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Larnitech MCP Server

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Read, watch and safely control Larnitech smart-home controllers over the API2 protocol.

About

Read, watch and safely control Larnitech smart-home controllers over the API2 protocol.

Security Report

10.0
Low Risk10.0Low Risk

Valid MCP server (2 strong, 3 medium validity signals). No known CVEs in dependencies. Package registry verified. Imported from the Official MCP Registry.

5 files analyzed · 1 issue found

Security scores are indicators to help you make informed decisions, not guarantees. Always review permissions before connecting any MCP server.

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How to Install

Add this to your MCP configuration file:

{
  "mcpServers": {
    "io-github-mpopovych-thinkhome-larnitech-mcp": {
      "args": [
        "larnitech-mcp"
      ],
      "command": "uvx"
    }
  }
}

Documentation

View on GitHub

From the project's GitHub README.

Larnitech MCP

Version 1.0.2 Beta · Changelog · MIT licensed

An MCP server that lets an AI agent read and control a Larnitech smart-home installation over the API2 protocol — lights, climate, blinds, sensors, meters.

It ships with a documented device-type reference built from live testing against real controllers, so the agent looks up how a widget actually behaves instead of guessing from key names. That matters more than it sounds: on this platform writing state: "closed" to a gate is acknowledged with success: true and then silently ignored, and several climate types drop half of any two-key write. Those traps are documented, checked before every write, and listed in this README's own safety section.


What it does

Reading — open, no configuration beyond the API key.

ToolWhat it does
list_objectsconfigured controllers (never returns keys)
check_connectionconnect, authorize, report device count
list_devicesfull snapshot, filterable by area / type / name
get_devicestatus of one device by address

Understanding what came back — statuses are type-specific and occasionally not key/value at all.

ToolWhat it does
get_docs()overview of every documented device type
get_docs("AC")full detail for one type: status keys, enums, XML attributes, script byte layout, quirks
get_docs("bugs")numbered registry of confirmed vendor bugs
get_docs("protocol")API2 protocol reference

Responses flag statuses that need care: an opaque hex blob, a malfunction fault code in place of a normal reading, or an all-null payload from a meter that missed its poll cycle — which means no data, not zeros.

Watching — non-blocking, for "press the switch and tell me what moved".

ToolWhat it does
watch_startbegin watching; returns immediately
watch_readdrain what changed since the last read, per key from/to
watch_stop / watch_liststop one / list active

A watch keeps its own connection alive, so it survives the controller's 5-minute idle timeout and can stay open across a long conversation.

Writing — off by default, two-phase, and never a single tool call.

ToolWhat it does
set_devicevalidate, preview the change, return a token — does not write
confirm_setexecute, then wait for the device to settle and report what actually landed

Learning — findings survive the session.

ToolWrites to
add_docs_notethat device type's own doc file
add_preferencepreferences.md, served with every get_docs

Reportingreport_bug turns something you hit into a ready-to-file issue for this repository. It composes the report, strips identifiers (API keys, serials, hostnames, site names) and returns a prefilled link. Nothing is posted: you open the link, read exactly what would be published, and submit it yourself under your own account. No token is needed by anyone.


Requirements

  • Python 3.11+
  • A Larnitech controller you administer, reachable via the Larnitech cloud or on your LAN

Install

pip install larnitech-mcp

A virtual environment is worth using, since you'll point Claude Code at that interpreter's absolute path:

python -m venv ~/.venvs/larnitech
~/.venvs/larnitech/bin/pip install larnitech-mcp     # Windows: Scripts\pip.exe

Your API keys, preferences, and any device notes the agent records live in ~/.larnitech-mcp/, outside the package, so upgrading never touches them.

To work on the server itself, install from a clone instead:

git clone https://github.com/mpopovych-thinkhome/larnitech-mcp.git
cd larnitech-mcp
pip install -e .

Where to get your API key

Both values come from LT_Setup, Larnitech's own configuration app, on the installation you administer:

WhatWhere in LT_Setup
API keySecurity → Show API key
Serial number (cloud connection)General
IP address (LAN connection)General, or your router's DHCP table
WebSocket port (LAN, default 2041)General → API → Websocket port

The key grants full read and write access to the installation. Treat it like a password.

Connect a controller

Register it, then store the key:

python -m larnitech_mcp add "Home" cloud --serial YOUR_SERIAL
python -m larnitech_mcp auth "Home"

auth prompts with hidden input and writes the key to ~/.larnitech-mcp/project_keys.json. The key never passes through the chat transcript this way — prefer it over the object_set_key tool, which works but leaves the key in the session log.

For a controller on your LAN instead of via the cloud:

python -m larnitech_mcp add "Home" local --host 192.168.1.50

Check it works:

python -m larnitech_mcp test "Home"      # connect, authorize, count devices
python -m larnitech_mcp devices "Home"   # full snapshot, counts per type

Add to Claude Code

Add the server to the top-level mcpServers object in ~/.claude.json, using the absolute path to the venv's Python:

{
  "mcpServers": {
    "larnitech": {
      "command": "/home/you/.venvs/larnitech/bin/python",
      "args": ["-m", "larnitech_mcp", "serve"]
    }
  }
}

On Windows the command is the .exe, with escaped backslashes:

"command": "C:\\Users\\you\\.venvs\\larnitech\\Scripts\\python.exe"

It must be the top-level mcpServers key in ~/.claude.json itself — a .mcp.json placed inside the ~/.claude/ folder is never read. To scope it to one project instead, put the same block in a .mcp.json at that project's root. Restart Claude Code fully afterwards; closing the window is not enough.

Other MCP clients work the same way — the server runs on stdio via python -m larnitech_mcp serve.


Safety model

Reading is open. Writing is off until you turn it on, per controller, from a terminal:

python -m larnitech_mcp allow-write "Home" on

There is deliberately no tool for this — an agent cannot grant itself write access, only tell you the command.

Every write is two calls. set_device validates the payload, reads current state, and returns a preview plus a single-use token; it never touches the controller. confirm_set(token) performs the write, waits for the device to go quiet, then reports what actually landed, including unrequested_changes — anything the controller altered on its own.

Writes can be sequences, because some types cannot be driven with one frame:

[{"status": {"mode": "heat"}, "delay_after": 1.0},
 {"status": {"state": "on"}}]

Sending mode and state together loses the state: the controller re-evaluates the channel after a mode change and overrides whatever arrived behind it. The same applies to vent (state + fan) and to clearing an automation before switching a channel off. set_device rejects the combined forms and tells you the sequence to use instead.

No key is ever returned by a tool, and keys are masked out of error messages.

Device documentation

larnitech_mcp/docs/device-types/ holds one file per device type plus an index, covering the API2 status keys, XML attributes, script-side byte layout, and every quirk confirmed by live testing. bugs.md alongside it is a numbered registry of confirmed vendor bugs that the type files reference. Read them through get_docs rather than by path — that also picks up anything you've added locally.

Notes the agent records with add_docs_note go to ~/.larnitech-mcp/docs/, not into the installed package, so they survive upgrades. Your copy wins on read; everything you haven't edited still comes from the shipped set.

This is a working knowledge base, not a spec: entries say plainly when something is confirmed live, observed but unexplained, or still unknown. Corrections and additions are welcome — that is the most valuable kind of contribution here.

Command reference

CommandEffect
add <name> cloud --serial Sregister a cloud controller
add <name> local --host H [--port P]register a LAN controller
auth <name>store its API key (hidden prompt)
listconfigured controllers, key presence
test <name>connect, authorize, count devices
devices <name> [--full]full snapshot, decoded
allow-write <name> on|offenable or disable writes
remove <name>drop a controller and its key
serverun the MCP server on stdio

Status

Beta. Reading, watching, and writing all work and have been exercised against live hardware, but this has been tested against a limited set of installations. Device types documented as unconfirmed genuinely are — see get_docs output and the per-type files.

Not affiliated with or endorsed by Larnitech.

License

MIT

Contact

Mykhailo Popovych

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