mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-06-13 10:31:04 +00:00
9b254c3075
* arbitrary application logic in CLI * collation work * split up exit and work futures in application * collation node workflow * typo * indentation fix * doc grumbles * rename Application to Worker * refactor Worker::exit to exit_only
268 lines
8.4 KiB
Rust
268 lines
8.4 KiB
Rust
// Copyright 2017 Parity Technologies (UK) Ltd.
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// This file is part of Polkadot.
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// Polkadot 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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// Polkadot 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 Polkadot. If not, see <http://www.gnu.org/licenses/>.
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//! Polkadot service. Starts a thread that spins the network, the client and the transaction pool.
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//! Manages communication between them.
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extern crate futures;
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extern crate ed25519;
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extern crate clap;
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extern crate exit_future;
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extern crate serde;
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extern crate serde_json;
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extern crate polkadot_primitives;
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extern crate polkadot_runtime;
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extern crate polkadot_executor;
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extern crate polkadot_api;
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extern crate polkadot_consensus as consensus;
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extern crate polkadot_transaction_pool as transaction_pool;
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extern crate polkadot_network;
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extern crate substrate_keystore as keystore;
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extern crate substrate_primitives as primitives;
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extern crate substrate_runtime_primitives as runtime_primitives;
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extern crate substrate_network as network;
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extern crate substrate_codec as codec;
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extern crate substrate_executor;
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extern crate substrate_state_machine as state_machine;
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extern crate substrate_client as client;
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extern crate substrate_client_db as client_db;
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extern crate tokio;
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#[macro_use]
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extern crate substrate_telemetry;
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#[macro_use]
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extern crate error_chain;
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#[macro_use]
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extern crate slog; // needed until we can reexport `slog_info` from `substrate_telemetry`
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#[macro_use]
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extern crate log;
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#[macro_use]
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extern crate serde_derive;
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#[macro_use]
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extern crate hex_literal;
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mod components;
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mod error;
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mod config;
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mod chain_spec;
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use std::sync::Arc;
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use futures::prelude::*;
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use transaction_pool::TransactionPool;
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use keystore::Store as Keystore;
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use polkadot_api::PolkadotApi;
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use polkadot_primitives::{Block, BlockId, Hash};
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use client::{Client, BlockchainEvents};
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use network::ManageNetwork;
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use exit_future::Signal;
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use polkadot_network::{NetworkService, PolkadotProtocol};
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use tokio::runtime::TaskExecutor;
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pub use self::error::{ErrorKind, Error};
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pub use self::components::{Components, FullComponents, LightComponents};
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pub use config::{Configuration, Role, PruningMode};
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pub use chain_spec::ChainSpec;
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/// Polkadot service.
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pub struct Service<Components: components::Components> {
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client: Arc<Client<Components::Backend, Components::Executor, Block>>,
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api: Arc<Components::Api>,
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network: Arc<NetworkService>,
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transaction_pool: Arc<TransactionPool<Components::Api>>,
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signal: Option<Signal>,
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_consensus: Option<consensus::Service>,
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}
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/// Creates light client and register protocol with the network service
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pub fn new_light(config: Configuration, executor: TaskExecutor) -> Result<Service<components::LightComponents>, error::Error> {
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Service::new(components::LightComponents, config, executor)
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}
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/// Creates full client and register protocol with the network service
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pub fn new_full(config: Configuration, executor: TaskExecutor) -> Result<Service<components::FullComponents>, error::Error> {
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let is_validator = (config.roles & Role::AUTHORITY) == Role::AUTHORITY;
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Service::new(components::FullComponents { is_validator }, config, executor)
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}
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/// Creates bare client without any networking.
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pub fn new_client(config: Configuration) -> Result<Arc<Client<
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<components::FullComponents as Components>::Backend,
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<components::FullComponents as Components>::Executor,
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Block>>,
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error::Error>
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{
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let db_settings = client_db::DatabaseSettings {
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cache_size: None,
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path: config.database_path.into(),
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pruning: config.pruning,
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};
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let executor = polkadot_executor::Executor::new();
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let is_validator = (config.roles & Role::AUTHORITY) == Role::AUTHORITY;
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let components = components::FullComponents { is_validator };
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let (client, _) = components.build_client(db_settings, executor, &config.chain_spec)?;
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Ok(client)
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}
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impl<Components> Service<Components>
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where
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Components: components::Components,
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client::error::Error: From<<<<Components as components::Components>::Backend as client::backend::Backend<Block>>::State as state_machine::Backend>::Error>,
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{
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/// Creates and register protocol with the network service
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fn new(components: Components, config: Configuration, task_executor: TaskExecutor) -> Result<Self, error::Error> {
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let (signal, exit) = ::exit_future::signal();
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// Create client
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let executor = polkadot_executor::Executor::new();
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let mut keystore = Keystore::open(config.keystore_path.into())?;
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for seed in &config.keys {
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keystore.generate_from_seed(seed)?;
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}
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if keystore.contents()?.is_empty() {
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let key = keystore.generate("")?;
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info!("Generated a new keypair: {:?}", key.public());
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}
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let db_settings = client_db::DatabaseSettings {
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cache_size: None,
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path: config.database_path.into(),
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pruning: config.pruning,
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};
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let (client, on_demand) = components.build_client(db_settings, executor, &config.chain_spec)?;
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let api = components.build_api(client.clone());
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let best_header = client.best_block_header()?;
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info!("Best block: #{}", best_header.number);
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telemetry!("node.start"; "height" => best_header.number, "best" => ?best_header.hash());
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let transaction_pool = Arc::new(TransactionPool::new(config.transaction_pool, api.clone()));
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let transaction_pool_adapter = components.build_network_tx_pool(client.clone(), transaction_pool.clone());
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let network_params = network::Params {
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config: network::ProtocolConfig {
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roles: config.roles,
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},
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network_config: config.network,
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chain: client.clone(),
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on_demand: on_demand.clone().map(|d| d as Arc<network::OnDemandService<Block>>),
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transaction_pool: transaction_pool_adapter,
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specialization: PolkadotProtocol::new(),
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};
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let network = network::Service::new(network_params, ::polkadot_network::DOT_PROTOCOL_ID)?;
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on_demand.map(|on_demand| on_demand.set_service_link(Arc::downgrade(&network)));
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network.start_network();
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{
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// block notifications
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let network = network.clone();
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let txpool = transaction_pool.clone();
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let events = client.import_notification_stream()
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.for_each(move |notification| {
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network.on_block_imported(notification.hash, ¬ification.header);
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prune_imported(&*txpool, notification.hash);
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Ok(())
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})
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.select(exit.clone())
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.then(|_| Ok(()));
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task_executor.spawn(events);
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}
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{
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// transaction notifications
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let network = network.clone();
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let events = transaction_pool.import_notification_stream()
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// TODO [ToDr] Consider throttling?
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.for_each(move |_| {
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network.trigger_repropagate();
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Ok(())
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})
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.select(exit.clone())
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.then(|_| Ok(()));
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task_executor.spawn(events);
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}
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// Spin consensus service if configured
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let consensus_service = components.build_consensus(
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client.clone(),
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network.clone(),
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transaction_pool.clone(),
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&keystore,
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task_executor,
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)?;
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Ok(Service {
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client: client,
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network: network,
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transaction_pool: transaction_pool,
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signal: Some(signal),
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api: api,
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_consensus: consensus_service,
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})
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}
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/// Get shared client instance.
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pub fn client(&self) -> Arc<Client<Components::Backend, Components::Executor, Block>> {
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self.client.clone()
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}
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/// Get shared polkadot-api instance. usually the same as the client.
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pub fn api(&self) -> Arc<Components::Api> {
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self.api.clone()
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}
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/// Get shared network instance.
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pub fn network(&self) -> Arc<NetworkService> {
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self.network.clone()
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}
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/// Get shared transaction pool instance.
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pub fn transaction_pool(&self) -> Arc<TransactionPool<Components::Api>> {
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self.transaction_pool.clone()
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}
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}
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/// Produce a task which prunes any finalized transactions from the pool.
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pub fn prune_imported<A>(pool: &TransactionPool<A>, hash: Hash)
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where A: PolkadotApi,
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{
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let block = BlockId::hash(hash);
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if let Err(e) = pool.cull(block) {
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warn!("Culling error: {:?}", e);
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}
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if let Err(e) = pool.retry_verification(block) {
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warn!("Re-verifying error: {:?}", e);
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}
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}
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impl<Components> Drop for Service<Components> where Components: components::Components {
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fn drop(&mut self) {
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debug!(target: "service", "Polkadot service shutdown");
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self.network.stop_network();
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if let Some(signal) = self.signal.take() {
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signal.fire();
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}
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}
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}
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