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340 lines
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Internet Engineering Task Force (IETF) A. Melnikov
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Request for Comments: 6331 Isode Limited
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Obsoletes: 2831 July 2011
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Category: Informational
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ISSN: 2070-1721
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Moving DIGEST-MD5 to Historic
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Abstract
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This memo describes problems with the DIGEST-MD5 Simple
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Authentication and Security Layer (SASL) mechanism as specified in
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RFC 2831. It marks DIGEST-MD5 as OBSOLETE in the IANA Registry of
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SASL mechanisms and moves RFC 2831 to Historic status.
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Status of This Memo
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This document is not an Internet Standards Track specification; it is
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published for informational purposes.
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This document is a product of the Internet Engineering Task Force
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(IETF). It represents the consensus of the IETF community. It has
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received public review and has been approved for publication by the
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Internet Engineering Steering Group (IESG). Not all documents
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approved by the IESG are a candidate for any level of Internet
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Standard; see Section 2 of RFC 5741.
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Information about the current status of this document, any errata,
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and how to provide feedback on it may be obtained at
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http://www.rfc-editor.org/info/rfc6331.
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Copyright Notice
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Copyright (c) 2011 IETF Trust and the persons identified as the
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document authors. All rights reserved.
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This document is subject to BCP 78 and the IETF Trust's Legal
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Provisions Relating to IETF Documents
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(http://trustee.ietf.org/license-info) in effect on the date of
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publication of this document. Please review these documents
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carefully, as they describe your rights and restrictions with respect
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to this document. Code Components extracted from this document must
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include Simplified BSD License text as described in Section 4.e of
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the Trust Legal Provisions and are provided without warranty as
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described in the Simplified BSD License.
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Melnikov Informational [Page 1]
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RFC 6331 Moving DIGEST-MD5 to Historic July 2011
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This document may contain material from IETF Documents or IETF
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Contributions published or made publicly available before November
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10, 2008. The person(s) controlling the copyright in some of this
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material may not have granted the IETF Trust the right to allow
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modifications of such material outside the IETF Standards Process.
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Without obtaining an adequate license from the person(s) controlling
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the copyright in such materials, this document may not be modified
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outside the IETF Standards Process, and derivative works of it may
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not be created outside the IETF Standards Process, except to format
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it for publication as an RFC or to translate it into languages other
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than English.
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Table of Contents
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1. Introduction and Overview . . . . . . . . . . . . . . . . . . 2
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2. Security Considerations . . . . . . . . . . . . . . . . . . . 5
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3. IANA Considerations . . . . . . . . . . . . . . . . . . . . . 5
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4. Acknowledgements . . . . . . . . . . . . . . . . . . . . . . 5
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5. References . . . . . . . . . . . . . . . . . . . . . . . . . 5
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5.1. Normative References . . . . . . . . . . . . . . . . . . . . 5
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5.2. Informative References . . . . . . . . . . . . . . . . . . . 5
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1. Introduction and Overview
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[RFC2831] defines how HTTP Digest Authentication [RFC2617] can be
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used as a Simple Authentication and Security Layer (SASL) [RFC4422]
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mechanism for any protocol that has a SASL profile. It was intended
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both as an improvement over CRAM-MD5 [RFC2195] and as a convenient
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way to support a single authentication mechanism for web, email, the
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Lightweight Directory Access Protocol (LDAP), and other protocols.
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While it can be argued that it is an improvement over CRAM-MD5, many
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implementors commented that the additional complexity of DIGEST-MD5
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makes it difficult to implement fully and securely.
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Below is an incomplete list of problems with the DIGEST-MD5 mechanism
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as specified in [RFC2831]:
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1. The mechanism has too many options and modes. Some of them are
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not well described and are not widely implemented. For example,
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DIGEST-MD5 allows the "qop" directive to contain multiple values,
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but it also allows for multiple qop directives to be specified.
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The handling of multiple options is not specified, which results
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in minor interoperability problems. Some implementations
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amalgamate multiple qop values into one, while others treat
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multiple qops as an error. Another example is the use of an
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empty authorization identity. In SASL, an empty authorization
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identity means that the client is willing to authorize as the
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authentication identity. The document is not clear on whether
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Melnikov Informational [Page 2]
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RFC 6331 Moving DIGEST-MD5 to Historic July 2011
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the authzid must be omitted or if it can be specified with an
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empty value to convey this. The requirement for backward
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compatibility with HTTP Digest means that the situation is even
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worse. For example, DIGEST-MD5 requires all usernames/passwords
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that can be entirely represented in the ISO-8859-1 charset to be
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down converted from UTF-8 [RFC3629] to ISO-8859-1 [ISO-8859-1].
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Another example is the use of quoted strings. Handling of
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characters that need escaping is not properly described, and the
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DIGEST-MD5 document has no examples to demonstrate correct
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behavior.
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2. The DIGEST-MD5 document uses ABNF from RFC 822 [RFC0822], which
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allows an extra construct and allows for "implied folding
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whitespace" to be inserted in many places. The difference from a
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more common ABNF defined in [RFC5234] is confusing for some
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implementors. As a result, many implementations do not accept
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folding whitespace in many places where it is allowed.
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3. The DIGEST-MD5 document uses the concept of a "realm" to define a
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collection of accounts. A DIGEST-MD5 server can support one or
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more realms. The DIGEST-MD5 document does not provide any
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guidance on how realms should be named and, more importantly, how
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they can be entered in User Interfaces (UIs). As a result, many
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DIGEST-MD5 clients have confusing UIs, do not allow users to
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enter a realm, and/or do not allow users to pick one of the
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server-supported realms.
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4. Use of username in the inner hash is problematic. The inner hash
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of DIGEST-MD5 is an MD5 hash of colon-separated username, realm,
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and password. Implementations may choose to store inner hashes
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instead of clear text passwords. This has some useful
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properties, such as protection from compromise of authentication
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databases containing the same username and password on other
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servers if a server with the username and password is
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compromised; however, this is rarely done in practice. First,
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the inner hash is not compatible with widely deployed Unix
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password databases, and second, changing the username would
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invalidate the inner hash.
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5. Description of DES/3DES [DES] and RC4 security layers are
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inadequate to produce independently developed interoperable
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implementations. In the DES/3DES case, this is partly a problem
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with existing DES APIs.
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6. DIGEST-MD5 outer hash (the value of the "response" directive)
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does not protect the whole authentication exchange, which makes
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the mechanism vulnerable to "man-in-the-middle" (MITM) attacks,
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such as modification of the list of supported qops or ciphers.
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Melnikov Informational [Page 3]
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RFC 6331 Moving DIGEST-MD5 to Historic July 2011
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7. The following features are missing from DIGEST-MD5, making it
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insecure or unsuitable for use in protocols:
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A. Channel bindings [RFC5056].
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B. Hash agility (i.e., no easy way to replace the MD5 hash
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function with another one).
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C. Support for SASLPrep [RFC4013] or any other type of Unicode
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character normalization of usernames and passwords. The
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original DIGEST-MD5 document predates SASLPrep and does not
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recommend any Unicode character normalization.
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8. The cryptographic primitives in DIGEST-MD5 are not up to today's
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standards, in particular:
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A. The MD5 hash is sufficiently weak to make a brute force
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attack on DIGEST-MD5 easy with common hardware [RFC6151].
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B. The RC4 algorithm is prone to attack when used as the
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security layer without discarding the initial key stream
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output [RFC6229].
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C. The DES cipher for the security layer is considered insecure
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due to its small key space [RFC3766].
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Note that most of the problems listed above are already present in
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the HTTP Digest authentication mechanism.
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Because DIGEST-MD5 is defined as an extensible mechanism, it is
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possible to fix most of the problems listed above. However, this
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would increase implementation complexity of an already complex
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mechanism even further, so the effort is not worth the cost. In
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addition, an implementation of a "fixed" DIGEST-MD5 specification
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would likely either not interoperate with any existing implementation
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of [RFC2831] or would be vulnerable to various downgrade attacks.
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Note that despite DIGEST-MD5 seeing some deployment on the Internet,
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this specification recommends obsoleting DIGEST-MD5 because DIGEST-
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MD5, as implemented, is not a reasonable candidate for further
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standardization and should be deprecated in favor of one or more new
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password-based mechanisms currently being designed.
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The Salted Challenge Response Authentication Mechanism (SCRAM) family
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of SASL mechanisms [RFC5802] has been developed to provide similar
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features as DIGEST-MD5 but with a better design.
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Melnikov Informational [Page 4]
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RFC 6331 Moving DIGEST-MD5 to Historic July 2011
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2. Security Considerations
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Security issues are discussed throughout this document.
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3. IANA Considerations
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IANA has changed the "Intended usage" of the DIGEST-MD5 mechanism
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registration in the SASL mechanism registry to OBSOLETE. The SASL
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mechanism registry is specified in [RFC4422] and is currently
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available at:
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http://www.iana.org/assignments/sasl-mechanisms
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4. Acknowledgements
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The author gratefully acknowledges the feedback provided by Chris
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Newman, Simon Josefsson, Kurt Zeilenga, Sean Turner, and Abhijit
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Menon-Sen. Various text was copied from other RFCs, in particular,
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from [RFC2831].
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5. References
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5.1. Normative References
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[RFC2617] Franks, J., Hallam-Baker, P., Hostetler, J., Lawrence,
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S., Leach, P., Luotonen, A., and L. Stewart, "HTTP
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Authentication: Basic and Digest Access
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Authentication", RFC 2617, June 1999.
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[RFC2831] Leach, P. and C. Newman, "Using Digest Authentication
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as a SASL Mechanism", RFC 2831, May 2000.
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5.2. Informative References
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[DES] National Institute of Standards and Technology, "Data
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Encryption Standard (DES)", FIPS PUB 46-3,
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October 1999.
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[ISO-8859-1] International Organization for Standardization,
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"Information technology - 8-bit single-byte coded
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graphic character sets - Part 1: Latin alphabet No. 1",
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ISO/IEC 8859-1, 1998.
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[RFC0822] Crocker, D., "Standard for the format of ARPA Internet
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text messages", STD 11, RFC 822, August 1982.
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Melnikov Informational [Page 5]
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RFC 6331 Moving DIGEST-MD5 to Historic July 2011
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[RFC2195] Klensin, J., Catoe, R., and P. Krumviede, "IMAP/POP
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AUTHorize Extension for Simple Challenge/Response",
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RFC 2195, September 1997.
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[RFC3629] Yergeau, F., "UTF-8, a transformation format of ISO
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10646", STD 63, RFC 3629, November 2003.
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[RFC3766] Orman, H. and P. Hoffman, "Determining Strengths For
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Public Keys Used For Exchanging Symmetric Keys",
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BCP 86, RFC 3766, April 2004.
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[RFC4013] Zeilenga, K., "SASLprep: Stringprep Profile for User
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Names and Passwords", RFC 4013, February 2005.
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[RFC4422] Melnikov, A. and K. Zeilenga, "Simple Authentication
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and Security Layer (SASL)", RFC 4422, June 2006.
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[RFC5056] Williams, N., "On the Use of Channel Bindings to Secure
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Channels", RFC 5056, November 2007.
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[RFC5234] Crocker, D. and P. Overell, "Augmented BNF for Syntax
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Specifications: ABNF", STD 68, RFC 5234, January 2008.
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[RFC5802] Newman, C., Menon-Sen, A., Melnikov, A., and N.
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Williams, "Salted Challenge Response Authentication
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Mechanism (SCRAM) SASL and GSS-API Mechanisms",
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RFC 5802, July 2010.
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[RFC6151] Turner, S. and L. Chen, "Updated Security
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Considerations for the MD5 Message-Digest and the HMAC-
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MD5 Algorithms", RFC 6151, March 2011.
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[RFC6229] Strombergson, J. and S. Josefsson, "Test Vectors for
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the Stream Cipher RC4", RFC 6229, May 2011.
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Author's Address
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Alexey Melnikov
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Isode Limited
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5 Castle Business Village
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36 Station Road
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Hampton, Middlesex TW12 2BX
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UK
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EMail: Alexey.Melnikov@isode.com
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URI: http://www.melnikov.ca/
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Melnikov Informational [Page 6]
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