Ergo keeps history in RAM by default, so it is lost on every restart -- including the ones this stack's updater performs. HISTORY now selects a backend at first deploy: sqlite (default, a file beside ircd.db, no extra container), postgres (a pinned container via docker-compose.postgres.yml, loopback-only, POSTGRES_PASSWORD_FILE so no secret lands in .env), or off. Both SQL backends need Ergo 2.18.0+, which deploy.sh enforces. HISTORY_EXPIRE (default 30d) sets retention, because upstream's 1w expire-time DELETES from persistent storage -- persistence with the shipped default would buy only a week. Ergo opens the history backend only at startup and, unlike MySQL, has no "after launching the server" guard for sqlite/postgresql: a rehash that enables one reports success and then silently discards every message. So `ergoctl history` restarts, and `ergoctl edit` detects a backend change and refuses to apply it by rehash. The config validator runs with no network by design, so it neutralises postgresql in its copy and reachability is checked separately. Audit fixes (six lenses over first-deploy, runtime, lifecycle, security, docs): - SECURITY (blocker): ircd/ is writable by the container uid while the 15-minute cert sync and every ergoctl config edit run as root. cp/install/> follow a symlink, so code execution in Ergo could redirect a root write onto any host file. All such writes now stage under $STACK_DIR (0700 root) and land via mv (rename(2) replaces a symlink instead of following it); root reads use cp -P or refuse. Regression-tested with real symlinks. - deploy.sh no longer swaps the image when ERGO_TAG changes on a deployed stack (that bypassed pre-flight, snapshot, user warning and rollback); it points at `TARGET_VERSION=... ergoctl update update`. - restore was lossy and could lock you out: it now snapshots the current config as well as the database, restores message history, re-points the postgres password and re-hashes the local admin password into the restored config, and validates before starting. - `install -d -m` re-modes existing directories: `ergoctl backup /var/backups` no longer chmods it 0700 root, and the updater no longer re-modes /var/log (0775 root:syslog on Debian, which rsyslog needs). - The admin oper password is printed only on a first run at a TTY, so it stays out of cloud-init serial-console logs. - A failed update is remembered, so the daily job stops repeating a disruptive warn/stop/swap/roll-back cycle every night; postgres readiness gates an update that would otherwise stop a healthy server it cannot restart. - certsync no longer sends "TLS recovered" for outcomes that synced nothing. - ergoctl history writes .env only after the restart is healthy, and returns 0. - CR/LF is stripped before IRC framing, so a multi-line argument cannot inject a second command; the ntfy token moves out of curl's argv. - ufw/firewalld are additive, so 6667 is now explicitly revoked when PLAINTEXT=0. - build.sh refuses to build a deploy.sh whose archive is missing a file the script reads -- the failure mode that would have shipped a stack aborting on every host. Docs corrected against the code throughout, including retention, the pre-connect account-registration default, encrypted-restore (AGE_IDENTITY), what a re-run really does to .env, and what the update log does and does not contain. Verified locally: all six suites pass (config render for each backend against the real 2.19.1 template, yaml/oper/version/env helpers, the IRC client against a fake server, and the audit fixes including the symlink escalation). Still not exercised on a Docker host: the containers, ACME issuance, cert sync and PostgreSQL itself. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
automations
Deployment and automation scripts for self-hosted, security-hardened
infrastructure. The host-provisioning scripts run on Alpine, Debian, and
Alma Linux (every distro difference is gated in
scripts/oslib.sh); each Docker stack runs behind Caddy
with automatic Let's Encrypt TLS, orchestrated with Docker Compose.
About this repo. This started as years of personal notes and one-off scripts I'd accumulated running my own infrastructure. I worked with Claude to clean them up, make them consistent and multi-distro, and add some quality-of-life options — so friends can use them too, and build on them. I'm still working through my collection and adding more as I go, so expect this to keep growing. Treat it as a starting point: fork it, wire in your own domains/keys, and send improvements back. PRs and ideas welcome.
One command to run anything
curl -fsSL https://git.anomalous.dev/57_Wolve/automations/raw/branch/main/automations.sh \
| REPO_URL=https://git.anomalous.dev/57_Wolve/automations.git sh
Or, from a clone:
./automations.sh
Pipe it to sh, not bash — a stock Alpine box has busybox ash and no bash
at all. The launcher's prologue is POSIX sh: it installs git/bash for the
distro it finds itself on (apk / apt-get / dnf / yum), then re-execs itself
under bash. ./automations.sh from a clone does the same, so a bare Alpine
install needs nothing prepared by hand.
automations.sh opens a Gum wizard (auto-installed) that
lets you:
- Deploy on this host — pick any deployment or generic script and run it, prompting for the values it needs.
- Build artifacts locally — regenerate a deployment's self-contained
deploy.shand optionallyscpit to a target host.
Shared defaults (email, repo URL, SSH key source, backup recipient) come from
globals/ so you set them once.
Self-contained bundle (no repo access)
For hosts that shouldn't have repo/git access, package the whole repo into one self-extracting script and serve it from a webserver or a public Gitea release (the repo itself can stay private):
./build-bundle.sh # -> dist/automations-bundle.sh (HEAD)
./build-bundle.sh v1.2.0 # a specific tag
./build-bundle.sh worktree # current working tree
On the target host, download then run it (it extracts itself — it can't read a pipe, so download first):
curl -fsSLO https://your-host/automations-bundle.sh
sh automations-bundle.sh # launcher wizard
sh automations-bundle.sh bash scripts/setup-host.sh # run one script
SSH_PORT=2222 sh automations-bundle.sh bash scripts/harden-jumphost.sh
Like the launcher, the bundle's stub is POSIX sh and installs bash if the
host lacks it, so it runs on a bare Alpine box.
It extracts to INSTALL_DIR (default /opt/automations) and runs the launcher
or the command you pass. The payload excludes ignored files, so no secrets are
embedded.
Releases via Gitea Actions: pushing a vX.Y.Z tag runs
.gitea/workflows/release.yml, which builds the
bundle and attaches it to a release. Create a secret named TOKEN_GITEA
(a Gitea access token with write:repository) — note Gitea reserves the
GITEA_ prefix, so the secret can't be called GITEA_TOKEN. Adjust runs-on
to match your runner. Mark the release public and automations-bundle.sh is
fetchable without repo access.
Layout
The rule: generic, run-anywhere scripts live in scripts/; deployment-specific
files live under deployments/<name>/. Shared values live in globals/.
automations.sh # the launcher (one-liner entry point)
cloud-init/ # generic base + jumphost cloud-init (any of the 3 distros)
globals/ # shared assets: age-pubkey, authorized_keys, motd, globals.env
scripts/ # generic scripts (Alpine/Debian/Alma)
deployments/<name>/ # one folder per stack
scripts/ — generic (Alpine / Debian / Alma)
| Script | What it does |
|---|---|
setup-host.sh |
Set hostname per the naming schema (derives FQDN + Node ID) and render the shared MOTD with auto-computed border spacing. |
harden-ssh.sh |
SSH hardening: post-quantum hybrid KEX, fresh Ed25519 host keys, key-only auth, external SFTP subsystem, sshguard. |
harden-jumphost.sh |
Bastion hardening on top of harden-ssh: ssh-admins (shell) vs ssh-jumpers (ProxyJump-only) with a PermitOpen allow-list. |
harden-firewall.sh |
Deny-by-default host firewall: iptables on Alpine/Debian, firewalld on Alma/RHEL (set FW_BACKEND to override). Loopback, established, ICMP, SSH (configurable port) + registered ports; persisted natively (no boot hook). Same allow/deny/list/disable sub-commands on both. |
sshuser.sh |
Add/edit/remove SSH users on a hardened jump host (Gum TUI or CLI flags). Installed standalone as sshuser. |
ntfy-ssh-login.sh |
pam_exec hook that posts SSH logins to ntfy (user, source IP, key used, best-effort jump target), gated by group. Config: ssh-notify.conf.example. |
auto-update.sh |
Daily unattended package updates; reports (doesn't auto-jump) a new Alpine branch; reboot detection; ntfy summary. install/run/uninstall. |
oslib.sh |
OS-abstraction layer (detection, package manager, init system, SFTP path, hostname, boot hooks, native firewall persistence, sshguard, login notifier). Sourced, not run. One file holds every distro difference. |
lib.sh |
Launcher helpers (ensure_gum, load_globals, resolve_ssh_keys); sources oslib.sh. Not run directly. |
deployments/ — per stack
| Deployment | What it is | Depends on |
|---|---|---|
pocket-id |
OIDC provider (Caddy + Anubis PoW gate + Pocket-ID). | — |
beszel |
Server monitoring hub. OIDC via pocket-id (post-deploy). | pocket-id (OIDC, optional) |
headscale |
Self-hosted Tailscale control server, OIDC login. | pocket-id (OIDC) |
webfinger |
Serves /.well-known/webfinger for OIDC discovery; redirects the rest. |
pocket-id (issuer) |
squid |
SSL-bump caching forward proxy — static-content cache + TLS interception via a local CA. The exception: a forward proxy, not a Caddy/LE site. | — |
copyparty |
Portable file server — web UI/WebDAV behind Caddy, plus direct SFTP + FTPS. Ships a security-notices-aware updater. | — |
simplex |
SimpleX SMP + XFTP relay with Tor hidden services + encrypted backups. | globals/age-pubkey.txt |
openbao |
Hardened tape-encryption key store for Kanrisha (the LTO tape-archive system — separate repo/host). Exception: native TLS on the LAN, no Caddy/LE. raft storage, mlock, self-signed or Smallstep-ACME cert, manual/HSM unseal. | globals/age-pubkey.txt (backups) |
ergo |
IRC server (Ergo) with Caddy for Let's Encrypt + the websocket endpoint. Both containers use host networking (real client IPs for bans/cloaking; the host firewall applies). Persistent message history via SQLite (default) or an optional PostgreSQL container. Ships ergoctl (admin CLI) and a health-checked updater that also syncs Caddy's cert into Ergo. |
— |
Conventions
- Alpine + Docker Compose + Caddy/Let's Encrypt across every stack, with two
exceptions:
squid(a forward proxy with a local TLS-interception CA) andopenbao(a same-LAN secrets store with native TLS) — neither uses Caddy/LE.ergokeeps Caddy/LE but runs both containers in the host network namespace (IRC needs real client IPs), so it has no published ports. build.sh→deploy.sh: each stack'sbuild.shembeds itsdocker-compose.yml/Caddyfile/.env.exampleinto a single self-containeddeploy.sh(base64 tar.gz). That one file can bescp'd to a host and run on its own. Rebuild after editing the loose files. (simplex is the exception — it deploys viainstall-simplex.sh.)- Secrets live in
.env(generated on first deploy) andglobals/globals.env, both git-ignored. Only*.exampletemplates and public keys are committed. - Non-interactive: every
deploy.shhonorsSKIP_PROMPTS=1with values supplied via the environment — which is how the per-deploymentcloud-init.ymltemplates stand a stack up unattended.
Cloud-init
- Provision a host:
cloud-init/base.yml(hostname + MOTD + SSH hardening) orcloud-init/jumphost.yml(bastion). Distro-agnostic — they install prerequisites for whatever the image is, then run the scripts. - Stand up a stack: each deployment ships its own
cloud-init.yml(e.g.deployments/pocket-id/cloud-init.yml). These assume a fresh VM, so they harden SSH first (harden-ssh.sh,HARDEN_SSH=1by default) and then deploy the stack.
Fill in REPO_URL and the values at the top of the runcmd block, paste as
instance user-data, and the host configures itself on first boot.
Multi-OS notes
The host-provisioning scripts (setup-host, harden-ssh, harden-jumphost,
sshuser) and the nine Docker stacks (pocket-id, beszel, headscale, webfinger,
squid, copyparty, simplex, openbao, ergo) run on Alpine, Debian, and Alma. Distro differences live in
scripts/oslib.sh — package manager (apk/apt/dnf),
init system (OpenRC/systemd), sshd service name, the per-distro sftp-server
path, hostname, boot hooks, and the sshguard log source/backend.
simplex remains Alpine-targeted — it depends on awall and Tor hidden
services with Alpine-specific wiring, so it isn't part of the tri-distro set.
Host firewall
scripts/harden-firewall.sh installs a
deny-by-default baseline, with the backend chosen per family (override with
FW_BACKEND=iptables|firewalld):
- Alpine / Debian → iptables.
INPUTdrops everything except loopback, established/related, ICMP, and SSH on the configured port — plus any ports a deployment registers. - Alma / RHEL → firewalld (its native firewall). The default zone is already
deny-by-default; we strip the stock
ssh/cockpitservices, open SSH + registered ports, and let sshguard block via thesshguard-firewalldbackend (noINPUT → sshguardjump needed).
OUTPUT/egress stays open and FORWARD is left untouched, so Docker container
networking is unaffected. The harden scripts and cloud-init/base.yml /
jumphost.yml install it automatically (ENABLE_FIREWALL=1 by default).
- Configurable SSH port — read live from
sshd_config, so a bastion on2222is firewalled correctly with no extra flags. Restrict the source withFW_SSH_SOURCE=<cidr>; drop ping withFW_ALLOW_PING=0. - Native persistence, no boot hook — on iptables hosts the ruleset is saved
and restored by the distro's own package:
iptables+ip6tables(Alpine/OpenRC) oriptables-persistent(Debian); the saved ruleset carries theINPUT → sshguardjump. On firewalld hosts every change is--permanent, so it persists across reboot natively and sshguard manages its own blocks. - Scripted additions — deployments drop a rule file and re-apply:
or interactively:
printf '80/tcp\n443/tcp\n' > /etc/firewall/ports.d/mystack.rule /usr/local/sbin/firewall-applyharden-firewall.sh allow 443/tcp 51820/udp/allow web/deny 51820/udp/list. - Docker caveat — containers published with
-p(e.g. Caddy's 80/443) reach the host through nat/FORWARDand bypassINPUT, so the firewall neither blocks nor needs to open them; the per-stack rule files are belt-and-braces for any host-bound bind and self-documentation. The one stack that runs withnetwork_mode: host(ergo) binds on the host directly, so there the registered ports are the real gate. - Recovery —
harden-firewall.sh disableun-locks you: on iptables it flushes the rules and setsINPUTback toACCEPT(persisted); on firewalld it re-opens SSH (thesshservice + the configured port) and leaves firewalld running. A re-apply never drops the live SSH session — on iptables the established-connection accept is added before the policy flips toDROP, and firewalld reloads preserve established connections.
SSH login notifications
The harden scripts can install a pam_exec hook
(scripts/ntfy-ssh-login.sh) that posts every SSH
login to an ntfy topic. Enable it by passing NTFY_URL (and
optionally NTFY_TOKEN) when running harden-ssh.sh / harden-jumphost.sh, or
via the launcher / jumphost cloud-init. Each alert reports:
- the user and source IP,
- the SSH key they authenticated with (fingerprint, via
ExposeAuthInfo), - a region tag so you know which bastion fired it (derived from the host's
FQDN, e.g.
us-evi-1), - best-effort the next hop of a ProxyJump (see caveat below).
Filtering is by group: NOTIFY_GROUPS limits alerts to certain
groups/security levels, and NOTIFY_PRIORITY_MAP sets a per-group ntfy
priority. Config lives at /etc/ssh-notify.conf (mode 0600;
scripts/ssh-notify.conf.example documents
every key). A publish token is optional — leave it empty for a read-gated topic.
Jump-target caveat: a ProxyJump opens a direct-tcpip channel (no session), so the destination never reaches
pam_exec. The bastion only logs it atLogLevel VERBOSE/DEBUG;harden-jumphost.shsetsVERBOSEand the notifier parses the log best-effort. If the target isn't in the log it is simply omitted.
Daily updates
scripts/auto-update.sh keeps a host patched
unattended — ideal for an SSH-only bastion, where a routine upgrade can barely
break anything. harden-jumphost.sh schedules it by default (set
AUTO_UPDATE=0 to skip); harden-ssh.sh takes AUTO_UPDATE=1. It runs
daily via busybox crond (/etc/periodic/daily) on Alpine or a systemd
timer on Debian/Alma.
Each run:
- applies all in-branch package upgrades (
apk/apt/dnf); - reports a new Alpine branch (e.g. 3.21 → 3.22) by default — that
rewrites the repo branch, so it's opt-in. Set
ALLOW_RELEASE_UPGRADE=1to also apply it: it repoints/etc/apk/repositoriesto the newest stablevX.Y(neveredge), runsapk upgrade --available, and forces a reboot flag. Debian/Alma stay report-only; - detects when a reboot is needed (kernel/libc/openssl).
AUTO_REBOOTcontrols it:0= never (just flag),1= always,idle= only when no SSH connections are active — so a bastion reboots itself once the admins and ProxyJump tunnels have cleared, never mid-session.harden-jumphost.shdefaults the bastion toidle. A deferred reboot is tracked in/runand retried each day until it happens; - sends an ntfy summary (reusing
/etc/ssh-notify.conf).
Schedule it standalone with auto-update.sh install (or via the launcher), run
a pass now with auto-update.sh run, and preview safely with
DRY_RUN=1 auto-update.sh run.
License
MIT.