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160 lines
4.9 KiB
Plaintext
160 lines
4.9 KiB
Plaintext
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--------------------------
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Mod Defender for HAProxy
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--------------------------
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This is a service that talks SPOE protocol and uses the Mod Defender
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(https://github.com/VultureProject/mod_defender) functionality to detect
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HTTP attacks. It returns a HTTP status code to indicate whether the request
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is suspicious or not, based on NAXSI rules. The value of the returned code
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can be used in HAProxy rules to determine if the HTTP request should be
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blocked/rejected.
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Unlike ModSecurity, Mod Defender is a whitelist based WAF (everything is
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disallowed, unless there are rules saying otherwise). It's a partial
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replication of NAXSI and it uses NAXSI compatible rules configuration
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format.
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1) How to build it
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------------------
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Required packages :
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* Mod Defender source (https://github.com/VultureProject/mod_defender)
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* Asynchronous event notification library and headers (libevent)
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* Apache 2 (>= 2.4) development headers
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* APR library and headers
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* GNU C (gcc) and C++ (g++) >= 4.9
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* GNU Standard C++ Library v3 (libstdc++)
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* GNU Make
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Compile the source :
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$ make MOD_DEFENDER_SRC=/path/to/mod_defender_src
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2) Configuration
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----------------
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Download the Naxsi core rules file :
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$ wget -O /path/to/core.rules \
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https://raw.githubusercontent.com/nbs-system/naxsi/master/naxsi_config/naxsi_core.rules
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Create the Mod Defender configuration file. For example :
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# Defender toggle
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Defender On
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# Match log path
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MatchLog /path/to/defender_match.log
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# JSON Match log path
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JSONMatchLog /path/to/defender_json_match.log
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# Request body limit
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RequestBodyLimit 8388608
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# Learning mode toggle
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LearningMode Off
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# Extensive Learning log toggle
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ExtensiveLog Off
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# Libinjection SQL toggle
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LibinjectionSQL On
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# Libinjection XSS toggle
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LibinjectionXSS On
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# Rules
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Include /path/to/core.rules
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# Score action
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CheckRule "$SQL >= 8" BLOCK
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CheckRule "$RFI >= 8" BLOCK
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CheckRule "$TRAVERSAL >= 4" BLOCK
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CheckRule "$EVADE >= 4" BLOCK
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CheckRule "$XSS >= 8" BLOCK
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CheckRule "$UPLOAD >= 8" BLOCK
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# Whitelists
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# ....
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Next step is to configure the SPOE for use with the Mod Defender service.
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Example configuration (args elements order is important) :
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[mod_defender]
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spoe-agent mod-defender-agent
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messages check-request
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option var-prefix defender
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timeout hello 100ms
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timeout idle 30s
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timeout processing 15ms
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use-backend spoe-mod-defender
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spoe-message check-request
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args src unique-id method path query req.ver req.hdrs_bin req.body
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event on-frontend-http-request
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The engine is in the scope "mod_defender". To enable it, you must set the
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following line in a frontend/listener section :
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frontend my_frontend
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...
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filter spoe engine mod_defender config /path/to/spoe-mod-defender.conf
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...
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Also, we must define the "spoe-mod-defender" backend in HAProxy configuration :
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backend spoe-mod-defender
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mode tcp
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balance roundrobin
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timeout connect 5s
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timeout server 3m
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server defender1 127.0.0.1:12345
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The Mod Defender status is returned in a variable "sess.defender.status" --
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it contains the returned HTTP status code. The request is considered
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malicious if the variable contains value greater than zero.
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The following rule can be used to reject all suspicious HTTP requests :
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http-request deny if { var(sess.defender.status) -m int gt 0 }
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3) Start the service
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--------------------
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To start the service, you need to use "defender" binary :
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$ ./defender -h
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Usage : ./defender [OPTION]...
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-h Print this message
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-f <config-file> Mod Defender configuration file
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-l <log-file> Mod Defender log file
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-d Enable the debug mode
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-m <max-frame-size> Specify the maximum frame size (default : 16384)
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-p <port> Specify the port to listen on (default : 12345)
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-n <num-workers> Specify the number of workers (default : 10)
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-c <capability> Enable the support of the specified capability
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-t <time> Set a delay to process a message (default: 0)
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The value is specified in milliseconds by default,
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but can be in any other unit if the number is suffixed
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by a unit (us, ms, s)
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Supported capabilities: fragmentation, pipelining, async
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Example:
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$ ./defender -n 4 -f /path/to/mod_defender.conf -d -l /path/to/error.log
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4) Known bugs and limitations
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-----------------------------
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In its current state, the module is limited by haproxy to the analysis of
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the first buffer. One workaround may consist in significantly increasing
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haproxy's buffer size.
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