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.
You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.
 
 
 
 
 
 

259 lines
4.9 KiB

package core
import (
"bytes"
"time"
"github.com/aler9/gortsplib/v2/pkg/codecs/h264"
"github.com/aler9/gortsplib/v2/pkg/format"
"github.com/aler9/gortsplib/v2/pkg/formatdecenc/rtph264"
"github.com/pion/rtp"
)
// extract SPS and PPS without decoding RTP packets
func rtpH264ExtractSPSPPS(pkt *rtp.Packet) ([]byte, []byte) {
if len(pkt.Payload) < 1 {
return nil, nil
}
typ := h264.NALUType(pkt.Payload[0] & 0x1F)
switch typ {
case h264.NALUTypeSPS:
return pkt.Payload, nil
case h264.NALUTypePPS:
return nil, pkt.Payload
case h264.NALUTypeSTAPA:
payload := pkt.Payload[1:]
var sps []byte
var pps []byte
for len(payload) > 0 {
if len(payload) < 2 {
break
}
size := uint16(payload[0])<<8 | uint16(payload[1])
payload = payload[2:]
if size == 0 {
break
}
if int(size) > len(payload) {
return nil, nil
}
nalu := payload[:size]
payload = payload[size:]
typ = h264.NALUType(nalu[0] & 0x1F)
switch typ {
case h264.NALUTypeSPS:
sps = nalu
case h264.NALUTypePPS:
pps = nalu
}
}
return sps, pps
default:
return nil, nil
}
}
type dataH264 struct {
rtpPackets []*rtp.Packet
ntp time.Time
pts time.Duration
au [][]byte
}
func (d *dataH264) getRTPPackets() []*rtp.Packet {
return d.rtpPackets
}
func (d *dataH264) getNTP() time.Time {
return d.ntp
}
type formatProcessorH264 struct {
format *format.H264
encoder *rtph264.Encoder
decoder *rtph264.Decoder
}
func newFormatProcessorH264(
forma *format.H264,
allocateEncoder bool,
) (*formatProcessorH264, error) {
t := &formatProcessorH264{
format: forma,
}
if allocateEncoder {
t.encoder = forma.CreateEncoder()
}
return t, nil
}
func (t *formatProcessorH264) updateTrackParametersFromRTPPacket(pkt *rtp.Packet) {
sps, pps := rtpH264ExtractSPSPPS(pkt)
if sps != nil && !bytes.Equal(sps, t.format.SafeSPS()) {
t.format.SafeSetSPS(sps)
}
if pps != nil && !bytes.Equal(pps, t.format.SafePPS()) {
t.format.SafeSetPPS(pps)
}
}
func (t *formatProcessorH264) updateTrackParametersFromNALUs(nalus [][]byte) {
for _, nalu := range nalus {
typ := h264.NALUType(nalu[0] & 0x1F)
switch typ {
case h264.NALUTypeSPS:
if !bytes.Equal(nalu, t.format.SafeSPS()) {
t.format.SafeSetSPS(nalu)
}
case h264.NALUTypePPS:
if !bytes.Equal(nalu, t.format.SafePPS()) {
t.format.SafeSetPPS(nalu)
}
}
}
}
func (t *formatProcessorH264) remuxAccessUnit(nalus [][]byte) [][]byte {
addParameters := false
n := 0
for _, nalu := range nalus {
typ := h264.NALUType(nalu[0] & 0x1F)
switch typ {
case h264.NALUTypeSPS, h264.NALUTypePPS: // remove parameters
continue
case h264.NALUTypeAccessUnitDelimiter: // remove AUDs
continue
case h264.NALUTypeIDR: // prepend parameters if there's at least an IDR
if !addParameters {
addParameters = true
n += 2
}
}
n++
}
if n == 0 {
return nil
}
filteredNALUs := make([][]byte, n)
i := 0
if addParameters {
filteredNALUs[0] = t.format.SafeSPS()
filteredNALUs[1] = t.format.SafePPS()
i = 2
}
for _, nalu := range nalus {
typ := h264.NALUType(nalu[0] & 0x1F)
switch typ {
case h264.NALUTypeSPS, h264.NALUTypePPS:
continue
case h264.NALUTypeAccessUnitDelimiter:
continue
}
filteredNALUs[i] = nalu
i++
}
return filteredNALUs
}
func (t *formatProcessorH264) process(dat data, hasNonRTSPReaders bool) error { //nolint:dupl
tdata := dat.(*dataH264)
if tdata.rtpPackets != nil {
pkt := tdata.rtpPackets[0]
t.updateTrackParametersFromRTPPacket(pkt)
if t.encoder == nil {
// remove padding
pkt.Header.Padding = false
pkt.PaddingSize = 0
// RTP packets exceed maximum size: start re-encoding them
if pkt.MarshalSize() > maxPacketSize {
v1 := pkt.SSRC
v2 := pkt.SequenceNumber
v3 := pkt.Timestamp
t.encoder = &rtph264.Encoder{
PayloadType: pkt.PayloadType,
SSRC: &v1,
InitialSequenceNumber: &v2,
InitialTimestamp: &v3,
PacketizationMode: t.format.PacketizationMode,
}
t.encoder.Init()
}
}
// decode from RTP
if hasNonRTSPReaders || t.encoder != nil {
if t.decoder == nil {
t.decoder = t.format.CreateDecoder()
}
if t.encoder != nil {
tdata.rtpPackets = nil
}
// DecodeUntilMarker() is necessary, otherwise Encode() generates partial groups
au, pts, err := t.decoder.DecodeUntilMarker(pkt)
if err != nil {
if err == rtph264.ErrNonStartingPacketAndNoPrevious || err == rtph264.ErrMorePacketsNeeded {
return nil
}
return err
}
tdata.au = au
tdata.pts = pts
tdata.au = t.remuxAccessUnit(tdata.au)
}
// route packet as is
if t.encoder == nil {
return nil
}
} else {
t.updateTrackParametersFromNALUs(tdata.au)
tdata.au = t.remuxAccessUnit(tdata.au)
}
pkts, err := t.encoder.Encode(tdata.au, tdata.pts)
if err != nil {
return err
}
tdata.rtpPackets = pkts
return nil
}