remove old experimental code
Signed-off-by: Angus Salkeld <asalkeld@redhat.com>
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@ -1,66 +0,0 @@
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#!/usr/bin/python
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import gettext
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import sys
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import os.path
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import json
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possible_topdir = os.path.normpath(os.path.join(os.path.abspath(sys.argv[0]),
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os.pardir,
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os.pardir))
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if os.path.exists(os.path.join(possible_topdir, 'heat', '__init__.py')):
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sys.path.insert(0, possible_topdir)
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gettext.install('heat', unicode=1)
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from heat.engine import parser
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parameter_count = 1
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def setparam(t, key, value):
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global parameter_count
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key_name = 'Parameters.member.%d.ParameterKey' % parameter_count
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value_name = 'Parameters.member.%d.ParameterValue' % parameter_count
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t[key_name] = key
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t[value_name] = value
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parameter_count += 1
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filename = sys.argv[1]
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with open(filename) as f:
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json_blob = json.load(f)
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(stack_name, tmp) = os.path.splitext(os.path.basename(filename))
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params_dict = {}
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setparam(params_dict, 'AWS::StackName', stack_name)
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# Don't immediately see a way to have key name as a parameter and also
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# file injection and monitoring
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# need to insert key on creation and know what private key is
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setparam(params_dict, 'KeyName', 'sdake_key')
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# ^ that gets inserted into image
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setparam(params_dict, 'AWS::StackName', stack_name)
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setparam(params_dict, 'InstanceType', 'm1.xlarge')
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setparam(params_dict, 'DBUsername', 'eddie.jones')
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setparam(params_dict, 'DBPassword', 'adm1n')
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setparam(params_dict, 'DBRootPassword', 'admone')
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setparam(params_dict, 'LinuxDistribution', 'F16')
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# set the keystone auth environs up
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username = os.environ['OS_USERNAME']
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password = os.environ['OS_PASSWORD']
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tenant = os.environ['OS_TENANT_NAME']
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auth_url = os.environ['OS_AUTH_URL']
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params_dict['KeyStoneCreds'] = dict(username=username,
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password=password,
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tenant=tenant,
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auth_url=auth_url,
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strategy='keystone')
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stack = parser.Stack(stack_name, json_blob, params_dict)
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stack.start()
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@ -8,10 +8,6 @@ http://fedoraproject.org/wiki/Getting_started_with_OpenStack_on_Fedora_17#Previe
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Tools
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-----
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+ experimental_create.py
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- Example of creating an keypair and instantiating an instance after
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one has been registered with JEOS create
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+ experimental_ssh_eventlet.py
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- Example of using ssh inside python with eventlets.
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@ -1,63 +0,0 @@
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#!/usr/bin/python
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import eventlet
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from eventlet.green import socket
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import libssh2
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import time
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import os
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import random
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import base64
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import uuid
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import M2Crypto
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from novaclient.v1_1 import client
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def instance_start(instance_name, image_name, flavor_name):
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"""
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Method to start an instance
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"""
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def _null_callback(p, n, out):
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"""
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Method to silence the default M2Crypto.RSA.gen_key output.
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"""
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pass
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private_key = M2Crypto.RSA.gen_key(2048, 65537, _null_callback)
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# this is the binary public key, in ssh "BN" (BigNumber) MPI format.
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# The ssh BN MPI format consists of 4 bytes that describe the length
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# of the following data, followed by the data itself in big-endian
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# format. The start of the string is 0x0007, which represent the 7
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# bytes following that make up 'ssh-rsa'. The key exponent and
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# modulus as fetched out of M2Crypto are already in MPI format, so
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# we can just use them as-is. We then have to base64 encode the
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# result, add a little header information, and then we have a
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# full public key.
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username = os.environ['OS_USERNAME']
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password = os.environ['OS_PASSWORD']
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tenant = os.environ['OS_TENANT_NAME']
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auth_url = os.environ['OS_AUTH_URL']
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nova_client = client.Client(username, password, tenant, auth_url, service_type='compute', service_name='nova')
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public_key_bn = '\x00\x00\x00\x07' + 'ssh-rsa' + private_key.e + private_key.n
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public_key = 'ssh-rsa %s support@heat-api.org\n' % (base64.b64encode(public_key_bn))
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private_key.save_key('/tmp/private_key', cipher=None)
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random_uuid = uuid.uuid4()
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key_uuid = uuid.uuid3(random_uuid, '%s %s %s' % (instance_name, image_name, flavor_name))
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nova_client.keypairs.create(str(key_uuid), public_key)
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image_list = nova_client.images.list()
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for o in image_list:
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if getattr(o, 'name', '') == image_name:
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image_id = o.id #getattr(o, 'id', '')
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flavor_list = nova_client.flavors.list()
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for o in flavor_list:
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if getattr(o, 'name', '') == flavor_name:
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flavor_id = getattr(o, 'id', '')
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nova_client.servers.create(name=instance_name, image=image_id,
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flavor=flavor_id, key_name=str(key_uuid))
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return private_key
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instance_start('instance-F16-test', 'F16-x86_64', "m1.tiny")
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