evgrd.rs 14 KB

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  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 darkfi::{
  19. async_daemonize, cli_desc,
  20. event_graph::{
  21. proto::{EventPut, ProtocolEventGraph},
  22. Event, EventGraph, EventGraphPtr,
  23. },
  24. net::{
  25. session::SESSION_DEFAULT,
  26. settings::SettingsOpt as NetSettingsOpt,
  27. transport::{Listener, PtListener, PtStream},
  28. P2p, P2pPtr,
  29. },
  30. rpc::{
  31. jsonrpc::JsonSubscriber,
  32. server::{listen_and_serve, RequestHandler},
  33. },
  34. system::{sleep, StoppableTask, StoppableTaskPtr},
  35. util::path::expand_path,
  36. Error, Result,
  37. };
  38. use darkfi_serial::{AsyncDecodable, AsyncEncodable};
  39. use futures::FutureExt;
  40. use log::{debug, error, info};
  41. use sled_overlay::sled;
  42. use smol::{fs, lock::Mutex, stream::StreamExt, Executor};
  43. use std::{collections::HashSet, path::PathBuf, sync::Arc};
  44. use structopt_toml::{serde::Deserialize, structopt::StructOpt, StructOptToml};
  45. use url::Url;
  46. use evgrd::{FetchEventsMessage, VersionMessage, MSG_EVENT, MSG_FETCHEVENTS, MSG_SENDEVENT};
  47. mod rpc;
  48. const CONFIG_FILE: &str = "evgrd.toml";
  49. const CONFIG_FILE_CONTENTS: &str = include_str!("../evgrd.toml");
  50. #[derive(Clone, Debug, Deserialize, StructOpt, StructOptToml)]
  51. #[serde(default)]
  52. #[structopt(name = "evgrd", about = cli_desc!())]
  53. struct Args {
  54. #[structopt(short, parse(from_occurrences))]
  55. /// Increase verbosity (-vvv supported)
  56. verbose: u8,
  57. #[structopt(short, long)]
  58. /// Configuration file to use
  59. config: Option<String>,
  60. #[structopt(long)]
  61. /// Set log file output
  62. log: Option<String>,
  63. #[structopt(long, default_value = "tcp://127.0.0.1:5588")]
  64. /// RPC server listen address
  65. daemon_listen: Url,
  66. #[structopt(long, default_value = "tcp://127.0.0.1:26690")]
  67. /// JSON-RPC server listen address
  68. json_rpc_listen: Url,
  69. #[structopt(short, long, default_value = "~/.local/darkfi/evgrd_db")]
  70. /// Datastore (DB) path
  71. datastore: String,
  72. #[structopt(short, long, default_value = "~/.local/darkfi/replayed_evgrd_db")]
  73. /// Replay logs (DB) path
  74. replay_datastore: String,
  75. /// Flag to store Sled DB instructions
  76. #[structopt(long)]
  77. replay_mode: bool,
  78. /// Flag to skip syncing the DAG (no history).
  79. #[structopt(long)]
  80. skip_dag_sync: bool,
  81. /// Number of attempts to sync the DAG.
  82. #[structopt(long, default_value = "5")]
  83. sync_attempts: u8,
  84. /// Number of seconds to wait before trying again if sync fails.
  85. #[structopt(long, default_value = "15")]
  86. sync_timeout: u8,
  87. /// P2P network settings
  88. #[structopt(flatten)]
  89. net: NetSettingsOpt,
  90. }
  91. pub struct Daemon {
  92. /// P2P network pointer
  93. p2p: P2pPtr,
  94. ///// Sled DB (also used in event_graph and for RLN)
  95. //sled: sled::Db,
  96. /// Event Graph instance
  97. event_graph: EventGraphPtr,
  98. /// JSON-RPC connection tracker
  99. rpc_connections: Mutex<HashSet<StoppableTaskPtr>>,
  100. /// dnet JSON-RPC subscriber
  101. dnet_sub: JsonSubscriber,
  102. /// deg JSON-RPC subscriber
  103. deg_sub: JsonSubscriber,
  104. /// Replay logs (DB) path
  105. replay_datastore: PathBuf,
  106. }
  107. impl Daemon {
  108. fn new(
  109. p2p: P2pPtr,
  110. //sled: sled::Db,
  111. event_graph: EventGraphPtr,
  112. dnet_sub: JsonSubscriber,
  113. deg_sub: JsonSubscriber,
  114. replay_datastore: PathBuf,
  115. ) -> Self {
  116. Self {
  117. p2p,
  118. //sled,
  119. event_graph,
  120. rpc_connections: Mutex::new(HashSet::new()),
  121. dnet_sub,
  122. deg_sub,
  123. replay_datastore,
  124. }
  125. }
  126. }
  127. async fn rpc_serve(
  128. listener: Box<dyn PtListener>,
  129. daemon: Arc<Daemon>,
  130. ex: Arc<Executor<'_>>,
  131. ) -> Result<()> {
  132. loop {
  133. match listener.next().await {
  134. Ok((stream, url)) => {
  135. info!(target: "evgrd", "Accepted connection from {url}");
  136. ex.spawn(handle_connect(stream, daemon.clone())).detach();
  137. }
  138. // Errors we didn't handle above:
  139. Err(e) => {
  140. error!(
  141. target: "evgrd",
  142. "Unhandled listener.next() error: {}", e,
  143. );
  144. continue
  145. }
  146. }
  147. }
  148. }
  149. async fn handle_connect(mut stream: Box<dyn PtStream>, daemon: Arc<Daemon>) -> Result<()> {
  150. let client_version = VersionMessage::decode_async(&mut stream).await?;
  151. info!(target: "evgrd", "Client version: {}", client_version.protocol_version);
  152. let version = VersionMessage::new();
  153. version.encode_async(&mut stream).await?;
  154. let event_sub = daemon.event_graph.event_pub.clone().subscribe().await;
  155. loop {
  156. futures::select! {
  157. ev = event_sub.receive().fuse() => {
  158. MSG_EVENT.encode_async(&mut stream).await?;
  159. ev.encode_async(&mut stream).await?;
  160. }
  161. msg_type = u8::decode_async(&mut stream).fuse() => {
  162. debug!(target: "evgrd", "Received msg_type: {msg_type:?}");
  163. let msg_type = msg_type?;
  164. match msg_type {
  165. MSG_FETCHEVENTS => fetch_events(&mut stream, &daemon).await?,
  166. MSG_SENDEVENT => send_event(&mut stream, &daemon).await?,
  167. _ => error!("Skipping unhandled msg_type: {msg_type}")
  168. }
  169. }
  170. }
  171. }
  172. }
  173. async fn fetch_events(stream: &mut Box<dyn PtStream>, daemon: &Daemon) -> Result<()> {
  174. let fetchevs = FetchEventsMessage::decode_async(stream).await?;
  175. info!(target: "evgrd", "Fetching events {fetchevs:?}");
  176. let events = daemon.event_graph.fetch_successors_of(fetchevs.unref_tips).await?;
  177. //info!("fetched {events:?}");
  178. for event in events {
  179. MSG_EVENT.encode_async(stream).await?;
  180. event.encode_async(stream).await?;
  181. }
  182. Ok(())
  183. }
  184. async fn send_event(stream: &mut Box<dyn PtStream>, daemon: &Daemon) -> Result<()> {
  185. let timestamp = u64::decode_async(stream).await?;
  186. let content = Vec::<u8>::decode_async(stream).await?;
  187. info!(target: "evgrd", "send_event: {timestamp}, {content:?}");
  188. let event = Event::with_timestamp(timestamp, content, &daemon.event_graph).await;
  189. daemon.event_graph.dag_insert(&[event.clone()]).await.unwrap();
  190. info!(target: "evgrd", "Broadcasting event put: {event:?}");
  191. //daemon.p2p.broadcast(&EventPut(event)).await;
  192. let p2p = daemon.p2p.clone();
  193. let self_version = p2p.settings().read().await.app_version.clone();
  194. let connected_peers = p2p.hosts().peers();
  195. let mut peers_with_matched_version = vec![];
  196. let mut peers_with_different_version = vec![];
  197. for peer in connected_peers {
  198. let peer_version = peer.version.lock().await.clone();
  199. if let Some(ref peer_version) = peer_version {
  200. if self_version == peer_version.version {
  201. peers_with_matched_version.push(peer)
  202. } else {
  203. peers_with_different_version.push(peer)
  204. }
  205. }
  206. }
  207. if !peers_with_matched_version.is_empty() {
  208. p2p.broadcast_to(&EventPut(event.clone()), &peers_with_matched_version).await;
  209. }
  210. if !peers_with_different_version.is_empty() {
  211. let mut event = event;
  212. event.timestamp /= 1000;
  213. p2p.broadcast_to(&EventPut(event), &peers_with_different_version).await;
  214. }
  215. Ok(())
  216. }
  217. async_daemonize!(realmain);
  218. async fn realmain(args: Args, ex: Arc<Executor<'static>>) -> Result<()> {
  219. info!("Starting evgrd node");
  220. // Create datastore path if not there already.
  221. let datastore = expand_path(&args.datastore)?;
  222. fs::create_dir_all(&datastore).await?;
  223. let replay_datastore = expand_path(&args.replay_datastore)?;
  224. let replay_mode = args.replay_mode;
  225. info!("Instantiating event DAG");
  226. let sled_db = sled::open(datastore)?;
  227. let mut p2p_settings: darkfi::net::Settings = args.net.into();
  228. p2p_settings.app_version = semver::Version::parse(env!("CARGO_PKG_VERSION")).unwrap();
  229. p2p_settings.seeds.push(url::Url::parse("tcp+tls://lilith1.dark.fi:5262").unwrap());
  230. let p2p = P2p::new(p2p_settings, ex.clone()).await?;
  231. let event_graph = EventGraph::new(
  232. p2p.clone(),
  233. sled_db.clone(),
  234. replay_datastore.clone(),
  235. replay_mode,
  236. "evgrd_dag",
  237. 1,
  238. ex.clone(),
  239. )
  240. .await?;
  241. // Adding some events
  242. // for i in 1..6 {
  243. // let event = Event::new(vec![1, 2, 3, i], &event_graph).await;
  244. // event_graph.dag_insert(&[event.clone()]).await.unwrap();
  245. // }
  246. let prune_task = event_graph.prune_task.get().unwrap();
  247. info!("Registering EventGraph P2P protocol");
  248. let event_graph_ = Arc::clone(&event_graph);
  249. let registry = p2p.protocol_registry();
  250. registry
  251. .register(SESSION_DEFAULT, move |channel, _| {
  252. let event_graph_ = event_graph_.clone();
  253. async move { ProtocolEventGraph::init(event_graph_, channel).await.unwrap() }
  254. })
  255. .await;
  256. info!("Starting dnet subs task");
  257. let dnet_sub = JsonSubscriber::new("dnet.subscribe_events");
  258. let dnet_sub_ = dnet_sub.clone();
  259. let p2p_ = p2p.clone();
  260. let dnet_task = StoppableTask::new();
  261. dnet_task.clone().start(
  262. async move {
  263. let dnet_sub = p2p_.dnet_subscribe().await;
  264. loop {
  265. let event = dnet_sub.receive().await;
  266. debug!("Got dnet event: {:?}", event);
  267. dnet_sub_.notify(vec![event.into()].into()).await;
  268. }
  269. },
  270. |res| async {
  271. match res {
  272. Ok(()) | Err(Error::DetachedTaskStopped) => { /* Do nothing */ }
  273. Err(e) => panic!("{}", e),
  274. }
  275. },
  276. Error::DetachedTaskStopped,
  277. ex.clone(),
  278. );
  279. info!("Starting deg subs task");
  280. let deg_sub = JsonSubscriber::new("deg.subscribe_events");
  281. let deg_sub_ = deg_sub.clone();
  282. let event_graph_ = event_graph.clone();
  283. let deg_task = StoppableTask::new();
  284. deg_task.clone().start(
  285. async move {
  286. let deg_sub = event_graph_.deg_subscribe().await;
  287. loop {
  288. let event = deg_sub.receive().await;
  289. debug!("Got deg event: {:?}", event);
  290. deg_sub_.notify(vec![event.into()].into()).await;
  291. }
  292. },
  293. |res| async {
  294. match res {
  295. Ok(()) | Err(Error::DetachedTaskStopped) => { /* Do nothing */ }
  296. Err(e) => panic!("{}", e),
  297. }
  298. },
  299. Error::DetachedTaskStopped,
  300. ex.clone(),
  301. );
  302. info!("Starting JSON-RPC server");
  303. let daemon = Arc::new(Daemon::new(
  304. p2p.clone(),
  305. //sled_db.clone(),
  306. event_graph.clone(),
  307. dnet_sub,
  308. deg_sub,
  309. replay_datastore.clone(),
  310. ));
  311. // Used for deg and dnet
  312. let daemon_ = daemon.clone();
  313. let rpc_task = StoppableTask::new();
  314. rpc_task.clone().start(
  315. listen_and_serve(args.json_rpc_listen, daemon.clone(), None, ex.clone()),
  316. |res| async move {
  317. match res {
  318. Ok(()) | Err(Error::RpcServerStopped) => daemon_.stop_connections().await,
  319. Err(e) => error!("Failed stopping JSON-RPC server: {}", e),
  320. }
  321. },
  322. Error::RpcServerStopped,
  323. ex.clone(),
  324. );
  325. info!("Starting evgrd server");
  326. let listener = Listener::new(args.daemon_listen, None).await?;
  327. let ptlistener = listener.listen().await?;
  328. let rpc_task = StoppableTask::new();
  329. rpc_task.clone().start(
  330. rpc_serve(ptlistener, daemon.clone(), ex.clone()),
  331. |res| async move {
  332. match res {
  333. Ok(()) => panic!("Acceptor task should never complete without error status"),
  334. //Err(Error::RpcServerStopped) => daemon_.stop_connections().await,
  335. Err(e) => error!("Failed stopping RPC server: {}", e),
  336. }
  337. },
  338. Error::RpcServerStopped,
  339. ex.clone(),
  340. );
  341. info!("Starting P2P network");
  342. p2p.clone().start().await?;
  343. info!("Waiting for some P2P connections...");
  344. sleep(5).await;
  345. // We'll attempt to sync {sync_attempts} times
  346. if !args.skip_dag_sync {
  347. for i in 1..=args.sync_attempts {
  348. info!("Syncing event DAG (attempt #{})", i);
  349. match event_graph.dag_sync().await {
  350. Ok(()) => break,
  351. Err(e) => {
  352. if i == args.sync_attempts {
  353. error!("Failed syncing DAG. Exiting.");
  354. p2p.stop().await;
  355. return Err(Error::DagSyncFailed)
  356. } else {
  357. // TODO: Maybe at this point we should prune or something?
  358. // TODO: Or maybe just tell the user to delete the DAG from FS.
  359. error!("Failed syncing DAG ({}), retrying in {}s...", e, args.sync_timeout);
  360. sleep(args.sync_timeout.into()).await;
  361. }
  362. }
  363. }
  364. }
  365. } else {
  366. *event_graph.synced.write().await = true;
  367. }
  368. // Signal handling for graceful termination.
  369. let (signals_handler, signals_task) = SignalHandler::new(ex)?;
  370. signals_handler.wait_termination(signals_task).await?;
  371. info!("Caught termination signal, cleaning up and exiting...");
  372. info!("Stopping P2P network");
  373. p2p.stop().await;
  374. info!("Stopping RPC server");
  375. rpc_task.stop().await;
  376. dnet_task.stop().await;
  377. deg_task.stop().await;
  378. info!("Stopping IRC server");
  379. prune_task.stop().await;
  380. info!("Flushing sled database...");
  381. let flushed_bytes = sled_db.flush_async().await?;
  382. info!("Flushed {} bytes", flushed_bytes);
  383. info!("Shut down successfully");
  384. Ok(())
  385. }