let mut iter = (1..20).peekable();
// Consume all numbers less than 10
while iter.next_if(|&x| x < 10).is_some() {}
// The next value returned will be 10
assert_eq!(iter.next(), Some(10));
1.51.0 · Sourcepub fn next_if_eq<T>(&mut self, expected: &T) -> Option<<I as Iterator>::Item>
pub fn next_if_eq<T>(&mut self, expected: &T) -> Option<<I as Iterator>::Item>
Consume and return the next item if it is equal to expected
.
§Example
Consume a number if it’s equal to 0.
let mut iter = (0..5).peekable();
// The first item of the iterator is 0; consume it.
assert_eq!(iter.next_if_eq(&0), Some(0));
// The next item returned is now 1, so `next_if` will return `None`.
assert_eq!(iter.next_if_eq(&0), None);
// `next_if_eq` saves the value of the next item if it was not equal to `expected`.
assert_eq!(iter.next(), Some(1));
Trait Implementations§
Source§impl<A, T> Arbitrary for Peekable<A>
impl<A, T> Arbitrary for Peekable<A>
Source§type Parameters = <A as Arbitrary>::Parameters
type Parameters = <A as Arbitrary>::Parameters
arbitrary_with
accepts for configuration
of the generated Strategy
. Parameters must implement Default
.Source§type Strategy = Map<<A as Arbitrary>::Strategy, fn(_: A) -> Peekable<A>>
type Strategy = Map<<A as Arbitrary>::Strategy, fn(_: A) -> Peekable<A>>
Strategy
used to generate values of type Self
.Source§fn arbitrary_with(
args: <Peekable<A> as Arbitrary>::Parameters,
) -> <Peekable<A> as Arbitrary>::Strategy ⓘ
fn arbitrary_with( args: <Peekable<A> as Arbitrary>::Parameters, ) -> <Peekable<A> as Arbitrary>::Strategy ⓘ
Source§impl<A, T> ArbitraryF1<A> for Peekable<A>
impl<A, T> ArbitraryF1<A> for Peekable<A>
Source§type Parameters = ()
type Parameters = ()
lift1_with
accepts for
configuration of the lifted and generated Strategy
. Parameters
must implement Default
.Source§fn lift1_with<S>(
base: S,
_args: <Peekable<A> as ArbitraryF1<A>>::Parameters,
) -> BoxedStrategy<Peekable<A>>where
S: Strategy<Value = A> + 'static,
fn lift1_with<S>(
base: S,
_args: <Peekable<A> as ArbitraryF1<A>>::Parameters,
) -> BoxedStrategy<Peekable<A>>where
S: Strategy<Value = A> + 'static,
1.38.0 · Source§impl<I> DoubleEndedIterator for Peekable<I>where
I: DoubleEndedIterator,
impl<I> DoubleEndedIterator for Peekable<I>where
I: DoubleEndedIterator,
Source§fn next_back(&mut self) -> Option<<Peekable<I> as Iterator>::Item>
fn next_back(&mut self) -> Option<<Peekable<I> as Iterator>::Item>
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 moreSource§fn rfold<Acc, Fold>(self, init: Acc, fold: Fold) -> Acc
fn rfold<Acc, Fold>(self, init: Acc, fold: Fold) -> Acc
Source§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
)n
elements. Read more1.0.0 · Source§impl<I> ExactSizeIterator for Peekable<I>where
I: ExactSizeIterator,
impl<I> ExactSizeIterator for Peekable<I>where
I: ExactSizeIterator,
1.0.0 · Source§impl<I> Iterator for Peekable<I>where
I: Iterator,
impl<I> Iterator for Peekable<I>where
I: Iterator,
Source§fn next(&mut self) -> Option<<I as Iterator>::Item>
fn next(&mut self) -> Option<<I as Iterator>::Item>
Source§fn count(self) -> usize
fn count(self) -> usize
Source§fn nth(&mut self, n: usize) -> Option<<I as Iterator>::Item>
fn nth(&mut self, n: usize) -> Option<<I as Iterator>::Item>
n
th element of the iterator. Read moreSource§fn last(self) -> Option<<I as Iterator>::Item>
fn last(self) -> Option<<I as Iterator>::Item>
Source§fn size_hint(&self) -> (usize, Option<usize>)
fn size_hint(&self) -> (usize, Option<usize>)
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fn try_fold<B, F, R>(&mut self, init: B, f: F) -> R
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fn fold<Acc, Fold>(self, init: Acc, fold: Fold) -> Acc
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
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)N
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iter_advance_by
)n
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Self: Sized,
fn step_by(self, step: usize) -> StepBy<Self> ⓘwhere
Self: Sized,
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fn chain<U>(self, other: U) -> Chain<Self, <U as IntoIterator>::IntoIter> ⓘ
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)separator
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)separator
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fn map<B, F>(self, f: F) -> Map<Self, F> ⓘ
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fn take_while<P>(self, predicate: P) -> TakeWhile<Self, P> ⓘ
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fn map_while<B, P>(self, predicate: P) -> MapWhile<Self, P> ⓘ
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n
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fn flatten(self) -> Flatten<Self> ⓘ
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iter_map_windows
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,
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&mut self,
) -> <<Self::Item as Try>::Residual as Residual<B>>::TryType
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)true
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iter_is_partitioned
)true
precede all those that return false
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fn try_for_each<F, R>(&mut self, f: F) -> R
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&mut self,
f: impl FnMut(Self::Item, Self::Item) -> R,
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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 max_by_key<B, F>(self, f: F) -> Option<Self::Item>
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fn max_by<F>(self, compare: F) -> Option<Self::Item>
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)N
elements of the iterator at a time. Read more1.11.0 · 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
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fn partial_cmp<I>(self, other: I) -> Option<Ordering>
PartialOrd
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this Iterator
with those of another. The comparison works like short-circuit
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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
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Iterator
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fn is_sorted(self) -> bool
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fn is_sorted_by_key<F, K>(self, f: F) -> bool
Source§impl<I> PeekingNext for Peekable<I>where
I: Iterator,
impl<I> PeekingNext for Peekable<I>where
I: Iterator,
Source§impl<I> PeekingNext for Peekable<I>where
I: Iterator,
impl<I> PeekingNext for Peekable<I>where
I: Iterator,
impl<I> FusedIterator for Peekable<I>where
I: FusedIterator,
impl<I> TrustedLen for Peekable<I>where
I: TrustedLen,
Auto Trait Implementations§
impl<I> Freeze for Peekable<I>
impl<I> RefUnwindSafe for Peekable<I>
impl<I> Send for Peekable<I>
impl<I> Sync for Peekable<I>
impl<I> Unpin for Peekable<I>
impl<I> UnwindSafe for Peekable<I>
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