mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
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d6f68bb906
Runtime release 1.2 includes bumping of the ParachainHost APIs up to v10, so let's move all the released APIs out of vstaging folder, this PR does not include any logic changes only renaming of the modules and some moving around. Signed-off-by: Alexandru Gheorghe <alexandru.gheorghe@parity.io>
254 lines
7.3 KiB
Rust
254 lines
7.3 KiB
Rust
// Copyright (C) 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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//! PoV requester takes care of requesting PoVs from validators of a backing group.
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use futures::{channel::oneshot, future::BoxFuture, FutureExt};
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use polkadot_node_network_protocol::request_response::{
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outgoing::{RequestError, Requests},
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v1::{PoVFetchingRequest, PoVFetchingResponse},
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OutgoingRequest, Recipient,
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};
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use polkadot_node_primitives::PoV;
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use polkadot_node_subsystem::{
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jaeger,
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messages::{IfDisconnected, NetworkBridgeTxMessage},
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overseer,
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};
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use polkadot_node_subsystem_util::runtime::RuntimeInfo;
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use polkadot_primitives::{
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AuthorityDiscoveryId, CandidateHash, Hash, Id as ParaId, ValidatorIndex,
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};
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use crate::{
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error::{Error, FatalError, JfyiError, Result},
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metrics::{FAILED, NOT_FOUND, SUCCEEDED},
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Metrics, LOG_TARGET,
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};
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/// Start background worker for taking care of fetching the requested `PoV` from the network.
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#[overseer::contextbounds(AvailabilityDistribution, prefix = self::overseer)]
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pub async fn fetch_pov<Context>(
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ctx: &mut Context,
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runtime: &mut RuntimeInfo,
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parent: Hash,
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from_validator: ValidatorIndex,
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para_id: ParaId,
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candidate_hash: CandidateHash,
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pov_hash: Hash,
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tx: oneshot::Sender<PoV>,
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metrics: Metrics,
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span: &jaeger::Span,
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) -> Result<()> {
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let _span = span
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.child("fetch-pov")
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.with_trace_id(candidate_hash)
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.with_validator_index(from_validator)
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.with_candidate(candidate_hash)
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.with_para_id(para_id)
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.with_relay_parent(parent)
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.with_string_tag("pov-hash", format!("{:?}", pov_hash))
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.with_stage(jaeger::Stage::AvailabilityDistribution);
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let info = &runtime.get_session_info(ctx.sender(), parent).await?.session_info;
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let authority_id = info
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.discovery_keys
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.get(from_validator.0 as usize)
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.ok_or(JfyiError::InvalidValidatorIndex)?
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.clone();
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let (req, pending_response) = OutgoingRequest::new(
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Recipient::Authority(authority_id.clone()),
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PoVFetchingRequest { candidate_hash },
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);
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let full_req = Requests::PoVFetchingV1(req);
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ctx.send_message(NetworkBridgeTxMessage::SendRequests(
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vec![full_req],
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IfDisconnected::ImmediateError,
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))
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.await;
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ctx.spawn(
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"pov-fetcher",
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fetch_pov_job(para_id, pov_hash, authority_id, pending_response.boxed(), tx, metrics)
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.boxed(),
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)
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.map_err(|e| FatalError::SpawnTask(e))?;
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Ok(())
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}
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/// Future to be spawned for taking care of handling reception and sending of PoV.
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async fn fetch_pov_job(
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para_id: ParaId,
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pov_hash: Hash,
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authority_id: AuthorityDiscoveryId,
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pending_response: BoxFuture<'static, std::result::Result<PoVFetchingResponse, RequestError>>,
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tx: oneshot::Sender<PoV>,
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metrics: Metrics,
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) {
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if let Err(err) = do_fetch_pov(pov_hash, pending_response, tx, metrics).await {
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gum::warn!(target: LOG_TARGET, ?err, ?para_id, ?pov_hash, ?authority_id, "fetch_pov_job");
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}
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}
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/// Do the actual work of waiting for the response.
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async fn do_fetch_pov(
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pov_hash: Hash,
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pending_response: BoxFuture<'static, std::result::Result<PoVFetchingResponse, RequestError>>,
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tx: oneshot::Sender<PoV>,
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metrics: Metrics,
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) -> Result<()> {
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let response = pending_response.await.map_err(Error::FetchPoV);
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let pov = match response {
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Ok(PoVFetchingResponse::PoV(pov)) => pov,
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Ok(PoVFetchingResponse::NoSuchPoV) => {
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metrics.on_fetched_pov(NOT_FOUND);
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return Err(Error::NoSuchPoV)
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},
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Err(err) => {
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metrics.on_fetched_pov(FAILED);
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return Err(err)
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},
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};
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if pov.hash() == pov_hash {
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metrics.on_fetched_pov(SUCCEEDED);
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tx.send(pov).map_err(|_| Error::SendResponse)
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} else {
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metrics.on_fetched_pov(FAILED);
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Err(Error::UnexpectedPoV)
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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 assert_matches::assert_matches;
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use futures::{executor, future};
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use parity_scale_codec::Encode;
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use sc_network::ProtocolName;
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use sp_core::testing::TaskExecutor;
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use polkadot_node_primitives::BlockData;
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use polkadot_node_subsystem::messages::{
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AllMessages, AvailabilityDistributionMessage, RuntimeApiMessage, RuntimeApiRequest,
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};
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use polkadot_node_subsystem_test_helpers as test_helpers;
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use polkadot_primitives::{CandidateHash, ExecutorParams, Hash, NodeFeatures, ValidatorIndex};
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use test_helpers::mock::make_ferdie_keystore;
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use super::*;
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use crate::{tests::mock::make_session_info, LOG_TARGET};
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#[test]
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fn rejects_invalid_pov() {
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sp_tracing::try_init_simple();
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let pov = PoV { block_data: BlockData(vec![1, 2, 3, 4, 5, 6]) };
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test_run(Hash::default(), pov);
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}
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#[test]
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fn accepts_valid_pov() {
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sp_tracing::try_init_simple();
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let pov = PoV { block_data: BlockData(vec![1, 2, 3, 4, 5, 6]) };
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test_run(pov.hash(), pov);
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}
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fn test_run(pov_hash: Hash, pov: PoV) {
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let pool = TaskExecutor::new();
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let (mut context, mut virtual_overseer) = test_helpers::make_subsystem_context::<
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AvailabilityDistributionMessage,
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TaskExecutor,
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>(pool.clone());
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let keystore = make_ferdie_keystore();
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let mut runtime = polkadot_node_subsystem_util::runtime::RuntimeInfo::new(Some(keystore));
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let (tx, rx) = oneshot::channel();
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let testee = async {
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fetch_pov(
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&mut context,
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&mut runtime,
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Hash::default(),
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ValidatorIndex(0),
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ParaId::default(),
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CandidateHash::default(),
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pov_hash,
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tx,
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Metrics::new_dummy(),
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&jaeger::Span::Disabled,
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)
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.await
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.expect("Should succeed");
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};
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let tester = async move {
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loop {
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match virtual_overseer.recv().await {
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AllMessages::RuntimeApi(RuntimeApiMessage::Request(
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_,
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RuntimeApiRequest::SessionIndexForChild(tx),
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)) => {
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tx.send(Ok(0)).unwrap();
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},
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AllMessages::RuntimeApi(RuntimeApiMessage::Request(
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_,
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RuntimeApiRequest::SessionInfo(_, tx),
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)) => {
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tx.send(Ok(Some(make_session_info()))).unwrap();
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},
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AllMessages::RuntimeApi(RuntimeApiMessage::Request(
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_,
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RuntimeApiRequest::SessionExecutorParams(_, tx),
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)) => {
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tx.send(Ok(Some(ExecutorParams::default()))).unwrap();
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},
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AllMessages::RuntimeApi(RuntimeApiMessage::Request(
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_,
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RuntimeApiRequest::NodeFeatures(_, si_tx),
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)) => {
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si_tx.send(Ok(NodeFeatures::EMPTY)).unwrap();
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},
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AllMessages::NetworkBridgeTx(NetworkBridgeTxMessage::SendRequests(
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mut reqs,
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_,
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)) => {
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let req = assert_matches!(
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reqs.pop(),
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Some(Requests::PoVFetchingV1(outgoing)) => {outgoing}
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);
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req.pending_response
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.send(Ok((
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PoVFetchingResponse::PoV(pov.clone()).encode(),
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ProtocolName::from(""),
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)))
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.unwrap();
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break
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},
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msg => gum::debug!(target: LOG_TARGET, msg = ?msg, "Received msg"),
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}
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}
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if pov.hash() == pov_hash {
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assert_eq!(rx.await, Ok(pov));
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} else {
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assert_eq!(rx.await, Err(oneshot::Canceled));
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}
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};
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futures::pin_mut!(testee);
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futures::pin_mut!(tester);
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executor::block_on(future::join(testee, tester));
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}
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}
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