pub struct PriorityQueue<T: PartialOrd + PartialEq + Debug> { /* private fields */ }Expand description
A priority queue implementation based on an unbounded max heap.
The elements are ordered by implementation of the PartialOrd trait with
the biggest element readable in O(1) time
§Examples
extern crate collections_more;
use collections_more::queue::priority_queue::PriorityQueue;
// snip ..
let mut pq: PriorityQueue<i32> = PriorityQueue::new();
pq.push(4);
pq.push(-55);
pq.push(9);
pq.push(0);
assert_eq!(4, pq.len()); // Length of the priority queue
assert_eq!(Some(9), pq.poll()); // Removes the biggest element
assert_eq!(3, pq.len()); // Length after polling the biggest element
// Polls max element of the priority queue on each iteration
// Equivalent to "Heapsort" but space inefficient
let mut sorted = Vec::with_capacity(pq.len());
for elem in pq {
sorted.push(elem)
}
assert_eq!(vec!(4, 0, -55), sorted);
§Macro and creation
For fast creation of priority_queues, one can use the macro that behaves
like the vec macro (e.g. let mut pq = pqueue!(3, 2, 7, -3),
let pq = pqueue!['c', 'h', 'a', 'r']).
We do not provide a `unsafe fn from_raw_part(ptr: *mut T, length: usize,
capacity: usize) -> PriorityQueue
§Slicing
It is possible to retrieve the priority queue as a slice. However it’ll be in a heap order, not consecutive natural ordering of the elements.
Implementations§
Source§impl<T: PartialOrd + PartialEq + Debug> PriorityQueue<T>
impl<T: PartialOrd + PartialEq + Debug> PriorityQueue<T>
Sourcepub fn new() -> PriorityQueue<T> ⓘ
pub fn new() -> PriorityQueue<T> ⓘ
Constructs a new, empty PriorityQueue<T>.
§Examples
let mut pq: PriorityQueue<i32> = PriorityQueue::new();Sourcepub fn with_capacity(capacity: usize) -> PriorityQueue<T> ⓘ
pub fn with_capacity(capacity: usize) -> PriorityQueue<T> ⓘ
Constructs a new, empty PriorityQueue<T> with the specified capacity.
The priority queue will be able to hold exactly capacity
elements without reallocating.
§Examples
let mut pq = PriorityQueue::with_capacity(10);
// The pqueue is empty, even though it has capacity of 10
assert_eq!(pq.len(), 0);
// These are all done without reallocating...
for i in 0..10 {
pq.push(i);
}
// ...but this may make the pqueue to reallocate
pq.push(11);Sourcepub fn push(&mut self, elem: T)
pub fn push(&mut self, elem: T)
Add an element to the priority queue while keeping the most desired element accessible in the same time
§Example
let mut pq = PriorityQueue::with_capacity(2);
pq.push(2);
pq.push(6);
assert_eq!(2, pq.len()); // length of the pqueue
assert_eq!(Some(6), pq.poll()); // max element of pqueueSourcepub fn len(&self) -> usize
pub fn len(&self) -> usize
Returns the number of elements in the queue
§Example
let mut pq = PriorityQueue::with_capacity(2);
assert_eq!(0, pq.len()); // no elements
pq.push(2);
assert_eq!(1, pq.len()); // one elements
pq.push(6);
assert_eq!(2, pq.len());
pq.poll();
assert_eq!(1, pq.len()); // one elements againSourcepub fn is_empty(&self) -> bool
pub fn is_empty(&self) -> bool
Returns true if there is no element in the queue.
Equivalent to pq.len() == 0
§Example
let mut pq = PriorityQueue::with_capacity(2);
assert!(pq.is_empty()); // no elements
pq.push(2);
assert!(!pq.is_empty()); // one elements
pq.poll();
assert!(pq.is_empty()); // no element againSourcepub fn peek(&self) -> Option<&T>
pub fn peek(&self) -> Option<&T>
Returns a borrow to the biggest element of the queue (O(1) time).
returns None if queue is empty
§Example
let mut pq = PriorityQueue::with_capacity(2);
pq.push(2);
pq.push(6);
assert_eq!(Some(&6), pq.peek());Trait Implementations§
Source§impl<T: Debug + PartialOrd + PartialEq + Debug> Debug for PriorityQueue<T>
impl<T: Debug + PartialOrd + PartialEq + Debug> Debug for PriorityQueue<T>
Source§impl<T: PartialOrd + Debug> Iterator for PriorityQueue<T>
impl<T: PartialOrd + Debug> Iterator for PriorityQueue<T>
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 · Source§fn size_hint(&self) -> (usize, Option<usize>)
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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 · 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 · 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 zip<U>(self, other: U) -> Zip<Self, <U as IntoIterator>::IntoIter>where
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U: IntoIterator,
Source§fn intersperse(self, separator: Self::Item) -> Intersperse<Self>
fn intersperse(self, separator: Self::Item) -> Intersperse<Self>
iter_intersperse)separator between adjacent
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 map<B, F>(self, f: F) -> Map<Self, F>
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fn enumerate(self) -> Enumerate<Self>where
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fn skip_while<P>(self, predicate: P) -> SkipWhile<Self, P>
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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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Self: Sized,
fn skip(self, n: usize) -> Skip<Self>where
Self: Sized,
n elements. Read more1.0.0 · Source§fn take(self, n: usize) -> Take<Self>where
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fn take(self, n: usize) -> Take<Self>where
Self: Sized,
n elements, or fewer
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fn flat_map<U, F>(self, f: F) -> FlatMap<Self, U, F>
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fn flatten(self) -> Flatten<Self>
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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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Self: Sized,
fn by_ref(&mut self) -> &mut Selfwhere
Self: Sized,
Iterator. Read moreSource§fn try_collect<B>(
&mut self,
) -> <<Self::Item as Try>::Residual as Residual<B>>::TryType
fn try_collect<B>( &mut self, ) -> <<Self::Item as Try>::Residual as Residual<B>>::TryType
iterator_try_collect)Source§fn collect_into<E>(self, collection: &mut E) -> &mut E
fn collect_into<E>(self, collection: &mut E) -> &mut E
iter_collect_into)1.0.0 · Source§fn partition<B, F>(self, f: F) -> (B, B)
fn partition<B, F>(self, f: F) -> (B, B)
Source§fn is_partitioned<P>(self, predicate: P) -> bool
fn is_partitioned<P>(self, predicate: P) -> bool
iter_is_partitioned)true precede all those that return false. Read more1.27.0 · Source§fn try_fold<B, F, R>(&mut self, init: B, f: F) -> R
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fn reduce<F>(self, f: F) -> Option<Self::Item>
Source§fn try_reduce<R>(
&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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&mut self,
f: impl FnMut(&Self::Item) -> R,
) -> <<R as Try>::Residual as Residual<Option<Self::Item>>>::TryType
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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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fn min_by_key<B, F>(self, f: F) -> Option<Self::Item>
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fn min_by<F>(self, compare: F) -> Option<Self::Item>
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fn unzip<A, B, FromA, FromB>(self) -> (FromA, FromB)
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fn copied<'a, T>(self) -> Copied<Self>
Source§fn array_chunks<const N: usize>(self) -> ArrayChunks<Self, N>where
Self: Sized,
fn array_chunks<const N: usize>(self) -> ArrayChunks<Self, N>where
Self: Sized,
iter_array_chunks)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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of another with respect to the specified comparison function. Read more1.5.0 · Source§fn partial_cmp<I>(self, other: I) -> Option<Ordering>
fn partial_cmp<I>(self, other: I) -> Option<Ordering>
PartialOrd elements of
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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
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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
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I: IntoIterator,
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Iterator are lexicographically
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Iterator are lexicographically
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Iterator are lexicographically
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Iterator are lexicographically
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