1use aes::cipher::{BlockDecrypt, BlockEncrypt, KeyInit};
2use aes::{Aes128, Block};
3use std::net::IpAddr;
4
5use crate::common::{bytes_to_ip, ip_to_bytes};
6
7pub struct IpcryptNdx {
12 cipher1: Aes128, cipher2: Aes128, }
15
16impl IpcryptNdx {
17 pub const KEY_BYTES: usize = 32;
19 pub const TWEAK_BYTES: usize = 16;
21 pub const NDIP_BYTES: usize = 32;
23
24 pub fn generate_key() -> [u8; Self::KEY_BYTES] {
26 rand::random()
27 }
28
29 pub fn new(key: [u8; Self::KEY_BYTES]) -> Self {
35 let (key1, key2) = key.split_at(Self::KEY_BYTES / 2);
36 let cipher1 = Aes128::new_from_slice(key1).expect("key1 length is correct");
37 let cipher2 = Aes128::new_from_slice(key2).expect("key2 length is correct");
38 Self { cipher1, cipher2 }
39 }
40
41 pub fn new_random() -> Self {
43 Self::new(Self::generate_key())
44 }
45
46 pub fn generate_tweak() -> [u8; Self::TWEAK_BYTES] {
48 rand::random()
49 }
50
51 fn encrypt_ip16(&self, ip: &mut [u8; 16], tweak: &[u8; Self::TWEAK_BYTES]) {
58 let mut encrypted_tweak = Block::from(*tweak);
60 self.cipher2.encrypt_block(&mut encrypted_tweak);
61
62 let mut block = Block::from(*ip);
64 for (b, t) in block.iter_mut().zip(encrypted_tweak.iter()) {
65 *b ^= t;
66 }
67
68 self.cipher1.encrypt_block(&mut block);
70
71 for (b, t) in block.iter_mut().zip(encrypted_tweak.iter()) {
73 *b ^= t;
74 }
75
76 *ip = block.into();
77 }
78
79 fn decrypt_ip16(&self, ip: &mut [u8; 16], tweak: &[u8; Self::TWEAK_BYTES]) {
86 let mut encrypted_tweak = Block::from(*tweak);
88 self.cipher2.encrypt_block(&mut encrypted_tweak);
89
90 let mut block = Block::from(*ip);
92 for (b, t) in block.iter_mut().zip(encrypted_tweak.iter()) {
93 *b ^= t;
94 }
95
96 self.cipher1.decrypt_block(&mut block);
98
99 for (b, t) in block.iter_mut().zip(encrypted_tweak.iter()) {
101 *b ^= t;
102 }
103
104 *ip = block.into();
105 }
106
107 pub fn encrypt_ipaddr(
117 &self,
118 ip: IpAddr,
119 tweak: Option<[u8; Self::TWEAK_BYTES]>,
120 ) -> [u8; Self::NDIP_BYTES] {
121 let mut out: [u8; Self::NDIP_BYTES] = [0; Self::NDIP_BYTES];
122 let tweak = tweak.unwrap_or_else(Self::generate_tweak);
123 let mut bytes = ip_to_bytes(ip);
124 self.encrypt_ip16(&mut bytes, &tweak);
125 out[0..16].copy_from_slice(&tweak);
126 out[16..].copy_from_slice(&bytes);
127 out
128 }
129
130 pub fn decrypt_ipaddr(&self, encrypted: &[u8; Self::NDIP_BYTES]) -> IpAddr {
140 let mut tweak = [0u8; Self::TWEAK_BYTES];
141 tweak.copy_from_slice(&encrypted[0..16]);
142 let mut bytes = [0u8; 16];
143 bytes.copy_from_slice(&encrypted[16..]);
144 self.decrypt_ip16(&mut bytes, &tweak);
145 bytes_to_ip(bytes)
146 }
147}
148
149#[cfg(test)]
150mod tests {
151 use super::*;
152 use ct_codecs::{Decoder as _, Encoder as _, Hex};
153 use std::str::FromStr;
154
155 #[test]
156 fn test_ndx_vectors() {
157 let test_vectors = vec![
158 (
159 "0123456789abcdeffedcba98765432101032547698badcfeefcdab8967452301",
161 "0.0.0.0",
162 "21bd1834bc088cd2b4ecbe30b70898d7",
163 "21bd1834bc088cd2b4ecbe30b70898d782db0d4125fdace61db35b8339f20ee5",
164 ),
165 (
166 "1032547698badcfeefcdab89674523010123456789abcdeffedcba9876543210",
168 "192.0.2.1",
169 "08e0c289bff23b7cb4ecbe30b70898d7",
170 "08e0c289bff23b7cb4ecbe30b70898d7766a533392a69edf1ad0d3ce362ba98a",
171 ),
172 (
173 "2b7e151628aed2a6abf7158809cf4f3c3c4fcf098815f7aba6d2ae2816157e2b",
175 "2001:db8::1",
176 "21bd1834bc088cd2b4ecbe30b70898d7",
177 "21bd1834bc088cd2b4ecbe30b70898d76089c7e05ae30c2d10ca149870a263e4",
178 ),
179 ];
180
181 for (key_hex, input_ip, tweak_hex, expected_output) in test_vectors {
182 let key_vec = Hex::decode_to_vec(key_hex.as_bytes(), None).unwrap();
184 let mut key = [0u8; IpcryptNdx::KEY_BYTES];
185 key.copy_from_slice(&key_vec);
186
187 let tweak_vec = Hex::decode_to_vec(tweak_hex.as_bytes(), None).unwrap();
189 let mut tweak = [0u8; IpcryptNdx::TWEAK_BYTES];
190 tweak.copy_from_slice(&tweak_vec);
191
192 let ipcrypt = IpcryptNdx::new(key);
194
195 let ip = IpAddr::from_str(input_ip).unwrap();
197
198 let encrypted = ipcrypt.encrypt_ipaddr(ip, Some(tweak));
200
201 let encrypted_hex = Hex::encode_to_string(encrypted).unwrap();
203 assert_eq!(encrypted_hex, expected_output);
204
205 let decrypted = ipcrypt.decrypt_ipaddr(&encrypted);
207 assert_eq!(decrypted, ip);
208 }
209 }
210}