Title :
Performance evaluation of dynamic network reconfiguration using Detour-UD routing
Author :
Yoshinaga, Tsutomu ; Nishimura, Yasuhiko
Author_Institution :
Graduate Sch. of Inf. Syst., Univ. of Electro-Commun., Tokyo, Japan
Abstract :
Fault-tolerance is an emerging issue for massively parallel computers. This paper describes the performance impact of dynamic network reconfiguration protocols using a fault-tolerant, adaptive deadlock-recovery routing algorithm, Detour-UD, for k-ary n-cubes. We propose a scheme to specify unroutable packets by managing drain-flags in routing tables. We also propose two selective drainage protocols. One protocol drains the unroutable packets specified by the drain-flags after the reconfiguration process. The other protocol drains deadlocked packets to reduce the network load during the reconfiguration process. Our simulation results show that the first protocol helps reduce the number of drainage packets, and the second one keeps the network throughput during the reconfiguration process.
Keywords :
fault tolerance; parallel processing; performance evaluation; routing protocols; system recovery; Detour-UD routing; adaptive routing; deadlock recovery; drain-flags; drainage protocol; dynamic network reconfiguration protocol; fault-tolerance; k-ary n-cubes; massively parallel computer; performance evaluation; Routing; adaptive routing; deadlock recovery; dynamic network reconfiguration; fault-tolerance; k-ary n-cube;
Conference_Titel :
Innovative Architecture for Future Generation High-Performance Processors and Systems, 2005
Print_ISBN :
0-7695-2483-4
DOI :
10.1109/IWIA.2005.37