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318 lines
9.1 KiB
Groff
318 lines
9.1 KiB
Groff
.TH SLAPD-LDAP 5 "RELEASEDATE" "OpenLDAP LDVERSION"
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.\" Copyright 1998-2005 The OpenLDAP Foundation All Rights Reserved.
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.\" Copying restrictions apply. See COPYRIGHT/LICENSE.
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.\" $OpenLDAP$
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.SH NAME
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slapd-ldap \- LDAP backend to slapd
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.SH SYNOPSIS
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ETCDIR/slapd.conf
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.SH DESCRIPTION
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The LDAP backend to
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.BR slapd (8)
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is not an actual database; instead it acts as a proxy to forward incoming
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requests to another LDAP server. While processing requests it will also
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chase referrals, so that referrals are fully processed instead of being
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returned to the slapd client.
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Sessions that explicitly Bind to the back-ldap database always create their
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own private connection to the remote LDAP server. Anonymous sessions will
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share a single anonymous connection to the remote server. For sessions bound
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through other mechanisms, all sessions with the same DN will share the
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same connection. This connection pooling strategy can enhance the proxy's
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efficiency by reducing the overhead of repeatedly making/breaking multiple
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connections.
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The ldap database can also act as an information service, i.e. the identity
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of locally authenticated clients is asserted to the remote server, possibly
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in some modified form.
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For this purpose, the proxy binds to the remote server with some
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administrative identity, and, if required, authorizes the asserted identity.
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See the
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.IR idassert- *
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rules below.
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The administrative identity of the proxy, on the remote server, must be
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allowed to authorize by means of appropriate
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.B authzTo
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rules; see
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.BR slapd.conf (5)
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for details.
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.SH CONFIGURATION
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These
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.B slapd.conf
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options apply to the LDAP backend database.
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That is, they must follow a "database ldap" line and come before any
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subsequent "backend" or "database" lines.
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Other database options are described in the
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.BR slapd.conf (5)
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manual page.
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.LP
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Note: In early versions of back-ldap it was recommended to always set
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.LP
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.RS
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.nf
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lastmod off
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.fi
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.RE
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.LP
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for every
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.B ldap
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and
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.B meta
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database.
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This is because operational attributes related to entry creation and
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modification should not be used, as they could be passed to the target
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servers, generating an error.
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The current implementation automatically sets ldapmod to off, so its use
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is redundant and can be safely omitted.
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.TP
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.B uri <ldapurl>
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LDAP server to use. Multiple URIs can be set in in a single
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.B ldapurl
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argument, resulting in the underlying library automatically
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call the first server of the list that responds, e.g.
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\fBuri "ldap://host/ ldap://backup-host"\fP
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The URI list is space- or comma-separated.
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.\".TP
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.\".B server <hostport>
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.\"Obsolete option; same as `uri ldap://<hostport>/'.
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.TP
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.B acl-authcDN "<administrative DN for access control purposes>"
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DN which is used to query the target server for acl checking; it
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is supposed to have read access on the target server to attributes used
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on the proxy for acl checking.
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There is no risk of giving away such values; they are only used to
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check permissions.
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.B The acl-authcDN identity is by no means implicitly used by the proxy
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.B when the client connects anonymously.
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See the
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.B idassert-*
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feature instead.
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.TP
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.B acl-passwd <password>
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Password used with the
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.B
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acl-authcDN
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above.
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.TP
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.B idassert-authcdn "<administrative DN for proxyAuthz purposes>"
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DN which is used to propagate the client's identity to the target
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by means of the proxyAuthz control when the client does not
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belong to the DIT fragment that is being proxyied by back-ldap.
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This is useful when operations performed by users bound to another
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backend are propagated through back-ldap.
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This requires the entry with
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.B idassert-authcdn
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identity on the remote server to have
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.B proxyAuthz
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privileges on a wide set of DNs, e.g.
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.BR authzTo=dn.subtree:"" ,
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and the remote server to have
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.B authz-policy
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set to
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.B to
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or
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.BR both .
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See
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.BR slapd.conf (5)
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for details on these statements and for remarks and drawbacks about
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their usage.
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.TP
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.B idassert-passwd <password>
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Password used with the
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.B idassert-authcdn
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above.
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.TP
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.B idassert-mode <mode> [<flags>]
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defines what type of
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.I identity assertion
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is used.
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The supported modes are:
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\fB<mode> := {legacy|anonymous|none|<id>|self}\fP
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\fB<flags> := {override}\fP
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\fB<id> := {u:<ID>|[dn:]<DN>}\fP
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The default is
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.BR legacy ,
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which implies that the proxy will bind as
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.I idassert-authcdn
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and assert the client's identity when it is not anonymous.
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Direct binds are always proxied.
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The other modes imply that the proxy will always bind as
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.IR idassert-authcdn ,
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unless restricted by
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.BR idassert-authzFrom
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rules (see below), in which case the operation will fail;
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eventually, it will assert some other identity according to
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.BR <mode> .
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Other identity assertion modes are
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.BR anonymous
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and
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.BR self ,
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which respectively mean that the
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.I empty
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or the
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.IR client 's
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identity
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will be asserted;
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.BR none ,
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which means that no proxyAuthz control will be used, so the
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.I idassert-authcdn
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identity will be asserted.
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Moreover, if a string prefixed with
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.B u:
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or
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.B dn:
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is used as
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.BR <mode> ,
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that identity will be asserted.
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Ths string is also treated as a DN if it is not prefixed
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by any recognized type indicator. Whether or not the
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.B dn:
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prefix is present, the string must pass DN validation and normalization.
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For all modes that require the use of the
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.I proxyAuthz
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control, on the remote server the proxy identity must have appropriate
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.I authzTo
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permissions, or the asserted identities must have appropriate
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.I authzFrom
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permissions. Note, however, that the ID assertion feature is mostly
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useful when the asserted identities do not exist on the remote server.
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When the
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.B override
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flag is used, identity assertion takes place even when the database
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is authorizing for the identity of the client, i.e. after binding
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with the provided identity, and thus authenticating it, the proxy
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performs the identity assertion using the configured identity and
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authentication method.
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.RE
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.TP
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.B idassert-authzFrom <authz-regexp>
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if defined, selects what
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.I local
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identities are authorized to exploit the identity assertion feature.
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The string
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.B <authz-regexp>
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follows the rules defined for the
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.I authzFrom
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attribute.
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See
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.BR slapd.conf (5),
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section related to
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.BR authz-policy ,
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for details on the syntax of this field.
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.TP
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.B idassert-method <method> [<saslargs>]
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where valid method values are
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\fB<method> := {none|simple|sasl}\fP
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\fB<saslargs> := [mech=<mech>] [realm=<realm>] [authcid=<authcid>] [cred=<cred>] [authz={native|proxyauthz}]\fP
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If method is
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.IR sasl ,
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extra parameters can be given as described above.
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The default is
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.BR simple ;
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.B none
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inhibits proxy authorization;
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.B sasl
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uses a SASL bind with the above parameters; if required,
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.I authorization
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is performed by means of native SASL mechanism, and no proxyAuthz
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is used for subsequent operations.
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.RE
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.TP
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.B proxy-whoami
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Turns on proxying of the WhoAmI extended operation. If this option is
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given, back-ldap will replace slapd's original WhoAmI routine with its
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own. On slapd sessions that were authenticated by back-ldap, the WhoAmI
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request will be forwarded to the remote LDAP server. Other sessions will
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be handled by the local slapd, as before. This option is mainly useful
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in conjunction with Proxy Authorization.
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.TP
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.B rebind-as-user
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If this option is given, the client's bind credentials are remembered
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for rebinds when chasing referrals. Useful in conjunction with
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\fBchase-referrals\fP, useless if \fBdont-chase-referrals\fP is set.
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.LP
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.B chase-referrals
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.br
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.B dont-chase-referrals
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.RS
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enable/disable automatic referral chasing, which is delegated to the
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underlying libldap, with rebinding eventually performed if the
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\fBrebind-as-user\fP directive is used. The default is to chase referrals.
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.RE
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.LP
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.B tls-start
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.br
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.B tls-try-start
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.br
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.B tls-propagate
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.br
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.B tls-try-propagate
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.RS
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execute the start TLS extended operation when the connection is initialized;
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only works if the URI directive protocol scheme is not \fBldaps://\fP.
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The \fBtls-propagate\fP version issues the Start TLS exop only if the original
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connection did.
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\fBtry-start-tls\fP and \fBtry-propagate-tls\fP continue operations
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if start TLS failed.
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.RE
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.TP
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.B suffixmassage, map, rewrite*
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These directives are no longer supported by back-ldap; their
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functionality is now delegated to the
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.B rwm
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overlay; see
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.BR slapo-rwm (5)
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for details.
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However, to ease update from existing configurations, back-ldap still
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recognizes them and automatically instantiates the
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.B rwm
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overlay if available and not instantiated yet.
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This behavior may change in the future.
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.SH ACCESS CONTROL
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The
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.B ldap
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backend does not honor all ACL semantics as described in
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.BR slapd.access (5).
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In general, access checking is delegated to the remote server(s).
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Only
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.B read (=r)
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access to the
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.B entry
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pseudo-attribute and to the other attribute values of the entries
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returned by the
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.B search
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operation is honored, which is performed by the frontend.
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.SH PROXY CACHE OVERLAY
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The proxy cache overlay
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allows caching of LDAP search requests (queries) in a local database.
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See
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.BR slapo-pcache (5)
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for details.
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.SH FILES
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.TP
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ETCDIR/slapd.conf
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default slapd configuration file
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.SH SEE ALSO
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.BR slapd.conf (5),
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.BR slapd\-meta (5),
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.BR slapo\-pcache (5),
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.BR slapo\-rwm (5),
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.BR slapd (8),
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.BR ldap (3).
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.SH AUTHOR
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Howard Chu, with enhancements by Pierangelo Masarati
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