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Merge #305844: add clatd module and nixos test
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commit
480b871f2d
6 changed files with 278 additions and 0 deletions
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@ -92,6 +92,8 @@ Use `services.pipewire.extraConfig` or `services.pipewire.configPackages` for Pi
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- [PhotonVision](https://photonvision.org/), a free, fast, and easy-to-use computer vision solution for the FIRST® Robotics Competition.
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- [clatd](https://github.com/toreanderson/clatd), a a CLAT / SIIT-DC Edge Relay implementation for Linux.
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- [pyLoad](https://pyload.net/), a FOSS download manager written in Python. Available as [services.pyload](#opt-services.pyload.enable)
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- [maubot](https://github.com/maubot/maubot), a plugin-based Matrix bot framework. Available as [services.maubot](#opt-services.maubot.enable).
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@ -946,6 +946,7 @@
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./services/networking/charybdis.nix
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./services/networking/chisel-server.nix
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./services/networking/cjdns.nix
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./services/networking/clatd.nix
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./services/networking/cloudflare-dyndns.nix
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./services/networking/cloudflared.nix
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./services/networking/cntlm.nix
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82
nixos/modules/services/networking/clatd.nix
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82
nixos/modules/services/networking/clatd.nix
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@ -0,0 +1,82 @@
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{ config, lib, pkgs, ... }:
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with lib;
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let
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cfg = config.services.clatd;
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settingsFormat = pkgs.formats.keyValue {};
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configFile = settingsFormat.generate "clatd.conf" cfg.settings;
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in
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{
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options = {
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services.clatd = {
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enable = mkEnableOption "clatd";
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package = mkPackageOption pkgs "clatd" { };
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settings = mkOption {
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type = types.submodule ({ name, ... }: {
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freeformType = settingsFormat.type;
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});
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default = { };
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example = literalExpression ''
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{
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plat-prefix = "64:ff9b::/96";
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}
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'';
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description = ''
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Configuration of clatd. See [clatd Documentation](https://github.com/toreanderson/clatd/blob/master/README.pod#configuration).
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'';
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};
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};
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};
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config = mkIf cfg.enable {
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systemd.services.clatd = {
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description = "464XLAT CLAT daemon";
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documentation = [ "man:clatd(8)" ];
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wantedBy = [ "multi-user.target" ];
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after = [ "network-online.target" ];
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wants = [ "network-online.target" ];
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startLimitIntervalSec = 0;
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serviceConfig = {
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ExecStart = "${cfg.package}/bin/clatd -c ${configFile}";
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startLimitIntervalSec = 0;
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# Hardening
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CapabilityBoundingSet = [
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"CAP_NET_ADMIN"
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];
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LockPersonality = true;
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MemoryDenyWriteExecute = true;
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NoNewPrivileges = true;
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PrivateTmp = true;
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ProtectClock = true;
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ProtectControlGroups = true;
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ProtectHome = true;
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ProtectHostname = true;
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ProtectKernelLogs = true;
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ProtectKernelModules = true;
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ProtectProc = "invisible";
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ProtectSystem = true;
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RestrictAddressFamilies = [
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"AF_INET"
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"AF_INET6"
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"AF_NETLINK"
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];
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RestrictNamespaces = true;
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RestrictRealtime = true;
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RestrictSUIDSGID = true;
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SystemCallArchitectures = "native";
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SystemCallFilter = [
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"@network-io"
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"@system-service"
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"~@privileged"
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"~@resources"
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];
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};
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};
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};
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}
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@ -193,6 +193,7 @@ in {
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cinnamon = handleTest ./cinnamon.nix {};
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cinnamon-wayland = handleTest ./cinnamon-wayland.nix {};
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cjdns = handleTest ./cjdns.nix {};
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clatd = handleTest ./clatd.nix {};
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clickhouse = handleTest ./clickhouse.nix {};
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cloud-init = handleTest ./cloud-init.nix {};
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cloud-init-hostname = handleTest ./cloud-init-hostname.nix {};
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189
nixos/tests/clatd.nix
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189
nixos/tests/clatd.nix
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@ -0,0 +1,189 @@
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# This test verifies that we can ping an IPv4-only server from an IPv6-only
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# client via a NAT64 router using CLAT on the client. The hosts and networks
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# are configured as follows:
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#
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# +------
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# Client | clat Address: 192.0.0.1/32 (configured via clatd)
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# | Route: default
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# |
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# | eth1 Address: 2001:db8::2/64
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# | | Route: default via 2001:db8::1
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# +--|---
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# | VLAN 3
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# +--|---
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# | eth2 Address: 2001:db8::1/64
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# Router |
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# | nat64 Address: 64:ff9b::1/128
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# | Route: 64:ff9b::/96
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# | Address: 192.0.2.0/32
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# | Route: 192.0.2.0/24
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# |
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# | eth1 Address: 100.64.0.1/24
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# +--|---
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# | VLAN 2
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# +--|---
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# Server | eth1 Address: 100.64.0.2/24
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# | Route: 192.0.2.0/24 via 100.64.0.1
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# +------
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import ./make-test-python.nix ({ pkgs, lib, ... }:
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{
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name = "clatd";
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meta = with pkgs.lib.maintainers; {
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maintainers = [ hax404 ];
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};
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nodes = {
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# The server is configured with static IPv4 addresses. RFC 6052 Section 3.1
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# disallows the mapping of non-global IPv4 addresses like RFC 1918 into the
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# Well-Known Prefix 64:ff9b::/96. TAYGA also does not allow the mapping of
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# documentation space (RFC 5737). To circumvent this, 100.64.0.2/24 from
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# RFC 6589 (Carrier Grade NAT) is used here.
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# To reach the IPv4 address pool of the NAT64 gateway, there is a static
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# route configured. In normal cases, where the router would also source NAT
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# the pool addresses to one IPv4 addresses, this would not be needed.
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server = {
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virtualisation.vlans = [
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2 # towards router
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];
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networking = {
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useDHCP = false;
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interfaces.eth1 = lib.mkForce {};
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};
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systemd.network = {
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enable = true;
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networks."vlan1" = {
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matchConfig.Name = "eth1";
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address = [
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"100.64.0.2/24"
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];
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routes = [
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{ routeConfig = { Destination = "192.0.2.0/24"; Gateway = "100.64.0.1"; }; }
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];
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};
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};
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};
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# The router is configured with static IPv4 addresses towards the server
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# and IPv6 addresses towards the client. For NAT64, the Well-Known prefix
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# 64:ff9b::/96 is used. NAT64 is done with TAYGA which provides the
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# tun-interface nat64 and does the translation over it. The IPv6 packets
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# are sent to this interfaces and received as IPv4 packets and vice versa.
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# As TAYGA only translates IPv6 addresses to dedicated IPv4 addresses, it
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# needs a pool of IPv4 addresses which must be at least as big as the
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# expected amount of clients. In this test, the packets from the pool are
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# directly routed towards the client. In normal cases, there would be a
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# second source NAT44 to map all clients behind one IPv4 address.
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router = {
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boot.kernel.sysctl = {
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"net.ipv4.ip_forward" = 1;
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"net.ipv6.conf.all.forwarding" = 1;
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};
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virtualisation.vlans = [
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2 # towards server
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3 # towards client
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];
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networking = {
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useDHCP = false;
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useNetworkd = true;
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firewall.enable = false;
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interfaces.eth1 = lib.mkForce {
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ipv4 = {
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addresses = [ { address = "100.64.0.1"; prefixLength = 24; } ];
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};
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};
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interfaces.eth2 = lib.mkForce {
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ipv6 = {
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addresses = [ { address = "2001:db8::1"; prefixLength = 64; } ];
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};
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};
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};
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services.tayga = {
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enable = true;
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ipv4 = {
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address = "192.0.2.0";
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router = {
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address = "192.0.2.1";
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};
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pool = {
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address = "192.0.2.0";
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prefixLength = 24;
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};
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};
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ipv6 = {
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address = "2001:db8::1";
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router = {
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address = "64:ff9b::1";
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};
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pool = {
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address = "64:ff9b::";
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prefixLength = 96;
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};
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};
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};
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};
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# The client is configured with static IPv6 addresses. It has also a static
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# default route towards the router. To reach the IPv4-only server, the
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# client starts the clat daemon which starts and configures the local
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# IPv4 -> IPv6 translation via Tayga.
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client = {
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virtualisation.vlans = [
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3 # towards router
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];
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networking = {
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useDHCP = false;
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interfaces.eth1 = lib.mkForce {};
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};
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systemd.network = {
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enable = true;
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networks."vlan1" = {
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matchConfig.Name = "eth1";
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address = [
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"2001:db8::2/64"
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];
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routes = [
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{ routeConfig = { Destination = "::/0"; Gateway = "2001:db8::1"; }; }
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];
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};
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};
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services.clatd = {
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enable = true;
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settings.plat-prefix = "64:ff9b::/96";
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};
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environment.systemPackages = [ pkgs.mtr ];
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};
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};
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testScript = ''
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start_all()
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# wait for all machines to start up
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for machine in client, router, server:
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machine.wait_for_unit("network-online.target")
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with subtest("Wait for tayga and clatd"):
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router.wait_for_unit("tayga.service")
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client.wait_for_unit("clatd.service")
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# clatd checks if this system has IPv4 connectivity for 10 seconds
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client.wait_until_succeeds(
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'journalctl -u clatd -e | grep -q "Starting up TAYGA, using config file"'
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)
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with subtest("Test ICMP"):
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client.wait_until_succeeds("ping -c 3 100.64.0.2 >&2")
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with subtest("Test ICMP and show a traceroute"):
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client.wait_until_succeeds("mtr --show-ips --report-wide 100.64.0.2 >&2")
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client.log(client.execute("systemd-analyze security clatd.service")[1])
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'';
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})
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@ -7,6 +7,7 @@
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, tayga
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, iproute2
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, iptables
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, nixosTests
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}:
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stdenv.mkDerivation rec {
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}
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'';
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passthru.tests.clatd = nixosTests.clatd;
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meta = with lib; {
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description = "A 464XLAT CLAT implementation for Linux";
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homepage = "https://github.com/toreanderson/clatd";
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