deb-ceilometer/ceilometer/tests/functional/storage/test_impl_db2.py
Ilya Tyaptin 49f53f35a5 Initial separating unit and functional tests
Currently we run tests which uses real backend or real daemons with
other unit tests.
This CR is initial for sequence of functional tests implementation.
It contains only moving files and modules to right directories and
fixing tox.ini. This approach allows to avoid constantly rebase conflicts,
because git handles file removing correct.

Next step - separate classes and functions from moved files to right
test types.

Depends-On: Ifdb0de150b2c738117308b2aae6c0c197e162821

Change-Id: I16b84ed83ac075658626f3ec6a35a24e228b61e7
Partialy-Implement: blueprint ceilometer-functional-tests
2015-08-06 07:59:45 +03:00

158 lines
6.8 KiB
Python

#
# Copyright Ericsson AB 2014. All rights reserved
#
# Authors: Ildiko Vancsa <ildiko.vancsa@ericsson.com>
#
# Licensed under the Apache License, Version 2.0 (the "License"); you may
# not use this file except in compliance with the License. You may obtain
# a copy of the License at
#
# http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
# WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
# License for the specific language governing permissions and limitations
# under the License.
"""Tests for ceilometer/storage/impl_db2.py
.. note::
In order to run the tests against another MongoDB server set the
environment variable CEILOMETER_TEST_DB2_URL to point to a DB2
server before running the tests.
"""
import bson
import mock
from oslo_config import cfg
from oslo_utils import timeutils
from ceilometer.alarm.storage import impl_db2 as impl_db2_alarm
from ceilometer.event.storage import impl_db2 as impl_db2_event
from ceilometer.storage import impl_db2
from ceilometer.storage.mongo import utils as pymongo_utils
from ceilometer.tests import base as test_base
class CapabilitiesTest(test_base.BaseTestCase):
# Check the returned capabilities list, which is specific to each DB
# driver
def test_capabilities(self):
expected_capabilities = {
'meters': {'query': {'simple': True,
'metadata': True,
'complex': False}},
'resources': {'query': {'simple': True,
'metadata': True,
'complex': False}},
'samples': {'query': {'simple': True,
'metadata': True,
'complex': True}},
'statistics': {'groupby': True,
'query': {'simple': True,
'metadata': True,
'complex': False},
'aggregation': {'standard': True,
'selectable': {
'max': False,
'min': False,
'sum': False,
'avg': False,
'count': False,
'stddev': False,
'cardinality': False}}
},
}
actual_capabilities = impl_db2.Connection.get_capabilities()
self.assertEqual(expected_capabilities, actual_capabilities)
def test_event_capabilities(self):
expected_capabilities = {
'events': {'query': {'simple': True}},
}
actual_capabilities = impl_db2_event.Connection.get_capabilities()
self.assertEqual(expected_capabilities, actual_capabilities)
def test_alarm_capabilities(self):
expected_capabilities = {
'alarms': {'query': {'simple': True,
'complex': True},
'history': {'query': {'simple': True,
'complex': True}}},
}
actual_capabilities = impl_db2_alarm.Connection.get_capabilities()
self.assertEqual(expected_capabilities, actual_capabilities)
def test_storage_capabilities(self):
expected_capabilities = {
'storage': {'production_ready': True},
}
actual_capabilities = impl_db2.Connection.get_storage_capabilities()
self.assertEqual(expected_capabilities, actual_capabilities)
class ConnectionTest(test_base.BaseTestCase):
@mock.patch.object(impl_db2.Connection, '_generate_random_str')
@mock.patch.object(pymongo_utils.ConnectionPool, 'connect')
@mock.patch.object(timeutils, 'utcnow')
@mock.patch.object(bson.objectid, 'ObjectId')
def test_upgrade(self, meter_id, timestamp, mongo_connect,
_generate_random_str):
conn_mock = mock.MagicMock()
conn_mock.server_info.return_value = {}
_generate_random_str.return_value = 'wew' * 247 + 'x' * 3
conn_mock.ceilodb2.resource.index_information.return_value = {}
mongo_connect.return_value = conn_mock
meter_id.return_value = '54b8860d75bfe43b54e84ce7'
timestamp.return_value = 'timestamp'
cfg.CONF.set_override('db2nosql_resource_id_maxlen',
256,
group='database')
impl_db2.Connection('db2://user:pwd@localhost:27017/ceilodb2')
resource_id = 'wew' * 247 + 'x' * 3
conn_mock.ceilodb2.resource.insert_one.assert_called_with(
{'_id': resource_id,
'no_key': resource_id})
conn_mock.ceilodb2.meter.insert_one.assert_called_with(
{'_id': '54b8860d75bfe43b54e84ce7',
'no_key': '54b8860d75bfe43b54e84ce7',
'timestamp': 'timestamp'})
@mock.patch.object(pymongo_utils.ConnectionPool, 'connect')
@mock.patch.object(bson.objectid, 'ObjectId')
def test_generate_random_str_with_less_config_len(self, objectid,
mongo_connect):
fake_str = '54b8860d75bfe43b54e84ce7'
conn_mock = mock.MagicMock()
conn_mock.server_info.return_value = {}
mongo_connect.return_value = conn_mock
objectid.return_value = fake_str
cfg.CONF.set_override('db2nosql_resource_id_maxlen',
20,
group='database')
conn = impl_db2.Connection('db2://user:pwd@localhost:27017/ceilodb2')
rand_str = conn._generate_random_str(20)
self.assertEqual(fake_str, rand_str)
@mock.patch.object(pymongo_utils.ConnectionPool, 'connect')
@mock.patch.object(bson.objectid, 'ObjectId')
def test_generate_random_str_with_default_config_len(self, objectid,
mongo_connect):
fake_str = '54b8860d75bfe43b54e84ce7'
conn_mock = mock.MagicMock()
conn_mock.server_info.return_value = {}
mongo_connect.return_value = conn_mock
objectid.return_value = fake_str
cfg.CONF.set_override('db2nosql_resource_id_maxlen',
512,
group='database')
conn = impl_db2.Connection('db2://user:pwd@localhost:27017/ceilodb2')
rand_str = conn._generate_random_str(512)
str_len = len(str(fake_str))
expect_str = fake_str * int(512 / str_len) + 'x' * (512 % str_len)
self.assertEqual(expect_str, rand_str)