Title :
All-To-All Broadcast in Hexagonal Torus Networks On-Chip
Author :
Touzene, Abderezak
Author_Institution :
Comput. Sci. Dept., Sultan Qaboos Univ., Muscat, Oman
Abstract :
Hexagonal torus networks are special family of Eisenstein-Jacobi (EJ) networks which have gained popularity as good candidates network On-Chip (NoC) for interconnecting Multiprocessor System-on-Chips (MPSoCs). They showed better topological properties compared to the 2D torus networks with the same number of nodes. All-to-all broadcast is a collective communication algorithm used frequently in some parallel applications. Recently, an off-chip all-to-all broadcast algorithm has been proposed for hexagonal torus networks assuming half-duplex links and all-ports communication. The proposed all-to-all broadcast algorithm does not achieve the minimum transmission time and requires 24 kextra buffers, where kis the network diameter. We first extend this work by proposing an efficient all-to-all broadcast on hexagonal torus networks under full-duplex links and all-ports communications assumptions which achieves the minimum transmission delay but requires 36 k extra buffers per router. In a second stage, we develop a new all-to-all broadcast more suitable for hexagonal torus network on-chip that achieves optimal transmission delay time without requiring any extra buffers per router. By reducing the amount of buffer space, the new all-to-all broadcast reduces the routers cost which is an important issue in NoCs architectures.
Keywords :
buffer storage; multiprocessing systems; network-on-chip; parallel processing; 2D torus networks; EJ network; Eisenstein-Jacobi network; MPSoC; NoC architecture; all-to-all broadcast; buffer space; collective communication algorithm; hexagonal torus network-on-chip; multiprocessor system-on-chip; optimal transmission delay; router; topological property; Algorithm design and analysis; Color; Computer architecture; Delays; Nickel; Registers; System-on-chip; Eisenstein-Jacobi networks; Network-on-Chip (NoC); all-to-all broadcast; hexagonal mesh; spanning trees;
Journal_Title :
Parallel and Distributed Systems, IEEE Transactions on
DOI :
10.1109/TPDS.2014.2346200