A model context protocol to play Geofs which is a free online flight simulator
What is lobstercare geofs mcp
GeoFS MCP Server
A Model Context Protocol (MCP) server for the GeoFS flight simulator, allowing AI models to control and interact with aircraft in the GeoFS browser-based flight simulator. !image !image !image
Features
- 🛫 Control aircraft flight parameters (throttle, heading, etc.)
- 📊 Access real-time flight data (position, speed, attitude)
- 🗺️ Navigate between waypoints and airports
- ✈️ Select different aircraft models
- 🔄 Execute flight maneuvers (takeoff, landing)
Prerequisites
- Node.js (v14 or higher)
- npm or yarn
- A modern web browser (Chrome recommended)
Installation
-
Clone this repository:
git clone https://github.com/yourusername/geofs-mcp-server.git cd geofs-mcp-server
-
Install dependencies:
npm install
-
Build the project:
npm run build
Usage
Starting the Server
-
Start the MCP server:
npm start
-
The server will launch a browser window that navigates to GeoFS
- You may need to log in to GeoFS if required
- The server will wait for GeoFS to fully load before accepting commands
-
The MCP server will be available at:
- HTTP:
http://localhost:3000
- WebSocket:
ws://localhost:3000
- HTTP:
Using with AI Models
This MCP server can be used with AI models that support the Model Context Protocol, allowing them to:
- Control aircraft in the simulator
- Retrieve flight data and simulator state
- Execute complex flight maneuvers
- Plan and follow flight routes
API Endpoints
GET /mcp
- Get server capabilities and available endpointsGET /mcp/aircraft
- Get current aircraft dataPOST /mcp/aircraft
- Control aircraft parametersGET /mcp/flight-data
- Get comprehensive flight dataPOST /mcp/navigation
- Set navigation parametersGET /mcp/simulation
- Get simulation statusPOST /mcp/simulation
- Control simulation parameters
WebSocket Commands
The server also supports WebSocket for real-time communication:
// Example WebSocket message
{
"id": 1,
"type": "command",
"command": "setThrottle",
"params": {
"value": 0.75
}
}
Available commands:
setThrottle
- Set engine throttle (0-1)setHeading
- Set target heading in degreesgetPosition
- Get current aircraft positionselectAircraft
- Change to a different aircrafttakeOff
- Execute takeoff procedureland
- Execute landing proceduregetFlightData
- Get comprehensive flight data
Example Client
See the examples/simple-client.js
file for a basic example of how to connect to and use the GeoFS MCP server.
To run the example:
node examples/simple-client.js
How It Works
The GeoFS MCP server uses Puppeteer to control a browser instance running GeoFS. It provides a standardized MCP interface that allows AI models to interact with the flight simulator through HTTP and WebSocket APIs.
Contributing
Contributions are welcome! Please feel free to submit a Pull Request.
License
This project is licensed under the MIT License - see the LICENSE file for details.
Acknowledgements
- GeoFS - The browser-based flight simulator
- Model Context Protocol - Protocol specification for AI model context
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Frequently Asked Questions
What is MCP?
MCP (Model Context Protocol) is an open protocol that standardizes how applications provide context to LLMs. Think of MCP like a USB-C port for AI applications, providing a standardized way to connect AI models to different data sources and tools.
What are MCP Servers?
MCP Servers are lightweight programs that expose specific capabilities through the standardized Model Context Protocol. They act as bridges between LLMs like Claude and various data sources or services, allowing secure access to files, databases, APIs, and other resources.
How do MCP Servers work?
MCP Servers follow a client-server architecture where a host application (like Claude Desktop) connects to multiple servers. Each server provides specific functionality through standardized endpoints and protocols, enabling Claude to access data and perform actions through the standardized protocol.
Are MCP Servers secure?
Yes, MCP Servers are designed with security in mind. They run locally with explicit configuration and permissions, require user approval for actions, and include built-in security features to prevent unauthorized access and ensure data privacy.
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