Bundles three small follow-ups deferred from the recent lazy-loading
and gate-refactor PRs:
ErrorBoundary visual harmonization. The top-level boundary used a red
banner with custom button styling that no longer matched the glass-
card aesthetic the lock cards and LazyBoundary settled on. Replace
with the same glass-card + AlertTriangle layout. The user already
knows something broke when this fires; a calm card with a clear Try
again CTA is more actionable than the louder treatment, and a
consistent recovery surface across both boundaries means a user never
sees two different "something went wrong" treatments depending on
which boundary catches the error.
Keyboard focus on boundary trip. When either boundary trips, focus
typically falls back to <body> because the throwing subtree
unmounted. Keyboard users would have to tab from the top to reach the
recovery action. Add a ref on the CTA button and a componentDidUpdate
gate that focuses it on the false-to-true hasError transition. The
gate fires once per trip, not on every error-state re-render, so a
user who tabbed elsewhere within the card does not get focus stolen
back. Verified the gate also fires on a re-error after Try again
(setState({hasError:false}) re-renders with prevState.hasError=false,
the next throw flips to true and the transition condition triggers).
Cross-tab dismissal sync in useDismissalState. The hook previously
read localStorage only in the lazy initializer, so dismissing in tab
A did not propagate to tab B until tab B re-mounted. Add a useEffect
that listens for storage events on the configured key. The browser
fires storage events only in OTHER tabs than the one that wrote the
change, so this handles the tab B receives tab A's dismiss case;
same-tab updates flow through setDismissed directly, unchanged.
Malformed event.newValue (NaN, empty string) defaults to dismissed=
false, the conservative outcome.
Adds 4 new vitest cases for the storage-event paths: recent
timestamp, null newValue (restore), unrelated key, and stale
timestamp.
Self-hosted Docker Compose management with self-healing infrastructure, atomic deployments, and multi-network fleet control. Built for engineers who want Kubernetes-grade reliability without the complexity.
Why Sencho?
Works across every network
Pilot Agent tunnels through NAT and firewalls so every node in your fleet is reachable from the dashboard, regardless of network topology. No port-forwarding. No VPN. No SSH.
Containers crash. Sencho fixes them.
Auto-heal policies watch your stacks and take action (restart, redeploy, notify) before you even open your laptop. Define the rules once; the recovery runs itself.
Deploy safely without Kubernetes
Atomic deployments mean a failed stack never leaves you in a broken half-up state. Rollback is one click. Deploy enforcement policies block non-compliant images before they ever run.
Define behavior, not procedures
Auto-update policies, scheduled operations, webhooks, and deploy enforcement let you codify how your infrastructure behaves. The UI is for oversight; the engine runs the work.
Features
Stack Management
- Monaco editor with syntax highlighting and multi-file support
- Atomic deployments with live progress tracking and one-click rollback
- Git-sourced stacks: pull and sync from any repository
- Stack file explorer and label management
Monitoring & Observability
- Live log streaming with search and filtering across all containers
- CPU, RAM, and disk threshold alerts with configurable actions
- Container stats, health checks, and image update notifications
- Global observability view across all nodes in your fleet
Fleet Management
- Multi-node via authenticated HTTP/WebSocket proxy (no SSH, no remote socket)
- Fleet view and sync for coordinated updates across nodes
- Pilot Agent for NAT traversal and firewall-crossing connections
- Node compatibility checks before deploying
Automation
- Auto-heal policies: detect and recover from container failures automatically
- Auto-update policies: roll out new image versions on your terms
- Scheduled operations with cron expressions
- Webhooks and deploy enforcement rules
Security
- SSO: custom OIDC (any spec-compliant provider), Google/GitHub/Okta presets, LDAP/Active Directory
- Two-factor authentication and RBAC with deployer, node-admin, and auditor roles
- Audit log, vulnerability scanning with VEX suppression, and private registry support
- Deploy enforcement to block non-compliant images
Operations
- App Store with one-click LinuxServer.io template deployments
- Sencho Cloud Backup for off-site stack archives
- Notification routing to Slack, Discord, email, and webhooks
- Global search across stacks and containers
Architecture
Sencho's architecture combines a Distributed API model with an optional Pilot Agent for complex networks.
- Distributed API: Remote nodes are managed by proxying authenticated HTTP/WebSocket requests to autonomous Sencho instances running on each server. No SSH. No remote Docker socket exposure. No polling agent. Each node speaks the same Sencho API, so the dashboard is just another client.
- Pilot Agent: For nodes behind NAT or strict firewalls, the Pilot Agent establishes secure outbound tunnels to the primary dashboard instance. This guarantees full fleet visibility and management without requiring port-forwarding, VPNs, or inbound network access.
Quick Start
Docker run (quickest):
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
Docker Compose (recommended for production):
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
Then open http://your-server:1852 and create your admin account.
See the full documentation for configuration details, multi-node setup, and more.
Documentation
Development
# Backend (Express + TypeScript)
cd backend && npm install && npm run dev
# Frontend (React + Vite)
cd frontend && npm install && npm run dev
The frontend dev server proxies /api requests to the backend on port 1852.
Contributing
See CONTRIBUTING.md for development setup and PR guidelines.
Security
See SECURITY.md for vulnerability reporting. Do not open public issues for security vulnerabilities.
License
Sencho is licensed under the Business Source License 1.1. Production use is allowed; the only restriction is offering Sencho as a competing hosted or managed service. On 2030-03-25, the license automatically converts to Apache 2.0.

