2019-11-25 04:48:24 +00:00
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use environment::RuntimeContext;
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2020-06-04 11:48:05 +00:00
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use futures::StreamExt;
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2019-11-25 04:48:24 +00:00
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use parking_lot::RwLock;
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use remote_beacon_node::RemoteBeaconNode;
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2020-06-04 11:48:05 +00:00
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use slog::{debug, trace};
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2019-11-25 04:48:24 +00:00
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use slot_clock::SlotClock;
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use std::ops::Deref;
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use std::sync::Arc;
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2020-05-17 11:16:48 +00:00
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use tokio::time::{interval_at, Duration, Instant};
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2019-11-25 04:48:24 +00:00
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use types::{ChainSpec, EthSpec, Fork};
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/// Delay this period of time after the slot starts. This allows the node to process the new slot.
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const TIME_DELAY_FROM_SLOT: Duration = Duration::from_millis(80);
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/// Builds a `ForkService`.
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pub struct ForkServiceBuilder<T, E: EthSpec> {
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fork: Option<Fork>,
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slot_clock: Option<T>,
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beacon_node: Option<RemoteBeaconNode<E>>,
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context: Option<RuntimeContext<E>>,
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}
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impl<T: SlotClock + 'static, E: EthSpec> ForkServiceBuilder<T, E> {
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pub fn new() -> Self {
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Self {
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fork: None,
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slot_clock: None,
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beacon_node: None,
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context: None,
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}
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}
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pub fn slot_clock(mut self, slot_clock: T) -> Self {
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self.slot_clock = Some(slot_clock);
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self
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}
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pub fn beacon_node(mut self, beacon_node: RemoteBeaconNode<E>) -> Self {
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self.beacon_node = Some(beacon_node);
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self
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}
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pub fn runtime_context(mut self, context: RuntimeContext<E>) -> Self {
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self.context = Some(context);
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self
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}
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pub fn build(self) -> Result<ForkService<T, E>, String> {
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Ok(ForkService {
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inner: Arc::new(Inner {
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fork: RwLock::new(self.fork),
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slot_clock: self
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.slot_clock
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.ok_or_else(|| "Cannot build ForkService without slot_clock")?,
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beacon_node: self
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.beacon_node
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.ok_or_else(|| "Cannot build ForkService without beacon_node")?,
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context: self
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.context
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.ok_or_else(|| "Cannot build ForkService without runtime_context")?,
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}),
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})
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}
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}
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/// Helper to minimise `Arc` usage.
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pub struct Inner<T, E: EthSpec> {
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fork: RwLock<Option<Fork>>,
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beacon_node: RemoteBeaconNode<E>,
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context: RuntimeContext<E>,
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slot_clock: T,
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}
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/// Attempts to download the `Fork` struct from the beacon node at the start of each epoch.
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pub struct ForkService<T, E: EthSpec> {
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inner: Arc<Inner<T, E>>,
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}
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impl<T, E: EthSpec> Clone for ForkService<T, E> {
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fn clone(&self) -> Self {
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Self {
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inner: self.inner.clone(),
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}
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}
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}
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impl<T, E: EthSpec> Deref for ForkService<T, E> {
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type Target = Inner<T, E>;
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fn deref(&self) -> &Self::Target {
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self.inner.deref()
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}
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}
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impl<T: SlotClock + 'static, E: EthSpec> ForkService<T, E> {
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/// Returns the last fork downloaded from the beacon node, if any.
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pub fn fork(&self) -> Option<Fork> {
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self.fork.read().clone()
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}
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/// Starts the service that periodically polls for the `Fork`.
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2020-06-04 11:48:05 +00:00
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pub fn start_update_service(self, spec: &ChainSpec) -> Result<(), String> {
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2019-11-25 04:48:24 +00:00
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let duration_to_next_epoch = self
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.slot_clock
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.duration_to_next_epoch(E::slots_per_epoch())
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.ok_or_else(|| "Unable to determine duration to next epoch".to_string())?;
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2020-05-17 11:16:48 +00:00
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let mut interval = {
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2019-11-25 04:48:24 +00:00
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let slot_duration = Duration::from_millis(spec.milliseconds_per_slot);
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2020-05-17 11:16:48 +00:00
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// Note: interval_at panics if `slot_duration * E::slots_per_epoch()` = 0
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interval_at(
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2019-11-25 04:48:24 +00:00
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Instant::now() + duration_to_next_epoch + TIME_DELAY_FROM_SLOT,
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slot_duration * E::slots_per_epoch() as u32,
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)
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};
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// Run an immediate update before starting the updater service.
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2020-05-17 11:16:48 +00:00
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self.inner
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.context
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2020-06-04 11:48:05 +00:00
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.executor
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.runtime_handle()
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2020-05-17 11:16:48 +00:00
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.spawn(self.clone().do_update());
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2020-06-04 11:48:05 +00:00
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let executor = self.inner.context.executor.clone();
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2020-05-17 11:16:48 +00:00
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let interval_fut = async move {
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while interval.next().await.is_some() {
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self.clone().do_update().await.ok();
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}
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};
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2020-06-04 11:48:05 +00:00
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executor.spawn(interval_fut, "fork_service");
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2019-11-25 04:48:24 +00:00
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2020-06-04 11:48:05 +00:00
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Ok(())
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2019-11-25 04:48:24 +00:00
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}
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/// Attempts to download the `Fork` from the server.
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2020-05-17 11:16:48 +00:00
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async fn do_update(self) -> Result<(), ()> {
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2020-06-04 11:48:05 +00:00
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let log = self.context.log();
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2019-11-25 04:48:24 +00:00
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2020-05-17 11:16:48 +00:00
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let fork = self
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.inner
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2019-11-25 04:48:24 +00:00
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.beacon_node
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.http
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.beacon()
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.get_fork()
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2020-05-17 11:16:48 +00:00
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.await
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.map_err(|e| {
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2019-11-25 04:48:24 +00:00
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trace!(
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2020-05-17 11:16:48 +00:00
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log,
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2019-11-25 04:48:24 +00:00
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"Fork update failed";
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"error" => format!("Error retrieving fork: {:?}", e)
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)
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2020-05-17 11:16:48 +00:00
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})?;
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if self.fork.read().as_ref() != Some(&fork) {
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*(self.fork.write()) = Some(fork);
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}
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debug!(log, "Fork update success");
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// Returning an error will stop the interval. This is not desired, a single failure
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// should not stop all future attempts.
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Ok(())
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2019-11-25 04:48:24 +00:00
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}
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}
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