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			531 lines
		
	
	
		
			18 KiB
		
	
	
	
		
			JSON
		
	
	
	
	
	
| // This is a example config (hyperion.config.json) with comments, in any case you need to create your own one with HyperCon!
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| // Webpage: https://www.hyperion-project.org
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| 
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| 
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| {
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| 	/// Device configuration contains the following fields: 
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| 	/// * 'name'       : The user friendly name of the device (only used for display purposes)
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| 	/// * 'type'       : The type of the device or leds (known types for now are
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| 	///  APA102, WS2801, P9813, LPD6803, LPD8806, ---------PWM---------, WS2812b (just RPi1), WS281X (RPi1, RPi2, RPi3), --------OTHER--------, PhilipsHUE, AtmoOrb, PiBlaster, Tinkerforge, FadeCandy, RawHID (USB), UDP, SEDU, TPM2, USBASP-WS2801, USBASP-WS2812, ------3rd PARTY------, Adalight, AdalightAPA102, AmbiLed, Atmo, Lightpack, Multi-Lightpack, Paintpack, Test (file), None)
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| 	/// * [device type specific configuration]
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| 	/// * 'colorOrder' : The order of the color bytes ('rgb', 'rbg', 'bgr', etc.).
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| 	"device" :
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| 	{
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| 		"name"       : "MyHyperionConfig",
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| 		"type"       : "ws2801",
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| 		"output"     : "/dev/spidev0.0",
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| 		"rate"     : 1000000,
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| 		"colorOrder" : "rgb"
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| 	},
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| 
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| 	/// Color manipulation configuration used to tune the output colors to specific surroundings. 
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| 	/// The configuration contains a list of color-transforms. Each transform contains the 
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| 	/// following fields:
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| 	///  * 'channelAdjustment'
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| 	///  * 'id'   : The unique identifier of the channel adjustments (eg 'device_1')
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| 	///  * 'leds'   : The indices (or index ranges) of the leds to which this channel adjustment applies
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| 	///             (eg '0-5, 9, 11, 12-17'). The indices are zero based.
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| 	///  * 'pureRed'/'pureGreen'/'pureBlue' : The manipulation in the Red-Green-Blue color domain with the 
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| 	///                           following tuning parameters for each channel:
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| 	///  * 'temperature'
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| 	///  * 'id'   : The unique identifier of the temperature (eg 'device_1')
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| 	///  * 'leds'   : The indices (or index ranges) of the leds to which this temperature applies
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| 	///             (eg '0-5, 9, 11, 12-17'). The indices are zero based.
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| 	///  * 'red'/'green'/'blue' : The temperature manipulation in the Red-Green-Blue color domain with the 
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| 	///                           following tuning parameters for each channel:
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| 	///  * 'transform'
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| 	///  * 'id'   : The unique identifier of the color transformation (eg 'device_1')
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| 	///  * 'leds' : The indices (or index ranges) of the leds to which this color transform applies
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| 	///             (eg '0-5, 9, 11, 12-17'). The indices are zero based.
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| 	///  * 'hsv' : The manipulation in the Hue-Saturation-Value color domain with the following 
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| 	///            tuning parameters:
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| 	///            - 'saturationGain'  The gain adjustement of the saturation
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| 	///            - 'luminanceGain'       The gain adjustement of the luminance
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| 	///			   - 'luminanceMinimum'    The minimum luminance (backlight)
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| 	///  * 'red'/'green'/'blue' : The manipulation in the Red-Green-Blue color domain with the 
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| 	///                           following tuning parameters for each channel:
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| 	///            - 'threshold'       The minimum required input value for the channel to be on 
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| 	///                                (else zero)
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| 	///            - 'gamma'           The gamma-curve correction factor
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| 	///
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| 	/// Next to the list with color transforms there is also a smoothing option.
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| 	///  * 'smoothing' : Smoothing of the colors in the time-domain with the following tuning 
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| 	///                  parameters:
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| 	///            - 'type'            The type of smoothing algorithm ('linear' or 'none')
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| 	///            - 'time_ms'         The time constant for smoothing algorithm in milliseconds
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| 	///            - 'updateFrequency' The update frequency of the leds in Hz
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| 	///            - 'updateDelay'     The delay of the output to leds (in periods of smoothing)
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| 	"color" :
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| 	{
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| 		"channelAdjustment" :
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| 		[
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| 			{
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| 				"id"   : "default",
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| 				"leds" : "*",
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| 				"pureRed" :
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| 				{
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| 					"redChannel"		: 255,
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| 					"greenChannel"		: 0,
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| 					"blueChannel"		: 0
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| 				},
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| 				"pureGreen" :
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| 				{
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| 					"redChannel"		: 0,
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| 					"greenChannel"		: 255,
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| 					"blueChannel"		: 0
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| 				},
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| 				"pureBlue" :
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| 				{
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| 					"redChannel"		: 0,
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| 					"greenChannel"		: 0,
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| 					"blueChannel"		: 255
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| 				}
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| 			}
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| 		],
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| 		"temperature" :
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| 		[
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| 			{
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| 				"id"   : "default",
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| 				"leds" : "*",
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| 				"temperatureValues" :
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| 				{
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| 					"red" 	: 255,
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| 					"green"	: 255,
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| 					"blue" 	: 255
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| 				}
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| 			}
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| 		],
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| 		"transform" :
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| 		[
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| 			{
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| 				"id"   : "default",
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| 				"leds" : "*",
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| 				"hsl" :
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| 				{
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| 					"saturationGain"	: 1.0000,
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| 					"luminanceGain"		: 1.0000,
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| 					"luminanceMinimum"	: 0.0000
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| 				},
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| 				"red" :
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| 				{
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| 					"threshold" 	: 0.0000,
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| 					"gamma"     	: 2.5000
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| 				},
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| 				"green" :
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| 				{
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| 					"threshold" 	: 0.0000,
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| 					"gamma"     	: 2.5000
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| 				},
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| 				"blue" :
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| 				{
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| 					"threshold" 	: 0.0000,
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| 					"gamma"     	: 2.5000
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| 				}
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| 			}
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| 		],
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| 
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| 		"smoothing" :
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| 		{
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| 			"type"            : "linear",
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| 			"time_ms"         : 200,
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| 			"updateFrequency" : 20.0000,
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| 			"updateDelay"     : 0
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| 		}
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| 	},
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| 
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| 	/// The black border configuration, contains the following items: 
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| 	///  * enable    			: true if the detector should be activated
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| 	///  * threshold 			: Value below which a pixel is regarded as black (value between 0.0 and 1.0)
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| 	///  * unknownFrameCnt		: Number of frames without any detection before the border is set to 0 (default 600)
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| 	///  * borderFrameCnt		: Number of frames before a consistent detected border gets set (default 50)
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| 	///  * maxInconsistentCnt 	: Number of inconsistent frames that are ignored before a new border gets a chance to proof consistency
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| 	///  * blurRemoveCnt		: Number of pixels that get removed from the detected border to cut away blur (default 1)
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| 	///  * mode 				: Border detection mode (values=default,classic,osd)
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| 	"blackborderdetector" : 
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| 	{
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| 		"enable" : true,
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| 		"threshold" : 0.0,
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| 		"unknownFrameCnt" : 600,
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| 		"borderFrameCnt" : 50,
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| 		"maxInconsistentCnt" : 10,
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| 		"blurRemoveCnt" : 1,
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| 		"mode" : "default"
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| 	},
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| 
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| 	/// The configuration of the effect engine, contains the following items: 
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| 	///  * paths		: An array with absolute location(s) of directories with effects 
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| 	///  * color 		: Set static color after boot -> set effect to "" (empty) and input the values [R,G,B] and set duration_ms NOT to 0 (use 1) instead 
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| 	///  * effect 		: The effect selected as 'boot sequence' 
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| 	///  * duration_ms	: The duration of the selected effect (0=endless) 
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| 	///  * priority 	: The priority of the selected effect/static color (default=990) HINT: lower value result in HIGHER priority! 
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| 	"effects" : 
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| 	{
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| 		"paths" : 
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| 		[
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| 			"/opt/hyperion/effects"
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| 		]
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| 	},
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| 
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| 	"bootsequence" : 
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| 	{
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| 		"color" : [0,0,0],
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| 		"effect" : "Rainbow swirl fast",
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| 		"duration_ms" : 3000,
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| 		"priority" : 990
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| 	},
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| 
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| 	/// The configuration of the Json/Proto forwarder. Forward messages to multiple instances of Hyperion on same and/or other hosts 
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| 	/// 'proto' is mostly used for video streams and 'json' for effects 
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| 	///  * proto	: Proto server adress and port of your target. Syntax:[IP:PORT] -> ["127.0.0.1:19447"] or more instances to forward ["127.0.0.1:19447","192.168.0.24:19449"] 
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| 	///  * json	: Json server adress and port of your target. Syntax:[IP:PORT] -> ["127.0.0.1:19446"] or more instances to forward ["127.0.0.1:19446","192.168.0.24:19448"] 
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| 	///  HINT:	If you redirect to "127.0.0.1" (localhost) you could start a second hyperion with another device/led config!
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| 	/// 		Be sure your client(s) is/are listening on the configured ports. The second Hyperion (if used) also needs to be configured! (HyperCon -> External -> Json Server/Proto Server)
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|  	"forwarder" : 
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|  	{
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|  		"proto" : ["127.0.0.1:19447"],
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|  		"json" : ["127.0.0.1:19446"]
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|  	},
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| 
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| 	///  The configuration for the frame-grabber, contains the following items: 
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| 	///   * width        : The width of the grabbed frames [pixels]
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| 	///   * height       : The height of the grabbed frames [pixels]
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| 	///   * frequency_Hz : The frequency of the frame grab [Hz]
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| 	///   * priority     : The priority of the frame-gabber (Default=890) HINT: lower value result in HIGHER priority! 
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| 	///   * ATTENTION    : Power-of-Two resolution is not supported and leads to unexpected behaviour! 
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| 	"framegrabber" : 
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| 	{
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| 		"width" : 64,
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| 		"height" : 64,
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| 		"frequency_Hz" : 10.0,
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| 		"priority" : 890
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| 	},
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| 
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| 	/// The configuration of the Kodi connection used to enable and disable the frame-grabber. Contains the following fields: 
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| 	///  * xbmcAddress       : The IP address of the Kodi-host
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| 	///  * xbmcTcpPort       : The TCP-port of the Kodi-server
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| 	///  * grabVideo         : Flag indicating that the frame-grabber is on(true) during video playback
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| 	///  * grabPictures      : Flag indicating that the frame-grabber is on(true) during picture show
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| 	///  * grabAudio         : Flag indicating that the frame-grabber is on(true) during audio playback
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| 	///  * grabMenu          : Flag indicating that the frame-grabber is on(true) at the Kodi menu
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| 	///  * grabPause         : Flag indicating that the frame-grabber is on(true) at player state "pause"
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| 	///  * grabScreensaver   : Flag indicating that the frame-grabber is on(true) when Kodi is on screensaver
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| 	///  * enable3DDetection : Flag indicating that the frame-grabber should switch to a 3D compatible modus if a 3D video is playing
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|  	"xbmcVideoChecker" : 
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|  	{
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|  		"xbmcAddress" : "127.0.0.1",
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|  		"xbmcTcpPort" : 9090,
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|  		"grabVideo" : true,
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|  		"grabPictures" : true,
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|  		"grabAudio" : true,
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|  		"grabMenu" : false,
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|  		"grabPause" : false,
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| 		"grabScreensaver" : true,
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|  		"enable3DDetection" : true
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|  	},
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| 
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| 	/// The configuration of the Json server which enables the json remote interface
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| 	///  * port : Port at which the json server is started
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| 	"jsonServer" : 
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| 	{
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| 		"port" : 19444
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| 	},
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| 
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| 	/// The configuration of the Proto server which enables the protobuffer remote interface
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| 	///  * port : Port at which the protobuffer server is started
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| 	"protoServer" : 
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| 	{
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| 		"port" : 19445
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| 	},
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| 
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| 	/// The configuration of the boblight server which enables the boblight remote interface
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| 	///  * port 	: Port at which the boblight server is started
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| 	///  * priority: Priority of the boblight server (Default=900) HINT: lower value result in HIGHER priority! 
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|  	"boblightServer" : 
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|  	{
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|  		"port" : 19333,
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|  		"priority" : 900
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|  	},
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| 
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| 	/// Configuration for the embedded V4L2 grabber
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| 	///  * device          : V4L2 Device to use [default="/dev/video0"]
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| 	///  * input           : V4L2 input to use [default=0]
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| 	///  * standard        : Video standard (no-change/PAL/NTSC) [default="no-change"]
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| 	///  * width                : V4L2 width to set [default=-1]
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| 	///  * height               : V4L2 height to set [default=-1]
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| 	///  * frameDecimation      : Frame decimation factor [default=2]
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| 	///  * sizeDecimation       : Size decimation factor [default=8]
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| 	///  * priority             : Hyperion priority channel [default=900]
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| 	///  * mode                 : 3D mode to use 2D/3DSBS/3DTAB (note: no autodetection) [default="2D"]
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| 	///  * cropLeft             : Cropping from the left [default=0]
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| 	///  * cropRight            : Cropping from the right [default=0]
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| 	///  * cropTop              : Cropping from the top [default=0]
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| 	///  * cropBottom           : Cropping from the bottom [default=0]
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| 	///  * redSignalThreshold   : Signal threshold for the red channel between 0.0 and 1.0 [default=0.0]
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| 	///  * greenSignalThreshold : Signal threshold for the green channel between 0.0 and 1.0 [default=0.0]
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| 	///  * blueSignalThreshold  : Signal threshold for the blue channel between 0.0 and 1.0 [default=0.0]
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|  	"grabber-v4l2" : 
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|  	{
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|  		"device" : "/dev/video0",
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|  		"input" : 0,
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|  		"standard" : "no-change",
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|  		"width" : -1,
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|  		"height" : -1,
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|  		"frameDecimation" : 2,
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|  		"sizeDecimation" : 8,
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|  		"priority" : 900,
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|  		"mode" : "2D",
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|  		"cropLeft" : 0,
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|  		"cropRight" : 0,
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|  		"cropTop" : 0,
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|  		"cropBottom" : 0,
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|  		"redSignalThreshold" : 0.0,
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|  		"greenSignalThreshold" : 0.0,
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|  		"blueSignalThreshold" : 0.0
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|  	},
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| 
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| 	///  The configuration for each individual led. This contains the specification of the area 
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| 	///  averaged of an input image for each led to determine its color. Each item in the list 
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| 	///  contains the following fields:
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| 	///  * index: The index of the led. This determines its location in the string of leds; zero 
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| 	///           being the first led.
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| 	///  * hscan: The fractional part of the image along the horizontal used for the averaging 
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| 	///           (minimum and maximum inclusive)
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| 	///  * vscan: The fractional part of the image along the vertical used for the averaging 
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| 	///           (minimum and maximum inclusive)
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| 	"leds" : 
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| 	[
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| 		{
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| 			"index" : 0,
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| 			"hscan" : { "minimum" : 0.5000, "maximum" : 0.5625 },
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| 			"vscan" : { "minimum" : 0.9200, "maximum" : 1.0000 }
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| 		},
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| 		{
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| 			"index" : 1,
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| 			"hscan" : { "minimum" : 0.4375, "maximum" : 0.5000 },
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| 			"vscan" : { "minimum" : 0.9200, "maximum" : 1.0000 }
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| 		},
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| 		{
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| 			"index" : 2,
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| 			"hscan" : { "minimum" : 0.3750, "maximum" : 0.4375 },
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| 			"vscan" : { "minimum" : 0.9200, "maximum" : 1.0000 }
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| 		},
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| 		{
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| 			"index" : 3,
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| 			"hscan" : { "minimum" : 0.3125, "maximum" : 0.3750 },
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| 			"vscan" : { "minimum" : 0.9200, "maximum" : 1.0000 }
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| 		},
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| 		{
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| 			"index" : 4,
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| 			"hscan" : { "minimum" : 0.2500, "maximum" : 0.3125 },
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| 			"vscan" : { "minimum" : 0.9200, "maximum" : 1.0000 }
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| 		},
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| 		{
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| 			"index" : 5,
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| 			"hscan" : { "minimum" : 0.1875, "maximum" : 0.2500 },
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| 			"vscan" : { "minimum" : 0.9200, "maximum" : 1.0000 }
 | |
| 		},
 | |
| 		{
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| 			"index" : 6,
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| 			"hscan" : { "minimum" : 0.1250, "maximum" : 0.1875 },
 | |
| 			"vscan" : { "minimum" : 0.9200, "maximum" : 1.0000 }
 | |
| 		},
 | |
| 		{
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| 			"index" : 7,
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| 			"hscan" : { "minimum" : 0.0625, "maximum" : 0.1250 },
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| 			"vscan" : { "minimum" : 0.9200, "maximum" : 1.0000 }
 | |
| 		},
 | |
| 		{
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| 			"index" : 8,
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| 			"hscan" : { "minimum" : 0.0000, "maximum" : 0.0625 },
 | |
| 			"vscan" : { "minimum" : 0.9200, "maximum" : 1.0000 }
 | |
| 		},
 | |
| 		{
 | |
| 			"index" : 9,
 | |
| 			"hscan" : { "minimum" : 0.0000, "maximum" : 0.0500 },
 | |
| 			"vscan" : { "minimum" : 0.8571, "maximum" : 1.0000 }
 | |
| 		},
 | |
| 		{
 | |
| 			"index" : 10,
 | |
| 			"hscan" : { "minimum" : 0.0000, "maximum" : 0.0500 },
 | |
| 			"vscan" : { "minimum" : 0.7143, "maximum" : 0.8571 }
 | |
| 		},
 | |
| 		{
 | |
| 			"index" : 11,
 | |
| 			"hscan" : { "minimum" : 0.0000, "maximum" : 0.0500 },
 | |
| 			"vscan" : { "minimum" : 0.5714, "maximum" : 0.7143 }
 | |
| 		},
 | |
| 		{
 | |
| 			"index" : 12,
 | |
| 			"hscan" : { "minimum" : 0.0000, "maximum" : 0.0500 },
 | |
| 			"vscan" : { "minimum" : 0.4286, "maximum" : 0.5714 }
 | |
| 		},
 | |
| 		{
 | |
| 			"index" : 13,
 | |
| 			"hscan" : { "minimum" : 0.0000, "maximum" : 0.0500 },
 | |
| 			"vscan" : { "minimum" : 0.2857, "maximum" : 0.4286 }
 | |
| 		},
 | |
| 		{
 | |
| 			"index" : 14,
 | |
| 			"hscan" : { "minimum" : 0.0000, "maximum" : 0.0500 },
 | |
| 			"vscan" : { "minimum" : 0.1429, "maximum" : 0.2857 }
 | |
| 		},
 | |
| 		{
 | |
| 			"index" : 15,
 | |
| 			"hscan" : { "minimum" : 0.0000, "maximum" : 0.0500 },
 | |
| 			"vscan" : { "minimum" : 0.0000, "maximum" : 0.1429 }
 | |
| 		},
 | |
| 		{
 | |
| 			"index" : 16,
 | |
| 			"hscan" : { "minimum" : 0.0000, "maximum" : 0.0625 },
 | |
| 			"vscan" : { "minimum" : 0.0000, "maximum" : 0.0800 }
 | |
| 		},
 | |
| 		{
 | |
| 			"index" : 17,
 | |
| 			"hscan" : { "minimum" : 0.0625, "maximum" : 0.1250 },
 | |
| 			"vscan" : { "minimum" : 0.0000, "maximum" : 0.0800 }
 | |
| 		},
 | |
| 		{
 | |
| 			"index" : 18,
 | |
| 			"hscan" : { "minimum" : 0.1250, "maximum" : 0.1875 },
 | |
| 			"vscan" : { "minimum" : 0.0000, "maximum" : 0.0800 }
 | |
| 		},
 | |
| 		{
 | |
| 			"index" : 19,
 | |
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