mirror of https://bitbucket.org/ausocean/av.git
549 lines
17 KiB
Go
549 lines
17 KiB
Go
/*
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NAME
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Config.go
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AUTHORS
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Saxon A. Nelson-Milton <saxon@ausocean.org>
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Trek Hopton <trek@ausocean.org>
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LICENSE
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Config.go 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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package revid
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import (
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"errors"
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"time"
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"bitbucket.org/ausocean/av/codec/codecutil"
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"bitbucket.org/ausocean/utils/logger"
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)
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// Possible modes for raspivid --exposure parameter.
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var ExposureModes = [...]string{
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"auto",
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"night",
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"nightpreview",
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"backlight",
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"spotlight",
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"sports",
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"snow",
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"beach",
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"verylong",
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"fixedfps",
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"antishake",
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"fireworks",
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}
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// Possible modes for raspivid --awb parameter.
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var AutoWhiteBalanceModes = [...]string{
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"off",
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"auto",
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"sun",
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"cloud",
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"shade",
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"tungsten",
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"fluorescent",
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"incandescent",
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"flash",
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"horizon",
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}
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// quality represents video quality.
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type quality int
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// The different video qualities that can be used for variable bitrate when
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// using the GeoVision camera.
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const (
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qualityStandard quality = iota
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qualityFair
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qualityGood
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qualityGreat
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qualityExcellent
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)
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// Enums to define inputs, outputs and codecs.
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const (
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// Indicates no option has been set.
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NothingDefined = iota
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// Input/Output.
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InputFile
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InputRaspivid
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InputV4L
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InputRTSP
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InputAudio
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// Outputs.
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OutputAudio
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OutputRTMP
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OutputRTP
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OutputHTTP
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OutputMPEGTS
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OutputFile
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// Codecs.
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H264
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H265
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MJPEG
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)
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// Default config settings
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const (
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// General revid defaults.
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defaultInput = InputRaspivid
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defaultOutput = OutputHTTP
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defaultFrameRate = 25
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defaultWriteRate = 25
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defaultTimeout = 0
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defaultInputCodec = codecutil.H264
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defaultVerbosity = logger.Error
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defaultRtpAddr = "localhost:6970"
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defaultCameraIP = "192.168.1.50"
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defaultVBR = false
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defaultVBRQuality = qualityStandard
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defaultBurstPeriod = 10 // Seconds
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defaultVBRBitrate = 500 // kbps
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defaultCameraChan = 2
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// Raspivid video defaults.
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defaultBrightness = 50
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defaultExposure = "auto"
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defaultAutoWhiteBalance = "auto"
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defaultRotation = 0 // Degrees
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defaultWidth = 1280
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defaultHeight = 720
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defaultMinFrames = 100
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defaultClipDuration = 0
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defaultQuantization = 30
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defaultBitrate = 400
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// Audio defaults.
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defaultAudioInputCodec = codecutil.ADPCM
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defaultSampleRate = 48000
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defaultBitDepth = 16
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defaultChannels = 1
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defaultRecPeriod = 1.0
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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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// Config provides parameters relevant to a revid instance. A new config must
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// be passed to the constructor. Default values for these fields are defined
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// as consts above.
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type Config struct {
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// LogLevel is the revid logging verbosity level.
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// Valid values are defined by enums from the logger package: logger.Debug,
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// logger.Info, logger.Warning logger.Error, logger.Fatal.
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LogLevel int8
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// Input defines the input data source.
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//
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// Valid values are defined by enums:
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// Raspivid:
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// Read data from a Raspberry Pi Camera.
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// V4l:
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// Read from webcam.
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// File:
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// Location must be specified in InputPath field.
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// RTSP:
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// CameraIP should also be defined.
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Input uint8
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// InputCodec defines the input codec we wish to use, and therefore defines the
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// lexer for use in the pipeline. This defaults to H264, but H265 is also a
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// valid option if we expect this from the input.
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InputCodec uint8
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// Outputs define the outputs we wish to output data too.
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//
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// Valid outputs are defined by enums:
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// File:
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// Location must be defined by the OutputPath field. MPEG-TS packetization
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// is used.
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// HTTP:
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// Destination is defined by the sh field located in /etc/netsender.conf.
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// MPEGT-TS packetization is used.
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// RTMP:
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// Destination URL must be defined in the RtmpUrl field. FLV packetization
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// is used.
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// RTP:
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// Destination is defined by RtpAddr field, otherwise it will default to
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// localhost:6970. MPEGT-TS packetization is used.
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Outputs []uint8
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// RTMPURL specifies the Rtmp output destination URL. This must be defined if
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// RTMP is to be used as an output.
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RTMPURL string
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// CameraIP is the IP address of the camera in the case of the input camera
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// being an IP camera.
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CameraIP string
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// OutputPath defines the output destination for File output. This must be
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// defined if File output is to be used.
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OutputPath string
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// InputPath defines the input file location for File Input. This must be
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// defined if File input is to be used.
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InputPath string
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// FrameRate defines the input frame rate if configurable by the chosen input.
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// Raspivid input supports custom framerate.
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FrameRate uint
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// WriteRate is how many times a second revid encoders will be written to.
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WriteRate float64
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// HTTPAddress defines a custom HTTP destination if we do not wish to use that
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// defined in /etc/netsender.conf.
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HTTPAddress string
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// VBR indicates whether we wish to use constant or variable bitrate. If VBR
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// is true then we will use variable bitrate, and constant bitrate otherwise.
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// In the case of the Pi camera, variable bitrate quality is controlled by
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// the Quantization parameter below. In the case of the GeoVision camera,
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// variable bitrate quality is controlled by firstly the VBRQuality parameter
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// and second the VBRBitrate parameter.
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VBR bool
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// Quantization defines the quantization level, which will determine variable
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// bitrate quality in the case of input from the Pi Camera.
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Quantization uint
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// VBRQuality describes the general quality of video from the GeoVision camera
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// under variable bitrate. VBRQuality can be one 5 consts defined:
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// qualityStandard, qualityFair, qualityGood, qualityGreat and qualityExcellent.
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VBRQuality quality
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// VBRBitrate describes maximal bitrate for the GeoVision camera when under
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// variable bitrate.
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VBRBitrate int
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// This is the channel we're using for the GeoVision camera.
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CameraChan int
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// MinFrames defines the frequency of key NAL units SPS, PPS and IDR in
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// number of NAL units. This will also determine the frequency of PSI if the
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// output container is MPEG-TS. If ClipDuration is less than MinFrames,
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// ClipDuration will default to MinFrames.
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MinFrames uint
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// ClipDuration is the duration of MTS data that is sent using HTTP or RTP
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// output. This defaults to 0, therefore MinFrames will determine the length of
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// clips by default.
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ClipDuration time.Duration
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// Logger holds an implementation of the Logger interface as defined in revid.go.
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// This must be set for revid to work correctly.
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Logger Logger
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// Brightness and saturation define the brightness and saturation levels for
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// Raspivid input.
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Brightness uint
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Saturation int
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// Exposure defines the exposure mode used by the Raspivid input. Valid modes
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// are defined in the exported []string ExposureModes defined at the start
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// of the file.
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Exposure string
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// AutoWhiteBalance defines the auto white balance mode used by Raspivid input.
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// Valid modes are defined in the exported []string AutoWhiteBalanceModes
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// defined at the start of the file.
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AutoWhiteBalance string
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// Audio
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SampleRate int // Samples a second (Hz).
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RecPeriod float64 // How many seconds to record at a time.
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Channels int // Number of audio channels, 1 for mono, 2 for stereo.
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BitDepth int // Sample bit depth.
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ChunkSize int // ChunkSize is the size of the chunks in the audio.Device's ringbuffer.
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RTPAddress string // RTPAddress defines the RTP output destination.
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BurstPeriod uint // BurstPeriod defines the revid burst period in seconds.
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Rotation uint // Rotation defines the video rotation angle in degrees Raspivid input.
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Height uint // Height defines the input video height Raspivid input.
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Width uint // Width defines the input video width Raspivid input.
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Bitrate uint // Bitrate specifies the bitrate for constant bitrate in kbps.
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FlipHorizontal bool // FlipHorizontal flips video horizontally for Raspivid input.
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FlipVertical bool // FlipVertial flips video vertically for Raspivid input.
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// RTMP ring buffer parameters.
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RTMPRBSize int // The number of elements in the RTMP sender ringbuffer.
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RTMPRBElementSize int // The element size in bytes of the RTMP sender RingBuffer.
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RTMPRBWriteTimeout int // The ringbuffer write timeout in seconds.
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// MTS ring buffer parameters.
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MTSRBSize int // The number of elements in the MTS sender ringbuffer.
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MTSRBElementSize int // The element size in bytes of the MTS sender RingBuffer.
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MTSRBWriteTimeout int // The ringbuffer write timeout in seconds.
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}
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// Validation errors.
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var (
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errInvalidQuantization = errors.New("invalid quantization")
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)
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// Validate checks for any errors in the config fields and defaults settings
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// if particular parameters have not been defined.
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func (c *Config) Validate() error {
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switch c.LogLevel {
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case logger.Debug:
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case logger.Info:
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case logger.Warning:
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case logger.Error:
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case logger.Fatal:
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default:
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c.LogLevel = defaultVerbosity
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c.Logger.Log(logger.Info, pkg+"bad LogLevel mode defined, defaulting", "LogLevel", defaultVerbosity)
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}
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if c.CameraIP == "" {
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c.Logger.Log(logger.Info, pkg+"no CameraIP defined, defaulting", "CameraIP", defaultCameraIP)
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c.CameraIP = defaultCameraIP
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}
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switch c.Input {
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case InputRaspivid, InputV4L, InputFile, InputAudio, InputRTSP:
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case NothingDefined:
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c.Logger.Log(logger.Info, pkg+"no input type defined, defaulting", "input", defaultInput)
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c.Input = defaultInput
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default:
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return errors.New("bad input type defined in config")
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}
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switch c.InputCodec {
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case codecutil.H264, codecutil.MJPEG, codecutil.PCM, codecutil.ADPCM:
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default:
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switch c.Input {
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case OutputAudio:
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c.Logger.Log(logger.Info, pkg+"input is audio but no codec defined, defaulting", "inputCodec", defaultAudioInputCodec)
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c.InputCodec = defaultAudioInputCodec
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default:
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c.Logger.Log(logger.Info, pkg+"no input codec defined, defaulting", "inputCodec", defaultInputCodec)
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c.InputCodec = defaultInputCodec
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c.Logger.Log(logger.Info, pkg+"defaulting quantization", "quantization", defaultQuantization)
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c.Quantization = defaultQuantization
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}
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}
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if c.Outputs == nil {
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c.Logger.Log(logger.Info, pkg+"no output defined, defaulting", "output", defaultOutput)
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c.Outputs = append(c.Outputs, defaultOutput)
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}
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var haveRTMPOut bool
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for i, o := range c.Outputs {
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switch o {
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case OutputFile:
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case OutputRTMP:
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haveRTMPOut = true
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if c.Bitrate == 0 {
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c.Bitrate = defaultBitrate
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}
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c.Quantization = 0
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if c.RTMPURL == "" {
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c.Logger.Log(logger.Info, pkg+"no RTMP URL: falling back to HTTP")
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c.Outputs[i] = OutputHTTP
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haveRTMPOut = false
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}
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fallthrough
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case OutputHTTP, OutputRTP:
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if !haveRTMPOut {
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c.Bitrate = 0
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if c.Quantization == 0 {
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c.Quantization = defaultQuantization
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}
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}
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default:
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return errors.New("bad output type defined in config")
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}
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}
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if c.BurstPeriod == 0 {
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c.Logger.Log(logger.Info, pkg+"no burst period defined, defaulting", "burstPeriod", defaultBurstPeriod)
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c.BurstPeriod = defaultBurstPeriod
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}
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if c.Rotation > 359 {
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c.Logger.Log(logger.Warning, pkg+"bad rotate angle, defaulting", "angle", defaultRotation)
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c.Rotation = defaultRotation
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}
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if c.Width == 0 {
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c.Logger.Log(logger.Info, pkg+"no width defined, defaulting", "width", defaultWidth)
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c.Width = defaultWidth
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}
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if c.Height == 0 {
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c.Logger.Log(logger.Info, pkg+"no height defined, defaulting", "height", defaultHeight)
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c.Height = defaultHeight
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}
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if c.FrameRate == 0 {
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c.Logger.Log(logger.Info, pkg+"no frame rate defined, defaulting", "fps", defaultFrameRate)
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c.FrameRate = defaultFrameRate
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}
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if c.SampleRate == 0 {
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c.Logger.Log(logger.Info, pkg+"no sample rate defined, defaulting", "sampleRate", defaultSampleRate)
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c.SampleRate = defaultSampleRate
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}
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if c.Channels == 0 {
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c.Logger.Log(logger.Info, pkg+"no number of channels defined, defaulting", "Channels", defaultChannels)
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c.Channels = defaultChannels
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}
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if c.BitDepth == 0 {
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c.Logger.Log(logger.Info, pkg+"no bit depth defined, defaulting", "BitDepth", defaultBitDepth)
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c.BitDepth = defaultBitDepth
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}
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if c.RecPeriod == 0 {
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c.Logger.Log(logger.Info, pkg+"no record period defined, defaulting", "recPeriod", defaultRecPeriod)
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c.RecPeriod = defaultRecPeriod
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}
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if c.WriteRate == 0 {
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c.Logger.Log(logger.Info, pkg+"no write rate defined, defaulting", "writeRate", defaultWriteRate)
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c.WriteRate = defaultWriteRate
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}
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if c.Bitrate < 0 {
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return errors.New("invalid bitrate")
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}
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if c.MinFrames == 0 {
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c.Logger.Log(logger.Info, pkg+"no min period defined, defaulting", "MinFrames", defaultMinFrames)
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c.MinFrames = defaultMinFrames
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} else if c.MinFrames < 0 {
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return errors.New("refresh period is less than 0")
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}
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if c.ClipDuration == 0 {
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c.Logger.Log(logger.Info, pkg+"no clip duration defined, defaulting", "ClipDuration", defaultClipDuration)
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c.ClipDuration = defaultClipDuration
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} else if c.ClipDuration < 0 {
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return errors.New("clip duration is less than 0")
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}
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if c.Quantization != 0 && (c.Quantization < 10 || c.Quantization > 40) {
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return errInvalidQuantization
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}
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if c.RTPAddress == "" {
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c.RTPAddress = defaultRtpAddr
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}
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switch {
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case c.Brightness == 0:
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c.Logger.Log(logger.Info, pkg+"brightness undefined, defaulting", "brightness", defaultBrightness)
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c.Brightness = defaultBrightness
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case c.Brightness < 0 || c.Brightness > 100:
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return errors.New(pkg + "bad brightness defined in config")
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}
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if c.Saturation < -100 || c.Saturation > 100 {
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return errors.New(pkg + "bad saturation setting in config")
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}
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switch {
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case c.Exposure == "":
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c.Logger.Log(logger.Info, pkg+"exposure undefined, defaulting", "exposure", defaultExposure)
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c.Exposure = defaultExposure
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case !stringInSlice(c.Exposure, ExposureModes[:]):
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return errors.New(pkg + "bad exposure setting in config")
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}
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switch {
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case c.AutoWhiteBalance == "":
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c.Logger.Log(logger.Info, pkg+"auto white balance undefined, defaulting", "autoWhiteBalance", defaultAutoWhiteBalance)
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c.AutoWhiteBalance = defaultAutoWhiteBalance
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case !stringInSlice(c.AutoWhiteBalance, AutoWhiteBalanceModes[:]):
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return errors.New(pkg + "bad auto white balance setting in config")
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}
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if c.RTMPRBSize <= 0 {
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c.Logger.Log(logger.Info, pkg+"RTMPRBSize bad or unset, defaulting", "RTMPRBSize", defaultRTMPRBSize)
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c.RTMPRBSize = defaultRTMPRBSize
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}
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if c.RTMPRBElementSize <= 0 {
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c.Logger.Log(logger.Info, pkg+"RTMPRBElementSize bad or unset, defaulting", "RTMPRBElementSize", defaultRTMPRBElementSize)
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c.RTMPRBElementSize = defaultRTMPRBElementSize
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}
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if c.RTMPRBWriteTimeout <= 0 {
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c.Logger.Log(logger.Info, pkg+"RTMPRBWriteTimeout bad or unset, defaulting", "RTMPRBWriteTimeout", defaultRTMPRBWriteTimeout)
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c.RTMPRBWriteTimeout = defaultRTMPRBWriteTimeout
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}
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if c.MTSRBSize <= 0 {
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c.Logger.Log(logger.Info, pkg+"MTSRBSize bad or unset, defaulting", "MTSRBSize", defaultMTSRBSize)
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c.MTSRBSize = defaultMTSRBSize
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}
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if c.MTSRBElementSize <= 0 {
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c.Logger.Log(logger.Info, pkg+"MTSRBElementSize bad or unset, defaulting", "MTSRBElementSize", defaultMTSRBElementSize)
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c.MTSRBElementSize = defaultMTSRBElementSize
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}
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if c.MTSRBWriteTimeout <= 0 {
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c.Logger.Log(logger.Info, pkg+"MTSRBWriteTimeout bad or unset, defaulting", "MTSRBWriteTimeout", defaultMTSRBWriteTimeout)
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c.MTSRBWriteTimeout = defaultMTSRBWriteTimeout
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}
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switch c.VBRQuality {
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case qualityStandard, qualityFair, qualityGood, qualityGreat, qualityExcellent:
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default:
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c.Logger.Log(logger.Info, pkg+"VBRQuality bad or unset, defaulting", "VBRQuality", defaultVBRQuality)
|
|
c.VBRQuality = defaultVBRQuality
|
|
}
|
|
|
|
if c.VBRBitrate <= 0 {
|
|
c.Logger.Log(logger.Info, pkg+"VBRBitrate bad or unset, defaulting", "VBRBitrate", defaultVBRBitrate)
|
|
c.VBRBitrate = defaultVBRBitrate
|
|
}
|
|
|
|
if c.CameraChan != 1 && c.CameraChan != 2 {
|
|
c.Logger.Log(logger.Info, pkg+"CamChan bad or unset, defaulting", "CamChan", defaultCameraChan)
|
|
c.CameraChan = defaultCameraChan
|
|
}
|
|
|
|
return nil
|
|
}
|
|
|
|
// stringInSlice returns true if want is in slice.
|
|
func stringInSlice(want string, slice []string) bool {
|
|
for _, s := range slice {
|
|
if s == want {
|
|
return true
|
|
}
|
|
}
|
|
return false
|
|
}
|