eth/downloader: track peer drops and deassign state sync tasks
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514b1587db
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@ -349,9 +349,10 @@ func (p *peerConnection) Lacks(hash common.Hash) bool {
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// peerSet represents the collection of active peer participating in the chain
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// download procedure.
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type peerSet struct {
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peers map[string]*peerConnection
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newPeerFeed event.Feed
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lock sync.RWMutex
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peers map[string]*peerConnection
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newPeerFeed event.Feed
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peerDropFeed event.Feed
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lock sync.RWMutex
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}
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// newPeerSet creates a new peer set top track the active download sources.
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@ -361,10 +362,16 @@ func newPeerSet() *peerSet {
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}
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}
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// SubscribeNewPeers subscribes to peer arrival events.
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func (ps *peerSet) SubscribeNewPeers(ch chan<- *peerConnection) event.Subscription {
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return ps.newPeerFeed.Subscribe(ch)
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}
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// SubscribePeerDrops subscribes to peer departure events.
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func (ps *peerSet) SubscribePeerDrops(ch chan<- *peerConnection) event.Subscription {
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return ps.peerDropFeed.Subscribe(ch)
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}
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// Reset iterates over the current peer set, and resets each of the known peers
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// to prepare for a next batch of block retrieval.
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func (ps *peerSet) Reset() {
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@ -419,12 +426,15 @@ func (ps *peerSet) Register(p *peerConnection) error {
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// actions to/from that particular entity.
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func (ps *peerSet) Unregister(id string) error {
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ps.lock.Lock()
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defer ps.lock.Unlock()
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if _, ok := ps.peers[id]; !ok {
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p, ok := ps.peers[id]
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if !ok {
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defer ps.lock.Unlock()
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return errNotRegistered
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}
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delete(ps.peers, id)
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ps.lock.Unlock()
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ps.peerDropFeed.Send(p)
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return nil
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}
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@ -40,6 +40,7 @@ type stateReq struct {
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timer *time.Timer // Timer to fire when the RTT timeout expires
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peer *peerConnection // Peer that we're requesting from
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response [][]byte // Response data of the peer (nil for timeouts)
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dropped bool // Flag whether the peer dropped off early
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}
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// timedOut returns if this request timed out.
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@ -105,6 +106,11 @@ func (d *Downloader) runStateSync(s *stateSync) *stateSync {
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go s.run()
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defer s.Cancel()
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// Listen for peer departure events to cancel assigned tasks
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peerDrop := make(chan *peerConnection, 1024)
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peerSub := s.d.peers.SubscribePeerDrops(peerDrop)
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defer peerSub.Unsubscribe()
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for {
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// Enable sending of the first buffered element if there is one.
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var (
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@ -143,6 +149,20 @@ func (d *Downloader) runStateSync(s *stateSync) *stateSync {
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finished = append(finished, req)
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delete(active, pack.PeerId())
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// Handle dropped peer connections:
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case p := <-peerDrop:
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// Skip if no request is currently pending
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req := active[p.id]
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if req == nil {
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continue
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}
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// Finalize the request and queue up for processing
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req.timer.Stop()
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req.dropped = true
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finished = append(finished, req)
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delete(active, p.id)
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// Handle timed-out requests:
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case req := <-timeout:
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// If the peer is already requesting something else, ignore the stale timeout.
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@ -167,6 +187,9 @@ func (d *Downloader) runStateSync(s *stateSync) *stateSync {
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log.Warn("Busy peer assigned new state fetch", "peer", old.peer.id)
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// Make sure the previous one doesn't get siletly lost
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old.timer.Stop()
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old.dropped = true
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finished = append(finished, old)
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}
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// Start a timer to notify the sync loop if the peer stalled.
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@ -269,9 +292,9 @@ func (s *stateSync) loop() error {
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return errCancelStateFetch
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case req := <-s.deliver:
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// Response or timeout triggered, drop the peer if stalling
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log.Trace("Received node data response", "peer", req.peer.id, "count", len(req.response), "timeout", req.timedOut())
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if len(req.items) <= 2 && req.timedOut() {
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// Response, disconnect or timeout triggered, drop the peer if stalling
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log.Trace("Received node data response", "peer", req.peer.id, "count", len(req.response), "dropped", req.dropped, "timeout", !req.dropped && req.timedOut())
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if len(req.items) <= 2 && !req.dropped && req.timedOut() {
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// 2 items are the minimum requested, if even that times out, we've no use of
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// this peer at the moment.
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log.Warn("Stalling state sync, dropping peer", "peer", req.peer.id)
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