mirror of
https://github.com/morpheus65535/bazarr.git
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464 lines
13 KiB
Python
464 lines
13 KiB
Python
# Copyright (C) Dnspython Contributors, see LICENSE for text of ISC license
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# Copyright (C) 2009-2017 Nominum, Inc.
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#
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# Permission to use, copy, modify, and distribute this software and its
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# documentation for any purpose with or without fee is hereby granted,
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# provided that the above copyright notice and this permission notice
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# appear in all copies.
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#
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# THE SOFTWARE IS PROVIDED "AS IS" AND NOMINUM DISCLAIMS ALL WARRANTIES
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# WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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# MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL NOMINUM BE LIABLE FOR
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# ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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# WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
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# ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT
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# OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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"""EDNS Options"""
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import math
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import socket
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import struct
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import dns.enum
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import dns.inet
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import dns.rdata
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class OptionType(dns.enum.IntEnum):
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#: NSID
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NSID = 3
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#: DAU
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DAU = 5
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#: DHU
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DHU = 6
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#: N3U
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N3U = 7
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#: ECS (client-subnet)
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ECS = 8
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#: EXPIRE
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EXPIRE = 9
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#: COOKIE
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COOKIE = 10
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#: KEEPALIVE
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KEEPALIVE = 11
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#: PADDING
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PADDING = 12
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#: CHAIN
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CHAIN = 13
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#: EDE (extended-dns-error)
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EDE = 15
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@classmethod
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def _maximum(cls):
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return 65535
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class Option:
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"""Base class for all EDNS option types."""
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def __init__(self, otype):
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"""Initialize an option.
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*otype*, an ``int``, is the option type.
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"""
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self.otype = OptionType.make(otype)
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def to_wire(self, file=None):
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"""Convert an option to wire format.
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Returns a ``bytes`` or ``None``.
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"""
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raise NotImplementedError # pragma: no cover
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@classmethod
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def from_wire_parser(cls, otype, parser):
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"""Build an EDNS option object from wire format.
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*otype*, an ``int``, is the option type.
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*parser*, a ``dns.wire.Parser``, the parser, which should be
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restructed to the option length.
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Returns a ``dns.edns.Option``.
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"""
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raise NotImplementedError # pragma: no cover
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def _cmp(self, other):
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"""Compare an EDNS option with another option of the same type.
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Returns < 0 if < *other*, 0 if == *other*, and > 0 if > *other*.
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"""
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wire = self.to_wire()
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owire = other.to_wire()
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if wire == owire:
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return 0
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if wire > owire:
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return 1
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return -1
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def __eq__(self, other):
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if not isinstance(other, Option):
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return False
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if self.otype != other.otype:
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return False
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return self._cmp(other) == 0
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def __ne__(self, other):
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if not isinstance(other, Option):
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return True
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if self.otype != other.otype:
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return True
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return self._cmp(other) != 0
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def __lt__(self, other):
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if not isinstance(other, Option) or \
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self.otype != other.otype:
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return NotImplemented
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return self._cmp(other) < 0
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def __le__(self, other):
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if not isinstance(other, Option) or \
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self.otype != other.otype:
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return NotImplemented
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return self._cmp(other) <= 0
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def __ge__(self, other):
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if not isinstance(other, Option) or \
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self.otype != other.otype:
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return NotImplemented
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return self._cmp(other) >= 0
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def __gt__(self, other):
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if not isinstance(other, Option) or \
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self.otype != other.otype:
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return NotImplemented
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return self._cmp(other) > 0
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def __str__(self):
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return self.to_text()
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class GenericOption(Option):
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"""Generic Option Class
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This class is used for EDNS option types for which we have no better
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implementation.
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"""
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def __init__(self, otype, data):
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super().__init__(otype)
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self.data = dns.rdata.Rdata._as_bytes(data, True)
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def to_wire(self, file=None):
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if file:
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file.write(self.data)
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else:
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return self.data
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def to_text(self):
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return "Generic %d" % self.otype
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@classmethod
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def from_wire_parser(cls, otype, parser):
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return cls(otype, parser.get_remaining())
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class ECSOption(Option):
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"""EDNS Client Subnet (ECS, RFC7871)"""
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def __init__(self, address, srclen=None, scopelen=0):
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"""*address*, a ``str``, is the client address information.
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*srclen*, an ``int``, the source prefix length, which is the
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leftmost number of bits of the address to be used for the
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lookup. The default is 24 for IPv4 and 56 for IPv6.
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*scopelen*, an ``int``, the scope prefix length. This value
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must be 0 in queries, and should be set in responses.
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"""
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super().__init__(OptionType.ECS)
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af = dns.inet.af_for_address(address)
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if af == socket.AF_INET6:
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self.family = 2
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if srclen is None:
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srclen = 56
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address = dns.rdata.Rdata._as_ipv6_address(address)
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srclen = dns.rdata.Rdata._as_int(srclen, 0, 128)
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scopelen = dns.rdata.Rdata._as_int(scopelen, 0, 128)
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elif af == socket.AF_INET:
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self.family = 1
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if srclen is None:
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srclen = 24
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address = dns.rdata.Rdata._as_ipv4_address(address)
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srclen = dns.rdata.Rdata._as_int(srclen, 0, 32)
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scopelen = dns.rdata.Rdata._as_int(scopelen, 0, 32)
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else: # pragma: no cover (this will never happen)
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raise ValueError('Bad address family')
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self.address = address
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self.srclen = srclen
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self.scopelen = scopelen
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addrdata = dns.inet.inet_pton(af, address)
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nbytes = int(math.ceil(srclen / 8.0))
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# Truncate to srclen and pad to the end of the last octet needed
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# See RFC section 6
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self.addrdata = addrdata[:nbytes]
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nbits = srclen % 8
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if nbits != 0:
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last = struct.pack('B',
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ord(self.addrdata[-1:]) & (0xff << (8 - nbits)))
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self.addrdata = self.addrdata[:-1] + last
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def to_text(self):
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return "ECS {}/{} scope/{}".format(self.address, self.srclen,
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self.scopelen)
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@staticmethod
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def from_text(text):
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"""Convert a string into a `dns.edns.ECSOption`
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*text*, a `str`, the text form of the option.
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Returns a `dns.edns.ECSOption`.
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Examples:
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>>> import dns.edns
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>>>
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>>> # basic example
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>>> dns.edns.ECSOption.from_text('1.2.3.4/24')
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>>>
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>>> # also understands scope
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>>> dns.edns.ECSOption.from_text('1.2.3.4/24/32')
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>>>
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>>> # IPv6
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>>> dns.edns.ECSOption.from_text('2001:4b98::1/64/64')
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>>>
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>>> # it understands results from `dns.edns.ECSOption.to_text()`
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>>> dns.edns.ECSOption.from_text('ECS 1.2.3.4/24/32')
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"""
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optional_prefix = 'ECS'
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tokens = text.split()
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ecs_text = None
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if len(tokens) == 1:
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ecs_text = tokens[0]
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elif len(tokens) == 2:
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if tokens[0] != optional_prefix:
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raise ValueError('could not parse ECS from "{}"'.format(text))
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ecs_text = tokens[1]
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else:
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raise ValueError('could not parse ECS from "{}"'.format(text))
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n_slashes = ecs_text.count('/')
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if n_slashes == 1:
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address, srclen = ecs_text.split('/')
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scope = 0
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elif n_slashes == 2:
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address, srclen, scope = ecs_text.split('/')
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else:
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raise ValueError('could not parse ECS from "{}"'.format(text))
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try:
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scope = int(scope)
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except ValueError:
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raise ValueError('invalid scope ' +
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'"{}": scope must be an integer'.format(scope))
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try:
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srclen = int(srclen)
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except ValueError:
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raise ValueError('invalid srclen ' +
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'"{}": srclen must be an integer'.format(srclen))
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return ECSOption(address, srclen, scope)
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def to_wire(self, file=None):
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value = (struct.pack('!HBB', self.family, self.srclen, self.scopelen) +
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self.addrdata)
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if file:
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file.write(value)
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else:
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return value
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@classmethod
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def from_wire_parser(cls, otype, parser):
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family, src, scope = parser.get_struct('!HBB')
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addrlen = int(math.ceil(src / 8.0))
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prefix = parser.get_bytes(addrlen)
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if family == 1:
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pad = 4 - addrlen
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addr = dns.ipv4.inet_ntoa(prefix + b'\x00' * pad)
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elif family == 2:
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pad = 16 - addrlen
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addr = dns.ipv6.inet_ntoa(prefix + b'\x00' * pad)
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else:
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raise ValueError('unsupported family')
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return cls(addr, src, scope)
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class EDECode(dns.enum.IntEnum):
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OTHER = 0
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UNSUPPORTED_DNSKEY_ALGORITHM = 1
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UNSUPPORTED_DS_DIGEST_TYPE = 2
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STALE_ANSWER = 3
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FORGED_ANSWER = 4
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DNSSEC_INDETERMINATE = 5
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DNSSEC_BOGUS = 6
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SIGNATURE_EXPIRED = 7
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SIGNATURE_NOT_YET_VALID = 8
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DNSKEY_MISSING = 9
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RRSIGS_MISSING = 10
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NO_ZONE_KEY_BIT_SET = 11
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NSEC_MISSING = 12
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CACHED_ERROR = 13
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NOT_READY = 14
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BLOCKED = 15
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CENSORED = 16
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FILTERED = 17
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PROHIBITED = 18
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STALE_NXDOMAIN_ANSWER = 19
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NOT_AUTHORITATIVE = 20
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NOT_SUPPORTED = 21
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NO_REACHABLE_AUTHORITY = 22
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NETWORK_ERROR = 23
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INVALID_DATA = 24
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@classmethod
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def _maximum(cls):
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return 65535
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class EDEOption(Option):
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"""Extended DNS Error (EDE, RFC8914)"""
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def __init__(self, code, text=None):
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"""*code*, a ``dns.edns.EDECode`` or ``str``, the info code of the
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extended error.
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*text*, a ``str`` or ``None``, specifying additional information about
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the error.
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"""
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super().__init__(OptionType.EDE)
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self.code = EDECode.make(code)
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if text is not None and not isinstance(text, str):
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raise ValueError('text must be string or None')
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self.code = code
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self.text = text
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def to_text(self):
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output = f'EDE {self.code}'
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if self.text is not None:
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output += f': {self.text}'
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return output
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def to_wire(self, file=None):
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value = struct.pack('!H', self.code)
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if self.text is not None:
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value += self.text.encode('utf8')
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if file:
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file.write(value)
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else:
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return value
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@classmethod
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def from_wire_parser(cls, otype, parser):
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code = parser.get_uint16()
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text = parser.get_remaining()
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if text:
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if text[-1] == 0: # text MAY be null-terminated
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text = text[:-1]
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text = text.decode('utf8')
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else:
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text = None
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return cls(code, text)
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_type_to_class = {
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OptionType.ECS: ECSOption,
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OptionType.EDE: EDEOption,
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}
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def get_option_class(otype):
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"""Return the class for the specified option type.
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The GenericOption class is used if a more specific class is not
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known.
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"""
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cls = _type_to_class.get(otype)
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if cls is None:
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cls = GenericOption
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return cls
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def option_from_wire_parser(otype, parser):
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"""Build an EDNS option object from wire format.
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*otype*, an ``int``, is the option type.
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*parser*, a ``dns.wire.Parser``, the parser, which should be
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restricted to the option length.
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Returns an instance of a subclass of ``dns.edns.Option``.
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"""
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cls = get_option_class(otype)
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otype = OptionType.make(otype)
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return cls.from_wire_parser(otype, parser)
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def option_from_wire(otype, wire, current, olen):
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"""Build an EDNS option object from wire format.
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*otype*, an ``int``, is the option type.
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*wire*, a ``bytes``, is the wire-format message.
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*current*, an ``int``, is the offset in *wire* of the beginning
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of the rdata.
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*olen*, an ``int``, is the length of the wire-format option data
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Returns an instance of a subclass of ``dns.edns.Option``.
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"""
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parser = dns.wire.Parser(wire, current)
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with parser.restrict_to(olen):
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return option_from_wire_parser(otype, parser)
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def register_type(implementation, otype):
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"""Register the implementation of an option type.
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*implementation*, a ``class``, is a subclass of ``dns.edns.Option``.
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*otype*, an ``int``, is the option type.
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"""
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_type_to_class[otype] = implementation
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### BEGIN generated OptionType constants
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NSID = OptionType.NSID
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DAU = OptionType.DAU
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DHU = OptionType.DHU
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N3U = OptionType.N3U
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ECS = OptionType.ECS
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EXPIRE = OptionType.EXPIRE
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COOKIE = OptionType.COOKIE
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KEEPALIVE = OptionType.KEEPALIVE
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PADDING = OptionType.PADDING
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CHAIN = OptionType.CHAIN
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EDE = OptionType.EDE
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### END generated OptionType constants
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