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ProxmoxMCP Plus README

The full upstream README, mirrored here for reference. Install config, tool schemas, adoption signals, and an original overview live on the ProxmoxMCP Plus listing page.

Back to ProxmoxMCP Plus View source on GitHub

ProxmoxMCP-Plus

ProxmoxMCP-Plus Logo

Operate Proxmox VE from MCP clients, AI agents, and OpenAPI tooling through one security-conscious control plane for VMs, LXCs, snapshots, backups, ISOs, container commands, and persistent long-running jobs.

PyPI GitHub Release CI GHCR License

Quick Start | Client Install | Demo | Tools | Safety | Scenarios | Docs | Wiki

ProxmoxMCP-Plus architecture

Why ProxmoxMCP-Plus

ProxmoxMCP-Plus sits between AI clients and Proxmox VE so operators do not have to stitch together raw API calls, one-off shell scripts, and custom job polling for every workflow.

It exposes the same operational surface in two ways:

  • MCP for Claude Desktop, Cursor, VS Code, Open WebUI, Codex, and other MCP-capable agents
  • OpenAPI for HTTP automation, dashboards, internal tools, and no-code workflows

What you get:

  • VM and LXC lifecycle actions
  • snapshot create, rollback, and delete
  • backup and restore workflows
  • ISO download and cleanup
  • node, storage, and cluster inspection
  • SSH-backed container command execution with guardrails
  • persistent job tracking for async Proxmox tasks

What Makes It Different

PriorityHow the project handles it
Dual access pathsNative MCP for agent workflows and OpenAPI for standard HTTP automation
Proxmox-oriented workflowsDay-2 VM, LXC, snapshot, backup, ISO, storage, and cluster operations
Long-running operationsStable job_ids, Proxmox UPID tracking, polling, retry, cancel, and audit history
Safer executionProxmox API tokens, OpenAPI bearer auth, command policy, approval tokens, TLS validation, and MCP HTTP Host/Origin controls
Real validationUnit, integration, Docker/OpenAPI, and live Proxmox e2e entry points are documented in the repo

Quick Start

1. Prepare Proxmox Credentials

Create a Proxmox API token with only the permissions your workflows need. Then create the local config file:

bash
cp proxmox-config/config.example.json proxmox-config/config.json

Then edit proxmox-config/config.json with your environment. At minimum, it needs:

  • proxmox.host
  • proxmox.port
  • auth.user
  • auth.token_name
  • auth.token_value

Add an ssh section as well if you want container command execution. Add a jobs section if you want job state persisted somewhere other than the default local SQLite file.

For real live verification, use a separate proxmox-config/config.live.json created from proxmox-config/config.live.example.json. Do not point live e2e at a placeholder or local-only config.json unless you intentionally run a local API tunnel there.

Optional job persistence config:

config.json
{
  "jobs": {
    "sqlite_path": "proxmox-jobs.sqlite3"
  }
}

Optional tool exposure filtering can reduce the schemas sent to MCP clients. It is disabled by default, so existing configurations continue to expose every available tool. Configure exactly one mode under mcp:

config.json
{
  "mcp": {
    "tool_allowlist": ["get_nodes", "get_vms", "get_containers", "get_storage"]
  }
}

Alternatively, use tool_denylist, or the comma-separated environment variables MCP_TOOL_ALLOWLIST and MCP_TOOL_DENYLIST. Do not configure both modes. Environment selection replaces the file-level filtering mode. An empty allowlist exposes no tools; an empty denylist hides none. Exact lowercase tool names are required, and unknown names fail startup so a typo cannot silently widen access. Restart or reconnect the MCP server after changing the filter.

2. Choose One Runtime Path

PathBest forStart commandVerify
MCP stdio from PyPIClaude Desktop, Cursor, VS Code, Codex, local agentsuvx proxmox-mcp-plusclient lists get_nodes, get_vms, and job tools
Native MCP HTTP from Dockerremote MCP clients that support Streamable HTTPdocker compose --profile mcp-http up -d proxmox-mcp-httpconnect to http://localhost:8000/mcp
OpenAPI bridge from DockerHTTP clients, dashboards, scripts, no-code toolsdocker compose up -dcurl -f http://localhost:8811/livez

MCP stdio with PyPI

bash
uvx proxmox-mcp-plus

Or install it first:

Terminal
pip install proxmox-mcp-plus
proxmox-mcp-plus

Use this path when the MCP client launches a local stdio server.

Code Mode (opt-in)

Code Mode is disabled by default to preserve the legacy full tool catalog. Enable it with mcp.code_mode: true in the config file or MCP_CODE_MODE=true. When enabled, MCP exposes three tools instead: proxmox_code_search, proxmox_code_get_schema, and proxmox_code_execute. Code execution runs in an isolated sandbox and reaches domain tools through the existing validation, policy, and approval path. Discovery uses the filtered runtime catalog, so it also works in installed wheels. For example:

python
await call_tool("get_nodes", {"target": "default"})

The final expression is returned as data.result; tool results use MCP JSON content blocks (and structured content where supplied). Use proxmox_code_get_schema for arguments, including target and approval tokens. Scripts have no filesystem or network access except registered tool calls. Limits: 64,000 source characters, 100 MB sandbox memory, 25 tool calls, 16 KB final JSON, and two concurrent executions. Execution has a 30-second budget; cancelling or failing a script does not roll back tool side effects. Do not automatically retry a failed mutation script.

Native MCP HTTP with Docker

Use this path when a remote MCP client supports Streamable HTTP:

server.ts
export MCP_API_KEY="$(openssl rand -hex 32)"
docker run --rm -p 8000:8000 \
  -e PROXMOX_MCP_MODE=mcp-http \
  -e MCP_HOST=0.0.0.0 \
  -e MCP_PORT=8000 \
  -e MCP_TRANSPORT=STREAMABLE_HTTP \
  -e MCP_API_KEY="$MCP_API_KEY" \
  -v "$(pwd)/proxmox-config/config.json:/app/proxmox-config/config.json:ro" \
  ghcr.io/rekklesna/proxmoxmcp-plus:latest

Point MCP clients at:

text
http://<docker-host>:8000/mcp

Send Authorization: Bearer <MCP_API_KEY> with every native MCP HTTP request. The key is independent of Proxmox credentials. Native Streamable HTTP and SSE require a key by default. For an endpoint protected by an external access-control layer such as Tailscale ACLs, explicitly set MCP_ALLOW_UNAUTHENTICATED_HTTP=true or mcp.allow_unauthenticated_http: true in JSON configuration. This allows keyless startup and logs a warning; it does not configure or verify the external access controls. A configured MCP_API_KEY is always enforced, even with opt-out. This setting does not change OpenAPI authentication or DNS rebinding protection.

When serving MCP HTTP behind a reverse proxy, keep DNS rebinding protection enabled and allow only the hostnames you expect:

Terminal
docker run --rm -p 8000:8000 \
  -e PROXMOX_MCP_MODE=mcp-http \
  -e MCP_HOST=0.0.0.0 \
  -e MCP_PORT=8000 \
  -e MCP_TRANSPORT=STREAMABLE_HTTP \
  -e MCP_API_KEY="$MCP_API_KEY" \
  -e MCP_DNS_REBINDING_PROTECTION=true \
  -e MCP_ALLOWED_HOSTS=mcp.example.com:*,localhost:* \
  -e MCP_ALLOWED_ORIGINS=https://mcp.example.com \
  -v "$(pwd)/proxmox-config/config.json:/app/proxmox-config/config.json:ro" \
  ghcr.io/rekklesna/proxmoxmcp-plus:latest

OpenAPI bridge with Docker

OpenAPI mode is the default Docker runtime and requires an API key:

server.ts
export PROXMOX_API_KEY="$(openssl rand -hex 32)"
docker run --rm -p 8811:8811 \
  -e PROXMOX_API_KEY="$PROXMOX_API_KEY" \
  -v "$(pwd)/proxmox-config/config.json:/app/proxmox-config/config.json:ro" \
  ghcr.io/rekklesna/proxmoxmcp-plus:latest

Verify the OpenAPI surface:

Terminal
curl -f http://localhost:8811/livez
curl -f -H "Authorization: Bearer $PROXMOX_API_KEY" http://localhost:8811/health
curl -H "Authorization: Bearer $PROXMOX_API_KEY" http://localhost:8811/openapi.json

For local unauthenticated development only, set PROXMOX_ALLOW_NO_AUTH=true.

Source checkout

bash
git clone https://github.com/RekklesNA/ProxmoxMCP-Plus.git
cd ProxmoxMCP-Plus
uv venv
uv pip install -e ".[dev]"
python main.py

The 8811 service is the OpenAPI/REST bridge. The 8000 service is the native MCP HTTP endpoint.

Client Install

Use the one-click buttons when your client supports MCP install deeplinks, or copy the JSON config below.

Install in VS Code Install in Cursor

Recommended stdio config:

config.json
{
  "mcpServers": {
    "proxmox-mcp-plus": {
      "command": "uvx",
      "args": ["proxmox-mcp-plus"],
      "env": {
        "PROXMOX_HOST": "your-proxmox-host",
        "PROXMOX_USER": "root@pam",
        "PROXMOX_TOKEN_NAME": "mcp-token",
        "PROXMOX_TOKEN_VALUE": "your-token-secret",
        "PROXMOX_PORT": "8006",
        "PROXMOX_VERIFY_SSL": "true"
      }
    }
  }
}

Use a local config file if you prefer not to keep credentials in the client config:

config.json
{
  "mcpServers": {
    "proxmox-mcp-plus": {
      "command": "uvx",
      "args": ["proxmox-mcp-plus"],
      "env": {
        "PROXMOX_MCP_CONFIG": "/path/to/ProxmoxMCP-Plus/proxmox-config/config.json"
      }
    }
  }
}

Client-specific examples for Claude Desktop, Cursor, VS Code, Codex, OpenCode, Open WebUI, Streamable HTTP, and OpenAPI are in the Client Setup Guide and Integrations Guide.

Demo

This demo is a direct terminal recording of qwen/qwen3.6-plus driving a live MCP session in English against a local Proxmox lab. It shows natural-language control flowing through MCP tools to create and start an LXC, execute a container command, and confirm the authenticated HTTP /health surface.

Recorded demo gif

Watch the MP4 version

Choose The Right Tool

Start with read-only discovery, then move to mutating tools only after the target node, storage, VMID, and permissions are clear.

Operator goalStart withThen useNotes
Inspect the clusterget_nodes, get_cluster_statusget_storage, get_vms, get_containersBest first health check after client install
Create or manage a VMget_nodes, get_storagecreate_vm, start_vm, stop_vm, delete_vmLong-running mutations return job_id and Proxmox task_id
Manage LXCsget_containers, get_storagecreate_container, start_container, stop_container, delete_containerSSH-backed command tools require the optional ssh config
Roll back risky changeslist_snapshots with vm_type=qemu or vm_type=lxccreate_snapshot, rollback_snapshot, delete_snapshotCreate a snapshot before destructive workflow tests
Run commands inside guestsVM or container status toolsexecute_vm_command, execute_container_commandVM path needs QEMU Guest Agent; LXC path needs SSH to the Proxmox node
Track async workmutation response with job_idpoll_job, get_job, list_jobs, retry_job, cancel_jobUse job_id for agent/user conversations and task_id for raw Proxmox traceability
Inspect logsget_node_syslog, get_cluster_logget_task_log, get_node_firewall_log, get_guest_firewall_logAll log tools are read-only; get_task_log accepts any Proxmox UPID
Automate from HTTP tools/openapi.json/jobs, /health, generated tool routesUse bearer auth and keep CORS restricted outside local development

For the full tool map, see the Tool Selection Guide and API & Tool Reference.

Safety Model

ProxmoxMCP-Plus is an access layer, not a replacement for Proxmox RBAC, network controls, or client-side MCP approval prompts.

The project gives operators several control points:

  • Proxmox API tokens decide what the backend can do.
  • PROXMOX_API_KEY protects the OpenAPI bridge by default.
  • MCP_API_KEY protects native Streamable HTTP and SSE with Bearer authentication; it is required unless MCP_ALLOW_UNAUTHENTICATED_HTTP=true explicitly delegates access control.
  • TLS verification is enforced unless development mode is explicitly enabled.
  • command_policy controls command execution and high-risk operations.
  • approval_token can gate command execution and high-risk mutating actions.
  • MCP Streamable HTTP deployments can use DNS rebinding protection plus Host and Origin allowlists.
  • Optional MCP tool allowlists or denylists reduce the runtime tool surface; they do not replace Proxmox RBAC.
  • Logs are designed to avoid exposing command and credential material.

Read the Security Guide before exposing the server outside a trusted local environment.

Core Platform Capabilities

ProxmoxMCP-Plus provides a unified control surface for the operational tasks most teams actually need in Proxmox VE. The same server can expose these workflows to MCP clients for LLM and AI-agent use cases, and to HTTP consumers through the OpenAPI bridge.

Supported workflow areas:

Capability AreaAvailability
VM create / start / stop / deleteAvailable
VM snapshot create / rollback / deleteAvailable
Backup create / restoreAvailable
ISO download / deleteAvailable
LXC create / start / stop / deleteAvailable
Container SSH-backed command executionAvailable
Container authorized_keys updateAvailable
Persistent job store for long tasksAvailable
MCP job control tools (list_jobs, get_job, poll_job, cancel_job, retry_job)Available
OpenAPI /jobs endpoints with explicit status codesAvailable
Local OpenAPI /livez, /readyz, /health, and schemaAvailable
Docker native MCP Streamable HTTP at /mcpAvailable
Docker image build and /livezAvailable

Validation and contract entry points in this repository:

  • pytest -q --cov=proxmox_mcp --cov-report=term-missing --cov-fail-under=75
  • ruff check .
  • mypy src --ignore-missing-imports
  • pip-audit -r requirements.txt
  • tests/integration/test_real_contract.py
  • tests/scripts/run_real_e2e.py

tests/scripts/run_real_e2e.py now prefers proxmox-config/config.live.json or PROXMOX_MCP_E2E_CONFIG. This avoids accidentally running live checks against a machine-specific default config.json.

Long-Running Jobs

Many Proxmox mutations are asynchronous. ProxmoxMCP-Plus now wraps those tasks in a persistent job layer so MCP and OpenAPI clients can track them through a stable Job ID.

Long-running tools such as VM create/start/stop, container create/start/stop, snapshot changes, backup/restore, and ISO download/delete now return both:

  • task_id: the raw Proxmox UPID
  • job_id: the stable server-side job record

The job record stores:

  • current status and progress
  • retry count and prior UPIDs
  • latest result payload or failure reason
  • audit history for create, poll, retry, and cancel actions

By default the job store persists to proxmox-jobs.sqlite3, so restart does not lose in-flight or completed job metadata.

MCP Job Tools

  • list_jobs
  • get_job
  • poll_job
  • cancel_job
  • retry_job

OpenAPI Job Routes

When the OpenAPI proxy is enabled and a local JobStore is available, these routes are exposed directly:

PathMethodPurposeSuccess Codes
/jobsGETlist persisted jobs200
/jobs/{job_id}GETfetch one job, optional refresh=true200
/jobs/{job_id}/pollPOSTrefresh status from Proxmox200
/jobs/{job_id}/cancelPOSTrequest cancellation202
/jobs/{job_id}/retryPOSTreplay a stored retry recipe202

Common error codes:

  • 404: unknown job_id
  • 409: the job exists but that operation is not valid now
  • 503: the OpenAPI proxy was started without a local JobStore

tests/scripts/run_real_e2e.py now prefers proxmox-config/config.live.json or PROXMOX_MCP_E2E_CONFIG. This avoids accidentally running live checks against a machine-specific default config.json.

Positioning Against Common Approaches

CapabilityOfficial Proxmox APIOne-off scriptsProxmoxMCP-Plus
MCP for LLM and AI agent workflowsNoNoYes
OpenAPI surface for standard HTTP toolingNoUsually noYes
VM and LXC operations in one interfaceLow-level onlyDependsYes
Snapshot, backup, and restore workflowsLow-level onlyDependsYes
Persistent async job tracking and retryNoRareYes
Container command execution with policy controlsNoCustom onlyYes
Docker distribution pathNoRareYes
Repository-level live-environment verificationN/ARareYes

Scenario Templates

Ready-to-copy examples live in docs/examples/:

  • Create a test VM
  • Roll back a risky change with snapshots
  • Download an ISO and create an LXC

These are written for both human operators and LLM-driven usage.

Documentation

The README is intentionally optimized for fast GitHub comprehension. Longer operational docs live in docs/wiki/ and can also be published to the GitHub Wiki.

If you need to...Start here
Understand the project and deployment flowWiki Home
Configure and run against a Proxmox environmentOperator Guide
Connect Claude Desktop, Cursor, VS Code, Codex, Open WebUI, or HTTP clientsClient Setup Guide
Choose the right tool for a workflowTool Selection Guide
Review docs quality goals, media plan, and publishing checklistDocumentation Quality Plan
Review integration patterns and transport detailsIntegrations Guide
Install from MCP-aware IDEs and agentsAgent Installation
Enable LXC command execution over SSHContainer Command Execution
Review security and command policySecurity Guide
Inspect tool parameters, prerequisites, and behaviorAPI & Tool Reference
Debug startup, auth, or health issuesTroubleshooting
Work on the codebase or release itDeveloper Guide
Review release and upgrade notesRelease & Upgrade Notes

Published wiki:

  • GitHub Wiki Home

Repo Layout

  • src/proxmox_mcp/: MCP server, config loading, security, OpenAPI bridge
  • main.py: MCP entrypoint for local and client-driven usage
  • docker-compose.yml: HTTP/OpenAPI runtime
  • requirements/: auxiliary dependency sources and runtime install lists
  • scripts/: helper startup scripts for local workflows
  • tests/scripts/run_real_e2e.py: live Proxmox and Docker/OpenAPI path
  • tests/: unit and integration coverage
  • docs/examples/: scenario-driven prompts and HTTP examples
  • docs/wiki/: longer-form operator, integration, and reference docs

Development Checks

bash
pytest -q --cov=proxmox_mcp --cov-report=term-missing --cov-fail-under=75
ruff check .
mypy src --ignore-missing-imports
pip-audit -r requirements.txt
python -m build

Paramiko 5.0.0 or newer is required so pip-audit can run without a CVE-2026-44405 exception.

License

MIT

ISO installation and LXC network configuration

Use list_isos to find an existing ISO volume (or download_iso to obtain one). create_vm accepts iso_volume="local:iso/debian.iso", mounts it on ide3 by default and boots CD-ROM before disk. update_vm_config can mount or change that ISO, eject with iso_volume="none", set boot_order="scsi0;ide3", or change network_bridge on net0 while retaining MAC/VLAN/firewall settings. Choose a free cdrom_device; existing data disks and cloud-init drives are never replaced. Media and bridge edits read current configuration and therefore need VM.Audit as well as the relevant configuration privileges. Existing sizing/cloud-init-only updates still do not require a preliminary read.

LXC uses OS templates, not installer ISOs. create_container retains DHCP by default and now accepts network_bridge, ip="192.168.1.50/24", gw="192.168.1.1", ip6 and gw6. update_container_network edits those fields on an existing interface (default net0, selectable through net31) and preserves all unspecified options. Use an empty gateway string to remove it; changing to DHCP/manual removes the old gateway for that address family. Network changes can interrupt guest connectivity. Both edit tools follow named-target, read-only and high-risk approval policies. Add update_container_network to custom high-risk lists and desired tool allowlists. See v0.5.19 release notes for upgrade details.