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[5] Brownell, D, "Dynamic Reverse Address Resolution Protocol (DRARP)", Work in Progress. The Reverse Address Resolution Protocol (RARP) [10] (through the extensions defined in the Dynamic RARP (DRARP) [5]) explicitly addresses the problem of network address discovery, and includes an automatic IP address assignment mechanism. [10] Finlayson, R., Mann, T., Mogul, J., and M. Theimer, "A Reverse Address Resolution Protocol", RFC 903, Stanford, June 1984. [16] Postel, J., "Internet Control Message Protocol", STD 5, RFC 792, USC/Information Sciences Institute, September 1981. The Trivial File Transfer Protocol (TFTP) [20] provides for transport of a boot image from a boot server. The Internet Control Message Protocol (ICMP) [16] provides for informing hosts of additional routers via "ICMP redirect" messages. [20] Sollins, K., "The TFTP Protocol (Revision 2)", RFC 783, NIC, June 1981. Works [10], [16] and [20] can be obtained via Internet.
The Reverse Address Resolution Protocol (RARP) [1] (through the extensions defined in the Dynamic RARP (DRARP) [2]) explicitly addresses the problem of network address discovery, and includes an automatic IP address assignment mechanism. The Trivial File Transfer Protocol (TFTP) [3] provides for transport of a boot image from a boot server. The Internet Control Message Protocol (ICMP) [4] provides for informing hosts of additional routers via "ICMP redirect" messages. Works [1], [4] and [3] can be obtained via Internet. [1] Finlayson, R., Mann, T., Mogul, J., and M. Theimer, "A Reverse Address Resolution Protocol", RFC 903, Stanford, June 1984. [2] Brownell, D, "Dynamic Reverse Address Resolution Protocol (DRARP)", Work in Progress. [3] Sollins, K., "The TFTP Protocol (Revision 2)", RFC 783, NIC, June 1981. [4] Postel, J., "Internet Control Message Protocol", STD 5, RFC 792, USC/Information Sciences Institute, September 1981.
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