285f587025
The unit ‘network-interface.service’ has been replaced by ‘network-interfaces.target’.
412 lines
13 KiB
Nix
412 lines
13 KiB
Nix
{ config, pkgs, ... }:
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with pkgs.lib;
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let
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cfg = config.networking;
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hasVirtuals = any (i: i.virtual) cfg.interfaces;
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in
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{
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###### interface
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options = {
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networking.hostName = mkOption {
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default = "nixos";
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description = ''
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The name of the machine. Leave it empty if you want to obtain
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it from a DHCP server (if using DHCP).
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'';
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};
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networking.enableIPv6 = mkOption {
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default = true;
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description = ''
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Whether to enable support for IPv6.
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'';
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};
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networking.defaultGateway = mkOption {
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default = "";
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example = "131.211.84.1";
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description = ''
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The default gateway. It can be left empty if it is auto-detected through DHCP.
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'';
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};
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networking.nameservers = mkOption {
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default = [];
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example = ["130.161.158.4" "130.161.33.17"];
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description = ''
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The list of nameservers. It can be left empty if it is auto-detected through DHCP.
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'';
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};
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networking.domain = mkOption {
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default = "";
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example = "home";
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description = ''
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The domain. It can be left empty if it is auto-detected through DHCP.
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'';
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};
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networking.localCommands = mkOption {
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default = "";
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example = "text=anything; echo You can put $text here.";
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description = ''
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Shell commands to be executed at the end of the
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<literal>network-interfaces</literal> Upstart job. Note that if
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you are using DHCP to obtain the network configuration,
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interfaces may not be fully configured yet.
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'';
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};
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networking.interfaces = mkOption {
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default = [];
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example = [
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{ name = "eth0";
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ipAddress = "131.211.84.78";
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subnetMask = "255.255.255.128";
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}
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];
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description = ''
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The configuration for each network interface. If
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<option>networking.useDHCP</option> is true, then every
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interface not listed here will be configured using DHCP.
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'';
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type = types.list types.optionSet;
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options = {
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name = mkOption {
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example = "eth0";
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type = types.string;
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description = ''
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Name of the interface.
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'';
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};
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ipAddress = mkOption {
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default = "";
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example = "10.0.0.1";
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type = types.string;
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description = ''
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IP address of the interface. Leave empty to configure the
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interface using DHCP.
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'';
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};
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prefixLength = mkOption {
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default = null;
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example = 24;
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type = types.nullOr types.int;
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description = ''
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Subnet mask of the interface, specified as the number of
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bits in the prefix (<literal>24</literal>).
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'';
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};
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subnetMask = mkOption {
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default = "";
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example = "255.255.255.0";
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type = types.string;
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description = ''
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Subnet mask of the interface, specified as a bitmask.
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This is deprecated; use <option>prefixLength</option>
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instead.
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'';
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};
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macAddress = mkOption {
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default = "";
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example = "00:11:22:33:44:55";
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type = types.string;
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description = ''
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MAC address of the interface. Leave empty to use the default.
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'';
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};
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virtual = mkOption {
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default = false;
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type = types.bool;
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description = ''
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Whether this interface is virtual and should be created by tunctl.
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This is mainly useful for creating bridges between a host a virtual
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network such as VPN or a virtual machine.
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Defaults to tap device, unless interface contains "tun" in its name.
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'';
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};
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virtualOwner = mkOption {
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default = "root";
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type = types.uniq types.string;
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description = ''
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In case of a virtual device, the user who owns it.
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'';
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};
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proxyARP = mkOption {
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default = false;
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type = types.bool;
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description = ''
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Turn on proxy_arp for this device (and proxy_ndp for ipv6).
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This is mainly useful for creating pseudo-bridges between a real
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interface and a virtual network such as VPN or a virtual machine for
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interfaces that don't support real bridging (most wlan interfaces).
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As ARP proxying acts slightly above the link-layer, below-ip traffic
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isn't bridged, so things like DHCP won't work. The advantage above
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using NAT lies in the fact that no IP addresses are shared, so all
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hosts are reachable/routeable.
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WARNING: turns on ip-routing, so if you have multiple interfaces, you
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should think of the consequence and setup firewall rules to limit this.
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'';
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};
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};
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};
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networking.ifaces = mkOption {
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default = listToAttrs
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(map (iface: { name = iface.name; value = iface; }) config.networking.interfaces);
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internal = true;
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description = ''
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The network interfaces in <option>networking.interfaces</option>
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as an attribute set keyed on the interface name.
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'';
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};
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networking.bridges = mkOption {
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default = { };
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example =
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{ br0.interfaces = [ "eth0" "eth1" ];
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br1.interfaces = [ "eth2" "wlan0" ];
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};
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description =
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''
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This option allows you to define Ethernet bridge devices
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that connect physical networks together. The value of this
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option is an attribute set. Each attribute specifies a
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bridge, with the attribute name specifying the name of the
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bridge's network interface.
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'';
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type = types.attrsOf types.optionSet;
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options = {
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interfaces = mkOption {
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example = [ "eth0" "eth1" ];
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type = types.listOf types.string;
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description =
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"The physical network interfaces connected by the bridge.";
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};
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};
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};
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networking.useDHCP = mkOption {
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default = true;
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merge = mergeEnableOption;
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description = ''
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Whether to use DHCP to obtain an IP adress and other
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configuration for all network interfaces that are not manually
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configured.
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'';
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};
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};
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###### implementation
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config = {
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boot.kernelModules = optional cfg.enableIPv6 "ipv6" ++ optional hasVirtuals "tun";
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environment.systemPackages =
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[ pkgs.host
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pkgs.iproute
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pkgs.iputils
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pkgs.nettools
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pkgs.wirelesstools
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pkgs.rfkill
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pkgs.openresolv
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]
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++ optional (cfg.bridges != {}) pkgs.bridge_utils
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++ optional hasVirtuals pkgs.tunctl
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++ optional cfg.enableIPv6 pkgs.ndisc6;
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security.setuidPrograms = [ "ping" "ping6" ];
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boot.systemd.targets."network-interfaces" =
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{ description = "All Network Interfaces";
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wantedBy = [ "network.target" ];
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};
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boot.systemd.services =
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let
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networkSetup =
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{ description = "Networking Setup";
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after = [ "network-interfaces.target" ];
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before = [ "network.target" ];
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wantedBy = [ "network.target" ];
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path = [ pkgs.iproute ];
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serviceConfig.Type = "oneshot";
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serviceConfig.RemainAfterExit = true;
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script =
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''
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# Set the static DNS configuration, if given.
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cat | ${pkgs.openresolv}/sbin/resolvconf -a static <<EOF
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${optionalString (cfg.nameservers != [] && cfg.domain != "") ''
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domain ${cfg.domain}
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''}
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${flip concatMapStrings cfg.nameservers (ns: ''
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nameserver ${ns}
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'')}
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EOF
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# Set the default gateway.
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${optionalString (cfg.defaultGateway != "") ''
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# FIXME: get rid of "|| true" (necessary to make it idempotent).
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ip route add default via "${cfg.defaultGateway}" || true
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''}
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# Turn on forwarding if any interface has enabled proxy_arp.
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${optionalString (any (i: i.proxyARP) cfg.interfaces) ''
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echo 1 > /proc/sys/net/ipv4/ip_forward
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''}
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# Run any user-specified commands.
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${cfg.localCommands}
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'';
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};
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# For each interface <foo>, create a job ‘<foo>-cfg.service"
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# that performs static configuration. It has a "wants"
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# dependency on ‘<foo>.service’, which is supposed to create
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# the interface and need not exist (i.e. for hardware
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# interfaces). It has a binds-to dependency on the actual
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# network device, so it only gets started after the interface
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# has appeared, and it's stopped when the interface
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# disappears.
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configureInterface = i: nameValuePair "${i.name}-cfg"
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(let mask =
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if i.prefixLength != null then toString i.prefixLength else
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if i.subnetMask != "" then i.subnetMask else "32";
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in
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{ description = "Configuration of ${i.name}";
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wantedBy = [ "network-interfaces.target" ];
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bindsTo = [ "sys-subsystem-net-devices-${i.name}.device" ];
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after = [ "sys-subsystem-net-devices-${i.name}.device" ];
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serviceConfig.Type = "oneshot";
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serviceConfig.RemainAfterExit = true;
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path = [ pkgs.iproute pkgs.gawk ];
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script =
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''
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echo "bringing up interface..."
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ip link set "${i.name}" up
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''
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+ optionalString (i.macAddress != "")
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''
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echo "setting MAC address to ${i.macAddress}..."
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ip link set "${i.name}" address "${i.macAddress}"
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''
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+ optionalString (i.ipAddress != "")
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''
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cur=$(ip -4 -o a show dev "${i.name}" | awk '{print $4}')
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# Only do a flush/add if it's necessary. This is
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# useful when the Nix store is accessed via this
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# interface (e.g. in a QEMU VM test).
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if [ "$cur" != "${i.ipAddress}/${mask}" ]; then
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echo "configuring interface..."
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ip -4 addr flush dev "${i.name}"
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ip -4 addr add "${i.ipAddress}/${mask}" dev "${i.name}"
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else
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echo "skipping configuring interface"
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fi
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${config.system.build.systemd}/bin/systemctl start ip-up.target
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''
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+ optionalString i.proxyARP
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''
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echo 1 > /proc/sys/net/ipv4/conf/${i.name}/proxy_arp
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''
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+ optionalString (i.proxyARP && cfg.enableIPv6)
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''
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echo 1 > /proc/sys/net/ipv6/conf/${i.name}/proxy_ndp
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'';
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});
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createTunDevice = i: nameValuePair "${i.name}"
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{ description = "Virtual Network Interface ${i.name}";
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wantedBy = [ "network.target" "sys-subsystem-net-devices-${i.name}.device" ];
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serviceConfig =
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{ Type = "oneshot";
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RemainAfterExit = true;
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ExecStart = "${pkgs.tunctl}/bin/tunctl -t '${i.name}' -u '${i.virtualOwner}'";
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ExecStop = "${pkgs.tunctl}/bin/tunctl -d '${i.name}'";
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};
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};
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createBridgeDevice = n: v:
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let
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deps = map (i: "sys-subsystem-net-devices-${i}.device") v.interfaces;
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in
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{ description = "Bridge Interface ${n}";
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wantedBy = [ "network.target" "sys-subsystem-net-devices-${n}.device" ];
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bindsTo = deps;
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after = deps;
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serviceConfig.Type = "oneshot";
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serviceConfig.RemainAfterExit = true;
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path = [ pkgs.bridge_utils pkgs.iproute ];
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script =
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''
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brctl addbr "${n}"
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# Set bridge's hello time to 0 to avoid startup delays.
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brctl setfd "${n}" 0
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${flip concatMapStrings v.interfaces (i: ''
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brctl addif "${n}" "${i}"
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ip addr flush dev "${i}"
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'')}
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# !!! Should delete (brctl delif) any interfaces that
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# no longer belong to the bridge.
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'';
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postStop =
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''
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ip link set "${n}" down
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brctl delbr "${n}"
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'';
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};
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in listToAttrs (
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map configureInterface cfg.interfaces ++
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map createTunDevice (filter (i: i.virtual) cfg.interfaces))
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// mapAttrs createBridgeDevice cfg.bridges
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// { "network-setup" = networkSetup; };
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# Set the host name in the activation script. Don't clear it if
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# it's not configured in the NixOS configuration, since it may
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# have been set by dhclient in the meantime.
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system.activationScripts.hostname =
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optionalString (config.networking.hostName != "") ''
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hostname "${config.networking.hostName}"
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'';
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};
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}
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