mirror of https://github.com/status-im/op-geth.git
239 lines
8.1 KiB
Go
239 lines
8.1 KiB
Go
// Copyright 2018 The go-ethereum Authors
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// This file is part of the go-ethereum library.
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//
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// The go-ethereum library is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Lesser General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// The go-ethereum library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
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package stream
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import (
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"context"
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"strconv"
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"time"
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"github.com/ethereum/go-ethereum/metrics"
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"github.com/ethereum/go-ethereum/swarm/chunk"
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"github.com/ethereum/go-ethereum/swarm/log"
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"github.com/ethereum/go-ethereum/swarm/storage"
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)
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const (
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BatchSize = 128
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)
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// SwarmSyncerServer implements an Server for history syncing on bins
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// offered streams:
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// * live request delivery with or without checkback
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// * (live/non-live historical) chunk syncing per proximity bin
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type SwarmSyncerServer struct {
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correlateId string //used for logging
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po uint8
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netStore *storage.NetStore
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quit chan struct{}
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}
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// NewSwarmSyncerServer is constructor for SwarmSyncerServer
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func NewSwarmSyncerServer(po uint8, netStore *storage.NetStore, correlateId string) (*SwarmSyncerServer, error) {
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return &SwarmSyncerServer{
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correlateId: correlateId,
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po: po,
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netStore: netStore,
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quit: make(chan struct{}),
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}, nil
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}
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func RegisterSwarmSyncerServer(streamer *Registry, netStore *storage.NetStore) {
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streamer.RegisterServerFunc("SYNC", func(p *Peer, t string, _ bool) (Server, error) {
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po, err := ParseSyncBinKey(t)
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if err != nil {
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return nil, err
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}
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return NewSwarmSyncerServer(po, netStore, p.ID().String()+"|"+string(po))
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})
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// streamer.RegisterServerFunc(stream, func(p *Peer) (Server, error) {
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// return NewOutgoingProvableSwarmSyncer(po, db)
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// })
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}
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// Close needs to be called on a stream server
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func (s *SwarmSyncerServer) Close() {
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close(s.quit)
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}
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// GetData retrieves the actual chunk from netstore
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func (s *SwarmSyncerServer) GetData(ctx context.Context, key []byte) ([]byte, error) {
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ch, err := s.netStore.Get(ctx, chunk.ModeGetSync, storage.Address(key))
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if err != nil {
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return nil, err
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}
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return ch.Data(), nil
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}
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// SessionIndex returns current storage bin (po) index.
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func (s *SwarmSyncerServer) SessionIndex() (uint64, error) {
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return s.netStore.LastPullSubscriptionBinID(s.po)
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}
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// SetNextBatch retrieves the next batch of hashes from the localstore.
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// It expects a range of bin IDs, both ends inclusive in syncing, and returns
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// concatenated byte slice of chunk addresses and bin IDs of the first and
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// the last one in that slice. The batch may have up to BatchSize number of
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// chunk addresses. If at least one chunk is added to the batch and no new chunks
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// are added in batchTimeout period, the batch will be returned. This function
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// will block until new chunks are received from localstore pull subscription.
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func (s *SwarmSyncerServer) SetNextBatch(from, to uint64) ([]byte, uint64, uint64, *HandoverProof, error) {
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//TODO: maybe add unit test for intervals usage in netstore/localstore together with SwarmSyncerServer?
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if from > 0 {
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from--
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}
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batchStart := time.Now()
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descriptors, stop := s.netStore.SubscribePull(context.Background(), s.po, from, to)
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defer stop()
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const batchTimeout = 2 * time.Second
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var (
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batch []byte
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batchSize int
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batchStartID *uint64
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batchEndID uint64
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timer *time.Timer
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timerC <-chan time.Time
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)
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defer func(start time.Time) {
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metrics.GetOrRegisterResettingTimer("syncer.set-next-batch.total-time", nil).UpdateSince(start)
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metrics.GetOrRegisterCounter("syncer.set-next-batch.batch-size", nil).Inc(int64(batchSize))
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if timer != nil {
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timer.Stop()
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}
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}(batchStart)
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for iterate := true; iterate; {
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select {
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case d, ok := <-descriptors:
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if !ok {
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iterate = false
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break
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}
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batch = append(batch, d.Address[:]...)
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// This is the most naive approach to label the chunk as synced
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// allowing it to be garbage collected. A proper way requires
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// validating that the chunk is successfully stored by the peer.
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err := s.netStore.Set(context.Background(), chunk.ModeSetSync, d.Address)
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if err != nil {
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metrics.GetOrRegisterCounter("syncer.set-next-batch.set-sync-err", nil).Inc(1)
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log.Debug("syncer pull subscription - err setting chunk as synced", "correlateId", s.correlateId, "err", err)
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return nil, 0, 0, nil, err
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}
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batchSize++
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if batchStartID == nil {
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// set batch start id only if
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// this is the first iteration
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batchStartID = &d.BinID
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}
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batchEndID = d.BinID
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if batchSize >= BatchSize {
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iterate = false
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metrics.GetOrRegisterCounter("syncer.set-next-batch.full-batch", nil).Inc(1)
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log.Debug("syncer pull subscription - batch size reached", "correlateId", s.correlateId, "batchSize", batchSize, "batchStartID", batchStartID, "batchEndID", batchEndID)
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}
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if timer == nil {
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timer = time.NewTimer(batchTimeout)
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} else {
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log.Debug("syncer pull subscription - stopping timer", "correlateId", s.correlateId)
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if !timer.Stop() {
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<-timer.C
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}
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log.Debug("syncer pull subscription - channel drained, resetting timer", "correlateId", s.correlateId)
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timer.Reset(batchTimeout)
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}
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timerC = timer.C
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case <-timerC:
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// return batch if new chunks are not
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// received after some time
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iterate = false
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metrics.GetOrRegisterCounter("syncer.set-next-batch.timer-expire", nil).Inc(1)
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log.Debug("syncer pull subscription timer expired", "correlateId", s.correlateId, "batchSize", batchSize, "batchStartID", batchStartID, "batchEndID", batchEndID)
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case <-s.quit:
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iterate = false
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log.Debug("syncer pull subscription - quit received", "correlateId", s.correlateId, "batchSize", batchSize, "batchStartID", batchStartID, "batchEndID", batchEndID)
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}
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}
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if batchStartID == nil {
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// if batch start id is not set, return 0
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batchStartID = new(uint64)
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}
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return batch, *batchStartID, batchEndID, nil, nil
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}
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// SwarmSyncerClient
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type SwarmSyncerClient struct {
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netStore *storage.NetStore
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peer *Peer
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stream Stream
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}
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// NewSwarmSyncerClient is a contructor for provable data exchange syncer
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func NewSwarmSyncerClient(p *Peer, netStore *storage.NetStore, stream Stream) (*SwarmSyncerClient, error) {
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return &SwarmSyncerClient{
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netStore: netStore,
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peer: p,
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stream: stream,
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}, nil
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}
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// RegisterSwarmSyncerClient registers the client constructor function for
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// to handle incoming sync streams
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func RegisterSwarmSyncerClient(streamer *Registry, netStore *storage.NetStore) {
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streamer.RegisterClientFunc("SYNC", func(p *Peer, t string, live bool) (Client, error) {
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return NewSwarmSyncerClient(p, netStore, NewStream("SYNC", t, live))
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})
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}
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// NeedData
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func (s *SwarmSyncerClient) NeedData(ctx context.Context, key []byte) (wait func(context.Context) error) {
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return s.netStore.FetchFunc(ctx, key)
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}
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// BatchDone
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func (s *SwarmSyncerClient) BatchDone(stream Stream, from uint64, hashes []byte, root []byte) func() (*TakeoverProof, error) {
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// TODO: reenable this with putter/getter refactored code
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// if s.chunker != nil {
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// return func() (*TakeoverProof, error) { return s.TakeoverProof(stream, from, hashes, root) }
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// }
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return nil
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}
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func (s *SwarmSyncerClient) Close() {}
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// base for parsing and formating sync bin key
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// it must be 2 <= base <= 36
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const syncBinKeyBase = 36
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// FormatSyncBinKey returns a string representation of
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// Kademlia bin number to be used as key for SYNC stream.
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func FormatSyncBinKey(bin uint8) string {
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return strconv.FormatUint(uint64(bin), syncBinKeyBase)
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}
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// ParseSyncBinKey parses the string representation
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// and returns the Kademlia bin number.
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func ParseSyncBinKey(s string) (uint8, error) {
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bin, err := strconv.ParseUint(s, syncBinKeyBase, 8)
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if err != nil {
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return 0, err
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}
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return uint8(bin), nil
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}
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