add rate measure
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407694232a
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d64f8c665e
@ -1085,17 +1085,16 @@ func (t *tun) Dial(channel string, opts ...DialOption) (Session, error) {
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// set the link time
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t.RLock()
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link, ok := t.links[msg.link]
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link, ok := t.links[c.link]
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t.RUnlock()
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if ok {
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// set the rountrip time
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link.setRTT(d)
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// set measured to true
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measured = true
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}
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// set measured to true
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measured = true
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// set discovered to true
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c.discovered = true
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}
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@ -32,9 +32,12 @@ type link struct {
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// channels keeps a mapping of channels and last seen
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channels map[string]time.Time
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// the weighed moving average roundtrip
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// the weighted moving average roundtrip
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rtt int64
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// weighted moving average of bits flowing
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rate float64
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// keep an error count on the link
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errCount int
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}
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@ -55,7 +58,7 @@ func (l *link) setRTT(d time.Duration) {
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l.Lock()
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defer l.Unlock()
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if l.rtt < 0 {
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if l.rtt <= 0 {
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l.rtt = d.Nanoseconds()
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return
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}
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@ -110,7 +113,9 @@ func (l *link) Delay() int64 {
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// Current transfer rate as bits per second (lower is better)
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func (l *link) Rate() float64 {
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return float64(10e8)
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l.RLock()
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defer l.RUnlock()
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return l.rate
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}
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// Length returns the roundtrip time as nanoseconds (lower is better).
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@ -141,11 +146,43 @@ func (l *link) Close() error {
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}
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func (l *link) Send(m *transport.Message) error {
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dataSent := len(m.Body)
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// set header length
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for k, v := range m.Header {
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dataSent += (len(k) + len(v))
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}
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// get time now
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now := time.Now()
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// send the message
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err := l.Socket.Send(m)
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l.Lock()
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defer l.Unlock()
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// calculate based on data
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if dataSent > 0 {
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// measure time taken
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delta := time.Since(now)
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// bit sent
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bits := dataSent * 1024
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// rate of send in bits per nanosecond
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rate := float64(bits) / float64(delta.Nanoseconds())
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//
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if l.rate == 0 {
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// rate per second
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l.rate = rate * 1e9
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} else {
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// set new rate per second
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l.rate = 0.8*l.rate + 0.2*(rate*1e9)
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}
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}
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// if theres no error reset the counter
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if err == nil {
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l.errCount = 0
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@ -292,3 +292,53 @@ func TestReconnectTunnel(t *testing.T) {
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// wait until done
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wg.Wait()
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}
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func TestTunnelRTTRate(t *testing.T) {
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// create a new tunnel client
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tunA := NewTunnel(
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Address("127.0.0.1:9096"),
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Nodes("127.0.0.1:9097"),
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)
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// create a new tunnel server
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tunB := NewTunnel(
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Address("127.0.0.1:9097"),
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)
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// start tunB
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err := tunB.Connect()
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if err != nil {
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t.Fatal(err)
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}
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defer tunB.Close()
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// start tunA
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err = tunA.Connect()
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if err != nil {
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t.Fatal(err)
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}
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defer tunA.Close()
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wait := make(chan bool)
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var wg sync.WaitGroup
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wg.Add(1)
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// start the listener
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go testAccept(t, tunB, wait, &wg)
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wg.Add(1)
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// start the client
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go testSend(t, tunA, wait, &wg)
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// wait until done
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wg.Wait()
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for _, link := range tunA.Links() {
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t.Logf("Link %s length %v rate %v", link.Id(), link.Length(), link.Rate())
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}
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for _, link := range tunB.Links() {
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t.Logf("Link %s length %v rate %v", link.Id(), link.Length(), link.Rate())
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}
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}
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