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127 lines
3.5 KiB
127 lines
3.5 KiB
package legacysync
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import (
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"fmt"
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"sync"
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"time"
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"github.com/ethereum/go-ethereum/common/math"
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"github.com/harmony-one/harmony/api/service/legacysync/downloader"
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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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libp2p_peer "github.com/libp2p/go-libp2p/core/peer"
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"github.com/pkg/errors"
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)
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// getMaxPeerHeight gets the maximum blockchain heights from peers
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func getMaxPeerHeight(syncConfig *SyncConfig) (uint64, error) {
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maxHeight := uint64(math.MaxUint64)
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var (
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wg sync.WaitGroup
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lock sync.Mutex
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)
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syncConfig.ForEachPeer(func(peerConfig *SyncPeerConfig) (brk bool) {
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wg.Add(1)
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go func() {
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defer wg.Done()
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//debug
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// utils.Logger().Debug().Bool("isBeacon", isBeacon).Str("peerIP", peerConfig.ip).Str("peerPort", peerConfig.port).Msg("[Sync]getMaxPeerHeight")
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response, err := peerConfig.client.GetBlockChainHeight()
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if err != nil {
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utils.Logger().Warn().Err(err).Str("peerIP", peerConfig.peer.IP).Str("peerPort", peerConfig.peer.Port).Msg("[Sync]GetBlockChainHeight failed")
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syncConfig.RemovePeer(peerConfig, fmt.Sprintf("failed getMaxPeerHeight for shard %d with message: %s", syncConfig.ShardID(), err.Error()))
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return
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}
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utils.Logger().Info().Str("peerIP", peerConfig.peer.IP).Uint64("blockHeight", response.BlockHeight).
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Msg("[SYNC] getMaxPeerHeight")
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lock.Lock()
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if response != nil {
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if response.BlockHeight < math.MaxUint32 { // That's enough for decades.
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if maxHeight == uint64(math.MaxUint64) || maxHeight < response.BlockHeight {
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maxHeight = response.BlockHeight
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}
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}
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}
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lock.Unlock()
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}()
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return
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})
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wg.Wait()
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if maxHeight == uint64(math.MaxUint64) {
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return 0, fmt.Errorf("get max peer height failed")
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}
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return maxHeight, nil
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}
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func createSyncConfig(syncConfig *SyncConfig, peers []p2p.Peer, shardID uint32, selfPeerID libp2p_peer.ID, waitForEachPeerToConnect bool) (*SyncConfig, error) {
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// sanity check to ensure no duplicate peers
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if err := checkPeersDuplicity(peers); err != nil {
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return syncConfig, err
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}
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// limit the number of dns peers to connect
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randSeed := time.Now().UnixNano()
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targetSize, peers := limitNumPeers(peers, randSeed)
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utils.Logger().Debug().
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Str("self peer ID", string(selfPeerID)).
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Int("peers count", len(peers)).
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Int("target size", targetSize).
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Uint32("shardID", shardID).
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Msg("[SYNC] CreateSyncConfig: len of peers")
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if targetSize == 0 {
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return syncConfig, errors.New("[SYNC] no peers to connect to")
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}
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if syncConfig != nil {
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syncConfig.CloseConnections()
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}
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syncConfig = NewSyncConfig(shardID, selfPeerID, nil)
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if !waitForEachPeerToConnect {
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var wg sync.WaitGroup
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ps := peers[:targetSize]
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for _, peer := range ps {
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wg.Add(1)
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go func(peer p2p.Peer) {
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defer wg.Done()
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client := downloader.ClientSetup(peer.IP, peer.Port, false)
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if client == nil {
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return
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}
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peerConfig := &SyncPeerConfig{
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peer: peer,
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client: client,
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}
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syncConfig.AddPeer(peerConfig)
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}(peer)
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}
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wg.Wait()
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} else {
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var connectedPeers int
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for _, peer := range peers {
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client := downloader.ClientSetup(peer.IP, peer.Port, true)
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if client == nil || !client.IsReady() {
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continue
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}
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peerConfig := &SyncPeerConfig{
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peer: peer,
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client: client,
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}
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syncConfig.AddPeer(peerConfig)
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connectedPeers++
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if connectedPeers >= targetSize {
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break
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}
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}
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}
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utils.Logger().Info().
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Int("len", len(syncConfig.peers)).
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Uint32("shardID", shardID).
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Msg("[SYNC] Finished making connection to peers")
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return syncConfig, nil
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}
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