Brad Ison 29eff3b207 [management] Derive the settings ETag at a precision the store preserves
The validator a bootstrap returns was permanently unusable on PostgreSQL. POST
derives it from the in-memory row, whose CreatedAt carries nanoseconds, while
every later comparison derives it from a row read back out of the store — and
PostgreSQL truncates timestamps to microseconds, MySQL DATETIME to whole
seconds without an fsp. The two never agreed again, so the documented
"conditional PUT without an intervening GET" answered 412 forever.

Hashing CreatedAt at whole-second precision fixes it at the root: seconds is
the floor every supported engine round-trips, so the validator no longer
depends on which store is behind it. The cost is that a delete and
re-bootstrap inside the same second, onto the same endpoint with the same
toggles, derives the same validator — which needs a self-addressed endpoint
reclaimed within one second, since a labeled bootstrap draws a fresh label.

The whole suite ran green against this bug, because every test uses the sqlite
test store and sqlite preserves nanoseconds. The regression guard is therefore
on the type rather than through a store: it asserts the validator is unchanged
by truncation at each engine's precision, so it holds without running the
suite against all three.

Also from review: the concurrency test recorded the winning writer's value in a
slice left zero for the loser, and zero is a retention the API documents as
"keep indefinitely" — so the assertion could be satisfied without matching the
writer that won. It now uses a sentinel and asserts equality. The stale-delete
e2e assertion accepted any error, which a server error or a state-guard refusal
would have satisfied; it now requires a precondition failure. And the 412
message both conditional writes return is a single constant, since on delete
the message is the only thing separating staleness from the state guards.
2026-08-11 12:24:53 +02:00
2025-04-09 20:18:52 +01:00
2026-08-01 08:17:03 +09:00
2024-10-30 17:18:27 +01:00
2026-07-30 15:34:08 +02:00

Start using NetBird at netbird.io
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🤖 NetBird Agent Network (Beta)

Identity-aware access control for AI agents — keyless access to LLM APIs and private resources over the encrypted NetBird tunnel. See agent-network/ or read the docs at netbird.ai.

NetBird combines a configuration-free peer-to-peer private network and a centralized access control system in a single platform, making it easy to create secure private networks for your organization or home.

Connect. NetBird creates a WireGuard-based overlay network that automatically connects your machines over an encrypted tunnel, leaving behind the hassle of opening ports, complex firewall rules, VPN gateways, and so forth.

Secure. NetBird enables secure remote access by applying granular access policies while allowing you to manage them intuitively from a single place. Works universally on any infrastructure.

https://github.com/user-attachments/assets/10cec749-bb56-4ab3-97af-4e38850108d2

Self-host NetBird (video)

Watch the video

Key features

Connectivity Management Security Automation Platforms
Kernel WireGuard Admin Web UI SSO & MFA support Public API Linux
Peer-to-peer connections ✓ Auto peer discovery and configuration Access control: groups & rules Setup keys for bulk provisioning macOS
✓ Connection relay fallback IdP integrations Activity logging Self-hosting quickstart script Windows
Routes to external networks Private DNS Traffic events IdP groups sync with JWT Android
Domain-based DNS routes Custom DNS zones Device posture checks Terraform provider Android TV
Exit nodes Multiuser support ✓ Peer-to-peer encryption Ansible collection iOS
IPv6 dual-stack overlay Multi-account profile switching SSH with central access policies Apple TV
Browser SSH & RDP Quantum-resistance with Rosenpass ✓ FreeBSD
Reverse proxy with auto-TLS Periodic re-authentication pfSense
OPNsense
MikroTik RouterOS
✓ OpenWRT
Synology
TrueNAS
Proxmox
Raspberry Pi
Serverless
Container

Quickstart with NetBird Cloud

Quickstart with self-hosted NetBird

This is the quickest way to try self-hosted NetBird. It should take around 5 minutes to get started if you already have a public domain and a VM. Follow the Advanced guide with a custom identity provider for installations with different IdPs.

Infrastructure requirements:

  • A Linux VM with at least 1 CPU and 2 GB of memory.
  • The VM should be publicly accessible on TCP ports 80 and 443 and UDP port 3478.
  • A public domain name pointing to the VM.

Software requirements:

Steps

  • Download and run the installation script:
export NETBIRD_DOMAIN=netbird.example.com; curl -fsSL https://github.com/netbirdio/netbird/releases/latest/download/getting-started.sh | bash

A bit on NetBird internals

  • Every machine in the network runs the NetBird agent, which manages WireGuard.
  • Every agent connects to the Management Service, which holds network state, manages peer IPs, and distributes updates to agents.
  • Agents use ICE (via pion/ice) to discover connection candidates for peer-to-peer connections.
  • Candidates are discovered with the help of STUN servers.
  • Agents negotiate a connection through the Signal Service, exchanging end-to-end encrypted messages with candidates.
  • When NAT traversal fails (e.g. mobile carrier-grade NAT) and a direct p2p connection isn't possible, the system falls back to a Relay Service and a secure WireGuard tunnel is established through it.

NetBird high-level architecture diagram

See a complete architecture overview for details.

Community projects

Note: The main branch may be in an unstable or even broken state during development. For stable versions, see releases.

Support acknowledgement

In November 2022, NetBird joined the StartUpSecure program sponsored by the Federal Ministry of Education and Research of the Federal Republic of Germany. Together with the CISPA Helmholtz Center for Information Security, NetBird brings security best practices and simplicity to private networking.

CISPA_Logo_BLACK_EN_RZ_RGB (1)

Acknowledgements

We build on open-source technologies like WireGuard®, Pion ICE, and Rosenpass. We greatly appreciate the work these projects are doing, and we'd love it if you could support them too (e.g., by starring or contributing).

This repository is licensed under the BSD-3-Clause license, which applies to all parts of the repository except for the directories management/, signal/ and relay/. Those directories are licensed under the GNU Affero General Public License version 3.0 (AGPLv3). See the respective LICENSE files inside each directory.

WireGuard and the WireGuard logo are registered trademarks of Jason A. Donenfeld.

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