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A scalable overlay networking tool with a focus on performance, simplicity and security
#nebula #tailscale #mesh #vpn #overlay #p2p

Wade Simmons 6685856b5d emit certificate.expiration_ttl_seconds metric (#782) 2 жил өмнө
.github 5da79e2a4c Run `make vet` in CI (#693) 2 жил өмнө
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cidr bcabcfdaca Rework some things into packages (#489) 3 жил өмнө
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config d4f9500ca5 Update dependencies (2022-11) (#780) 2 жил өмнө
dist 3ae242fa5f Add nss-lookup to the systemd wants (#791) 2 жил өмнө
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overlay 2801fb2286 Fix relay (#827) 2 жил өмнө
sshd 9a8892c526 Fix 756 SSH command line parsing error to write to user instead of stderr (#757) 2 жил өмнө
test 78d0d46bae Remove WriteRaw, cidrTree -> routeTree to better describe its purpose, remove redundancy from field names (#582) 3 жил өмнө
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.gitignore ff54bfd9f3 Add nebula-cert.exe and cert files to .gitignore (#722) 2 жил өмнө
AUTHORS f22b4b584d Public Release 5 жил өмнө
CHANGELOG.md a56a97e5c3 Add ability to encrypt CA private key at rest (#386) 2 жил өмнө
LICENSE f22b4b584d Public Release 5 жил өмнө
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Makefile 9af242dc47 switch to new sync/atomic helpers in go1.19 (#728) 2 жил өмнө
README.md 469ae78748 Add homebrew install method to readme (#630) 2 жил өмнө
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dns_server.go c44da3abee Make DNS queries case insensitive (#793) 2 жил өмнө
dns_server_test.go f22b4b584d Public Release 5 жил өмнө
firewall.go 6e0ae4f9a3 firewall: add option to send REJECT replies (#738) 2 жил өмнө
firewall_test.go 5da79e2a4c Run `make vet` in CI (#693) 2 жил өмнө
go.mod a56a97e5c3 Add ability to encrypt CA private key at rest (#386) 2 жил өмнө
go.sum a56a97e5c3 Add ability to encrypt CA private key at rest (#386) 2 жил өмнө
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metadata.go 45d1d2b6c6 Update dependencies - 2022-04 (#664) 3 жил өмнө
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relay_manager.go 1a6c657451 Normalize logs (#837) 2 жил өмнө
remote_list.go 9af242dc47 switch to new sync/atomic helpers in go1.19 (#728) 2 жил өмнө
remote_list_test.go bcabcfdaca Rework some things into packages (#489) 3 жил өмнө
ssh.go 6b3d42efa5 Use atomic.Pointer for certState (#833) 2 жил өмнө
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README.md

What is Nebula?

Nebula is a scalable overlay networking tool with a focus on performance, simplicity and security. It lets you seamlessly connect computers anywhere in the world. Nebula is portable, and runs on Linux, OSX, Windows, iOS, and Android. It can be used to connect a small number of computers, but is also able to connect tens of thousands of computers.

Nebula incorporates a number of existing concepts like encryption, security groups, certificates, and tunneling, and each of those individual pieces existed before Nebula in various forms. What makes Nebula different to existing offerings is that it brings all of these ideas together, resulting in a sum that is greater than its individual parts.

Further documentation can be found here.

You can read more about Nebula here.

You can also join the NebulaOSS Slack group here.

Supported Platforms

Desktop and Server

Check the releases page for downloads or see the Distribution Packages section.

  • Linux - 64 and 32 bit, arm, and others
  • Windows
  • MacOS
  • Freebsd

Distribution Packages

Mobile

Technical Overview

Nebula is a mutually authenticated peer-to-peer software defined network based on the Noise Protocol Framework. Nebula uses certificates to assert a node's IP address, name, and membership within user-defined groups. Nebula's user-defined groups allow for provider agnostic traffic filtering between nodes. Discovery nodes allow individual peers to find each other and optionally use UDP hole punching to establish connections from behind most firewalls or NATs. Users can move data between nodes in any number of cloud service providers, datacenters, and endpoints, without needing to maintain a particular addressing scheme.

Nebula uses Elliptic-curve Diffie-Hellman (ECDH) key exchange and AES-256-GCM in its default configuration.

Nebula was created to provide a mechanism for groups of hosts to communicate securely, even across the internet, while enabling expressive firewall definitions similar in style to cloud security groups.

Getting started (quickly)

To set up a Nebula network, you'll need:

1. The Nebula binaries or Distribution Packages for your specific platform. Specifically you'll need nebula-cert and the specific nebula binary for each platform you use.

2. (Optional, but you really should..) At least one discovery node with a routable IP address, which we call a lighthouse.

Nebula lighthouses allow nodes to find each other, anywhere in the world. A lighthouse is the only node in a Nebula network whose IP should not change. Running a lighthouse requires very few compute resources, and you can easily use the least expensive option from a cloud hosting provider. If you're not sure which provider to use, a number of us have used $5/mo DigitalOcean droplets as lighthouses.

Once you have launched an instance, ensure that Nebula udp traffic (default port udp/4242) can reach it over the internet.

3. A Nebula certificate authority, which will be the root of trust for a particular Nebula network.

  ./nebula-cert ca -name "Myorganization, Inc"

This will create files named ca.key and ca.cert in the current directory. The ca.key file is the most sensitive file you'll create, because it is the key used to sign the certificates for individual nebula nodes/hosts. Please store this file somewhere safe, preferably with strong encryption.

4. Nebula host keys and certificates generated from that certificate authority

This assumes you have four nodes, named lighthouse1, laptop, server1, host3. You can name the nodes any way you'd like, including FQDN. You'll also need to choose IP addresses and the associated subnet. In this example, we are creating a nebula network that will use 192.168.100.x/24 as its network range. This example also demonstrates nebula groups, which can later be used to define traffic rules in a nebula network.

./nebula-cert sign -name "lighthouse1" -ip "192.168.100.1/24"
./nebula-cert sign -name "laptop" -ip "192.168.100.2/24" -groups "laptop,home,ssh"
./nebula-cert sign -name "server1" -ip "192.168.100.9/24" -groups "servers"
./nebula-cert sign -name "host3" -ip "192.168.100.10/24"

5. Configuration files for each host

Download a copy of the nebula example configuration.

  • On the lighthouse node, you'll need to ensure am_lighthouse: true is set.

  • On the individual hosts, ensure the lighthouse is defined properly in the static_host_map section, and is added to the lighthouse hosts section.

6. Copy nebula credentials, configuration, and binaries to each host

For each host, copy the nebula binary to the host, along with config.yml from step 5, and the files ca.crt, {host}.crt, and {host}.key from step 4.

DO NOT COPY ca.key TO INDIVIDUAL NODES.

7. Run nebula on each host

./nebula -config /path/to/config.yml

Building Nebula from source

Download go and clone this repo. Change to the nebula directory.

To build nebula for all platforms: make all

To build nebula for a specific platform (ex, Windows): make bin-windows

See the Makefile for more details on build targets

Credits

Nebula was created at Slack Technologies, Inc by Nate Brown and Ryan Huber, with contributions from Oliver Fross, Alan Lam, Wade Simmons, and Lining Wang.