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cnx-network-clan/clan.nix
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lastFile:docs/src/gateways.md
2026-09-09 13:43:46 +07:00

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Nix

{ config, lib, ... }:
let
hosts = import ./modules/hosts.nix;
mesh = import ./modules/mesh-hosts.nix {
dir = config.directory;
inherit lib;
};
# Single source of the machine list: inventory AND the per-machine baseline
# below are both derived from it, so no machine can be added without the
# baseline (e.g. admins group encryption for all its generated secrets).
fleet = {
control = { };
ns1 = { };
ns2 = { };
mx1 = { };
web01 = { };
# Site gateways (Topton 1U routers): dynamic PPPoE WAN, so they are NOT in
# modules/hosts.nix / the `internet` instance — clan reaches them over the
# zerotier mesh (or Tor) instead.
gw-cnx-1 = { };
};
in
{
# Ensure this is unique among all clans you want to use.
meta.name = "cnx-network-clan";
meta.domain = "cnx-network.internal";
inventory.machines = fleet;
# Services defined in this repo (module.input = "self"). See modules/clan/.
modules.router = ./modules/clan/router;
inventory.instances = {
# Admin SSH keys + root password, split per the clan-core migration off
# the deprecated `admin` service (sshd handles keys, users the password).
sshd = {
roles.server.tags.all = { };
roles.server.settings.authorizedKeys = {
"berwn" = "ssh-ed25519 AAAAC3NzaC1lZDI1NTE5AAAAIENAjhGQGraQoAjJzsomKP8GAmQPeGL1rNRNHgRcLqtT";
"kurogeek" =
"ssh-ed25519 AAAAC3NzaC1lZDI1NTE5AAAAIEcZ/p1Ofa9liwIzPWzNtONhJ7+FUWd2lCz33r81t8+w kurogeek@kurogeek";
};
};
root-user = {
module = {
name = "users";
input = "clan-core";
};
roles.default.tags.all = { };
roles.default.settings = {
user = "root";
prompt = false; # auto-generate, like the old admin service
share = false; # per-machine password, not fleet-wide
};
};
zerotier = {
roles.controller.machines."control" = { };
roles.peer.tags.all = { };
# External members admitted by ZeroTier node id (stable per device).
# Inventory machines are auto-accepted; this is only for peers outside the
# clan. Node id comes from `zerotier-cli info` on the joining device.
roles.controller.settings.allowedIds = [
"8802c8d7e0" # alex-nixos
"2bd36db8cc" # kurogeek-thinkpad
];
};
tor = {
roles.server.tags.nixos = { };
};
# Direct SSH to public IPs — clan's priority-1 connection path, with the
# ZeroTier mesh and Tor kept as automatic fallbacks. Raw IPs (from
# modules/hosts.nix, not the ns1/ns2 DNS names) so reaching these hosts never
# depends on their own DNS being up.
internet.roles.default.machines = builtins.mapAttrs (_: h: {
settings.host = h.ipv4;
}) hosts;
# Recovery root password for console access when a machine fails to boot.
emergency-access = {
roles.default.tags.nixos = { };
};
# Encrypted, deduplicating backups. control hosts the repos; ns1 is the
# only client, backing up its declared clan.core.state (the Knot DNSSEC
# keystore) over the mesh. Repo lives at /var/lib/borgbackup/ns1 on control.
# Cross-host so an ns1 loss is recoverable; repokey encryption means control
# never holds plaintext. Run `clan vars generate ns1` (YubiKey) before deploy.
borgbackup = {
roles.server.machines.control = { };
roles.client.machines.ns1 = { };
};
# Site gateways: one router instance per site, settings = the site's
# port/VLAN layout. Everything else (PPPoE, Kea/Blocky, nftables, IPv6-PD,
# CrowdSec, iperf3, speedtest) follows from modules/clan/router.
router = {
module = {
name = "router";
input = "self";
};
# Fleet-wide settings: admin paths (SSH, scrapes, iperf3, Omada UI) are
# opened to the mesh; internal proxy names live under
# <site><n>.cnx.network with wildcard certs issued via DNS-01 against
# ns1 (which must declare the gateway's acme-secret.nix generator).
roles.default.settings = {
mesh.subnet = mesh.subnet;
proxy = {
domain = "cnx.network";
acme.nameserver = hosts.ns1.ipv4;
acme.email = "postmaster@cnx.email";
};
};
# Chiang Mai (site 1): Topton 1U, Intel N300, 4x i226-V 2.5G. Port roles
# use the expected igc names — verify against facter.json after the
# first install and adjust if the box enumerates differently.
roles.default.machines.gw-cnx-1.settings = {
site = "cnx";
siteId = 1;
wan.interface = "enp1s0";
wan.vlanId = null; # this ISP runs PPPoE untagged on the port
wan.macAddress = "a8:b8:e0:01:06:87";
trunkPorts = [
"enp2s0"
# "enp3s0" # STAGING: serves as the uplink until cutover (see the machine config)
];
# Dedicated on-site recovery port: untagged mgmt, always available even
# if the switch config is broken.
accessPorts.enp4s0 = "mgmt";
# Replaces the newedge.house OPNsense box; renumbered to the fleet
# convention (10.1.<vlanId>.0/24, router .1, pool .100-.199). The old
# untagged LAN becomes tagged mgmt — infra switch ports get PVID 10.
vlans = {
mgmt = {
id = 10; # 10.1.10.0/24 — servers, APs, switches, Omada, admin
dhcp.reservations.storinator01 = {
hwAddress = "7c:c2:55:e0:d6:40";
ipAddress = "10.1.10.53";
};
};
lan.id = 20; # 10.1.20.0/24 — trusted clients
iot.id = 40; # 10.1.40.0/24
voip.id = 50; # 10.1.50.0/24
dmz.id = 60; # 10.1.60.0/24
unit1.id = 110; # 10.1.110.0/24
unit2.id = 120; # 10.1.120.0/24
unit3.id = 130; # 10.1.130.0/24
unit4.id = 140; # 10.1.140.0/24
unit5 = {
id = 150; # 10.1.150.0/24
dhcp.reservations.newt = {
hwAddress = "7c:d3:0a:21:58:0b";
ipAddress = "10.1.150.22";
};
};
};
# This site runs the Omada controller for its APs/switches.
omada.enable = true;
# Internal reverse proxy: real wildcard cert *.cnx1.cnx.network; Blocky
# resolves the names to the router's LAN address for mgmt+lan clients.
proxy = {
enable = true;
services.omada = {
# Omada's UI is HTTPS with a self-signed cert on the host network.
backend = "https://127.0.0.1:8043";
insecureSkipVerify = true;
};
};
};
};
};
# Fleet-wide baseline applied to every machine. Secrets minted by
# `clan vars generate` are encrypted for the admins group from the very
# first run — generating before this took effect is what forced the
# re-encryption dance (`clan vars fix`) on gw-cnx-1.
machines = builtins.mapAttrs (_: _: {
clan.core.sops.defaultGroups = [ "admins" ];
}) fleet;
}