212 lines
7 KiB
Nix
212 lines
7 KiB
Nix
{ config, lib, pkgs, ... }:
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with lib;
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let
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cfg = config.services.usbguard;
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# valid policy options
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policy = (types.enum [ "allow" "block" "reject" "keep" "apply-policy" ]);
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defaultRuleFile = "/var/lib/usbguard/rules.conf";
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# decide what file to use for rules
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ruleFile = if cfg.rules != null then pkgs.writeText "usbguard-rules" cfg.rules else defaultRuleFile;
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daemonConf = ''
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# generated by nixos/modules/services/security/usbguard.nix
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RuleFile=${ruleFile}
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ImplicitPolicyTarget=${cfg.implictPolicyTarget}
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PresentDevicePolicy=${cfg.presentDevicePolicy}
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PresentControllerPolicy=${cfg.presentControllerPolicy}
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InsertedDevicePolicy=${cfg.insertedDevicePolicy}
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RestoreControllerDeviceState=${boolToString cfg.restoreControllerDeviceState}
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# this does not seem useful for endusers to change
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DeviceManagerBackend=uevent
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IPCAllowedUsers=${concatStringsSep " " cfg.IPCAllowedUsers}
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IPCAllowedGroups=${concatStringsSep " " cfg.IPCAllowedGroups}
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IPCAccessControlFiles=/var/lib/usbguard/IPCAccessControl.d/
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DeviceRulesWithPort=${boolToString cfg.deviceRulesWithPort}
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# HACK: that way audit logs still land in the journal
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AuditFilePath=/dev/null
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'';
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daemonConfFile = pkgs.writeText "usbguard-daemon-conf" daemonConf;
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in
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{
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###### interface
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options = {
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services.usbguard = {
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enable = mkEnableOption "USBGuard daemon";
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package = mkOption {
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type = types.package;
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default = pkgs.usbguard;
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defaultText = literalExpression "pkgs.usbguard";
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description = lib.mdDoc ''
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The usbguard package to use. If you do not need the Qt GUI, use
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`pkgs.usbguard-nox` to save disk space.
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'';
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};
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rules = mkOption {
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type = types.nullOr types.lines;
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default = null;
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example = ''
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allow with-interface equals { 08:*:* }
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'';
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description = lib.mdDoc ''
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The USBGuard daemon will load this as the policy rule set.
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As these rules are NixOS managed they are immutable and can't
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be changed by the IPC interface.
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If you do not set this option, the USBGuard daemon will load
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it's policy rule set from `${defaultRuleFile}`.
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This file can be changed manually or via the IPC interface.
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Running `usbguard generate-policy` as root will
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generate a config for your currently plugged in devices.
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For more details see {manpage}`usbguard-rules.conf(5)`.
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'';
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};
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implictPolicyTarget = mkOption {
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type = policy;
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default = "block";
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description = lib.mdDoc ''
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How to treat USB devices that don't match any rule in the policy.
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Target should be one of allow, block or reject (logically remove the
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device node from the system).
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'';
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};
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presentDevicePolicy = mkOption {
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type = policy;
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default = "apply-policy";
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description = lib.mdDoc ''
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How to treat USB devices that are already connected when the daemon
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starts. Policy should be one of allow, block, reject, keep (keep
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whatever state the device is currently in) or apply-policy (evaluate
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the rule set for every present device).
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'';
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};
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presentControllerPolicy = mkOption {
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type = policy;
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default = "keep";
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description = lib.mdDoc ''
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How to treat USB controller devices that are already connected when
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the daemon starts. One of allow, block, reject, keep or apply-policy.
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'';
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};
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insertedDevicePolicy = mkOption {
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type = policy;
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default = "apply-policy";
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description = lib.mdDoc ''
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How to treat USB devices that are already connected after the daemon
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starts. One of block, reject, apply-policy.
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'';
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};
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restoreControllerDeviceState = mkOption {
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type = types.bool;
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default = false;
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description = lib.mdDoc ''
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The USBGuard daemon modifies some attributes of controller
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devices like the default authorization state of new child device
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instances. Using this setting, you can controll whether the daemon
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will try to restore the attribute values to the state before
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modificaton on shutdown.
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'';
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};
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IPCAllowedUsers = mkOption {
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type = types.listOf types.str;
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default = [ "root" ];
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example = [ "root" "yourusername" ];
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description = lib.mdDoc ''
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A list of usernames that the daemon will accept IPC connections from.
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'';
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};
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IPCAllowedGroups = mkOption {
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type = types.listOf types.str;
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default = [ ];
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example = [ "wheel" ];
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description = lib.mdDoc ''
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A list of groupnames that the daemon will accept IPC connections
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from.
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'';
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};
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deviceRulesWithPort = mkOption {
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type = types.bool;
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default = false;
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description = lib.mdDoc ''
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Generate device specific rules including the "via-port" attribute.
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'';
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};
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};
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};
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###### implementation
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config = mkIf cfg.enable {
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environment.systemPackages = [ cfg.package ];
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systemd.services.usbguard = {
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description = "USBGuard daemon";
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wantedBy = [ "basic.target" ];
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wants = [ "systemd-udevd.service" ];
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# make sure an empty rule file exists
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preStart = ''[ -f "${ruleFile}" ] || touch ${ruleFile}'';
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serviceConfig = {
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Type = "simple";
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ExecStart = "${cfg.package}/bin/usbguard-daemon -P -k -c ${daemonConfFile}";
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Restart = "on-failure";
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StateDirectory = [
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"usbguard"
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"usbguard/IPCAccessControl.d"
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];
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AmbientCapabilities = "";
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CapabilityBoundingSet = "CAP_CHOWN CAP_FOWNER";
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DeviceAllow = "/dev/null rw";
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DevicePolicy = "strict";
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IPAddressDeny = "any";
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LockPersonality = true;
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MemoryDenyWriteExecute = true;
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NoNewPrivileges = true;
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PrivateDevices = true;
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PrivateTmp = true;
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ProtectControlGroups = true;
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ProtectHome = true;
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ProtectKernelModules = true;
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ProtectSystem = true;
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ReadOnlyPaths = "-/";
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ReadWritePaths = "-/dev/shm -/tmp";
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RestrictAddressFamilies = [ "AF_UNIX" "AF_NETLINK" ];
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RestrictNamespaces = true;
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RestrictRealtime = true;
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SystemCallArchitectures = "native";
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SystemCallFilter = "@system-service";
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UMask = "0077";
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};
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};
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};
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imports = [
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(mkRemovedOptionModule [ "services" "usbguard" "ruleFile" ] "The usbguard module now uses ${defaultRuleFile} as ruleFile. Alternatively, use services.usbguard.rules to configure rules.")
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(mkRemovedOptionModule [ "services" "usbguard" "IPCAccessControlFiles" ] "The usbguard module now hardcodes IPCAccessControlFiles to /var/lib/usbguard/IPCAccessControl.d.")
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(mkRemovedOptionModule [ "services" "usbguard" "auditFilePath" ] "Removed usbguard module audit log files. Audit logs can be found in the systemd journal.")
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];
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}
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