mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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458 lines
15 KiB
Rust
458 lines
15 KiB
Rust
// Copyright 2019-2021 Parity Technologies (UK) Ltd.
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// This file is part of Parity Bridges Common.
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// Parity Bridges Common is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Parity Bridges Common is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Parity Bridges Common. If not, see <http://www.gnu.org/licenses/>.
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//! On-demand Substrate -> Substrate header finality relay.
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use async_std::sync::{Arc, Mutex};
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use async_trait::async_trait;
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use bp_header_chain::ConsensusLogReader;
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use futures::{select, FutureExt};
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use num_traits::{One, Zero};
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use sp_runtime::traits::Header;
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use finality_relay::{FinalitySyncParams, TargetClient as FinalityTargetClient};
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use relay_substrate_client::{AccountIdOf, AccountKeyPairOf, BlockNumberOf, Chain, Client};
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use relay_utils::{
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metrics::MetricsParams, relay_loop::Client as RelayClient, FailedClient, MaybeConnectionError,
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STALL_TIMEOUT,
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};
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use crate::{
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finality::{
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engine::Engine,
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source::{RequiredHeaderNumberRef, SubstrateFinalitySource},
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target::SubstrateFinalityTarget,
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SubstrateFinalitySyncPipeline, RECENT_FINALITY_PROOFS_LIMIT,
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},
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on_demand::OnDemandRelay,
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TransactionParams,
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};
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/// On-demand Substrate <-> Substrate header finality relay.
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///
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/// This relay may be requested to sync more headers, whenever some other relay (e.g. messages
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/// relay) needs it to continue its regular work. When enough headers are relayed, on-demand stops
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/// syncing headers.
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#[derive(Clone)]
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pub struct OnDemandHeadersRelay<SourceChain: Chain> {
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/// Relay task name.
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relay_task_name: String,
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/// Shared reference to maximal required finalized header number.
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required_header_number: RequiredHeaderNumberRef<SourceChain>,
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}
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impl<SourceChain: Chain> OnDemandHeadersRelay<SourceChain> {
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/// Create new on-demand headers relay.
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pub fn new<P: SubstrateFinalitySyncPipeline<SourceChain = SourceChain>>(
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source_client: Client<P::SourceChain>,
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target_client: Client<P::TargetChain>,
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target_transaction_params: TransactionParams<AccountKeyPairOf<P::TargetChain>>,
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only_mandatory_headers: bool,
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) -> Self
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where
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AccountIdOf<P::TargetChain>:
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From<<AccountKeyPairOf<P::TargetChain> as sp_core::Pair>::Public>,
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{
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let required_header_number = Arc::new(Mutex::new(Zero::zero()));
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let this = OnDemandHeadersRelay {
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relay_task_name: on_demand_headers_relay_name::<P::SourceChain, P::TargetChain>(),
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required_header_number: required_header_number.clone(),
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};
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async_std::task::spawn(async move {
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background_task::<P>(
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source_client,
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target_client,
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target_transaction_params,
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only_mandatory_headers,
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required_header_number,
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)
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.await;
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});
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this
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}
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}
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#[async_trait]
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impl<SourceChain: Chain> OnDemandRelay<BlockNumberOf<SourceChain>>
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for OnDemandHeadersRelay<SourceChain>
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{
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async fn require_more_headers(&self, required_header: BlockNumberOf<SourceChain>) {
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let mut required_header_number = self.required_header_number.lock().await;
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if required_header > *required_header_number {
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log::trace!(
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target: "bridge",
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"[{}] More {} headers required. Going to sync up to the {}",
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self.relay_task_name,
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SourceChain::NAME,
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required_header,
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);
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*required_header_number = required_header;
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}
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}
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}
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/// Background task that is responsible for starting headers relay.
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async fn background_task<P: SubstrateFinalitySyncPipeline>(
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source_client: Client<P::SourceChain>,
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target_client: Client<P::TargetChain>,
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target_transaction_params: TransactionParams<AccountKeyPairOf<P::TargetChain>>,
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only_mandatory_headers: bool,
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required_header_number: RequiredHeaderNumberRef<P::SourceChain>,
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) where
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AccountIdOf<P::TargetChain>: From<<AccountKeyPairOf<P::TargetChain> as sp_core::Pair>::Public>,
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{
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let relay_task_name = on_demand_headers_relay_name::<P::SourceChain, P::TargetChain>();
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let target_transactions_mortality = target_transaction_params.mortality;
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let mut finality_source = SubstrateFinalitySource::<P>::new(
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source_client.clone(),
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Some(required_header_number.clone()),
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);
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let mut finality_target =
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SubstrateFinalityTarget::new(target_client.clone(), target_transaction_params);
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let mut latest_non_mandatory_at_source = Zero::zero();
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let mut restart_relay = true;
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let finality_relay_task = futures::future::Fuse::terminated();
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futures::pin_mut!(finality_relay_task);
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loop {
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select! {
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_ = async_std::task::sleep(P::TargetChain::AVERAGE_BLOCK_INTERVAL).fuse() => {},
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_ = finality_relay_task => {
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// this should never happen in practice given the current code
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restart_relay = true;
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},
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}
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// read best finalized source header number from source
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let best_finalized_source_header_at_source =
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best_finalized_source_header_at_source(&finality_source, &relay_task_name).await;
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if matches!(best_finalized_source_header_at_source, Err(ref e) if e.is_connection_error()) {
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relay_utils::relay_loop::reconnect_failed_client(
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FailedClient::Source,
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relay_utils::relay_loop::RECONNECT_DELAY,
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&mut finality_source,
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&mut finality_target,
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)
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.await;
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continue
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}
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// read best finalized source header number from target
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let best_finalized_source_header_at_target =
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best_finalized_source_header_at_target::<P>(&finality_target, &relay_task_name).await;
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if matches!(best_finalized_source_header_at_target, Err(ref e) if e.is_connection_error()) {
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relay_utils::relay_loop::reconnect_failed_client(
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FailedClient::Target,
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relay_utils::relay_loop::RECONNECT_DELAY,
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&mut finality_source,
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&mut finality_target,
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)
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.await;
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continue
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}
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// submit mandatory header if some headers are missing
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let best_finalized_source_header_at_source_fmt =
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format!("{best_finalized_source_header_at_source:?}");
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let best_finalized_source_header_at_target_fmt =
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format!("{best_finalized_source_header_at_target:?}");
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let required_header_number_value = *required_header_number.lock().await;
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let mandatory_scan_range = mandatory_headers_scan_range::<P::SourceChain>(
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best_finalized_source_header_at_source.ok(),
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best_finalized_source_header_at_target.ok(),
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required_header_number_value,
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)
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.await;
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log::trace!(
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target: "bridge",
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"[{}] Mandatory headers scan range: ({:?}, {:?}, {:?}) -> {:?}",
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relay_task_name,
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required_header_number_value,
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best_finalized_source_header_at_source_fmt,
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best_finalized_source_header_at_target_fmt,
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mandatory_scan_range,
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);
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if let Some(mandatory_scan_range) = mandatory_scan_range {
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let relay_mandatory_header_result = relay_mandatory_header_from_range(
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&finality_source,
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&required_header_number,
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best_finalized_source_header_at_target_fmt,
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(
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std::cmp::max(mandatory_scan_range.0, latest_non_mandatory_at_source),
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mandatory_scan_range.1,
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),
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&relay_task_name,
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)
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.await;
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match relay_mandatory_header_result {
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Ok(true) => (),
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Ok(false) => {
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// there are no (or we don't need to relay them) mandatory headers in the range
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// => to avoid scanning the same headers over and over again, remember that
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latest_non_mandatory_at_source = mandatory_scan_range.1;
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log::trace!(
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target: "bridge",
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"[{}] No mandatory {} headers in the range {:?}",
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relay_task_name,
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P::SourceChain::NAME,
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mandatory_scan_range,
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);
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},
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Err(e) => {
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log::warn!(
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target: "bridge",
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"[{}] Failed to scan mandatory {} headers range ({:?}): {:?}",
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relay_task_name,
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P::SourceChain::NAME,
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mandatory_scan_range,
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e,
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);
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if e.is_connection_error() {
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relay_utils::relay_loop::reconnect_failed_client(
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FailedClient::Source,
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relay_utils::relay_loop::RECONNECT_DELAY,
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&mut finality_source,
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&mut finality_target,
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)
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.await;
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continue
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}
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},
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}
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}
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// start/restart relay
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if restart_relay {
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let stall_timeout = relay_substrate_client::transaction_stall_timeout(
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target_transactions_mortality,
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P::TargetChain::AVERAGE_BLOCK_INTERVAL,
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STALL_TIMEOUT,
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);
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log::info!(
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target: "bridge",
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"[{}] Starting on-demand headers relay task\n\t\
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Only mandatory headers: {}\n\t\
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Tx mortality: {:?} (~{}m)\n\t\
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Stall timeout: {:?}",
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relay_task_name,
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only_mandatory_headers,
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target_transactions_mortality,
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stall_timeout.as_secs_f64() / 60.0f64,
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stall_timeout,
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);
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finality_relay_task.set(
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finality_relay::run(
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finality_source.clone(),
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finality_target.clone(),
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FinalitySyncParams {
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tick: std::cmp::max(
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P::SourceChain::AVERAGE_BLOCK_INTERVAL,
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P::TargetChain::AVERAGE_BLOCK_INTERVAL,
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),
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recent_finality_proofs_limit: RECENT_FINALITY_PROOFS_LIMIT,
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stall_timeout,
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only_mandatory_headers,
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},
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MetricsParams::disabled(),
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futures::future::pending(),
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)
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.fuse(),
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);
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restart_relay = false;
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}
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}
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}
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/// Returns `Some()` with inclusive range of headers which must be scanned for mandatory headers
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/// and the first of such headers must be submitted to the target node.
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async fn mandatory_headers_scan_range<C: Chain>(
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best_finalized_source_header_at_source: Option<C::BlockNumber>,
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best_finalized_source_header_at_target: Option<C::BlockNumber>,
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required_header_number: BlockNumberOf<C>,
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) -> Option<(C::BlockNumber, C::BlockNumber)> {
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// if we have been unable to read header number from the target, then let's assume
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// that it is the same as required header number. Otherwise we risk submitting
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// unneeded transactions
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let best_finalized_source_header_at_target =
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best_finalized_source_header_at_target.unwrap_or(required_header_number);
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// if we have been unable to read header number from the source, then let's assume
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// that it is the same as at the target
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let best_finalized_source_header_at_source =
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best_finalized_source_header_at_source.unwrap_or(best_finalized_source_header_at_target);
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// if relay is already asked to sync more headers than we have at source, don't do anything yet
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if required_header_number >= best_finalized_source_header_at_source {
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return None
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}
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Some((
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best_finalized_source_header_at_target + One::one(),
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best_finalized_source_header_at_source,
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))
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}
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/// Try to find mandatory header in the inclusive headers range and, if one is found, ask to relay
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/// it.
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///
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/// Returns `true` if header was found and (asked to be) relayed and `false` otherwise.
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async fn relay_mandatory_header_from_range<P: SubstrateFinalitySyncPipeline>(
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finality_source: &SubstrateFinalitySource<P>,
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required_header_number: &RequiredHeaderNumberRef<P::SourceChain>,
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best_finalized_source_header_at_target: String,
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range: (BlockNumberOf<P::SourceChain>, BlockNumberOf<P::SourceChain>),
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relay_task_name: &str,
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) -> Result<bool, relay_substrate_client::Error> {
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// search for mandatory header first
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let mandatory_source_header_number =
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find_mandatory_header_in_range(finality_source, range).await?;
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// if there are no mandatory headers - we have nothing to do
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let mandatory_source_header_number = match mandatory_source_header_number {
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Some(mandatory_source_header_number) => mandatory_source_header_number,
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None => return Ok(false),
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};
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// `find_mandatory_header` call may take a while => check if `required_header_number` is still
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// less than our `mandatory_source_header_number` before logging anything
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let mut required_header_number = required_header_number.lock().await;
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if *required_header_number >= mandatory_source_header_number {
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return Ok(false)
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}
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log::trace!(
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target: "bridge",
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"[{}] Too many {} headers missing at target ({} vs {}). Going to sync up to the mandatory {}",
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relay_task_name,
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P::SourceChain::NAME,
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best_finalized_source_header_at_target,
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range.1,
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mandatory_source_header_number,
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);
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*required_header_number = mandatory_source_header_number;
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Ok(true)
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}
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/// Read best finalized source block number from source client.
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///
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/// Returns `None` if we have failed to read the number.
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async fn best_finalized_source_header_at_source<P: SubstrateFinalitySyncPipeline>(
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finality_source: &SubstrateFinalitySource<P>,
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relay_task_name: &str,
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) -> Result<BlockNumberOf<P::SourceChain>, relay_substrate_client::Error> {
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finality_source.on_chain_best_finalized_block_number().await.map_err(|error| {
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log::error!(
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target: "bridge",
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"[{}] Failed to read best finalized source header from source: {:?}",
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relay_task_name,
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error,
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);
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error
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})
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}
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/// Read best finalized source block number from target client.
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///
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/// Returns `None` if we have failed to read the number.
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async fn best_finalized_source_header_at_target<P: SubstrateFinalitySyncPipeline>(
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finality_target: &SubstrateFinalityTarget<P>,
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relay_task_name: &str,
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) -> Result<BlockNumberOf<P::SourceChain>, <SubstrateFinalityTarget<P> as RelayClient>::Error>
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where
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AccountIdOf<P::TargetChain>: From<<AccountKeyPairOf<P::TargetChain> as sp_core::Pair>::Public>,
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{
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finality_target
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.best_finalized_source_block_id()
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.await
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.map_err(|error| {
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log::error!(
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target: "bridge",
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"[{}] Failed to read best finalized source header from target: {:?}",
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relay_task_name,
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error,
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);
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error
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})
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.map(|id| id.0)
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}
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/// Read first mandatory header in given inclusive range.
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///
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/// Returns `Ok(None)` if there were no mandatory headers in the range.
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async fn find_mandatory_header_in_range<P: SubstrateFinalitySyncPipeline>(
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finality_source: &SubstrateFinalitySource<P>,
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range: (BlockNumberOf<P::SourceChain>, BlockNumberOf<P::SourceChain>),
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) -> Result<Option<BlockNumberOf<P::SourceChain>>, relay_substrate_client::Error> {
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let mut current = range.0;
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while current <= range.1 {
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let header = finality_source.client().header_by_number(current).await?;
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if <P::FinalityEngine as Engine<P::SourceChain>>::ConsensusLogReader::schedules_authorities_change(
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header.digest(),
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) {
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return Ok(Some(current))
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}
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current += One::one();
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}
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Ok(None)
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}
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|
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/// On-demand headers relay task name.
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fn on_demand_headers_relay_name<SourceChain: Chain, TargetChain: Chain>() -> String {
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format!("{}-to-{}-on-demand-headers", SourceChain::NAME, TargetChain::NAME)
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}
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|
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#[cfg(test)]
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mod tests {
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use super::*;
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|
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type TestChain = relay_rococo_client::Rococo;
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|
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const AT_SOURCE: Option<bp_rococo::BlockNumber> = Some(10);
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const AT_TARGET: Option<bp_rococo::BlockNumber> = Some(1);
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|
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#[async_std::test]
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async fn mandatory_headers_scan_range_selects_range_if_some_headers_are_missing() {
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assert_eq!(
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mandatory_headers_scan_range::<TestChain>(AT_SOURCE, AT_TARGET, 0,).await,
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Some((AT_TARGET.unwrap() + 1, AT_SOURCE.unwrap())),
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);
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}
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|
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#[async_std::test]
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async fn mandatory_headers_scan_range_selects_nothing_if_already_queued() {
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assert_eq!(
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mandatory_headers_scan_range::<TestChain>(AT_SOURCE, AT_TARGET, AT_SOURCE.unwrap(),)
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.await,
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None,
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);
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}
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}
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