mirror of
https://github.com/jech/galene.git
synced 2024-11-24 17:45:58 +01:00
Include jitter and delay in receiver reports.
This commit is contained in:
parent
7961d7279b
commit
4dd245712f
4 changed files with 114 additions and 10 deletions
22
client.go
22
client.go
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@ -18,6 +18,7 @@ import (
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"time"
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"time"
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"sfu/estimator"
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"sfu/estimator"
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"sfu/jitter"
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"sfu/mono"
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"sfu/mono"
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"sfu/packetcache"
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"sfu/packetcache"
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@ -294,6 +295,7 @@ func addUpConn(c *client, id string) (*upConnection, error) {
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track: remote,
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track: remote,
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cache: packetcache.New(96),
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cache: packetcache.New(96),
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rate: estimator.New(time.Second),
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rate: estimator.New(time.Second),
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jitter: jitter.New(remote.Codec().ClockRate),
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maxBitrate: ^uint64(0),
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maxBitrate: ^uint64(0),
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}
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}
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u.tracks = append(u.tracks, track)
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u.tracks = append(u.tracks, track)
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@ -323,7 +325,7 @@ func upLoop(conn *upConnection, track *upTrack) {
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var localTime uint64
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var localTime uint64
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for {
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for {
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now := mono.Microseconds()
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now := mono.Microseconds()
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if now < localTime || now > localTime + 500000 {
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if now < localTime || now > localTime+500000 {
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local = track.getLocal()
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local = track.getLocal()
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localTime = now
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localTime = now
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}
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}
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@ -343,6 +345,8 @@ func upLoop(conn *upConnection, track *upTrack) {
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continue
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continue
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}
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}
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track.jitter.Accumulate(packet.Timestamp)
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first := track.cache.Store(packet.SequenceNumber, buf[:bytes])
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first := track.cache.Store(packet.SequenceNumber, buf[:bytes])
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if packet.SequenceNumber-first > 24 {
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if packet.SequenceNumber-first > 24 {
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first, bitmap := track.cache.BitmapGet()
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first, bitmap := track.cache.BitmapGet()
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@ -379,6 +383,8 @@ func rtcpUpListener(conn *upConnection, track *upTrack, r *webrtc.RTPReceiver) {
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case *rtcp.SenderReport:
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case *rtcp.SenderReport:
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atomic.StoreUint32(&track.lastSenderReport,
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atomic.StoreUint32(&track.lastSenderReport,
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uint32(p.NTPTime>>16))
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uint32(p.NTPTime>>16))
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atomic.StoreUint32(&track.lastSenderReportTime,
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uint32(mono.Now(0x10000)))
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case *rtcp.SourceDescription:
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case *rtcp.SourceDescription:
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}
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}
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}
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}
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@ -392,7 +398,7 @@ func sendRR(c *client, conn *upConnection) error {
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return nil
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return nil
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}
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}
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ssrc := conn.tracks[0].track.SSRC()
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now := uint32(mono.Now(0x10000))
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reports := make([]rtcp.ReceptionReport, 0, len(conn.tracks))
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reports := make([]rtcp.ReceptionReport, 0, len(conn.tracks))
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for _, t := range conn.tracks {
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for _, t := range conn.tracks {
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@ -403,19 +409,24 @@ func sendRR(c *client, conn *upConnection) error {
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if lost >= expected {
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if lost >= expected {
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lost = expected - 1
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lost = expected - 1
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}
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}
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lastSR := atomic.LoadUint32(&t.lastSenderReport)
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delay := now - atomic.LoadUint32(&t.lastSenderReportTime)
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reports = append(reports, rtcp.ReceptionReport{
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reports = append(reports, rtcp.ReceptionReport{
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SSRC: t.track.SSRC(),
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SSRC: t.track.SSRC(),
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LastSenderReport: atomic.LoadUint32(&t.lastSenderReport),
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FractionLost: uint8((lost * 256) / expected),
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FractionLost: uint8((lost * 256) / expected),
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TotalLost: totalLost,
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TotalLost: totalLost,
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LastSequenceNumber: eseqno,
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LastSequenceNumber: eseqno,
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Jitter: t.jitter.Jitter(),
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LastSenderReport: lastSR,
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Delay: delay,
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})
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})
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}
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}
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c.mu.Unlock()
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c.mu.Unlock()
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return conn.pc.WriteRTCP([]rtcp.Packet{
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return conn.pc.WriteRTCP([]rtcp.Packet{
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&rtcp.ReceiverReport{
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&rtcp.ReceiverReport{
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SSRC: ssrc,
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SSRC: 1,
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Reports: reports,
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Reports: reports,
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},
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},
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})
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})
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@ -609,6 +620,9 @@ func rtcpDownListener(g *group, conn *downConnection, track *downTrack, s *webrt
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&track.loss,
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&track.loss,
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uint32(r.FractionLost),
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uint32(r.FractionLost),
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)
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)
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atomic.StoreUint32(
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&track.jitter,
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r.Jitter)
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}
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}
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}
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}
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case *rtcp.TransportLayerNack:
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case *rtcp.TransportLayerNack:
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16
group.go
16
group.go
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@ -17,6 +17,7 @@ import (
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"time"
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"time"
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"sfu/estimator"
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"sfu/estimator"
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"sfu/jitter"
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"sfu/mono"
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"sfu/mono"
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"sfu/packetcache"
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"sfu/packetcache"
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@ -24,12 +25,14 @@ import (
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)
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)
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type upTrack struct {
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type upTrack struct {
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track *webrtc.Track
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track *webrtc.Track
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rate *estimator.Estimator
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rate *estimator.Estimator
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cache *packetcache.Cache
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cache *packetcache.Cache
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maxBitrate uint64
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jitter *jitter.Estimator
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lastPLI uint64
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maxBitrate uint64
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lastSenderReport uint32
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lastPLI uint64
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lastSenderReport uint32
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lastSenderReportTime uint32
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mu sync.Mutex
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mu sync.Mutex
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local []*downTrack
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local []*downTrack
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@ -96,6 +99,7 @@ type downTrack struct {
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maxBitrate *timeStampedBitrate
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maxBitrate *timeStampedBitrate
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rate *estimator.Estimator
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rate *estimator.Estimator
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loss uint32
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loss uint32
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jitter uint32
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}
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}
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type downConnection struct {
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type downConnection struct {
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49
jitter/jitter.go
Normal file
49
jitter/jitter.go
Normal file
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@ -0,0 +1,49 @@
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package jitter
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import (
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"sync/atomic"
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"sfu/mono"
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)
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type Estimator struct {
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hz uint32
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timestamp uint32
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time uint32
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jitter uint32 // atomic
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}
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func New(hz uint32) *Estimator {
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return &Estimator{hz: hz}
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}
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func (e *Estimator) accumulate(timestamp, now uint32) {
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if e.time == 0 {
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e.timestamp = timestamp
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e.time = now
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}
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d := uint32((e.time - now) - (e.timestamp - timestamp))
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if d & 0x80000000 != 0 {
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d = uint32(-int32(d))
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}
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oldjitter := atomic.LoadUint32(&e.jitter)
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jitter := (oldjitter * 15 + d) / 16
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atomic.StoreUint32(&e.jitter, jitter)
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e.timestamp = timestamp
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e.time = now
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}
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func (e *Estimator) Accumulate(timestamp uint32) {
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e.accumulate(timestamp, uint32(mono.Now(e.hz)))
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}
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func (e *Estimator) Jitter() uint32 {
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return atomic.LoadUint32(&e.jitter)
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}
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func (e *Estimator) HZ() uint32 {
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return e.hz
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}
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37
jitter/jitter_test.go
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37
jitter/jitter_test.go
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@ -0,0 +1,37 @@
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package jitter
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import (
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"testing"
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)
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func TestJitter(t *testing.T) {
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e := New(48000)
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e.accumulate(0, 0)
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e.accumulate(1000, 1000)
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e.accumulate(2000, 2000)
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e.accumulate(3000, 3000)
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if e.Jitter() != 0 {
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t.Errorf("Expected 0, got %v", e.Jitter())
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}
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e = New(48000)
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e.accumulate(0, 0)
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e.accumulate(1000, 1000)
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e.accumulate(2000, 2200)
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e.accumulate(3000, 3000)
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if e.Jitter() != 23 {
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t.Errorf("Expected 23, got %v", e.Jitter())
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}
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e = New(48000)
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e.accumulate(0, 0)
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e.accumulate(1000, 1000)
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e.accumulate(2000, 1800)
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e.accumulate(3000, 3000)
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if e.Jitter() != 23 {
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t.Errorf("Expected 23, got %v", e.Jitter())
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}
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}
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