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Google Cloud Platform Guide
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===========================
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.. gce_intro:
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Introduction
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--------------------------
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Ansible + Google have been working together on a set of auto-generated
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Ansible modules designed to consistently and comprehensively cover the entirety
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of the Google Cloud Platform (GCP).
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Ansible contains modules for managing Google Cloud Platform resources,
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including creating instances, controlling network access, working with
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persistent disks, managing load balancers, and a lot more.
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These new modules can be found under a new consistent name scheme "gcp_*"
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(Note: gcp_target_proxy and gcp_url_map are legacy modules, despite the "gcp_*"
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name. Please use gcp_compute_target_proxy and gcp_compute_url_map instead).
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Additionally, the gcp_compute inventory plugin can discover all
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Google Compute Engine (GCE) instances
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and make them automatically available in your Ansible inventory.
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You may see a collection of other GCP modules that do not conform to this
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naming convention. These are the original modules primarily developed by the
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Ansible community. You will find some overlapping functionality such as with
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the "gce" module and the new "gcp_compute_instance" module. Either can be
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used, but you may experience issues trying to use them together.
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While the community GCP modules are not going away, Google is investing effort
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into the new "gcp_*" modules. Google is committed to ensuring the Ansible
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community has a great experience with GCP and therefore recommends adopting
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these new modules if possible.
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Requisites
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---------------
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The GCP modules require both the ``requests`` and the
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``google-auth`` libraries to be installed.
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.. code-block:: bash
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$ pip install requests google-auth
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Alternatively for RHEL / CentOS, the ``python-requests`` package is also
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available to satisfy ``requests`` libraries.
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.. code-block:: bash
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$ yum install python-requests
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Credentials
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-----------
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It's easy to create a GCP account with credentials for Ansible. You have multiple options to
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get your credentials - here are two of the most common options:
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* Service Accounts (Recommended): Use JSON service accounts with specific permissions.
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* Machine Accounts: Use the permissions associated with the GCP Instance you're using Ansible on.
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For the following examples, we'll be using service account credentials.
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To work with the GCP modules, you'll first need to get some credentials in the
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JSON format:
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1. `Create a Service Account <https://developers.google.com/identity/protocols/OAuth2ServiceAccount#creatinganaccount>`_
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2. `Download JSON credentials <https://support.google.com/cloud/answer/6158849?hl=en&ref_topic=6262490#serviceaccounts>`_
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Once you have your credentials, there are two different ways to provide them to Ansible:
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* by specifying them directly as module parameters
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* by setting environment variables
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Providing Credentials as Module Parameters
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``````````````````````````````````````````
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For the GCE modules you can specify the credentials as arguments:
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* ``auth_kind``: type of authentication being used (choices: machineaccount, serviceaccount, application)
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* ``service_account_email``: email associated with the project
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* ``service_account_file``: path to the JSON credentials file
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* ``project``: id of the project
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* ``scopes``: The specific scopes that you want the actions to use.
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For example, to create a new IP address using the ``gcp_compute_address`` module,
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you can use the following configuration:
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.. code-block:: yaml
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- name: Create IP address
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hosts: localhost
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gather_facts: no
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vars:
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service_account_file: /home/my_account.json
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project: my-project
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auth_kind: serviceaccount
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scopes:
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- https://www.googleapis.com/auth/compute
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tasks:
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- name: Allocate an IP Address
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gcp_compute_address:
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state: present
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name: 'test-address1'
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region: 'us-west1'
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project: "{{ project }}"
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auth_kind: "{{ auth_kind }}"
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service_account_file: "{{ service_account_file }}"
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scopes: "{{ scopes }}"
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Providing Credentials as Environment Variables
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``````````````````````````````````````````````
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Set the following environment variables before running Ansible in order to configure your credentials:
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.. code-block:: bash
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GCP_AUTH_KIND
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GCP_SERVICE_ACCOUNT_EMAIL
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GCP_SERVICE_ACCOUNT_FILE
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GCP_SCOPES
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GCE Dynamic Inventory
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---------------------
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The best way to interact with your hosts is to use the gcp_compute inventory plugin, which dynamically queries GCE and tells Ansible what nodes can be managed.
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To be able to use this GCE dynamic inventory plugin, you need to enable it first by specifying the following in the ``ansible.cfg`` file:
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.. code-block:: ini
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[inventory]
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enable_plugins = gcp_compute
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Then, create a file that ends in ``.gcp.yml`` in your root directory.
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The gcp_compute inventory script takes in the same authentication information as any module.
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Here's an example of a valid inventory file:
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.. code-block:: yaml
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plugin: gcp_compute
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projects:
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- graphite-playground
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auth_kind: serviceaccount
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service_account_file: /home/alexstephen/my_account.json
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Executing ``ansible-inventory --list -i <filename>.gcp.yml`` will create a list of GCP instances that are ready to be configured using Ansible.
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Create an instance
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``````````````````
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The full range of GCP modules provide the ability to create a wide variety of
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GCP resources with the full support of the entire GCP API.
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The following playbook creates a GCE Instance. This instance relies on other GCP
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resources like Disk. By creating other resources separately, we can give as
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much detail as necessary about how we want to configure the other resources, for example
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formatting of the Disk. By registering it to a variable, we can simply insert the
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variable into the instance task. The gcp_compute_instance module will figure out the
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rest.
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.. code-block:: yaml
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- name: Create an instance
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hosts: localhost
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gather_facts: no
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vars:
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gcp_project: my-project
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gcp_cred_kind: serviceaccount
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gcp_cred_file: /home/my_account.json
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zone: "us-central1-a"
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region: "us-central1"
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tasks:
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- name: create a disk
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gcp_compute_disk:
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name: 'disk-instance'
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size_gb: 50
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source_image: 'projects/ubuntu-os-cloud/global/images/family/ubuntu-1604-lts'
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zone: "{{ zone }}"
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project: "{{ gcp_project }}"
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auth_kind: "{{ gcp_cred_kind }}"
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service_account_file: "{{ gcp_cred_file }}"
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scopes:
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- https://www.googleapis.com/auth/compute
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state: present
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register: disk
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- name: create a address
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gcp_compute_address:
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name: 'address-instance'
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region: "{{ region }}"
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project: "{{ gcp_project }}"
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auth_kind: "{{ gcp_cred_kind }}"
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service_account_file: "{{ gcp_cred_file }}"
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scopes:
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- https://www.googleapis.com/auth/compute
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state: present
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register: address
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- name: create a instance
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gcp_compute_instance:
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state: present
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name: test-vm
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machine_type: n1-standard-1
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disks:
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- auto_delete: true
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boot: true
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source: "{{ disk }}"
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network_interfaces:
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- network: null # use default
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access_configs:
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- name: 'External NAT'
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nat_ip: "{{ address }}"
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type: 'ONE_TO_ONE_NAT'
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zone: "{{ zone }}"
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project: "{{ gcp_project }}"
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auth_kind: "{{ gcp_cred_kind }}"
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service_account_file: "{{ gcp_cred_file }}"
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scopes:
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- https://www.googleapis.com/auth/compute
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register: instance
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- name: Wait for SSH to come up
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wait_for: host={{ address.address }} port=22 delay=10 timeout=60
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- name: Add host to groupname
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add_host: hostname={{ address.address }} groupname=new_instances
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- name: Manage new instances
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hosts: new_instances
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connection: ssh
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become: True
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roles:
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- base_configuration
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- production_server
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Note that use of the "add_host" module above creates a temporary, in-memory group. This means that a play in the same playbook can then manage machines
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in the 'new_instances' group, if so desired. Any sort of arbitrary configuration is possible at this point.
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For more information about Google Cloud, please visit the `Google Cloud website <https://cloud.google.com>`_.
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Migration Guides
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----------------
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gce.py -> gcp_compute_instance.py
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`````````````````````````````````
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As of Ansible 2.8, we're encouraging everyone to move from the ``gce`` module to the
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``gcp_compute_instance`` module. The ``gcp_compute_instance`` module has better
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support for all of GCP's features, fewer dependencies, more flexibility, and
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better supports GCP's authentication systems.
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The ``gcp_compute_instance`` module supports all of the features of the ``gce``
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module (and more!). Below is a mapping of ``gce`` fields over to
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``gcp_compute_instance`` fields.
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============================ ========================================== ======================
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gce.py gcp_compute_instance.py Notes
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============================ ========================================== ======================
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state state/status State on gce has multiple values: "present", "absent", "stopped", "started", "terminated". State on gcp_compute_instance is used to describe if the instance exists (present) or does not (absent). Status is used to describe if the instance is "started", "stopped" or "terminated".
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image disks[].initialize_params.source_image You'll need to create a single disk using the disks[] parameter and set it to be the boot disk (disks[].boot = true)
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image_family disks[].initialize_params.source_image See above.
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external_projects disks[].initialize_params.source_image The name of the source_image will include the name of the project.
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instance_names Use a loop or multiple tasks. Using loops is a more Ansible-centric way of creating multiple instances and gives you the most flexibility.
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service_account_email service_accounts[].email This is the service_account email address that you want the instance to be associated with. It is not the service_account email address that is used for the credentials necessary to create the instance.
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service_account_permissions service_accounts[].scopes These are the permissions you want to grant to the instance.
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pem_file Not supported. We recommend using JSON service account credentials instead of PEM files.
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credentials_file service_account_file
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project_id project
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name name This field does not accept an array of names. Use a loop to create multiple instances.
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num_instances Use a loop For maximum flexibility, we're encouraging users to use Ansible features to create multiple instances, rather than letting the module do it for you.
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network network_interfaces[].network
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subnetwork network_interfaces[].subnetwork
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persistent_boot_disk disks[].type = 'PERSISTENT'
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disks disks[]
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ip_forward can_ip_forward
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external_ip network_interfaces[].access_configs.nat_ip This field takes multiple types of values. You can create an IP address with ``gcp_compute_address`` and place the name/output of the address here. You can also place the string value of the IP address's GCP name or the actual IP address.
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disks_auto_delete disks[].auto_delete
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preemptible scheduling.preemptible
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disk_size disks[].initialize_params.disk_size_gb
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============================ ========================================== ======================
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An example playbook is below:
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.. code:: yaml
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gcp_compute_instance:
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name: "{{ item }}"
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machine_type: n1-standard-1
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... # any other settings
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zone: us-central1-a
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project: "my-project"
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auth_kind: "service_account_file"
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service_account_file: "~/my_account.json"
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state: present
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loop:
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- instance-1
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- instance-2
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