66e4410be7
* Temp storage for the private state added * Temp storage for the private state added * Request message added * Store and retrieve offchain state logic * State sync cache * Private state column added to key value db * Private state column added to key value db * Indexing stored states via its hash * Works with errors changed * Private state stored into the local db * Access to private state db added to sync io * Private state db file added * Rlp packets for retrieiving private state data added * Handling of private sync completed message * Test code fixed * External flag for offchain storing added * Test for private state sync added * Saving private state logic corrected * Migration code corrected * Fixes after merge with master * Merge with head * Additional checks for slices * Log for private state retrieval added * Limit time of retrieving private states * Store required hashes for every request, mark them stale if needed * Store requested private state hashes and check received data * Log stale requests * State insertion fix * Refactoring of how logging passed to state store * Heapsize removed, syncing hashes structure reworked * Check state length returned by contract * Get rid of OverlayDB * hash-db version updated * Test fixed * One more test fixed
1075 lines
33 KiB
Rust
1075 lines
33 KiB
Rust
// Copyright 2015-2019 Parity Technologies (UK) Ltd.
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// This file is part of Parity Ethereum.
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// Parity Ethereum is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Parity Ethereum is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Parity Ethereum. If not, see <http://www.gnu.org/licenses/>.
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use std::sync::{Arc, mpsc, atomic};
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use std::collections::{HashMap, BTreeMap};
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use std::io;
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use std::ops::RangeInclusive;
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use std::time::Duration;
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use bytes::Bytes;
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use devp2p::NetworkService;
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use network::{NetworkProtocolHandler, NetworkContext, PeerId, ProtocolId,
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NetworkConfiguration as BasicNetworkConfiguration, NonReservedPeerMode, Error,
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ConnectionFilter};
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use network::client_version::ClientVersion;
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use types::pruning_info::PruningInfo;
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use ethereum_types::{H256, H512, U256};
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use futures::sync::mpsc as futures_mpsc;
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use futures::Stream;
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use io::{TimerToken};
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use ethkey::Secret;
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use ethcore::client::{ChainNotify, NewBlocks, ChainMessageType};
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use client_traits::BlockChainClient;
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use ethcore::snapshot::SnapshotService;
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use ethcore_private_tx::PrivateStateDB;
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use types::BlockNumber;
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use sync_io::NetSyncIo;
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use chain::{ChainSyncApi, SyncStatus as EthSyncStatus};
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use std::net::{SocketAddr, AddrParseError};
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use std::str::FromStr;
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use parking_lot::{RwLock, Mutex};
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use chain::{ETH_PROTOCOL_VERSION_63, ETH_PROTOCOL_VERSION_62,
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PAR_PROTOCOL_VERSION_1, PAR_PROTOCOL_VERSION_2, PAR_PROTOCOL_VERSION_3, PAR_PROTOCOL_VERSION_4, SyncState};
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use chain::sync_packet::SyncPacket::{PrivateTransactionPacket, SignedPrivateTransactionPacket};
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use light::client::AsLightClient;
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use light::Provider;
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use light::net::{
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self as light_net, LightProtocol, Params as LightParams,
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Capabilities, Handler as LightHandler, EventContext, SampleStore,
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};
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use parity_runtime::Executor;
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use std::sync::atomic::{AtomicBool, Ordering};
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use network::IpFilter;
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use private_tx::PrivateTxHandler;
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use types::transaction::UnverifiedTransaction;
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use super::light_sync::SyncInfo;
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/// Parity sync protocol
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pub const WARP_SYNC_PROTOCOL_ID: ProtocolId = *b"par";
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/// Ethereum sync protocol
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pub const ETH_PROTOCOL: ProtocolId = *b"eth";
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/// Ethereum light protocol
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pub const LIGHT_PROTOCOL: ProtocolId = *b"pip";
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/// Determine warp sync status.
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#[derive(Debug, Clone, Copy, PartialEq, Eq, MallocSizeOf)]
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pub enum WarpSync {
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/// Warp sync is enabled.
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Enabled,
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/// Warp sync is disabled.
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Disabled,
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/// Only warp sync is allowed (no regular sync) and only after given block number.
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OnlyAndAfter(BlockNumber),
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}
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impl WarpSync {
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/// Returns true if warp sync is enabled.
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pub fn is_enabled(&self) -> bool {
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match *self {
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WarpSync::Enabled => true,
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WarpSync::OnlyAndAfter(_) => true,
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WarpSync::Disabled => false,
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}
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}
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/// Returns `true` if we are in warp-only mode.
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///
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/// i.e. we will never fall back to regular sync
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/// until given block number is reached by
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/// successfuly finding and restoring from a snapshot.
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pub fn is_warp_only(&self) -> bool {
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if let WarpSync::OnlyAndAfter(_) = *self {
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true
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} else {
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false
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}
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}
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}
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/// Sync configuration
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#[derive(Debug, Clone, Copy)]
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pub struct SyncConfig {
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/// Max blocks to download ahead
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pub max_download_ahead_blocks: usize,
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/// Enable ancient block download.
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pub download_old_blocks: bool,
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/// Network ID
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pub network_id: u64,
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/// Main "eth" subprotocol name.
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pub subprotocol_name: [u8; 3],
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/// Light subprotocol name.
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pub light_subprotocol_name: [u8; 3],
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/// Fork block to check
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pub fork_block: Option<(BlockNumber, H256)>,
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/// Enable snapshot sync
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pub warp_sync: WarpSync,
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/// Enable light client server.
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pub serve_light: bool,
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}
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impl Default for SyncConfig {
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fn default() -> SyncConfig {
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SyncConfig {
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max_download_ahead_blocks: 20000,
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download_old_blocks: true,
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network_id: 1,
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subprotocol_name: ETH_PROTOCOL,
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light_subprotocol_name: LIGHT_PROTOCOL,
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fork_block: None,
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warp_sync: WarpSync::Disabled,
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serve_light: false,
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}
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}
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}
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/// receiving end of a futures::mpsc channel
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pub type Notification<T> = futures_mpsc::UnboundedReceiver<T>;
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/// Current sync status
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pub trait SyncProvider: Send + Sync {
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/// Get sync status
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fn status(&self) -> EthSyncStatus;
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/// Get peers information
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fn peers(&self) -> Vec<PeerInfo>;
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/// Get the enode if available.
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fn enode(&self) -> Option<String>;
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/// gets sync status notifications
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fn sync_notification(&self) -> Notification<SyncState>;
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/// Returns propagation count for pending transactions.
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fn transactions_stats(&self) -> BTreeMap<H256, TransactionStats>;
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/// are we in the middle of a major sync?
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fn is_major_syncing(&self) -> bool;
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}
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/// Transaction stats
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#[derive(Debug)]
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pub struct TransactionStats {
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/// Block number where this TX was first seen.
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pub first_seen: u64,
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/// Peers it was propagated to.
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pub propagated_to: BTreeMap<H512, usize>,
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}
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/// Peer connection information
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#[derive(Debug)]
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pub struct PeerInfo {
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/// Public node id
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pub id: Option<String>,
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/// Node client ID
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pub client_version: ClientVersion,
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/// Capabilities
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pub capabilities: Vec<String>,
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/// Remote endpoint address
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pub remote_address: String,
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/// Local endpoint address
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pub local_address: String,
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/// Eth protocol info.
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pub eth_info: Option<EthProtocolInfo>,
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/// Light protocol info.
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pub pip_info: Option<PipProtocolInfo>,
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}
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/// Ethereum protocol info.
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#[derive(Debug)]
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pub struct EthProtocolInfo {
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/// Protocol version
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pub version: u32,
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/// SHA3 of peer best block hash
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pub head: H256,
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/// Peer total difficulty if known
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pub difficulty: Option<U256>,
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}
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/// PIP protocol info.
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#[derive(Debug)]
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pub struct PipProtocolInfo {
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/// Protocol version
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pub version: u32,
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/// SHA3 of peer best block hash
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pub head: H256,
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/// Peer total difficulty if known
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pub difficulty: U256,
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}
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impl From<light_net::Status> for PipProtocolInfo {
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fn from(status: light_net::Status) -> Self {
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PipProtocolInfo {
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version: status.protocol_version,
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head: status.head_hash,
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difficulty: status.head_td,
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}
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}
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}
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/// A prioritized tasks run in a specialised timer.
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/// Every task should be completed within a hard deadline,
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/// if it's not it's either cancelled or split into multiple tasks.
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/// NOTE These tasks might not complete at all, so anything
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/// that happens here should work even if the task is cancelled.
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#[derive(Debug)]
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pub enum PriorityTask {
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/// Propagate given block
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PropagateBlock {
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/// When the task was initiated
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started: ::std::time::Instant,
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/// Raw block RLP to propagate
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block: Bytes,
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/// Block hash
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hash: H256,
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/// Blocks difficulty
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difficulty: U256,
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},
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/// Propagate a list of transactions
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PropagateTransactions(::std::time::Instant, Arc<atomic::AtomicBool>),
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}
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impl PriorityTask {
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/// Mark the task as being processed, right after it's retrieved from the queue.
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pub fn starting(&self) {
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match *self {
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PriorityTask::PropagateTransactions(_, ref is_ready) => is_ready.store(true, atomic::Ordering::SeqCst),
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_ => {},
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}
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}
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}
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/// EthSync initialization parameters.
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pub struct Params {
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/// Configuration.
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pub config: SyncConfig,
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/// Runtime executor
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pub executor: Executor,
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/// Blockchain client.
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pub chain: Arc<dyn BlockChainClient>,
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/// Snapshot service.
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pub snapshot_service: Arc<dyn SnapshotService>,
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/// Private tx service.
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pub private_tx_handler: Option<Arc<dyn PrivateTxHandler>>,
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/// Private state wrapper
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pub private_state: Option<Arc<PrivateStateDB>>,
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/// Light data provider.
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pub provider: Arc<dyn (::light::Provider)>,
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/// Network layer configuration.
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pub network_config: NetworkConfiguration,
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}
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/// Ethereum network protocol handler
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pub struct EthSync {
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/// Network service
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network: NetworkService,
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/// Main (eth/par) protocol handler
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eth_handler: Arc<SyncProtocolHandler>,
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/// Light (pip) protocol handler
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light_proto: Option<Arc<LightProtocol>>,
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/// The main subprotocol name
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subprotocol_name: [u8; 3],
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/// Light subprotocol name.
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light_subprotocol_name: [u8; 3],
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/// Priority tasks notification channel
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priority_tasks: Mutex<mpsc::Sender<PriorityTask>>,
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/// for state tracking
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is_major_syncing: Arc<AtomicBool>
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}
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fn light_params(
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network_id: u64,
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median_peers: f64,
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pruning_info: PruningInfo,
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sample_store: Option<Box<dyn SampleStore>>,
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) -> LightParams {
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let mut light_params = LightParams {
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network_id: network_id,
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config: Default::default(),
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capabilities: Capabilities {
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serve_headers: true,
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serve_chain_since: Some(pruning_info.earliest_chain),
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serve_state_since: Some(pruning_info.earliest_state),
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tx_relay: true,
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},
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sample_store: sample_store,
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};
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light_params.config.median_peers = median_peers;
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light_params
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}
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impl EthSync {
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/// Creates and register protocol with the network service
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pub fn new(params: Params, connection_filter: Option<Arc<dyn ConnectionFilter>>) -> Result<Arc<EthSync>, Error> {
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let pruning_info = params.chain.pruning_info();
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let light_proto = match params.config.serve_light {
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false => None,
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true => Some({
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let sample_store = params.network_config.net_config_path
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.clone()
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.map(::std::path::PathBuf::from)
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.map(|mut p| { p.push("request_timings"); light_net::FileStore(p) })
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.map(|store| Box::new(store) as Box<_>);
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let median_peers = (params.network_config.min_peers + params.network_config.max_peers) as f64 / 2.0;
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let light_params = light_params(
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params.config.network_id,
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median_peers,
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pruning_info,
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sample_store,
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);
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let mut light_proto = LightProtocol::new(params.provider, light_params);
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light_proto.add_handler(Arc::new(TxRelay(params.chain.clone())));
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Arc::new(light_proto)
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})
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};
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let (priority_tasks_tx, priority_tasks_rx) = mpsc::channel();
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let sync = ChainSyncApi::new(
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params.config,
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&*params.chain,
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params.private_tx_handler.as_ref().cloned(),
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priority_tasks_rx,
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);
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let is_major_syncing = Arc::new(AtomicBool::new(false));
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{
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// spawn task that constantly updates EthSync.is_major_sync
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let notifications = sync.write().sync_notifications();
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let moved_client = Arc::downgrade(¶ms.chain);
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let moved_is_major_syncing = is_major_syncing.clone();
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params.executor.spawn(notifications.for_each(move |sync_status| {
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if let Some(queue_info) = moved_client.upgrade().map(|client| client.queue_info()) {
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let is_syncing_state = match sync_status {
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SyncState::Idle | SyncState::NewBlocks => false,
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_ => true
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};
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let is_verifying = queue_info.unverified_queue_size + queue_info.verified_queue_size > 3;
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moved_is_major_syncing.store(is_verifying || is_syncing_state, Ordering::SeqCst);
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return Ok(())
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}
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// client has been dropped
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return Err(())
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}));
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}
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let service = NetworkService::new(params.network_config.clone().into_basic()?, connection_filter)?;
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let sync = Arc::new(EthSync {
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network: service,
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eth_handler: Arc::new(SyncProtocolHandler {
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sync,
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chain: params.chain,
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snapshot_service: params.snapshot_service,
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overlay: RwLock::new(HashMap::new()),
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private_state: params.private_state,
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}),
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light_proto: light_proto,
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subprotocol_name: params.config.subprotocol_name,
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light_subprotocol_name: params.config.light_subprotocol_name,
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priority_tasks: Mutex::new(priority_tasks_tx),
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is_major_syncing
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});
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Ok(sync)
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}
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/// Priority tasks producer
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pub fn priority_tasks(&self) -> mpsc::Sender<PriorityTask> {
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self.priority_tasks.lock().clone()
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}
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}
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impl SyncProvider for EthSync {
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/// Get sync status
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fn status(&self) -> EthSyncStatus {
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self.eth_handler.sync.status()
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}
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/// Get sync peers
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fn peers(&self) -> Vec<PeerInfo> {
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self.network.with_context_eval(self.subprotocol_name, |ctx| {
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let peer_ids = self.network.connected_peers();
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let light_proto = self.light_proto.as_ref();
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let peer_info = self.eth_handler.sync.peer_info(&peer_ids);
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peer_ids.into_iter().zip(peer_info).filter_map(|(peer_id, peer_info)| {
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let session_info = match ctx.session_info(peer_id) {
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None => return None,
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Some(info) => info,
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};
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Some(PeerInfo {
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id: session_info.id.map(|id| format!("{:x}", id)),
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client_version: session_info.client_version,
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capabilities: session_info.peer_capabilities.into_iter().map(|c| c.to_string()).collect(),
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remote_address: session_info.remote_address,
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local_address: session_info.local_address,
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eth_info: peer_info,
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pip_info: light_proto.as_ref().and_then(|lp| lp.peer_status(peer_id)).map(Into::into),
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})
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}).collect()
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}).unwrap_or_else(Vec::new)
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}
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fn enode(&self) -> Option<String> {
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self.network.external_url()
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}
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fn transactions_stats(&self) -> BTreeMap<H256, TransactionStats> {
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self.eth_handler.sync.transactions_stats()
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}
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fn sync_notification(&self) -> Notification<SyncState> {
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self.eth_handler.sync.write().sync_notifications()
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}
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fn is_major_syncing(&self) -> bool {
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self.is_major_syncing.load(Ordering::SeqCst)
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}
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}
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const PEERS_TIMER: TimerToken = 0;
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const MAINTAIN_SYNC_TIMER: TimerToken = 1;
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const CONTINUE_SYNC_TIMER: TimerToken = 2;
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const TX_TIMER: TimerToken = 3;
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const PRIORITY_TIMER: TimerToken = 4;
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|
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pub(crate) const PRIORITY_TIMER_INTERVAL: Duration = Duration::from_millis(250);
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|
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struct SyncProtocolHandler {
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/// Shared blockchain client.
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chain: Arc<dyn BlockChainClient>,
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/// Shared snapshot service.
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snapshot_service: Arc<dyn SnapshotService>,
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/// Sync strategy
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sync: ChainSyncApi,
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/// Chain overlay used to cache data such as fork block.
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overlay: RwLock<HashMap<BlockNumber, Bytes>>,
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/// Private state db
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private_state: Option<Arc<PrivateStateDB>>,
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}
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|
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impl NetworkProtocolHandler for SyncProtocolHandler {
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fn initialize(&self, io: &dyn NetworkContext) {
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if io.subprotocol_name() != WARP_SYNC_PROTOCOL_ID {
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io.register_timer(PEERS_TIMER, Duration::from_millis(700)).expect("Error registering peers timer");
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io.register_timer(MAINTAIN_SYNC_TIMER, Duration::from_millis(1100)).expect("Error registering sync timer");
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io.register_timer(CONTINUE_SYNC_TIMER, Duration::from_millis(2500)).expect("Error registering sync timer");
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io.register_timer(TX_TIMER, Duration::from_millis(1300)).expect("Error registering transactions timer");
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io.register_timer(PRIORITY_TIMER, PRIORITY_TIMER_INTERVAL).expect("Error registering peers timer");
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}
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}
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fn read(&self, io: &dyn NetworkContext, peer: &PeerId, packet_id: u8, data: &[u8]) {
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self.sync.dispatch_packet(&mut NetSyncIo::new(io,
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&*self.chain,
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&*self.snapshot_service,
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&self.overlay,
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self.private_state.clone()),
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*peer, packet_id, data);
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}
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fn connected(&self, io: &dyn NetworkContext, peer: &PeerId) {
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trace_time!("sync::connected");
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|
// If warp protocol is supported only allow warp handshake
|
|
let warp_protocol = io.protocol_version(WARP_SYNC_PROTOCOL_ID, *peer).unwrap_or(0) != 0;
|
|
let warp_context = io.subprotocol_name() == WARP_SYNC_PROTOCOL_ID;
|
|
if warp_protocol == warp_context {
|
|
self.sync.write().on_peer_connected(&mut NetSyncIo::new(io,
|
|
&*self.chain,
|
|
&*self.snapshot_service,
|
|
&self.overlay,
|
|
self.private_state.clone()),
|
|
*peer);
|
|
}
|
|
}
|
|
|
|
fn disconnected(&self, io: &dyn NetworkContext, peer: &PeerId) {
|
|
trace_time!("sync::disconnected");
|
|
if io.subprotocol_name() != WARP_SYNC_PROTOCOL_ID {
|
|
self.sync.write().on_peer_aborting(&mut NetSyncIo::new(io,
|
|
&*self.chain,
|
|
&*self.snapshot_service,
|
|
&self.overlay,
|
|
self.private_state.clone()),
|
|
*peer);
|
|
}
|
|
}
|
|
|
|
fn timeout(&self, io: &dyn NetworkContext, timer: TimerToken) {
|
|
trace_time!("sync::timeout");
|
|
let mut io = NetSyncIo::new(io, &*self.chain, &*self.snapshot_service, &self.overlay, self.private_state.clone());
|
|
match timer {
|
|
PEERS_TIMER => self.sync.write().maintain_peers(&mut io),
|
|
MAINTAIN_SYNC_TIMER => self.sync.write().maintain_sync(&mut io),
|
|
CONTINUE_SYNC_TIMER => self.sync.write().continue_sync(&mut io),
|
|
TX_TIMER => self.sync.write().propagate_new_transactions(&mut io),
|
|
PRIORITY_TIMER => self.sync.process_priority_queue(&mut io),
|
|
_ => warn!("Unknown timer {} triggered.", timer),
|
|
}
|
|
}
|
|
}
|
|
|
|
impl ChainNotify for EthSync {
|
|
fn block_pre_import(&self, bytes: &Bytes, hash: &H256, difficulty: &U256) {
|
|
let task = PriorityTask::PropagateBlock {
|
|
started: ::std::time::Instant::now(),
|
|
block: bytes.clone(),
|
|
hash: *hash,
|
|
difficulty: *difficulty,
|
|
};
|
|
if let Err(e) = self.priority_tasks.lock().send(task) {
|
|
warn!(target: "sync", "Unexpected error during priority block propagation: {:?}", e);
|
|
}
|
|
}
|
|
|
|
fn new_blocks(&self, new_blocks: NewBlocks)
|
|
{
|
|
if new_blocks.has_more_blocks_to_import { return }
|
|
use light::net::Announcement;
|
|
|
|
self.network.with_context(self.subprotocol_name, |context| {
|
|
let mut sync_io = NetSyncIo::new(context,
|
|
&*self.eth_handler.chain,
|
|
&*self.eth_handler.snapshot_service,
|
|
&self.eth_handler.overlay,
|
|
self.eth_handler.private_state.clone());
|
|
self.eth_handler.sync.write().chain_new_blocks(
|
|
&mut sync_io,
|
|
&new_blocks.imported,
|
|
&new_blocks.invalid,
|
|
new_blocks.route.enacted(),
|
|
new_blocks.route.retracted(),
|
|
&new_blocks.sealed,
|
|
&new_blocks.proposed);
|
|
});
|
|
|
|
self.network.with_context(self.light_subprotocol_name, |context| {
|
|
let light_proto = match self.light_proto.as_ref() {
|
|
Some(lp) => lp,
|
|
None => return,
|
|
};
|
|
|
|
let chain_info = self.eth_handler.chain.chain_info();
|
|
light_proto.make_announcement(&context, Announcement {
|
|
head_hash: chain_info.best_block_hash,
|
|
head_num: chain_info.best_block_number,
|
|
head_td: chain_info.total_difficulty,
|
|
reorg_depth: 0, // recalculated on a per-peer basis.
|
|
serve_headers: false, // these fields consist of _changes_ in capability.
|
|
serve_state_since: None,
|
|
serve_chain_since: None,
|
|
tx_relay: false,
|
|
})
|
|
})
|
|
}
|
|
|
|
fn start(&self) {
|
|
match self.network.start() {
|
|
Err((err, listen_address)) => {
|
|
match err.into() {
|
|
Error::Io(ref e) if e.kind() == io::ErrorKind::AddrInUse => {
|
|
warn!("Network port {:?} is already in use, make sure that another instance of an Ethereum client is not running or change the port using the --port option.", listen_address.expect("Listen address is not set."))
|
|
},
|
|
err => warn!("Error starting network: {}", err),
|
|
}
|
|
},
|
|
_ => {},
|
|
}
|
|
|
|
self.network.register_protocol(self.eth_handler.clone(), self.subprotocol_name, &[ETH_PROTOCOL_VERSION_62, ETH_PROTOCOL_VERSION_63])
|
|
.unwrap_or_else(|e| warn!("Error registering ethereum protocol: {:?}", e));
|
|
// register the warp sync subprotocol
|
|
self.network.register_protocol(self.eth_handler.clone(), WARP_SYNC_PROTOCOL_ID, &[PAR_PROTOCOL_VERSION_1, PAR_PROTOCOL_VERSION_2, PAR_PROTOCOL_VERSION_3, PAR_PROTOCOL_VERSION_4])
|
|
.unwrap_or_else(|e| warn!("Error registering snapshot sync protocol: {:?}", e));
|
|
|
|
// register the light protocol.
|
|
if let Some(light_proto) = self.light_proto.as_ref().map(|x| x.clone()) {
|
|
self.network.register_protocol(light_proto, self.light_subprotocol_name, ::light::net::PROTOCOL_VERSIONS)
|
|
.unwrap_or_else(|e| warn!("Error registering light client protocol: {:?}", e));
|
|
}
|
|
}
|
|
|
|
fn stop(&self) {
|
|
self.eth_handler.snapshot_service.abort_restore();
|
|
self.network.stop();
|
|
}
|
|
|
|
fn broadcast(&self, message_type: ChainMessageType) {
|
|
self.network.with_context(WARP_SYNC_PROTOCOL_ID, |context| {
|
|
let mut sync_io = NetSyncIo::new(context,
|
|
&*self.eth_handler.chain,
|
|
&*self.eth_handler.snapshot_service,
|
|
&self.eth_handler.overlay,
|
|
self.eth_handler.private_state.clone());
|
|
match message_type {
|
|
ChainMessageType::Consensus(message) => self.eth_handler.sync.write().propagate_consensus_packet(&mut sync_io, message),
|
|
ChainMessageType::PrivateTransaction(transaction_hash, message) =>
|
|
self.eth_handler.sync.write().propagate_private_transaction(&mut sync_io, transaction_hash, PrivateTransactionPacket, message),
|
|
ChainMessageType::SignedPrivateTransaction(transaction_hash, message) =>
|
|
self.eth_handler.sync.write().propagate_private_transaction(&mut sync_io, transaction_hash, SignedPrivateTransactionPacket, message),
|
|
ChainMessageType::PrivateStateRequest(hash) =>
|
|
self.eth_handler.sync.write().request_private_state(&mut sync_io, &hash),
|
|
}
|
|
});
|
|
}
|
|
|
|
fn transactions_received(&self, txs: &[UnverifiedTransaction], peer_id: PeerId) {
|
|
let mut sync = self.eth_handler.sync.write();
|
|
sync.transactions_received(txs, peer_id);
|
|
}
|
|
}
|
|
|
|
/// PIP event handler.
|
|
/// Simply queues transactions from light client peers.
|
|
struct TxRelay(Arc<dyn BlockChainClient>);
|
|
|
|
impl LightHandler for TxRelay {
|
|
fn on_transactions(&self, ctx: &dyn EventContext, relay: &[::types::transaction::UnverifiedTransaction]) {
|
|
trace!(target: "pip", "Relaying {} transactions from peer {}", relay.len(), ctx.peer());
|
|
self.0.queue_transactions(relay.iter().map(|tx| ::rlp::encode(tx)).collect(), ctx.peer())
|
|
}
|
|
}
|
|
|
|
/// Trait for managing network
|
|
pub trait ManageNetwork : Send + Sync {
|
|
/// Set to allow unreserved peers to connect
|
|
fn accept_unreserved_peers(&self);
|
|
/// Set to deny unreserved peers to connect
|
|
fn deny_unreserved_peers(&self);
|
|
/// Remove reservation for the peer
|
|
fn remove_reserved_peer(&self, peer: String) -> Result<(), String>;
|
|
/// Add reserved peer
|
|
fn add_reserved_peer(&self, peer: String) -> Result<(), String>;
|
|
/// Start network
|
|
fn start_network(&self);
|
|
/// Stop network
|
|
fn stop_network(&self);
|
|
/// Returns the minimum and maximum peers.
|
|
fn num_peers_range(&self) -> RangeInclusive<u32>;
|
|
/// Get network context for protocol.
|
|
fn with_proto_context(&self, proto: ProtocolId, f: &mut dyn FnMut(&dyn NetworkContext));
|
|
}
|
|
|
|
impl ManageNetwork for EthSync {
|
|
fn accept_unreserved_peers(&self) {
|
|
self.network.set_non_reserved_mode(NonReservedPeerMode::Accept);
|
|
}
|
|
|
|
fn deny_unreserved_peers(&self) {
|
|
self.network.set_non_reserved_mode(NonReservedPeerMode::Deny);
|
|
}
|
|
|
|
fn remove_reserved_peer(&self, peer: String) -> Result<(), String> {
|
|
self.network.remove_reserved_peer(&peer).map_err(|e| format!("{:?}", e))
|
|
}
|
|
|
|
fn add_reserved_peer(&self, peer: String) -> Result<(), String> {
|
|
self.network.add_reserved_peer(&peer).map_err(|e| format!("{:?}", e))
|
|
}
|
|
|
|
fn start_network(&self) {
|
|
self.start();
|
|
}
|
|
|
|
fn stop_network(&self) {
|
|
self.network.with_context(self.subprotocol_name, |context| {
|
|
let mut sync_io = NetSyncIo::new(context,
|
|
&*self.eth_handler.chain,
|
|
&*self.eth_handler.snapshot_service,
|
|
&self.eth_handler.overlay,
|
|
self.eth_handler.private_state.clone());
|
|
self.eth_handler.sync.write().abort(&mut sync_io);
|
|
});
|
|
|
|
if let Some(light_proto) = self.light_proto.as_ref() {
|
|
light_proto.abort();
|
|
}
|
|
|
|
self.stop();
|
|
}
|
|
|
|
fn num_peers_range(&self) -> RangeInclusive<u32> {
|
|
self.network.num_peers_range()
|
|
}
|
|
|
|
fn with_proto_context(&self, proto: ProtocolId, f: &mut dyn FnMut(&dyn NetworkContext)) {
|
|
self.network.with_context_eval(proto, f);
|
|
}
|
|
}
|
|
|
|
#[derive(Debug, Clone, PartialEq, Eq)]
|
|
/// Network service configuration
|
|
pub struct NetworkConfiguration {
|
|
/// Directory path to store general network configuration. None means nothing will be saved
|
|
pub config_path: Option<String>,
|
|
/// Directory path to store network-specific configuration. None means nothing will be saved
|
|
pub net_config_path: Option<String>,
|
|
/// IP address to listen for incoming connections. Listen to all connections by default
|
|
pub listen_address: Option<String>,
|
|
/// IP address to advertise. Detected automatically if none.
|
|
pub public_address: Option<String>,
|
|
/// Port for UDP connections, same as TCP by default
|
|
pub udp_port: Option<u16>,
|
|
/// Enable NAT configuration
|
|
pub nat_enabled: bool,
|
|
/// Enable discovery
|
|
pub discovery_enabled: bool,
|
|
/// List of initial node addresses
|
|
pub boot_nodes: Vec<String>,
|
|
/// Use provided node key instead of default
|
|
pub use_secret: Option<Secret>,
|
|
/// Max number of connected peers to maintain
|
|
pub max_peers: u32,
|
|
/// Min number of connected peers to maintain
|
|
pub min_peers: u32,
|
|
/// Max pending peers.
|
|
pub max_pending_peers: u32,
|
|
/// Reserved snapshot sync peers.
|
|
pub snapshot_peers: u32,
|
|
/// List of reserved node addresses.
|
|
pub reserved_nodes: Vec<String>,
|
|
/// The non-reserved peer mode.
|
|
pub allow_non_reserved: bool,
|
|
/// IP Filtering
|
|
pub ip_filter: IpFilter,
|
|
/// Client version string
|
|
pub client_version: String,
|
|
}
|
|
|
|
impl NetworkConfiguration {
|
|
/// Create a new default config.
|
|
pub fn new() -> Self {
|
|
From::from(BasicNetworkConfiguration::new())
|
|
}
|
|
|
|
/// Create a new local config.
|
|
pub fn new_local() -> Self {
|
|
From::from(BasicNetworkConfiguration::new_local())
|
|
}
|
|
|
|
/// Attempt to convert this config into a BasicNetworkConfiguration.
|
|
pub fn into_basic(self) -> Result<BasicNetworkConfiguration, AddrParseError> {
|
|
Ok(BasicNetworkConfiguration {
|
|
config_path: self.config_path,
|
|
net_config_path: self.net_config_path,
|
|
listen_address: match self.listen_address { None => None, Some(addr) => Some(SocketAddr::from_str(&addr)?) },
|
|
public_address: match self.public_address { None => None, Some(addr) => Some(SocketAddr::from_str(&addr)?) },
|
|
udp_port: self.udp_port,
|
|
nat_enabled: self.nat_enabled,
|
|
discovery_enabled: self.discovery_enabled,
|
|
boot_nodes: self.boot_nodes,
|
|
use_secret: self.use_secret,
|
|
max_peers: self.max_peers,
|
|
min_peers: self.min_peers,
|
|
max_handshakes: self.max_pending_peers,
|
|
reserved_protocols: hash_map![WARP_SYNC_PROTOCOL_ID => self.snapshot_peers],
|
|
reserved_nodes: self.reserved_nodes,
|
|
ip_filter: self.ip_filter,
|
|
non_reserved_mode: if self.allow_non_reserved { NonReservedPeerMode::Accept } else { NonReservedPeerMode::Deny },
|
|
client_version: self.client_version,
|
|
})
|
|
}
|
|
}
|
|
|
|
impl From<BasicNetworkConfiguration> for NetworkConfiguration {
|
|
fn from(other: BasicNetworkConfiguration) -> Self {
|
|
NetworkConfiguration {
|
|
config_path: other.config_path,
|
|
net_config_path: other.net_config_path,
|
|
listen_address: other.listen_address.and_then(|addr| Some(format!("{}", addr))),
|
|
public_address: other.public_address.and_then(|addr| Some(format!("{}", addr))),
|
|
udp_port: other.udp_port,
|
|
nat_enabled: other.nat_enabled,
|
|
discovery_enabled: other.discovery_enabled,
|
|
boot_nodes: other.boot_nodes,
|
|
use_secret: other.use_secret,
|
|
max_peers: other.max_peers,
|
|
min_peers: other.min_peers,
|
|
max_pending_peers: other.max_handshakes,
|
|
snapshot_peers: *other.reserved_protocols.get(&WARP_SYNC_PROTOCOL_ID).unwrap_or(&0),
|
|
reserved_nodes: other.reserved_nodes,
|
|
ip_filter: other.ip_filter,
|
|
allow_non_reserved: match other.non_reserved_mode { NonReservedPeerMode::Accept => true, _ => false } ,
|
|
client_version: other.client_version,
|
|
}
|
|
}
|
|
}
|
|
|
|
/// Configuration for IPC service.
|
|
#[derive(Debug, Clone)]
|
|
pub struct ServiceConfiguration {
|
|
/// Sync config.
|
|
pub sync: SyncConfig,
|
|
/// Network configuration.
|
|
pub net: NetworkConfiguration,
|
|
/// IPC path.
|
|
pub io_path: String,
|
|
}
|
|
|
|
/// Numbers of peers (max, min, active).
|
|
#[derive(Debug, Clone)]
|
|
pub struct PeerNumbers {
|
|
/// Number of connected peers.
|
|
pub connected: usize,
|
|
/// Number of active peers.
|
|
pub active: usize,
|
|
/// Max peers.
|
|
pub max: usize,
|
|
/// Min peers.
|
|
pub min: usize,
|
|
}
|
|
|
|
/// Light synchronization.
|
|
pub trait LightSyncProvider {
|
|
/// Get peer numbers.
|
|
fn peer_numbers(&self) -> PeerNumbers;
|
|
|
|
/// Get peers information
|
|
fn peers(&self) -> Vec<PeerInfo>;
|
|
|
|
/// Get network id.
|
|
fn network_id(&self) -> u64;
|
|
|
|
/// Get the enode if available.
|
|
fn enode(&self) -> Option<String>;
|
|
|
|
/// Returns propagation count for pending transactions.
|
|
fn transactions_stats(&self) -> BTreeMap<H256, TransactionStats>;
|
|
}
|
|
|
|
/// Wrapper around `light_sync::SyncInfo` to expose those methods without the concrete type `LightSync`
|
|
pub trait LightSyncInfo: Send + Sync {
|
|
/// Get the highest block advertised on the network.
|
|
fn highest_block(&self) -> Option<u64>;
|
|
|
|
/// Get the block number at the time of sync start.
|
|
fn start_block(&self) -> u64;
|
|
|
|
/// Whether major sync is underway.
|
|
fn is_major_importing(&self) -> bool;
|
|
}
|
|
|
|
/// Execute a closure with a protocol context.
|
|
pub trait LightNetworkDispatcher {
|
|
/// Execute a closure with a protocol context.
|
|
fn with_context<F, T>(&self, f: F) -> Option<T> where F: FnOnce(&dyn (::light::net::BasicContext)) -> T;
|
|
}
|
|
|
|
/// Configuration for the light sync.
|
|
pub struct LightSyncParams<L> {
|
|
/// Network configuration.
|
|
pub network_config: BasicNetworkConfiguration,
|
|
/// Light client to sync to.
|
|
pub client: Arc<L>,
|
|
/// Network ID.
|
|
pub network_id: u64,
|
|
/// Subprotocol name.
|
|
pub subprotocol_name: [u8; 3],
|
|
/// Other handlers to attach.
|
|
pub handlers: Vec<Arc<dyn LightHandler>>,
|
|
}
|
|
|
|
/// Service for light synchronization.
|
|
pub struct LightSync {
|
|
proto: Arc<LightProtocol>,
|
|
sync: Arc<dyn SyncInfo + Sync + Send>,
|
|
network: NetworkService,
|
|
subprotocol_name: [u8; 3],
|
|
network_id: u64,
|
|
}
|
|
|
|
impl LightSync {
|
|
/// Create a new light sync service.
|
|
pub fn new<L>(params: LightSyncParams<L>) -> Result<Self, Error>
|
|
where L: AsLightClient + Provider + Sync + Send + 'static
|
|
{
|
|
use light_sync::LightSync as SyncHandler;
|
|
|
|
// initialize light protocol handler and attach sync module.
|
|
let (sync, light_proto) = {
|
|
let light_params = LightParams {
|
|
network_id: params.network_id,
|
|
config: Default::default(),
|
|
capabilities: Capabilities {
|
|
serve_headers: false,
|
|
serve_chain_since: None,
|
|
serve_state_since: None,
|
|
tx_relay: false,
|
|
},
|
|
sample_store: None,
|
|
};
|
|
|
|
let mut light_proto = LightProtocol::new(params.client.clone(), light_params);
|
|
let sync_handler = Arc::new(SyncHandler::new(params.client.clone())?);
|
|
light_proto.add_handler(sync_handler.clone());
|
|
|
|
for handler in params.handlers {
|
|
light_proto.add_handler(handler);
|
|
}
|
|
|
|
(sync_handler, Arc::new(light_proto))
|
|
};
|
|
|
|
let service = NetworkService::new(params.network_config, None)?;
|
|
|
|
Ok(LightSync {
|
|
proto: light_proto,
|
|
sync: sync,
|
|
network: service,
|
|
subprotocol_name: params.subprotocol_name,
|
|
network_id: params.network_id,
|
|
})
|
|
}
|
|
|
|
}
|
|
|
|
impl ::std::ops::Deref for LightSync {
|
|
type Target = dyn (::light_sync::SyncInfo);
|
|
|
|
fn deref(&self) -> &Self::Target { &*self.sync }
|
|
}
|
|
|
|
|
|
impl LightNetworkDispatcher for LightSync {
|
|
fn with_context<F, T>(&self, f: F) -> Option<T> where F: FnOnce(&dyn (::light::net::BasicContext)) -> T {
|
|
self.network.with_context_eval(
|
|
self.subprotocol_name,
|
|
move |ctx| self.proto.with_context(&ctx, f),
|
|
)
|
|
}
|
|
}
|
|
|
|
impl ManageNetwork for LightSync {
|
|
fn accept_unreserved_peers(&self) {
|
|
self.network.set_non_reserved_mode(NonReservedPeerMode::Accept);
|
|
}
|
|
|
|
fn deny_unreserved_peers(&self) {
|
|
self.network.set_non_reserved_mode(NonReservedPeerMode::Deny);
|
|
}
|
|
|
|
fn remove_reserved_peer(&self, peer: String) -> Result<(), String> {
|
|
self.network.remove_reserved_peer(&peer).map_err(|e| format!("{:?}", e))
|
|
}
|
|
|
|
fn add_reserved_peer(&self, peer: String) -> Result<(), String> {
|
|
self.network.add_reserved_peer(&peer).map_err(|e| format!("{:?}", e))
|
|
}
|
|
|
|
fn start_network(&self) {
|
|
match self.network.start() {
|
|
Err((err, listen_address)) => {
|
|
match err.into() {
|
|
Error::Io(ref e) if e.kind() == io::ErrorKind::AddrInUse => {
|
|
warn!("Network port {:?} is already in use, make sure that another instance of an Ethereum client is not running or change the port using the --port option.", listen_address.expect("Listen address is not set."))
|
|
},
|
|
err => warn!("Error starting network: {}", err),
|
|
}
|
|
},
|
|
_ => {},
|
|
}
|
|
|
|
let light_proto = self.proto.clone();
|
|
|
|
self.network.register_protocol(light_proto, self.subprotocol_name, ::light::net::PROTOCOL_VERSIONS)
|
|
.unwrap_or_else(|e| warn!("Error registering light client protocol: {:?}", e));
|
|
}
|
|
|
|
fn stop_network(&self) {
|
|
self.proto.abort();
|
|
self.network.stop();
|
|
}
|
|
|
|
fn num_peers_range(&self) -> RangeInclusive<u32> {
|
|
self.network.num_peers_range()
|
|
}
|
|
|
|
fn with_proto_context(&self, proto: ProtocolId, f: &mut dyn FnMut(&dyn NetworkContext)) {
|
|
self.network.with_context_eval(proto, f);
|
|
}
|
|
}
|
|
|
|
impl LightSyncProvider for LightSync {
|
|
fn peer_numbers(&self) -> PeerNumbers {
|
|
let (connected, active) = self.proto.peer_count();
|
|
let peers_range = self.num_peers_range();
|
|
debug_assert!(peers_range.end() >= peers_range.start());
|
|
PeerNumbers {
|
|
connected: connected,
|
|
active: active,
|
|
max: *peers_range.end() as usize,
|
|
min: *peers_range.start() as usize,
|
|
}
|
|
}
|
|
|
|
fn peers(&self) -> Vec<PeerInfo> {
|
|
self.network.with_context_eval(self.subprotocol_name, |ctx| {
|
|
let peer_ids = self.network.connected_peers();
|
|
|
|
peer_ids.into_iter().filter_map(|peer_id| {
|
|
let session_info = match ctx.session_info(peer_id) {
|
|
None => return None,
|
|
Some(info) => info,
|
|
};
|
|
|
|
Some(PeerInfo {
|
|
id: session_info.id.map(|id| format!("{:x}", id)),
|
|
client_version: session_info.client_version,
|
|
capabilities: session_info.peer_capabilities.into_iter().map(|c| c.to_string()).collect(),
|
|
remote_address: session_info.remote_address,
|
|
local_address: session_info.local_address,
|
|
eth_info: None,
|
|
pip_info: self.proto.peer_status(peer_id).map(Into::into),
|
|
})
|
|
}).collect()
|
|
}).unwrap_or_else(Vec::new)
|
|
}
|
|
|
|
fn enode(&self) -> Option<String> {
|
|
self.network.external_url()
|
|
}
|
|
|
|
fn network_id(&self) -> u64 {
|
|
self.network_id
|
|
}
|
|
|
|
fn transactions_stats(&self) -> BTreeMap<H256, TransactionStats> {
|
|
Default::default() // TODO
|
|
}
|
|
}
|
|
|
|
impl LightSyncInfo for LightSync {
|
|
fn highest_block(&self) -> Option<u64> {
|
|
(*self.sync).highest_block()
|
|
}
|
|
|
|
fn start_block(&self) -> u64 {
|
|
(*self.sync).start_block()
|
|
}
|
|
|
|
fn is_major_importing(&self) -> bool {
|
|
(*self.sync).is_major_importing()
|
|
}
|
|
}
|