817 lines
26 KiB
Markdown
817 lines
26 KiB
Markdown
# Packer Examples for Proxmox
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## Table of Contents
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1. [Introduction](#introduction)
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1. [Requirements](#requirements)
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1. [Download](#download)
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1. [Configuration](#configuration)
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1. [Packer Machine Image Builds](#packer-machine-image-builds)
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1. [Troubleshoot](#troubleshoot)
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1. [Known Issues](#known-issues)
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1. [Unsupported Features](#unsupported-features)
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1. [Contributing](#contributing)
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1. [Credits](#credits)
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## Introduction
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This repository provides opinionated infrastructure-as-code examples to automate the creation of virtual machine images and their guest operating systems on Proxmox using [HashiCorp Packer][packer] and the [Packer Plugin for Proxmox][packer-plugin-proxmox] (`proxmox-iso` builder). All examples are authored in the HashiCorp Configuration Language ("HCL2").
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By default, the machine image artifacts are converted to templates within Proxmox after a virtual machine is built and configured according to the individual templates.
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The following builds are available:
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## Linux Distributions
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| Operating System | Version | Custom Storage Config | Static IP Support | UEFI Bootloader | BIOS Bootloader |
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| :--- | :--- | :---: | :---: | :---: | :---: |
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| AlmaLinux | 9 | ✓ | ✓ | ✓ | |
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| AlmaLinux | 8 | ✓ | ✓ | ✓ | |
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| CentOS Stream | 10 | ✓ | ✓ | ✓ | ✓ |
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| CentOS Stream | 9 | ✓ | ✓ | ✓ | ✓ |
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| Debian | 12 | ✓ | ✓ | ✓ | ✓ |
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| Debian | 11 | ✓ | ✓ | ✓ | ✓ |
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| OpenSUSE Leap | 15.6 | ✓ | ✓ | ✓ | ✓ |
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| OpenSUSE Leap | 15.5 | ✓ | ✓ | ✓ | ✓ |
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| Oracle Linux | 9 | ✓ | ✓ | ✓ | ✓ |
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| Oracle Linux | 8 | ✓ | ✓ | ✓ | ✓ |
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| Rocky Linux | 9 | ✓ | ✓ | ✓ | ✓ |
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| Rocky Linux | 8 | ✓ | ✓ | ✓ | ✓ |
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| Ubuntu Server | 24.04 LTS | ✓ | ✓ | ✓ | ✓ |
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| Ubuntu Server | 22.04 LTS | ✓ | ✓ | ✓ | ✓ |
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| Ubuntu Server | 20.04 LTS | ✓ | ✓ | ✓ | ✓ |
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| Windows Desktop | 11 | | | ✓ | N/A |
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## Requirements
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**Operating Systems**:
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Operating systems and versions tested with the project:
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- Proxmox PVE Version >= 8
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- Ubuntu Server 22.04 LTS (`x86_64`)
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- CentOS Stream 9 (`x86_64`)
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**Packer**:
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- HashiCorp [Packer][packer-install] 1.12.0 or higher.
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> **Note**
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>
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> Click on the operating system name to display the installation steps.
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- <details>
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<summary>Ubuntu</summary>
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The Terraform packages are signed using a private key controlled by HashiCorp, so you must configure your system to trust that HashiCorp key for package authentication.
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To configure your repository:
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```shell
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sudo bash -c 'wget -O- https://apt.releases.hashicorp.com/gpg | gpg --dearmor > /usr/share/keyrings/hashicorp-archive-keyring.gpg'
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```
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Verify the key's fingerprint:
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```shell
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gpg --no-default-keyring --keyring /usr/share/keyrings/hashicorp-archive-keyring.gpg --fingerprint
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```
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The fingerprint must match E8A0 32E0 94D8 EB4E A189 D270 DA41 8C88 A321 9F7B. You can also verify the key on [Security at HashiCorp][hcp-security] under Linux Package Checksum Verification.
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Add the official HashiCorp repository to your system:
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```shell
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sudo bash -c 'echo "deb [signed-by=/usr/share/keyrings/hashicorp-archive-keyring.gpg] \
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https://apt.releases.hashicorp.com $(lsb_release -cs) main" > /etc/apt/sources.list.d/hashicorp.list'
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```
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Install Packer from HashiCorp repository:
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```shell
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sudo apt update && sudo apt install packer
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```
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</details>
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- <details>
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<summary>CentOS Stream 9</summary>
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Install `yum-config-manager` to manage your repositories.
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```shell
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sudo yum install -y yum-utils
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```
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Use `yum-config-manager` to add the official HashiCorp Linux repository:
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```shell
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sudo yum-config-manager --add-repo https://rpm.releases.hashicorp.com/RHEL/hashicorp.repo
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```
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Install.
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```shell
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sudo yum -y install packer
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```
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</details>
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- Packer plugins:
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> **Note**
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>
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> Required plugins are automatically downloaded and initialized when using `./build.sh`. For dark sites, you may download the plugins and place these same directory as your Packer executable `/usr/local/bin` or `$HOME/.packer.d/plugins`.
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- [Packer Plugin for Git][packer-plugin-git] 0.6.2 or later - a community plugin for HashiCorp Packer.
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- HashiCorp [Packer Plugin for Proxmox-ISO][packer-plugin-proxmox] version 1.2.1 - the plugin for HashiCorp Packer to communicate with Proxmox VE. This needs to be pinned to version 1.2.1 at this time due to a [CPU bug](https://github.com/hashicorp/packer-plugin-proxmox/issues/307).
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**Ansible**:
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- [Ansible][ansible] [Core][ansible-core] version 2.14 or higher.
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> **Note**
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>
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> Click on the operating system name to display the installation steps.
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- <details>
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<summary>Ubuntu</summary>
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It is recommended that you install ansible-core using your system's package manager instead of via pip.
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Refresh the repositories:
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```shell
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sudo apt update
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```
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Install software-properties-common:
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```shell
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sudo apt install -y software-properties-common
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```
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Add the Ansible repository to your system:
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```shell
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sudo add-apt-repository --yes --update ppa:ansible/ansible
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```
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Install ansible-core from the Ansible repository:
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```shell
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sudo apt install -y ansible-core
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```
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</details>
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- <details>
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<summary>CentOS Stream 9</summary>
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It is recommended that you install ansible using your system's package manager instead of via pip.
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Install.
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```shell
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dnf -y install ansible
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```
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</details>
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**Platform**:
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- Proxmox PVE 8.0 or later.
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# Download
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After installing the required software, the quickest way to get building is to clone this repository.
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```shell
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git clone https://github.com/ajschroeder/packer-examples-for-proxmox.git
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cd packer-examples-for-proxmox
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```
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The following table describes the directory structure.
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| Directory | Description |
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| :--- | :--- |
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| **`ansible`** | Contains the Ansible roles to prepare Linux machine image builds. |
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| **`builds`** | Contains the templates, variables, and configuration files for the machine image builds. |
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| **`manifests`** | Manifests created after the completion of the machine image builds. |
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# Configuration
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## Example Variables
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The project includes example variables files that you can use as a starting point for your own configuration.
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The [variables][packer-variables] are defined in `.pkrvars.hcl` files.
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Run the config script `./config.sh` to copy the `.pkrvars.hcl.example` files to a `config` directory.
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```shell
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./config.sh
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./build.sh
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```
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The `config` folder is the default folder. You can override the default by passing an alternate value as the first argument.
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For example:
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San Francisco: `us-west-1`
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```shell
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./config.sh us-west-1
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./build.sh us-west-1
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```
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Los Angeles: `us-west-2`
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```shell
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./config.sh us-west-2
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./build.sh us-west-2
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```
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This is useful for the purposes of running machine image builds for different environment.
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## Configuration Variables
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### Ansible Variables
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Edit the `config/ansible.pkrvars.hcl` file to configure the credentials for the Ansible account on Linux machine images.
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```hcl title="config/ansible.pkrvars.hcl"
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ansible_username = "ansible"
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ansible_key = "<public_key>"
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```
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**Ansible User Password**
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A random password is auto-generated for the Ansible user.
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### Build Variables
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Edit the `config/build.pkrvars.hcl` file to configure the credentials for the default account on machine images.
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```hcl title="config/build.pkrvars.hcl"
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build_username = "example"
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build_password = "<plaintext_password>"
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build_password_encrypted = "<sha512_encrypted_password>"
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build_key = "<public_key>"
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```
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You will need to generate a SHA-512 encrypted password for the `build_password_encrypted` using tools like `mkpasswd`.
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Run the following command to generate a SHA-512 encrypted password:
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```shell
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mkpasswd -m sha512crypt
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```
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The following output is displayed:
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```shell
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Password: ***************
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[password hash]
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```
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Generate a public key for the `build_key` for public key authentication.
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Run the following command to generate a public key for the `build_key` for public key authentication.
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```shell
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ssh-keygen -t ecdsa -b 512 -C "<name@example.com>"
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```
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The following output is displayed:
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```shell
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Generating public/private ecdsa key pair.
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Enter file in which to save the key (/Users/example/.ssh/id_ecdsa):
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Enter passphrase (empty for no passphrase): **************
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Enter same passphrase again: **************
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Your identification has been saved in /Users/example/.ssh/id_ecdsa.
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Your public key has been saved in /Users/example/.ssh/id_ecdsa.pub.
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```
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The content of the public key, `build_key`, is added the key to the `~/.ssh/authorized_keys` file of the `build_username` on the Linux guest operating systems.
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> [!IMPORTANT]
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>
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> Make sure to replace the example public keys and passwords!
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> By default, both Public Key Authentication and Password Authentication are enabled for Linux distributions.
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>
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> If you wish to disable Password Authentication and only use Public Key Authentication, comment or remove the portion of the associated Ansible `configure` role.
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### Common Variables
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Edit the `config/common.pkrvars.hcl` file to configure the following common variables:
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- Removable Media Settings
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- Boot and Provisioning Settings
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- HCP Packer Registry
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```hcl title="config/common.pkrvars.hcl"
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// Removable Media Settings
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common_iso_storage = "<Proxmox Storage Location>"
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// Boot and Provisioning Settings
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common_data_source = "http"
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common_http_interface = null
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common_http_bind_address = null
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common_http_port_min = 8000
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common_http_port_max = 8099
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common_ip_wait_timeout = "20m"
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common_shutdown_timeout = "15m"
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// HCP Packer
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common_hcp_packer_registry_enabled = false
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```
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#### Data Source
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The default provisioning data source for Linux machine image builds is `http`. This is used to serve the kickstart files to the Linux guest operating system during the build.
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```hcl title="config/common.pkrvars.hcl"
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common_data_source = "http"
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```
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> **Note**
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> Packer includes a built-in HTTP server that is used to serve the kickstart files for Linux machine image builds.
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> If iptables/nftables is enabled on your Packer host, you will need to open `common_http_port_min` through `common_http_port_max` ports.
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>
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> iptables command:
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> ```shell
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> iptables -A INPUT -p tcp --match multiport --dports 8000:9000 -j ACCEPT
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> ```
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>
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> firewall-cmd example:
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> ```shell
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> firewall-cmd --zone=public --add-port=8000-9000/tcp --permanent
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> firewall-cmd --reload
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> ```
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You can change the `common_data_source` from `http` to `disk` to build supported Linux machine images without the need to use Packer's HTTP server. This is useful for environments that may not be able to route back to the system from which Packer is running. For example, building a machine image in VMware Cloud on AWS.
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```hcl title="config/common.pkrvars.hcl"
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common_data_source = "disk"
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```
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The Packer plugin's `cd_content` option is used when selecting `disk` unless the distribution does not support a secondary CD-ROM.
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#### HTTP Interface
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Name of the network interface that Packer gets `HTTPIP` from. Defaults to the first non loopback interface.
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```hcl title="config/common.pkrvars.hcl"
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common_http_interface = "eth2"
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```
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#### HTTP Bind Address
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IP address on the build server to bind the Packer HTTP instance to. Must be an interface that is reachable from the Proxmox server.
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```hcl title="config/common.pkrvars.hcl"
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common_http_bind_address = 172.16.15.97"
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```
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### Network Variables
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Edit the `config/network.pkrvars.hcl` file to configure the following:
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#### Proxmox Specific Network Variables for VM Templates
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These variables are used by Packer to configure the network interface for the VM template. These are specific to your environment. For example, to use the default `vmbr0` interface and the tag for VLAN 102, you would set it as follows:
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```hcl title="config/network.pkrvars.hcl"
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// Proxmox settings for VM templates
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vm_bridge_interface = "vmbr0"
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vm_vlan_tag = "102"
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```
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Configuring a static IP address under the `configs/network.pkrvars.hcl` file is supported. If you want to use DHCP for the templates then leave these variables commented out. The default is DHCP.
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> **Note**
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> - These settings are site specific for each Proxmox host and are going to be needed regardless if you use DHCP or static IP addresses.
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#### Static IP address settings
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The Packer build templates default to using DHCP, however, you can use static IP addressing for your VM templates. Simply uncomment the following vars and configure to your specific requirements:
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```hcl title="config/network.pkrvars.hcl"
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vm_ip_address = "192.168.101.100"
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vm_ip_netmask = 24
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vm_ip_gateway = "192.168.101.1"
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vm_dns_list = [ "8.8.8.8", "8.8.4.4" ]
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```
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> **Note**
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>
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> - If you need/want to go back to using DHCP, just comment these variables out again and the templates should go back to using DHCP.
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### Proxmox Variables
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Edit the `config/proxmox.pkrvars.hcl` file to configure the following:
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- Promxox Endpoint and Credentials
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```hcl title="config/proxmox.pkrvars.hcl"
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// Proxmox Credentials
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proxmox_api_token_id = "name@realm!token"
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proxmox_api_token_secret = "<token secret>"
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proxmox_insecure_connection = false
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// Proxmox Specific Settings
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proxmox_hostname = "<FQDN or IP of proxmox server>"
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proxmox_node = "<proxmox node name>"
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```
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The `proxmox_api_token_id` variable uses a specific format and, as the time of this writing, needs to be assigned to the `PVEAdmin` role. One of the to-do's is to document a least-privilege method of creating the Proxmox API token.
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For more information, please see the [Proxmox documentation][proxmox-api-tokens] on authentication.
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For Proxmox installs that use a self-signed certificate, you will want to set `proxmox_insecure_connection` to `true`.
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### Storage Variables
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Edit the `config/linux-storage.pkrvars.hcl` file to configure storage for VM templates.
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#### Disk Device
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```hcl
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// VM Storage Settings
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vm_disk_device = "vda"
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```
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`vm_disk_device`:`string` - This variable depends on the disk controller used inside of the specific `.auto.pkrvars.hcl` file. By default, the builds use the `virtio-scsi-pci` disk controller and that requires the use of `vda`. If you decide to use a non-virtio controller, then you'll have to change the `vm_disk_device` variable to the appropriate device.
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#### EFI Device
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```hcl
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vm_efi_storage_pool = "pool0"
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vm_efi_type = "4m"
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vm_efi_pre_enrolled_keys = false
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```
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#### Disk Partitions
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`vm_disk_partitions`:`list[dict]` - Use this list to define the primary partitions that will be created when a specific build runs. Each of the builds process this list in order, so the first partition defined in the list will be the first partition created, the second one listed will be the second one created, and so on.
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> **Note**
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>
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> - All partition sizes are in MegaBytes (MB)
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> - If you want to have a partition consume all available free space, you can indicate that with `-1`
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##### Partitioning Examples
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<details>
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<summary>Single Partition Example for BIOS bootloaders</summary>
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Below is an example of a partition layout for a VM template that boots with BIOS and uses a single partition for the OS.
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```hcl title="config/linux-storage.pkrvars.hcl"
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// VM Storage Settings
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vm_disk_device = "vda"
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vm_disk_use_swap = true
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vm_disk_partitions = [
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{
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name = "root"
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size = -1,
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format = {
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label = "ROOTFS",
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fstype = "ext4",
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},
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mount = {
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path = "/",
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options = "",
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},
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volume_group = "",
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},
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]
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```
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</details>
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<details>
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<summary>Single Partition Example for UEFI bootloaders</summary>
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This example is similar to the above example except that it has the extra partitions needed for the UEFI (OVMF) bootloader. Note the extra variables for the EFI settings.
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```hcl title="config/linux-storage.pkrvars.hcl"
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// VM EFI Settings
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vm_efi_storage_pool = "pool0"
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vm_efi_type = "4m"
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vm_efi_pre_enrolled_keys = false
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// VM Storage Settings
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vm_disk_device = "vda"
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vm_disk_use_swap = true
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vm_disk_partitions = [
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{
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name = "efi"
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size = 1024,
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format = {
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label = "EFIFS",
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fstype = "fat32",
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},
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mount = {
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path = "/boot/efi",
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options = "",
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},
|
|
volume_group = "",
|
|
},
|
|
{
|
|
name = "boot"
|
|
size = 1024,
|
|
format = {
|
|
label = "BOOTFS",
|
|
fstype = "ext4",
|
|
},
|
|
mount = {
|
|
path = "/boot",
|
|
options = "",
|
|
},
|
|
volume_group = "",
|
|
},
|
|
{
|
|
name = "root"
|
|
size = -1,
|
|
format = {
|
|
label = "ROOTFS",
|
|
fstype = "ext4",
|
|
},
|
|
mount = {
|
|
path = "/",
|
|
options = "",
|
|
},
|
|
volume_group = "",
|
|
},
|
|
]
|
|
```
|
|
</details>
|
|
|
|
<details>
|
|
<summary>LVM Partitioning Example with CIS partitions for UEFI bootloaders</summary>
|
|
This is a more complex example of a partition layout for a VM template that uses LVM and has volumes with mount options required by CIS for hardening a linux system.
|
|
|
|
|
|
```hcl title="config/linux-storage.pkrvars.hcl"
|
|
//VM EFI Settings
|
|
vm_efi_storage_pool = "pool0"
|
|
vm_efi_type = "4m"
|
|
vm_efi_pre_enrolled_keys = false
|
|
|
|
// UEFI VM Storage Settings
|
|
vm_disk_device = "vda"
|
|
vm_disk_use_swap = true
|
|
vm_disk_partitions = [
|
|
{
|
|
name = "efi"
|
|
size = 1024,
|
|
format = {
|
|
label = "EFIFS",
|
|
fstype = "fat32",
|
|
},
|
|
mount = {
|
|
path = "/boot/efi",
|
|
options = "",
|
|
},
|
|
volume_group = "",
|
|
},
|
|
{
|
|
name = "boot"
|
|
size = 1024,
|
|
format = {
|
|
label = "BOOTFS",
|
|
fstype = "ext4",
|
|
},
|
|
mount = {
|
|
path = "/boot",
|
|
options = "",
|
|
},
|
|
volume_group = "",
|
|
},
|
|
{
|
|
name = "sysvg"
|
|
size = -1,
|
|
format = {
|
|
label = "",
|
|
fstype = "",
|
|
},
|
|
mount = {
|
|
path = "",
|
|
options = "",
|
|
},
|
|
volume_group = "sysvg",
|
|
},
|
|
]
|
|
vm_disk_lvm = [
|
|
{
|
|
name: "sysvg",
|
|
partitions: [
|
|
{
|
|
name = "lv_swap",
|
|
size = 1024,
|
|
format = {
|
|
label = "SWAPFS",
|
|
fstype = "swap",
|
|
},
|
|
mount = {
|
|
path = "",
|
|
options = "",
|
|
},
|
|
},
|
|
{
|
|
name = "lv_root",
|
|
size = 10240,
|
|
format = {
|
|
label = "ROOTFS",
|
|
fstype = "ext4",
|
|
},
|
|
mount = {
|
|
path = "/",
|
|
options = "",
|
|
},
|
|
},
|
|
{
|
|
name = "lv_home",
|
|
size = 4096,
|
|
format = {
|
|
label = "HOMEFS",
|
|
fstype = "ext4",
|
|
},
|
|
mount = {
|
|
path = "/home",
|
|
options = "nodev,nosuid",
|
|
},
|
|
},
|
|
{
|
|
name = "lv_opt",
|
|
size = 2048,
|
|
format = {
|
|
label = "OPTFS",
|
|
fstype = "ext4",
|
|
},
|
|
mount = {
|
|
path = "/opt",
|
|
options = "nodev",
|
|
},
|
|
},
|
|
{
|
|
name = "lv_tmp",
|
|
size = 4096,
|
|
format = {
|
|
label = "TMPFS",
|
|
fstype = "ext4",
|
|
},
|
|
mount = {
|
|
path = "/tmp",
|
|
options = "nodev,noexec,nosuid",
|
|
},
|
|
},
|
|
{
|
|
name = "lv_var",
|
|
size = 2048,
|
|
format = {
|
|
label = "VARFS",
|
|
fstype = "ext4",
|
|
},
|
|
mount = {
|
|
path = "/var",
|
|
options = "nodev",
|
|
},
|
|
},
|
|
{
|
|
name = "lv_var_tmp",
|
|
size = 1000,
|
|
format = {
|
|
label = "VARTMPFS",
|
|
fstype = "ext4",
|
|
},
|
|
mount = {
|
|
path = "/var/tmp",
|
|
options = "nodev,noexec,nosuid",
|
|
},
|
|
},
|
|
{
|
|
name = "lv_var_log",
|
|
size = 4096,
|
|
format = {
|
|
label = "VARLOGFS",
|
|
fstype = "ext4",
|
|
},
|
|
mount = {
|
|
path = "/var/log",
|
|
options = "nodev,noexec,nosuid",
|
|
},
|
|
},
|
|
{
|
|
name = "lv_var_audit",
|
|
size = 500,
|
|
format = {
|
|
label = "AUDITFS",
|
|
fstype = "ext4",
|
|
},
|
|
mount = {
|
|
path = "/var/log/audit",
|
|
options = "nodev,noexec,nosuid",
|
|
},
|
|
},
|
|
],
|
|
}
|
|
]
|
|
```
|
|
</details>
|
|
|
|
|
|
## Packer Machine Image Builds
|
|
|
|
Edit the `*.auto.pkrvars.hcl` file in each `builds/<type>/<build>` directory to configure the following virtual machine hardware settings, as required:
|
|
|
|
- CPUs `(int)`
|
|
- CPU Cores `(int)`
|
|
- Memory in MB `(int)`
|
|
- Primary Disk in MB `(string)` (e.g. 32GB)
|
|
- .iso Path `(string)`
|
|
- .iso File `(string)`
|
|
|
|
```hcl title="builds/linux/debian/11/linux-debian.auto.pkrvars.hcl"
|
|
// Guest Operating System Metadata
|
|
vm_os_language = "en_US"
|
|
vm_os_keyboard = "us"
|
|
vm_os_timezone = "UTC"
|
|
vm_os_family = "linux"
|
|
vm_os_name = "ubuntu"
|
|
vm_os_version = "22.04-lts"
|
|
|
|
// Virtual Machine Guest Operating System Setting
|
|
vm_os_type = "l26"
|
|
vm_cloudinit = true
|
|
|
|
// Virtual Machine Hardware Settings
|
|
vm_bios = "ovmf"
|
|
vm_cpu_count = 1
|
|
vm_cpu_sockets = 1
|
|
vm_cpu_type = "kvm64"
|
|
vm_mem_size = 2048
|
|
vm_disk_type = "virtio"
|
|
vm_disk_size = "32G"
|
|
vm_disk_format = "raw"
|
|
vm_disk_controller_type = "virtio-scsi-pci"
|
|
vm_network_card_model = "virtio"
|
|
|
|
// Removable Media Settings
|
|
iso_path = "iso"
|
|
iso_file = "ubuntu-22.04-live-server-amd64.iso"
|
|
// The checksum can be a URL or an actual checksum value. URL is preferred
|
|
iso_checksum = "file:https://releases.ubuntu.com/jammy/SHA256SUMS"
|
|
|
|
// Boot Settings
|
|
vm_boot = "order=virtio0;ide2;net0"
|
|
vm_boot_wait = "5s"
|
|
|
|
// EFI Settings
|
|
vm_firmware_path = "./OVMF.fd"
|
|
```
|
|
|
|
> **Note**
|
|
>
|
|
> All `variables.auto.pkrvars.hcl` default to using:
|
|
> - VirtIO SCSI storage device
|
|
> - VirtIO (paravirtualized) network card device
|
|
> - BIOS boot firmware
|
|
|
|
The defaults use VirtIO to balance out performance, compatibility, and ease of use. Feel free to change the storage and network controllers to suit your needs. However, if you change the storage or network controllers and run into issues you should change them back to defaults and try the builds again. I won't support any builds that don't use the VirtIO drivers.
|
|
|
|
Both UEFI and BIOS booting are supported for builds. Inside the `*.auto.pkrvars.hcl` file specific to the build, you can set the `vm_bios` variable to either `seabios` for BIOS or `ovmf` for UEFI booting. The storage layouts are different for each bootloader type so you'll need to configure the storage layouts accordingly.
|
|
|
|
If you are interested in more detail - when I first started testing these packer builds in my home lab I was using `ovmf` (UEFI) firmware. During my initial testing the ZFS pool where I housed my VMs cratered and I had to rebuild the pool and restore all my VMs from backups. During the recovery of my storage pool, I changed over to LVM and had to migrate VMs between storage pools several times and each VM that had EFI disks had to be shutdown, migrated, and then powered on. Offline migration isn't *that* much of an inconvenience, however at the time I was trying to figure out my VM storage and recover all my VMs it was just one more annoyance. All that said, I think Proxmox should support live migration regardless of VM firmware type. Maybe this will be addressed in a future release of Proxmox?
|
|
|
|
### Cloud-Init
|
|
All builds for operating systems that support [cloud-init][cloud-init] now have the option to enable it. This can be done on a per-build basis inside the `*.auto.pkrvars.hcl` files in the `builds/linux/<distro>/<version>/` directory. The default setting is `true`.
|
|
|
|
If a particular linux distribution ships with cloud-init (e.g. Ubuntu) and cloud-init is set to `false` in the `*.auto.pkrvars.hcl` packer file for the build, then cloud-init will be disabled in the operating system **and** within Proxmox for that specific template.
|
|
|
|
# Known Issues
|
|
|
|
# Unsupported Features
|
|
|
|
# Contributing
|
|
Contributions are welcome, please read the [CONTRIBUTING](.github/CONTRIBUTING.md) document for more details.
|
|
|
|
# Credits
|
|
The repository is modeled after the [VMware Packer Examples][packer-examples-for-vsphere] repository. As someone who initially struggled with organization of a packer project, the VMware repository helped me significantly.
|
|
|
|
|
|
[//]: Links
|
|
[ansible]: https://www.ansible.com
|
|
[ansible-core]: https://docs.ansible.com/ansible/latest/installation_guide/intro_installation.html#selecting-an-ansible-package-and-version-to-install
|
|
[cloud-init]: https://cloud-init.io/
|
|
[packer]: https://www.packer.io
|
|
[packer-examples-for-vsphere]: https://github.com/vmware-samples/packer-examples-for-vsphere
|
|
[packer-install]: https://developer.hashicorp.com/packer/tutorials/docker-get-started/get-started-install-cli
|
|
[packer-plugin-git]: https://github.com/ethanmdavidson/packer-plugin-git
|
|
[packer-plugin-proxmox]: https://developer.hashicorp.com/packer/integrations/hashicorp/proxmox
|
|
[packer-variables]: https://developer.hashicorp.com/packer/docs/templates/hcl_templates/variables
|
|
[proxmox-api-tokens]: https://pve.proxmox.com/pve-docs/pveum-plain.html
|
|
|
|
|
|
[^1]: If you try to create a VM with the same ID as an existing VM the Proxmox API will generate a 500 error.
|