mirror of
https://gitlab.com/pulsechaincom/prysm-pulse.git
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26da7c4114
* Can build * All tests pass * Update beacon-chain/blockchain/chain_info.go * Fix context
141 lines
3.5 KiB
Go
141 lines
3.5 KiB
Go
package initialsync
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import (
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"context"
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"errors"
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"fmt"
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"time"
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"github.com/prysmaticlabs/prysm/beacon-chain/blockchain"
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"github.com/prysmaticlabs/prysm/beacon-chain/core/helpers"
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"github.com/prysmaticlabs/prysm/beacon-chain/db"
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"github.com/prysmaticlabs/prysm/beacon-chain/p2p"
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"github.com/prysmaticlabs/prysm/beacon-chain/sync/peerstatus"
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"github.com/prysmaticlabs/prysm/shared"
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"github.com/prysmaticlabs/prysm/shared/params"
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"github.com/prysmaticlabs/prysm/shared/roughtime"
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)
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var _ = shared.Service(&InitialSync{})
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type blockchainService interface {
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blockchain.BlockReceiver
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blockchain.HeadFetcher
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blockchain.ChainFeeds
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}
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const (
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minStatusCount = 1 // TODO(3147): Set this to more than 1, maybe configure from flag?
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handshakePollingInterval = 5 * time.Second // Polling interval for checking the number of received handshakes.
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)
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// Config to set up the initial sync service.
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type Config struct {
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P2P p2p.P2P
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DB db.Database
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Chain blockchainService
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}
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// InitialSync service.
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type InitialSync struct {
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chain blockchainService
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p2p p2p.P2P
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db db.Database
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synced bool
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chainStarted bool
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}
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// NewInitialSync configures the initial sync service responsible for bringing the node up to the
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// latest head of the blockchain.
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func NewInitialSync(cfg *Config) *InitialSync {
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return &InitialSync{
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chain: cfg.Chain,
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p2p: cfg.P2P,
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db: cfg.DB,
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}
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}
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// Start the initial sync service.
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func (s *InitialSync) Start() {
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var genesis time.Time
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// Wait for state to be initialized, if not already.
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ch := make(chan time.Time)
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sub := s.chain.StateInitializedFeed().Subscribe(ch)
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defer sub.Unsubscribe()
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if _, err := s.chain.HeadState(context.TODO()); err != nil {
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// Wait until chain start.
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genesis = <-ch
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} else {
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headState, err := s.chain.HeadState(context.TODO())
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if err != nil {
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panic(err)
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}
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genesis = time.Unix(int64(headState.GenesisTime), 0)
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}
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if genesis.After(roughtime.Now()) {
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log.WithField(
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"genesis time",
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genesis,
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).Warn("Genesis time is in the future - waiting to start sync...")
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time.Sleep(roughtime.Until(genesis))
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}
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s.chainStarted = true
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currentSlot := slotsSinceGenesis(genesis)
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if helpers.SlotToEpoch(currentSlot) == 0 {
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log.Info("Chain started within the last epoch - not syncing")
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s.synced = true
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return
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}
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log.Info("Starting initial chain sync...")
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// Are we already in sync, or close to it?
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if helpers.SlotToEpoch(s.chain.HeadSlot()) == helpers.SlotToEpoch(currentSlot) {
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log.Info("Already synced to the current chain head")
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s.synced = true
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return
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}
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// Every 5 sec, report handshake count.
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for {
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count := peerstatus.Count()
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if count >= minStatusCount {
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break
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}
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log.WithField(
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"handshakes",
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fmt.Sprintf("%d/%d", count, minStatusCount),
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).Info("Waiting for enough peer handshakes before syncing")
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time.Sleep(handshakePollingInterval)
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}
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if err := s.roundRobinSync(genesis); err != nil {
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panic(err)
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}
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log.Infof("Synced up to slot %d", s.chain.HeadSlot())
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s.synced = true
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}
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// Stop initial sync.
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func (s *InitialSync) Stop() error {
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return nil
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}
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// Status of initial sync.
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func (s *InitialSync) Status() error {
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if !s.synced && s.chainStarted {
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return errors.New("syncing")
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}
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return nil
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}
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// Syncing returns true if initial sync is still running.
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func (s *InitialSync) Syncing() bool {
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return !s.synced
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}
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func slotsSinceGenesis(genesisTime time.Time) uint64 {
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return uint64(roughtime.Since(genesisTime).Seconds()) / params.BeaconConfig().SecondsPerSlot
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}
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