mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-04-29 21:57:55 +00:00
1cd6acdff3
This PR moves syncing-related code from `sc-network-common` to `sc-network-sync`. Unfortunately, some parts are tightly integrated with networking, so they were left in `sc-network-common` for now: 1. `SyncMode` in `common/src/sync.rs` (used in `NetworkConfiguration`). 2. `BlockAnnouncesHandshake`, `BlockRequest`, `BlockResponse`, etc. in `common/src/sync/message.rs` (used in `src/protocol.rs` and `src/protocol/message.rs`). More substantial refactoring is needed to decouple syncing and networking completely, including getting rid of the hardcoded sync protocol. ## Release notes Move syncing-related code from `sc-network-common` to `sc-network-sync`. Delete `ChainSync` trait as it's never used (the only implementation is accessed directly from `SyncingEngine` and exposes a lot of public methods that are not part of the trait). Some new trait(s) for syncing will likely be introduced as part of Sync 2.0 refactoring to represent syncing strategies.
510 lines
16 KiB
Rust
510 lines
16 KiB
Rust
// This file is part of Substrate.
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// Copyright (C) Parity Technologies (UK) Ltd.
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// SPDX-License-Identifier: GPL-3.0-or-later WITH Classpath-exception-2.0
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// This program 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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// This program 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 this program. If not, see <https://www.gnu.org/licenses/>.
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//! Transactions handling to plug on top of the network service.
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//!
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//! Usage:
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//!
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//! - Use [`TransactionsHandlerPrototype::new`] to create a prototype.
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//! - Pass the return value of [`TransactionsHandlerPrototype::set_config`] to the network
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//! configuration as an extra peers set.
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//! - Use [`TransactionsHandlerPrototype::build`] then [`TransactionsHandler::run`] to obtain a
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//! `Future` that processes transactions.
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use crate::config::*;
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use codec::{Decode, Encode};
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use futures::{prelude::*, stream::FuturesUnordered};
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use libp2p::{multiaddr, PeerId};
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use log::{debug, trace, warn};
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use prometheus_endpoint::{register, Counter, PrometheusError, Registry, U64};
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use sc_network::{
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config::{NonDefaultSetConfig, NonReservedPeerMode, ProtocolId, SetConfig},
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error,
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event::Event,
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types::ProtocolName,
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utils::{interval, LruHashSet},
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NetworkEventStream, NetworkNotification, NetworkPeers,
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};
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use sc_network_common::{role::ObservedRole, ExHashT};
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use sc_network_sync::{SyncEvent, SyncEventStream};
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use sc_utils::mpsc::{tracing_unbounded, TracingUnboundedReceiver, TracingUnboundedSender};
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use sp_runtime::traits::Block as BlockT;
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use std::{
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collections::{hash_map::Entry, HashMap},
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iter,
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num::NonZeroUsize,
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pin::Pin,
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sync::Arc,
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task::Poll,
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};
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pub mod config;
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/// A set of transactions.
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pub type Transactions<E> = Vec<E>;
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mod rep {
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use sc_network::ReputationChange as Rep;
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/// Reputation change when a peer sends us any transaction.
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///
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/// This forces node to verify it, thus the negative value here. Once transaction is verified,
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/// reputation change should be refunded with `ANY_TRANSACTION_REFUND`
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pub const ANY_TRANSACTION: Rep = Rep::new(-(1 << 4), "Any transaction");
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/// Reputation change when a peer sends us any transaction that is not invalid.
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pub const ANY_TRANSACTION_REFUND: Rep = Rep::new(1 << 4, "Any transaction (refund)");
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/// Reputation change when a peer sends us an transaction that we didn't know about.
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pub const GOOD_TRANSACTION: Rep = Rep::new(1 << 7, "Good transaction");
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/// Reputation change when a peer sends us a bad transaction.
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pub const BAD_TRANSACTION: Rep = Rep::new(-(1 << 12), "Bad transaction");
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}
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struct Metrics {
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propagated_transactions: Counter<U64>,
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}
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impl Metrics {
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fn register(r: &Registry) -> Result<Self, PrometheusError> {
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Ok(Self {
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propagated_transactions: register(
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Counter::new(
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"substrate_sync_propagated_transactions",
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"Number of transactions propagated to at least one peer",
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)?,
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r,
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)?,
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})
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}
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}
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struct PendingTransaction<H> {
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validation: TransactionImportFuture,
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tx_hash: H,
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}
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impl<H> Unpin for PendingTransaction<H> {}
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impl<H: ExHashT> Future for PendingTransaction<H> {
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type Output = (H, TransactionImport);
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fn poll(mut self: Pin<&mut Self>, cx: &mut std::task::Context<'_>) -> Poll<Self::Output> {
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if let Poll::Ready(import_result) = self.validation.poll_unpin(cx) {
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return Poll::Ready((self.tx_hash.clone(), import_result))
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}
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Poll::Pending
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}
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}
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/// Prototype for a [`TransactionsHandler`].
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pub struct TransactionsHandlerPrototype {
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protocol_name: ProtocolName,
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fallback_protocol_names: Vec<ProtocolName>,
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}
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impl TransactionsHandlerPrototype {
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/// Create a new instance.
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pub fn new<Hash: AsRef<[u8]>>(
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protocol_id: ProtocolId,
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genesis_hash: Hash,
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fork_id: Option<&str>,
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) -> Self {
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let genesis_hash = genesis_hash.as_ref();
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let protocol_name = if let Some(fork_id) = fork_id {
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format!("/{}/{}/transactions/1", array_bytes::bytes2hex("", genesis_hash), fork_id)
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} else {
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format!("/{}/transactions/1", array_bytes::bytes2hex("", genesis_hash))
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};
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let legacy_protocol_name = format!("/{}/transactions/1", protocol_id.as_ref());
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Self {
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protocol_name: protocol_name.into(),
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fallback_protocol_names: iter::once(legacy_protocol_name.into()).collect(),
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}
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}
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/// Returns the configuration of the set to put in the network configuration.
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pub fn set_config(&self) -> NonDefaultSetConfig {
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NonDefaultSetConfig {
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notifications_protocol: self.protocol_name.clone(),
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fallback_names: self.fallback_protocol_names.clone(),
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max_notification_size: MAX_TRANSACTIONS_SIZE,
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handshake: None,
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set_config: SetConfig {
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in_peers: 0,
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out_peers: 0,
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reserved_nodes: Vec::new(),
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non_reserved_mode: NonReservedPeerMode::Deny,
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},
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}
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}
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/// Turns the prototype into the actual handler. Returns a controller that allows controlling
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/// the behaviour of the handler while it's running.
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///
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/// Important: the transactions handler is initially disabled and doesn't gossip transactions.
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/// Gossiping is enabled when major syncing is done.
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pub fn build<
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B: BlockT + 'static,
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H: ExHashT,
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N: NetworkPeers + NetworkEventStream + NetworkNotification,
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S: SyncEventStream + sp_consensus::SyncOracle,
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>(
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self,
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network: N,
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sync: S,
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transaction_pool: Arc<dyn TransactionPool<H, B>>,
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metrics_registry: Option<&Registry>,
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) -> error::Result<(TransactionsHandler<B, H, N, S>, TransactionsHandlerController<H>)> {
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let net_event_stream = network.event_stream("transactions-handler-net");
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let sync_event_stream = sync.event_stream("transactions-handler-sync");
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let (to_handler, from_controller) = tracing_unbounded("mpsc_transactions_handler", 100_000);
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let handler = TransactionsHandler {
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protocol_name: self.protocol_name,
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propagate_timeout: (Box::pin(interval(PROPAGATE_TIMEOUT))
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as Pin<Box<dyn Stream<Item = ()> + Send>>)
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.fuse(),
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pending_transactions: FuturesUnordered::new(),
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pending_transactions_peers: HashMap::new(),
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network,
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sync,
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net_event_stream: net_event_stream.fuse(),
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sync_event_stream: sync_event_stream.fuse(),
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peers: HashMap::new(),
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transaction_pool,
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from_controller,
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metrics: if let Some(r) = metrics_registry {
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Some(Metrics::register(r)?)
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} else {
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None
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},
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};
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let controller = TransactionsHandlerController { to_handler };
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Ok((handler, controller))
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}
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}
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/// Controls the behaviour of a [`TransactionsHandler`] it is connected to.
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pub struct TransactionsHandlerController<H: ExHashT> {
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to_handler: TracingUnboundedSender<ToHandler<H>>,
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}
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impl<H: ExHashT> TransactionsHandlerController<H> {
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/// You may call this when new transactions are imported by the transaction pool.
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///
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/// All transactions will be fetched from the `TransactionPool` that was passed at
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/// initialization as part of the configuration and propagated to peers.
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pub fn propagate_transactions(&self) {
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let _ = self.to_handler.unbounded_send(ToHandler::PropagateTransactions);
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}
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/// You must call when new a transaction is imported by the transaction pool.
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///
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/// This transaction will be fetched from the `TransactionPool` that was passed at
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/// initialization as part of the configuration and propagated to peers.
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pub fn propagate_transaction(&self, hash: H) {
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let _ = self.to_handler.unbounded_send(ToHandler::PropagateTransaction(hash));
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}
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}
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enum ToHandler<H: ExHashT> {
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PropagateTransactions,
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PropagateTransaction(H),
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}
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/// Handler for transactions. Call [`TransactionsHandler::run`] to start the processing.
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pub struct TransactionsHandler<
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B: BlockT + 'static,
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H: ExHashT,
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N: NetworkPeers + NetworkEventStream + NetworkNotification,
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S: SyncEventStream + sp_consensus::SyncOracle,
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> {
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protocol_name: ProtocolName,
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/// Interval at which we call `propagate_transactions`.
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propagate_timeout: stream::Fuse<Pin<Box<dyn Stream<Item = ()> + Send>>>,
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/// Pending transactions verification tasks.
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pending_transactions: FuturesUnordered<PendingTransaction<H>>,
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/// As multiple peers can send us the same transaction, we group
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/// these peers using the transaction hash while the transaction is
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/// imported. This prevents that we import the same transaction
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/// multiple times concurrently.
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pending_transactions_peers: HashMap<H, Vec<PeerId>>,
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/// Network service to use to send messages and manage peers.
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network: N,
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/// Syncing service.
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sync: S,
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/// Stream of networking events.
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net_event_stream: stream::Fuse<Pin<Box<dyn Stream<Item = Event> + Send>>>,
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/// Receiver for syncing-related events.
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sync_event_stream: stream::Fuse<Pin<Box<dyn Stream<Item = SyncEvent> + Send>>>,
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// All connected peers
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peers: HashMap<PeerId, Peer<H>>,
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transaction_pool: Arc<dyn TransactionPool<H, B>>,
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from_controller: TracingUnboundedReceiver<ToHandler<H>>,
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/// Prometheus metrics.
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metrics: Option<Metrics>,
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}
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/// Peer information
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#[derive(Debug)]
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struct Peer<H: ExHashT> {
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/// Holds a set of transactions known to this peer.
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known_transactions: LruHashSet<H>,
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role: ObservedRole,
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}
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impl<B, H, N, S> TransactionsHandler<B, H, N, S>
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where
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B: BlockT + 'static,
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H: ExHashT,
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N: NetworkPeers + NetworkEventStream + NetworkNotification,
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S: SyncEventStream + sp_consensus::SyncOracle,
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{
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/// Turns the [`TransactionsHandler`] into a future that should run forever and not be
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/// interrupted.
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pub async fn run(mut self) {
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loop {
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futures::select! {
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_ = self.propagate_timeout.next() => {
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self.propagate_transactions();
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},
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(tx_hash, result) = self.pending_transactions.select_next_some() => {
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if let Some(peers) = self.pending_transactions_peers.remove(&tx_hash) {
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peers.into_iter().for_each(|p| self.on_handle_transaction_import(p, result));
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} else {
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warn!(target: "sub-libp2p", "Inconsistent state, no peers for pending transaction!");
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}
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},
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network_event = self.net_event_stream.next() => {
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if let Some(network_event) = network_event {
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self.handle_network_event(network_event).await;
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} else {
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// Networking has seemingly closed. Closing as well.
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return;
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}
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},
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sync_event = self.sync_event_stream.next() => {
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if let Some(sync_event) = sync_event {
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self.handle_sync_event(sync_event);
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} else {
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// Syncing has seemingly closed. Closing as well.
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return;
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}
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}
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message = self.from_controller.select_next_some() => {
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match message {
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ToHandler::PropagateTransaction(hash) => self.propagate_transaction(&hash),
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ToHandler::PropagateTransactions => self.propagate_transactions(),
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}
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},
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}
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}
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}
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fn handle_sync_event(&mut self, event: SyncEvent) {
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match event {
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SyncEvent::PeerConnected(remote) => {
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let addr = iter::once(multiaddr::Protocol::P2p(remote.into()))
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.collect::<multiaddr::Multiaddr>();
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let result = self.network.add_peers_to_reserved_set(
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self.protocol_name.clone(),
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iter::once(addr).collect(),
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);
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if let Err(err) = result {
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log::error!(target: "sync", "Add reserved peer failed: {}", err);
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}
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},
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SyncEvent::PeerDisconnected(remote) => {
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let result = self.network.remove_peers_from_reserved_set(
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self.protocol_name.clone(),
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iter::once(remote).collect(),
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);
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if let Err(err) = result {
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log::error!(target: "sync", "Remove reserved peer failed: {}", err);
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}
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},
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}
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}
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async fn handle_network_event(&mut self, event: Event) {
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match event {
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Event::Dht(_) => {},
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Event::NotificationStreamOpened { remote, protocol, role, .. }
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if protocol == self.protocol_name =>
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{
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let _was_in = self.peers.insert(
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remote,
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Peer {
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known_transactions: LruHashSet::new(
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NonZeroUsize::new(MAX_KNOWN_TRANSACTIONS).expect("Constant is nonzero"),
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),
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role,
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},
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);
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debug_assert!(_was_in.is_none());
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},
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Event::NotificationStreamClosed { remote, protocol }
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if protocol == self.protocol_name =>
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{
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let _peer = self.peers.remove(&remote);
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debug_assert!(_peer.is_some());
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},
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Event::NotificationsReceived { remote, messages } => {
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for (protocol, message) in messages {
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if protocol != self.protocol_name {
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continue
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}
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if let Ok(m) =
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<Transactions<B::Extrinsic> as Decode>::decode(&mut message.as_ref())
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{
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self.on_transactions(remote, m);
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} else {
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warn!(target: "sub-libp2p", "Failed to decode transactions list");
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}
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}
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},
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// Not our concern.
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Event::NotificationStreamOpened { .. } | Event::NotificationStreamClosed { .. } => {},
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}
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}
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/// Called when peer sends us new transactions
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fn on_transactions(&mut self, who: PeerId, transactions: Transactions<B::Extrinsic>) {
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// Accept transactions only when node is not major syncing
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if self.sync.is_major_syncing() {
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trace!(target: "sync", "{} Ignoring transactions while major syncing", who);
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return
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}
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trace!(target: "sync", "Received {} transactions from {}", transactions.len(), who);
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if let Some(ref mut peer) = self.peers.get_mut(&who) {
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for t in transactions {
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if self.pending_transactions.len() > MAX_PENDING_TRANSACTIONS {
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debug!(
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target: "sync",
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"Ignoring any further transactions that exceed `MAX_PENDING_TRANSACTIONS`({}) limit",
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MAX_PENDING_TRANSACTIONS,
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);
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break
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}
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let hash = self.transaction_pool.hash_of(&t);
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peer.known_transactions.insert(hash.clone());
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self.network.report_peer(who, rep::ANY_TRANSACTION);
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match self.pending_transactions_peers.entry(hash.clone()) {
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Entry::Vacant(entry) => {
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self.pending_transactions.push(PendingTransaction {
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validation: self.transaction_pool.import(t),
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tx_hash: hash,
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});
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entry.insert(vec![who]);
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},
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Entry::Occupied(mut entry) => {
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entry.get_mut().push(who);
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},
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}
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}
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}
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}
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fn on_handle_transaction_import(&mut self, who: PeerId, import: TransactionImport) {
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match import {
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TransactionImport::KnownGood =>
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self.network.report_peer(who, rep::ANY_TRANSACTION_REFUND),
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TransactionImport::NewGood => self.network.report_peer(who, rep::GOOD_TRANSACTION),
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TransactionImport::Bad => self.network.report_peer(who, rep::BAD_TRANSACTION),
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TransactionImport::None => {},
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}
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}
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/// Propagate one transaction.
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pub fn propagate_transaction(&mut self, hash: &H) {
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// Accept transactions only when node is not major syncing
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if self.sync.is_major_syncing() {
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return
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}
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debug!(target: "sync", "Propagating transaction [{:?}]", hash);
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if let Some(transaction) = self.transaction_pool.transaction(hash) {
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let propagated_to = self.do_propagate_transactions(&[(hash.clone(), transaction)]);
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self.transaction_pool.on_broadcasted(propagated_to);
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}
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}
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fn do_propagate_transactions(
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&mut self,
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transactions: &[(H, B::Extrinsic)],
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) -> HashMap<H, Vec<String>> {
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let mut propagated_to = HashMap::<_, Vec<_>>::new();
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let mut propagated_transactions = 0;
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for (who, peer) in self.peers.iter_mut() {
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// never send transactions to the light node
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if matches!(peer.role, ObservedRole::Light) {
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continue
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}
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let (hashes, to_send): (Vec<_>, Vec<_>) = transactions
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.iter()
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.filter(|(hash, _)| peer.known_transactions.insert(hash.clone()))
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.cloned()
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.unzip();
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propagated_transactions += hashes.len();
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if !to_send.is_empty() {
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for hash in hashes {
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propagated_to.entry(hash).or_default().push(who.to_base58());
|
|
}
|
|
trace!(target: "sync", "Sending {} transactions to {}", to_send.len(), who);
|
|
self.network
|
|
.write_notification(*who, self.protocol_name.clone(), to_send.encode());
|
|
}
|
|
}
|
|
|
|
if let Some(ref metrics) = self.metrics {
|
|
metrics.propagated_transactions.inc_by(propagated_transactions as _)
|
|
}
|
|
|
|
propagated_to
|
|
}
|
|
|
|
/// Call when we must propagate ready transactions to peers.
|
|
fn propagate_transactions(&mut self) {
|
|
// Accept transactions only when node is not major syncing
|
|
if self.sync.is_major_syncing() {
|
|
return
|
|
}
|
|
|
|
debug!(target: "sync", "Propagating transactions");
|
|
let transactions = self.transaction_pool.transactions();
|
|
let propagated_to = self.do_propagate_transactions(&transactions);
|
|
self.transaction_pool.on_broadcasted(propagated_to);
|
|
}
|
|
}
|