dittu

Turns a phone into a camera+Bluetooth remote so AI assistants can see and control any PC.

Sollte ich dies verwenden

Qualität und Sicherheit

B
Qualität der Beschreibung
87%
Vollständigkeit des Schemas
67%
Qualität der Benennung
87%
Risiko der Vergiftung
100%
Übereinstimmung der Berechtigungen
100%
Einhaltung des Protokolls
100%

Befunde (4)

  • LOWTool 'click' description lacks action verbin click
  • LOWTool 'double_click' description lacks action verbin double_click
  • LOWTool 'key' description lacks action verbin key
  • LOWTool 'scroll' description lacks action verbin scroll

Basierend auf einer automatisierten Analyse der Tool-Definitionen und der Einhaltung des Protokolls.

Kontextkosten

~1,611Tokens (Tool-Definitionen)
~673 BTypische Antwortgröße
Mittlere Auswirkung auf die Aufmerksamkeit (1.26% von 128k Kontext)

Dies ist die ungefähre Anzahl der Tokens, die jedes Mal verbraucht werden, wenn die Tools des Servers in den Kontext eines Modells geladen werden. Höhere Werte verringern die Aufmerksamkeit, die für andere Aufgaben verfügbar ist.

Installieren

Installation mit einem Klick

Fügen Sie dies Ihrer Datei `claude_desktop_config.json` hinzu:

{
  "mcpServers": {
    "dittu": {
      "url": "https://app.dittu.org/mcp"
    }
  }
}

Remote-Endpunkte

https://app.dittu.org/mcpstreamable-http

Was es kann

Tool-Inventar

Tools (12)

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⚪take_screenshot

Capture the current screen via the Dittu phone camera. Returns a JPEG image. Call this to see what's on screen before acting.

Eingabe-Schema

{
  "type": "object",
  "properties": {},
  "title": "take_screenshotArguments"
}
⚪take_screenshot_with_grid(step)

Capture the screen and overlay a coordinate grid. step: grid spacing (default 0.1, use 0.05 for finer grid on small UI elements). Returns a JPEG image with grid drawn on top.

Eingabe-Schema

{
  "type": "object",
  "properties": {
    "step": {
      "default": 0.1,
      "title": "Step",
      "type": "number"
    }
  },
  "title": "take_screenshot_with_gridArguments"
}
🟢take_screenshot_with_crosshair(nx, ny, zoom)

Capture the screen, crop tightly around (nx, ny), zoom in, and draw a crosshair at exactly that expected position. Use this for screen-corner calibration: move_mouse(nx, ny) near a screen edge, then call this to see whether the actual cursor lines up with the crosshair (where it SHOULD be if calibration is perfect). If the cursor is offset from the crosshair, or missing entirely (edge is cropped out of frame), corners need adjusting — see get_corners/set_corners. nx, ny: the same coordinates you passed to move_mouse. zoom: magnification factor for the cropped region (default 4x).

Eingabe-Schema

{
  "type": "object",
  "properties": {
    "nx": {
      "title": "Nx",
      "type": "number"
    },
    "ny": {
      "title": "Ny",
      "type": "number"
    },
    "zoom": {
      "default": 4,
      "title": "Zoom",
      "type": "number"
    }
  },
  "required": [
    "nx",
    "ny"
  ],
  "title": "take_screenshot_with_crosshairArguments"
}
🟢get_raw_screenshot

Capture the RAW camera frame — no perspective warp, no crop to the calibrated screen quad. Use this to see exactly what the camera sees before any correction, e.g. when troubleshooting why take_screenshot looks wrong, or before adjusting corners with get_corners/set_corners.

Eingabe-Schema

{
  "type": "object",
  "properties": {},
  "title": "get_raw_screenshotArguments"
}
🟢get_corners

Get the phone's current screen-corner calibration. Returns {"tl": [nx,ny], "tr": [nx,ny], "br": [nx,ny], "bl": [nx,ny]} — each corner is a normalized point (0.0–1.0) in the RAW camera frame, defining the perspective warp that maps the camera view onto a flat rectangle representing the monitor. These four points are an arbitrary quadrilateral (trapezoid), not a bounding box — adjust one corner at a time without assuming the others move symmetrically.

Eingabe-Schema

{
  "type": "object",
  "properties": {},
  "title": "get_cornersArguments"
}
🟡set_corners(tl, tr, br, bl)

Update the phone's screen-corner calibration. Each corner is [nx, ny] normalized 0.0–1.0 in the raw camera frame. tl/tr/br/bl = top-left/top-right/bottom-right/bottom-left of the monitor as seen by the camera (an arbitrary trapezoid due to perspective — not a rectangle). Call get_corners() first to read the current values before nudging one of them.

Eingabe-Schema

{
  "type": "object",
  "properties": {
    "tl": {
      "items": {
        "type": "number"
      },
      "title": "Tl",
      "type": "array"
    },
    "tr": {
      "items": {
        "type": "number"
      },
      "title": "Tr",
      "type": "array"
    },
    "br": {
      "items": {
        "type": "number"
      },
      "title": "Br",
      "type": "array"
    },
    "bl": {
      "items": {
        "type": "number"
      },
      "title": "Bl",
      "type": "array"
    }
  },
  "required": [
    "tl",
    "tr",
    "br",
    "bl"
  ],
  "title": "set_cornersArguments"
}

Ausgabe-Schema

{
  "type": "object",
  "properties": {
    "result": {
      "title": "Result",
      "type": "string"
    }
  },
  "required": [
    "result"
  ],
  "title": "set_cornersOutput"
}
⚪move_mouse(nx, ny)

Move mouse cursor to normalized coordinates WITHOUT clicking. nx, ny: float 0.0000–1.0000.

Eingabe-Schema

{
  "type": "object",
  "properties": {
    "nx": {
      "title": "Nx",
      "type": "number"
    },
    "ny": {
      "title": "Ny",
      "type": "number"
    }
  },
  "required": [
    "nx",
    "ny"
  ],
  "title": "move_mouseArguments"
}

Ausgabe-Schema

{
  "type": "object",
  "properties": {
    "result": {
      "title": "Result",
      "type": "string"
    }
  },
  "required": [
    "result"
  ],
  "title": "move_mouseOutput"
}
⚪click(nx, ny)

Click at normalized screen coordinates. nx, ny: float 0.0000–1.0000 where (0,0) = top-left, (1,1) = bottom-right.

Eingabe-Schema

{
  "type": "object",
  "properties": {
    "nx": {
      "title": "Nx",
      "type": "number"
    },
    "ny": {
      "title": "Ny",
      "type": "number"
    }
  },
  "required": [
    "nx",
    "ny"
  ],
  "title": "clickArguments"
}

Ausgabe-Schema

{
  "type": "object",
  "properties": {
    "result": {
      "title": "Result",
      "type": "string"
    }
  },
  "required": [
    "result"
  ],
  "title": "clickOutput"
}
⚪double_click(nx, ny)

Double-click at normalized screen coordinates.

Eingabe-Schema

{
  "type": "object",
  "properties": {
    "nx": {
      "title": "Nx",
      "type": "number"
    },
    "ny": {
      "title": "Ny",
      "type": "number"
    }
  },
  "required": [
    "nx",
    "ny"
  ],
  "title": "double_clickArguments"
}

Ausgabe-Schema

{
  "type": "object",
  "properties": {
    "result": {
      "title": "Result",
      "type": "string"
    }
  },
  "required": [
    "result"
  ],
  "title": "double_clickOutput"
}
⚪type_text(text)

Type text on the computer keyboard.

Eingabe-Schema

{
  "type": "object",
  "properties": {
    "text": {
      "title": "Text",
      "type": "string"
    }
  },
  "required": [
    "text"
  ],
  "title": "type_textArguments"
}

Ausgabe-Schema

{
  "type": "object",
  "properties": {
    "result": {
      "title": "Result",
      "type": "string"
    }
  },
  "required": [
    "result"
  ],
  "title": "type_textOutput"
}
⚪key(modifiers, keycodes)

Press a key combination. modifiers bitmask: LCtrl=1, LShift=2, LAlt=4, LWin=8 Common keycodes: Enter=40, Escape=41, Tab=43, Space=44, F4=61, PageDown=78, PageUp=75, Win=227 Examples: Alt+F4 → key(4, [61]) Ctrl+W → key(1, [26])

Eingabe-Schema

{
  "type": "object",
  "properties": {
    "modifiers": {
      "title": "Modifiers",
      "type": "integer"
    },
    "keycodes": {
      "items": {
        "type": "integer"
      },
      "title": "Keycodes",
      "type": "array"
    }
  },
  "required": [
    "modifiers",
    "keycodes"
  ],
  "title": "keyArguments"
}

Ausgabe-Schema

{
  "type": "object",
  "properties": {
    "result": {
      "title": "Result",
      "type": "string"
    }
  },
  "required": [
    "result"
  ],
  "title": "keyOutput"
}
⚪scroll(delta)

Scroll the mouse wheel. delta: number of ticks. Positive = scroll down, negative = scroll up.

Eingabe-Schema

{
  "type": "object",
  "properties": {
    "delta": {
      "title": "Delta",
      "type": "integer"
    }
  },
  "required": [
    "delta"
  ],
  "title": "scrollArguments"
}

Ausgabe-Schema

{
  "type": "object",
  "properties": {
    "result": {
      "title": "Result",
      "type": "string"
    }
  },
  "required": [
    "result"
  ],
  "title": "scrollOutput"
}

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