protocol_privmsg2.rs 11 KB

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  1. /* This file is part of DarkFi (https://dark.fi)
  2. *
  3. * Copyright (C) 2020-2023 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::collections::{HashMap, VecDeque};
  19. use async_std::sync::{Arc, Mutex};
  20. use async_trait::async_trait;
  21. use darkfi_serial::{SerialDecodable, SerialEncodable};
  22. use log::debug;
  23. use rand::{rngs::OsRng, RngCore};
  24. use smol::Executor;
  25. use darkfi::{net, util::async_util::sleep, Result};
  26. use crate::{
  27. model::{Event, EventId, Model},
  28. settings::get_current_time,
  29. };
  30. const UNREAD_EVENT_EXPIRE_TIME: u64 = 3600; // in seconds
  31. const SIZE_OF_SEEN_BUFFER: usize = 65536;
  32. const MAX_CONFIRM: u8 = 4;
  33. #[derive(Default, Clone)]
  34. struct RingBuffer<T> {
  35. pub items: VecDeque<T>,
  36. }
  37. impl<T: Eq + PartialEq + Clone> RingBuffer<T> {
  38. pub fn new(capacity: usize) -> Self {
  39. let items = VecDeque::with_capacity(capacity);
  40. Self { items }
  41. }
  42. pub fn push(&mut self, val: T) {
  43. if self.items.len() == self.items.capacity() {
  44. self.items.pop_front();
  45. }
  46. self.items.push_back(val);
  47. }
  48. pub fn contains(&self, val: &T) -> bool {
  49. self.items.contains(val)
  50. }
  51. }
  52. type InvId = u64;
  53. #[derive(SerialEncodable, SerialDecodable, Clone, Debug, PartialEq, Eq, Hash)]
  54. struct InvItem {
  55. id: InvId,
  56. hash: EventId,
  57. }
  58. #[derive(SerialDecodable, SerialEncodable, Clone, Debug)]
  59. struct Inv {
  60. invs: Vec<InvItem>,
  61. }
  62. #[derive(SerialDecodable, SerialEncodable, Clone, Debug)]
  63. struct SyncEvent {
  64. leaves: Vec<EventId>,
  65. }
  66. #[derive(SerialDecodable, SerialEncodable, Clone, Debug)]
  67. struct GetData {
  68. events: Vec<EventId>,
  69. }
  70. #[derive(Default)]
  71. pub struct Seen<T> {
  72. seen: Mutex<RingBuffer<T>>,
  73. }
  74. impl<T: Eq + PartialEq + Clone> Seen<T> {
  75. pub fn new() -> Self {
  76. Self { seen: Mutex::new(RingBuffer::new(SIZE_OF_SEEN_BUFFER)) }
  77. }
  78. pub async fn push(&self, item: &T) -> bool {
  79. let seen = &mut self.seen.lock().await;
  80. if !seen.contains(item) {
  81. seen.push(item.clone());
  82. return true
  83. }
  84. false
  85. }
  86. }
  87. #[derive(Default)]
  88. pub struct UnreadEvents {
  89. events: HashMap<EventId, Event>,
  90. }
  91. impl UnreadEvents {
  92. pub fn new() -> Self {
  93. Self { events: HashMap::default() }
  94. }
  95. fn contains(&self, key: &EventId) -> bool {
  96. self.events.contains_key(key)
  97. }
  98. fn get(&self, key: &EventId) -> Option<Event> {
  99. self.events.get(key).cloned()
  100. }
  101. // Increase the read_confirms for an event, if it has exceeded the MAX_CONFIRM
  102. // then remove it from the hash_map and return Some(event), otherwise return None
  103. fn inc_read_confirms(&mut self, key: &EventId) -> Option<Event> {
  104. let mut result = None;
  105. if let Some(event) = self.events.get_mut(key) {
  106. event.read_confirms += 1;
  107. if event.read_confirms >= MAX_CONFIRM {
  108. result = Some(event.clone())
  109. }
  110. }
  111. if result.is_some() {
  112. self.events.remove(key);
  113. }
  114. result
  115. }
  116. fn insert(&mut self, event: &Event) {
  117. // prune expired events
  118. let mut prune_ids = vec![];
  119. for (id, e) in self.events.iter() {
  120. if e.timestamp + (UNREAD_EVENT_EXPIRE_TIME * 1000) < get_current_time() {
  121. prune_ids.push(*id);
  122. }
  123. }
  124. for id in prune_ids {
  125. self.events.remove(&id);
  126. }
  127. self.events.insert(event.hash(), event.clone());
  128. }
  129. }
  130. pub struct ProtocolEvent {
  131. jobsman: net::ProtocolJobsManagerPtr,
  132. event_sub: net::MessageSubscription<Event>,
  133. inv_sub: net::MessageSubscription<Inv>,
  134. getdata_sub: net::MessageSubscription<GetData>,
  135. syncevent_sub: net::MessageSubscription<SyncEvent>,
  136. p2p: net::P2pPtr,
  137. channel: net::ChannelPtr,
  138. model: Arc<Mutex<Model>>,
  139. seen_event: Seen<EventId>,
  140. seen_inv: Seen<InvId>,
  141. unread_events: Arc<Mutex<UnreadEvents>>,
  142. }
  143. impl ProtocolEvent {
  144. pub async fn init(
  145. channel: net::ChannelPtr,
  146. p2p: net::P2pPtr,
  147. model: Arc<Mutex<Model>>,
  148. seen_event: Seen<EventId>,
  149. seen_inv: Seen<InvId>,
  150. unread_events: Arc<Mutex<UnreadEvents>>,
  151. ) -> net::ProtocolBasePtr {
  152. let message_subsytem = channel.get_message_subsystem();
  153. message_subsytem.add_dispatch::<Event>().await;
  154. message_subsytem.add_dispatch::<Inv>().await;
  155. message_subsytem.add_dispatch::<GetData>().await;
  156. message_subsytem.add_dispatch::<SyncEvent>().await;
  157. let event_sub =
  158. channel.clone().subscribe_msg::<Event>().await.expect("Missing Event dispatcher!");
  159. let inv_sub = channel.subscribe_msg::<Inv>().await.expect("Missing Inv dispatcher!");
  160. let getdata_sub =
  161. channel.clone().subscribe_msg::<GetData>().await.expect("Missing GetData dispatcher!");
  162. let syncevent_sub = channel
  163. .clone()
  164. .subscribe_msg::<SyncEvent>()
  165. .await
  166. .expect("Missing SyncEvent dispatcher!");
  167. Arc::new(Self {
  168. jobsman: net::ProtocolJobsManager::new("ProtocolEvent", channel.clone()),
  169. event_sub,
  170. inv_sub,
  171. getdata_sub,
  172. syncevent_sub,
  173. p2p,
  174. channel,
  175. model,
  176. seen_event,
  177. seen_inv,
  178. unread_events,
  179. })
  180. }
  181. async fn handle_receive_event(self: Arc<Self>) -> Result<()> {
  182. debug!(target: "ircd", "ProtocolEvent::handle_receive_event() [START]");
  183. let exclude_list = vec![self.channel.address()];
  184. loop {
  185. let event = self.event_sub.receive().await?;
  186. let mut event = (*event).to_owned();
  187. if !self.seen_event.push(&event.hash()).await {
  188. continue
  189. }
  190. event.read_confirms += 1;
  191. if event.read_confirms >= MAX_CONFIRM {
  192. self.new_event(&event).await?;
  193. } else {
  194. self.unread_events.lock().await.insert(&event);
  195. self.send_inv(&event).await?;
  196. }
  197. // Broadcast the msg
  198. self.p2p.broadcast_with_exclude(event, &exclude_list).await?;
  199. }
  200. }
  201. async fn handle_receive_inv(self: Arc<Self>) -> Result<()> {
  202. debug!(target: "ircd", "ProtocolEvent::handle_receive_inv() [START]");
  203. let exclude_list = vec![self.channel.address()];
  204. loop {
  205. let inv = self.inv_sub.receive().await?;
  206. let inv = (*inv).to_owned();
  207. for inv in inv.invs.iter() {
  208. if !self.seen_inv.push(&inv.id).await {
  209. continue
  210. }
  211. {
  212. let mut unread_events = self.unread_events.lock().await;
  213. if !unread_events.contains(&inv.hash) {
  214. self.send_getdata(vec![inv.hash]).await?;
  215. } else if let Some(event) = unread_events.inc_read_confirms(&inv.hash) {
  216. self.new_event(&event).await?;
  217. }
  218. }
  219. }
  220. // Broadcast the inv msg
  221. self.p2p.broadcast_with_exclude(inv, &exclude_list).await?;
  222. }
  223. }
  224. async fn handle_receive_getdata(self: Arc<Self>) -> Result<()> {
  225. debug!(target: "ircd", "ProtocolEvent::handle_receive_getdata() [START]");
  226. loop {
  227. let getdata = self.getdata_sub.receive().await?;
  228. let events = (*getdata).to_owned().events;
  229. for event_id in events {
  230. let unread_event = self.unread_events.lock().await.get(&event_id);
  231. if let Some(event) = unread_event {
  232. self.channel.send(event).await?;
  233. continue
  234. }
  235. let model_event = self.model.lock().await.get_event(&event_id);
  236. if let Some(event) = model_event {
  237. self.channel.send(event).await?;
  238. }
  239. }
  240. }
  241. }
  242. async fn handle_receive_syncevent(self: Arc<Self>) -> Result<()> {
  243. debug!(target: "ircd", "ProtocolEvent::handle_receive_syncevent() [START]");
  244. loop {
  245. let syncevent = self.syncevent_sub.receive().await?;
  246. let model = self.model.lock().await;
  247. let leaves = model.find_leaves();
  248. if leaves == syncevent.leaves {
  249. continue
  250. }
  251. for leaf in syncevent.leaves.iter() {
  252. if leaves.contains(leaf) {
  253. continue
  254. }
  255. let children = model.get_event_children(leaf);
  256. for child in children {
  257. self.channel.send(child).await?;
  258. }
  259. }
  260. }
  261. }
  262. // every 2 seconds send a SyncEvent msg
  263. async fn send_sync_hash_loop(self: Arc<Self>) -> Result<()> {
  264. loop {
  265. sleep(2).await;
  266. let leaves = self.model.lock().await.find_leaves();
  267. self.channel.send(SyncEvent { leaves }).await?;
  268. }
  269. }
  270. async fn new_event(&self, event: &Event) -> Result<()> {
  271. let mut model = self.model.lock().await;
  272. if model.is_orphan(event) {
  273. self.send_getdata(vec![event.hash()]).await?;
  274. } else {
  275. model.add(event.clone());
  276. }
  277. Ok(())
  278. }
  279. async fn send_inv(&self, event: &Event) -> Result<()> {
  280. let id = OsRng.next_u64();
  281. self.p2p.broadcast(Inv { invs: vec![InvItem { id, hash: event.hash() }] }).await?;
  282. Ok(())
  283. }
  284. async fn send_getdata(&self, events: Vec<EventId>) -> Result<()> {
  285. self.channel.send(GetData { events }).await?;
  286. Ok(())
  287. }
  288. }
  289. #[async_trait]
  290. impl net::ProtocolBase for ProtocolEvent {
  291. async fn start(self: Arc<Self>, executor: Arc<Executor<'_>>) -> Result<()> {
  292. debug!(target: "ircd", "ProtocolEvent::start() [START]");
  293. self.jobsman.clone().start(executor.clone());
  294. self.jobsman.clone().spawn(self.clone().handle_receive_event(), executor.clone()).await;
  295. self.jobsman.clone().spawn(self.clone().handle_receive_inv(), executor.clone()).await;
  296. self.jobsman.clone().spawn(self.clone().handle_receive_getdata(), executor.clone()).await;
  297. self.jobsman.clone().spawn(self.clone().handle_receive_syncevent(), executor.clone()).await;
  298. self.jobsman.clone().spawn(self.clone().send_sync_hash_loop(), executor.clone()).await;
  299. debug!(target: "ircd", "ProtocolEvent::start() [END]");
  300. Ok(())
  301. }
  302. fn name(&self) -> &'static str {
  303. "ProtocolEvent"
  304. }
  305. }
  306. impl net::Message for Event {
  307. fn name() -> &'static str {
  308. "event"
  309. }
  310. }
  311. impl net::Message for Inv {
  312. fn name() -> &'static str {
  313. "inv"
  314. }
  315. }
  316. impl net::Message for SyncEvent {
  317. fn name() -> &'static str {
  318. "syncevent"
  319. }
  320. }
  321. impl net::Message for GetData {
  322. fn name() -> &'static str {
  323. "getdata"
  324. }
  325. }