[terraform] use modern day equinix metal provider (#8748)
* [terraform] use modern day equinix metal provider * [CI] ensure packet job tests metalpull/8754/head
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@ -60,11 +60,11 @@ tf-validate-openstack:
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PROVIDER: openstack
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CLUSTER: $CI_COMMIT_REF_NAME
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tf-validate-packet:
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tf-validate-metal:
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extends: .terraform_validate
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variables:
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TF_VERSION: $TERRAFORM_VERSION
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PROVIDER: packet
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PROVIDER: metal
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CLUSTER: $CI_COMMIT_REF_NAME
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tf-validate-aws:
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@ -60,9 +60,9 @@ Terraform will be used to provision all of the Equinix Metal resources with base
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Create an inventory directory for your cluster by copying the existing sample and linking the `hosts` script (used to build the inventory based on Terraform state):
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```ShellSession
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cp -LRp contrib/terraform/packet/sample-inventory inventory/$CLUSTER
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cp -LRp contrib/terraform/metal/sample-inventory inventory/$CLUSTER
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cd inventory/$CLUSTER
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ln -s ../../contrib/terraform/packet/hosts
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ln -s ../../contrib/terraform/metal/hosts
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```
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This will be the base for subsequent Terraform commands.
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@ -101,7 +101,7 @@ This helps when identifying which hosts are associated with each cluster.
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While the defaults in variables.tf will successfully deploy a cluster, it is recommended to set the following values:
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- cluster_name = the name of the inventory directory created above as $CLUSTER
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- packet_project_id = the Equinix Metal Project ID associated with the Equinix Metal API token above
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- metal_project_id = the Equinix Metal Project ID associated with the Equinix Metal API token above
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#### Enable localhost access
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@ -119,7 +119,7 @@ Once the Kubespray playbooks are run, a Kubernetes configuration file will be wr
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In the cluster's inventory folder, the following files might be created (either by Terraform
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or manually), to prevent you from pushing them accidentally they are in a
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`.gitignore` file in the `terraform/packet` directory :
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`.gitignore` file in the `terraform/metal` directory :
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- `.terraform`
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- `.tfvars`
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@ -135,7 +135,7 @@ plugins. This is accomplished as follows:
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```ShellSession
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cd inventory/$CLUSTER
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terraform init ../../contrib/terraform/packet
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terraform init ../../contrib/terraform/metal
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```
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This should finish fairly quickly telling you Terraform has successfully initialized and loaded necessary modules.
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@ -146,7 +146,7 @@ You can apply the Terraform configuration to your cluster with the following com
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issued from your cluster's inventory directory (`inventory/$CLUSTER`):
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```ShellSession
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terraform apply -var-file=cluster.tfvars ../../contrib/terraform/packet
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terraform apply -var-file=cluster.tfvars ../../contrib/terraform/metal
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export ANSIBLE_HOST_KEY_CHECKING=False
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ansible-playbook -i hosts ../../cluster.yml
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```
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@ -156,7 +156,7 @@ ansible-playbook -i hosts ../../cluster.yml
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You can destroy your new cluster with the following command issued from the cluster's inventory directory:
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```ShellSession
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terraform destroy -var-file=cluster.tfvars ../../contrib/terraform/packet
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terraform destroy -var-file=cluster.tfvars ../../contrib/terraform/metal
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```
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If you've started the Ansible run, it may also be a good idea to do some manual cleanup:
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@ -1,16 +1,15 @@
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# Configure the Equinix Metal Provider
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provider "packet" {
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version = "~> 2.0"
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provider "metal" {
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}
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resource "packet_ssh_key" "k8s" {
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resource "metal_ssh_key" "k8s" {
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count = var.public_key_path != "" ? 1 : 0
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name = "kubernetes-${var.cluster_name}"
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public_key = chomp(file(var.public_key_path))
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}
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resource "packet_device" "k8s_master" {
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depends_on = [packet_ssh_key.k8s]
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resource "metal_device" "k8s_master" {
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depends_on = [metal_ssh_key.k8s]
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count = var.number_of_k8s_masters
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hostname = "${var.cluster_name}-k8s-master-${count.index + 1}"
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@ -18,12 +17,12 @@ resource "packet_device" "k8s_master" {
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facilities = [var.facility]
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operating_system = var.operating_system
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billing_cycle = var.billing_cycle
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project_id = var.packet_project_id
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project_id = var.metal_project_id
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tags = ["cluster-${var.cluster_name}", "k8s_cluster", "kube_control_plane", "etcd", "kube_node"]
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}
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resource "packet_device" "k8s_master_no_etcd" {
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depends_on = [packet_ssh_key.k8s]
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resource "metal_device" "k8s_master_no_etcd" {
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depends_on = [metal_ssh_key.k8s]
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count = var.number_of_k8s_masters_no_etcd
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hostname = "${var.cluster_name}-k8s-master-${count.index + 1}"
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@ -31,12 +30,12 @@ resource "packet_device" "k8s_master_no_etcd" {
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facilities = [var.facility]
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operating_system = var.operating_system
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billing_cycle = var.billing_cycle
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project_id = var.packet_project_id
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project_id = var.metal_project_id
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tags = ["cluster-${var.cluster_name}", "k8s_cluster", "kube_control_plane"]
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}
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resource "packet_device" "k8s_etcd" {
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depends_on = [packet_ssh_key.k8s]
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resource "metal_device" "k8s_etcd" {
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depends_on = [metal_ssh_key.k8s]
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count = var.number_of_etcd
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hostname = "${var.cluster_name}-etcd-${count.index + 1}"
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@ -44,12 +43,12 @@ resource "packet_device" "k8s_etcd" {
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facilities = [var.facility]
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operating_system = var.operating_system
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billing_cycle = var.billing_cycle
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project_id = var.packet_project_id
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project_id = var.metal_project_id
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tags = ["cluster-${var.cluster_name}", "etcd"]
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}
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resource "packet_device" "k8s_node" {
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depends_on = [packet_ssh_key.k8s]
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resource "metal_device" "k8s_node" {
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depends_on = [metal_ssh_key.k8s]
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count = var.number_of_k8s_nodes
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hostname = "${var.cluster_name}-k8s-node-${count.index + 1}"
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@ -57,7 +56,7 @@ resource "packet_device" "k8s_node" {
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facilities = [var.facility]
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operating_system = var.operating_system
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billing_cycle = var.billing_cycle
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project_id = var.packet_project_id
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project_id = var.metal_project_id
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tags = ["cluster-${var.cluster_name}", "k8s_cluster", "kube_node"]
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}
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@ -0,0 +1,16 @@
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output "k8s_masters" {
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value = metal_device.k8s_master.*.access_public_ipv4
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}
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output "k8s_masters_no_etc" {
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value = metal_device.k8s_master_no_etcd.*.access_public_ipv4
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}
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output "k8s_etcds" {
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value = metal_device.k8s_etcd.*.access_public_ipv4
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}
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output "k8s_nodes" {
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value = metal_device.k8s_node.*.access_public_ipv4
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}
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@ -2,7 +2,7 @@
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cluster_name = "mycluster"
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# Your Equinix Metal project ID. See hhttps://metal.equinix.com/developers/docs/accounts/
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packet_project_id = "Example-API-Token"
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metal_project_id = "Example-API-Token"
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# The public SSH key to be uploaded into authorized_keys in bare metal Equinix Metal nodes provisioned
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# leave this value blank if the public key is already setup in the Equinix Metal project
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@ -2,12 +2,12 @@ variable "cluster_name" {
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default = "kubespray"
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}
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variable "packet_project_id" {
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variable "metal_project_id" {
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description = "Your Equinix Metal project ID. See https://metal.equinix.com/developers/docs/accounts/"
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}
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variable "operating_system" {
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default = "ubuntu_16_04"
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default = "ubuntu_20_04"
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}
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variable "public_key_path" {
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@ -24,23 +24,23 @@ variable "facility" {
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}
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variable "plan_k8s_masters" {
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default = "c2.medium.x86"
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default = "c3.small.x86"
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}
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variable "plan_k8s_masters_no_etcd" {
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default = "c2.medium.x86"
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default = "c3.small.x86"
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}
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variable "plan_etcd" {
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default = "c2.medium.x86"
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default = "c3.small.x86"
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}
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variable "plan_k8s_nodes" {
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default = "c2.medium.x86"
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default = "c3.medium.x86"
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}
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variable "number_of_k8s_masters" {
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default = 0
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default = 1
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}
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variable "number_of_k8s_masters_no_etcd" {
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@ -52,6 +52,6 @@ variable "number_of_etcd" {
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}
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variable "number_of_k8s_nodes" {
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default = 0
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default = 1
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}
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@ -2,8 +2,8 @@
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terraform {
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required_version = ">= 0.12"
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required_providers {
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packet = {
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source = "terraform-providers/packet"
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metal = {
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source = "equinix/metal"
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}
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}
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}
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@ -1,16 +0,0 @@
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output "k8s_masters" {
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value = packet_device.k8s_master.*.access_public_ipv4
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}
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output "k8s_masters_no_etc" {
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value = packet_device.k8s_master_no_etcd.*.access_public_ipv4
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}
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output "k8s_etcds" {
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value = packet_device.k8s_etcd.*.access_public_ipv4
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}
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output "k8s_nodes" {
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value = packet_device.k8s_node.*.access_public_ipv4
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}
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@ -195,8 +195,8 @@ def parse_bool(string_form):
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raise ValueError('could not convert %r to a bool' % string_form)
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@parses('packet_device')
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def packet_device(resource, tfvars=None):
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@parses('metal_device')
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def metal_device(resource, tfvars=None):
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raw_attrs = resource['primary']['attributes']
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name = raw_attrs['hostname']
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groups = []
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@ -213,14 +213,14 @@ def packet_device(resource, tfvars=None):
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'state': raw_attrs['state'],
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# ansible
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'ansible_ssh_host': raw_attrs['network.0.address'],
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'ansible_ssh_user': 'root', # Use root by default in packet
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'ansible_ssh_user': 'root', # Use root by default in metal
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# generic
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'ipv4_address': raw_attrs['network.0.address'],
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'public_ipv4': raw_attrs['network.0.address'],
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'ipv6_address': raw_attrs['network.1.address'],
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'public_ipv6': raw_attrs['network.1.address'],
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'private_ipv4': raw_attrs['network.2.address'],
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'provider': 'packet',
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'provider': 'metal',
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}
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if raw_attrs['operating_system'] == 'flatcar_stable':
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@ -228,10 +228,10 @@ def packet_device(resource, tfvars=None):
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attrs.update({'ansible_ssh_user': 'core'})
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# add groups based on attrs
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groups.append('packet_operating_system=' + attrs['operating_system'])
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groups.append('packet_locked=%s' % attrs['locked'])
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groups.append('packet_state=' + attrs['state'])
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groups.append('packet_plan=' + attrs['plan'])
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groups.append('metal_operating_system=' + attrs['operating_system'])
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groups.append('metal_locked=%s' % attrs['locked'])
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groups.append('metal_state=' + attrs['state'])
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groups.append('metal_plan=' + attrs['plan'])
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# groups specific to kubespray
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groups = groups + attrs['tags']
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