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.. _quick-install-admin-guide:
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Administrator's Quick Installation Guide
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^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
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This is the Administrator's quick installation guide.
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It describes how to install the whole synnefo stack on two (2) physical nodes,
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with minimum configuration. It installs synnefo from Debian packages, and
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assumes the nodes run Debian Squeeze. After successful installation, you will
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have the following services running:
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    * Identity Management (Astakos)
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    * Object Storage Service (Pithos+)
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    * Compute Service (Cyclades)
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    * Image Registry Service (Plankton)
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and a single unified Web UI to manage them all.
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The Volume Storage Service (Archipelago) and the Billing Service (Aquarium) are
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not released yet.
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If you just want to install the Object Storage Service (Pithos+), follow the
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guide and just stop after the "Testing of Pithos+" section.
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Installation of Synnefo / Introduction
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======================================
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We will install the services with the above list's order. Cyclades and Plankton
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will be installed in a single step (at the end), because at the moment they are
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contained in the same software component. Furthermore, we will install all
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services in the first physical node, except Pithos+ which will be installed in
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the second, due to a conflict between the snf-pithos-app and snf-cyclades-app
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component (scheduled to be fixed in the next version).
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For the rest of the documentation we will refer to the first physical node as
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"node1" and the second as "node2". We will also assume that their domain names
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are "node1.example.com" and "node2.example.com" and their IPs are "4.3.2.1" and
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"4.3.2.2" respectively.
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.. note:: It is import that the two machines are under the same domain name.
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    If they are not, you can do this by editting the file ``/etc/hosts``
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    on both machines, and add the following lines:
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    .. code-block:: console
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        4.3.2.1     node1.example.com
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        4.3.2.2     node2.example.com
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General Prerequisites
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=====================
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These are the general synnefo prerequisites, that you need on node1 and node2
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and are related to all the services (Astakos, Pithos+, Cyclades, Plankton).
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To be able to download all synnefo components you need to add the following
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lines in your ``/etc/apt/sources.list`` file:
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| ``deb http://apt.dev.grnet.gr squeeze main``
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| ``deb-src http://apt.dev.grnet.gr squeeze main``
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| ``deb http://apt.dev.grnet.gr squeeze-backports main``
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and import the repo's GPG key:
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| ``curl https://dev.grnet.gr/files/apt-grnetdev.pub | apt-key add -``
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Also add the following line to enable the ``squeeze-backports`` repository,
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which may provide more recent versions of certain packages. The repository
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is deactivated by default and must be specified expicitly in ``apt-get``
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operations:
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| ``deb http://backports.debian.org/debian-backports squeeze-backports main``
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You also need a shared directory visible by both nodes. Pithos+ will save all
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data inside this directory. By 'all data', we mean files, images, and pithos
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specific mapping data. If you plan to upload more than one basic image, this
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directory should have at least 50GB of free space. During this guide, we will
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assume that node1 acts as an NFS server and serves the directory ``/srv/pithos``
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to node2 (be sure to set no_root_squash flag). Node2 has this directory
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mounted under ``/srv/pithos``, too.
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Before starting the synnefo installation, you will need basic third party
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software to be installed and configured on the physical nodes. We will describe
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each node's general prerequisites separately. Any additional configuration,
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specific to a synnefo service for each node, will be described at the service's
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section.
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Finally, it is required for Cyclades and Ganeti nodes to have synchronized
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system clocks (e.g. by running ntpd).
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Node1
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-----
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General Synnefo dependencies
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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    * apache (http server)
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    * gunicorn (WSGI http server)
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    * postgresql (database)
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    * rabbitmq (message queue)
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    * ntp (NTP daemon)
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    * gevent
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You can install apache2, progresql and ntp by running:
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.. code-block:: console
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   # apt-get install apache2 postgresql ntp
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Make sure to install gunicorn >= v0.12.2. You can do this by installing from
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the official debian backports:
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.. code-block:: console
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   # apt-get -t squeeze-backports install gunicorn
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Also, make sure to install gevent >= 0.13.6. Again from the debian backports:
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.. code-block:: console
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   # apt-get -t squeeze-backports install python-gevent
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On node1, we will create our databases, so you will also need the
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python-psycopg2 package:
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.. code-block:: console
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   # apt-get install python-psycopg2
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To install RabbitMQ>=2.8.4, use the RabbitMQ APT repository by adding the
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following line to ``/etc/apt/sources.list``:
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.. code-block:: console
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    deb http://www.rabbitmq.com/debian testing main
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Add RabbitMQ public key, to trusted key list:
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.. code-block:: console
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  # wget http://www.rabbitmq.com/rabbitmq-signing-key-public.asc
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  # apt-key add rabbitmq-signing-key-public.asc
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Finally, to install the package run:
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.. code-block:: console
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  # apt-get update
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  # apt-get install rabbitmq-server
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Database setup
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~~~~~~~~~~~~~~
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On node1, we create a database called ``snf_apps``, that will host all django
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apps related tables. We also create the user ``synnefo`` and grant him all
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privileges on the database. We do this by running:
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.. code-block:: console
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    root@node1:~ # su - postgres
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    postgres@node1:~ $ psql
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    postgres=# CREATE DATABASE snf_apps WITH ENCODING 'UTF8' LC_COLLATE='C' LC_CTYPE='C' TEMPLATE=template0;
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    postgres=# CREATE USER synnefo WITH PASSWORD 'example_passw0rd';
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    postgres=# GRANT ALL PRIVILEGES ON DATABASE snf_apps TO synnefo;
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We also create the database ``snf_pithos`` needed by the pithos+ backend and
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grant the ``synnefo`` user all privileges on the database. This database could
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be created on node2 instead, but we do it on node1 for simplicity. We will
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create all needed databases on node1 and then node2 will connect to them.
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.. code-block:: console
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    postgres=# CREATE DATABASE snf_pithos WITH ENCODING 'UTF8' LC_COLLATE='C' LC_CTYPE='C' TEMPLATE=template0;
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    postgres=# GRANT ALL PRIVILEGES ON DATABASE snf_pithos TO synnefo;
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Configure the database to listen to all network interfaces. You can do this by
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editting the file ``/etc/postgresql/8.4/main/postgresql.conf`` and change
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``listen_addresses`` to ``'*'`` :
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.. code-block:: console
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    listen_addresses = '*'
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Furthermore, edit ``/etc/postgresql/8.4/main/pg_hba.conf`` to allow node1 and
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node2 to connect to the database. Add the following lines under ``#IPv4 local
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connections:`` :
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.. code-block:: console
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    host		all	all	4.3.2.1/32	md5
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    host		all	all	4.3.2.2/32	md5
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Make sure to substitute "4.3.2.1" and "4.3.2.2" with node1's and node2's
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actual IPs. Now, restart the server to apply the changes:
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.. code-block:: console
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   # /etc/init.d/postgresql restart
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Gunicorn setup
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~~~~~~~~~~~~~~
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Create the file ``/etc/gunicorn.d/synnefo`` containing the following:
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.. code-block:: console
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    CONFIG = {
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     'mode': 'django',
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     'environment': {
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       'DJANGO_SETTINGS_MODULE': 'synnefo.settings',
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     },
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     'working_dir': '/etc/synnefo',
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     'user': 'www-data',
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     'group': 'www-data',
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     'args': (
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       '--bind=127.0.0.1:8080',
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       '--worker-class=gevent',
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       '--workers=8',
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       '--log-level=debug',
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     ),
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    }
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.. warning:: Do NOT start the server yet, because it won't find the
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    ``synnefo.settings`` module. Also, in case you are using ``/etc/hosts``
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    instead of a DNS to get the hostnames, change ``--worker-class=gevent`` to
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    ``--worker-class=sync``. We will start the server after successful
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    installation of astakos. If the server is running::
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       # /etc/init.d/gunicorn stop
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Apache2 setup
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~~~~~~~~~~~~~
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Create the file ``/etc/apache2/sites-available/synnefo`` containing the
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following:
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.. code-block:: console
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    <VirtualHost *:80>
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        ServerName node1.example.com
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        RewriteEngine On
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        RewriteCond %{THE_REQUEST} ^.*(\\r|\\n|%0A|%0D).* [NC]
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        RewriteRule ^(.*)$ - [F,L]
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        RewriteRule (.*) https://%{HTTP_HOST}%{REQUEST_URI}
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    </VirtualHost>
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Create the file ``/etc/apache2/sites-available/synnefo-ssl`` containing the
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following:
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.. code-block:: console
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    <IfModule mod_ssl.c>
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    <VirtualHost _default_:443>
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        ServerName node1.example.com
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        Alias /static "/usr/share/synnefo/static"
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        #  SetEnv no-gzip
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        #  SetEnv dont-vary
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       AllowEncodedSlashes On
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       RequestHeader set X-Forwarded-Protocol "https"
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    <Proxy * >
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        Order allow,deny
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        Allow from all
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    </Proxy>
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        SetEnv                proxy-sendchunked
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        SSLProxyEngine        off
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        ProxyErrorOverride    off
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        ProxyPass        /static !
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        ProxyPass        / http://localhost:8080/ retry=0
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        ProxyPassReverse / http://localhost:8080/
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        RewriteEngine On
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        RewriteCond %{THE_REQUEST} ^.*(\\r|\\n|%0A|%0D).* [NC]
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        RewriteRule ^(.*)$ - [F,L]
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        SSLEngine on
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        SSLCertificateFile    /etc/ssl/certs/ssl-cert-snakeoil.pem
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        SSLCertificateKeyFile /etc/ssl/private/ssl-cert-snakeoil.key
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    </VirtualHost>
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    </IfModule>
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Now enable sites and modules by running:
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.. code-block:: console
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   # a2enmod ssl
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   # a2enmod rewrite
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   # a2dissite default
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   # a2ensite synnefo
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   # a2ensite synnefo-ssl
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   # a2enmod headers
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   # a2enmod proxy_http
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.. warning:: Do NOT start/restart the server yet. If the server is running::
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       # /etc/init.d/apache2 stop
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.. _rabbitmq-setup:
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Message Queue setup
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~~~~~~~~~~~~~~~~~~~
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The message queue will run on node1, so we need to create the appropriate
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rabbitmq user. The user is named ``synnefo`` and gets full privileges on all
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exchanges:
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.. code-block:: console
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   # rabbitmqctl add_user synnefo "example_rabbitmq_passw0rd"
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   # rabbitmqctl set_permissions synnefo ".*" ".*" ".*"
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We do not need to initialize the exchanges. This will be done automatically,
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during the Cyclades setup.
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Pithos+ data directory setup
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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As mentioned in the General Prerequisites section, there is a directory called
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``/srv/pithos`` visible by both nodes. We create and setup the ``data``
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directory inside it:
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.. code-block:: console
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   # cd /srv/pithos
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   # mkdir data
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   # chown www-data:www-data data
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   # chmod g+ws data
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You are now ready with all general prerequisites concerning node1. Let's go to
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node2.
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Node2
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-----
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General Synnefo dependencies
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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    * apache (http server)
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    * gunicorn (WSGI http server)
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    * postgresql (database)
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    * ntp (NTP daemon)
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    * gevent
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You can install the above by running:
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.. code-block:: console
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   # apt-get install apache2 postgresql ntp
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Make sure to install gunicorn >= v0.12.2. You can do this by installing from
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the official debian backports:
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.. code-block:: console
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   # apt-get -t squeeze-backports install gunicorn
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Also, make sure to install gevent >= 0.13.6. Again from the debian backports:
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.. code-block:: console
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   # apt-get -t squeeze-backports install python-gevent
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Node2 will connect to the databases on node1, so you will also need the
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python-psycopg2 package:
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.. code-block:: console
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   # apt-get install python-psycopg2
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Database setup
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~~~~~~~~~~~~~~
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All databases have been created and setup on node1, so we do not need to take
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any action here. From node2, we will just connect to them. When you get familiar
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with the software you may choose to run different databases on different nodes,
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for performance/scalability/redundancy reasons, but those kind of setups are out
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of the purpose of this guide.
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Gunicorn setup
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~~~~~~~~~~~~~~
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Create the file ``/etc/gunicorn.d/synnefo`` containing the following
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(same contents as in node1; you can just copy/paste the file):
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.. code-block:: console
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    CONFIG = {
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     'mode': 'django',
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     'environment': {
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      'DJANGO_SETTINGS_MODULE': 'synnefo.settings',
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     },
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     'working_dir': '/etc/synnefo',
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     'user': 'www-data',
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     'group': 'www-data',
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     'args': (
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       '--bind=127.0.0.1:8080',
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       '--worker-class=gevent',
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       '--workers=4',
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       '--log-level=debug',
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       '--timeout=43200'
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     ),
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    }
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.. warning:: Do NOT start the server yet, because it won't find the
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    ``synnefo.settings`` module. Also, in case you are using ``/etc/hosts``
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    instead of a DNS to get the hostnames, change ``--worker-class=gevent`` to
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    ``--worker-class=sync``. We will start the server after successful
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    installation of astakos. If the server is running::
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       # /etc/init.d/gunicorn stop
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Apache2 setup
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~~~~~~~~~~~~~
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Create the file ``/etc/apache2/sites-available/synnefo`` containing the
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following:
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.. code-block:: console
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    <VirtualHost *:80>
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        ServerName node2.example.com
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        RewriteEngine On
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        RewriteCond %{THE_REQUEST} ^.*(\\r|\\n|%0A|%0D).* [NC]
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        RewriteRule ^(.*)$ - [F,L]
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        RewriteRule (.*) https://%{HTTP_HOST}%{REQUEST_URI}
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    </VirtualHost>
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Create the file ``synnefo-ssl`` under ``/etc/apache2/sites-available/``
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containing the following:
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.. code-block:: console
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    <IfModule mod_ssl.c>
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    <VirtualHost _default_:443>
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        ServerName node2.example.com
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        Alias /static "/usr/share/synnefo/static"
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        SetEnv no-gzip
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        SetEnv dont-vary
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        AllowEncodedSlashes On
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        RequestHeader set X-Forwarded-Protocol "https"
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        <Proxy * >
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            Order allow,deny
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            Allow from all
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        </Proxy>
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        SetEnv                proxy-sendchunked
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        SSLProxyEngine        off
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        ProxyErrorOverride    off
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        ProxyPass        /static !
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        ProxyPass        / http://localhost:8080/ retry=0
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        ProxyPassReverse / http://localhost:8080/
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        SSLEngine on
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        SSLCertificateFile    /etc/ssl/certs/ssl-cert-snakeoil.pem
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        SSLCertificateKeyFile /etc/ssl/private/ssl-cert-snakeoil.key
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    </VirtualHost>
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    </IfModule>
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As in node1, enable sites and modules by running:
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.. code-block:: console
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   # a2enmod ssl
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   # a2enmod rewrite
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   # a2dissite default
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   # a2ensite synnefo
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   # a2ensite synnefo-ssl
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   # a2enmod headers
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   # a2enmod proxy_http
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.. warning:: Do NOT start/restart the server yet. If the server is running::
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       # /etc/init.d/apache2 stop
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We are now ready with all general prerequisites for node2. Now that we have
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finished with all general prerequisites for both nodes, we can start installing
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the services. First, let's install Astakos on node1.
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Installation of Astakos on node1
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================================
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To install astakos, grab the package from our repository (make sure  you made
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the additions needed in your ``/etc/apt/sources.list`` file, as described
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previously), by running:
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.. code-block:: console
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   # apt-get install snf-astakos-app snf-quotaholder-app snf-pithos-backend
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After successful installation of snf-astakos-app, make sure that also
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snf-webproject has been installed (marked as "Recommended" package). By default
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Debian installs "Recommended" packages, but if you have changed your
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configuration and the package didn't install automatically, you should
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explicitly install it manually running:
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.. code-block:: console
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   # apt-get install snf-webproject
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The reason snf-webproject is "Recommended" and not a hard dependency, is to give
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the experienced administrator the ability to install Synnefo in a custom made
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`Django <https://www.djangoproject.com/>`_ project. This corner case
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concerns only very advanced users that know what they are doing and want to
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experiment with synnefo.
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.. _conf-astakos:
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Configuration of Astakos
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========================
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Conf Files
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----------
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After astakos is successfully installed, you will find the directory
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``/etc/synnefo`` and some configuration files inside it. The files contain
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commented configuration options, which are the default options. While installing
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new snf-* components, new configuration files will appear inside the directory.
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In this guide (and for all services), we will edit only the minimum necessary
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configuration options, to reflect our setup. Everything else will remain as is.
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After getting familiar with synnefo, you will be able to customize the software
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as you wish and fits your needs. Many options are available, to empower the
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administrator with extensively customizable setups.
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For the snf-webproject component (installed as an astakos dependency), we
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need the following:
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Edit ``/etc/synnefo/10-snf-webproject-database.conf``. You will need to
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uncomment and edit the ``DATABASES`` block to reflect our database:
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.. code-block:: console
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    DATABASES = {
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     'default': {
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         # 'postgresql_psycopg2', 'postgresql','mysql', 'sqlite3' or 'oracle'
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         'ENGINE': 'postgresql_psycopg2',
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         # ATTENTION: This *must* be the absolute path if using sqlite3.
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         # See: http://docs.djangoproject.com/en/dev/ref/settings/#name
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         'NAME': 'snf_apps',
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         'USER': 'synnefo',                      # Not used with sqlite3.
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         'PASSWORD': 'example_passw0rd',         # Not used with sqlite3.
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         # Set to empty string for localhost. Not used with sqlite3.
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         'HOST': '4.3.2.1',
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         # Set to empty string for default. Not used with sqlite3.
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         'PORT': '5432',
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     }
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    }
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Edit ``/etc/synnefo/10-snf-webproject-deploy.conf``. Uncomment and edit
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``SECRET_KEY``. This is a Django specific setting which is used to provide a
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seed in secret-key hashing algorithms. Set this to a random string of your
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choise and keep it private:
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.. code-block:: console
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    SECRET_KEY = 'sy6)mw6a7x%n)-example_secret_key#zzk4jo6f2=uqu!1o%)'
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For astakos specific configuration, edit the following options in
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``/etc/synnefo/20-snf-astakos-app-settings.conf`` :
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.. code-block:: console
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    ASTAKOS_DEFAULT_ADMIN_EMAIL = None
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    ASTAKOS_COOKIE_DOMAIN = '.example.com'
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    ASTAKOS_BASEURL = 'https://node1.example.com'
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The ``ASTAKOS_COOKIE_DOMAIN`` should be the base url of our domain (for all
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services). ``ASTAKOS_BASEURL`` is the astakos home page.
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``ASTAKOS_DEFAULT_ADMIN_EMAIL`` refers to the administrator's email.
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Every time a new account is created a notification is sent to this email.
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For this we need access to a running mail server, so we have disabled
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it for now by setting its value to None. For more informations on this,
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read the relative :ref:`section <mail-server>`.
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.. note:: For the purpose of this guide, we don't enable recaptcha authentication.
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    If you would like to enable it, you have to edit the following options:
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598 319b615d Ilias Tsitsimpis
    .. code-block:: console
599 319b615d Ilias Tsitsimpis
600 319b615d Ilias Tsitsimpis
        ASTAKOS_RECAPTCHA_PUBLIC_KEY = 'example_recaptcha_public_key!@#$%^&*('
601 319b615d Ilias Tsitsimpis
        ASTAKOS_RECAPTCHA_PRIVATE_KEY = 'example_recaptcha_private_key!@#$%^&*('
602 319b615d Ilias Tsitsimpis
        ASTAKOS_RECAPTCHA_USE_SSL = True
603 319b615d Ilias Tsitsimpis
        ASTAKOS_RECAPTCHA_ENABLED = True
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605 319b615d Ilias Tsitsimpis
    For the ``ASTAKOS_RECAPTCHA_PUBLIC_KEY`` and ``ASTAKOS_RECAPTCHA_PRIVATE_KEY``
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    go to https://www.google.com/recaptcha/admin/create and create your own pair.
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Then edit ``/etc/synnefo/20-snf-astakos-app-cloudbar.conf`` :
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.. code-block:: console
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    CLOUDBAR_LOCATION = 'https://node1.example.com/static/im/cloudbar/'
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    CLOUDBAR_SERVICES_URL = 'https://node1.example.com/im/get_services'
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    CLOUDBAR_MENU_URL = 'https://node1.example.com/im/get_menu'
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Those settings have to do with the black cloudbar endpoints and will be
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described in more detail later on in this guide. For now, just edit the domain
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to point at node1 which is where we have installed Astakos.
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If you are an advanced user and want to use the Shibboleth Authentication
623 d587329c Konstantinos Tompoulidis
method, read the relative :ref:`section <shibboleth-auth>`.
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625 5a2d4e43 Christos Stavrakakis
.. note:: Because Cyclades and Astakos are running on the same machine
626 5a2d4e43 Christos Stavrakakis
    in our example, we have to deactivate the CSRF verification. We can do so
627 5a2d4e43 Christos Stavrakakis
    by adding to
628 5a2d4e43 Christos Stavrakakis
    ``/etc/synnefo/99-local.conf``:
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    .. code-block:: console
631 5a2d4e43 Christos Stavrakakis
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        MIDDLEWARE_CLASSES.remove('django.middleware.csrf.CsrfViewMiddleware')
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        TEMPLATE_CONTEXT_PROCESSORS.remove('django.core.context_processors.csrf')
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Since version 0.13 you need to configure some basic settings for the new *Quota*
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feature.
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638 d587329c Konstantinos Tompoulidis
Specifically:
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Edit ``/etc/synnefo/20-snf-astakos-app-settings.conf``:
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.. code-block:: console
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    QUOTAHOLDER_URL = 'https://node1.example.com/quotaholder/v'
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    QUOTAHOLDER_TOKEN = 'aExampleTokenJbFm12w'
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    ASTAKOS_QUOTAHOLDER_TOKEN = 'aExampleTokenJbFm12w'
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    ASTAKOS_QUOTAHOLDER_URL = 'https://node1.example.com/quotaholder/v'
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Enable Pooling
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--------------
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This section can be bypassed, but we strongly recommend you apply the following,
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since they result in a significant performance boost.
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Synnefo includes a pooling DBAPI driver for PostgreSQL, as a thin wrapper
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around Psycopg2. This allows independent Django requests to reuse pooled DB
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connections, with significant performance gains.
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To use, first monkey-patch psycopg2. For Django, run this before the
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``DATABASES`` setting in ``/etc/synnefo/10-snf-webproject-database.conf``:
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.. code-block:: console
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664 d587329c Konstantinos Tompoulidis
    from synnefo.lib.db.pooled_psycopg2 import monkey_patch_psycopg2
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    monkey_patch_psycopg2()
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Since we are running with greenlets, we should modify psycopg2 behavior, so it
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works properly in a greenlet context:
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670 4e3e3d24 Constantinos Venetsanopoulos
.. code-block:: console
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672 d587329c Konstantinos Tompoulidis
    from synnefo.lib.db.psyco_gevent import make_psycopg_green
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    make_psycopg_green()
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Use the Psycopg2 driver as usual. For Django, this means using
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``django.db.backends.postgresql_psycopg2`` without any modifications. To enable
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connection pooling, pass a nonzero ``synnefo_poolsize`` option to the DBAPI
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driver, through ``DATABASES.OPTIONS`` in Django.
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All the above will result in an ``/etc/synnefo/10-snf-webproject-database.conf``
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file that looks like this:
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.. code-block:: console
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    # Monkey-patch psycopg2
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    from synnefo.lib.db.pooled_psycopg2 import monkey_patch_psycopg2
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    monkey_patch_psycopg2()
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    # If running with greenlets
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    from synnefo.lib.db.psyco_gevent import make_psycopg_green
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    make_psycopg_green()
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    DATABASES = {
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     'default': {
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         # 'postgresql_psycopg2', 'postgresql','mysql', 'sqlite3' or 'oracle'
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         'ENGINE': 'postgresql_psycopg2',
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         'OPTIONS': {'synnefo_poolsize': 8},
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         # ATTENTION: This *must* be the absolute path if using sqlite3.
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         # See: http://docs.djangoproject.com/en/dev/ref/settings/#name
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         'NAME': 'snf_apps',
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         'USER': 'synnefo',                      # Not used with sqlite3.
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         'PASSWORD': 'example_passw0rd',         # Not used with sqlite3.
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         # Set to empty string for localhost. Not used with sqlite3.
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         'HOST': '4.3.2.1',
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         # Set to empty string for default. Not used with sqlite3.
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         'PORT': '5432',
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     }
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    }
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Database Initialization
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-----------------------
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After configuration is done, we initialize the database by running:
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.. code-block:: console
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    # snf-manage syncdb
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At this example we don't need to create a django superuser, so we select
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``[no]`` to the question. After a successful sync, we run the migration needed
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for astakos:
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.. code-block:: console
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    # snf-manage migrate im
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Then, we load the pre-defined user groups
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.. code-block:: console
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    # snf-manage loaddata groups
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.. _services-reg:
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Services Registration
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---------------------
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When the database is ready, we configure the elements of the Astakos cloudbar,
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to point to our future services:
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.. code-block:: console
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    # snf-manage service-add "~okeanos home" https://node1.example.com/im/ home-icon.png
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    # snf-manage service-add "cyclades" https://node1.example.com/ui/
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    # snf-manage service-add "pithos+" https://node2.example.com/ui/
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Servers Initialization
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----------------------
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Finally, we initialize the servers on node1:
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.. code-block:: console
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    root@node1:~ # /etc/init.d/gunicorn restart
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    root@node1:~ # /etc/init.d/apache2 restart
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We have now finished the Astakos setup. Let's test it now.
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Testing of Astakos
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==================
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Open your favorite browser and go to:
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``http://node1.example.com/im``
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If this redirects you to ``https://node1.example.com/im/`` and you can see
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the "welcome" door of Astakos, then you have successfully setup Astakos.
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Let's create our first user. At the homepage click the "CREATE ACCOUNT" button
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and fill all your data at the sign up form. Then click "SUBMIT". You should now
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see a green box on the top, which informs you that you made a successful request
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and the request has been sent to the administrators. So far so good, let's
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assume that you created the user with username ``user@example.com``.
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Now we need to activate that user. Return to a command prompt at node1 and run:
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.. code-block:: console
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    root@node1:~ # snf-manage user-list
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This command should show you a list with only one user; the one we just created.
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This user should have an id with a value of ``1``. It should also have an
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"active" status with the value of ``0`` (inactive). Now run:
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.. code-block:: console
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    root@node1:~ # snf-manage user-update --set-active 1
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This modifies the active value to ``1``, and actually activates the user.
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When running in production, the activation is done automatically with different
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types of moderation, that Astakos supports. You can see the moderation methods
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(by invitation, whitelists, matching regexp, etc.) at the Astakos specific
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documentation. In production, you can also manually activate a user, by sending
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him/her an activation email. See how to do this at the :ref:`User
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activation <user_activation>` section.
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Now let's go back to the homepage. Open ``http://node1.example.com/im/`` with
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your browser again. Try to sign in using your new credentials. If the astakos
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menu appears and you can see your profile, then you have successfully setup
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Astakos.
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Let's continue to install Pithos+ now.
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Installation of Pithos+ on node2
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================================
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To install pithos+, grab the packages from our repository (make sure  you made
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the additions needed in your ``/etc/apt/sources.list`` file, as described
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previously), by running:
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.. code-block:: console
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   # apt-get install snf-pithos-app snf-pithos-backend
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After successful installation of snf-pithos-app, make sure that also
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snf-webproject has been installed (marked as "Recommended" package). Refer to
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the "Installation of Astakos on node1" section, if you don't remember why this
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should happen. Now, install the pithos web interface:
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.. code-block:: console
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   # apt-get install snf-pithos-webclient
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This package provides the standalone pithos web client. The web client is the
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web UI for pithos+ and will be accessible by clicking "pithos+" on the Astakos
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interface's cloudbar, at the top of the Astakos homepage.
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.. _conf-pithos:
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Configuration of Pithos+
835 a96ec00f Constantinos Venetsanopoulos
========================
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837 a96ec00f Constantinos Venetsanopoulos
Conf Files
838 a96ec00f Constantinos Venetsanopoulos
----------
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After pithos+ is successfully installed, you will find the directory
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``/etc/synnefo`` and some configuration files inside it, as you did in node1
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after installation of astakos. Here, you will not have to change anything that
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has to do with snf-common or snf-webproject. Everything is set at node1. You
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only need to change settings that have to do with pithos+. Specifically:
845 a96ec00f Constantinos Venetsanopoulos
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Edit ``/etc/synnefo/20-snf-pithos-app-settings.conf``. There you need to set
847 11c16930 Ilias Tsitsimpis
this options:
848 a96ec00f Constantinos Venetsanopoulos
849 a96ec00f Constantinos Venetsanopoulos
.. code-block:: console
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851 a96ec00f Constantinos Venetsanopoulos
   PITHOS_BACKEND_DB_CONNECTION = 'postgresql://synnefo:example_passw0rd@node1.example.com:5432/snf_pithos'
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   PITHOS_BACKEND_BLOCK_PATH = '/srv/pithos/data'
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855 01bd066a Sofia Papagiannaki
   PITHOS_AUTHENTICATION_URL = 'https://node1.example.com/im/authenticate'
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   PITHOS_AUTHENTICATION_USERS = None
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   PITHOS_SERVICE_TOKEN = 'pithos_service_token22w=='
859 d587329c Konstantinos Tompoulidis
   PITHOS_USER_CATALOG_URL = 'https://node1.example.com/user_catalogs'
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   PITHOS_USER_FEEDBACK_URL = 'https://node1.example.com/feedback'
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   PITHOS_USER_LOGIN_URL = 'https://node1.example.com/login'
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   PITHOS_QUOTAHOLDER_URL = 'https://node1.example.com/quotaholder/v'
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   PITHOS_QUOTAHOLDER_TOKEN = 'aExampleTokenJbFm12w'
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   PITHOS_USE_QUOTAHOLDER = True
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867 d587329c Konstantinos Tompoulidis
   # Set to False if astakos & pithos are on the same host
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   #PITHOS_PROXY_USER_SERVICES = True
869 02d94254 Sofia Papagiannaki
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The ``PITHOS_BACKEND_DB_CONNECTION`` option tells to the pithos+ app where to
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find the pithos+ backend database. Above we tell pithos+ that its database is
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``snf_pithos`` at node1 and to connect as user ``synnefo`` with password
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``example_passw0rd``.  All those settings where setup during node1's "Database
875 bdfd94c9 Constantinos Venetsanopoulos
setup" section.
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877 bdfd94c9 Constantinos Venetsanopoulos
The ``PITHOS_BACKEND_BLOCK_PATH`` option tells to the pithos+ app where to find
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the pithos+ backend data. Above we tell pithos+ to store its data under
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``/srv/pithos/data``, which is visible by both nodes. We have already setup this
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directory at node1's "Pithos+ data directory setup" section.
881 a96ec00f Constantinos Venetsanopoulos
882 8f85321e Sofia Papagiannaki
The ``PITHOS_AUTHENTICATION_URL`` option tells to the pithos+ app in which URI
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is available the astakos authentication api. If not set, pithos+ tries to
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authenticate using the ``PITHOS_AUTHENTICATION_USERS`` user pool.
885 8f85321e Sofia Papagiannaki
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The ``PITHOS_SERVICE_TOKEN`` should be the Pithos+ token returned by running on
887 3e6d0710 Constantinos Venetsanopoulos
the Astakos node (node1 in our case):
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889 3e6d0710 Constantinos Venetsanopoulos
.. code-block:: console
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   # snf-manage service-list
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893 3e6d0710 Constantinos Venetsanopoulos
The token has been generated automatically during the :ref:`Pithos+ service
894 3e6d0710 Constantinos Venetsanopoulos
registration <services-reg>`.
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Then we need to setup the web UI and connect it to astakos. To do so, edit
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``/etc/synnefo/20-snf-pithos-webclient-settings.conf``:
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899 138253bc Constantinos Venetsanopoulos
.. code-block:: console
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901 d587329c Konstantinos Tompoulidis
    PITHOS_UI_LOGIN_URL = "https://node1.example.com/im/login?next="
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    PITHOS_UI_FEEDBACK_URL = "https://node2.example.com/feedback"
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The ``PITHOS_UI_LOGIN_URL`` option tells the client where to redirect you, if
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you are not logged in. The ``PITHOS_UI_FEEDBACK_URL`` option points at the
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pithos+ feedback form. Astakos already provides a generic feedback form for all
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services, so we use this one.
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Then edit ``/etc/synnefo/20-snf-pithos-webclient-cloudbar.conf``, to connect the
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pithos+ web UI with the astakos web UI (through the top cloudbar):
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.. code-block:: console
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914 d587329c Konstantinos Tompoulidis
    CLOUDBAR_LOCATION = 'https://node1.example.com/static/im/cloudbar/'
915 d587329c Konstantinos Tompoulidis
    PITHOS_UI_CLOUDBAR_ACTIVE_SERVICE = '3'
916 d587329c Konstantinos Tompoulidis
    CLOUDBAR_SERVICES_URL = 'https://node1.example.com/im/get_services'
917 d587329c Konstantinos Tompoulidis
    CLOUDBAR_MENU_URL = 'https://node1.example.com/im/get_menu'
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The ``CLOUDBAR_LOCATION`` tells the client where to find the astakos common
920 138253bc Constantinos Venetsanopoulos
cloudbar.
921 138253bc Constantinos Venetsanopoulos
922 de20a465 Constantinos Venetsanopoulos
The ``PITHOS_UI_CLOUDBAR_ACTIVE_SERVICE`` points to an already registered
923 de20a465 Constantinos Venetsanopoulos
Astakos service. You can see all :ref:`registered services <services-reg>` by
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running on the Astakos node (node1):
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926 de20a465 Constantinos Venetsanopoulos
.. code-block:: console
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   # snf-manage service-list
929 de20a465 Constantinos Venetsanopoulos
930 d587329c Konstantinos Tompoulidis
The value of ``PITHOS_UI_CLOUDBAR_ACTIVE_SERVICE`` should be the pithos
931 d587329c Konstantinos Tompoulidis
service's ``id`` as shown by the above command, in our case ``3``.
932 138253bc Constantinos Venetsanopoulos
933 138253bc Constantinos Venetsanopoulos
The ``CLOUDBAR_SERVICES_URL`` and ``CLOUDBAR_MENU_URL`` options are used by the
934 138253bc Constantinos Venetsanopoulos
pithos+ web client to get from astakos all the information needed to fill its
935 bdfd94c9 Constantinos Venetsanopoulos
own cloudbar. So we put our astakos deployment urls there.
936 138253bc Constantinos Venetsanopoulos
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Pooling and Greenlets
938 4e3e3d24 Constantinos Venetsanopoulos
---------------------
939 4e3e3d24 Constantinos Venetsanopoulos
940 4e3e3d24 Constantinos Venetsanopoulos
Pithos is pooling-ready without the need of further configuration, because it
941 4e3e3d24 Constantinos Venetsanopoulos
doesn't use a Django DB. It pools HTTP connections to Astakos and pithos
942 4e3e3d24 Constantinos Venetsanopoulos
backend objects for access to the Pithos DB.
943 4e3e3d24 Constantinos Venetsanopoulos
944 576e059b Constantinos Venetsanopoulos
However, as in Astakos, since we are running with Greenlets, it is also
945 576e059b Constantinos Venetsanopoulos
recommended to modify psycopg2 behavior so it works properly in a greenlet
946 576e059b Constantinos Venetsanopoulos
context. This means adding the following lines at the top of your
947 4e3e3d24 Constantinos Venetsanopoulos
``/etc/synnefo/10-snf-webproject-database.conf`` file:
948 4e3e3d24 Constantinos Venetsanopoulos
949 4e3e3d24 Constantinos Venetsanopoulos
.. code-block:: console
950 4e3e3d24 Constantinos Venetsanopoulos
951 d587329c Konstantinos Tompoulidis
    from synnefo.lib.db.psyco_gevent import make_psycopg_green
952 d587329c Konstantinos Tompoulidis
    make_psycopg_green()
953 d587329c Konstantinos Tompoulidis
954 d587329c Konstantinos Tompoulidis
Furthermore, add the ``--worker-class=gevent`` (or ``--worker-class=sync`` as
955 d587329c Konstantinos Tompoulidis
mentioned above, depending on your setup) argument on your
956 d587329c Konstantinos Tompoulidis
``/etc/gunicorn.d/synnefo`` configuration file. The file should look something
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like this:
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959 d587329c Konstantinos Tompoulidis
.. code-block:: console
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961 d587329c Konstantinos Tompoulidis
    CONFIG = {
962 d587329c Konstantinos Tompoulidis
     'mode': 'django',
963 d587329c Konstantinos Tompoulidis
     'environment': {
964 d587329c Konstantinos Tompoulidis
       'DJANGO_SETTINGS_MODULE': 'synnefo.settings',
965 d587329c Konstantinos Tompoulidis
     },
966 d587329c Konstantinos Tompoulidis
     'working_dir': '/etc/synnefo',
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     'user': 'www-data',
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     'group': 'www-data',
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     'args': (
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       '--bind=127.0.0.1:8080',
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       '--workers=4',
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       '--worker-class=gevent',
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       '--log-level=debug',
974 d587329c Konstantinos Tompoulidis
       '--timeout=43200'
975 d587329c Konstantinos Tompoulidis
     ),
976 d587329c Konstantinos Tompoulidis
    }
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978 c17bd3a7 Sofia Papagiannaki
Stamp Database Revision
979 c17bd3a7 Sofia Papagiannaki
-----------------------
980 c17bd3a7 Sofia Papagiannaki
981 c17bd3a7 Sofia Papagiannaki
Pithos uses the alembic_ database migrations tool.
982 c17bd3a7 Sofia Papagiannaki
983 c17bd3a7 Sofia Papagiannaki
.. _alembic: http://alembic.readthedocs.org
984 c17bd3a7 Sofia Papagiannaki
985 a33ee5d2 Sofia Papagiannaki
After a sucessful installation, we should stamp it at the most recent
986 a33ee5d2 Sofia Papagiannaki
revision, so that future migrations know where to start upgrading in
987 a33ee5d2 Sofia Papagiannaki
the migration history.
988 c17bd3a7 Sofia Papagiannaki
989 a33ee5d2 Sofia Papagiannaki
First, find the most recent revision in the migration history:
990 c17bd3a7 Sofia Papagiannaki
991 c17bd3a7 Sofia Papagiannaki
.. code-block:: console
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    root@node2:~ # pithos-migrate history
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    2a309a9a3438 -> 27381099d477 (head), alter public add column url
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    165ba3fbfe53 -> 2a309a9a3438, fix statistics negative population
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    3dd56e750a3 -> 165ba3fbfe53, update account in paths
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    230f8ce9c90f -> 3dd56e750a3, Fix latest_version
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    8320b1c62d9 -> 230f8ce9c90f, alter nodes add column latest version
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    None -> 8320b1c62d9, create index nodes.parent
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Finally, we stamp it with the one found in the previous step:
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.. code-block:: console
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    root@node2:~ # pithos-migrate stamp 27381099d477
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Servers Initialization
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----------------------
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After configuration is done, we initialize the servers on node2:
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.. code-block:: console
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    root@node2:~ # /etc/init.d/gunicorn restart
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    root@node2:~ # /etc/init.d/apache2 restart
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You have now finished the Pithos+ setup. Let's test it now.
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Testing of Pithos+
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==================
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Open your browser and go to the Astakos homepage:
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``http://node1.example.com/im``
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Login, and you will see your profile page. Now, click the "pithos+" link on the
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top black cloudbar. If everything was setup correctly, this will redirect you
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to:
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and you will see the blue interface of the Pithos+ application.  Click the
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orange "Upload" button and upload your first file. If the file gets uploaded
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successfully, then this is your first sign of a successful Pithos+ installation.
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Go ahead and experiment with the interface to make sure everything works
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correctly.
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You can also use the Pithos+ clients to sync data from your Windows PC or MAC.
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If you don't stumble on any problems, then you have successfully installed
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Pithos+, which you can use as a standalone File Storage Service.
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If you would like to do more, such as:
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    * Spawning VMs
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    * Spawning VMs from Images stored on Pithos+
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    * Uploading your custom Images to Pithos+
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    * Spawning VMs from those custom Images
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    * Registering existing Pithos+ files as Images
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    * Connect VMs to the Internet
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    * Create Private Networks
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    * Add VMs to Private Networks
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please continue with the rest of the guide.
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Cyclades (and Plankton) Prerequisites
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=====================================
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Before proceeding with the Cyclades (and Plankton) installation, make sure you
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have successfully set up Astakos and Pithos+ first, because Cyclades depends
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on them. If you don't have a working Astakos and Pithos+ installation yet,
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please return to the :ref:`top <quick-install-admin-guide>` of this guide.
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Besides Astakos and Pithos+, you will also need a number of additional working
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prerequisites, before you start the Cyclades installation.
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Ganeti
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------
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`Ganeti <http://code.google.com/p/ganeti/>`_ handles the low level VM management
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for Cyclades, so Cyclades requires a working Ganeti installation at the backend.
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Please refer to the
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`ganeti documentation <http://docs.ganeti.org/ganeti/2.5/html>`_ for all the
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gory details. A successful Ganeti installation concludes with a working
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:ref:`GANETI-MASTER <GANETI_NODES>` and a number of :ref:`GANETI-NODEs
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<GANETI_NODES>`.
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The above Ganeti cluster can run on different physical machines than node1 and
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node2 and can scale independently, according to your needs.
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For the purpose of this guide, we will assume that the :ref:`GANETI-MASTER
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<GANETI_NODES>` runs on node1 and is VM-capable. Also, node2 is a
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:ref:`GANETI-NODE <GANETI_NODES>` and is Master-capable and VM-capable too.
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We highly recommend that you read the official Ganeti documentation, if you are
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not familiar with Ganeti.
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Unfortunatelly, the current stable version of the stock Ganeti (v2.6.2) doesn't
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support IP pool management. This feature will be available in Ganeti >= 2.7.
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Synnefo depends on the IP pool functionality of Ganeti, so you have to use
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GRNET provided packages until stable 2.7 is out. To do so:
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.. code-block:: console
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   # apt-get install snf-ganeti ganeti-htools
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   # rmmod -f drbd && modprobe drbd minor_count=255 usermode_helper=/bin/true
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You should have:
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Ganeti >= 2.6.2+ippool11+hotplug5+extstorage3+rdbfix1+kvmfix2-1
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We assume that Ganeti will use the KVM hypervisor. After installing Ganeti on
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both nodes, choose a domain name that resolves to a valid floating IP (let's
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say it's ``ganeti.node1.example.com``). Make sure node1 and node2 have same
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dsa/rsa keys and authorised_keys for password-less root ssh between each other.
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If not then skip passing --no-ssh-init but be aware that it will replace
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/root/.ssh/* related files and you might lose access to master node. Also,
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make sure there is an lvm volume group named ``ganeti`` that will host your
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VMs' disks. Finally, setup a bridge interface on the host machines (e.g: br0).
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Then run on node1:
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.. code-block:: console
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    root@node1:~ # gnt-cluster init --enabled-hypervisors=kvm --no-ssh-init \
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                    --no-etc-hosts --vg-name=ganeti --nic-parameters link=br0 \
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                    --master-netdev eth0 ganeti.node1.example.com
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    root@node1:~ # gnt-cluster modify --default-iallocator hail
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    root@node1:~ # gnt-cluster modify --hypervisor-parameters kvm:kernel_path=
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    root@node1:~ # gnt-cluster modify --hypervisor-parameters kvm:vnc_bind_address=0.0.0.0
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    root@node1:~ # gnt-node add --no-ssh-key-check --master-capable=yes \
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                    --vm-capable=yes node2.example.com
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    root@node1:~ # gnt-cluster modify --disk-parameters=drbd:metavg=ganeti
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    root@node1:~ # gnt-group modify --disk-parameters=drbd:metavg=ganeti default
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For any problems you may stumble upon installing Ganeti, please refer to the
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`official documentation <http://docs.ganeti.org/ganeti/2.5/html>`_. Installation
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of Ganeti is out of the scope of this guide.
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.. _cyclades-install-snfimage:
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snf-image
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---------
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Installation
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~~~~~~~~~~~~
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For :ref:`Cyclades <cyclades>` to be able to launch VMs from specified Images,
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you need the :ref:`snf-image <snf-image>` OS Definition installed on *all*
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VM-capable Ganeti nodes. This means we need :ref:`snf-image <snf-image>` on
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node1 and node2. You can do this by running on *both* nodes:
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.. code-block:: console
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   # apt-get install snf-image snf-pithos-backend python-psycopg2
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snf-image also needs the `snf-pithos-backend <snf-pithos-backend>`, to be able
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to handle image files stored on Pithos+. It also needs `python-psycopg2` to be
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able to access the Pithos+ database. This is why, we also install them on *all*
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VM-capable Ganeti nodes.
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.. warning:: snf-image uses ``curl`` for handling URLs. This means that it will
1153 d587329c Konstantinos Tompoulidis
    not  work out of the box if you try to use URLs served by servers which do
1154 d587329c Konstantinos Tompoulidis
    not have a valid certificate. To circumvent this you should edit the file
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    ``/etc/default/snf-image``. Change ``#CURL="curl"`` to ``CURL="curl -k"``.
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After `snf-image` has been installed successfully, create the helper VM by
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running on *both* nodes:
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.. code-block:: console
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   # snf-image-update-helper
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This will create all the needed files under ``/var/lib/snf-image/helper/`` for
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snf-image to run successfully, and it may take a few minutes depending on your
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Internet connection.
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Configuration
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~~~~~~~~~~~~~
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snf-image supports native access to Images stored on Pithos+. This means that
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it can talk directly to the Pithos+ backend, without the need of providing a
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public URL. More details, are described in the next section. For now, the only
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thing we need to do, is configure snf-image to access our Pithos+ backend.
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To do this, we need to set the corresponding variables in
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``/etc/default/snf-image``, to reflect our Pithos+ setup:
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.. code-block:: console
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    PITHOS_DB="postgresql://synnefo:example_passw0rd@node1.example.com:5432/snf_pithos"
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    PITHOS_DATA="/srv/pithos/data"
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If you have installed your Ganeti cluster on different nodes than node1 and
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node2 make sure that ``/srv/pithos/data`` is visible by all of them.
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If you would like to use Images that are also/only stored locally, you need to
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save them under ``IMAGE_DIR``, however this guide targets Images stored only on
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Pithos+.
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Testing
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~~~~~~~
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You can test that snf-image is successfully installed by running on the
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:ref:`GANETI-MASTER <GANETI_NODES>` (in our case node1):
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.. code-block:: console
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   # gnt-os diagnose
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This should return ``valid`` for snf-image.
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If you are interested to learn more about snf-image's internals (and even use
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it alongside Ganeti without Synnefo), please see
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`here <https://code.grnet.gr/projects/snf-image/wiki>`_ for information
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concerning installation instructions, documentation on the design and
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implementation, and supported Image formats.
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.. _snf-image-images:
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Actual Images for snf-image
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---------------------------
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Now that snf-image is installed successfully we need to provide it with some
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Images. :ref:`snf-image <snf-image>` supports Images stored in ``extdump``,
1215 caa6c07d Constantinos Venetsanopoulos
``ntfsdump`` or ``diskdump`` format. We recommend the use of the ``diskdump``
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format. For more information about snf-image Image formats see `here
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<https://code.grnet.gr/projects/snf-image/wiki/Image_Format>`_.
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:ref:`snf-image <snf-image>` also supports three (3) different locations for the
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above Images to be stored:
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    * Under a local folder (usually an NFS mount, configurable as ``IMAGE_DIR``
1223 d587329c Konstantinos Tompoulidis
      in :file:`/etc/default/snf-image`)
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    * On a remote host (accessible via public URL e.g: http://... or ftp://...)
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    * On Pithos+ (accessible natively, not only by its public URL)
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For the purpose of this guide, we will use the Debian Squeeze Base Image found
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on the official `snf-image page
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<https://code.grnet.gr/projects/snf-image/wiki#Sample-Images>`_. The image is
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of type ``diskdump``. We will store it in our new Pithos+ installation.
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To do so, do the following:
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1234 d587329c Konstantinos Tompoulidis
a) Download the Image from the official snf-image page.
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1236 d587329c Konstantinos Tompoulidis
b) Upload the Image to your Pithos+ installation, either using the Pithos+ Web
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   UI or the command line client `kamaki
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   <http://docs.dev.grnet.gr/kamaki/latest/index.html>`_.
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Once the Image is uploaded successfully, download the Image's metadata file
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from the official snf-image page. You will need it, for spawning a VM from
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Ganeti, in the next section.
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Of course, you can repeat the procedure to upload more Images, available from
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the `official snf-image page
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<https://code.grnet.gr/projects/snf-image/wiki#Sample-Images>`_.
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.. _ganeti-with-pithos-images:
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Spawning a VM from a Pithos+ Image, using Ganeti
1251 7a8df455 Constantinos Venetsanopoulos
------------------------------------------------
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Now, it is time to test our installation so far. So, we have Astakos and
1254 caa6c07d Constantinos Venetsanopoulos
Pithos+ installed, we have a working Ganeti installation, the snf-image
1255 caa6c07d Constantinos Venetsanopoulos
definition installed on all VM-capable nodes and a Debian Squeeze Image on
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Pithos+. Make sure you also have the `metadata file
1257 caa6c07d Constantinos Venetsanopoulos
<https://pithos.okeanos.grnet.gr/public/gwqcv>`_ for this image.
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Run on the :ref:`GANETI-MASTER's <GANETI_NODES>` (node1) command line:
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.. code-block:: console
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1263 cc16407a Dimitris Aragiorgis
   # gnt-instance add -o snf-image+default --os-parameters \
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                      img_passwd=my_vm_example_passw0rd,img_format=diskdump,img_id="pithos://UUID/pithos/debian_base-6.0-7-x86_64.diskdump",img_properties='{"OSFAMILY":"linux"\,"ROOT_PARTITION":"1"}' \
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                      -t plain --disk 0:size=2G --no-name-check --no-ip-check \
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                      testvm1
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In the above command:
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 * ``img_passwd``: the arbitrary root password of your new instance
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 * ``img_format``: set to ``diskdump`` to reflect the type of the uploaded Image
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 * ``img_id``: If you want to deploy an Image stored on Pithos+ (our case), this
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               should have the format ``pithos://<UUID>/<container>/<filename>``:
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               * ``username``: ``user@example.com`` (defined during Astakos sign up)
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               * ``container``: ``pithos`` (default, if the Web UI was used)
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               * ``filename``: the name of file (visible also from the Web UI)
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 * ``img_properties``: taken from the metadata file. Used only the two mandatory
1278 caa6c07d Constantinos Venetsanopoulos
                       properties ``OSFAMILY`` and ``ROOT_PARTITION``. `Learn more
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                       <https://code.grnet.gr/projects/snf-image/wiki/Image_Format#Image-Properties>`_
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If the ``gnt-instance add`` command returns successfully, then run:
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.. code-block:: console
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   # gnt-instance info testvm1 | grep "console connection"
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to find out where to connect using VNC. If you can connect successfully and can
1288 caa6c07d Constantinos Venetsanopoulos
login to your new instance using the root password ``my_vm_example_passw0rd``,
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then everything works as expected and you have your new Debian Base VM up and
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running.
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If ``gnt-instance add`` fails, make sure that snf-image is correctly configured
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to access the Pithos+ database and the Pithos+ backend data (newer versions
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require UUID instead of a username). Another issue you may encounter is that in
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relatively slow setups, you may need to raise the default HELPER_*_TIMEOUTS in
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/etc/default/snf-image. Also, make sure you gave the correct ``img_id`` and
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``img_properties``. If ``gnt-instance add`` succeeds but you cannot connect,
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again find out what went wrong. Do *NOT* proceed to the next steps unless you
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are sure everything works till this point.
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If everything works, you have successfully connected Ganeti with Pithos+. Let's
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move on to networking now.
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.. warning::
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    You can bypass the networking sections and go straight to
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    :ref:`Cyclades Ganeti tools <cyclades-gtools>`, if you do not want to setup
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    the Cyclades Network Service, but only the Cyclades Compute Service
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    (recommended for now).
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Networking Setup Overview
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-------------------------
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This part is deployment-specific and must be customized based on the specific
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needs of the system administrator. However, to do so, the administrator needs
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to understand how each level handles Virtual Networks, to be able to setup the
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backend appropriately, before installing Cyclades. To do so, please read the
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:ref:`Network <networks>` section before proceeding.
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Since synnefo 0.11 all network actions are managed with the snf-manage
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network-* commands. This needs the underlying setup (Ganeti, nfdhcpd,
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snf-network, bridges, vlans) to be already configured correctly. The only
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actions needed in this point are:
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a) Have Ganeti with IP pool management support installed.
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b) Install :ref:`snf-network <snf-network>`, which provides a synnefo specific kvm-ifup script, etc.
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c) Install :ref:`nfdhcpd <nfdhcpd>`, which serves DHCP requests of the VMs.
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In order to test that everything is setup correctly before installing Cyclades,
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we will make some testing actions in this section, and the actual setup will be
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done afterwards with snf-manage commands.
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.. _snf-network:
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snf-network
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~~~~~~~~~~~
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snf-network includes `kvm-vif-bridge` script that is invoked every time
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a tap (a VM's NIC) is created. Based on environment variables passed by
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Ganeti it issues various commands depending on the network type the NIC is
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connected to and sets up a corresponding dhcp lease.
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Install snf-network on all Ganeti nodes:
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.. code-block:: console
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   # apt-get install snf-network
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Then, in :file:`/etc/default/snf-network` set:
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.. code-block:: console
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   MAC_MASK=ff:ff:f0:00:00:00
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.. _nfdhcpd:
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nfdhcpd
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~~~~~~~
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Each NIC's IP is chosen by Ganeti (with IP pool management support).
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`kvm-vif-bridge` script sets up dhcp leases and when the VM boots and
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makes a dhcp request, iptables will mangle the packet and `nfdhcpd` will
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create a dhcp response.
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.. code-block:: console
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   # apt-get install nfqueue-bindings-python=0.3+physindev-1
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   # apt-get install nfdhcpd
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Edit ``/etc/nfdhcpd/nfdhcpd.conf`` to reflect your network configuration. At
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least, set the ``dhcp_queue`` variable to ``42`` and the ``nameservers``
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variable to your DNS IP/s. Those IPs will be passed as the DNS IP/s of your new
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VMs. Once you are finished, restart the server on all nodes:
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.. code-block:: console
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   # /etc/init.d/nfdhcpd restart
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If you are using ``ferm``, then you need to run the following:
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.. code-block:: console
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   # echo "@include 'nfdhcpd.ferm';" >> /etc/ferm/ferm.conf
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   # /etc/init.d/ferm restart
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or make sure to run after boot:
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.. code-block:: console
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   # iptables -t mangle -A PREROUTING -p udp -m udp --dport 67 -j NFQUEUE --queue-num 42
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and if you have IPv6 enabled:
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.. code-block:: console
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   # ip6tables -t mangle -A PREROUTING -p ipv6-icmp -m icmp6 --icmpv6-type 133 -j NFQUEUE --queue-num 43
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   # ip6tables -t mangle -A PREROUTING -p ipv6-icmp -m icmp6 --icmpv6-type 135 -j NFQUEUE --queue-num 44
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You can check which clients are currently served by nfdhcpd by running:
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.. code-block:: console
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   # kill -SIGUSR1 `cat /var/run/nfdhcpd/nfdhcpd.pid`
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When you run the above, then check ``/var/log/nfdhcpd/nfdhcpd.log``.
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Public Network Setup
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--------------------
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To achieve basic networking the simplest way is to have a common bridge (e.g.
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``br0``, on the same collision domain with the router) where all VMs will
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connect to. Packets will be "forwarded" to the router and then to the Internet.
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If you want a more advanced setup (ip-less routing and proxy-arp plese refer to
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:ref:`Network <networks>` section).
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Physical Host Setup
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~~~~~~~~~~~~~~~~~~~
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Assuming ``eth0`` on both hosts is the public interface (directly connected
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to the router), run on every node:
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.. code-block:: console
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   # apt-get install vlan
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   # brctl addbr br0
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   # ip link set br0 up
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   # vconfig add eth0 100
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   # ip link set eth0.100 up
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   # brctl addif br0 eth0.100
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Testing a Public Network
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~~~~~~~~~~~~~~~~~~~~~~~~
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Let's assume, that you want to assign IPs from the ``5.6.7.0/27`` range to you
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new VMs, with ``5.6.7.1`` as the router's gateway. In Ganeti you can add the
1439 cc16407a Dimitris Aragiorgis
network by running:
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.. code-block:: console
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   # gnt-network add --network=5.6.7.0/27 --gateway=5.6.7.1 --network-type=public --tags=nfdhcpd test-net-public
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Then, connect the network to all your nodegroups. We assume that we only have
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one nodegroup (``default``) in our Ganeti cluster:
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.. code-block:: console
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   # gnt-network connect test-net-public default bridged br0
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Now, it is time to test that the backend infrastracture is correctly setup for
1453 cc16407a Dimitris Aragiorgis
the Public Network. We will add a new VM, the same way we did it on the
1454 cc16407a Dimitris Aragiorgis
previous testing section. However, now will also add one NIC, configured to be
1455 cc16407a Dimitris Aragiorgis
managed from our previously defined network. Run on the GANETI-MASTER (node1):
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.. code-block:: console
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1459 cc16407a Dimitris Aragiorgis
   # gnt-instance add -o snf-image+default --os-parameters \
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                      img_passwd=my_vm_example_passw0rd,img_format=diskdump,img_id="pithos://UUID/pithos/debian_base-6.0-7-x86_64.diskdump",img_properties='{"OSFAMILY":"linux"\,"ROOT_PARTITION":"1"}' \
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                      -t plain --disk 0:size=2G --no-name-check --no-ip-check \
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                      --net 0:ip=pool,network=test-net-public \
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                      testvm2
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If the above returns successfully, connect to the new VM and run:
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1467 2f6143c9 Constantinos Venetsanopoulos
.. code-block:: console
1468 2f6143c9 Constantinos Venetsanopoulos
1469 cc16407a Dimitris Aragiorgis
   root@testvm2:~ # ip addr
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   root@testvm2:~ # ip route
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   root@testvm2:~ # cat /etc/resolv.conf
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1473 cc16407a Dimitris Aragiorgis
to check IP address (5.6.7.2), IP routes (default via 5.6.7.1) and DNS config
1474 cc16407a Dimitris Aragiorgis
(nameserver option in nfdhcpd.conf). This shows correct configuration of
1475 cc16407a Dimitris Aragiorgis
ganeti, snf-network and nfdhcpd.
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Now ping the outside world. If this works too, then you have also configured
1478 cc16407a Dimitris Aragiorgis
correctly your physical host and router.
1479 547c78f6 Constantinos Venetsanopoulos
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Make sure everything works as expected, before proceeding with the Private
1481 2f6143c9 Constantinos Venetsanopoulos
Networks setup.
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.. _private-networks-setup:
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1485 cc16407a Dimitris Aragiorgis
Private Networks Setup
1486 7a8df455 Constantinos Venetsanopoulos
----------------------
1487 2f6143c9 Constantinos Venetsanopoulos
1488 cc16407a Dimitris Aragiorgis
Synnefo supports two types of private networks:
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1490 cc16407a Dimitris Aragiorgis
 - based on MAC filtering
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 - based on physical VLANs
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Both types provide Layer 2 isolation to the end-user.
1494 2f6143c9 Constantinos Venetsanopoulos
1495 d587329c Konstantinos Tompoulidis
For the first type a common bridge (e.g. ``prv0``) is needed while for the
1496 d587329c Konstantinos Tompoulidis
second a range of bridges (e.g. ``prv1..prv100``) each bridged on a different
1497 d587329c Konstantinos Tompoulidis
physical VLAN. To this end to assure isolation among end-users' private networks
1498 d587329c Konstantinos Tompoulidis
each has to have different MAC prefix (for the filtering to take place) or to be
1499 cc16407a Dimitris Aragiorgis
"connected" to a different bridge (VLAN actually).
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1501 cc16407a Dimitris Aragiorgis
Physical Host Setup
1502 cc16407a Dimitris Aragiorgis
~~~~~~~~~~~~~~~~~~~
1503 cc16407a Dimitris Aragiorgis
1504 cc16407a Dimitris Aragiorgis
In order to create the necessary VLAN/bridges, one for MAC filtered private
1505 cc16407a Dimitris Aragiorgis
networks and various (e.g. 20) for private networks based on physical VLANs,
1506 cc16407a Dimitris Aragiorgis
run on every node:
1507 547c78f6 Constantinos Venetsanopoulos
1508 cc16407a Dimitris Aragiorgis
Assuming ``eth0`` of both hosts are somehow (via cable/switch with VLANs
1509 cc16407a Dimitris Aragiorgis
configured correctly) connected together, run on every node:
1510 547c78f6 Constantinos Venetsanopoulos
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.. code-block:: console
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1513 cc16407a Dimitris Aragiorgis
   # modprobe 8021q
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   # $iface=eth0
1515 cc16407a Dimitris Aragiorgis
   # for prv in $(seq 0 20); do
1516 d587329c Konstantinos Tompoulidis
        vlan=$prv
1517 d587329c Konstantinos Tompoulidis
        bridge=prv$prv
1518 d587329c Konstantinos Tompoulidis
        vconfig add $iface $vlan
1519 d587329c Konstantinos Tompoulidis
        ifconfig $iface.$vlan up
1520 d587329c Konstantinos Tompoulidis
        brctl addbr $bridge
1521 d587329c Konstantinos Tompoulidis
        brctl setfd $bridge 0
1522 d587329c Konstantinos Tompoulidis
        brctl addif $bridge $iface.$vlan
1523 d587329c Konstantinos Tompoulidis
        ifconfig $bridge up
1524 547c78f6 Constantinos Venetsanopoulos
      done
1525 547c78f6 Constantinos Venetsanopoulos
1526 cc16407a Dimitris Aragiorgis
The above will do the following :
1527 547c78f6 Constantinos Venetsanopoulos
1528 cc16407a Dimitris Aragiorgis
 * provision 21 new bridges: ``prv0`` - ``prv20``
1529 cc16407a Dimitris Aragiorgis
 * provision 21 new vlans: ``eth0.0`` - ``eth0.20``
1530 cc16407a Dimitris Aragiorgis
 * add the corresponding vlan to the equivalent bridge
1531 547c78f6 Constantinos Venetsanopoulos
1532 547c78f6 Constantinos Venetsanopoulos
You can run ``brctl show`` on both nodes to see if everything was setup
1533 547c78f6 Constantinos Venetsanopoulos
correctly.
1534 547c78f6 Constantinos Venetsanopoulos
1535 2f6143c9 Constantinos Venetsanopoulos
Testing the Private Networks
1536 7a8df455 Constantinos Venetsanopoulos
~~~~~~~~~~~~~~~~~~~~~~~~~~~~
1537 caa6c07d Constantinos Venetsanopoulos
1538 547c78f6 Constantinos Venetsanopoulos
To test the Private Networks, we will create two instances and put them in the
1539 cc16407a Dimitris Aragiorgis
same Private Networks (one MAC Filtered and one Physical VLAN). This means
1540 cc16407a Dimitris Aragiorgis
that the instances will have a second NIC connected to the ``prv0``
1541 cc16407a Dimitris Aragiorgis
pre-provisioned bridge and a third to ``prv1``.
1542 547c78f6 Constantinos Venetsanopoulos
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We run the same command as in the Public Network testing section, but with one
1544 547c78f6 Constantinos Venetsanopoulos
more argument for the second NIC:
1545 547c78f6 Constantinos Venetsanopoulos
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.. code-block:: console
1547 547c78f6 Constantinos Venetsanopoulos
1548 cc16407a Dimitris Aragiorgis
   # gnt-network add --network=192.168.1.0/24 --mac-prefix=aa:00:55 --network-type=private --tags=nfdhcpd,private-filtered test-net-prv-mac
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   # gnt-network connect test-net-prv-mac default bridged prv0
1550 cc16407a Dimitris Aragiorgis
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   # gnt-network add --network=10.0.0.0/24 --tags=nfdhcpd --network-type=private test-net-prv-vlan
1552 cc16407a Dimitris Aragiorgis
   # gnt-network connect test-net-prv-vlan default bridged prv1
1553 cc16407a Dimitris Aragiorgis
1554 cc16407a Dimitris Aragiorgis
   # gnt-instance add -o snf-image+default --os-parameters \
1555 d587329c Konstantinos Tompoulidis
                      img_passwd=my_vm_example_passw0rd,img_format=diskdump,img_id="pithos://UUID/pithos/debian_base-6.0-7-x86_64.diskdump",img_properties='{"OSFAMILY":"linux"\,"ROOT_PARTITION":"1"}' \
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                      -t plain --disk 0:size=2G --no-name-check --no-ip-check \
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                      --net 0:ip=pool,network=test-net-public \
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                      --net 1:ip=pool,network=test-net-prv-mac \
1559 cc16407a Dimitris Aragiorgis
                      --net 2:ip=none,network=test-net-prv-vlan \
1560 547c78f6 Constantinos Venetsanopoulos
                      testvm3
1561 547c78f6 Constantinos Venetsanopoulos
1562 cc16407a Dimitris Aragiorgis
   # gnt-instance add -o snf-image+default --os-parameters \
1563 d587329c Konstantinos Tompoulidis
                      img_passwd=my_vm_example_passw0rd,img_format=diskdump,img_id="pithos://UUID/pithos/debian_base-6.0-7-x86_64.diskdump",img_properties='{"OSFAMILY":"linux"\,"ROOT_PARTITION":"1"}' \
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                      -t plain --disk 0:size=2G --no-name-check --no-ip-check \
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                      --net 0:ip=pool,network=test-net-public \
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                      --net 1:ip=pool,network=test-net-prv-mac \
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                      --net 2:ip=none,network=test-net-prv-vlan \
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                      testvm4
1569 547c78f6 Constantinos Venetsanopoulos
1570 cc16407a Dimitris Aragiorgis
Above, we create two instances with first NIC connected to the internet, their
1571 cc16407a Dimitris Aragiorgis
second NIC connected to a MAC filtered private Network and their third NIC
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connected to the first Physical VLAN Private Network. Now, connect to the
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instances using VNC and make sure everything works as expected:
1574 547c78f6 Constantinos Venetsanopoulos
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 a) The instances have access to the public internet through their first eth
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    interface (``eth0``), which has been automatically assigned a public IP.
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 b) ``eth1`` will have mac prefix ``aa:00:55``, while ``eth2`` default one (``aa:00:00``)
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 c) ip link set ``eth1``/``eth2`` up
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 d) dhclient ``eth1``/``eth2``
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 e) On testvm3  ping 192.168.1.2/10.0.0.2
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If everything works as expected, then you have finished the Network Setup at the
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backend for both types of Networks (Public & Private).
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.. _cyclades-gtools:
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Cyclades Ganeti tools
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---------------------
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In order for Ganeti to be connected with Cyclades later on, we need the
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`Cyclades Ganeti tools` available on all Ganeti nodes (node1 & node2 in our
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case). You can install them by running in both nodes:
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.. code-block:: console
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   # apt-get install snf-cyclades-gtools
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This will install the following:
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 * ``snf-ganeti-eventd`` (daemon to publish Ganeti related messages on RabbitMQ)
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 * ``snf-ganeti-hook`` (all necessary hooks under ``/etc/ganeti/hooks``)
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 * ``snf-progress-monitor`` (used by ``snf-image`` to publish progress messages)
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Configure ``snf-cyclades-gtools``
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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The package will install the ``/etc/synnefo/20-snf-cyclades-gtools-backend.conf``
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configuration file. At least we need to set the RabbitMQ endpoint for all tools
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that need it:
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.. code-block:: console
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  AMQP_HOSTS=["amqp://synnefo:example_rabbitmq_passw0rd@node1.example.com:5672"]
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The above variables should reflect your :ref:`Message Queue setup
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<rabbitmq-setup>`. This file should be editted in all Ganeti nodes.
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Connect ``snf-image`` with ``snf-progress-monitor``
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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Finally, we need to configure ``snf-image`` to publish progress messages during
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the deployment of each Image. To do this, we edit ``/etc/default/snf-image`` and
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set the corresponding variable to ``snf-progress-monitor``:
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.. code-block:: console
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   PROGRESS_MONITOR="snf-progress-monitor"
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This file should be editted in all Ganeti nodes.
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.. _rapi-user:
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Synnefo RAPI user
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-----------------
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As a last step before installing Cyclades, create a new RAPI user that will
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have ``write`` access. Cyclades will use this user to issue commands to Ganeti,
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so we will call the user ``cyclades`` with password ``example_rapi_passw0rd``.
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You can do this, by first running:
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.. code-block:: console
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   # echo -n 'cyclades:Ganeti Remote API:example_rapi_passw0rd' | openssl md5
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and then putting the output in ``/var/lib/ganeti/rapi/users`` as follows:
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.. code-block:: console
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   cyclades {HA1}55aec7050aa4e4b111ca43cb505a61a0 write
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More about Ganeti's RAPI users `here.
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<http://docs.ganeti.org/ganeti/2.5/html/rapi.html#introduction>`_
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You have now finished with all needed Prerequisites for Cyclades (and
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Plankton). Let's move on to the actual Cyclades installation.
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Installation of Cyclades (and Plankton) on node1
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================================================
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This section describes the installation of Cyclades. Cyclades is Synnefo's
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Compute service. Plankton (the Image Registry service) will get installed
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automatically along with Cyclades, because it is contained in the same Synnefo
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component right now.
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We will install Cyclades (and Plankton) on node1. To do so, we install the
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corresponding package by running on node1:
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.. code-block:: console
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   # apt-get install snf-cyclades-app memcached python-memcache
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If all packages install successfully, then Cyclades and Plankton are installed
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and we proceed with their configuration.
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Since version 0.13, Synnefo uses the VMAPI in order to prevent sensitive data
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needed by 'snf-image' to be stored in Ganeti configuration (e.g. VM password).
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This is achieved by storing all sensitive information to a CACHE backend and
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exporting it via VMAPI. The cache entries are invalidated after the first
1684 d587329c Konstantinos Tompoulidis
request. Synnefo uses `memcached <http://memcached.org/>`_ as a
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`Django <https://www.djangoproject.com/>`_ cache backend.
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Configuration of Cyclades (and Plankton)
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========================================
1689 5b6feb88 Vangelis Koukis
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Conf files
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----------
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After installing Cyclades, a number of new configuration files will appear under
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``/etc/synnefo/`` prefixed with ``20-snf-cyclades-app-``. We will describe here
1695 d587329c Konstantinos Tompoulidis
only the minimal needed changes to result with a working system. In general,
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sane defaults have been chosen for the most of the options, to cover most of the
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common scenarios. However, if you want to tweak Cyclades feel free to do so,
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once you get familiar with the different options.
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Edit ``/etc/synnefo/20-snf-cyclades-app-api.conf``:
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.. code-block:: console
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   ASTAKOS_URL = 'https://node1.example.com/im/authenticate'
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   # Set to False if astakos & cyclades are on the same host
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   CYCLADES_PROXY_USER_SERVICES = False
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The ``ASTAKOS_URL`` denotes the authentication endpoint for Cyclades and is set
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to point to Astakos (this should have the same value with Pithos+'s
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``PITHOS_AUTHENTICATION_URL``, setup :ref:`previously <conf-pithos>`).
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.. warning::
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1715 d587329c Konstantinos Tompoulidis
   All services must match the quotaholder token and url configured for
1716 d587329c Konstantinos Tompoulidis
   quotaholder.
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TODO: Document the Network Options here
1719 04c1254b Constantinos Venetsanopoulos
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Edit ``/etc/synnefo/20-snf-cyclades-app-cloudbar.conf``:
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.. code-block:: console
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   CLOUDBAR_LOCATION = 'https://node1.example.com/static/im/cloudbar/'
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   CLOUDBAR_ACTIVE_SERVICE = '2'
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   CLOUDBAR_SERVICES_URL = 'https://node1.example.com/im/get_services'
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   CLOUDBAR_MENU_URL = 'https://account.node1.example.com/im/get_menu'
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``CLOUDBAR_LOCATION`` tells the client where to find the Astakos common
1730 04c1254b Constantinos Venetsanopoulos
cloudbar. The ``CLOUDBAR_SERVICES_URL`` and ``CLOUDBAR_MENU_URL`` options are
1731 04c1254b Constantinos Venetsanopoulos
used by the Cyclades Web UI to get from Astakos all the information needed to
1732 04c1254b Constantinos Venetsanopoulos
fill its own cloudbar. So, we put our Astakos deployment urls there. All the
1733 04c1254b Constantinos Venetsanopoulos
above should have the same values we put in the corresponding variables in
1734 04c1254b Constantinos Venetsanopoulos
``/etc/synnefo/20-snf-pithos-webclient-cloudbar.conf`` on the previous
1735 04c1254b Constantinos Venetsanopoulos
:ref:`Pithos configuration <conf-pithos>` section.
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The ``CLOUDBAR_ACTIVE_SERVICE`` points to an already registered Astakos
1738 de20a465 Constantinos Venetsanopoulos
service. You can see all :ref:`registered services <services-reg>` by running
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on the Astakos node (node1):
1740 de20a465 Constantinos Venetsanopoulos
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.. code-block:: console
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   # snf-manage service-list
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The value of ``CLOUDBAR_ACTIVE_SERVICE`` should be the cyclades service's
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``id`` as shown by the above command, in our case ``2``.
1747 04c1254b Constantinos Venetsanopoulos
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Edit ``/etc/synnefo/20-snf-cyclades-app-plankton.conf``:
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.. code-block:: console
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1752 04c1254b Constantinos Venetsanopoulos
   BACKEND_DB_CONNECTION = 'postgresql://synnefo:example_passw0rd@node1.example.com:5432/snf_pithos'
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   BACKEND_BLOCK_PATH = '/srv/pithos/data/'
1754 04c1254b Constantinos Venetsanopoulos
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In this file we configure the Plankton Service. ``BACKEND_DB_CONNECTION``
1756 04c1254b Constantinos Venetsanopoulos
denotes the Pithos+ database (where the Image files are stored). So we set that
1757 04c1254b Constantinos Venetsanopoulos
to point to our Pithos+ database. ``BACKEND_BLOCK_PATH`` denotes the actual
1758 04c1254b Constantinos Venetsanopoulos
Pithos+ data location.
1759 04c1254b Constantinos Venetsanopoulos
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Edit ``/etc/synnefo/20-snf-cyclades-app-queues.conf``:
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.. code-block:: console
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   AMQP_HOSTS=["amqp://synnefo:example_rabbitmq_passw0rd@node1.example.com:5672"]
1765 04c1254b Constantinos Venetsanopoulos
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The above settings denote the Message Queue. Those settings should have the same
1767 04c1254b Constantinos Venetsanopoulos
values as in ``/etc/synnefo/10-snf-cyclades-gtools-backend.conf`` file, and
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reflect our :ref:`Message Queue setup <rabbitmq-setup>`.
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Edit ``/etc/synnefo/20-snf-cyclades-app-ui.conf``:
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.. code-block:: console
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1774 bc3a7b5a Constantinos Venetsanopoulos
   UI_LOGIN_URL = "https://node1.example.com/im/login"
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   UI_LOGOUT_URL = "https://node1.example.com/im/logout"
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The ``UI_LOGIN_URL`` option tells the Cyclades Web UI where to redirect users,
1778 04c1254b Constantinos Venetsanopoulos
if they are not logged in. We point that to Astakos.
1779 04c1254b Constantinos Venetsanopoulos
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The ``UI_LOGOUT_URL`` option tells the Cyclades Web UI where to redirect the
1781 04c1254b Constantinos Venetsanopoulos
user when he/she logs out. We point that to Astakos, too.
1782 04c1254b Constantinos Venetsanopoulos
1783 d587329c Konstantinos Tompoulidis
Edit ``/etc/synnefo/20-snf-cyclades-app-quotas.conf``:
1784 d587329c Konstantinos Tompoulidis
1785 d587329c Konstantinos Tompoulidis
.. code-block:: console
1786 d587329c Konstantinos Tompoulidis
1787 d587329c Konstantinos Tompoulidis
   CYCLADES_USE_QUOTAHOLDER = True
1788 d587329c Konstantinos Tompoulidis
   CYCLADES_QUOTAHOLDER_URL = 'https://node1.example.com/quotaholder/v'
1789 d587329c Konstantinos Tompoulidis
   CYCLADES_QUOTAHOLDER_TOKEN = 'aExampleTokenJbFm12w'
1790 d587329c Konstantinos Tompoulidis
1791 d587329c Konstantinos Tompoulidis
Edit ``/etc/synnefo/20-snf-cyclades-app-vmapi.conf``:
1792 d587329c Konstantinos Tompoulidis
1793 d587329c Konstantinos Tompoulidis
.. code-block:: console
1794 d587329c Konstantinos Tompoulidis
1795 d587329c Konstantinos Tompoulidis
   VMAPI_CACHE_BACKEND = "memcached://127.0.0.1:11211/?timeout=3600"
1796 d587329c Konstantinos Tompoulidis
   VMAPI_BASE_URL = "https://node1.example.com"
1797 d587329c Konstantinos Tompoulidis
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Edit ``/etc/default/vncauthproxy``:
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1800 053d0dfc Constantinos Venetsanopoulos
.. code-block:: console
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1802 053d0dfc Constantinos Venetsanopoulos
   CHUID="www-data:nogroup"
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We have now finished with the basic Cyclades and Plankton configuration.
1805 04c1254b Constantinos Venetsanopoulos
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Database Initialization
1807 04c1254b Constantinos Venetsanopoulos
-----------------------
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Once Cyclades is configured, we sync the database:
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.. code-block:: console
1812 bc055d09 Constantinos Venetsanopoulos
1813 bc055d09 Constantinos Venetsanopoulos
   $ snf-manage syncdb
1814 bc055d09 Constantinos Venetsanopoulos
   $ snf-manage migrate
1815 bc055d09 Constantinos Venetsanopoulos
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and load the initial server flavors:
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.. code-block:: console
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1820 bc055d09 Constantinos Venetsanopoulos
   $ snf-manage loaddata flavors
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If everything returns successfully, our database is ready.
1823 04c1254b Constantinos Venetsanopoulos
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Add the Ganeti backend
1825 053d0dfc Constantinos Venetsanopoulos
----------------------
1826 053d0dfc Constantinos Venetsanopoulos
1827 7a3439cf Constantinos Venetsanopoulos
In our installation we assume that we only have one Ganeti cluster, the one we
1828 b2764de1 Dimitris Aragiorgis
setup earlier.  At this point you have to add this backend (Ganeti cluster) to
1829 b2764de1 Dimitris Aragiorgis
cyclades assuming that you have setup the :ref:`Rapi User <rapi-user>`
1830 b2764de1 Dimitris Aragiorgis
correctly.
1831 b2764de1 Dimitris Aragiorgis
1832 b2764de1 Dimitris Aragiorgis
.. code-block:: console
1833 b2764de1 Dimitris Aragiorgis
1834 69aa7f21 Ilias Tsitsimpis
   $ snf-manage backend-add --clustername=ganeti.node1.example.com --user=cyclades --pass=example_rapi_passw0rd
1835 b2764de1 Dimitris Aragiorgis
1836 b2764de1 Dimitris Aragiorgis
You can see everything has been setup correctly by running:
1837 053d0dfc Constantinos Venetsanopoulos
1838 053d0dfc Constantinos Venetsanopoulos
.. code-block:: console
1839 053d0dfc Constantinos Venetsanopoulos
1840 053d0dfc Constantinos Venetsanopoulos
   $ snf-manage backend-list
1841 053d0dfc Constantinos Venetsanopoulos
1842 d587329c Konstantinos Tompoulidis
Enable the new backend by running:
1843 d587329c Konstantinos Tompoulidis
1844 d587329c Konstantinos Tompoulidis
.. code-block::
1845 d587329c Konstantinos Tompoulidis
1846 d587329c Konstantinos Tompoulidis
   $ snf-manage backend-modify --drained False 1
1847 d587329c Konstantinos Tompoulidis
1848 d587329c Konstantinos Tompoulidis
.. warning:: Since version 0.13, the backend is set to "drained" by default.
1849 d587329c Konstantinos Tompoulidis
    This means that you cannot add VMs to it. The reason for this is that the
1850 d587329c Konstantinos Tompoulidis
    nodes should be unavailable to Synnefo until the Administrator explicitly
1851 d587329c Konstantinos Tompoulidis
    releases them. To change this setting, use ``snf-manage backend-modify
1852 d587329c Konstantinos Tompoulidis
    --drained False <backend-id>``.
1853 d587329c Konstantinos Tompoulidis
1854 7a3439cf Constantinos Venetsanopoulos
If something is not set correctly, you can modify the backend with the
1855 7a3439cf Constantinos Venetsanopoulos
``snf-manage backend-modify`` command. If something has gone wrong, you could
1856 7a3439cf Constantinos Venetsanopoulos
modify the backend to reflect the Ganeti installation by running:
1857 053d0dfc Constantinos Venetsanopoulos
1858 053d0dfc Constantinos Venetsanopoulos
.. code-block:: console
1859 053d0dfc Constantinos Venetsanopoulos
1860 053d0dfc Constantinos Venetsanopoulos
   $ snf-manage backend-modify --clustername "ganeti.node1.example.com"
1861 7a3439cf Constantinos Venetsanopoulos
                               --user=cyclades
1862 7a3439cf Constantinos Venetsanopoulos
                               --pass=example_rapi_passw0rd
1863 053d0dfc Constantinos Venetsanopoulos
                               1
1864 053d0dfc Constantinos Venetsanopoulos
1865 053d0dfc Constantinos Venetsanopoulos
``clustername`` denotes the Ganeti-cluster's name. We provide the corresponding
1866 053d0dfc Constantinos Venetsanopoulos
domain that resolves to the master IP, than the IP itself, to ensure Cyclades
1867 053d0dfc Constantinos Venetsanopoulos
can talk to Ganeti even after a Ganeti master-failover.
1868 053d0dfc Constantinos Venetsanopoulos
1869 7a3439cf Constantinos Venetsanopoulos
``user`` and ``pass`` denote the RAPI user's username and the RAPI user's
1870 b2764de1 Dimitris Aragiorgis
password.  Once we setup the first backend to point at our Ganeti cluster, we
1871 b2764de1 Dimitris Aragiorgis
update the Cyclades backends status by running:
1872 053d0dfc Constantinos Venetsanopoulos
1873 053d0dfc Constantinos Venetsanopoulos
.. code-block:: console
1874 053d0dfc Constantinos Venetsanopoulos
1875 053d0dfc Constantinos Venetsanopoulos
   $ snf-manage backend-update-status
1876 053d0dfc Constantinos Venetsanopoulos
1877 7a3439cf Constantinos Venetsanopoulos
Cyclades can manage multiple Ganeti backends, but for the purpose of this
1878 7a3439cf Constantinos Venetsanopoulos
guide,we won't get into more detail regarding mulitple backends. If you want to
1879 7a3439cf Constantinos Venetsanopoulos
learn more please see /*TODO*/.
1880 7a3439cf Constantinos Venetsanopoulos
1881 7a3439cf Constantinos Venetsanopoulos
Add a Public Network
1882 053d0dfc Constantinos Venetsanopoulos
----------------------
1883 053d0dfc Constantinos Venetsanopoulos
1884 7a3439cf Constantinos Venetsanopoulos
Cyclades supports different Public Networks on different Ganeti backends.
1885 cc16407a Dimitris Aragiorgis
After connecting Cyclades with our Ganeti cluster, we need to setup a Public
1886 cc16407a Dimitris Aragiorgis
Network for this Ganeti backend (`id = 1`). The basic setup is to bridge every
1887 cc16407a Dimitris Aragiorgis
created NIC on a bridge. After having a bridge (e.g. br0) created in every
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backend node edit Synnefo setting CUSTOM_BRIDGED_BRIDGE to 'br0':
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.. code-block:: console
1891 053d0dfc Constantinos Venetsanopoulos
1892 69aa7f21 Ilias Tsitsimpis
   $ snf-manage network-create --subnet=5.6.7.0/27 \
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                               --gateway=5.6.7.1 \
1894 69aa7f21 Ilias Tsitsimpis
                               --subnet6=2001:648:2FFC:1322::/64 \
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                               --gateway6=2001:648:2FFC:1322::1 \
1896 18e300b2 Christos Stavrakakis
                               --public --dhcp --flavor=CUSTOM \
1897 92e4d1c6 Dimitris Aragiorgis
                               --link=br0 --mode=bridged \
1898 69aa7f21 Ilias Tsitsimpis
                               --name=public_network \
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                               --backend-id=1
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This will create the Public Network on both Cyclades and the Ganeti backend. To
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make sure everything was setup correctly, also run:
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.. code-block:: console
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   $ snf-manage reconcile-networks
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You can see all available networks by running:
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.. code-block:: console
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   $ snf-manage network-list
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and inspect each network's state by running:
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.. code-block:: console
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   $ snf-manage network-inspect <net_id>
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Finally, you can see the networks from the Ganeti perspective by running on the
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Ganeti MASTER:
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.. code-block:: console
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   $ gnt-network list
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   $ gnt-network info <network_name>
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1928 19425707 Christos Stavrakakis
Create pools for Private Networks
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---------------------------------
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To prevent duplicate assignment of resources to different private networks,
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Cyclades supports two types of pools:
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 - MAC prefix Pool
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 - Bridge Pool
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As long as those resourses have been provisioned, admin has to define two
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these pools in Synnefo:
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.. code-block:: console
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   root@testvm1:~ # snf-manage pool-create --type=mac-prefix --base=aa:00:0 --size=65536
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   root@testvm1:~ # snf-manage pool-create --type=bridge --base=prv --size=20
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Also, change the Synnefo setting in :file:`20-snf-cyclades-app-api.conf`:
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.. code-block:: console
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   DEFAULT_MAC_FILTERED_BRIDGE = 'prv0'
1952 19425707 Christos Stavrakakis
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Servers restart
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---------------
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Restart gunicorn on node1:
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.. code-block:: console
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   # /etc/init.d/gunicorn restart
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Now let's do the final connections of Cyclades with Ganeti.
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``snf-dispatcher`` initialization
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---------------------------------
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``snf-dispatcher`` dispatches all messages published to the Message Queue and
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manages the Cyclades database accordingly. It also initializes all exchanges. By
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default it is not enabled during installation of Cyclades, so let's enable it in
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its configuration file ``/etc/default/snf-dispatcher``:
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.. code-block:: console
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   SNF_DSPTCH_ENABLE=true
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and start the daemon:
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.. code-block:: console
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   # /etc/init.d/snf-dispatcher start
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You can see that everything works correctly by tailing its log file
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``/var/log/synnefo/dispatcher.log``.
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``snf-ganeti-eventd`` on GANETI MASTER
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--------------------------------------
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The last step of the Cyclades setup is enabling the ``snf-ganeti-eventd``
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daemon (part of the :ref:`Cyclades Ganeti tools <cyclades-gtools>` package).
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The daemon is already installed on the GANETI MASTER (node1 in our case).
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``snf-ganeti-eventd`` is disabled by default during the ``snf-cyclades-gtools``
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installation, so we enable it in its configuration file
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``/etc/default/snf-ganeti-eventd``:
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.. code-block:: console
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   SNF_EVENTD_ENABLE=true
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and start the daemon:
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.. code-block:: console
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   # /etc/init.d/snf-ganeti-eventd start
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.. warning:: Make sure you start ``snf-ganeti-eventd`` *ONLY* on GANETI MASTER
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Apply Quotas
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------------
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.. code-block:: console
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   node1 # snf-manage astakos-init --load-service-resources
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   node1 # snf-manage astakos-quota --verify
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   node1 # snf-manage astakos-quota --sync
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   node2 # snf-manage pithos-reset-usage
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   node1 # snf-manage cyclades-reset-usage
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If all the above return successfully, then you have finished with the Cyclades
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and Plankton installation and setup.
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Let's test our installation now.
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2023 5b6feb88 Vangelis Koukis
2024 a96ec00f Constantinos Venetsanopoulos
Testing of Cyclades (and Plankton)
2025 a96ec00f Constantinos Venetsanopoulos
==================================
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Cyclades Web UI
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---------------
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First of all we need to test that our Cyclades Web UI works correctly. Open your
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browser and go to the Astakos home page. Login and then click 'cyclades' on the
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top cloud bar. This should redirect you to:
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 `http://node1.example.com/ui/`
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and the Cyclades home page should appear. If not, please go back and find what
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went wrong. Do not proceed if you don't see the Cyclades home page.
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If the Cyclades home page appears, click on the orange button 'New machine'. The
2040 8a4cd31b Constantinos Venetsanopoulos
first step of the 'New machine wizard' will appear. This step shows all the
2041 8a4cd31b Constantinos Venetsanopoulos
available Images from which you can spawn new VMs. The list should be currently
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empty, as we haven't registered any Images yet. Close the wizard and browse the
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interface (not many things to see yet). If everything seems to work, let's
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register our first Image file.
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2046 8a4cd31b Constantinos Venetsanopoulos
Cyclades Images
2047 8a4cd31b Constantinos Venetsanopoulos
---------------
2048 8a4cd31b Constantinos Venetsanopoulos
2049 8a4cd31b Constantinos Venetsanopoulos
To test our Cyclades (and Plankton) installation, we will use an Image stored on
2050 8a4cd31b Constantinos Venetsanopoulos
Pithos+ to spawn a new VM from the Cyclades interface. We will describe all
2051 8a4cd31b Constantinos Venetsanopoulos
steps, even though you may already have uploaded an Image on Pithos+ from a
2052 8a4cd31b Constantinos Venetsanopoulos
:ref:`previous <snf-image-images>` section:
2053 8a4cd31b Constantinos Venetsanopoulos
2054 8a4cd31b Constantinos Venetsanopoulos
 * Upload an Image file to Pithos+
2055 8a4cd31b Constantinos Venetsanopoulos
 * Register that Image file to Plankton
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 * Spawn a new VM from that Image from the Cyclades Web UI
2057 8a4cd31b Constantinos Venetsanopoulos
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We will use the `kamaki <http://docs.dev.grnet.gr/kamaki/latest/index.html>`_
2059 8a4cd31b Constantinos Venetsanopoulos
command line client to do the uploading and registering of the Image.
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Installation of `kamaki`
2062 8a4cd31b Constantinos Venetsanopoulos
~~~~~~~~~~~~~~~~~~~~~~~~
2063 8a4cd31b Constantinos Venetsanopoulos
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You can install `kamaki` anywhere you like, since it is a standalone client of
2065 8a4cd31b Constantinos Venetsanopoulos
the APIs and talks to the installation over `http`. For the purpose of this
2066 8a4cd31b Constantinos Venetsanopoulos
guide we will assume that we have downloaded the `Debian Squeeze Base Image
2067 8a4cd31b Constantinos Venetsanopoulos
<https://pithos.okeanos.grnet.gr/public/9epgb>`_ and stored it under node1's
2068 8a4cd31b Constantinos Venetsanopoulos
``/srv/images`` directory. For that reason we will install `kamaki` on node1,
2069 8a4cd31b Constantinos Venetsanopoulos
too. We do this by running:
2070 8a4cd31b Constantinos Venetsanopoulos
2071 8a4cd31b Constantinos Venetsanopoulos
.. code-block:: console
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2073 8a4cd31b Constantinos Venetsanopoulos
   # apt-get install kamaki
2074 8a4cd31b Constantinos Venetsanopoulos
2075 8a4cd31b Constantinos Venetsanopoulos
Configuration of kamaki
2076 8a4cd31b Constantinos Venetsanopoulos
~~~~~~~~~~~~~~~~~~~~~~~
2077 8a4cd31b Constantinos Venetsanopoulos
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Now we need to setup kamaki, by adding the appropriate URLs and tokens of our
2079 8a4cd31b Constantinos Venetsanopoulos
installation. We do this by running:
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.. code-block:: console
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2083 8a4cd31b Constantinos Venetsanopoulos
   $ kamaki config set astakos.url "https://node1.example.com"
2084 69aa7f21 Ilias Tsitsimpis
   $ kamaki config set compute.url "https://node1.example.com/api/v1.1"
2085 69aa7f21 Ilias Tsitsimpis
   $ kamaki config set image.url "https://node1.example.com/plankton"
2086 69aa7f21 Ilias Tsitsimpis
   $ kamaki config set store.url "https://node2.example.com/v1"
2087 69aa7f21 Ilias Tsitsimpis
   $ kamaki config set global.account "user@example.com"
2088 92e4d1c6 Dimitris Aragiorgis
   $ kamaki config set store.enable on
2089 92e4d1c6 Dimitris Aragiorgis
   $ kamaki config set store.pithos_extensions on
2090 92e4d1c6 Dimitris Aragiorgis
   $ kamaki config set store.url "https://node2.example.com/v1"
2091 92e4d1c6 Dimitris Aragiorgis
   $ kamaki config set store.account USER_UUID
2092 92e4d1c6 Dimitris Aragiorgis
   $ kamaki config set global.token USER_TOKEN
2093 8a4cd31b Constantinos Venetsanopoulos
2094 d587329c Konstantinos Tompoulidis
The USER_TOKEN and USER_UUID appear on the user's (``user@example.com``)
2095 d587329c Konstantinos Tompoulidis
`Profile` web page on the Astakos Web UI.
2096 8a4cd31b Constantinos Venetsanopoulos
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You can see that the new configuration options have been applied correctly, by
2098 8a4cd31b Constantinos Venetsanopoulos
running:
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2100 8a4cd31b Constantinos Venetsanopoulos
.. code-block:: console
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2102 8a4cd31b Constantinos Venetsanopoulos
   $ kamaki config list
2103 8a4cd31b Constantinos Venetsanopoulos
2104 8a4cd31b Constantinos Venetsanopoulos
Upload an Image file to Pithos+
2105 8a4cd31b Constantinos Venetsanopoulos
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
2106 8a4cd31b Constantinos Venetsanopoulos
2107 8a4cd31b Constantinos Venetsanopoulos
Now, that we have set up `kamaki` we will upload the Image that we have
2108 8a4cd31b Constantinos Venetsanopoulos
downloaded and stored under ``/srv/images/``. Although we can upload the Image
2109 8a4cd31b Constantinos Venetsanopoulos
under the root ``Pithos`` container (as you may have done when uploading the
2110 8a4cd31b Constantinos Venetsanopoulos
Image from the Pithos+ Web UI), we will create a new container called ``images``
2111 8a4cd31b Constantinos Venetsanopoulos
and store the Image under that container. We do this for two reasons:
2112 8a4cd31b Constantinos Venetsanopoulos
2113 8a4cd31b Constantinos Venetsanopoulos
a) To demonstrate how to create containers other than the default ``Pithos``.
2114 8a4cd31b Constantinos Venetsanopoulos
   This can be done only with the `kamaki` client and not through the Web UI.
2115 8a4cd31b Constantinos Venetsanopoulos
2116 8a4cd31b Constantinos Venetsanopoulos
b) As a best organization practise, so that you won't have your Image files
2117 8a4cd31b Constantinos Venetsanopoulos
   tangled along with all your other Pithos+ files and directory structures.
2118 8a4cd31b Constantinos Venetsanopoulos
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We create the new ``images`` container by running:
2120 8a4cd31b Constantinos Venetsanopoulos
2121 8a4cd31b Constantinos Venetsanopoulos
.. code-block:: console
2122 8a4cd31b Constantinos Venetsanopoulos
2123 8a4cd31b Constantinos Venetsanopoulos
   $ kamaki store create images
2124 8a4cd31b Constantinos Venetsanopoulos
2125 8a4cd31b Constantinos Venetsanopoulos
Then, we upload the Image file to that container:
2126 8a4cd31b Constantinos Venetsanopoulos
2127 8a4cd31b Constantinos Venetsanopoulos
.. code-block:: console
2128 8a4cd31b Constantinos Venetsanopoulos
2129 8a4cd31b Constantinos Venetsanopoulos
   $ kamaki store upload --container images \
2130 8a4cd31b Constantinos Venetsanopoulos
                         /srv/images/debian_base-6.0-7-x86_64.diskdump \
2131 8a4cd31b Constantinos Venetsanopoulos
                         debian_base-6.0-7-x86_64.diskdump
2132 8a4cd31b Constantinos Venetsanopoulos
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The first is the local path and the second is the remote path on Pithos+. If
2134 8a4cd31b Constantinos Venetsanopoulos
the new container and the file appears on the Pithos+ Web UI, then you have
2135 8a4cd31b Constantinos Venetsanopoulos
successfully created the container and uploaded the Image file.
2136 8a4cd31b Constantinos Venetsanopoulos
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Register an existing Image file to Plankton
2138 8a4cd31b Constantinos Venetsanopoulos
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
2139 8a4cd31b Constantinos Venetsanopoulos
2140 8a4cd31b Constantinos Venetsanopoulos
Once the Image file has been successfully uploaded on Pithos+, then we register
2141 8a4cd31b Constantinos Venetsanopoulos
it to Plankton (so that it becomes visible to Cyclades), by running:
2142 8a4cd31b Constantinos Venetsanopoulos
2143 8a4cd31b Constantinos Venetsanopoulos
.. code-block:: console
2144 8a4cd31b Constantinos Venetsanopoulos
2145 69aa7f21 Ilias Tsitsimpis
   $ kamaki image register "Debian Base" \
2146 92e4d1c6 Dimitris Aragiorgis
                           pithos://USER_UUID/images/debian_base-6.0-7-x86_64.diskdump \
2147 69aa7f21 Ilias Tsitsimpis
                           --public \
2148 69aa7f21 Ilias Tsitsimpis
                           --disk-format=diskdump \
2149 69aa7f21 Ilias Tsitsimpis
                           --property OSFAMILY=linux --property ROOT_PARTITION=1 \
2150 69aa7f21 Ilias Tsitsimpis
                           --property description="Debian Squeeze Base System" \
2151 69aa7f21 Ilias Tsitsimpis
                           --property size=451 --property kernel=2.6.32 --property GUI="No GUI" \
2152 8a4cd31b Constantinos Venetsanopoulos
                           --property sortorder=1 --property USERS=root --property OS=debian
2153 8a4cd31b Constantinos Venetsanopoulos
2154 8a4cd31b Constantinos Venetsanopoulos
This command registers the Pithos+ file
2155 69aa7f21 Ilias Tsitsimpis
``pithos://user@example.com/images/debian_base-6.0-7-x86_64.diskdump`` as an
2156 8a4cd31b Constantinos Venetsanopoulos
Image in Plankton. This Image will be public (``--public``), so all users will
2157 8a4cd31b Constantinos Venetsanopoulos
be able to spawn VMs from it and is of type ``diskdump``. The first two
2158 8a4cd31b Constantinos Venetsanopoulos
properties (``OSFAMILY`` and ``ROOT_PARTITION``) are mandatory. All the rest
2159 8a4cd31b Constantinos Venetsanopoulos
properties are optional, but recommended, so that the Images appear nicely on
2160 8a4cd31b Constantinos Venetsanopoulos
the Cyclades Web UI. ``Debian Base`` will appear as the name of this Image. The
2161 8a4cd31b Constantinos Venetsanopoulos
``OS`` property's valid values may be found in the ``IMAGE_ICONS`` variable
2162 8a4cd31b Constantinos Venetsanopoulos
inside the ``20-snf-cyclades-app-ui.conf`` configuration file.
2163 8a4cd31b Constantinos Venetsanopoulos
2164 8a4cd31b Constantinos Venetsanopoulos
``OSFAMILY`` and ``ROOT_PARTITION`` are mandatory because they will be passed
2165 8a4cd31b Constantinos Venetsanopoulos
from Plankton to Cyclades and then to Ganeti and `snf-image` (also see
2166 8a4cd31b Constantinos Venetsanopoulos
:ref:`previous section <ganeti-with-pithos-images>`). All other properties are
2167 8a4cd31b Constantinos Venetsanopoulos
used to show information on the Cyclades UI.
2168 8a4cd31b Constantinos Venetsanopoulos
2169 8a4cd31b Constantinos Venetsanopoulos
Spawn a VM from the Cyclades Web UI
2170 8a4cd31b Constantinos Venetsanopoulos
-----------------------------------
2171 8a4cd31b Constantinos Venetsanopoulos
2172 8a4cd31b Constantinos Venetsanopoulos
If the registration completes successfully, then go to the Cyclades Web UI from
2173 8a4cd31b Constantinos Venetsanopoulos
your browser at:
2174 8a4cd31b Constantinos Venetsanopoulos
2175 8a4cd31b Constantinos Venetsanopoulos
 `https://node1.example.com/ui/`
2176 8a4cd31b Constantinos Venetsanopoulos
2177 8a4cd31b Constantinos Venetsanopoulos
Click on the 'New Machine' button and the first step of the wizard will appear.
2178 8a4cd31b Constantinos Venetsanopoulos
Click on 'My Images' (right after 'System' Images) on the left pane of the
2179 8a4cd31b Constantinos Venetsanopoulos
wizard. Your previously registered Image "Debian Base" should appear under
2180 8a4cd31b Constantinos Venetsanopoulos
'Available Images'. If not, something has gone wrong with the registration. Make
2181 8a4cd31b Constantinos Venetsanopoulos
sure you can see your Image file on the Pithos+ Web UI and ``kamaki image
2182 8a4cd31b Constantinos Venetsanopoulos
register`` returns successfully with all options and properties as shown above.
2183 8a4cd31b Constantinos Venetsanopoulos
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If the Image appears on the list, select it and complete the wizard by selecting
2185 8a4cd31b Constantinos Venetsanopoulos
a flavor and a name for your VM. Then finish by clicking 'Create'. Make sure you
2186 8a4cd31b Constantinos Venetsanopoulos
write down your password, because you *WON'T* be able to retrieve it later.
2187 8a4cd31b Constantinos Venetsanopoulos
2188 8a4cd31b Constantinos Venetsanopoulos
If everything was setup correctly, after a few minutes your new machine will go
2189 8a4cd31b Constantinos Venetsanopoulos
to state 'Running' and you will be able to use it. Click 'Console' to connect
2190 8a4cd31b Constantinos Venetsanopoulos
through VNC out of band, or click on the machine's icon to connect directly via
2191 8a4cd31b Constantinos Venetsanopoulos
SSH or RDP (for windows machines).
2192 8a4cd31b Constantinos Venetsanopoulos
2193 8a4cd31b Constantinos Venetsanopoulos
Congratulations. You have successfully installed the whole Synnefo stack and
2194 8a4cd31b Constantinos Venetsanopoulos
connected all components. Go ahead in the next section to test the Network
2195 8a4cd31b Constantinos Venetsanopoulos
functionality from inside Cyclades and discover even more features.
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2197 a96ec00f Constantinos Venetsanopoulos
General Testing
2198 a96ec00f Constantinos Venetsanopoulos
===============
2199 5b6feb88 Vangelis Koukis
2200 a96ec00f Constantinos Venetsanopoulos
Notes
2201 a96ec00f Constantinos Venetsanopoulos
=====