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209 lines
6.7 KiB
209 lines
6.7 KiB
package legacysync
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import (
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"fmt"
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"math"
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"sync"
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"time"
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"github.com/Workiva/go-datastructures/queue"
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"github.com/harmony-one/harmony/consensus"
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"github.com/harmony-one/harmony/core"
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"github.com/harmony-one/harmony/core/types"
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"github.com/harmony-one/harmony/internal/utils"
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"github.com/harmony-one/harmony/p2p"
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"github.com/harmony-one/harmony/shard"
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"github.com/pkg/errors"
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)
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type EpochSync struct {
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beaconChain blockChain
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selfip string
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selfport string
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selfPeerHash [20]byte // hash of ip and address combination
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commonBlocks map[int]*types.Block
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lastMileBlocks []*types.Block // last mile blocks to catch up with the consensus
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syncConfig *SyncConfig
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isExplorer bool
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stateSyncTaskQueue *queue.Queue
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syncMux sync.Mutex
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lastMileMux sync.Mutex
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syncStatus syncStatus
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}
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// GetSyncStatus get the last sync status for other modules (E.g. RPC, explorer).
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// If the last sync result is not expired, return the sync result immediately.
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// If the last result is expired, ask the remote DNS nodes for latest height and return the result.
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func (ss *EpochSync) GetSyncStatus() SyncCheckResult {
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return ss.syncStatus.Get(func() SyncCheckResult {
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return ss.isSynchronized(false)
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})
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}
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// isSynchronized query the remote DNS node for the latest height to check what is the current
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// sync status
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func (ss *EpochSync) isSynchronized(_ bool) SyncCheckResult {
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if ss.syncConfig == nil {
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return SyncCheckResult{} // If syncConfig is not instantiated, return not in sync
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}
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otherHeight1 := getMaxPeerHeight(ss.syncConfig)
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if otherHeight1 == math.MaxUint64 {
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utils.Logger().Error().
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Uint64("OtherHeight", otherHeight1).
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Int("Peers count", ss.syncConfig.PeersCount()).
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Msg("[EPOCHSYNC] No peers for get height")
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return SyncCheckResult{}
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}
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curEpoch := ss.beaconChain.CurrentBlock().Epoch().Uint64()
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otherEpoch := shard.Schedule.CalcEpochNumber(otherHeight1).Uint64()
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normalizedOtherEpoch := otherEpoch - 1
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inSync := curEpoch == normalizedOtherEpoch
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epochDiff := normalizedOtherEpoch - curEpoch
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if normalizedOtherEpoch < curEpoch {
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epochDiff = 0
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}
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utils.Logger().Info().
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Uint64("OtherEpoch", otherEpoch).
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Uint64("CurrentEpoch", curEpoch).
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Msg("[EPOCHSYNC] Checking sync status")
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return SyncCheckResult{
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IsSynchronized: inSync,
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OtherHeight: otherHeight1,
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HeightDiff: epochDiff,
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}
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}
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// GetActivePeerNumber returns the number of active peers
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func (ss *EpochSync) GetActivePeerNumber() int {
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if ss.syncConfig == nil {
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return 0
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}
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return ss.syncConfig.PeersCount()
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}
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// SyncLoop will keep syncing with peers until catches up
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func (ss *EpochSync) SyncLoop(bc core.BlockChain, consensus *consensus.Consensus) time.Duration {
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return time.Duration(syncLoop(bc, ss.syncConfig)) * time.Second
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}
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func syncLoop(bc core.BlockChain, syncConfig *SyncConfig) (timeout int) {
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isBeacon := bc.ShardID() == 0
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maxHeight := getMaxPeerHeight(syncConfig)
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for {
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if maxHeight == 0 || maxHeight == math.MaxUint64 {
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utils.Logger().Info().
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Msgf("[EPOCHSYNC] No peers to sync (isBeacon: %t, ShardID: %d, peersCount: %d)",
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isBeacon, bc.ShardID(), syncConfig.PeersCount())
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return 10
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}
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curEpoch := bc.CurrentBlock().Epoch().Uint64()
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otherEpoch := shard.Schedule.CalcEpochNumber(maxHeight).Uint64()
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if otherEpoch == curEpoch+1 {
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utils.Logger().Info().
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Msgf("[EPOCHSYNC] Node is now IN SYNC! (isBeacon: %t, ShardID: %d, otherEpoch: %d, currentEpoch: %d, peersCount: %d)",
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isBeacon, bc.ShardID(), otherEpoch, curEpoch, syncConfig.PeersCount())
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return 60
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}
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if otherEpoch < curEpoch {
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for _, peerCfg := range syncConfig.GetPeers() {
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syncConfig.RemovePeer(peerCfg, fmt.Sprintf("[EPOCHSYNC]: current height is higher that others, remove peers: %s", peerCfg.String()))
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}
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return 2
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}
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utils.Logger().Info().
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Msgf("[EPOCHSYNC] Node is OUT OF SYNC (isBeacon: %t, ShardID: %d, otherEpoch: %d, currentEpoch: %d, peers count %d)",
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isBeacon, bc.ShardID(), otherEpoch, curEpoch, syncConfig.PeersCount())
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var heights []uint64
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loopEpoch := curEpoch + 1
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for len(heights) < int(SyncLoopBatchSize) {
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if loopEpoch >= otherEpoch {
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break
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}
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heights = append(heights, shard.Schedule.EpochLastBlock(loopEpoch))
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loopEpoch = loopEpoch + 1
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}
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if len(heights) == 0 {
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// We currently on top.
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return 10
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}
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err := ProcessStateSync(syncConfig, heights, bc)
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if err != nil {
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utils.Logger().Error().Err(err).
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Msgf("[EPOCHSYNC] ProcessStateSync failed (isBeacon: %t, ShardID: %d, otherEpoch: %d, currentEpoch: %d)",
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isBeacon, bc.ShardID(), otherEpoch, curEpoch)
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return 2
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}
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}
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}
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// ProcessStateSync processes state sync from the blocks received but not yet processed so far
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func ProcessStateSync(syncConfig *SyncConfig, heights []uint64, bc core.BlockChain) error {
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var payload [][]byte
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var peerCfg *SyncPeerConfig
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peers := syncConfig.GetPeers()
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if len(peers) == 0 {
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return errors.New("no peers to sync")
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}
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for index, peerConfig := range peers {
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resp := peerConfig.GetClient().GetBlocksByHeights(heights)
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if resp == nil {
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syncConfig.RemovePeer(peerConfig, fmt.Sprintf("[EPOCHSYNC]: no response from peer: #%d %s, count %d", index, peerConfig.String(), len(peers)))
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continue
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}
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if len(resp.Payload) == 0 {
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syncConfig.RemovePeer(peerConfig, fmt.Sprintf("[EPOCHSYNC]: empty payload response from peer: #%d %s, count %d", index, peerConfig.String(), len(peers)))
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continue
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}
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payload = resp.Payload
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peerCfg = peerConfig
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break
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}
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if len(payload) == 0 {
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return errors.Errorf("empty payload: no blocks were returned by GetBlocksByHeights for all peers, currentPeersCount %d", syncConfig.PeersCount())
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}
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err := processWithPayload(payload, bc)
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if err != nil {
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// Assume that node sent us invalid data.
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syncConfig.RemovePeer(peerCfg, fmt.Sprintf("[EPOCHSYNC]: failed to process with payload from peer: %s", err.Error()))
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utils.Logger().Error().Err(err).
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Msgf("[EPOCHSYNC] Removing peer %s for invalid data", peerCfg.String())
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return err
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}
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return nil
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}
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func processWithPayload(payload [][]byte, bc core.BlockChain) error {
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decoded := make([]*types.Block, 0, len(payload))
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for idx, blockBytes := range payload {
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block, err := RlpDecodeBlockOrBlockWithSig(blockBytes)
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if err != nil {
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return errors.Wrap(err, "failed decode")
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}
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if !block.IsLastBlockInEpoch() {
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return errors.Errorf("block is not last index %d hash %s", idx, block.Hash().Hex())
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}
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decoded = append(decoded, block)
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}
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_, err := bc.InsertChain(decoded, true)
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return err
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}
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// CreateSyncConfig creates SyncConfig for StateSync object.
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func (ss *EpochSync) CreateSyncConfig(peers []p2p.Peer, shardID uint32, waitForEachPeerToConnect bool) error {
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var err error
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ss.syncConfig, err = createSyncConfig(ss.syncConfig, peers, shardID, waitForEachPeerToConnect)
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return err
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}
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