Merge "Add INFO.yaml for transportPCE"
[transportpce.git] / tests / transportpce_tests / 1.2.1 / test_portmapping.py
1 #!/usr/bin/env python
2
3 ##############################################################################
4 # Copyright (c) 2017 Orange, Inc. and others.  All rights reserved.
5 #
6 # All rights reserved. This program and the accompanying materials
7 # are made available under the terms of the Apache License, Version 2.0
8 # which accompanies this distribution, and is available at
9 # http://www.apache.org/licenses/LICENSE-2.0
10 ##############################################################################
11
12 import unittest
13 import time
14 import requests
15 from common import test_utils
16
17
18 class TransportPCEPortMappingTesting(unittest.TestCase):
19
20     processes = None
21
22     @classmethod
23     def setUpClass(cls):
24         cls.processes = test_utils.start_tpce()
25         cls.processes = test_utils.start_sims(['xpdra', 'roadma'])
26
27     @classmethod
28     def tearDownClass(cls):
29         for process in cls.processes:
30             test_utils.shutdown_process(process)
31         print("all processes killed")
32
33     def setUp(self):
34         print("execution of {}".format(self.id().split(".")[-1]))
35         time.sleep(10)
36
37 #    def test_01_restconfAPI(self):
38 #        response = test_utils.get_netconf_oper_request("controller-config")
39 #        self.assertEqual(response.status_code, requests.codes.ok)
40 #        res = response.json()
41 #        self.assertEqual(res['node'] [0] ['netconf-node-topology:connection-status'],
42 #                         'connected')
43
44 #     def test_02_restconfAPI(self):
45 #         response = test_utils.portmapping_request("controller-config")
46 #         self.assertEqual(response.status_code, requests.codes.not_found)
47 #         res = response.json()
48 #         self.assertIn(
49 #             {"error-type":"application", "error-tag":"data-missing",
50 #             "error-message":"Request could not be completed because the relevant data model content does not exist "},
51 #             res['errors']['error'])
52
53     def test_01_rdm_device_connection(self):
54         response = test_utils.mount_device("ROADMA01", 'roadma')
55         self.assertEqual(response.status_code, requests.codes.created, test_utils.CODE_SHOULD_BE_201)
56
57     def test_02_rdm_device_connected(self):
58         response = test_utils.get_netconf_oper_request("ROADMA01")
59         self.assertEqual(response.status_code, requests.codes.ok)
60         res = response.json()
61         self.assertEqual(
62             res['node'][0]['netconf-node-topology:connection-status'],
63             'connected')
64         time.sleep(10)
65
66     def test_03_rdm_portmapping_info(self):
67         response = test_utils.portmapping_request("ROADMA01/node-info")
68         self.assertEqual(response.status_code, requests.codes.ok)
69         res = response.json()
70         self.assertEqual(
71             {u'node-info': {u'node-type': u'rdm',
72                             u'node-ip-address': u'127.0.0.12',
73                             u'node-clli': u'NodeA',
74                             u'openroadm-version': u'1.2.1', u'node-vendor': u'vendorA',
75                             u'node-model': u'2'}},
76             res)
77         time.sleep(3)
78
79     def test_04_rdm_portmapping_DEG1_TTP_TXRX(self):
80         response = test_utils.portmapping_request("ROADMA01/mapping/DEG1-TTP-TXRX")
81         self.assertEqual(response.status_code, requests.codes.ok)
82         res = response.json()
83         self.assertIn(
84             {'supporting-port': 'L1', 'supporting-circuit-pack-name': '2/0',
85              'logical-connection-point': 'DEG1-TTP-TXRX', 'port-direction': 'bidirectional'},
86             res['mapping'])
87
88     def test_05_rdm_portmapping_SRG1_PP7_TXRX(self):
89         response = test_utils.portmapping_request("ROADMA01/mapping/SRG1-PP7-TXRX")
90         self.assertEqual(response.status_code, requests.codes.ok)
91         res = response.json()
92         self.assertIn(
93             {'supporting-port': 'C7', 'supporting-circuit-pack-name': '4/0',
94              'logical-connection-point': 'SRG1-PP7-TXRX', 'port-direction': 'bidirectional'},
95             res['mapping'])
96
97     def test_06_rdm_portmapping_SRG3_PP1_TXRX(self):
98         response = test_utils.portmapping_request("ROADMA01/mapping/SRG3-PP1-TXRX")
99         self.assertEqual(response.status_code, requests.codes.ok)
100         res = response.json()
101         self.assertIn(
102             {'supporting-port': 'C1', 'supporting-circuit-pack-name': '5/0',
103              'logical-connection-point': 'SRG3-PP1-TXRX', 'port-direction': 'bidirectional'},
104             res['mapping'])
105
106     def test_07_xpdr_device_connection(self):
107         response = test_utils.mount_device("XPDRA01", 'xpdra')
108         self.assertEqual(response.status_code, requests.codes.created, test_utils.CODE_SHOULD_BE_201)
109
110     def test_08_xpdr_device_connected(self):
111         response = test_utils.get_netconf_oper_request("XPDRA01")
112         self.assertEqual(response.status_code, requests.codes.ok)
113         res = response.json()
114         self.assertEqual(
115             res['node'][0]['netconf-node-topology:connection-status'],
116             'connected')
117         time.sleep(10)
118
119     def test_09_xpdr_portmapping_info(self):
120         response = test_utils.portmapping_request("XPDRA01/node-info")
121         self.assertEqual(response.status_code, requests.codes.ok)
122         res = response.json()
123         self.assertEqual(
124             {u'node-info': {u'node-type': u'xpdr',
125                             u'node-ip-address': u'127.0.0.10',
126                             u'node-clli': u'NodeA',
127                             u'openroadm-version': u'1.2.1', u'node-vendor': u'vendorA',
128                             u'node-model': u'1'}},
129             res)
130         time.sleep(3)
131
132     def test_10_xpdr_portmapping_NETWORK1(self):
133         response = test_utils.portmapping_request("XPDRA01/mapping/XPDR1-NETWORK1")
134         self.assertEqual(response.status_code, requests.codes.ok)
135         res = response.json()
136         self.assertIn(
137             {'supporting-port': '1', 'supporting-circuit-pack-name': '1/0/1-PLUG-NET',
138              'logical-connection-point': 'XPDR1-NETWORK1', 'port-direction': 'bidirectional',
139              'connection-map-lcp': 'XPDR1-CLIENT1', 'port-qual': 'xpdr-network',
140              'lcp-hash-val': 'OSvMgUyP+mE='},
141             res['mapping'])
142
143     def test_11_xpdr_portmapping_NETWORK2(self):
144         response = test_utils.portmapping_request("XPDRA01/mapping/XPDR1-NETWORK2")
145         self.assertEqual(response.status_code, requests.codes.ok)
146         res = response.json()
147         self.assertIn(
148             {'supporting-port': '1', 'supporting-circuit-pack-name': '1/0/2-PLUG-NET',
149              'logical-connection-point': 'XPDR1-NETWORK2', 'port-direction': 'bidirectional',
150              'connection-map-lcp': 'XPDR1-CLIENT3', 'port-qual': 'xpdr-network',
151              'lcp-hash-val': 'OSvMgUyP+mI='},
152             res['mapping'])
153
154     def test_12_xpdr_portmapping_CLIENT1(self):
155         response = test_utils.portmapping_request("XPDRA01/mapping/XPDR1-CLIENT1")
156         self.assertEqual(response.status_code, requests.codes.ok)
157         res = response.json()
158         self.assertIn(
159             {'supporting-port': 'C1',
160              'supporting-circuit-pack-name': '1/0/C1-PLUG-CLIENT',
161              'logical-connection-point': 'XPDR1-CLIENT1', 'port-direction': 'bidirectional',
162              'connection-map-lcp': 'XPDR1-NETWORK1', 'port-qual': 'xpdr-client',
163              'lcp-hash-val': 'AO9UFkY/TLYw'},
164             res['mapping'])
165
166     def test_13_xpdr_portmapping_CLIENT2(self):
167         response = test_utils.portmapping_request("XPDRA01/mapping/XPDR1-CLIENT2")
168         self.assertEqual(response.status_code, requests.codes.ok)
169         res = response.json()
170         self.assertIn(
171             {'supporting-port': 'C2',
172              'supporting-circuit-pack-name': '1/0/C2-PLUG-CLIENT',
173              'logical-connection-point': 'XPDR1-CLIENT2', 'port-direction': 'bidirectional',
174              'port-qual': 'xpdr-client',
175              'lcp-hash-val': 'AO9UFkY/TLYz'},
176             res['mapping'])
177
178     def test_14_xpdr_portmapping_CLIENT3(self):
179         response = test_utils.portmapping_request("XPDRA01/mapping/XPDR1-CLIENT3")
180         self.assertEqual(response.status_code, requests.codes.ok)
181         res = response.json()
182         self.assertIn(
183             {'supporting-port': 'C3',
184              'supporting-circuit-pack-name': '1/0/C3-PLUG-CLIENT',
185              'logical-connection-point': 'XPDR1-CLIENT3',
186              'connection-map-lcp': 'XPDR1-NETWORK2', 'port-direction': 'bidirectional',
187              'port-qual': 'xpdr-client', 'lcp-hash-val': 'AO9UFkY/TLYy'},
188             res['mapping'])
189
190         response = test_utils.portmapping_request("XPDRA01/mapping/XPDR1-CLIENT4")
191         self.assertEqual(response.status_code, requests.codes.ok)
192         res = response.json()
193         self.assertIn(
194             {'supporting-port': 'C4',
195              'supporting-circuit-pack-name': '1/0/C4-PLUG-CLIENT',
196              'logical-connection-point': 'XPDR1-CLIENT4', 'port-direction': 'bidirectional',
197              'port-qual': 'xpdr-client', 'lcp-hash-val': 'AO9UFkY/TLY1'},
198             res['mapping'])
199
200     def test_16_xpdr_device_disconnection(self):
201         response = test_utils.unmount_device("XPDRA01")
202         self.assertEqual(response.status_code, requests.codes.ok, test_utils.CODE_SHOULD_BE_200)
203
204     def test_17_xpdr_device_disconnected(self):
205         response = test_utils.get_netconf_oper_request("XPDRA01")
206         self.assertEqual(response.status_code, requests.codes.not_found)
207         res = response.json()
208         self.assertIn(
209             {"error-type": "application", "error-tag": "data-missing",
210              "error-message": "Request could not be completed because the relevant data model content does not exist"},
211             res['errors']['error'])
212
213     def test_18_xpdr_device_not_connected(self):
214         response = test_utils.portmapping_request("XPDRA01")
215         self.assertEqual(response.status_code, requests.codes.not_found)
216         res = response.json()
217         self.assertIn(
218             {"error-type": "application", "error-tag": "data-missing",
219              "error-message": "Request could not be completed because the relevant data model content does not exist"},
220             res['errors']['error'])
221
222     def test_19_rdm_device_disconnection(self):
223         response = test_utils.unmount_device("ROADMA01")
224         self.assertEqual(response.status_code, requests.codes.ok, test_utils.CODE_SHOULD_BE_200)
225
226     def test_20_rdm_device_disconnected(self):
227         response = test_utils.get_netconf_oper_request("ROADMA01")
228         self.assertEqual(response.status_code, requests.codes.not_found)
229         res = response.json()
230         self.assertIn(
231             {"error-type": "application", "error-tag": "data-missing",
232              "error-message": "Request could not be completed because the relevant data model content does not exist"},
233             res['errors']['error'])
234
235     def test_21_rdm_device_not_connected(self):
236         response = test_utils.portmapping_request("ROADMA01")
237         self.assertEqual(response.status_code, requests.codes.not_found)
238         res = response.json()
239         self.assertIn(
240             {"error-type": "application", "error-tag": "data-missing",
241              "error-message": "Request could not be completed because the relevant data model content does not exist"},
242             res['errors']['error'])
243
244
245 if __name__ == "__main__":
246     unittest.main(verbosity=2)