265 lines
6.1 KiB
Go
265 lines
6.1 KiB
Go
package dht
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// get_peers and announce_peers.
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import (
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"log"
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"time"
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"github.com/anacrolix/sync"
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"github.com/willf/bloom"
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"github.com/anacrolix/torrent/dht/krpc"
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"github.com/anacrolix/torrent/logonce"
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)
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// Maintains state for an ongoing Announce operation. An Announce is started
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// by calling Server.Announce.
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type Announce struct {
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mu sync.Mutex
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Peers chan PeersValues
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// Inner chan is set to nil when on close.
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values chan PeersValues
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stop chan struct{}
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triedAddrs *bloom.BloomFilter
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// True when contact with all starting addrs has been initiated. This
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// prevents a race where the first transaction finishes before the rest
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// have been opened, sees no other transactions are pending and ends the
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// announce.
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contactedStartAddrs bool
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// How many transactions are still ongoing.
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pending int
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server *Server
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infoHash string
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// Count of (probably) distinct addresses we've sent get_peers requests
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// to.
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numContacted int
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// The torrent port that we're announcing.
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announcePort int
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// The torrent port should be determined by the receiver in case we're
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// being NATed.
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announcePortImplied bool
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}
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// Returns the number of distinct remote addresses the announce has queried.
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func (a *Announce) NumContacted() int {
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a.mu.Lock()
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defer a.mu.Unlock()
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return a.numContacted
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}
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// This is kind of the main thing you want to do with DHT. It traverses the
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// graph toward nodes that store peers for the infohash, streaming them to the
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// caller, and announcing the local node to each node if allowed and
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// specified.
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func (s *Server) Announce(infoHash string, port int, impliedPort bool) (*Announce, error) {
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s.mu.Lock()
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startAddrs := func() (ret []Addr) {
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for _, n := range s.closestGoodNodes(160, infoHash) {
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ret = append(ret, n.addr)
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}
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return
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}()
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s.mu.Unlock()
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if len(startAddrs) == 0 && !s.config.NoDefaultBootstrap {
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addrs, err := bootstrapAddrs(s.bootstrapNodes)
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if err != nil {
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return nil, err
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}
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for _, addr := range addrs {
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startAddrs = append(startAddrs, NewAddr(addr))
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}
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}
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disc := &Announce{
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Peers: make(chan PeersValues, 100),
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stop: make(chan struct{}),
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values: make(chan PeersValues),
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triedAddrs: bloom.NewWithEstimates(1000, 0.5),
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server: s,
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infoHash: infoHash,
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announcePort: port,
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announcePortImplied: impliedPort,
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}
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// Function ferries from values to Values until discovery is halted.
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go func() {
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defer close(disc.Peers)
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for {
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select {
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case psv := <-disc.values:
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select {
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case disc.Peers <- psv:
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case <-disc.stop:
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return
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}
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case <-disc.stop:
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return
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}
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}
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}()
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go func() {
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disc.mu.Lock()
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defer disc.mu.Unlock()
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for i, addr := range startAddrs {
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if i != 0 {
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disc.mu.Unlock()
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time.Sleep(time.Millisecond)
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disc.mu.Lock()
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}
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disc.contact(addr)
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}
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disc.contactedStartAddrs = true
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// If we failed to contact any of the starting addrs, no transactions
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// will complete triggering a check that there are no pending
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// responses.
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disc.maybeClose()
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}()
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return disc, nil
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}
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func validNodeAddr(addr Addr) bool {
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ua := addr.UDPAddr()
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if ua.Port == 0 {
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return false
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}
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if ip4 := ua.IP.To4(); ip4 != nil && ip4[0] == 0 {
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return false
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}
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return true
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}
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// TODO: Merge this with maybeGetPeersFromAddr.
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func (a *Announce) gotNodeAddr(addr Addr) {
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if !validNodeAddr(addr) {
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return
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}
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if a.triedAddrs.Test([]byte(addr.String())) {
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return
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}
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if a.server.ipBlocked(addr.UDPAddr().IP) {
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return
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}
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a.server.mu.Lock()
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if a.server.badNodes.Test([]byte(addr.String())) {
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a.server.mu.Unlock()
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return
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}
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a.server.mu.Unlock()
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a.contact(addr)
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}
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// TODO: Merge this with maybeGetPeersFromAddr.
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func (a *Announce) contact(addr Addr) {
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a.numContacted++
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a.triedAddrs.Add([]byte(addr.String()))
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if err := a.getPeers(addr); err != nil {
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log.Printf("error sending get_peers request to %s: %#v", addr, err)
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return
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}
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a.pending++
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}
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func (a *Announce) maybeClose() {
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if a.contactedStartAddrs && a.pending == 0 {
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a.close()
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}
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}
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func (a *Announce) transactionClosed() {
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a.pending--
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a.maybeClose()
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}
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func (a *Announce) responseNode(node krpc.NodeInfo) {
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a.gotNodeAddr(NewAddr(node.Addr))
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}
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func (a *Announce) closingCh() chan struct{} {
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return a.stop
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}
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// Announce to a peer, if appropriate.
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func (a *Announce) maybeAnnouncePeer(to Addr, token, peerId string) {
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a.server.mu.Lock()
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defer a.server.mu.Unlock()
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if !a.server.config.NoSecurity {
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if len(peerId) != 20 {
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return
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}
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if !NodeIdSecure(peerId, to.UDPAddr().IP) {
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return
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}
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}
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err := a.server.announcePeer(to, a.infoHash, a.announcePort, token, a.announcePortImplied)
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if err != nil {
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logonce.Stderr.Printf("error announcing peer: %s", err)
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}
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}
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func (a *Announce) getPeers(addr Addr) error {
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a.server.mu.Lock()
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defer a.server.mu.Unlock()
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t, err := a.server.getPeers(addr, a.infoHash)
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if err != nil {
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return err
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}
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t.SetResponseHandler(func(m krpc.Msg, ok bool) {
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// Register suggested nodes closer to the target info-hash.
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if m.R != nil {
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a.mu.Lock()
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for _, n := range m.R.Nodes {
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a.responseNode(n)
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}
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a.mu.Unlock()
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if vs := m.R.Values; len(vs) != 0 {
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nodeInfo := krpc.NodeInfo{
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Addr: t.remoteAddr.UDPAddr(),
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}
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copy(nodeInfo.ID[:], m.SenderID())
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select {
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case a.values <- PeersValues{
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Peers: func() (ret []Peer) {
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for _, cp := range vs {
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ret = append(ret, Peer(cp))
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}
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return
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}(),
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NodeInfo: nodeInfo,
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}:
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case <-a.stop:
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}
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}
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a.maybeAnnouncePeer(addr, m.R.Token, m.SenderID())
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}
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a.mu.Lock()
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a.transactionClosed()
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a.mu.Unlock()
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})
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return nil
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}
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// Corresponds to the "values" key in a get_peers KRPC response. A list of
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// peers that a node has reported as being in the swarm for a queried info
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// hash.
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type PeersValues struct {
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Peers []Peer // Peers given in get_peers response.
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krpc.NodeInfo // The node that gave the response.
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}
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// Stop the announce.
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func (a *Announce) Close() {
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a.mu.Lock()
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defer a.mu.Unlock()
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a.close()
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}
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func (a *Announce) close() {
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select {
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case <-a.stop:
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default:
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close(a.stop)
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}
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}
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