Files
gortsplib/connclientpublish.go
2020-11-30 14:19:41 +01:00

202 lines
4.1 KiB
Go

package gortsplib
import (
"fmt"
"time"
"github.com/aler9/gortsplib/pkg/base"
)
// Announce writes an ANNOUNCE request and reads a Response.
func (c *ConnClient) Announce(u *base.URL, tracks Tracks) (*base.Response, error) {
err := c.checkState(map[connClientState]struct{}{
connClientStateInitial: {},
})
if err != nil {
return nil, err
}
// fill id and base url
for i, t := range tracks {
t.Id = i
t.BaseUrl = u
}
res, err := c.Do(&base.Request{
Method: base.ANNOUNCE,
URL: u,
Header: base.Header{
"Content-Type": base.HeaderValue{"application/sdp"},
},
Content: tracks.Write(),
})
if err != nil {
return nil, err
}
if res.StatusCode != base.StatusOK {
return nil, fmt.Errorf("bad status code: %d (%s)", res.StatusCode, res.StatusMessage)
}
c.streamUrl = u
c.state = connClientStatePreRecord
return res, nil
}
// Record writes a RECORD request and reads a Response.
// This can be called only after Announce() and Setup().
func (c *ConnClient) Record() (*base.Response, error) {
err := c.checkState(map[connClientState]struct{}{
connClientStatePreRecord: {},
})
if err != nil {
return nil, err
}
res, err := c.Do(&base.Request{
Method: base.RECORD,
URL: c.streamUrl,
})
if err != nil {
return nil, err
}
if res.StatusCode != base.StatusOK {
return nil, fmt.Errorf("bad status code: %d (%s)", res.StatusCode, res.StatusMessage)
}
c.state = connClientStateRecord
c.publishOpen = true
c.backgroundTerminate = make(chan struct{})
c.backgroundDone = make(chan struct{})
if *c.streamProtocol == StreamProtocolUDP {
go c.backgroundRecordUDP()
} else {
go c.backgroundRecordTCP()
}
return nil, nil
}
func (c *ConnClient) backgroundRecordUDP() {
defer close(c.backgroundDone)
defer func() {
c.publishWriteMutex.Lock()
defer c.publishWriteMutex.Unlock()
c.publishOpen = false
}()
// disable deadline
c.nconn.SetReadDeadline(time.Time{})
readerDone := make(chan error)
go func() {
for {
var res base.Response
err := res.Read(c.br)
if err != nil {
readerDone <- err
return
}
}
}()
reportTicker := time.NewTicker(clientSenderReportPeriod)
defer reportTicker.Stop()
for {
select {
case <-c.backgroundTerminate:
c.nconn.SetReadDeadline(time.Now())
<-readerDone
c.publishError = fmt.Errorf("terminated")
return
case <-reportTicker.C:
c.publishWriteMutex.Lock()
now := time.Now()
for trackId := range c.rtcpSenders {
r := c.rtcpSenders[trackId].Report(now)
if r != nil {
c.udpRtcpListeners[trackId].write(r)
}
}
c.publishWriteMutex.Unlock()
case err := <-readerDone:
c.publishError = err
return
}
}
}
func (c *ConnClient) backgroundRecordTCP() {
defer close(c.backgroundDone)
defer func() {
c.publishWriteMutex.Lock()
defer c.publishWriteMutex.Unlock()
c.publishOpen = false
}()
reportTicker := time.NewTicker(clientSenderReportPeriod)
defer reportTicker.Stop()
for {
select {
case <-c.backgroundTerminate:
return
case <-reportTicker.C:
c.publishWriteMutex.Lock()
now := time.Now()
for trackId := range c.rtcpSenders {
r := c.rtcpSenders[trackId].Report(now)
if r != nil {
c.nconn.SetWriteDeadline(time.Now().Add(c.d.WriteTimeout))
frame := base.InterleavedFrame{
TrackId: trackId,
StreamType: StreamTypeRtcp,
Content: r,
}
frame.Write(c.bw)
}
}
c.publishWriteMutex.Unlock()
}
}
}
// WriteFrame writes a frame.
// This can be called only after Record().
func (c *ConnClient) WriteFrame(trackId int, streamType StreamType, content []byte) error {
c.publishWriteMutex.RLock()
defer c.publishWriteMutex.RUnlock()
if !c.publishOpen {
return c.publishError
}
now := time.Now()
c.rtcpSenders[trackId].OnFrame(now, streamType, content)
if *c.streamProtocol == StreamProtocolUDP {
if streamType == StreamTypeRtp {
return c.udpRtpListeners[trackId].write(content)
}
return c.udpRtcpListeners[trackId].write(content)
}
c.nconn.SetWriteDeadline(now.Add(c.d.WriteTimeout))
frame := base.InterleavedFrame{
TrackId: trackId,
StreamType: streamType,
Content: content,
}
return frame.Write(c.bw)
}