Ready-to-use SRT / WebRTC / RTSP / RTMP / LL-HLS media server and media proxy that allows to read, publish, proxy, record and playback video and audio streams.
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package formatprocessor //nolint:dupl
import (
"fmt"
"time"
"github.com/aler9/gortsplib/v2/pkg/format"
"github.com/aler9/gortsplib/v2/pkg/formatdecenc/rtpvp9"
"github.com/pion/rtp"
)
// UnitVP9 is a VP9 data unit.
type UnitVP9 struct {
RTPPackets []*rtp.Packet
NTP time.Time
PTS time.Duration
Frame []byte
}
// GetRTPPackets implements Unit.
func (d *UnitVP9) GetRTPPackets() []*rtp.Packet {
return d.RTPPackets
}
// GetNTP implements Unit.
func (d *UnitVP9) GetNTP() time.Time {
return d.NTP
}
type formatProcessorVP9 struct {
format *format.VP9
encoder *rtpvp9.Encoder
decoder *rtpvp9.Decoder
}
func newVP9(
forma *format.VP9,
allocateEncoder bool,
) (*formatProcessorVP9, error) {
t := &formatProcessorVP9{
format: forma,
}
if allocateEncoder {
t.encoder = forma.CreateEncoder()
}
return t, nil
}
func (t *formatProcessorVP9) Process(unit Unit, hasNonRTSPReaders bool) error { //nolint:dupl
tunit := unit.(*UnitVP9)
if tunit.RTPPackets != nil {
pkt := tunit.RTPPackets[0]
// remove padding
pkt.Header.Padding = false
pkt.PaddingSize = 0
if pkt.MarshalSize() > maxPacketSize {
return fmt.Errorf("payload size (%d) is greater than maximum allowed (%d)",
pkt.MarshalSize(), maxPacketSize)
}
// decode from RTP
if hasNonRTSPReaders {
if t.decoder == nil {
t.decoder = t.format.CreateDecoder()
}
frame, pts, err := t.decoder.Decode(pkt)
if err != nil {
if err == rtpvp9.ErrMorePacketsNeeded {
return nil
}
return err
}
tunit.Frame = frame
tunit.PTS = pts
}
// route packet as is
return nil
}
pkts, err := t.encoder.Encode(tunit.Frame, tunit.PTS)
if err != nil {
return err
}
tunit.RTPPackets = pkts
return nil
}