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https://github.com/yggdrasil-network/yggdrasil-go.git
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Merge pull request #198 from neilalexander/endpoints
Show real endpoints in getPeers etc
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commit
f088a244da
@ -492,6 +492,7 @@ func (a *admin) getData_getPeers() []admin_nodeInfo {
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{"uptime", int(time.Since(p.firstSeen).Seconds())},
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{"bytes_sent", atomic.LoadUint64(&p.bytesSent)},
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{"bytes_recvd", atomic.LoadUint64(&p.bytesRecvd)},
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{"endpoint", p.endpoint},
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}
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peerInfos = append(peerInfos, info)
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}
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@ -516,6 +517,7 @@ func (a *admin) getData_getSwitchPeers() []admin_nodeInfo {
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{"port", elem.port},
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{"bytes_sent", atomic.LoadUint64(&peer.bytesSent)},
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{"bytes_recvd", atomic.LoadUint64(&peer.bytesRecvd)},
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{"endpoint", peer.endpoint},
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}
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peerInfos = append(peerInfos, info)
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}
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@ -84,7 +84,7 @@ func (c *Core) DEBUG_getPeers() *peers {
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func (ps *peers) DEBUG_newPeer(box boxPubKey, sig sigPubKey, link boxSharedKey) *peer {
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//in <-chan []byte,
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//out chan<- []byte) *peer {
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return ps.newPeer(&box, &sig, &link) //, in, out)
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return ps.newPeer(&box, &sig, &link, "(simulator)") //, in, out)
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}
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/*
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@ -79,27 +79,30 @@ type peer struct {
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bytesSent uint64 // To track bandwidth usage for getPeers
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bytesRecvd uint64 // To track bandwidth usage for getPeers
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// BUG: sync/atomic, 32 bit platforms need the above to be the first element
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core *Core
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port switchPort
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box boxPubKey
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sig sigPubKey
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shared boxSharedKey
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linkShared boxSharedKey
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firstSeen time.Time // To track uptime for getPeers
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linkOut (chan []byte) // used for protocol traffic (to bypass queues)
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doSend (chan struct{}) // tell the linkLoop to send a switchMsg
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dinfo *dhtInfo // used to keep the DHT working
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out func([]byte) // Set up by whatever created the peers struct, used to send packets to other nodes
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close func() // Called when a peer is removed, to close the underlying connection, or via admin api
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core *Core
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port switchPort
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box boxPubKey
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sig sigPubKey
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shared boxSharedKey
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linkShared boxSharedKey
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endpoint string
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friendlyName string
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firstSeen time.Time // To track uptime for getPeers
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linkOut (chan []byte) // used for protocol traffic (to bypass queues)
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doSend (chan struct{}) // tell the linkLoop to send a switchMsg
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dinfo *dhtInfo // used to keep the DHT working
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out func([]byte) // Set up by whatever created the peers struct, used to send packets to other nodes
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close func() // Called when a peer is removed, to close the underlying connection, or via admin api
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}
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// Creates a new peer with the specified box, sig, and linkShared keys, using the lowest unocupied port number.
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func (ps *peers) newPeer(box *boxPubKey, sig *sigPubKey, linkShared *boxSharedKey) *peer {
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func (ps *peers) newPeer(box *boxPubKey, sig *sigPubKey, linkShared *boxSharedKey, endpoint string) *peer {
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now := time.Now()
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p := peer{box: *box,
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sig: *sig,
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shared: *getSharedKey(&ps.core.boxPriv, box),
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linkShared: *linkShared,
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endpoint: endpoint,
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firstSeen: now,
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doSend: make(chan struct{}, 1),
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core: ps.core}
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@ -47,7 +47,7 @@ func (r *router) init(core *Core) {
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r.core = core
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r.addr = *address_addrForNodeID(&r.core.dht.nodeID)
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in := make(chan []byte, 32) // TODO something better than this...
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p := r.core.peers.newPeer(&r.core.boxPub, &r.core.sigPub, &boxSharedKey{})
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p := r.core.peers.newPeer(&r.core.boxPub, &r.core.sigPub, &boxSharedKey{}, "(self)")
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p.out = func(packet []byte) {
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// This is to make very sure it never blocks
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select {
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@ -287,7 +287,7 @@ func (iface *tcpInterface) handler(sock net.Conn, incoming bool) {
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}()
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// Note that multiple connections to the same node are allowed
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// E.g. over different interfaces
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p := iface.core.peers.newPeer(&info.box, &info.sig, getSharedKey(myLinkPriv, &meta.link))
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p := iface.core.peers.newPeer(&info.box, &info.sig, getSharedKey(myLinkPriv, &meta.link), sock.RemoteAddr().String())
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p.linkOut = make(chan []byte, 1)
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in := func(bs []byte) {
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p.handlePacket(bs)
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