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https://github.com/vhaudiquet/homeprod.git
synced 2026-07-22 05:27:09 +00:00
infra/p330: add p330 talos node
This commit is contained in:
@@ -9,3 +9,6 @@ terraform.tfstate.backup
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kubeconfig
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talosconfig
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# Ignore rendered Talos machine configs (may contain cluster secrets)
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p330.yaml
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@@ -0,0 +1,195 @@
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# Talos node for the P330 — joins the r740 "kube" cluster.
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terraform {
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required_providers {
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talos = {
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source = "siderolabs/talos"
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version = "0.9.0"
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}
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null = {
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source = "hashicorp/null"
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version = "3.2.3"
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}
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}
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}
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# Read the r740 kube module state to reuse the cluster secrets & endpoint.
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# The r740 module exposes: client_configuration, machine_secrets, cluster_name,
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# cluster_endpoint, kube_host.
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data "terraform_remote_state" "r740_kube" {
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backend = var.r740_backend
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config = var.r740_backend == "local" ? {
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path = "${var.r740_state_path}/terraform.tfstate"
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} : var.r740_backend_config
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}
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locals {
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cluster_name = data.terraform_remote_state.r740_kube.outputs.cluster_name
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cluster_endpoint = data.terraform_remote_state.r740_kube.outputs.cluster_endpoint
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machine_secrets = data.terraform_remote_state.r740_kube.outputs.machine_secrets
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client_config = data.terraform_remote_state.r740_kube.outputs.client_configuration
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# kubeconfig produced by the r740 kube module — used to wait for the node and
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# apply labels/taints. There is no in-tree kubernetes provider here on
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# purpose: managing a `kubernetes_node` resource conflicts with the node
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# object that kubelet itself creates, so we use a null_resource with kubectl
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# to wait + label + taint idempotently.
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kubeconfig_path = "${var.r740_state_path}/kubeconfig"
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# Network config: static if node_subnet is provided, otherwise Talos DHCPs.
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static_network = var.node_subnet == null ? {} : {
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interfaces = [{
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interface = var.network_interface
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addresses = [var.node_subnet]
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routes = var.node_gateway == null ? [] : [{ gateway = var.node_gateway }]
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}]
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}
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network_patch = {
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nameservers = var.nameservers
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}
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network_patch_merged = merge(local.network_patch, local.static_network)
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machine_patch = {
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install = {
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image = var.installer_image
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disk = var.install_disk
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}
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network = merge(local.network_patch_merged, {
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# Pin the Kubernetes node name. Talos otherwise auto-generates a hostname
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# (e.g. "talos-8ec-vd1"), so the node registers with that random name
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# instead of var.p330_node_name — and our label/taint null_resource waits
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# for the wrong node. Setting machine.network.hostname fixes the node name.
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hostname = var.p330_node_name
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})
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# Kernel modules required by Longhorn (iSCSI + ext4) — must match the
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# control-plane nodes so Longhorn can schedule replicas on the failover node.
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kernel = {
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modules = [
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{ name = "iscsi_tcp" },
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{ name = "libiscsi" },
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{ name = "scsi_transport_iscsi" },
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{ name = "ext4" },
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]
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}
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sysctls = {
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"fs.inotify.max_user_instances" = "1024"
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"fs.inotify.max_user_watches" = "1048576"
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}
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kubelet = {
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# Keep the failover node from accumulating non-essential DaemonSet pods
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# via the regular scheduler; the taint does the heavy lifting, this is
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# belt-and-braces.
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extraArgs = {
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"register-with-taints" = "${var.failover_taint_key}=${var.failover_taint_value}:${var.failover_taint_effect}"
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}
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}
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}
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}
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# Control-plane machine configuration. machine_type = "controlplane" makes
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# Talos generate a join config that runs the apiserver/controller-manager/
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# scheduler AND joins the existing etcd cluster as a new member (the cluster
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# was already bootstrapped by the r740 module's talos_machine_bootstrap).
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data "talos_machine_configuration" "p330" {
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cluster_name = local.cluster_name
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machine_type = "controlplane"
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cluster_endpoint = local.cluster_endpoint
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machine_secrets = local.machine_secrets
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config_patches = [
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yamlencode({
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machine = local.machine_patch
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})
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]
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}
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# Rendered config is written to disk so it can also be applied manually with
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# `talosctl apply-config --nodes <p330_host> --file p330.yaml` if needed.
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resource "local_file" "p330_machine_config" {
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filename = "${path.module}/p330.yaml"
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content = data.talos_machine_configuration.p330.machine_configuration
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}
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# Apply the machine config to the running (maintenance-mode) node over the
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# Talos API. Because the config patch contains a `machine.install` block, when
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# Talos receives this config on a node booted from the USB (maintenance) image
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# it installs itself to install.disk and reboots into the installed system.
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# For a controlplane node it then joins the existing etcd cluster as a new
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# member and runs the control-plane components; for a worker it just registers
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# via kubelet.
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resource "talos_machine_configuration_apply" "p330" {
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client_configuration = local.client_config
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machine_configuration_input = data.talos_machine_configuration.p330.machine_configuration
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node = var.p330_host
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depends_on = [local_file.p330_machine_config]
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}
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# Emit a talosconfig scoped to this node for ad-hoc `talosctl` use.
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data "talos_client_configuration" "p330" {
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cluster_name = local.cluster_name
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client_configuration = local.client_config
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nodes = [var.p330_host]
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}
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resource "local_file" "talosconfig" {
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content = data.talos_client_configuration.p330.talos_config
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filename = "${path.module}/talosconfig"
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depends_on = [data.talos_client_configuration.p330]
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}
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# Wait for the node to register with Kubernetes (kubelet creates the Node
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# object after Talos installs and reboots), then label it and (re)apply the
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# failover taint. This is idempotent: kubectl exits 0 if the label/taint already
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# exists. The taint is also set via kubelet `register-with-taints`, so this
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# null_resource is a safety net for manual edits / drift.
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resource "null_resource" "p330_node_label_and_taint" {
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triggers = {
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node = var.p330_node_name
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key = var.failover_taint_key
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value = var.failover_taint_value
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effect = var.failover_taint_effect
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kubeconfig = local.kubeconfig_path
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}
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provisioner "local-exec" {
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# Wait for the node to show up, then label + taint. The wait loop is bounded
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# by kubectl --timeout; tune it via TF_LOG / re-run if the node is slow to
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# join (a controlplane node must first complete the etcd join handshake).
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command = <<-EOT
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set -euo pipefail
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KUBECONFIG="${local.kubeconfig_path}"
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export KUBECONFIG
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NODE="${var.p330_node_name}"
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echo "Waiting for node $NODE to be registered (kubelet creates the Node object once Talos has installed, rebooted and joined etcd)..."
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# kubectl wait --for=condition=Ready fails instantly with NotFound if the
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# node object doesn't exist yet, so poll for existence first.
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# /bin/sh (dash) has no $SECONDS, so count iterations with a bounded loop.
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tries=240 # 240 * 5s = 20 minutes max
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until kubectl get node "$NODE" >/dev/null 2>&1; do
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tries=$((tries - 1))
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if [ "$tries" -le 0 ]; then
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echo "Timed out waiting for node $NODE to register." >&2
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exit 1
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fi
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sleep 5
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done
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echo "Node $NODE registered. Waiting for it to become Ready..."
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# Now wait for Ready (a controlplane node needs etcd joined + apiserver up).
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kubectl wait --for=condition=Ready "node/$NODE" --timeout=20m || \
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kubectl wait --for=jsonpath='{.status.conditions[?(@.reason=="KubeletReady")].status}'=True "node/$NODE" --timeout=20m
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# Failover marker + taint (applied to both controlplane and worker nodes).
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kubectl label --overwrite node "$NODE" homeprod.io/failover=true
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# Apply the taint idempotently (kubectl taint --overwrite is a no-op if it exists).
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kubectl taint --overwrite node "$NODE" \
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"${var.failover_taint_key}=${var.failover_taint_value}:${var.failover_taint_effect}"
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echo "Node $NODE ready, labeled and tainted for failover-only scheduling."
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EOT
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}
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depends_on = [talos_machine_configuration_apply.p330]
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}
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@@ -0,0 +1,118 @@
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# Variables for the P330 Talos worker node that joins the r740 cluster.
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variable "p330_host" {
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description = "Reachable IP/hostname of the P330 Talos node (for Talos API access)."
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type = string
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}
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variable "p330_node_name" {
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description = "Kubernetes/Talos node name for the P330 (e.g. p330)."
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type = string
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default = "p330"
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}
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variable "r740_state_path" {
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description = <<EOT
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Path to the Terraform state of the r740 kube module, used by terraform_remote_state
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to read the cluster secrets and endpoint so this node can join the existing cluster.
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Path is resolved by terraform_remote_state relative to the working directory where
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terraform runs (this module dir). The default points two levels up to the repo
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root and back down to the r740 kube module.
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EOT
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type = string
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default = "../../r740/kube"
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}
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variable "r740_backend" {
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description = <<EOT
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Terraform backend type used by the r740 kube module.
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Set to "local" (default) when r740 uses a local tfstate file in its own directory,
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or the matching remote backend name ("s3", "remote", ...) if the r740 module uses
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a configured backend.
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EOT
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type = string
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default = "local"
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}
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variable "r740_backend_config" {
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description = <<EOT
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Backend configuration map passed to terraform_remote_state when r740_backend is
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not "local". For a local backend this is ignored.
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EOT
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type = map(string)
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default = {}
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}
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variable "installer_image" {
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description = <<EOT
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Talos installer image to use on the P330 (bare metal).
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Must be a **metal** Image Factory build that includes ixgbe.allow_unsupported_sfp=1
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in the kernel command line (sd-boot/UKI ignores machine.install.extraKernelArgs, so
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the param must be baked into the image). The default is a custom factory build
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(a18165114...).
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EOT
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type = string
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default = "factory.talos.dev/installer/a18165114f80c28601d05bc4ff1f6ea6d6b214882c5b9af7928aaf4d09741beb:v1.13.6"
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}
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variable "install_disk" {
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description = "Block device path to install Talos on (e.g. /dev/sda, /dev/nvme0n1)."
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type = string
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default = "/dev/nvme0n1"
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}
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variable "node_subnet" {
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description = <<EOT
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Static IPv4 address in CIDR notation for the P330 node (e.g. 10.1.2.132/24).
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Set to null to use DHCP. A static address is recommended for a failover node so
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DNS/affinity rules stay stable.
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EOT
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type = string
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default = "10.1.2.132/24"
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}
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variable "node_gateway" {
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description = "IPv4 gateway for the P330 node. Ignored when node_subnet is null."
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type = string
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default = "10.1.2.1"
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}
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variable "network_interface" {
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description = <<EOT
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Primary network interface name on the P330. Defaults to enp3s0f1 (the 10G Intel
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X520 NIC), which must be on the same L2/subnet as the r740 control plane so etcd
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peer traffic (TLS-verified against the r740's etcd cert SANs) doesn't cross a
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router. eno1 (1G) is left unconfigured.
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EOT
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type = string
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default = "enp3s0f1"
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}
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variable "nameservers" {
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description = "DNS nameservers configured on the node (must work independently of kube)."
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type = list(string)
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default = ["10.1.2.148", "1.1.1.1"]
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}
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variable "failover_taint_key" {
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description = "Taint key applied to the node to reserve it for failover workloads."
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type = string
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default = "dedicated"
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}
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variable "failover_taint_value" {
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description = "Taint value applied to the node."
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type = string
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default = "failover"
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}
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variable "failover_taint_effect" {
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description = "Taint effect applied to the node (NoSchedule / NoExecute)."
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type = string
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default = "NoSchedule"
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validation {
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condition = contains(["NoSchedule", "PreferNoSchedule", "NoExecute"], var.failover_taint_effect)
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error_message = "failover_taint_effect must be NoSchedule, PreferNoSchedule or NoExecute."
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}
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}
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+52
-1
@@ -40,7 +40,9 @@ data "talos_machine_configuration" "kube" {
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yamlencode({
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machine = {
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install = {
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image = "factory.talos.dev/installer/ce4c980550dd2ab1b17bbf2b08801c7eb59418eafe8f279833297925d67c7515:v1.11.5"
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# Image Factory image with iSCSI extension for Longhorn.
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# Generated at https://factory.talos.dev — siderolabs/iscsi-tools + qemu-guest-agent
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image = "factory.talos.dev/installer/dc7b152cb3ea99b821fcb7340ce7168313ce393d663740b791c36f6e95fc8586:v1.13.6"
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}
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network = {
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nameservers = [
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@@ -53,6 +55,28 @@ data "talos_machine_configuration" "kube" {
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certSANs = [
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"${var.kube_host}", "${var.kube_hostname}"
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]
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# Kernel modules required by Longhorn (iSCSI + ext4)
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kernel = {
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modules = [
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{
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name = "iscsi_tcp"
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},
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{
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name = "libiscsi"
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},
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{
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name = "scsi_transport_iscsi"
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},
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{
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name = "ext4"
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},
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]
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}
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# Sysctls for Longhorn
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sysctls = {
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"fs.inotify.max_user_instances" = "1024"
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"fs.inotify.max_user_watches" = "1048576"
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}
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}
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cluster = {
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clusterName = "kube-${var.physical_hostname}"
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@@ -106,6 +130,33 @@ output "kubeconfig" {
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value = talos_cluster_kubeconfig.kube.kubeconfig_raw
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}
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output "client_configuration" {
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description = "Talos client configuration (sensitive) used to manage nodes."
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sensitive = true
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value = talos_machine_secrets.kube.client_configuration
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}
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output "machine_secrets" {
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description = "Talos machine secrets (sensitive) used to generate node configs."
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sensitive = true
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value = talos_machine_secrets.kube.machine_secrets
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}
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output "cluster_name" {
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description = "Name of the Talos cluster the worker joins."
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value = "kube-${var.physical_hostname}"
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}
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output "cluster_endpoint" {
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description = "Endpoint (host:port) of the Talos/Kubernetes API on the cluster."
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value = "https://${var.kube_host}:6443"
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}
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output "kube_host" {
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description = "Reachable IP/hostname of the control-plane node."
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value = var.kube_host
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}
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resource "local_file" "kubeconfig" {
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content = "${talos_cluster_kubeconfig.kube.kubeconfig_raw}"
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filename = "${path.module}/kubeconfig"
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@@ -30,6 +30,9 @@ data:
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docker-r740 IN A 10.1.2.212
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truenas IN A 10.1.2.139
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; P330
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p330 IN A 10.1.2.132
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; PVE
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pve IN A 10.1.2.10
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docker-homeprod IN A 10.1.2.12
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