DocumentCode :
3415310
Title :
Lower bounds on systolic gossip
Author :
Flammini, Michele ; Perennes, Stephane
Author_Institution :
Dipartimento di Matematica, Univ. of l´´Aquila, Italy
fYear :
1997
fDate :
1-5 Apr 1997
Firstpage :
517
Lastpage :
521
Abstract :
Gossiping is an information dissemination process in which each processor has a distinct item of information and has to collect all the items possessed by the other processors. We derive lower bounds on the gossiping time of systolic protocols, i.e. constituted by a periodic repetition of simple communication steps. In particular if we denote by n the number of processors in the network, then for directed networks and for undirected networks in the half-duplex mode any s-systolic gossip protocol takes at least g(s) log2 n time steps, where g(4)=1.8133, g(6)=1.5310 and g(8)=1.4721. For the case s=4 this result is improved to 2.0218 log2 n for directed butterflies of degree 2 and we show that the 2.0218 log2 n and 1.8133 log 2 n lower bounds hold also respectively for undirected Butterfly and de Bruijn networks of degree 2 in the full-duplex case. Our results are obtained by means of new technique relying on two novel concepts in the field: the notion of delay digraph of a systolic protocol and the use of matrix norm methods
Keywords :
communication complexity; computational complexity; multiprocessor interconnection networks; parallel algorithms; transport protocols; de Bruijn networks; delay digraph; directed butterflies; directed networks; half-duplex mode; information dissemination process; matrix norm methods; periodic repetition; s-systolic gossip protocol; simple communication steps; systolic gossip; systolic protocols; undirected networks; Broadcasting; Computer networks; Computer science; Concurrent computing; Contracts; Costs; Delay; Network topology; Protocols; Tree graphs;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Parallel Processing Symposium, 1997. Proceedings., 11th International
Conference_Location :
Genva
ISSN :
1063-7133
Print_ISBN :
0-8186-7793-7
Type :
conf
DOI :
10.1109/IPPS.1997.580949
Filename :
580949
Link To Document :
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