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client_udp_listener.go
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client_udp_listener.go
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package gortsplib
import (
"crypto/rand"
"math/big"
"net"
"strconv"
"sync/atomic"
"time"
"github.com/bluenviron/gortsplib/v4/pkg/multicast"
)
func int64Ptr(v int64) *int64 {
return &v
}
func randInRange(maxVal int) (int, error) {
b := big.NewInt(int64(maxVal + 1))
n, err := rand.Int(rand.Reader, b)
if err != nil {
return 0, err
}
return int(n.Int64()), nil
}
func allocateUDPListenerPair(c *Client) (*clientUDPListener, *clientUDPListener, error) {
// choose two consecutive ports in range 65535-10000
// RTP port must be even and RTCP port odd
for {
v, err := randInRange((65535 - 10000) / 2)
if err != nil {
return nil, nil, err
}
rtpPort := v*2 + 10000
rtcpPort := rtpPort + 1
rtpListener := &clientUDPListener{
c: c,
multicastEnable: false,
multicastSourceIP: nil,
address: net.JoinHostPort("", strconv.FormatInt(int64(rtpPort), 10)),
}
err = rtpListener.initialize()
if err != nil {
continue
}
rtcpListener := &clientUDPListener{
c: c,
multicastEnable: false,
multicastSourceIP: nil,
address: net.JoinHostPort("", strconv.FormatInt(int64(rtcpPort), 10)),
}
err = rtcpListener.initialize()
if err != nil {
rtpListener.close()
continue
}
return rtpListener, rtcpListener, nil
}
}
type packetConn interface {
net.PacketConn
SetReadBuffer(int) error
}
type clientUDPListener struct {
c *Client
multicastEnable bool
multicastSourceIP net.IP
address string
pc packetConn
readFunc readFunc
readIP net.IP
readPort int
writeAddr *net.UDPAddr
running bool
lastPacketTime *int64
done chan struct{}
}
func (u *clientUDPListener) initialize() error {
if u.multicastEnable {
intf, err := multicast.InterfaceForSource(u.multicastSourceIP)
if err != nil {
return err
}
u.pc, err = multicast.NewSingleConn(intf, u.address, u.c.ListenPacket)
if err != nil {
return err
}
} else {
tmp, err := u.c.ListenPacket(restrictNetwork("udp", u.address))
if err != nil {
return err
}
u.pc = tmp.(*net.UDPConn)
}
err := u.pc.SetReadBuffer(udpKernelReadBufferSize)
if err != nil {
u.pc.Close()
return err
}
u.lastPacketTime = int64Ptr(0)
return nil
}
func (u *clientUDPListener) close() {
if u.running {
u.stop()
}
u.pc.Close()
}
func (u *clientUDPListener) port() int {
return u.pc.LocalAddr().(*net.UDPAddr).Port
}
func (u *clientUDPListener) start() {
u.running = true
u.pc.SetReadDeadline(time.Time{})
u.done = make(chan struct{})
go u.run()
}
func (u *clientUDPListener) stop() {
u.pc.SetReadDeadline(time.Now())
<-u.done
u.running = false
}
func (u *clientUDPListener) run() {
defer close(u.done)
var buf []byte
createNewBuffer := func() {
buf = make([]byte, udpMaxPayloadSize+1)
}
createNewBuffer()
for {
n, addr, err := u.pc.ReadFrom(buf)
if err != nil {
return
}
uaddr := addr.(*net.UDPAddr)
if !u.readIP.Equal(uaddr.IP) {
continue
}
// in case of anyPortEnable, store the port of the first packet we receive.
// this reduces security issues
if u.c.AnyPortEnable && u.readPort == 0 {
u.readPort = uaddr.Port
} else if u.readPort != uaddr.Port {
continue
}
now := u.c.timeNow()
atomic.StoreInt64(u.lastPacketTime, now.Unix())
if u.readFunc(buf[:n]) {
createNewBuffer()
}
}
}
func (u *clientUDPListener) write(payload []byte) error {
// no mutex is needed here since Write() has an internal lock.
// https://github.com/golang/go/issues/27203#issuecomment-534386117
u.pc.SetWriteDeadline(time.Now().Add(u.c.WriteTimeout))
_, err := u.pc.WriteTo(payload, u.writeAddr)
return err
}