[tests] add traffic to 4 test cases: from Cert_5_2_07 to Cert_5_3_03 (#2214)

- Add a method in message.py to verify if receive a ICMPv6 message.
- Add two methods in command.py to verify link request and link accept.
This commit is contained in:
hjian2017
2017-10-18 09:25:22 -07:00
committed by Jonathan Hui
parent e2ca9caac3
commit 5bc2b8113b
8 changed files with 265 additions and 173 deletions
@@ -31,121 +31,136 @@ import time
import unittest
import node
import config
import command
BR = 1
LEADER = 2
ROUTER2 = 3
LEADER = 1
ROUTER1 = 2
DUT_ROUTER2 = 3
ROUTER3 = 4
ED2 = 5
MED1 = 5
MED1_TIMEOUT = 3
class Cert_5_3_3_AddressQuery(unittest.TestCase):
def setUp(self):
self.nodes = {}
for i in range(1,6):
self.nodes[i] = node.Node(i, (i == ED2))
self.nodes[i] = node.Node(i, (i == MED1))
self.nodes[LEADER].set_panid(0xface)
self.nodes[LEADER].set_panid()
self.nodes[LEADER].set_mode('rsdn')
self.nodes[LEADER].add_whitelist(self.nodes[BR].get_addr64())
self.nodes[LEADER].add_whitelist(self.nodes[ROUTER2].get_addr64())
self.nodes[LEADER].add_whitelist(self.nodes[ROUTER1].get_addr64())
self.nodes[LEADER].add_whitelist(self.nodes[DUT_ROUTER2].get_addr64())
self.nodes[LEADER].add_whitelist(self.nodes[ROUTER3].get_addr64())
self.nodes[LEADER].enable_whitelist()
self.nodes[BR].set_panid(0xface)
self.nodes[BR].set_mode('rsdn')
self.nodes[BR].add_whitelist(self.nodes[LEADER].get_addr64())
self.nodes[BR].enable_whitelist()
self.nodes[BR].set_router_selection_jitter(1)
self.nodes[ROUTER1].set_panid()
self.nodes[ROUTER1].set_mode('rsdn')
self.nodes[ROUTER1].add_whitelist(self.nodes[LEADER].get_addr64())
self.nodes[ROUTER1].enable_whitelist()
self.nodes[ROUTER1].set_router_selection_jitter(1)
self.nodes[ROUTER2].set_panid(0xface)
self.nodes[ROUTER2].set_mode('rsdn')
self.nodes[ROUTER2].add_whitelist(self.nodes[LEADER].get_addr64())
self.nodes[ROUTER2].add_whitelist(self.nodes[ROUTER3].get_addr64())
self.nodes[ROUTER2].add_whitelist(self.nodes[ED2].get_addr64())
self.nodes[ROUTER2].enable_whitelist()
self.nodes[ROUTER2].set_router_selection_jitter(1)
self.nodes[DUT_ROUTER2].set_panid()
self.nodes[DUT_ROUTER2].set_mode('rsdn')
self.nodes[DUT_ROUTER2].add_whitelist(self.nodes[LEADER].get_addr64())
self.nodes[DUT_ROUTER2].add_whitelist(self.nodes[ROUTER3].get_addr64())
self.nodes[DUT_ROUTER2].add_whitelist(self.nodes[MED1].get_addr64())
self.nodes[DUT_ROUTER2].enable_whitelist()
self.nodes[DUT_ROUTER2].set_router_selection_jitter(1)
self.nodes[ROUTER3].set_panid(0xface)
self.nodes[ROUTER3].set_panid()
self.nodes[ROUTER3].set_mode('rsdn')
self.nodes[ROUTER3].add_whitelist(self.nodes[LEADER].get_addr64())
self.nodes[ROUTER3].add_whitelist(self.nodes[ROUTER2].get_addr64())
self.nodes[ROUTER3].add_whitelist(self.nodes[DUT_ROUTER2].get_addr64())
self.nodes[ROUTER3].enable_whitelist()
self.nodes[ROUTER3].set_router_selection_jitter(1)
self.nodes[ED2].set_panid(0xface)
self.nodes[ED2].set_mode('rsn')
self.nodes[ED2].add_whitelist(self.nodes[ROUTER2].get_addr64())
self.nodes[ED2].set_timeout(3)
self.nodes[ED2].enable_whitelist()
self.nodes[MED1].set_panid()
self.nodes[MED1].set_mode('rsn')
self.nodes[MED1].add_whitelist(self.nodes[DUT_ROUTER2].get_addr64())
self.nodes[MED1].set_timeout(MED1_TIMEOUT)
self.nodes[MED1].enable_whitelist()
self.sniffer = config.create_default_thread_sniffer()
self.sniffer.start()
def tearDown(self):
self.sniffer.stop()
del self.sniffer
for node in list(self.nodes.values()):
node.stop()
del self.nodes
def test(self):
# 1
self.nodes[LEADER].start()
self.nodes[LEADER].set_state('leader')
self.assertEqual(self.nodes[LEADER].get_state(), 'leader')
self.nodes[BR].start()
time.sleep(5)
self.assertEqual(self.nodes[BR].get_state(), 'router')
self.nodes[BR].add_prefix('2001:2:0:3::/64', 'paros')
self.nodes[BR].add_prefix('2001:2:0:4::/64', 'paros')
self.nodes[BR].register_netdata()
self.nodes[ROUTER2].start()
time.sleep(5)
self.assertEqual(self.nodes[ROUTER2].get_state(), 'router')
self.nodes[ROUTER1].start()
self.nodes[DUT_ROUTER2].start()
self.nodes[ROUTER3].start()
self.nodes[MED1].start()
time.sleep(5)
self.assertEqual(self.nodes[ROUTER1].get_state(), 'router')
self.assertEqual(self.nodes[DUT_ROUTER2].get_state(), 'router')
self.assertEqual(self.nodes[ROUTER3].get_state(), 'router')
self.assertEqual(self.nodes[MED1].get_state(), 'child')
dut_messages = self.sniffer.get_messages_sent_by(DUT_ROUTER2)
self.nodes[ED2].start()
time.sleep(5)
self.assertEqual(self.nodes[ED2].get_state(), 'child')
# 2
router3_mleid = self.nodes[ROUTER3].get_ip6_address(config.ADDRESS_TYPE.ML_EID)
self.assertTrue(self.nodes[MED1].ping(router3_mleid))
addrs = self.nodes[ROUTER3].get_addrs()
for addr in addrs:
if addr[0:4] != 'fe80':
self.assertTrue(self.nodes[ED2].ping(addr))
time.sleep(1)
# Verify DUT_ROUTER2 sent an Address Query Request to the Realm local address.
dut_messages = self.sniffer.get_messages_sent_by(DUT_ROUTER2)
msg = dut_messages.next_coap_message('0.02', '/a/aq')
command.check_address_query(msg, self.nodes[DUT_ROUTER2], config.REALM_LOCAL_ALL_ROUTERS_ADDRESS)
addrs = self.nodes[ED2].get_addrs()
for addr in addrs:
if addr[0:4] != 'fe80':
self.assertTrue(self.nodes[LEADER].ping(addr))
time.sleep(1)
# 3
med1_mleid = self.nodes[MED1].get_ip6_address(config.ADDRESS_TYPE.ML_EID)
self.assertTrue(self.nodes[ROUTER1].ping(med1_mleid))
addrs = self.nodes[BR].get_addrs()
for addr in addrs:
if addr[0:4] != 'fe80':
self.assertTrue(self.nodes[ED2].ping(addr))
time.sleep(1)
# Verify DUT_ROUTER2 responded with an Address Notification.
dut_messages = self.sniffer.get_messages_sent_by(DUT_ROUTER2)
msg = dut_messages.next_coap_message('0.02', '/a/an')
command.check_address_notification(msg, self.nodes[DUT_ROUTER2], self.nodes[ROUTER1])
addrs = self.nodes[ROUTER3].get_addrs()
for addr in addrs:
if addr[0:4] != 'fe80':
self.assertTrue(self.nodes[ED2].ping(addr))
time.sleep(1)
# 4
dut_messages = self.sniffer.get_messages_sent_by(DUT_ROUTER2)
self.assertTrue(self.nodes[MED1].ping(router3_mleid))
addrs = self.nodes[ROUTER3].get_addrs()
# Verify DUT_ROUTER2 didn't send an Address Query Request.
dut_messages = self.sniffer.get_messages_sent_by(DUT_ROUTER2)
msg = dut_messages.next_coap_message('0.02', '/a/aq', False)
assert msg is None, "The Address Query Request is not expected."
# 5
dut_messages = self.sniffer.get_messages_sent_by(DUT_ROUTER2)
self.nodes[ROUTER3].stop()
time.sleep(140)
for addr in addrs:
if addr[0:4] != 'fe80':
self.assertFalse(self.nodes[ED2].ping(addr))
# Wait for the Leader to expire its Router ID.
# MAX_NEIGHBOR_AGE + INFINITE_COST_TIMEOUT + ID_REUSE_DELAY + propagation time + transmission time ~ 550s.
time.sleep(550)
self.assertFalse(self.nodes[MED1].ping(router3_mleid))
addrs = self.nodes[ED2].get_addrs()
self.nodes[ED2].stop()
time.sleep(10)
for addr in addrs:
if addr[0:4] != 'fe80':
self.assertFalse(self.nodes[BR].ping(addr))
# Verify DUT_ROUTER2 sent an Address Query Request to the Realm local address.
dut_messages = self.sniffer.get_messages_sent_by(DUT_ROUTER2)
msg = dut_messages.next_coap_message('0.02', '/a/aq')
command.check_address_query(msg, self.nodes[DUT_ROUTER2], config.REALM_LOCAL_ALL_ROUTERS_ADDRESS)
# 6
self.nodes[MED1].stop()
time.sleep(MED1_TIMEOUT)
self.assertFalse(self.nodes[ROUTER1].ping(med1_mleid))
self.assertFalse(self.nodes[ROUTER1].ping(med1_mleid))
# Verify DUT_ROUTER2 didn't respond with an Address Notification.
dut_messages = self.sniffer.get_messages_sent_by(DUT_ROUTER2)
msg = dut_messages.next_coap_message('0.02', '/a/an', False)
assert msg is None, "The Address Notification is not expected."
if __name__ == '__main__':
unittest.main()