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menu "Core Netfilter Configuration"
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	depends on NET && INET && NETFILTER
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config NETFILTER_NETLINK
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	tristate
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config NETFILTER_NETLINK_ACCT
tristate "Netfilter NFACCT over NFNETLINK interface"
	depends on NETFILTER_ADVANCED
	select NETFILTER_NETLINK
	help
	  If this option is enabled, the kernel will include support
	  for extended accounting via NFNETLINK.

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config NETFILTER_NETLINK_QUEUE
	tristate "Netfilter NFQUEUE over NFNETLINK interface"
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	depends on NETFILTER_ADVANCED
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	select NETFILTER_NETLINK
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	help
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	  If this option is enabled, the kernel will include support
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	  for queueing packets via NFNETLINK.
	  
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config NETFILTER_NETLINK_LOG
	tristate "Netfilter LOG over NFNETLINK interface"
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	default m if NETFILTER_ADVANCED=n
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	select NETFILTER_NETLINK
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	help
	  If this option is enabled, the kernel will include support
	  for logging packets via NFNETLINK.

	  This obsoletes the existing ipt_ULOG and ebg_ulog mechanisms,
	  and is also scheduled to replace the old syslog-based ipt_LOG
	  and ip6t_LOG modules.

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config NF_CONNTRACK
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	tristate "Netfilter connection tracking support"
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	default m if NETFILTER_ADVANCED=n
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	help
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	  Connection tracking keeps a record of what packets have passed
	  through your machine, in order to figure out how they are related
	  into connections.

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	  This is required to do Masquerading or other kinds of Network
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	  Address Translation.  It can also be used to enhance packet
	  filtering (see `Connection state match support' below).
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	  To compile it as a module, choose M here.  If unsure, say N.

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if NF_CONNTRACK

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config NF_CONNTRACK_MARK
	bool  'Connection mark tracking support'
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	depends on NETFILTER_ADVANCED
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	help
	  This option enables support for connection marks, used by the
	  `CONNMARK' target and `connmark' match. Similar to the mark value
	  of packets, but this mark value is kept in the conntrack session
	  instead of the individual packets.

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config NF_CONNTRACK_SECMARK
	bool  'Connection tracking security mark support'
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	depends on NETWORK_SECMARK
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	default m if NETFILTER_ADVANCED=n
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	help
	  This option enables security markings to be applied to
	  connections.  Typically they are copied to connections from
	  packets using the CONNSECMARK target and copied back from
	  connections to packets with the same target, with the packets
	  being originally labeled via SECMARK.

	  If unsure, say 'N'.

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config NF_CONNTRACK_ZONES
	bool  'Connection tracking zones'
	depends on NETFILTER_ADVANCED
	depends on NETFILTER_XT_TARGET_CT
	help
	  This option enables support for connection tracking zones.
	  Normally, each connection needs to have a unique system wide
	  identity. Connection tracking zones allow to have multiple
	  connections using the same identity, as long as they are
	  contained in different zones.

	  If unsure, say `N'.

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config NF_CONNTRACK_PROCFS
	bool "Supply CT list in procfs (OBSOLETE)"
	default y
	depends on PROC_FS
	---help---
	This option enables for the list of known conntrack entries
	to be shown in procfs under net/netfilter/nf_conntrack. This
	is considered obsolete in favor of using the conntrack(8)
	tool which uses Netlink.

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config NF_CONNTRACK_EVENTS
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	bool "Connection tracking events"
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	depends on NETFILTER_ADVANCED
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	help
	  If this option is enabled, the connection tracking code will
	  provide a notifier chain that can be used by other kernel code
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	  to get notified about changes in the connection tracking state.
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	  If unsure, say `N'.

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config NF_CONNTRACK_TIMEOUT
	bool  'Connection tracking timeout'
	depends on NETFILTER_ADVANCED
	help
	  This option enables support for connection tracking timeout
	  extension. This allows you to attach timeout policies to flow
	  via the CT target.

	  If unsure, say `N'.

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config NF_CONNTRACK_TIMESTAMP
	bool  'Connection tracking timestamping'
	depends on NETFILTER_ADVANCED
	help
	  This option enables support for connection tracking timestamping.
	  This allows you to store the flow start-time and to obtain
	  the flow-stop time (once it has been destroyed) via Connection
	  tracking events.

	  If unsure, say `N'.

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config NF_CONNTRACK_LABELS
	bool
	help
	  This option enables support for assigning user-defined flag bits
	  to connection tracking entries.  It selected by the connlabel match.

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config NF_CT_PROTO_DCCP
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	tristate 'DCCP protocol connection tracking support'
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	depends on NETFILTER_ADVANCED
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	default IP_DCCP
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	help
	  With this option enabled, the layer 3 independent connection
	  tracking code will be able to do state tracking on DCCP connections.

	  If unsure, say 'N'.

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config NF_CT_PROTO_GRE
	tristate

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config NF_CT_PROTO_SCTP
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	tristate 'SCTP protocol connection tracking support'
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	depends on NETFILTER_ADVANCED
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	default IP_SCTP
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	help
	  With this option enabled, the layer 3 independent connection
	  tracking code will be able to do state tracking on SCTP connections.

	  If you want to compile it as a module, say M here and read
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	  <file:Documentation/kbuild/modules.txt>.  If unsure, say `N'.
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config NF_CT_PROTO_UDPLITE
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	tristate 'UDP-Lite protocol connection tracking support'
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	depends on NETFILTER_ADVANCED
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	help
	  With this option enabled, the layer 3 independent connection
	  tracking code will be able to do state tracking on UDP-Lite
	  connections.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NF_CONNTRACK_AMANDA
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	tristate "Amanda backup protocol support"
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	depends on NETFILTER_ADVANCED
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	select TEXTSEARCH
	select TEXTSEARCH_KMP
	help
	  If you are running the Amanda backup package <http://www.amanda.org/>
	  on this machine or machines that will be MASQUERADED through this
	  machine, then you may want to enable this feature.  This allows the
	  connection tracking and natting code to allow the sub-channels that
	  Amanda requires for communication of the backup data, messages and
	  index.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NF_CONNTRACK_FTP
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	tristate "FTP protocol support"
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	default m if NETFILTER_ADVANCED=n
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	help
	  Tracking FTP connections is problematic: special helpers are
	  required for tracking them, and doing masquerading and other forms
	  of Network Address Translation on them.

	  This is FTP support on Layer 3 independent connection tracking.
	  Layer 3 independent connection tracking is experimental scheme
	  which generalize ip_conntrack to support other layer 3 protocols.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NF_CONNTRACK_H323
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	tristate "H.323 protocol support"
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	depends on (IPV6 || IPV6=n)
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	depends on NETFILTER_ADVANCED
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	help
	  H.323 is a VoIP signalling protocol from ITU-T. As one of the most
	  important VoIP protocols, it is widely used by voice hardware and
	  software including voice gateways, IP phones, Netmeeting, OpenPhone,
	  Gnomemeeting, etc.

	  With this module you can support H.323 on a connection tracking/NAT
	  firewall.

	  This module supports RAS, Fast Start, H.245 Tunnelling, Call
	  Forwarding, RTP/RTCP and T.120 based audio, video, fax, chat,
	  whiteboard, file transfer, etc. For more information, please
	  visit http://nath323.sourceforge.net/.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NF_CONNTRACK_IRC
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	tristate "IRC protocol support"
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	default m if NETFILTER_ADVANCED=n
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	help
	  There is a commonly-used extension to IRC called
	  Direct Client-to-Client Protocol (DCC).  This enables users to send
	  files to each other, and also chat to each other without the need
	  of a server.  DCC Sending is used anywhere you send files over IRC,
	  and DCC Chat is most commonly used by Eggdrop bots.  If you are
	  using NAT, this extension will enable you to send files and initiate
	  chats.  Note that you do NOT need this extension to get files or
	  have others initiate chats, or everything else in IRC.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NF_CONNTRACK_BROADCAST
	tristate

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config NF_CONNTRACK_NETBIOS_NS
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	tristate "NetBIOS name service protocol support"
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	select NF_CONNTRACK_BROADCAST
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	help
	  NetBIOS name service requests are sent as broadcast messages from an
	  unprivileged port and responded to with unicast messages to the
	  same port. This make them hard to firewall properly because connection
	  tracking doesn't deal with broadcasts. This helper tracks locally
	  originating NetBIOS name service requests and the corresponding
	  responses. It relies on correct IP address configuration, specifically
	  netmask and broadcast address. When properly configured, the output
	  of "ip address show" should look similar to this:

	  $ ip -4 address show eth0
	  4: eth0: <BROADCAST,MULTICAST,UP> mtu 1500 qdisc pfifo_fast qlen 1000
	      inet 172.16.2.252/24 brd 172.16.2.255 scope global eth0

	  To compile it as a module, choose M here.  If unsure, say N.

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config NF_CONNTRACK_SNMP
	tristate "SNMP service protocol support"
	depends on NETFILTER_ADVANCED
	select NF_CONNTRACK_BROADCAST
	help
	  SNMP service requests are sent as broadcast messages from an
	  unprivileged port and responded to with unicast messages to the
	  same port. This make them hard to firewall properly because connection
	  tracking doesn't deal with broadcasts. This helper tracks locally
	  originating SNMP service requests and the corresponding
	  responses. It relies on correct IP address configuration, specifically
	  netmask and broadcast address.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NF_CONNTRACK_PPTP
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	tristate "PPtP protocol support"
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	depends on NETFILTER_ADVANCED
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	select NF_CT_PROTO_GRE
	help
	  This module adds support for PPTP (Point to Point Tunnelling
	  Protocol, RFC2637) connection tracking and NAT.

	  If you are running PPTP sessions over a stateful firewall or NAT
	  box, you may want to enable this feature.

	  Please note that not all PPTP modes of operation are supported yet.
	  Specifically these limitations exist:
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	    - Blindly assumes that control connections are always established
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	      in PNS->PAC direction. This is a violation of RFC2637.
	    - Only supports a single call within each session

	  To compile it as a module, choose M here.  If unsure, say N.

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config NF_CONNTRACK_SANE
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	tristate "SANE protocol support"
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	depends on NETFILTER_ADVANCED
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	help
	  SANE is a protocol for remote access to scanners as implemented
	  by the 'saned' daemon. Like FTP, it uses separate control and
	  data connections.

	  With this module you can support SANE on a connection tracking
	  firewall.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NF_CONNTRACK_SIP
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	tristate "SIP protocol support"
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	default m if NETFILTER_ADVANCED=n
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	help
	  SIP is an application-layer control protocol that can establish,
	  modify, and terminate multimedia sessions (conferences) such as
	  Internet telephony calls. With the ip_conntrack_sip and
	  the nf_nat_sip modules you can support the protocol on a connection
	  tracking/NATing firewall.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NF_CONNTRACK_TFTP
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	tristate "TFTP protocol support"
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	depends on NETFILTER_ADVANCED
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	help
	  TFTP connection tracking helper, this is required depending
	  on how restrictive your ruleset is.
	  If you are using a tftp client behind -j SNAT or -j MASQUERADING
	  you will need this.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NF_CT_NETLINK
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	tristate 'Connection tracking netlink interface'
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	select NETFILTER_NETLINK
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	default m if NETFILTER_ADVANCED=n
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	help
	  This option enables support for a netlink-based userspace interface

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config NF_CT_NETLINK_TIMEOUT
	tristate  'Connection tracking timeout tuning via Netlink'
	select NETFILTER_NETLINK
	depends on NETFILTER_ADVANCED
	help
	  This option enables support for connection tracking timeout
	  fine-grain tuning. This allows you to attach specific timeout
	  policies to flows, instead of using the global timeout policy.

	  If unsure, say `N'.

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config NF_CT_NETLINK_HELPER
	tristate 'Connection tracking helpers in user-space via Netlink'
	select NETFILTER_NETLINK
	depends on NF_CT_NETLINK
	depends on NETFILTER_NETLINK_QUEUE
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	depends on NETFILTER_NETLINK_QUEUE_CT
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	depends on NETFILTER_ADVANCED
	help
	  This option enables the user-space connection tracking helpers
	  infrastructure.

	  If unsure, say `N'.

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config NETFILTER_NETLINK_QUEUE_CT
        bool "NFQUEUE integration with Connection Tracking"
        default n
        depends on NETFILTER_NETLINK_QUEUE
	help
	  If this option is enabled, NFQUEUE can include Connection Tracking
	  information together with the packet is the enqueued via NFNETLINK.

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config NF_NAT
	tristate

config NF_NAT_NEEDED
	bool
	depends on NF_NAT
	default y

config NF_NAT_PROTO_DCCP
	tristate
	depends on NF_NAT && NF_CT_PROTO_DCCP
	default NF_NAT && NF_CT_PROTO_DCCP

config NF_NAT_PROTO_UDPLITE
	tristate
	depends on NF_NAT && NF_CT_PROTO_UDPLITE
	default NF_NAT && NF_CT_PROTO_UDPLITE

config NF_NAT_PROTO_SCTP
	tristate
	default NF_NAT && NF_CT_PROTO_SCTP
	depends on NF_NAT && NF_CT_PROTO_SCTP
	select LIBCRC32C

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config NF_NAT_AMANDA
	tristate
	depends on NF_CONNTRACK && NF_NAT
	default NF_NAT && NF_CONNTRACK_AMANDA

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config NF_NAT_FTP
	tristate
	depends on NF_CONNTRACK && NF_NAT
	default NF_NAT && NF_CONNTRACK_FTP

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config NF_NAT_IRC
	tristate
	depends on NF_CONNTRACK && NF_NAT
	default NF_NAT && NF_CONNTRACK_IRC

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config NF_NAT_SIP
	tristate
	depends on NF_CONNTRACK && NF_NAT
	default NF_NAT && NF_CONNTRACK_SIP

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config NF_NAT_TFTP
	tristate
	depends on NF_CONNTRACK && NF_NAT
	default NF_NAT && NF_CONNTRACK_TFTP

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config NETFILTER_SYNPROXY
	tristate

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endif # NF_CONNTRACK

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config NETFILTER_XTABLES
	tristate "Netfilter Xtables support (required for ip_tables)"
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	default m if NETFILTER_ADVANCED=n
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	help
	  This is required if you intend to use any of ip_tables,
	  ip6_tables or arp_tables.

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if NETFILTER_XTABLES

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comment "Xtables combined modules"

config NETFILTER_XT_MARK
	tristate 'nfmark target and match support'
	default m if NETFILTER_ADVANCED=n
	---help---
	This option adds the "MARK" target and "mark" match.

	Netfilter mark matching allows you to match packets based on the
	"nfmark" value in the packet.
	The target allows you to create rules in the "mangle" table which alter
	the netfilter mark (nfmark) field associated with the packet.

	Prior to routing, the nfmark can influence the routing method (see
	"Use netfilter MARK value as routing key") and can also be used by
	other subsystems to change their behavior.

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config NETFILTER_XT_CONNMARK
	tristate 'ctmark target and match support'
	depends on NF_CONNTRACK
	depends on NETFILTER_ADVANCED
	select NF_CONNTRACK_MARK
	---help---
	This option adds the "CONNMARK" target and "connmark" match.

	Netfilter allows you to store a mark value per connection (a.k.a.
	ctmark), similarly to the packet mark (nfmark). Using this
	target and match, you can set and match on this mark.

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config NETFILTER_XT_SET
	tristate 'set target and match support'
	depends on IP_SET
	depends on NETFILTER_ADVANCED
	help
	  This option adds the "SET" target and "set" match.

	  Using this target and match, you can add/delete and match
	  elements in the sets created by ipset(8).

	  To compile it as a module, choose M here.  If unsure, say N.

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# alphabetically ordered list of targets

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comment "Xtables targets"

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config NETFILTER_XT_TARGET_AUDIT
	tristate "AUDIT target support"
	depends on AUDIT
	depends on NETFILTER_ADVANCED
	---help---
	  This option adds a 'AUDIT' target, which can be used to create
	  audit records for packets dropped/accepted.

	  To compileit as a module, choose M here. If unsure, say N.

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config NETFILTER_XT_TARGET_CHECKSUM
	tristate "CHECKSUM target support"
	depends on IP_NF_MANGLE || IP6_NF_MANGLE
	depends on NETFILTER_ADVANCED
	---help---
	  This option adds a `CHECKSUM' target, which can be used in the iptables mangle
	  table.

	  You can use this target to compute and fill in the checksum in
	  a packet that lacks a checksum.  This is particularly useful,
	  if you need to work around old applications such as dhcp clients,
	  that do not work well with checksum offloads, but don't want to disable
	  checksum offload in your device.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NETFILTER_XT_TARGET_CLASSIFY
	tristate '"CLASSIFY" target support'
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	depends on NETFILTER_ADVANCED
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	help
	  This option adds a `CLASSIFY' target, which enables the user to set
	  the priority of a packet. Some qdiscs can use this value for
	  classification, among these are:

  	  atm, cbq, dsmark, pfifo_fast, htb, prio

	  To compile it as a module, choose M here.  If unsure, say N.

config NETFILTER_XT_TARGET_CONNMARK
	tristate  '"CONNMARK" target support'
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	depends on NF_CONNTRACK
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	depends on NETFILTER_ADVANCED
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	select NETFILTER_XT_CONNMARK
	---help---
	This is a backwards-compat option for the user's convenience
	(e.g. when running oldconfig). It selects
	CONFIG_NETFILTER_XT_CONNMARK (combined connmark/CONNMARK module).
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config NETFILTER_XT_TARGET_CONNSECMARK
	tristate '"CONNSECMARK" target support'
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	depends on NF_CONNTRACK && NF_CONNTRACK_SECMARK
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	default m if NETFILTER_ADVANCED=n
	help
	  The CONNSECMARK target copies security markings from packets
	  to connections, and restores security markings from connections
	  to packets (if the packets are not already marked).  This would
	  normally be used in conjunction with the SECMARK target.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NETFILTER_XT_TARGET_CT
	tristate '"CT" target support'
	depends on NF_CONNTRACK
	depends on IP_NF_RAW || IP6_NF_RAW
	depends on NETFILTER_ADVANCED
	help
	  This options adds a `CT' target, which allows to specify initial
	  connection tracking parameters like events to be delivered and
	  the helper to be used.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NETFILTER_XT_TARGET_DSCP
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	tristate '"DSCP" and "TOS" target support'
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	depends on IP_NF_MANGLE || IP6_NF_MANGLE
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	depends on NETFILTER_ADVANCED
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	help
	  This option adds a `DSCP' target, which allows you to manipulate
	  the IPv4/IPv6 header DSCP field (differentiated services codepoint).

	  The DSCP field can have any value between 0x0 and 0x3f inclusive.

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	  It also adds the "TOS" target, which allows you to create rules in
	  the "mangle" table which alter the Type Of Service field of an IPv4
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	  or the Priority field of an IPv6 packet, prior to routing.
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	  To compile it as a module, choose M here.  If unsure, say N.

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config NETFILTER_XT_TARGET_HL
	tristate '"HL" hoplimit target support'
	depends on IP_NF_MANGLE || IP6_NF_MANGLE
	depends on NETFILTER_ADVANCED
	---help---
	This option adds the "HL" (for IPv6) and "TTL" (for IPv4)
	targets, which enable the user to change the
	hoplimit/time-to-live value of the IP header.

	While it is safe to decrement the hoplimit/TTL value, the
	modules also allow to increment and set the hoplimit value of
	the header to arbitrary values. This is EXTREMELY DANGEROUS
	since you can easily create immortal packets that loop
	forever on the network.

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config NETFILTER_XT_TARGET_HMARK
	tristate '"HMARK" target support'
	depends on (IP6_NF_IPTABLES || IP6_NF_IPTABLES=n)
	depends on NETFILTER_ADVANCED
	---help---
	This option adds the "HMARK" target.

	The target allows you to create rules in the "raw" and "mangle" tables
	which set the skbuff mark by means of hash calculation within a given
	range. The nfmark can influence the routing method (see "Use netfilter
	MARK value as routing key") and can also be used by other subsystems to
	change their behaviour.

	To compile it as a module, choose M here. If unsure, say N.

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config NETFILTER_XT_TARGET_IDLETIMER
	tristate  "IDLETIMER target support"
	depends on NETFILTER_ADVANCED
	help

	  This option adds the `IDLETIMER' target.  Each matching packet
	  resets the timer associated with label specified when the rule is
	  added.  When the timer expires, it triggers a sysfs notification.
	  The remaining time for expiration can be read via sysfs.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NETFILTER_XT_TARGET_LED
	tristate '"LED" target support'
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	depends on LEDS_CLASS && LEDS_TRIGGERS
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	depends on NETFILTER_ADVANCED
	help
	  This option adds a `LED' target, which allows you to blink LEDs in
	  response to particular packets passing through your machine.

	  This can be used to turn a spare LED into a network activity LED,
	  which only flashes in response to FTP transfers, for example.  Or
	  you could have an LED which lights up for a minute or two every time
	  somebody connects to your machine via SSH.

	  You will need support for the "led" class to make this work.

	  To create an LED trigger for incoming SSH traffic:
	    iptables -A INPUT -p tcp --dport 22 -j LED --led-trigger-id ssh --led-delay 1000

	  Then attach the new trigger to an LED on your system:
	    echo netfilter-ssh > /sys/class/leds/<ledname>/trigger

	  For more information on the LEDs available on your system, see
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	  Documentation/leds/leds-class.txt
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config NETFILTER_XT_TARGET_LOG
	tristate "LOG target support"
	default m if NETFILTER_ADVANCED=n
	help
	  This option adds a `LOG' target, which allows you to create rules in
	  any iptables table which records the packet header to the syslog.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NETFILTER_XT_TARGET_MARK
	tristate '"MARK" target support'
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	depends on NETFILTER_ADVANCED
	select NETFILTER_XT_MARK
	---help---
	This is a backwards-compat option for the user's convenience
	(e.g. when running oldconfig). It selects
	CONFIG_NETFILTER_XT_MARK (combined mark/MARK module).
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642 643 644 645 646 647 648 649 650 651
config NETFILTER_XT_TARGET_NETMAP
	tristate '"NETMAP" target support'
	depends on NF_NAT
	---help---
	NETMAP is an implementation of static 1:1 NAT mapping of network
	addresses. It maps the network address part, while keeping the host
	address part intact.

	To compile it as a module, choose M here. If unsure, say N.

652 653
config NETFILTER_XT_TARGET_NFLOG
	tristate '"NFLOG" target support'
654
	default m if NETFILTER_ADVANCED=n
655
	select NETFILTER_NETLINK_LOG
656 657
	help
	  This option enables the NFLOG target, which allows to LOG
658
	  messages through nfnetlink_log.
659 660 661

	  To compile it as a module, choose M here.  If unsure, say N.

662 663 664
config NETFILTER_XT_TARGET_NFQUEUE
	tristate '"NFQUEUE" target Support'
	depends on NETFILTER_ADVANCED
665
	select NETFILTER_NETLINK_QUEUE
666 667 668 669 670 671 672 673
	help
	  This target replaced the old obsolete QUEUE target.

	  As opposed to QUEUE, it supports 65535 different queues,
	  not just one.

	  To compile it as a module, choose M here.  If unsure, say N.

674 675
config NETFILTER_XT_TARGET_NOTRACK
	tristate  '"NOTRACK" target support (DEPRECATED)'
676 677 678
	depends on NF_CONNTRACK
	depends on IP_NF_RAW || IP6_NF_RAW
	depends on NETFILTER_ADVANCED
679 680
	select NETFILTER_XT_TARGET_CT

681 682
config NETFILTER_XT_TARGET_RATEEST
	tristate '"RATEEST" target support'
683
	depends on NETFILTER_ADVANCED
684 685 686 687 688 689 690
	help
	  This option adds a `RATEEST' target, which allows to measure
	  rates similar to TC estimators. The `rateest' match can be
	  used to match on the measured rates.

	  To compile it as a module, choose M here.  If unsure, say N.

691 692 693 694 695 696 697 698 699 700 701
config NETFILTER_XT_TARGET_REDIRECT
	tristate "REDIRECT target support"
	depends on NF_NAT
	---help---
	REDIRECT is a special case of NAT: all incoming connections are
	mapped onto the incoming interface's address, causing the packets to
	come to the local machine instead of passing through. This is
	useful for transparent proxies.

	To compile it as a module, choose M here. If unsure, say N.

702
config NETFILTER_XT_TARGET_TEE
703
	tristate '"TEE" - packet cloning to alternate destination'
704
	depends on NETFILTER_ADVANCED
705
	depends on (IPV6 || IPV6=n)
706
	depends on !NF_CONNTRACK || NF_CONNTRACK
707 708 709 710
	---help---
	This option adds a "TEE" target with which a packet can be cloned and
	this clone be rerouted to another nexthop.

711
config NETFILTER_XT_TARGET_TPROXY
712
	tristate '"TPROXY" target transparent proxying support'
713 714
	depends on NETFILTER_XTABLES
	depends on NETFILTER_ADVANCED
715
	depends on IP_NF_MANGLE
716
	select NF_DEFRAG_IPV4
717
	select NF_DEFRAG_IPV6 if IP6_NF_IPTABLES
718 719 720 721 722
	help
	  This option adds a `TPROXY' target, which is somewhat similar to
	  REDIRECT.  It can only be used in the mangle table and is useful
	  to redirect traffic to a transparent proxy.  It does _not_ depend
	  on Netfilter connection tracking and NAT, unlike REDIRECT.
723 724 725
	  For it to work you will have to configure certain iptables rules
	  and use policy routing. For more information on how to set it up
	  see Documentation/networking/tproxy.txt.
726 727 728

	  To compile it as a module, choose M here.  If unsure, say N.

729 730 731
config NETFILTER_XT_TARGET_TRACE
	tristate  '"TRACE" target support'
	depends on IP_NF_RAW || IP6_NF_RAW
732
	depends on NETFILTER_ADVANCED
733 734 735 736 737 738
	help
	  The TRACE target allows you to mark packets so that the kernel
	  will log every rule which match the packets as those traverse
	  the tables, chains, rules.

	  If you want to compile it as a module, say M here and read
739
	  <file:Documentation/kbuild/modules.txt>.  If unsure, say `N'.
740

741 742
config NETFILTER_XT_TARGET_SECMARK
	tristate '"SECMARK" target support'
743
	depends on NETWORK_SECMARK
744
	default m if NETFILTER_ADVANCED=n
745 746 747 748 749 750
	help
	  The SECMARK target allows security marking of network
	  packets, for use with security subsystems.

	  To compile it as a module, choose M here.  If unsure, say N.

751 752
config NETFILTER_XT_TARGET_TCPMSS
	tristate '"TCPMSS" target support'
753
	depends on (IPV6 || IPV6=n)
754
	default m if NETFILTER_ADVANCED=n
755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777
	---help---
	  This option adds a `TCPMSS' target, which allows you to alter the
	  MSS value of TCP SYN packets, to control the maximum size for that
	  connection (usually limiting it to your outgoing interface's MTU
	  minus 40).

	  This is used to overcome criminally braindead ISPs or servers which
	  block ICMP Fragmentation Needed packets.  The symptoms of this
	  problem are that everything works fine from your Linux
	  firewall/router, but machines behind it can never exchange large
	  packets:
	        1) Web browsers connect, then hang with no data received.
	        2) Small mail works fine, but large emails hang.
	        3) ssh works fine, but scp hangs after initial handshaking.

	  Workaround: activate this option and add a rule to your firewall
	  configuration like:

	  iptables -A FORWARD -p tcp --tcp-flags SYN,RST SYN \
	                 -j TCPMSS --clamp-mss-to-pmtu

	  To compile it as a module, choose M here.  If unsure, say N.

778
config NETFILTER_XT_TARGET_TCPOPTSTRIP
779
	tristate '"TCPOPTSTRIP" target support'
780
	depends on IP_NF_MANGLE || IP6_NF_MANGLE
781
	depends on NETFILTER_ADVANCED
782 783 784 785
	help
	  This option adds a "TCPOPTSTRIP" target, which allows you to strip
	  TCP options from TCP packets.

786 787 788 789
# alphabetically ordered list of matches

comment "Xtables matches"

790 791 792 793 794 795 796 797 798 799
config NETFILTER_XT_MATCH_ADDRTYPE
	tristate '"addrtype" address type match support'
	depends on NETFILTER_ADVANCED
	---help---
	  This option allows you to match what routing thinks of an address,
	  eg. UNICAST, LOCAL, BROADCAST, ...

	  If you want to compile it as a module, say M here and read
	  <file:Documentation/kbuild/modules.txt>.  If unsure, say `N'.

800 801 802 803 804 805 806 807 808
config NETFILTER_XT_MATCH_BPF
	tristate '"bpf" match support'
	depends on NETFILTER_ADVANCED
	help
	  BPF matching applies a linux socket filter to each packet and
	  accepts those for which the filter returns non-zero.

	  To compile it as a module, choose M here.  If unsure, say N.

809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824
config NETFILTER_XT_MATCH_CLUSTER
	tristate '"cluster" match support'
	depends on NF_CONNTRACK
	depends on NETFILTER_ADVANCED
	---help---
	  This option allows you to build work-load-sharing clusters of
	  network servers/stateful firewalls without having a dedicated
	  load-balancing router/server/switch. Basically, this match returns
	  true when the packet must be handled by this cluster node. Thus,
	  all nodes see all packets and this match decides which node handles
	  what packets. The work-load sharing algorithm is based on source
	  address hashing.

	  If you say Y or M here, try `iptables -m cluster --help` for
	  more information.

825 826
config NETFILTER_XT_MATCH_COMMENT
	tristate  '"comment" match support'
827
	depends on NETFILTER_ADVANCED
828 829 830 831 832
	help
	  This option adds a `comment' dummy-match, which allows you to put
	  comments in your iptables ruleset.

	  If you want to compile it as a module, say M here and read
833
	  <file:Documentation/kbuild/modules.txt>.  If unsure, say `N'.
834 835 836

config NETFILTER_XT_MATCH_CONNBYTES
	tristate  '"connbytes" per-connection counter match support'
837
	depends on NF_CONNTRACK
838
	depends on NETFILTER_ADVANCED
839 840 841 842 843
	help
	  This option adds a `connbytes' match, which allows you to match the
	  number of bytes and/or packets for each direction within a connection.

	  If you want to compile it as a module, say M here and read
844
	  <file:Documentation/kbuild/modules.txt>.  If unsure, say `N'.
845

846 847 848
config NETFILTER_XT_MATCH_CONNLABEL
	tristate '"connlabel" match support'
	select NF_CONNTRACK_LABELS
849
	depends on NF_CONNTRACK
850 851 852 853 854 855 856 857 858
	depends on NETFILTER_ADVANCED
	---help---
	  This match allows you to test and assign userspace-defined labels names
	  to a connection.  The kernel only stores bit values - mapping
	  names to bits is done by userspace.

	  Unlike connmark, more than 32 flag bits may be assigned to a
	  connection simultaneously.

859 860
config NETFILTER_XT_MATCH_CONNLIMIT
	tristate '"connlimit" match support"'
861
	depends on NF_CONNTRACK
862
	depends on NETFILTER_ADVANCED
863 864 865 866
	---help---
	  This match allows you to match against the number of parallel
	  connections to a server per client IP address (or address block).

867 868
config NETFILTER_XT_MATCH_CONNMARK
	tristate  '"connmark" connection mark match support'
869
	depends on NF_CONNTRACK
870
	depends on NETFILTER_ADVANCED
871 872 873 874 875
	select NETFILTER_XT_CONNMARK
	---help---
	This is a backwards-compat option for the user's convenience
	(e.g. when running oldconfig). It selects
	CONFIG_NETFILTER_XT_CONNMARK (combined connmark/CONNMARK module).
876 877 878

config NETFILTER_XT_MATCH_CONNTRACK
	tristate '"conntrack" connection tracking match support'
879
	depends on NF_CONNTRACK
880
	default m if NETFILTER_ADVANCED=n
881 882 883 884 885 886 887 888
	help
	  This is a general conntrack match module, a superset of the state match.

	  It allows matching on additional conntrack information, which is
	  useful in complex configurations, such as NAT gateways with multiple
	  internet links or tunnels.

	  To compile it as a module, choose M here.  If unsure, say N.
E
Eric Dumazet 已提交
889 890 891 892 893 894 895 896 897

config NETFILTER_XT_MATCH_CPU
	tristate '"cpu" match support'
	depends on NETFILTER_ADVANCED
	help
	  CPU matching allows you to match packets based on the CPU
	  currently handling the packet.

	  To compile it as a module, choose M here.  If unsure, say N.
898 899

config NETFILTER_XT_MATCH_DCCP
900
	tristate '"dccp" protocol match support'
901
	depends on NETFILTER_ADVANCED
902
	default IP_DCCP
903 904 905 906 907 908
	help
	  With this option enabled, you will be able to use the iptables
	  `dccp' match in order to match on DCCP source/destination ports
	  and DCCP flags.

	  If you want to compile it as a module, say M here and read
909
	  <file:Documentation/kbuild/modules.txt>.  If unsure, say `N'.
910

911 912 913 914 915 916 917 918 919
config NETFILTER_XT_MATCH_DEVGROUP
	tristate '"devgroup" match support'
	depends on NETFILTER_ADVANCED
	help
	  This options adds a `devgroup' match, which allows to match on the
	  device group a network device is assigned to.

	  To compile it as a module, choose M here.  If unsure, say N.

920
config NETFILTER_XT_MATCH_DSCP
921
	tristate '"dscp" and "tos" match support'
922
	depends on NETFILTER_ADVANCED
923 924 925 926 927 928
	help
	  This option adds a `DSCP' match, which allows you to match against
	  the IPv4/IPv6 header DSCP field (differentiated services codepoint).

	  The DSCP field can have any value between 0x0 and 0x3f inclusive.

929 930 931 932
	  It will also add a "tos" match, which allows you to match packets
	  based on the Type Of Service fields of the IPv4 packet (which share
	  the same bits as DSCP).

933 934
	  To compile it as a module, choose M here.  If unsure, say N.

935 936 937 938 939 940 941 942 943
config NETFILTER_XT_MATCH_ECN
	tristate '"ecn" match support'
	depends on NETFILTER_ADVANCED
	---help---
	This option adds an "ECN" match, which allows you to match against
	the IPv4 and TCP header ECN fields.

	To compile it as a module, choose M here. If unsure, say N.

944
config NETFILTER_XT_MATCH_ESP
945
	tristate '"esp" match support'
946
	depends on NETFILTER_ADVANCED
947 948 949 950 951 952
	help
	  This match extension allows you to match a range of SPIs
	  inside ESP header of IPSec packets.

	  To compile it as a module, choose M here.  If unsure, say N.

953 954
config NETFILTER_XT_MATCH_HASHLIMIT
	tristate '"hashlimit" match support'
955
	depends on (IP6_NF_IPTABLES || IP6_NF_IPTABLES=n)
956 957 958 959 960 961 962 963 964 965 966 967
	depends on NETFILTER_ADVANCED
	help
	  This option adds a `hashlimit' match.

	  As opposed to `limit', this match dynamically creates a hash table
	  of limit buckets, based on your selection of source/destination
	  addresses and/or ports.

	  It enables you to express policies like `10kpps for any given
	  destination address' or `500pps from any given source address'
	  with a single rule.

968 969
config NETFILTER_XT_MATCH_HELPER
	tristate '"helper" match support'
970
	depends on NF_CONNTRACK
971
	depends on NETFILTER_ADVANCED
972 973 974 975 976 977
	help
	  Helper matching allows you to match packets in dynamic connections
	  tracked by a conntrack-helper, ie. ip_conntrack_ftp

	  To compile it as a module, choose M here.  If unsure, say Y.

978 979 980 981 982 983 984 985
config NETFILTER_XT_MATCH_HL
	tristate '"hl" hoplimit/TTL match support'
	depends on NETFILTER_ADVANCED
	---help---
	HL matching allows you to match packets based on the hoplimit
	in the IPv6 header, or the time-to-live field in the IPv4
	header of the packet.

986 987 988 989 990 991 992 993 994 995
config NETFILTER_XT_MATCH_IPRANGE
	tristate '"iprange" address range match support'
	depends on NETFILTER_ADVANCED
	---help---
	This option adds a "iprange" match, which allows you to match based on
	an IP address range. (Normal iptables only matches on single addresses
	with an optional mask.)

	If unsure, say M.

996 997 998 999 1000 1001 1002 1003 1004 1005
config NETFILTER_XT_MATCH_IPVS
	tristate '"ipvs" match support'
	depends on IP_VS
	depends on NETFILTER_ADVANCED
	depends on NF_CONNTRACK
	help
	  This option allows you to match against IPVS properties of a packet.

	  If unsure, say N.

1006 1007
config NETFILTER_XT_MATCH_LENGTH
	tristate '"length" match support'
1008
	depends on NETFILTER_ADVANCED
1009 1010 1011 1012 1013 1014 1015 1016
	help
	  This option allows you to match the length of a packet against a
	  specific value or range of values.

	  To compile it as a module, choose M here.  If unsure, say N.

config NETFILTER_XT_MATCH_LIMIT
	tristate '"limit" match support'
1017
	depends on NETFILTER_ADVANCED
1018 1019 1020 1021 1022 1023 1024 1025 1026
	help
	  limit matching allows you to control the rate at which a rule can be
	  matched: mainly useful in combination with the LOG target ("LOG
	  target support", below) and to avoid some Denial of Service attacks.

	  To compile it as a module, choose M here.  If unsure, say N.

config NETFILTER_XT_MATCH_MAC
	tristate '"mac" address match support'
1027
	depends on NETFILTER_ADVANCED
1028 1029 1030 1031 1032 1033 1034 1035
	help
	  MAC matching allows you to match packets based on the source
	  Ethernet address of the packet.

	  To compile it as a module, choose M here.  If unsure, say N.

config NETFILTER_XT_MATCH_MARK
	tristate '"mark" match support'
1036 1037 1038 1039 1040 1041
	depends on NETFILTER_ADVANCED
	select NETFILTER_XT_MARK
	---help---
	This is a backwards-compat option for the user's convenience
	(e.g. when running oldconfig). It selects
	CONFIG_NETFILTER_XT_MARK (combined mark/MARK module).
1042

1043 1044 1045 1046 1047 1048 1049 1050 1051 1052
config NETFILTER_XT_MATCH_MULTIPORT
	tristate '"multiport" Multiple port match support'
	depends on NETFILTER_ADVANCED
	help
	  Multiport matching allows you to match TCP or UDP packets based on
	  a series of source or destination ports: normally a rule can only
	  match a single range of ports.

	  To compile it as a module, choose M here.  If unsure, say N.

1053 1054
config NETFILTER_XT_MATCH_NFACCT
	tristate '"nfacct" match support'
1055
	depends on NETFILTER_ADVANCED
1056 1057 1058 1059 1060 1061 1062
	select NETFILTER_NETLINK_ACCT
	help
	  This option allows you to use the extended accounting through
	  nfnetlink_acct.

	  To compile it as a module, choose M here.  If unsure, say N.

1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075
config NETFILTER_XT_MATCH_OSF
	tristate '"osf" Passive OS fingerprint match'
	depends on NETFILTER_ADVANCED && NETFILTER_NETLINK
	help
	  This option selects the Passive OS Fingerprinting match module
	  that allows to passively match the remote operating system by
	  analyzing incoming TCP SYN packets.

	  Rules and loading software can be downloaded from
	  http://www.ioremap.net/projects/osf

	  To compile it as a module, choose M here.  If unsure, say N.

1076 1077
config NETFILTER_XT_MATCH_OWNER
	tristate '"owner" match support'
1078
	depends on NETFILTER_ADVANCED
1079 1080 1081 1082 1083
	---help---
	Socket owner matching allows you to match locally-generated packets
	based on who created the socket: the user or group. It is also
	possible to check whether a socket actually exists.

1084 1085
config NETFILTER_XT_MATCH_POLICY
	tristate 'IPsec "policy" match support'
1086
	depends on XFRM
1087
	default m if NETFILTER_ADVANCED=n
1088 1089 1090 1091 1092 1093 1094
	help
	  Policy matching allows you to match packets based on the
	  IPsec policy that was used during decapsulation/will
	  be used during encapsulation.

	  To compile it as a module, choose M here.  If unsure, say N.

1095 1096
config NETFILTER_XT_MATCH_PHYSDEV
	tristate '"physdev" match support'
1097
	depends on BRIDGE && BRIDGE_NETFILTER
1098
	depends on NETFILTER_ADVANCED
1099 1100 1101 1102 1103 1104 1105 1106
	help
	  Physdev packet matching matches against the physical bridge ports
	  the IP packet arrived on or will leave by.

	  To compile it as a module, choose M here.  If unsure, say N.

config NETFILTER_XT_MATCH_PKTTYPE
	tristate '"pkttype" packet type match support'
1107
	depends on NETFILTER_ADVANCED
1108 1109 1110 1111 1112 1113 1114 1115 1116
	help
	  Packet type matching allows you to match a packet by
	  its "class", eg. BROADCAST, MULTICAST, ...

	  Typical usage:
	  iptables -A INPUT -m pkttype --pkt-type broadcast -j LOG

	  To compile it as a module, choose M here.  If unsure, say N.

1117 1118
config NETFILTER_XT_MATCH_QUOTA
	tristate '"quota" match support'
1119
	depends on NETFILTER_ADVANCED
1120 1121 1122 1123 1124
	help
	  This option adds a `quota' match, which allows to match on a
	  byte counter.

	  If you want to compile it as a module, say M here and read
1125
	  <file:Documentation/kbuild/modules.txt>.  If unsure, say `N'.
1126

1127 1128
config NETFILTER_XT_MATCH_RATEEST
	tristate '"rateest" match support'
1129
	depends on NETFILTER_ADVANCED
1130 1131 1132 1133 1134 1135 1136
	select NETFILTER_XT_TARGET_RATEEST
	help
	  This option adds a `rateest' match, which allows to match on the
	  rate estimated by the RATEEST target.

	  To compile it as a module, choose M here.  If unsure, say N.

1137 1138
config NETFILTER_XT_MATCH_REALM
	tristate  '"realm" match support'
1139
	depends on NETFILTER_ADVANCED
1140
	select IP_ROUTE_CLASSID
1141 1142 1143
	help
	  This option adds a `realm' match, which allows you to use the realm
	  key from the routing subsystem inside iptables.
1144

1145 1146
	  This match pretty much resembles the CONFIG_NET_CLS_ROUTE4 option 
	  in tc world.
1147

1148
	  If you want to compile it as a module, say M here and read
1149
	  <file:Documentation/kbuild/modules.txt>.  If unsure, say `N'.
1150

1151 1152 1153 1154 1155 1156 1157 1158 1159 1160
config NETFILTER_XT_MATCH_RECENT
	tristate '"recent" match support'
	depends on NETFILTER_ADVANCED
	---help---
	This match is used for creating one or many lists of recently
	used addresses and then matching against that/those list(s).

	Short options are available by using 'iptables -m recent -h'
	Official Website: <http://snowman.net/projects/ipt_recent/>

1161
config NETFILTER_XT_MATCH_SCTP
1162
	tristate  '"sctp" protocol match support'
1163
	depends on NETFILTER_ADVANCED
1164
	default IP_SCTP
1165 1166 1167 1168 1169 1170
	help
	  With this option enabled, you will be able to use the 
	  `sctp' match in order to match on SCTP source/destination ports
	  and SCTP chunk types.

	  If you want to compile it as a module, say M here and read
1171
	  <file:Documentation/kbuild/modules.txt>.  If unsure, say `N'.
1172

1173
config NETFILTER_XT_MATCH_SOCKET
1174
	tristate '"socket" match support'
1175 1176
	depends on NETFILTER_XTABLES
	depends on NETFILTER_ADVANCED
1177
	depends on !NF_CONNTRACK || NF_CONNTRACK
1178
	depends on (IPV6 || IPV6=n)
1179
	select NF_DEFRAG_IPV4
1180
	select NF_DEFRAG_IPV6 if IP6_NF_IPTABLES
1181 1182 1183 1184 1185 1186 1187 1188
	help
	  This option adds a `socket' match, which can be used to match
	  packets for which a TCP or UDP socket lookup finds a valid socket.
	  It can be used in combination with the MARK target and policy
	  routing to implement full featured non-locally bound sockets.

	  To compile it as a module, choose M here.  If unsure, say N.

1189 1190
config NETFILTER_XT_MATCH_STATE
	tristate '"state" match support'
1191
	depends on NF_CONNTRACK
1192
	default m if NETFILTER_ADVANCED=n
1193 1194 1195 1196 1197 1198 1199
	help
	  Connection state matching allows you to match packets based on their
	  relationship to a tracked connection (ie. previous packets).  This
	  is a powerful tool for packet classification.

	  To compile it as a module, choose M here.  If unsure, say N.

1200 1201
config NETFILTER_XT_MATCH_STATISTIC
	tristate '"statistic" match support'
1202
	depends on NETFILTER_ADVANCED
1203
	help
1204 1205 1206 1207
	  This option adds a `statistic' match, which allows you to match
	  on packets periodically or randomly with a given percentage.

	  To compile it as a module, choose M here.  If unsure, say N.
1208

1209 1210
config NETFILTER_XT_MATCH_STRING
	tristate  '"string" match support'
1211
	depends on NETFILTER_ADVANCED
1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223
	select TEXTSEARCH
	select TEXTSEARCH_KMP
	select TEXTSEARCH_BM
	select TEXTSEARCH_FSM
	help
	  This option adds a `string' match, which allows you to look for
	  pattern matchings in packets.

	  To compile it as a module, choose M here.  If unsure, say N.

config NETFILTER_XT_MATCH_TCPMSS
	tristate '"tcpmss" match support'
1224
	depends on NETFILTER_ADVANCED
1225 1226 1227 1228 1229 1230 1231
	help
	  This option adds a `tcpmss' match, which allows you to examine the
	  MSS value of TCP SYN packets, which control the maximum packet size
	  for that connection.

	  To compile it as a module, choose M here.  If unsure, say N.

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config NETFILTER_XT_MATCH_TIME
	tristate '"time" match support'
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	depends on NETFILTER_ADVANCED
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	---help---
	  This option adds a "time" match, which allows you to match based on
	  the packet arrival time (at the machine which netfilter is running)
	  on) or departure time/date (for locally generated packets).

	  If you say Y here, try `iptables -m time --help` for
	  more information.

	  If you want to compile it as a module, say M here.
	  If unsure, say N.

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Jan Engelhardt 已提交
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config NETFILTER_XT_MATCH_U32
	tristate '"u32" match support'
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	depends on NETFILTER_ADVANCED
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Jan Engelhardt 已提交
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	---help---
	  u32 allows you to extract quantities of up to 4 bytes from a packet,
	  AND them with specified masks, shift them by specified amounts and
	  test whether the results are in any of a set of specified ranges.
	  The specification of what to extract is general enough to skip over
	  headers with lengths stored in the packet, as in IP or TCP header
	  lengths.

	  Details and examples are in the kernel module source.

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endif # NETFILTER_XTABLES
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endmenu
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source "net/netfilter/ipset/Kconfig"

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source "net/netfilter/ipvs/Kconfig"