client.rs 19 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457
  1. /* This file is part of DarkFi (https://dark.fi)
  2. *
  3. * Copyright (C) 2020-2024 Dyne.org foundation
  4. *
  5. * This program is free software: you can redistribute it and/or modify
  6. * it under the terms of the GNU Affero General Public License as
  7. * published by the Free Software Foundation, either version 3 of the
  8. * License, or (at your option) any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU Affero General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU Affero General Public License
  16. * along with this program. If not, see <https://www.gnu.org/licenses/>.
  17. */
  18. use std::{
  19. collections::{HashMap, HashSet, VecDeque},
  20. sync::{
  21. atomic::{AtomicBool, AtomicUsize, Ordering::SeqCst},
  22. Arc,
  23. },
  24. };
  25. use darkfi::{
  26. event_graph::{proto::EventPut, Event, NULL_ID},
  27. system::Subscription,
  28. Error, Result,
  29. };
  30. use darkfi_serial::{deserialize_async_partial, serialize_async};
  31. use futures::FutureExt;
  32. use log::{debug, error, warn};
  33. use smol::{
  34. io::{self, AsyncBufReadExt, AsyncWriteExt, BufReader},
  35. lock::{OnceCell, RwLock},
  36. net::SocketAddr,
  37. prelude::{AsyncRead, AsyncWrite},
  38. };
  39. use super::{
  40. server::{IrcServer, MAX_NICK_LEN},
  41. NickServ, Privmsg, SERVER_NAME,
  42. };
  43. const PENALTY_LIMIT: usize = 5;
  44. /// Reply types, we can either send server replies, or client replies.
  45. pub enum ReplyType {
  46. /// Server reply, we have to use numerics
  47. Server((u16, String)),
  48. /// Client reply, message from someone to some{one,where}
  49. Client((String, String)),
  50. /// Pong reply, we just use server origin
  51. Pong(String),
  52. /// CAP reply
  53. Cap(String),
  54. /// NOTICE reply (from, to, what)
  55. Notice((String, String, String)),
  56. }
  57. /// Stateful IRC client handler, used for each client connection
  58. pub struct Client {
  59. /// Pointer to parent `IrcServer`
  60. pub server: Arc<IrcServer>,
  61. /// Subscription for incoming events
  62. pub incoming: Subscription<Event>,
  63. /// Client socket addr
  64. pub addr: SocketAddr,
  65. /// ID of the last sent event
  66. pub last_sent: RwLock<blake3::Hash>,
  67. /// Active (joined) channels for this client
  68. pub channels: RwLock<HashSet<String>>,
  69. /// Penalty counter, when limit is reached, disconnect client
  70. pub penalty: AtomicUsize,
  71. /// Registration marker
  72. pub registered: AtomicBool,
  73. /// Registration pause marker
  74. pub reg_paused: AtomicBool,
  75. /// CAP END marker
  76. pub is_cap_end: AtomicBool,
  77. /// Password setup marker
  78. pub is_pass_set: AtomicBool,
  79. /// Client username
  80. pub username: Arc<RwLock<String>>,
  81. /// Client nickname
  82. pub nickname: Arc<RwLock<String>>,
  83. /// Client realname
  84. pub realname: RwLock<String>,
  85. /// Client caps
  86. pub caps: RwLock<HashMap<String, bool>>,
  87. /// Set of seen messages for the user
  88. /// TODO: It grows indefinitely, needs to be pruned.
  89. pub seen: OnceCell<sled::Tree>,
  90. /// NickServ instance
  91. pub nickserv: Arc<NickServ>,
  92. }
  93. impl Client {
  94. /// Instantiate a new Client.
  95. pub async fn new(
  96. server: Arc<IrcServer>,
  97. incoming: Subscription<Event>,
  98. addr: SocketAddr,
  99. ) -> Result<Self> {
  100. let caps =
  101. HashMap::from([("no-history".to_string(), false), ("no-autojoin".to_string(), false)]);
  102. let username = Arc::new(RwLock::new(String::from("*")));
  103. let nickname = Arc::new(RwLock::new(String::from("*")));
  104. Ok(Self {
  105. server: server.clone(),
  106. incoming,
  107. addr,
  108. last_sent: RwLock::new(NULL_ID),
  109. channels: RwLock::new(HashSet::new()),
  110. penalty: AtomicUsize::new(0),
  111. registered: AtomicBool::new(false),
  112. reg_paused: AtomicBool::new(false),
  113. is_cap_end: AtomicBool::new(false),
  114. is_pass_set: AtomicBool::new(false),
  115. username: username.clone(),
  116. nickname: nickname.clone(),
  117. realname: RwLock::new(String::from("*")),
  118. caps: RwLock::new(caps),
  119. seen: OnceCell::new(),
  120. nickserv: Arc::new(
  121. NickServ::new(username.clone(), nickname.clone(), server.clone()).await?,
  122. ),
  123. })
  124. }
  125. /// This function handles a single IRC client. We listen to messages from the
  126. /// IRC client and relay them to the network, and we also get notified of
  127. /// incoming messages and relay them to the IRC client. The notifications come
  128. /// from events being inserted into the Event Graph.
  129. pub async fn multiplex_connection<S>(&self, stream: S) -> Result<()>
  130. where
  131. S: AsyncRead + AsyncWrite + Unpin + Send + 'static,
  132. {
  133. let (reader, mut writer) = io::split(stream);
  134. let mut reader = BufReader::new(reader);
  135. // Our buffer for the client line
  136. let mut line = String::new();
  137. let mut event_queue: VecDeque<_> = VecDeque::new();
  138. loop {
  139. futures::select! {
  140. // Process message from the IRC client
  141. r = reader.read_line(&mut line).fuse() => {
  142. // If something failed during reading, we disconnect.
  143. if let Err(e) = r {
  144. error!("[IRC CLIENT] Read failed for {}: {}", self.addr, e);
  145. self.incoming.unsubscribe().await;
  146. return Err(Error::ChannelStopped)
  147. }
  148. // If the penalty limit is reached, disconnect the client.
  149. if self.penalty.load(SeqCst) == PENALTY_LIMIT {
  150. self.incoming.unsubscribe().await;
  151. return Err(Error::ChannelStopped)
  152. }
  153. // We'll be strict here and disconnect the client
  154. // in case line processing failed in any way.
  155. match self.process_client_line(&line, &mut writer).await {
  156. // If we got an event back, we should broadcast it.
  157. // This means we add it to our DAG, and the DAG will
  158. // handle the rest of the propagation.
  159. Ok(Some(event)) => {
  160. // If the DAG is not synced yet, queue client lines
  161. // Once synced, send queued lines and continue as normal
  162. if !*self.server.darkirc.event_graph.synced.read().await{
  163. event_queue.push_back(event);
  164. continue
  165. }
  166. if !event_queue.is_empty(){
  167. for _ in 0..event_queue.len(){
  168. let ev = event_queue.pop_front().unwrap();
  169. let event_id = ev.id();
  170. *self.last_sent.write().await = event_id;
  171. // If it fails for some reason, for now, we just note it
  172. // and pass.
  173. if let Err(e) = self.server.darkirc.event_graph.dag_insert(&[ev.clone()]).await {
  174. error!("[IRC CLIENT] Failed inserting new event to DAG: {}", e);
  175. } else {
  176. // We sent this, so it should be considered seen.
  177. if let Err(e) = self.mark_seen(&event_id).await {
  178. error!("[IRC CLIENT] (multiplex_connection) self.mark_seen({}) failed: {}", event_id, e);
  179. return Err(e)
  180. }
  181. // Otherwise, broadcast it
  182. self.server.darkirc.p2p.broadcast(&EventPut(ev)).await;
  183. }
  184. }
  185. }
  186. // Update the last sent event.
  187. let event_id = event.id();
  188. *self.last_sent.write().await = event_id;
  189. // If it fails for some reason, for now, we just note it
  190. // and pass.
  191. if let Err(e) = self.server.darkirc.event_graph.dag_insert(&[event.clone()]).await {
  192. error!("[IRC CLIENT] Failed inserting new event to DAG: {}", e);
  193. } else {
  194. // We sent this, so it should be considered seen.
  195. if let Err(e) = self.mark_seen(&event_id).await {
  196. error!("[IRC CLIENT] (multiplex_connection) self.mark_seen({}) failed: {}", event_id, e);
  197. return Err(e)
  198. }
  199. // Otherwise, broadcast it
  200. self.server.darkirc.p2p.broadcast(&EventPut(event)).await;
  201. }
  202. }
  203. // If we got nothing, we just pass.
  204. Ok(None) => {}
  205. // If we got an error, we disconnect the client.
  206. Err(e) => {
  207. self.incoming.unsubscribe().await;
  208. return Err(e)
  209. }
  210. }
  211. // Clear the line buffer
  212. line = String::new();
  213. continue
  214. }
  215. // Process message from the network. These should only be PRIVMSG.
  216. r = self.incoming.receive().fuse() => {
  217. // We will skip this if it's our own message.
  218. let event_id = r.id();
  219. if *self.last_sent.read().await == event_id {
  220. continue
  221. }
  222. // If this event was seen, skip it
  223. match self.is_seen(&event_id).await {
  224. Ok(true) => continue,
  225. Ok(false) => {},
  226. Err(e) => {
  227. error!("[IRC CLIENT] (multiplex_connection) self.is_seen({}) failed: {}", event_id, e);
  228. return Err(e)
  229. }
  230. }
  231. // Try to deserialize the `Event`'s content into a `Privmsg`
  232. let mut privmsg: Privmsg = match deserialize_async_partial(r.content()).await {
  233. Ok((v, _)) => v,
  234. Err(e) => {
  235. error!("[IRC CLIENT] Failed deserializing incoming Privmsg event: {}", e);
  236. continue
  237. }
  238. };
  239. // We should skip any attempts to contact services from the network.
  240. if ["nickserv", "chanserv"].contains(&privmsg.nick.to_lowercase().as_str()) {
  241. continue
  242. }
  243. // If successful, potentially decrypt it:
  244. self.server.try_decrypt(&mut privmsg).await;
  245. // If we have this channel, or it's a DM, forward it to the client.
  246. // As a DM, we consider something that is <= MAX_NICK_LEN, and does not
  247. // start with the '#' character. With ChaCha, the ciphertext should be
  248. // longer than our MAX_NICK_LEN, so in case it is garbled, it should be
  249. // skipped by this code.
  250. let have_channel = self.channels.read().await.contains(&privmsg.channel);
  251. let msg_for_self = !privmsg.channel.starts_with('#') && privmsg.channel.as_bytes().len() <= MAX_NICK_LEN;
  252. if have_channel || msg_for_self {
  253. // Add the nickname to the list of nicks on the channel, if it's a channel.
  254. let mut chans_lock = self.server.channels.write().await;
  255. if let Some(chan) = chans_lock.get_mut(&privmsg.channel) {
  256. chan.nicks.insert(privmsg.nick.clone());
  257. }
  258. drop(chans_lock);
  259. // Format the message
  260. let msg = format!("PRIVMSG {} :{}", privmsg.channel, privmsg.msg);
  261. // Send it to the client
  262. let reply = ReplyType::Client((privmsg.nick, msg));
  263. if let Err(e) = self.reply(&mut writer, &reply).await {
  264. error!("[IRC CLIENT] Failed writing PRIVMSG to client: {}", e);
  265. continue
  266. }
  267. // Mark the message as seen for this USER
  268. if let Err(e) = self.mark_seen(&event_id).await {
  269. error!("[IRC CLIENT] (multiplex_connection) self.mark_seen({}) failed: {}", event_id, e);
  270. return Err(e)
  271. }
  272. }
  273. }
  274. }
  275. }
  276. }
  277. /// Send a reply to the IRC client. Matches on the reply type.
  278. async fn reply<W>(&self, writer: &mut W, reply: &ReplyType) -> Result<()>
  279. where
  280. W: AsyncWrite + Unpin,
  281. {
  282. let r = match reply {
  283. ReplyType::Server((rpl, msg)) => format!(":{} {:03} {}", SERVER_NAME, rpl, msg),
  284. ReplyType::Client((nick, msg)) => format!(":{}!~anon@darkirc {}", nick, msg),
  285. ReplyType::Pong(origin) => format!(":{} PONG :{}", SERVER_NAME, origin),
  286. ReplyType::Cap(msg) => format!(":{} {}", SERVER_NAME, msg),
  287. ReplyType::Notice((src, dst, msg)) => {
  288. format!(":{}!~anon@darkirc NOTICE {} :{}", src, dst, msg)
  289. }
  290. };
  291. debug!("[{}] <-- {}", self.addr, r);
  292. writer.write(r.as_bytes()).await?;
  293. writer.write(b"\r\n").await?;
  294. writer.flush().await?;
  295. Ok(())
  296. }
  297. /// Handle the incoming line given sent by the IRC client
  298. async fn process_client_line<W>(&self, line: &str, writer: &mut W) -> Result<Option<Event>>
  299. where
  300. W: AsyncWrite + Unpin,
  301. {
  302. if line.is_empty() || line == "\n" || line == "\r\n" {
  303. return Err(Error::ParseFailed("Line is empty"))
  304. }
  305. let mut line = line.to_string();
  306. // Remove CRLF
  307. if &line[(line.len() - 2)..] == "\r\n" {
  308. line.pop();
  309. line.pop();
  310. } else if &line[(line.len() - 1)..] == "\n" {
  311. line.pop();
  312. } else {
  313. return Err(Error::ParseFailed("Line doesn't end with CR/LF"))
  314. }
  315. // Parse the line
  316. let mut tokens = line.split_ascii_whitespace();
  317. // Commands can begin with :garbage, but we will reject clients
  318. // doing that for now to keep the protocol simple and focused.
  319. let cmd = tokens.next().ok_or(Error::ParseFailed("Invalid command line"))?;
  320. let args = line.replacen(cmd, "", 1);
  321. let cmd = cmd.to_uppercase();
  322. debug!("[{}] --> {}{}", self.addr, cmd, args);
  323. // Handle the command. These implementations are in `command.rs`.
  324. let replies: Vec<ReplyType> = match cmd.as_str() {
  325. "ADMIN" => self.handle_cmd_admin(&args).await?,
  326. "CAP" => self.handle_cmd_cap(&args).await?,
  327. "INFO" => self.handle_cmd_info(&args).await?,
  328. "JOIN" => self.handle_cmd_join(&args, true).await?,
  329. "LIST" => self.handle_cmd_list(&args).await?,
  330. "MODE" => self.handle_cmd_mode(&args).await?,
  331. "MOTD" => self.handle_cmd_motd(&args).await?,
  332. "NAMES" => self.handle_cmd_names(&args).await?,
  333. "NICK" => self.handle_cmd_nick(&args).await?,
  334. "PART" => self.handle_cmd_part(&args).await?,
  335. "PASS" => self.handle_cmd_pass(&args).await?,
  336. "PING" => self.handle_cmd_ping(&args).await?,
  337. "PRIVMSG" => self.handle_cmd_privmsg(&args).await?,
  338. "REHASH" => self.handle_cmd_rehash(&args).await?,
  339. "TOPIC" => self.handle_cmd_topic(&args).await?,
  340. "USER" => self.handle_cmd_user(&args).await?,
  341. "VERSION" => self.handle_cmd_version(&args).await?,
  342. "QUIT" => return Err(Error::ChannelStopped),
  343. _ => {
  344. warn!("[IRC CLIENT] Unimplemented \"{}\" command", cmd);
  345. vec![]
  346. }
  347. };
  348. // Depending on the reply type, we send according messages.
  349. for reply in replies.iter() {
  350. self.reply(writer, reply).await?;
  351. }
  352. // If the command was a PRIVMSG the client sent, we need to encrypt it and
  353. // create an Event to broadcast and return it from this function. So let's try.
  354. // We also do not allow sending unencrypted DMs. In that case, we send a notice
  355. // to the client to inform them that the feature is not enabled.
  356. // NOTE: This is not the most performant way to do this, probably not even
  357. // TODO: the best place to do it. Patches welcome. It's also a bit fragile
  358. // since we assume that `handle_cmd_privmsg()` won't return any replies.
  359. if cmd.as_str() == "PRIVMSG" && replies.is_empty() {
  360. let channel = args.split_ascii_whitespace().next().unwrap().to_string();
  361. let msg_offset = args.find(':').unwrap() + 1;
  362. let (_, msg) = args.split_at(msg_offset);
  363. let mut privmsg = Privmsg {
  364. channel,
  365. nick: self.nickname.read().await.to_string(),
  366. msg: msg.to_string(),
  367. };
  368. // Encrypt the Privmsg if an encryption method is available.
  369. self.server.try_encrypt(&mut privmsg).await;
  370. // Build a DAG event and return it.
  371. let event =
  372. Event::new(serialize_async(&privmsg).await, &self.server.darkirc.event_graph).await;
  373. return Ok(Some(event))
  374. }
  375. Ok(None)
  376. }
  377. /// Atomically mark a message as seen for this client.
  378. pub async fn mark_seen(&self, event_id: &blake3::Hash) -> Result<()> {
  379. let db = self
  380. .seen
  381. .get_or_init(|| async {
  382. let u = self.username.read().await.to_string();
  383. self.server.darkirc.sled.open_tree(format!("darkirc_user_{}", u)).unwrap()
  384. })
  385. .await;
  386. debug!("Marking event {} as seen", event_id);
  387. let mut batch = sled::Batch::default();
  388. batch.insert(event_id.as_bytes(), &[]);
  389. Ok(db.apply_batch(batch)?)
  390. }
  391. /// Check if a message was already marked seen for this client.
  392. pub async fn is_seen(&self, event_id: &blake3::Hash) -> Result<bool> {
  393. let db = self
  394. .seen
  395. .get_or_init(|| async {
  396. let u = self.username.read().await.to_string();
  397. self.server.darkirc.sled.open_tree(format!("darkirc_user_{}", u)).unwrap()
  398. })
  399. .await;
  400. Ok(db.contains_key(event_id.as_bytes())?)
  401. }
  402. }