2020-09-24 17:48:13 +00:00
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// VpnCloud - Peer-to-Peer VPN
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// Copyright (C) 2015-2020 Dennis Schwerdel
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// This software is licensed under GPL-3 or newer (see LICENSE.md)
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use crate::{
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crypto::Payload,
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error::Error,
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types::{NodeId, Range, RangeList, NODE_ID_BYTES},
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util::MsgBuffer
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};
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use byteorder::{NetworkEndian, ReadBytesExt, WriteBytesExt};
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use smallvec::{smallvec, SmallVec};
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use std::{
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io::{self, Cursor, Read, Seek, SeekFrom, Take, Write},
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net::{Ipv4Addr, Ipv6Addr, SocketAddr, SocketAddrV4, SocketAddrV6}
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};
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pub const MESSAGE_TYPE_DATA: u8 = 0;
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pub const MESSAGE_TYPE_NODE_INFO: u8 = 1;
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pub const MESSAGE_TYPE_KEEPALIVE: u8 = 2;
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pub const MESSAGE_TYPE_CLOSE: u8 = 0xff;
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pub type AddrList = SmallVec<[SocketAddr; 4]>;
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pub type PeerList = SmallVec<[PeerInfo; 16]>;
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#[derive(Debug, PartialEq)]
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pub struct PeerInfo {
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pub node_id: Option<NodeId>,
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pub addrs: AddrList
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}
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#[derive(Debug, PartialEq)]
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pub struct NodeInfo {
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pub node_id: NodeId,
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pub peers: PeerList,
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pub claims: RangeList,
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pub peer_timeout: Option<u16>
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}
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impl NodeInfo {
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const PART_NODEID: u8 = 4;
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const PART_CLAIMS: u8 = 2;
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const PART_END: u8 = 0;
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const PART_PEERS: u8 = 1;
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const PART_PEER_TIMEOUT: u8 = 3;
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fn decode_peer_list_part<R: Read>(r: &mut Take<R>) -> Result<PeerList, io::Error> {
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let mut peers = smallvec![];
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while r.limit() > 0 {
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let flags = r.read_u8()?;
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let has_node_id = (flags & 0x80) != 0;
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let num_ipv4_addrs = (flags & 0x07) as usize;
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let num_ipv6_addrs = (flags & 0x38) as usize / 8;
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let mut node_id = None;
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if has_node_id {
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let mut id = [0; NODE_ID_BYTES];
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r.read_exact(&mut id)?;
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node_id = Some(id)
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}
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let mut addrs = SmallVec::with_capacity(num_ipv4_addrs + num_ipv6_addrs);
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for _ in 0..num_ipv6_addrs {
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let mut ip = [0u8; 16];
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r.read_exact(&mut ip)?;
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let port = r.read_u16::<NetworkEndian>()?;
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let addr = SocketAddr::V6(SocketAddrV6::new(Ipv6Addr::from(ip), port, 0, 0));
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addrs.push(addr);
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}
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for _ in 0..num_ipv4_addrs {
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let mut ip = [0u8; 4];
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r.read_exact(&mut ip)?;
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let port = r.read_u16::<NetworkEndian>()?;
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let addr = SocketAddr::V4(SocketAddrV4::new(Ipv4Addr::from(ip), port));
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addrs.push(addr);
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}
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peers.push(PeerInfo { addrs, node_id })
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}
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Ok(peers)
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}
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fn decode_claims_part<R: Read>(mut r: &mut Take<R>) -> Result<RangeList, Error> {
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let mut claims = smallvec![];
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while r.limit() > 0 {
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claims.push(Range::read_from(&mut r)?);
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}
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Ok(claims)
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}
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fn decode_internal<R: Read>(mut r: R) -> Result<Self, Error> {
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let mut peers = smallvec![];
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let mut claims = smallvec![];
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let mut peer_timeout = None;
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let mut node_id = None;
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loop {
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let part = r.read_u8().map_err(|_| Error::Message("Truncated message"))?;
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if part == Self::PART_END {
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break
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}
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let part_len = r.read_u16::<NetworkEndian>().map_err(|_| Error::Message("Truncated message"))? as usize;
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let mut rp = r.take(part_len as u64);
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match part {
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Self::PART_PEERS => {
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peers = Self::decode_peer_list_part(&mut rp).map_err(|_| Error::Message("Truncated message"))?
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}
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Self::PART_CLAIMS => claims = Self::decode_claims_part(&mut rp)?,
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Self::PART_PEER_TIMEOUT => {
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peer_timeout =
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Some(rp.read_u16::<NetworkEndian>().map_err(|_| Error::Message("Truncated message"))?)
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}
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Self::PART_NODEID => {
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let mut data = [0; NODE_ID_BYTES];
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rp.read_exact(&mut data).map_err(|_| Error::Message("Truncated message"))?;
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node_id = Some(data);
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}
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_ => {
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let mut data = vec![0; part_len];
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rp.read_exact(&mut data).map_err(|_| Error::Message("Truncated message"))?;
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}
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}
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r = rp.into_inner();
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}
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let node_id = match node_id {
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Some(node_id) => node_id,
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None => return Err(Error::Message("Payload without node_id"))
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};
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Ok(Self { node_id, peers, claims, peer_timeout })
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}
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pub fn decode<R: Read>(r: R) -> Result<Self, Error> {
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Self::decode_internal(r).map_err(|_| Error::Message("Input data too short"))
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}
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fn encode_peer_list_part<W: Write>(&self, mut out: W) -> Result<(), io::Error> {
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for p in &self.peers {
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let mut addr_ipv4 = vec![];
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let mut addr_ipv6 = vec![];
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for a in &p.addrs {
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match a {
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SocketAddr::V4(addr) => addr_ipv4.push(*addr),
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SocketAddr::V6(addr) => addr_ipv6.push(*addr)
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}
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}
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while addr_ipv4.len() >= 8 {
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addr_ipv4.pop();
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}
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while addr_ipv6.len() >= 8 {
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addr_ipv6.pop();
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}
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let mut flags = addr_ipv6.len() as u8 * 8 + addr_ipv4.len() as u8;
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if p.node_id.is_some() {
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flags += 0x80;
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}
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out.write_u8(flags)?;
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if let Some(node_id) = &p.node_id {
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out.write_all(node_id)?;
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}
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for a in addr_ipv6 {
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out.write_all(&a.ip().octets())?;
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out.write_u16::<NetworkEndian>(a.port())?;
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}
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for a in addr_ipv4 {
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out.write_all(&a.ip().octets())?;
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out.write_u16::<NetworkEndian>(a.port())?;
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}
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}
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Ok(())
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}
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fn encode_part<F: FnOnce(&mut Cursor<&mut [u8]>) -> Result<(), io::Error>>(
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cursor: &mut Cursor<&mut [u8]>, part: u8, f: F
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) -> Result<(), io::Error> {
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cursor.write_u8(part)?;
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cursor.write_u16::<NetworkEndian>(0)?;
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let part_start = cursor.position();
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f(cursor)?;
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let part_end = cursor.position();
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let len = part_end - part_start;
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cursor.seek(SeekFrom::Start(part_start - 2))?;
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cursor.write_u16::<NetworkEndian>(len as u16)?;
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cursor.seek(SeekFrom::Start(part_end))?;
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Ok(())
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}
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fn encode_internal(&self, buffer: &mut MsgBuffer) -> Result<(), io::Error> {
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let len;
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{
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let mut cursor = Cursor::new(buffer.buffer());
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Self::encode_part(&mut cursor, Self::PART_NODEID, |cursor| {
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cursor.write_all(&self.node_id)
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})?;
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Self::encode_part(&mut cursor, Self::PART_PEERS, |cursor| self.encode_peer_list_part(cursor))?;
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Self::encode_part(&mut cursor, Self::PART_CLAIMS, |mut cursor| {
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for c in &self.claims {
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c.write_to(&mut cursor);
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}
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Ok(())
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})?;
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if let Some(timeout) = self.peer_timeout {
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Self::encode_part(&mut cursor, Self::PART_PEER_TIMEOUT, |cursor| {
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cursor.write_u16::<NetworkEndian>(timeout)
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})?
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}
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cursor.write_u8(Self::PART_END)?;
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len = cursor.position() as usize;
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}
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buffer.set_length(len);
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Ok(())
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}
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pub fn encode(&self, buffer: &mut MsgBuffer) {
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self.encode_internal(buffer).expect("Buffer too small")
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}
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}
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impl Payload for NodeInfo {
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fn write_to(&self, buffer: &mut MsgBuffer) {
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self.encode(buffer)
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}
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fn read_from<R: Read>(r: R) -> Result<Self, Error> {
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Self::decode(r)
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}
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}
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