The command tree lives in Go, in complete.go, next to the commands it describes: the hidden __complete subcommand is handed the words typed so far and answers with what may follow the last of them. The zsh function installed alongside the binary does nothing but pass the line in and hand the answer back, so it needs no change when a command is added, and it cannot describe a grammar the tool no longer has. Two rules hold throughout: - Completion never writes. It reads through completeValues, which opens the database read-only, and not through openDB, which would create it from schema.sql and run migrate() on every call. Checked: after repeated completions the mtime and size of mail.db are unchanged and no -wal or -shm file appears beside it. - Completion never fails out loud. Every error ends as an empty list, and __complete is dispatched before the root check, so as an unprivileged user the structure still completes, the values stay empty, nothing reaches stderr and the status is 0. The values come out of the database, so only what exists is offered: `user enable` lists the locked mailboxes and `user disable` the unlocked ones, `alias del <source>` only the targets of that alias, `sieve edit <address>` that mailbox's scripts via doveadm, and `lang allow` the languages Rspamd has a model for, minus those already on the line. For a path argument the answer is the single line ":files", which hands over to zsh's own file completion. Narrowing the answer down to what has been typed is left to the shell rather than done in Go, so that the matcher-list styles keep working - completing "MARTIN@" to "martin@example.com" is zsh's business, and a filter here would defeat it. Two details on the shell side are worth recording, both found by driving a real interactive zsh through a pseudo-terminal rather than by reading: - The binary is located with `whence -p mailctl`, not through $commands. That parameter is not populated inside a completion function, so the lookup yields nothing and every candidate list silently comes back empty. - zsh writes "--" between a value and its description. The function sets list-separator to a single hyphen, scoped to mailctl's own context so no other completion changes, and only when nothing has been set for it already. `make install` now also puts the function in /usr/local/share/zsh/site-functions. The installer needs no change for it: stage 8 already builds through `make install`. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
mailserver
A complete mail server on Debian 13, administered entirely from the terminal.
Postfix accepts and sends, Dovecot stores and serves, Rspamd filters and signs.
Domains, mailboxes, aliases and sender lists live in one SQLite file that
both services read directly — changes take effect at once, with no restart.
The whole thing is operated through a single tool: mailctl.
No web interface. Nothing that opens ports by itself at night.
mailctl user add martin@example.com -g -q 5G
mailctl blacklist add '@*facebook*'
mailctl status
What is in it
| Component | Job |
|---|---|
| Postfix 3.10 | SMTP: acceptance (25) with postscreen, submission by our own users (587/465), sending with DANE |
| Dovecot 2.4 | IMAP (143/993), delivery via LMTP, Sieve, ManageSieve (4190), quotas |
| Rspamd 3.12 | spam filter as a milter, Bayes, greylisting, DKIM and ARC signing |
| Redis | storage for Bayes, greylisting and ratelimit |
| unbound | local validating resolver — a prerequisite for DNSBL and DANE |
| nftables | packet filter, default policy drop |
| fail2ban | bans repeated failed logins, reading the systemd journal |
| certbot | certificate from Let's Encrypt, renews itself |
| mailctl | the administration tool, in Go, with no runtime dependencies |
Spam detection in four stages: postscreen fends off botnets before a process is even created; greylisting from a score of 4; Rspamd scores SPF, DKIM, DMARC, blocklists, structure, language and the statistical filter; Sieve files the result into Junk. Rejection only starts at 15 points, and then with an error message — never a silent delete.
Quick start
These have to be in place first: a static A record pointing at the server, a PTR record for the same name, outbound port 25 unblocked. Without those three there is no point — details in docs/installation.md.
If the host sits behind a firewall of its own, section 2 of that document lists every port that has to be permitted — inbound and outbound. The outbound half is the one that gets forgotten: port 25 for sending, and DNS on UDP and TCP 53 out to the whole internet, because the local resolver does its own recursion.
git clone https://git.fhi.mpg.de/mike/mailserver.git
cd mailserver
cp install/mailserver.conf.example install/mailserver.conf
$EDITOR install/mailserver.conf # MAILHOST, MAILDOMAIN, SSH_PORT
sudo install/mailserver-install
Afterwards the script prints the DNS records still missing, ready to copy.
The one value where a mistake hurts:
SSH_PORT. The firewall lets exactly that port in. The script checks that ansshdreally is listening there and asks if not — even so, keep a second SSH session open during the installation.
Layout of the repository
install/
mailserver-install installation script, ten stages, repeatable
verify-templates compares config/ with the running server
mailserver.conf.example site data
config/ every configuration file, with placeholders
postfix/ dovecot/ rspamd/ unbound/ fail2ban/ systemd/
nftables.conf mailserver/schema.sql
src/mailctl/ sources of the administration tool (Go)
complete.go the command tree behind Tab completion
_mailctl zsh function that asks the tool for candidates
bin/mailbackup daily backup of the database and the keys
docs/
installation.md from Debian to the first message, migration included
operations.md operating manual: day-to-day, spam filter, troubleshooting
The placeholders in config/ are @@MAILHOST@@, @@MAILDOMAIN@@,
@@SERVER_IP@@ and @@SSH_PORT@@. The installer fills them in;
install/verify-templates factors them back out again for comparison.
mailctl
One tool, all in the terminal. mailctl help shows the full list.
domain add|list|del domains; the DKIM key is created automatically
user add|list|del|passwd|quota mailboxes, passwords, quotas
enable|disable
alias add|list|del forwardings, catch-all included
sieve list|edit|test|del personal rules per mailbox
lang allow|list|del|test language filter
blacklist|whitelist add|list block senders, or always let them through
del|test
dns <domain> every DNS record this domain needs
check <domain> verifies they are published
status services, totals, queue, certificate
queue [-f] the mail queue
Block and allow lists take wildcards: @*facebook* hits every sender whose
domain contains facebook, martin@* every Martin anywhere. Where they overlap,
the allow entry wins.
Build it with the Go from Debian 13:
cd src/mailctl && make check && sudo make install
The binary is statically linked (CGO_ENABLED=0, SQLite driver in pure Go) and
needs no libraries from the system.
Tab completion comes out of the tool itself. mailctl __complete is handed the
words typed so far and answers with what may follow the last of them; the
command tree and the providers behind its values live in complete.go, next to
the commands they describe. make install puts a generic zsh function in
/usr/local/share/zsh/site-functions/_mailctl that does nothing but pass the
line in and hand the answer back, so it needs no change when a command is
added.
The values come from the database, so only what exists is offered: mailctl user del <Tab> lists the mailboxes that are there, mailctl user enable <Tab>
only the locked ones, mailctl sieve edit <address> <Tab> that mailbox's
scripts. Completing opens the database read-only and never creates or migrates
it.
Provenance and limits
This was extracted from a running server, not designed on a drawing board. Every configuration file is commented, and the comments do not explain what is written there but why — including the cases where the obvious route did not work. The chapter Pitfalls in the operating manual collects the most expensive of them.
It was verified against exactly one setup: Debian 13.6, Dovecot 2.4.1, Rspamd
3.12.1, Postfix 3.10, on amd64. arm64 needs no changes — every package
exists, mailctl compiles unchanged, and Rspamd keeps its regex acceleration
through Vectorscan; see docs/installation.md, section
- In particular:
- Dovecot 2.4 has a different configuration language from 2.3. On a system
with Dovecot 2.3,
config/dovecot/dovecot.confwill not run. Older guides found on the net do not apply either. - IPv6 is not set up. The original server had none. Anyone using IPv6 has
to extend
inet_protocols, unbound and nftables accordingly — and then also publish an AAAA record and a second PTR, or it does more harm than good. - No webmail client is included. Deliberately: the requirement was administration and access through terminal and mail client only.
Documentation, comments and identifiers are in English.