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Christian ManivongandClaude Sonnet 4.6 f194c379e4
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feat: add NIS2 landing page, roadmap page, and compliance section
- New /nis2 page: full Art. 21 mapping with covered/partial/roadmap/n-a
  tags, evidence-by-trigger breakdown, and roadmap callout
- New /roadmap page: planned and under-consideration items, NIS2-tagged
  items highlighted with monospace badge
- Home: new NIS2 section between screenshots and plugin block — Art. 21
  mapping list + MockCompliance UI + link to /nis2
- Features: new "Compliance & Audit (NIS2)" section
- Nav: Roadmap link added; NIS2 in Docs dropdown
- Footer: Roadmap and NIS2 links added
- docs/PRODUCT.md: NIS2 evidence foundation as value proposition #9
- docs/PAGES.md: /nis2, /roadmap, and NIS2 home section documented

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
2026-06-28 11:35:37 +02:00

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netOrk — Product Description

One-liner

netOrk is a self-hosted network orchestration platform that discovers, monitors, and manages heterogeneous network infrastructure from a single UI.

Elevator Pitch (3 sentences)

netOrk connects to your routers, switches, access points, firewalls, and servers via NAPALM and custom vendor drivers — regardless of manufacturer. It continuously polls device state, detects configuration drift, and lets you push corrections in one click. All findings are synced to NetBox as the source of truth, and security integrations with Wazuh and Graylog give you visibility across the full stack.


Target Audience

Primary: Network engineers and IT administrators managing small to medium heterogeneous environments (10–500 devices) — mixed vendor, mixed OS.

Secondary: Serious homelab operators who run "prosumer" or enterprise-grade hardware and want operational visibility beyond what consumer dashboards offer.

Pain points this solves:

  • Multiple vendor-specific management UIs open at once
  • No single view of "what's running where"
  • Config changes made directly on devices — nobody knows what changed
  • Manual SSH into every device to check interface status or VLAN membership
  • Security tooling (Wazuh agents, syslog) not consistently deployed

Value Propositions

  1. One UI for everything — OpenWRT APs, OPNsense firewalls, HP ProCurve switches, Proxmox hosts, Linux servers, Fritz!Boxes, NAS devices, and more, all managed in one place.

  2. Intent-based configuration — Define desired state in netOrk (VLAN names, SSID settings, AP radio profiles). netOrk pushes the config to devices and corrects drift automatically or on demand.

  3. Automatic drift detection — Every poll compares device config against the DB. Drifted devices get a warning; a one-click fix stream applies the correction via SSH/UCI/REST and shows live output.

  4. Scheduled automation — Automatic reboots for OpenWRT APs (GTK key rotation workaround), scheduled config fixes, package updates — all with time windows and per-site concurrency limits.

  5. Security visibility — Wazuh agent tracking with CVE counts and alert history per device. Graylog syslog forwarding status and auto-fix. CrowdSec org-level threat summary per device.

  6. Deep NetBox integration — Devices, interfaces, IP addresses, prefixes, VLANs synced to NetBox automatically. netOrk uses NetBox as the canonical documentation target.

  7. Plugin system — Integrations (Wazuh, Graylog, CrowdSec, apt-cacher-ng) are plugins that can be enabled/disabled per deployment. Adding a new integration follows a documented pattern.

  8. Self-hosted, no SaaS — Runs in Docker Compose. Your data stays on your infrastructure. No telemetry, no cloud dependency.

  9. NIS2 evidence foundation — NIS2 Art. 21 mandates asset inventory, patch management, access control, and audit trails. netOrk produces all of these as day-to-day operational outputs: full device inventory, per-device update status, Wazuh CVE tracking, RBAC, config drift detection, and a complete audit log.


Feature List

Device Management

  • CRUD for devices with credential profiles and SSH key management
  • Per-device poll intervals (minutes) or manual-only
  • Status tracking: planned / staged / active / decommissioning / offline / disabled
  • Vendor/model/OS auto-populated from NAPALM get_facts()
  • Site assignment with FK to structured Site records
  • AP Profile assignment for grouped OpenWRT config

Discovery

  • ICMP ping sweep, SNMP scan, HTTP/HTTPS probing
  • Device fingerprinting: vendor + platform confidence scoring
  • FQDN resolution (reverse DNS)
  • Manual adoption from scan results (no auto-create to avoid inventory noise)

Supported Device Drivers

Custom NAPALM drivers for all of the following:

Driver Device type
openwrt OpenWRT access points
opnsense OPNsense firewalls
proxmox Proxmox VE hypervisors
linux Generic Linux servers
procurve HP ProCurve / Aruba switches
tplink_jetstream TP-Link Jetstream managed switches
netgear Netgear switches
fritzbox AVM Fritz!Box routers
zyxel Zyxel switches
openmediavault OpenMediaVault NAS
sonos Sonos speakers

Plus all built-in NAPALM drivers: Cisco IOS/IOS-XE/NX-OS, Arista EOS, Juniper JunOS.

Networking & Inventory

  • Interface browser with IPv4/IPv6 addresses, MAC, speed, MTU
  • LLDP neighbor discovery and topology graph
  • ARP table and DHCP lease browser per device
  • Subnet browser with interface-to-subnet assignments
  • VLAN list grouped by site; per-VLAN device membership view
  • SSID management with push to OpenWRT APs via UCI

Configuration Management

  • Config drift detection: desired state (DB) vs device state (poll snapshot)
  • One-click drift fix stream with live SSH output in the browser
  • UCI-based config push for OpenWRT (VLAN names, SSID settings, radio config)
  • AP profile system: country code, HT/VHT mode, 802.11r, NTP, syslog, SSH port

Scheduled Operations

  • Scheduled reboots for OpenWRT APs with per-site concurrency lock
  • Failback cron script written to device for netOrk-unreachable scenarios
  • Scheduled config drift fixes with time-window enforcement
  • Package update scheduling and one-click apply

Monitoring & Health

  • SNMP health metrics (CPU, memory, interface counters) via get_health_metrics()
  • Per-device warning system with severity levels (error / warning / info)
  • Docker container and image status (Proxmox/Linux)
  • Service status and start/stop/restart (systemd)
  • VM/container list with OS device cross-linking (Proxmox)

Security Integrations (plugins)

  • Wazuh — agent enrollment tracking, vulnerability counts (by severity), recent alert history, CIS benchmark scores, one-click agent install fix stream
  • Graylog — rsyslog forwarding status per device, one-click fix to write rule
  • CrowdSec — org-level decisions, remediation metrics, top attack scenarios

DNS

  • DNS zone management with authoritative device assignment
  • Forward record provisioning (A records from device interfaces)
  • PTR record provisioning to reverse zones
  • Pending job queue for zone changes when device is unreachable

Access Control

  • JWT authentication with remember-me (localStorage) or session-only (sessionStorage)
  • RBAC with four built-in roles: viewer / operator / engineer / administrator
  • Custom roles with any permission combination
  • Full audit log of all orchestration actions

NetBox Sync

  • Pushes vendor, model, OS version, status to NetBox dcim.devices
  • Syncs interfaces, IP addresses, prefixes, VLANs
  • VM interfaces and disks for Proxmox hosts

Developer / Operator Experience

  • OpenAPI / Swagger at /docs
  • Plugin system: new integrations follow a documented pattern
  • Celery task queue with dedicated queues per workload type
  • Docker Compose deployment (single command)
  • Alembic migrations run automatically on deploy

Architecture in One Paragraph

netOrk runs as five Docker containers: a FastAPI API server, two Celery worker pools (general + poll), a Celery Beat scheduler, and an nginx UI server. Redis is the broker. PostgreSQL stores all state. Device communication is always blocking I/O executed in Celery workers — FastAPI request handlers are async-only for DB and quick operations. Custom NAPALM drivers live in vendor/ as editable packages and self-register via @register_driver. The plugin system (netork/plugins/) provides a hook bus, a plugin registry with enable/disable state in the DB, and a documented pattern for adding integrations.