openethereum/sync/src/lib.rs

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// Copyright 2015, 2016 Ethcore (UK) Ltd.
// This file is part of Parity.
// Parity is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
// Parity is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
// You should have received a copy of the GNU General Public License
// along with Parity. If not, see <http://www.gnu.org/licenses/>.
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#![warn(missing_docs)]
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#![cfg_attr(feature="dev", feature(plugin))]
#![cfg_attr(feature="dev", plugin(clippy))]
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// Keeps consistency (all lines with `.clone()`) and helpful when changing ref to non-ref.
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#![cfg_attr(feature="dev", allow(clone_on_copy))]
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//! Blockchain sync module
//! Implements ethereum protocol version 63 as specified here:
//! https://github.com/ethereum/wiki/wiki/Ethereum-Wire-Protocol
//!
//! Usage example:
//!
//! ```rust
//! extern crate ethcore_util as util;
//! extern crate ethcore;
//! extern crate ethsync;
//! use std::env;
//! use std::sync::Arc;
//! use util::network::{NetworkService, NetworkConfiguration};
//! use ethcore::client::Client;
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//! use ethsync::{EthSync, SyncConfig};
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//! use ethcore::ethereum;
//!
//! fn main() {
//! let mut service = NetworkService::start(NetworkConfiguration::new()).unwrap();
//! let dir = env::temp_dir();
//! let client = Client::new(ethereum::new_frontier(), &dir, service.io().channel()).unwrap();
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//! EthSync::register(&mut service, SyncConfig::default(), client);
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//! }
//! ```
#[macro_use]
extern crate log;
#[macro_use]
extern crate ethcore_util as util;
extern crate ethcore;
extern crate env_logger;
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extern crate time;
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extern crate rand;
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#[macro_use]
extern crate heapsize;
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use std::ops::*;
use std::sync::*;
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use ethcore::client::Client;
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use util::network::{NetworkProtocolHandler, NetworkService, NetworkContext, PeerId};
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use util::TimerToken;
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use util::{U256, ONE_U256};
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use chain::ChainSync;
use ethcore::service::SyncMessage;
use io::NetSyncIo;
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mod chain;
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mod io;
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mod range_collection;
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#[cfg(test)]
mod tests;
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/// Sync configuration
pub struct SyncConfig {
/// Max blocks to download ahead
pub max_download_ahead_blocks: usize,
/// Network ID
pub network_id: U256,
}
impl Default for SyncConfig {
fn default() -> SyncConfig {
SyncConfig {
max_download_ahead_blocks: 20000,
network_id: ONE_U256,
}
}
}
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/// Ethereum network protocol handler
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pub struct EthSync {
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/// Shared blockchain client. TODO: this should evetually become an IPC endpoint
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chain: Arc<Client>,
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/// Sync strategy
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sync: RwLock<ChainSync>
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}
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pub use self::chain::{SyncStatus, SyncState};
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impl EthSync {
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/// Creates and register protocol with the network service
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pub fn register(service: &mut NetworkService<SyncMessage>, config: SyncConfig, chain: Arc<Client>) -> Arc<EthSync> {
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let sync = Arc::new(EthSync {
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chain: chain,
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sync: RwLock::new(ChainSync::new(config)),
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});
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service.register_protocol(sync.clone(), "eth", &[62u8, 63u8]).expect("Error registering eth protocol handler");
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sync
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}
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/// Get sync status
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pub fn status(&self) -> SyncStatus {
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self.sync.read().unwrap().status()
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}
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/// Stop sync
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pub fn stop(&mut self, io: &mut NetworkContext<SyncMessage>) {
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self.sync.write().unwrap().abort(&mut NetSyncIo::new(io, self.chain.deref()));
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}
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/// Restart sync
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pub fn restart(&mut self, io: &mut NetworkContext<SyncMessage>) {
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self.sync.write().unwrap().restart(&mut NetSyncIo::new(io, self.chain.deref()));
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}
}
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impl NetworkProtocolHandler<SyncMessage> for EthSync {
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fn initialize(&self, io: &NetworkContext<SyncMessage>) {
io.register_timer(0, 1000).expect("Error registering sync timer");
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}
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fn read(&self, io: &NetworkContext<SyncMessage>, peer: &PeerId, packet_id: u8, data: &[u8]) {
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self.sync.write().unwrap().on_packet(&mut NetSyncIo::new(io, self.chain.deref()) , *peer, packet_id, data);
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}
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fn connected(&self, io: &NetworkContext<SyncMessage>, peer: &PeerId) {
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self.sync.write().unwrap().on_peer_connected(&mut NetSyncIo::new(io, self.chain.deref()), *peer);
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}
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fn disconnected(&self, io: &NetworkContext<SyncMessage>, peer: &PeerId) {
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self.sync.write().unwrap().on_peer_aborting(&mut NetSyncIo::new(io, self.chain.deref()), *peer);
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}
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fn timeout(&self, io: &NetworkContext<SyncMessage>, _timer: TimerToken) {
self.sync.write().unwrap().maintain_peers(&mut NetSyncIo::new(io, self.chain.deref()));
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self.sync.write().unwrap().maintain_sync(&mut NetSyncIo::new(io, self.chain.deref()));
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}
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fn message(&self, io: &NetworkContext<SyncMessage>, message: &SyncMessage) {
if let SyncMessage::BlockVerified = *message {
self.sync.write().unwrap().chain_blocks_verified(&mut NetSyncIo::new(io, self.chain.deref()));
}
}
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}