b6d35f6faf
Updated 4763 files with dual copyright: - Parity Technologies (UK) Ltd. - Dijital Kurdistan Tech Institute
201 lines
5.9 KiB
Rust
201 lines
5.9 KiB
Rust
// Copyright (C) Parity Technologies (UK) Ltd. and Dijital Kurdistan Tech Institute
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// This file is part of Pezkuwi.
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// Pezkuwi 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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// Pezkuwi 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 Pezkuwi. If not, see <http://www.gnu.org/licenses/>.
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use futures::{future::Either, FutureExt, StreamExt, TryFutureExt};
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use pezsp_keystore::KeystorePtr;
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use pezkuwi_node_network_protocol::request_response::{
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v1, v2, IncomingRequestReceiver, ReqProtocolNames,
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};
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use pezkuwi_node_subsystem::{
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messages::AvailabilityDistributionMessage, overseer, FromOrchestra, OverseerSignal,
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SpawnedSubsystem, SubsystemError,
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};
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/// Error and [`Result`] type for this subsystem.
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mod error;
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use error::{log_error, FatalError, Result};
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use pezkuwi_node_subsystem_util::runtime::RuntimeInfo;
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/// `Requester` taking care of requesting chunks for candidates pending availability.
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mod requester;
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use requester::Requester;
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/// Handing requests for PoVs during backing.
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mod pov_requester;
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/// Responding to erasure chunk requests:
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mod responder;
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use responder::{run_chunk_receivers, run_pov_receiver};
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mod metrics;
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/// Prometheus `Metrics` for availability distribution.
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pub use metrics::Metrics;
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#[cfg(test)]
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mod tests;
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const LOG_TARGET: &'static str = "teyrchain::availability-distribution";
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/// The availability distribution subsystem.
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pub struct AvailabilityDistributionSubsystem {
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/// Easy and efficient runtime access for this subsystem.
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runtime: RuntimeInfo,
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/// Receivers to receive messages from.
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recvs: IncomingRequestReceivers,
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/// Mapping of the req-response protocols to the full protocol names.
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req_protocol_names: ReqProtocolNames,
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/// Prometheus metrics.
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metrics: Metrics,
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}
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/// Receivers to be passed into availability distribution.
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pub struct IncomingRequestReceivers {
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/// Receiver for incoming PoV requests.
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pub pov_req_receiver: IncomingRequestReceiver<v1::PoVFetchingRequest>,
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/// Receiver for incoming v1 availability chunk requests.
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pub chunk_req_v1_receiver: IncomingRequestReceiver<v1::ChunkFetchingRequest>,
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/// Receiver for incoming v2 availability chunk requests.
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pub chunk_req_v2_receiver: IncomingRequestReceiver<v2::ChunkFetchingRequest>,
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}
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#[overseer::subsystem(AvailabilityDistribution, error=SubsystemError, prefix=self::overseer)]
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impl<Context> AvailabilityDistributionSubsystem {
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fn start(self, ctx: Context) -> SpawnedSubsystem {
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let future = self
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.run(ctx)
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.map_err(|e| SubsystemError::with_origin("availability-distribution", e))
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.boxed();
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SpawnedSubsystem { name: "availability-distribution-subsystem", future }
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}
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}
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#[overseer::contextbounds(AvailabilityDistribution, prefix = self::overseer)]
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impl AvailabilityDistributionSubsystem {
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/// Create a new instance of the availability distribution.
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pub fn new(
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keystore: KeystorePtr,
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recvs: IncomingRequestReceivers,
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req_protocol_names: ReqProtocolNames,
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metrics: Metrics,
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) -> Self {
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let runtime = RuntimeInfo::new(Some(keystore));
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Self { runtime, recvs, req_protocol_names, metrics }
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}
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/// Start processing work as passed on from the Overseer.
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async fn run<Context>(self, mut ctx: Context) -> std::result::Result<(), FatalError> {
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let Self { mut runtime, recvs, metrics, req_protocol_names } = self;
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let IncomingRequestReceivers {
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pov_req_receiver,
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chunk_req_v1_receiver,
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chunk_req_v2_receiver,
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} = recvs;
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let mut requester = Requester::new(req_protocol_names, metrics.clone()).fuse();
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let mut warn_freq = gum::Freq::new();
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{
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let sender = ctx.sender().clone();
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ctx.spawn(
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"pov-receiver",
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run_pov_receiver(sender.clone(), pov_req_receiver, metrics.clone()).boxed(),
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)
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.map_err(FatalError::SpawnTask)?;
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ctx.spawn(
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"chunk-receiver",
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run_chunk_receivers(
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sender,
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chunk_req_v1_receiver,
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chunk_req_v2_receiver,
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metrics.clone(),
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)
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.boxed(),
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)
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.map_err(FatalError::SpawnTask)?;
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}
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loop {
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let action = {
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let mut subsystem_next = ctx.recv().fuse();
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futures::select! {
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subsystem_msg = subsystem_next => Either::Left(subsystem_msg),
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from_task = requester.next() => Either::Right(from_task),
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}
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};
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// Handle task messages sending:
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let message = match action {
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Either::Left(subsystem_msg) => {
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subsystem_msg.map_err(|e| FatalError::IncomingMessageChannel(e))?
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},
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Either::Right(from_task) => {
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let from_task = from_task.ok_or(FatalError::RequesterExhausted)?;
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ctx.send_message(from_task).await;
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continue;
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},
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};
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match message {
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FromOrchestra::Signal(OverseerSignal::ActiveLeaves(update)) => {
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log_error(
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requester
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.get_mut()
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.update_fetching_heads(&mut ctx, &mut runtime, update)
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.await,
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"Error in Requester::update_fetching_heads",
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&mut warn_freq,
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)?;
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},
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FromOrchestra::Signal(OverseerSignal::BlockFinalized(_hash, _finalized_number)) => {
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},
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FromOrchestra::Signal(OverseerSignal::Conclude) => return Ok(()),
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FromOrchestra::Communication {
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msg:
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AvailabilityDistributionMessage::FetchPoV {
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relay_parent,
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from_validator,
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para_id,
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candidate_hash,
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pov_hash,
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tx,
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},
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} => {
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log_error(
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pov_requester::fetch_pov(
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&mut ctx,
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&mut runtime,
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relay_parent,
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from_validator,
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para_id,
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candidate_hash,
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pov_hash,
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tx,
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metrics.clone(),
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)
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.await,
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"pov_requester::fetch_pov",
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&mut warn_freq,
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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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