mirror of https://bitbucket.org/ausocean/av.git
720 lines
20 KiB
Go
720 lines
20 KiB
Go
/*
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NAME
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revid.go
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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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Dan Kortschak <dan@ausocean.org>
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Trek Hopton <trek@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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in gpl.txt. If not, see http://www.gnu.org/licenses.
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*/
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// Package revid provides an API for reading, transcoding, and writing audio/video streams and files.
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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/exec"
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"strconv"
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"strings"
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"sync"
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"time"
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"bitbucket.org/ausocean/av/codec/codecutil"
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"bitbucket.org/ausocean/av/codec/h264"
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"bitbucket.org/ausocean/av/codec/h265"
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"bitbucket.org/ausocean/av/codec/mjpeg"
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"bitbucket.org/ausocean/av/codec/pcm"
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"bitbucket.org/ausocean/av/container/flv"
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"bitbucket.org/ausocean/av/container/mts"
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"bitbucket.org/ausocean/av/device"
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"bitbucket.org/ausocean/av/device/alsa"
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"bitbucket.org/ausocean/av/device/file"
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"bitbucket.org/ausocean/av/device/geovision"
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"bitbucket.org/ausocean/av/device/raspivid"
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"bitbucket.org/ausocean/av/device/webcam"
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"bitbucket.org/ausocean/av/revid/config"
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"bitbucket.org/ausocean/iot/pi/netsender"
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"bitbucket.org/ausocean/utils/ioext"
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"bitbucket.org/ausocean/utils/logger"
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"bitbucket.org/ausocean/utils/ring"
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)
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// Ring buffer defaults.
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const (
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// MTS ring buffer defaults.
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defaultMTSRBSize = 1000
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defaultMTSRBElementSize = 100000
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defaultMTSRBWriteTimeout = 5
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// RTMP ring buffer defaults.
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defaultRTMPRBSize = 1000
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defaultRTMPRBElementSize = 300000
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defaultRTMPRBWriteTimeout = 5
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)
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// RTMP connection properties.
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const (
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rtmpConnectionMaxTries = 5
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rtmpConnectionTimeout = 10
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)
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const pkg = "revid: "
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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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cfg 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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// input will capture audio or video from which we can read data.
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input device.AVDevice
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// closeInput holds the cleanup function return from setupInput and is called
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// in Revid.Stop().
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closeInput 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(dest io.Writer, src io.Reader, delay time.Duration) error
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// encoders will hold the multiWriteCloser that writes to encoders from the lexer.
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encoders io.WriteCloser
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// running is used to keep track of revid's running state between methods.
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running bool
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// mu is used to protect isRunning during concurrent use.
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mu sync.Mutex
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// wg will be used to wait for any processing routines to finish.
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wg sync.WaitGroup
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// err will channel errors from revid routines to the handle errors routine.
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err chan error
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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.Config, ns *netsender.Sender) (*Revid, error) {
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r := Revid{ns: ns, err: make(chan error)}
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err := r.setConfig(c)
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if err != nil {
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return nil, fmt.Errorf("could not set config, failed with error: %v", err)
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}
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r.cfg.Logger.SetLevel(c.LogLevel)
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go r.handleErrors()
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return &r, nil
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}
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// Config returns a copy of revids current config.
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//
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// Config is not safe for concurrent use.
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func (r *Revid) Config() config.Config {
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return r.cfg
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}
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// TODO(Saxon): put more thought into error severity and how to handle these.
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func (r *Revid) handleErrors() {
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for {
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err := <-r.err
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if err != nil {
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r.cfg.Logger.Log(logger.Error, pkg+"async error", "error", err.Error())
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}
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}
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}
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// Bitrate returns the result of the most recent bitrate check.
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//
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// TODO: get this working again.
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func (r *Revid) Bitrate() int {
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return -1
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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. It then
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// sets up the data pipeline accordingly to this configuration.
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func (r *Revid) reset(c config.Config) error {
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err := r.setConfig(c)
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if err != nil {
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return err
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}
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r.cfg.Logger.SetLevel(c.LogLevel)
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err = r.setupPipeline(
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func(dst io.WriteCloser, fps float64) (io.WriteCloser, error) {
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var st int
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var encOptions []func(*mts.Encoder) error
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switch r.cfg.Input {
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case config.InputRaspivid:
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switch r.cfg.InputCodec {
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case codecutil.H264:
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st = mts.EncodeH264
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case codecutil.MJPEG:
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st = mts.EncodeMJPEG
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encOptions = append(encOptions, mts.PacketBasedPSI(int(r.cfg.MinFrames)))
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default:
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panic("unknown input codec for raspivid input")
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}
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case config.InputFile, config.InputV4L:
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st = mts.EncodeH264
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case config.InputRTSP:
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switch r.cfg.InputCodec {
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case codecutil.H265:
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st = mts.EncodeH265
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case codecutil.H264:
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st = mts.EncodeH264
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case codecutil.MJPEG:
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st = mts.EncodeMJPEG
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encOptions = append(encOptions, mts.PacketBasedPSI(int(r.cfg.MinFrames)))
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default:
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panic("unknown input codec for RTSP input")
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}
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case config.InputAudio:
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st = mts.EncodeAudio
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default:
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panic("unknown input type")
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}
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return mts.NewEncoder(dst, float64(fps), st, encOptions...)
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},
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func(dst io.WriteCloser, fps int) (io.WriteCloser, error) {
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return flv.NewEncoder(dst, true, true, fps)
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},
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ioext.MultiWriteCloser,
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)
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if err != nil {
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return err
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}
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return nil
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}
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// setConfig takes a config, checks it's validity and then replaces the current
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// revid config.
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func (r *Revid) setConfig(config config.Config) error {
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r.cfg.Logger = config.Logger
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err := config.Validate()
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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.cfg = config
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return nil
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}
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// setupPipeline constructs the revid dataPipeline. Inputs, encoders and
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// senders are created and linked based on the current revid config.
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//
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// mtsEnc and flvEnc will be called to obtain an mts encoder and flv encoder
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// respectively. multiWriter will be used to create an ioext.multiWriteCloser
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// so that encoders can write to multiple senders.
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func (r *Revid) setupPipeline(mtsEnc func(dst io.WriteCloser, rate float64) (io.WriteCloser, error), flvEnc func(dst io.WriteCloser, rate int) (io.WriteCloser, error), multiWriter func(...io.WriteCloser) io.WriteCloser) error {
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// encoders will hold the encoders that are required for revid's current
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// configuration.
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var encoders []io.WriteCloser
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// mtsSenders will hold the senders the require MPEGTS encoding, and flvSenders
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// will hold senders that require FLV encoding.
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var mtsSenders, flvSenders []io.WriteCloser
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// We will go through our outputs and create the corresponding senders to add
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// to mtsSenders if the output requires MPEGTS encoding, or flvSenders if the
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// output requires FLV encoding.
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var w io.WriteCloser
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for _, out := range r.cfg.Outputs {
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switch out {
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case config.OutputHTTP:
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w = newMtsSender(
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newHttpSender(r.ns, r.cfg.Logger.Log),
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r.cfg.Logger.Log,
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ring.NewBuffer(r.cfg.MTSRBSize, r.cfg.MTSRBElementSize, time.Duration(r.cfg.MTSRBWriteTimeout)*time.Second),
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r.cfg.ClipDuration,
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)
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mtsSenders = append(mtsSenders, w)
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case config.OutputRTP:
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w, err := newRtpSender(r.cfg.RTPAddress, r.cfg.Logger.Log, r.cfg.FrameRate)
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if err != nil {
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r.cfg.Logger.Log(logger.Warning, pkg+"rtp connect error", "error", err.Error())
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}
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mtsSenders = append(mtsSenders, w)
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case config.OutputFile:
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w, err := newFileSender(r.cfg.OutputPath)
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if err != nil {
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return err
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}
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mtsSenders = append(mtsSenders, w)
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case config.OutputRTMP:
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w, err := newRtmpSender(
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r.cfg.RTMPURL,
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rtmpConnectionTimeout,
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rtmpConnectionMaxTries,
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ring.NewBuffer(r.cfg.RTMPRBSize, r.cfg.RTMPRBElementSize, time.Duration(r.cfg.RTMPRBWriteTimeout)*time.Second),
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r.cfg.Logger.Log,
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)
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if err != nil {
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r.cfg.Logger.Log(logger.Warning, pkg+"rtmp connect error", "error", err.Error())
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}
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flvSenders = append(flvSenders, w)
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}
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}
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// If we have some senders that require MPEGTS encoding then add an MPEGTS
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// encoder to revid's encoder slice, and give this encoder the mtsSenders
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// as a destination.
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if len(mtsSenders) != 0 {
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mw := multiWriter(mtsSenders...)
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e, _ := mtsEnc(mw, r.cfg.WriteRate)
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encoders = append(encoders, e)
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}
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// If we have some senders that require FLV encoding then add an FLV
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// encoder to revid's encoder slice, and give this encoder the flvSenders
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// as a destination.
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if len(flvSenders) != 0 {
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mw := multiWriter(flvSenders...)
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e, err := flvEnc(mw, int(r.cfg.FrameRate))
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if err != nil {
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return err
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}
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encoders = append(encoders, e)
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}
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r.encoders = multiWriter(encoders...)
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switch r.cfg.Input {
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case config.InputRaspivid:
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r.input = raspivid.New(r.cfg.Logger)
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switch r.cfg.InputCodec {
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case codecutil.H264:
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r.lexTo = h264.Lex
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case codecutil.MJPEG:
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r.lexTo = mjpeg.Lex
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}
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case config.InputV4L:
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r.input = webcam.New(r.cfg.Logger)
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r.lexTo = h264.Lex
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case config.InputFile:
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r.input = file.New()
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case config.InputRTSP:
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r.input = geovision.New(r.cfg.Logger)
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switch r.cfg.InputCodec {
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case codecutil.H264:
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r.lexTo = h264.NewExtractor().Extract
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case codecutil.H265:
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r.lexTo = h265.NewLexer(false).Lex
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case codecutil.MJPEG:
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panic("not implemented")
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}
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case config.InputAudio:
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mts.Meta.Add("sampleRate", strconv.Itoa(r.cfg.SampleRate))
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mts.Meta.Add("channels", strconv.Itoa(r.cfg.Channels))
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mts.Meta.Add("period", fmt.Sprintf("%.6f", r.cfg.RecPeriod))
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mts.Meta.Add("bitDepth", strconv.Itoa(r.cfg.BitDepth))
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switch r.cfg.InputCodec {
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case codecutil.PCM:
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mts.Meta.Add("codec", "pcm")
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case codecutil.ADPCM:
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mts.Meta.Add("codec", "adpcm")
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default:
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r.cfg.Logger.Log(logger.Fatal, pkg+"no audio codec set in config")
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}
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r.input = alsa.New(r.cfg.Logger)
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l, err := codecutil.NewByteLexer(pcm.DataSize(r.cfg.SampleRate, r.cfg.Channels, r.cfg.BitDepth, r.cfg.RecPeriod, r.cfg.InputCodec))
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if err != nil {
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return err
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}
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r.lexTo = l.Lex
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}
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// Configure the input device. We know that defaults are set, so no need to
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// return error, but we should log.
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err := r.input.Set(r.cfg)
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if err != nil {
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r.cfg.Logger.Log(logger.Warning, pkg+"errors from configuring input device", "errors", err)
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}
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return nil
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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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//
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// Start is safe for concurrent use.
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func (r *Revid) Start() error {
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if r.IsRunning() {
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r.cfg.Logger.Log(logger.Warning, pkg+"start called, but revid already running")
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return nil
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}
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r.mu.Lock()
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defer r.mu.Unlock()
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r.cfg.Logger.Log(logger.Info, pkg+"starting Revid")
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err := r.reset(r.cfg)
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if err != nil {
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r.Stop()
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return err
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}
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err = r.input.Start()
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if err != nil {
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return fmt.Errorf("could not start input device: %w", err)
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}
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r.wg.Add(1)
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go r.processFrom(r.input, 0)
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r.running = true
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return nil
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}
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// Stop closes down the pipeline. This closes encoders and sender output routines,
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// connections, and/or files.
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//
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// Stop is safe for concurrent use.
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func (r *Revid) Stop() {
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if !r.IsRunning() {
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r.cfg.Logger.Log(logger.Warning, pkg+"stop called but revid isn't running")
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return
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}
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r.mu.Lock()
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defer r.mu.Unlock()
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err := r.input.Stop()
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if err != nil {
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r.cfg.Logger.Log(logger.Error, pkg+"could not stop input", "error", err.Error())
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}
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r.cfg.Logger.Log(logger.Info, pkg+"closing pipeline")
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err = r.encoders.Close()
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if err != nil {
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r.cfg.Logger.Log(logger.Error, pkg+"failed to close pipeline", "error", err.Error())
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}
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r.cfg.Logger.Log(logger.Info, pkg+"closed pipeline")
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if r.cmd != nil && r.cmd.Process != nil {
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r.cfg.Logger.Log(logger.Info, pkg+"killing input proccess")
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r.cmd.Process.Kill()
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}
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r.cfg.Logger.Log(logger.Info, pkg+"waiting for routines to close")
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r.wg.Wait()
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r.cfg.Logger.Log(logger.Info, pkg+"revid stopped")
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r.running = false
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}
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func (r *Revid) IsRunning() bool {
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r.mu.Lock()
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defer r.mu.Unlock()
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return r.running
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}
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// Update takes a map of variables and their values and edits the current config
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// if the variables are recognised as valid parameters.
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//
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// Update is safe for concurrent use.
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func (r *Revid) Update(vars map[string]string) error {
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if r.IsRunning() {
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r.Stop()
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}
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r.mu.Lock()
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defer r.mu.Unlock()
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//look through the vars and update revid where needed
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for key, value := range vars {
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switch key {
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case "Input":
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v, ok := map[string]uint8{"raspivid": config.InputRaspivid, "rtsp": config.InputRTSP, "v4l": config.InputV4L}[strings.ToLower(value)]
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if !ok {
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r.cfg.Logger.Log(logger.Warning, pkg+"invalid input var", "value", value)
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break
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}
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r.cfg.Input = v
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case "Saturation":
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s, err := strconv.ParseInt(value, 10, 0)
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if err != nil {
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r.cfg.Logger.Log(logger.Warning, pkg+"invalid saturation param", "value", value)
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break
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}
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r.cfg.Saturation = int(s)
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case "Brightness":
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b, err := strconv.ParseUint(value, 10, 0)
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if err != nil {
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r.cfg.Logger.Log(logger.Warning, pkg+"invalid brightness param", "value", value)
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break
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}
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r.cfg.Brightness = uint(b)
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case "Exposure":
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r.cfg.Exposure = value
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case "AutoWhiteBalance":
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r.cfg.AutoWhiteBalance = value
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case "InputCodec":
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switch value {
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case "H264":
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r.cfg.InputCodec = codecutil.H264
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case "MJPEG":
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r.cfg.InputCodec = codecutil.MJPEG
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default:
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r.cfg.Logger.Log(logger.Warning, pkg+"invalid InputCodec variable value", "value", value)
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}
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case "Output":
|
|
outputs := strings.Split(value, ",")
|
|
r.cfg.Outputs = make([]uint8, len(outputs))
|
|
|
|
for i, output := range outputs {
|
|
switch output {
|
|
case "File":
|
|
r.cfg.Outputs[i] = config.OutputFile
|
|
case "Http":
|
|
r.cfg.Outputs[i] = config.OutputHTTP
|
|
case "Rtmp":
|
|
r.cfg.Outputs[i] = config.OutputRTMP
|
|
case "Rtp":
|
|
r.cfg.Outputs[i] = config.OutputRTP
|
|
default:
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid output param", "value", value)
|
|
continue
|
|
}
|
|
}
|
|
|
|
case "RtmpUrl":
|
|
r.cfg.RTMPURL = value
|
|
case "RtpAddress":
|
|
r.cfg.RTPAddress = value
|
|
case "Bitrate":
|
|
v, err := strconv.ParseUint(value, 10, 0)
|
|
if err != nil {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid framerate param", "value", value)
|
|
break
|
|
}
|
|
r.cfg.Bitrate = uint(v)
|
|
case "OutputPath":
|
|
r.cfg.OutputPath = value
|
|
case "InputPath":
|
|
r.cfg.InputPath = value
|
|
case "Height":
|
|
h, err := strconv.ParseUint(value, 10, 0)
|
|
if err != nil {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid height param", "value", value)
|
|
break
|
|
}
|
|
r.cfg.Height = uint(h)
|
|
case "Width":
|
|
w, err := strconv.ParseUint(value, 10, 0)
|
|
if err != nil {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid width param", "value", value)
|
|
break
|
|
}
|
|
r.cfg.Width = uint(w)
|
|
case "FrameRate":
|
|
v, err := strconv.ParseUint(value, 10, 0)
|
|
if err != nil {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid framerate param", "value", value)
|
|
break
|
|
}
|
|
r.cfg.FrameRate = uint(v)
|
|
case "Rotation":
|
|
v, err := strconv.ParseUint(value, 10, 0)
|
|
if err != nil || v > 359 {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid rotation param", "value", value)
|
|
break
|
|
}
|
|
r.cfg.Rotation = uint(v)
|
|
case "HttpAddress":
|
|
r.cfg.HTTPAddress = value
|
|
case "Quantization":
|
|
v, err := strconv.Atoi(value)
|
|
if err != nil {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid quantization param", "value", v)
|
|
break
|
|
}
|
|
r.cfg.Quantization = uint(v)
|
|
case "MinFrames":
|
|
v, err := strconv.Atoi(value)
|
|
if err != nil {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid MinFrames param", "value", value)
|
|
break
|
|
}
|
|
r.cfg.MinFrames = uint(v)
|
|
|
|
case "ClipDuration":
|
|
v, err := strconv.Atoi(value)
|
|
if err != nil {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid ClipDuration param", "value", value)
|
|
break
|
|
}
|
|
r.cfg.ClipDuration = time.Duration(v) * time.Second
|
|
|
|
case "HorizontalFlip":
|
|
switch strings.ToLower(value) {
|
|
case "true":
|
|
r.cfg.FlipHorizontal = true
|
|
case "false":
|
|
r.cfg.FlipHorizontal = false
|
|
default:
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid HorizontalFlip param", "value", value)
|
|
}
|
|
case "VerticalFlip":
|
|
switch strings.ToLower(value) {
|
|
case "true":
|
|
r.cfg.FlipVertical = true
|
|
case "false":
|
|
r.cfg.FlipVertical = false
|
|
default:
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid VerticalFlip param", "value", value)
|
|
}
|
|
case "BurstPeriod":
|
|
v, err := strconv.ParseUint(value, 10, 0)
|
|
if err != nil {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid BurstPeriod param", "value", value)
|
|
break
|
|
}
|
|
r.cfg.BurstPeriod = uint(v)
|
|
case "Logging":
|
|
switch value {
|
|
case "Debug":
|
|
r.cfg.LogLevel = logger.Debug
|
|
case "Info":
|
|
r.cfg.LogLevel = logger.Info
|
|
case "Warning":
|
|
r.cfg.LogLevel = logger.Warning
|
|
case "Error":
|
|
r.cfg.LogLevel = logger.Error
|
|
case "Fatal":
|
|
r.cfg.LogLevel = logger.Fatal
|
|
default:
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid Logging param", "value", value)
|
|
}
|
|
case "RTMPRBSize":
|
|
v, err := strconv.Atoi(value)
|
|
if err != nil || v < 0 {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid RTMPRBSize var", "value", value)
|
|
break
|
|
}
|
|
r.cfg.RTMPRBSize = v
|
|
case "RTMPRBElementSize":
|
|
v, err := strconv.Atoi(value)
|
|
if err != nil || v < 0 {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid RTMPRBElementSize var", "value", value)
|
|
break
|
|
}
|
|
r.cfg.RTMPRBElementSize = v
|
|
case "RTMPRBWriteTimeout":
|
|
v, err := strconv.Atoi(value)
|
|
if err != nil || v <= 0 {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid RTMPRBWriteTimeout var", "value", value)
|
|
break
|
|
}
|
|
r.cfg.RTMPRBWriteTimeout = v
|
|
case "MTSRBSize":
|
|
v, err := strconv.Atoi(value)
|
|
if err != nil || v < 0 {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid MTSRBSize var", "value", value)
|
|
break
|
|
}
|
|
r.cfg.MTSRBSize = v
|
|
case "MTSRBElementSize":
|
|
v, err := strconv.Atoi(value)
|
|
if err != nil || v < 0 {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid MTSRBElementSize var", "value", value)
|
|
break
|
|
}
|
|
r.cfg.MTSRBElementSize = v
|
|
case "MTSRBWriteTimeout":
|
|
v, err := strconv.Atoi(value)
|
|
if err != nil || v <= 0 {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid MTSRBWriteTimeout var", "value", value)
|
|
break
|
|
}
|
|
r.cfg.MTSRBWriteTimeout = v
|
|
case "VBR":
|
|
v, ok := map[string]bool{"true": true, "false": false}[strings.ToLower(value)]
|
|
if !ok {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid VBR var", "value", value)
|
|
break
|
|
}
|
|
r.cfg.VBR = v
|
|
case "VBRQuality":
|
|
v, ok := map[string]config.Quality{"standard": config.QualityStandard, "fair": config.QualityFair, "good": config.QualityGood, "great": config.QualityGreat, "excellent": config.QualityExcellent}[strings.ToLower(value)]
|
|
if !ok {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid VBRQuality var", "value", value)
|
|
break
|
|
}
|
|
r.cfg.VBRQuality = v
|
|
case "VBRBitrate":
|
|
v, err := strconv.Atoi(value)
|
|
if err != nil || v <= 0 {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid VBRBitrate var", "value", value)
|
|
break
|
|
}
|
|
r.cfg.VBRBitrate = v
|
|
case "CameraChan":
|
|
v, err := strconv.Atoi(value)
|
|
if err != nil || (v != 1 && v != 2) {
|
|
r.cfg.Logger.Log(logger.Warning, pkg+"invalid CameraChan var", "value", value)
|
|
break
|
|
}
|
|
r.cfg.CameraChan = v
|
|
}
|
|
}
|
|
r.cfg.Logger.Log(logger.Info, pkg+"revid config changed", "config", fmt.Sprintf("%+v", r.cfg))
|
|
return nil
|
|
}
|
|
|
|
// processFrom is run as a routine to read from a input data source, lex and
|
|
// then send individual access units to revid's encoders.
|
|
func (r *Revid) processFrom(read io.Reader, delay time.Duration) {
|
|
r.err <- r.lexTo(r.encoders, read, delay)
|
|
r.cfg.Logger.Log(logger.Info, pkg+"finished lexing")
|
|
r.wg.Done()
|
|
}
|