mod utils;
pub fn sort<T>(array: &mut [T])
where
T: std::cmp::Ord,
{
sort_by(array, |l, r| l.cmp(r))
}
pub fn sort_reverse<T>(array: &mut [T])
where
T: std::cmp::Ord,
{
sort_by(array, |l, r| l.cmp(r).reverse())
}
pub fn sort_by<T, F>(array: &mut [T], compare: F)
where
T: std::cmp::Ord,
F: Fn(&T, &T) -> std::cmp::Ordering + std::clone::Clone,
{
_stooge_sort_impl(array, compare);
}
fn _stooge_sort_impl<T, F>(array: &mut [T], compare: F)
where
T: std::cmp::Ord,
F: Fn(&T, &T) -> std::cmp::Ordering + std::clone::Clone,
{
_stooge_sort_recursive(array, 0, array.len() - 1, compare);
}
fn _stooge_sort_recursive<T, F>(array: &mut [T], i: usize, j: usize, compare: F)
where
T: std::cmp::Ord,
F: Fn(&T, &T) -> std::cmp::Ordering + std::clone::Clone,
{
if compare(&array[i], &array[j]) == std::cmp::Ordering::Greater {
utils::swap(array, i, j);
}
if j - i + 1 > 2 {
let k = (j - i + 1) / 3;
_stooge_sort_recursive(array, i, j - k, compare.clone()); _stooge_sort_recursive(array, i + k, j, compare.clone()); _stooge_sort_recursive(array, i, j - k, compare); }
}
mod tests {
#[test]
fn sort_ascending() {
struct TestCase {
input: Vec<i32>,
expected: Vec<i32>,
}
let test_cases = vec![TestCase {
input: vec![1, 4, 2, 3, 5, 111, 234, 21, 13],
expected: vec![1, 2, 3, 4, 5, 13, 21, 111, 234],
}];
for case in test_cases {
let mut actual = case.input.clone();
super::sort(&mut actual);
assert_eq!(actual, case.expected);
}
}
#[test]
fn sort_descending() {
struct TestCase {
input: Vec<i32>,
expected: Vec<i32>,
}
let test_cases = vec![TestCase {
input: vec![1, 4, 2, 3, 5, 111, 234, 21, 13],
expected: vec![234, 111, 21, 13, 5, 4, 3, 2, 1],
}];
for case in test_cases {
let mut actual = case.input.clone();
super::sort_reverse(&mut actual);
assert_eq!(actual, case.expected);
}
}
}