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Hosttracker MCP Server

Developer ToolsLow Risk10.0MCP RegistryRemote
Free

Server data from the Official MCP Registry

Website uptime monitoring: run checks from 300+ locations, manage monitors, alerts and incidents

About

Website uptime monitoring: run checks from 300+ locations, manage monitors, alerts and incidents

Remote endpoints: streamable-http: https://mcp.host-tracker.com/mcp

Security Report

10.0
Low Risk10.0Low Risk

Valid MCP server (1 strong, 1 medium validity signals). No known CVEs in dependencies. Imported from the Official MCP Registry.

Endpoint verified · Requires authentication · 1 issue found

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

Permissions Required

This plugin requests these system permissions. Most are normal for its category.

HTTP Network Access

Connects to external APIs or services over the internet.

How to Connect

Remote Plugin

No local installation needed. Your AI client connects to the remote endpoint directly.

Add this to your MCP configuration to connect:

{
  "mcpServers": {
    "io-github-hosttracker-hosttracker": {
      "url": "https://mcp.host-tracker.com/mcp"
    }
  }
}

Documentation

View on GitHub

From the project's GitHub README.

HostTracker MCP server

validate Smithery Glama score MIT

Connect an AI assistant to HostTracker over the Model Context Protocol and let it operate your monitoring account in conversation: run a live check from 300+ global locations, see what is down, create or pause a monitor, schedule a maintenance window, review incidents, manage who gets alerted, wire a webhook, publish a status page update.

Endpoint   https://mcp.host-tracker.com/mcp
Transport  streamable HTTP
Auth       OAuth 2.1 (sign in when your client asks) - or Authorization: Bearer <HostTracker API token>

This repository is the public face of that hosted server: the connection metadata (server.json), the per-client setup guide (CLIENT.md), and the security policy (SECURITY.md) - and, since 2.0.0, the server's own source code in src/, so you can read exactly what runs behind the endpoint or run a copy yourself (see "Run it yourself" below).

Connect in two minutes

With OAuth (recommended - Claude.ai, Claude Desktop, Claude Code, ChatGPT and any client with an OAuth-capable connector dialog):

  1. Add the endpoint https://mcp.host-tracker.com/mcp as a connector in your client.
  2. Sign in and approve. The client opens HostTracker's sign-in page, then a consent card listing the permissions it asks for (by default: run checks + read monitors). Press Approve. No token ever appears.
  3. Ask in plain language: "is example.com up right now, checked from Europe and Asia?", "which of my monitors are down?", "pause the staging monitor until tomorrow".

Claude Code

With OAuth (no token needed):

claude mcp add --transport http hosttracker https://mcp.host-tracker.com/mcp
# then, inside Claude Code: /mcp -> hosttracker -> Authenticate (opens the sign-in + consent page)

Or with a bearer token in the header:

.mcp.json in your project (or ~/.claude.json for a user-wide connector):

{
  "mcpServers": {
    "hosttracker": {
      "type": "http",
      "url": "https://mcp.host-tracker.com/mcp",
      "headers": { "Authorization": "Bearer YOUR_HOSTTRACKER_API_TOKEN" }
    }
  }
}

Or from the command line:

claude mcp add --transport http hosttracker https://mcp.host-tracker.com/mcp \
  --header "Authorization: Bearer YOUR_HOSTTRACKER_API_TOKEN"

Claude.ai and Claude Desktop

Settings -> Connectors -> Add custom connector -> paste https://mcp.host-tracker.com/mcp -> Connect. The browser opens HostTracker's sign-in + consent page; press Approve and the connector is live. That is the whole setup.

To use a bearer token instead (for example a long-lived token with a hand-picked scope set), Desktop can also connect through the mcp-remote bridge. Edit claude_desktop_config.json:

{
  "mcpServers": {
    "hosttracker": {
      "command": "npx",
      "args": [
        "-y", "mcp-remote", "https://mcp.host-tracker.com/mcp",
        "--header", "Authorization:${HT_AUTH}"
      ],
      "env": { "HT_AUTH": "Bearer YOUR_HOSTTRACKER_API_TOKEN" }
    }
  }
}

The ${HT_AUTH} indirection is deliberate: some mcp-remote builds split an argument on its first space, which breaks a literal Authorization: Bearer .... Node.js 18 or newer is required.

Cursor

~/.cursor/mcp.json for every project, or .cursor/mcp.json for one:

{
  "mcpServers": {
    "hosttracker": {
      "url": "https://mcp.host-tracker.com/mcp",
      "headers": { "Authorization": "Bearer YOUR_HOSTTRACKER_API_TOKEN" }
    }
  }
}

VS Code (GitHub Copilot agent mode)

.vscode/mcp.json in the workspace. The inputs block keeps the token out of the file, prompting for it once and storing it in the editor's secret storage:

{
  "inputs": [
    {
      "type": "promptString",
      "id": "ht-token",
      "description": "HostTracker API token",
      "password": true
    }
  ],
  "servers": {
    "hosttracker": {
      "type": "http",
      "url": "https://mcp.host-tracker.com/mcp",
      "headers": { "Authorization": "Bearer ${input:ht-token}" }
    }
  }
}

Windsurf

~/.codeium/windsurf/mcp_config.json:

{
  "mcpServers": {
    "hosttracker": {
      "serverUrl": "https://mcp.host-tracker.com/mcp",
      "headers": { "Authorization": "Bearer YOUR_HOSTTRACKER_API_TOKEN" }
    }
  }
}

Run it yourself (Docker)

The hosted endpoint is the normal way to use the server. If you would rather run your own copy - to read the code, audit it, or keep the MCP hop inside your network - the repository builds it from source:

docker build -t hosttracker-mcp https://github.com/HostTracker/mcp.git
docker run --rm -p 8080:8080 hosttracker-mcp

Your copy then answers at http://localhost:8080/mcp and takes exactly the same Authorization: Bearer header: it is a stateless bridge, so it stores nothing and still talks to the public HostTracker API v2 under your token. Without Docker, dotnet run --project src does the same on any machine with the .NET 10 SDK.

The same binary also speaks stdio, for clients that launch the server as a child process instead of connecting to a URL. Add --stdio and pass your token as the HT_TOKEN environment variable (there is no request header on stdio):

HT_TOKEN=YOUR_HOSTTRACKER_API_TOKEN dotnet run --project src -- --stdio
docker run -i --rm -e HT_TOKEN=YOUR_HOSTTRACKER_API_TOKEN hosttracker-mcp --stdio

Logs go to stderr in that mode, so stdout stays a clean protocol stream.

ChatGPT and other clients

ChatGPT (developer mode -> connectors): add https://mcp.host-tracker.com/mcp; ChatGPT offers its "link account" step, which opens HostTracker's sign-in + consent page. Any other client with an OAuth-capable connector dialog works the same way - just the URL.

Any client that can send a static header also works with a bearer token: the endpoint https://mcp.host-tracker.com/mcp and the header Authorization: Bearer YOUR_HOSTTRACKER_API_TOKEN. Where a client's connector form offers an API-key or custom-header authentication mode, the token goes there.

A generic, dependency-free bridge for anything that can only launch a command:

npx -y mcp-remote https://mcp.host-tracker.com/mcp --header "Authorization:${HT_AUTH}"

Longer walkthroughs, verification commands and troubleshooting live in CLIENT.md.

What the assistant can do

The server exposes the HostTracker v2 REST API as MCP tools. Every list tool takes limit (maximum 50) and cursor and returns the next cursor; every timestamp is Unix seconds in both directions; ids are opaque strings.

FamilyWhat it covers
ChecksRun an instant check on any URL from 300+ locations (HTTP/S, ping, TCP port, traceroute, DNS, blacklist, WHOIS, Web Risk, crawl, page speed), fetch its result, list the available check types and devices.
MonitorsList, read, create, edit, copy, pause, resume and delete monitors, in single or bulk form, plus the catalogue of monitor types.
Results and incidentsUptime summaries, raw check results, the incident list, one incident in detail, and comments on an incident.
MaintenanceList, create, edit and delete maintenance windows so planned work does not raise alerts.
ContactsManage contacts and contact groups, send and confirm a contact confirmation, and send a test alert to one.
SubscriptionsSee who is notified for which monitor, and subscribe or unsubscribe a contact.
WebhooksManage webhook endpoints, send a test delivery, review the delivery log and redeliver a failed one.
Status pagesManage public status pages, publish an incident on one and post follow-up updates.
ReportsGenerate a report and list the report types available on your plan.
JobsPoll, wait on, cancel or resume the asynchronous jobs that bulk operations and reports return.
AccountRead-only: the account profile, its quota and its current usage. Useful for diagnosing a refused call.
LocationsList the checkpoint pools and individual monitoring locations you can target.
Generic doordescribe_api searches the real v2 operations and api_request calls one, for anything without a dedicated tool. It is not a URL proxy: the operation must exist in the published API description, and the safety policy below still applies.
FamilyTools
Checksrun_instant_check, get_check_result, list_check_types
Monitorslist_monitors, get_monitor, create_monitor, update_monitor, delete_monitor, pause_monitor, resume_monitor, copy_monitor, bulk_create_monitors, bulk_update_monitors, bulk_delete_monitors, list_monitor_types
Results and incidentsget_uptime_summary, list_monitor_results, list_incidents, get_incident, comment_incident
Maintenancelist_maintenance, create_maintenance, update_maintenance, delete_maintenance
Contactslist_contacts, get_contact, create_contact, update_contact, delete_contact, send_contact_confirmation, confirm_contact, test_contact, list_contact_groups, create_contact_group, update_contact_group, delete_contact_group
Subscriptionslist_subscriptions, subscribe_contact, unsubscribe_contact
Webhookslist_webhooks, create_webhook, update_webhook, delete_webhook, test_webhook, list_webhook_deliveries, redeliver_webhook
Status pageslist_status_pages, get_status_page, create_status_page, update_status_page, delete_status_page, create_status_page_incident, add_status_page_incident_update
Reportsgenerate_report, list_report_types
Jobsget_job, wait_for_job, cancel_job, resume_job
Accountget_account, get_account_quota, get_account_usage
Locationslist_locations
Generic doordescribe_api, api_request

Three behaviours worth knowing before the first call:

  • Bulk operations validate first. A bulk tool returns a validation report; the write needs an explicit second call with submit=true. Bulk deletion additionally needs confirmed=true and the count the validation pass reported, so a selection that drifted in between is refused.
  • Bulk operations and reports are asynchronous. They answer with a job id; poll it with wait_for_job.
  • Deleting anything is not undoable, so it always takes two calls. A delete tool's first call removes nothing - it returns the resource so the assistant can show you what is about to go - and only a repeat call with confirmed=true deletes. The API returns a receipt listing what was removed.

Authentication and scopes

Two ways in, same permission model:

  • OAuth (connected apps). The client registers itself, you sign in once and approve a scope set on the consent page, and the server mints short-lived access tokens (1 hour) with rotating refresh tokens (90 days) behind the scenes. If the client requests no scopes it gets check + monitor:read. The account family is never grantable to a connected app. Every connection is listed under Integrations -> API -> Connected apps, where one click revokes it (the app then has to ask you again). A tool that needs a scope the connection lacks answers missing_scope naming what is required - reconnect and approve the wider set.
  • Bearer tokens. Mint them at Integrations -> API with a hand-picked scope set, expiration and optional IP allow-list; pass them in the Authorization header.

Scopes are per family with :read and :write leaves that do not imply each other; a bare family name satisfies every leaf under it.

You want the assistant toScopes
Run instant checkscheck
See monitors, uptime and incidentsmonitor:read
Create, edit, pause or delete monitors and maintenancemonitor:write
See who is notifiedcontact:read, subs:read
Manage contacts and subscriptionscontact:write, subs:write
Manage webhookswebhook:read, webhook:write
Manage status pages and publish incidentsstatuspage:read, statuspage:write
Read quota, usage and limitsaccount:read (bearer tokens only - not offered to OAuth connections)

Grant the narrowest set that covers the work. There is never a reason to grant account:write: the server refuses every write under /account regardless of what the token allows. If a call comes back refused, ask the assistant to run get_account_quota, which reports the scopes the token actually carries.

Limits and quota

  • The endpoint rate-limits each client IP on /mcp. A limited response carries Retry-After, which the server passes through as a value; it never sleeps or retries on your behalf, so the assistant decides what to do.
  • Your API plan quota is enforced against your own token, exactly as it is for direct REST calls. get_account_usage and get_account_quota report where you stand. Details in the errors and limits guide.
  • Application failures (no token, wrong scope, quota exhausted, invalid input) come back as ordinary tool results with an actionable message rather than a protocol error.

Safety

The server is stateless and stores nothing: every call is forwarded to the API under your own token, and all ownership, quota and rate enforcement happens there. On top of that it refuses, at the server, regardless of the token: any write under /account, and anything touching payments, plans, passwords, login or the minting of API tokens. Content that a checked target controls is wrapped in a fenced, length-capped block before it reaches the model, so a hostile target cannot inject instructions into your assistant. Full policy in SECURITY.md.

Links

License

The contents of this repository (documentation and metadata) are released under the MIT license. The hosted MCP server and the HostTracker service itself are proprietary.

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