1use std::time::{SystemTime, UNIX_EPOCH};
8
9use layer_crypto::{AuthKey, DequeBuffer, decrypt_data_v2, encrypt_data_v2};
10use layer_tl_types::RemoteCall;
11
12#[derive(Debug)]
14pub enum DecryptError {
15 Crypto(layer_crypto::DecryptError),
17 FrameTooShort,
19 SessionMismatch,
21}
22
23impl std::fmt::Display for DecryptError {
24 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
25 match self {
26 Self::Crypto(e) => write!(f, "crypto: {e}"),
27 Self::FrameTooShort => write!(f, "inner plaintext too short"),
28 Self::SessionMismatch => write!(f, "session_id mismatch"),
29 }
30 }
31}
32impl std::error::Error for DecryptError {}
33
34pub struct DecryptedMessage {
36 pub salt: i64,
38 pub session_id: i64,
40 pub msg_id: i64,
42 pub seq_no: i32,
44 pub body: Vec<u8>,
46}
47
48pub struct EncryptedSession {
55 auth_key: AuthKey,
56 session_id: i64,
57 sequence: i32,
58 last_msg_id: i64,
59 pub salt: i64,
61 pub time_offset: i32,
63}
64
65impl EncryptedSession {
66 pub fn new(auth_key: [u8; 256], first_salt: i64, time_offset: i32) -> Self {
68 let mut rnd = [0u8; 8];
69 getrandom::getrandom(&mut rnd).expect("getrandom");
70 Self {
71 auth_key: AuthKey::from_bytes(auth_key),
72 session_id: i64::from_le_bytes(rnd),
73 sequence: 0,
74 last_msg_id: 0,
75 salt: first_salt,
76 time_offset,
77 }
78 }
79
80 fn next_msg_id(&mut self) -> i64 {
82 let now = SystemTime::now().duration_since(UNIX_EPOCH).unwrap();
83 let secs = (now.as_secs() as i32).wrapping_add(self.time_offset) as u64;
84 let nanos = now.subsec_nanos() as u64;
85 let mut id = ((secs << 32) | (nanos << 2)) as i64;
86 if self.last_msg_id >= id {
87 id = self.last_msg_id + 4;
88 }
89 self.last_msg_id = id;
90 id
91 }
92
93 fn next_seq_no(&mut self) -> i32 {
96 let n = self.sequence * 2 + 1;
97 self.sequence += 1;
98 n
99 }
100
101 pub fn next_seq_no_ncr(&self) -> i32 {
108 self.sequence * 2
109 }
110
111 pub fn correct_seq_no(&mut self, code: u32) {
118 match code {
119 32 => {
120 self.sequence += 64;
122 log::debug!(
123 "[layer] G-03 seq_no correction: code 32, bumped seq to {}",
124 self.sequence
125 );
126 }
127 33 => {
128 self.sequence = self.sequence.saturating_sub(16).max(1);
133 log::debug!(
134 "[layer] G-03 seq_no correction: code 33, lowered seq to {}",
135 self.sequence
136 );
137 }
138 _ => {}
139 }
140 }
141
142 pub fn correct_time_offset(&mut self, server_msg_id: i64) {
151 let server_time = (server_msg_id >> 32) as i32;
153 let local_now = SystemTime::now()
154 .duration_since(UNIX_EPOCH)
155 .unwrap()
156 .as_secs() as i32;
157 let new_offset = server_time.wrapping_sub(local_now);
158 log::debug!(
159 "[layer] G-12 time_offset correction: {} → {} (server_time={server_time})",
160 self.time_offset,
161 new_offset
162 );
163 self.time_offset = new_offset;
164 self.last_msg_id = 0;
166 }
167
168 pub fn alloc_msg_seqno(&mut self, content_related: bool) -> (i64, i32) {
178 let msg_id = self.next_msg_id();
179 let seqno = if content_related {
180 self.next_seq_no()
181 } else {
182 self.next_seq_no_ncr()
183 };
184 (msg_id, seqno)
185 }
186
187 pub fn pack_body_with_msg_id(&mut self, body: &[u8], content_related: bool) -> (Vec<u8>, i64) {
195 let msg_id = self.next_msg_id();
196 let seq_no = if content_related {
197 self.next_seq_no()
198 } else {
199 self.next_seq_no_ncr()
200 };
201
202 let inner_len = 8 + 8 + 8 + 4 + 4 + body.len();
203 let mut buf = DequeBuffer::with_capacity(inner_len, 32);
204 buf.extend(self.salt.to_le_bytes());
205 buf.extend(self.session_id.to_le_bytes());
206 buf.extend(msg_id.to_le_bytes());
207 buf.extend(seq_no.to_le_bytes());
208 buf.extend((body.len() as u32).to_le_bytes());
209 buf.extend(body.iter().copied());
210
211 encrypt_data_v2(&mut buf, &self.auth_key);
212 (buf.as_ref().to_vec(), msg_id)
213 }
214
215 pub fn pack_container(&mut self, container_body: &[u8]) -> (Vec<u8>, i64) {
225 self.pack_body_with_msg_id(container_body, false)
226 }
227
228 pub fn pack_serializable<S: layer_tl_types::Serializable>(&mut self, call: &S) -> Vec<u8> {
232 let body = call.to_bytes();
233 let msg_id = self.next_msg_id();
234 let seq_no = self.next_seq_no();
235
236 let inner_len = 8 + 8 + 8 + 4 + 4 + body.len();
237 let mut buf = DequeBuffer::with_capacity(inner_len, 32);
238 buf.extend(self.salt.to_le_bytes());
239 buf.extend(self.session_id.to_le_bytes());
240 buf.extend(msg_id.to_le_bytes());
241 buf.extend(seq_no.to_le_bytes());
242 buf.extend((body.len() as u32).to_le_bytes());
243 buf.extend(body.iter().copied());
244
245 encrypt_data_v2(&mut buf, &self.auth_key);
246 buf.as_ref().to_vec()
247 }
248
249 pub fn pack_serializable_with_msg_id<S: layer_tl_types::Serializable>(
251 &mut self,
252 call: &S,
253 ) -> (Vec<u8>, i64) {
254 let body = call.to_bytes();
255 let msg_id = self.next_msg_id();
256 let seq_no = self.next_seq_no();
257 let inner_len = 8 + 8 + 8 + 4 + 4 + body.len();
258 let mut buf = DequeBuffer::with_capacity(inner_len, 32);
259 buf.extend(self.salt.to_le_bytes());
260 buf.extend(self.session_id.to_le_bytes());
261 buf.extend(msg_id.to_le_bytes());
262 buf.extend(seq_no.to_le_bytes());
263 buf.extend((body.len() as u32).to_le_bytes());
264 buf.extend(body.iter().copied());
265 encrypt_data_v2(&mut buf, &self.auth_key);
266 (buf.as_ref().to_vec(), msg_id)
267 }
268
269 pub fn pack_with_msg_id<R: RemoteCall>(&mut self, call: &R) -> (Vec<u8>, i64) {
271 let body = call.to_bytes();
272 let msg_id = self.next_msg_id();
273 let seq_no = self.next_seq_no();
274 let inner_len = 8 + 8 + 8 + 4 + 4 + body.len();
275 let mut buf = DequeBuffer::with_capacity(inner_len, 32);
276 buf.extend(self.salt.to_le_bytes());
277 buf.extend(self.session_id.to_le_bytes());
278 buf.extend(msg_id.to_le_bytes());
279 buf.extend(seq_no.to_le_bytes());
280 buf.extend((body.len() as u32).to_le_bytes());
281 buf.extend(body.iter().copied());
282 encrypt_data_v2(&mut buf, &self.auth_key);
283 (buf.as_ref().to_vec(), msg_id)
284 }
285
286 pub fn pack<R: RemoteCall>(&mut self, call: &R) -> Vec<u8> {
288 let body = call.to_bytes();
289 let msg_id = self.next_msg_id();
290 let seq_no = self.next_seq_no();
291
292 let inner_len = 8 + 8 + 8 + 4 + 4 + body.len();
293 let mut buf = DequeBuffer::with_capacity(inner_len, 32);
294 buf.extend(self.salt.to_le_bytes());
295 buf.extend(self.session_id.to_le_bytes());
296 buf.extend(msg_id.to_le_bytes());
297 buf.extend(seq_no.to_le_bytes());
298 buf.extend((body.len() as u32).to_le_bytes());
299 buf.extend(body.iter().copied());
300
301 encrypt_data_v2(&mut buf, &self.auth_key);
302 buf.as_ref().to_vec()
303 }
304
305 pub fn unpack(&self, frame: &mut [u8]) -> Result<DecryptedMessage, DecryptError> {
307 let plaintext = decrypt_data_v2(frame, &self.auth_key).map_err(DecryptError::Crypto)?;
308
309 if plaintext.len() < 32 {
310 return Err(DecryptError::FrameTooShort);
311 }
312
313 let salt = i64::from_le_bytes(plaintext[..8].try_into().unwrap());
314 let session_id = i64::from_le_bytes(plaintext[8..16].try_into().unwrap());
315 let msg_id = i64::from_le_bytes(plaintext[16..24].try_into().unwrap());
316 let seq_no = i32::from_le_bytes(plaintext[24..28].try_into().unwrap());
317 let body_len = u32::from_le_bytes(plaintext[28..32].try_into().unwrap()) as usize;
318
319 if session_id != self.session_id {
320 return Err(DecryptError::SessionMismatch);
321 }
322
323 if 32 + body_len > plaintext.len() {
327 return Err(DecryptError::FrameTooShort);
328 }
329 let body = plaintext[32..32 + body_len].to_vec();
330
331 Ok(DecryptedMessage {
332 salt,
333 session_id,
334 msg_id,
335 seq_no,
336 body,
337 })
338 }
339
340 pub fn auth_key_bytes(&self) -> [u8; 256] {
342 self.auth_key.to_bytes()
343 }
344
345 pub fn session_id(&self) -> i64 {
347 self.session_id
348 }
349}
350
351impl EncryptedSession {
352 pub fn decrypt_frame(
355 auth_key: &[u8; 256],
356 session_id: i64,
357 frame: &mut [u8],
358 ) -> Result<DecryptedMessage, DecryptError> {
359 let key = AuthKey::from_bytes(*auth_key);
360 let plaintext = decrypt_data_v2(frame, &key).map_err(DecryptError::Crypto)?;
361 if plaintext.len() < 32 {
362 return Err(DecryptError::FrameTooShort);
363 }
364 let salt = i64::from_le_bytes(plaintext[..8].try_into().unwrap());
365 let sid = i64::from_le_bytes(plaintext[8..16].try_into().unwrap());
366 let msg_id = i64::from_le_bytes(plaintext[16..24].try_into().unwrap());
367 let seq_no = i32::from_le_bytes(plaintext[24..28].try_into().unwrap());
368 let body_len = u32::from_le_bytes(plaintext[28..32].try_into().unwrap()) as usize;
369 if sid != session_id {
370 return Err(DecryptError::SessionMismatch);
371 }
372 if 32 + body_len > plaintext.len() {
373 return Err(DecryptError::FrameTooShort);
374 }
375 let body = plaintext[32..32 + body_len].to_vec();
376 Ok(DecryptedMessage {
377 salt,
378 session_id: sid,
379 msg_id,
380 seq_no,
381 body,
382 })
383 }
384}