DocumentCode
1165866
Title
Understanding and Mitigating the Effects of Count to Infinity in Ethernet Networks
Author
Elmeleegy, Khaled ; Cox, Alan L. ; Ng, T. S Eugene
Author_Institution
Dept. of Comput. Sci., Rice Univ., Houston, TX
Volume
17
Issue
1
fYear
2009
Firstpage
186
Lastpage
199
Abstract
Ethernet´s high performance, low cost, and ubiquity have made it the dominant networking technology for many application domains. Unfortunately, its distributed forwarding topology computation protocol-the rapid spanning tree protocol (RSTP)-is known to suffer from a classic count-to-infinity problem. However, the cause and implications of this problem are neither documented nor understood. This paper has three main contributions. First, we identify the exact conditions under which the count-to-infinity problem manifests itself, and we characterize its effect on forwarding topology convergence. Second, we have discovered that a forwarding loop can form during count to infinity, and we provide a detailed explanation. Third, we propose a simple and effective solution called RSTP with Epochs. This solution guarantees that the forwarding topology converges in at most one round-trip time across the network and eliminates the possibility of a count-to-infinity induced forwarding loop.
Keywords
local area networks; protocols; telecommunication network topology; Ethernet networks; count-to-infinity problem; distributed forwarding topology computation protocol; dominant networking technology; forwarding topology convergence; rapid spanning tree protocol; round-trip time; Computer interfaces; Computer network reliability; Costs; Distributed computing; Ethernet networks; H infinity control; Network topology; Packet switching; Protocols; Switches; Ethernet; reliability; spanning tree protocols;
fLanguage
English
Journal_Title
Networking, IEEE/ACM Transactions on
Publisher
ieee
ISSN
1063-6692
Type
jour
DOI
10.1109/TNET.2008.920874
Filename
4785364
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