updates to make morph transparently available when building images
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README.md
75
README.md
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@ -26,6 +26,81 @@ In order to discover your network and configure hosts, this configuration manage
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* Proxmox running on the local host
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* Proxmox should have a local filesystem called hdd-fs
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## The Future (or how to not Proxmox)
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### Or how it works without the script
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Proxmox is not _at all_ a requirement for using this.
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Neither is Samba. They are requirements for the mkvirt function in shell.nix.
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This may be replaced or not used at all. The image created in result/nixos.img will boot on most hypervisors.
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After the image is created and booted, it must be morphed.
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The first step in morphing is making the machine resolveable. This is done with Samba but may be done with
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another DNS system. The key is that it must be resolveable _immediately_ after the record is created because
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morph then uses that record to find the machine. Reworking this to use IPs would require changing morph's
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defaults or explicitly setting the deployment target address to be something other than the hostname.
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After the host is resolveable, morph.
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### Interesting Places
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* `custom-image.nix`
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* nixos.img disk size, format, partition table, etc
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* `common/ssh.nix`
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* configure ssh package (such as `openssh_gssapi` vs `openssh`)
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* `common/users.nix`
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* the deploy user, ssh keys, shell, etc.
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* `functions/*.nix`
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* a function per file
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* load default.nix to load all functions by name in a set
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* `hosts/*`
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* hosts deployed via morph are pulled from here automatically
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* files in this folder should be informational only. they _do not_ return a function.
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* functionality which requires access to config or pkgs should be implemented in `profiles/` and loaded by name in imports.
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* `profiles/*`
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* profiles for describing machines of a certain class.
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* profiles may represent hardware such as `api` and `qemu-vm` or a configuration pattern such as `dhcp-server` or `base`.
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* the `base` profile is special in that it _should_ always be loaded. it is generally included by the hardware profile.
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* `shell.nix`
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* shell functions and configuration to build and deploy machines
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* `env_cascade`
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* discover domain, and realm config such as domain controller (samba) to send DNS updates to
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* sanitize config
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* returns env vars
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* `$DOMAIN`
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* domain name (from hostname -d), lowercase
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* `$REALM`
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* domain name (from hostname -d), uppercase
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* `$workgroup`
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* workgroup (first domain segment), lowercase
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* `$WORKGROUP`
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* workgroup (first domain segment), uppercase
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* `$DC`
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* lookup PTR of (lookup A of $DOMAIN)
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* this will find a domain controller in a "normal" domain such as is created by default in Samba
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* `env_name`
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* sanitize hostname
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* returns env vars
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* `$name` hostname, lowercase
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* `$NAME` hostname, uppercase
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* `samba-create-ipv4-records`
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* create DNS records
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* `wait-for-vm-ipv4`
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* wait for a VM to have an ipv4 address in a private subnet
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* `mkvirt`
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* `morph build`
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* get an unused VMID from Proxmox
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* create a new virt with discovered VMID
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* wait for IP
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* create DNS record with IP
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* morph deploy to single machine
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* `destroy-host`
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* removes hosts/$name.nix
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* removes DNS entry for $name.$DOMAIN
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NIX: https://www.nixos.org
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PVE: https://www.proxmox.com/en/proxmox-ve
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@ -1,6 +1,8 @@
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with builtins;
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{}:
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let
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myisoconfig = import ./custom-image-configuration.nix;
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myisoconfig = import ./hosts/_basic.nix;
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copyChannel = true;
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system = "x86_64-linux";
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3
hosts/.gitignore
vendored
Normal file
3
hosts/.gitignore
vendored
Normal file
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@ -0,0 +1,3 @@
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*.nix
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!_*.nix
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!default.nix
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@ -1,8 +1,10 @@
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{ nodes, config, pkgs, ... }: {
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{
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imports = [
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(toString ../profiles/qemu-vm)
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];
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config = {
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deployment.tags = [ ];
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#deployment.targetHost = "";
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#deployment.targetUser = "";
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#deployment.targetPort = "";
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};
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}
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@ -2,4 +2,12 @@ let _ = builtins.trace "${toString ./.}/default.nix"; in
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with builtins;
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with import (toString ../functions);
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import-folder {path = "${toString ./.}"; filenameMatch = ".*[.]nix"; filenameBadMatch = ".*_.*";}
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let hosts = import-folder {path = "${toString ./.}"; filenameMatch = ".*[.]nix"; filenameBadMatch = ".*_.*";};
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in
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{...}:
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mapAttrs (hostname: hostdef:
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{...}: hostdef
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) hosts
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@ -1,11 +1,12 @@
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with builtins;
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with import ./functions;
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let pkgs = import <nixpkgs> {};
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network = {
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inherit pkgs;
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description = "cascade";
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};
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hosts = import (toString ./hosts);
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hosts = import (toString ./hosts) {};
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in
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hosts // {
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@ -7,7 +7,7 @@
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imports = [ (toString ../base) ];
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config = {
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deployment.targetUser = "root";
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deployment.targetUser = lib.mkDefault "root";
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boot.initrd.availableKernelModules = [ "xhci_pci" "dwc3_pci" "usbhid" "usb_storage" "uas" "sd_mod" "sdhci_acpi" ];
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boot.initrd.kernelModules = [ ];
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boot.kernelModules = [ "kvm-intel" ];
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@ -2,13 +2,29 @@
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{
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imports = [
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(toString ../../common)
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<morph-options> # we include the options here to ensure that we can build with or without morph.
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# morph-lib must be NIX_PATH and point to the lib path of the morph that is being
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# used for deployment. This is done automatically with shell.nix.
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];
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config = {
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environment.systemPackages = with pkgs; [ bridge-utils ];
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programs.neovim.enable = true;
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programs.neovim.vimAlias = true;
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programs.neovim.viAlias = true;
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environment.binbash.enable = true;
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services.getty.autologinUser = "root";
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services.sshd.enable = true;
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networking.firewall.allowedTCPPorts = [ 22 ];
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system.stateVersion = "22.11";
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nix.nixPath = with pkgs; [
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"nixpkgs=/usr/src/nixpkgs"
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"home-manager=/usr/src/nixpkgs"
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"morph-options=${morph.lib}/options.nix"
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];
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};
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}
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@ -1,11 +1,12 @@
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{lib, ...}:
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{lib, config, ...}:
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with lib;
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{
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imports = [ (toString ../base) ];
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config = {
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deployment.targetUser = "root";
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deployment.targetUser = lib.mkDefault "root";
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cascade.bridge-interface = "ens18";
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fileSystems."/" = {
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device = "/dev/disk/by-label/nixos";
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fsType = "ext4";
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@ -24,11 +25,7 @@ with lib;
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networking.useNetworkd = mkForce true;
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networking.networkmanager.enable = false;
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#networking.interfaces.ens18.useDHCP = false;
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#networking.bridges.br0.interfaces = [ "ens18" ];
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#networking.interfaces.br0.useDHCP = lib.mkDefault true;
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# hardware.cpu.amd.updateMicrocode = lib.config.hardware.enableRedistributableFirmware;
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boot.initrd.availableKernelModules = [ "virtio_net" "virtio_pci" "virtio_mmio" "virtio_blk" "virtio_scsi" "9p" "9pnet_virtio" ];
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boot.initrd.kernelModules = [ "virtio_balloon" "virtio_console" "virtio_rng" ];
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@ -46,6 +43,5 @@ with lib;
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services.qemuGuest.enable = true;
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cascade.bridge-interface = "ens18";
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};
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}
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19
shell.nix
Executable file → Normal file
19
shell.nix
Executable file → Normal file
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@ -13,20 +13,16 @@ stdenv.mkDerivation {
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buildInputs = [ terraform vault coreutils-full dig bash samba4Full morph ];
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shellHook = ''
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export NIX_PATH="nixpkgs=${toString <nixpkgs>}"
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export NIX_PATH="nixpkgs=${toString <nixpkgs>}:morph-options=${morph.lib}/options.nix"
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export LD_LIBRARY_PATH="${libvirt}/lib:$LD_LIBRARY_PATH"
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export VAULT_ADDR=${escapeShellArg vault_addr}
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export DOMAIN="$(hostname -d)"
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PROXMOX_STORAGE=hdd-fs
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MEMORY=2048
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name="$1"
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rebuild-nixos-image() {
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echo "$(nix-build \
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-I nixos-config=custom-image-configuration.nix \
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-I hardware-config=profiles/qemu-vm/default.nix \
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custom-image.nix)/nixos".img
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echo "$(nix-build custom-image.nix)/nixos".img
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}
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mkvirt() {
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--net0 virtio,bridge=vmbr0 \
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--ipconfig0 ip=dhcp \
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--agent enabled=1,type=virtio \
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--virtio0 hdd-fs:0,import-from="$IMG",discard=on,format=raw \
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--virtio0 "$PROXMOX_STORAGE":0,import-from="$IMG",discard=on,format=raw \
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--boot c \
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--bootdisk virtio0 \
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--vga serial0 \
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@ -187,10 +183,11 @@ deploy() {
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}
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destroy-host() {
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eval "$(env_cascade)"
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while [ $# -gt 0 ];do
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VMID="$(sudo qm list | awk -v N="$1" '$2 == N {print $1}')"
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eval "$(env_name "$1")"
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VMID="$(sudo qm list | awk -v N="$1" '$2 == N {print $name}')"
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echo "destroying hosts/$1.nix and VM #$VMID" 1>&2
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sleep 1
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sudo qm destroy $VMID
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rm -f hosts/"$1".nix
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samba-tool dns cleanup -k yes "$DC" "$name"."$DOMAIN"
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shift
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done
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}
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