ipsec.conf: conn Reference » History » Version 87

Tobias Brunner, 23.03.2017 18:28

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{{title(ipsec.conf: conn Reference)}}
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h1. ipsec.conf: conn <name>
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h2. General Connection Parameters
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_aaa_identity = <id>_
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p((. defines the identity of the AAA backend used during IKEv2 EAP authentication. This is required if
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     the EAP client uses a method that verifies the server identity (such as EAP-TLS), but it does not
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     match the IKEv2 gateway identity.
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_ah = <cipher suites>_
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p((. comma-separated list of AH algorithms to be used for the connection, e.g. _sha1-sha256-modp1024_.
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     The notation is integrity[-dhgroup]. For IKEv2, multiple algorithms (separated by -) of the same type
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     can be included in a single proposal. IKEv1 only includes the first algorithm in a proposal.
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     Only either the *ah* or the *esp* keyword may be used, AH+ESP bundles are not supported.
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p((. There is no default AH cipher suite since by default ESP is used. The daemon adds its extensive default
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     proposal to the configured value. To restrict it to the configured proposal an exclamation mark (!) can
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     be added at the end.
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     *Note:* As a responder, the daemon defaults to selecting the first configured proposal that's also
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     supported by the peer. By disabling _charon.prefer_configured_proposals_ in [[strongswan.conf]] this may
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     be changed to selecting the first acceptable proposal sent by the peer instead.
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     In order to restrict a responder to only accept specific cipher suites, the strict flag (!, exclamation mark)
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     can be used, e.g: sha256-sha512-modp2048!
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p((. If dh-group is specified, CHILD_SA/Quick Mode setup and rekeying include a separate Diffe-Hellman
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     exchange (refer to _esp_ for details).
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p((. Refer to [[IKEv1CipherSuites]] and [[IKEv2CipherSuites]] for a list of valid keywords.
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p((. Available since [[5.1.1]].
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_aggressive = yes | *no*_
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p((. whether to use IKEv1 Aggressive or Main Mode (the default). Available since [[5.0.0]].
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_also = <name>_
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p((. includes conn section <name>. Some aspects of this changed with version:5.2.0 (refer to [[IpsecConf#Reusing-Existing-Parameters]] for details).
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_authby = *pubkey* | rsasig | ecdsasig | psk | secret | xauthrsasig | xauthpsk | never_
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p((. how the two security gateways should authenticate each other; acceptable values are *secret* or *psk*
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     for pre-shared secrets, *pubkey* (the default) for public key signatures as well as the synonyms *rsasig*
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     for RSA digital signatures and *ecdsasig* for Elliptic Curve DSA signatures.
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     *never*  can be used if negotiation is never to be attempted or accepted (useful for shunt-only conns).
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     Digital signatures are superior in every way to shared secrets. IKEv1 additionally supports the values
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     *xauthpsk* and *xauthrsasig* that will enable _eXtended Authentication (XAuth)_ in addition to IKEv1 main
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     mode based on shared secrets or digital RSA signatures,  respectively.
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     This parameter is deprecated for IKEv2 connections (and IKEv1 connections since [[5.0.0]]), as two peers
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     do not need to agree on an authentication method. Use the _left|rightauth_ parameter instead to define
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     authentication methods.
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_auto = *ignore* | add | route | start_
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p((. what operation, if any, should be done automatically at IPsec startup. *add* loads a connection without
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     starting it. *route* loads a connection and installs kernel traps. If traffic is detected between
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     _leftsubnet_ and _rightsubnet_, a connection is established. *start* loads a connection and brings
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     it up immediately. *ignore* ignores the connection. This is equal to deleting a connection from the config
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     file. Relevant only locally, other end need not agree on it.
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_closeaction = *none* | clear | hold | restart_
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p((. defines the action to take if the remote peer unexpectedly closes a CHILD_SA (see _dpdaction_ for
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     meaning of values). A _closeaction_ should not be used if the peer uses reauthentication or uniqueids checking,
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     as these events might trigger the defined action when not desired. Prior to version:5.1.0, _closeaction_ was 
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     not supported for IKEv1 connections.
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_compress = yes | *no*_
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p((. whether IPComp compression of content is proposed on the connection (link-level compression does not work on
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     encrypted data, so to be effective, compression must be done before encryption). A value of *yes* causes the daemon
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     to propose both compressed and  uncompressed, and  prefer compressed. A value of *no* prevents the daemon from proposing or accepting compression.
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_dpdaction = *none* | clear | hold | restart_
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p((. controls the use of the Dead Peer Detection protocol (DPD, RFC 3706) where R_U_THERE notification messages
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     (IKEv1) or empty INFORMATIONAL messages (IKEv2) are periodically sent in order to check the liveliness of the
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     IPsec peer. The values *clear*, *hold*, and *restart* all activate DPD and determine the action to perform on a timeout.
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     With *clear* the connection is closed with no further actions taken. *hold* installs a trap policy, which will catch
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     matching traffic and tries to re-negotiate the connection on demand. *restart* will immediately trigger an attempt
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     to re-negotiate the connection. The default is *none* which disables the active sending of DPD messages.
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_dpddelay = *30s* | <time>_
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p((. defines  the  period time interval with which R_U_THERE messages/INFORMATIONAL exchanges are sent to the peer.
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     These are only sent if no other traffic is received. In IKEv2, a value of 0 sends no additional INFORMATIONAL
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     messages and uses only standard messages (such as those to rekey) to detect dead peers.
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_dpdtimeout = *150s* | <time>_
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p((. defines the timeout interval, after which all connections to a peer are deleted in case of inactivity.
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     This only applies to IKEv1, in IKEv2 the default [[Retransmission|retransmission timeout]] applies, as every exchange is used to
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     detect dead peers.
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_inactivity = <time>_
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p((. defines the timeout interval, after which a CHILD_SA is closed if it did not send or receive any traffic.
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     Not supported for IKEv1 connections prior to [[5.0.0]].
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_eap_identity = <id>_
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p((. defines the identity the client uses to reply to an EAP Identity request. If defined on the EAP server, the defined
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     identity  will be used as peer identity during EAP authentication. The special value _%identity_ uses the EAP Identity method
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     to ask the client for a EAP identity. If not defined, the IKEv2 identity will be used as EAP identity.
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_esp = <cipher suites>_
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p((. comma-separated list of ESP encryption/authentication algorithms to be used for the connection, e.g.
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     _aes128-sha256_. The notation is _encryption-integrity[-dhgroup][-esnmode]_.
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     For IKEv2, multiple algorithms (separated by -) of the same type can be included in a single proposal.
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     IKEv1 only includes the first algorithm in a proposal.  Only either the *ah* or the *esp* keyword may
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     be used, AH+ESP bundles are not supported.
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p((. Defaults to *aes128-sha256* (_aes128-sha1,3des-sha1_ before version:5.4.0). The daemon adds its extensive default
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     proposal to this default or the configured value. To restrict it to the configured proposal an exclamation mark (*&#33;*)
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     can be added at the end.
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     *Note:* As a responder, the daemon defaults to selecting the first configured proposal that's also
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     supported by the peer. By disabling _charon.prefer_configured_proposals_ in [[strongswan.conf]] this may
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     be changed to selecting the first acceptable proposal sent by the peer instead.
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     In order to restrict a responder to only accept specific cipher suites, the strict flag (*&#33;*, exclamation mark)
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     can be used, e.g: _aes256-sha512-modp4096!_
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p((. If _dh-group_ is specified, CHILD_SA rekeying and initial negotiation include a separate Diffe-Hellman
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     exchange (since [[5.0.0]] this also applies to IKEv1 Quick Mode). However, for IKEv2, the keys of the CHILD_SA
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     created implicitly with the IKE_SA will always be derived from the IKE_SA's key material. So any DH group
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     specified here will only apply when the CHILD_SA is later rekeyed or is created with a separate CREATE_CHILD_SA
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     exchange.  Therefore, a proposal mismatch might not immediately be noticed when the SA is established,
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     but may later cause rekeying to fail.
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p((. Valid values for _esnmode_ are _esn_ and _noesn_.  Specifying both negotiates extended sequence
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     number support with the peer, the default is *noesn*.
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p((. Refer to [[IKEv1CipherSuites]] and [[IKEv2CipherSuites]] for a list of valid keywords.
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_forceencaps = yes | *no*_
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p((.  force UDP encapsulation for ESP packets even if no NAT situation is detected.
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      This may help to surmount restrictive firewalls. In order to force the peer to
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      encapsulate packets, NAT detection payloads are faked.
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      Not supported for IKEv1 connections prior to [[5.0.0]].
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_fragmentation = *yes* | force | no_
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p((.  whether to use IKE fragmentation (proprietary IKEv1 extension or IKEv2 fragmentation as per "RFC 7383":
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      Fragmented messages sent by a peer are always accepted irrespective of the value of this option.
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      If set to *yes* (the default since version:5.5.1) and the peer supports it, larger IKE messages will be sent in fragments (the
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      maximum fragment size can be configured in [[strongswan.conf]]). If set to *force* (only supported for IKEv1) the initial
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      IKE message will already be fragmented if required.
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      Available for IKEv1 connections since version:5.0.2 and for IKEv2 connections since version:5.2.1.
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_ike = <cipher suites>_
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p((. comma-separated list of IKE/ISAKMP SA encryption/authentication algorithms to be used, e.g.
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     _aes128-sha256-modp3072_. The notation is _encryption-integrity[-prf]-dhgroup_. In IKEv2, multiple algorithms
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     and proposals may be included, such as _aes128-aes256-sha1-modp3072-modp2048,3des-sha1-md5-modp1024_.
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p((. The ability to configure a PRF algorithm different to that defined for integrity protection was added with [[5.0.2]].
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     If no PRF is configured, the algorithms defined for integrity are proposed as PRF.  The prf keywords are the same as
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     the integrity algorithms, but have a _prf_ prefix (such as _prfsha1_, _prfsha256_ or _prfaesxcbc_).
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p((. Defaults to *aes128-sha256-modp3072* (_aes128-sha1-modp2048,3des-sha1-modp1536_ before version:5.4.0) for IKEv1.
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     The daemon adds its extensive default proposal to this default or the configured value. To restrict it to the
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     configured proposal an exclamation mark (*&#33;*) can be added at the end.
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     Refer to [[IKEv1CipherSuites]] and [[IKEv2CipherSuites]] for a list of valid keywords.
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p((. *Note*: As a responder both daemons accept the first supported proposal received from the peer. In order
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     to restrict a responder to only accept specific cipher suites, the strict flag (*&#33;*, exclamation mark)
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     can be used, e.g: _aes256-sha512-modp4096!_
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_ikedscp = *000000* | <DSCP field>_
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p((. Differentiated Services Field Codepoint to set on outgoing IKE packets sent
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     from this connection. The value is a six digit binary encoded string defining
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     the Codepoint to set, as defined in "RFC 2474":
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_ikelifetime = *3h* | <time>_
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p((. how long the keying channel of a connection (_ISAKMP or IKE SA_) should last before being renegotiated.
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     Also see [[ExpiryRekey|Expiry and Rekey]].
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_installpolicy = *yes* | no_
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p((. decides whether IPsec policies are installed in the kernel by the charon daemon for a given connection.
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     Allows peaceful cooperation e.g. with the Mobile IPv6  _mip6d_ daemon who wants to control the kernel policies.
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_keyexchange = *ike* | ikev1 | ikev2_
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p((. method of key exchange; which protocol should be used to initialize the connection.
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     Prior to [[5.0.0]] connections marked with *ikev1*  were initiated with Pluto, those marked with *ikev2* with Charon.
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     An incoming request from the remote peer was handled by the correct daemon, unaffected from the _keyexchange_ setting.
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     Starting with strongSwan [[4.5.0]] the default value *ike* is a synonym for *ikev2*, whereas in older strongSwan releases *ikev1* was assumed.
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     Since [[5.0.0]] both protocols are handled by Charon and connections marked with *ike* will use IKEv2 when initiating, but accept any protocol version when responding.
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_keyingtries = *3* | <number> | %forever_
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p((. how  many attempts (a positive integer or _%forever_) should be made to negotiate a connection, or a replacement
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     for one, before giving up (default 3). The value _%forever_ means 'never give up'.  Relevant  only  locally, other end need
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     not agree on it.
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p((. synonym for _lifetime_.
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_lifebytes = <number>_
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p((. the number of bytes transmitted over an IPsec SA before it expires. Not supported for IKEv1 connections prior to [[5.0.0]].
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_lifepackets = <number>_
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p((. the number of packets transmitted over an IPsec SA before it expires. Not supported for IKEv1 connections prior to [[5.0.0]].
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_lifetime = *1h* | <time>_
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p((. how  long  a  particular  instance  of a connection (a set of encryption/authentication keys for user packets)
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     should last, from successful negotiation to expiry; acceptable values are an integer optionally followed by
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     _s_ (a time in seconds) or a decimal number followed by _m_, _h_, or _d_ (a time in minutes, hours,
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     or days respectively) (default _1h_, maximum _24h_).  Normally, the connection is renegotiated (via the
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     keying  channel) before it expires (see _margintime_).  The two ends need not exactly agree on _lifetime_, although if they
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     do not, there will be some clutter of superseded connections on the end which thinks the lifetime is longer.
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     Also see [[ExpiryRekey|Expiry and Rekey]].
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_marginbytes = <number>_
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p((. how many bytes before IPsec SA expiry (see _lifebytes_) should attempts to negotiate a replacement begin.
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_marginpackets = <number>_
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p((. how many packets before IPsec SA expiry (see _lifepackets_) should attempts to negotiate a replacement begin.
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_margintime = *9m* | <time>_
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p((. how long before connection expiry or keying-channel expiry should attempts to negotiate a replacement begin; acceptable values
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     as for _lifetime_ (default _9m_).  Relevant only locally, other end need not agree on it. Also see [[ExpiryRekey|Expiry and Rekey]].
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_mark = <value>[/<mask>]_
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p((. sets  an XFRM mark in the inbound and outbound IPsec SAs and policies. If the mask is missing then
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     a default mask of *0xffffffff* is assumed. Since version:5.3.0 the special value *%unique* assigns a unique
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     value to each newly created IPsec SA (used e.g. in combination with the [[forecast]] or [[connmark]] plugins).
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_mark_in = <value>[/<mask>]_
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p((. sets an XFRM mark in the inbound IPsec SA and policy. If the mask is missing then
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     a default mask of *0xffffffff* is assumed.
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_mark_out = <value>[/<mask>]_
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p((. sets an XFRM mark in the outbound IPsec SA and policy. If the mask is missing then
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     a default mask of *0xffffffff* is assumed.
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_mobike = *yes* | no_
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p((. enables the IKEv2 [[MobIke|MOBIKE]] protocol defined by RFC 4555. If set to *no*, the charon
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     daemon will not actively propose [[MobIke|MOBIKE]] as initiator and ignore the MOBIKE_SUPPORTED
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     notify as responder.
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_modeconfig = push | *pull*_
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p((. defines which mode is used to assign a virtual IP. Currently relevant for IKEv1 only since IKEv2 always uses
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     the configuration payload in *pull* mode. Cisco VPN gateways usually operate in *push* mode.
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     In versions prior to [[5.1.1]] the charon daemon did not support *push* mode.
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     This setting must be the same on both sides.
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_reauth = *yes* | no_
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p((. whether rekeying of an IKE_SA should also reauthenticate the peer. In IKEv1, reauthentication is always done.
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     In  IKEv2, a value of *no* rekeys without uninstalling the IPsec SAs, a value of *yes* (the default)
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     creates a new IKE_SA from scratch and tries to recreate all IPsec SAs.
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_rekey = *yes* | no_
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p((. whether a connection should be renegotiated when it is about to expire. The two ends need not agree, but
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     while a value of no prevents the daemon from requesting renegotiation, it does not prevent responding
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     to renegotiation requested from the other end, so no will be largely ineffective unless both ends agree on it.
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     Also see _reauth_.
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_rekeyfuzz = *100%* | <percentage>_
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p((. maximum percentage by which _marginbytes_, _marginpackets_ and _margintime_ should be randomly increased to randomize
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     rekeying intervals (important for hosts with many connections); acceptable values are an integer, which may exceed 100,
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     followed  by  a '%' .
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     The value of _marginTYPE_, after this random increase, must not exceed _lifeTYPE_ (where TYPE is one of bytes, packets or time).
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     The value _0%_ will suppress randomization. Relevant only locally, other end need not agree on it.
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     Also see [[ExpiryRekey|Expiry and Rekey]].
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p((.  synonym for _margintime_.
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_replay_window = -1 | <number>_
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p((. The  IPsec  replay  window  size  for  this connection. With the default of -1 the value configured with _charon.replay_window_  in
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     [[strongswan.conf]]  is used. Larger values than 32 are supported using the Netlink backend only, a  value  of  0  disables  IPsec
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     replay protection. Available since [[5.2.0]].
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_reqid = <number>_
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p((. sets the reqid for a given connection to a pre-configured fixed value.
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_tfc = <value>_
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p((. number of bytes to pad ESP payload data to. Traffic Flow Confidentiality is currently supported in IKEv2 and applies to outgoing packets only. The special value %mtu fills up ESP packets with padding to have the size of the MTU.
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_type = *tunnel* | transport | transport_proxy | passthrough | drop_
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p((. the type of the connection; currently the accepted values are *tunnel*, signifying a  host-to-host,
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     host-to-subnet, or subnet-to-subnet tunnel; *transport*, signifying host-to-host transport mode;
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     *transport_proxy*, signifying the special Mobile IPv6 transport proxy mode;
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     *passthrough*, signifying that no IPsec processing should be done at all; *drop*, signifying that packets
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     should be  discarded.
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_xauth = *client* | server_
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p((. specifies the role in the XAuth protocol if activated by _authby=xauthpsk_ or _authby=xauthrsasig_.
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_xauth_identity = <id>_
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p((. defines the identity/username the client uses to reply to an XAuth request. If not defined, the IKEv1 identity will be used as XAuth identity.
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h2. left|right End Parameters
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Connection descriptions are defined in terms of a left endpoint and a right endpoint. For example, the
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two parameters leftid and rightid specify the identity of the left and the right endpoint. For every
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connection description an attempt is made to figure out whether the local endpoint should act as the left or
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the right endpoint. This is done by matching the IP addresses defined for both endpoints with the
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IP addresses assigned to local network interfaces. If a match is found then the role (left or right) that
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matches is going to be considered "local". If no match is found during startup, "left" is considered "local".
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_left|right = <ip address> | <fqdn> | *%any* | range | subnet_
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p((. The IP address of the participant's public-network interface or one of several magic values.
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     The value _%any_ for the local endpoint signifies an address to be filled in
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     (by automatic keying) during negotiation. If the local peer initiates the connection setup the routing table
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     will be queried to determine the correct local IP address. In case the local peer is responding to a connection
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     setup then any IP address that is assigned to a local interface will be accepted.
343 1 Martin Willi
344 58 Tobias Brunner
p((. Prior to [[5.0.0]] specifying _%%any_ for the local endpoint was not supported for IKEv1 connections, instead
345 58 Tobias Brunner
     the keyword _%%defaultroute_ could be used, causing the value to be filled in automatically with the local
346 58 Tobias Brunner
     address of the default-route interface (as determined at IPsec startup time and during configuration
347 57 Tobias Brunner
     update). Either left or right may be _%defaultroute_, but not both.
348 57 Tobias Brunner
349 1 Martin Willi
p((. The prefix % in front of a fully-qualified domain name or an IP address will implicitly set _left|rightallowany=yes_.
350 1 Martin Willi
351 1 Martin Willi
p((. If _%any_ is used for the remote endpoint it literally means any IP address.
352 70 Tobias Brunner
353 86 Tobias Brunner
p((. If an FQDN is assigned it is resolved every time a configuration lookup is done. If DNS resolution times out,
354 86 Tobias Brunner
     the lookup is delayed for that time.
355 86 Tobias Brunner
356 70 Tobias Brunner
p((. Since [[5.1.1]] connections can be limited to a specific range of hosts. To do so a range (
357 70 Tobias Brunner
     or a subnet ( can be specified, and multiple addresses, ranges and subnets can be separated by commas.
358 70 Tobias Brunner
     While one can freely combine these items, to initiate the connection at least one non-range/subnet is required.
359 1 Martin Willi
360 31 Martin Willi
p((. Please note that with the usage of wildcards multiple connection descriptions might match a given incoming
361 33 Tobias Brunner
     connection attempt. The most specific description is used in that case.
362 33 Tobias Brunner
363 33 Tobias Brunner
_left|rightallowany = yes | *no*_
364 1 Martin Willi
365 29 Daniel Mentz
p((. a modifier for _left|right_, making it behave as _%any_ although a concrete IP address has been
366 1 Martin Willi
     assigned. Recommended for dynamic IP addresses that can be resolved by DynDNS at IPsec startup or update time.
367 1 Martin Willi
368 1 Martin Willi
_left|rightauth = <auth method>_
369 1 Martin Willi
370 1 Martin Willi
p((. Authentication method to use locally (left) or require from the remote (right) side. Acceptable values are *pubkey*
371 1 Martin Willi
     for public key encryption (RSA/ECDSA), *psk* for pre-shared key authentication, *eap* to [require the] use of the Extensible Authentication Protocol, and *xauth* for IKEv1 eXtended Authentication.
372 1 Martin Willi
373 1 Martin Willi
p((. To require a trustchain public key strength for the remote side, specify the key type followed
374 1 Martin Willi
     by the minimum strength in bits (for example *ecdsa-384* or *rsa-2048-ecdsa-256*).
375 75 Tobias Brunner
     To limit the acceptable set of hashing algorithms for trustchain validation, append hash algorithms
376 75 Tobias Brunner
     to *pubkey* or a key strength definition (for example *pubkey-sha1-sha256* or *rsa-2048-ecdsa-256-sha256-sha384-sha512*).
377 82 Tobias Brunner
     Since version:5.3.0 and unless disabled in [[strongswan.conf]], or explicit IKEv2 signature constraints are
378 82 Tobias Brunner
     configured (see below), such key types and hash algorithms are also applied as constraints against IKEv2 signature
379 82 Tobias Brunner
     authentication schemes used by the remote side.
380 1 Martin Willi
381 1 Martin Willi
p((. Since version:5.3.0 and if both peers support "RFC 7427": ("Signature  Authentication in IKEv2") specific hash
382 82 Tobias Brunner
     algorithms to be used during IKEv2 authentication may be configured. The syntax is the same as above,
383 82 Tobias Brunner
     but with _ike:_ prefix (before version:5.4.0 without that prefix).
384 82 Tobias Brunner
     For  example, with _ike:pubkey-sha384-sha256_ a public key signature scheme with either SHA-384 or SHA-256
385 75 Tobias Brunner
     would get used for authentication, in that order and depending on the hash algorithms supported by the peer.
386 75 Tobias Brunner
     If no specific hash algorithms are  configured, the default is to prefer an algorithm that matches or exceeds
387 75 Tobias Brunner
     the strength of the signature key.
388 82 Tobias Brunner
     If no constraints with _ike:_ prefix are configured any signature scheme constraint (without _ike:_ prefix) will
389 82 Tobias Brunner
     also apply to IKEv2 authentication, unless this is disabled in [[strongswan.conf]] (this is also the behavior before
390 82 Tobias Brunner
     version:5.4.0, which introduced the _ike:_ prefix).
391 75 Tobias Brunner
392 75 Tobias Brunner
p((. In the case of *eap*, an optional EAP method can be appended. Currently defined methods are *eap-aka*,
393 1 Martin Willi
     *eap-gtc*, *eap-md5*, *eap-mschapv2*, *eap-peap*, *eap-sim*, *eap-tls*, *eap-ttls*, *eap-dynamic*, and *eap-radius*.
394 75 Tobias Brunner
     Alternatively, IANA assigned EAP method numbers are accepted. Vendor specific EAP methods are defined
395 75 Tobias Brunner
     in the form *eap-type-vendor* (e.g. *eap-7-12345*).
396 75 Tobias Brunner
     Since version:5.3.0 signature and trust chain constraints for EAP-(T)TLS may be defined.  To do so, append a
397 75 Tobias Brunner
     colon to the EAP method, followed by the key type/size and hash algorithm as discussed above.
398 75 Tobias Brunner
     For *xauth*, an XAuth authentication backend can be specified, such as *xauth-generic* or *xauth-eap*.
399 75 Tobias Brunner
     If XAuth is used in _leftauth_, Hybrid authentication is used. For traditional XAuth authentication, define XAuth in _leftauth2_.
400 1 Martin Willi
401 57 Tobias Brunner
p((. Not supported for IKEv1 connections prior to [[5.0.0]].
402 27 Daniel Mentz
403 33 Tobias Brunner
404 58 Tobias Brunner
_left|rightauth2 = <auth method>_
405 58 Tobias Brunner
406 58 Tobias Brunner
p((. Same as _left|rightauth_, but defines an additional authentication exchange. In IKEv1, only XAuth can be used
407 57 Tobias Brunner
     in the second authentication round. IKEv2 supports multiple complete authentication rounds using
408 66 Andreas Steffen
     _Multiple Authentication Exchanges_ defined in "RFC 4739": This allows e.g. a separate authentication of host and user.
409 7 Martin Willi
410 31 Martin Willi
p((. Not supported for IKEv1 connections prior to [[5.0.0]].
411 57 Tobias Brunner
412 23 Tobias Brunner
413 57 Tobias Brunner
_left|rightca = <issuer dn> | %same_
414 57 Tobias Brunner
415 58 Tobias Brunner
p((. the distinguished name of a certificate authority which is required to lie in the trust path going from the
416 56 Andreas Steffen
     _left|right_ participant's certificate up to the root certification authority.
417 1 Martin Willi
     *%same* means that the value configured for the other participant should be reused.
418 56 Andreas Steffen
419 23 Tobias Brunner
_left|rightca2 = <issuer dn> | %same_
420 21 Andreas Steffen
421 1 Martin Willi
p((. Same as _left|rightca_ but for the second authentication (IKev2 only).
422 1 Martin Willi
423 1 Martin Willi
_left|rightcert = <path>_
424 1 Martin Willi
425 23 Tobias Brunner
p((. the path to the left|right participant's X.509 certificate. The file can be coded either in PEM or DER format.
426 58 Tobias Brunner
     OpenPGP certificates are supported as well.  Both absolute paths or paths relative to
427 58 Tobias Brunner
     [[IpsecDirectoryCerts|/etc/ipsec.d/certs]] are accepted. By default _left|rightcert_ sets _left|rightid_
428 31 Martin Willi
     to the distinguished name of the certificate's subject. The _left|right_ participant's ID can be overridden
429 61 Tobias Brunner
     by specifying a _left|rightid_ value which must be certified by the certificate, though.
430 61 Tobias Brunner
431 61 Tobias Brunner
p((. Since [[5.0.2]] certificates can be configured in the form _%smartcard[<slot nr>[@<module>]]:<keyid>_, which
432 61 Tobias Brunner
     defines a specific certificate to load from a PKCS#11 backend for this connection (e.g. via the [[PKCS11Plugin|pkcs11 plugin]]).
433 61 Tobias Brunner
     See [[PinSecret|ipsec.secrets]] for details about smartcard definitions.
434 61 Tobias Brunner
     Defining a certificate on a smartcard with _left|rightcert_ is only required if the automatic selection via _left|rightid_
435 64 Tobias Brunner
     is not sufficient, for example, if multiple certificates use the same subject.
436 64 Tobias Brunner
437 64 Tobias Brunner
p((. Since [[5.0.3]] multiple certificate paths or PKCS#11 backends can be specified in a comma separated list.
438 64 Tobias Brunner
     The daemon chooses the certificate based on the received certificate requests, if possible, before enforcing
439 23 Tobias Brunner
     the first.
440 23 Tobias Brunner
441 57 Tobias Brunner
_left|rightcert2 = <path>_
442 21 Andreas Steffen
443 1 Martin Willi
p((. Same as _left|rightcert_ but for the second authentication round (IKEv2 only).
444 33 Tobias Brunner
445 7 Martin Willi
_left|rightcertpolicy = <OIDs>_
446 66 Andreas Steffen
447 1 Martin Willi
p((. Comma separated list of certificate policy OIDs the peer's certificate must have.
448 58 Tobias Brunner
     OIDs are specified using the numerical dotted representation. Not supported for IKEv1 connections prior to [[5.0.0]].
449 58 Tobias Brunner
450 58 Tobias Brunner
_left|rightdns = <servers>_
451 58 Tobias Brunner
452 58 Tobias Brunner
p((. Comma separated list of DNS server addresses to exchange as configuration attributes. On the initiator,
453 58 Tobias Brunner
     a server is a fixed IPv4/IPv6 address, or _%config4/%config6_ to request attributes without an address.
454 58 Tobias Brunner
     On the responder, only fixed IPv4/IPv6 addresses are allowed and define DNS servers assigned to the client.
455 1 Martin Willi
     Available since [[5.0.1]].
456 23 Tobias Brunner
457 1 Martin Willi
_left|rightfirewall = yes | *no*_
458 1 Martin Willi
459 1 Martin Willi
p((. whether the _left|right_ participant is doing forwarding-firewalling (including  masquerading)
460 1 Martin Willi
     using iptables for traffic from _left|rightsubnet_, which should be turned off for traffic to the
461 1 Martin Willi
     other subnet) once the connection is established. May not be used in the same connection description with
462 1 Martin Willi
     _left|rightupdown_. Implemented as a parameter to the default _ipsec _updown_ script. Relevant only
463 1 Martin Willi
     locally, other end need not agree on it.
464 23 Tobias Brunner
465 20 Andreas Steffen
p((. If one or  both security gateways are doing forwarding firewalling (possibly including masquerading),
466 23 Tobias Brunner
     and this is specified using the firewall parameters, tunnels  established with  IPsec  are exempted from
467 57 Tobias Brunner
     it so that packets can flow unchanged through the tunnels. (This means that all subnets connected in this
468 1 Martin Willi
     manner must have distinct, non-overlapping subnet address blocks.)  This is done by the default 
469 1 Martin Willi
     _ipsec _updown_ script.
470 1 Martin Willi
471 1 Martin Willi
p((. In situations calling for more control, it may be preferable for the user to supply his own _updown_ script,
472 1 Martin Willi
     which makes the appropriate adjustments for his system.
473 1 Martin Willi
474 31 Martin Willi
_left|rightgroups = <group list>_
475 58 Tobias Brunner
476 58 Tobias Brunner
p((. a comma-separated list of group names. If the _left|rightgroups_ parameter is present then the peer must
477 57 Tobias Brunner
     be a member of at least one of the groups defined by the parameter. Groups may be used together with the
478 58 Tobias Brunner
     [[EapRadius#Group-selection|eap-radius]] plugin.
479 1 Martin Willi
480 58 Tobias Brunner
_left|rightgroups2 = <group list>_
481 58 Tobias Brunner
482 58 Tobias Brunner
p((. Same as _left|rightgroups_ but for the second authentication round defined with _left|rightauth2_.
483 1 Martin Willi
     Available since [[5.0.1]].
484 1 Martin Willi
485 1 Martin Willi
_left|righthostaccess = yes | *no*_
486 1 Martin Willi
487 1 Martin Willi
p((. inserts a pair of INPUT and OUTPUT iptables rules using the default _ipsec _updown_ script,
488 33 Tobias Brunner
     thus allowing access to the host itself in the case where the host's internal interface is part
489 23 Tobias Brunner
     of the negotiated client subnet. 
490 57 Tobias Brunner
491 73 Tobias Brunner
_left|rightid = <id>_
492 73 Tobias Brunner
493 79 Tobias Brunner
p((. how the _left|right_ participant should be identified for authentication; defaults to _left|right_ or the subject of the
494 79 Tobias Brunner
     certificate configured with _left|rightcert_.  If _left|rightcert_ is configured the identity has to be confirmed by the
495 79 Tobias Brunner
     certificate, that is, it has to match the full subject DN or one of the subjectAltName extensions contained in the
496 79 Tobias Brunner
497 1 Martin Willi
498 79 Tobias Brunner
p((. Can be an IP address, a fully-qualified domain name, an email address or a Distinguished Name for which the
499 79 Tobias Brunner
     ID type is determined automatically and the string is converted to the appropriate encoding. The rules for this
500 79 Tobias Brunner
     conversion are described on [[IdentityParsing]].  In versions before [[5.0.0]] fully-qualified domain names can be
501 79 Tobias Brunner
     preceded by an @ to avoid them being resolved to an IP address.
502 73 Tobias Brunner
503 79 Tobias Brunner
p((. In certain special situations the identity parsing above might be inadequate or produce the wrong result.
504 79 Tobias Brunner
     Examples are the need to encode a FQDN as KEY_ID or the string parser being unable to produce the correct
505 79 Tobias Brunner
     binary ASN.1 encoding of a certificate's DN. For these situations it is possible since version:5.2.2 to enforce a specific
506 79 Tobias Brunner
     identity type and to provide the binary encoding of the identity.  To do this a prefix may be used, followed by a
507 79 Tobias Brunner
     colon (:). If the number sign (#) follows the colon, the remaining data is interpreted as hex encoding, otherwise
508 79 Tobias Brunner
     the string is used as is as the identification data. *Note:* The latter implies that no conversion is performed for
509 79 Tobias Brunner
     non-string identities. For example, _ipv4: does not create a valid ID_IPV4_ADDR IKE identity, as it does not
510 79 Tobias Brunner
     get converted to binary 0x0a000001. Instead, one could use _ipv4:#0a000001_ to get a valid identity, but just using
511 79 Tobias Brunner
     the implicit type with [[IdentityParsing|automatic conversion]] is usually simpler. The same applies to the ASN.1 encoded types.
512 58 Tobias Brunner
     The following prefixes are known: _ipv4, ipv6, rfc822, email, userfqdn, fqdn, dns, asn1dn, asn1gn_ and _keyid_.
513 58 Tobias Brunner
     Custom type prefixes may be specified by surrounding the numerical type value with curly brackets.
514 58 Tobias Brunner
515 58 Tobias Brunner
p((. Since [[5.0.1]] _rightid_ for IKEv2 connections optionally takes a % as prefix in front of the identity.
516 58 Tobias Brunner
     If given it prevents the daemon from sending IDr in its IKE_AUTH request and will allow it to verify the 
517 58 Tobias Brunner
     configured identity against the subject and subjectAltNames contained in the responder's certificate (otherwise,
518 33 Tobias Brunner
     it is only compared with the IDr returned by the responder). The IDr sent by the initiator might otherwise 
519 7 Martin Willi
     prevent the responder from finding a config if it has configured a different value for _leftid_.
520 23 Tobias Brunner
521 23 Tobias Brunner
_left|rightid2 = <id>_
522 21 Andreas Steffen
523 1 Martin Willi
p((. Identity to use for the second authentication of the left participant (IKEv2 only).
524 1 Martin Willi
     Defaults to _left|rightid_.
525 1 Martin Willi
526 1 Martin Willi
_leftikeport = <port>_
527 58 Tobias Brunner
528 58 Tobias Brunner
p((. UDP port the left participant uses for IKE communication. If unspecified, port 500 is used with the port
529 63 Tobias Brunner
     floating to 4500 if a NAT is detected or MOBIKE is enabled.
530 63 Tobias Brunner
     Specifying a local IKE port different from the default additionally requires a socket implementation that
531 63 Tobias Brunner
     listens to this port. Not supported for IKEv1 connections prior to [[5.0.0]].
532 70 Tobias Brunner
533 70 Tobias Brunner
_left|rightprotoport = <protocol>/<port>_
534 67 Tobias Brunner
535 1 Martin Willi
p((. restrict the traffic selector to a single protocol and/or port.  Since [[5.1.0]] this option is deprecated
536 1 Martin Willi
     as protocol/port information can be defined for each subnet directly in _left|rightsubnet_.
537 67 Tobias Brunner
538 67 Tobias Brunner
_left|rightrsasigkey = <raw rsa public key> | <path to public key>_
539 72 Tobias Brunner
540 1 Martin Willi
p((. Since [[5.1.0]] a synonym for _left|rightsigkey_. Before that it denoted the left|right participant's public key
541 67 Tobias Brunner
for RSA signature authentication, in RFC 2537 format using hex (0x prefix) or base64 (0s prefix) encoding.
542 67 Tobias Brunner
Also accepted was the path to a file containing the public key in PEM or DER encoding.
543 72 Tobias Brunner
544 1 Martin Willi
_left|rightsigkey = <raw public key> | <path to public key>_
545 72 Tobias Brunner
546 67 Tobias Brunner
p((. Added with [[5.1.0]]. The left|right participant's public key for public key signature authentication, in PKCS#1
547 72 Tobias Brunner
format using  using hex (0x prefix) or base64 (0s prefix) encoding. With the optional _dns:_ or _ssh:_ prefix in front
548 72 Tobias Brunner
of 0x or 0s, the public key is expected in either the RFC 3110 (not the full RR, only the RSA key part) or
549 1 Martin Willi
RFC 4253 public key format, respectively.
550 1 Martin Willi
Also accepted is the path to a file containing the public key in PEM, DER or SSH encoding. Both absolute paths or
551 1 Martin Willi
paths relative to [[ipsecdirectorycerts|/etc/ipsec.d/certs]] are accepted.
552 58 Tobias Brunner
553 1 Martin Willi
_left|rightsendcert = never | no | *ifasked* | always | yes_
554 58 Tobias Brunner
555 58 Tobias Brunner
p((. Accepted values are *never* or *no*, *always* or *yes*, and *ifasked*, the latter meaning that 
556 58 Tobias Brunner
     the peer must send a certificate request (CR) payload in order to get a certificate in return.
557 58 Tobias Brunner
558 58 Tobias Brunner
_leftsourceip = %config4 | %config6 | <ip address>_
559 31 Martin Willi
560 23 Tobias Brunner
p((. The internal source IP to use in a tunnel, also known as [[VirtualIp|virtual IP]].
561 1 Martin Willi
     If the value is one of the synonyms _%config_, _%cfg_, _%modeconfig_ or _%modecfg_, an address (from
562 57 Tobias Brunner
     the tunnel address family) is requested from the peer.
563 1 Martin Willi
     Since [[5.0.1]] a comma-separated list is accepted to request multiple addresses, and with _%config4_ and
564 1 Martin Willi
     _%config6_ an address of the given address family will be requested explicitly.
565 73 Tobias Brunner
     If an IP address is configured, it will be requested from the responder, which is free to respond with a
566 7 Martin Willi
     different address.
567 23 Tobias Brunner
568 31 Martin Willi
_rightsourceip = %config | <network>/<netmask> | <from>-<to> | %poolname_
569 73 Tobias Brunner
570 73 Tobias Brunner
p((. The internal source IP to use in a tunnel for the remote peer. If the value is %config on the responder
571 1 Martin Willi
     side, the initiator must propose an address which is then echoed back. Also supported are address pools
572 73 Tobias Brunner
     expressed as _<network>/<netmask>_ and _<from>-<to>_ (since version:5.2.2) or the use of an external IP address pool
573 57 Tobias Brunner
     using _%%poolname_ where _poolname_ is the name of the IP address pool used for the lookup (see [[VirtualIp|virtual IP]] for details).
574 67 Tobias Brunner
     Since [[5.0.1]] a comma-separated list of IP addresses / pools is accepted, for instance, to define pools of
575 1 Martin Willi
     different address families.
576 1 Martin Willi
577 1 Martin Willi
_left|rightsubnet = <ip subnet>![[<proto/port>]][,...]_
578 1 Martin Willi
579 57 Tobias Brunner
p((. private subnet behind the left participant, expressed as network/netmask; if omitted, essentially assumed
580 58 Tobias Brunner
     to be _left_/32|128, signifying that the _left|right_ end of the connection goes to the _left|right_ participant only.
581 58 Tobias Brunner
     The configured subnets of the peers may differ, the protocol narrows it to the greatest common subnet.
582 58 Tobias Brunner
     Since [[5.0.0]] this is also done for IKEv1, but as this may lead to problems with other implementations,
583 58 Tobias Brunner
     make sure to configure identical subnets in such configurations.
584 1 Martin Willi
     IKEv2 supports multiple subnets separated by commas, IKEv1 only interprets the first subnet of such a definition,
585 87 Tobias Brunner
     unless the Cisco Unity extension plugin is enabled (available since version:5.0.1).  This is due to a limitation of the IKEv1
586 87 Tobias Brunner
     protocol, which only allows a single pair of subnets per CHILD_SA. So to tunnel several subnets a conn entry has
587 87 Tobias Brunner
     to be defined and brought up for each pair of subnets.
588 70 Tobias Brunner
589 70 Tobias Brunner
p((. Since [[5.1.0]] the optional part after each subnet enclosed in square brackets specifies a protocol/port to restrict
590 70 Tobias Brunner
     the selector for that subnet. *Examples:* leftsubnet=[tcp/http],[6/80] or leftsubnet=fec1::1[udp],[/53].
591 70 Tobias Brunner
     Instead of omitting either value _%any_ can be used to the same effect, e.g. leftsubnet=fec1::1[udp/%any],[%any/53].
592 70 Tobias Brunner
593 67 Tobias Brunner
p((. Since [[5.1.1]], if the protocol is _icmp_ or _ipv6-icmp_ the port is interpreted as ICMP message type if it is less than 256,
594 67 Tobias Brunner
     or as type and code if it greater or equal to 256, with the type in the most significant 8 bits and the code in the
595 67 Tobias Brunner
     least significant 8 bits.
596 67 Tobias Brunner
597 67 Tobias Brunner
p((. The port value can alternatively take the value _%opaque_ for RFC 4301 OPAQUE selectors, or a numerical range
598 67 Tobias Brunner
     in the form 1024-65535. None of the kernel backends currently supports opaque or port ranges and uses _%any_
599 67 Tobias Brunner
     for policy installation instead.
600 67 Tobias Brunner
601 23 Tobias Brunner
p((. Instead of specifying a subnet, _%dynamic_ can be used to replace it with the IKE address, having the same effect
602 21 Andreas Steffen
     as omitting _left|rightsubnet_ completely. Using _%dynamic_ can be used to define multiple dynamic selectors,
603 1 Martin Willi
     each having a potentially different protocol/port definition.
604 31 Martin Willi
605 1 Martin Willi
_left|rightupdown = <path>_
606 33 Tobias Brunner
607 33 Tobias Brunner
p((. what _updown_ script to run to adjust routing and/or firewalling when the status of the connection
608 33 Tobias Brunner
     changes (default _ipsec _updown_). Relevant only locally, other end need not agree on it.
609 33 Tobias Brunner
     Charon uses the _updown_ script to insert firewall rules only, since routing has been implemented directly
610 33 Tobias Brunner
     into the daemon.
611 33 Tobias Brunner
612 33 Tobias Brunner
h2. IKEv2 Mediation Extension Parameters
613 23 Tobias Brunner
614 23 Tobias Brunner
The following parameters are relevant to IKEv2 Mediation Extension operation only.
615 31 Martin Willi
616 57 Tobias Brunner
_mediation = yes | *no*_
617 57 Tobias Brunner
618 57 Tobias Brunner
p((. whether this connection is a mediation connection,  ie.  whether this connection is used to mediate other
619 57 Tobias Brunner
     connections.  Mediation connections create no child SA. Acceptable values  are  no (the default) and yes.
620 57 Tobias Brunner
621 21 Andreas Steffen
_mediated_by = <name>_
622 1 Martin Willi
623 31 Martin Willi
p((. the  name  of the connection to mediate this connection through. If given, the connection will  be  mediated
624 1 Martin Willi
     through  the  named mediation  connection.  The mediation connection must set *mediation=yes*.
625 57 Tobias Brunner
626 1 Martin Willi
_me_peerid = <id>_
627 1 Martin Willi
628 58 Tobias Brunner
p((. ID as which the peer is known to the mediation server, ie. which the  other end of this connection uses as
629 58 Tobias Brunner
     its leftid on its connection to the mediation server.  This is the ID we request  the mediation server to
630 58 Tobias Brunner
     mediate us with.  If me_peerid is not given, the rightid of this connection will be used as peer ID.
631 58 Tobias Brunner
632 58 Tobias Brunner
h2. Removed parameters (since 5.0.0)
633 58 Tobias Brunner
634 58 Tobias Brunner
_auth = *esp* | ah_
635 58 Tobias Brunner
636 69 Tobias Brunner
p((. whether authentication should be done as part of ESP encryption, or separately using the AH protocol.
637 69 Tobias Brunner
	Only supported by the IKEv1 daemon pluto.
638 58 Tobias Brunner
639 58 Tobias Brunner
p((. Since [[5.1.1]] the *ah* keyword can be used to configure AH with the charon IKE daemon.
640 58 Tobias Brunner
641 58 Tobias Brunner
_pfs = *yes* | no_
642 58 Tobias Brunner
643 58 Tobias Brunner
p((. whether _Perfect Forward Secrecy_ of keys is desired on the connection's keying channel (with PFS,
644 58 Tobias Brunner
     penetration of the key-exchange protocol does not compromise keys negotiated earlier). IKEv2 always uses
645 58 Tobias Brunner
     PFS for IKE_SA rekeying whereas for CHILD_SA rekeying PFS is enforced by defining a Diffie-Hellman dhgroup
646 58 Tobias Brunner
     in the _esp_ parameter.  Since [[5.0.0]] the latter also applies to IKEv1 and this parameter has no effect anymore.
647 58 Tobias Brunner
648 58 Tobias Brunner
_pfsgroup = <modp group>_
649 58 Tobias Brunner
650 58 Tobias Brunner
p((. defines a Diffie-Hellman group for _perfect forward secrecy_ in IKEv1 Quick Mode differing from the DH group
651 58 Tobias Brunner
     used for IKEv1 Main Mode (IKEv1 pluto daemon only).
652 58 Tobias Brunner
653 58 Tobias Brunner
_left|rightnexthop = %direct | %defaultroute | <ip address> | <fqdn>_
654 58 Tobias Brunner
655 58 Tobias Brunner
p((. This parameter is usually not needed any more because the NETKEY IPsec stack does not require
656 58 Tobias Brunner
     explicit routing entries for the traffic to be tunneled. If _left|sourceip_ is used with IKEv1
657 58 Tobias Brunner
     then _left|rightnexthop_ must still be set in order for the source routes to work properly.
658 58 Tobias Brunner
659 58 Tobias Brunner
_left|rightsubnetwithin = <ip subnet>_
660 1 Martin Willi
661 1 Martin Willi
p((. the  peer can propose any subnet or single IP address that fits within the range defined by
662 1 Martin Willi
     _left|rightsubnetwithin_.  Is a synonym for _left|rightsubnet_ since [[5.0.0]], as subnets are narrowed.