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https://github.com/samba-team/samba.git
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e12dbc7307
Signed-off-by: Douglas Bagnall <douglas.bagnall@catalyst.net.nz> Reviewed-by: Andrew Bartlett <abartlet@samba.org>
708 lines
25 KiB
Perl
Executable File
708 lines
25 KiB
Perl
Executable File
#! /usr/bin/perl
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#
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# Summarise tshark pdml output into a form suitable for the load test tool
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#
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# Copyright (C) Catalyst.Net Ltd 2017
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#
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# Catalyst.Net's contribution was written by Gary Lockyer
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# <gary@catalyst.net.nz>.
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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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use warnings;
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use strict;
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use Getopt::Long;
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use Pod::Usage;
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BEGIN {
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unless (eval "require XML::Twig") {
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warn "traffic_summary requires the perl module XML::Twig\n" .
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"on Ubuntu/Debian releases run\n".
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" sudo apt install libxml-twig-perl \n".
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"or install from CPAN\n".
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"\nThe reported error was:\n$@";
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exit(1);
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}
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}
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my %ip_map; # Map of IP address to sequence number
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my $ip_sequence = 0; # count of unique IP addresses seen
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my $timestamp; # Packet timestamp
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my $stream; # Wireshark stream number
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my $ip_proto; # IP protocol (IANA protocl number)
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my $source; # source IP address
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my $dest; # destination address
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my $proto; # application protocol name
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my $description; # protocol specific description
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my %proto_data; # protocol specific data captured for the current packet
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my $malformed_packet; # Indicates the current packet has errors
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my $ldap_filter; # cleaned ldap filter
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my $ldap_attributes; # attributes requested in an ldap query
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# Dispatch table mapping the wireshark variables of interest to the
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# functions responsible for processing them
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my %field_dispatch_table = (
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'timestamp' => \×tamp,
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'ip.src' => \&ip_src,
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'ipv6.src' => \&ip_src,
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'ip.dst' => \&ip_dst,
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'ipv6.dst' => \&ip_dst,
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'ip.proto' => \&ip_proto,
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'udp.stream' => \&stream,
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'tcp.stream' => \&stream,
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'dns.flags.opcode' => \&field_data,
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'dns.flags.response' => \&field_data,
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'netlogon.opnum' => \&field_data,
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'kerberos.msg_type' => \&field_data,
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'smb.cmd' => \&field_data,
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'smb2.cmd' => \&field_data,
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'ldap.protocolOp' => \&field_data,
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'gss-api.OID' => \&field_data,
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'ldap.gssapi_encrypted_payload' => \&field_data,
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'ldap.baseObject' => \&field_data,
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'ldap.scope' => \&field_data,
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'ldap.AttributeDescription' => \&ldap_attribute,
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'ldap.modification_element' => \&ldap_add_modify,
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'ldap.AttributeList_item_element' => \&ldap_add_modify,
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'ldap.operation' => \&field_data,
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'ldap.authentication' => \&field_data,
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'lsarpc.opnum' => \&field_data,
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'samr.opnum' => \&field_data,
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'dcerpc.pkt_type' => \&field_data,
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'epm.opnum' => \&field_data,
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'dnsserver.opnum' => \&field_data,
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'drsuapi.opnum' => \&field_data,
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'browser.command' => \&field_data,
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'smb_netlogon.command' => \&field_data,
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'srvsvc.opnum' => \&field_data,
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'nbns.flags.opcode' => \&field_data,
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'nbns.flags.response' => \&field_data,
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'_ws.expert.message' => \&field_data,
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);
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# Dispatch table mapping protocols to the routine responsible for formatting
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# their output. Protocols not in this table are ignored.
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#
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my %proto_dispatch_table = (
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'dns' => sub { return format_opcode( 'dns.flags.response')},
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'rpc_netlogon' => sub { return format_opcode( 'netlogon.opnum')},
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'kerberos' => \&format_kerberos,
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'smb' => sub { return format_opcode( 'smb.cmd')},
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'smb2' => sub { return format_opcode( 'smb2.cmd')},
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'ldap' => \&format_ldap,
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'cldap' => \&format_ldap,
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'lsarpc' => sub { return format_opcode( 'lsarpc.opnum')},
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'samr' => sub { return format_opcode( 'samr.opnum')},
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'dcerpc' => sub { return format_opcode( 'dcerpc.pkt_type')},
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'epm' => sub { return format_opcode( 'epm.opnum')},
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'dnsserver' => sub { return format_opcode( 'dnsserver.opnum')},
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'drsuapi' => sub { return format_opcode( 'drsuapi.opnum')},
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'browser' => sub { return format_opcode( 'browser.command')},
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'smb_netlogon' => sub { return format_opcode( 'smb_netlogon.command')},
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'srvsvc' => sub { return format_opcode( 'srvsvc.opnum')},
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'nbns' => sub { return format_opcode( 'nbns.flags.response')},
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);
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# XPath entry to extract the kerberos cname
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my $kerberos_cname_path =
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'packet/proto/field[@name = "kerberos.as_req_element"]'
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. '/field[@name = "kerberos.req_body_element"]'
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. '/field[@name = "kerberos.cname_element"]'
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. '/field[@name = "kerberos.name_string"]'
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. '/field[@name = "kerberos.KerberosString"]';
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# XPath entry to extract the ldap filter
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my $ldap_filter_path =
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'field[@name = "ldap.searchRequest_element"]/field';
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# Create an XML Twig parser and register the event handlers.
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#
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my $t = XML::Twig->new(
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start_tag_handlers => {
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'packet' => \&packet_start,
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},
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twig_handlers => {
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'packet' => \&packet,
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'proto' => \&protocol,
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'field' => \&field,
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$kerberos_cname_path => \&kerberos_cname,
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$ldap_filter_path => \&ldap_filter,
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},
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);
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#------------------------------------------------------------------------------
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# Main loop
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#
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#------------------------------------------------------------------------------
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my $help = 0;
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GetOptions( 'help|h' => \$help) or pod2usage(2);
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pod2usage(1) if $help;
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if (@ARGV) {
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foreach my $file (@ARGV) {
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eval {
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$t->parsefile( $file);
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};
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if ($@) {
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print STDERR "Unable to process $file, ".
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"did you run tshark with the -T pdml option?";
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}
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}
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} else {
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pod2usage(1) if -t STDIN;
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eval {
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$t->parse( \*STDIN);
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};
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if ($@) {
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print STDERR "Unable to process input, ".
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"are you running tshark with the -T pdml option?";
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}
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}
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#------------------------------------------------------------------------------
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# New packet detected reset the globals
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#------------------------------------------------------------------------------
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sub packet_start
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{
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my ($t, $packet) = @_;
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$timestamp = "";
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$stream = "";
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$ip_proto = "";
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$source = "";
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$dest = "";
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$description = undef;
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%proto_data = ();
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$malformed_packet = undef;
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$ldap_filter = "";
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$ldap_attributes = "";
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}
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#------------------------------------------------------------------------------
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# Complete packet element parsed from the XML feed
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# output the protocol summary if required
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#------------------------------------------------------------------------------
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sub packet
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{
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my ($t, $packet) = @_;
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my $data;
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if (exists $proto_dispatch_table{$proto}) {
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if ($malformed_packet) {
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$data = "\t\t** Malformed Packet ** " . ($proto_data{'_ws.expert.message.show'} || '');
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} else {
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my $rsub = $proto_dispatch_table{$proto};
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$data = &$rsub();
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}
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print "$timestamp\t$ip_proto\t$stream\t$source\t$dest\t$proto\t$data\n";
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}
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$t->purge;
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}
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#------------------------------------------------------------------------------
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# Complete protocol element parsed from the XML input
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# Update the protocol name
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#------------------------------------------------------------------------------
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sub protocol
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{
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my ($t, $protocol) = @_;
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if ($protocol->{att}->{showname}) {
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}
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# Tag a packet as malformed if the protocol is _ws.malformed
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# and the hide attribute is not 'yes'
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if ($protocol->{att}->{name} eq '_ws.malformed'
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&& !($protocol->{att}->{hide} && $protocol->{att}->{hide} eq 'yes')
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) {
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$malformed_packet = 1;
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}
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# Don't set the protocol name if it's a wireshark malformed
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# protocol entry, or the packet was truncated during capture
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my $p = $protocol->{att}->{name};
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if ($p ne '_ws.malformed' && $p ne '_ws.short') {
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$proto = $p;
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}
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}
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#------------------------------------------------------------------------------
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# Complete field element parsed, extract any data of interest
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#------------------------------------------------------------------------------
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sub field
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{
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my ($t, $field) = @_;
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my $name = $field->{att}->{name};
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# Only process the field if it has a corresponding entry in
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# %field_dispatch_table
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if (exists $field_dispatch_table{$name}) {
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my $rsub = $field_dispatch_table{$name};
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&$rsub( $field);
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}
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}
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#------------------------------------------------------------------------------
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# Process a timestamp field element
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#------------------------------------------------------------------------------
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sub timestamp
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{
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my ($field) = @_;
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$timestamp = $field->{att}->{value};
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}
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#------------------------------------------------------------------------------
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# Process a wireshark stream element, used to group a sequence of requests
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# and responses between two IP addresses
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#------------------------------------------------------------------------------
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sub stream
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{
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my ($field) = @_;
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$stream = $field->{att}->{show};
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}
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#------------------------------------------------------------------------------
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# Process a source ip address field, mapping the IP address to it's
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# corresponding sequence number.
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#------------------------------------------------------------------------------
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sub ip_src
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{
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my ($field) = @_;
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$source = map_ip( $field);
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}
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#------------------------------------------------------------------------------
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# Process a destination ip address field, mapping the IP address to it's
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# corresponding sequence number.
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#------------------------------------------------------------------------------
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sub ip_dst
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{
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my ($field) = @_;
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$dest = map_ip( $field);
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}
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#------------------------------------------------------------------------------
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# Process an ip protocol element, extracting IANA protocol number
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#------------------------------------------------------------------------------
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sub ip_proto
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{
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my ($field) = @_;
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$ip_proto = $field->{att}->{value};
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}
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#------------------------------------------------------------------------------
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# Extract an ldap attribute and append it to ldap_attributes
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#------------------------------------------------------------------------------
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sub ldap_attribute
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{
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my ($field) = @_;
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my $attribute = $field->{att}->{show};
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if (defined $attribute) {
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$ldap_attributes .= "," if $ldap_attributes;
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$ldap_attributes .= $attribute;
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}
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}
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#------------------------------------------------------------------------------
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# Process a field element, extract the value, show and showname attributes
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# and store them in the %proto_data hash.
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#
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#------------------------------------------------------------------------------
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sub field_data
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{
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my ($field) = @_;
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my $name = $field->{att}->{name};
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$proto_data{$name.'.value'} = $field->{att}->{value};
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$proto_data{$name.'.show'} = $field->{att}->{show};
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$proto_data{$name.'.showname'} = $field->{att}->{showname};
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}
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#------------------------------------------------------------------------------
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# Process a kerberos cname element, if the cname ends with a $ it's a machine
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# name. Otherwise it's a user name.
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#
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#------------------------------------------------------------------------------
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sub kerberos_cname
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{
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my ($t, $field) = @_;
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my $cname = $field->{att}->{show};
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my $type;
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if( $cname =~ /\$$/) {
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$type = 'machine';
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} else {
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$type = 'user';
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}
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$proto_data{'kerberos.cname.type'} = $type;
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}
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#------------------------------------------------------------------------------
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# Process an ldap filter, remove the values but keep the attribute names
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#------------------------------------------------------------------------------
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sub ldap_filter
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{
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my ($t, $field) = @_;
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if ( $field->{att}->{show} && $field->{att}->{show} =~ /^Filter:/) {
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my $filter = $field->{att}->{show};
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# extract and save the objectClass to keep the value
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my @object_classes;
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while ( $filter =~ m/\((objectClass=.*?)\)/g) {
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push @object_classes, $1;
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}
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# extract and save objectCategory and the top level value
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my @object_categories;
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while ( $filter =~ m/(\(objectCategory=.*?,|\(objectCategory=.*?\))/g
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) {
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push @object_categories, $1;
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}
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# Remove all the values from the attributes
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# Input
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# Filter: (nCName=DC=DomainDnsZones,DC=sub1,DC=ad,DC=rh,DC=at,DC=net)
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# Output
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# (nCName)
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$filter =~ s/^Filter:\s*//; # Remove the 'Filter: ' prefix
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$filter =~ s/=.*?\)/\)/g; # Remove from the = to the first )
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# Now restore the parts of objectClass and objectCategory that are being
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# retained
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#
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for my $cat (@object_categories) {
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$filter =~ s/\(objectCategory\)/$cat/;
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}
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for my $class (@object_classes) {
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$filter =~ s/\(objectClass\)/($class)/;
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}
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$ldap_filter = $filter;
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} else {
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# Ok not an ldap filter so call the default field handler
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field( $t, $field);
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}
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}
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#------------------------------------------------------------------------------
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# Extract the attributes from ldap modification and add requests
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#------------------------------------------------------------------------------
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sub ldap_add_modify
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{
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my ($field) = @_;
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my $type = $field->first_child('field[@name="ldap.type"]');
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my $attribute = $type->{att}->{show} if $type;
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if (defined $attribute) {
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$ldap_attributes .= "," if $ldap_attributes;
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$ldap_attributes .= $attribute;
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}
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}
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#------------------------------------------------------------------------------
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# Map an IP address to a unique sequence number. Assigning it a sequence number
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# if one has not already been assigned.
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#
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#------------------------------------------------------------------------------
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sub map_ip
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{
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my ($field) = @_;
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my $ip = $field->{att}->{show};
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if ( !exists( $ip_map{$ip})) {
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$ip_sequence++;
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$ip_map{$ip} = $ip_sequence;
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}
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return $ip_map{$ip};
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}
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#------------------------------------------------------------------------------
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# Format a protocol operation code for output.
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#
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#------------------------------------------------------------------------------
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sub format_opcode
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{
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my ($name) = @_;
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my $operation = $proto_data{$name.'.show'};
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my $description = $proto_data{$name.'.showname'} || '';
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# Strip off the common prefix text, and the trailing (n).
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# This tidies up most but not all descriptions.
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$description =~ s/^[^:]*?: ?// if $description;
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$description =~ s/^Message is a // if $description;
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$description =~ s/\(\d+\)\s*$// if $description;
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$description =~ s/\s*$// if $description;
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return "$operation\t$description";
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}
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#------------------------------------------------------------------------------
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# Format ldap protocol details for output
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#------------------------------------------------------------------------------
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sub format_ldap
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{
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my ($name) = @_;
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if ( exists( $proto_data{'ldap.protocolOp.show'})
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|| exists( $proto_data{'gss-api.OID.show'})
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) {
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my $operation = $proto_data{'ldap.protocolOp.show'};
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my $description = $proto_data{'ldap.protocolOp.showname'} || '';
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my $oid = $proto_data{'gss-api.OID.show'} || '';
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my $base_object = $proto_data{'ldap.baseObject.show'} || '';
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my $scope = $proto_data{'ldap.scope.show'} || '';
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# Now extract operation specific data
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my $extra;
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my $extra_desc;
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$operation = '' if !defined $operation;
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if ($operation eq 6) {
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# Modify operation
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$extra = $proto_data{'ldap.operation.show'};
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$extra_desc = $proto_data{'ldap.operation.showname'};
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} elsif ($operation eq 0) {
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# Bind operation
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$extra = $proto_data{'ldap.authentication.show'};
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$extra_desc = $proto_data{'ldap.authentication.showname'};
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}
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$extra = '' if !defined $extra;
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$extra_desc = '' if !defined $extra_desc;
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# strip the values out of the base object
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if ($base_object) {
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$base_object =~ s/^<//; # leading '<' if present
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$base_object =~ s/>$//; # trailing '>' if present
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$base_object =~ s/=.*?,/,/g; # from = up to the next comma
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$base_object =~ s/=.*?$//; # from = up to the end of string
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}
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# strip off the leading prefix on the extra_description
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# and the trailing (n);
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$extra_desc =~ s/^[^:]*?: ?// if $extra_desc;
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$extra_desc =~ s/\(\d+\)\s*$// if $extra_desc;
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$extra_desc =~ s/\s*$// if $extra_desc;
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# strip off the common prefix on the description
|
|
# and the trailing (n);
|
|
$description =~ s/^[^:]*?: ?// if $description;
|
|
$description =~ s/\(\d+\)\s*$// if $description;
|
|
$description =~ s/\s*$// if $description;
|
|
|
|
return "$operation\t$description\t$scope\t$base_object"
|
|
."\t$ldap_filter\t$ldap_attributes\t$extra\t$extra_desc\t$oid";
|
|
} else {
|
|
return "\t*** Unknown ***";
|
|
}
|
|
}
|
|
|
|
#------------------------------------------------------------------------------
|
|
# Format kerberos protocol details for output.
|
|
#------------------------------------------------------------------------------
|
|
sub format_kerberos
|
|
{
|
|
my $msg_type = $proto_data{'kerberos.msg_type.show'} || '';
|
|
my $cname_type = $proto_data{'kerberos.cname.type'} || '';
|
|
my $description = $proto_data{'kerberos.msg_type.showname'} || '';
|
|
|
|
# Tidy up the description
|
|
$description =~ s/^[^:]*?: ?// if $description;
|
|
$description =~ s/\(\d+\)\s*$// if $description;
|
|
$description =~ s/\s*$// if $description;
|
|
return "$msg_type\t$description\t$cname_type";
|
|
}
|
|
|
|
=pod
|
|
|
|
=head1 NAME
|
|
|
|
traffic_summary.pl - summarise tshark pdml output
|
|
|
|
=head1 USAGE
|
|
|
|
B<traffic_summary.pl> [FILE...]
|
|
|
|
Summarise samba network traffic from tshark pdml output. Produces a tsv
|
|
delimited summary of samba activity.
|
|
|
|
To process unencrypted traffic
|
|
|
|
tshark -r capture.file -T pdml | traffic_summary.pl
|
|
|
|
To process encrypted kerberos traffic
|
|
|
|
tshark -r capture.file -K krb5.keytab -o kerberos.decrypt:true -T pdml | traffic_summary.pl
|
|
|
|
To display more detailed documentation, including details of the output format
|
|
|
|
perldoc traffic_summary.pl
|
|
|
|
NOTE: tshark pdml output is very verbose, so it's better to pipe the tshark
|
|
output directly to traffic_summary, rather than generating
|
|
intermediate pdml format files.
|
|
|
|
=head1 OPTIONS
|
|
B<--help> Display usage message and exit.
|
|
|
|
=head1 DESCRIPTION
|
|
|
|
Summarises tshark pdml output into a format suitable for load analysis
|
|
and input into load generation tools.
|
|
|
|
It reads the pdml input from stdin or the list of files passed on the command line.
|
|
|
|
|
|
=head2 Output format
|
|
The output is tab delimited fields and one line per summarised packet.
|
|
|
|
=head3 Fields
|
|
B<timestamp> Packet timestamp
|
|
B<IP protocol> The IANA protocol number
|
|
B<Wireshark Stream Number> Calculated by wireshark groups related requests and responses
|
|
B<Source IP> The unique sequence number for the source IP address
|
|
B<Destination IP> The unique sequence number for the destination IP address
|
|
B<protocl> The protocol name
|
|
B<opcode> The protocol operation code
|
|
B<Description> The protocol or operation description
|
|
B<extra> Extra protocol specific data, may be more than one field
|
|
|
|
|
|
=head2 IP address mapping
|
|
Rather than capturing and printing the IP addresses. Each unique IP address
|
|
seen is assigned a sequence number. So the first IP address seen will be 1,
|
|
the second 2 ...
|
|
|
|
=head2 Packets collected
|
|
Packets containing the following protocol records are summarised:
|
|
dns
|
|
rpc_netlogon
|
|
kerberos
|
|
smb
|
|
smb2
|
|
ldap
|
|
cldap
|
|
lsarpc
|
|
samr
|
|
dcerpc
|
|
epm
|
|
dnsserver
|
|
drsuapi
|
|
browser
|
|
smb_netlogon
|
|
srvsvc
|
|
nbns
|
|
|
|
Any other packets are ignored.
|
|
|
|
In addition to the standard elements extra data is returned for the following
|
|
protocol record.
|
|
|
|
=head3 kerberos
|
|
cname_type machine cname ends with a $
|
|
user cname does not end with a $
|
|
|
|
=head3 ldap
|
|
|
|
scope Query Scope
|
|
0 - Base
|
|
1 - One level
|
|
2 - sub tree
|
|
base_object ldap base object
|
|
ldap_filter the ldap filter, attribute names are retained but the values
|
|
are removed.
|
|
ldap_attributes ldap attributes, only the names are retained any values are
|
|
discarded, with the following two exceptions
|
|
objectClass all the attribute values are retained
|
|
objectCategory the top level value is retained
|
|
i.e. everything from the = to the first ,
|
|
|
|
=head3 ldap modifiyRequest
|
|
In addition to the standard ldap fields the modification type is also captured
|
|
|
|
modify_operator for modifyRequests this contains the modifiy operation
|
|
0 - add
|
|
1 - delete
|
|
2 - replace
|
|
modify_description a description of the operation if available
|
|
|
|
=head3 modify bindRequest
|
|
In addition to the standard ldap fields details of the authentication
|
|
type are captured
|
|
|
|
authentication type 0 - Simple
|
|
3 - SASL
|
|
description Description of the authentication mechanism
|
|
oid GSS-API OID's
|
|
1.2.840.113554.1.2.2 - Kerberos v5
|
|
1.2.840.48018.1.2.2 - Kerberos V5
|
|
(incorrect, used by old Windows versions)
|
|
1.3.6.1.5.5.2 - SPNEGO
|
|
1.3.6.1.5.2.5 - IAKERB
|
|
1.3.6.1.4.1.311.2.2.10 - NTLM SSP
|
|
1.3.6.1.5.5.14 - SCRAM-SHA-1
|
|
1.3.6.1.5.5.18 - SCRAM-SHA-256
|
|
1.3.6.1.5.5.15.1.1.* - GSS-EAP
|
|
1.3.6.1.5.2.7 - PKU2U
|
|
1.3.6.1.5.5.1.1 - SPKM-1
|
|
1.3.6.1.5.5.1.2 - SPKM-2
|
|
1.3.6.1.5.5.1.3 - SPKM-3
|
|
1.3.6.1.5.5.9 - LIPKEY
|
|
1.2.752.43.14.2 - NETLOGON
|
|
|
|
=head1 DEPENDENCIES
|
|
tshark
|
|
XML::Twig For Ubuntu libxml-twig-perl, or from CPAN
|
|
use Getopt::Long
|
|
use Pod::Usage
|
|
|
|
|
|
=head1 Diagnostics
|
|
|
|
=head2 ** Unknown **
|
|
Unable to determine the operation being performed, for ldap it typically
|
|
indicates a kerberos encrypted operation.
|
|
|
|
=head2 ** Malformed Packet **
|
|
tshark indicated that the packet was malformed, for ldap it usually indicates TLS
|
|
encrypted traffic.
|
|
|
|
=head1 LISENCE AND COPYRIGHT
|
|
|
|
Copyright (C) Catalyst.Net Ltd 2017
|
|
|
|
Catalyst.Net's contribution was written by Gary Lockyer
|
|
<gary@catalyst.net.nz>.
|
|
|
|
This program is free software; you can redistribute it and/or modify
|
|
it under the terms of the GNU General Public License as published by
|
|
the Free Software Foundation; either version 3 of the License, or
|
|
(at your option) any later version.
|
|
|
|
This program is distributed in the hope that it will be useful,
|
|
but WITHOUT ANY WARRANTY; without even the implied warranty of
|
|
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
|
GNU General Public License for more details.
|
|
|
|
You should have received a copy of the GNU General Public License
|
|
along with this program. If not, see <http://www.gnu.org/licenses/>.
|
|
|
|
|
|
=cut
|