* Skip session warnings that fire after their window The warning timers run on the monotonic clock, which does not advance while an Android device is suspended. A timer armed for T-10 or T-2 can therefore fire long after the window it was armed for, delivering a "session expires soon" notification once that window is already gone. Gate both callbacks on the wall clock at fire time: the T-10 warning is skipped once the final-warning window has been reached, and the final warning is skipped once the deadline itself has passed. Both set their edge guard before returning so a skipped warning cannot fire again for the same deadline. * Harden the late-warning guards Clamp a non-positive final lead to zero in the T-10 guard so a disabled final warning cannot move the cutoff past the deadline, matching how armTimerLocked already treats it. Strip the monotonic reading from both sides of the comparison so the guard measures wall-clock time regardless of how the caller built the deadline. The production deadline comes from a protobuf timestamp and has no monotonic reading; this keeps the guard correct for callers that derive one from time.Now. * Log the deadline and lateness on skipped warnings Include the deadline and how far past the cutoff the timer fired, so a debug bundle shows how long the device was suspended. * Inject the clock into the late-warning guard and cover it with tests The guard read time.Now internally, so the skip paths were reachable only through a deadline already in the past and the boundary depended on real time. Extract the comparison into isLate and read the time through a nowFn field, so tests can place a resume anywhere around the deadline without sleeping. * Send the final warning when the T-10 timer fires inside its window A suspend between roughly eight and ten minutes long made the T-10 timer fire inside the final-warning window and the final timer fire after the deadline, so both were skipped and a user who resumed with time left got no warning at all. When the T-10 timer fires late but before the deadline, send the final warning in its place and mark it fired so the delayed final timer does not repeat it. * Respect dismissal when promoting a late warning to the final one fireFinal skips the final warning once the user dismissed the deadline, but the promoted path did not, so a dismissed deadline could still get a final warning. Check the dismissal first, and give each skip reason its own log line so an already-fired final warning no longer logs a negative lateness. * Add a deadline-only mode to the session watcher Android will schedule its own expiry warnings from the deadline, so the engine must not arm the T-10 and T-2 timers there. NewDeadlineOnly keeps the deadline validation, the recorder propagation and the logging, and skips only the timers, so the status snapshot the app reads stays correct and an out-of-range deadline is still rejected. * Use the deadline-only watcher on Android and drop the warning callbacks The warning timers run on the monotonic clock, which does not advance while the device sleeps, so a warning armed for T-10 could fire long after its window. The app now schedules the warnings itself with WorkManager, anchored to the wall clock, from the deadline it reads through SessionExpiresAtUnix on every OnStateChanged. Wire the deadline-only watcher into the android build and remove the event-driven path from the gomobile surface: OnSessionExpiring, the event subscription behind it and DismissSessionWarning, which the app never called. * Describe the late-warning guard without naming Android The guard stays for the desktop builds, where a timer can also stall across a sleep. Android no longer arms the timers at all.
Start using NetBird at netbird.io
See Documentation
Join our Slack channel or our Community forum
🚀 We are hiring! Join us at https://netbird.io/careers
🤖 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)
Key features
Quickstart with NetBird Cloud
- Download and install NetBird at https://app.netbird.io/install.
- Follow the steps to sign up with Google, Microsoft, GitHub or your email address.
- Check the NetBird admin UI.
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:
- Docker with the Compose plugin (Compose v2 or higher). See the Docker installation guide.
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.
See a complete architecture overview for details.
Reporting bugs and requesting features
NetBird uses a discussion-first workflow. Bug reports and feature requests start in Discussions, not as issues.
| What you want to do | Where to go |
|---|---|
| Report a bug, regression, or unexpected behavior | Issue Triage |
| Request a feature or share an idea | Ideas & Feature Requests |
| Ask about setup, configuration, or self-hosting | Q&A / Support |
| Report a security vulnerability | Security policy, never a public thread |
Our team and maintainers triage discussions, ask follow-up questions, check for duplicates, and reproduce bugs. Validated reports are promoted to issues. This keeps the issue tracker a clear answer to one question: what is the team working on.
Please search existing discussions and issues first, including closed ones. If something similar already exists, upvote it and add your details there instead of opening a duplicate.
For bug reports, include your NetBird version, operating system, deployment type (Cloud, self-hosted, Kubernetes, or Docker), reproduction steps, expected and actual behavior, and a debug bundle where relevant:
netbird version
netbird status -d -A
netbird debug for 1m -A -S -U
-U uploads the bundle and prints a file key you can paste instead of attaching the archive.
-A anonymizes the output, which matters on a public thread. It masks most identifying details
but is not full redaction, so read the bundle before posting it. Two levels are available:
| Level | How to select | What it masks |
|---|---|---|
default |
-A / --anonymize |
Public IP addresses, IPv6 ULA addresses, MAC addresses, and domains other than netbird.io, netbird.cloud, netbird.selfhosted, and netbird.stage. IPv4 private, CGNAT, and link-local ranges are kept |
strict |
--anonymize-level strict (implies -A) |
The above, plus IPv4 private, CGNAT, and link-local ranges, peer names in front of netbird.cloud, netbird.selfhosted, and netbird.stage, and WireGuard public keys. Labels under netbird.io are kept, since it only hosts infrastructure |
See collecting a debug bundle and the CLI reference for details.
See How to use Discussions, Issues, and Pull Requests for the full workflow, or SUPPORT.md for a shorter version.
Contributing
Contributions are welcome. Read CONTRIBUTING.md first. NetBird works ticket first, anything that changes behavior needs an issue the team has agreed on before you open a pull request.
Community projects
- NetBird installer script
- netbird-tui - terminal UI for managing NetBird peers, routes, and settings
- caddy-netbird - Caddy plugin that embeds a NetBird client for proxying HTTP and TCP/UDP traffic through NetBird networks
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.
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).
Legal
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.



