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authorNick Coghlan <ncoghlan@gmail.com>2014-02-08 13:20:58 (GMT)
committerNick Coghlan <ncoghlan@gmail.com>2014-02-08 13:20:58 (GMT)
commitaad0ea0b598e30cdef66b7c7fd3c605044c30557 (patch)
tree16efc7743e43a415a5642568daff2b9373ab6a2e /Lib/test/test_ipaddress.py
parent1ff23d7542862935fc3fbddb1785fcebfd17e8b2 (diff)
parent932346f5722c59d0a90b57a4f432c1905a0e4049 (diff)
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Merge fix for #18805 from 3.3
Diffstat (limited to 'Lib/test/test_ipaddress.py')
-rw-r--r--Lib/test/test_ipaddress.py73
1 files changed, 53 insertions, 20 deletions
diff --git a/Lib/test/test_ipaddress.py b/Lib/test/test_ipaddress.py
index f3b1565..019f35a 100644
--- a/Lib/test/test_ipaddress.py
+++ b/Lib/test/test_ipaddress.py
@@ -398,18 +398,47 @@ class NetmaskTestMixin_v4(CommonTestMixin_v4):
assertBadAddress("::1.2.3.4", "Only decimal digits")
assertBadAddress("1.2.3.256", re.escape("256 (> 255)"))
+ def test_valid_netmask(self):
+ self.assertEqual(str(self.factory('192.0.2.0/255.255.255.0')),
+ '192.0.2.0/24')
+ for i in range(0, 33):
+ # Generate and re-parse the CIDR format (trivial).
+ net_str = '0.0.0.0/%d' % i
+ net = self.factory(net_str)
+ self.assertEqual(str(net), net_str)
+ # Generate and re-parse the expanded netmask.
+ self.assertEqual(
+ str(self.factory('0.0.0.0/%s' % net.netmask)), net_str)
+ # Zero prefix is treated as decimal.
+ self.assertEqual(str(self.factory('0.0.0.0/0%d' % i)), net_str)
+ # Generate and re-parse the expanded hostmask. The ambiguous
+ # cases (/0 and /32) are treated as netmasks.
+ if i in (32, 0):
+ net_str = '0.0.0.0/%d' % (32 - i)
+ self.assertEqual(
+ str(self.factory('0.0.0.0/%s' % net.hostmask)), net_str)
+
def test_netmask_errors(self):
def assertBadNetmask(addr, netmask):
- msg = "%r is not a valid netmask"
- with self.assertNetmaskError(msg % netmask):
+ msg = "%r is not a valid netmask" % netmask
+ with self.assertNetmaskError(re.escape(msg)):
self.factory("%s/%s" % (addr, netmask))
assertBadNetmask("1.2.3.4", "")
+ assertBadNetmask("1.2.3.4", "-1")
+ assertBadNetmask("1.2.3.4", "+1")
+ assertBadNetmask("1.2.3.4", " 1 ")
+ assertBadNetmask("1.2.3.4", "0x1")
assertBadNetmask("1.2.3.4", "33")
assertBadNetmask("1.2.3.4", "254.254.255.256")
+ assertBadNetmask("1.2.3.4", "1.a.2.3")
assertBadNetmask("1.1.1.1", "254.xyz.2.3")
assertBadNetmask("1.1.1.1", "240.255.0.0")
+ assertBadNetmask("1.1.1.1", "255.254.128.0")
+ assertBadNetmask("1.1.1.1", "0.1.127.255")
assertBadNetmask("1.1.1.1", "pudding")
+ assertBadNetmask("1.1.1.1", "::")
+
class InterfaceTestCase_v4(BaseTestCase, NetmaskTestMixin_v4):
factory = ipaddress.IPv4Interface
@@ -438,17 +467,34 @@ class NetmaskTestMixin_v6(CommonTestMixin_v6):
assertBadAddress("10/8", "At least 3 parts")
assertBadAddress("1234:axy::b", "Only hex digits")
+ def test_valid_netmask(self):
+ # We only support CIDR for IPv6, because expanded netmasks are not
+ # standard notation.
+ self.assertEqual(str(self.factory('2001:db8::/32')), '2001:db8::/32')
+ for i in range(0, 129):
+ # Generate and re-parse the CIDR format (trivial).
+ net_str = '::/%d' % i
+ self.assertEqual(str(self.factory(net_str)), net_str)
+ # Zero prefix is treated as decimal.
+ self.assertEqual(str(self.factory('::/0%d' % i)), net_str)
+
def test_netmask_errors(self):
def assertBadNetmask(addr, netmask):
- msg = "%r is not a valid netmask"
- with self.assertNetmaskError(msg % netmask):
+ msg = "%r is not a valid netmask" % netmask
+ with self.assertNetmaskError(re.escape(msg)):
self.factory("%s/%s" % (addr, netmask))
assertBadNetmask("::1", "")
assertBadNetmask("::1", "::1")
assertBadNetmask("::1", "1::")
+ assertBadNetmask("::1", "-1")
+ assertBadNetmask("::1", "+1")
+ assertBadNetmask("::1", " 1 ")
+ assertBadNetmask("::1", "0x1")
assertBadNetmask("::1", "129")
+ assertBadNetmask("::1", "1.2.3.4")
assertBadNetmask("::1", "pudding")
+ assertBadNetmask("::", "::")
class InterfaceTestCase_v6(BaseTestCase, NetmaskTestMixin_v6):
factory = ipaddress.IPv6Interface
@@ -694,16 +740,14 @@ class IpaddrUnitTest(unittest.TestCase):
def testZeroNetmask(self):
ipv4_zero_netmask = ipaddress.IPv4Interface('1.2.3.4/0')
self.assertEqual(int(ipv4_zero_netmask.network.netmask), 0)
- self.assertTrue(ipv4_zero_netmask.network._is_valid_netmask(
- str(0)))
+ self.assertEqual(ipv4_zero_netmask._prefix_from_prefix_string('0'), 0)
self.assertTrue(ipv4_zero_netmask._is_valid_netmask('0'))
self.assertTrue(ipv4_zero_netmask._is_valid_netmask('0.0.0.0'))
self.assertFalse(ipv4_zero_netmask._is_valid_netmask('invalid'))
ipv6_zero_netmask = ipaddress.IPv6Interface('::1/0')
self.assertEqual(int(ipv6_zero_netmask.network.netmask), 0)
- self.assertTrue(ipv6_zero_netmask.network._is_valid_netmask(
- str(0)))
+ self.assertEqual(ipv6_zero_netmask._prefix_from_prefix_string('0'), 0)
def testIPv4NetAndHostmasks(self):
net = self.ipv4_network
@@ -719,7 +763,7 @@ class IpaddrUnitTest(unittest.TestCase):
self.assertFalse(net._is_hostmask('1.2.3.4'))
net = ipaddress.IPv4Network('127.0.0.0/0.0.0.255')
- self.assertEqual(24, net.prefixlen)
+ self.assertEqual(net.prefixlen, 24)
def testGetBroadcast(self):
self.assertEqual(int(self.ipv4_network.broadcast_address), 16909311)
@@ -1271,11 +1315,6 @@ class IpaddrUnitTest(unittest.TestCase):
self.assertEqual(ipaddress.IPv6Interface('::1:0:0:0:0').packed,
b'\x00' * 6 + b'\x00\x01' + b'\x00' * 8)
- def testIpStrFromPrefixlen(self):
- ipv4 = ipaddress.IPv4Interface('1.2.3.4/24')
- self.assertEqual(ipv4._ip_string_from_prefix(), '255.255.255.0')
- self.assertEqual(ipv4._ip_string_from_prefix(28), '255.255.255.240')
-
def testIpType(self):
ipv4net = ipaddress.ip_network('1.2.3.4')
ipv4addr = ipaddress.ip_address('1.2.3.4')
@@ -1479,14 +1518,8 @@ class IpaddrUnitTest(unittest.TestCase):
def testIPBases(self):
net = self.ipv4_network
self.assertEqual('1.2.3.0/24', net.compressed)
- self.assertEqual(
- net._ip_int_from_prefix(24),
- net._ip_int_from_prefix(None))
net = self.ipv6_network
self.assertRaises(ValueError, net._string_from_ip_int, 2**128 + 1)
- self.assertEqual(
- self.ipv6_address._string_from_ip_int(self.ipv6_address._ip),
- self.ipv6_address._string_from_ip_int(None))
def testIPv6NetworkHelpers(self):
net = self.ipv6_network