Title :
Deadlock-Free Multicast Routing Algorithm for Wormhole-Switched Mesh Networks-on-Chip
Author :
Carara, Everton Alceu ; Moraes, Fernando Gehm
Author_Institution :
FACIN, PUCRS, Porto Alegre
Abstract :
An important service in distributed systems, as multi-processors, is the ability to transmit multicast messages. Cache coherence protocols and parallel algorithms are examples of applications requiring multicast messages. To transmit a multicast message to n targets, in networks-on-chip without multicast service, the source router must transmit n identical messages. Few works in the literature describe multicasting in NoCs. The goal of this work is to implement a deadlock free routing algorithm for wormhole-switched mesh NoCs, enabling to transmit simultaneous multicast messages. The dual-path multicast algorithm, used in multicomputers, is adapted to NoCs in this work. The dual-path multicast algorithm is implemented for circuit and packet switching. The evaluation comprises: (i) comparison between the algorithms; (ii) NoC performance as a function of the percentage of injected multicast messages; (iii) performance gains obtained with the dual-path algorithm when compared to the transmission of single unicast messages.
Keywords :
cache storage; message passing; multiprocessor interconnection networks; network routing; network-on-chip; packet switching; parallel algorithms; cache coherence protocol; circuit switching; deadlock-free multicast routing algorithm; distributed system; dual-path multicast algorithm; multicast message transmission; multicomputers; multiprocessors; packet switching; parallel algorithm; source router; wormhole-switched mesh networks-on-chip; Circuits; Multicast algorithms; Multicast protocols; Network-on-a-chip; Packet switching; Parallel algorithms; Performance gain; Routing; System recovery; Unicast; NoC; multicast; routring algorithms;
Conference_Titel :
Symposium on VLSI, 2008. ISVLSI '08. IEEE Computer Society Annual
Conference_Location :
Montpellier
Print_ISBN :
978-0-7695-3291-2
Electronic_ISBN :
978-0-7695-3170-0
DOI :
10.1109/ISVLSI.2008.18