generated from CC/VMServiceTemplate
Initial commit
This commit is contained in:
57
.gitea/workflows/deploy.yml
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57
.gitea/workflows/deploy.yml
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name: Deploy VM and App
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on:
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workflow_dispatch:
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inputs:
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tfvars_file:
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description: "Which tfvars file to use"
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required: true
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default: "single.tfvars.example"
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type: choice
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options:
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- single.tfvars.example
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- multi.tfvars.example
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jobs:
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terraform:
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runs-on: ubuntu-latest
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defaults:
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run:
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working-directory: terraform
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steps:
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- uses: actions/checkout@v4
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- uses: hashicorp/setup-terraform@v3
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- name: Select tfvars
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run: cp "${{ inputs.tfvars_file }}" terraform.tfvars
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- name: Terraform init
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run: terraform init
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- name: Terraform apply
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run: terraform apply -auto-approve
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- name: Write inventory
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run: |
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mkdir -p ../ansible/inventory
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terraform output -json vm_ipv4_addresses | jq -r '
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to_entries[] | "[app]\n\(.value) ansible_user=cloud"
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' > ../ansible/inventory/hosts.ini
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- name: Write tags
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run: terraform output -json vm_tags > ../ansible/vm_tags.json
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deploy:
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needs: terraform
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runs-on: ubuntu-latest
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steps:
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- uses: actions/checkout@v4
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- name: Install Ansible
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run: |
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python3 -m pip install --upgrade pip
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pip install ansible community.docker
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- name: Deploy app
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run: ansible-playbook -i ansible/inventory/hosts.ini ansible/playbooks/deploy.yml
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145
README.md
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145
README.md
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# VM Service Template
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This repository is a starter template for deploying one or more service VMs in Proxmox using Terraform, then configuring and launching applications with Ansible and Docker Compose.
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It is designed to work with a shared Terraform module stored in a separate repository. This repo acts as the wrapper/root module and provides the service-specific inputs, deployment workflow, and app stack files.
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## What this repo does
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- Creates one or more Proxmox VMs from a reusable Terraform module.
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- Uses cloud-init and QEMU guest agent in the template VM.
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- Writes the VM IP address into Ansible inventory.
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- Tags VMs with Terraform, Docker, service name, and IP metadata.
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- Deploys an application stack with Ansible and Docker Compose.
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## Repository layout
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```text
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terraform/ Terraform wrapper for the shared Proxmox module.
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compose/ Docker Compose application files.
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ansible/ Playbook and role used to configure and deploy the app.
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.gitea/ Workflow files for apply and deploy.
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```
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## Requirements
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- Terraform installed locally or in CI.
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- Access to the Proxmox API.
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- A shared Proxmox VM module in a separate repository.
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- Ansible installed for application deployment.
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- Docker and Docker Compose available on the target VM.
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## How it works
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1. Terraform reads the instance configuration from `terraform.tfvars`.
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2. Terraform calls the shared Proxmox module to create the VM.
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3. Terraform outputs the VM IP address and tags.
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4. The workflow writes the IP into `ansible/inventory/hosts.ini`.
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5. Ansible connects to the VM and deploys the Compose stack.
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## Single instance
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Use `instance_mode = "single"` and define one `instance` object.
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Example:
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```hcl
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instance_mode = "single"
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instance = {
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service_name = "grafana"
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vm_name = "grafana-01"
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node_name = "pop"
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app_port = 3000
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app_image = "grafana/grafana:latest"
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vm_tags = ["monitoring"]
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}
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```
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## Multi instance
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Use `instance_mode = "multi"` and define an `instances` map.
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Example:
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```hcl
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instance_mode = "multi"
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instances = {
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grafana = {
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service_name = "grafana"
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vm_name = "grafana-01"
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node_name = "pop"
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app_port = 3000
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app_image = "grafana/grafana:latest"
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vm_tags = ["monitoring"]
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}
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caddy = {
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service_name = "caddy"
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vm_name = "caddy-01"
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node_name = "pop"
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app_port = 80
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app_image = "caddy:latest"
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vm_tags = ["proxy"]
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}
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}
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```
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## Defaults
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The template supports module defaults for items like:
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- datastore
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- BIOS
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- machine type
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- SSH key
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- bridge
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- CPU, RAM, and disk size
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Override only what you need in the service repo.
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## Running locally
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```bash
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cd terraform
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cp single.tfvars.example terraform.tfvars
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terraform init
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terraform apply
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```
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After Terraform finishes, run:
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```bash
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cd ..
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ansible-playbook -i ansible/inventory/hosts.ini ansible/playbooks/deploy.yml
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```
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## Workflow trigger
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This template is intended to be run after the repository is created from it.
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The usual flow is:
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- create a new repo from this template,
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- update the tfvars file,
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- trigger the workflow manually with `workflow_dispatch`,
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- or push the first commit to start deployment.
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## Notes
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- The shared Proxmox module should live in a separate repository.
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- The service repo should contain the wrapper, not the internal Proxmox resource logic.
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- VM IP tags are generated after Terraform apply.
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- If the VM disk is resized manually in Proxmox, Terraform may see drift on the next run.
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## Example use case
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This template works well for service VMs such as:
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- Grafana
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- Caddy
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- Jellyfin
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- Code Server
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- Monitoring or proxy VMs
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2
compose/.env
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2
compose/.env
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APP_NAME=myservice
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APP_PORT=8080
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9
compose/docker-compose.yml
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9
compose/docker-compose.yml
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services:
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app:
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image: your-image:latest
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container_name: ${APP_NAME}
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restart: unless-stopped
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ports:
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- "${APP_PORT}:8080"
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environment:
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- TZ=Europe/London
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18
terraform/backend.tf
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18
terraform/backend.tf
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terraform {
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backend "s3" {
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bucket = "terraform"
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key = "template/terraform.tfstate"
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access_key = "GK242d456c0692a9d4cc102206"
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secret_key = "1d7e22b7a8892cb11b569017659aa511b37b53287c4d1699c310d9f8ac76df09"
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region = "garage"
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endpoints = {
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s3 = "http://192.168.10.109:3900"
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}
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skip_credentials_validation = true
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skip_requesting_account_id = true
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skip_metadata_api_check = true
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skip_region_validation = true
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use_path_style = true
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use_lockfile = true
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}
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}
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25
terraform/main.tf
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25
terraform/main.tf
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locals {
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instance_map = var.instance_mode == "single" ? {
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main = var.instance
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} : var.instances
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}
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module "vm" {
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for_each = local.instance_map
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source = "git::https://tea.charcarservices.uk/CC/TerraformModules.git//proxmox_ubuntu_cloudinit_template?ref=main"
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vm_name = each.value.vm_name
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node_name = each.value.node_name
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node_datastore = var.vm_defaults.node_datastore
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bridge = var.vm_defaults.bridge
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vm_cpu = coalesce(try(each.value.vm_cpu, null), var.vm_defaults.vm_cpu)
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vm_ram = coalesce(try(each.value.vm_ram, null), var.vm_defaults.vm_ram)
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vm_size = coalesce(try(each.value.vm_size, null), var.vm_defaults.vm_size)
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vm_bios = var.vm_defaults.vm_bios
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vm_machine = var.vm_defaults.vm_machine
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vm_tags = concat(
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try(each.value.vm_tags, []),
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["terraform", "docker", each.value.service_name]
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)
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vm_user_sshkey = var.vm_defaults.vm_user_sshkey
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}
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21
terraform/multi.tfvars.example
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21
terraform/multi.tfvars.example
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@@ -0,0 +1,21 @@
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instance_mode = "multi"
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instances = {
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grafana = {
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service_name = "grafana"
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vm_name = "grafana-01"
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node_name = "pop"
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app_port = 3000
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app_image = "grafana/grafana:latest"
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vm_tags = ["monitoring"]
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}
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caddy = {
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service_name = "caddy"
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vm_name = "caddy-01"
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node_name = "pop"
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app_port = 80
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app_image = "caddy:latest"
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vm_tags = ["proxy"]
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}
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}
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20
terraform/output.tf
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20
terraform/output.tf
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output "vm_ipv4_addresses" {
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value = {
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for k, m in module.vm : k => m.vm_ipv4_address
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}
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}
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output "vm_tags" {
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value = {
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for k, m in module.vm : k => concat(
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try(local.instance_map[k].vm_tags, []),
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["terraform", "docker", local.instance_map[k].service_name, "ip-${replace(m.vm_ipv4_address, ".", "-")}"]
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)
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}
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}
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output "service_names" {
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value = {
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for k, cfg in local.instance_map : k => cfg.service_name
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}
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}
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33
terraform/providers.tf
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33
terraform/providers.tf
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terraform {
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required_providers {
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proxmox = {
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source = "bpg/proxmox"
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version = "0.106.0"
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#url = https://registry.terraform.io/providers/bpg/proxmox/latest/docs/guides/clone-vm
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}
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aws = {
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source = "hashicorp/aws"
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version = "6.38.0"
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}
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}
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}
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provider "proxmox" {
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endpoint = var.pm_api_url
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api_token = var.pm_api_token
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insecure = true
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# === FIX THIS ===
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ssh {
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agent = true
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username = "root"
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password = "Ishimaru17"
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}
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}
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provider "aws" {
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region = "garage"
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access_key = "GK242d456c0692a9d4cc102206"
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secret_key = "1d7e22b7a8892cb11b569017659aa511b37b53287c4d1699c310d9f8ac76df09"
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# shared_credentials_files = ["$HOME/.aws/credentials"]
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}
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21
terraform/single.tfvars.example
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21
terraform/single.tfvars.example
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@@ -0,0 +1,21 @@
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instance_mode = "single"
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instance = {
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service_name = "grafana"
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vm_name = "grafana-01"
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node_name = "pop"
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app_port = 3000
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app_image = "grafana/grafana:latest"
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vm_tags = ["monitoring"]
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}
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vm_defaults = {
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node_datastore = "hlst"
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vm_bios = "ovmf"
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vm_machine = "q35"
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vm_user_sshkey = "ssh-ed25519 AAAA..."
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bridge = "vmbr0"
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vm_cpu = 2
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vm_ram = 4096
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vm_size = "20G"
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}
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59
terraform/variables.tf
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59
terraform/variables.tf
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@@ -0,0 +1,59 @@
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variable "instance_mode" {
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type = string
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default = "single"
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}
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variable "instance" {
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description = "Single instance definition"
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type = object({
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service_name = string
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vm_name = string
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node_name = string
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vm_cpu = optional(number)
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vm_ram = optional(number)
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vm_size = optional(string)
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app_port = number
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app_image = string
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vm_tags = optional(list(string))
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})
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default = null
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}
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variable "instances" {
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description = "Multiple instance definitions"
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type = map(object({
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service_name = string
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vm_name = string
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node_name = string
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vm_cpu = optional(number)
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vm_ram = optional(number)
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vm_size = optional(string)
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app_port = number
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app_image = string
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vm_tags = optional(list(string))
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}))
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default = {}
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}
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variable "vm_defaults" {
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type = object({
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node_datastore = string
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vm_bios = string
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vm_machine = string
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vm_user_sshkey = string
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bridge = string
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vm_cpu = number
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vm_ram = number
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vm_size = string
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})
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default = {
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node_datastore = "hlst"
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vm_bios = "ovmf"
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vm_machine = "q35"
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vm_user_sshkey = ""
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bridge = "vmbr0"
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vm_cpu = 1
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vm_ram = 2048
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vm_size = "20G"
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}
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}
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Reference in New Issue
Block a user