Request for Comments: 3827
Sun Microsystems, Inc.
Additional Snoop Datalink Types
Status of this Memo
This memo provides information for the Internet community. It does not specify an Internet standard of any kind. Distribution of this memo is unlimited.
Copyright © The Internet Society (2004).
The snoop file format provides a way to store and exchange datalink layer packet traces. This document describes extensions to this file format to support new media.
[RFC1761] defines the snoop file format used to store captured network packets for tools that capture, display, and interpret network traffic. The file format specifies a header containing the Datalink Type field that identifies the network's datalink type. This document defines new values for this field, as well as an IANA registry for future datalink types.
2. New Datalink Types
In addition to the Datalink Type codes listed in [RFC1761], this document defines the following type codes for the corresponding media:
Datalink Type Code ------------- ---- Fibre Channel 16 ATM 17 ATM Classical IP 18 IP over Infiniband 26
The IP over Infiniband packet format is described in [IPoIB].
3. IANA Considerations
This document created a new IANA registry named "Snoop Datalink Types" to hold the various possible 32-bit (4 octet) snoop datalink types. This new registry holds the values previously defined in [RFC1761] and tabulated below:
Datalink Type Code ------------- ---- IEEE 802.3 0 IEEE 802.4 Token Bus 1 IEEE 802.5 Token Ring 2 IEEE 802.6 Metro Net 3 Ethernet 4 HDLC 5 Character Synchronous 6 IBM Channel-to-Channel 7 FDDI 8 Other 9
Additionally, the new registry also holds the values defined above in section 2 of this document.
All new allocations and assignments to this registry starting from code 27 will follow the First Come First Served policy outlined in [BCP0026]. Type codes up to 26 not defined by this section of the document (10-15 and 19-25) are considered reserved.
4. Security Considerations
The addition of new datalink type codes to the existing file format poses no known security risks.
The author would like to thank Jim Carlson, Brent Callaghan, and Bill Strahm for meticulously reviewing this document.
6.1. Normative References
6.2. Informative References
[IPoIB] Kashyap, V. and H.K. Chu, "IP encapsulation and address resolution over InfiniBand networks", Work in Progress, April 2003.
7. Author's Address
Kanoj Sarcar Sun Microsystems, Inc. 14 Network Circle Bldg 14, MPK14-333 Menlo Park, CA 94025 Phone: 1-650-786-4785 EMail: firstname.lastname@example.org
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