* fix(fleet): route remaining fleet dispatches through getProxyTarget for pilot-agent nodes PR #1123 migrated POST /api/fleet/nodes/:id/update to use NodeRegistry.getProxyTarget so pilot-agent rows (no api_url / api_token) participate in remote update via the tunnel loopback. The same bug shape lived on at ten sibling fleet-dispatch sites: each read node.api_url and node.api_token directly, returning "Remote node not configured." against pilots, or silently filtered pilot rows out of a fan-out loop. Migrate every remaining fleet-wide remote dispatch to the same pattern: - routes/fleet.ts: fleet-stop, fleet-prune, prune/estimate, snapshot restore (4 sites) -> getProxyTarget + mode-aware error copy + conditional Authorization header - routes/imageUpdates.ts: fleet status + fleet refresh (2 sites) -> swap n.api_url filter for getProxyTarget != null and use target.apiUrl, so pilot rows appear in the aggregated image-updates view instead of being silently excluded - utils/snapshot-capture.ts: captureRemoteNodeFiles (1 site) -> same pattern; CaptureNode interface gains required mode field so the thrown error message picks the pilot-tunnel copy automatically - services/SecretsService.ts: resolveEnvFileRemote, readEnvRemote, writeEnvRemote (3 sites) -> same pattern; thrown errors now use the shared formatNoTargetError helper instead of leaking api_url/api_token field names Extract the previously-private noTargetMessage helper from fleet.ts into utils/remoteTarget.ts as formatNoTargetError so SecretsService, snapshot-capture, and the fleet routes share one copy of the mode-aware error string. Add 10 regression tests in fleet-pilot-dispatch-parity.test.ts covering each migrated route + the snapshot-capture utility: dispatch through the loopback target with no Authorization header for pilots, and a mode-aware error when the tunnel is disconnected. FleetSyncService (4 additional sites) carries an api_url-anchored targetIdentity in the wire protocol; pilot support there needs a protocol-level identity decision and stays as a separate follow-up. * fix(fleet): throw tunnel-disconnected error from resolveEnvFileRemote Codex audit flagged that resolveEnvFileRemote returned null when getProxyTarget was null. That predates the parity migration but the migration was the right place to fix it: the null flowed through readExistingEnv into previewPushDiff / executePush as "env file not found", which is wrong (the env exists, the node is unreachable). Throwing formatNoTargetError(node) here lets the existing catch arms in previewPushDiff (lines 450-453) surface reachable=false with the tunnel-disconnected message on the right axis, and executePush picks up the same shape via its outer catch. Also drop overstated coverage claims from the parity test header (snapshot restore + SecretsService were never actually exercised in this file, only structurally identical via tsc), and fix two describe labels that read /api/labels/* instead of the mounted /api/fleet/labels/*.
Self-hosted Docker Compose management for one machine or a fleet.
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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 a transparent HTTPS proxy across your fleet. There is no SSH and no exposed Docker socket. 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.
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
- 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
- Auto-update policies for image rollouts
- Scheduled operations on cron
- Blueprints: declarative fleet templates with drift detection
- Webhooks on stack lifecycle events
- Encrypted Fleet Secrets pushed to labeled nodes
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 admin, editor, and viewer roles
- Vulnerability scanning via Trivy with VEX-based suppression and SARIF export
- Private registries and deploy enforcement for non-compliant images
- API tokens for automation
Operations
- Host console in the browser
- Sencho Cloud Backup for off-site stack archives
- 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
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 \
-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 HTTPS and WebSocket requests to the remote instance. No SSH, no exposed Docker socket, no agent process on the remote. 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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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 production use; the only restriction is offering Sencho as a competing hosted or managed service. Converts to Apache 2.0 on 2030-03-25.



