mirror of
https://github.com/bluenviron/mediamtx
synced 2025-01-05 22:39:50 +00:00
263 lines
5.0 KiB
Go
263 lines
5.0 KiB
Go
package formatprocessor
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import (
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"bytes"
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"time"
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"github.com/aler9/gortsplib/v2/pkg/codecs/h264"
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"github.com/aler9/gortsplib/v2/pkg/format"
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"github.com/aler9/gortsplib/v2/pkg/formatdecenc/rtph264"
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"github.com/pion/rtp"
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)
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// extract SPS and PPS without decoding RTP packets
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func rtpH264ExtractSPSPPS(pkt *rtp.Packet) ([]byte, []byte) {
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if len(pkt.Payload) < 1 {
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return nil, nil
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}
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typ := h264.NALUType(pkt.Payload[0] & 0x1F)
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switch typ {
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case h264.NALUTypeSPS:
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return pkt.Payload, nil
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case h264.NALUTypePPS:
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return nil, pkt.Payload
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case h264.NALUTypeSTAPA:
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payload := pkt.Payload[1:]
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var sps []byte
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var pps []byte
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for len(payload) > 0 {
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if len(payload) < 2 {
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break
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}
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size := uint16(payload[0])<<8 | uint16(payload[1])
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payload = payload[2:]
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if size == 0 {
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break
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}
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if int(size) > len(payload) {
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return nil, nil
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}
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nalu := payload[:size]
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payload = payload[size:]
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typ = h264.NALUType(nalu[0] & 0x1F)
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switch typ {
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case h264.NALUTypeSPS:
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sps = nalu
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case h264.NALUTypePPS:
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pps = nalu
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}
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}
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return sps, pps
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default:
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return nil, nil
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}
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}
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// DataH264 is a H264 data unit.
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type DataH264 struct {
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RTPPackets []*rtp.Packet
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NTP time.Time
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PTS time.Duration
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AU [][]byte
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}
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// GetRTPPackets implements Data.
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func (d *DataH264) GetRTPPackets() []*rtp.Packet {
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return d.RTPPackets
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}
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// GetNTP implements Data.
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func (d *DataH264) GetNTP() time.Time {
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return d.NTP
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}
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type formatProcessorH264 struct {
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format *format.H264
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encoder *rtph264.Encoder
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decoder *rtph264.Decoder
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}
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func newH264(
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forma *format.H264,
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allocateEncoder bool,
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) (*formatProcessorH264, error) {
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t := &formatProcessorH264{
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format: forma,
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}
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if allocateEncoder {
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t.encoder = forma.CreateEncoder()
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}
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return t, nil
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}
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func (t *formatProcessorH264) updateTrackParametersFromRTPPacket(pkt *rtp.Packet) {
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sps, pps := rtpH264ExtractSPSPPS(pkt)
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if sps != nil && !bytes.Equal(sps, t.format.SafeSPS()) {
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t.format.SafeSetSPS(sps)
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}
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if pps != nil && !bytes.Equal(pps, t.format.SafePPS()) {
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t.format.SafeSetPPS(pps)
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}
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}
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func (t *formatProcessorH264) updateTrackParametersFromNALUs(nalus [][]byte) {
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for _, nalu := range nalus {
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typ := h264.NALUType(nalu[0] & 0x1F)
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switch typ {
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case h264.NALUTypeSPS:
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if !bytes.Equal(nalu, t.format.SafeSPS()) {
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t.format.SafeSetSPS(nalu)
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}
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case h264.NALUTypePPS:
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if !bytes.Equal(nalu, t.format.SafePPS()) {
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t.format.SafeSetPPS(nalu)
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}
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}
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}
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}
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func (t *formatProcessorH264) remuxAccessUnit(nalus [][]byte) [][]byte {
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addParameters := false
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n := 0
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for _, nalu := range nalus {
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typ := h264.NALUType(nalu[0] & 0x1F)
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switch typ {
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case h264.NALUTypeSPS, h264.NALUTypePPS: // remove parameters
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continue
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case h264.NALUTypeAccessUnitDelimiter: // remove AUDs
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continue
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case h264.NALUTypeIDR: // prepend parameters if there's at least an IDR
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if !addParameters {
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addParameters = true
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n += 2
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}
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}
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n++
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}
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if n == 0 {
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return nil
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}
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filteredNALUs := make([][]byte, n)
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i := 0
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if addParameters {
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filteredNALUs[0] = t.format.SafeSPS()
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filteredNALUs[1] = t.format.SafePPS()
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i = 2
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}
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for _, nalu := range nalus {
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typ := h264.NALUType(nalu[0] & 0x1F)
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switch typ {
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case h264.NALUTypeSPS, h264.NALUTypePPS:
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continue
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case h264.NALUTypeAccessUnitDelimiter:
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continue
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}
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filteredNALUs[i] = nalu
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i++
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}
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return filteredNALUs
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}
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func (t *formatProcessorH264) Process(dat Data, hasNonRTSPReaders bool) error { //nolint:dupl
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tdata := dat.(*DataH264)
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if tdata.RTPPackets != nil {
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pkt := tdata.RTPPackets[0]
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t.updateTrackParametersFromRTPPacket(pkt)
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if t.encoder == nil {
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// remove padding
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pkt.Header.Padding = false
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pkt.PaddingSize = 0
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// RTP packets exceed maximum size: start re-encoding them
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if pkt.MarshalSize() > maxPacketSize {
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v1 := pkt.SSRC
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v2 := pkt.SequenceNumber
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v3 := pkt.Timestamp
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t.encoder = &rtph264.Encoder{
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PayloadType: pkt.PayloadType,
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SSRC: &v1,
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InitialSequenceNumber: &v2,
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InitialTimestamp: &v3,
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PacketizationMode: t.format.PacketizationMode,
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}
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t.encoder.Init()
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}
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}
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// decode from RTP
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if hasNonRTSPReaders || t.encoder != nil {
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if t.decoder == nil {
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t.decoder = t.format.CreateDecoder()
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}
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if t.encoder != nil {
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tdata.RTPPackets = nil
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}
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// DecodeUntilMarker() is necessary, otherwise Encode() generates partial groups
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au, PTS, err := t.decoder.DecodeUntilMarker(pkt)
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if err != nil {
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if err == rtph264.ErrNonStartingPacketAndNoPrevious || err == rtph264.ErrMorePacketsNeeded {
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return nil
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}
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return err
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}
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tdata.AU = au
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tdata.PTS = PTS
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tdata.AU = t.remuxAccessUnit(tdata.AU)
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}
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// route packet as is
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if t.encoder == nil {
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return nil
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}
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} else {
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t.updateTrackParametersFromNALUs(tdata.AU)
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tdata.AU = t.remuxAccessUnit(tdata.AU)
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}
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pkts, err := t.encoder.Encode(tdata.AU, tdata.PTS)
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if err != nil {
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return err
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}
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tdata.RTPPackets = pkts
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return nil
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}
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