main.rs 5.0 KB

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  1. use async_channel::Receiver;
  2. use async_executor::Executor;
  3. use async_std::sync::{Arc, Mutex};
  4. use std::fmt;
  5. use log::{info, warn};
  6. use rand::rngs::OsRng;
  7. use smol::future;
  8. use structopt_toml::StructOptToml;
  9. use darkfi::{
  10. async_daemonize, net,
  11. rpc::server::listen_and_serve,
  12. system::{Subscriber, SubscriberPtr},
  13. util::{
  14. cli::{get_log_config, get_log_level, spawn_config},
  15. file::save_json_file,
  16. path::{expand_path, get_config_path},
  17. },
  18. Result,
  19. };
  20. pub mod buffers;
  21. pub mod crypto;
  22. pub mod irc;
  23. pub mod mvc;
  24. pub mod privmsg;
  25. pub mod protocol_privmsg;
  26. pub mod protocol_privmsg2;
  27. pub mod rpc;
  28. pub mod settings;
  29. use crate::{
  30. buffers::SeenIds,
  31. irc::IrcServer,
  32. privmsg::Privmsg,
  33. protocol_privmsg::ProtocolPrivmsg,
  34. rpc::JsonRpcInterface,
  35. settings::{Args, ChannelInfo, CONFIG_FILE, CONFIG_FILE_CONTENTS},
  36. };
  37. #[derive(serde::Serialize)]
  38. struct KeyPair {
  39. private_key: String,
  40. public_key: String,
  41. }
  42. impl fmt::Display for KeyPair {
  43. fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
  44. write!(f, "Public key: {}\nPrivate key: {}", self.public_key, self.private_key)
  45. }
  46. }
  47. struct Ircd {
  48. notify_clients: SubscriberPtr<Privmsg>,
  49. }
  50. impl Ircd {
  51. fn new() -> Self {
  52. let notify_clients = Subscriber::new();
  53. Self { notify_clients }
  54. }
  55. async fn start(
  56. &self,
  57. settings: &Args,
  58. seen: Arc<Mutex<SeenIds>>,
  59. p2p: net::P2pPtr,
  60. p2p_receiver: Receiver<Privmsg>,
  61. executor: Arc<Executor<'_>>,
  62. ) -> Result<()> {
  63. let notify_clients = self.notify_clients.clone();
  64. executor
  65. .spawn(async move {
  66. while let Ok(msg) = p2p_receiver.recv().await {
  67. notify_clients.notify(msg).await;
  68. }
  69. })
  70. .detach();
  71. let irc_server = IrcServer::new(
  72. settings.clone(),
  73. seen.clone(),
  74. p2p.clone(),
  75. self.notify_clients.clone(),
  76. )
  77. .await?;
  78. let executor_cloned = executor.clone();
  79. executor
  80. .spawn(async move {
  81. irc_server.start(executor_cloned.clone()).await.unwrap();
  82. })
  83. .detach();
  84. Ok(())
  85. }
  86. }
  87. async_daemonize!(realmain);
  88. async fn realmain(settings: Args, executor: Arc<Executor<'_>>) -> Result<()> {
  89. let seen = Arc::new(Mutex::new(SeenIds::new()));
  90. if settings.gen_secret {
  91. let secret_key = crypto_box::SecretKey::generate(&mut OsRng);
  92. let encoded = bs58::encode(secret_key.as_bytes());
  93. println!("{}", encoded.into_string());
  94. return Ok(())
  95. }
  96. if settings.gen_keypair {
  97. let secret_key = crypto_box::SecretKey::generate(&mut OsRng);
  98. let pub_key = secret_key.public_key();
  99. let prv_encoded = bs58::encode(secret_key.as_bytes()).into_string();
  100. let pub_encoded = bs58::encode(pub_key.as_bytes()).into_string();
  101. let kp = KeyPair { private_key: prv_encoded, public_key: pub_encoded };
  102. if settings.output.is_some() {
  103. let datastore = expand_path(&settings.output.unwrap())?;
  104. save_json_file(&datastore, &kp)?;
  105. } else {
  106. println!("Generated KeyPair:\n{}", kp);
  107. }
  108. return Ok(())
  109. }
  110. //
  111. // P2p setup
  112. //
  113. let mut net_settings = settings.net.clone();
  114. net_settings.app_version = Some(option_env!("CARGO_PKG_VERSION").unwrap_or("").to_string());
  115. let (p2p_send_channel, p2p_recv_channel) = async_channel::unbounded::<Privmsg>();
  116. let p2p = net::P2p::new(net_settings.into()).await;
  117. let p2p2 = p2p.clone();
  118. let registry = p2p.protocol_registry();
  119. let seen_c = seen.clone();
  120. registry
  121. .register(net::SESSION_ALL, move |channel, p2p| {
  122. let sender = p2p_send_channel.clone();
  123. let seen = seen_c.clone();
  124. async move { ProtocolPrivmsg::init(channel, sender, p2p, seen).await }
  125. })
  126. .await;
  127. p2p.clone().start(executor.clone()).await?;
  128. let executor_cloned = executor.clone();
  129. executor_cloned.spawn(p2p.clone().run(executor.clone())).detach();
  130. // RPC interface
  131. let rpc_listen_addr = settings.rpc_listen.clone();
  132. let rpc_interface =
  133. Arc::new(JsonRpcInterface { addr: rpc_listen_addr.clone(), p2p: p2p.clone() });
  134. executor.spawn(async move { listen_and_serve(rpc_listen_addr, rpc_interface).await }).detach();
  135. //
  136. // IRC instance
  137. //
  138. let ircd = Ircd::new();
  139. ircd.start(&settings, seen, p2p, p2p_recv_channel, executor.clone()).await?;
  140. // Run once receive exit signal
  141. let (signal, shutdown) = async_channel::bounded::<()>(1);
  142. ctrlc::set_handler(move || {
  143. warn!(target: "ircd", "ircd start Exit Signal");
  144. // cleaning up tasks running in the background
  145. async_std::task::block_on(signal.send(())).unwrap();
  146. })
  147. .unwrap();
  148. // Wait for SIGINT
  149. shutdown.recv().await?;
  150. print!("\r");
  151. info!("Caught termination signal, cleaning up and exiting...");
  152. p2p2.stop().await;
  153. Ok(())
  154. }