mirror of
https://github.com/NixOS/nixpkgs.git
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2e751c0772
the conversion procedure is simple: - find all things that look like options, ie calls to either `mkOption` or `lib.mkOption` that take an attrset. remember the attrset as the option - for all options, find a `description` attribute who's value is not a call to `mdDoc` or `lib.mdDoc` - textually convert the entire value of the attribute to MD with a few simple regexes (the set from mdize-module.sh) - if the change produced a change in the manual output, discard - if the change kept the manual unchanged, add some text to the description to make sure we've actually found an option. if the manual changes this time, keep the converted description this procedure converts 80% of nixos options to markdown. around 2000 options remain to be inspected, but most of those fail the "does not change the manual output check": currently the MD conversion process does not faithfully convert docbook tags like <code> and <package>, so any option using such tags will not be converted at all.
240 lines
7.6 KiB
Nix
240 lines
7.6 KiB
Nix
{ config, lib, pkgs, ... }:
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with lib;
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let
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cfg = config.security.duosec;
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boolToStr = b: if b then "yes" else "no";
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configFilePam = ''
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[duo]
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ikey=${cfg.integrationKey}
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host=${cfg.host}
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${optionalString (cfg.groups != "") ("groups="+cfg.groups)}
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failmode=${cfg.failmode}
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pushinfo=${boolToStr cfg.pushinfo}
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autopush=${boolToStr cfg.autopush}
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prompts=${toString cfg.prompts}
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fallback_local_ip=${boolToStr cfg.fallbackLocalIP}
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'';
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configFileLogin = configFilePam + ''
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motd=${boolToStr cfg.motd}
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accept_env_factor=${boolToStr cfg.acceptEnvFactor}
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'';
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in
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{
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imports = [
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(mkRenamedOptionModule [ "security" "duosec" "group" ] [ "security" "duosec" "groups" ])
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(mkRenamedOptionModule [ "security" "duosec" "ikey" ] [ "security" "duosec" "integrationKey" ])
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(mkRemovedOptionModule [ "security" "duosec" "skey" ] "The insecure security.duosec.skey option has been replaced by a new security.duosec.secretKeyFile option. Use this new option to store a secure copy of your key instead.")
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];
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options = {
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security.duosec = {
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ssh.enable = mkOption {
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type = types.bool;
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default = false;
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description = lib.mdDoc "If enabled, protect SSH logins with Duo Security.";
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};
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pam.enable = mkOption {
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type = types.bool;
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default = false;
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description = lib.mdDoc "If enabled, protect logins with Duo Security using PAM support.";
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};
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integrationKey = mkOption {
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type = types.str;
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description = lib.mdDoc "Integration key.";
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};
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secretKeyFile = mkOption {
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type = types.nullOr types.path;
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default = null;
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description = lib.mdDoc ''
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A file containing your secret key. The security of your Duo application is tied to the security of your secret key.
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'';
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example = "/run/keys/duo-skey";
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};
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host = mkOption {
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type = types.str;
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description = lib.mdDoc "Duo API hostname.";
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};
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groups = mkOption {
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type = types.str;
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default = "";
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example = "users,!wheel,!*admin guests";
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description = lib.mdDoc ''
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If specified, Duo authentication is required only for users
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whose primary group or supplementary group list matches one
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of the space-separated pattern lists. Refer to
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<https://duo.com/docs/duounix> for details.
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'';
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};
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failmode = mkOption {
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type = types.enum [ "safe" "secure" ];
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default = "safe";
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description = lib.mdDoc ''
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On service or configuration errors that prevent Duo
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authentication, fail "safe" (allow access) or "secure" (deny
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access). The default is "safe".
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'';
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};
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pushinfo = 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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Include information such as the command to be executed in
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the Duo Push message.
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'';
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};
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autopush = 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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If `true`, Duo Unix will automatically send
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a push login request to the user’s phone, falling back on a
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phone call if push is unavailable. If
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`false`, the user will be prompted to
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choose an authentication method. When configured with
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`autopush = yes`, we recommend setting
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`prompts = 1`.
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'';
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};
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motd = 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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Print the contents of `/etc/motd` to screen
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after a successful login.
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'';
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};
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prompts = mkOption {
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type = types.enum [ 1 2 3 ];
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default = 3;
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description = lib.mdDoc ''
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If a user fails to authenticate with a second factor, Duo
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Unix will prompt the user to authenticate again. This option
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sets the maximum number of prompts that Duo Unix will
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display before denying access. Must be 1, 2, or 3. Default
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is 3.
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For example, when `prompts = 1`, the user
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will have to successfully authenticate on the first prompt,
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whereas if `prompts = 2`, if the user
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enters incorrect information at the initial prompt, he/she
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will be prompted to authenticate again.
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When configured with `autopush = true`, we
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recommend setting `prompts = 1`.
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'';
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};
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acceptEnvFactor = 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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Look for factor selection or passcode in the
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`$DUO_PASSCODE` environment variable before
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prompting the user for input.
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When $DUO_PASSCODE is non-empty, it will override
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autopush. The SSH client will need SendEnv DUO_PASSCODE in
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its configuration, and the SSH server will similarly need
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AcceptEnv DUO_PASSCODE.
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'';
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};
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fallbackLocalIP = 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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Duo Unix reports the IP address of the authorizing user, for
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the purposes of authorization and whitelisting. If Duo Unix
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cannot detect the IP address of the client, setting
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`fallbackLocalIP = yes` will cause Duo Unix
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to send the IP address of the server it is running on.
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If you are using IP whitelisting, enabling this option could
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cause unauthorized logins if the local IP is listed in the
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whitelist.
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'';
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};
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allowTcpForwarding = 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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By default, when SSH forwarding, enabling Duo Security will
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disable TCP forwarding. By enabling this, you potentially
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undermine some of the SSH based login security. Note this is
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not needed if you use PAM.
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'';
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};
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};
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};
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config = mkIf (cfg.ssh.enable || cfg.pam.enable) {
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environment.systemPackages = [ pkgs.duo-unix ];
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security.wrappers.login_duo =
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{ setuid = true;
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owner = "root";
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group = "root";
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source = "${pkgs.duo-unix.out}/bin/login_duo";
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};
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system.activationScripts = {
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login_duo = mkIf cfg.ssh.enable ''
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if test -f "${cfg.secretKeyFile}"; then
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mkdir -m 0755 -p /etc/duo
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umask 0077
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conf="$(mktemp)"
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{
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cat ${pkgs.writeText "login_duo.conf" configFileLogin}
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printf 'skey = %s\n' "$(cat ${cfg.secretKeyFile})"
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} >"$conf"
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chown sshd "$conf"
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mv -fT "$conf" /etc/duo/login_duo.conf
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fi
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'';
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pam_duo = mkIf cfg.pam.enable ''
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if test -f "${cfg.secretKeyFile}"; then
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mkdir -m 0755 -p /etc/duo
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umask 0077
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conf="$(mktemp)"
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{
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cat ${pkgs.writeText "login_duo.conf" configFilePam}
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printf 'skey = %s\n' "$(cat ${cfg.secretKeyFile})"
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} >"$conf"
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mv -fT "$conf" /etc/duo/pam_duo.conf
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fi
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'';
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};
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/* If PAM *and* SSH are enabled, then don't do anything special.
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If PAM isn't used, set the default SSH-only options. */
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services.openssh.extraConfig = mkIf (cfg.ssh.enable || cfg.pam.enable) (
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if cfg.pam.enable then "UseDNS no" else ''
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# Duo Security configuration
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ForceCommand ${config.security.wrapperDir}/login_duo
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PermitTunnel no
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${optionalString (!cfg.allowTcpForwarding) ''
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AllowTcpForwarding no
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''}
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'');
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};
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}
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