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This option allows users to specify a local UNIX control socket to "remote control" the daemon. System users, that should be permitted to access the daemon, must be in the `unbound` group in order to access the socket. When a socket path is configured we are also creating the required group. Currently this only supports the UNIX socket mode while unbound actually supports more advanced types. Users are still able to configure more complex scenarios via the `extraConfig` attribute. When this option is set to `null` (the default) it doesn't affect the system configuration at all. The unbound defaults for control sockets apply and no additional groups are created.
279 lines
11 KiB
Nix
279 lines
11 KiB
Nix
/*
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Test that our unbound module indeed works as most users would expect.
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There are a few settings that we must consider when modifying the test. The
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ususal use-cases for unbound are
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* running a recursive DNS resolver on the local machine
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* running a recursive DNS resolver on the local machine, forwarding to a local DNS server via UDP/53 & TCP/53
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* running a recursive DNS resolver on the local machine, forwarding to a local DNS server via TCP/853 (DoT)
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* running a recursive DNS resolver on a machine in the network awaiting input from clients over TCP/53 & UDP/53
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* running a recursive DNS resolver on a machine in the network awaiting input from clients over TCP/853 (DoT)
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In the below test setup we are trying to implement all of those use cases.
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Another aspect that we cover is access to the local control UNIX socket. It
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can optionally be enabled and users can optionally be in a group to gain
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access. Users that are not in the group (except for root) should not have
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access to that socket. Also, when there is no socket configured, users
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shouldn't be able to access the control socket at all. Not even root.
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*/
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import ./make-test-python.nix ({ pkgs, lib, ... }:
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let
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# common client configuration that we can just use for the multitude of
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# clients we are constructing
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common = { lib, pkgs, ... }: {
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config = {
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environment.systemPackages = [ pkgs.knot-dns ];
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# disable the root anchor update as we do not have internet access during
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# the test execution
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services.unbound.enableRootTrustAnchor = false;
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};
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};
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cert = pkgs.runCommandNoCC "selfSignedCerts" { buildInputs = [ pkgs.openssl ]; } ''
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openssl req -x509 -newkey rsa:4096 -keyout key.pem -out cert.pem -nodes -subj '/CN=dns.example.local'
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mkdir -p $out
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cp key.pem cert.pem $out
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'';
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in
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{
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name = "unbound";
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meta = with pkgs.stdenv.lib.maintainers; {
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maintainers = [ andir ];
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};
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nodes = {
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# The server that actually serves our zones, this tests unbounds authoriative mode
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authoritative = { lib, pkgs, config, ... }: {
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imports = [ common ];
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networking.interfaces.eth1.ipv4.addresses = lib.mkForce [
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{ address = "192.168.0.1"; prefixLength = 24; }
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];
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networking.interfaces.eth1.ipv6.addresses = lib.mkForce [
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{ address = "fd21::1"; prefixLength = 64; }
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];
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networking.firewall.allowedTCPPorts = [ 53 ];
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networking.firewall.allowedUDPPorts = [ 53 ];
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services.unbound = {
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enable = true;
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interfaces = [ "192.168.0.1" "fd21::1" "::1" "127.0.0.1" ];
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allowedAccess = [ "192.168.0.0/24" "fd21::/64" "::1" "127.0.0.0/8" ];
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extraConfig = ''
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server:
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local-data: "example.local. IN A 1.2.3.4"
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local-data: "example.local. IN AAAA abcd::eeff"
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'';
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};
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};
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# The resolver that knows that fowards (only) to the authoritative server
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# and listens on UDP/53, TCP/53 & TCP/853.
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resolver = { lib, nodes, ... }: {
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imports = [ common ];
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networking.interfaces.eth1.ipv4.addresses = lib.mkForce [
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{ address = "192.168.0.2"; prefixLength = 24; }
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];
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networking.interfaces.eth1.ipv6.addresses = lib.mkForce [
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{ address = "fd21::2"; prefixLength = 64; }
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];
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networking.firewall.allowedTCPPorts = [
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53 # regular DNS
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853 # DNS over TLS
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];
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networking.firewall.allowedUDPPorts = [ 53 ];
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services.unbound = {
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enable = true;
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allowedAccess = [ "192.168.0.0/24" "fd21::/64" "::1" "127.0.0.0/8" ];
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interfaces = [ "::1" "127.0.0.1" "192.168.0.2" "fd21::2" "192.168.0.2@853" "fd21::2@853" "::1@853" "127.0.0.1@853" ];
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forwardAddresses = [
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(lib.head nodes.authoritative.config.networking.interfaces.eth1.ipv6.addresses).address
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(lib.head nodes.authoritative.config.networking.interfaces.eth1.ipv4.addresses).address
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];
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extraConfig = ''
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server:
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tls-service-pem: ${cert}/cert.pem
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tls-service-key: ${cert}/key.pem
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'';
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};
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};
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# machine that runs a local unbound that will be reconfigured during test execution
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local_resolver = { lib, nodes, config, ... }: {
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imports = [ common ];
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networking.interfaces.eth1.ipv4.addresses = lib.mkForce [
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{ address = "192.168.0.3"; prefixLength = 24; }
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];
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networking.interfaces.eth1.ipv6.addresses = lib.mkForce [
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{ address = "fd21::3"; prefixLength = 64; }
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];
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networking.firewall.allowedTCPPorts = [
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53 # regular DNS
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];
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networking.firewall.allowedUDPPorts = [ 53 ];
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services.unbound = {
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enable = true;
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allowedAccess = [ "::1" "127.0.0.0/8" ];
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interfaces = [ "::1" "127.0.0.1" ];
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localControlSocketPath = "/run/unbound/unbound.ctl";
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extraConfig = ''
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include: "/etc/unbound/extra*.conf"
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'';
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};
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users.users = {
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# user that is permitted to access the unix socket
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someuser.extraGroups = [
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config.users.users.unbound.group
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];
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# user that is not permitted to access the unix socket
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unauthorizeduser = {};
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};
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environment.etc = {
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"unbound-extra1.conf".text = ''
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forward-zone:
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name: "example.local."
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forward-addr: ${(lib.head nodes.resolver.config.networking.interfaces.eth1.ipv6.addresses).address}
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forward-addr: ${(lib.head nodes.resolver.config.networking.interfaces.eth1.ipv4.addresses).address}
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'';
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"unbound-extra2.conf".text = ''
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auth-zone:
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name: something.local.
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zonefile: ${pkgs.writeText "zone" ''
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something.local. IN A 3.4.5.6
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''}
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'';
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};
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};
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# plain node that only has network access and doesn't run any part of the
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# resolver software locally
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client = { lib, nodes, ... }: {
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imports = [ common ];
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networking.nameservers = [
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(lib.head nodes.resolver.config.networking.interfaces.eth1.ipv6.addresses).address
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(lib.head nodes.resolver.config.networking.interfaces.eth1.ipv4.addresses).address
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];
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networking.interfaces.eth1.ipv4.addresses = [
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{ address = "192.168.0.10"; prefixLength = 24; }
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];
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networking.interfaces.eth1.ipv6.addresses = [
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{ address = "fd21::10"; prefixLength = 64; }
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];
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};
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};
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testScript = { nodes, ... }: ''
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import typing
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import json
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zone = "example.local."
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records = [("AAAA", "abcd::eeff"), ("A", "1.2.3.4")]
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def query(
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machine,
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host: str,
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query_type: str,
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query: str,
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expected: typing.Optional[str] = None,
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args: typing.Optional[typing.List[str]] = None,
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):
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"""
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Execute a single query and compare the result with expectation
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"""
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text_args = ""
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if args:
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text_args = " ".join(args)
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out = machine.succeed(
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f"kdig {text_args} {query} {query_type} @{host} +short"
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).strip()
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machine.log(f"{host} replied with {out}")
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if expected:
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assert expected == out, f"Expected `{expected}` but got `{out}`"
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def test(machine, remotes, /, doh=False, zone=zone, records=records, args=[]):
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"""
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Run queries for the given remotes on the given machine.
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"""
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for query_type, expected in records:
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for remote in remotes:
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query(machine, remote, query_type, zone, expected, args)
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query(machine, remote, query_type, zone, expected, ["+tcp"] + args)
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if doh:
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query(
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machine,
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remote,
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query_type,
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zone,
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expected,
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["+tcp", "+tls"] + args,
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)
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client.start()
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authoritative.wait_for_unit("unbound.service")
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# verify that we can resolve locally
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with subtest("test the authoritative servers local responses"):
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test(authoritative, ["::1", "127.0.0.1"])
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resolver.wait_for_unit("unbound.service")
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with subtest("root is unable to use unbounc-control when the socket is not configured"):
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resolver.succeed("which unbound-control") # the binary must exist
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resolver.fail("unbound-control list_forwards") # the invocation must fail
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# verify that the resolver is able to resolve on all the local protocols
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with subtest("test that the resolver resolves on all protocols and transports"):
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test(resolver, ["::1", "127.0.0.1"], doh=True)
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resolver.wait_for_unit("multi-user.target")
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with subtest("client should be able to query the resolver"):
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test(client, ["${(lib.head nodes.resolver.config.networking.interfaces.eth1.ipv6.addresses).address}", "${(lib.head nodes.resolver.config.networking.interfaces.eth1.ipv4.addresses).address}"], doh=True)
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# discard the client we do not need anymore
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client.shutdown()
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local_resolver.wait_for_unit("multi-user.target")
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# link a new config file to /etc/unbound/extra.conf
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local_resolver.succeed("ln -s /etc/unbound-extra1.conf /etc/unbound/extra1.conf")
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# reload the server & ensure the forwarding works
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with subtest("test that the local resolver resolves on all protocols and transports"):
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local_resolver.succeed("systemctl reload unbound")
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print(local_resolver.succeed("journalctl -u unbound -n 1000"))
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test(local_resolver, ["::1", "127.0.0.1"], args=["+timeout=60"])
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with subtest("test that we can use the unbound control socket"):
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out = local_resolver.succeed(
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"sudo -u someuser -- unbound-control list_forwards"
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).strip()
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# Thank you black! Can't really break this line into a readable version.
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expected = "example.local. IN forward ${(lib.head nodes.resolver.config.networking.interfaces.eth1.ipv6.addresses).address} ${(lib.head nodes.resolver.config.networking.interfaces.eth1.ipv4.addresses).address}"
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assert out == expected, f"Expected `{expected}` but got `{out}` instead."
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local_resolver.fail("sudo -u unauthorizeduser -- unbound-control list_forwards")
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# link a new config file to /etc/unbound/extra.conf
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local_resolver.succeed("ln -sf /etc/unbound-extra2.conf /etc/unbound/extra2.conf")
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# reload the server & ensure the new local zone works
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with subtest("test that we can query the new local zone"):
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local_resolver.succeed("unbound-control reload")
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r = [("A", "3.4.5.6")]
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test(local_resolver, ["::1", "127.0.0.1"], zone="something.local.", records=r)
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'';
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})
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