freecad-mcp

freecad-mcp

Enables AI-driven control of FreeCAD for CAD modeling, including creating, editing, measuring objects and running FEM analysis, via natural language interaction through Claude Desktop.

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FreeCAD MCP

This repository is a FreeCAD MCP that allows you to control FreeCAD from Claude Desktop.

Demo

Design a flange

demo

Design a toy car

demo

Design a part from 2D drawing

Input 2D drawing

input

Demo

demo

This is the conversation history. https://claude.ai/share/7b48fd60-68ba-46fb-bb21-2fbb17399b48

Install addon

FreeCAD Addon directory is

  • Windows: %APPDATA%\FreeCAD\Mod\
  • Mac:
    • FreeCAD 1.1: ~/Library/Application\ Support/FreeCAD/v1-1/Mod/
    • FreeCAD 1.0: ~/Library/Application\ Support/FreeCAD/v1-0/Mod/
  • Linux:
    • Ubuntu: ~/.FreeCAD/Mod/ or ~/snap/freecad/common/Mod/ (if you install FreeCAD from snap)
    • Debian: ~/.local/share/FreeCAD/Mod
    • Arch / CachyOS (FreeCAD 1.1 from extra/freecad): ~/.local/share/FreeCAD/v1-1/Mod/

Please put addon/FreeCADMCP directory to the addon directory.

git clone https://github.com/neka-nat/freecad-mcp.git
cd freecad-mcp

# For Linux (Ubuntu/Debian)
cp -r addon/FreeCADMCP ~/.FreeCAD/Mod/

# For Linux (Arch/CachyOS, FreeCAD 1.1 from extra/freecad)
mkdir -p ~/.local/share/FreeCAD/v1-1/Mod/
cp -r addon/FreeCADMCP ~/.local/share/FreeCAD/v1-1/Mod/

# For macOS (FreeCAD 1.1)
cp -r addon/FreeCADMCP ~/Library/Application\ Support/FreeCAD/v1-1/Mod/

When you install addon, you need to restart FreeCAD. You can select "MCP Addon" from Workbench list and use it.

workbench_list

And you can start RPC server by "Start RPC Server" command in "FreeCAD MCP" toolbar.

start_rpc_server

Auto-Start RPC Server

By default, the RPC server must be started manually each time FreeCAD opens. To start it automatically:

  1. Open the FreeCAD MCP menu (switch to the MCP Addon workbench first)
  2. Check Auto-Start Server

The setting is saved to freecad_mcp_settings.json and persists across sessions. On the next FreeCAD launch, the RPC server will start automatically once the application finishes loading.

You can disable it at any time by unchecking Auto-Start Server in the same menu.

Setting up Claude Desktop

Pre-installation of the uvx is required.

And you need to edit Claude Desktop config file, claude_desktop_config.json.

For user.

{
  "mcpServers": {
    "freecad": {
      "command": "uvx",
      "args": [
        "freecad-mcp"
      ]
    }
  }
}

If you want to save token, you can set only_text_feedback to true and use only text feedback.

{
  "mcpServers": {
    "freecad": {
      "command": "uvx",
      "args": [
        "freecad-mcp",
        "--only-text-feedback"
      ]
    }
  }
}

For developer. First, you need clone this repository.

git clone https://github.com/neka-nat/freecad-mcp.git
{
  "mcpServers": {
    "freecad": {
      "command": "uv",
      "args": [
        "--directory",
        "/path/to/freecad-mcp/",
        "run",
        "freecad-mcp"
      ]
    }
  }
}

Remote Connections

By default the RPC server does not accept remote connections and listens on localhost. To control FreeCAD from another machine on your network:

1. Enable remote connections in FreeCAD

In the FreeCAD MCP toolbar:

  1. Check Remote Connections — the RPC server will bind to 0.0.0.0 (all interfaces) on the next restart. For security reasons, it only accepts connections from the IP addresses or CIDR subnets specified in the Allowed IPs field. By default this is 127.0.0.1.

  2. Click Configure Allowed IPs and enter a comma-separated list of IP addresses or CIDR subnets that are allowed to connect, e.g.:

    192.168.1.100, 10.0.0.0/24
    

    127.0.0.1 is always the default. Invalid entries are rejected with an error dialog. Restart the RPC server after changing these settings.

2. Point the MCP server at the remote host

Pass the --host flag with the IP address or hostname of the machine running FreeCAD:

{
  "mcpServers": {
    "freecad": {
      "command": "uvx",
      "args": [
        "freecad-mcp",
        "--host", "192.168.1.100"
      ]
    }
  }
}

The --host value is validated on startup — it must be a valid IPv4/IPv6 address or hostname.

Tools

  • create_document: Create a new document in FreeCAD.
  • create_object: Create a new object in FreeCAD.
  • edit_object: Edit an object in FreeCAD.
  • delete_object: Delete an object in FreeCAD.
  • execute_code: Execute arbitrary Python code in FreeCAD. See Security model below.
  • insert_part_from_library: Insert a part from the parts library.
  • get_view: Get a screenshot of the active view.
  • get_objects: Get all objects in a document.
  • get_object: Get an object in a document.
  • get_parts_list: Get the list of parts in the parts library.
  • run_fem_analysis: Run the CalculiX solver on an existing Fem::FemAnalysis and return summary results (max von Mises stress, max displacement, node count, working directory). Auto-creates a SolverCcxTools if the analysis has none. See examples/cantilever_fem.py for an end-to-end usage example.

Verified geometry tools

Every tool above reports "success" once the underlying FreeCAD call didn't raise — which a CAD kernel will do for a lot of operations that don't actually accomplish anything (a pocket cut over empty space, a pattern with an axis reference that silently resolves to nothing, a placement that gets reverted by its owning body on the next recompute). The tools below instead report measured geometry (volume, bounding box, isValid) so a caller can tell the difference between "the call succeeded" and "the call did what I wanted":

  • measure: Volume, area, bounding box, isValid, and face/edge/vertex counts for any object.
  • probe_material_at: Checks whether solid material actually exists inside a given box — "is there a floor/wall here?"
  • place: Positions an object by its real bounding-box corner (not a derived offset), and automatically moves the owning PartDesign::Body when needed, since a feature's own Placement is silently reverted by its Body otherwise.
  • create_sketch, add_rectangle, add_circle, add_polygon: Build sketches that are fully constrained as they're drawn (no separate dimensioning step, and no "closed but unpinned" loops that PartDesign refuses to pad).
  • pad, pocket: Extrude/cut a sketch, reporting volumeBefore/volume/isValid. pocket fails loudly if no material was removed. Through-holes always cut from the midplane so they penetrate regardless of which side the material is on.
  • linear_pattern, polar_pattern: Repeat features along/around a sketch axis, resolving the axis reference correctly so a pattern doesn't silently pattern nothing.
  • fillet, chamfer: Round/bevel a solid feature's edges; reject a sketch as the base outright (with an explanation) instead of poisoning the feature tree.
  • measure_gap: Measures the real gap between two parts along one axis, so a spanning part (e.g. a shelf between two supports) can be sized from measured geometry instead of a number derived independently of where those parts actually ended up.
  • instantiate_family: Builds a parametric part from a small library of part-family templates (l_bracket, flanged_disc, box_enclosure) instead of a manual op sequence.

Security model

  • execute_code/execute_code_async run unsandboxed Python on the machine hosting FreeCAD — exec(code, globals()) with no import allowlist, AST restrictions, or resource limits. Anything reachable from this tool (import os; os.system(...), subprocess, arbitrary file access) is reachable by anyone who can call it. This is a deliberate design choice, not an oversight, but it means connecting to the RPC port is equivalent to full shell access to that machine — treat network exposure accordingly (see Remote Connections below). The MCP server blocks a denylist of known-dangerous patterns (import os, import subprocess, subprocess., os.system(, eval(, exec(, open(, __import__) plus three Sketcher calls observed to hang FreeCAD's solver indefinitely on an already-constrained sketch (.solve(, deleteAllGeometry(, movePoint() before running code — this raises the bar against accidental misuse, it is not a security sandbox against an adversarial caller.
  • execute_code's Python namespace is shared and persists across every execute_code/execute_code_async call for the life of the FreeCAD process (it is the rpc_server module's own globals(), not a fresh namespace per call). This is what lets execute_code_async stash a result in a module-level variable for a later execute_code call to read — but it also means a variable, import, or class defined by one call remains visible (and can collide) in every later, unrelated call, with no reset short of restarting FreeCAD or the RPC server.
  • edit_object's property assignment is partial, not atomic. If several properties are passed and one fails to apply, the properties that did succeed remain applied on the object — only the failure is reported. Always re-check with get_object/measure after an edit rather than assuming all-or-nothing semantics.
  • The only network access control is an IP allowlist (see Remote Connections) — there is no authentication token and no TLS. It stops connections from unlisted addresses; it does not stop a request that is merely spoofed or already inside the same trusted network.

Contributors

<a href="https://github.com/neka-nat/freecad-mcp/graphs/contributors"> <img src="https://contrib.rocks/image?repo=neka-nat/freecad-mcp" /> </a>

Made with contrib.rocks.

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