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rns_core/link/
handshake.rs

1use alloc::vec::Vec;
2
3use rns_crypto::ed25519::{Ed25519PrivateKey, Ed25519PublicKey};
4use rns_crypto::hkdf::hkdf;
5use rns_crypto::x25519::{X25519PrivateKey, X25519PublicKey};
6
7use crate::constants::{LINK_ECPUBSIZE, LINK_MTU_BYTEMASK, LINK_MTU_SIZE, LINK_MODE_BYTEMASK};
8use crate::hash::truncated_hash;
9use super::types::{LinkError, LinkId, LinkMode};
10
11/// Compute link_id from a LINKREQUEST packet's hashable part.
12///
13/// The signalling bytes (if present) are stripped from the end before hashing.
14/// `extra_bytes_len` is `data.len() - ECPUBSIZE` (0 or MTU_SIZE).
15pub fn compute_link_id(hashable_part: &[u8], extra_bytes_len: usize) -> LinkId {
16    let end = if extra_bytes_len > 0 && hashable_part.len() > extra_bytes_len {
17        hashable_part.len() - extra_bytes_len
18    } else {
19        hashable_part.len()
20    };
21    truncated_hash(&hashable_part[..end])
22}
23
24/// Build signalling bytes: 3 big-endian bytes encoding MTU (21 bits) + mode (3 bits).
25///
26/// Format: `(mtu & 0x1FFFFF) + (((mode << 5) & 0xE0) << 16)`, packed as big-endian u32,
27/// then take the last 3 bytes.
28pub fn build_signalling_bytes(mtu: u32, mode: LinkMode) -> [u8; 3] {
29    let mode_bits = ((mode.mode_byte() << 5) & LINK_MODE_BYTEMASK) as u32;
30    let signalling_value = (mtu & LINK_MTU_BYTEMASK) + (mode_bits << 16);
31    let bytes = signalling_value.to_be_bytes();
32    [bytes[1], bytes[2], bytes[3]]
33}
34
35/// Parse signalling bytes → (mtu, mode).
36pub fn parse_signalling_bytes(bytes: &[u8; 3]) -> Result<(u32, LinkMode), LinkError> {
37    let mtu = ((bytes[0] as u32) << 16) | ((bytes[1] as u32) << 8) | (bytes[2] as u32);
38    let mode_byte = (bytes[0] & LINK_MODE_BYTEMASK) >> 5;
39    let mtu_val = mtu & LINK_MTU_BYTEMASK;
40    let mode = LinkMode::from_byte(mode_byte)?;
41    Ok((mtu_val, mode))
42}
43
44/// Build LINKREQUEST data: `[x25519_pub:32][ed25519_pub:32][signalling:0-3]`.
45pub fn build_linkrequest_data(
46    pub_bytes: &[u8; 32],
47    sig_pub_bytes: &[u8; 32],
48    mtu: Option<u32>,
49    mode: LinkMode,
50) -> Vec<u8> {
51    let mut data = Vec::with_capacity(LINK_ECPUBSIZE + LINK_MTU_SIZE);
52    data.extend_from_slice(pub_bytes);
53    data.extend_from_slice(sig_pub_bytes);
54    if let Some(mtu_val) = mtu {
55        let sig_bytes = build_signalling_bytes(mtu_val, mode);
56        data.extend_from_slice(&sig_bytes);
57    }
58    data
59}
60
61/// Parse LINKREQUEST data. Returns `(x25519_pub, ed25519_pub, mtu, mode)`.
62pub fn parse_linkrequest_data(
63    data: &[u8],
64) -> Result<([u8; 32], [u8; 32], Option<u32>, LinkMode), LinkError> {
65    if data.len() != LINK_ECPUBSIZE && data.len() != LINK_ECPUBSIZE + LINK_MTU_SIZE {
66        return Err(LinkError::InvalidData);
67    }
68
69    let mut x25519_pub = [0u8; 32];
70    let mut ed25519_pub = [0u8; 32];
71    x25519_pub.copy_from_slice(&data[..32]);
72    ed25519_pub.copy_from_slice(&data[32..64]);
73
74    if data.len() == LINK_ECPUBSIZE + LINK_MTU_SIZE {
75        let mut sig_bytes = [0u8; 3];
76        sig_bytes.copy_from_slice(&data[LINK_ECPUBSIZE..LINK_ECPUBSIZE + LINK_MTU_SIZE]);
77        let (mtu, mode) = parse_signalling_bytes(&sig_bytes)?;
78        Ok((x25519_pub, ed25519_pub, Some(mtu), mode))
79    } else {
80        Ok((x25519_pub, ed25519_pub, None, LinkMode::Aes256Cbc))
81    }
82}
83
84/// Build LRPROOF data: `[signature:64][x25519_pub:32][signalling:0-3]`.
85///
86/// Signs: `link_id + pub_bytes + sig_pub_bytes + signalling_bytes`.
87pub fn build_lrproof(
88    link_id: &LinkId,
89    pub_bytes: &[u8; 32],
90    sig_pub_bytes: &[u8; 32],
91    sig_prv: &Ed25519PrivateKey,
92    mtu: Option<u32>,
93    mode: LinkMode,
94) -> Vec<u8> {
95    let signalling_bytes = if let Some(mtu_val) = mtu {
96        build_signalling_bytes(mtu_val, mode).to_vec()
97    } else {
98        Vec::new()
99    };
100
101    let mut signed_data = Vec::with_capacity(16 + 32 + 32 + signalling_bytes.len());
102    signed_data.extend_from_slice(link_id);
103    signed_data.extend_from_slice(pub_bytes);
104    signed_data.extend_from_slice(sig_pub_bytes);
105    signed_data.extend_from_slice(&signalling_bytes);
106
107    let signature = sig_prv.sign(&signed_data);
108
109    let mut proof_data = Vec::with_capacity(64 + 32 + signalling_bytes.len());
110    proof_data.extend_from_slice(&signature);
111    proof_data.extend_from_slice(pub_bytes);
112    proof_data.extend_from_slice(&signalling_bytes);
113
114    proof_data
115}
116
117/// Validate LRPROOF. Returns peer X25519 public key bytes on success.
118///
119/// Expects `proof_data = [signature:64][x25519_pub:32][signalling:0-3]`.
120/// Validates against `signed_data = link_id + peer_x25519_pub + peer_sig_pub + signalling`.
121pub fn validate_lrproof(
122    proof_data: &[u8],
123    link_id: &LinkId,
124    peer_sig_pub: &Ed25519PublicKey,
125    peer_sig_pub_bytes: &[u8; 32],
126) -> Result<([u8; 32], Option<u32>, LinkMode), LinkError> {
127    let sig_len = 64;
128    let pub_len = 32;
129
130    if proof_data.len() != sig_len + pub_len && proof_data.len() != sig_len + pub_len + LINK_MTU_SIZE {
131        return Err(LinkError::InvalidData);
132    }
133
134    let mut signature = [0u8; 64];
135    signature.copy_from_slice(&proof_data[..sig_len]);
136
137    let mut peer_pub = [0u8; 32];
138    peer_pub.copy_from_slice(&proof_data[sig_len..sig_len + pub_len]);
139
140    let signalling_bytes = &proof_data[sig_len + pub_len..];
141
142    let (mtu, mode) = if signalling_bytes.len() == LINK_MTU_SIZE {
143        let mut sb = [0u8; 3];
144        sb.copy_from_slice(signalling_bytes);
145        let (m, md) = parse_signalling_bytes(&sb)?;
146        (Some(m), md)
147    } else {
148        (None, LinkMode::Aes256Cbc)
149    };
150
151    let mut signed_data = Vec::with_capacity(16 + 32 + 32 + signalling_bytes.len());
152    signed_data.extend_from_slice(link_id);
153    signed_data.extend_from_slice(&peer_pub);
154    signed_data.extend_from_slice(peer_sig_pub_bytes);
155    signed_data.extend_from_slice(signalling_bytes);
156
157    if peer_sig_pub.verify(&signature, &signed_data) {
158        Ok((peer_pub, mtu, mode))
159    } else {
160        Err(LinkError::InvalidSignature)
161    }
162}
163
164/// Derive session key using HKDF.
165///
166/// `shared_key` is the raw ECDH output (32 bytes).
167/// Salt = link_id, context = None.
168/// Output length depends on mode: 32 for AES-128, 64 for AES-256.
169pub fn derive_session_key(
170    shared_key: &[u8; 32],
171    link_id: &LinkId,
172    mode: LinkMode,
173) -> Result<Vec<u8>, LinkError> {
174    let length = mode.derived_key_length();
175    hkdf(length, shared_key, Some(link_id), None)
176        .map_err(|_| LinkError::CryptoError)
177}
178
179/// Perform ECDH key exchange and derive session key.
180pub fn perform_key_exchange(
181    prv: &X25519PrivateKey,
182    peer_pub_bytes: &[u8; 32],
183    link_id: &LinkId,
184    mode: LinkMode,
185) -> Result<Vec<u8>, LinkError> {
186    let peer_pub = X25519PublicKey::from_bytes(peer_pub_bytes);
187    let shared_key = prv.exchange(&peer_pub);
188    derive_session_key(&shared_key, link_id, mode)
189}
190
191/// Pack RTT as msgpack float64: `0xcb` + 8 bytes big-endian.
192pub fn pack_rtt(rtt: f64) -> Vec<u8> {
193    let mut data = Vec::with_capacity(9);
194    data.push(0xcb);
195    data.extend_from_slice(&rtt.to_be_bytes());
196    data
197}
198
199/// Unpack RTT from msgpack float64.
200pub fn unpack_rtt(data: &[u8]) -> Option<f64> {
201    if data.len() == 9 && data[0] == 0xcb {
202        let mut bytes = [0u8; 8];
203        bytes.copy_from_slice(&data[1..9]);
204        Some(f64::from_be_bytes(bytes))
205    } else {
206        None
207    }
208}
209
210#[cfg(test)]
211mod tests {
212    use super::*;
213    use rns_crypto::FixedRng;
214
215    #[test]
216    fn test_signalling_bytes_roundtrip() {
217        let mtu = 500u32;
218        let mode = LinkMode::Aes256Cbc;
219        let bytes = build_signalling_bytes(mtu, mode);
220        let (parsed_mtu, parsed_mode) = parse_signalling_bytes(&bytes).unwrap();
221        assert_eq!(parsed_mtu, mtu);
222        assert_eq!(parsed_mode, mode);
223    }
224
225    #[test]
226    fn test_signalling_bytes_aes128() {
227        let mtu = 1234u32;
228        let mode = LinkMode::Aes128Cbc;
229        let bytes = build_signalling_bytes(mtu, mode);
230        let (parsed_mtu, parsed_mode) = parse_signalling_bytes(&bytes).unwrap();
231        assert_eq!(parsed_mtu, mtu);
232        assert_eq!(parsed_mode, mode);
233    }
234
235    #[test]
236    fn test_signalling_bytes_max_mtu() {
237        let mtu = LINK_MTU_BYTEMASK; // maximum 21-bit value
238        let mode = LinkMode::Aes256Cbc;
239        let bytes = build_signalling_bytes(mtu, mode);
240        let (parsed_mtu, parsed_mode) = parse_signalling_bytes(&bytes).unwrap();
241        assert_eq!(parsed_mtu, mtu);
242        assert_eq!(parsed_mode, mode);
243    }
244
245    #[test]
246    fn test_linkrequest_data_roundtrip() {
247        let pub_bytes = [0xAAu8; 32];
248        let sig_pub_bytes = [0xBBu8; 32];
249        let data = build_linkrequest_data(&pub_bytes, &sig_pub_bytes, Some(500), LinkMode::Aes256Cbc);
250        assert_eq!(data.len(), LINK_ECPUBSIZE + LINK_MTU_SIZE);
251
252        let (p, s, mtu, mode) = parse_linkrequest_data(&data).unwrap();
253        assert_eq!(p, pub_bytes);
254        assert_eq!(s, sig_pub_bytes);
255        assert_eq!(mtu, Some(500));
256        assert_eq!(mode, LinkMode::Aes256Cbc);
257    }
258
259    #[test]
260    fn test_linkrequest_data_no_mtu() {
261        let pub_bytes = [0xAAu8; 32];
262        let sig_pub_bytes = [0xBBu8; 32];
263        let data = build_linkrequest_data(&pub_bytes, &sig_pub_bytes, None, LinkMode::Aes256Cbc);
264        assert_eq!(data.len(), LINK_ECPUBSIZE);
265
266        let (p, s, mtu, mode) = parse_linkrequest_data(&data).unwrap();
267        assert_eq!(p, pub_bytes);
268        assert_eq!(s, sig_pub_bytes);
269        assert_eq!(mtu, None);
270        assert_eq!(mode, LinkMode::Aes256Cbc); // default when no signalling
271    }
272
273    #[test]
274    fn test_linkrequest_data_invalid_size() {
275        let data = [0u8; 10];
276        assert_eq!(parse_linkrequest_data(&data), Err(LinkError::InvalidData));
277    }
278
279    #[test]
280    fn test_compute_link_id_no_extra() {
281        let hashable = [0x42u8; 40];
282        let id = compute_link_id(&hashable, 0);
283        assert_eq!(id.len(), 16);
284    }
285
286    #[test]
287    fn test_compute_link_id_with_extra() {
288        let hashable = [0x42u8; 43]; // 40 base + 3 signalling
289        let id_with_extra = compute_link_id(&hashable, 3);
290        let id_base = compute_link_id(&hashable[..40], 0);
291        assert_eq!(id_with_extra, id_base);
292    }
293
294    #[test]
295    fn test_lrproof_sign_verify() {
296        let mut rng = FixedRng::new(&[0x11; 64]);
297        let sig_prv = Ed25519PrivateKey::generate(&mut rng);
298        let sig_pub = sig_prv.public_key();
299        let sig_pub_bytes = sig_pub.public_bytes();
300
301        let mut rng2 = FixedRng::new(&[0x22; 64]);
302        let x_prv = rns_crypto::x25519::X25519PrivateKey::generate(&mut rng2);
303        let pub_bytes = x_prv.public_key().public_bytes();
304
305        let link_id: LinkId = [0xAA; 16];
306        let mtu = Some(500u32);
307        let mode = LinkMode::Aes256Cbc;
308
309        let proof = build_lrproof(&link_id, &pub_bytes, &sig_pub_bytes, &sig_prv, mtu, mode);
310
311        let result = validate_lrproof(&proof, &link_id, &sig_pub, &sig_pub_bytes);
312        assert!(result.is_ok());
313        let (peer_pub, parsed_mtu, parsed_mode) = result.unwrap();
314        assert_eq!(peer_pub, pub_bytes);
315        assert_eq!(parsed_mtu, mtu);
316        assert_eq!(parsed_mode, mode);
317    }
318
319    #[test]
320    fn test_lrproof_wrong_link_id() {
321        let mut rng = FixedRng::new(&[0x11; 64]);
322        let sig_prv = Ed25519PrivateKey::generate(&mut rng);
323        let sig_pub = sig_prv.public_key();
324        let sig_pub_bytes = sig_pub.public_bytes();
325
326        let pub_bytes = [0x33u8; 32];
327        let link_id: LinkId = [0xAA; 16];
328        let wrong_id: LinkId = [0xBB; 16];
329
330        let proof = build_lrproof(&link_id, &pub_bytes, &sig_pub_bytes, &sig_prv, None, LinkMode::Aes256Cbc);
331        let result = validate_lrproof(&proof, &wrong_id, &sig_pub, &sig_pub_bytes);
332        assert_eq!(result, Err(LinkError::InvalidSignature));
333    }
334
335    #[test]
336    fn test_derive_session_key_aes128() {
337        let shared = [0x42u8; 32];
338        let link_id = [0xAA; 16];
339        let key = derive_session_key(&shared, &link_id, LinkMode::Aes128Cbc).unwrap();
340        assert_eq!(key.len(), 32);
341    }
342
343    #[test]
344    fn test_derive_session_key_aes256() {
345        let shared = [0x42u8; 32];
346        let link_id = [0xAA; 16];
347        let key = derive_session_key(&shared, &link_id, LinkMode::Aes256Cbc).unwrap();
348        assert_eq!(key.len(), 64);
349    }
350
351    #[test]
352    fn test_rtt_pack_unpack() {
353        let rtt = 0.123456789;
354        let packed = pack_rtt(rtt);
355        assert_eq!(packed.len(), 9);
356        assert_eq!(packed[0], 0xcb);
357        let unpacked = unpack_rtt(&packed).unwrap();
358        assert_eq!(unpacked, rtt);
359    }
360
361    #[test]
362    fn test_rtt_unpack_invalid() {
363        assert_eq!(unpack_rtt(&[0xcb, 0x00]), None);
364        assert_eq!(unpack_rtt(&[0xca, 0, 0, 0, 0, 0, 0, 0, 0]), None);
365    }
366
367    #[test]
368    fn test_rtt_pack_zero() {
369        let packed = pack_rtt(0.0);
370        let unpacked = unpack_rtt(&packed).unwrap();
371        assert_eq!(unpacked, 0.0);
372    }
373}