1ec8f24b7SThomas Gleixner# SPDX-License-Identifier: GPL-2.0-only 21da177e4SLinus Torvalds# 31da177e4SLinus Torvalds# IPv6 configuration 41da177e4SLinus Torvalds# 56a2e9b73SSam Ravnborg 60b18542bSJan Engelhardtmenuconfig IPV6 7309b905dSFernando Fernandez Mancera bool "The IPv6 protocol" 8de551f2eSTom Herbert default y 9ec8f7f48SEric Biggers select CRYPTO_LIB_SHA1 10a7f7f624SMasahiro Yamada help 11de551f2eSTom Herbert Support for IP version 6 (IPv6). 126a2e9b73SSam Ravnborg 136a2e9b73SSam Ravnborg For general information about IPv6, see 14242260fbSChristian Kujau <https://en.wikipedia.org/wiki/IPv6>. 15de551f2eSTom Herbert For specific information about IPv6 under Linux, see 1619093313SMauro Carvalho Chehab Documentation/networking/ipv6.rst and read the HOWTO at 177a6498ebSAlexander A. Klimov <https://www.tldp.org/HOWTO/Linux+IPv6-HOWTO/> 186a2e9b73SSam Ravnborg 190b18542bSJan Engelhardtif IPV6 200b18542bSJan Engelhardt 21ebacaaa0SYOSHIFUJI Hideakiconfig IPV6_ROUTER_PREF 22ebacaaa0SYOSHIFUJI Hideaki bool "IPv6: Router Preference (RFC 4191) support" 23a7f7f624SMasahiro Yamada help 24ebacaaa0SYOSHIFUJI Hideaki Router Preference is an optional extension to the Router 25692105b8SMatt LaPlante Advertisement message which improves the ability of hosts 26692105b8SMatt LaPlante to pick an appropriate router, especially when the hosts 27692105b8SMatt LaPlante are placed in a multi-homed network. 28ebacaaa0SYOSHIFUJI Hideaki 29ebacaaa0SYOSHIFUJI Hideaki If unsure, say N. 30ebacaaa0SYOSHIFUJI Hideaki 3170ceb4f5SYOSHIFUJI Hideakiconfig IPV6_ROUTE_INFO 32f9ceb16eSKees Cook bool "IPv6: Route Information (RFC 4191) support" 33f9ceb16eSKees Cook depends on IPV6_ROUTER_PREF 34a7f7f624SMasahiro Yamada help 35a9f71d0dSGeorg Hofmann Support of Route Information. 3670ceb4f5SYOSHIFUJI Hideaki 3770ceb4f5SYOSHIFUJI Hideaki If unsure, say N. 3870ceb4f5SYOSHIFUJI Hideaki 3995c385b4SNeil Hormanconfig IPV6_OPTIMISTIC_DAD 40f9ceb16eSKees Cook bool "IPv6: Enable RFC 4429 Optimistic DAD" 41a7f7f624SMasahiro Yamada help 42a9f71d0dSGeorg Hofmann Support for optimistic Duplicate Address Detection. It allows for 43a9f71d0dSGeorg Hofmann autoconfigured addresses to be used more quickly. 4495c385b4SNeil Horman 4595c385b4SNeil Horman If unsure, say N. 4695c385b4SNeil Horman 471da177e4SLinus Torvaldsconfig INET6_AH 481da177e4SLinus Torvalds tristate "IPv6: AH transformation" 497d4e3919SEric Biggers select XFRM_AH 50a7f7f624SMasahiro Yamada help 51be013698SEric Biggers Support for IPsec AH (Authentication Header). 52be013698SEric Biggers 53be013698SEric Biggers AH can be used with various authentication algorithms. Besides 54be013698SEric Biggers enabling AH support itself, this option enables the generic 55be013698SEric Biggers implementations of the algorithms that RFC 8221 lists as MUST be 56be013698SEric Biggers implemented. If you need any other algorithms, you'll need to enable 57be013698SEric Biggers them in the crypto API. You should also enable accelerated 58be013698SEric Biggers implementations of any needed algorithms when available. 591da177e4SLinus Torvalds 601da177e4SLinus Torvalds If unsure, say Y. 611da177e4SLinus Torvalds 621da177e4SLinus Torvaldsconfig INET6_ESP 631da177e4SLinus Torvalds tristate "IPv6: ESP transformation" 647d4e3919SEric Biggers select XFRM_ESP 65a7f7f624SMasahiro Yamada help 66be013698SEric Biggers Support for IPsec ESP (Encapsulating Security Payload). 67be013698SEric Biggers 68be013698SEric Biggers ESP can be used with various encryption and authentication algorithms. 69be013698SEric Biggers Besides enabling ESP support itself, this option enables the generic 70be013698SEric Biggers implementations of the algorithms that RFC 8221 lists as MUST be 71be013698SEric Biggers implemented. If you need any other algorithms, you'll need to enable 72be013698SEric Biggers them in the crypto API. You should also enable accelerated 73be013698SEric Biggers implementations of any needed algorithms when available. 741da177e4SLinus Torvalds 751da177e4SLinus Torvalds If unsure, say Y. 761da177e4SLinus Torvalds 777785bba2SSteffen Klassertconfig INET6_ESP_OFFLOAD 787785bba2SSteffen Klassert tristate "IPv6: ESP transformation offload" 797785bba2SSteffen Klassert depends on INET6_ESP 807785bba2SSteffen Klassert select XFRM_OFFLOAD 817785bba2SSteffen Klassert default n 82a7f7f624SMasahiro Yamada help 837785bba2SSteffen Klassert Support for ESP transformation offload. This makes sense 847785bba2SSteffen Klassert only if this system really does IPsec and want to do it 857785bba2SSteffen Klassert with high throughput. A typical desktop system does not 867785bba2SSteffen Klassert need it, even if it does IPsec. 877785bba2SSteffen Klassert 887785bba2SSteffen Klassert If unsure, say N. 897785bba2SSteffen Klassert 9026333c37SSabrina Dubrocaconfig INET6_ESPINTCP 9126333c37SSabrina Dubroca bool "IPv6: ESP in TCP encapsulation (RFC 8229)" 9226333c37SSabrina Dubroca depends on XFRM && INET6_ESP 9326333c37SSabrina Dubroca select STREAM_PARSER 9426333c37SSabrina Dubroca select NET_SOCK_MSG 9526333c37SSabrina Dubroca select XFRM_ESPINTCP 9626333c37SSabrina Dubroca help 9726333c37SSabrina Dubroca Support for RFC 8229 encapsulation of ESP and IKE over 9826333c37SSabrina Dubroca TCP/IPv6 sockets. 9926333c37SSabrina Dubroca 10026333c37SSabrina Dubroca If unsure, say N. 10126333c37SSabrina Dubroca 1021da177e4SLinus Torvaldsconfig INET6_IPCOMP 1031da177e4SLinus Torvalds tristate "IPv6: IPComp transformation" 104d2acc347SHerbert Xu select INET6_XFRM_TUNNEL 1056fccab67SHerbert Xu select XFRM_IPCOMP 106a7f7f624SMasahiro Yamada help 1071da177e4SLinus Torvalds Support for IP Payload Compression Protocol (IPComp) (RFC3173), 1081da177e4SLinus Torvalds typically needed for IPsec. 1091da177e4SLinus Torvalds 1101da177e4SLinus Torvalds If unsure, say Y. 1111da177e4SLinus Torvalds 112ee538268SMasahide NAKAMURAconfig IPV6_MIP6 113f9ceb16eSKees Cook tristate "IPv6: Mobility" 114ee538268SMasahide NAKAMURA select XFRM 115a7f7f624SMasahiro Yamada help 116ee538268SMasahide NAKAMURA Support for IPv6 Mobility described in RFC 3775. 117ee538268SMasahide NAKAMURA 118ee538268SMasahide NAKAMURA If unsure, say N. 119ee538268SMasahide NAKAMURA 12065d7ab8dSTom Herbertconfig IPV6_ILA 12165d7ab8dSTom Herbert tristate "IPv6: Identifier Locator Addressing (ILA)" 1228cb964daSArnd Bergmann depends on NETFILTER 12383ed7d1fSArnd Bergmann select DST_CACHE 12465d7ab8dSTom Herbert select LWTUNNEL 125a7f7f624SMasahiro Yamada help 12665d7ab8dSTom Herbert Support for IPv6 Identifier Locator Addressing (ILA). 12765d7ab8dSTom Herbert 12865d7ab8dSTom Herbert ILA is a mechanism to do network virtualization without 12965d7ab8dSTom Herbert encapsulation. The basic concept of ILA is that we split an 13065d7ab8dSTom Herbert IPv6 address into a 64 bit locator and 64 bit identifier. The 13165d7ab8dSTom Herbert identifier is the identity of an entity in communication 13265d7ab8dSTom Herbert ("who") and the locator expresses the location of the 13365d7ab8dSTom Herbert entity ("where"). 13465d7ab8dSTom Herbert 13565d7ab8dSTom Herbert ILA can be configured using the "encap ila" option with 13665d7ab8dSTom Herbert "ip -6 route" command. ILA is described in 13765d7ab8dSTom Herbert https://tools.ietf.org/html/draft-herbert-nvo3-ila-00. 13865d7ab8dSTom Herbert 13965d7ab8dSTom Herbert If unsure, say N. 14065d7ab8dSTom Herbert 141d2acc347SHerbert Xuconfig INET6_XFRM_TUNNEL 142d2acc347SHerbert Xu tristate 143d2acc347SHerbert Xu select INET6_TUNNEL 144d2acc347SHerbert Xu default n 1451da177e4SLinus Torvalds 146d2acc347SHerbert Xuconfig INET6_TUNNEL 147d2acc347SHerbert Xu tristate 148d2acc347SHerbert Xu default n 1491da177e4SLinus Torvalds 150ed1efb2aSSteffen Klassertconfig IPV6_VTI 151ed1efb2aSSteffen Klassert tristate "Virtual (secure) IPv6: tunneling" 152ed1efb2aSSteffen Klassert select IPV6_TUNNEL 153876fc03aSSteffen Klassert select NET_IP_TUNNEL 1544c145dceSFlorian Westphal select XFRM 155a7f7f624SMasahiro Yamada help 156ed1efb2aSSteffen Klassert Tunneling means encapsulating data of one protocol type within 157ed1efb2aSSteffen Klassert another protocol and sending it over a channel that understands the 158ed1efb2aSSteffen Klassert encapsulating protocol. This can be used with xfrm mode tunnel to give 159ed1efb2aSSteffen Klassert the notion of a secure tunnel for IPSEC and then use routing protocol 160ed1efb2aSSteffen Klassert on top. 161ed1efb2aSSteffen Klassert 162989e5b96SJoerg Roedelconfig IPV6_SIT 163989e5b96SJoerg Roedel tristate "IPv6: IPv6-in-IPv4 tunnel (SIT driver)" 164c73cb5a2SKazunori MIYAZAWA select INET_TUNNEL 165f61dd388SPravin B Shelar select NET_IP_TUNNEL 166de357cc0SYOSHIFUJI Hideaki select IPV6_NDISC_NODETYPE 167*901a7d9eSAlyssa Ross default m 168a7f7f624SMasahiro Yamada help 169989e5b96SJoerg Roedel Tunneling means encapsulating data of one protocol type within 170989e5b96SJoerg Roedel another protocol and sending it over a channel that understands the 171989e5b96SJoerg Roedel encapsulating protocol. This driver implements encapsulation of IPv6 1725c5d6dabSDavid S. Miller into IPv4 packets. This is useful if you want to connect two IPv6 173989e5b96SJoerg Roedel networks over an IPv4-only path. 174989e5b96SJoerg Roedel 175*901a7d9eSAlyssa Ross Saying M here will produce a module called sit. If unsure, say M. 176989e5b96SJoerg Roedel 177fa857afcSYOSHIFUJI Hideaki / 吉藤英明config IPV6_SIT_6RD 178f9ceb16eSKees Cook bool "IPv6: IPv6 Rapid Deployment (6RD)" 179f9ceb16eSKees Cook depends on IPV6_SIT 180fa857afcSYOSHIFUJI Hideaki / 吉藤英明 default n 181a7f7f624SMasahiro Yamada help 182fa857afcSYOSHIFUJI Hideaki / 吉藤英明 IPv6 Rapid Deployment (6rd; draft-ietf-softwire-ipv6-6rd) builds upon 183fa857afcSYOSHIFUJI Hideaki / 吉藤英明 mechanisms of 6to4 (RFC3056) to enable a service provider to rapidly 184fa857afcSYOSHIFUJI Hideaki / 吉藤英明 deploy IPv6 unicast service to IPv4 sites to which it provides 185fa857afcSYOSHIFUJI Hideaki / 吉藤英明 customer premise equipment. Like 6to4, it utilizes stateless IPv6 in 186fa857afcSYOSHIFUJI Hideaki / 吉藤英明 IPv4 encapsulation in order to transit IPv4-only network 187fa857afcSYOSHIFUJI Hideaki / 吉藤英明 infrastructure. Unlike 6to4, a 6rd service provider uses an IPv6 188fa857afcSYOSHIFUJI Hideaki / 吉藤英明 prefix of its own in place of the fixed 6to4 prefix. 189fa857afcSYOSHIFUJI Hideaki / 吉藤英明 190fa857afcSYOSHIFUJI Hideaki / 吉藤英明 With this option enabled, the SIT driver offers 6rd functionality by 191fa857afcSYOSHIFUJI Hideaki / 吉藤英明 providing additional ioctl API to configure the IPv6 Prefix for in 192fa857afcSYOSHIFUJI Hideaki / 吉藤英明 stead of static 2002::/16 for 6to4. 193fa857afcSYOSHIFUJI Hideaki / 吉藤英明 194fa857afcSYOSHIFUJI Hideaki / 吉藤英明 If unsure, say N. 195fa857afcSYOSHIFUJI Hideaki / 吉藤英明 196de357cc0SYOSHIFUJI Hideakiconfig IPV6_NDISC_NODETYPE 197de357cc0SYOSHIFUJI Hideaki bool 198de357cc0SYOSHIFUJI Hideaki 1991da177e4SLinus Torvaldsconfig IPV6_TUNNEL 20038fe999eSYOSHIFUJI Hideaki tristate "IPv6: IP-in-IPv6 tunnel (RFC2473)" 201d2acc347SHerbert Xu select INET6_TUNNEL 202607f725fSPaolo Abeni select DST_CACHE 20397e219b7SEric Dumazet select GRO_CELLS 204a7f7f624SMasahiro Yamada help 20538fe999eSYOSHIFUJI Hideaki Support for IPv6-in-IPv6 and IPv4-in-IPv6 tunnels described in 20638fe999eSYOSHIFUJI Hideaki RFC 2473. 2071da177e4SLinus Torvalds 2081da177e4SLinus Torvalds If unsure, say N. 2091da177e4SLinus Torvalds 210c12b395aSxeb@mail.ruconfig IPV6_GRE 211c12b395aSxeb@mail.ru tristate "IPv6: GRE tunnel" 212c12b395aSxeb@mail.ru select IPV6_TUNNEL 213f61dd388SPravin B Shelar select NET_IP_TUNNEL 2148bf42e9eSArnd Bergmann depends on NET_IPGRE_DEMUX 215a7f7f624SMasahiro Yamada help 216c12b395aSxeb@mail.ru Tunneling means encapsulating data of one protocol type within 217c12b395aSxeb@mail.ru another protocol and sending it over a channel that understands the 218c12b395aSxeb@mail.ru encapsulating protocol. This particular tunneling driver implements 219c12b395aSxeb@mail.ru GRE (Generic Routing Encapsulation) and at this time allows 220c12b395aSxeb@mail.ru encapsulating of IPv4 or IPv6 over existing IPv6 infrastructure. 221c12b395aSxeb@mail.ru This driver is useful if the other endpoint is a Cisco router: Cisco 222c12b395aSxeb@mail.ru likes GRE much better than the other Linux tunneling driver ("IP 223c12b395aSxeb@mail.ru tunneling" above). In addition, GRE allows multicast redistribution 224c12b395aSxeb@mail.ru through the tunnel. 225c12b395aSxeb@mail.ru 226c12b395aSxeb@mail.ru Saying M here will produce a module called ip6_gre. If unsure, say N. 227c12b395aSxeb@mail.ru 228fabb13dbSArnd Bergmannconfig IPV6_FOU 229fabb13dbSArnd Bergmann tristate 230fabb13dbSArnd Bergmann default NET_FOU && IPV6 231fabb13dbSArnd Bergmann 232fabb13dbSArnd Bergmannconfig IPV6_FOU_TUNNEL 233fabb13dbSArnd Bergmann tristate 234fabb13dbSArnd Bergmann default NET_FOU_IP_TUNNELS && IPV6_FOU 23595e4daa8SArnd Bergmann select IPV6_TUNNEL 236fabb13dbSArnd Bergmann 237264e91b6SVille Nuorvalaconfig IPV6_MULTIPLE_TABLES 238264e91b6SVille Nuorvala bool "IPv6: Multiple Routing Tables" 239264e91b6SVille Nuorvala select FIB_RULES 240a7f7f624SMasahiro Yamada help 241264e91b6SVille Nuorvala Support multiple routing tables. 242264e91b6SVille Nuorvala 2434e96c2b4SYOSHIFUJI Hideakiconfig IPV6_SUBTREES 2444e96c2b4SYOSHIFUJI Hideaki bool "IPv6: source address based routing" 245264e91b6SVille Nuorvala depends on IPV6_MULTIPLE_TABLES 246a7f7f624SMasahiro Yamada help 2474e96c2b4SYOSHIFUJI Hideaki Enable routing by source address or prefix. 2484e96c2b4SYOSHIFUJI Hideaki 2494e96c2b4SYOSHIFUJI Hideaki The destination address is still the primary routing key, so mixing 2504e96c2b4SYOSHIFUJI Hideaki normal and source prefix specific routes in the same routing table 2514e96c2b4SYOSHIFUJI Hideaki may sometimes lead to unintended routing behavior. This can be 2524e96c2b4SYOSHIFUJI Hideaki avoided by defining different routing tables for the normal and 2534e96c2b4SYOSHIFUJI Hideaki source prefix specific routes. 2544e96c2b4SYOSHIFUJI Hideaki 2554e96c2b4SYOSHIFUJI Hideaki If unsure, say N. 2564e96c2b4SYOSHIFUJI Hideaki 2577bc570c8SYOSHIFUJI Hideakiconfig IPV6_MROUTE 258f9ceb16eSKees Cook bool "IPv6: multicast routing" 259f9ceb16eSKees Cook depends on IPV6 2606853f21fSYuval Mintz select IP_MROUTE_COMMON 261a7f7f624SMasahiro Yamada help 262a9f71d0dSGeorg Hofmann Support for IPv6 multicast forwarding. 2637bc570c8SYOSHIFUJI Hideaki If unsure, say N. 2647bc570c8SYOSHIFUJI Hideaki 265d1db275dSPatrick McHardyconfig IPV6_MROUTE_MULTIPLE_TABLES 266d1db275dSPatrick McHardy bool "IPv6: multicast policy routing" 267d1db275dSPatrick McHardy depends on IPV6_MROUTE 268d1db275dSPatrick McHardy select FIB_RULES 269d1db275dSPatrick McHardy help 270d1db275dSPatrick McHardy Normally, a multicast router runs a userspace daemon and decides 271d1db275dSPatrick McHardy what to do with a multicast packet based on the source and 272d1db275dSPatrick McHardy destination addresses. If you say Y here, the multicast router 273d1db275dSPatrick McHardy will also be able to take interfaces and packet marks into 274d1db275dSPatrick McHardy account and run multiple instances of userspace daemons 275d1db275dSPatrick McHardy simultaneously, each one handling a single table. 276d1db275dSPatrick McHardy 277d1db275dSPatrick McHardy If unsure, say N. 278d1db275dSPatrick McHardy 27914fb64e1SYOSHIFUJI Hideakiconfig IPV6_PIMSM_V2 280f9ceb16eSKees Cook bool "IPv6: PIM-SM version 2 support" 28114fb64e1SYOSHIFUJI Hideaki depends on IPV6_MROUTE 282a7f7f624SMasahiro Yamada help 28314fb64e1SYOSHIFUJI Hideaki Support for IPv6 PIM multicast routing protocol PIM-SMv2. 28414fb64e1SYOSHIFUJI Hideaki If unsure, say N. 28514fb64e1SYOSHIFUJI Hideaki 28646738b13SDavid Lebrunconfig IPV6_SEG6_LWTUNNEL 28746738b13SDavid Lebrun bool "IPv6: Segment Routing Header encapsulation support" 28846738b13SDavid Lebrun depends on IPV6 28946738b13SDavid Lebrun select LWTUNNEL 290402a5bc4SDavid Lebrun select DST_CACHE 291d7a669ddSDavid Lebrun select IPV6_MULTIPLE_TABLES 292a7f7f624SMasahiro Yamada help 29346738b13SDavid Lebrun Support for encapsulation of packets within an outer IPv6 29446738b13SDavid Lebrun header and a Segment Routing Header using the lightweight 295d1df6fd8SDavid Lebrun tunnels mechanism. Also enable support for advanced local 296d1df6fd8SDavid Lebrun processing of SRv6 packets based on their active segment. 29746738b13SDavid Lebrun 29846738b13SDavid Lebrun If unsure, say N. 29946738b13SDavid Lebrun 300bf355b8dSDavid Lebrunconfig IPV6_SEG6_HMAC 301bf355b8dSDavid Lebrun bool "IPv6: Segment Routing HMAC support" 302bf355b8dSDavid Lebrun depends on IPV6 303095928e7SEric Biggers select CRYPTO_LIB_SHA1 304095928e7SEric Biggers select CRYPTO_LIB_SHA256 305095928e7SEric Biggers select CRYPTO_LIB_UTILS 306a7f7f624SMasahiro Yamada help 307bf355b8dSDavid Lebrun Support for HMAC signature generation and verification 308bf355b8dSDavid Lebrun of SR-enabled packets. 309bf355b8dSDavid Lebrun 310bf355b8dSDavid Lebrun If unsure, say N. 311bf355b8dSDavid Lebrun 312fe94cc29SMathieu Xhonneuxconfig IPV6_SEG6_BPF 313fe94cc29SMathieu Xhonneux def_bool y 314fe94cc29SMathieu Xhonneux depends on IPV6_SEG6_LWTUNNEL 315fe94cc29SMathieu Xhonneux depends on IPV6 = y 316fe94cc29SMathieu Xhonneux 317a7a29f9cSAlexander Aringconfig IPV6_RPL_LWTUNNEL 318a7a29f9cSAlexander Aring bool "IPv6: RPL Source Routing Header support" 319a7a29f9cSAlexander Aring depends on IPV6 320a7a29f9cSAlexander Aring select LWTUNNEL 32193c21077SThomas Weißschuh select DST_CACHE 322a7f7f624SMasahiro Yamada help 323a7a29f9cSAlexander Aring Support for RFC6554 RPL Source Routing Header using the lightweight 324a7a29f9cSAlexander Aring tunnels mechanism. 325a7a29f9cSAlexander Aring 326a7a29f9cSAlexander Aring If unsure, say N. 327a7a29f9cSAlexander Aring 3283edede08SJustin Iurmanconfig IPV6_IOAM6_LWTUNNEL 3293edede08SJustin Iurman bool "IPv6: IOAM Pre-allocated Trace insertion support" 3303edede08SJustin Iurman depends on IPV6 3313edede08SJustin Iurman select LWTUNNEL 3328cb3bf8bSJustin Iurman select DST_CACHE 3333edede08SJustin Iurman help 3348cb3bf8bSJustin Iurman Support for the insertion of IOAM Pre-allocated Trace 3358cb3bf8bSJustin Iurman Header using the lightweight tunnels mechanism. 3363edede08SJustin Iurman 3373edede08SJustin Iurman If unsure, say N. 3383edede08SJustin Iurman 3390b18542bSJan Engelhardtendif # IPV6 340