test_network_service.py 8.8 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211
  1. import test.helpers as helpers
  2. import uuid
  3. from test.helpers import ProviderTestBase
  4. from cloudbridge.cloud.interfaces.resources import RouterState
  5. class CloudNetworkServiceTestCase(ProviderTestBase):
  6. def __init__(self, methodName, provider):
  7. super(CloudNetworkServiceTestCase, self).__init__(
  8. methodName=methodName, provider=provider)
  9. @helpers.skipIfNoService(['network'])
  10. def test_crud_network_service(self):
  11. name = 'cbtestnetworkservice-{0}'.format(uuid.uuid4())
  12. subnet_name = 'cbtestsubnetservice-{0}'.format(uuid.uuid4())
  13. net = self.provider.network.create(name=name)
  14. with helpers.cleanup_action(
  15. lambda:
  16. self.provider.network.delete(network_id=net.id)
  17. ):
  18. # test list method
  19. netl = self.provider.network.list()
  20. list_netl = [n for n in netl if n.name == name]
  21. self.assertTrue(
  22. len(list_netl) == 1,
  23. "List networks does not return the expected network %s" %
  24. name)
  25. # check get
  26. get_net = self.provider.network.get(network_id=net.id)
  27. self.assertTrue(
  28. get_net == net,
  29. "Get network did not return the expected network {0}."
  30. .format(name))
  31. # check subnet
  32. subnet = self.provider.network.subnets.create(
  33. network=net, cidr_block="10.0.0.1/24", name=subnet_name)
  34. with helpers.cleanup_action(
  35. lambda:
  36. self.provider.network.subnets.delete(subnet=subnet)
  37. ):
  38. # test list method
  39. subnetl = self.provider.network.subnets.list(network=net)
  40. list_subnetl = [n for n in subnetl if n.name == subnet_name]
  41. self.assertTrue(
  42. len(list_subnetl) == 1,
  43. "List subnets does not return the expected subnet %s" %
  44. subnet_name)
  45. # test get method
  46. sn = self.provider.network.subnets.get(subnet.id)
  47. self.assertTrue(
  48. subnet.id == sn.id,
  49. "GETting subnet should return the same subnet")
  50. subnetl = self.provider.network.subnets.list()
  51. found_subnet = [n for n in subnetl if n.name == subnet_name]
  52. self.assertTrue(
  53. len(found_subnet) == 0,
  54. "Subnet {0} should have been deleted but still exists."
  55. .format(subnet_name))
  56. # Check floating IP address
  57. ip = self.provider.network.create_floating_ip()
  58. ip_id = ip.id
  59. with helpers.cleanup_action(lambda: ip.delete()):
  60. ipl = self.provider.network.floating_ips()
  61. self.assertTrue(
  62. ip in ipl,
  63. "Floating IP address {0} should exist in the list {1}"
  64. .format(ip.id, ipl))
  65. # 2016-08: address filtering not implemented in moto
  66. # empty_ipl = self.provider.network.floating_ips('dummy-net')
  67. # self.assertFalse(
  68. # empty_ipl,
  69. # "Bogus network should not have any floating IPs: {0}"
  70. # .format(empty_ipl))
  71. self.assertIn(
  72. ip.public_ip, repr(ip),
  73. "repr(obj) should contain the address public IP value.")
  74. self.assertFalse(
  75. ip.private_ip,
  76. "Floating IP should not have a private IP value ({0})."
  77. .format(ip.private_ip))
  78. self.assertFalse(
  79. ip.in_use(),
  80. "Newly created floating IP address should not be in use.")
  81. ipl = self.provider.network.floating_ips()
  82. found_ip = [a for a in ipl if a.id == ip_id]
  83. self.assertTrue(
  84. len(found_ip) == 0,
  85. "Floating IP {0} should have been deleted but still exists."
  86. .format(ip_id))
  87. netl = self.provider.network.list()
  88. found_net = [n for n in netl if n.name == name]
  89. self.assertEqual(
  90. len(found_net), 0,
  91. "Network {0} should have been deleted but still exists."
  92. .format(name))
  93. @helpers.skipIfNoService(['network'])
  94. def test_crud_network(self):
  95. name = 'cbtestnetwork-{0}'.format(uuid.uuid4())
  96. subnet_name = 'cbtestsubnet-{0}'.format(uuid.uuid4())
  97. net = self.provider.network.create(name=name)
  98. with helpers.cleanup_action(
  99. lambda: net.delete()
  100. ):
  101. net.wait_till_ready()
  102. self.assertEqual(
  103. net.refresh(), 'available',
  104. "Network in state %s , yet should be 'available'" % net.state)
  105. self.assertIn(
  106. net.id, repr(net),
  107. "repr(obj) should contain the object id so that the object"
  108. " can be reconstructed, but does not.")
  109. self.assertIn(
  110. net.cidr_block, ['', '10.0.0.0/16'],
  111. "Network CIDR %s does not contain the expected value."
  112. % net.cidr_block)
  113. cidr = '10.0.1.0/24'
  114. sn = net.create_subnet(
  115. cidr_block=cidr, name=subnet_name,
  116. zone=helpers.get_provider_test_data(self.provider,
  117. 'placement'))
  118. with helpers.cleanup_action(lambda: sn.delete()):
  119. self.assertTrue(
  120. sn.id in [s.id for s in net.subnets()],
  121. "Subnet ID %s should be listed in network subnets %s."
  122. % (sn.id, net.subnets()))
  123. self.assertIn(
  124. net.id, sn.network_id,
  125. "Network ID %s should be specified in the subnet's network"
  126. " id %s." % (net.id, sn.network_id))
  127. self.assertEqual(
  128. cidr, sn.cidr_block,
  129. "Subnet's CIDR %s should match the specified one %s." % (
  130. sn.cidr_block, cidr))
  131. @helpers.skipIfNoService(['network.routers'])
  132. def test_crud_router(self):
  133. def _cleanup(net, subnet, router):
  134. router.remove_route(subnet.id)
  135. router.detach_network()
  136. router.delete()
  137. subnet.delete()
  138. net.delete()
  139. name = 'cbtestrouter-{0}'.format(uuid.uuid4())
  140. router = self.provider.network.create_router(name=name)
  141. net = self.provider.network.create(name=name)
  142. cidr = '10.0.1.0/24'
  143. sn = net.create_subnet(
  144. cidr_block=cidr, name=name,
  145. zone=helpers.get_provider_test_data(self.provider, 'placement'))
  146. with helpers.cleanup_action(lambda: _cleanup(net, sn, router)):
  147. # Check basic router properties
  148. self.assertIn(
  149. router, self.provider.network.routers(),
  150. "Router {0} should exist in the router list {1}.".format(
  151. router.id, self.provider.network.routers()))
  152. self.assertIn(
  153. router.id, repr(router),
  154. "repr(obj) should contain the object id so that the object"
  155. " can be reconstructed, but does not.")
  156. self.assertEqual(
  157. router.name, name,
  158. "Router {0} name should be {1}.".format(router.name, name))
  159. self.assertEqual(
  160. router.state, RouterState.DETACHED,
  161. "Router {0} state {1} should be {2}.".format(
  162. router.id, router.state, RouterState.DETACHED))
  163. self.assertFalse(
  164. router.network_id,
  165. "Router {0} should not be assoc. with a network {1}".format(
  166. router.id, router.network_id))
  167. # Check router connectivity
  168. # On OpenStack only one network is external and on AWS every
  169. # network is external, yet we need to use the one we've created?!
  170. if self.provider.PROVIDER_ID == 'openstack':
  171. for n in self.provider.network.list():
  172. if n.external:
  173. external_net = n
  174. break
  175. else:
  176. external_net = net
  177. router.attach_network(external_net.id)
  178. router.refresh()
  179. self.assertEqual(
  180. router.network_id, external_net.id,
  181. "Router should be attached to network {0}, not {1}".format(
  182. external_net.id, router.network_id))
  183. router.add_route(sn.id)
  184. # TODO: add a check for routes after that's been implemented
  185. routerl = self.provider.network.routers()
  186. found_router = [r for r in routerl if r.name == name]
  187. self.assertEqual(
  188. len(found_router), 0,
  189. "Router {0} should have been deleted but still exists."
  190. .format(name))