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247 lines
7.8 KiB
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247 lines
7.8 KiB
Markdown
Ansible
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=======
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Ansible is a extra-simple tool/API for doing 'parallel remote things' over SSH -- whether
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executing commands, running "modules", or executing larger 'playbooks' that
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can serve as a configuration management or deployment system.
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While [Func](http://fedorahosted.org/func), which I co-wrote,
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aspired to avoid using SSH and have it's own daemon infrastructure,
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Ansible aspires to be quite different and more minimal, but still able
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to grow more modularly over time. This is based on talking to a lot of
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users of various tools and wishing to eliminate problems with connectivity
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and long running daemons, or not picking tool X because they preferred to
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code in Y. Further, playbooks take things a whole step further, building the config
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and deployment system I always wanted to build.
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Why use Ansible versus something else? (Fabric, Capistrano, mCollective,
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Func, SaltStack, etc?) It will have far less code, it will be more correct,
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and it will be the easiest thing to hack on and use you'll ever see --
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regardless of your favorite language of choice. Want to only code plugins
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in bash or clojure? Ansible doesn't care. The docs will fit on one page
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and the source will be blindingly obvious.
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Design Principles
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=================
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* Dead simple setup
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* Super fast & parallel by default
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* No server or client daemons; use existing SSHd
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* No additional software required on client boxes
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* Modules can be written in ANY language
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* Awesome API for creating very powerful distributed scripts
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* Be usable as non-root
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* Create the easiest config management system to use, ever.
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Requirements
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============
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Requirements are extremely minimal.
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If you are running python 2.6 on the 'overlord' machine, you will need:
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* paramiko
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* python-jinja2
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* PyYAML (if using playbooks)
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If you are running less than Python 2.6, you will also need
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* the Python 2.4 or 2.5 backport of the multiprocessing module
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* simplejson
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On the managed nodes, to use templating, you will need:
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* python-jinja2 (you can install this with ansible)
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Patterns and Groups
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===================
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Ansible works off an inventory file (/etc/ansible/hosts or overrideable with -i). Hosts can
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be listed by IP or hostname, and groups are denoted with square brackets:
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Example:
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abc.example.com
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def.example.com
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[atlanta]
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192.168.10.50
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192.168.10.51
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[raleigh]
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192.168.10.52
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When running ansible commands, hosts are addressed by name, wildcard, or group name.
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This specifier is used in all ansible commands. 'all' is a built-in group name that matches all
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hosts. Group names and host wildcards can be mixed as needed:
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all
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'web*.example.com'
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'appservers;dbservers'
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'atlanta;raleigh'
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'192.168.10.50'
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Example: Massive Parallelism and Running Shell Commands
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=======================================================
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Reboot all web servers in Atlanta, 10 at a time:
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> ssh-agent bash
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> ssh-add ~/.ssh/id_rsa.pub
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> ansible atlanta -a "/sbin/reboot" -f 10
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The -f 10 specifies the usage of 10 simultaneous processes.
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Note that other than the command module, ansible modules do not work like simple scripts. They make
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the remote system look like you state, and run the commands neccessary to get it there.
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Example: Time-limited Background Operations
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===========================================
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Long running operations can be backgrounded, and their status can be checked on later. The same
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job ID is given to the same task on all hosts, so you won't lose track. Polling support
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is pending in the command line.
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> ansible all -B 3600 -a "/usr/bin/long_running_operation --do-stuff"
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> ansible all -n job_status -a jid=123456789
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Any module other than 'copy' or 'template' can be backgrounded.
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Example: File Transfer and Templating
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=====================================
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Ansible can SCP lots of files to multiple machines in parallel, and optionally use
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them as template sources.
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To just transfer a file directly to many different servers:
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> ansible atlanta copy -a "/etc/hosts /tmp/hosts"
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To use templating, first run the setup module to put the template variables you would
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like to use on the remote host. Then use the template module to write the
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files using the templates. Templates are written in Jinja2 format.
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> ansible webservers -m setup -a "favcolor=red ntp_server=192.168.1.1"
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> ansible webservers -m template -a "src=/srv/motd.j2 dest=/etc/motd"
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> ansible webservers -m template -a "src=/srv/ntp.j2 dest=/etc/ntp.conf"
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Need something like the fqdn in a template? If facter or ohai are installed, data from these projects
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will also be made available to the template engine, using 'facter_' and 'ohai_' prefixes for each.
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Example: Software Deployment From Source Control
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================================================
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Deploy your webapp straight from git
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> ansible webservers -m git -a "repo=git://foo dest=/srv/myapp version=HEAD"
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Since ansible modules can notify change handlers (see 'Playbooks') it is possible
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to tell ansible to run specific tasks when the code is updated, such as deploying
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Perl/Python/PHP/Ruby directly from git and then restarting apache.
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Other Modules
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=============
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Ansible has lots of other modules and they are growing.
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See the library directory in the source checkout or the manpage:
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[ansible-modules(5)](https://github.com/mpdehaan/ansible/blob/master/docs/man/man5/ansible-modules.5.asciidoc) that covers what's there and all the options they take.
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Playbooks
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=========
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Playbooks are a completely different way to use ansible and are particularly awesome.
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They are the basis for a really simple configuration management system, unlike
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any that already exist, and one that is very well suited to deploying complex
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multi-machine applications.
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An example showing a small playbook:
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---
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- hosts: all
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vars:
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http_port: 80
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max_clients: 200
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user: root
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tasks:
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- include: base.yml
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- name: configure template & module variables for future template calls
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action: setup http_port=80 max_clients=200
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- name: write the apache config file
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action: template src=/srv/httpd.j2 dest=/etc/httpd.conf
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notify:
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- restart apache
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- name: ensure apache is running
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action: service name=httpd state=started
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handlers:
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- include: handlers.yml
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Some key concepts here include:
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* Everything is expressed in simple YAML
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* Steps can be run as non-root
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* Modules can notify 'handlers' when changes occur.
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* Tasks and handlers can be 'included' to faciliate sharing and 'class' like behavior
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To run a playbook:
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ansible-playbook playbook.yml
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See the playbook format manpage -- [ansible-playbook(5)](https://github.com/mpdehaan/ansible/blob/master/docs/man/man5/ansible-playbook.5.asciidoc) for more details.
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API
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===
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The Python API is very powerful, and is how the ansible CLI and ansible-playbook
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are implemented.
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import ansible.runner
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runner = ansible.runner.Runner(
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module_name='ping',
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module_args='',
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pattern='web*',
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forks=10
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)
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datastructure = runner.run()
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The run method returns results per host, grouped by whether they
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could be contacted or not. Return types are module specific, as
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expressed in the 'ansible-modules' manpage.
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{
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"dark" : {
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"web1.example.com" : "failure message"
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}
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"contacted" : {
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"web2.example.com" : 1
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}
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}
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A module can return any type of JSON data it wants, so Ansible can
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be used as a framework to rapidly build powerful applications and scripts.
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License
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=======
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GPLv3
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Communicate
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===========
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* [ansible-project mailing list](http://groups.google.com/group/ansible-project)
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* irc.freenode.net: #ansible
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Author
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======
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Michael DeHaan -- michael.dehaan@gmail.com
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[http://michaeldehaan.net](http://michaeldehaan.net/)
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