sim_lib_discrete_comb/
permutation.rs1use crate::count::factorial;
5use crate::error::CombError;
6use num_bigint::BigUint;
7
8#[derive(Debug, Clone)]
10pub struct PermutationIter {
11 current: Option<Vec<usize>>,
12}
13
14pub fn permutations(n: usize) -> PermutationIter {
16 PermutationIter {
17 current: Some((0..n).collect()),
18 }
19}
20
21fn advance(p: &mut [usize]) -> bool {
22 let n = p.len();
23 if n < 2 {
24 return false;
25 }
26 let mut i = n - 1;
27 while i > 0 && p[i - 1] >= p[i] {
28 i -= 1;
29 }
30 if i == 0 {
31 return false;
32 }
33 let mut j = n - 1;
34 while p[j] <= p[i - 1] {
35 j -= 1;
36 }
37 p.swap(i - 1, j);
38 p[i..].reverse();
39 true
40}
41
42impl Iterator for PermutationIter {
43 type Item = Vec<usize>;
44
45 fn next(&mut self) -> Option<Self::Item> {
46 let cur = self.current.clone()?;
47 let mut next = cur.clone();
48 self.current = if advance(&mut next) { Some(next) } else { None };
49 Some(cur)
50 }
51}
52
53fn to_usize(value: &BigUint) -> usize {
54 value.iter_u64_digits().next().unwrap_or(0) as usize
55}
56
57fn validate(perm: &[usize]) -> Result<(), CombError> {
58 let n = perm.len();
59 let mut seen = vec![false; n];
60 for &v in perm {
61 if v >= n || seen[v] {
62 return Err(CombError::InvalidParameters(
63 "not a permutation of 0..n".to_string(),
64 ));
65 }
66 seen[v] = true;
67 }
68 Ok(())
69}
70
71pub fn permutation_rank(perm: &[usize]) -> Result<BigUint, CombError> {
73 validate(perm)?;
74 let n = perm.len();
75 let mut rank = BigUint::from(0u32);
76 for i in 0..n {
77 let smaller = (i + 1..n).filter(|&j| perm[j] < perm[i]).count();
78 rank += BigUint::from(smaller as u64) * factorial((n - 1 - i) as u64);
79 }
80 Ok(rank)
81}
82
83pub fn permutation_unrank(rank: &BigUint, n: usize) -> Result<Vec<usize>, CombError> {
85 let total = factorial(n as u64);
86 if rank >= &total {
87 return Err(CombError::OutOfRange {
88 value: rank.to_string(),
89 bound: total.to_string(),
90 });
91 }
92 let mut avail: Vec<usize> = (0..n).collect();
93 let mut remaining = rank.clone();
94 let mut perm = Vec::with_capacity(n);
95 for i in 0..n {
96 let f = factorial((n - 1 - i) as u64);
97 let idx = to_usize(&(&remaining / &f));
98 remaining %= &f;
99 perm.push(avail.remove(idx));
100 }
101 Ok(perm)
102}
103
104#[cfg(test)]
105mod tests {
106 use super::*;
107
108 #[test]
109 fn lexicographic_order_and_count() {
110 let all: Vec<_> = permutations(3).collect();
111 assert_eq!(all.len(), 6);
112 assert_eq!(all[0], vec![0, 1, 2]);
113 assert_eq!(all[1], vec![0, 2, 1]);
114 assert_eq!(all[5], vec![2, 1, 0]);
115 }
116
117 #[test]
118 fn rank_unrank_round_trip() {
119 for (i, p) in permutations(4).enumerate() {
120 let r = permutation_rank(&p).unwrap();
121 assert_eq!(r, BigUint::from(i as u32));
122 assert_eq!(permutation_unrank(&r, 4).unwrap(), p);
123 }
124 }
125
126 #[test]
127 fn rank_rejects_non_permutation() {
128 assert!(matches!(
129 permutation_rank(&[0, 0, 1]),
130 Err(CombError::InvalidParameters(_))
131 ));
132 }
133}