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Power and Latency Optimized Deadlock-Free Routing Algorithm on Irregular 2D Mesh NoC using LBDRe

机译:使用LBDRe的不规则2D网格NoC的功耗和延迟优化的无死锁路由算法

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摘要

Efficient routing is challenging and crucial problem in the irregular mesh NoC topologies because of increasing hardware cost and routing tables. In this paper, the authors propose an efficient deadlock-free routing algorithm for irregular mesh NoCs which reduces the latency and power consumption significantly. The problem with degree priority based routing algorithm is that it cannot remove deadlocks in irregular mesh topologies. Therefore, the authors use the extended Logic Based Distributed Routing (LBDRe) to remove deadlock situations without using any virtual channel in the degree priority based routing algorithm. The proposed LBDRe based technique also removes the dependency on routing tables. The authors further apply odd-Even routing algorithm to LBDRe to ensure that some turns are prohibited to remove deadlocks. Experimental results show that the proposed routing algorithm reduces power consumption by 9-22% and overall average latency by 8-12% with the minimum hardware cost for the irregular mesh NoC topologies.
机译:由于硬件成本和路由表的增加,在不规则网状NoC拓扑中,高效路由是具有挑战性的关键问题。在本文中,作者提出了一种有效的无规则网状NoC的无死锁路由算法,该算法显着减少了等待时间和功耗。基于度优先级的路由算法的问题在于它无法消除不规则网格拓扑中的死锁。因此,作者使用扩展的基于逻辑的分布式路由(LBDRe)来消除死锁情况,而无需在基于程度优先级的路由算法中使用任何虚拟通道。所提出的基于LBDRe的技术还消除了对路由表的依赖。作者还对LBDRe应用了奇偶路由算法,以确保禁止某些转弯来消除死锁。实验结果表明,针对不规则网状NoC拓扑,所提出的路由算法可降低9-22%的功耗和8-12%的总体平均延迟。

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