use async_std::sync::Arc; use std::{env, fs}; use log::{error, info}; use smol::Executor; use url::Url; use crate::{ system::{StoppableTask, StoppableTaskPtr, Subscriber, SubscriberPtr, Subscription}, Error, Result, }; use super::{ Channel, ChannelPtr, TcpTransport, TorTransport, Transport, TransportListener, TransportName, }; /// Atomic pointer to Acceptor class. pub type AcceptorPtr = Arc; /// Create inbound socket connections. pub struct Acceptor { channel_subscriber: SubscriberPtr>, task: StoppableTaskPtr, } impl Acceptor { /// Create new Acceptor object. pub fn new() -> Arc { Arc::new(Self { channel_subscriber: Subscriber::new(), task: StoppableTask::new() }) } /// Start accepting inbound socket connections. Creates a listener to start /// listening on a local socket address. Then runs an accept loop in a new /// thread, erroring if a connection problem occurs. pub async fn start( self: Arc, accept_url: Url, executor: Arc>, ) -> Result<()> { let transport_name = TransportName::try_from(accept_url.clone())?; match transport_name { TransportName::Tcp(upgrade) => { let transport = TcpTransport::new(None, 1024); let listener = transport.listen_on(accept_url.clone()); if let Err(err) = listener { error!("TCP Setup failed: {}", err); return Err(Error::BindFailed(accept_url.clone().to_string())) } let listener = listener?.await; if let Err(err) = listener { error!("TCP Bind listener failed: {}", err); return Err(Error::BindFailed(accept_url.to_string())) } let listener = listener?; match upgrade { None => { self.accept(Box::new(listener), executor); } Some(u) if u == "tls" => { let tls_listener = transport.upgrade_listener(listener)?.await?; self.accept(Box::new(tls_listener), executor); } Some(u) => return Err(Error::UnsupportedTransportUpgrade(u)), } } TransportName::Tor(upgrade) => { let socks5_url = Url::parse( &env::var("DARKFI_TOR_SOCKS5_URL") .unwrap_or("socks5://127.0.0.1:9050".to_string()), )?; let torc_url = Url::parse( &env::var("DARKFI_TOR_CONTROL_URL") .unwrap_or("tcp://127.0.0.1:9051".to_string()), )?; let auth_cookie = env::var("DARKFI_TOR_COOKIE"); if auth_cookie.is_err() { return Err(Error::TorError( "Please set the env var DARKFI_TOR_COOKIE to the configured tor cookie file. \ For example: \ \'export DARKFI_TOR_COOKIE=\"/var/lib/tor/control_auth_cookie\"\'".to_string(), )) } let auth_cookie = auth_cookie.unwrap(); let auth_cookie = hex::encode(&fs::read(auth_cookie).unwrap()); let transport = TorTransport::new(socks5_url, Some((torc_url, auth_cookie)))?; // generate EHS pointing to local address let hurl = transport.create_ehs(accept_url.clone())?; info!("EHS TOR: {}", hurl.to_string()); let listener = transport.clone().listen_on(accept_url.clone()); if let Err(err) = listener { error!("TOR Setup failed: {}", err); return Err(Error::BindFailed(accept_url.clone().to_string())) } let listener = listener?.await; if let Err(err) = listener { error!("TOR Bind listener failed: {}", err); return Err(Error::BindFailed(accept_url.to_string())) } let listener = listener?; match upgrade { None => { self.accept(Box::new(listener), executor); } Some(u) if u == "tls" => { let tls_listener = transport.upgrade_listener(listener)?.await?; self.accept(Box::new(tls_listener), executor); } Some(u) => return Err(Error::UnsupportedTransportUpgrade(u)), } } _ => unimplemented!(), } Ok(()) } /// Stop accepting inbound socket connections. pub async fn stop(&self) { // Send stop signal self.task.stop().await; } /// Start receiving network messages. pub async fn subscribe(self: Arc) -> Subscription> { self.channel_subscriber.clone().subscribe().await } /// Run the accept loop in a new thread and error if a connection problem /// occurs. fn accept(self: Arc, listener: Box, executor: Arc>) { self.task.clone().start( self.clone().run_accept_loop(listener), |result| self.handle_stop(result), Error::ServiceStopped, executor, ); } /// Run the accept loop. async fn run_accept_loop(self: Arc, listener: Box) -> Result<()> { while let Ok((stream, peer_addr)) = listener.next().await { let channel = Channel::new(stream, peer_addr).await; self.channel_subscriber.notify(Ok(channel)).await; } Ok(()) } /// Handles network errors. Panics if error passes silently, otherwise /// broadcasts the error. async fn handle_stop(self: Arc, result: Result<()>) { match result { Ok(()) => panic!("Acceptor task should never complete without error status"), Err(err) => { // Send this error to all channel subscribers let result = Err(err); self.channel_subscriber.notify(result).await; } } } }