LTR:一种低开销、可靠的芯片网络路由算法

A. Patooghy, S. Miremadi
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引用次数: 15

摘要

提出了一种容错路由算法。所提出的路由算法基于对每个数据包进行冗余复制,并通过低流量负载的路径发送冗余数据包。由于每个数据包都有两个副本到达目标节点,因此会检测到错误的数据包并将其替换为正确的数据包。为了有效利用流量负荷较小的路径,冗余报文采用YX路由,原始报文采用Duato路由算法路由。该算法最大限度地减少发送冗余数据包的数量,并利用不同的路径发送原始数据包和冗余数据包,从而提高noc的可靠性,而功耗和性能开销可以忽略不计。VHDL仿真证实,与基于泛洪的路由算法相比,所提出的路由算法在提供几乎相同的可靠性的同时,施加了更低的功耗和性能开销。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LTR: A low-overhead and reliable routing algorithm for network on chips
A fault tolerant routing algorithm is presented in this paper. The proposed routing algorithm is based on making a redundant copy of each packet as well as sending the redundant packets through the paths with low traffic loads. Since two copies of each packet reach the destination node, the erroneous packets are detected and replaced with the correct ones. To effectively use the paths with lower traffic loads, the redundant packets are routed according to YX routing while the original packets are routed according to Duato's routing algorithm. Minimizing the number of sent redundant packets and exploiting different paths for sending the original and redundant packets enable the proposed algorithm to improve the reliability of NoCs with negligible power and performance overheads. VHDL simulations confirm that the proposed routing algorithm imposes lower power and performance overheads while providing almost the same reliability in comparison with flood-based routing algorithms.
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