k3s: streamline HA setup
- Replace misleading docs. - Add new assertions to let configurations make more sense. - Add clusterInit flag. - Add some more docs about HA and non-HA modes setup. - Improve multi-node tests for HA mode. Fix https://github.com/NixOS/nixpkgs/issues/182085
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@ -401,6 +401,12 @@
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due to upstream dropping support.
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</para>
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</listitem>
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<listitem>
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<para>
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<literal>k3s</literal> supports <literal>clusterInit</literal>
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option, and it is enabled by default, for servers.
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</para>
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</listitem>
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</itemizedlist>
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</section>
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<section xml:id="sec-release-22.11-notable-changes">
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@ -141,6 +141,8 @@ Use `configure.packages` instead.
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- `k3s` no longer supports docker as runtime due to upstream dropping support.
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- `k3s` supports `clusterInit` option, and it is enabled by default, for servers.
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<!-- To avoid merge conflicts, consider adding your item at an arbitrary place in the list instead. -->
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## Other Notable Changes {#sec-release-22.11-notable-changes}
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@ -25,7 +25,17 @@ in
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role = mkOption {
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description = lib.mdDoc ''
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Whether k3s should run as a server or agent.
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Note that the server, by default, also runs as an agent.
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If it's a server:
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- By default it also runs workloads as an agent.
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- Starts by default as a standalone server using an embedded sqlite datastore.
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- Configure `clusterInit = true` to switch over to embedded etcd datastore and enable HA mode.
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- Configure `serverAddr` to join an already-initialized HA cluster.
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If it's an agent:
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- `serverAddr` is required.
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'';
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default = "server";
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type = types.enum [ "server" "agent" ];
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@ -33,15 +43,44 @@ in
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serverAddr = mkOption {
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type = types.str;
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description = lib.mdDoc "The k3s server to connect to. This option only makes sense for an agent.";
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description = lib.mdDoc ''
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The k3s server to connect to.
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Servers and agents need to communicate each other. Read
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[the networking docs](https://rancher.com/docs/k3s/latest/en/installation/installation-requirements/#networking)
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to know how to configure the firewall.
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'';
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example = "https://10.0.0.10:6443";
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default = "";
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};
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clusterInit = 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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Initialize HA cluster using an embedded etcd datastore.
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If this option is `false` and `role` is `server`
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On a server that was using the default embedded sqlite backend,
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enabling this option will migrate to an embedded etcd DB.
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If an HA cluster using the embedded etcd datastore was already initialized,
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this option has no effect.
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This option only makes sense in a server that is not connecting to another server.
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If you are configuring an HA cluster with an embedded etcd,
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the 1st server must have `clusterInit = true`
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and other servers must connect to it using `serverAddr`.
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'';
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};
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token = mkOption {
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type = types.str;
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description = lib.mdDoc ''
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The k3s token to use when connecting to the server. This option only makes sense for an agent.
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The k3s token to use when connecting to a server.
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WARNING: This option will expose store your token unencrypted world-readable in the nix store.
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If this is undesired use the tokenFile option instead.
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'';
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@ -50,7 +89,7 @@ in
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tokenFile = mkOption {
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type = types.nullOr types.path;
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description = lib.mdDoc "File path containing k3s token to use when connecting to the server. This option only makes sense for an agent.";
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description = lib.mdDoc "File path containing k3s token to use when connecting to the server.";
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default = null;
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};
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@ -86,6 +125,14 @@ in
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assertion = cfg.role == "agent" -> cfg.configPath != null || cfg.tokenFile != null || cfg.token != "";
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message = "token or tokenFile or configPath (with 'token' or 'token-file' keys) should be set if role is 'agent'";
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}
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{
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assertion = cfg.role == "agent" -> !cfg.disableAgent;
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message = "disableAgent must be false if role is 'agent'";
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}
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{
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assertion = cfg.role == "agent" -> !cfg.clusterInit;
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message = "clusterInit must be false if role is 'agent'";
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}
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];
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environment.systemPackages = [ config.services.k3s.package ];
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@ -111,6 +158,7 @@ in
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[
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"${cfg.package}/bin/k3s ${cfg.role}"
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]
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++ (optional cfg.clusterInit "--cluster-init")
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++ (optional cfg.disableAgent "--disable-agent")
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++ (optional (cfg.serverAddr != "") "--server ${cfg.serverAddr}")
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++ (optional (cfg.token != "") "--token ${cfg.token}")
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@ -53,9 +53,10 @@ import ../make-test-python.nix ({ pkgs, ... }:
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enable = true;
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role = "server";
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package = pkgs.k3s;
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clusterInit = true;
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extraFlags = "--no-deploy coredns,servicelb,traefik,local-storage,metrics-server --pause-image test.local/pause:local --node-ip 192.168.1.1";
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};
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networking.firewall.allowedTCPPorts = [ 6443 ];
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networking.firewall.allowedTCPPorts = [ 2379 2380 6443 ];
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networking.firewall.allowedUDPPorts = [ 8472 ];
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networking.firewall.trustedInterfaces = [ "flannel.1" ];
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networking.useDHCP = false;
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@ -65,6 +66,28 @@ import ../make-test-python.nix ({ pkgs, ... }:
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];
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};
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server2 = { pkgs, ... }: {
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environment.systemPackages = with pkgs; [ gzip jq ];
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virtualisation.memorySize = 1536;
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virtualisation.diskSize = 4096;
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services.k3s = {
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inherit tokenFile;
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enable = true;
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serverAddr = "https://192.168.1.1:6443";
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clusterInit = false;
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extraFlags = "--no-deploy coredns,servicelb,traefik,local-storage,metrics-server --pause-image test.local/pause:local --node-ip 192.168.1.3";
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};
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networking.firewall.allowedTCPPorts = [ 2379 2380 6443 ];
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networking.firewall.allowedUDPPorts = [ 8472 ];
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networking.firewall.trustedInterfaces = [ "flannel.1" ];
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networking.useDHCP = false;
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networking.defaultGateway = "192.168.1.3";
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networking.interfaces.eth1.ipv4.addresses = pkgs.lib.mkForce [
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{ address = "192.168.1.3"; prefixLength = 24; }
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];
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};
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agent = { pkgs, ... }: {
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virtualisation.memorySize = 1024;
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virtualisation.diskSize = 2048;
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@ -72,7 +95,7 @@ import ../make-test-python.nix ({ pkgs, ... }:
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inherit tokenFile;
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enable = true;
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role = "agent";
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serverAddr = "https://192.168.1.1:6443";
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serverAddr = "https://192.168.1.3:6443";
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extraFlags = "--pause-image test.local/pause:local --node-ip 192.168.1.2";
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};
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networking.firewall.allowedTCPPorts = [ 6443 ];
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@ -91,9 +114,9 @@ import ../make-test-python.nix ({ pkgs, ... }:
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};
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testScript = ''
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start_all()
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machines = [server, agent]
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machines = [server, server2, agent]
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for m in machines:
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m.start()
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m.wait_for_unit("k3s")
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# wait for the agent to show up
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