2019-02-14 01:09:18 +00:00
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mod epoch_duties;
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mod grpc;
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#[cfg(test)]
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mod test_node;
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mod traits;
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pub use self::epoch_duties::EpochDutiesMap;
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use self::epoch_duties::{EpochDuties, EpochDutiesMapError};
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use self::traits::{BeaconNode, BeaconNodeError};
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use bls::PublicKey;
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use slot_clock::SlotClock;
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use std::sync::Arc;
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2019-03-25 07:03:23 +00:00
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use types::{ChainSpec, Epoch, Slot};
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2019-02-14 01:09:18 +00:00
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#[derive(Debug, PartialEq, Clone, Copy)]
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2019-03-25 07:03:23 +00:00
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pub enum UpdateOutcome {
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2019-02-14 01:09:18 +00:00
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/// The `EpochDuties` were not updated during this poll.
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NoChange(Epoch),
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/// The `EpochDuties` for the `epoch` were previously unknown, but obtained in the poll.
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NewDuties(Epoch, EpochDuties),
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/// New `EpochDuties` were obtained, different to those which were previously known. This is
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/// likely to be the result of chain re-organisation.
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DutiesChanged(Epoch, EpochDuties),
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/// The Beacon Node was unable to return the duties as the validator is unknown, or the
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/// shuffling for the epoch is unknown.
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UnknownValidatorOrEpoch(Epoch),
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}
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#[derive(Debug, PartialEq)]
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pub enum Error {
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SlotClockError,
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SlotUnknowable,
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EpochMapPoisoned,
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BeaconNodeError(BeaconNodeError),
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}
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/// A polling state machine which ensures the latest `EpochDuties` are obtained from the Beacon
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/// Node.
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///
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2019-03-23 00:48:36 +00:00
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/// This keeps track of all validator keys and required voting slots.
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2019-02-14 01:09:18 +00:00
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pub struct DutiesManager<T: SlotClock, U: BeaconNode> {
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pub duties_map: Arc<EpochDutiesMap>,
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2019-03-23 00:48:36 +00:00
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/// A list of all public keys known to the validator service.
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pub pubkeys: Vec<PublicKey>,
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2019-02-14 01:09:18 +00:00
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pub spec: Arc<ChainSpec>,
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pub slot_clock: Arc<T>,
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pub beacon_node: Arc<U>,
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}
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impl<T: SlotClock, U: BeaconNode> DutiesManager<T, U> {
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2019-03-25 07:03:23 +00:00
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/// Check the Beacon Node for `EpochDuties`.
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2019-02-14 01:09:18 +00:00
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///
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/// The present `epoch` will be learned from the supplied `SlotClock`. In production this will
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/// be a wall-clock (e.g., system time, remote server time, etc.).
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2019-03-25 07:03:23 +00:00
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pub fn update(&self, slot: Slot) -> Result<UpdateOutcome, Error> {
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2019-03-04 06:51:54 +00:00
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let epoch = slot.epoch(self.spec.slots_per_epoch);
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2019-02-14 01:09:18 +00:00
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2019-03-23 00:48:36 +00:00
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if let Some(duties) = self
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.beacon_node
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.request_shuffling(epoch, &self.pubkeys[0])?
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{
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2019-02-14 01:09:18 +00:00
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// If these duties were known, check to see if they're updates or identical.
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let result = if let Some(known_duties) = self.duties_map.get(epoch)? {
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if known_duties == duties {
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2019-03-25 07:03:23 +00:00
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Ok(UpdateOutcome::NoChange(epoch))
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2019-02-14 01:09:18 +00:00
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} else {
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Ok(UpdateOutcome::DutiesChanged(epoch, duties))
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2019-02-14 01:09:18 +00:00
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}
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} else {
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2019-03-25 07:03:23 +00:00
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Ok(UpdateOutcome::NewDuties(epoch, duties))
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2019-02-14 01:09:18 +00:00
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};
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self.duties_map.insert(epoch, duties)?;
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result
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} else {
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2019-03-25 07:03:23 +00:00
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Ok(UpdateOutcome::UnknownValidatorOrEpoch(epoch))
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2019-02-14 01:09:18 +00:00
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}
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}
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}
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impl From<BeaconNodeError> for Error {
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fn from(e: BeaconNodeError) -> Error {
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Error::BeaconNodeError(e)
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}
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}
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impl From<EpochDutiesMapError> for Error {
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fn from(e: EpochDutiesMapError) -> Error {
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match e {
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EpochDutiesMapError::Poisoned => Error::EpochMapPoisoned,
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}
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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::test_node::TestBeaconNode;
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use super::*;
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use bls::Keypair;
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use slot_clock::TestingSlotClock;
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use types::Slot;
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// TODO: implement more thorough testing.
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// https://github.com/sigp/lighthouse/issues/160
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//
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// These tests should serve as a good example for future tests.
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#[test]
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pub fn polling() {
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let spec = Arc::new(ChainSpec::foundation());
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2019-03-04 06:51:54 +00:00
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let duties_map = Arc::new(EpochDutiesMap::new(spec.slots_per_epoch));
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2019-02-14 01:09:18 +00:00
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let keypair = Keypair::random();
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let slot_clock = Arc::new(TestingSlotClock::new(0));
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let beacon_node = Arc::new(TestBeaconNode::default());
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let manager = DutiesManager {
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spec: spec.clone(),
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pubkey: keypair.pk.clone(),
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duties_map: duties_map.clone(),
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slot_clock: slot_clock.clone(),
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beacon_node: beacon_node.clone(),
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};
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// Configure response from the BeaconNode.
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let duties = EpochDuties {
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validator_index: 0,
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block_production_slot: Some(Slot::new(10)),
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};
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beacon_node.set_next_shuffling_result(Ok(Some(duties)));
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// Get the duties for the first time...
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assert_eq!(
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manager.poll(),
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Ok(PollOutcome::NewDuties(Epoch::new(0), duties))
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);
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// Get the same duties again...
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assert_eq!(manager.poll(), Ok(PollOutcome::NoChange(Epoch::new(0))));
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// Return new duties.
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let duties = EpochDuties {
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validator_index: 0,
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block_production_slot: Some(Slot::new(11)),
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};
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beacon_node.set_next_shuffling_result(Ok(Some(duties)));
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assert_eq!(
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manager.poll(),
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Ok(PollOutcome::DutiesChanged(Epoch::new(0), duties))
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);
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// Return no duties.
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beacon_node.set_next_shuffling_result(Ok(None));
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assert_eq!(
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manager.poll(),
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Ok(PollOutcome::UnknownValidatorOrEpoch(Epoch::new(0)))
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);
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}
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}
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