Network Working Group J. Postel
Request for Comments: 925 ISI
October 1984
Multi-LAN Address Resolution
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RFC 925 October 1984
Multi-LAN Address Resolution
To see how this could work let us imagine a "magic box" (BOX) that is connected as if it were an ordinary host to two (or more) LANs.
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RFC 925 October 1984
Multi-LAN Address Resolution
The entries in the caches and the search list must time out.
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RFC 925 October 1984
Multi-LAN Address Resolution
Case 3: If the mapping is not found in any of the caches, then the BOX must try to find out the the address, and then respond as in case 1 or 2. In this case, the BOX has to do some magic.
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RFC 925 October 1984
Multi-LAN Address Resolution
There are two approaches to this problem: first, to have a relatively short time out on the search list entries; or second, to have the BOX periodically send ARPs for each entry on the search list.
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RFC 925 October 1984
Multi-LAN Address Resolution
When handling regular datagrams, the BOXes must decrement the IP datagram Time-To-Live field (TTL) and update the IP header check sum. If the TTL becomes zero the datagram is discarded (not forwarded).
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RFC 925 October 1984
Multi-LAN Address Resolution
Non-Broadcast LANs
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RFC 925 October 1984
Multi-LAN Address Resolution
Broadcast
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RFC 925 October 1984
Multi-LAN Address Resolution
DISCUSSION
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RFC 925 October 1984
Multi-LAN Address Resolution
1. How does the host discover if the destination is in this LAN or some other LAN?
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RFC 925 October 1984
Multi-LAN Address Resolution
Extended ARP Scheme
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RFC 925 October 1984
Multi-LAN Address Resolution
SUMMARY
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RFC 925 October 1984
Multi-LAN Address Resolution
GLOSSARY
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RFC 925 October 1984
Multi-LAN Address Resolution
Internet
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RFC 925 October 1984
Multi-LAN Address Resolution
REFERENCES