period finder
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@@ -1,8 +1,10 @@
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mod lfsr;
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mod period;
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mod tea3;
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use lfsr::Lfsr;
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use tea3::{Tea3, period_floyd};
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use period::{period_bruteforce, period_floyd, period_paper};
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use tea3::Tea3;
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fn main() {
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let mut lfsr = Lfsr::new(4, vec![0, 3], vec![0x12, 0x34, 0x56, 0x78]);
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@@ -47,5 +49,8 @@ fn main() {
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println!("Decrypted : {:?}", decrypted);
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// println!("\nperiod: {}", period_floyd(vec![0, 0, 0, 0, 0, 0, 0, 0, 0, 0], vec![0; 8]));
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println!(
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"\nPaper period: {}",
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period_paper(vec![1, 2, 3, 4, 5, 6, 7, 8, 9, 10])
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);
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}
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163
src/period.rs
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163
src/period.rs
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@@ -0,0 +1,163 @@
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use std::collections::HashMap;
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use crate::tea3::Tea3;
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/// period brute force with hashmap
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pub fn period_bruteforce(key: Vec<u8>, iv: Vec<u8>) -> u64 {
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let mut cipher = Tea3::new(key, iv);
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cipher.init();
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let mut seen = HashMap::new();
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let mut step: u64 = 0;
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loop {
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let state = (
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cipher.key_register().to_vec(),
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cipher.state_register().to_vec(),
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);
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if let Some(prev) = seen.get(&state) {
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return step - prev;
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}
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seen.insert(state, step);
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cipher.step();
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step += 1;
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}
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}
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/// period brute force with Floyd tortoise and hare algorithm
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pub fn period_floyd(key: Vec<u8>, iv: Vec<u8>) -> u64 {
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let mut tortoise = Tea3::new(key.clone(), iv.clone());
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let mut hare = Tea3::new(key, iv);
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tortoise.init();
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hare.init();
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tortoise.step();
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hare.step();
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hare.step();
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while (tortoise.key_register(), tortoise.state_register())
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!= (hare.key_register(), hare.state_register())
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{
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tortoise.step();
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hare.step();
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hare.step();
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}
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let mut lambda = 1;
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hare.step();
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while (tortoise.key_register(), tortoise.state_register())
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!= (hare.key_register(), hare.state_register())
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{
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hare.step();
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lambda += 1;
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}
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lambda
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}
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// paper method, decomposition key register
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// (Observations on TETRA Encryption Algorithm TEA-3)
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#[derive(Debug, Clone, Copy, PartialEq, Eq)]
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struct Reg5([u8; 5]);
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impl Reg5 {
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fn step_h(&mut self) -> u8 {
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let out = self.0[0];
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let feedback = out ^ Tea3::p(self.0[2]);
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self.0.copy_within(1..5, 0);
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self.0[4] = feedback;
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out
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}
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fn step_g(&mut self, h_out: u8) -> u8 {
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let out = self.0[0];
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let feedback = out ^ h_out;
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self.0.copy_within(1..5, 0);
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self.0[4] = feedback;
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out
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}
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}
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#[derive(Debug, Clone, Copy, PartialEq, Eq)]
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struct Decomposed {
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g: Reg5,
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h: Reg5,
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}
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impl Decomposed {
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fn from_key(key: &[u8]) -> Self {
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Self {
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g: Reg5([key[0], key[1], key[2], key[3], key[4]]),
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h: Reg5([
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key[0] ^ key[5],
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key[1] ^ key[6],
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key[2] ^ key[7],
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key[3] ^ key[8],
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key[4] ^ key[9],
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]),
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}
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}
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fn step(&mut self) -> u8 {
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let h_out = self.h.step_h();
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self.g.step_g(h_out)
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}
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}
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fn period_h(start: Reg5) -> u64 {
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let mut tortoise = start;
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let mut hare = start;
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tortoise.step_h();
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hare.step_h();
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hare.step_h();
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while tortoise != hare {
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tortoise.step_h();
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hare.step_h();
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hare.step_h();
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}
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let mut lambda = 1;
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hare.step_h();
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while tortoise != hare {
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hare.step_h();
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lambda += 1;
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}
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lambda
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}
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/// paper method, decomposition key register
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/// (Observations on TETRA Encryption Algorithm TEA-3)
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pub fn period_paper(key: Vec<u8>) -> u64 {
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let start = Decomposed::from_key(&key);
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let p = period_h(start.h);
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for mult in [1u64, 2, 5, 10] {
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let target = p * mult;
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let mut cur = start;
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for _ in 0..target {
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cur.step();
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}
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if cur == start {
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return target;
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}
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}
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panic!("No valid period found");
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}
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62
src/tea3.rs
62
src/tea3.rs
@@ -1,5 +1,3 @@
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use std::collections::HashMap;
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#[derive(Debug, Clone)]
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pub struct Tea3 {
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/// Cipher key register k0..k9
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@@ -207,65 +205,6 @@ fn bp(x: u8) -> u8 {
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| bit(5)
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}
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pub fn period(key: Vec<u8>, iv: Vec<u8>) -> u64 {
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let mut cipher = Tea3::new(key, iv);
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cipher.init();
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let mut seen = HashMap::new();
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let mut step: u64 = 0;
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loop {
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let state = (
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cipher.key_register().to_vec(),
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cipher.state_register().to_vec(),
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);
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if let Some(prev) = seen.get(&state) {
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return step - prev;
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}
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seen.insert(state, step);
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cipher.step();
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step += 1;
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}
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}
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pub fn period_floyd(key: Vec<u8>, iv: Vec<u8>) -> u64 {
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let mut tortoise = Tea3::new(key.clone(), iv.clone());
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let mut hare = Tea3::new(key, iv);
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tortoise.init();
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hare.init();
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// Move tortoise by 1, hare by 2
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tortoise.step();
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hare.step();
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hare.step();
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while tortoise.key_register() != hare.key_register()
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|| tortoise.state_register() != hare.state_register()
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{
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tortoise.step();
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hare.step();
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hare.step();
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}
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let mut lambda = 1;
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hare.step();
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while tortoise.key_register() != hare.key_register()
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|| tortoise.state_register() != hare.state_register()
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{
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hare.step();
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lambda += 1;
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}
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lambda
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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@@ -470,7 +409,6 @@ mod tests {
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let poly = Lfsr::berlekamp_massey(&keystream);
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let history = &keystream[keystream.len() - (poly.len() - 1)..];
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let predicted = Lfsr::predict_next_from_poly(history, &poly);
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