Files
pezkuwi-subxt/polkadot/node/overseer/examples/minimal-example.rs
T
Robert Habermeier 57038b2e46 Remove real-overseer 🎉 (#2834)
* remove real-overseer

* overseer: only activate leaves which support parachains

* integrate HeadSupportsParachains into service

* remove unneeded line
2021-04-08 20:24:06 +02:00

175 lines
4.1 KiB
Rust

// Copyright 2020 Parity Technologies (UK) Ltd.
// This file is part of Polkadot.
// Polkadot is free software: you can redistribute it and/or modify
// it under the terms of the GNU General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
// Polkadot is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
// You should have received a copy of the GNU General Public License
// along with Polkadot. If not, see <http://www.gnu.org/licenses/>.
//! Shows a basic usage of the `Overseer`:
//! * Spawning subsystems and subsystem child jobs
//! * Establishing message passing
use std::time::Duration;
use futures::{
channel::oneshot,
pending, pin_mut, select, stream,
FutureExt, StreamExt,
};
use futures_timer::Delay;
use polkadot_node_primitives::{PoV, BlockData};
use polkadot_primitives::v1::Hash;
use polkadot_overseer::{Overseer, HeadSupportsParachains, AllSubsystems};
use polkadot_subsystem::{Subsystem, SubsystemContext, SpawnedSubsystem, FromOverseer};
use polkadot_subsystem::messages::{
CandidateValidationMessage, CandidateBackingMessage, AllMessages,
};
struct AlwaysSupportsParachains;
impl HeadSupportsParachains for AlwaysSupportsParachains {
fn head_supports_parachains(&self, _head: &Hash) -> bool { true }
}
struct Subsystem1;
impl Subsystem1 {
async fn run(mut ctx: impl SubsystemContext<Message=CandidateBackingMessage>) {
loop {
match ctx.try_recv().await {
Ok(Some(msg)) => {
if let FromOverseer::Communication { msg } = msg {
tracing::info!("msg {:?}", msg);
}
continue;
}
Ok(None) => (),
Err(_) => {
tracing::info!("exiting");
return;
}
}
Delay::new(Duration::from_secs(1)).await;
let (tx, _) = oneshot::channel();
ctx.send_message(AllMessages::CandidateValidation(
CandidateValidationMessage::ValidateFromChainState(
Default::default(),
PoV {
block_data: BlockData(Vec::new()),
}.into(),
tx,
)
)).await;
}
}
}
impl<C> Subsystem<C> for Subsystem1
where C: SubsystemContext<Message=CandidateBackingMessage>
{
fn start(self, ctx: C) -> SpawnedSubsystem {
let future = Box::pin(async move {
Self::run(ctx).await;
Ok(())
});
SpawnedSubsystem {
name: "subsystem-1",
future,
}
}
}
struct Subsystem2;
impl Subsystem2 {
async fn run(mut ctx: impl SubsystemContext<Message=CandidateValidationMessage>) {
ctx.spawn(
"subsystem-2-job",
Box::pin(async {
loop {
tracing::info!("Job tick");
Delay::new(Duration::from_secs(1)).await;
}
}),
).await.unwrap();
loop {
match ctx.try_recv().await {
Ok(Some(msg)) => {
tracing::info!("Subsystem2 received message {:?}", msg);
continue;
}
Ok(None) => { pending!(); }
Err(_) => {
tracing::info!("exiting");
return;
},
}
}
}
}
impl<C> Subsystem<C> for Subsystem2
where C: SubsystemContext<Message=CandidateValidationMessage>
{
fn start(self, ctx: C) -> SpawnedSubsystem {
let future = Box::pin(async move {
Self::run(ctx).await;
Ok(())
});
SpawnedSubsystem {
name: "subsystem-2",
future,
}
}
}
fn main() {
femme::with_level(femme::LevelFilter::Trace);
let spawner = sp_core::testing::TaskExecutor::new();
futures::executor::block_on(async {
let timer_stream = stream::repeat(()).then(|_| async {
Delay::new(Duration::from_secs(1)).await;
});
let all_subsystems = AllSubsystems::<()>::dummy()
.replace_candidate_validation(Subsystem2)
.replace_candidate_backing(Subsystem1);
let (overseer, _handler) = Overseer::new(
vec![],
all_subsystems,
None,
AlwaysSupportsParachains,
spawner,
).unwrap();
let overseer_fut = overseer.run().fuse();
let timer_stream = timer_stream;
pin_mut!(timer_stream);
pin_mut!(overseer_fut);
loop {
select! {
_ = overseer_fut => break,
_ = timer_stream.next() => {
tracing::info!("tick");
}
complete => break,
}
}
});
}