Same structure as the bitmessage and bitcoind repositories. The notes carry what the scripts cannot say for themselves: that the first certificate is a self-signed placeholder and stays one if issuance fails, that a refused installation is reported but cannot be repaired, that the scripts are sourced rather than executed so working directory and set -e are inherited, and that a stop during issuance can outlast docker's grace period.
169 lines
8.6 KiB
Markdown
169 lines
8.6 KiB
Markdown
# Intro
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> Русская версия: [README.ru-RU.md](README.ru-RU.md)
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[Certbot](https://certbot.eff.org/) is the EFF client for [Let's Encrypt](https://letsencrypt.org/): it obtains and renews free TLS certificates.
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Certbot running in a docker container as a renewal loop, paired with the [haproxy](https://git.bitdeals.org/private/haproxy) container it keeps supplied with a certificate.
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This repository covers the docker deployment only.
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# Usage
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The container is not a one-shot command. Its default command is a loop that runs
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the renewal script, sleeps 12 hours, and repeats — so it obtains the certificate
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on its first start and keeps it fresh from then on.
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Each pass does four things, one script apiece:
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|Script|What it does|
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|:--|:--|
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|`entrypoint.sh`|The loop itself, and PID 1 of the container. Runs a pass, sleeps 12 hours, repeats; a failed pass is reported and retried rather than ending the loop|
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|`1-renew-cert.sh`|The start of a pass. Renews an existing certificate, or hands over to `0-create-cert.sh` when there is none yet|
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|`0-create-cert.sh`|First run: writes a self-signed placeholder so HAProxy can bind 443, waits for HAProxy, then requests the real certificate|
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|`2-concatenate-cert.sh`|Joins `fullchain.pem` and `privkey.pem` into the single `site.pem` HAProxy expects|
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|`3-update-haproxy-cert.sh`|Installs `site.pem` into the *running* HAProxy over its runtime API — no restart, no dropped connections|
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Validation is **HTTP-01 on port 380**. Certbot's own standalone server listens
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there inside the container, and HAProxy forwards `/.well-known/acme-challenge/`
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to it from the public port 80. Nothing else may reach 380.
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Let's Encrypt requires the domain's public A/AAAA DNS records to point at this
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machine, and port 80 to be reachable from the internet.
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## docker-compose
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```yaml
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services:
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certbot:
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build:
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context: https://git.bitdeals.org/private/certbot.git
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dockerfile: ./docker/Dockerfile
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image: registry.bitdeals.org/certbot
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restart: unless-stopped
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environment:
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- CERTBOT_DOMAIN=example.org
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- CERTBOT_EMAIL=admin@example.org # optional, for expiry notices
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volumes:
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- certificates:/etc/certificates # shared with haproxy
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- letsencrypt:/etc/letsencrypt # account key, certificates, renewal config
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- letsencrypt_work:/var/lib/letsencrypt
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volumes:
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certificates:
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letsencrypt:
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letsencrypt_work:
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```
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`certificates` is the same volume HAProxy mounts read-only; this container is
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the one that writes it.
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## docker cli
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```sh
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docker run -d \
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-e CERTBOT_DOMAIN=example.org \
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-v certificates:/etc/certificates \
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-v letsencrypt:/etc/letsencrypt \
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-v letsencrypt_work:/var/lib/letsencrypt \
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registry.bitdeals.org/certbot
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```
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The renewal loop is the image's `CMD`, and the base image's `certbot` entrypoint
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is reset, so anything after the image name replaces the loop outright — a one-off
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command against the same state needs no `--entrypoint`:
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```sh
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docker run --rm \
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-v letsencrypt:/etc/letsencrypt \
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-v letsencrypt_work:/var/lib/letsencrypt \
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registry.bitdeals.org/certbot certbot certificates
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```
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## build and publish
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A push to `main` builds and publishes the image
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(`.gitea/workflows/build.yaml`), tagging it three ways: `<version>.<sha7>` to
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deploy by, `<version>` to read, and `latest` for compose and Watchtower. A
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weekly cron rebuilds from the same sources. By hand, when the registry
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credentials are at hand:
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```sh
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docker build . --file docker/Dockerfile --tag registry.bitdeals.org/certbot
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docker push registry.bitdeals.org/certbot
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```
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**The build context is the repository root**, not `docker/`: the Dockerfile
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copies `./docker/scripts/`, so a context of `./docker` cannot see it and the
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build fails on the `COPY`.
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# Parameters
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Container images are configured using parameters passed at runtime.
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|Parameter|Function|
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|:--------|:-------|
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|-e CERTBOT_DOMAIN|The domain to certify. Default: empty — no certificate is requested and the site keeps the self-signed placeholder, silently. One domain only; the scripts pass a single `-d`|
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|-e CERTBOT_EMAIL|Address for Let's Encrypt expiry notices. Default: empty, which registers with `--register-unsafely-without-email` and leaves you without warnings — see Notes|
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|-v /etc/certificates|Shared with HAProxy. Holds `site.pem`: the concatenated certificate and private key HAProxy binds to|
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|-v /etc/letsencrypt|Certbot's config directory: the ACME account key, the issued certificates and the renewal configuration. Losing it means re-registering and re-issuing|
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|-v /var/lib/letsencrypt|Certbot's work directory. The base image declares it a `VOLUME`, so leaving it unnamed creates a fresh anonymous volume on every container creation|
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|-p 380|ACME HTTP-01 challenge port. Internal: HAProxy proxies to it. Publishing it to the host is not needed and not wanted|
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# Notes
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- **Without an email address there are no expiry warnings.** An empty
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`CERTBOT_EMAIL` registers with `--register-unsafely-without-email`: if renewal
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starts failing, nothing tells you until the certificate expires. Monitor the
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certificate externally, or set the variable.
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- **The first certificate is self-signed, and browsers will say so.** HAProxy
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cannot start without `site.pem`, so `0-create-cert.sh` writes a placeholder
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before doing anything else. It is replaced as soon as the real certificate is
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issued — but if issuance fails, the placeholder is what the site keeps
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serving, with no error anywhere but the container log.
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- **The private key reaches HAProxy over a unix socket, not the network.**
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`3-update-haproxy-cert.sh` pipes the whole of `site.pem` into HAProxy's
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runtime API — an unauthenticated `level admin` channel — so the volume holding
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`admin.sock` must be shared with haproxy and with nothing else. A TCP port
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would have been reachable by every container on a shared network, and docker
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networks have no per-port rules. See the runtime-API note in the
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[haproxy README](https://git.bitdeals.org/private/haproxy).
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- **A refused installation is reported, not silently passed over.** The runtime
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API answers a refusal in the reply text and still closes cleanly, so socat's
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exit status says nothing; `3-update-haproxy-cert.sh` matches the replies to
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`set ssl cert` and `commit ssl cert` instead, and stops at the first one that
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is not an acknowledgement. What it cannot do is repair anything — `site.pem`
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on the volume is correct either way, so a refusal means the *running* HAProxy
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is still on the previous certificate until it restarts. The message says so.
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- **Renewal is pushed on every pass, not on renewal.** The script concatenates
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and re-installs whether or not `certbot renew` actually did anything, twice a
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day. Harmless, but it means the "certificate updated" path is exercised
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constantly and a genuine renewal looks like every other pass. Certbot's own
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`--deploy-hook` is the mechanism built for this.
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- **`site.pem` is always replaced by an atomic rename**, on both the placeholder
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and the renewal path. HAProxy reads that file at start-up, and a plain
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redirect into it leaves a window in which the file on the volume is a
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truncated PEM — which is a certificate HAProxy refuses to start with.
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- **A stop during issuance can outlast docker's grace period.** A POSIX shell
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runs a trap only once the foreground command returns, so a SIGTERM arriving
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while `certbot certonly` is talking to Let's Encrypt is held until that call
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finishes — past the 10 seconds `docker stop` allows by default, after which
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the container is killed mid-issuance. Nothing is corrupted (the state under
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`/etc/letsencrypt` survives and the next pass finishes the job), but set
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`stop_grace_period: 60s` on the service if a clean stop matters. The sleep
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between passes is interruptible and reacts in milliseconds.
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- **The scripts are sourced, not executed** (`.` rather than a subprocess), so
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the working directory, `set -e` and any variable one of them leaves behind is
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inherited by the next. That is why they address files absolutely and keep
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`cd` and `umask` inside subshells; keep new ones to the same rule.
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- **The container runs as root**, as the base image does — it needs to write
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`/etc/letsencrypt`. Nothing here drops privileges afterwards.
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- **The base image is unpinned.** `FROM certbot/certbot:latest`, rebuilt weekly
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by cron, means a new certbot release reaches the registry — and through
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Watchtower, production — without anyone triggering a build. Pin a version tag
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for reproducible builds.
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- **Let's Encrypt enforces rate limits.** Repeated failed issuance against the
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same domain counts against them; test changes against
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`--server https://acme-staging-v02.api.letsencrypt.org/directory` before
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letting a loop retry every 12 hours.
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