mirror of https://bitbucket.org/ausocean/av.git
532 lines
15 KiB
Go
532 lines
15 KiB
Go
/*
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NAME
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revid.go
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DESCRIPTION
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See Readme.md
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AUTHORS
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Saxon A. Nelson-Milton <saxon@ausocean.org>
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Alan Noble <alan@ausocean.org>
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LICENSE
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revid is Copyright (C) 2017-2018 the Australian Ocean Lab (AusOcean)
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It is free software: you can redistribute it and/or modify them
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under the terms of the GNU General Public License as published by the
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Free Software Foundation, either version 3 of the License, or (at your
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option) any later version.
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It is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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for more details.
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You should have received a copy of the GNU General Public License
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along with revid in gpl.txt. If not, see http://www.gnu.org/licenses.
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*/
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// revid is a testbed for re-muxing and re-directing video streams as MPEG-TS over various protocols.
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package revid
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import (
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"errors"
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"fmt"
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"io"
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"os"
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"os/exec"
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"strconv"
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"strings"
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"time"
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"bitbucket.org/ausocean/av/stream"
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"bitbucket.org/ausocean/av/stream/flv"
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"bitbucket.org/ausocean/av/stream/lex"
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"bitbucket.org/ausocean/av/stream/mts"
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"bitbucket.org/ausocean/av/stream/rtp"
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"bitbucket.org/ausocean/iot/pi/netsender"
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"bitbucket.org/ausocean/utils/ring"
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"bitbucket.org/ausocean/utils/smartlogger"
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)
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// Misc constants
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const (
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clipDuration = 1 * time.Second
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mp2tPacketSize = 188 // MPEG-TS packet size
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mp2tMaxPackets = int(clipDuration * 2016 / time.Second) // # first multiple of 7 and 8 greater than 2000
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ringBufferSize = 10000
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ringBufferElementSize = 150000
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writeTimeout = 10 * time.Millisecond
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readTimeout = 10 * time.Millisecond
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httpTimeout = 5 * time.Second
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packetsPerFrame = 7
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bitrateTime = 1 * time.Minute
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mjpegParserInChanLen = 100000
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ffmpegPath = "/usr/local/bin/ffmpeg"
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rtmpConnectionTimout = 10
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outputChanSize = 1000
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cameraRetryPeriod = 5 * time.Second
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sendFailedDelay = 5 * time.Millisecond
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maxSendFailedErrorCount = 500
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clipSizeThreshold = 11
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rtmpConnectionMaxTries = 5
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raspividNoOfTries = 3
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sendingWaitTime = 5 * time.Millisecond
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pkg = "revid:"
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)
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// Log Types
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const (
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Error = "Error"
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Warning = "Warning"
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Info = "Info"
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Debug = "Debug"
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Detail = "Detail"
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)
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type Logger interface {
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SetLevel(int8)
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Log(level int8, message string, params ...interface{})
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}
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// Revid provides methods to control a revid session; providing methods
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// to start, stop and change the state of an instance using the Config struct.
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type Revid struct {
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// config holds the Revid configuration.
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// For historical reasons it also handles logging.
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// FIXME(kortschak): The relationship of concerns
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// in config/ns is weird.
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config Config
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// ns holds the netsender.Sender responsible for HTTP.
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ns *netsender.Sender
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// setupInput holds the current approach to setting up
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// the input stream.
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setupInput func() error
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// cmd is the exec'd process that may be used to produce
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// the input stream.
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// FIXME(kortschak): This should not exist. Replace this
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// with a context.Context cancellation.
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cmd *exec.Cmd
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// lexTo, encoder and packer handle transcoding the input stream.
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lexTo func(dst stream.Encoder, src io.Reader, delay time.Duration) error
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encoder stream.Encoder
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packer packer
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// buffer handles passing frames from the transcoder
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// to the target destination.
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buffer *ring.Buffer
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// destination is the target endpoint.
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destination []loadSender
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// bitrate hold the last send bitrate calculation result.
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bitrate int
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// isRunning is a loaded and cocked foot-gun.
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isRunning bool
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}
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// packer takes data segments and packs them into clips
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// of the number frames specified in the owners config.
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type packer struct {
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owner *Revid
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packetCount int
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}
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// Write implements the io.Writer interface.
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//
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// Unless the ring buffer returns an error, all writes
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// are deemed to be successful, although a successful
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// write may include a dropped frame.
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func (p *packer) Write(frame []byte) (int, error) {
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if len(frame) > ringBufferElementSize {
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p.owner.config.Logger.Log(smartlogger.Warning, pkg+"frame was too big", "frame size", len(frame))
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return len(frame), nil
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}
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n, err := p.owner.buffer.Write(frame)
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if err != nil {
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if err == ring.ErrDropped {
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p.owner.config.Logger.Log(smartlogger.Warning, pkg+"dropped frame", "frame size", len(frame))
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return len(frame), nil
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}
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p.owner.config.Logger.Log(smartlogger.Error, pkg+"unexpected ring buffer write error", "error", err.Error())
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return n, err
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}
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p.packetCount++
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if p.packetCount >= p.owner.config.FramesPerClip {
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p.owner.buffer.Flush()
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p.packetCount = 0
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}
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return len(frame), nil
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}
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// New returns a pointer to a new Revid with the desired configuration, and/or
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// an error if construction of the new instance was not successful.
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func New(c Config, ns *netsender.Sender) (*Revid, error) {
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r := Revid{ns: ns}
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r.buffer = ring.NewBuffer(ringBufferSize, ringBufferElementSize, writeTimeout)
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r.packer.owner = &r
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err := r.reset(c)
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if err != nil {
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return nil, err
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}
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return &r, nil
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}
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// Bitrate returns the result of the most recent bitrate check.
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func (r *Revid) Bitrate() int {
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return r.bitrate
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}
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// Config returns the Revid's config.
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func (r *Revid) Config() *Config {
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// FIXME(kortschak): This is a massive footgun and should not exist.
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// Since the config's fields are accessed in running goroutines, any
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// mutation is a data race. With bad luck a data race is possible by
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// reading the returned value since it is possible for the running
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// Ravid to mutate the config it holds.
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return &r.config
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}
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// reset swaps the current config of a Revid with the passed
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// configuration; checking validity and returning errors if not valid.
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func (r *Revid) reset(config Config) error {
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r.config.Logger = config.Logger
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err := config.Validate(r)
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if err != nil {
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return errors.New("Config struct is bad: " + err.Error())
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}
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r.config = config
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for _, destination := range r.destination {
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if destination != nil {
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err = destination.close()
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if err != nil {
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return err
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}
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}
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}
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if r.config.Output2 != 0 {
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r.destination = make([]loadSender, 2)
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} else {
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r.destination = make([]loadSender, 1)
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}
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switch r.config.Output1 {
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case File:
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s, err := newFileSender(config.OutputFileName)
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if err != nil {
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return err
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}
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r.destination[0] = s
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case FfmpegRtmp:
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s, err := newFfmpegSender(config.RtmpUrl, r.config.FrameRate)
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if err != nil {
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return err
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}
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r.destination[0] = s
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case Rtmp:
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s, err := newRtmpSender(config.RtmpUrl, rtmpConnectionTimout, rtmpConnectionMaxTries, r.config.Logger.Log)
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if err != nil {
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return err
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}
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r.destination[0] = s
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case Http:
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r.destination[0] = newHttpSender(r.ns, r.config.Logger.Log)
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case Rtp, Udp:
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s, err := newUdpSender(r.config.RtpAddress, r.config.Logger.Log)
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if err != nil {
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return err
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}
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r.destination[0] = s
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}
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switch r.config.Output2 {
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case File:
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s, err := newFileSender(config.OutputFileName)
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if err != nil {
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return err
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}
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r.destination[1] = s
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case FfmpegRtmp:
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s, err := newFfmpegSender(config.RtmpUrl, r.config.FrameRate)
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if err != nil {
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return err
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}
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r.destination[1] = s
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case Rtmp:
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s, err := newRtmpSender(config.RtmpUrl, rtmpConnectionTimout, rtmpConnectionMaxTries, r.config.Logger.Log)
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if err != nil {
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return err
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}
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r.destination[1] = s
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case Http:
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r.destination[1] = newHttpSender(r.ns, r.config.Logger.Log)
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case Rtp, Udp:
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s, err := newUdpSender(r.config.RtpAddress, r.config.Logger.Log)
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if err != nil {
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return err
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}
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r.destination[1] = s
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}
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switch r.config.Input {
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case Raspivid:
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r.setupInput = r.startRaspivid
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case File:
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r.setupInput = r.setupInputForFile
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}
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switch r.config.InputCodec {
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case H264:
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r.config.Logger.Log(smartlogger.Info, pkg+"using H264 lexer")
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r.lexTo = lex.H264
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case Mjpeg:
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r.config.Logger.Log(smartlogger.Info, pkg+"using MJPEG lexer")
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r.lexTo = lex.MJPEG
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}
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switch r.config.Packetization {
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case None:
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// no packetisation - Revid output chan grabs raw data straight from parser
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r.lexTo = func(dst stream.Encoder, src io.Reader, _ time.Duration) error {
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for {
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var b [4 << 10]byte
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n, rerr := src.Read(b[:])
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werr := dst.Encode(b[:n])
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if rerr != nil {
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return rerr
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}
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if werr != nil {
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return werr
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}
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}
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}
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r.encoder = stream.NopEncoder(&r.packer)
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case Mpegts:
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r.config.Logger.Log(smartlogger.Info, pkg+"using MPEGTS packetisation")
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frameRate, _ := strconv.ParseFloat(r.config.FrameRate, 64)
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r.encoder = mts.NewEncoder(&r.packer, frameRate)
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case Flv:
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r.config.Logger.Log(smartlogger.Info, pkg+"using FLV packetisation")
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frameRate, _ := strconv.Atoi(r.config.FrameRate)
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r.encoder, err = flv.NewEncoder(&r.packer, true, true, frameRate)
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if err != nil {
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return err
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}
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case MpegtsRtp:
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r.config.Logger.Log(smartlogger.Info, pkg+"using RTP packetisation")
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frameRate, _ := strconv.Atoi(r.config.FrameRate)
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r.encoder = mts.NewEncoder(rtp.NewEncoder(&r.packer, frameRate), float64(frameRate))
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}
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return nil
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}
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// IsRunning returns whether the receiver is running.
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func (r *Revid) IsRunning() bool {
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return r.isRunning
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}
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// Start invokes a Revid to start processing video from a defined input
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// and packetising (if theres packetization) to a defined output.
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func (r *Revid) Start() {
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if r.isRunning {
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r.config.Logger.Log(smartlogger.Warning, pkg+"revid.Start() called but revid already running")
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return
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}
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r.config.Logger.Log(smartlogger.Info, pkg+"starting Revid")
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r.config.Logger.Log(smartlogger.Debug, pkg+"setting up output")
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r.isRunning = true
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r.config.Logger.Log(smartlogger.Info, pkg+"starting output routine")
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go r.outputClips()
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r.config.Logger.Log(smartlogger.Info, pkg+"setting up input and receiving content")
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go r.setupInput()
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}
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// Stop halts any processing of video data from a camera or file
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func (r *Revid) Stop() {
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if !r.isRunning {
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r.config.Logger.Log(smartlogger.Warning, pkg+"revid.Stop() called but revid not running")
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return
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}
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r.config.Logger.Log(smartlogger.Info, pkg+"stopping revid")
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r.isRunning = false
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r.config.Logger.Log(smartlogger.Info, pkg+"killing input proccess")
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// If a cmd process is running, we kill!
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if r.cmd != nil && r.cmd.Process != nil {
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r.cmd.Process.Kill()
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}
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}
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// outputClips takes the clips produced in the packClips method and outputs them
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// to the desired output defined in the revid config
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func (r *Revid) outputClips() {
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lastTime := time.Now()
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var count int
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loop:
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for r.isRunning {
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// If the ring buffer has something we can read and send off
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chunk, err := r.buffer.Next(readTimeout)
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switch err {
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case nil:
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// Do nothing.
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case ring.ErrTimeout:
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r.config.Logger.Log(smartlogger.Warning, pkg+"ring buffer read timeout")
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continue
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default:
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r.config.Logger.Log(smartlogger.Error, pkg+"unexpected error", "error", err.Error())
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fallthrough
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case io.EOF:
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break loop
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}
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count += chunk.Len()
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r.config.Logger.Log(smartlogger.Debug, pkg+"about to send")
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for i, destination := range r.destination {
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err = destination.load(chunk)
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if err != nil {
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r.config.Logger.Log(smartlogger.Error, pkg+"failed to load clip to output"+strconv.Itoa(i))
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}
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}
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for i, dest := range r.destination {
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err = dest.send()
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if err == nil {
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r.config.Logger.Log(smartlogger.Debug, pkg+"sent clip to output"+strconv.Itoa(i))
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} else {
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r.config.Logger.Log(smartlogger.Error, pkg+"send to output"+strconv.Itoa(i)+
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"failed, trying again", "error", err.Error())
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err = dest.send()
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if err != nil && chunk.Len() > 11 {
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r.config.Logger.Log(smartlogger.Error, pkg+"second send attempted failed, restarting connection", "error", err.Error())
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for err != nil {
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time.Sleep(sendFailedDelay)
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if rs, ok := dest.(restarter); ok {
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r.config.Logger.Log(smartlogger.Debug, pkg+"restarting session", "session", rs)
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err = rs.restart()
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for err != nil {
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r.config.Logger.Log(smartlogger.Error, pkg+"failed to restart rtmp session, trying again", "error", err.Error())
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err = rs.restart()
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}
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r.config.Logger.Log(smartlogger.Info, pkg+"restarted rtmp session")
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}
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err = dest.send()
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if err != nil {
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r.config.Logger.Log(smartlogger.Error, pkg+"send failed again, with error", "error", err.Error())
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}
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}
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}
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}
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}
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for _, dest := range r.destination {
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dest.release()
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}
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r.config.Logger.Log(smartlogger.Debug, pkg+"done reading that clip from ring buffer")
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// Log some information regarding bitrate and ring buffer size if it's time
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now := time.Now()
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deltaTime := now.Sub(lastTime)
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if deltaTime > bitrateTime {
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// FIXME(kortschak): For subsecond deltaTime, this will give infinite bitrate.
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r.bitrate = int(float64(count*8) / float64(deltaTime/time.Second))
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r.config.Logger.Log(smartlogger.Debug, pkg+"bitrate (bits/s)", "bitrate", r.bitrate)
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r.config.Logger.Log(smartlogger.Debug, pkg+"ring buffer size", "value", r.buffer.Len())
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lastTime = now
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count = 0
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}
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}
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r.config.Logger.Log(smartlogger.Info, pkg+"not outputting clips anymore")
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for i, dest := range r.destination {
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err := dest.close()
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if err != nil {
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r.config.Logger.Log(smartlogger.Error, pkg+"failed to close output"+strconv.Itoa(i)+" destination", "error", err.Error())
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}
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}
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}
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// startRaspivid sets up things for input from raspivid i.e. starts
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// a raspivid process and pipes it's data output.
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func (r *Revid) startRaspivid() error {
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r.config.Logger.Log(smartlogger.Info, pkg+"starting raspivid")
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const disabled = "0"
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args := []string{
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"--output", "-",
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"--nopreview",
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"--timeout", disabled,
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"--width", r.config.Width,
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"--height", r.config.Height,
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"--bitrate", r.config.Bitrate,
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"--framerate", r.config.FrameRate,
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}
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if r.config.HorizontalFlip == Yes {
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args = append(args, "--hflip")
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}
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if r.config.VerticalFlip == Yes {
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args = append(args, "--vflip")
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}
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switch r.config.InputCodec {
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default:
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return fmt.Errorf("revid: invalid input codec: %v", r.config.InputCodec)
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case H264:
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args = append(args,
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"--codec", "H264",
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"--inline",
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"--intra", r.config.IntraRefreshPeriod,
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)
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if r.config.QuantizationMode == QuantizationOn {
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args = append(args, "-qp", r.config.Quantization)
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}
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case Mjpeg:
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args = append(args, "--codec", "MJPEG")
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}
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r.config.Logger.Log(smartlogger.Info, pkg+"raspivid args", "raspividArgs", strings.Join(args, " "))
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r.cmd = exec.Command("raspivid", args...)
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d, err := strconv.Atoi(r.config.FrameRate)
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if err != nil {
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return err
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}
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delay := time.Second / time.Duration(d)
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stdout, err := r.cmd.StdoutPipe()
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if err != nil {
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return err
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}
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err = r.cmd.Start()
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if err != nil {
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return err
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}
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r.config.Logger.Log(smartlogger.Info, pkg+"reading camera data")
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err = r.lexTo(r.encoder, stdout, delay)
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r.config.Logger.Log(smartlogger.Info, pkg+"finished reading camera data")
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return err
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}
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// setupInputForFile sets things up for getting input from a file
|
|
func (r *Revid) setupInputForFile() error {
|
|
fps, err := strconv.Atoi(r.config.FrameRate)
|
|
if err != nil {
|
|
return err
|
|
}
|
|
delay := time.Second / time.Duration(fps)
|
|
|
|
f, err := os.Open(r.config.InputFileName)
|
|
if err != nil {
|
|
r.config.Logger.Log(smartlogger.Error, err.Error())
|
|
r.Stop()
|
|
return err
|
|
}
|
|
defer f.Close()
|
|
|
|
// TODO(kortschak): Maybe we want a context.Context-aware parser that we can stop.
|
|
return r.lexTo(r.encoder, f, delay)
|
|
}
|