nix-config/README.md

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---
gitea: none
title: Flockige Infrastruktur deklarativ
include_toc: yes
lang: en
---
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# C3D2 infrastructure based on NixOS
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## Setup
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## Enable nix flakes user wide
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Add the setting to the user nix.conf. Only do this once!
```bash
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echo 'experimental-features = nix-command flakes' >> ~/.config/nix/nix.conf
```
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## Enable nix flakes system wide (preferred for NixOS)
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add this to your NixOS configuration:
```nix
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nix.settings.experimental-features = "nix-command flakes";
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```
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### The secrets repo
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is deprecated. Everything should be done through sops.
If you don't have secrets access ask sandro or astro to get onboarded.
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## Deployment
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### Deploy to a remote NixOS system
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For every host that has a `nixosConfiguration` in our Flake, there are two scripts that can be run for deployment via ssh.
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- `nix run .#HOSTNAME-nixos-rebuild switch`
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Copies the current state to build on the target system.
This may fail due to resource limits on eg. Raspberry Pis.
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- `nix run .#HOSTNAME-nixos-rebuild-local switch`
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Builds everything locally, then uses `nix copy` to transfer the new NixOS system to the target.
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To use the cache from hydra set the following nix options similar to enabling flakes:
```
trusted-public-keys = nix-serve.hq.c3d2.de:KZRGGnwOYzys6pxgM8jlur36RmkJQ/y8y62e52fj1ps=
trusted-substituters = https://nix-serve.hq.c3d2.de
```
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### Checking for updates
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```shell
nix run .#list-upgradable
```
![list-upgradable output](doc/list-upgradable.png)
Checks all hosts with a `nixosConfiguration` in `flake.nix`.
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### Update from [Hydra build](https://hydra.hq.c3d2.de/jobset/c3d2/nix-config#tabs-jobs)
The fastest way to update a system, a manual alternative to setting
`c3d2.autoUpdate = true;`
Just run:
```shell
update-from-hydra
```
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### Deploy a MicroVM
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#### Build a microvm remotely and deploy
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```shell
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nix run .#microvm-update-HOSTNAME
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```
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#### Build microvm locally and deploy
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```shell
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nix run .#microvm-update-HOSTNAME-local
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```
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#### Update MicroVM from our Hydra
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Our Hydra runs `nix flake update` daily in the `updater.timer`,
pushing it to the `flake-update` branch so that it can build fresh
systems. This branch is setup as the source flake in all the MicroVMs,
so the following is all that is needed on a MicroVM-hosting server:
```shell
microvm -Ru $hostname
```
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## Cluster deployment with Skyflake
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### About
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[Skyflake](https://github.com/astro/skyflake) provides Hyperconverged
Infrastructure to run NixOS MicroVMs on a cluster. Our setup unifies
networking with one bridge per VLAN. Persistent storage is replicated
with Cephfs.
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Recognize nixosConfiguration for our Skyflake deployment by the
`self.nixosModules.cluster-options` module being included.
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### User interface
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We use the less-privileged `c3d2@` user for deployment. This flake's
name on the cluster is `config`. Other flakes can coexist in the same
user so that we can run separately developed projects like
*dump-dvb*. *leon* and potentially other users can deploy Flakes and
MicroVMs without name clashes.
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#### Deploying
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**git push** this repo to any machine in the cluster, preferably to
Hydra because there building won't disturb any services.
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You don't deploy all MicroVMs at once. Instead, Skyflake allows you to
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select NixOS systems by the branches you push to. **You must commit
before you push!**
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**Example:** deploy nixosConfigurations `mucbot` and `sdrweb` (`HEAD` is your
current commit)
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```bash
git push c3d2@hydra.serv.zentralwerk.org:config HEAD:mucbot HEAD:sdrweb
```
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This will:
1. Build the configuration on Hydra, refusing the branch update on
broken builds (through a git hook)
2. Copy the MicroVM package and its dependencies to the binary cache
that is accessible to all nodes with Cephfs
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3. Submit one job per MicroVM into the Nomad cluster
*Deleting* a nixosConfiguration's branch will **stop** the MicroVM in Nomad.
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#### Updating
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**TODO:** how would you like it?
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#### MicroVM status
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```bash
ssh c3d2@hydra.serv.zentralwerk.org status
```
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### Debugging for cluster admins
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#### Nomad
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##### Check the cluster state
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```shell
nomad server members
```
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Nomad *servers* **coordinate** the cluster.
Nomad *clients* **run** the tasks.
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##### Browse in the terminal
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[wander](https://github.com/robinovitch61/wander) and
[damon](https://github.com/hashicorp/damon) are nice TUIs that are
preinstalled on our cluster nodes.
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##### Browse with a browser
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First, tunnel TCP port `:4646` from a cluster server:
```bash
ssh -L 4646:localhost:4646 root@server10.cluster.zentralwerk.org
```
Then, visit https://localhost:4646 for for full klickibunti.
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##### Reset the Nomad state on a node
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After upgrades, Nomad servers may fail rejoining the cluster. Do this
to make a *Nomad server* behave like a newborn:
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```shell
systemctl stop nomad
rm -rf /var/lib/nomad/server/raft/
systemctl start nomad
```
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## Secrets management
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### Secrets Management Using `sops-nix`
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#### Adding a new host
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Edit `.sops.yaml`:
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1. Add an AGE key for this host. Comments in this file tell you how to do it.
2. Add a `creation_rules` section for `host/$host/*.yaml` files
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#### Editing a hosts secrets
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Edit `.sops.yaml` to add files for a new host and its SSH pubkey.
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```bash
# Get sops
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nix develop
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# Decrypt, start en EDITOR, encrypt
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sops hosts/.../secrets.yaml
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# Push
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git commit -a -m Adding new secrets
git push origin
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```
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### Secrets management with PGP
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Add your gpg-id to the .gpg-id file in secrets and let somebody reencrypt it for you.
Maybe this works for you, maybe not. I did it somehow:
```bash
PASSWORD_STORE_DIR=`pwd` tr '\n' ' ' < .gpg-id | xargs -I{} pass init {}
```
Your gpg key has to have the Authenticate flag set. If not update it and push it to a keyserver and wait.
This is necessary, so you can login to any machine with your gpg key.
## Laptops / Desktops
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This repository contains a NixOS module that can be used with personal machines
as well. This module appends `/etc/ssh/ssh_known_hosts` with the host keys of
registered HQ hosts, and optionally appends `/etc/hosts` with static IPv6
addresses local to HQ. Simply import the `lib` directory to use the module. As
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an example:
```nix
# /etc/nixos/configuration.nix
{ config, pkgs, lib, ... }:
let
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# Using a flake is recommended instead
c3d2Config = builtins.fetchGit { url = "https://gitea.c3d2.de/C3D2/nix-config.git"; };
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in {
imports = [
"${c3d2Config}/modules/c3d2.nix"
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];
c3d2 = {
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...
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};
}
```
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## Server zfs setup
For the other steps follow https://nixos.org/manual/nixos/unstable/index.html#sec-installation
```
sgdisk --zap-all /dev/sda
parted /dev/sda -- mklabel gpt
parted /dev/sda -- mkpart primary 512MB -40GB
parted /dev/sda -- mkpart primary linux-swap -40GB 100%
parted /dev/sda -- mkpart ESP fat32 1MB 512MB
parted /dev/sda -- set 3 esp on
mkswap -L swap /dev/sda2
mkfs.fat -F 32 -n boot /dev/sda3
pool create \
-o ashift=12 \
-o autotrim=on \
-R /mnt \
-O acltype=posixacl \
-O canmount=off \
-O compression=zstd \
-O dnodesize=auto \
-O normalization=formD \
-O relatime=on \
-O xattr=sa \
-O mountpoint=/ \
hydra /dev/sda1
zfs create -o canmount=on -o mountpoint=/ hydra/nixos
zfs create -o canmount=on -o mountpoint=/nix hydra/nixos/nix
zfs create -o canmount=on -o atime=off -o mountpoint=/nix/store hydra/nixos/nix/store
zfs create -o canmount=on -o mountpoint=/nix/var hydra/nixos/nix/var
zfs create -o canmount=off -o mountpoint=none hydra/data
zfs create -o canmount=on -o mountpoint=/etc hydra/data/etc
zfs create -o canmount=on -o mountpoint=/var hydra/data/var
zfs create -o canmount=on -o mountpoint=/var/backup hydra/data/var/backup
zfs create -o canmount=on -o mountpoint=/var/lib hydra/data/var/lib
zfs create -o canmount=on -o mountpoint=/var/log hydra/data/var/log
zfs create -o canmount=on -o mountpoint=/home hydra/data/home
zfs create -o canmount=off -o mountpoint=none -o refreservation=1G hydra/reserved
```