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coder/docs/admin/templates/extending-templates/modules.md
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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

6.7 KiB

Reusing template code

To reuse code across different Coder templates, such as common scripts or resource definitions, we suggest using Terraform Modules.

You can store these modules externally from your Coder deployment, like in a git repository or a Terraform registry. This example shows how to reference a module from your template:

data "coder_workspace" "me" {}

module "coder-base" {
  source = "github.com/my-organization/coder-base"

  # Modules take in variables and can provision infrastructure
  vpc_name            = "devex-3"
  subnet_tags         = { "name": data.coder_workspace.me.name }
  code_server_version = 4.14.1
}

resource "coder_agent" "dev" {
  # Modules can provide outputs, such as helper scripts
  startup_script=<<EOF
  #!/bin/sh
  ${module.coder-base.code_server_install_command}
  EOF
}

Learn more about creating modules and module sources in the Terraform documentation.

Coder modules

Coder publishes plenty of modules that can be used to simplify some common tasks across templates. Some of the modules we publish are,

  1. code-server and vscode-web
  2. git-clone
  3. dotfiles
  4. jetbrains
  5. jfrog-oauth and jfrog-token
  6. vault-github

For a full list of available modules please check Coder module registry.

Offline installations

In offline and restricted deployments, there are three ways to fetch modules.

  1. Artifactory Remote Terraform Repository (Recommended)
  2. Artifactory Local Repository (manual publishing)
  3. Private git repository

Configure Artifactory as a Remote Terraform Repository that proxies and caches the Coder registry. This approach provides automatic updates and requires no manual synchronization.

See Mirror the Coder Registry with JFrog Artifactory for complete setup instructions.

Artifactory Local Repository

Air-gapped users can clone the coder/registry repo and publish a local terraform module repository to resolve modules via Artifactory.

  1. Create a local-terraform-repository with name coder-modules-local

  2. Create a virtual repository with name tf

  3. Follow the below instructions to publish coder modules to Artifactory

    git clone https://github.com/coder/registry
    cd registry/registry/coder/modules
    jf tfc
    jf tf p --namespace="coder" --provider="coder" --tag="1.0.0"
    
  4. Generate a token with access to the tf repo and set an ENV variable TF_TOKEN_example.jfrog.io="XXXXXXXXXXXXXXX" on the Coder provisioner.

  5. Create a file .terraformrc with following content and mount at /home/coder/.terraformrc within the Coder provisioner.

    provider_installation {
      direct {
          exclude = ["registry.terraform.io/*/*"]
      }
      network_mirror {
          url = "https://example.jfrog.io/artifactory/api/terraform/tf/providers/"
      }
    }
    
  6. Update module source as:

    module "module-name" {
      source = "https://example.jfrog.io/tf__coder/module-name/coder"
      version = "1.0.0"
      agent_id = coder_agent.example.id
      ...
    }
    

    Replace example.jfrog.io with your Artifactory URL

Based on the instructions here.

Example template

We have an example template here that uses our JFrog Docker template as the underlying module.

Private git repository

If you are importing a module from a private git repository, the Coder server or provisioner needs git credentials. Since this token will only be used for cloning your repositories with modules, it is best to create a token with access limited to the repository and no extra permissions. In GitHub, you can generate a fine-grained token with read only access to the necessary repos.

If you are running Coder on a VM, make sure that you have git installed and the coder user has access to the following files:

# /home/coder/.gitconfig
[credential]
  helper = store
# /home/coder/.git-credentials

# GitHub example:
https://your-github-username:your-github-pat@github.com

If you are running Coder on Docker or Kubernetes, git is pre-installed in the Coder image. However, you still need to mount credentials. This can be done via a Docker volume mount or Kubernetes secrets.

Passing git credentials in Kubernetes

First, create a .gitconfig and .git-credentials file on your local machine. You might want to do this in a temporary directory to avoid conflicting with your own git credentials.

Next, create the secret in Kubernetes. Be sure to do this in the same namespace that Coder is installed in.

export NAMESPACE=coder
kubectl apply -f - <<EOF
apiVersion: v1
kind: Secret
metadata:
  name: git-secrets
  namespace: $NAMESPACE
type: Opaque
data:
  .gitconfig: $(cat .gitconfig | base64 | tr -d '\n')
  .git-credentials: $(cat .git-credentials | base64 | tr -d '\n')
EOF

Then, modify Coder's Helm values to mount the secret.

coder:
  volumes:
    - name: git-secrets
      secret:
        secretName: git-secrets
  volumeMounts:
    - name: git-secrets
      mountPath: "/home/coder/.gitconfig"
      subPath: .gitconfig
      readOnly: true
    - name: git-secrets
      mountPath: "/home/coder/.git-credentials"
      subPath: .git-credentials
      readOnly: true

Next steps