Title :
Achieving fault-tolerant multicast in injured wormhole-routed tori and meshes based on Euler path construction
Author :
Tseng, Yu-Chee ; Yang, Ming-Hour ; Juang, Tong-Ying
Author_Institution :
Dept. of Comput. Sci., Nat. Central Univ., Chung-Li, Taiwan
fDate :
11/1/1999 12:00:00 AM
Abstract :
Recently, wormhole routers with multidestination capability have been proposed to support fast multicast in a multicomputer network. To avoid communication deadlock, existing results have proposed to construct a Hamilton path, Euler path, trip, or their variants in the network, perhaps with some degree of support of virtual channels. In this paper, we identify that a network which is itself Eulerian or is Eulerian after some links are removed, can enjoy the multidestination capability without support of virtual channels. From this definition, we then develop several techniques to achieve fault-tolerant multicast in a torus/mesh of any dimension with regular fault patterns (such as single node, block, L-shape, T-shape, +-shape, U-shape, and H-shape) and even irregular fault patterns. The result improves over existing results on the requirement of support of virtual channels and fault-tolerant capability. Simulation results on tori are presented
Keywords :
fault tolerant computing; multiprocessor interconnection networks; network routing; +-shape; Euler path; Euler path construction; H-shape; Hamilton path; L-shape; T-shape; U-shape; communication deadlock; fault-tolerant multicast; injured wormhole-routed tori; meshes; multicomputer network; multidestination capability; simulation results; virtual channels; Broadcasting; Circuit faults; Computer Society; Computer worms; Concurrent computing; Costs; Fault tolerance; Routing; Shape; System recovery;
Journal_Title :
Computers, IEEE Transactions on