fa818b2feb
Signed-off-by: Alberto Garcia <berto@igalia.com> Message-Id: <20210222115737.2993-1-berto@igalia.com> Signed-off-by: Kevin Wolf <kwolf@redhat.com>
282 lines
8.5 KiB
Python
Executable File
282 lines
8.5 KiB
Python
Executable File
#!/usr/bin/env python3
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# group: rw
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#
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# Test case QMP's encrypted key management
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#
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# Copyright (C) 2019 Red Hat, Inc.
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 2 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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#
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import iotests
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import os
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import time
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import json
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test_img = os.path.join(iotests.test_dir, 'test.img')
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class Secret:
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def __init__(self, index):
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self._id = "keysec" + str(index)
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# you are not supposed to see the password...
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self._secret = "hunter" + str(index)
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def id(self):
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return self._id
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def secret(self):
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return self._secret
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def to_cmdline_object(self):
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return [ "secret,id=" + self._id + ",data=" + self._secret]
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def to_qmp_object(self):
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return { "qom_type" : "secret", "id": self.id(),
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"data": self.secret() }
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################################################################################
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class EncryptionSetupTestCase(iotests.QMPTestCase):
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# test case startup
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def setUp(self):
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# start the VM
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self.vm = iotests.VM()
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self.vm.launch()
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# create the secrets and load 'em into the VM
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self.secrets = [ Secret(i) for i in range(0, 6) ]
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for secret in self.secrets:
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result = self.vm.qmp("object-add", **secret.to_qmp_object())
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self.assert_qmp(result, 'return', {})
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if iotests.imgfmt == "qcow2":
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self.pfx = "encrypt."
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self.img_opts = [ '-o', "encrypt.format=luks" ]
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else:
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self.pfx = ""
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self.img_opts = []
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# test case shutdown
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def tearDown(self):
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# stop the VM
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self.vm.shutdown()
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###########################################################################
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# create the encrypted block device
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def createImg(self, file, secret):
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iotests.qemu_img(
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'create',
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'--object', *secret.to_cmdline_object(),
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'-f', iotests.imgfmt,
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'-o', self.pfx + 'key-secret=' + secret.id(),
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'-o', self.pfx + 'iter-time=10',
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*self.img_opts,
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file,
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'1M')
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###########################################################################
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# open an encrypted block device
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def openImageQmp(self, id, file, secret, read_only = False):
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encrypt_options = {
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'key-secret' : secret.id()
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}
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if iotests.imgfmt == "qcow2":
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encrypt_options = {
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'encrypt': {
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'format':'luks',
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**encrypt_options
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}
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}
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result = self.vm.qmp('blockdev-add', **
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{
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'driver': iotests.imgfmt,
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'node-name': id,
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'read-only': read_only,
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**encrypt_options,
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'file': {
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'driver': 'file',
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'filename': test_img,
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}
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}
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)
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self.assert_qmp(result, 'return', {})
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# close the encrypted block device
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def closeImageQmp(self, id):
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result = self.vm.qmp('blockdev-del', **{ 'node-name': id })
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self.assert_qmp(result, 'return', {})
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###########################################################################
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# add a key to an encrypted block device
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def addKeyQmp(self, id, new_secret, secret = None,
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slot = None, force = False):
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crypt_options = {
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'state' : 'active',
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'new-secret' : new_secret.id(),
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'iter-time' : 10
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}
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if slot != None:
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crypt_options['keyslot'] = slot
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if secret != None:
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crypt_options['secret'] = secret.id()
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if iotests.imgfmt == "qcow2":
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crypt_options['format'] = 'luks'
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crypt_options = {
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'encrypt': crypt_options
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}
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args = {
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'node-name': id,
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'job-id' : 'job_add_key',
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'options' : {
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'driver' : iotests.imgfmt,
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**crypt_options
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},
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}
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if force == True:
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args['force'] = True
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#TODO: check what jobs return
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result = self.vm.qmp('x-blockdev-amend', **args)
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assert result['return'] == {}
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self.vm.run_job('job_add_key')
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# erase a key from an encrypted block device
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def eraseKeyQmp(self, id, old_secret = None, slot = None, force = False):
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crypt_options = {
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'state' : 'inactive',
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}
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if slot != None:
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crypt_options['keyslot'] = slot
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if old_secret != None:
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crypt_options['old-secret'] = old_secret.id()
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if iotests.imgfmt == "qcow2":
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crypt_options['format'] = 'luks'
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crypt_options = {
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'encrypt': crypt_options
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}
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args = {
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'node-name': id,
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'job-id' : 'job_erase_key',
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'options' : {
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'driver' : iotests.imgfmt,
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**crypt_options
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},
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}
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if force == True:
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args['force'] = True
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result = self.vm.qmp('x-blockdev-amend', **args)
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assert result['return'] == {}
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self.vm.run_job('job_erase_key')
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###########################################################################
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# create image, and change its key
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def testChangeKey(self):
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# create the image with secret0 and open it
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self.createImg(test_img, self.secrets[0]);
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self.openImageQmp("testdev", test_img, self.secrets[0])
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# add key to slot 1
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self.addKeyQmp("testdev", new_secret = self.secrets[1])
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# add key to slot 5
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self.addKeyQmp("testdev", new_secret = self.secrets[2], slot=5)
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# erase key from slot 0
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self.eraseKeyQmp("testdev", old_secret = self.secrets[0])
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#reopen the image with secret1
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self.closeImageQmp("testdev")
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self.openImageQmp("testdev", test_img, self.secrets[1])
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# close and erase the image for good
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self.closeImageQmp("testdev")
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os.remove(test_img)
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# test that if we erase the old password,
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# we can still change the encryption keys using 'old-secret'
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def testOldPassword(self):
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# create the image with secret0 and open it
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self.createImg(test_img, self.secrets[0]);
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self.openImageQmp("testdev", test_img, self.secrets[0])
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# add key to slot 1
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self.addKeyQmp("testdev", new_secret = self.secrets[1])
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# erase key from slot 0
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self.eraseKeyQmp("testdev", old_secret = self.secrets[0])
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# this will fail as the old password is no longer valid
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self.addKeyQmp("testdev", new_secret = self.secrets[2])
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# this will work
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self.addKeyQmp("testdev", new_secret = self.secrets[2], secret = self.secrets[1])
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# close and erase the image for good
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self.closeImageQmp("testdev")
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os.remove(test_img)
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def testUseForceLuke(self):
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self.createImg(test_img, self.secrets[0]);
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self.openImageQmp("testdev", test_img, self.secrets[0])
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# Add bunch of secrets
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self.addKeyQmp("testdev", new_secret = self.secrets[1], slot=4)
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self.addKeyQmp("testdev", new_secret = self.secrets[4], slot=2)
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# overwrite an active secret
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self.addKeyQmp("testdev", new_secret = self.secrets[5], slot=2)
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self.addKeyQmp("testdev", new_secret = self.secrets[5], slot=2, force=True)
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self.addKeyQmp("testdev", new_secret = self.secrets[0])
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# Now erase all the secrets
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self.eraseKeyQmp("testdev", old_secret = self.secrets[5])
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self.eraseKeyQmp("testdev", slot=4)
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# erase last keyslot
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self.eraseKeyQmp("testdev", old_secret = self.secrets[0])
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self.eraseKeyQmp("testdev", old_secret = self.secrets[0], force=True)
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self.closeImageQmp("testdev")
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os.remove(test_img)
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if __name__ == '__main__':
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iotests.verify_working_luks()
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# Encrypted formats support
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iotests.activate_logging()
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iotests.main(supported_fmts = ['qcow2', 'luks'])
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