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732 lines
27 KiB
Plaintext
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INTERNET-DRAFT Editor: Kurt D. Zeilenga
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Intended Category: Standard Track OpenLDAP Foundation
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Expires: 20 January 2002 20 July 2001
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Named Subordinate References in LDAP Directories
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<draft-zeilenga-ldap-namedref-04.txt>
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Status of this Memo
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This document is an Internet-Draft and is in full conformance with all
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provisions of Section 10 of RFC2026.
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This document is intended to be, after appropriate review and
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revision, submitted to the RFC Editor as a Standard Track document.
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Distribution of this memo is unlimited. Technical discussion of this
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document will take place on the IETF LDAP Extension Working Group
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mailing list <ietf-ldapext@netscape.com>. Please send editorial
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comments directly to the author <Kurt@OpenLDAP.org>.
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Internet-Drafts are working documents of the Internet Engineering Task
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Force (IETF), its areas, and its working groups. Note that other
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groups may also distribute working documents as Internet-Drafts.
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Internet-Drafts are draft documents valid for a maximum of six months
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and may be updated, replaced, or obsoleted by other documents at any
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time. It is inappropriate to use Internet-Drafts as reference
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material or to cite them other than as ``work in progress.''
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The list of current Internet-Drafts can be accessed at
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<http://www.ietf.org/ietf/1id-abstracts.txt>. The list of
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Internet-Draft Shadow Directories can be accessed at
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<http://www.ietf.org/shadow.html>.
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Copyright 2001, The Internet Society. All Rights Reserved.
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Please see the Copyright section near the end of this document for
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more information.
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Abstract
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This document details schema and protocol elements for representing
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and manipulating named subordinate references in LDAP [RFC2251]
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directories. A referral object is used to hold subordinate reference
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information in the directory. These referral objects hold one or more
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URIs [RFC2396] contained in values of the ref attribute type and are
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used to generate protocol referrals and continuations. A control,
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Zeilenga LDAP NamedRef [Page 1]
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INTERNET-DRAFT draft-zeilenga-ldap-namedref-04 20 July 2001
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ManageDsaIT, is defined to allow manipulation of referral objects as
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normal objects.
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1. Background and Intended Usage
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The broadening of interest in LDAP directories beyond their use as
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front ends to X.500 [X.500] directories has created a need to
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represent knowledge information in a more general way. Knowledge
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information is information about one or more servers maintained in
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another server, used to link servers and services together.
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This document defines a specific method of representing subordinate
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knowledge references in LDAP directories. Other forms of knowledge
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information are not detailed by this document. These forms may be
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described in subsequent documents.
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This document details subordinate referral processing requirements for
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servers. This document does not describe protocol syntax and
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semantics. This is detailed in RFC 2251 [RFC2251].
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This document does not detail use of subordinate knowledge references
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to support replicated environments nor distributed operations (e.g.,
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chaining of operations from one server to other servers).
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The key words "SHALL", "SHALL NOT", "MUST", "MUST NOT", "SHOULD",
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"SHOULD NOT", "MAY" and "MAY NOT" used in this document are to be
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interpreted as described in BCP 14 [RFC2119].
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2. Schema
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The schema definitions are defined in terms of RFC 2252 [RFC2252].
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2.1. The referral Object Class
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A referral object is a directory entry whose structural object class
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is (or is derived from) the referral object class.
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( 2.16.840.1.113730.3.2.6
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NAME 'referral'
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DESC 'named subordinate reference object'
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STRUCTURAL
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MUST ref )
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The referral object class is a structural object class used to
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represent a subordinate reference in the directory. The referral
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Zeilenga LDAP NamedRef [Page 2]
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INTERNET-DRAFT draft-zeilenga-ldap-namedref-04 20 July 2001
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object class SHOULD be used in conjunction with the extensibleObject
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object class to support the naming attributes used in the entry's
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Distinguished Name (DN) [RFC2253]. Referral objects are directory
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entries whose structural object class is (or is derived from)
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referral.
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Referral objects MUST only be instantiated at DSEs immediately
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subordinate to leaf object entries within a naming context held by the
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DSA. Referral objects correspond to X.500 subordinate knowledge
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(subr) DSEs [X.501].
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In the presence of a ManageDsaIT control, referral objects are treated
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as normal entries as described in section 3. Note that the ref
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attribute is operational and will only returned in a search entry
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response when requested.
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In the absence of a ManageDsaIT control, the content of referral
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objects are used to construct referrals and search references as
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described in section 4 and, as such, the referral entries are not
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themselves visible to clients.
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2.2 The ref Attribute Type
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( 2.16.840.1.113730.3.1.34
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NAME 'ref'
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DESC 'named reference - a labeledURI'
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EQUALITY caseExactMatch
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SYNTAX 1.3.6.1.4.1.1466.115.121.1.15
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USAGE distributedOperation )
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The ref attribute type has directoryString syntax and is case
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sensitive. The ref attribute is multi-valued. Values placed in the
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attribute MUST conform to the specification given for the labeledURI
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attribute [RFC2079]. The labeledURI specification defines a format
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that is a URI, optionally followed by whitespace and a label. This
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document does not make use of the label portion of the syntax. Future
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documents MAY enable new functionality by imposing additional
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structure on the label portion of the syntax as it appears in the ref
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attribute.
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If the URI contained in a ref attribute value refers to a LDAP
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[RFC2251] server, it MUST be in the form of a LDAP URL [RFC2255]. The
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LDAP URL SHOULD NOT contain an explicit scope specifier, filter,
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attribute description list, or any extensions. The LDAP URL SHOULD
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contain a non-empty DN. The handling of LDAP URLs with absent or
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empty DN parts or with explicit scope specifier is not defined by this
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specification.
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Zeilenga LDAP NamedRef [Page 3]
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INTERNET-DRAFT draft-zeilenga-ldap-namedref-04 20 July 2001
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Other URI schemes MAY be used so long as all operations returning
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referrals based upon the value could be performed. This document does
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not detail use of non-LDAP URIs. This is left to future
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specifications.
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All values of a ref attribute MUST point to services which are equally
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capable of handling operations referred to these services.
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The referential integrity of the URI SHOULD NOT be validated by the
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server holding or returning the URI (whether as part of the value of
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the attribute or as part of a referral result or search reference
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response).
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When returning a referral result or search continuation, the server
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MUST NOT return the separator or label portions of the attribute
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values as part of the reference. When the attribute contains multiple
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values, the URI part of each value is used to construct the referral
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result or search continuation.
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The ref attribute values SHOULD NOT be used as a relative
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name-component of an entry's DN [RFC2253].
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This document uses the ref attribute in conjunction with the referral
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object class to represent subordinate references. The ref attribute
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may be used for other purposes as defined by other documents.
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3. The ManageDsaIT Control
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The client may provide the ManageDsaIT control with an operation to
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indicate that the operation is intended to manage objects within the
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DSA (server) Information Tree. The control causes Directory-specific
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entries (DSEs), regardless of type, to be treated as normal entries
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allowing clients to interrogate and update these entries using LDAP
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operations. This control is analogous to the ManageDsaIT option
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described in X.511 [X.511].
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A client MAY specify the following control when issuing an add,
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compare, delete, modify, modifyDN, search request or an extended
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operation for which the control is defined.
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The control type is 2.16.840.1.113730.3.4.2. The control criticality
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may be TRUE or, if FALSE, absent. The control value is absent.
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When the control is present in the request, the server SHALL NOT
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generate a referral or continuation reference for any referral object
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and instead treat the referral object as a normal entry. When not
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present, referral objects SHALL be handled as described above.
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Zeilenga LDAP NamedRef [Page 4]
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INTERNET-DRAFT draft-zeilenga-ldap-namedref-04 20 July 2001
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The control MAY cause other objects to be treated as normal entries as
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defined by subsequent documents.
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4. Named Subordinate References
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A named subordinate reference is constructed by instantiating a
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referral object in the referencing server with ref attribute values
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which point to the corresponding subtree maintained in the referenced
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server. In general, the name of the referral object is the same as
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the referenced object and this referenced object is a context prefix
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[X.501].
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That is, if server A holds "DC=example,DC=net" and server B holds
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"DC=sub,DC=example,DC=net", server A may contain a referral object
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named "DC=sub,DC=example,DC=net" which contains a ref attribute with
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value of "ldap://B/DC=sub,DC=example,DC=net".
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dn: DC=sub,DC=example,DC=net
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dc: sub
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ref: ldap://B/DC=sub,DC=example,DC=net
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objectClass: referral
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objectClass: extensibleObject
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While typically the DN of the referral object and the DN of the object
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in the referenced server are the same, they need not be the same.
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If the ref attribute has multiple values, all the DNs contained within
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the LDAP URLs SHOULD be equivalent. Administrators SHOULD avoid
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configuring naming loops using referrals.
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Named references MUST be treated as normal entries if the request
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includes the ManageDsaIT control as described in section 3.
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5. Scenarios
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The following sections contain specifications of how referral objects
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should be used in different scenarios followed by examples that
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illustrate that usage. The scenarios described consist of referral
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operation when finding target of a non-search operation, when finding
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the base of a search operation, and when generating search references.
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Lastly, other operation processing considerations are presented.
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It is to be noted that, in this document, a search operation is
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conceptually divided into two distinct, sequential phases: (1) finding
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the base object where the search is to begin, and (2) performing the
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search itself. The first phase is similar to, but not the same as,
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Zeilenga LDAP NamedRef [Page 5]
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INTERNET-DRAFT draft-zeilenga-ldap-namedref-04 20 July 2001
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finding the target of a non-search operation.
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It should also be noted that the ref attribute may have multiple
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values and, where these sections refer to a single ref attribute
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value, multiple ref attribute values may be substituted and SHOULD be
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processed and returned (in any order) as a group in a referral or
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search reference in the same way as described for a single ref
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attribute value.
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Search references returned for a given request may be returned in any
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order.
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5.1. Example Configuration
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For example, suppose the contacted server (hosta) holds the entry
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"O=MNN,C=WW" and the entry "CN=Manager,O=MNN,C=WW" and the following
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referral objects:
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dn: OU=People,O=MNN,C=WW
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ou: People
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ref: ldap://hostb/OU=People,O=MNN,C=US
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ref: ldap://hostc/OU=People,O=MNN,C=US
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objectClass: referral
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objectClass: extensibleObject
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dn: OU=Roles,O=MNN,C=WW
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ou: Roles
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ref: ldap://hostd/OU=Roles,O=MNN,C=WW
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objectClass: referral
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objectClass: extensibleObject
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The first referral object provides the server with the knowledge that
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subtree "OU=People,O=MNN,C=WW" is held by hostb and hostc (e.g., one
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is the master and the other a shadow). The second referral object
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provides the server with the knowledge that the subtree
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"OU=Roles,O=MNN,C=WW" is held by hostd.
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Also, in the context of this document, the "nearest naming context"
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means the deepest context which the object is within. That is, if the
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object is within multiple naming contexts, the nearest naming context
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is the one which is subordinate to all other naming contexts the
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object is within.
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5.2. Target object considerations
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This section details referral handling for add, compare, delete,
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Zeilenga LDAP NamedRef [Page 6]
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INTERNET-DRAFT draft-zeilenga-ldap-namedref-04 20 July 2001
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modify, and modify DN operations. If the client requests any of these
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operations, there are four cases that the server must handle with
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respect to the target object.
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The DN part MUST be modified such that it refers to the appropriate
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target in the referenced server (as detailed below). Even where the
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DN to be returned is the same as the target DN, the DN part SHOULD NOT
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be trimmed.
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In cases where the URI to be returned is a LDAP URL, the server SHOULD
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trim any present scope, filter, or attribute list from the URI before
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returning it. Critical extensions MUST NOT be trimmed or modified.
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Case 1: The target object is not held by the server and is not within
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or subordinate to any naming context nor subordinate to any
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referral object held by the server.
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The server SHOULD process the request normally as appropriate for
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a non-existent base which is not within any naming context of the
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server (generally return noSuchObject or a referral based upon
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superior knowledge reference information). This document does not
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detail management or processing of superior knowledge reference
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information.
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Case 2: The target object is held by the server and is a referral
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object.
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The server SHOULD return the URI value contained in the ref
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attribute of the referral object.
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Example: If the client issues a modify request for the target object
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of "OU=People,O=MNN,c=WW", the server will return:
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ModifyResponse (referral) {
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ldap://hostb/OU=People,O=MNN,C=WW
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ldap://hostc/OU=People,O=MNN,C=WW
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}
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Case 3: The target object is not held by the server, but the nearest
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naming context contains no referral object which the target object
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is subordinate to.
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If the nearest naming context contains no referral object which
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the target is subordinate to, the server SHOULD process the
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request as appropriate for a nonexistent target (generally return
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noSuchObject).
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Zeilenga LDAP NamedRef [Page 7]
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INTERNET-DRAFT draft-zeilenga-ldap-namedref-04 20 July 2001
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Case 4: The target object is not held by the server, but the nearest
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naming context contains a referral object which the target object
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is subordinate to.
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If a client requests an operation for which the target object is
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not held by the server and the nearest naming context contains a
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referral object which the target object is subordinate to, the
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server SHOULD return a referral response constructed from the URI
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portion of the ref value of the referral object.
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Example: If the client issues an add request where the target object
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has a DN of "CN=Manager,OU=Roles,O=MNN,C=WW", the server will
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return
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AddResponse (referral) {
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ldap://hostd/CN=Manager,OU=Roles,O=MNN,C=WW"
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}
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Note that the DN part of the LDAP URL is modified such that it
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refers to the appropriate entry in the referenced server.
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5.3. Base Object Considerations
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This section details referral handling for base object processing
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within search operations. Like target object considerations for non-
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search operations, there are the four cases.
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In cases where the URI to be returned is a LDAP URL, the server MUST
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provide an explicit scope specifier from the LDAP URL prior to
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returning it. In addition, the DN part MUST be modified such that it
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refers to the appropriate target in the referenced server (as detailed
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below).
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If aliasing dereferencing was necessary in finding the referral
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object, the DN part of the URI MUST be replaced with the base DN as
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modified by the alias dereferencing such that the return URL refers to
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the new target object per [RFC2251, 4.1.11].
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Critical extensions MUST NOT be trimmed nor modified.
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Case 1: The base object is not held by the server and is not within
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nor subordinate to any naming context held by the server.
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The server SHOULD process the request normally as appropriate for
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a non-existent base which not within any naming context of the
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server (generally return a superior referral or noSuchObject).
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This document does not detail management or processing of superior
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Zeilenga LDAP NamedRef [Page 8]
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INTERNET-DRAFT draft-zeilenga-ldap-namedref-04 20 July 2001
|
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knowledge references.
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Case 2: The base object is held by the server and is a referral
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object.
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The server SHOULD return the URI value contained in the ref
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attribute of the referral object.
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Example: If the client issues a subtree search in which the base
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object is "OU=Roles,O=MNN,C=WW", the server will return
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SearchResultDone (referral) {
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ldap://hostd/OU=Roles,O=MNN,C=WW??sub
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}
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If the client were to issue a base or oneLevel search instead of
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subtree, the returned LDAP URL would explicitly specify "base" or
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"one", respectively, instead of "sub".
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Case 3: The base object is not held by the server, but the nearest
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naming context contains no referral object which the base object
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is subordinate to.
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If the nearest naming context contains no referral object which
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the base is subordinate to, the request SHOULD be processed
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normally as appropriate for a nonexistent base (generally return
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noSuchObject).
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Case 4: The base object is not held by the server, but the nearest
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naming context contains a referral object which the base object is
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subordinate to.
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If a client requests an operation for which the target object is
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not held by the server and the nearest naming context contains a
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referral object which the target object is subordinate to, the
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server SHOULD return a referral response which is constructed from
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the URI portion of the ref value of the referral object.
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Example: If the client issues a base search request for
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"CN=Manager,OU=Roles,O=MNN,C=WW", the server will return
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SearchResultDone (referral) {
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ldap://hostd/CN=Manager,OU=Roles,O=MNN,C=WW??base"
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}
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If the client were to issue a subtree or oneLevel search instead
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of subtree, the returned LDAP URL would explicitly specify "sub"
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or "one", respectively, instead of "base".
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|
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|
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|
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Zeilenga LDAP NamedRef [Page 9]
|
||
|
||
INTERNET-DRAFT draft-zeilenga-ldap-namedref-04 20 July 2001
|
||
|
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Note that the DN part of the LDAP URL is modified such that it
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refers to the appropriate entry in the referenced server.
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5.4. Search Continuation Considerations
|
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For search operations, once the base object has been found and
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determined not to be a referral object, the search may progress. Any
|
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entry matching the filter and scope of the search which is not a
|
||
referral object is returned to the client normally as described in
|
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[RFC2251].
|
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|
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For each referral object within the requested scope, regardless of the
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search filter, the server SHOULD return a SearchResultReference which
|
||
is constructed from the URI component of values of the ref attribute.
|
||
If the URI component is not a LDAP URL, it should be returned as is.
|
||
If the LDAP URL's DN part is absent or empty, the DN part must be
|
||
modified to contain the DN of the referral object. If the URI
|
||
component is a LDAP URL, the URI SHOULD be modified to add an explicit
|
||
scope specifier.
|
||
|
||
Subtree Example:
|
||
|
||
If a client requests a subtree search of "O=MNN,C=WW", then in
|
||
addition to any entries within scope which match the filter, hosta
|
||
will also return two search references as the two referral objects
|
||
are within scope. One possible response might be:
|
||
|
||
SearchEntry for O=MNN,C=WW
|
||
SearchResultReference {
|
||
ldap://hostb/OU=People,O=MNN,C=WW??sub
|
||
ldap://hostc/OU=People,O=MNN,C=WW??sub
|
||
}
|
||
SearchEntry for CN=Manager,O=MNN,C=WW
|
||
SearchResultReference {
|
||
ldap://hostd/OU=Roles,O=MNN,C=WW??sub
|
||
}
|
||
SearchResultDone (success)
|
||
|
||
One Level Example:
|
||
|
||
If a client requests a one level search of "O=MNN,C=WW" then, in
|
||
addition to any entries one level below the "O=MNN,C=WW" entry
|
||
matching the filter, the server will also return two search
|
||
references as the two referral objects are within scope. One
|
||
possible sequence is shown:
|
||
|
||
SearchResultReference {
|
||
|
||
|
||
|
||
Zeilenga LDAP NamedRef [Page 10]
|
||
|
||
INTERNET-DRAFT draft-zeilenga-ldap-namedref-04 20 July 2001
|
||
|
||
|
||
ldap://hostb/OU=People,O=MNN,C=WW??base
|
||
ldap://hostc/OU=People,O=MNN,C=WW??base
|
||
}
|
||
SearchEntry for CN=Manager,O=MNN,C=WW
|
||
SearchResultReference {
|
||
ldap://hostd/OU=Roles,O=MNN,C=WW??base
|
||
}
|
||
SearchResultDone (success)
|
||
|
||
Note: Unlike the examples in Section 4.5.3.1 of RFC 2251, the LDAP
|
||
URLs returned with the SearchResultReference messages contain,
|
||
as required by this specification, an explicit scope specifier.
|
||
|
||
|
||
5.6. Other Considerations
|
||
|
||
This section details processing considerations for other operations.
|
||
|
||
|
||
5.6.1 Bind
|
||
|
||
Servers SHOULD NOT return referral result code if the bind name (or
|
||
other identity in the DN form) is (or is subordinate to) a referral
|
||
object but MAY use the knowledge information to process the bind
|
||
request (such as in support a future distributed operation
|
||
specification). Where the server makes no use of the knowledge
|
||
information, the server processes the request normally as appropriate
|
||
for a non-existent authentication or authorization identity (e.g.
|
||
return invalidCredentials).
|
||
|
||
|
||
5.6.2 Modify DN
|
||
|
||
If the newSuperior is a referral object or is subordinate to a
|
||
referral object, the server SHOULD return affectsMultipleDSAs. If the
|
||
newRDN already exists but is a referral object, the server SHOULD
|
||
return affectsMultipleDSAs instead of entryAlreadyExists.
|
||
|
||
|
||
6. Security Considerations
|
||
|
||
This document defines mechanisms that can be used to tie LDAP (and
|
||
other) servers together. The information used to tie services
|
||
together should be protected from unauthorized modification. If the
|
||
server topology information is not public information, it should be
|
||
protected from unauthorized disclosure as well.
|
||
|
||
|
||
|
||
|
||
|
||
Zeilenga LDAP NamedRef [Page 11]
|
||
|
||
INTERNET-DRAFT draft-zeilenga-ldap-namedref-04 20 July 2001
|
||
|
||
|
||
7. Acknowledgments
|
||
|
||
This document borrows heavily from previous work by IETF LDAPext
|
||
Working Group. In particular, this document is based upon "Named
|
||
Referral in LDAP Directories" (an expired Internet Draft) by
|
||
Christopher Lukas, Tim Howes, Michael Roszkowski, Mark C. Smith, and
|
||
Mark Wahl.
|
||
|
||
|
||
8. Author's Address
|
||
|
||
Kurt D. Zeilenga
|
||
OpenLDAP Foundation
|
||
<Kurt@OpenLDAP.org>
|
||
|
||
|
||
References
|
||
|
||
[RFC2079] M. Smith, "Definition of an X.500 Attribute Type and an
|
||
Object Class to Hold Uniform Resource Identifiers (URIs)",
|
||
RFC 2079, January 1997.
|
||
|
||
[RFC2119] S. Bradner, "Key Words for use in RFCs to Indicate
|
||
Requirement Levels", RFC 2119 (Also BCP 14), March 1997.
|
||
|
||
[RFC2251] M. Wahl, T. Howes, S. Kille, "Lightweight Directory Access
|
||
Protocol (v3)", RFC 2251, December 1997.
|
||
|
||
[RFC2252] M. Wahl, A. Coulbeck, T. Howes, S. Kille, "Lightweight
|
||
Directory Access Protocol (v3): Attribute Syntax
|
||
Definitions", RFC 2252, December 1997.
|
||
|
||
[RFC2253] M. Wahl, S. Kille, T. Howes, "Lightweight Directory Access
|
||
Protocol (v3): UTF-8 String Representation of Distinguished
|
||
Names", RFC 2253, December 1997.
|
||
|
||
[RFC2255] T. Howes, M. Smith, "The LDAP URL Format", RFC 2255,
|
||
December, 1997.
|
||
|
||
[RFC2396] Berners-Lee, T., R. Fielding, L. Masinter, "Uniform Resource
|
||
Identifiers (URI): Generic Syntax", RFC 2396, August 1998.
|
||
|
||
[X.500] ITU-T Rec. X.500, "The Directory: Overview of Concepts,
|
||
Models, and Services", 1993.
|
||
|
||
[X.501] ITU-T Rec. X.501, "The Directory: Models", 1993.
|
||
|
||
[X.511] ITU-T Rec. X.511, "The Directory: Abstract Service
|
||
|
||
|
||
|
||
Zeilenga LDAP NamedRef [Page 12]
|
||
|
||
INTERNET-DRAFT draft-zeilenga-ldap-namedref-04 20 July 2001
|
||
|
||
|
||
Definition", 1993.
|
||
|
||
|
||
Copyright 2001, The Internet Society. All Rights Reserved.
|
||
|
||
This document and translations of it may be copied and furnished to
|
||
others, and derivative works that comment on or otherwise explain it
|
||
or assist in its implementation may be prepared, copied, published and
|
||
distributed, in whole or in part, without restriction of any kind,
|
||
provided that the above copyright notice and this paragraph are
|
||
included on all such copies and derivative works. However, this
|
||
document itself may not be modified in any way, such as by removing
|
||
the copyright notice or references to the Internet Society or other
|
||
Internet organizations, except as needed for the purpose of
|
||
developing Internet standards in which case the procedures for
|
||
copyrights defined in the Internet Standards process must be followed,
|
||
or as required to translate it into languages other than English.
|
||
|
||
The limited permissions granted above are perpetual and will not be
|
||
revoked by the Internet Society or its successors or assigns.
|
||
|
||
This document and the information contained herein is provided on an
|
||
"AS IS" basis and THE AUTHORS, THE INTERNET SOCIETY, AND THE INTERNET
|
||
ENGINEERING TASK FORCE DISCLAIMS ALL WARRANTIES, EXPRESS OR IMPLIED,
|
||
INCLUDING BUT NOT LIMITED TO ANY WARRANTY THAT THE USE OF THE
|
||
INFORMATION HEREIN WILL NOT INFRINGE ANY RIGHTS OR ANY IMPLIED
|
||
WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
|
||
Zeilenga LDAP NamedRef [Page 13]
|
||
|