115 lines
4.1 KiB
Markdown
115 lines
4.1 KiB
Markdown
# Concepts
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Let's cover the concepts you'll need to get started.
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## Kubernetes
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[Kubernetes](https://kubernetes.io/) is an open-source cluster system for deploying, scaling, and managing containerized applications across a pool of compute nodes (bare-metal, droplets, instances).
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#### Nodes
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Cluster nodes provision themselves from a declarative configuration upfront. Nodes run a `kubelet` service and register themselves with the control plane to join the higher order cluster. All nodes run `kube-proxy` and `calico` or `flannel` pods.
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#### Controllers
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Controller nodes are scheduled to run the Kubernetes `apiserver`, `scheduler`, `controller-manager`, `kube-dns`, and `kube-proxy`. A fully qualified domain name (e.g. cluster_name.domain.com) resolving to a network load balancer or round-robin DNS (depends on platform) is used to refer to the control plane.
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#### Workers
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Worker nodes register with the control plane and run application workloads.
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## Terraform
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Terraform config files declare *resources* that Terraform should manage. Resources include infrastructure components created through a *provider* API (e.g. Compute instances, DNS records) or local assets like TLS certificates and config files.
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```tf
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# Declare an instance
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resource "google_compute_instance" "pet" {
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# ...
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}
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```
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The `terraform` tool parses configs, reconciles the desired state with actual state, and updates resources to reach desired state.
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```sh
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$ terraform plan
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Plan: 4 to add, 0 to change, 0 to destroy.
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$ terraform apply
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Apply complete! Resources: 4 added, 0 changed, 0 destroyed.
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```
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With Typhoon, you'll be able to manage clusters with Terraform.
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### Modules
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Terraform [modules](https://www.terraform.io/docs/modules/usage.html) allow a collection of resources to be configured and managed together. Typhoon provides a Kubernetes cluster Terraform *module* for each [supported](/#modules) platform and operating system.
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Clusters are declared in Terraform by referencing the module.
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```tf
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module "google-cloud-yavin" {
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source = "git::https://github.com/poseidon/typhoon//google-cloud/container-linux/kubernetes"
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cluster_name = "yavin"
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...
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}
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```
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### Versioning
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Modules are updated regularly, set the version to a [release tag](https://github.com/poseidon/typhoon/releases) or [commit](https://github.com/poseidon/typhoon/commits/master) hash.
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```tf
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...
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source = "git:https://github.com/poseidon/typhoon//google-cloud/container-linux/kubernetes?ref=v1.7.7"
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```
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Module versioning ensures `terraform get --update` only fetches the desired version, so plan and apply don't change cluster resources, unless the version is altered.
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### Organize
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Maintain Terraform configs for "live" infrastructure in a versioned repository. Seek to organize configs to reflect resources that should be managed together in a `terraform apply` invocation.
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You may choose to organize resources all together, by team, by project, or some other scheme. Here's an example that manages three clusters together:
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```sh
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.git/
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infra/
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└── terraform
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└── clusters
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├── bare-metal-tungsten.tf
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├── google-cloud-yavin.tf
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├── digital-ocean-nemo.tf
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├── providers.tf
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├── terraform.tfvars
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└── remote-backend.tf
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```
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By convention, `providers.tf` registers provider APIs, `terraform.tfvars` stores shared values, and state is written to a remote backend.
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### State
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Terraform syncs its state with provider APIs to plan changes to reconcile to the desired state. By default, Terraform writes state data (including secrets!) to a `terraform.tfstate` file. **At a minimum**, add a `.gitignore` file (or equivalent) to prevent state from being committed to your infrastructure repository.
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```
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# .gitignore
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*.tfstate
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*.tfstate.backup
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.terraform/
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```
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### Remote Backend
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Later, you may wish to checkout Terraform [remote backends](https://www.terraform.io/intro/getting-started/remote.html) which store state in a remote bucket like Google Storage or S3.
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```
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terraform {
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backend "gcs" {
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credentials = "/path/to/credentials.json"
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project = "project-id"
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bucket = "bucket-id"
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path = "metal.tfstate"
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}
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}
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```
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