# Server setup — step by step (Hetzner CX22, Ubuntu 24.04) Every command you need, in order. Commands prefixed `local$` run on your own computer; everything else runs on the server over SSH. Budget ~2–3 hours. Where you see `pablo`, ``, or a password placeholder, substitute your own values. --- ## 0. Order the server At [console.hetzner.com](https://console.hetzner.com) → Create Server: - **Location:** Nuremberg - **Image:** Ubuntu 24.04 - **Type:** Shared vCPU → **CX22** (2 vCPU, 4 GB RAM, €4.51/mo) - **SSH key:** add your public key (`local$ cat ~/.ssh/id_ed25519.pub` — if you don't have one: `local$ ssh-keygen -t ed25519`). Adding it here means root login works by key from the start, no password emails. Note the server's IP address — that's `` everywhere below. ## 1. DNS (do this first — it needs time to propagate) At your domain registrar, add two **A records**: | Name | Type | Value | TTL | |---|---|---|---| | `git` | A | `` | 300 | | `ci` | A | `` | 300 | **Do NOT touch the record for `vienalatina.com` itself** — the live WordPress site keeps running until cutover day. Check propagation (repeat until it prints the server IP): ```sh local$ dig +short git.vienalatina.com ``` ## 2. First login + basic hardening ```sh local$ ssh root@ ``` Update and create your user: ```sh apt update && apt -y upgrade adduser pablo # pick a strong password, skip the questions usermod -aG sudo pablo # give your user the same SSH key root has rsync --archive --chown=pablo:pablo ~/.ssh /home/pablo ``` Lock SSH down to keys only: ```sh sed -i 's/^#\?PasswordAuthentication.*/PasswordAuthentication no/' /etc/ssh/sshd_config sed -i 's/^#\?PermitRootLogin.*/PermitRootLogin no/' /etc/ssh/sshd_config systemctl restart ssh ``` **Before closing this terminal**, open a second one and confirm you can get in: ```sh local$ ssh pablo@ ``` From here on, work as `pablo` and prefix privileged commands with `sudo` (or run `sudo -i` once). Firewall + brute-force protection: ```sh sudo apt install -y ufw fail2ban sudo ufw allow OpenSSH sudo ufw allow 80/tcp sudo ufw allow 443/tcp sudo ufw --force enable sudo systemctl enable --now fail2ban ``` ## 3. Install Caddy ```sh sudo apt install -y debian-keyring debian-archive-keyring apt-transport-https curl curl -1sLf 'https://dl.cloudsmith.io/public/caddy/stable/gpg.key' \ | sudo gpg --dearmor -o /usr/share/keyrings/caddy-stable-archive-keyring.gpg curl -1sLf 'https://dl.cloudsmith.io/public/caddy/stable/debian.deb.txt' \ | sudo tee /etc/apt/sources.list.d/caddy-stable.list sudo apt update && sudo apt install -y caddy ``` ## 4. Install Docker ```sh curl -fsSL https://get.docker.com | sudo sh sudo usermod -aG docker pablo ``` Log out and back in (`exit`, then `ssh pablo@`) so the `docker` group takes effect. Verify: `docker ps` should print an empty table, not a permission error. ## 5. Get this repo's infra files onto the server ```sh sudo mkdir -p /srv /var/www/vienalatina.com cd ~ git clone https://github.com/pablovolenski/vienalatina.git sudo cp -r vienalatina/infra/gitea /srv/gitea sudo cp -r vienalatina/infra/woodpecker /srv/woodpecker sudo cp vienalatina/infra/caddy/Caddyfile /etc/caddy/Caddyfile sudo systemctl reload caddy ``` ## 6. Bring up Gitea ```sh cd /srv/gitea sudo docker compose up -d ``` Wait ~30 s, then open **https://git.vienalatina.com** in your browser (the certificate is fetched automatically; if you get an error, wait a minute for DNS/certificate and reload). You'll see Gitea's install page: - Database: **SQLite3** (fine at this scale) - Server domain / base URL: leave as pre-filled (`git.vienalatina.com`) - **Administrator account** (bottom of the page — expand it): username `pablo`, your email, a strong password. Create it now; the first account is the admin. - Click **Install Gitea**. Then create the two OAuth apps and the bot user, all in the Gitea web UI: 1. **Woodpecker OAuth app:** profile icon → Site Administration → Integrations → Applications → *Create new OAuth2 application* - Name: `woodpecker` - Redirect URI: `https://ci.vienalatina.com/authorize` - Save the **Client ID** and **Client Secret** — needed in step 7. 2. **Decap OAuth app:** same screen, second application - Name: `decap-cms` - Redirect URI: `https://vienalatina.com/admin/` (exactly, trailing slash included — Gitea matches it literally) - **Untick "Confidential Client".** Decap runs in the browser and authenticates with PKCE; a confidential app makes Gitea demand a client secret that a browser cannot keep, and the login fails *after* you authorize, which makes it look like a Decap bug. - Save the **Client ID** — it goes into `static/admin/config.yml` (step 9). There is no secret to save, and the Client ID is not one either: it is published in the site's JavaScript by design. 3. **Translations bot:** Site Administration → Identity & Access → User Accounts → *Create User Account* - Username: `translations`, email: `translations@vienalatina.com`, any strong password. - Log in **as the bot user** once (private window), go to Settings → Applications → *Generate New Token*, scopes: **repository (write)**. Save the token — it becomes the `gitea_push_token` secret in step 8. ## 7. Bring up Woodpecker ```sh cd /srv/woodpecker sudo cp .env.example .env openssl rand -hex 32 # copy the output sudo nano .env # paste Woodpecker OAuth client ID + secret + the random hex sudo mkdir -p data && sudo chown -R 1000:1000 data # v3 images run as uid 1000 sudo docker compose up -d ``` Open **https://ci.vienalatina.com** → *Login* → it bounces you to Gitea → *Authorize*. You're in, as admin (the `WOODPECKER_ADMIN=pablo` line in the compose file — edit it if your Gitea username differs). ## 8. Create the site repo and wire the pipeline Create the repo in Gitea: **+** (top right) → New Repository → name `vienalatina`, owner `pablo`, **not** initialized with anything → Create. Add the `translations` bot as collaborator: repo → Settings → Collaborators → add `translations` with **Write** access. Push the code into Gitea (from the server clone you made in step 5, or from your laptop): ```sh cd ~/vienalatina git remote add gitea https://git.vienalatina.com/pablo/vienalatina.git git push gitea main ``` (It will ask for your Gitea username/password.) In Woodpecker (**https://ci.vienalatina.com**): 1. *Repositories* → *Add repository* → enable `pablo/vienalatina` (this auto-creates the push webhook in Gitea). 2. Repo → Settings → *Project settings* → check **Trusted** (needed so the deploy step may mount `/var/www/vienalatina.com`). 3. Repo → Settings → *Secrets* → add `gitea_push_token`, the bot token from step 6.3. That is the only secret — translation runs locally and needs no key. Build the translation image before the first run (~5 minutes; it downloads about 1GB of model): ```sh cd ~/vienalatina docker build -t vienalatina/translate:1 docker/translate ``` The push in the step above has already triggered a first pipeline — it ran before the image and secret existed, so **push a new commit rather than using Restart**. Restart replays the old commit, and a restart's empty diff range makes the translate step find nothing to do. All three steps (translate → build → deploy) should go green, and `/var/www/vienalatina.com/` on the server now contains the built site: ```sh ls /var/www/vienalatina.com # index.html, de/, pt-br/, robots.txt, llms.txt … ``` ## 9. Point Decap at Gitea On your working copy: edit `static/admin/config.yml`, replace `REPLACE_WITH_GITEA_OAUTH_CLIENT_ID` with the Decap OAuth Client ID from step 6.2, commit, push to Gitea. (You can't log into `/admin` until the main domain is live — that's expected.) ```sh cd ~/vienalatina sed -i 's/REPLACE_WITH_GITEA_OAUTH_CLIENT_ID//' static/admin/config.yml grep app_id static/admin/config.yml git commit -am "Wire Decap to the Gitea OAuth app" && git push gitea main ``` This value is per-deployment: the placeholder is what belongs in the repo, so leave it in place in any copy of this platform that is not this server. If `/admin/` still shows *Client ID not registered* afterwards, the page is serving a cached `config.yml` — hard-reload it. If it fails *after* the Gitea authorize screen instead, the app was created as a confidential client; delete it and recreate it with that box unticked. ## 10. Test the translation loop end-to-end ```sh cd ~/vienalatina cat > content/post/mi-test.es.md <<'EOF' --- title: "Artículo de prueba" date: 2026-08-01 lang: es manual_translation: false categories: [Comunidad] --- Esto es una prueba del flujo de traducción automática en el Grätzl. EOF git add . && git commit -m "test: pipeline round-trip" && git push gitea main ``` Within ~60 s the Woodpecker pipeline should finish and `content/post/mi-test.de.md` + `content/post/mi-test.pt-br.md` appear in the Gitea repo as commits by `translations`. Note "Grätzl" survives untranslated (protected term). Delete all three test files with another commit when done. Saturday complete. 🎉 --- ## Cutover day (Sunday evening) 1. Run the content migration and push (see README, "One-shot content migration"). Migrated Polylang siblings arrive frozen (`manual_translation: true`) because they are *human* translations — the machine engine must never overwrite them. Then `python scripts/translate.py --backfill` fills in any set that WordPress had no translation for. Spot-check the built site with `grep` on `/var/www/vienalatina.com/index.html`; the `curl -H "Host: vienalatina.com" http://127.0.0.1/` trick only works after step 3, since Caddy has no matching site block until then. 2. At the registrar: lower the `vienalatina.com` A record TTL to 300, wait for the old TTL to expire, then change the A record to `` (and `www` too, as CNAME to `vienalatina.com` or A to the same IP). 3. On the server: uncomment the `vienalatina.com` blocks in `/etc/caddy/Caddyfile`, then `sudo systemctl reload caddy`. Caddy fetches the certificate as soon as DNS resolves to this server. 4. Verify: the checklist in the migration plan (hreflang tags, robots.txt, llms.txt, Lighthouse, `manual_translation: true` freeze test, and the loop-prevention test — after the bot pushes siblings, the pipeline it triggers must report "nothing to translate" rather than translating the siblings back). 5. Keep the WP host untouched for 30 days as fallback; watch Google Search Console and add Caddy 301s for any 404s it reports. ## Optional: nightly backups (restic → Hetzner Storage Box) ```sh sudo apt install -y restic sudo restic -r sftp:uXXXXXX@uXXXXXX.your-storagebox.de:backups init # then a root cron entry, e.g.: # 0 3 * * * restic -r sftp:... backup /srv /var/www --password-file /root/.restic-pw ``` ## 11. Members area (`/comunidad/`) The private area: roles and an internal board. It is the only part of the site that runs code to answer a request, and the only data on the server that is not already in git. ### 11.1 Register the OAuth application Gitea → **Site Administration → Integrations → Applications** → *Create new OAuth2 application*: - Name: `vienalatina-board` - Redirect URI: `https://vienalatina.com/comunidad/auth/callback` - **Leave "Confidential Client" TICKED.** That last point is the opposite of the Decap application in step 6.2, and the difference is worth understanding rather than memorising. Decap runs in the visitor's browser, where any secret would be readable by the visitor, so it has to be a public client using PKCE. The board runs on the server, so it can hold a secret and should — a confidential client is the stronger of the two. Save the **Client ID** and the **Client Secret**. ### 11.2 Optional: a token for creating accounts Without it, admins can add people who already have a Gitea login, and nothing else changes. With it, they can create the Gitea account from inside the members area and hand over a one-time password. Log in as a Gitea **site administrator** → Settings → Applications → *Generate New Token* → scope **admin (write)**. Understand what this token is before you create it: it can create and modify any account on the instance, including administrators. Anything that can read the board's environment — the compose file, `docker inspect`, a shell in the container — can use it. If you would rather not have that on the box, leave `GITEA_ADMIN_TOKEN` empty and create accounts in Gitea by hand. ### 11.3 Build and run ```sh cd ~/vienalatina docker build -t vienalatina/board:1 -f docker/board/Dockerfile . sudo mkdir -p /srv/board/data sudo cp -r infra/board/. /srv/board/ cd /srv/board sudo cp .env.example .env openssl rand -hex 32 # paste as BOARD_SECRET_KEY sudo nano .env # client id, secret, BOARD_OWNER, optional admin token sudo chown -R 1000:1000 /srv/board/data sudo docker compose up -d ``` `BOARD_OWNER` is applied once, to an empty database, and ignored from then on. It cannot be used to take ownership later: that is deliberate, because otherwise editing a file on disk would be a quieter route to the top than asking for it. Ownership moves only through *Transferir titularidad* inside the app. ### 11.4 Route it through Caddy Add to the `vienalatina.com` block in `/etc/caddy/Caddyfile` (already present in `infra/caddy/Caddyfile`): ``` @board path /comunidad /comunidad/* reverse_proxy @board 127.0.0.1:8080 ``` Then `sudo caddy validate --config /etc/caddy/Caddyfile && sudo systemctl reload caddy`. Both paths are matched on purpose: Flask redirects `/comunidad` to `/comunidad/`, and matching only the trailing-slash form lets the bare path fall through to the static site and 404. ### 11.5 Back it up — this part is not optional Everything else on this server is reproducible from the repository. The board's threads, comments and membership exist in exactly one place. ```sh sudo apt install -y sqlite3 crontab -e # 15 4 * * * /home/pablo/vienalatina/scripts/backup-board.sh >> /home/pablo/board-backup.log 2>&1 ``` The script uses SQLite's `.backup` rather than copying the file, because the database is live and in WAL mode — a plain `cp` can capture it missing its most recent commits. Test a restore before you rely on it: stop the container, gunzip a backup over `/srv/board/data/board.db`, start it again. ### 11.6 Who can do what | | Owner | Admin | User | |---|---|---|---| | Post, comment, edit own | ✓ | ✓ | ✓ | | Delete any post | ✓ | ✓ | — | | Edit someone else's post | — | — | — | | Pin and close threads | ✓ | ✓ | — | | Create users | ✓ | ✓ | — | | Create admins | ✓ | — | — | | Suspend a user | ✓ | ✓ | — | | Suspend an admin | ✓ | — | — | | Transfer ownership | ✓ | — | — | Nobody edits anyone else's words, administrators included. Taking a post down is visible to the person who wrote it; rewriting it is not, and an admin who could do that could leave a sentence attributed to a member who never wrote it. There is exactly one owner, and the database enforces it with a unique index rather than trusting the application to remember. The owner cannot be suspended or demoted by anyone, themselves included — to step down, transfer ownership to an admin. ### 11.7 Personal data Members' names, emails and writing are personal data under GDPR. - **Erasure:** the owner's *Eliminar* removes the member row entirely and reassigns their threads and comments to a tombstone shown as "Miembro eliminado", so conversations other people took part in stay readable. - **Access:** any member can download everything they have written from *Descargar mis datos*. - **Retention:** soft-deleted posts stay in the database until removed by hand. If you want a real retention limit, that is a `DELETE ... WHERE deleted_at <` in this same cron slot — and a decision to take deliberately, not by default. ### 11.8 The content editor (`/comunidad/contenido/`) Admins and the owner can write, edit and delete posts and pages from inside the members area, instead of Decap at `/admin/`. **Decap is still there and still works.** Nothing was removed. Use the new editor for a few real posts first; if something turns out to be missing, switch tabs. Removing Decap is a separate decision — see below. Nothing extra to install or configure: it runs in the container already serving `/comunidad/`, and commits through the Gitea OAuth application registered in §11.1. Two settings exist if the repository is ever renamed: ``` CONTENT_REPO=pablo/vienalatina # owner/repo inside Gitea CONTENT_BRANCH=main ``` **How publishing works.** The editor is a form that commits a file through Gitea's contents API. Gitea's webhook fires Woodpecker, and translate → build → deploy runs exactly as it does for a Decap commit — the pipeline cannot tell which editor wrote the file, which is what makes running both at once safe. **Commits are made with your own account**, not a bot's, so `git log` shows who wrote each post and Gitea's permissions apply unchanged. Your access token is stored in the members-area database (never in a cookie) and refreshed automatically; Gitea expires them after about an hour, and without refreshing, saving would start failing mid-afternoon for no visible reason. **Filenames follow the same rules Decap used**, because `scripts/translate.py` reads them: `YYYY-MM-DD-slug.es.md` for posts, `slug.es.md` for pages. A file whose name breaks that contract publishes in Spanish and is never translated, with nothing reported anywhere — which is why the tests import translate.py and run its parser over what the editor writes. **Two people editing one post** is a visible conflict, not a silent overwrite: the form carries the file's git sha and Gitea rejects a write whose sha has moved on. You are asked to reopen the post rather than losing the other edit. **Images** are committed as a second, separate commit before the post itself, so publishing with a picture produces two pipeline runs. Harmless, and the alternative — batching both into one commit via the git trees API — is considerably more code for something nobody sees. **What it deliberately does not do:** rich-text editing (markdown with a preview button instead), a media library, drafts, or editing the generated German and Portuguese files. Those stay the pipeline's, and a hand-written translation is still frozen with `manual_translation: true`. #### Worth tightening later The OAuth application requests no explicit scope, so Gitea grants the default — full access to the account, which is more than the editor needs. Narrowing it to `read:user write:repository` is a one-line change in `apps/board/gitea.py`'s `authorize_url()`, but it invalidates existing authorisations: everyone has to approve the app again. Worth doing while the member list is short, and worth testing on a throwaway account first, since a wrong scope string breaks sign-in for everybody. #### Removing Decap, once you are confident Not urgent — leaving it costs a folder and one `wget` in the pipeline: 1. `rm -rf static/admin/` 2. Delete the `wget … decap-cms.js` line from `.woodpecker.yml` 3. Delete the `decap-cms` OAuth application in Gitea