Network Working Group E. Gerich
Request for Comments: 1366 Merit
October 1992
Guidelines for Management of IP Address Space
1.0 Introduction
With the growth of the Internet and its increasing globalization, much thought has been given to the evolution of the network number allocation and assignment process. RFC 1174, "Identifier Assignment and Connected Status", dated August 1990 recommends that the Internet Registry (IR) continue as the principal registry for network numbers; however, the IR may allocate blocks of network numbers and the assignment of those numbers to qualified organizations. The IR will serve as the default registry in cases where no delegated registration authority has been identified.
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RFC 1366 Guidelines for Management of IP Address Space October 1992 2.0 Qualifications for Distributed Regional RegistriesThe major reason to distribute the registration function is that the Internet serves a more diverse global population than it did at its inception. This means that registries which are located in distinct geographic areas may be better able to serve the local community in terms of language and local customs. While there appears to be wide support for the concept of distribution of the registration function, it is important to define how the candidate delegated registries will be chosen and from which geographic areas.
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The distributed regional registry is empowered by the IANA and the IR to provide the network number registration function to a geographic area. It is possible for network subscribers to contact the IR directly. Depending on the circumstances the network subscriber may be referred to the regional registry, but the IR will be prepared to service any network subscriber if necessary.
3.0 Allocation of the Network Number Space by the Internet Registry
The Class A portion of the number space represents 50% of the total IP numbers; Class B is 25% of the total; Class C is approximately 12% of the total. Table 1 shows the current allocation of the IP network numbers.
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Each block represents 131,072 addresses or approximately 6% of the total Class C address space.Multi-regional 192.0.0.0 - 193.255.255.255 Europe 194.0.0.0 - 195.255.255.255Others 196.0.0.0 - 197.255.255.255 North America 198.0.0.0 - 199.255.255.255 Central/South
4.0 Assignment of the Network Number Space
The exhaustion of the IP address space is a topic of concern for the entire Internet community. This plan for the assignment of Class A, B, or C IP numbers to network subscribers has two major goals: 1) to reserve a portion of the IP number space so that it may be available to transition to a new numbering plan
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2) to assign the Class C network number space in a fashion which is compatible with proposed address aggregation techniques
4.1 Class A
The Class A number space can support the largest number of unique host identifier addresses and is also the class of network numbers most sparsely populated. There are only approximately 77 Class A network numbers which are unassigned, and these 77 network numbers represent about 30% of the total network number space.
4.2 Class B
Previously organizations were recommended to use a subnetted Class B network number rather than multiple Class C network numbers. Due to the scarcity of Class B network numbers and the under utilization of the Class B number space by most organizations, the recommendation is now to use multiple Class Cs where practical.
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RFC 1366 Guidelines for Management of IP Address Space October 1992 4.3 Class CSection 3 of this document recommends a division of the Class C number space. That division is primarily an administrative division which lays the groundwork for distributed network number registries. This section deals with how network numbers are assigned from within those blocks. Sub-allocations of the block to sub-registries is beyond the scope of this paper.
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RFC 1366 Guidelines for Management of IP Address Space October 1992 5.0 ConclusionThis proliferation of class C network numbers may aid in preserving the scarcity of class A and B numbers, but it is sure to accelerate the explosion of routing information carried by Internet routers. Inherent in these recommendations is the assumption that there will be modifications in the technology to support the larger number of network address assignments due to the decrease in assignments of Class A and B numbers and the proliferation of Class C assignments.
6.0 Acknowledgements
The author would like to acknowledge the substantial contributions made by the members of the following two groups, the Federal Engineering Planning Group (FEPG) and the International Engineering Planning Group (IEPG). This document also reflects many concepts expressed at the IETF Addressing BOF which took place in Cambridge, MA in July 1992. In addition, Jon Postel (ISI) and Yakov Rekhter (T.J. Watson Research Center, IBM Corp.) reviewed this document and contributed to its content. The author thanks those groups and individuals who have been sighted for their comments.
7.0 References
[1] Wang, Z., and J. Crowcroft, "A Two-Tier Address Structure for the[3] Ford, P., "Working Draft - dated 6 May 1992", Work in Progress.[4] Solensky F., and F. Kastenholz, "A Revision to IP Address
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[6] Rekhter, Y., and T. Li, "Guidelines for IP Address Allocation",