The state file is intent -- what this installer wrote down that it did. The machine is reality. They part company more often than is comfortable: a container stopped by hand, a deployment copied from somewhere else, an installation made by an older version, a service removed with the runtime directly. Reporting either one as though it were the other is worse than reporting nothing, because the operator believes it. So there are two readings now, shown side by side. inbuxa status what is installed, what is running, where they disagree It exits non-zero when they disagree, so a machine can be asked in a script whether it still matches itself. And export no longer replays the state file. It reads the deployment -- which services the compose file declares, which are up, the mail host written into the server's hostname and the domain under it -- and uses intent only for the shapes, which the machine cannot tell you. A deployment with no state file at all still describes itself, which matters because that is exactly the machine someone wants to draw: the one that was set up before any of this existed. Sixteen checks, on Debian 13 and Rocky 9, including the two that are the point: a webmail stopped by hand is reported stopped and called out, and a deployment with the state file deleted still exports a file that plan reads back and finds nothing to do about.
97 lines
4.9 KiB
Markdown
97 lines
4.9 KiB
Markdown
# inbuxa-installer
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One program that installs the **inbuxa** suite on the machine you run it on:
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the mail server, the administration console and the webmail, each as a
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container or on the host, in any mixture.
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inbuxa survey what this machine is, as the installer sees it
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inbuxa install --dry-run … what would happen, before any of it does
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inbuxa install … do it
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It only ever installs here. A second machine runs it too, and `inbuxa join`
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points that machine at a server already running elsewhere.
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Linux only, and it says so on any other system rather than reporting a
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machine that does not exist. Debian, Red Hat and Arch families, and the
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derivatives people run: Ubuntu, Fedora, Rocky, CentOS, CachyOS. It uses
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whichever container runtime the distribution ships -- docker where there is
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one, podman on the Red Hat family -- and refuses a shape the machine cannot
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deliver, with the reason.
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## What works today
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This is early. What is built:
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- **`survey`** -- the machine's facts: distribution, init, whether Docker is
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usable *by this user*, Node's version, which of the suite's ports are free
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and what holds the ones that are not, memory, disk, and whether an install
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is already recorded here. It changes nothing.
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- **`install --dry-run`** -- the whole plan: every file, unit, container,
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port, DNS record and credential, and a refusal with a reason when the
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machine cannot carry out what was asked.
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- **`deps`** -- what a shape needs that this machine has not got, and, with
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`--install`, the doing of it: the Docker daemon from the distribution's own
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archive, the Compose plugin and Node from their official builds, both
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pinned by version and checked against a checksum in the source before
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anything is put in place. `install --install-deps` does the same as part of
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a run. A missing dependency is an offer, not a refusal.
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- **`install --yes`** -- carries the plan out, for container shapes: writes
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the deployment, fetches the images, brings the mail server up in bootstrap
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mode with a credential that exists only for that step, completes bootstrap,
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brings the rest up without it, exempts the front ends from the auto-ban,
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creates the first mailbox, writes `credentials.txt` and `dns.zone`, and
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then checks that all three answer.
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- **`plan -f` / `apply -f` / `export`** -- a whole installation described in
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one file, however many machines. Each machine acts on its own part and
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prints the command to run on the others; it never reaches them. `plan`
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diffs the file against what is actually installed here and changes
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nothing; `apply` converges to it, adding and removing components;
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`export` writes the file from what is already here.
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- **`status`** -- what is installed, what is running, and where those two
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disagree: a container stopped by hand, or a deployment nothing recorded
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installing. It exits non-zero when they disagree, so a machine can be
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asked in a script whether it still matches itself.
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Not built yet: host installs, the terminal interface, `join`, `status`,
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`upgrade`, `uninstall`. The design is in the inbuxa specification (§6.1 and
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the installer draft); the phases are there too.
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inbuxa install --local --domain example.test --install-deps --yes
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is the shortest thing that works today: the whole suite on loopback, with no
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DNS and no certificates, on a machine that starts with nothing. Without
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`--local` it takes the real ports, puts Caddy in front and obtains
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certificates -- which `e2e/cases/install-public.sh` proves against a private
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CA, with no internet and no public name involved.
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## Building and testing
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go build ./cmd/inbuxa
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The installer writes units, creates users and takes ports 25 and 443, so it
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is tested on a throwaway virtual machine rather than on anybody's desk:
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e2e/vm/up.sh a Debian 13 machine, in qemu, as you
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DISTRO=fedora e2e/vm/up.sh or fedora, rocky9, ubuntu2404, arch, debian12
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e2e/vm/run.sh e2e/cases/survey.sh what it says about a machine
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e2e/vm/run.sh e2e/cases/deps.sh the offer, and taking it
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e2e/vm/run.sh e2e/cases/install-local.sh a whole suite, and signing in to it
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e2e/vm/run.sh e2e/cases/install-public.sh the same with real ports and certificates
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e2e/vm/run.sh e2e/cases/topology.sh growing and shrinking from a file
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e2e/vm/run.sh e2e/cases/status-export.sh intent against reality, and the file
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e2e/vm/down.sh remove it
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Each case starts from a copy of the machine taken when it was new, so a run
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is free to break it and a failure is the installer's rather than the last
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run's leftovers. `e2e/vm/up.sh` needs qemu, KVM and xorriso; nothing needs
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root on your machine.
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## License
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AGPL-3.0-or-later. Some of this began as [ihasmail-oneshot], which is ours
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and under the same license.
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[ihasmail-oneshot]: https://git.coffeylabs.org/inbuxa/ihasmail-oneshot
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