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0a593bec18
* terraform: upgrade `random` provider to `v3.6.0` * terraform: update lockfiles * ci: fix Terraform lock exclude directories
259 lines
8.3 KiB
HCL
259 lines
8.3 KiB
HCL
terraform {
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required_providers {
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aws = {
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source = "hashicorp/aws"
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version = "5.26.0"
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}
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random = {
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source = "hashicorp/random"
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version = "3.6.0"
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}
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}
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}
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# Configure the AWS Provider
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provider "aws" {
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region = var.region
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}
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locals {
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uid = random_id.uid.hex
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name = "${var.name}-${local.uid}"
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initSecretHash = random_password.initSecret.bcrypt_hash
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cidr_vpc_subnet_nodes = "192.168.176.0/20"
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ports_node_range = "30000-32767"
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load_balancer_ports = flatten([
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{ name = "kubernetes", port = "6443", health_check = "HTTPS" },
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{ name = "bootstrapper", port = "9000", health_check = "TCP" },
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{ name = "verify", port = "30081", health_check = "TCP" },
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{ name = "konnectivity", port = "8132", health_check = "TCP" },
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{ name = "recovery", port = "9999", health_check = "TCP" },
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{ name = "join", port = "30090", health_check = "TCP" },
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var.debug ? [{ name = "debugd", port = "4000", health_check = "TCP" }] : [],
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])
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target_group_arns = {
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control-plane : [
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for port in local.load_balancer_ports : module.load_balancer_targets[port.name].target_group_arn
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]
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worker : []
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}
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iam_instance_profile = {
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control-plane : var.iam_instance_profile_control_plane
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worker : var.iam_instance_profile_worker_nodes
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}
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# zones are all availability zones that are used by the node groups
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zones = distinct(sort([
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for node_group in var.node_groups : node_group.zone
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]))
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// wildcard_lb_dns_name is the DNS name of the load balancer with a wildcard for the name.
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// example: given "name-1234567890.region.elb.amazonaws.com" it will return "*.region.elb.amazonaws.com"
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wildcard_lb_dns_name = replace(aws_lb.front_end.dns_name, "/^[^.]*\\./", "*.")
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tags = {
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constellation-uid = local.uid,
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}
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in_cluster_endpoint = aws_lb.front_end.dns_name
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out_of_cluster_endpoint = var.internal_load_balancer && var.debug ? module.jump_host[0].ip : local.in_cluster_endpoint
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}
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resource "random_id" "uid" {
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byte_length = 4
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}
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resource "random_password" "initSecret" {
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length = 32
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special = true
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override_special = "_%@"
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}
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resource "aws_vpc" "vpc" {
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cidr_block = "192.168.0.0/16"
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tags = merge(local.tags, { Name = "${local.name}-vpc" })
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}
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module "public_private_subnet" {
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source = "./modules/public_private_subnet"
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name = local.name
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vpc_id = aws_vpc.vpc.id
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cidr_vpc_subnet_nodes = local.cidr_vpc_subnet_nodes
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cidr_vpc_subnet_internet = "192.168.0.0/20"
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zone = var.zone
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zones = local.zones
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tags = local.tags
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}
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resource "aws_eip" "lb" {
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# TODO(malt3): use for_each = toset(module.public_private_subnet.all_zones)
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# in a future version to support all availability zones in the chosen region
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# This should only be done after we migrated to DNS-based addressing for the
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# control-plane.
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for_each = var.internal_load_balancer ? [] : toset([var.zone])
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domain = "vpc"
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tags = merge(local.tags, { "constellation-ip-endpoint" = each.key == var.zone ? "legacy-primary-zone" : "additional-zone" })
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}
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resource "aws_lb" "front_end" {
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name = "${local.name}-loadbalancer"
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internal = var.internal_load_balancer
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load_balancer_type = "network"
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tags = local.tags
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security_groups = [aws_security_group.security_group.id]
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dynamic "subnet_mapping" {
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# TODO(malt3): use for_each = toset(module.public_private_subnet.all_zones)
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# in a future version to support all availability zones in the chosen region
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# without needing to constantly replace the loadbalancer.
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# This has to wait until the bootstrapper that we upgrade from (source version) use
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# DNS-based addressing for the control-plane.
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# for_each = toset(module.public_private_subnet.all_zones)
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for_each = toset([var.zone])
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content {
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subnet_id = module.public_private_subnet.public_subnet_id[subnet_mapping.key]
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allocation_id = var.internal_load_balancer ? "" : aws_eip.lb[subnet_mapping.key].id
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}
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}
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enable_cross_zone_load_balancing = true
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lifecycle {
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ignore_changes = [security_groups]
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}
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}
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resource "aws_security_group" "security_group" {
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name = local.name
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vpc_id = aws_vpc.vpc.id
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description = "Security group for ${local.name}"
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tags = local.tags
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egress {
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from_port = 0
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to_port = 0
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protocol = "-1"
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cidr_blocks = ["0.0.0.0/0"]
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description = "Allow all outbound traffic"
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}
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ingress {
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from_port = split("-", local.ports_node_range)[0]
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to_port = split("-", local.ports_node_range)[1]
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protocol = "tcp"
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cidr_blocks = ["0.0.0.0/0"]
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description = "K8s node ports"
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}
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dynamic "ingress" {
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for_each = local.load_balancer_ports
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content {
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description = ingress.value.name
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from_port = ingress.value.port
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to_port = ingress.value.port
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protocol = "tcp"
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cidr_blocks = ["0.0.0.0/0"]
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}
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}
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ingress {
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from_port = 0
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to_port = 0
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protocol = "-1"
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cidr_blocks = [aws_vpc.vpc.cidr_block]
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description = "allow all internal"
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}
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}
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resource "aws_cloudwatch_log_group" "log_group" {
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name = local.name
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retention_in_days = 30
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tags = local.tags
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}
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module "load_balancer_targets" {
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for_each = { for port in local.load_balancer_ports : port.name => port }
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source = "./modules/load_balancer_target"
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name = "${local.name}-${each.value.name}"
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port = each.value.port
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healthcheck_protocol = each.value.health_check
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healthcheck_path = each.value.name == "kubernetes" ? "/readyz" : ""
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vpc_id = aws_vpc.vpc.id
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lb_arn = aws_lb.front_end.arn
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tags = local.tags
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}
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module "instance_group" {
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source = "./modules/instance_group"
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for_each = var.node_groups
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base_name = local.name
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node_group_name = each.key
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role = each.value.role
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zone = each.value.zone
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uid = local.uid
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instance_type = each.value.instance_type
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initial_count = each.value.initial_count
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image_id = var.ami
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state_disk_type = each.value.disk_type
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state_disk_size = each.value.disk_size
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target_group_arns = local.target_group_arns[each.value.role]
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security_groups = [aws_security_group.security_group.id]
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subnetwork = module.public_private_subnet.private_subnet_id[each.value.zone]
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iam_instance_profile = local.iam_instance_profile[each.value.role]
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enable_snp = var.enable_snp
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tags = merge(
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local.tags,
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{ Name = "${local.name}-${each.value.role}" },
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{ constellation-role = each.value.role },
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{ constellation-node-group = each.key },
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{ constellation-uid = local.uid },
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{ constellation-init-secret-hash = local.initSecretHash },
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{ "kubernetes.io/cluster/${local.name}" = "owned" }
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)
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}
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module "jump_host" {
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count = var.internal_load_balancer && var.debug ? 1 : 0
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source = "./modules/jump_host"
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base_name = local.name
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subnet_id = module.public_private_subnet.public_subnet_id[var.zone]
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lb_internal_ip = aws_lb.front_end.dns_name
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ports = [for port in local.load_balancer_ports : port.port]
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iam_instance_profile = var.iam_instance_profile_worker_nodes
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security_group_id = aws_security_group.security_group.id
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}
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# TODO(31u3r): Remove once 2.12 is released
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moved {
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from = module.load_balancer_target_konnectivity
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to = module.load_balancer_targets["konnectivity"]
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}
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moved {
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from = module.load_balancer_target_verify
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to = module.load_balancer_targets["verify"]
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}
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moved {
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from = module.load_balancer_target_recovery
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to = module.load_balancer_targets["recovery"]
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}
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moved {
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from = module.load_balancer_target_join
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to = module.load_balancer_targets["join"]
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}
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moved {
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from = module.load_balancer_target_debugd[0]
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to = module.load_balancer_targets["debugd"]
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}
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moved {
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from = module.load_balancer_target_kubernetes
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to = module.load_balancer_targets["kubernetes"]
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}
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moved {
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from = module.load_balancer_target_bootstrapper
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to = module.load_balancer_targets["bootstrapper"]
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}
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