terraform-provider-flux
terraform-aws-eks
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terraform-provider-flux
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Using Terraform to both create kubernetes clusters (AKS) and deploy helm charts in the same project - good or bad?
IMO, a better approach would be to provision your cluster using terraform, then do cluster operations using a GitOps tool, such as GitOps Toolkit (Flux v2) - https://toolkit.fluxcd.io/. You can point multiple clusters to the same repo and they are going to apply and reconcile the desired state for all or your clusters if needed. There’s also a Flux terraform provider - https://github.com/fluxcd/terraform-provider-flux, bootstrap flux then let it do its job.
- Does anyone use terraform to manage Kubernetes objects as opposed to using plain yamls/helm charts/kustomize?
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How do you automate Helm charts installation?
You could try this: https://github.com/fluxcd/terraform-provider-flux
terraform-aws-eks
- Feat: Made it clear that we stand with Ukraine
- Need suggestions for managing eks terraform module
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What's everyone's favorite EKS Terraform module these days?
cloudposse module was popular but most have moved to https://github.com/terraform-aws-modules/terraform-aws-eks also eks blueprints will be moving to this module. use eks blueprints v5
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The Future of Terraform: ClickOps
That's a very simplistic view. Let's do a small thought exercise. Is this module not infrastructure?
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Failed to marshal state to json
I think there is an issue with the module eks : https://github.com/terraform-aws-modules/terraform-aws-eks
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☸️ How to deploy a cost-efficient AWS/EKS Kubernetes cluster using Terraform in 2023
module "eks" { source = "terraform-aws-modules/eks/aws" cluster_name = var.cluster_name cluster_version = var.kubernetes_version cluster_endpoint_private_access = true cluster_endpoint_public_access = true cluster_addons = { coredns = { most_recent = true timeouts = { create = "2m" # default 20m. Times out on first launch while being effectively created } } kube-proxy = { most_recent = true } vpc-cni = { most_recent = true } aws-ebs-csi-driver = { most_recent = true } } vpc_id = module.vpc.vpc_id subnet_ids = module.vpc.private_subnets # Self managed node groups will not automatically create the aws-auth configmap so we need to create_aws_auth_configmap = true manage_aws_auth_configmap = true aws_auth_users = var.aws_auth_users enable_irsa = true node_security_group_additional_rules = { ingress_self_all = { description = "Node to node all ports/protocols" protocol = "-1" from_port = 0 to_port = 0 type = "ingress" self = true } egress_all = { # by default, only https urls can be reached from inside the cluster description = "Node all egress" protocol = "-1" from_port = 0 to_port = 0 type = "egress" cidr_blocks = ["0.0.0.0/0"] ipv6_cidr_blocks = ["::/0"] } } self_managed_node_group_defaults = { # enable discovery of autoscaling groups by cluster-autoscaler autoscaling_group_tags = { "k8s.io/cluster-autoscaler/enabled" : true, "k8s.io/cluster-autoscaler/${var.cluster_name}" : "owned", } # from https://github.com/terraform-aws-modules/terraform-aws-eks/issues/2207#issuecomment-1220679414 # to avoid "waiting for a volume to be created, either by external provisioner "ebs.csi.aws.com" or manually created by system administrator" iam_role_additional_policies = { AmazonEBSCSIDriverPolicy = "arn:aws:iam::aws:policy/service-role/AmazonEBSCSIDriverPolicy" } } # possible values : https://github.com/terraform-aws-modules/terraform-aws-eks/blob/master/node_groups.tf self_managed_node_groups = { default_node_group = { create = false } # fulltime-az-a = { # name = "fulltime-az-a" # subnets = [module.vpc.private_subnets[0]] # instance_type = "t3.medium" # desired_size = 1 # bootstrap_extra_args = "--kubelet-extra-args '--node-labels=node.kubernetes.io/lifecycle=normal'" # } spot-az-a = { name = "spot-az-a" subnet_ids = [module.vpc.private_subnets[0]] # only one subnet to simplify PV usage # availability_zones = ["${var.region}a"] # conflict with previous option. TODO try subnet_ids=null at creation (because at modification it fails) desired_size = 2 min_size = 1 max_size = 10 bootstrap_extra_args = "--kubelet-extra-args '--node-labels=node.kubernetes.io/lifecycle=spot'" use_mixed_instances_policy = true mixed_instances_policy = { instances_distribution = { on_demand_base_capacity = 0 on_demand_percentage_above_base_capacity = 0 spot_allocation_strategy = "lowest-price" # "capacity-optimized" described here : https://aws.amazon.com/blogs/compute/introducing-the-capacity-optimized-allocation-strategy-for-amazon-ec2-spot-instances/ } override = [ { instance_type = "t3.xlarge" weighted_capacity = "1" }, { instance_type = "t3a.xlarge" weighted_capacity = "1" }, ] } } } tags = local.tags }
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How are most EKS clusters deployed?
If you want somewhat viable setup - I'd go for terraform-aws-modules (Anton did an awesome job), and aws-ia blueprints, especially those multi-tenant ones.
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I am stuck on learning how to provision K8s in AWS. Security groups? ALB? ACM? R53?
https://github.com/terraform-aws-modules/terraform-aws-eks
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Deal with external managed resources destruction
I tried using explicit depends_on between my modules but this practise is not recommended since it cause issues during planning.
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How to Upgrade EKS Cluster and its Nodes via Terraform without disruption?
If you use https://github.com/terraform-aws-modules/terraform-aws-eks it is designed to upgrade the components in the correct order when the cluster version is changed
What are some alternatives?
flux2 - Open and extensible continuous delivery solution for Kubernetes. Powered by GitOps Toolkit.
terragrunt-infrastructure-modules-example - A repo used to show examples file/folder structures you can use with Terragrunt and Terraform
helmfile - Deploy Kubernetes Helm Charts
eksctl - The official CLI for Amazon EKS
helmsman - Helm Charts as Code
terraform-aws-cloudwatch - Terraform module to create AWS Cloudwatch resources 🇺🇦
helm-operator - Successor: https://github.com/fluxcd/helm-controller — The Flux Helm Operator, once upon a time a solution for declarative Helming.
terraform-aws-eks-blueprints - Configure and deploy complete EKS clusters.
k2tf - Kubernetes YAML to Terraform HCL converter
eks-alb-istio-with-tls - This repository demonstrate how to configure end-to-end encryption on EKS platform using TLS certificate from Amazon Certificate Manager, AWS Application LoadBalancer and Istio as service mesh.
kustomize-controller - The GitOps Toolkit Kustomize reconciler
terraform-aws-security-group - This terraform module creates set of Security Group and Security Group Rules resources in various combinations.