mirror of
https://github.com/mimblewimble/grin.git
synced 2025-01-21 11:31:08 +03:00
449 lines
11 KiB
Rust
449 lines
11 KiB
Rust
// Copyright 2018 The Grin Developers
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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use std::fs::File;
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use std::net::{SocketAddr, TcpStream};
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use std::sync::{Arc, RwLock};
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use conn;
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use core::core;
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use core::core::hash::{Hash, Hashed};
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use core::core::target::Difficulty;
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use handshake::Handshake;
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use msg;
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use protocol::Protocol;
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use msg::*;
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use types::*;
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use util::LOGGER;
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const MAX_TRACK_SIZE: usize = 30;
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#[derive(Debug, Clone, Copy, PartialEq, Eq)]
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enum State {
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Connected,
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Disconnected,
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Banned,
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}
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pub struct Peer {
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pub info: PeerInfo,
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state: Arc<RwLock<State>>,
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// set of all hashes known to this peer (so no need to send)
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tracking_adapter: TrackingAdapter,
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connection: Option<conn::Tracker>,
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}
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unsafe impl Sync for Peer {}
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unsafe impl Send for Peer {}
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impl Peer {
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// Only accept and connect can be externally used to build a peer
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fn new(info: PeerInfo, na: Arc<NetAdapter>) -> Peer {
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Peer {
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info: info,
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state: Arc::new(RwLock::new(State::Connected)),
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tracking_adapter: TrackingAdapter::new(na),
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connection: None,
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}
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}
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pub fn accept(
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conn: &mut TcpStream,
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capab: Capabilities,
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total_difficulty: Difficulty,
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hs: &Handshake,
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na: Arc<NetAdapter>,
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) -> Result<Peer, Error> {
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let info = hs.accept(capab, total_difficulty, conn)?;
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Ok(Peer::new(info, na))
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}
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pub fn connect(
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conn: &mut TcpStream,
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capab: Capabilities,
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total_difficulty: Difficulty,
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self_addr: SocketAddr,
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hs: &Handshake,
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na: Arc<NetAdapter>,
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) -> Result<Peer, Error> {
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let info = hs.initiate(capab, total_difficulty, self_addr, conn)?;
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Ok(Peer::new(info, na))
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}
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/// Main peer loop listening for messages and forwarding to the rest of the
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/// system.
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pub fn start(&mut self, conn: TcpStream) {
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let addr = self.info.addr;
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let adapter = Arc::new(self.tracking_adapter.clone());
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let handler = Protocol::new(adapter, addr);
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self.connection = Some(conn::listen(conn, handler));
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}
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pub fn is_denied(config: &P2PConfig, peer_addr: &SocketAddr) -> bool {
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let peer = format!("{}:{}", peer_addr.ip(), peer_addr.port());
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if let Some(ref denied) = config.peers_deny {
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if denied.contains(&peer) {
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debug!(
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LOGGER,
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"checking peer allowed/denied: {:?} explicitly denied", peer_addr
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);
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return true;
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}
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}
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if let Some(ref allowed) = config.peers_allow {
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if allowed.contains(&peer) {
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debug!(
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LOGGER,
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"checking peer allowed/denied: {:?} explicitly allowed", peer_addr
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);
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return false;
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} else {
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debug!(
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LOGGER,
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"checking peer allowed/denied: {:?} not explicitly allowed, denying", peer_addr
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);
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return true;
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}
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}
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// default to allowing peer connection if we do not explicitly allow or deny
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// the peer
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false
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}
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/// Whether this peer is still connected.
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pub fn is_connected(&self) -> bool {
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if !self.check_connection() {
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return false;
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}
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let state = self.state.read().unwrap();
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*state == State::Connected
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}
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/// Whether this peer has been banned.
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pub fn is_banned(&self) -> bool {
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let _ = self.check_connection();
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let state = self.state.read().unwrap();
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*state == State::Banned
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}
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/// Set this peer status to banned
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pub fn set_banned(&self) {
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let mut state = self.state.write().unwrap();
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*state = State::Banned;
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}
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/// Send a ping to the remote peer, providing our local difficulty and
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/// height
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pub fn send_ping(&self, total_difficulty: Difficulty, height: u64) -> Result<(), Error> {
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let ping_msg = Ping {
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total_difficulty,
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height,
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};
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self.connection
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.as_ref()
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.unwrap()
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.send(ping_msg, msg::Type::Ping)
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}
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/// Sends the provided block to the remote peer. The request may be dropped
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/// if the remote peer is known to already have the block.
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pub fn send_block(&self, b: &core::Block) -> Result<(), Error> {
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if !self.tracking_adapter.has(b.hash()) {
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trace!(LOGGER, "Send block {} to {}", b.hash(), self.info.addr);
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self.connection.as_ref().unwrap().send(b, msg::Type::Block)
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} else {
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debug!(
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LOGGER,
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"Suppress block send {} to {} (already seen)",
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b.hash(),
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self.info.addr,
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);
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Ok(())
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}
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}
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pub fn send_compact_block(&self, b: &core::CompactBlock) -> Result<(), Error> {
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if !self.tracking_adapter.has(b.hash()) {
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trace!(
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LOGGER,
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"Send compact block {} to {}",
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b.hash(),
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self.info.addr
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);
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self.connection
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.as_ref()
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.unwrap()
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.send(b, msg::Type::CompactBlock)
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} else {
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debug!(
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LOGGER,
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"Suppress compact block send {} to {} (already seen)",
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b.hash(),
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self.info.addr,
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);
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Ok(())
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}
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}
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pub fn send_header(&self, bh: &core::BlockHeader) -> Result<(), Error> {
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if !self.tracking_adapter.has(bh.hash()) {
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debug!(LOGGER, "Send header {} to {}", bh.hash(), self.info.addr);
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self.connection
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.as_ref()
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.unwrap()
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.send(bh, msg::Type::Header)
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} else {
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trace!(
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LOGGER,
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"Suppress header send {} to {} (already seen)",
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bh.hash(),
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self.info.addr,
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);
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Ok(())
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}
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}
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/// Sends the provided transaction to the remote peer. The request may be
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/// dropped if the remote peer is known to already have the transaction.
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pub fn send_transaction(&self, tx: &core::Transaction) -> Result<(), Error> {
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if !self.tracking_adapter.has(tx.hash()) {
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debug!(LOGGER, "Send tx {} to {}", tx.hash(), self.info.addr);
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self.connection
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.as_ref()
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.unwrap()
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.send(tx, msg::Type::Transaction)
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} else {
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debug!(
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LOGGER,
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"Not sending tx {} to {} (already seen)",
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tx.hash(),
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self.info.addr
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);
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Ok(())
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}
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}
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/// Sends the provided stem transaction to the remote peer. The request may be
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/// dropped if the remote peer is known to already have the stem transaction.
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pub fn send_stem_transaction(&self, tx: &core::Transaction) -> Result<(), Error> {
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if !self.tracking_adapter.has(tx.hash()) {
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debug!(LOGGER, "Send tx {} to {}", tx.hash(), self.info.addr);
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self.connection
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.as_ref()
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.unwrap()
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.send(tx, msg::Type::StemTransaction)
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} else {
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debug!(
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LOGGER,
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"Not sending tx {} to {} (already seen)",
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tx.hash(),
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self.info.addr
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);
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Ok(())
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}
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}
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/// Sends a request for block headers from the provided block locator
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pub fn send_header_request(&self, locator: Vec<Hash>) -> Result<(), Error> {
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self.connection
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.as_ref()
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.unwrap()
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.send(&Locator { hashes: locator }, msg::Type::GetHeaders)
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}
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/// Sends a request for a specific block by hash
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pub fn send_block_request(&self, h: Hash) -> Result<(), Error> {
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debug!(
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LOGGER,
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"Requesting block {} from peer {}.", h, self.info.addr
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);
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self.connection
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.as_ref()
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.unwrap()
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.send(&h, msg::Type::GetBlock)
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}
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/// Sends a request for a specific compact block by hash
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pub fn send_compact_block_request(&self, h: Hash) -> Result<(), Error> {
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debug!(
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LOGGER,
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"Requesting compact block {} from {}", h, self.info.addr
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);
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self.connection
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.as_ref()
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.unwrap()
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.send(&h, msg::Type::GetCompactBlock)
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}
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pub fn send_peer_request(&self, capab: Capabilities) -> Result<(), Error> {
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debug!(LOGGER, "Asking {} for more peers.", self.info.addr);
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self.connection.as_ref().unwrap().send(
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&GetPeerAddrs {
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capabilities: capab,
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},
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msg::Type::GetPeerAddrs,
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)
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}
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pub fn send_txhashset_request(&self, height: u64, hash: Hash) -> Result<(), Error> {
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debug!(
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LOGGER,
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"Asking {} for txhashset archive at {} {}.", self.info.addr, height, hash
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);
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self.connection.as_ref().unwrap().send(
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&TxHashSetRequest { hash, height },
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msg::Type::TxHashSetRequest,
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)
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}
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/// Stops the peer, closing its connection
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pub fn stop(&self) {
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let _ = self.connection.as_ref().unwrap().close_channel.send(());
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}
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fn check_connection(&self) -> bool {
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match self.connection.as_ref().unwrap().error_channel.try_recv() {
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Ok(Error::Serialization(e)) => {
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let mut state = self.state.write().unwrap();
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*state = State::Banned;
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info!(
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LOGGER,
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"Client {} corrupted, ban ({:?}).", self.info.addr, e
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);
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false
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}
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Ok(e) => {
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let mut state = self.state.write().unwrap();
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*state = State::Disconnected;
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debug!(LOGGER, "Client {} connection lost: {:?}", self.info.addr, e);
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false
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}
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Err(_) => true,
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}
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}
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}
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/// Adapter implementation that forwards everything to an underlying adapter
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/// but keeps track of the block and transaction hashes that were received.
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#[derive(Clone)]
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struct TrackingAdapter {
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adapter: Arc<NetAdapter>,
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known: Arc<RwLock<Vec<Hash>>>,
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}
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impl TrackingAdapter {
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fn new(adapter: Arc<NetAdapter>) -> TrackingAdapter {
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TrackingAdapter {
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adapter: adapter,
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known: Arc::new(RwLock::new(vec![])),
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}
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}
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fn has(&self, hash: Hash) -> bool {
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let known = self.known.read().unwrap();
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// may become too slow, an ordered set (by timestamp for eviction) may
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// end up being a better choice
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known.contains(&hash)
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}
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fn push(&self, hash: Hash) {
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let mut known = self.known.write().unwrap();
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if known.len() > MAX_TRACK_SIZE {
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known.truncate(MAX_TRACK_SIZE);
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}
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known.insert(0, hash);
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}
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}
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impl ChainAdapter for TrackingAdapter {
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fn total_difficulty(&self) -> Difficulty {
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self.adapter.total_difficulty()
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}
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fn total_height(&self) -> u64 {
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self.adapter.total_height()
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}
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fn transaction_received(&self, tx: core::Transaction, stem: bool) {
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self.push(tx.hash());
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self.adapter.transaction_received(tx, stem)
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}
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fn block_received(&self, b: core::Block, addr: SocketAddr) -> bool {
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self.push(b.hash());
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self.adapter.block_received(b, addr)
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}
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fn compact_block_received(&self, cb: core::CompactBlock, addr: SocketAddr) -> bool {
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self.push(cb.hash());
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self.adapter.compact_block_received(cb, addr)
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}
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fn header_received(&self, bh: core::BlockHeader, addr: SocketAddr) -> bool {
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self.push(bh.hash());
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self.adapter.header_received(bh, addr)
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}
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fn headers_received(&self, bh: Vec<core::BlockHeader>, addr: SocketAddr) {
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self.adapter.headers_received(bh, addr)
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}
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fn locate_headers(&self, locator: Vec<Hash>) -> Vec<core::BlockHeader> {
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self.adapter.locate_headers(locator)
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}
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fn get_block(&self, h: Hash) -> Option<core::Block> {
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self.adapter.get_block(h)
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}
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fn txhashset_read(&self, h: Hash) -> Option<TxHashSetRead> {
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self.adapter.txhashset_read(h)
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}
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fn txhashset_write(
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&self,
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h: Hash,
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rewind_to_output: u64,
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rewind_to_kernel: u64,
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txhashset_data: File,
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peer_addr: SocketAddr,
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) -> bool {
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self.adapter.txhashset_write(
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h,
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rewind_to_output,
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rewind_to_kernel,
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txhashset_data,
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peer_addr,
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)
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}
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}
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impl NetAdapter for TrackingAdapter {
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fn find_peer_addrs(&self, capab: Capabilities) -> Vec<SocketAddr> {
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self.adapter.find_peer_addrs(capab)
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}
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fn peer_addrs_received(&self, addrs: Vec<SocketAddr>) {
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self.adapter.peer_addrs_received(addrs)
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}
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fn peer_difficulty(&self, addr: SocketAddr, diff: Difficulty, height: u64) {
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self.adapter.peer_difficulty(addr, diff, height)
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}
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fn is_banned(&self, addr: SocketAddr) -> bool {
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self.adapter.is_banned(addr)
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}
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}
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