[][src]Struct traversal::DftPreRev

pub struct DftPreRev<'a, T, F, I> where
    T: ?Sized,
    F: FnMut(&'a T) -> I,
    I: Iterator<Item = &'a T>, 
{ /* fields omitted */ }

Reverse Depth-First Traversal in Pre-Order.

Cycles

DftPreRev does not handle cycles. If any cycles are present, then DftPreRev will result in an infinite (never ending) Iterator.

Example

use traversal::DftPreRev;

struct Node(&'static str, &'static [Node]);

let tree = Node("G", &[
    Node("F", &[
        Node("E", &[]),
        Node("D", &[])
    ]),
    Node("C", &[
        Node("B", &[]),
        Node("A", &[])
    ]),
]);

// `&tree` represents the root `Node`.
// The `FnMut(&Node) -> Iterator<Item = &Node>` returns
// an `Iterator` to get the child `Node`s.
let iter = DftPreRev::new(&tree, |node| node.1.iter());

// Map `Iterator<Item = &Node>` into `Iterator<Item = &str>`
let mut iter = iter.map(|(depth, node)| (depth, node.0));

assert_eq!(iter.next(), Some((2, "A")));
assert_eq!(iter.next(), Some((2, "B")));
assert_eq!(iter.next(), Some((1, "C")));
assert_eq!(iter.next(), Some((2, "D")));
assert_eq!(iter.next(), Some((2, "E")));
assert_eq!(iter.next(), Some((1, "F")));
assert_eq!(iter.next(), Some((0, "G")));
assert_eq!(iter.next(), None);

Methods

impl<'a, T, F, I> DftPreRev<'a, T, F, I> where
    T: ?Sized,
    F: FnMut(&'a T) -> I,
    I: Iterator<Item = &'a T>, 
[src]

pub fn new(root: &'a T, iter_children: F) -> Self[src]

Creates a DftPreRev, where root is the starting Node.

The iter_children FnMut is (lazily) called for each Node as needed, where the returned Iterator produces the child Nodes for the given Node.

See DftPreRev for more information.

"FnOnce"

The FnMut is a FnOnce from the point-of-view of a Node, as iter_children is at most called once for each individual Node.

FusedIterator

While DftPreRev does not require FusedIterator, it assumes that no Nodes are produced after a None.

Trait Implementations

impl<'a, T, F: Clone, I: Clone> Clone for DftPreRev<'a, T, F, I> where
    T: Clone + ?Sized,
    F: FnMut(&'a T) -> I,
    I: Iterator<Item = &'a T>, 
[src]

impl<'a, T, F, I> FusedIterator for DftPreRev<'a, T, F, I> where
    T: ?Sized,
    F: FnMut(&'a T) -> I,
    I: Iterator<Item = &'a T>, 
[src]

impl<'a, T, F, I> Iterator for DftPreRev<'a, T, F, I> where
    T: ?Sized,
    F: FnMut(&'a T) -> I,
    I: Iterator<Item = &'a T>, 
[src]

type Item = (usize, &'a T)

The type of the elements being iterated over.

Auto Trait Implementations

impl<'a, T: ?Sized, F, I> RefUnwindSafe for DftPreRev<'a, T, F, I> where
    F: RefUnwindSafe,
    T: RefUnwindSafe

impl<'a, T: ?Sized, F, I> Send for DftPreRev<'a, T, F, I> where
    F: Send,
    T: Sync

impl<'a, T: ?Sized, F, I> Sync for DftPreRev<'a, T, F, I> where
    F: Sync,
    T: Sync

impl<'a, T: ?Sized, F, I> Unpin for DftPreRev<'a, T, F, I> where
    F: Unpin

impl<'a, T: ?Sized, F, I> UnwindSafe for DftPreRev<'a, T, F, I> where
    F: UnwindSafe,
    T: RefUnwindSafe

Blanket Implementations

impl<T> Any for T where
    T: 'static + ?Sized
[src]

impl<T> Borrow<T> for T where
    T: ?Sized
[src]

impl<T> BorrowMut<T> for T where
    T: ?Sized
[src]

impl<T> From<T> for T[src]

impl<T, U> Into<U> for T where
    U: From<T>, 
[src]

impl<I> IntoIterator for I where
    I: Iterator
[src]

type Item = <I as Iterator>::Item

The type of the elements being iterated over.

type IntoIter = I

Which kind of iterator are we turning this into?

impl<T> ToOwned for T where
    T: Clone
[src]

type Owned = T

The resulting type after obtaining ownership.

impl<T, U> TryFrom<U> for T where
    U: Into<T>, 
[src]

type Error = Infallible

The type returned in the event of a conversion error.

impl<T, U> TryInto<U> for T where
    U: TryFrom<T>, 
[src]

type Error = <U as TryFrom<T>>::Error

The type returned in the event of a conversion error.