Erinevus lehekülje "Itx8071-task2" redaktsioonide vahel

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This homework assignment requires the knowledge from Modules 6 and 7.
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This homework assignment requires the knowledge from Modules 6 and 7.  
  
 
==== Create SEC rules that accomplish the following event correlation task: ====
 
==== Create SEC rules that accomplish the following event correlation task: ====
  
1) if netfilter firewall blocked packet events have been seen for the same
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1) Monitor sshd log events for SSH probing of non-existing user accounts, and detect non-existing user accounts that have been probed over SSH from 3 distinct IP addresses within 60 seconds.
host repeatedly during 2 minutes, so that the host has probed at least 5
 
distinct TCP and/or UDP ports, memorize that host for the following 1 hour
 
as suspicious host. Note that ports must be distinguished not only by port
 
number, but transport protocol should also be considered (for example, ports
 
53/tcp and 53/udp must be regarded different).
 
  
For example, if the following events appear for host 192.168.56.1, this host
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For example, suppose the following events appear in the log:
should be memorized as suspicious, since it has probed 5 distinct ports
 
161/udp, 21/tcp, 23/tcp, 25/tcp, and 123/udp within 2 minutes:
 
  
  Nov  7 14:14:48 localhost kernel: iptables: IN=enp0s8 OUT= MAC=08:00:27:ce:72:9a:0a:00:27:00:00:00:08:00 SRC=192.168.56.1 DST=192.168.56.103 LEN=32 TOS=0x00 PREC=0x00 TTL=64 ID=32591 DF PROTO=UDP SPT=46062 DPT=161 LEN=12
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  Nov  7 12:53:11 myhost sshd[10477]: Failed password for invalid user admin2 from 10.3.6.22 port 50087 ssh2
  Nov  7 14:15:06 localhost kernel: iptables: IN=enp0s8 OUT= MAC=08:00:27:ce:72:9a:0a:00:27:00:00:00:08:00 SRC=192.168.56.1 DST=192.168.56.103 LEN=32 TOS=0x00  PREC=0x00 TTL=64 ID=34001 DF PROTO=UDP SPT=37036 DPT=161 LEN=12
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  Nov  7 12:53:12 myhost sshd[10477]: Failed password for invalid user admin2 from 10.3.6.22 port 50087 ssh2
  Nov  7 14:15:18 localhost kernel: iptables: IN=enp0s8 OUT= MAC=08:00:27:ce:72:9a:0a:00:27:00:00:00:08:00 SRC=192.168.56.1 DST=192.168.56.103 LEN=60 TOS=0x00 PREC=0x00 TTL=64 ID=37323 DF PROTO=TCP SPT=38954 DPT=21 WINDOW=29200 RES=0x00 SYN URGP=0
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  Nov  7 12:53:39 myhost sshd[10479]: Failed password for invalid user oracle from 10.3.6.24 port 9899 ssh2
  Nov  7 14:15:22 localhost kernel: iptables: IN=enp0s8 OUT= MAC=08:00:27:ce:72:9a:0a:00:27:00:00:00:08:00 SRC=192.168.56.1 DST=192.168.56.103 LEN=60 TOS=0x00 PREC=0x00 TTL=64 ID=3465 DF PROTO=TCP SPT=51418 DPT=23 WINDOW=29200 RES=0x00 SYN URGP=0
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  Nov  7 12:53:40 myhost sshd[10479]: Failed password for invalid user oracle from 10.3.6.24 port 9899 ssh2
  Nov  7 14:15:23 localhost kernel: iptables: IN=enp0s8 OUT= MAC=08:00:27:ce:72:9a:0a:00:27:00:00:00:08:00 SRC=192.168.56.1 DST=192.168.56.103 LEN=60 TOS=0x00 PREC=0x00 TTL=64 ID=3466 DF PROTO=TCP SPT=51418 DPT=23 WINDOW=29200 RES=0x00 SYN URGP=0
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  Nov  7 12:53:55 myhost sshd[10499]: Failed password for invalid user oracle from 10.2.9.99 port 6133 ssh2
  Nov  7 14:16:01 localhost kernel: iptables: IN=enp0s8 OUT= MAC=08:00:27:ce:72:9a:0a:00:27:00:00:00:08:00 SRC=192.168.56.1 DST=192.168.56.103 LEN=60 TOS=0x00 PREC=0x00 TTL=64 ID=60601 DF PROTO=TCP SPT=50250 DPT=25 WINDOW=29200 RES=0x00 SYN URGP=0
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  Nov  7 12:54:01 myhost sshd[10527]: Failed publickey for invalid user admin2 from 10.1.2.52 port 40106 ssh2
  Nov  7 14:16:02 localhost kernel: iptables: IN=enp0s8 OUT= MAC=08:00:27:ce:72:9a:0a:00:27:00:00:00:08:00 SRC=192.168.56.1 DST=192.168.56.103 LEN=60 TOS=0x00 PREC=0x00 TTL=64 ID=60602 DF PROTO=TCP SPT=50250 DPT=25 WINDOW=29200 RES=0x00 SYN URGP=0
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  Nov  7 12:54:02 myhost sshd[10527]: Failed publickey for invalid user admin2 from 10.1.2.52 port 40106 ssh2
Nov  7 14:16:46 localhost kernel: iptables: IN=enp0s8 OUT= MAC=08:00:27:ce:72:9a:0a:00:27:00:00:00:08:00 SRC=192.168.56.1 DST=192.168.56.103 LEN=32 TOS=0x00 PREC=0x00 TTL=64 ID=39224 DF PROTO=UDP SPT=41553 DPT=123 LEN=12
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Nov  7 12:54:07 myhost sshd[10543]: Failed password for invalid user admin2 from 10.17.8.9 port 32444 ssh2
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When above events appear, SSH probing for non-existing user admin2 should be reported, since this user was probed between 12:53:11 and 12:54:07 from 3 distinct IP addresses 10.3.6.22, 10.1.2.52 and 10.17.8.9. However, SSH probing for non-existing user oracle should not be reported, since this user was probed from only 2 distinct IP addresses.
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Also note that the detection should be done with a sliding window approach -- if the counting operation for some non-existing user has not seen enough events during 60 seconds, the 60 second detection window should be moved forward.
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2) if the previous condition has been detected for 3 distinct non-existing users during 900 seconds (for example, admin2, oracle and testuser3 have been probed within 900 seconds), report this event to the local root-user via e-mail. After an e-mail has been sent, ensure than no repeated e-mails are generated during the following 3600 seconds.
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Some hints for accomplishing this assignment:
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* don't try to solve the whole assignment with just one rule, but rather write several rules which interact,
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* if SSH probing for some non-existing user account is detected (as described in the first subtask), you could generate a relevant synthetic event for this user, in order to provide input for further event correlation rules.
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* all parts of the solution must be fully functional even when several non-existing user accounts are probed from several hosts in parallel (for example, contexts maintained by different counting operations must not interfere with each other).
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Apart from studying the examples from the course slides, have a look at the SEC man page (installed at the virtual machines or found at https://simple-evcorr.github.io/man.html). Also, consider the examples from SEC tutorial (https://simple-evcorr.github.io/SEC-tutorial.pdf).

Viimane redaktsioon: 1. november 2024, kell 21:46

This homework assignment requires the knowledge from Modules 6 and 7.

Create SEC rules that accomplish the following event correlation task:

1) Monitor sshd log events for SSH probing of non-existing user accounts, and detect non-existing user accounts that have been probed over SSH from 3 distinct IP addresses within 60 seconds.

For example, suppose the following events appear in the log:

Nov  7 12:53:11 myhost sshd[10477]: Failed password for invalid user admin2 from 10.3.6.22 port 50087 ssh2
Nov  7 12:53:12 myhost sshd[10477]: Failed password for invalid user admin2 from 10.3.6.22 port 50087 ssh2
Nov  7 12:53:39 myhost sshd[10479]: Failed password for invalid user oracle from 10.3.6.24 port 9899 ssh2
Nov  7 12:53:40 myhost sshd[10479]: Failed password for invalid user oracle from 10.3.6.24 port 9899 ssh2
Nov  7 12:53:55 myhost sshd[10499]: Failed password for invalid user oracle from 10.2.9.99 port 6133 ssh2
Nov  7 12:54:01 myhost sshd[10527]: Failed publickey for invalid user admin2 from 10.1.2.52 port 40106 ssh2
Nov  7 12:54:02 myhost sshd[10527]: Failed publickey for invalid user admin2 from 10.1.2.52 port 40106 ssh2
Nov  7 12:54:07 myhost sshd[10543]: Failed password for invalid user admin2 from 10.17.8.9 port 32444 ssh2

When above events appear, SSH probing for non-existing user admin2 should be reported, since this user was probed between 12:53:11 and 12:54:07 from 3 distinct IP addresses 10.3.6.22, 10.1.2.52 and 10.17.8.9. However, SSH probing for non-existing user oracle should not be reported, since this user was probed from only 2 distinct IP addresses.

Also note that the detection should be done with a sliding window approach -- if the counting operation for some non-existing user has not seen enough events during 60 seconds, the 60 second detection window should be moved forward.

2) if the previous condition has been detected for 3 distinct non-existing users during 900 seconds (for example, admin2, oracle and testuser3 have been probed within 900 seconds), report this event to the local root-user via e-mail. After an e-mail has been sent, ensure than no repeated e-mails are generated during the following 3600 seconds.


Some hints for accomplishing this assignment:

  • don't try to solve the whole assignment with just one rule, but rather write several rules which interact,
  • if SSH probing for some non-existing user account is detected (as described in the first subtask), you could generate a relevant synthetic event for this user, in order to provide input for further event correlation rules.
  • all parts of the solution must be fully functional even when several non-existing user accounts are probed from several hosts in parallel (for example, contexts maintained by different counting operations must not interfere with each other).

Apart from studying the examples from the course slides, have a look at the SEC man page (installed at the virtual machines or found at https://simple-evcorr.github.io/man.html). Also, consider the examples from SEC tutorial (https://simple-evcorr.github.io/SEC-tutorial.pdf).