Posts by Thomy


    Versorgst Du Deinen Raspberry über den MicroUSB mit Strom?
    Wenn ja schliesse entweder einen aktiven USB-Hub an den RPi und stecke in den Deinen Grabber und Deinen WLAN-Stick oder Du versorgst Deinen RPi über die GPIOs mit Strom.


    .bismarck

    Ja, über Micro-USB.
    Wäre das die einzige Möglichkeit, weshalb er KODI nicht automatisch als Quelle erkennt?
    Nutze den WLAN-Stick mittlerweile nicht mehr, da ich gestern ein Kabel verlegt habe. Und nur für den Grabber sollte der Pi doch eigentlich genug Strom liefern können.
    Habe leider keinen aktiven Hub zur Verfügung ums zu testen

    Selbst wenn ich den USB Grabber rausziehe, wird die Kodi Config nicht automatisch geladen...


    Ok ich denke schonmal über eine Alternative nach, ich hoffe du kannst mir dabei auch helfen:

    Angenommen ich könnte damit leben, dass die Quelle nicht automatisch umgeschaltet wird (Dann mache ich einfach immer den SAT-Receiver aus, wenn ich auch dem Pi etwas gucken will) und ich auch nur eine Config für beide Quellen habe.
    Dann würde ich ja ebenfalls als allererstes OpenElec installieren. Müsste ich dann auch dein Update installieren, oder ist das nur für die automatische Quellenumschaltung nötig?
    Anschließend würde ich die Schritte mit dem Hyperion_Switcher auslassen.
    Dann müsste ich nur noch eine hyperion.config.json haben und diese anpassen.
    Darin würde ich sowohl die grabber-v4l2 als auch die framegrabber Sektionen einfügen (zusätzlich zu blackborderdetector, xbmcVideoChecker, json-server, protoserver)
    Meinem bisherigen Verständnis nach würde Hyperion dann immer den USB Grabber benutzen, wenn er ein Signal davon bekommt (und wenn nicht das eigene Kodi-Signal)

    Wäre das so sinnvoll? Oder habe ich da einen Denkfehler?

    Hast du bei der Erstellung der Config bei HyperCon bei "Direction" das falsche eingestellt?

    Denk daran: Wenn du die LEDs von hinten befestigt hast und von da aus gezählt hast, musst du es bei HyperCon andersherum einstellen, da du dort "von vorne" auf das Display guckst ;)

    Danke für die schnelle Antwort
    Ich hoffe das ist so richtig gelogt. Ansonsten bitte sagen was ich anders machen muss ;)

    Nach dem manuellen aufrufen von der Kodi config scheint er das auch als Quelle zu erkennen...

    dmesg:
    http://sprunge.us/iLdO

    journalctl:
    http://sprunge.us/iYQA

    Manuelle Aufruf Videograbber:

    Display Spoiler

    ColorTransform 'default' => [0; 117]
    Device configuration:
    {
    "colorOrder" : "rgb",
    "name" : "MyPi",
    "output" : "/dev/spidev0.0",
    "rate" : 250000,
    "type" : "ws2801"
    }

    Black border threshold set to 0.05 (13)
    Creating linear smoothing
    Effect loaded: Knight rider
    Effect loaded: Blue mood blobs
    Effect loaded: Green mood blobs
    Effect loaded: Red mood blobs
    Effect loaded: Rainbow mood
    Effect loaded: Rainbow swirl fast
    Effect loaded: Rainbow swirl
    Effect loaded: Snake
    Effect loaded: Strobe blue
    Effect loaded: Strobe Raspbmc
    Effect loaded: Strobe white
    Initializing Python interpreter
    Hyperion created and initialised
    run effect Rainbow swirl fast on channel 0
    Boot sequence(Rainbow swirl fast) created and started
    V4L2 width=360 height=288
    V4L2 pixel format=UYVY
    V4L2 grabber signal threshold set to: {0,0,0}
    V4L2 grabber started
    V4l2 grabber created and started
    Json server created and started on port 19444
    Proto server created and started on port 19445
    BORDER SWITCH REQUIRED!!
    CURRENT BORDER TYPE: unknown=0 hor.size=0 vert.size=0
    V4L2 grabber stopped
    effect finished
    V4L2 grabber started
    Frame too small: 206308 != 207360

    Manueller Aufruf Kodi:

    Display Spoiler


    ColorTransform 'default' => [0; 117]
    Device configuration:
    {
    "colorOrder" : "rgb",
    "name" : "MyPi",
    "output" : "/dev/spidev0.0",
    "rate" : 250000,
    "type" : "ws2801"
    }

    Black border threshold set to 0.03 (8)
    Creating linear smoothing
    Effect loaded: Knight rider
    Effect loaded: Blue mood blobs
    Effect loaded: Green mood blobs
    Effect loaded: Red mood blobs
    Effect loaded: Rainbow mood
    Effect loaded: Rainbow swirl fast
    Effect loaded: Rainbow swirl
    Effect loaded: Snake
    Effect loaded: Strobe blue
    Effect loaded: Strobe Raspbmc
    Effect loaded: Strobe white
    Initializing Python interpreter
    Hyperion created and initialised
    run effect Rainbow swirl fast on channel 0
    Boot sequence(Rainbow swirl fast) created and started
    XBMC video checker created and started
    Display opened with resolution: 1920x1080
    Frame grabber created and started
    Json server created and started on port 19444
    Proto server created and started on port 19445
    XBMC Connected
    Message from XBMC: {"id":666,"jsonrpc":"2.0","result":[]}
    XBMC checker: switching to MENU mode
    Message from XBMC: {"id":668,"jsonrpc":"2.0","result":{"System.ScreenSaverActive":true}}
    Message from XBMC: {"id":670,"jsonrpc":"2.0","result":{"version":{"major":14,"minor":0,"revision":"ad747d9","tag":"stable"}}}
    BORDER SWITCH REQUIRED!!
    CURRENT BORDER TYPE: unknown=0 hor.size=31 vert.size=34
    effect finished
    Message from XBMC: {"jsonrpc":"2.0","method":"GUI.OnScreensaverDeactivated","params":{"data":{"shuttingdown":false},"sender":"xbmc"}}
    BORDER SWITCH REQUIRED!!
    CURRENT BORDER TYPE: unknown=0 hor.size=25 vert.size=26
    BORDER SWITCH REQUIRED!!
    CURRENT BORDER TYPE: unknown=0 hor.size=18 vert.size=21
    BORDER SWITCH REQUIRED!!
    CURRENT BORDER TYPE: unknown=0 hor.size=18 vert.size=20
    BORDER SWITCH REQUIRED!!
    CURRENT BORDER TYPE: unknown=0 hor.size=17 vert.size=20

    Hallo zusammen
    Danke erstmal an bismarck für die ganze Mühe

    Ich bin bei der Einrichtung auf einige Schwierigkeiten gestoßen.
    Der Grabber scheint zu funktionieren und gibt das Ambilight auch aus, allerdings funktioniert die automatische Umschaltung nicht und Kodi scheint keine Werte mehr zu senden (oder Hyperion will sie nicht empfangen).
    Es scheint also als würde Hyperion nur darauf warten, dass ich meinen Sat-Receiver anstelle und erkennt die Daten von Kodi nicht.

    Hardware Probleme kann ich eigentlich ausschließen, habe alles ausgiebig getestet

    Hier mal meine Configs:

    Kodi

    Display Spoiler

    // Automatically generated configuration file for 'Hyperion daemon'
    // Generated by: HyperCon (The Hyperion deamon configuration file builder

    {
    /// Device configuration contains the following fields:
    /// * 'name' : The user friendly name of the device (only used for display purposes)
    /// * 'type' : The type of the device or leds (known types for now are 'ws2801', 'ldp8806',
    /// 'lpd6803', 'sedu', 'adalight', 'lightpack', 'test' and 'none')
    /// * 'output' : The output specification depends on selected device. This can for example be the
    /// device specifier, device serial number, or the output file name
    /// * 'rate' : The baudrate of the output to the device
    /// * 'colorOrder' : The order of the color bytes ('rgb', 'rbg', 'bgr', etc.).
    "device" :
    {
    "name" : "MyPi",
    "type" : "ws2801",
    "output" : "/dev/spidev0.0",
    "rate" : 250000,
    "colorOrder" : "rgb"
    },

    /// Color manipulation configuration used to tune the output colors to specific surroundings.
    /// The configuration contains a list of color-transforms. Each transform contains the
    /// following fields:
    /// * 'id' : The unique identifier of the color transformation (eg 'device_1') /// * 'leds' : The indices (or index ranges) of the leds to which this color transform applies
    /// (eg '0-5, 9, 11, 12-17'). The indices are zero based. /// * 'hsv' : The manipulation in the Hue-Saturation-Value color domain with the following
    /// tuning parameters:
    /// - 'saturationGain' The gain adjustement of the saturation
    /// - 'valueGain' The gain adjustement of the value
    /// * 'red'/'green'/'blue' : The manipulation in the Red-Green-Blue color domain with the
    /// following tuning parameters for each channel:
    /// - 'threshold' The minimum required input value for the channel to be on
    /// (else zero)
    /// - 'gamma' The gamma-curve correction factor
    /// - 'blacklevel' The lowest possible value (when the channel is black)
    /// - 'whitelevel' The highest possible value (when the channel is white)
    ///
    /// Next to the list with color transforms there is also a smoothing option.
    /// * 'smoothing' : Smoothing of the colors in the time-domain with the following tuning
    /// parameters:
    /// - 'type' The type of smoothing algorithm ('linear' or 'none')
    /// - 'time_ms' The time constant for smoothing algorithm in milliseconds
    /// - 'updateFrequency' The update frequency of the leds in Hz
    "color" :
    {
    "transform" :
    [
    {
    "id" : "default",
    "leds" : "*",
    "hsv" :
    {
    "saturationGain" : 1.0000,
    "valueGain" : 1.0000
    },
    "red" :
    {
    "threshold" : 0.0000,
    "gamma" : 1.0000,
    "blacklevel" : 0.0000,
    "whitelevel" : 1.0000
    },
    "green" :
    {
    "threshold" : 0.0000,
    "gamma" : 1.0000,
    "blacklevel" : 0.0000,
    "whitelevel" : 1.0000
    },
    "blue" :
    {
    "threshold" : 0.0000,
    "gamma" : 1.0000,
    "blacklevel" : 0.0000,
    "whitelevel" : 1.0000
    }
    }
    ],
    "smoothing" :
    {
    "type" : "linear",
    "time_ms" : 200,
    "updateFrequency" : 20.0000
    }
    },

    /// The configuration for each individual led. This contains the specification of the area
    /// averaged of an input image for each led to determine its color. Each item in the list
    /// contains the following fields:
    /// * index: The index of the led. This determines its location in the string of leds; zero
    /// being the first led.
    /// * hscan: The fractional part of the image along the horizontal used for the averaging
    /// (minimum and maximum inclusive)
    /// * vscan: The fractional part of the image along the vertical used for the averaging
    /// (minimum and maximum inclusive)
    "leds" :
    [
    {
    "index" : 0,
    "hscan" : { "minimum" : 0.5278, "maximum" : 0.5556 },
    "vscan" : { "minimum" : 0.9200, "maximum" : 1.0000 }
    },
    {
    ....
    {
    "index" : 117,
    "hscan" : { "minimum" : 0.4444, "maximum" : 0.4722 },
    "vscan" : { "minimum" : 0.9200, "maximum" : 1.0000 }
    }
    ],

    /// The black border configuration, contains the following items:
    /// * enable : true if the detector should be activated
    /// * threshold : Value below which a pixel is regarded as black (value between 0.0 and 1.0)
    "blackborderdetector" :
    {
    "enable" : true,
    "threshold" : 0.03
    },

    /// The configuration of the effect engine, contains the following items:
    /// * paths : An array with absolute location(s) of directories with effects
    /// * bootsequence : The effect selected as 'boot sequence'
    "effects" :
    {
    "paths" :
    [
    "/storage/hyperion/effects"
    ]
    },

    "bootsequence" :
    {
    "effect" : "Rainbow swirl fast",
    "duration_ms" : 3000
    },

    /// The configuration for the frame-grabber, contains the following items:
    /// * width : The width of the grabbed frames [pixels]
    /// * height : The height of the grabbed frames [pixels]
    /// * frequency_Hz : The frequency of the frame grab [Hz]
    "framegrabber" :
    {
    "width" : 720,
    "height" : 576,
    "frequency_Hz" : 10.0
    },

    /// The configuration of the XBMC connection used to enable and disable the frame-grabber. Contains the following fields:
    /// * xbmcAddress : The IP address of the XBMC-host
    /// * xbmcTcpPort : The TCP-port of the XBMC-server
    /// * grabVideo : Flag indicating that the frame-grabber is on(true) during video playback
    /// * grabPictures : Flag indicating that the frame-grabber is on(true) during picture show
    /// * grabAudio : Flag indicating that the frame-grabber is on(true) during audio playback
    /// * grabMenu : Flag indicating that the frame-grabber is on(true) in the XBMC menu
    /// * grabScreensaver : Flag indicating that the frame-grabber is on(true) when XBMC is on screensaver
    /// * enable3DDetection : Flag indicating that the frame-grabber should switch to a 3D compatible modus if a 3D video is playing
    "xbmcVideoChecker" :
    {
    "xbmcAddress" : "127.0.0.1",
    "xbmcTcpPort" : 9090,
    "grabVideo" : true,
    "grabPictures" : true,
    "grabAudio" : true,
    "grabMenu" : true,
    "grabScreensaver" : true,
    "enable3DDetection" : true
    },

    /// The configuration of the Json server which enables the json remote interface
    /// * port : Port at which the json server is started
    "jsonServer" :
    {
    "port" : 19444
    },

    /// The configuration of the Proto server which enables the protobuffer remote interface
    /// * port : Port at which the protobuffer server is started
    "protoServer" :
    {
    "port" : 19445
    },

    /// The configuration of the boblight server which enables the boblight remote interface
    /// * port : Port at which the boblight server is started
    // "boblightServer" :
    // {
    // "port" : 19333
    // },

    "endOfJson" : "endOfJson"
    }

    Videograbber

    Display Spoiler

    // Automatically generated configuration file for 'Hyperion daemon'
    // Generated by: HyperCon (The Hyperion deamon configuration file builder

    {
    /// Device configuration contains the following fields:
    /// * 'name' : The user friendly name of the device (only used for display purposes)
    /// * 'type' : The type of the device or leds (known types for now are 'ws2801', 'ldp8806',
    /// 'lpd6803', 'sedu', 'adalight', 'lightpack', 'test' and 'none')
    /// * 'output' : The output specification depends on selected device. This can for example be the
    /// device specifier, device serial number, or the output file name
    /// * 'rate' : The baudrate of the output to the device
    /// * 'colorOrder' : The order of the color bytes ('rgb', 'rbg', 'bgr', etc.).
    "device" :
    {
    "name" : "MyPi",
    "type" : "ws2801",
    "output" : "/dev/spidev0.0",
    "rate" : 250000,
    "colorOrder" : "rgb"
    },

    /// Color manipulation configuration used to tune the output colors to specific surroundings.
    /// The configuration contains a list of color-transforms. Each transform contains the
    /// following fields:
    /// * 'id' : The unique identifier of the color transformation (eg 'device_1') /// * 'leds' : The indices (or index ranges) of the leds to which this color transform applies
    /// (eg '0-5, 9, 11, 12-17'). The indices are zero based. /// * 'hsv' : The manipulation in the Hue-Saturation-Value color domain with the following
    /// tuning parameters:
    /// - 'saturationGain' The gain adjustement of the saturation
    /// - 'valueGain' The gain adjustement of the value
    /// * 'red'/'green'/'blue' : The manipulation in the Red-Green-Blue color domain with the
    /// following tuning parameters for each channel:
    /// - 'threshold' The minimum required input value for the channel to be on
    /// (else zero)
    /// - 'gamma' The gamma-curve correction factor
    /// - 'blacklevel' The lowest possible value (when the channel is black)
    /// - 'whitelevel' The highest possible value (when the channel is white)
    ///
    /// Next to the list with color transforms there is also a smoothing option.
    /// * 'smoothing' : Smoothing of the colors in the time-domain with the following tuning
    /// parameters:
    /// - 'type' The type of smoothing algorithm ('linear' or 'none')
    /// - 'time_ms' The time constant for smoothing algorithm in milliseconds
    /// - 'updateFrequency' The update frequency of the leds in Hz
    "color" :
    {
    "transform" :
    [
    {
    "id" : "default",
    "leds" : "*",
    "hsv" :
    {
    "saturationGain" : 1.0000,
    "valueGain" : 1.0000
    },
    "red" :
    {
    "threshold" : 0.0000,
    "gamma" : 1.0000,
    "blacklevel" : 0.0000,
    "whitelevel" : 1.0000
    },
    "green" :
    {
    "threshold" : 0.0000,
    "gamma" : 1.0000,
    "blacklevel" : 0.0000,
    "whitelevel" : 1.0000
    },
    "blue" :
    {
    "threshold" : 0.0000,
    "gamma" : 1.0000,
    "blacklevel" : 0.0000,
    "whitelevel" : 1.0000
    }
    }
    ],
    "smoothing" :
    {
    "type" : "linear",
    "time_ms" : 200,
    "updateFrequency" : 20.0000,
    "updateDelay" : 0
    }
    },

    /// The configuration for each individual led. This contains the specification of the area
    /// averaged of an input image for each led to determine its color. Each item in the list
    /// contains the following fields:
    /// * index: The index of the led. This determines its location in the string of leds; zero
    /// being the first led.
    /// * hscan: The fractional part of the image along the horizontal used for the averaging
    /// (minimum and maximum inclusive)
    /// * vscan: The fractional part of the image along the vertical used for the averaging
    /// (minimum and maximum inclusive)
    "leds" :
    [
    {
    "index" : 0,
    "hscan" : { "minimum" : 0.5278, "maximum" : 0.5556 },
    "vscan" : { "minimum" : 0.9200, "maximum" : 1.0000 }
    },
    {
    ...
    {
    "index" : 117,
    "hscan" : { "minimum" : 0.4444, "maximum" : 0.4722 },
    "vscan" : { "minimum" : 0.9200, "maximum" : 1.0000 }
    }
    ],

    /// The black border configuration, contains the following items:
    /// * enable : true if the detector should be activated
    /// * threshold : Value below which a pixel is regarded as black (value between 0.0 and 1.0)
    "blackborderdetector" :
    {
    "enable" : true,
    "threshold" : 0.05
    },

    /// The configuration of the effect engine, contains the following items:
    /// * paths : An array with absolute location(s) of directories with effects
    /// * bootsequence : The effect selected as 'boot sequence'
    "effects" :
    {
    "paths" :
    [
    "/storage/hyperion/effects"
    ]
    },

    "bootsequence" :
    {
    "effect" : "Rainbow swirl fast",
    "duration_ms" : 3000
    },

    /// Configuration for the embedded V4L2 grabber
    /// * device : V4L2 Device to use [default="/dev/video0"]
    /// * input : V4L2 input to use [default=0]
    /// * standard : Video standard (no-change/PAL/NTSC) [default="no-change"]
    /// * width : V4L2 width to set [default=-1]
    /// * height : V4L2 height to set [default=-1]
    /// * frameDecimation : Frame decimation factor [default=2]
    /// * sizeDecimation : Size decimation factor [default=8]
    /// * priority : Hyperion priority channel [default=800]
    /// * mode : 3D mode to use 2D/3DSBS/3DTAB (note: no autodetection) [default="2D"]
    /// * cropLeft : Cropping from the left [default=0]
    /// * cropRight : Cropping from the right [default=0]
    /// * cropTop : Cropping from the top [default=0]
    /// * cropBottom : Cropping from the bottom [default=0]
    /// * redSignalThreshold : Signal threshold for the red channel between 0.0 and 1.0 [default=0.0]
    /// * greenSignalThreshold : Signal threshold for the green channel between 0.0 and 1.0 [default=0.0]
    /// * blueSignalThreshold : Signal threshold for the blue channel between 0.0 and 1.0 [default=0.0]
    "grabber-v4l2" :
    {
    "device" : "/dev/video0",
    "input" : 0,
    "standard" : "PAL",
    "width" : 360,
    "height" : 288,
    "frameDecimation" : 2,
    "sizeDecimation" : 1,
    "priority" : 600,
    "mode" : "2D",
    "cropLeft" : 12,
    "cropRight" : 12,
    "cropTop" : 5,
    "cropBottom" : 5,
    "redSignalThreshold" : 0.0,
    "greenSignalThreshold" : 0.0,
    "blueSignalThreshold" : 0.0
    },


    /// The configuration for the frame-grabber, contains the following items:
    /// * width : The width of the grabbed frames [pixels]
    /// * height : The height of the grabbed frames [pixels]
    /// * frequency_Hz : The frequency of the frame grab [Hz]
    // "framegrabber" :
    // {
    // "width" : 64,
    // "height" : 64,
    // "frequency_Hz" : 10.0
    // },

    /// The configuration of the XBMC connection used to enable and disable the frame-grabber. Contains the following fields:
    /// * xbmcAddress : The IP address of the XBMC-host
    /// * xbmcTcpPort : The TCP-port of the XBMC-server
    /// * grabVideo : Flag indicating that the frame-grabber is on(true) during video playback
    /// * grabPictures : Flag indicating that the frame-grabber is on(true) during picture show
    /// * grabAudio : Flag indicating that the frame-grabber is on(true) during audio playback
    /// * grabMenu : Flag indicating that the frame-grabber is on(true) in the XBMC menu
    /// * grabScreensaver : Flag indicating that the frame-grabber is on(true) when XBMC is on screensaver
    /// * enable3DDetection : Flag indicating that the frame-grabber should switch to a 3D compatible modus if a 3D video is playing
    // "xbmcVideoChecker" :
    // {
    // "xbmcAddress" : "127.0.0.1",
    // "xbmcTcpPort" : 9090,
    // "grabVideo" : true,
    // "grabPictures" : true,
    // "grabAudio" : true,
    // "grabMenu" : false,
    // "grabScreensaver" : true,
    // "enable3DDetection" : true
    // },

    /// The configuration of the Json server which enables the json remote interface
    /// * port : Port at which the json server is started
    "jsonServer" :
    {
    "port" : 19444
    },

    /// The configuration of the Proto server which enables the protobuffer remote interface
    /// * port : Port at which the protobuffer server is started
    "protoServer" :
    {
    "port" : 19445
    },

    /// The configuration of the boblight server which enables the boblight remote interface
    /// * port : Port at which the boblight server is started
    // "boblightServer" :
    // {
    // "port" : 19333
    // },

    "endOfJson" : "endOfJson"
    }

    Das zu testen ist doch eine Sache von wenigen Minuten
    Bei meinem H/K AVR geht es jedenfalls nicht. Glücklicherweise gibt aber mein SAT-Receiver gleichzeitig HDMI und Composite aus, wodurch ich mir den HDMI Splitter etc sparen kann (benutze als Quellen eh nur SAT und XBMC)

    Also nach stundenlangem ausprobiern hab ichs nun doch hinbekommen.

    Offenbar lag der Fehler irgendwo bei dem brennen auf die SD Karte. Ich hab mir letztendlich die Raspbmc Version runtergeladen, die nicht erst beim booten runterladen muss. Die .img datei hab ich manuell mit dem DiskImager auf die SD Karte gebrannt und von da an hats funktioniert wie es sollte

    Trotzdem danke für die Hilfe ;)

    Hallo zusammen :)

    Also heute morgen ist bei mir mein erster Raspberry und meine SD Karte angekommen. Ich hab mir sofort Raspbmc geladen und auf der SD Karte installiert. Die Installation hat soweit auch keine Fehlermeldungen geliefert.

    Ich hab meinen Raspberry schon per LAN mit Internet und per HDMI mit meinem TV verbunden und ein Handyladekabel zur Stromversorgung angeschlossen. Zwar leuchtet die LED auch rot, wenn ich jetzt meine SD Karte reinstecke passiert allerdings rein garnichts.

    Meine SD ist genau diese: http://www.amazon.de/gp/product/B00422FBJ2/ref=ox_sc_act_title_2?ie=UTF8&psc=1&smid=A3JWKAKR8XB7XF&tag=psblog-21 [Anzeige]

    Die steht hier im Forum auch in der Liste der kompatiblen.


    Jetzt frage ich mich ob ich irgendetwas falsch gemacht habe (angesichts der eigentlich sehr simplen einrichtung von raspbmc eher unwahrscheinlich) oder ob irgendwas mit der Karte nicht stimmt

    Kann mir vielleicht jemand verraten wo das problem liegen könnte und wie ich es behebe?