python-barbicanclient/functionaltests/cli/v1/smoke/test_secret.py

137 lines
5.0 KiB
Python

# Copyright (c) 2015 Rackspace, Inc.
#
# 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.
import base64
from functionaltests.cli.base import CmdLineTestCase
from functionaltests.cli.v1.behaviors.secret_behaviors import SecretBehaviors
from functionaltests.common import keys
from functionaltests import utils
from testtools import testcase
@utils.parameterized_test_case
class SecretTestCase(CmdLineTestCase):
def setUp(self):
super(SecretTestCase, self).setUp()
self.secret_behaviors = SecretBehaviors()
self.expected_payload = "Top secret payload for secret smoke tests"
self.payload_content_type = "text/plain"
def tearDown(self):
super(SecretTestCase, self).tearDown()
self.secret_behaviors.delete_all_created_secrets()
@utils.parameterized_dataset({
'symmetric': ['symmetric',
'aes',
'128',
('\x00\x01\x02\x03\x04\x05\x06\x07'
'\x00\x01\x02\x03\x04\x05\x06\x07')],
'private': ['private',
'rsa',
'2048',
keys.get_private_key_pem()],
'public': ['public',
'rsa',
'2048',
keys.get_public_key_pem()],
'certificate': ['certificate',
'rsa',
'2048',
keys.get_certificate_pem()],
'opaque': ['opaque',
None,
None,
(b'\x00\x01\x02\x03\x04\x05\x06\x07')],
'passphrase': ['passphrase',
None,
None,
keys.get_passphrase_txt()],
})
@testcase.attr('positive')
def test_secret_store_with_secret_type(self, secret_type, algorithm,
bit_length, secret):
payload = secret
secret_argv = ['--secret-type', secret_type]
if algorithm:
secret_argv.extend(['--algorithm', algorithm])
if bit_length:
secret_argv.extend(['--bit-length', bit_length])
secret_href = self.secret_behaviors.store_secret(payload, secret_argv)
self.assertIsNotNone(secret_href)
secret = self.secret_behaviors.get_secret(secret_href)
self.assertEqual(secret_href, secret['Secret href'])
@testcase.attr('positive')
def test_secret_store(self):
secret_href = self.secret_behaviors.store_secret()
self.assertIsNotNone(secret_href)
secret = self.secret_behaviors.get_secret(secret_href)
self.assertEqual(secret_href, secret['Secret href'])
@testcase.attr('positive')
def test_secret_update(self):
secret_href = self.secret_behaviors.store_secret(
payload=None)
payload = 'time for an ice cold!!!'
self.assertIsNotNone(secret_href)
self.secret_behaviors.update_secret(secret_href,
payload)
payload_update = self.secret_behaviors.get_secret_payload(secret_href)
self.assertEqual(payload, payload_update)
@testcase.attr('positive')
def test_secret_list(self):
secrets_to_create = 10
for _ in range(secrets_to_create):
self.secret_behaviors.store_secret()
secret_list = self.secret_behaviors.list_secrets()
self.assertGreaterEqual(len(secret_list), secrets_to_create)
@testcase.attr('positive')
def test_secret_delete(self):
secret_href = self.secret_behaviors.store_secret()
self.secret_behaviors.delete_secret(secret_href)
secret = self.secret_behaviors.get_secret(secret_href)
self.assertEqual(0, len(secret))
@testcase.attr('positive')
def test_secret_get(self):
secret_href = self.secret_behaviors.store_secret()
secret = self.secret_behaviors.get_secret(secret_href)
self.assertIsNotNone(secret)
@testcase.attr('positive')
def test_secret_get_payload(self):
secret_href = self.secret_behaviors.store_secret(
payload=self.expected_payload)
payload = self.secret_behaviors.get_secret_payload(secret_href)
self.assertEqual(payload, self.expected_payload)
@testcase.attr('positive')
def test_secret_get_raw_payload(self):
secret_href = self.secret_behaviors.store_secret(
payload=self.expected_payload)
payload = self.secret_behaviors.get_secret_payload(secret_href,
raw=True)
self.assertEqual(payload, self.expected_payload)