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224562729d
* Make `add_reserved_peer()` accept `MultiaddrWithPeerId` * minor: cargo fmt * minor: error to string conversion Co-authored-by: Bastian Köcher <bkchr@users.noreply.github.com> Co-authored-by: Bastian Köcher <bkchr@users.noreply.github.com>
584 lines
18 KiB
Rust
584 lines
18 KiB
Rust
// This file is part of Substrate.
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// Copyright (C) 2017-2022 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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//! Substrate service. Starts a thread that spins up the network, client, and extrinsic pool.
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//! Manages communication between them.
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#![warn(missing_docs)]
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#![recursion_limit = "1024"]
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pub mod chain_ops;
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pub mod config;
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pub mod error;
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mod builder;
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#[cfg(feature = "test-helpers")]
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pub mod client;
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#[cfg(not(feature = "test-helpers"))]
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mod client;
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mod metrics;
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mod task_manager;
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use std::{collections::HashMap, net::SocketAddr};
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use codec::{Decode, Encode};
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use futures::{channel::mpsc, FutureExt, StreamExt};
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use jsonrpsee::{core::Error as JsonRpseeError, RpcModule};
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use log::{debug, error, warn};
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use sc_client_api::{blockchain::HeaderBackend, BlockBackend, BlockchainEvents, ProofProvider};
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use sc_network::PeerId;
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use sc_network_common::{config::MultiaddrWithPeerId, service::NetworkBlock};
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use sc_rpc_server::WsConfig;
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use sc_utils::mpsc::TracingUnboundedReceiver;
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use sp_blockchain::HeaderMetadata;
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use sp_consensus::SyncOracle;
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use sp_runtime::{
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generic::BlockId,
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traits::{Block as BlockT, Header as HeaderT},
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};
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pub use self::{
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builder::{
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build_network, build_offchain_workers, new_client, new_db_backend, new_full_client,
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new_full_parts, spawn_tasks, BuildNetworkParams, KeystoreContainer, NetworkStarter,
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SpawnTasksParams, TFullBackend, TFullCallExecutor, TFullClient,
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},
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client::{ClientConfig, LocalCallExecutor},
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error::Error,
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};
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pub use config::{
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BasePath, BlocksPruning, Configuration, DatabaseSource, PruningMode, Role, RpcMethods, TaskType,
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};
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pub use sc_chain_spec::{
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ChainSpec, ChainType, Extension as ChainSpecExtension, GenericChainSpec, NoExtension,
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Properties, RuntimeGenesis,
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};
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pub use sc_consensus::ImportQueue;
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pub use sc_executor::NativeExecutionDispatch;
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#[doc(hidden)]
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pub use sc_network::config::{TransactionImport, TransactionImportFuture};
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pub use sc_rpc::{
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RandomIntegerSubscriptionId, RandomStringSubscriptionId, RpcSubscriptionIdProvider,
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};
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pub use sc_tracing::TracingReceiver;
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pub use sc_transaction_pool::Options as TransactionPoolOptions;
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pub use sc_transaction_pool_api::{error::IntoPoolError, InPoolTransaction, TransactionPool};
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#[doc(hidden)]
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pub use std::{ops::Deref, result::Result, sync::Arc};
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pub use task_manager::{SpawnTaskHandle, TaskManager, DEFAULT_GROUP_NAME};
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const DEFAULT_PROTOCOL_ID: &str = "sup";
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/// RPC handlers that can perform RPC queries.
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#[derive(Clone)]
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pub struct RpcHandlers(Arc<RpcModule<()>>);
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impl RpcHandlers {
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/// Starts an RPC query.
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///
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/// The query is passed as a string and must be valid JSON-RPC request object.
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///
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/// Returns a response and a stream if the call successful, fails if the
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/// query could not be decoded as a JSON-RPC request object.
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///
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/// If the request subscribes you to events, the `stream` can be used to
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/// retrieve the events.
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pub async fn rpc_query(
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&self,
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json_query: &str,
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) -> Result<(String, mpsc::UnboundedReceiver<String>), JsonRpseeError> {
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self.0
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.raw_json_request(json_query)
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.await
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.map(|(method_res, recv)| (method_res.result, recv))
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}
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/// Provides access to the underlying `RpcModule`
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pub fn handle(&self) -> Arc<RpcModule<()>> {
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self.0.clone()
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}
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}
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/// An incomplete set of chain components, but enough to run the chain ops subcommands.
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pub struct PartialComponents<Client, Backend, SelectChain, ImportQueue, TransactionPool, Other> {
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/// A shared client instance.
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pub client: Arc<Client>,
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/// A shared backend instance.
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pub backend: Arc<Backend>,
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/// The chain task manager.
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pub task_manager: TaskManager,
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/// A keystore container instance..
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pub keystore_container: KeystoreContainer,
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/// A chain selection algorithm instance.
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pub select_chain: SelectChain,
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/// An import queue.
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pub import_queue: ImportQueue,
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/// A shared transaction pool.
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pub transaction_pool: Arc<TransactionPool>,
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/// Everything else that needs to be passed into the main build function.
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pub other: Other,
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}
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/// Builds a never-ending future that continuously polls the network.
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///
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/// The `status_sink` contain a list of senders to send a periodic network status to.
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async fn build_network_future<
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B: BlockT,
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C: BlockchainEvents<B>
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+ HeaderBackend<B>
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+ BlockBackend<B>
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+ HeaderMetadata<B, Error = sp_blockchain::Error>
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+ ProofProvider<B>
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+ Send
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+ Sync
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+ 'static,
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H: sc_network::ExHashT,
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>(
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role: Role,
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mut network: sc_network::NetworkWorker<B, H, C>,
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client: Arc<C>,
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mut rpc_rx: TracingUnboundedReceiver<sc_rpc::system::Request<B>>,
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should_have_peers: bool,
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announce_imported_blocks: bool,
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) {
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let mut imported_blocks_stream = client.import_notification_stream().fuse();
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// Current best block at initialization, to report to the RPC layer.
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let starting_block = client.info().best_number;
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// Stream of finalized blocks reported by the client.
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let mut finality_notification_stream = client.finality_notification_stream().fuse();
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loop {
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futures::select! {
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// List of blocks that the client has imported.
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notification = imported_blocks_stream.next() => {
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let notification = match notification {
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Some(n) => n,
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// If this stream is shut down, that means the client has shut down, and the
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// most appropriate thing to do for the network future is to shut down too.
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None => return,
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};
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if announce_imported_blocks {
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network.service().announce_block(notification.hash, None);
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}
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if notification.is_new_best {
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network.service().new_best_block_imported(
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notification.hash,
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*notification.header.number(),
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);
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}
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}
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// List of blocks that the client has finalized.
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notification = finality_notification_stream.select_next_some() => {
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network.on_block_finalized(notification.hash, notification.header);
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}
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// Answer incoming RPC requests.
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request = rpc_rx.select_next_some() => {
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match request {
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sc_rpc::system::Request::Health(sender) => {
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let _ = sender.send(sc_rpc::system::Health {
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peers: network.peers_debug_info().len(),
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is_syncing: network.service().is_major_syncing(),
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should_have_peers,
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});
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},
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sc_rpc::system::Request::LocalPeerId(sender) => {
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let _ = sender.send(network.local_peer_id().to_base58());
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},
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sc_rpc::system::Request::LocalListenAddresses(sender) => {
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let peer_id = (*network.local_peer_id()).into();
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let p2p_proto_suffix = sc_network::multiaddr::Protocol::P2p(peer_id);
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let addresses = network.listen_addresses()
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.map(|addr| addr.clone().with(p2p_proto_suffix.clone()).to_string())
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.collect();
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let _ = sender.send(addresses);
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},
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sc_rpc::system::Request::Peers(sender) => {
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let _ = sender.send(network.peers_debug_info().into_iter().map(|(peer_id, p)|
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sc_rpc::system::PeerInfo {
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peer_id: peer_id.to_base58(),
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roles: format!("{:?}", p.roles),
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best_hash: p.best_hash,
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best_number: p.best_number,
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}
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).collect());
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}
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sc_rpc::system::Request::NetworkState(sender) => {
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if let Ok(network_state) = serde_json::to_value(&network.network_state()) {
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let _ = sender.send(network_state);
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}
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}
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sc_rpc::system::Request::NetworkAddReservedPeer(peer_addr, sender) => {
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let result = match MultiaddrWithPeerId::try_from(peer_addr) {
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Ok(peer) => {
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network.add_reserved_peer(peer)
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},
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Err(err) => {
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Err(err.to_string())
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},
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};
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let x = result.map_err(sc_rpc::system::error::Error::MalformattedPeerArg);
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let _ = sender.send(x);
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}
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sc_rpc::system::Request::NetworkRemoveReservedPeer(peer_id, sender) => {
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let _ = match peer_id.parse::<PeerId>() {
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Ok(peer_id) => {
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network.remove_reserved_peer(peer_id);
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sender.send(Ok(()))
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}
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Err(e) => sender.send(Err(sc_rpc::system::error::Error::MalformattedPeerArg(
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e.to_string(),
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))),
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};
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}
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sc_rpc::system::Request::NetworkReservedPeers(sender) => {
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let reserved_peers = network.reserved_peers();
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let reserved_peers = reserved_peers
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.map(|peer_id| peer_id.to_base58())
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.collect();
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let _ = sender.send(reserved_peers);
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}
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sc_rpc::system::Request::NodeRoles(sender) => {
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use sc_rpc::system::NodeRole;
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let node_role = match role {
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Role::Authority { .. } => NodeRole::Authority,
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Role::Full => NodeRole::Full,
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};
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let _ = sender.send(vec![node_role]);
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}
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sc_rpc::system::Request::SyncState(sender) => {
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use sc_rpc::system::SyncState;
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let best_number = client.info().best_number;
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let _ = sender.send(SyncState {
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starting_block,
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current_block: best_number,
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highest_block: network.best_seen_block().unwrap_or(best_number),
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});
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}
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}
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}
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// The network worker has done something. Nothing special to do, but could be
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// used in the future to perform actions in response of things that happened on
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// the network.
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_ = (&mut network).fuse() => {}
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}
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}
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}
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// Wrapper for HTTP and WS servers that makes sure they are properly shut down.
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mod waiting {
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pub struct HttpServer(pub Option<sc_rpc_server::HttpServer>);
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impl Drop for HttpServer {
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fn drop(&mut self) {
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if let Some(server) = self.0.take() {
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// This doesn't not wait for the server to be stopped but fires the signal.
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let _ = server.stop();
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}
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}
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}
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pub struct WsServer(pub Option<sc_rpc_server::WsServer>);
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impl Drop for WsServer {
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fn drop(&mut self) {
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if let Some(server) = self.0.take() {
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// This doesn't not wait for the server to be stopped but fires the signal.
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let _ = server.stop();
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}
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}
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}
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}
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/// Starts RPC servers.
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fn start_rpc_servers<R>(
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config: &Configuration,
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gen_rpc_module: R,
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rpc_id_provider: Option<Box<dyn RpcSubscriptionIdProvider>>,
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) -> Result<Box<dyn std::any::Any + Send + Sync>, error::Error>
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where
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R: Fn(sc_rpc::DenyUnsafe) -> Result<RpcModule<()>, Error>,
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{
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let (max_request_size, ws_max_response_size, http_max_response_size) =
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legacy_cli_parsing(config);
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fn deny_unsafe(addr: SocketAddr, methods: &RpcMethods) -> sc_rpc::DenyUnsafe {
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let is_exposed_addr = !addr.ip().is_loopback();
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match (is_exposed_addr, methods) {
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| (_, RpcMethods::Unsafe) | (false, RpcMethods::Auto) => sc_rpc::DenyUnsafe::No,
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_ => sc_rpc::DenyUnsafe::Yes,
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}
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}
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let random_port = |mut addr: SocketAddr| {
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addr.set_port(0);
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addr
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};
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let ws_addr = config
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.rpc_ws
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.unwrap_or_else(|| "127.0.0.1:9944".parse().expect("valid sockaddr; qed"));
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let ws_addr2 = random_port(ws_addr);
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let http_addr = config
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.rpc_http
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.unwrap_or_else(|| "127.0.0.1:9933".parse().expect("valid sockaddr; qed"));
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let http_addr2 = random_port(http_addr);
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let metrics = sc_rpc_server::RpcMetrics::new(config.prometheus_registry())?;
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let http_fut = sc_rpc_server::start_http(
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[http_addr, http_addr2],
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config.rpc_cors.as_ref(),
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max_request_size,
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http_max_response_size,
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metrics.clone(),
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gen_rpc_module(deny_unsafe(ws_addr, &config.rpc_methods))?,
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config.tokio_handle.clone(),
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);
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let ws_config = WsConfig {
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max_connections: config.rpc_ws_max_connections,
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max_payload_in_mb: max_request_size,
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max_payload_out_mb: ws_max_response_size,
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max_subs_per_conn: config.rpc_max_subs_per_conn,
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};
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let ws_fut = sc_rpc_server::start_ws(
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[ws_addr, ws_addr2],
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config.rpc_cors.as_ref(),
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ws_config,
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metrics,
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gen_rpc_module(deny_unsafe(http_addr, &config.rpc_methods))?,
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config.tokio_handle.clone(),
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rpc_id_provider,
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);
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match tokio::task::block_in_place(|| {
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config.tokio_handle.block_on(futures::future::try_join(http_fut, ws_fut))
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}) {
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Ok((http, ws)) =>
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Ok(Box::new((waiting::HttpServer(Some(http)), waiting::WsServer(Some(ws))))),
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Err(e) => Err(Error::Application(e)),
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}
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}
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/// Transaction pool adapter.
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pub struct TransactionPoolAdapter<C, P> {
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pool: Arc<P>,
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client: Arc<C>,
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}
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/// Get transactions for propagation.
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///
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/// Function extracted to simplify the test and prevent creating `ServiceFactory`.
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fn transactions_to_propagate<Pool, B, H, E>(pool: &Pool) -> Vec<(H, B::Extrinsic)>
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where
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Pool: TransactionPool<Block = B, Hash = H, Error = E>,
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B: BlockT,
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H: std::hash::Hash + Eq + sp_runtime::traits::Member + sp_runtime::traits::MaybeSerialize,
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E: IntoPoolError + From<sc_transaction_pool_api::error::Error>,
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{
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pool.ready()
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.filter(|t| t.is_propagable())
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.map(|t| {
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let hash = t.hash().clone();
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let ex: B::Extrinsic = t.data().clone();
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(hash, ex)
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})
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.collect()
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}
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impl<B, H, C, Pool, E> sc_network::config::TransactionPool<H, B> for TransactionPoolAdapter<C, Pool>
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where
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C: HeaderBackend<B>
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+ BlockBackend<B>
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+ HeaderMetadata<B, Error = sp_blockchain::Error>
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+ ProofProvider<B>
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+ Send
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+ Sync
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+ 'static,
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Pool: 'static + TransactionPool<Block = B, Hash = H, Error = E>,
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B: BlockT,
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H: std::hash::Hash + Eq + sp_runtime::traits::Member + sp_runtime::traits::MaybeSerialize,
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E: 'static + IntoPoolError + From<sc_transaction_pool_api::error::Error>,
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{
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fn transactions(&self) -> Vec<(H, B::Extrinsic)> {
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transactions_to_propagate(&*self.pool)
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}
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fn hash_of(&self, transaction: &B::Extrinsic) -> H {
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self.pool.hash_of(transaction)
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}
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fn import(&self, transaction: B::Extrinsic) -> TransactionImportFuture {
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let encoded = transaction.encode();
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let uxt = match Decode::decode(&mut &encoded[..]) {
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Ok(uxt) => uxt,
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Err(e) => {
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debug!("Transaction invalid: {:?}", e);
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return Box::pin(futures::future::ready(TransactionImport::Bad))
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},
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};
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let best_block_id = BlockId::hash(self.client.info().best_hash);
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let import_future = self.pool.submit_one(
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&best_block_id,
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sc_transaction_pool_api::TransactionSource::External,
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uxt,
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);
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Box::pin(async move {
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match import_future.await {
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Ok(_) => TransactionImport::NewGood,
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Err(e) => match e.into_pool_error() {
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Ok(sc_transaction_pool_api::error::Error::AlreadyImported(_)) =>
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TransactionImport::KnownGood,
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Ok(e) => {
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debug!("Error adding transaction to the pool: {:?}", e);
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TransactionImport::Bad
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},
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Err(e) => {
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debug!("Error converting pool error: {}", e);
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// it is not bad at least, just some internal node logic error, so peer is
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// innocent.
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TransactionImport::KnownGood
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},
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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_broadcasted(&self, propagations: HashMap<H, Vec<String>>) {
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self.pool.on_broadcasted(propagations)
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}
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fn transaction(&self, hash: &H) -> Option<B::Extrinsic> {
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self.pool.ready_transaction(hash).and_then(
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// Only propagable transactions should be resolved for network service.
|
|
|tx| if tx.is_propagable() { Some(tx.data().clone()) } else { None },
|
|
)
|
|
}
|
|
}
|
|
|
|
fn legacy_cli_parsing(config: &Configuration) -> (Option<usize>, Option<usize>, Option<usize>) {
|
|
let ws_max_response_size = match (
|
|
config.ws_max_out_buffer_capacity,
|
|
config.rpc_max_response_size,
|
|
) {
|
|
(Some(legacy_max), max) => {
|
|
eprintln!("DEPRECATED: `--ws_max_out_buffer_capacity` has been removed; use `rpc-max-response-size or rpc-max-request-size` instead");
|
|
eprintln!("Setting WS `rpc-max-response-size` to `max(ws_max_out_buffer_capacity, rpc_max_response_size)`");
|
|
Some(std::cmp::max(legacy_max, max.unwrap_or(0)))
|
|
},
|
|
(None, Some(m)) => Some(m),
|
|
(None, None) => None,
|
|
};
|
|
|
|
let max_request_size = match (config.rpc_max_payload, config.rpc_max_request_size) {
|
|
(Some(legacy_max), max) => {
|
|
eprintln!("DEPRECATED: `--rpc_max_payload` has been removed use `rpc-max-response-size or rpc-max-request-size` instead");
|
|
eprintln!(
|
|
"Setting `rpc-max-response-size` to `max(rpc_max_payload, rpc_max_request_size)`"
|
|
);
|
|
Some(std::cmp::max(legacy_max, max.unwrap_or(0)))
|
|
},
|
|
(None, Some(max)) => Some(max),
|
|
(None, None) => None,
|
|
};
|
|
|
|
let http_max_response_size = match (config.rpc_max_payload, config.rpc_max_response_size) {
|
|
(Some(legacy_max), max) => {
|
|
eprintln!("DEPRECATED: `--rpc_max_payload` has been removed use `rpc-max-response-size or rpc-max-request-size` instead");
|
|
eprintln!(
|
|
"Setting HTTP `rpc-max-response-size` to `max(rpc_max_payload, rpc_max_response_size)`"
|
|
);
|
|
Some(std::cmp::max(legacy_max, max.unwrap_or(0)))
|
|
},
|
|
(None, Some(max)) => Some(max),
|
|
(None, None) => None,
|
|
};
|
|
|
|
if config.rpc_ipc.is_some() {
|
|
eprintln!("DEPRECATED: `--ipc-path` has no effect anymore IPC support has been removed");
|
|
}
|
|
|
|
(max_request_size, ws_max_response_size, http_max_response_size)
|
|
}
|
|
|
|
#[cfg(test)]
|
|
mod tests {
|
|
use super::*;
|
|
use futures::executor::block_on;
|
|
use sc_transaction_pool::BasicPool;
|
|
use sp_consensus::SelectChain;
|
|
use sp_runtime::traits::BlindCheckable;
|
|
use substrate_test_runtime_client::{
|
|
prelude::*,
|
|
runtime::{Extrinsic, Transfer},
|
|
};
|
|
|
|
#[test]
|
|
fn should_not_propagate_transactions_that_are_marked_as_such() {
|
|
// given
|
|
let (client, longest_chain) = TestClientBuilder::new().build_with_longest_chain();
|
|
let client = Arc::new(client);
|
|
let spawner = sp_core::testing::TaskExecutor::new();
|
|
let pool =
|
|
BasicPool::new_full(Default::default(), true.into(), None, spawner, client.clone());
|
|
let source = sp_runtime::transaction_validity::TransactionSource::External;
|
|
let best = block_on(longest_chain.best_chain()).unwrap();
|
|
let transaction = Transfer {
|
|
amount: 5,
|
|
nonce: 0,
|
|
from: AccountKeyring::Alice.into(),
|
|
to: AccountKeyring::Bob.into(),
|
|
}
|
|
.into_signed_tx();
|
|
block_on(pool.submit_one(&BlockId::hash(best.hash()), source, transaction.clone()))
|
|
.unwrap();
|
|
block_on(pool.submit_one(
|
|
&BlockId::hash(best.hash()),
|
|
source,
|
|
Extrinsic::IncludeData(vec![1]),
|
|
))
|
|
.unwrap();
|
|
assert_eq!(pool.status().ready, 2);
|
|
|
|
// when
|
|
let transactions = transactions_to_propagate(&*pool);
|
|
|
|
// then
|
|
assert_eq!(transactions.len(), 1);
|
|
assert!(transactions[0].1.clone().check().is_ok());
|
|
// this should not panic
|
|
let _ = transactions[0].1.transfer();
|
|
}
|
|
}
|