mirror of
https://salsa.debian.org/freeipa-team/freeipa.git
synced 2024-12-24 16:10:02 -06:00
262ff2d731
We used to install it as ipa, now installing it as ipapython. The rpm is still ipa-python.
444 lines
10 KiB
Python
444 lines
10 KiB
Python
#
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# Copyright 2001, 2005 Red Hat, Inc.
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#
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# This is free software; you can redistribute it and/or modify it
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# under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 2 only
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#
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# This program is distributed in the hope that it will be useful, but
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# WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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# 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, write to the Free Software
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# Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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#
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import struct
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import socket
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import sys
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import acutil
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DNS_C_IN = 1
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DNS_C_CS = 2
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DNS_C_CHAOS = 3
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DNS_C_HS = 4
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DNS_C_ANY = 255
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DNS_T_A = 1
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DNS_T_NS = 2
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DNS_T_CNAME = 5
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DNS_T_SOA = 6
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DNS_T_NULL = 10
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DNS_T_WKS = 11
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DNS_T_PTR = 12
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DNS_T_HINFO = 13
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DNS_T_MX = 15
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DNS_T_TXT = 16
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DNS_T_SRV = 33
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DNS_T_ANY = 255
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DEBUG_DNSCLIENT = False
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class DNSQueryHeader:
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FORMAT = "!HBBHHHH"
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def __init__(self):
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self.dns_id = 0
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self.dns_rd = 0
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self.dns_tc = 0
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self.dns_aa = 0
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self.dns_opcode = 0
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self.dns_qr = 0
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self.dns_rcode = 0
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self.dns_z = 0
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self.dns_ra = 0
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self.dns_qdcount = 0
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self.dns_ancount = 0
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self.dns_nscount = 0
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self.dns_arcount = 0
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def pack(self):
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return struct.pack(DNSQueryHeader.FORMAT,
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self.dns_id,
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(self.dns_rd & 1) |
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(self.dns_tc & 1) << 1 |
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(self.dns_aa & 1) << 2 |
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(self.dns_opcode & 15) << 3 |
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(self.dns_qr & 1) << 7,
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(self.dns_rcode & 15) |
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(self.dns_z & 7) << 4 |
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(self.dns_ra & 1) << 7,
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self.dns_qdcount,
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self.dns_ancount,
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self.dns_nscount,
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self.dns_arcount)
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def unpack(self, data):
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(self.dns_id, byte1, byte2, self.dns_qdcount, self.dns_ancount,
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self.dns_nscount, self.dns_arcount) = struct.unpack(DNSQueryHeader.FORMAT, data[0:self.size()])
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self.dns_rd = byte1 & 1
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self.dns_tc = (byte1 >> 1) & 1
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self.dns_aa = (byte1 >> 2) & 1
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self.dns_opcode = (byte1 >> 3) & 15
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self.dns_qr = (byte1 >> 7) & 1
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self.dns_rcode = byte2 & 15
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self.dns_z = (byte2 >> 4) & 7
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self.dns_ra = (byte1 >> 7) & 1
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def size(self):
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return struct.calcsize(DNSQueryHeader.FORMAT)
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def unpackQueryHeader(data):
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header = DNSQueryHeader()
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header.unpack(data)
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return header
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class DNSResult:
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FORMAT = "!HHIH"
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QFORMAT = "!HH"
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def __init__(self):
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self.dns_name = ""
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self.dns_type = 0
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self.dns_class = 0
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self.dns_ttl = 0
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self.dns_rlength = 0
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self.rdata = None
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def unpack(self, data):
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(self.dns_type, self.dns_class, self.dns_ttl,
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self.dns_rlength) = struct.unpack(DNSResult.FORMAT, data[0:self.size()])
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def qunpack(self, data):
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(self.dns_type, self.dns_class) = struct.unpack(DNSResult.QFORMAT, data[0:self.qsize()])
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def size(self):
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return struct.calcsize(DNSResult.FORMAT)
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def qsize(self):
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return struct.calcsize(DNSResult.QFORMAT)
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class DNSRData:
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def __init__(self):
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pass
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#typedef struct dns_rr_a {
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# u_int32_t address;
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#} dns_rr_a_t;
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#
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#typedef struct dns_rr_cname {
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# const char *cname;
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#} dns_rr_cname_t;
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#
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#typedef struct dns_rr_hinfo {
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# const char *cpu, *os;
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#} dns_rr_hinfo_t;
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#
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#typedef struct dns_rr_mx {
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# u_int16_t preference;
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# const char *exchange;
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#} dns_rr_mx_t;
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#
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#typedef struct dns_rr_null {
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# unsigned const char *data;
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#} dns_rr_null_t;
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#
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#typedef struct dns_rr_ns {
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# const char *nsdname;
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#} dns_rr_ns_t;
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#
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#typedef struct dns_rr_ptr {
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# const char *ptrdname;
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#} dns_rr_ptr_t;
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#
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#typedef struct dns_rr_soa {
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# const char *mname;
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# const char *rname;
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# u_int32_t serial;
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# int32_t refresh;
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# int32_t retry;
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# int32_t expire;
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# int32_t minimum;
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#} dns_rr_soa_t;
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#
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#typedef struct dns_rr_txt {
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# const char *data;
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#} dns_rr_txt_t;
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#
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#typedef struct dns_rr_srv {
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# const char *server;
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# u_int16_t priority;
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# u_int16_t weight;
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# u_int16_t port;
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#} dns_rr_srv_t;
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def dnsNameToLabel(name):
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out = ""
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name = name.split(".")
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for part in name:
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out += chr(len(part)) + part
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return out
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def dnsFormatQuery(query, qclass, qtype):
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header = DNSQueryHeader()
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header.dns_id = 0 # FIXME: id = 0
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header.dns_rd = 1 # don't know why the original code didn't request recursion for non SOA requests
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header.dns_qr = 0 # query
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header.dns_opcode = 0 # standard query
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header.dns_qdcount = 1 # single query
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qlabel = dnsNameToLabel(query)
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if not qlabel:
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return ""
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out = header.pack() + qlabel
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out += chr(qtype >> 8)
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out += chr(qtype & 0xff)
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out += chr(qclass >> 8)
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out += chr(qclass & 0xff)
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return out
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def dnsParseLabel(label, base):
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# returns (output, rest)
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if not label:
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return ("", None)
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update = 1
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rest = label
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output = ""
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skip = 0
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try:
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while ord(rest[0]):
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if ord(rest[0]) & 0xc0:
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rest = base[((ord(rest[0]) & 0x3f) << 8) + ord(rest[1]):]
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if update:
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skip += 2
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update = 0
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continue
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output += rest[1:ord(rest[0]) + 1] + "."
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if update:
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skip += ord(rest[0]) + 1
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rest = rest[ord(rest[0]) + 1:]
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except IndexError:
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return ("", None)
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return (label[skip+update:], output)
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def dnsParseA(data, base):
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rdata = DNSRData()
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if len(data) < 4:
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rdata.address = 0
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return None
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rdata.address = (ord(data[0])<<24) | (ord(data[1])<<16) | (ord(data[2])<<8) | (ord(data[3])<<0)
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if DEBUG_DNSCLIENT:
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print "A = %d.%d.%d.%d." % (ord(data[0]), ord(data[1]), ord(data[2]), ord(data[3]))
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return rdata
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def dnsParseText(data):
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if len(data) < 1:
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return ("", None)
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tlen = ord(data[0])
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if len(data) < tlen + 1:
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return ("", None)
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return (data[tlen+1:], data[1:tlen+1])
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def dnsParseNS(data, base):
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rdata = DNSRData()
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(rest, rdata.nsdname) = dnsParseLabel(data, base)
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if DEBUG_DNSCLIENT:
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print "NS DNAME = \"%s\"." % (rdata.nsdname)
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return rdata
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def dnsParseCNAME(data, base):
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rdata = DNSRData()
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(rest, rdata.cname) = dnsParseLabel(data, base)
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if DEBUG_DNSCLIENT:
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print "CNAME = \"%s\"." % (rdata.cname)
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return rdata
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def dnsParseSOA(data, base):
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rdata = DNSRData()
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format = "!IIIII"
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(rest, rdata.mname) = dnsParseLabel(data, base)
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if rdata.mname is None:
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return None
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(rest, rdata.rname) = dnsParseLabel(rest, base)
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if rdata.rname is None:
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return None
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if len(rest) < struct.calcsize(format):
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return None
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(rdata.serial, rdata.refresh, rdata.retry, rdata.expire,
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rdata.minimum) = struct.unpack(format, rest[:struct.calcsize(format)])
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if DEBUG_DNSCLIENT:
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print "SOA(mname) = \"%s\"." % rdata.mname
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print "SOA(rname) = \"%s\"." % rdata.rname
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print "SOA(serial) = %d." % rdata.serial
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print "SOA(refresh) = %d." % rdata.refresh
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print "SOA(retry) = %d." % rdata.retry
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print "SOA(expire) = %d." % rdata.expire
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print "SOA(minimum) = %d." % rdata.minimum
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return rdata
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def dnsParseNULL(data, base):
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# um, yeah
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return None
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def dnsParseWKS(data, base):
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return None
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def dnsParseHINFO(data, base):
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rdata = DNSRData()
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(rest, rdata.cpu) = dnsParseText(data)
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if rest:
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(rest, rdata.os) = dnsParseText(rest)
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if DEBUG_DNSCLIENT:
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print "HINFO(cpu) = \"%s\"." % rdata.cpu
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print "HINFO(os) = \"%s\"." % rdata.os
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return rdata
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def dnsParseMX(data, base):
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rdata = DNSRData()
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if len(data) < 2:
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return None
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rdata.preference = (ord(data[0]) << 8) | ord(data[1])
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(rest, rdata.exchange) = dnsParseLabel(data[2:], base)
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if DEBUG_DNSCLIENT:
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print "MX(exchanger) = \"%s\"." % rdata.exchange
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print "MX(preference) = %d." % rdata.preference
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return rdata
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def dnsParseTXT(data, base):
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rdata = DNSRData()
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(rest, rdata.data) = dnsParseText(data)
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if DEBUG_DNSCLIENT:
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print "TXT = \"%s\"." % rdata.data
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return rdata
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def dnsParsePTR(data, base):
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rdata = DNSRData()
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(rest, rdata.ptrdname) = dnsParseLabel(data, base)
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if DEBUG_DNSCLIENT:
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print "PTR = \"%s\"." % rdata.ptrdname
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return rdata
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def dnsParseSRV(data, base):
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rdata = DNSRData()
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format = "!HHH"
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flen = struct.calcsize(format)
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if len(data) < flen:
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return None
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(rdata.priority, rdata.weight, rdata.port) = struct.unpack(format, data[:flen])
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(rest, rdata.server) = dnsParseLabel(data[flen:], base)
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if DEBUG_DNSCLIENT:
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print "SRV(server) = \"%s\"." % rdata.server
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print "SRV(weight) = %d." % rdata.weight
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print "SRV(priority) = %d." % rdata.priority
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print "SRV(port) = %d." % rdata.port
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return rdata
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def dnsParseResults(results):
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try:
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header = unpackQueryHeader(results)
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except struct.error:
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return []
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if header.dns_qr != 1: # should be a response
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return []
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if header.dns_rcode != 0: # should be no error
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return []
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rest = results[header.size():]
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rrlist = []
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for i in xrange(header.dns_qdcount):
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if not rest:
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return []
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qq = DNSResult()
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(rest, label) = dnsParseLabel(rest, results)
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if label is None:
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return []
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if len(rest) < qq.qsize():
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return []
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qq.qunpack(rest)
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rest = rest[qq.qsize():]
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if DEBUG_DNSCLIENT:
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print "Queried for '%s', class = %d, type = %d." % (label,
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qq.dns_class, qq.dns_type)
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for i in xrange(header.dns_ancount + header.dns_nscount + header.dns_arcount):
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(rest, label) = dnsParseLabel(rest, results)
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if label is None:
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return []
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rr = DNSResult()
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rr.dns_name = label
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if len(rest) < rr.size():
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return []
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rr.unpack(rest)
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rest = rest[rr.size():]
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if DEBUG_DNSCLIENT:
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print "Answer %d for '%s', class = %d, type = %d, ttl = %d." % (i,
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rr.dns_name, rr.dns_class, rr.dns_type,
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rr.dns_ttl)
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if len(rest) < rr.dns_rlength:
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if DEBUG_DNSCLIENT:
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print "Answer too short."
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return []
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fmap = { DNS_T_A: dnsParseA, DNS_T_NS: dnsParseNS,
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DNS_T_CNAME: dnsParseCNAME, DNS_T_SOA: dnsParseSOA,
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DNS_T_NULL: dnsParseNULL, DNS_T_WKS: dnsParseWKS,
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DNS_T_PTR: dnsParsePTR, DNS_T_HINFO: dnsParseHINFO,
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DNS_T_MX: dnsParseMX, DNS_T_TXT: dnsParseTXT,
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DNS_T_SRV: dnsParseSRV}
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if not rr.dns_type in fmap:
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if DEBUG_DNSCLIENT:
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print "Don't know how to parse RR type %d!" % rr.dns_type
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else:
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rr.rdata = fmap[rr.dns_type](rest[:rr.dns_rlength], results)
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rest = rest[rr.dns_rlength:]
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rrlist += [rr]
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return rrlist
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def query(query, qclass, qtype):
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qdata = dnsFormatQuery(query, qclass, qtype)
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if not qdata:
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return []
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answer = acutil.res_send(qdata)
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if not answer:
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return []
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return dnsParseResults(answer)
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if __name__ == '__main__':
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DEBUG_DNSCLIENT = True
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print "Sending query."
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rr = query(len(sys.argv) > 1 and sys.argv[1] or "devserv.devel.redhat.com.",
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DNS_C_IN, DNS_T_ANY)
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sys.exit(0)
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