automatic discovery of nodes on the same LAN (fix #2)
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parent
67280bd861
commit
b7a1b4d454
1 changed files with 98 additions and 37 deletions
135
src/main.rs
135
src/main.rs
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@ -21,6 +21,8 @@ const TIMEOUT: Duration = Duration::from_secs(300);
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/// Interval at which to gossip last_seen info
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const GOSSIP_INTERVAL: Duration = Duration::from_secs(300);
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const LAN_BROADCAST_INTERVAL: Duration = Duration::from_secs(60);
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const IGD_INTERVAL: Duration = Duration::from_secs(60);
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const IGD_LEASE_DURATION: Duration = Duration::from_secs(300);
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@ -30,10 +32,16 @@ type Pubkey = String;
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struct Config {
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/// The Wireguard interface name
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interface: Pubkey,
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/// Forward an external port to Wiregard using UPnP IGD
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upnp_forward_external_port: Option<u16>,
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/// The port to use for gossip inside the Wireguard mesh (must be the same on all nodes)
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gossip_port: u16,
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/// Enable LAN discovery
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#[serde(default)]
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lan_discovery: bool,
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/// Forward an external port to Wiregard using UPnP IGD
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upnp_forward_external_port: Option<u16>,
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/// The list of peers we try to connect to
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#[serde(default)]
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peers: Vec<Peer>,
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@ -134,6 +142,7 @@ struct Daemon {
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struct PeerInfo {
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endpoint: Option<SocketAddr>,
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lan_endpoint: Option<(SocketAddr, u64)>,
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last_seen: u64,
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gossip_ip: IpAddr,
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gossip_prio: u64,
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@ -146,6 +155,10 @@ enum Gossip {
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endpoints: Vec<(SocketAddr, u64)>,
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},
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Request,
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LanBroadcast {
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pubkey: Pubkey,
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listen_port: u16,
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}
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}
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impl Daemon {
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@ -180,6 +193,7 @@ impl Daemon {
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thread::scope(|s| {
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s.spawn(|| self.wg_loop());
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s.spawn(|| self.recv_loop());
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s.spawn(|| self.lan_broadcast_loop());
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s.spawn(|| self.igd_loop());
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});
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unreachable!()
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@ -197,34 +211,10 @@ impl Daemon {
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}
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fn wg_loop_iter(&self, i: usize) -> Result<()> {
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let (_, _, wg_peers) = wg_dump(&self.config)?;
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let mut state = self.state.lock().unwrap();
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// 1. Update local peers info of peers
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for (pk, endpoint, last_seen) in wg_peers {
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match state.peers.get_mut(&pk) {
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Some(i) => {
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i.endpoint = endpoint;
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i.last_seen = last_seen;
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}
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None => {
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let gossip_ip = match self.config.peers.iter().find(|x| x.pubkey == pk) {
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Some(x) => x.address,
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None => continue,
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};
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let gossip_prio = fasthash(format!("{}-{}", self.our_pubkey, pk).as_bytes());
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state.peers.insert(
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pk,
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PeerInfo {
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endpoint,
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gossip_prio,
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gossip_ip,
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last_seen,
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},
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);
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}
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}
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}
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state.read_wg_peers(self)?;
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// 2. Send gossip for peers where there is a big update
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let announces = state
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@ -247,7 +237,7 @@ impl Daemon {
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}
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// 3. Try new address for disconnected peers
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state.setup_wg_peers(&self, i)?;
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state.setup_wg_peers(self, i)?;
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Ok(())
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}
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@ -277,6 +267,13 @@ impl Daemon {
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self.socket.send_to(&packet, from)?;
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}
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}
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Gossip::LanBroadcast{ pubkey, listen_port } => {
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if self.config.lan_discovery {
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if let Some(peer) = state.peers.get_mut(&pubkey) {
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peer.lan_endpoint = Some((SocketAddr::new(from.ip(), listen_port), time()));
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}
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}
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}
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}
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Ok(())
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}
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@ -292,6 +289,27 @@ impl Daemon {
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Ok((src, gossip))
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}
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fn lan_broadcast_loop(&self) {
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if self.config.lan_discovery {
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loop {
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if let Err(e) = self.lan_broadcast_iter() {
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error!("LAN broadcast loop error: {}", e);
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}
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std::thread::sleep(LAN_BROADCAST_INTERVAL);
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}
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}
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}
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fn lan_broadcast_iter(&self) -> Result<()> {
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let packet = bincode::serialize(&Gossip::LanBroadcast {
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pubkey: self.our_pubkey.clone(),
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listen_port: self.listen_port,
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})?;
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let addr = SocketAddr::new("255.255.255.255".parse().unwrap(), self.config.gossip_port);
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self.socket.send_to(&packet, addr)?;
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Ok(())
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}
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fn igd_loop(&self) {
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if let Some(external_port) = self.config.upnp_forward_external_port {
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loop {
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@ -401,6 +419,7 @@ impl State {
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}
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}
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None => {
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endpoints.sort_by_key(|(_, t)| -(*t as i64));
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endpoints.truncate(KEEP_MAX_ADDRESSES);
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self.gossip.insert(pubkey.clone(), endpoints.clone());
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Some(Gossip::Announce { pubkey, endpoints })
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@ -414,6 +433,37 @@ impl State {
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Ok(())
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}
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fn read_wg_peers(&mut self, daemon: &Daemon) -> Result<()> {
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let (_, _, wg_peers) = wg_dump(&daemon.config)?;
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for (pk, endpoint, last_seen) in wg_peers {
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match self.peers.get_mut(&pk) {
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Some(i) => {
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i.endpoint = endpoint;
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i.last_seen = last_seen;
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}
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None => {
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let gossip_ip = match daemon.config.peers.iter().find(|x| x.pubkey == pk) {
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Some(x) => x.address,
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None => continue,
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};
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let gossip_prio = fasthash(format!("{}-{}", daemon.our_pubkey, pk).as_bytes());
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self.peers.insert(
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pk,
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PeerInfo {
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endpoint,
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lan_endpoint: None,
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gossip_prio,
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gossip_ip,
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last_seen,
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},
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);
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}
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}
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}
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Ok(())
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}
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fn setup_wg_peers(&self, daemon: &Daemon, i: usize) -> Result<()> {
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let now = time();
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for peer in daemon.config.peers.iter() {
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@ -442,18 +492,28 @@ impl State {
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}
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// For disconnected peers, cycle through the IP addresses that we know of
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let mut endpoints = self.gossip.get(&peer.pubkey).cloned().unwrap_or_default();
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if let Some(endpoint) = &peer.endpoint {
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match endpoint.to_socket_addrs() {
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Err(e) => error!("Could not resolve DNS for {}: {}", endpoint, e),
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Ok(iter) => {
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for addr in iter {
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endpoints.push((addr, 0));
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let lan_endpoint = self.peers.get(&peer.pubkey)
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.and_then(|peer| peer.lan_endpoint)
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.filter(|(_, t)| time() < t + TIMEOUT.as_secs());
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let endpoints = match lan_endpoint {
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Some(endpoint) => vec![endpoint],
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None => {
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let mut endpoints = self.gossip.get(&peer.pubkey).cloned().unwrap_or_default();
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if let Some(endpoint) = &peer.endpoint {
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match endpoint.to_socket_addrs() {
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Err(e) => error!("Could not resolve DNS for {}: {}", endpoint, e),
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Ok(iter) => {
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for addr in iter {
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endpoints.push((addr, 0));
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}
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}
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}
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}
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endpoints.sort();
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endpoints
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}
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}
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endpoints.sort();
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};
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if !endpoints.is_empty() {
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let endpoint = endpoints[i % endpoints.len()];
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@ -486,6 +546,7 @@ impl State {
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.output()?;
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}
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}
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Ok(())
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}
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}
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