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#![no_std]
#[cfg(feature = "alloc")]
extern crate alloc;
#[cfg(feature = "alloc")]
use alloc::{vec, vec::Vec};
use bitarray::BitArray;
use rand::{Rng, SeedableRng};
use rand_xoshiro::Xoshiro256PlusPlus;
#[cfg(feature = "alloc")]
pub fn generate_dict<const B: usize>(words: usize) -> Vec<BitArray<B>> {
let mut dict = vec![BitArray::zeros(); words];
generate_dict_rand(&mut dict);
dict
}
pub fn generate_dict_from<const B: usize>(dict: &mut [BitArray<B>]) {
match dict.len() {
0 => return,
1 => return,
2..=64 => {
generate_dict_stage_2(dict);
return;
}
len => {
let (left, right) = dict.split_at_mut(len / 2);
generate_dict_from(left);
generate_dict_from(right);
}
}
generate_dict_stage_2(dict);
}
pub fn generate_dict_rand<const B: usize>(dict: &mut [BitArray<B>]) {
let mut rng = Xoshiro256PlusPlus::seed_from_u64(0);
for word in &mut *dict {
for byte in &mut **word {
*byte = rng.gen();
}
}
generate_dict_from(dict);
}
fn generate_dict_stage_2<const B: usize>(dict: &mut [BitArray<B>]) {
let mut changed = true;
while changed {
changed = false;
for ix in 0..dict.len() {
'outer: loop {
let word = &dict[ix];
let old_closest_distance = closest_distance_sum_distances(dict, word, ix);
for byte in 0..B {
for bit in 0..8 {
let mut new_word = *word;
new_word[byte] ^= 1 << bit;
let closest_distance = closest_distance_sum_distances(dict, &new_word, ix);
if closest_distance > old_closest_distance {
dict[ix] = new_word;
changed = true;
continue 'outer;
}
}
}
break;
}
}
}
}
fn closest_distance_sum_distances<const B: usize>(
dict: &[BitArray<B>],
word: &BitArray<B>,
ignore: usize,
) -> (u32, u64) {
let mut closest_distance = u32::MAX;
let mut sum_distances = 0;
for distance in dict
.iter()
.enumerate()
.filter(|&(ix, _)| ix != ignore)
.map(|(_, other_word)| other_word.distance(word))
{
sum_distances += distance as u64;
if distance < closest_distance {
closest_distance = distance;
}
}
(closest_distance, sum_distances)
}