Initial commit: Custom Proxmox MCP with SSE wrapper
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30
.gitea/workflows/build.yaml
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30
.gitea/workflows/build.yaml
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name: Build and Push Proxmox MCP Docker Image
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on:
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push:
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branches:
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- main
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- master
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jobs:
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build:
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runs-on: docker
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container:
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image: catthehacker/ubuntu:act-latest
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steps:
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- name: Checkout
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uses: actions/checkout@v3
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- name: Login to Gitea Container Registry
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uses: docker/login-action@v2
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with:
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registry: gitea.ext.ben.io
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username: ${{ gitea.actor }}
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password: ${{ secrets.CR_PAT }} # Using CR_PAT secret
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- name: Build and Push
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uses: docker/build-push-action@v4
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with:
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context: .
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push: true
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tags: gitea.ext.ben.io/${{ gitea.repository }}:latest
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37
Dockerfile
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37
Dockerfile
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# Stage 1: Builder for dependencies
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FROM python:3.11-slim-bullseye AS builder
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WORKDIR /app
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# Install uv
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RUN pip install uv
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# Copy only dependency files first to leverage Docker cache
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COPY pyproject.toml ./
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# Install dependencies with uv
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# Use 'uv pip install --system' to install directly into the system python environment
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# This avoids creating a virtualenv inside the Docker build stage
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RUN uv pip install --system .
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# Stage 2: Final image
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FROM python:3.11-slim-bullseye
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WORKDIR /app
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# Copy installed dependencies from builder
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# We copy the entire site-packages directory
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COPY --from=builder /usr/local/lib/python3.11/site-packages/ /usr/local/lib/python3.11/site-packages/
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# Also copy uv itself (optional, but good for debugging)
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COPY --from=builder /usr/local/bin/uv /usr/local/bin/uv
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# And the bin directory for executables like 'uvicorn'
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COPY --from=builder /usr/local/bin/ /usr/local/bin/
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# Copy application code
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COPY server.py ./
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# Expose the port Uvicorn will listen on
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EXPOSE 8000
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# Run the Uvicorn server
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CMD ["python", "server.py"]
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46
README.md
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46
README.md
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# Custom Proxmox MCP Server
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A robust, maintenance-free Model Context Protocol (MCP) server for Proxmox VE, built with Python and `proxmoxer`.
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## Philosophy: The Hybrid Approach
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Most MCP servers suffer from "feature rot" where the author implements 10 tools (`start_vm`, `stop_vm`) but misses 500 others. This project takes a hybrid approach:
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1. **Core Tools:** A small set of high-value tools for discovery and context (e.g., `list_nodes`, `get_cluster_resources`).
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2. **Raw API Access:** A single powerful tool `proxmox_api` that allows the LLM to call *any* Proxmox API endpoint dynamically. This ensures 100% API coverage without writing wrappers for every function.
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## Tech Stack
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* **Language:** Python 3.11+
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* **MCP SDK:** `mcp` (Official Python SDK) with `FastMCP` (if available) or standard server implementation.
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* **Proxmox Client:** `proxmoxer` (Community standard, stable).
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* **Transport:** SSE (Server-Sent Events) for Docker/Remote compatibility.
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* **Deployment:** Docker (built via Gitea Actions).
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## Tools
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### `list_nodes`
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Returns a list of all nodes in the cluster with their status.
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### `get_resources`
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Returns a summary of all resources (VMs, LXC containers, storage) across the cluster.
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### `proxmox_api`
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Executes a raw API call to Proxmox.
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* `service`: Service path (e.g., `nodes/pve1/qemu`).
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* `method`: HTTP Method (GET, POST, PUT, DELETE).
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* `data`: Optional JSON payload.
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## Configuration
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Required Environment Variables:
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* `PROXMOX_URL`: Base URL (e.g., `https://192.168.1.1:8006`).
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* `PROXMOX_USER`: User (e.g., `root@pam`).
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* `PROXMOX_PASSWORD`: Password or Token Secret.
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* `PROXMOX_TOKEN_ID`: (Optional) Token ID if using tokens (e.g., `mcp-token`).
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* `PROXMOX_VERIFY_SSL`: `true` or `false` (Default: `false` for homelabs).
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## Build & Deploy
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This project is built using Gitea Actions and pushed to the internal registry.
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Deploy using Portainer.
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22
docker-compose.yml
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docker-compose.yml
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services:
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proxmox-mcp:
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image: gitea.ext.ben.io/b3nw/proxmox-mcp-custom:latest
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container_name: proxmox-mcp
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environment:
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# --- Proxmox API Credentials ---
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# Base URL of your Proxmox VE instance (e.g., pve.local.ben.io:8006)
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- PROXMOX_URL=your_proxmox_host:8006
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# Proxmox API User (e.g., root@pam or user@pve)
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- PROXMOX_USER=your_proxmox_user
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# Proxmox API Token Secret (usually starts with "pve_mcp!")
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- PROXMOX_PASSWORD=your_proxmox_token_secret
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# Proxmox API Token ID (e.g., "mcp-token")
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- PROXMOX_TOKEN_ID=your_proxmox_token_id
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# Set to 'true' to skip SSL verification (e.g., for self-signed certs in homelab)
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- PROXMOX_VERIFY_SSL=false
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# --- MCP Server Settings ---
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- PORT=8000 # Internal container port
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ports:
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- "8000:8000" # Host Port : Container Port
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restart: unless-stopped
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19
pyproject.toml
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19
pyproject.toml
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[project]
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name = "proxmox-mcp-custom"
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version = "0.1.0"
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description = "Custom Proxmox MCP Server"
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dependencies = [
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"mcp",
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"proxmoxer",
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"uvicorn",
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"fastapi",
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"python-dotenv", # For local development
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]
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requires-python = ">=3.11"
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[build-system]
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requires = ["setuptools>=61.0"]
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build-backend = "setuptools.build_meta"
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[tool.uv]
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python-version = "3.11" # Specify desired Python version for uv
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159
server.py
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159
server.py
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from fastapi import FastAPI, Request
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from fastapi.responses import StreamingResponse
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from uvicorn import Config, Server
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from mcp.server.fastapi import FastAPIAppBuilder
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from mcp.server.models import CallToolRequest, CallToolResponse, Tool
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from mcp.server.transports.sse import SSEServerTransport
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from mcp.server.server import MCPServer
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from mcp.exceptions import MCPException
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import os
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import json
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import logging
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from proxmoxer import ProxmoxAPI, ProxmoxAPIException
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from dotenv import load_dotenv
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# Load environment variables for local development
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load_dotenv()
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logging.basicConfig(level=logging.INFO)
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logger = logging.getLogger(__name__)
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# --- Proxmox API Configuration ---
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PROXMOX_URL = os.getenv("PROXMOX_URL")
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PROXMOX_USER = os.getenv("PROXMOX_USER")
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PROXMOX_PASSWORD = os.getenv("PROXMOX_PASSWORD") # Or token secret
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PROXMOX_TOKEN_ID = os.getenv("PROXMOX_TOKEN_ID")
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PROXMOX_VERIFY_SSL = os.getenv("PROXMOX_VERIFY_SSL", "false").lower() == "true"
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if not PROXMOX_URL or not (PROXMOX_PASSWORD and PROXMOX_TOKEN_ID):
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logger.fatal("Proxmox API credentials (URL, User, Password/Token) not fully set.")
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exit(1)
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# Initialize ProxmoxAPI client
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try:
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if PROXMOX_TOKEN_ID and PROXMOX_PASSWORD: # Using API Token
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proxmox = ProxmoxAPI(PROXMOX_URL, user=f"{PROXMOX_USER}@{PROXMOX_TOKEN_ID}", token_name=PROXMOX_TOKEN_ID, token_value=PROXMOX_PASSWORD, verify_ssl=PROXMOX_VERIFY_SSL)
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else: # Using Username/Password
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proxmox = ProxmoxAPI(PROXMOX_URL, user=PROXMOX_USER, password=PROXMOX_PASSWORD, verify_ssl=PROXMOX_VERIFY_SSL)
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# Test connection
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proxmox.version.get()
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logger.info("Successfully connected to Proxmox API.")
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except ProxmoxAPIException as e:
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logger.fatal(f"Failed to connect to Proxmox API: {e}")
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exit(1)
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except Exception as e:
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logger.fatal(f"An unexpected error occurred during Proxmox API connection: {e}")
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exit(1)
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# --- MCP Server Setup ---
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mcp_server = MCPServer(
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name="Proxmox MCP Server",
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version="1.0",
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description="MCP Server for Proxmox VE via proxmoxer",
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capabilities={"tools": True}
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)
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# --- Core Tools ---
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@mcp_server.tool(
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name="list_nodes",
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description="Returns a list of all Proxmox nodes in the cluster with their status.",
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parameters={} # No parameters needed
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)
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def list_nodes():
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"""Lists all Proxmox nodes."""
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try:
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nodes = proxmox.nodes.get()
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return {"nodes": nodes}
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except ProxmoxAPIException as e:
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raise MCPException(f"Proxmox API Error: {e}")
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except Exception as e:
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raise MCPException(f"Error listing nodes: {e}")
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@mcp_server.tool(
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name="get_cluster_resources",
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description="Returns a summary of all resources (VMs, LXC containers, storage, etc.) across the cluster.",
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parameters={} # No parameters needed
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)
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def get_cluster_resources():
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"""Gets a summary of all cluster resources."""
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try:
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resources = proxmox.cluster.resources.get()
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return {"resources": resources}
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except ProxmoxAPIException as e:
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raise MCPException(f"Proxmox API Error: {e}")
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except Exception as e:
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raise MCPException(f"Error getting cluster resources: {e}")
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# --- Raw API Access Tool ---
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@mcp_server.tool(
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name="proxmox_api_call",
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description="Executes a raw API call to Proxmox VE. Use carefully!",
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parameters={
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"path": {"type": "string", "description": "The API path (e.g., 'nodes/pve1/qemu/100/status/start')."},
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"method": {"type": "string", "enum": ["GET", "POST", "PUT", "DELETE"], "description": "HTTP Method."},
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"data": {"type": "object", "description": "Optional JSON payload for POST/PUT methods.", "default": {}},
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"node": {"type": "string", "description": "Optional node name if path is relative to a node.", "default": None},
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"vmid": {"type": "integer", "description": "Optional VM ID if path is relative to a VM.", "default": None},
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"lxcid": {"type": "integer", "description": "Optional LXC ID if path is relative to an LXC container.", "default": None},
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},
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)
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def proxmox_api_call(path: str, method: str, data: dict = {}, node: str = None, vmid: int = None, lxcid: int = None):
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"""Executes a raw Proxmox API call."""
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try:
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# Dynamically build the ProxmoxAPI path
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api_path = proxmox
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path_segments = path.strip('/').split('/')
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for segment in path_segments:
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if segment: # Skip empty segments
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if segment == "nodes" and node:
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api_path = api_path.nodes(node)
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elif segment == "qemu" and vmid:
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api_path = api_path.qemu(vmid)
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elif segment == "lxc" and lxcid:
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api_path = api_path.lxc(lxcid)
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else:
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api_path = api_path(segment)
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method_func = getattr(api_path, method.lower(), None)
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if not method_func:
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raise MCPException(f"Unsupported method '{method}' for path segment '{path}'")
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if method.upper() in ["POST", "PUT"]:
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result = method_func(**data)
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else:
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result = method_func()
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return {"result": result}
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except ProxmoxAPIException as e:
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raise MCPException(f"Proxmox API Error: {e}")
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except Exception as e:
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raise MCPException(f"Error executing raw API call: {e}")
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# --- FastAPI Integration ---
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app_builder = FastAPIAppBuilder(mcp_server)
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app = app_builder.build_app()
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@app.get("/")
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async def root():
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return {"message": "Proxmox MCP Server is running. Access /sse for events."}
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@app.get("/sse")
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async def sse(request: Request):
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"""Server-Sent Events endpoint for MCP communication."""
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logger.info("New SSE connection from client.")
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return StreamingResponse(
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SSEServerTransport(mcp_server).get_response_generator(request),
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media_type="text/event-stream"
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)
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@app.post("/messages")
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async def messages(request: Request):
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"""Endpoint for MCP client messages."""
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logger.info("New POST /messages from client.")
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return await SSEServerTransport(mcp_server).handle_request(request)
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if __name__ == "__main__":
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import uvicorn
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uvicorn.run(app, host="0.0.0.0", port=8000)
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