pub struct RepeatFinite<T: Clone> { /* private fields */ }Expand description
An iterator that repeats an element a finite amount of times.
It is roughly equivalent to repeat(x).take(n) from std.
It is slightly more efficient that Repeat +
Take combo, because on last iteration it returns
the element it holds.
It has the same size as repeat(x).take(n) iterator, because instead of
being effectively a (T, usize) pair, it is an Option<(T, NonZeroUsize)>.
This structure also allows to implement it with 100% safe code.
The only unsafe line of code is the unsafe impl for
TrustedLen, which is not included by default,
only with trusted_len feature of this crate
Implementations§
Source§impl<T: Clone> RepeatFinite<T>
impl<T: Clone> RepeatFinite<T>
Sourcepub fn new(x: T, n: usize) -> Self
pub fn new(x: T, n: usize) -> Self
Creates an iterator that repeats x n times.
The same as function repeat_finite.
let s: String = repeat_finite("asdf", 4).collect();
assert_eq!(s, "asdf".repeat(4));Sourcepub fn try_into_inner(self) -> Option<T>
pub fn try_into_inner(self) -> Option<T>
Returns the inner element.
Note, that this is NOT equivalent to last(), because
iteration can cause side-effects.
let b = Box::new([1u8,2,3]);
let mut it = repeat_finite(b, 3);
assert_eq!(it.next(), Some(Box::new([1,2,3])));
assert_eq!(it.next(), Some(Box::new([1,2,3])));
let b2: Box<[u8]> = it.try_into_inner().unwrap();Sourcepub fn try_set_count(&mut self, count: usize) -> usize
pub fn try_set_count(&mut self, count: usize) -> usize
Tries to change the number of iteration, returns the new number of iterations.
let b = Box::new([1u8,2,3]);
let mut it = repeat_finite(b, 3);
assert_eq!(it.next(), Some(Box::new([1,2,3])));
assert_eq!(it.next(), Some(Box::new([1,2,3])));
it.try_set_count(0);
assert_eq!(it.try_into_inner(), None);Sourcepub fn take_n(self, n: usize) -> Self
pub fn take_n(self, n: usize) -> Self
Use this instead of take().
Effectively sets the counter to min(counter, n) and returns modified self.
let mut it = repeat_finite("asdf", 42).take_n(1);
assert_eq!(it.next(), Some("asdf"));
assert_eq!(it.next(), None);Sourcepub fn cycle_nearly_forever(self) -> Self
pub fn cycle_nearly_forever(self) -> Self
Use this instead of cycle().
It won’t cycle forever, but usize::MAX times, so close enough to that.
If the iterator is exhausted, it stays the same, otherwise counter
is set to usize::MAX.
let it = repeat_finite("asdf", 1);
let mut it = it.cycle_nearly_forever();
assert_eq!(it.next(), Some("asdf"));
assert_eq!(it.next(), Some("asdf"));
assert_eq!(it.next(), Some("asdf"));
assert_eq!(it.next(), Some("asdf"));
// One eternity later...
assert_eq!(it.next(), Some("asdf"));
assert_eq!(it.next(), Some("asdf"));
assert_eq!(it.next(), None);Trait Implementations§
Source§impl<T: Clone + Clone> Clone for RepeatFinite<T>
impl<T: Clone + Clone> Clone for RepeatFinite<T>
1.0.0 · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
source. Read moreSource§impl<T: Clone> Default for RepeatFinite<T>
impl<T: Clone> Default for RepeatFinite<T>
Source§impl<T: Clone> ExactSizeIterator for RepeatFinite<T>
impl<T: Clone> ExactSizeIterator for RepeatFinite<T>
Source§impl<T: Clone> Iterator for RepeatFinite<T>
impl<T: Clone> Iterator for RepeatFinite<T>
Source§fn next(&mut self) -> Option<Self::Item>
fn next(&mut self) -> Option<Self::Item>
Source§fn size_hint(&self) -> (usize, Option<usize>)
fn size_hint(&self) -> (usize, Option<usize>)
Source§fn count(self) -> usize
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Source§fn next_chunk<const N: usize>(
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