mirror of https://github.com/hak5/openwrt-owl.git
120 lines
5.3 KiB
Plaintext
120 lines
5.3 KiB
Plaintext
# Kismet drone config file
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version=2005.04.R1
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# Name of server (Purely for organiational purposes)
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servername=Kismet
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# User to setid to (should be your normal user)
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suiduser=nobody
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# Port to serve packet data... This probably shouldn't be the same as the port
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# you configured kismet_server for, or else you'll have problems running them
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# on the same system.
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tcpport=3501
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# People allowed to connect, comma seperated IP addresses or network/mask
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# blocks. Netmasks can be expressed as dotted quad (/255.255.255.0) or as
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# numbers (/24)
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allowedhosts=127.0.0.1
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# Maximum number of concurrent stream attachments
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maxclients=5
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# Packet sources:
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# source=capture_cardtype,capture_interface,capture_name
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# Card type - Specifies the type of device. It can be one of:
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# cisco - Cisco card with Linux Kernel drivers
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# cisco_cvs - Cisco card with CVS Linux drivers
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# cisco_bsd - Cisco on *BSD
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# prism2 - Prism2 using wlan-ng drivers with pcap support (all
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# current versions support pcap)
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# prism2_hostap - Prism2 using hostap drivers
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# prism2_legacy - Prism2 using wlan-ng drivers without pcap support (0.1.9)
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# prism2_bsd - Prism2 on *BSD
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# orinoco - Orinoco cards using Snax's patched driers
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# generic - Generic card with no specific support. You will have
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# to put this into monitor mode yourself!
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# wsp100 - WSP100 embedded remote sensor.
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# wtapfile - Saved file of packets readable by libwiretap
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# ar5k - ar5k 802.11a using the vt_ar5k drivers
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# Capture interface - Specifies the network interface Kismet will watch for
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# packets to come in on. Typically "ethX" or "wlanX". For the WSP100 capture
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# engine, the WSP100 device sends packets via a UDP stream, so the capture
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# interface should be in the form of host:port where 'host' is the WSP100 and
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# 'port' is the local UDP port that it will send data to.
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# Capture Name - The name Kismet uses for this capture source. This is the
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# name used to specify what sources to enable.
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#
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# To enable multiple sources, specify a source line for each and then use the
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# enablesources line to enable them. For example:
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# source=prism2,wlan0,prism
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# source=cisco,eth0,cisco
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source=wrt54g,prism0,wireless
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# Comma-separated list of sources to enable. This is only needed if you wish
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# to selectively enable multiple sources.
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# enablesources=prism,cisco
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# Do we channelhop?
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channelhop=true
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# How many channels per second do we hop? (1-10)
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channelvelocity=5
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# By setting the dwell time for channel hopping we override the channelvelocity
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# setting above and dwell on each channel for the given number of seconds.
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#channeldwell=10
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# Do we split channels between cards on the same spectrum? This means if
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# multiple 802.11b capture sources are defined, they will be offset to cover
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# the most possible spectrum at a given time. This also controls splitting
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# fine-tuned sourcechannels lines which cover multiple interfaces (see below)
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splitchannels=true
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# Basic channel hopping control:
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# These define the channels the cards hop through for various frequency ranges
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# supported by Kismet. More finegrain control is available via the
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# "sourcechannels" configuration option.
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#
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# Don't change the IEEE80211<x> identifiers or channel hopping won't work.
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# Users outside the US might want to use this list:
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# defaultchannels=IEEE80211b:1,7,13,2,8,3,14,9,4,10,5,11,6,12
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defaultchannels=IEEE80211b:1,6,11,2,7,3,8,4,9,5,10
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# 802.11g uses the same channels as 802.11b...
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defaultchannels=IEEE80211g:1,6,11,2,7,3,8,4,9,5,10
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# 802.11a channels are non-overlapping so sequential is fine. You may want to
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# adjust the list depending on the channels your card actually supports.
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# defaultchannels=IEEE80211a:36,40,44,48,52,56,60,64,100,104,108,112,116,120,124,128,132,136,140,149,153,157,161,184,188,192,196,200,204,208,212,216
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defaultchannels=IEEE80211a:36,40,44,48,52,56,60,64
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# Combo cards like Atheros use both 'a' and 'b/g' channels. Of course, you
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# can also explicitly override a given source. You can use the script
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# extras/listchan.pl to extract all the channels your card supports.
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defaultchannels=IEEE80211ab:1,6,11,2,7,3,8,4,9,5,10,36,40,44,48,52,56,60,64
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# Fine-tuning channel hopping control:
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# The sourcechannels option can be used to set the channel hopping for
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# specific interfaces, and to control what interfaces share a list of
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# channels for split hopping. This can also be used to easily lock
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# one card on a single channel while hopping with other cards.
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# Any card without a sourcechannel definition will use the standard hopping
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# list.
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# sourcechannels=sourcename[,sourcename]:ch1,ch2,ch3,...chN
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# ie, for us channels on the source 'prism2source' (same as normal channel
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# hopping behavior):
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# sourcechannels=prism2source:1,6,11,2,7,3,8,4,9,5,10
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# Given two capture sources, "prism2a" and "prism2b", we want prism2a to stay
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# on channel 6 and prism2b to hop normally. By not setting a sourcechannels
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# line for prism2b, it will use the standard hopping.
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# sourcechannels=prism2a:6
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# To assign the same custom hop channel to multiple sources, or to split the
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# same custom hop channel over two sources (if splitchannels is true), list
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# them all on the same sourcechannels line:
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# sourcechannels=prism2a,prism2b,prism2c:1,6,11
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