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agents.tf
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agents.tf
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module "agents" {
source = "./modules/host"
providers = {
hcloud = hcloud,
}
for_each = local.agent_nodes
name = "${var.use_cluster_name_in_node_name ? "${var.cluster_name}-" : ""}${each.value.nodepool_name}${try(each.value.node_name_suffix, "")}"
microos_snapshot_id = substr(each.value.server_type, 0, 3) == "cax" ? data.hcloud_image.microos_arm_snapshot.id : data.hcloud_image.microos_x86_snapshot.id
base_domain = var.base_domain
ssh_keys = length(var.ssh_hcloud_key_label) > 0 ? concat([local.hcloud_ssh_key_id], data.hcloud_ssh_keys.keys_by_selector[0].ssh_keys.*.id) : [local.hcloud_ssh_key_id]
ssh_port = var.ssh_port
ssh_public_key = var.ssh_public_key
ssh_private_key = var.ssh_private_key
ssh_additional_public_keys = length(var.ssh_hcloud_key_label) > 0 ? concat(var.ssh_additional_public_keys, data.hcloud_ssh_keys.keys_by_selector[0].ssh_keys.*.public_key) : var.ssh_additional_public_keys
firewall_ids = [hcloud_firewall.k3s.id]
placement_group_id = var.placement_group_disable ? null : (each.value.placement_group == null ? hcloud_placement_group.agent[each.value.placement_group_compat_idx].id : hcloud_placement_group.agent_named[each.value.placement_group].id)
location = each.value.location
server_type = each.value.server_type
backups = each.value.backups
ipv4_subnet_id = hcloud_network_subnet.agent[[for i, v in var.agent_nodepools : i if v.name == each.value.nodepool_name][0]].id
dns_servers = var.dns_servers
k3s_registries = var.k3s_registries
k3s_registries_update_script = local.k3s_registries_update_script
cloudinit_write_files_common = local.cloudinit_write_files_common
cloudinit_runcmd_common = local.cloudinit_runcmd_common
swap_size = each.value.swap_size
zram_size = each.value.zram_size
keep_disk_size = var.keep_disk_agents
private_ipv4 = cidrhost(hcloud_network_subnet.agent[[for i, v in var.agent_nodepools : i if v.name == each.value.nodepool_name][0]].ip_range, each.value.index + 101)
labels = merge(local.labels, local.labels_agent_node)
automatically_upgrade_os = var.automatically_upgrade_os
depends_on = [
hcloud_network_subnet.agent,
hcloud_placement_group.agent
]
}
locals {
k3s-agent-config = { for k, v in local.agent_nodes : k => merge(
{
node-name = module.agents[k].name
server = "https://${var.use_control_plane_lb ? hcloud_load_balancer_network.control_plane.*.ip[0] : module.control_planes[keys(module.control_planes)[0]].private_ipv4_address}:6443"
token = local.k3s_token
kubelet-arg = concat(local.kubelet_arg, var.k3s_global_kubelet_args, var.k3s_agent_kubelet_args, v.kubelet_args)
flannel-iface = local.flannel_iface
node-ip = module.agents[k].private_ipv4_address
node-label = v.labels
node-taint = v.taints
},
var.agent_nodes_custom_config,
(v.selinux == true ? { selinux = true } : {})
) }
}
resource "null_resource" "agent_config" {
for_each = local.agent_nodes
triggers = {
agent_id = module.agents[each.key].id
config = sha1(yamlencode(local.k3s-agent-config[each.key]))
}
connection {
user = "root"
private_key = var.ssh_private_key
agent_identity = local.ssh_agent_identity
host = module.agents[each.key].ipv4_address
port = var.ssh_port
}
# Generating k3s agent config file
provisioner "file" {
content = yamlencode(local.k3s-agent-config[each.key])
destination = "/tmp/config.yaml"
}
provisioner "remote-exec" {
inline = [local.k3s_config_update_script]
}
}
resource "null_resource" "agents" {
for_each = local.agent_nodes
triggers = {
agent_id = module.agents[each.key].id
}
connection {
user = "root"
private_key = var.ssh_private_key
agent_identity = local.ssh_agent_identity
host = module.agents[each.key].ipv4_address
port = var.ssh_port
}
# Install k3s agent
provisioner "remote-exec" {
inline = local.install_k3s_agent
}
# Start the k3s agent and wait for it to have started
provisioner "remote-exec" {
inline = concat(var.enable_longhorn || var.enable_iscsid ? ["systemctl enable --now iscsid"] : [], [
"systemctl start k3s-agent 2> /dev/null",
<<-EOT
timeout 120 bash <<EOF
until systemctl status k3s-agent > /dev/null; do
systemctl start k3s-agent 2> /dev/null
echo "Waiting for the k3s agent to start..."
sleep 2
done
EOF
EOT
])
}
depends_on = [
null_resource.first_control_plane,
null_resource.agent_config,
hcloud_network_subnet.agent
]
}
resource "hcloud_volume" "longhorn_volume" {
for_each = { for k, v in local.agent_nodes : k => v if((v.longhorn_volume_size >= 10) && (v.longhorn_volume_size <= 10000) && var.enable_longhorn) }
labels = {
provisioner = "terraform"
cluster = var.cluster_name
scope = "longhorn"
}
name = "${var.cluster_name}-longhorn-${module.agents[each.key].name}"
size = local.agent_nodes[each.key].longhorn_volume_size
server_id = module.agents[each.key].id
automount = true
format = var.longhorn_fstype
delete_protection = var.enable_delete_protection.volume
}
resource "null_resource" "configure_longhorn_volume" {
for_each = { for k, v in local.agent_nodes : k => v if((v.longhorn_volume_size >= 10) && (v.longhorn_volume_size <= 10000) && var.enable_longhorn) }
triggers = {
agent_id = module.agents[each.key].id
}
# Start the k3s agent and wait for it to have started
provisioner "remote-exec" {
inline = [
"mkdir /var/longhorn >/dev/null 2>&1",
"mount -o discard,defaults ${hcloud_volume.longhorn_volume[each.key].linux_device} /var/longhorn",
"${var.longhorn_fstype == "ext4" ? "resize2fs" : "xfs_growfs"} ${hcloud_volume.longhorn_volume[each.key].linux_device}",
"echo '${hcloud_volume.longhorn_volume[each.key].linux_device} /var/longhorn ${var.longhorn_fstype} discard,nofail,defaults 0 0' >> /etc/fstab"
]
}
connection {
user = "root"
private_key = var.ssh_private_key
agent_identity = local.ssh_agent_identity
host = module.agents[each.key].ipv4_address
port = var.ssh_port
}
depends_on = [
hcloud_volume.longhorn_volume
]
}
resource "hcloud_floating_ip" "agents" {
for_each = { for k, v in local.agent_nodes : k => v if coalesce(lookup(v, "floating_ip"), false) }
type = "ipv4"
labels = local.labels
home_location = each.value.location
delete_protection = var.enable_delete_protection.floating_ip
}
resource "hcloud_floating_ip_assignment" "agents" {
for_each = { for k, v in local.agent_nodes : k => v if coalesce(lookup(v, "floating_ip"), false) }
floating_ip_id = hcloud_floating_ip.agents[each.key].id
server_id = module.agents[each.key].id
depends_on = [
null_resource.agents
]
}
resource "null_resource" "configure_floating_ip" {
for_each = { for k, v in local.agent_nodes : k => v if coalesce(lookup(v, "floating_ip"), false) }
triggers = {
agent_id = module.agents[each.key].id
floating_ip_id = hcloud_floating_ip.agents[each.key].id
}
provisioner "remote-exec" {
inline = [
# Reconfigure eth0:
# - add floating_ip as first and other IP as second address
# - add 172.31.1.1 as default gateway (In the Hetzner Cloud, the
# special private IP address 172.31.1.1 is the default
# gateway for the public network)
# The configuration is stored in file /etc/NetworkManager/system-connections/cloud-init-eth0.nmconnection
<<-EOT
NM_CONNECTION=$(nmcli -g GENERAL.CONNECTION device show eth0)
nmcli connection modify "$NM_CONNECTION" \
ipv4.method manual \
ipv4.addresses ${hcloud_floating_ip.agents[each.key].ip_address}/32,${module.agents[each.key].ipv4_address}/32 gw4 172.31.1.1 \
ipv4.route-metric 100 \
&& nmcli connection up "$NM_CONNECTION"
EOT
]
}
connection {
user = "root"
private_key = var.ssh_private_key
agent_identity = local.ssh_agent_identity
host = module.agents[each.key].ipv4_address
port = var.ssh_port
}
depends_on = [
hcloud_floating_ip_assignment.agents
]
}