main.rs 17 KB

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  1. use std::str::FromStr;
  2. use async_executor::Executor;
  3. use async_std::sync::{Arc, Mutex};
  4. use async_trait::async_trait;
  5. use futures_lite::future;
  6. use log::{debug, error, info};
  7. use serde_derive::Deserialize;
  8. use structopt::StructOpt;
  9. use structopt_toml::StructOptToml;
  10. use url::Url;
  11. use darkfi::{
  12. async_daemonize, cli_desc,
  13. consensus::{
  14. proto::{
  15. ProtocolParticipant, ProtocolProposal, ProtocolSync, ProtocolSyncConsensus, ProtocolTx,
  16. ProtocolVote,
  17. },
  18. state::ValidatorStatePtr,
  19. task::{block_sync_task, proposal_task},
  20. ValidatorState, MAINNET_GENESIS_HASH_BYTES, MAINNET_GENESIS_TIMESTAMP,
  21. TESTNET_GENESIS_HASH_BYTES, TESTNET_GENESIS_TIMESTAMP,
  22. },
  23. crypto::{address::Address, keypair::PublicKey},
  24. net,
  25. net::P2pPtr,
  26. node::Client,
  27. rpc::{
  28. clock_sync::check_clock,
  29. jsonrpc::{
  30. ErrorCode::{InvalidParams, MethodNotFound},
  31. JsonError, JsonRequest, JsonResult,
  32. },
  33. server::{listen_and_serve, RequestHandler},
  34. },
  35. util::{
  36. cli::{get_log_config, get_log_level, spawn_config},
  37. path::{expand_path, get_config_path},
  38. },
  39. wallet::walletdb::init_wallet,
  40. Error, Result,
  41. };
  42. mod error;
  43. use error::{server_error, RpcError};
  44. const CONFIG_FILE: &str = "darkfid_config.toml";
  45. const CONFIG_FILE_CONTENTS: &str = include_str!("../darkfid_config.toml");
  46. #[derive(Clone, Debug, Deserialize, StructOpt, StructOptToml)]
  47. #[serde(default)]
  48. #[structopt(name = "darkfid", about = cli_desc!())]
  49. struct Args {
  50. #[structopt(short, long)]
  51. /// Configuration file to use
  52. config: Option<String>,
  53. #[structopt(long, default_value = "testnet")]
  54. /// Chain to use (testnet, mainnet)
  55. chain: String,
  56. #[structopt(long)]
  57. /// Participate in consensus
  58. consensus: bool,
  59. #[structopt(long, default_value = "~/.config/darkfi/darkfid_wallet.db")]
  60. /// Path to wallet database
  61. wallet_path: String,
  62. #[structopt(long, default_value = "changeme")]
  63. /// Password for the wallet database
  64. wallet_pass: String,
  65. #[structopt(long, default_value = "~/.config/darkfi/darkfid_blockchain")]
  66. /// Path to blockchain database
  67. database: String,
  68. #[structopt(long, default_value = "tcp://127.0.0.1:8340")]
  69. /// JSON-RPC listen URL
  70. rpc_listen: Url,
  71. #[structopt(long)]
  72. /// P2P accept addresses for the consensus protocol (repeatable flag)
  73. consensus_p2p_accept: Vec<Url>,
  74. #[structopt(long)]
  75. /// P2P external addresses for the consensus protocol (repeatable flag)
  76. consensus_p2p_external: Vec<Url>,
  77. #[structopt(long, default_value = "8")]
  78. /// Connection slots for the consensus protocol
  79. consensus_slots: u32,
  80. #[structopt(long)]
  81. /// Connect to peer for the consensus protocol (repeatable flag)
  82. consensus_p2p_peer: Vec<Url>,
  83. #[structopt(long)]
  84. /// Peers JSON-RPC listen URL for clock synchronization (repeatable flag)
  85. consensus_peer_rpc: Vec<Url>,
  86. #[structopt(long)]
  87. /// Connect to seed for the consensus protocol (repeatable flag)
  88. consensus_p2p_seed: Vec<Url>,
  89. #[structopt(long)]
  90. /// Seed nodes JSON-RPC listen URL for clock synchronization (repeatable flag)
  91. consensus_seed_rpc: Vec<Url>,
  92. #[structopt(long)]
  93. /// Prefered transports of outbound connections for the consensus protocol (repeatable flag)
  94. consensus_p2p_transports: Vec<String>,
  95. #[structopt(long)]
  96. /// P2P accept addresses for the syncing protocol (repeatable flag)
  97. sync_p2p_accept: Vec<Url>,
  98. #[structopt(long)]
  99. /// P2P external addresses for the syncing protocol (repeatable flag)
  100. sync_p2p_external: Vec<Url>,
  101. #[structopt(long, default_value = "8")]
  102. /// Connection slots for the syncing protocol
  103. sync_slots: u32,
  104. #[structopt(long)]
  105. /// Connect to peer for the syncing protocol (repeatable flag)
  106. sync_p2p_peer: Vec<Url>,
  107. #[structopt(long)]
  108. /// Connect to seed for the syncing protocol (repeatable flag)
  109. sync_p2p_seed: Vec<Url>,
  110. #[structopt(long)]
  111. /// Prefered transports of outbound connections for the syncing protocol (repeatable flag)
  112. sync_p2p_transports: Vec<String>,
  113. #[structopt(long)]
  114. /// Enable localnet hosts
  115. localnet: bool,
  116. #[structopt(long)]
  117. /// Enable channel log
  118. channel_log: bool,
  119. #[structopt(long)]
  120. /// Whitelisted cashier address (repeatable flag)
  121. cashier_pub: Vec<String>,
  122. #[structopt(long)]
  123. /// Whitelisted faucet address (repeatable flag)
  124. faucet_pub: Vec<String>,
  125. #[structopt(long)]
  126. /// Verify system clock is correct
  127. clock_sync: bool,
  128. #[structopt(short, parse(from_occurrences))]
  129. /// Increase verbosity (-vvv supported)
  130. verbose: u8,
  131. }
  132. pub struct Darkfid {
  133. synced: Mutex<bool>, // AtomicBool is weird in Arc
  134. _consensus_p2p: Option<P2pPtr>,
  135. sync_p2p: Option<P2pPtr>,
  136. client: Arc<Client>,
  137. validator_state: ValidatorStatePtr,
  138. }
  139. // JSON-RPC methods
  140. mod rpc_blockchain;
  141. mod rpc_misc;
  142. mod rpc_tx;
  143. mod rpc_wallet;
  144. #[async_trait]
  145. impl RequestHandler for Darkfid {
  146. async fn handle_request(&self, req: JsonRequest) -> JsonResult {
  147. if !req.params.is_array() {
  148. return JsonError::new(InvalidParams, None, req.id).into()
  149. }
  150. let params = req.params.as_array().unwrap();
  151. match req.method.as_str() {
  152. // =====================
  153. // Miscellaneous methods
  154. // =====================
  155. Some("ping") => return self.misc_pong(req.id, params).await,
  156. Some("clock") => return self.misc_clock(req.id, params).await,
  157. // ==================
  158. // Blockchain methods
  159. // ==================
  160. Some("blockchain.get_slot") => return self.blockchain_get_slot(req.id, params).await,
  161. Some("blockchain.merkle_roots") => {
  162. return self.blockchain_merkle_roots(req.id, params).await
  163. }
  164. // ===================
  165. // Transaction methods
  166. // ===================
  167. Some("tx.transfer") => return self.tx_transfer(req.id, params).await,
  168. Some("tx.broadcast") => return self.tx_broadcast(req.id, params).await,
  169. // ==============
  170. // Wallet methods
  171. // ==============
  172. Some("wallet.keygen") => return self.wallet_keygen(req.id, params).await,
  173. Some("wallet.get_addrs") => return self.wallet_get_addrs(req.id, params).await,
  174. Some("wallet.export_keypair") => {
  175. return self.wallet_export_keypair(req.id, params).await
  176. }
  177. Some("wallet.import_keypair") => {
  178. return self.wallet_import_keypair(req.id, params).await
  179. }
  180. Some("wallet.set_default_address") => {
  181. return self.wallet_set_default_address(req.id, params).await
  182. }
  183. Some("wallet.get_balances") => return self.wallet_get_balances(req.id, params).await,
  184. Some("wallet.get_coins_valtok") => {
  185. return self.wallet_get_coins_valtok(req.id, params).await
  186. }
  187. Some("wallet.get_merkle_path") => {
  188. return self.wallet_get_merkle_path(req.id, params).await
  189. }
  190. Some("wallet.decrypt_note") => return self.wallet_decrypt_note(req.id, params).await,
  191. // ==============
  192. // Invalid method
  193. // ==============
  194. Some(_) | None => return JsonError::new(MethodNotFound, None, req.id).into(),
  195. }
  196. }
  197. }
  198. impl Darkfid {
  199. pub async fn new(
  200. validator_state: ValidatorStatePtr,
  201. consensus_p2p: Option<P2pPtr>,
  202. sync_p2p: Option<P2pPtr>,
  203. ) -> Result<Self> {
  204. debug!("Waiting for validator state lock");
  205. let client = validator_state.read().await.client.clone();
  206. debug!("Released validator state lock");
  207. Ok(Self {
  208. synced: Mutex::new(false),
  209. _consensus_p2p: consensus_p2p,
  210. sync_p2p,
  211. client,
  212. validator_state,
  213. })
  214. }
  215. }
  216. async_daemonize!(realmain);
  217. async fn realmain(args: Args, ex: Arc<Executor<'_>>) -> Result<()> {
  218. if args.consensus && args.clock_sync {
  219. // We verify that if peer/seed nodes are configured, their rpc config also exists
  220. if ((!args.consensus_p2p_peer.is_empty() && args.consensus_peer_rpc.is_empty()) ||
  221. (args.consensus_p2p_peer.is_empty() && !args.consensus_peer_rpc.is_empty())) ||
  222. ((!args.consensus_p2p_seed.is_empty() && args.consensus_seed_rpc.is_empty()) ||
  223. (args.consensus_p2p_seed.is_empty() && !args.consensus_seed_rpc.is_empty()))
  224. {
  225. error!(
  226. "Consensus peer/seed nodes misconfigured: both p2p and rpc urls must be present"
  227. );
  228. return Err(Error::ConfigInvalid)
  229. }
  230. // We verify that the system clock is valid before initializing
  231. let peers = [&args.consensus_peer_rpc[..], &args.consensus_seed_rpc[..]].concat();
  232. if (check_clock(&peers).await).is_err() {
  233. error!("System clock is invalid, terminating...");
  234. return Err(Error::InvalidClock)
  235. };
  236. }
  237. // We use this handler to block this function after detaching all
  238. // tasks, and to catch a shutdown signal, where we can clean up and
  239. // exit gracefully.
  240. let (signal, shutdown) = async_channel::bounded::<()>(1);
  241. ctrlc::set_handler(move || {
  242. async_std::task::block_on(signal.send(())).unwrap();
  243. })
  244. .unwrap();
  245. // Initialize or load wallet
  246. let wallet = init_wallet(&args.wallet_path, &args.wallet_pass).await?;
  247. // Initialize or open sled database
  248. let db_path = format!("{}/{}", expand_path(&args.database)?.to_str().unwrap(), args.chain);
  249. let sled_db = sled::open(&db_path)?;
  250. // Initialize validator state
  251. let (genesis_ts, genesis_data) = match args.chain.as_str() {
  252. "mainnet" => (*MAINNET_GENESIS_TIMESTAMP, *MAINNET_GENESIS_HASH_BYTES),
  253. "testnet" => (*TESTNET_GENESIS_TIMESTAMP, *TESTNET_GENESIS_HASH_BYTES),
  254. x => {
  255. error!("Unsupported chain `{}`", x);
  256. return Err(Error::UnsupportedChain)
  257. }
  258. };
  259. // TODO: sqldb init cleanup
  260. // Initialize Client
  261. let client = Arc::new(Client::new(wallet).await?);
  262. // Parse cashier addresses
  263. let mut cashier_pubkeys = vec![];
  264. for i in args.cashier_pub {
  265. let addr = Address::from_str(&i)?;
  266. let pk = PublicKey::try_from(addr)?;
  267. cashier_pubkeys.push(pk);
  268. }
  269. // Parse fauced addresses
  270. let mut faucet_pubkeys = vec![];
  271. for i in args.faucet_pub {
  272. let addr = Address::from_str(&i)?;
  273. let pk = PublicKey::try_from(addr)?;
  274. faucet_pubkeys.push(pk);
  275. }
  276. // Initialize validator state
  277. let state = ValidatorState::new(
  278. &sled_db,
  279. genesis_ts,
  280. genesis_data,
  281. client,
  282. cashier_pubkeys,
  283. faucet_pubkeys,
  284. )
  285. .await?;
  286. let sync_p2p = {
  287. info!("Registering block sync P2P protocols...");
  288. let sync_network_settings = net::Settings {
  289. inbound: args.sync_p2p_accept,
  290. outbound_connections: args.sync_slots,
  291. external_addr: args.sync_p2p_external,
  292. peers: args.sync_p2p_peer.clone(),
  293. seeds: args.sync_p2p_seed.clone(),
  294. outbound_transports: net::settings::get_outbound_transports(args.sync_p2p_transports),
  295. localnet: args.localnet,
  296. channel_log: args.channel_log,
  297. ..Default::default()
  298. };
  299. let p2p = net::P2p::new(sync_network_settings).await;
  300. let registry = p2p.protocol_registry();
  301. let _state = state.clone();
  302. registry
  303. .register(net::SESSION_ALL, move |channel, p2p| {
  304. let state = _state.clone();
  305. async move {
  306. ProtocolSync::init(channel, state, p2p, args.consensus)
  307. .await
  308. .unwrap()
  309. }
  310. })
  311. .await;
  312. let _state = state.clone();
  313. registry
  314. .register(net::SESSION_ALL, move |channel, p2p| {
  315. let state = _state.clone();
  316. async move { ProtocolTx::init(channel, state, p2p).await.unwrap() }
  317. })
  318. .await;
  319. Some(p2p)
  320. };
  321. // P2P network settings for the consensus protocol
  322. let consensus_p2p = {
  323. if !args.consensus {
  324. None
  325. } else {
  326. info!("Registering consensus P2P protocols...");
  327. let consensus_network_settings = net::Settings {
  328. inbound: args.consensus_p2p_accept,
  329. outbound_connections: args.consensus_slots,
  330. external_addr: args.consensus_p2p_external,
  331. peers: args.consensus_p2p_peer.clone(),
  332. seeds: args.consensus_p2p_seed.clone(),
  333. outbound_transports: net::settings::get_outbound_transports(
  334. args.consensus_p2p_transports,
  335. ),
  336. localnet: args.localnet,
  337. channel_log: args.channel_log,
  338. ..Default::default()
  339. };
  340. let p2p = net::P2p::new(consensus_network_settings).await;
  341. let registry = p2p.protocol_registry();
  342. let _state = state.clone();
  343. registry
  344. .register(net::SESSION_ALL, move |channel, p2p| {
  345. let state = _state.clone();
  346. async move { ProtocolParticipant::init(channel, state, p2p).await.unwrap() }
  347. })
  348. .await;
  349. let _state = state.clone();
  350. registry
  351. .register(net::SESSION_ALL, move |channel, p2p| {
  352. let state = _state.clone();
  353. async move { ProtocolProposal::init(channel, state, p2p).await.unwrap() }
  354. })
  355. .await;
  356. let _state = state.clone();
  357. let _sync_p2p = sync_p2p.clone().unwrap();
  358. registry
  359. .register(net::SESSION_ALL, move |channel, p2p| {
  360. let state = _state.clone();
  361. let __sync_p2p = _sync_p2p.clone();
  362. async move {
  363. ProtocolVote::init(channel, state, __sync_p2p, p2p)
  364. .await
  365. .unwrap()
  366. }
  367. })
  368. .await;
  369. let _state = state.clone();
  370. registry
  371. .register(net::SESSION_ALL, move |channel, p2p| {
  372. let state = _state.clone();
  373. async move { ProtocolSyncConsensus::init(channel, state, p2p).await.unwrap() }
  374. })
  375. .await;
  376. Some(p2p)
  377. }
  378. };
  379. // Initialize program state
  380. let darkfid = Darkfid::new(state.clone(), consensus_p2p.clone(), sync_p2p.clone()).await?;
  381. let darkfid = Arc::new(darkfid);
  382. // JSON-RPC server
  383. info!("Starting JSON-RPC server");
  384. ex.spawn(listen_and_serve(args.rpc_listen, darkfid.clone())).detach();
  385. info!("Starting sync P2P network");
  386. sync_p2p.clone().unwrap().start(ex.clone()).await?;
  387. let _ex = ex.clone();
  388. let _sync_p2p = sync_p2p.clone();
  389. ex.spawn(async move {
  390. if let Err(e) = _sync_p2p.unwrap().run(_ex).await {
  391. error!("Failed starting sync P2P network: {}", e);
  392. }
  393. })
  394. .detach();
  395. info!("Waiting for sync P2P outbound connections");
  396. sync_p2p.clone().unwrap().wait_for_outbound(ex.clone()).await?;
  397. match block_sync_task(sync_p2p.clone().unwrap(), state.clone()).await {
  398. Ok(()) => *darkfid.synced.lock().await = true,
  399. Err(e) => error!("Failed syncing blockchain: {}", e),
  400. }
  401. // Consensus protocol
  402. if args.consensus && *darkfid.synced.lock().await {
  403. info!("Starting consensus P2P network");
  404. consensus_p2p.clone().unwrap().start(ex.clone()).await?;
  405. let _ex = ex.clone();
  406. let _consensus_p2p = consensus_p2p.clone();
  407. ex.spawn(async move {
  408. if let Err(e) = _consensus_p2p.unwrap().run(_ex).await {
  409. error!("Failed starting consensus P2P network: {}", e);
  410. }
  411. })
  412. .detach();
  413. info!("Waiting for consensus P2P outbound connections");
  414. consensus_p2p.clone().unwrap().wait_for_outbound(ex.clone()).await?;
  415. info!("Starting consensus protocol task");
  416. ex.spawn(proposal_task(consensus_p2p.unwrap(), sync_p2p.unwrap(), state)).detach();
  417. } else {
  418. info!("Not starting consensus P2P network");
  419. }
  420. // Wait for SIGINT
  421. shutdown.recv().await?;
  422. print!("\r");
  423. info!("Caught termination signal, cleaning up and exiting...");
  424. info!("Flushing database...");
  425. let flushed_bytes = sled_db.flush_async().await?;
  426. info!("Flushed {} bytes", flushed_bytes);
  427. Ok(())
  428. }