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%YAML 1.1
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---
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# Number of packets allowed to be processed simultaneously. Default is a
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# conservative 50.
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#max-pending-packets: 50
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# The default logging directory. Any log or output file will be
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# placed here if its not specified with a full path name. This can be
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# overridden with the -l command line parameter.
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default-log-dir: /var/log/suricata
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# Configure the type of alert (and other) logging you would like.
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outputs:
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- fast:
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enabled: yes
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filename: fast.log
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- unified-log:
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enabled: yes
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filename: unified.log
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# Limit in MB.
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#limit: 32
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- unified-alert:
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enabled: yes
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filename: unified.alert
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# Limit in MB.
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#limit: 32
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- unified2-alert:
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enabled: yes
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filename: unified2.alert
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# Limit in MB.
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#limit: 32
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- http-log:
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enabled: yes
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filename: http.log
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- alert-debug:
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enabled: yes
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filename: alert-debug.log
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- alert-prelude:
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enabled: no
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profile: suricata
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defrag:
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max-frags: 65535
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prealloc: yes
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timeout: 60
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# The detection engine build internal groups of signatures. The engine
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# allow us to specify the profile to use for them, to manage memory on an
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# efficient way keeping a good performance. For the profile keyword you
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# can use the words "low", "medium", "high" or "custom". If you use custom
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# make sure to define the values at "- custom-values" as your convenience.
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# Usually you would prefer medium/high/low
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detect-engine:
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- profile: medium
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- custom-values:
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toclient_src_groups: 2
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toclient_dst_groups: 2
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toclient_sp_groups: 2
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toclient_dp_groups: 3
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toserver_src_groups: 2
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toserver_dst_groups: 4
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toserver_sp_groups: 2
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toserver_dp_groups: 25
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small_toclient_src_groups: 2
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small_toclient_dst_groups: 2
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small_toclient_sp_groups: 2
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small_toclient_dp_groups: 2
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small_toserver_src_groups: 2
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small_toserver_dst_groups: 2
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small_toserver_sp_groups: 2
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small_toserver_dp_groups: 8
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# Select the multi pattern algorithm you want to run for scan/search the
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# in the engine. The supported algorithms are b2g, b3g and wumanber.
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mpm-algo: b2g
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# The memory settings for hash size of these algorithms can vary from lowest
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# (2048) - low (4096) - medium (8192) - high (16384) - highest (32768) - max
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# (65536). The bloomfilter sizes of these algorithms can vary from low (512) -
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# medium (1024) - high (2048).
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#
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# For B2g/B3g algorithms, there is a support for two different scan/search
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# algorithms. For B2g the scan algorithms are B2gScan & B2gScanBNDMq, and
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# search algorithms are B2gSearch & B2gSearchBNDMq. For B3g scan algorithms
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# are B3gScan & B3gScanBNDMq, and search algorithms are B3gSearch &
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# B3gSearchBNDMq.
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#
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# For B2g the different scan/search algorithms and, hash and bloom
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# filter size settings. For B3g the different scan/search algorithms and, hash
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# and bloom filter size settings. For wumanber the hash and bloom filter size
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# settings.
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pattern-matcher:
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- b2g:
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scan_algo: B2gScanBNDMq
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search_algo: B2gSearchBNDMq
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hash_size: low
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bf_size: medium
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- b3g:
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scan_algo: B3gScanBNDMq
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search_algo: B3gSearchBNDMq
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hash_size: low
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bf_size: medium
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- wumanber:
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hash_size: low
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bf_size: medium
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# Flow settings:
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# By default, the reserved memory (memcap) for flows is 32MB. This is the limit
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# for flow allocation inside the engine. You can change this value to allow
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# more memory usage for flows.
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# The hash_size determine the size of the hash used to identify flows inside
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# the engine, and by default the value is 65536.
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# At the startup, the engine can preallocate a number of flows, to get a better
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# performance. The number of flows preallocated is 10000 by default.
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flow:
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memcap: 33554432
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hash_size: 65536
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prealloc: 10000
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# Specific timeouts for flows. Here you can specify the timeouts that the
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# active flows will wait to transit from the current state to another, on each
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# protocol. The value of "new" determine the seconds to wait after a hanshake or
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# stream startup before the engine free the data of that flow it doesn't
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# change the state to established (usually if we don't receive more packets
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# of that flow). The value of "established" is the amount of
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# seconds that the engine will wait to free the flow if it spend that amount
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# without receiving new packets or closing the connection. "closed" is the
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# amount of time to wait after a flow is closed (usually zero).
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#
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# There's an emergency mode that will become active under attack circumstances,
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# making the engine to check flow status faster. This configuration variables
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# use the prefix "emergency_" and work similar as the normal ones.
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# Some timeouts doesn't apply to all the protocols, like "closed", for udp and
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# icmp.
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flow-timeouts:
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- default:
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new: 30
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established: 300
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closed: 0
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emergency_new: 10
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emergency_established: 100
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emergency_closed: 0
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- tcp:
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new: 60
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established: 3600
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closed: 120
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emergency_new: 10
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emergency_established: 300
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emergency_closed: 20
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- udp:
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new: 30
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established: 300
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emergency_new: 10
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emergency_established: 100
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- icmp:
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new: 30
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established: 300
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emergency_new: 10
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emergency_established: 100
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# Stream engine settings.
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# stream:
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# memcap: 67108864 # 64mb memcap
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# max_sessions: 262144 # 256k concurrent sessions
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# prealloc_sessions: 32768 # 32k sessions prealloc'd
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# midstream: false # don't allow midstream session pickups
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# async_oneside: false # don't enable async stream handling
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stream:
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# Logging configuration. This is not about logging IDS alerts, but
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# IDS output about what its doing, errors, etc.
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logging:
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# The default log level, can be overridden in an output section.
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# Note that debug level logging will only be emitted if Suricata was
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# compiled with the --enable-debug configure option.
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default-log-level: info
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# The default output format. Optional parameter, should default to
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# something reasonable if not provided. Can be overriden in an
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# output section. You can leave this out to get the default.
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#default-log-format: "[%i] %t - (%f:%l) <%d> (%n) -- "
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# A regex to filter output. Can be overridden in an output section.
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# Defaults to empty (no filter).
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default-output-filter:
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# Define your logging outputs. If none are define, or they are all
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# disabled you will get the default - console output.
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outputs:
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- console:
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enabled: yes
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- file:
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enabled: no
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filename: /var/log/suricata.log
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- syslog:
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enabled: no
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facility: local5
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format: "[%i] <%d> -- "
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# PF_RING configuration. for use with native PF_RING support
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# for more info see http://www.ntop.org/PF_RING.html
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pfring:
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# Default interface we will listen on.
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interface: eth0
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# Default clusterid. PF_RING will load balance packets based on flow.
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# All threads/processes that will participate need to have the same
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# clusterid.
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clusterid: 99
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# For FreeBSD ipfw(8) divert(4) support.
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# Please make sure you have ipfw_load="YES" and ipdivert_load="YES"
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# in /etc/loader.conf or kldload'ing the appropriate kernel modules.
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# Additionally, you need to have an ipfw rule for the engine to see
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# the packets from ipfw. For Example:
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#
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# ipfw add 100 divert 8000 ip from any to any
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#
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# The 8000 above should be the same number you passed on the command
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# line, i.e. -d 8000
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#
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ipfw:
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# Reinject packets at the specified ipfw rule number. This config
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# option is the ipfw rule number AT WHICH rule processing continues
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# in the ipfw processing system after the engine has finished
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# inspecting the packet for acceptance. If no rule number is specified,
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# accepted packets are reinjected at the divert rule which they entered
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# and IPFW rule processing continues. No check is done to verify
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# this will rule makes sense so care must be taken to avoid loops in ipfw.
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#
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## The following example tells the engine to reinject packets
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# back into the ipfw firewall AT rule number 5500:
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#
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# ipfw-reinjection-rule-number: 5500
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# Set the default rule path here to search for the files.
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# if not set, it will look at the current working dir
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default-rule-path: /etc/suricata/rules/
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rule-files:
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- attack-responses.rules
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- backdoor.rules
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- bad-traffic.rules
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- chat.rules
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- ddos.rules
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- deleted.rules
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- dns.rules
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- dos.rules
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- experimental.rules
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- exploit.rules
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- finger.rules
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- ftp.rules
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- icmp-info.rules
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- icmp.rules
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- imap.rules
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- info.rules
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- local.rules
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- misc.rules
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- multimedia.rules
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- mysql.rules
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- netbios.rules
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- nntp.rules
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- oracle.rules
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- other-ids.rules
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- p2p.rules
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- policy.rules
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- pop2.rules
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- pop3.rules
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- porn.rules
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- rpc.rules
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- rservices.rules
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- scada.rules
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- scan.rules
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- shellcode.rules
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- smtp.rules
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- snmp.rules
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- specific-threats.rules
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- spyware-put.rules
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- sql.rules
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- telnet.rules
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- tftp.rules
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- virus.rules
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- voip.rules
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- web-activex.rules
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- web-attacks.rules
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- web-cgi.rules
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- web-client.rules
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- web-coldfusion.rules
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- web-frontpage.rules
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- web-iis.rules
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- web-misc.rules
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- web-php.rules
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- x11.rules
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- emerging-attack_response.rules
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- emerging-dos.rules
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- emerging-exploit.rules
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- emerging-game.rules
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- emerging-inappropriate.rules
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- emerging-malware.rules
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- emerging-p2p.rules
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- emerging-policy.rules
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- emerging-scan.rules
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- emerging-virus.rules
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- emerging-voip.rules
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- emerging-web.rules
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- emerging-web_client.rules
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- emerging-web_server.rules
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- emerging-web_specific_apps.rules
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- emerging-user_agents.rules
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- emerging-current_events.rules
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classification-file: /etc/suricata/classification.config
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# Holds variables that would be used by the engine.
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vars:
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# Holds the address group vars that would be passed in a Signature.
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# These would be retrieved during the Signature address parsing stage.
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address-groups:
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HOME_NET: "[192.168.0.0/16,10.0.0.0/8,172.16.0.0/12]"
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EXTERNAL_NET: any
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HTTP_SERVERS: "$HOME_NET"
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SMTP_SERVERS: "$HOME_NET"
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SQL_SERVERS: "$HOME_NET"
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DNS_SERVERS: "$HOME_NET"
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TELNET_SERVERS: "$HOME_NET"
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AIM_SERVERS: any
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# Holds the port group vars that would be passed in a Signature.
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# These would be retrieved during the Signature port parsing stage.
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port-groups:
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HTTP_PORTS: "80"
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SHELLCODE_PORTS: "!80"
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ORACLE_PORTS: 1521
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SSH_PORTS: 22
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# Host specific policies for defragmentation and TCP stream
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# reassembly. The host OS lookup is done using a radix tree, just
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# like a routing table so the most specific entry matches.
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host-os-policy:
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# Make the default policy windows.
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windows: [0.0.0.0/0]
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bsd: []
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bsd_right: []
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old_linux: []
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linux: [10.0.0.0/8, 192.168.1.100, "8762:2352:6241:7245:E000:0000:0000:0000"]
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old_solaris: []
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solaris: ["::1"]
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hpux10: []
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hpux11: []
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irix: []
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macos: []
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vista: []
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windows2k3: []
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