mirror of
https://github.com/libp2p/go-libp2p.git
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313 lines
8.0 KiB
Go
313 lines
8.0 KiB
Go
// package swarm implements a connection muxer with a pair of channels
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// to synchronize all network communication.
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package swarm
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import (
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"fmt"
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"sync"
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"time"
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metrics "github.com/ipfs/go-libp2p/p2p/metrics"
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mconn "github.com/ipfs/go-libp2p/p2p/metrics/conn"
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inet "github.com/ipfs/go-libp2p/p2p/net"
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conn "github.com/ipfs/go-libp2p/p2p/net/conn"
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filter "github.com/ipfs/go-libp2p/p2p/net/filter"
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addrutil "github.com/ipfs/go-libp2p/p2p/net/swarm/addr"
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transport "github.com/ipfs/go-libp2p/p2p/net/transport"
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peer "github.com/ipfs/go-libp2p/p2p/peer"
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ps "gx/ipfs/QmQDPXRFzRcCGPbPViQCKjzbQBkZGpLV1f9KwXnksSNcTK/go-peerstream"
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"gx/ipfs/QmQopLATEYMNg7dVqZRNDfeE2S1yKy8zrRh5xnYiuqeZBn/goprocess"
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goprocessctx "gx/ipfs/QmQopLATEYMNg7dVqZRNDfeE2S1yKy8zrRh5xnYiuqeZBn/goprocess/context"
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ma "gx/ipfs/QmR3JkmZBKYXgNMNsNZawm914455Qof3PEopwuVSeXG7aV/go-multiaddr"
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pst "gx/ipfs/QmTYr6RrJs8b63LTVwahmtytnuqzsLfNPBJp6EvmFWHbGh/go-stream-muxer"
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psmss "gx/ipfs/QmTYr6RrJs8b63LTVwahmtytnuqzsLfNPBJp6EvmFWHbGh/go-stream-muxer/multistream"
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mafilter "gx/ipfs/QmW3Q7RQa8D1qCEEeyKCBV1drgFxvHBqAZ3zgCujEwKpHD/multiaddr-filter"
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context "gx/ipfs/QmZy2y8t9zQH2a1b8q2ZSLKp17ATuJoCNxxyMFG5qFExpt/go-net/context"
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logging "gx/ipfs/Qmazh5oNUVsDZTs2g59rq8aYQqwpss8tcUWQzor5sCCEuH/go-log"
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)
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var log = logging.Logger("swarm2")
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var PSTransport pst.Transport
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func init() {
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PSTransport = psmss.NewTransport()
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}
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// Swarm is a connection muxer, allowing connections to other peers to
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// be opened and closed, while still using the same Chan for all
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// communication. The Chan sends/receives Messages, which note the
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// destination or source Peer.
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//
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// Uses peerstream.Swarm
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type Swarm struct {
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swarm *ps.Swarm
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local peer.ID
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peers peer.Peerstore
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connh ConnHandler
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dsync dialsync
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backf dialbackoff
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dialT time.Duration // mainly for tests
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dialer *conn.Dialer
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notifmu sync.RWMutex
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notifs map[inet.Notifiee]ps.Notifiee
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transports []transport.Transport
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// filters for addresses that shouldnt be dialed
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Filters *filter.Filters
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// file descriptor rate limited
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fdRateLimit chan struct{}
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proc goprocess.Process
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ctx context.Context
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bwc metrics.Reporter
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}
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// NewSwarm constructs a Swarm, with a Chan.
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func NewSwarm(ctx context.Context, listenAddrs []ma.Multiaddr,
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local peer.ID, peers peer.Peerstore, bwc metrics.Reporter) (*Swarm, error) {
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listenAddrs, err := filterAddrs(listenAddrs)
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if err != nil {
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return nil, err
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}
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wrap := func(c transport.Conn) transport.Conn {
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return mconn.WrapConn(bwc, c)
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}
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s := &Swarm{
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swarm: ps.NewSwarm(PSTransport),
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local: local,
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peers: peers,
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ctx: ctx,
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dialT: DialTimeout,
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notifs: make(map[inet.Notifiee]ps.Notifiee),
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transports: []transport.Transport{transport.NewTCPTransport()},
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bwc: bwc,
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fdRateLimit: make(chan struct{}, concurrentFdDials),
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Filters: filter.NewFilters(),
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dialer: conn.NewDialer(local, peers.PrivKey(local), wrap),
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}
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// configure Swarm
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s.proc = goprocessctx.WithContextAndTeardown(ctx, s.teardown)
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s.SetConnHandler(nil) // make sure to setup our own conn handler.
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err = s.setupInterfaces(listenAddrs)
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if err != nil {
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return nil, err
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}
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return s, nil
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}
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func (s *Swarm) teardown() error {
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return s.swarm.Close()
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}
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func (s *Swarm) AddAddrFilter(f string) error {
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m, err := mafilter.NewMask(f)
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if err != nil {
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return err
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}
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s.Filters.AddDialFilter(m)
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return nil
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}
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func filterAddrs(listenAddrs []ma.Multiaddr) ([]ma.Multiaddr, error) {
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if len(listenAddrs) > 0 {
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filtered := addrutil.FilterUsableAddrs(listenAddrs)
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if len(filtered) < 1 {
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return nil, fmt.Errorf("swarm cannot use any addr in: %s", listenAddrs)
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}
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listenAddrs = filtered
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}
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return listenAddrs, nil
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}
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func (s *Swarm) Listen(addrs ...ma.Multiaddr) error {
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addrs, err := filterAddrs(addrs)
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if err != nil {
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return err
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}
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return s.setupInterfaces(addrs)
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}
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// Process returns the Process of the swarm
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func (s *Swarm) Process() goprocess.Process {
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return s.proc
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}
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// Context returns the context of the swarm
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func (s *Swarm) Context() context.Context {
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return s.ctx
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}
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// Close stops the Swarm.
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func (s *Swarm) Close() error {
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return s.proc.Close()
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}
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// StreamSwarm returns the underlying peerstream.Swarm
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func (s *Swarm) StreamSwarm() *ps.Swarm {
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return s.swarm
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}
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// SetConnHandler assigns the handler for new connections.
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// See peerstream. You will rarely use this. See SetStreamHandler
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func (s *Swarm) SetConnHandler(handler ConnHandler) {
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// handler is nil if user wants to clear the old handler.
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if handler == nil {
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s.swarm.SetConnHandler(func(psconn *ps.Conn) {
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s.connHandler(psconn)
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})
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return
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}
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s.swarm.SetConnHandler(func(psconn *ps.Conn) {
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// sc is nil if closed in our handler.
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if sc := s.connHandler(psconn); sc != nil {
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// call the user's handler. in a goroutine for sync safety.
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go handler(sc)
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}
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})
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}
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// SetStreamHandler assigns the handler for new streams.
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// See peerstream.
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func (s *Swarm) SetStreamHandler(handler inet.StreamHandler) {
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s.swarm.SetStreamHandler(func(s *ps.Stream) {
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handler(wrapStream(s))
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})
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}
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// NewStreamWithPeer creates a new stream on any available connection to p
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func (s *Swarm) NewStreamWithPeer(ctx context.Context, p peer.ID) (*Stream, error) {
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// if we have no connections, try connecting.
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if len(s.ConnectionsToPeer(p)) == 0 {
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log.Debug("Swarm: NewStreamWithPeer no connections. Attempting to connect...")
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if _, err := s.Dial(ctx, p); err != nil {
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return nil, err
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}
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}
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log.Debug("Swarm: NewStreamWithPeer...")
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// TODO: think about passing a context down to NewStreamWithGroup
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st, err := s.swarm.NewStreamWithGroup(p)
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return wrapStream(st), err
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}
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// StreamsWithPeer returns all the live Streams to p
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func (s *Swarm) StreamsWithPeer(p peer.ID) []*Stream {
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return wrapStreams(ps.StreamsWithGroup(p, s.swarm.Streams()))
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}
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// ConnectionsToPeer returns all the live connections to p
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func (s *Swarm) ConnectionsToPeer(p peer.ID) []*Conn {
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return wrapConns(ps.ConnsWithGroup(p, s.swarm.Conns()))
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}
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// Connections returns a slice of all connections.
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func (s *Swarm) Connections() []*Conn {
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return wrapConns(s.swarm.Conns())
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}
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// CloseConnection removes a given peer from swarm + closes the connection
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func (s *Swarm) CloseConnection(p peer.ID) error {
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conns := s.swarm.ConnsWithGroup(p) // boom.
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for _, c := range conns {
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c.Close()
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}
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return nil
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}
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// Peers returns a copy of the set of peers swarm is connected to.
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func (s *Swarm) Peers() []peer.ID {
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conns := s.Connections()
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seen := make(map[peer.ID]struct{})
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peers := make([]peer.ID, 0, len(conns))
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for _, c := range conns {
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p := c.RemotePeer()
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if _, found := seen[p]; found {
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continue
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}
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seen[p] = struct{}{}
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peers = append(peers, p)
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}
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return peers
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}
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// LocalPeer returns the local peer swarm is associated to.
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func (s *Swarm) LocalPeer() peer.ID {
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return s.local
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}
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// notifyAll sends a signal to all Notifiees
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func (s *Swarm) notifyAll(notify func(inet.Notifiee)) {
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s.notifmu.RLock()
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for f := range s.notifs {
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go notify(f)
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}
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s.notifmu.RUnlock()
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}
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// Notify signs up Notifiee to receive signals when events happen
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func (s *Swarm) Notify(f inet.Notifiee) {
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// wrap with our notifiee, to translate function calls
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n := &ps2netNotifee{net: (*Network)(s), not: f}
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s.notifmu.Lock()
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s.notifs[f] = n
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s.notifmu.Unlock()
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// register for notifications in the peer swarm.
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s.swarm.Notify(n)
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}
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// StopNotify unregisters Notifiee fromr receiving signals
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func (s *Swarm) StopNotify(f inet.Notifiee) {
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s.notifmu.Lock()
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n, found := s.notifs[f]
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if found {
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delete(s.notifs, f)
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}
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s.notifmu.Unlock()
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if found {
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s.swarm.StopNotify(n)
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}
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}
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type ps2netNotifee struct {
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net *Network
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not inet.Notifiee
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}
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func (n *ps2netNotifee) Connected(c *ps.Conn) {
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n.not.Connected(n.net, inet.Conn((*Conn)(c)))
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}
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func (n *ps2netNotifee) Disconnected(c *ps.Conn) {
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n.not.Disconnected(n.net, inet.Conn((*Conn)(c)))
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}
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func (n *ps2netNotifee) OpenedStream(s *ps.Stream) {
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n.not.OpenedStream(n.net, inet.Stream((*Stream)(s)))
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}
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func (n *ps2netNotifee) ClosedStream(s *ps.Stream) {
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n.not.ClosedStream(n.net, inet.Stream((*Stream)(s)))
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}
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