mirror of https://github.com/fail2ban/fail2ban
RF/ENH: 1st wave of IPAddr pythonization - properties, logical statements, etc
# Conflicts: # fail2ban/server/ipdns.pypull/1414/head
parent
dbd7e347b1
commit
c1a54974e9
1
MANIFEST
1
MANIFEST
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@ -201,6 +201,7 @@ fail2ban/tests/actionstestcase.py
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fail2ban/tests/actiontestcase.py
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fail2ban/tests/actiontestcase.py
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fail2ban/tests/banmanagertestcase.py
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fail2ban/tests/banmanagertestcase.py
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fail2ban/tests/clientreadertestcase.py
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fail2ban/tests/clientreadertestcase.py
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fail2ban/tests/clientbeautifiertestcase.py
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fail2ban/tests/config/action.d/brokenaction.conf
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fail2ban/tests/config/action.d/brokenaction.conf
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fail2ban/tests/config/fail2ban.conf
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fail2ban/tests/config/fail2ban.conf
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fail2ban/tests/config/filter.d/simple.conf
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fail2ban/tests/config/filter.d/simple.conf
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@ -152,7 +152,8 @@ class BanManager:
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for banData in self.__banList:
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for banData in self.__banList:
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ip = banData.getIP()
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ip = banData.getIP()
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# Reference: http://www.team-cymru.org/Services/ip-to-asn.html#dns
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# Reference: http://www.team-cymru.org/Services/ip-to-asn.html#dns
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question = ip.getPTR("origin.asn.cymru.com" if ip.isIPv4()
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question = ip.getPTR(
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"origin.asn.cymru.com" if ip.isIPv4
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else "origin6.asn.cymru.com"
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else "origin6.asn.cymru.com"
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)
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)
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try:
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try:
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@ -383,7 +383,7 @@ class Filter(JailThread):
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for net in self.__ignoreIpList:
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for net in self.__ignoreIpList:
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# check if the IP is covered by ignore IP
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# check if the IP is covered by ignore IP
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if ip.isInNet(net):
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if ip.isInNet(net):
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self.logIgnoreIp(ip, log_ignore, ignore_source=("ip" if net.isValidIP() else "dns"))
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self.logIgnoreIp(ip, log_ignore, ignore_source=("ip" if net.isValid else "dns"))
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return True
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return True
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if self.__ignoreCommand:
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if self.__ignoreCommand:
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@ -17,13 +17,13 @@
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# along with Fail2Ban; if not, write to the Free Software
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# along with Fail2Ban; if not, write to the Free Software
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# Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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# Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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__author__ = "Fail2Ban Developers, Alexander Koeppe, Serg G. Brester"
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__author__ = "Fail2Ban Developers, Alexander Koeppe, Serg G. Brester, Yaroslav Halchenko"
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__copyright__ = "Copyright (c) 2004-2016 Fail2ban Developers"
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__copyright__ = "Copyright (c) 2004-2016 Fail2ban Developers"
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__license__ = "GPL"
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__license__ = "GPL"
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import re
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import socket
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import socket
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import struct
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import struct
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import re
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from .utils import Utils
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from .utils import Utils
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from ..helpers import getLogger
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from ..helpers import getLogger
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@ -38,9 +38,7 @@ logSys = getLogger(__name__)
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#
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#
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def asip(ip):
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def asip(ip):
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"""A little helper to guarantee ip being an IPAddr instance"""
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"""A little helper to guarantee ip being an IPAddr instance"""
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if isinstance(ip, IPAddr):
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return ip if isinstance(ip, IPAddr) or ip is None else IPAddr(ip)
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return ip
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return IPAddr(ip)
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##
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##
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@ -68,7 +66,7 @@ class DNSUtils:
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ips = list()
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ips = list()
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for result in socket.getaddrinfo(dns, None, 0, 0, socket.IPPROTO_TCP):
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for result in socket.getaddrinfo(dns, None, 0, 0, socket.IPPROTO_TCP):
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ip = IPAddr(result[4][0])
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ip = IPAddr(result[4][0])
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if ip.isValidIP():
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if ip.isValid:
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ips.append(ip)
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ips.append(ip)
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except socket.error, e:
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except socket.error, e:
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# todo: make configurable the expired time of cache entry:
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# todo: make configurable the expired time of cache entry:
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@ -88,7 +86,7 @@ class DNSUtils:
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if not isinstance(ip, IPAddr):
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if not isinstance(ip, IPAddr):
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v = socket.gethostbyaddr(ip)[0]
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v = socket.gethostbyaddr(ip)[0]
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else:
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else:
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v = socket.gethostbyaddr(ip.ntoa())[0]
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v = socket.gethostbyaddr(ip.ntoa)[0]
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except socket.error, e:
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except socket.error, e:
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logSys.debug("Unable to find a name for the IP %s: %s", ip, e)
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logSys.debug("Unable to find a name for the IP %s: %s", ip, e)
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v = None
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v = None
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@ -104,7 +102,7 @@ class DNSUtils:
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plainIP = IPAddr.searchIP(text)
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plainIP = IPAddr.searchIP(text)
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if plainIP is not None:
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if plainIP is not None:
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ip = IPAddr(plainIP.group(0))
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ip = IPAddr(plainIP.group(0))
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if ip.isValidIP():
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if ip.isValid:
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ipList.append(ip)
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ipList.append(ip)
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# If we are allowed to resolve -- give it a try if nothing was found
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# If we are allowed to resolve -- give it a try if nothing was found
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@ -123,134 +121,132 @@ class DNSUtils:
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# Class for IP address handling.
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# Class for IP address handling.
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#
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#
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# This class contains methods for handling IPv4 and IPv6 addresses.
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# This class contains methods for handling IPv4 and IPv6 addresses.
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class IPAddr(object):
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#
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""" provide functions to handle IPv4 and IPv6 addresses
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class IPAddr:
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"""Encapsulate functionality for IPv4 and IPv6 addresses
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"""
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"""
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IP_CRE = re.compile("^(?:\d{1,3}\.){3}\d{1,3}$")
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IP_CRE = re.compile("^(?:\d{1,3}\.){3}\d{1,3}$")
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IP6_CRE = re.compile("^[0-9a-fA-F]{4}[0-9a-fA-F:]+:[0-9a-fA-F]{1,4}|::1$")
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IP6_CRE = re.compile("^[0-9a-fA-F]{4}[0-9a-fA-F:]+:[0-9a-fA-F]{1,4}|::1$")
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# object attributes
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# object attributes
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addr = 0
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_addr = 0
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family = socket.AF_UNSPEC
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_family = socket.AF_UNSPEC
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plen = 0
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_plen = 0
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valid = False
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_isValid = False
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raw = ""
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_raw = ""
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# todo: make configurable the expired time and max count of cache entries:
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CACHE_OBJ = Utils.Cache(maxCount=1000, maxTime=5*60)
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def __new__(cls, ipstring, cidr=-1):
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# already correct IPAddr
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args = (ipstring, cidr)
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ip = IPAddr.CACHE_OBJ.get(args)
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if ip is not None:
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return ip
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ip = super(IPAddr, cls).__new__(cls)
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ip.__init(ipstring, cidr)
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IPAddr.CACHE_OBJ.set(args, ip)
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return ip
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# object methods
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# object methods
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def __init(self, ipstring, cidr=-1):
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def __init__(self, ipstring, cidr=-1):
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""" initialize IP object by converting IP address string
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""" initialize IP object by converting IP address string
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to binary to integer
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to binary to integer
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"""
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"""
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for family in [socket.AF_INET, socket.AF_INET6]:
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for family in [socket.AF_INET, socket.AF_INET6]:
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try:
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try:
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binary = socket.inet_pton(family, ipstring)
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binary = socket.inet_pton(family, ipstring)
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self.valid = True
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break
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except socket.error:
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except socket.error:
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continue
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continue
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else:
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self._isValid = True
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break
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if self.valid and family == socket.AF_INET:
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if self.isValid and family == socket.AF_INET:
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# convert host to network byte order
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# convert host to network byte order
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self.addr, = struct.unpack("!L", binary)
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self._addr, = struct.unpack("!L", binary)
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self.family = family
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self._family = family
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self.plen = 32
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self._plen = 32
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# mask out host portion if prefix length is supplied
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# mask out host portion if prefix length is supplied
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if cidr != None and cidr >= 0:
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if cidr is not None and cidr >= 0:
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mask = ~(0xFFFFFFFFL >> cidr)
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mask = ~(0xFFFFFFFFL >> cidr)
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self.addr = self.addr & mask
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self._addr &= mask
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self.plen = cidr
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self._plen = cidr
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elif self.valid and family == socket.AF_INET6:
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elif self.isValid and family == socket.AF_INET6:
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# convert host to network byte order
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# convert host to network byte order
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hi, lo = struct.unpack("!QQ", binary)
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hi, lo = struct.unpack("!QQ", binary)
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self.addr = (hi << 64) | lo
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self._addr = (hi << 64) | lo
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self.family = family
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self._family = family
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self.plen = 128
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self._plen = 128
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# mask out host portion if prefix length is supplied
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# mask out host portion if prefix length is supplied
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if cidr != None and cidr >= 0:
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if cidr is not None and cidr >= 0:
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mask = ~(0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFL >> cidr)
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mask = ~(0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFL >> cidr)
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self.addr = self.addr & mask
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self._addr &= mask
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self.plen = cidr
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self._plen = cidr
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# if IPv6 address is a IPv4-compatible, make instance a IPv4
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# if IPv6 address is a IPv4-compatible, make instance a IPv4
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elif self.isInNet(IPAddr("::ffff:0:0", 96)):
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elif self.isInNet(_IPv6_v4COMPAT):
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self.addr = lo & 0xFFFFFFFFL
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self._addr = lo & 0xFFFFFFFFL
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self.family = socket.AF_INET
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self._family = socket.AF_INET
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self.plen = 32
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self._plen = 32
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else:
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else:
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# string couldn't be converted neither to a IPv4 nor
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# string couldn't be converted neither to a IPv4 nor
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# to a IPv6 address - retain raw input for later use
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# to a IPv6 address - retain raw input for later use
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# (e.g. DNS resolution)
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# (e.g. DNS resolution)
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self.raw = ipstring
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self._raw = ipstring
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def __repr__(self):
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def __repr__(self):
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return self.ntoa()
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return self.ntoa
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def __str__(self):
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def __str__(self):
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return self.ntoa()
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return self.ntoa
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@property
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def addr(self):
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return self._addr
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@property
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def family(self):
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return self._family
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@property
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def plen(self):
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return self._plen
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@property
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def raw(self):
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"""The raw address
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Should only be set to a non-empty string if prior address
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conversion wasn't possible
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"""
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return self._raw
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@property
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def isValid(self):
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"""Either the object corresponds to a valid IP address
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"""
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return self._isValid
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def __eq__(self, other):
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def __eq__(self, other):
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if not isinstance(other, IPAddr):
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if not (self.isValid or other.isValid):
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if other is None: return False
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return self.raw == other.raw
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other = IPAddr(other)
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return (
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if not self.valid and not other.valid: return self.raw == other.raw
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(self.isValid and other.isValid) and
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if not self.valid or not other.valid: return False
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(self.addr == other.addr) and
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if self.addr != other.addr: return False
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(self.family == other.family) and
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if self.family != other.family: return False
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(self.plen == other.plen)
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if self.plen != other.plen: return False
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)
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return True
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def __ne__(self, other):
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def __ne__(self, other):
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if not isinstance(other, IPAddr):
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return not (self == other)
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if other is None: return True
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other = IPAddr(other)
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if not self.valid and not other.valid: return self.raw != other.raw
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if self.addr != other.addr: return True
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if self.family != other.family: return True
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if self.plen != other.plen: return True
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return False
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def __lt__(self, other):
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def __lt__(self, other):
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if not isinstance(other, IPAddr):
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if other is None: return False
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other = IPAddr(other)
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return self.family < other.family or self.addr < other.addr
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return self.family < other.family or self.addr < other.addr
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def __add__(self, other):
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def __add__(self, other):
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if not isinstance(other, IPAddr):
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other = IPAddr(other)
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return "%s%s" % (self, other)
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return "%s%s" % (self, other)
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def __radd__(self, other):
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def __radd__(self, other):
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if not isinstance(other, IPAddr):
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other = IPAddr(other)
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return "%s%s" % (other, self)
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return "%s%s" % (other, self)
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def __hash__(self):
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def __hash__(self):
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# should be the same as by string (because of possible compare with string):
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return hash(self.addr) ^ hash((self.plen << 16) | self.family)
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return hash(self.ntoa())
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#return hash(self.addr)^hash((self.plen<<16)|self.family)
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@property
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def hexdump(self):
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def hexdump(self):
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""" dump the ip address in as a hex sequence in
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"""Hex representation of the IP address (for debug purposes)
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network byte order - for debug purpose
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"""
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"""
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if self.family == socket.AF_INET:
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if self.family == socket.AF_INET:
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return "%08x" % self.addr
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return "%08x" % self.addr
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@ -259,131 +255,93 @@ class IPAddr(object):
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else:
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else:
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return ""
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return ""
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# TODO: could be lazily evaluated
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@property
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def ntoa(self):
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def ntoa(self):
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""" represent IP object as text like the depricated
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""" represent IP object as text like the deprecated
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C pendant inet_ntoa() but address family independent
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C pendant inet.ntoa but address family independent
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"""
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"""
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if self.family == socket.AF_INET:
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if self.isIPv4:
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# convert network to host byte order
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# convert network to host byte order
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binary = struct.pack("!L", self.addr)
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binary = struct.pack("!L", self._addr)
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elif self.family == socket.AF_INET6:
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elif self.isIPv6:
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# convert network to host byte order
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# convert network to host byte order
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hi = self.addr >> 64
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hi = self.addr >> 64
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lo = self.addr & 0xFFFFFFFFFFFFFFFFL
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lo = self.addr & 0xFFFFFFFFFFFFFFFFL
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binary = struct.pack("!QQ", hi, lo)
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binary = struct.pack("!QQ", hi, lo)
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else:
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else:
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return self.getRaw()
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return self.raw
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return socket.inet_ntop(self.family, binary)
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return socket.inet_ntop(self.family, binary)
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def getPTR(self, suffix=""):
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def getPTR(self, suffix=""):
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""" generates the DNS PTR string of the provided IP address object
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""" return the DNS PTR string of the provided IP address object
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if "suffix" is provided it will be appended as the second and top
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If "suffix" is provided it will be appended as the second and top
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level reverse domain.
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level reverse domain.
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if omitted it is implicitely set to the second and top level reverse
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If omitted it is implicitly set to the second and top level reverse
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domain of the according IP address family
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domain of the according IP address family
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"""
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"""
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if self.family == socket.AF_INET:
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if self.isIPv4:
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reversed_ip = ".".join(reversed(self.ntoa().split(".")))
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exploded_ip = self.ntoa.split(".")
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if not suffix:
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if not suffix:
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suffix = "in-addr.arpa."
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suffix = "in-addr.arpa."
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elif self.isIPv6:
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return "%s.%s" % (reversed_ip, suffix)
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exploded_ip = self.hexdump()
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elif self.family == socket.AF_INET6:
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reversed_ip = ".".join(reversed(self.hexdump()))
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if not suffix:
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if not suffix:
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suffix = "ip6.arpa."
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suffix = "ip6.arpa."
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return "%s.%s" % (reversed_ip, suffix)
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else:
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else:
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return ""
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return ""
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return "%s.%s" % (".".join(reversed(exploded_ip)), suffix)
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@property
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def isIPv4(self):
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def isIPv4(self):
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""" return true if the IP object is of address family AF_INET
|
"""Either the IP object is of address family AF_INET
|
||||||
"""
|
"""
|
||||||
return self.family == socket.AF_INET
|
return self.family == socket.AF_INET
|
||||||
|
|
||||||
|
@property
|
||||||
def isIPv6(self):
|
def isIPv6(self):
|
||||||
""" return true if the IP object is of address family AF_INET6
|
"""Either the IP object is of address family AF_INET6
|
||||||
"""
|
"""
|
||||||
return self.family == socket.AF_INET6
|
return self.family == socket.AF_INET6
|
||||||
|
|
||||||
def getRaw(self):
|
|
||||||
""" returns the raw attribute - should only be set
|
|
||||||
to a non-empty string if prior address conversion
|
|
||||||
wasn't possible
|
|
||||||
"""
|
|
||||||
return self.raw
|
|
||||||
|
|
||||||
def isValidIP(self):
|
|
||||||
""" returns true if the IP object has been created
|
|
||||||
from a valid IP address or false if not
|
|
||||||
"""
|
|
||||||
return self.valid
|
|
||||||
|
|
||||||
|
|
||||||
def isInNet(self, net):
|
def isInNet(self, net):
|
||||||
""" returns true if the IP object is in the provided
|
"""Return either the IP object is in the provided network
|
||||||
network (object)
|
|
||||||
"""
|
"""
|
||||||
# if it isn't a valid IP address, try DNS resolution
|
|
||||||
if not net.isValidIP() and net.getRaw() != "":
|
|
||||||
# Check if IP in DNS
|
|
||||||
return self in DNSUtils.dnsToIp(net.getRaw())
|
|
||||||
|
|
||||||
if self.family != net.family:
|
if self.family != net.family:
|
||||||
return False
|
return False
|
||||||
|
if self.isIPv4:
|
||||||
if self.family == socket.AF_INET:
|
|
||||||
mask = ~(0xFFFFFFFFL >> net.plen)
|
mask = ~(0xFFFFFFFFL >> net.plen)
|
||||||
|
elif self.isIPv6:
|
||||||
elif self.family == socket.AF_INET6:
|
|
||||||
mask = ~(0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFL >> net.plen)
|
mask = ~(0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFL >> net.plen)
|
||||||
else:
|
else:
|
||||||
return False
|
return False
|
||||||
|
|
||||||
if self.addr & mask == net.addr:
|
return self.addr & mask == net.addr
|
||||||
return True
|
|
||||||
|
|
||||||
return False
|
|
||||||
|
|
||||||
@property
|
|
||||||
def maskplen(self):
|
|
||||||
plen = 0
|
|
||||||
if (hasattr(self, '_maskplen')):
|
|
||||||
return self._plen
|
|
||||||
maddr = self.addr
|
|
||||||
while maddr:
|
|
||||||
if not (maddr & 0x80000000):
|
|
||||||
raise ValueError("invalid mask %r, no plen representation" % (self.ntoa(),))
|
|
||||||
maddr = (maddr << 1) & 0xFFFFFFFFL
|
|
||||||
plen += 1
|
|
||||||
self._maskplen = plen
|
|
||||||
return plen
|
|
||||||
|
|
||||||
|
|
||||||
@staticmethod
|
@staticmethod
|
||||||
def masktoplen(maskstr):
|
def masktoplen(mask):
|
||||||
""" converts mask string to prefix length
|
"""Convert mask string to prefix length
|
||||||
only used for IPv4 masks
|
|
||||||
"""
|
|
||||||
return IPAddr(maskstr).maskplen
|
|
||||||
|
|
||||||
|
To be used only for IPv4 masks
|
||||||
|
"""
|
||||||
|
mask = mask.addr # to avoid side-effect within original mask
|
||||||
|
plen = 0
|
||||||
|
while mask:
|
||||||
|
mask = (mask << 1) & 0xFFFFFFFFL
|
||||||
|
plen += 1
|
||||||
|
return plen
|
||||||
|
|
||||||
@staticmethod
|
@staticmethod
|
||||||
def searchIP(text):
|
def searchIP(text):
|
||||||
""" Search if an IP address if directly available and return
|
"""Search if text is an IP address, and return it if so, else None
|
||||||
it.
|
|
||||||
"""
|
"""
|
||||||
match = IPAddr.IP_CRE.match(text)
|
match = IPAddr.IP_CRE.match(text)
|
||||||
if match:
|
if not match:
|
||||||
return match
|
|
||||||
else:
|
|
||||||
match = IPAddr.IP6_CRE.match(text)
|
match = IPAddr.IP6_CRE.match(text)
|
||||||
if match:
|
return match if match else None
|
||||||
return match
|
|
||||||
else:
|
|
||||||
return None
|
|
||||||
|
|
||||||
|
# An IPv4 compatible IPv6 to be reused
|
||||||
|
_IPv6_v4COMPAT = IPAddr("::ffff:0:0", 96)
|
||||||
|
|
|
@ -107,5 +107,3 @@ class BeautifierTest(unittest.TestCase):
|
||||||
|
|
||||||
self.assertEqual(self.b.beautify(response), output)
|
self.assertEqual(self.b.beautify(response), output)
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
|
|
Loading…
Reference in New Issue