mirror of
https://github.com/samba-team/samba.git
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3a4cb8679a
Signed-off-by: Douglas Bagnall <douglas.bagnall@catalyst.net.nz> Reviewed-by: Andrew Bartlett <abartlet@samba.org>
405 lines
14 KiB
Python
405 lines
14 KiB
Python
# helper for DNS management tool
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#
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# Copyright (C) Amitay Isaacs 2011-2012
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 3 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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#
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import shlex
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import socket
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from samba.dcerpc import dnsserver, dnsp
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# Note: these are not quite the same as similar looking classes in
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# provision/sambadns.py -- those ones are based on
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# dnsp.DnssrvRpcRecord, these are based on dnsserver.DNS_RPC_RECORD.
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# They encode the same information in slightly different ways.
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#
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# DNS_RPC_RECORD structures ([MS-DNSP]2.2.2.2.5 "DNS_RPC_RECORD") are
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# used on the wire by DnssrvEnumRecords2. The dnsp.DnssrvRpcRecord
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# versions have the in-database version of the same information, where
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# the flags field is unpacked, and the struct ordering is different.
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# See [MS-DNSP] 2.3.2.2 "DnsRecord".
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#
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# In both cases the structure and contents of .data depend on .wType.
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# For example, if .wType is DNS_TYPE_A, .data is an IPv4 address. If
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# the .wType is changed to DNS_TYPE_CNAME, the contents of .data will
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# be interpreted as a cname blob, but the bytes there will still be
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# those of the IPv4 address. If you don't also set the .data you may
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# encounter stability problems. These DNS_RPC_RECORD subclasses
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# attempt to hide that from you, but are only pretending -- any of
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# them can represent any type of record.
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class DNSParseError(ValueError):
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pass
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class ARecord(dnsserver.DNS_RPC_RECORD):
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def __init__(self, ip_addr, serial=1, ttl=900, rank=dnsp.DNS_RANK_ZONE,
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node_flag=0):
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super(ARecord, self).__init__()
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self.wType = dnsp.DNS_TYPE_A
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self.dwFlags = rank | node_flag
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self.dwSerial = serial
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self.dwTtlSeconds = ttl
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self.data = ip_addr
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@classmethod
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def from_string(cls, data, sep=None, **kwargs):
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return cls(data, **kwargs)
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class AAAARecord(dnsserver.DNS_RPC_RECORD):
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def __init__(self, ip6_addr, serial=1, ttl=900, rank=dnsp.DNS_RANK_ZONE,
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node_flag=0):
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super(AAAARecord, self).__init__()
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self.wType = dnsp.DNS_TYPE_AAAA
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self.dwFlags = rank | node_flag
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self.dwSerial = serial
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self.dwTtlSeconds = ttl
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self.data = ip6_addr
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@classmethod
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def from_string(cls, data, sep=None, **kwargs):
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return cls(data, **kwargs)
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class PTRRecord(dnsserver.DNS_RPC_RECORD):
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def __init__(self, ptr, serial=1, ttl=900, rank=dnsp.DNS_RANK_ZONE,
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node_flag=0):
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super(PTRRecord, self).__init__()
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self.wType = dnsp.DNS_TYPE_PTR
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self.dwFlags = rank | node_flag
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self.dwSerial = serial
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self.dwTtlSeconds = ttl
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ptr_name = dnsserver.DNS_RPC_NAME()
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ptr_name.str = ptr
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ptr_name.len = len(ptr)
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self.data = ptr_name
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@classmethod
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def from_string(cls, data, sep=None, **kwargs):
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return cls(data, **kwargs)
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class CNAMERecord(dnsserver.DNS_RPC_RECORD):
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def __init__(self, cname, serial=1, ttl=900, rank=dnsp.DNS_RANK_ZONE,
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node_flag=0):
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super().__init__()
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self.wType = dnsp.DNS_TYPE_CNAME
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self.dwFlags = rank | node_flag
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self.dwSerial = serial
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self.dwTtlSeconds = ttl
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cname_name = dnsserver.DNS_RPC_NAME()
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cname_name.str = cname
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cname_name.len = len(cname)
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self.data = cname_name
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@classmethod
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def from_string(cls, data, sep=None, **kwargs):
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return cls(data, **kwargs)
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class NSRecord(dnsserver.DNS_RPC_RECORD):
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def __init__(self, dns_server, serial=1, ttl=900, rank=dnsp.DNS_RANK_ZONE,
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node_flag=0):
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super(NSRecord, self).__init__()
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self.wType = dnsp.DNS_TYPE_NS
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self.dwFlags = rank | node_flag
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self.dwSerial = serial
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self.dwTtlSeconds = ttl
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ns = dnsserver.DNS_RPC_NAME()
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ns.str = dns_server
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ns.len = len(dns_server)
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self.data = ns
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@classmethod
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def from_string(cls, data, sep=None, **kwargs):
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return cls(data, **kwargs)
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class MXRecord(dnsserver.DNS_RPC_RECORD):
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def __init__(self, mail_server, preference, serial=1, ttl=900,
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rank=dnsp.DNS_RANK_ZONE, node_flag=0):
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super(MXRecord, self).__init__()
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self.wType = dnsp.DNS_TYPE_MX
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self.dwFlags = rank | node_flag
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self.dwSerial = serial
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self.dwTtlSeconds = ttl
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mx = dnsserver.DNS_RPC_RECORD_NAME_PREFERENCE()
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mx.wPreference = preference
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mx.nameExchange.str = mail_server
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mx.nameExchange.len = len(mail_server)
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self.data = mx
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@classmethod
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def from_string(cls, data, sep=None, **kwargs):
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try:
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server, priority = data.split(sep)
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priority = int(priority)
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except ValueError as e:
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raise DNSParseError("MX data must have server and priority "
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"(space separated), not %r" % data) from e
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return cls(server, priority, **kwargs)
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class SOARecord(dnsserver.DNS_RPC_RECORD):
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def __init__(self, mname, rname, serial=1, refresh=900, retry=600,
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expire=86400, minimum=3600, ttl=3600, rank=dnsp.DNS_RANK_ZONE,
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node_flag=dnsp.DNS_RPC_FLAG_AUTH_ZONE_ROOT):
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super(SOARecord, self).__init__()
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self.wType = dnsp.DNS_TYPE_SOA
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self.dwFlags = rank | node_flag
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self.dwSerial = serial
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self.dwTtlSeconds = ttl
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soa = dnsserver.DNS_RPC_RECORD_SOA()
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soa.dwSerialNo = serial
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soa.dwRefresh = refresh
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soa.dwRetry = retry
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soa.dwExpire = expire
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soa.dwMinimumTtl = minimum
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soa.NamePrimaryServer.str = mname
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soa.NamePrimaryServer.len = len(mname)
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soa.ZoneAdministratorEmail.str = rname
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soa.ZoneAdministratorEmail.len = len(rname)
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self.data = soa
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@classmethod
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def from_string(cls, data, sep=None, **kwargs):
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args = data.split(sep)
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if len(args) != 7:
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raise DNSParseError('Data requires 7 space separated elements - '
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'nameserver, email, serial, '
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'refresh, retry, expire, minimumttl')
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try:
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for i in range(2, 7):
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args[i] = int(args[i])
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except ValueError as e:
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raise DNSParseError("SOA serial, refresh, retry, expire, minimumttl' "
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"should be integers") from e
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return cls(*args, **kwargs)
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class SRVRecord(dnsserver.DNS_RPC_RECORD):
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def __init__(self, target, port, priority=0, weight=100, serial=1, ttl=900,
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rank=dnsp.DNS_RANK_ZONE, node_flag=0):
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super(SRVRecord, self).__init__()
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self.wType = dnsp.DNS_TYPE_SRV
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self.dwFlags = rank | node_flag
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self.dwSerial = serial
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self.dwTtlSeconds = ttl
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srv = dnsserver.DNS_RPC_RECORD_SRV()
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srv.wPriority = priority
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srv.wWeight = weight
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srv.wPort = port
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srv.nameTarget.str = target
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srv.nameTarget.len = len(target)
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self.data = srv
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@classmethod
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def from_string(cls, data, sep=None, **kwargs):
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try:
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target, port, priority, weight = data.split(sep)
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except ValueError as e:
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raise DNSParseError("SRV data must have four space "
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"separated elements: "
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"server, port, priority, weight; "
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"not %r" % data) from e
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try:
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args = (target, int(port), int(priority), int(weight))
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except ValueError as e:
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raise DNSParseError("SRV port, priority, and weight "
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"must be integers") from e
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return cls(*args, **kwargs)
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class TXTRecord(dnsserver.DNS_RPC_RECORD):
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def __init__(self, slist, serial=1, ttl=900, rank=dnsp.DNS_RANK_ZONE,
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node_flag=0):
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super(TXTRecord, self).__init__()
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self.wType = dnsp.DNS_TYPE_TXT
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self.dwFlags = rank | node_flag
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self.dwSerial = serial
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self.dwTtlSeconds = ttl
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if isinstance(slist, str):
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slist = [slist]
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names = []
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for s in slist:
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name = dnsserver.DNS_RPC_NAME()
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name.str = s
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name.len = len(s)
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names.append(name)
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txt = dnsserver.DNS_RPC_RECORD_STRING()
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txt.count = len(slist)
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txt.str = names
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self.data = txt
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@classmethod
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def from_string(cls, data, sep=None, **kwargs):
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slist = shlex.split(data)
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return cls(slist, **kwargs)
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#
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# Don't add new Record types after this line
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_RECORD_TYPE_LUT = {}
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def _setup_record_type_lut():
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for k, v in globals().items():
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if k[-6:] == 'Record':
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k = k[:-6]
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flag = getattr(dnsp, 'DNS_TYPE_' + k)
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_RECORD_TYPE_LUT[k] = v
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_RECORD_TYPE_LUT[flag] = v
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_setup_record_type_lut()
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del _setup_record_type_lut
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def record_from_string(t, data, sep=None, **kwargs):
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"""Get a DNS record of type t based on the data string.
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Additional keywords (ttl, rank, etc) can be passed in.
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t can be a dnsp.DNS_TYPE_* integer or a string like "A", "TXT", etc.
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"""
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if isinstance(t, str):
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t = t.upper()
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try:
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Record = _RECORD_TYPE_LUT[t]
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except KeyError as e:
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raise DNSParseError("Unsupported record type") from e
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return Record.from_string(data, sep=sep, **kwargs)
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def flag_from_string(rec_type):
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rtype = rec_type.upper()
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try:
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return getattr(dnsp, 'DNS_TYPE_' + rtype)
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except AttributeError:
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raise DNSParseError('Unknown type of DNS record %s' % rec_type) from e
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def recbuf_from_string(*args, **kwargs):
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rec = record_from_string(*args, **kwargs)
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buf = dnsserver.DNS_RPC_RECORD_BUF()
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buf.rec = rec
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return buf
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def dns_name_equal(n1, n2):
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"""Match dns name (of type DNS_RPC_NAME)"""
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return n1.str.rstrip('.').lower() == n2.str.rstrip('.').lower()
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def ipv6_normalise(addr):
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"""Convert an AAAA adresss into a canonical form."""
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packed = socket.inet_pton(socket.AF_INET6, addr)
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return socket.inet_ntop(socket.AF_INET6, packed)
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def dns_record_match(dns_conn, server, zone, name, record_type, data):
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"""Find a dns record that matches the specified data"""
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# The matching is not as precises as that offered by
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# dsdb_dns.match_record, which, for example, compares IPv6 records
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# semantically rather than as strings. However that function
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# compares database DnssrvRpcRecord structures, not wire
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# DNS_RPC_RECORD structures.
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#
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# While it would be possible, perhaps desirable, to wrap that
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# function for use in samba-tool, there is value in having a
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# separate implementation for tests, to avoid the circularity of
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# asserting the function matches itself.
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urec = record_from_string(record_type, data)
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select_flags = dnsserver.DNS_RPC_VIEW_AUTHORITY_DATA
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try:
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buflen, res = dns_conn.DnssrvEnumRecords2(
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dnsserver.DNS_CLIENT_VERSION_LONGHORN, 0, server, zone, name, None,
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record_type, select_flags, None, None)
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except WERRORError as e:
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if e.args[0] == werror.WERR_DNS_ERROR_NAME_DOES_NOT_EXIST:
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# Either the zone doesn't exist, or there were no records.
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# We can't differentiate the two.
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return None
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raise e
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if not res or res.count == 0:
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return None
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for rec in res.rec[0].records:
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if rec.wType != record_type:
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continue
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found = False
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if record_type == dnsp.DNS_TYPE_A:
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if rec.data == urec.data:
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found = True
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elif record_type == dnsp.DNS_TYPE_AAAA:
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if ipv6_normalise(rec.data) == ipv6_normalise(urec.data):
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found = True
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elif record_type == dnsp.DNS_TYPE_PTR:
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if dns_name_equal(rec.data, urec.data):
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found = True
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elif record_type == dnsp.DNS_TYPE_CNAME:
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if dns_name_equal(rec.data, urec.data):
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found = True
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elif record_type == dnsp.DNS_TYPE_NS:
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if dns_name_equal(rec.data, urec.data):
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found = True
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elif record_type == dnsp.DNS_TYPE_MX:
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if dns_name_equal(rec.data.nameExchange, urec.data.nameExchange) and \
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rec.data.wPreference == urec.data.wPreference:
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found = True
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elif record_type == dnsp.DNS_TYPE_SRV:
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if rec.data.wPriority == urec.data.wPriority and \
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rec.data.wWeight == urec.data.wWeight and \
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rec.data.wPort == urec.data.wPort and \
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dns_name_equal(rec.data.nameTarget, urec.data.nameTarget):
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found = True
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elif record_type == dnsp.DNS_TYPE_SOA:
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if rec.data.dwSerialNo == urec.data.dwSerialNo and \
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rec.data.dwRefresh == urec.data.dwRefresh and \
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rec.data.dwRetry == urec.data.dwRetry and \
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rec.data.dwExpire == urec.data.dwExpire and \
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rec.data.dwMinimumTtl == urec.data.dwMinimumTtl and \
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dns_name_equal(rec.data.NamePrimaryServer,
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urec.data.NamePrimaryServer) and \
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dns_name_equal(rec.data.ZoneAdministratorEmail,
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urec.data.ZoneAdministratorEmail):
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found = True
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elif record_type == dnsp.DNS_TYPE_TXT:
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if rec.data.count == urec.data.count:
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found = True
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for i in range(rec.data.count):
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found = found and \
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(rec.data.str[i].str == urec.data.str[i].str)
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if found:
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return rec
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return None
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