* refactor(auto-update): retire per-stack gate, drive auto-update from schedules only
The per-stack Auto-update toggle in the stack sidebar context menu wrote a
gate row to `stack_auto_update_settings`, but actual updates only ran when a
`scheduled_tasks` row with `action='update'` fired. On a fresh install the
toggle was inert: detection ran every 6h, nothing was applied.
The same context menu already exposes `Schedule task`, which opens
ScheduledOperationsView pre-filled for the stack where the user can pick
`Auto-update Stack` and any cron. Keeping the toggle alongside that flow
duplicated the same action and turned the gate table into a parallel store
of "is a covering schedule active" derivable from `scheduled_tasks` itself.
Drop the gate model entirely:
- Backend: remove the `stack_auto_update_settings` table and its four
accessors, the three routes under /api/stacks/*/auto-update, the per-stack
skip in /api/auto-update/execute and SchedulerService.executeUpdate's
fleet branch, and the clearStackAutoUpdateSetting call on stack delete.
Dashboard `autoUpdate` count derives from scheduled_tasks (action='update'
rows pinned to the node, total/enabled split).
- Frontend: drop the Auto-update entry from the sidebar context menu and its
optimistic toggle plumbing. Drop autoUpdateSettings state, the
/stacks/auto-update-settings fetch, and the auto-update-settings-changed
WebSocket branch. Slim useSidebarActivitySummary (just nextRunAt; no
enabled/total counts). AutoUpdateReadinessView's per-card autoUpdateEnabled
now means "a covering enabled action='update' schedule exists" (per-stack
row or fleet row on this node, earliest next_run_at wins, per-stack row
wins on ties), with the gate-fetch removed.
- New: scheduledTasksRouter broadcasts scope: 'scheduled-tasks' on POST,
PUT, PATCH /toggle, and DELETE so useConfigurationStatus and
useNextAutoUpdateRun refetch under the 250ms debounce instead of waiting
for the 60s poll. The broadcast is wrapped so a broken subscriber socket
cannot turn a successful mutation into a 500.
- Docs: rewrite the "Per-stack control" section of auto-update-policies.mdx
to describe the schedule-based model; update the matching troubleshooting
entry. The misleading fleet-update help text in ScheduledOperationsView
is corrected to reflect that every stack on the node is covered.
Tier parity: the surviving auto-update path (Schedule task -> Auto-update
Stack / All Stacks) is gated `requirePaid + requireAdmin` backend and
`isPaid + isAdmin` frontend, matching the gate the deleted routes carried.
The pre-commit grep returns no tier-related diff outside this PR's scope.
No data migration is provided: greenfield rules apply, and the leftover
table on already-shipped instances is harmless because no code reads or
writes it after this PR.
* docs: sweep remaining references to the per-stack auto-update toggle
The previous commit retired the per-stack Auto-update gate in favor of
configuring auto-update purely through scheduled tasks. This commit
removes the now-stale mentions of that toggle across the operator docs:
- docs/features/sidebar.mdx: drop the Auto-update entry from the Inspect
group description, the matching screenshot alt-text, and the Skipper
Note that listed it. Schedule task now carries the cross-link to
Auto-Update Policies.
- docs/features/stack-management.mdx: drop the Auto-update list item;
refresh the Schedule task entry to mention the Auto-update Stack action.
- docs/features/dashboard.mdx: rename the Configuration Status row from
"Auto-update stacks" to "Auto-update schedules" with the new value
shape, and rewrite the troubleshooting accordion to describe the
scheduled-tasks invalidation path.
- docs/features/scheduled-operations.mdx: rewrite the Auto-update All
Stacks row and helper text to reflect that every stack on the node is
covered (no per-stack opt-out from this surface anymore).
- docs/features/multi-node.mdx: rewrite the Updates column definition to
derive the Auto/Off flag from enabled Auto-update Stack / Auto-update
All Stacks schedules instead of the removed per-stack policy.
The auto-update-policies.mdx rewrite in the previous commit already
covered the main reference page. The sidebar-context-menu.png screenshot
will be refreshed on release once the new menu is live in production;
the alt text is updated in this commit so it accurately describes the
shipping state.
No website edits needed: the Auto-Update Policies feature card description
("Schedule automatic image pulls and redeployments per stack on your own
cadence") and the feature matrix labels ("Auto-update stack schedule",
"Auto-update all stacks schedule") remain accurate under the new model.
* fix(stacks): drop orphaned requireAdmin import after auto-update route removal
CI's backend lint step flagged this PR's earlier deletion of the three
/api/stacks/*/auto-update routes: those handlers were the only callers of
`requireAdmin` inside routes/stacks.ts, leaving the named import on line 15
unreferenced. `requirePaid` and `effectiveTier` from the same line are still
in use elsewhere in the file and stay.
tsc --noEmit does not flag unused named imports; ESLint's no-unused-vars
does. Local backend lint reproduces and now reports 0 errors against the
existing 334-warning baseline.
Self-hosted Docker Compose management for one machine or a fleet.
Docs · Website · Discussions · Sponsor
Note
Sencho is currently in public beta on the path to v1.0. Core workflows are actively tested, but early users should review the known limitations and avoid deploying it blindly on critical infrastructure without testing in their own environment first.
What Sencho is
Sencho is for homelab operators, small DevOps teams, and platform engineers who run services on Docker Compose, want a graphical interface without giving up file-on-disk workflows, and need to manage more than one machine without SSH gymnastics or a VPN.
It runs as a single container on your hardware and gives you a UI for the work you currently do over SSH on compose stacks: deploying, editing files, watching logs, restarting containers, browsing volumes, and recovering from failures. Your compose files stay on the host filesystem and remain the source of truth.
A Sencho instance is autonomous. To manage another machine, you install a second Sencho on it and connect them with a long-lived API token; the primary dashboard then acts as an authenticated HTTP and WebSocket proxy across your fleet. Use TLS, a VPN, or a private network for any untrusted link. Each node still uses its local Docker socket (see Quick start), but Sencho does not require SSH and does not expose a remote Docker socket on the network. For nodes behind NAT or strict firewalls, the Pilot Agent establishes a single outbound WebSocket tunnel to the primary, so the remote host opens no inbound port at all.
Most capabilities are free in the Community tier. A few advanced automation and fleet-control features ship in paid tiers; pricing lives at sencho.io/pricing.
What Sencho is not (yet)
Sencho is a Docker Compose control plane focused on homelab and small-fleet operators. It is intentionally not:
- A Kubernetes scheduler or replacement.
- A reverse proxy. Front Sencho with your existing proxy (Caddy, Traefik, nginx) for TLS and authentication on the public edge.
- A monitoring stack. Sencho surfaces container and host metrics in the dashboard but does not replace Prometheus, Grafana, or your existing alerting pipeline.
- A CI / CD pipeline. Use webhooks, the API, or Git-sourced stacks to connect Sencho to your build system.
See KNOWN_LIMITATIONS.md for the current limitation list.
Tier coverage: All bullets below are available in the free Community tier unless marked with (Skipper) for paid mid-tier or (Admiral) for paid top-tier. Full breakdown at sencho.io/pricing.
Capabilities
Stacks
- Full Compose lifecycle: create, deploy, restart, stop, pull
- Monaco editor with diff preview before save and one-click rollback
- Git-sourced stacks pulled and synced from any repository
- File explorer for compose, env, and supporting files
- Stack labels for grouping and bulk operations
- App Store with LinuxServer.io templates
Observability
- Aggregated log search and stream across every container in the fleet
- Live container stats, health checks, and image-update notifications
- Threshold alerts for CPU, memory, and network
- Read-only audit log of every action (Admiral)
- Network topology view of containers, networks, and nodes
Fleet
- Multi-node management via authenticated HTTP and WebSocket proxy
- Fleet view with grid and topology layouts
- Fleet snapshots of compose and env across the fleet
- Pilot Agent for nodes behind NAT or strict firewalls
- Node compatibility checks before deploying
Automation
- Auto-heal policies for failed containers (Skipper)
- Auto-update policies for image rollouts (Skipper)
- Scheduled operations on cron (Skipper)
- Blueprints: declarative fleet templates with drift detection (Skipper)
- Webhooks on stack lifecycle events (Skipper)
- Encrypted Fleet Secrets pushed to labeled nodes (Skipper)
Security
- SSO: custom OIDC, presets for Google, GitHub, and Okta, plus LDAP and Active Directory
- Two-factor authentication with TOTP and backup codes
- RBAC with five roles: admin (full control), viewer (read-only), deployer (deploy and restart, no edits), node-admin (admin scoped to specific nodes), and auditor (read-only with audit-log access)
- Vulnerability scanning via Trivy on every tier with VEX-based suppression; SARIF export and SBOM upload (Skipper)
- Private registries (Admiral) and deploy enforcement (Skipper) for non-compliant images
- API tokens for automation
Operations
- Host console in the browser (Admiral)
- Off-site stack archives via custom S3 (every tier) or Sencho Cloud Backup (Admiral) for managed storage
- Notification routing to Slack, Discord, email, and webhooks
- Global search across stacks, containers, and services
- Resources view for images, volumes, and networks with scoped prune actions
Before you install
Sencho talks to Docker through the host's /var/run/docker.sock. Mounting this socket grants Sencho the same privilege as sudo docker on the host. This is the same model used by Portainer, Dockge, Komodo, and other Compose dashboards. If your threat model requires stricter isolation, see running with a non-root container user and front Sencho with a reverse proxy that enforces authentication.
Quick start
Sencho runs in a single container.
services:
sencho:
image: saelix/sencho:latest
container_name: sencho
restart: unless-stopped
ports:
- "1852:1852"
volumes:
- /var/run/docker.sock:/var/run/docker.sock
- ./data:/app/data
# 1:1 Compose Path Rule: the host path MUST match the container path
- /opt/docker:/opt/docker
environment:
- COMPOSE_DIR=/opt/docker
- DATA_DIR=/app/data
docker compose up -d
Open http://your-server:1852 and create your admin account.
Always front Sencho with a TLS-terminating reverse proxy in production. See the self-hosting guide for hardening, environment variables, and reverse-proxy examples.
Run with docker run instead
docker run -d --name sencho \
-p 1852:1852 \
-v /var/run/docker.sock:/var/run/docker.sock \
-v sencho_data:/app/data \
# 1:1 Compose Path Rule: the host path MUST match the container path
-v /opt/docker:/opt/docker \
-e COMPOSE_DIR=/opt/docker \
saelix/sencho:latest
For the full walkthrough, see the quickstart guide.
Adding remote nodes
To manage a second machine, install Sencho on it the same way, then add it from the primary dashboard with its URL and a long-lived API token. The primary proxies authenticated HTTP and WebSocket requests to the remote instance. The remote node does not run SSH for Sencho, does not expose its Docker socket on the network, and does not run a separate agent process. The local Sencho on each node manages its own Docker through the standard socket mount described in Quick start. Nodes behind NAT or strict firewalls can opt into the Pilot Agent for outbound-only connectivity.
See the multi-node guide for the full token-bearer flow.
Screenshots
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Telemetry and data handling
Sencho does not emit telemetry, analytics, or crash reports. The only outbound traffic is license validation against Lemon Squeezy, and only when a paid license key is activated. Community-tier instances make no outbound calls to Sencho-controlled endpoints. Stack metadata, container inventory, and user activity never leave your instance.
Documentation, community, and license
- Documentation: docs.sencho.io
- Community: GitHub Discussions
- Contributing: CONTRIBUTING.md
- Security: SECURITY.md. Do not open public issues for security vulnerabilities.
- License: Business Source License 1.1. Free for most self-hosted production use under the BSL Additional Use Grant; see LICENSE and the license FAQ for exact terms. Converts to Apache 2.0 on 2030-03-25.



