av/revid/senders.go

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/*
NAME
senders.go
DESCRIPTION
See Readme.md
AUTHORS
Saxon A. Nelson-Milton <saxon@ausocean.org>
Alan Noble <alan@ausocean.org>
LICENSE
revid is Copyright (C) 2017-2018 the Australian Ocean Lab (AusOcean)
It is free software: you can redistribute it and/or modify them
under the terms of the GNU General Public License as published by the
Free Software Foundation, either version 3 of the License, or (at your
option) any later version.
It is distributed in the hope that it will be useful, but WITHOUT
ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
for more details.
You should have received a copy of the GNU General Public License
along with revid in gpl.txt. If not, see http://www.gnu.org/licenses.
*/
package revid
import (
"fmt"
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"io"
"net"
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"os"
"os/exec"
"strconv"
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"bitbucket.org/ausocean/av/rtmp"
"bitbucket.org/ausocean/av/stream/mts"
"bitbucket.org/ausocean/av/stream/rtp"
"bitbucket.org/ausocean/iot/pi/netsender"
"bitbucket.org/ausocean/utils/logger"
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"bitbucket.org/ausocean/utils/ring"
"github.com/Comcast/gots/packet"
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)
// loadSender is a destination to send a *ring.Chunk to.
// When a loadSender has finished using the *ring.Chunk
// it must be Closed.
type loadSender interface {
// load assigns the *ring.Chunk to the loadSender.
// The load call may fail, but must not mutate the
// the chunk.
load(*ring.Chunk) error
// send performs a destination-specific send
// operation. It must not mutate the chunk.
send() error
// release releases the *ring.Chunk.
release()
// close cleans up after use of the loadSender.
close() error
}
// restart is an optional interface for loadSenders that
// can restart their connection.
type restarter interface {
restart() error
}
// fileSender implements loadSender for a local file destination.
type fileSender struct {
file *os.File
chunk *ring.Chunk
}
func newFileSender(path string) (*fileSender, error) {
f, err := os.Create(path)
if err != nil {
return nil, err
}
return &fileSender{file: f}, nil
}
func (s *fileSender) load(c *ring.Chunk) error {
s.chunk = c
return nil
}
func (s *fileSender) send() error {
_, err := s.chunk.WriteTo(s.file)
return err
}
func (s *fileSender) release() {
s.chunk.Close()
s.chunk = nil
}
func (s *fileSender) close() error {
return s.file.Close()
}
// mtsSender provides sending capability specifically for use with
// mpegts packetization. It handles the construction of appropriately lengthed
// clips based on PSI. It also fixes accounts for discontinuities by setting
// the discontinuity indicator for the first packet of a clip.
type mtsSender struct {
ls loadSender
buf []byte
pkt [mts.PacketSize]byte
fail bool
discard bool
repairer *mts.DiscontinuityRepairer
chunk *ring.Chunk
}
// newmtsSender returns a new mtsSender.
func newMtsSender(s loadSender, log func(lvl int8, msg string, args ...interface{})) *mtsSender {
return &mtsSender{
ls: s,
repairer: mts.NewDiscontinuityRepairer(),
}
}
// load takes a *ring.Chunk and extracts bytes copying into s.pkt for use by the sender.
func (s *mtsSender) load(c *ring.Chunk) error {
s.chunk = c
return nil
}
// send checks the most recently loaded packet and if it is a PAT then the clip
// in s.buf is sent, otherwise the packet is added to s.buf.
func (s *mtsSender) send() error {
copy(s.pkt[:], s.chunk.Bytes())
p := (*packet.Packet)(&s.pkt)
pid := p.PID()
cc := p.ContinuityCounter()
if s.discard {
if pid != mts.PatPid {
return nil
}
s.discard = false
}
if pid == mts.VideoPid {
if cc != s.repairer.expectedCC(pid) {
s.discard = true
s.buf = s.buf[:0]
return nil
}
}
if s.fail || (((*packet.Packet)(&s.pkt)).PID() == mts.PatPid && len(s.buf) != 0) {
err := s.fixAndSend()
if err != nil {
s.failed()
return err
}
s.fail = false
s.buf = s.buf[:0]
}
s.buf = append(s.buf, s.chunk.Bytes()...)
return nil
}
// failed sets the s.fail flag to true, and let's the discontinuity
// repairer know that there has been a failed send.
func (s *mtsSender) failed() {
s.fail = true
s.repairer.Failed()
}
// fixAndSend uses the discontinuity repairer to ensure there is not a
// discontinuity, and if so sets the discontinuity indicator of the PAT packet.
func (s *mtsSender) fixAndSend() error {
err := s.repairer.Repair(s.buf)
if err != nil {
return err
}
err = s.ls.load(ring.NewChunk(s.buf))
if err != nil {
return err
}
err = s.ls.send()
if err != nil {
return err
}
s.ls.release()
return nil
}
func (s *mtsSender) close() error { return nil }
// release will set the s.fail flag to fals and clear the buffer if
// the previous send was a fail.
func (s *mtsSender) release() {
if s.fail {
s.fail = false
s.buf = s.buf[:0]
}
}
// httpSender implements loadSender for posting HTTP to NetReceiver
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type httpSender struct {
client *netsender.Sender
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log func(lvl int8, msg string, args ...interface{})
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chunk *ring.Chunk
}
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func newHttpSender(ns *netsender.Sender, log func(lvl int8, msg string, args ...interface{})) *httpSender {
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return &httpSender{
client: ns,
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log: log,
}
}
func (s *httpSender) load(c *ring.Chunk) error {
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s.chunk = c
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return nil
}
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func (s *httpSender) send() error {
if s.chunk == nil {
// Do not retry with httpSender,
// so just return without error
// if the chunk has been cleared.
return nil
}
return s.httpSend(s.chunk.Bytes())
}
func (s *httpSender) httpSend(d []byte) error {
// Only send if "V0" is configured as an input.
send := false
ip := s.client.Param("ip")
pins := netsender.MakePins(ip, "V")
for i, pin := range pins {
if pin.Name == "V0" {
send = true
pins[i].Value = len(d)
pins[i].Data = d
pins[i].MimeType = "video/mp2t"
break
}
}
if !send {
return nil
}
var err error
var reply string
reply, _, err = s.client.Send(netsender.RequestRecv, pins)
if err != nil {
return err
}
return s.extractMeta(reply)
}
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// extractMeta looks at a reply at extracts any time or location data - then used
// to update time and location information in the mpegts encoder.
func (s *httpSender) extractMeta(r string) error {
dec, err := netsender.NewJSONDecoder(r)
if err != nil {
return nil
}
// Extract time from reply
t, err := dec.Int("ts")
if err != nil {
s.log(logger.Warning, pkg+"No timestamp in reply")
} else {
s.log(logger.Debug, fmt.Sprintf("%v got timestamp: %v", pkg, t))
mts.Meta.Add("ts", strconv.Itoa(t))
}
// Extract location from reply
g, err := dec.String("ll")
if err != nil {
s.log(logger.Warning, pkg+"No location in reply")
} else {
s.log(logger.Debug, fmt.Sprintf("%v got location: %v", pkg, g))
mts.Meta.Add("loc", g)
}
return nil
}
func (s *httpSender) release() {
// We will not retry, so release
// the chunk and clear it now.
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s.chunk.Close()
s.chunk = nil
}
func (s *httpSender) close() error { return nil }
// ffmpegSender implements loadSender for an FFMPEG RTMP destination.
type ffmpegSender struct {
ffmpeg io.WriteCloser
chunk *ring.Chunk
}
func newFfmpegSender(url, framerate string) (*ffmpegSender, error) {
cmd := exec.Command(ffmpegPath,
"-f", "h264",
"-r", framerate,
"-i", "-",
"-f", "lavfi",
"-i", "aevalsrc=0",
"-fflags", "nobuffer",
"-vcodec", "copy",
"-acodec", "aac",
"-map", "0:0",
"-map", "1:0",
"-strict", "experimental",
"-f", "flv",
url,
)
w, err := cmd.StdinPipe()
if err != nil {
return nil, err
}
err = cmd.Start()
if err != nil {
return nil, err
}
return &ffmpegSender{ffmpeg: w}, nil
}
func (s *ffmpegSender) load(c *ring.Chunk) error {
s.chunk = c
return nil
}
func (s *ffmpegSender) send() error {
_, err := s.chunk.WriteTo(s.ffmpeg)
return err
}
func (s *ffmpegSender) release() {
s.chunk.Close()
s.chunk = nil
}
func (s *ffmpegSender) close() error {
return s.ffmpeg.Close()
}
// rtmpSender implements loadSender for a native RTMP destination.
type rtmpSender struct {
conn *rtmp.Conn
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url string
timeout uint
retries int
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log func(lvl int8, msg string, args ...interface{})
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chunk *ring.Chunk
}
var _ restarter = (*rtmpSender)(nil)
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func newRtmpSender(url string, timeout uint, retries int, log func(lvl int8, msg string, args ...interface{})) (*rtmpSender, error) {
var conn *rtmp.Conn
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var err error
for n := 0; n < retries; n++ {
conn, err = rtmp.Dial(url, timeout, log)
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if err == nil {
break
}
log(logger.Error, err.Error())
conn.Close()
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if n < retries-1 {
log(logger.Info, pkg+"retry rtmp connection")
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}
}
if err != nil {
return nil, err
}
s := &rtmpSender{
conn: conn,
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url: url,
timeout: timeout,
retries: retries,
log: log,
}
return s, nil
}
func (s *rtmpSender) load(c *ring.Chunk) error {
s.chunk = c
return nil
}
func (s *rtmpSender) send() error {
_, err := s.chunk.WriteTo(s.conn)
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return err
}
func (s *rtmpSender) release() {
s.chunk.Close()
s.chunk = nil
}
func (s *rtmpSender) restart() error {
err := s.conn.Close()
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if err != nil {
return err
}
for n := 0; n < s.retries; n++ {
s.conn, err = rtmp.Dial(s.url, s.timeout, s.log)
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if err == nil {
break
}
s.log(logger.Error, err.Error())
s.conn.Close()
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if n < s.retries-1 {
s.log(logger.Info, pkg+"retry rtmp connection")
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}
}
return err
}
func (s *rtmpSender) close() error {
return s.conn.Close()
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}
// udpSender implements loadSender for a native udp destination.
type udpSender struct {
conn net.Conn
log func(lvl int8, msg string, args ...interface{})
chunk *ring.Chunk
}
func newUdpSender(addr string, log func(lvl int8, msg string, args ...interface{})) (*udpSender, error) {
conn, err := net.Dial("udp", addr)
if err != nil {
return nil, err
}
return &udpSender{
conn: conn,
log: log,
}, nil
}
func (s *udpSender) load(c *ring.Chunk) error {
s.chunk = c
return nil
}
func (s *udpSender) send() error {
_, err := s.chunk.WriteTo(s.conn)
return err
}
func (s *udpSender) release() {
s.chunk.Close()
s.chunk = nil
}
func (s *udpSender) close() error { return nil }
// TODO: Write restart func for rtpSender
// rtpSender implements loadSender for a native udp destination with rtp packetization.
type rtpSender struct {
log func(lvl int8, msg string, args ...interface{})
encoder *rtp.Encoder
chunk *ring.Chunk
}
func newRtpSender(addr string, log func(lvl int8, msg string, args ...interface{}), fps uint) (*rtpSender, error) {
conn, err := net.Dial("udp", addr)
if err != nil {
return nil, err
}
s := &rtpSender{
log: log,
encoder: rtp.NewEncoder(conn, int(fps)),
}
return s, nil
}
func (s *rtpSender) load(c *ring.Chunk) error {
s.chunk = c
return nil
}
func (s *rtpSender) close() error { return nil }
func (s *rtpSender) release() {}
func (s *rtpSender) send() error {
_, err := s.chunk.WriteTo(s.encoder)
return err
}