Tailscale node keys expire (180 days by default unless disabled per
device) and an expired key drops the device off the tailnet until
re-authenticated -- worth surfacing before it happens.
adapter.listDevices() now reads `expires` and `keyExpiryDisabled` from
the device list API (`?fields=all`, already being fetched). Go's zero
time ("0001-01-01T00:00:00Z") is what Tailscale returns for "no real
expiry set" and is treated as null rather than shown as a bogus 1AD
date.
New "Key expiry" column on the Tailscale page: "Never" when disabled,
otherwise the date plus a badge (green/yellow/red matching the
Secrets module's ok/expiring/expired convention) using the same
30-day warning window as that module's default. The devices summary
gained `expiringSoon` (<=30 days left, including already-expired),
surfaced in the page header and as a new warning line on the
Dashboard's Tailscale widget, alongside the existing "awaiting
authorization" one.
Verified the parsing (real expiry, disabled/zero-time, already-expired,
far-future) against the compiled adapter with fetch calls to
api.tailscale.com redirected to a local mock server, since this
sandbox can't reach the user's real tailnet.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Homelab Manager
Repository: git@10.200.5.13:bobban/Homelab-manager.git (gitea.labsconnect.se/bobban/Homelab-manager externally).
A single dashboard for a homelab: Proxmox, Synology DSM, Semaphore, Tailscale, Gitea, and Dockhand/Docker status and basic actions, plus DNS record management, an IP address inventory (IPAM), and a secret-expiry tracker (ported from Sloth Manager) and scheduled-task tracking across Debian/Raspbian hosts (ported from Schedule Task Manager). Looks and feels like a Tabler admin dashboard. Sign-in is delegated to Authentik (OIDC), with local admin/operator/viewer roles.
Status
All modules from the original plan are built:
-
Monorepo scaffold, Tabler-themed app shell/navigation
-
Authentik OIDC login, roles (first user to sign in becomes admin), audit log
-
Secrets — expiry tracking for API tokens/certs/passwords
-
IP Addresses (IPAM) — inventory of IPs across vendors/locations, with "Sync from Tailscale" and "Sync from Proxmox" actions to pull in tailnet device IPs and VM/LXC IPs (never overwrites a manually-entered IP), and each entry now shows its matching DNS record(s) from the DNS module's cache
-
DNS — zone/record management across Cloudflare, Loopia, Pi-hole, Azure DNS, cPanel, and Technitium; providers are configured in-app (not via env vars) and their credentials are encrypted at rest
-
Servers — cron/systemd tracking across Debian/Raspbian servers via a lightweight push agent (
agent/linux/), plus manual entries for things an agent can't see (Docker jobs, backups). The Servers page itself just lists registered servers and (admin-only) adds new ones / issues agent tokens; clicking a server opens its detail page with CPU/RAM/disk status, IP addresses, matching DNS names (looked up from the DNS module's cache), and its scheduled tasks — live hardware from Proxmox for VM/LXC-backed servers, or from the agent's own hardware report for everything else. Proxmox-linked servers also get start/stop/restart buttons right on the detail page. -
Tailscale, Proxmox, Synology, Semaphore, Gitea, and Docker each get their own top-level page (backed by the matching integration) instead of living inside a shared Integrations browsing view:
- Tailscale — device list with online/authorized status, and authorize/deauthorize/remove actions; a live device-count widget.
- Proxmox — VM/LXC status across every node in the cluster, with start/restart/shutdown/stop actions; a live running/total widget. Supports self-signed certificates (common in homelab setups).
- Synology — volume and disk health (read-only by design). Supports self-signed certificates.
- Semaphore — Ansible run status per template across every project, with a "Run" action to trigger a template; a live template-count widget (with a last-failed warning).
- Gitea — repo list with each repo's last CI run status, and re-running just the failed jobs in a run; a live repo-count widget (with a failing-build warning).
- Docker — container status across every Docker host Dockhand manages (one credential covers all of them), with start/stop/restart actions, a host filter, and a live running/total widget.
Add/edit/enable/disable/remove each integration's credential itself under Integrations → Manage integrations.
-
Settings (admin-only) — notification channels (Gotify, ntfy, SMTP, generic webhook) with per-channel test buttons, per-event toggles (DNS record added/updated/deleted, daily secret-expiry reminder with a configurable time/timezone), badge-color customization for both DNS providers and integration types, and a date/time display format (date order, 12/24-hour clock) applied consistently to every table in the app.
All six integrations follow the same config-in-UI + encrypted-credentials pattern, added (and edited — e.g. to rotate an expired API token without recreating the whole integration) through Integrations → Manage integrations.
Verified for real, end to end: every module above — including all six
integrations, both their read-only views and their write actions
(start/stop/restart, trigger-a-run, authorize/deauthorize) — has been
exercised against the user's actual live homelab, not just built against
specs. That pass also found and fixed two real bugs: the Synology adapter
assumed HTTPS-only (the NAS is reached over plain HTTP), and the Tailscale
adapter read online/isExitNode fields that don't actually exist in the
real API response (fixed to derive them from connectedToControl and
enabledRoutes). See the git log for the full verification notes per
integration.
Requirements
- Node.js 20+
- An Authentik instance reachable from wherever this app runs
1. Set up an Authentik application
- Create an OAuth2/OpenID Provider:
- Redirect URI:
<APP_BASE_URL>/auth/callback - Scopes:
openid,email,profile
- Redirect URI:
- Create an Application using that provider, and assign the users/groups who should be able to sign in — Authentik controls who can authenticate; the app's own admin/operator/viewer roles control what they can do once in.
- Copy the provider's issuer URL, client ID, and client secret into
.env.
2. Local development
cp .env.example .env # fill in AUTHENTIK_*, SESSION_SECRET, CREDENTIALS_ENCRYPTION_KEY
npm install
npm run dev:server # http://localhost:3000 (API)
npm run dev:web # http://localhost:5173 (Vite dev server, proxies /api and /auth to :3000)
Visit http://localhost:5173 during development. Database migrations run
automatically on server start. SQLite data lands in ./data (gitignored).
Generate SESSION_SECRET and CREDENTIALS_ENCRYPTION_KEY with:
node -e "console.log(require('crypto').randomBytes(32).toString('hex'))"
3. Run with Docker
cp .env.example .env
# edit .env
docker compose -f docker-compose.dev.yml up -d --build # build locally
# or, once an image is published to your registry:
docker compose up -d
The app listens on HOST_PORT (default 3000); SQLite data persists in
./data on the host.