Terraform - Remove the need for region specific reference data (#1962)
* Dynamically retrieve aws_bastion_ami latest reference by querying AWS rather than hard coded * Dynamically retrieve the list of availability_zones instead of needing to have them hard coded * Limit availability zones to first 2, using slice extrapolation function * Replace the need for hardcoded variable "aws_cluster_ami" by the data provided by Terraform * Move ami choosing to vars, so people don't need to edit create infrastructure if they want another vendor image (as suggested by @atoms) * Make name of the data block agnostic of distribution, given there are more than one distribution supported * Add documentation about other distros being supported and what to change in which location to make these changespull/2014/merge
parent
a0225507a0
commit
ca8a9c600a
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@ -24,7 +24,7 @@ export AWS_DEFAULT_REGION="zzz"
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```
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```
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- Rename `contrib/terraform/aws/terraform.tfvars.example` to `terraform.tfvars`
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- Rename `contrib/terraform/aws/terraform.tfvars.example` to `terraform.tfvars`
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- Update `contrib/terraform/aws/terraform.tfvars` with your data
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- Update `contrib/terraform/aws/terraform.tfvars` with your data. By default, the Terraform scripts use CoreOS as base image. If you want to change this behaviour, see note "Using other distrib than CoreOs" below.
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- Allocate a new AWS Elastic IP. Use this for your `loadbalancer_apiserver_address` value (below)
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- Allocate a new AWS Elastic IP. Use this for your `loadbalancer_apiserver_address` value (below)
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- Create an AWS EC2 SSH Key
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- Create an AWS EC2 SSH Key
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- Run with `terraform apply --var-file="credentials.tfvars"` or `terraform apply` depending if you exported your AWS credentials
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- Run with `terraform apply --var-file="credentials.tfvars"` or `terraform apply` depending if you exported your AWS credentials
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@ -36,18 +36,72 @@ terraform apply -var-file=credentials.tfvars -var 'loadbalancer_apiserver_addres
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- Terraform automatically creates an Ansible Inventory file called `hosts` with the created infrastructure in the directory `inventory`
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- Terraform automatically creates an Ansible Inventory file called `hosts` with the created infrastructure in the directory `inventory`
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- Ansible will automatically generate an ssh config file for your bastion hosts. To connect to hosts with ssh using bastion host use generated ssh-bastion.conf.
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- Ansible will automatically generate an ssh config file for your bastion hosts. To connect to hosts with ssh using bastion host use generated ssh-bastion.conf.
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Ansible automatically detects bastion and changes ssh_args
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Ansible automatically detects bastion and changes ssh_args
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```commandline
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```commandline
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ssh -F ./ssh-bastion.conf user@$ip
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ssh -F ./ssh-bastion.conf user@$ip
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```
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```
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- Once the infrastructure is created, you can run the kubespray playbooks and supply inventory/hosts with the `-i` flag.
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- Once the infrastructure is created, you can run the kubespray playbooks and supply inventory/hosts with the `-i` flag.
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Example (this one assumes you are using CoreOS)
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Example (this one assumes you are using CoreOS)
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```commandline
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```commandline
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ansible-playbook -i ./inventory/hosts ./cluster.yml -e ansible_ssh_user=core -e bootstrap_os=coreos -b --become-user=root --flush-cache
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ansible-playbook -i ./inventory/hosts ./cluster.yml -e ansible_ssh_user=core -e bootstrap_os=coreos -b --become-user=root --flush-cache
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```
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```
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***Using other distrib than CoreOs***
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If you want to use another distribution than CoreOS, you can modify the search filters of the 'data "aws_ami" "distro"' in variables.tf.
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For example, to use:
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- Debian Jessie, replace 'data "aws_ami" "distro"' in variables.tf with
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data "aws_ami" "distro" {
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most_recent = true
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filter {
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name = "name"
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values = ["debian-jessie-amd64-hvm-*"]
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}
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filter {
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name = "virtualization-type"
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values = ["hvm"]
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}
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owners = ["379101102735"]
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}
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- Ubuntu 16.04, replace 'data "aws_ami" "distro"' in variables.tf with
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data "aws_ami" "distro" {
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most_recent = true
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filter {
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name = "name"
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values = ["ubuntu/images/hvm-ssd/ubuntu-xenial-16.04-amd64-*"]
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}
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filter {
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name = "virtualization-type"
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values = ["hvm"]
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}
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owners = ["099720109477"]
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}
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- Centos 7, replace 'data "aws_ami" "distro"' in variables.tf with
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data "aws_ami" "distro" {
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most_recent = true
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filter {
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name = "name"
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values = ["dcos-centos7-*"]
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}
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filter {
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name = "virtualization-type"
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values = ["hvm"]
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}
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owners = ["688023202711"]
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}
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**Troubleshooting**
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**Troubleshooting**
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@ -8,6 +8,8 @@ provider "aws" {
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region = "${var.AWS_DEFAULT_REGION}"
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region = "${var.AWS_DEFAULT_REGION}"
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}
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}
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data "aws_availability_zones" "available" {}
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/*
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/*
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* Calling modules who create the initial AWS VPC / AWS ELB
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* Calling modules who create the initial AWS VPC / AWS ELB
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* and AWS IAM Roles for Kubernetes Deployment
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* and AWS IAM Roles for Kubernetes Deployment
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@ -18,7 +20,7 @@ module "aws-vpc" {
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aws_cluster_name = "${var.aws_cluster_name}"
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aws_cluster_name = "${var.aws_cluster_name}"
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aws_vpc_cidr_block = "${var.aws_vpc_cidr_block}"
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aws_vpc_cidr_block = "${var.aws_vpc_cidr_block}"
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aws_avail_zones="${var.aws_avail_zones}"
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aws_avail_zones="${slice(data.aws_availability_zones.available.names,0,2)}"
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aws_cidr_subnets_private="${var.aws_cidr_subnets_private}"
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aws_cidr_subnets_private="${var.aws_cidr_subnets_private}"
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aws_cidr_subnets_public="${var.aws_cidr_subnets_public}"
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aws_cidr_subnets_public="${var.aws_cidr_subnets_public}"
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default_tags="${var.default_tags}"
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default_tags="${var.default_tags}"
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@ -31,7 +33,7 @@ module "aws-elb" {
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aws_cluster_name="${var.aws_cluster_name}"
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aws_cluster_name="${var.aws_cluster_name}"
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aws_vpc_id="${module.aws-vpc.aws_vpc_id}"
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aws_vpc_id="${module.aws-vpc.aws_vpc_id}"
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aws_avail_zones="${var.aws_avail_zones}"
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aws_avail_zones="${slice(data.aws_availability_zones.available.names,0,2)}"
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aws_subnet_ids_public="${module.aws-vpc.aws_subnet_ids_public}"
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aws_subnet_ids_public="${module.aws-vpc.aws_subnet_ids_public}"
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aws_elb_api_port = "${var.aws_elb_api_port}"
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aws_elb_api_port = "${var.aws_elb_api_port}"
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k8s_secure_api_port = "${var.k8s_secure_api_port}"
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k8s_secure_api_port = "${var.k8s_secure_api_port}"
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@ -49,12 +51,13 @@ module "aws-iam" {
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* Create Bastion Instances in AWS
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* Create Bastion Instances in AWS
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*
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*
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*/
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*/
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resource "aws_instance" "bastion-server" {
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resource "aws_instance" "bastion-server" {
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ami = "${var.aws_bastion_ami}"
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ami = "${data.aws_ami.distro.id}"
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instance_type = "${var.aws_bastion_size}"
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instance_type = "${var.aws_bastion_size}"
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count = "${length(var.aws_cidr_subnets_public)}"
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count = "${length(var.aws_cidr_subnets_public)}"
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associate_public_ip_address = true
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associate_public_ip_address = true
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availability_zone = "${element(var.aws_avail_zones,count.index)}"
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availability_zone = "${element(slice(data.aws_availability_zones.available.names,0,2),count.index)}"
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subnet_id = "${element(module.aws-vpc.aws_subnet_ids_public,count.index)}"
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subnet_id = "${element(module.aws-vpc.aws_subnet_ids_public,count.index)}"
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*/
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*/
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resource "aws_instance" "k8s-master" {
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resource "aws_instance" "k8s-master" {
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ami = "${var.aws_cluster_ami}"
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ami = "${data.aws_ami.distro.id}"
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instance_type = "${var.aws_kube_master_size}"
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instance_type = "${var.aws_kube_master_size}"
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count = "${var.aws_kube_master_num}"
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count = "${var.aws_kube_master_num}"
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availability_zone = "${element(var.aws_avail_zones,count.index)}"
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availability_zone = "${element(slice(data.aws_availability_zones.available.names,0,2),count.index)}"
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subnet_id = "${element(module.aws-vpc.aws_subnet_ids_private,count.index)}"
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subnet_id = "${element(module.aws-vpc.aws_subnet_ids_private,count.index)}"
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resource "aws_instance" "k8s-etcd" {
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resource "aws_instance" "k8s-etcd" {
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ami = "${var.aws_cluster_ami}"
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ami = "${data.aws_ami.distro.id}"
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instance_type = "${var.aws_etcd_size}"
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instance_type = "${var.aws_etcd_size}"
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count = "${var.aws_etcd_num}"
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count = "${var.aws_etcd_num}"
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availability_zone = "${element(var.aws_avail_zones,count.index)}"
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availability_zone = "${element(slice(data.aws_availability_zones.available.names,0,2),count.index)}"
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subnet_id = "${element(module.aws-vpc.aws_subnet_ids_private,count.index)}"
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subnet_id = "${element(module.aws-vpc.aws_subnet_ids_private,count.index)}"
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resource "aws_instance" "k8s-worker" {
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resource "aws_instance" "k8s-worker" {
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ami = "${var.aws_cluster_ami}"
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ami = "${data.aws_ami.distro.id}"
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instance_type = "${var.aws_kube_worker_size}"
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instance_type = "${var.aws_kube_worker_size}"
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count = "${var.aws_kube_worker_num}"
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count = "${var.aws_kube_worker_num}"
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availability_zone = "${element(var.aws_avail_zones,count.index)}"
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availability_zone = "${element(slice(data.aws_availability_zones.available.names,0,2),count.index)}"
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subnet_id = "${element(module.aws-vpc.aws_subnet_ids_private,count.index)}"
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subnet_id = "${element(module.aws-vpc.aws_subnet_ids_private,count.index)}"
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vpc_security_group_ids = [ "${module.aws-vpc.aws_security_group}" ]
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vpc_security_group_ids = [ "${module.aws-vpc.aws_security_group}" ]
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@ -162,7 +165,7 @@ resource "aws_instance" "k8s-worker" {
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*/
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*/
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data "template_file" "inventory" {
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data "template_file" "inventory" {
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template = "${file("${path.module}/templates/inventory.tpl")}"
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template = "${file("${path.module}/templates/inventory.tpl")}"
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vars {
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vars {
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public_ip_address_bastion = "${join("\n",formatlist("bastion ansible_host=%s" , aws_instance.bastion-server.*.public_ip))}"
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public_ip_address_bastion = "${join("\n",formatlist("bastion ansible_host=%s" , aws_instance.bastion-server.*.public_ip))}"
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connection_strings_master = "${join("\n",formatlist("%s ansible_host=%s",aws_instance.k8s-master.*.tags.Name, aws_instance.k8s-master.*.private_ip))}"
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connection_strings_master = "${join("\n",formatlist("%s ansible_host=%s",aws_instance.k8s-master.*.tags.Name, aws_instance.k8s-master.*.private_ip))}"
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aws_vpc_cidr_block = "10.250.192.0/18"
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aws_vpc_cidr_block = "10.250.192.0/18"
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aws_cidr_subnets_private = ["10.250.192.0/20","10.250.208.0/20"]
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aws_cidr_subnets_private = ["10.250.192.0/20","10.250.208.0/20"]
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aws_cidr_subnets_public = ["10.250.224.0/20","10.250.240.0/20"]
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aws_cidr_subnets_public = ["10.250.224.0/20","10.250.240.0/20"]
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aws_avail_zones = ["us-west-2a","us-west-2b"]
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#Bastion Host
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#Bastion Host
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aws_bastion_ami = "ami-db56b9a3"
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aws_bastion_size = "t2.medium"
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aws_bastion_size = "t2.medium"
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aws_kube_worker_num = 4
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aws_kube_worker_num = 4
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aws_kube_worker_size = "t2.medium"
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aws_kube_worker_size = "t2.medium"
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aws_cluster_ami = "ami-db56b9a3"
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#Settings AWS ELB
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#Settings AWS ELB
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aws_elb_api_port = 6443
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aws_elb_api_port = 6443
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@ -20,6 +20,21 @@ variable "aws_cluster_name" {
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description = "Name of AWS Cluster"
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description = "Name of AWS Cluster"
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}
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}
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data "aws_ami" "distro" {
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most_recent = true
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filter {
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name = "name"
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values = ["CoreOS-stable-*"]
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}
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filter {
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name = "virtualization-type"
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values = ["hvm"]
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}
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owners = ["595879546273"] #CoreOS
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}
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//AWS VPC Variables
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//AWS VPC Variables
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@ -27,11 +42,6 @@ variable "aws_vpc_cidr_block" {
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description = "CIDR Block for VPC"
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description = "CIDR Block for VPC"
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}
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}
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variable "aws_avail_zones" {
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description = "Availability Zones Used"
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type = "list"
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}
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variable "aws_cidr_subnets_private" {
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variable "aws_cidr_subnets_private" {
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description = "CIDR Blocks for private subnets in Availability Zones"
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description = "CIDR Blocks for private subnets in Availability Zones"
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type = "list"
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type = "list"
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@ -44,10 +54,6 @@ variable "aws_cidr_subnets_public" {
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//AWS EC2 Settings
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//AWS EC2 Settings
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variable "aws_bastion_ami" {
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description = "AMI ID for Bastion Host in chosen AWS Region"
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}
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variable "aws_bastion_size" {
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variable "aws_bastion_size" {
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description = "EC2 Instance Size of Bastion Host"
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description = "EC2 Instance Size of Bastion Host"
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}
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}
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@ -81,9 +87,6 @@ variable "aws_kube_worker_size" {
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description = "Instance size of Kubernetes Worker Nodes"
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description = "Instance size of Kubernetes Worker Nodes"
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}
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}
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variable "aws_cluster_ami" {
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description = "AMI ID for Kubernetes Cluster"
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}
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/*
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/*
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* AWS ELB Settings
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* AWS ELB Settings
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*
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*
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Loading…
Reference in New Issue