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c1b293ca0c
Depending on the startup order of the two machines it might take a few moments to get both zones transfered, which can lead to SERVFAIL responses on busy machines.
223 lines
6.6 KiB
Nix
223 lines
6.6 KiB
Nix
import ./make-test-python.nix ({ pkgs, lib, ...} :
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let
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common = {
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networking.firewall.enable = false;
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networking.useDHCP = false;
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};
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exampleZone = pkgs.writeTextDir "example.com.zone" ''
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@ SOA ns.example.com. noc.example.com. 2019031301 86400 7200 3600000 172800
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@ NS ns1
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@ NS ns2
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ns1 A 192.168.0.1
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ns1 AAAA fd00::1
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ns2 A 192.168.0.2
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ns2 AAAA fd00::2
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www A 192.0.2.1
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www AAAA 2001:DB8::1
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sub NS ns.example.com.
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'';
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delegatedZone = pkgs.writeTextDir "sub.example.com.zone" ''
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@ SOA ns.example.com. noc.example.com. 2019031301 86400 7200 3600000 172800
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@ NS ns1.example.com.
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@ NS ns2.example.com.
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@ A 192.0.2.2
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@ AAAA 2001:DB8::2
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'';
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knotZonesEnv = pkgs.buildEnv {
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name = "knot-zones";
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paths = [ exampleZone delegatedZone ];
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};
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# DO NOT USE pkgs.writeText IN PRODUCTION. This put secrets in the nix store!
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tsigFile = pkgs.writeText "tsig.conf" ''
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key:
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- id: xfr_key
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algorithm: hmac-sha256
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secret: zOYgOgnzx3TGe5J5I/0kxd7gTcxXhLYMEq3Ek3fY37s=
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'';
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in {
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name = "knot";
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meta = with pkgs.lib.maintainers; {
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maintainers = [ hexa ];
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};
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nodes = {
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primary = { lib, ... }: {
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imports = [ common ];
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# trigger sched_setaffinity syscall
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virtualisation.cores = 2;
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networking.interfaces.eth1 = {
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ipv4.addresses = lib.mkForce [
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{ address = "192.168.0.1"; prefixLength = 24; }
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];
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ipv6.addresses = lib.mkForce [
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{ address = "fd00::1"; prefixLength = 64; }
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];
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};
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services.knot.enable = true;
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services.knot.extraArgs = [ "-v" ];
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services.knot.keyFiles = [ tsigFile ];
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services.knot.settings = {
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server = {
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listen = [
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"0.0.0.0@53"
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"::@53"
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];
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listen-quic = [
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"0.0.0.0@853"
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"::@853"
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];
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automatic-acl = true;
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};
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acl.secondary_acl = {
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address = "192.168.0.2";
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key = "xfr_key";
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action = "transfer";
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};
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remote.secondary.address = "192.168.0.2@53";
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template.default = {
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storage = knotZonesEnv;
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notify = [ "secondary" ];
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acl = [ "secondary_acl" ];
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dnssec-signing = true;
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# Input-only zone files
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# https://www.knot-dns.cz/docs/2.8/html/operation.html#example-3
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# prevents modification of the zonefiles, since the zonefiles are immutable
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zonefile-sync = -1;
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zonefile-load = "difference";
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journal-content = "changes";
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};
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zone = {
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"example.com".file = "example.com.zone";
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"sub.example.com".file = "sub.example.com.zone";
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};
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log.syslog.any = "info";
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};
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};
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secondary = { lib, ... }: {
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imports = [ common ];
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networking.interfaces.eth1 = {
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ipv4.addresses = lib.mkForce [
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{ address = "192.168.0.2"; prefixLength = 24; }
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];
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ipv6.addresses = lib.mkForce [
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{ address = "fd00::2"; prefixLength = 64; }
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];
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};
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services.knot.enable = true;
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services.knot.keyFiles = [ tsigFile ];
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services.knot.extraArgs = [ "-v" ];
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services.knot.settings = {
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server = {
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automatic-acl = true;
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};
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xdp = {
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listen = [
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"eth1"
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];
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tcp = true;
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};
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remote.primary = {
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address = "192.168.0.1@53";
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key = "xfr_key";
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};
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remote.primary-quic = {
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address = "192.168.0.1@853";
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key = "xfr_key";
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quic = true;
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};
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template.default = {
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# zonefileless setup
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# https://www.knot-dns.cz/docs/2.8/html/operation.html#example-2
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zonefile-sync = "-1";
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zonefile-load = "none";
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journal-content = "all";
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};
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zone = {
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"example.com" = {
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master = "primary";
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file = "example.com.zone";
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};
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"sub.example.com" = {
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master = "primary-quic";
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file = "sub.example.com.zone";
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};
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};
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log.syslog.any = "debug";
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};
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};
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client = { lib, nodes, ... }: {
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imports = [ common ];
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networking.interfaces.eth1 = {
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ipv4.addresses = [
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{ address = "192.168.0.3"; prefixLength = 24; }
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];
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ipv6.addresses = [
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{ address = "fd00::3"; prefixLength = 64; }
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];
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};
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environment.systemPackages = [ pkgs.knot-dns ];
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};
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};
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testScript = { nodes, ... }: let
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primary4 = (lib.head nodes.primary.config.networking.interfaces.eth1.ipv4.addresses).address;
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primary6 = (lib.head nodes.primary.config.networking.interfaces.eth1.ipv6.addresses).address;
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secondary4 = (lib.head nodes.secondary.config.networking.interfaces.eth1.ipv4.addresses).address;
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secondary6 = (lib.head nodes.secondary.config.networking.interfaces.eth1.ipv6.addresses).address;
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in ''
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import re
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start_all()
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client.wait_for_unit("network.target")
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primary.wait_for_unit("knot.service")
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secondary.wait_for_unit("knot.service")
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for zone in ("example.com.", "sub.example.com."):
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secondary.wait_until_succeeds(
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f"knotc zone-status {zone} | grep -q 'serial: 2019031302'"
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)
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def test(host, query_type, query, pattern):
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out = client.succeed(f"khost -t {query_type} {query} {host}").strip()
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client.log(f"{host} replied with: {out}")
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assert re.search(pattern, out), f'Did not match "{pattern}"'
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for host in ("${primary4}", "${primary6}", "${secondary4}", "${secondary6}"):
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with subtest(f"Interrogate {host}"):
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test(host, "SOA", "example.com", r"start of authority.*noc\.example\.com\.")
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test(host, "A", "example.com", r"has no [^ ]+ record")
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test(host, "AAAA", "example.com", r"has no [^ ]+ record")
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test(host, "A", "www.example.com", r"address 192.0.2.1$")
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test(host, "AAAA", "www.example.com", r"address 2001:db8::1$")
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test(host, "NS", "sub.example.com", r"nameserver is ns\d\.example\.com.$")
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test(host, "A", "sub.example.com", r"address 192.0.2.2$")
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test(host, "AAAA", "sub.example.com", r"address 2001:db8::2$")
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test(host, "RRSIG", "www.example.com", r"RR set signature is")
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test(host, "DNSKEY", "example.com", r"DNSSEC key is")
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primary.log(primary.succeed("systemd-analyze security knot.service | grep -v '✓'"))
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'';
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})
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