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coder/docs/admin/integrations/multiple-kube-clusters.md
T
Nick Vigilante c84aa564ba docs: normalize code-fence languages for Shiki compatibility (#27161)
Normalizes non-standard code-fence language tags across `docs/**` so a
strict highlighter (Shiki, used by Fumadocs) won't fail the build on an
unrecognized language, and unifies redundant synonym tags onto one
canonical form per language. The current renderer (Speed-Highlight)
detects the language from the code content, not the fence label, so this
drift wasn't visible until now.

## Changes

- `hcl` -> `tf` (199 fences, including indented ones nested in
numbered/bulleted lists). Shiki ships `hcl` and `terraform` as two
distinct grammars (not aliases); every `hcl`-tagged fence in `docs/**`
is actually Terraform resource/data/provider syntax, so the more
specific `terraform` grammar is correct for all of them. `tf` is Shiki's
own alias for that grammar, and it's also what GitHub's own markdown
renderer resolves to the same HCL/Terraform highlighting.
- `pwsh`/`powershell` -> `ps1`. Both `ps` and `ps1` are registered
PowerShell aliases in Shiki, but on GitHub's renderer only `.ps1` is a
registered file extension (`.ps` isn't), so `ps1` renders identically to
`powershell` there today while bare `ps` would silently lose
highlighting.
- `env` -> `dotenv` (a dedicated Shiki grammar for `KEY=VALUE` files)
- `text`/`output`/`none`/`url` -> `txt`. Same built-in plain-text
fallback either way, just shorter.
- `Dockerfile` -> `dockerfile` (lowercase)
- `bash`/`shell` -> `sh` (732 fences). Shiki and GitHub both alias all
three to a single shell grammar; this was already the style guide's
stated preference, just not enforced across the existing corpus until
now.
- `markdown` -> `md` (4 fences). Alias of the same grammar in both Shiki
and GitHub.
- `jsonc` -> `json` (1 fence). The block has no comments or trailing
commas, so it doesn't need the comments-capable grammar.
- `ts` -> `tsx` (2 fences, `docs/about/contributing/frontend.md`).
Verified the actual content tokenizes identically under both grammars,
and a sibling block in the same file already needs `tsx` for real JSX,
so unifying to one tag is safe for this file. Documented a caveat: `tsx`
mis-tokenizes the legacy angle-bracket type-assertion syntax
(`<Type>value`), which is invalid in real `.tsx` files anyway, so use
`value as Type` instead.
- `yml` -> `yaml` (1 fence)
- Updated `docs/.style/style-guide/formatting.md` to document all
canonical tags

`promql` (2 fences) and `caddyfile` (2 fences) are left as-is. Shiki
doesn't bundle a grammar for either, so they need a custom grammar
registration when the site adopts Shiki, rather than degrading to `txt`.
Tracked as follow-up work under DOCS-118 and
[DOCS-544](https://linear.app/codercom/issue/DOCS-544/vendor-a-local-promql-grammar-for-shiki-syntax-highlighting)
(promql).

Does not touch `offlinedocs/`.

Linear:
[DOCS-476](https://linear.app/codercom/issue/DOCS-476/normalize-docs-code-fence-languages-de-risk-shikifumadocs)

<details>
<summary>How the fence tags were verified</summary>

Each tag was tested against a real `shiki@latest` highlighter instance
(`codeToHtml`/`codeToTokens`) and cross-checked against GitHub's
`@wooorm/starry-night` grammar sources (the renderer that actually
displays these `.md` files today, in repo browsing and PR diffs), since
that's what determines whether brevity is safe before Shiki adoption:

```text
FAIL  env        -- Language `env` is not included in this bundle.
FAIL  Dockerfile -- Language `Dockerfile` is not included in this bundle.
FAIL  promql     -- Language `promql` is not included in this bundle.
FAIL  caddyfile  -- Language `caddyfile` is not included in this bundle.
FAIL  pwsh       -- Language `pwsh` is not included in this bundle.
FAIL  output     -- Language `output` is not included in this bundle.
```

`hcl` doesn't error in Shiki, since it's a real grammar, but that's
exactly the trap: it was silently rendering every fence with the generic
HCL grammar instead of the Terraform-specific one. Every `hcl`-tagged
fence in `docs/**` was manually checked against `origin/main` and is
genuinely Terraform content.

For `ts`/`tsx`, tokenizing the actual doc content confirmed identical
output under both grammars; a synthetic test with the legacy
angle-bracket cast syntax confirmed `tsx` degrades on that specific
construct, which the style guide now calls out.

The first normalization pass only matched fence tags at column 0
(`^```tag$`), missing tags indented inside numbered/bulleted lists. A
follow-up pass caught the remaining occurrences at any indentation
level.

</details>


---

*This PR description and the underlying changes were prepared with Coder
Agents assistance.*
2026-07-15 14:07:09 -04:00

237 lines
6.2 KiB
Markdown

# Additional clusters
With Coder, you can deploy workspaces in additional Kubernetes clusters using
different
[authentication methods](https://registry.terraform.io/providers/hashicorp/kubernetes/latest/docs#authentication)
in the Terraform provider.
![Region picker in "Create Workspace" screen](../../images/admin/integrations/kube-region-picker.png)
## Option 1) Kubernetes contexts and kubeconfig
First, create a kubeconfig file with
[multiple contexts](https://kubernetes.io/docs/tasks/access-application-cluster/configure-access-multiple-clusters/).
```sh
kubectl config get-contexts
CURRENT NAME CLUSTER
workspaces-europe-west2-c workspaces-europe-west2-c
* workspaces-us-central1-a workspaces-us-central1-a
```
### Kubernetes control plane
If you deployed Coder on Kubernetes, you can attach a kubeconfig as a secret.
This assumes Coder is deployed on the `coder` namespace and your kubeconfig file
is in ~/.kube/config.
```sh
kubectl create secret generic kubeconfig-secret -n coder --from-file=~/.kube/config
```
Modify your helm values to mount the secret:
```yaml
coder:
# ...
volumes:
- name: "kubeconfig-mount"
secret:
secretName: "kubeconfig-secret"
volumeMounts:
- name: "kubeconfig-mount"
mountPath: "/mnt/secrets/kube"
readOnly: true
```
[Upgrade Coder](../../install/kubernetes.md#upgrading-coder-via-helm) with these
new values.
### VM control plane
If you deployed Coder on a VM, copy the kubeconfig file to
`/home/coder/.kube/config`.
### Create a Coder template
You can start from our
[example template](../../../examples/templates/kubernetes).
From there, add
[template parameters](../templates/extending-templates/parameters.md) to allow
developers to pick their desired cluster.
```tf
# main.tf
data "coder_parameter" "kube_context" {
name = "kube_context"
display_name = "Cluster"
default = "workspaces-us-central1-a"
mutable = false
option {
name = "US Central"
icon = "/emojis/1f33d.png"
value = "workspaces-us-central1-a"
}
option {
name = "Europe West"
icon = "/emojis/1f482.png"
value = "workspaces-europe-west2-c"
}
}
provider "kubernetes" {
config_path = "~/.kube/config" # or /mnt/secrets/kube/config for Kubernetes
config_context = data.coder_parameter.kube_context.value
}
```
## Option 2) Kubernetes ServiceAccounts
Alternatively, you can authenticate with remote clusters with ServiceAccount
tokens. Coder can store these secrets on your behalf with
[managed Terraform variables](../templates/extending-templates/variables.md).
Alternatively, these could also be fetched from Kubernetes secrets or even [HashiCorp Vault](https://registry.terraform.io/providers/hashicorp/vault/latest/docs/data-sources/generic_secret).
This guide assumes you have a `coder-workspaces` namespace on your remote
cluster. Change the namespace accordingly.
### Create a ServiceAccount
Run this command against your remote cluster to create a ServiceAccount, Role,
RoleBinding, and token:
```sh
kubectl apply -n coder-workspaces -f - <<EOF
apiVersion: v1
kind: ServiceAccount
metadata:
name: coder-v2
---
apiVersion: v1
kind: Secret
metadata:
name: coder-v2
annotations:
kubernetes.io/service-account.name: coder-v2
type: kubernetes.io/service-account-token
---
apiVersion: rbac.authorization.k8s.io/v1
kind: Role
metadata:
name: coder-v2
rules:
- apiGroups: ["", "apps", "networking.k8s.io"]
resources: ["persistentvolumeclaims", "pods", "deployments", "services", "secrets", "pods/exec","pods/log", "events", "networkpolicies", "serviceaccounts"]
verbs: ["create", "get", "list", "watch", "update", "patch", "delete", "deletecollection"]
- apiGroups: ["metrics.k8s.io", "storage.k8s.io"]
resources: ["pods", "storageclasses"]
verbs: ["get", "list", "watch"]
---
apiVersion: rbac.authorization.k8s.io/v1
kind: RoleBinding
metadata:
name: coder-v2
subjects:
- kind: ServiceAccount
name: coder-v2
roleRef:
kind: Role
name: coder-v2
apiGroup: rbac.authorization.k8s.io
EOF
```
The output should be similar to:
```txt
serviceaccount/coder-v2 created
secret/coder-v2 created
role.rbac.authorization.k8s.io/coder-v2 created
rolebinding.rbac.authorization.k8s.io/coder-v2 created
```
### 2. Modify the Kubernetes template
You can start from our
[example template](../../../examples/templates/kubernetes).
```tf
variable "host" {
description = "Cluster host address"
sensitive = true
}
variable "cluster_ca_certificate" {
description = "Cluster CA certificate (base64 encoded)"
sensitive = true
}
variable "token" {
description = "Cluster CA token (base64 encoded)"
sensitive = true
}
variable "namespace" {
description = "Namespace"
}
provider "kubernetes" {
host = var.host
cluster_ca_certificate = base64decode(var.cluster_ca_certificate)
token = base64decode(var.token)
}
```
### Create Coder template with managed variables
Fetch the values from the secret and pass them to Coder. This should work on
macOS and Linux.
To get the cluster address:
```sh
kubectl cluster-info
Kubernetes control plane is running at https://example.domain:6443
export CLUSTER_ADDRESS=https://example.domain:6443
```
To fetch the CA certificate and token:
```sh
export CLUSTER_CA_CERTIFICATE=$(kubectl get secrets coder-v2 -n coder-workspaces -o jsonpath="{.data.ca\.crt}")
export CLUSTER_SERVICEACCOUNT_TOKEN=$(kubectl get secrets coder-v2 -n coder-workspaces -o jsonpath="{.data.token}")
```
Create the template with these values:
```sh
coder templates push \
--variable host=$CLUSTER_ADDRESS \
--variable cluster_ca_certificate=$CLUSTER_CA_CERTIFICATE \
--variable token=$CLUSTER_SERVICEACCOUNT_TOKEN \
--variable namespace=coder-workspaces
```
If you're on a Windows machine (or if one of the commands fail), try grabbing
the values manually:
```sh
# Get cluster API address
kubectl cluster-info
# Get cluster CA and token (base64 encoded)
kubectl get secrets coder-service-account-token -n coder-workspaces -o jsonpath="{.data}"
coder templates push \
--variable host=API_ADDRESS \
--variable cluster_ca_certificate=CLUSTER_CA_CERTIFICATE \
--variable token=CLUSTER_SERVICEACCOUNT_TOKEN \
--variable namespace=coder-workspaces
```