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Reliability assessment of fault tolerant routing algorithms in networks-on-chip: An analytic approach

机译:片上网络中容错路由算法的可靠性评估:一种分析方法

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Rapid scaling of transistor gate sizes has significantly increased the density of on-chip integrations and paved the way for many-core systems-on-chip with highly improved performances. The design of the interconnection network of these complex systems is a critical one and the network-on-chip is now the accepted efficient interconnect for such large core arrays. An unfortunate adverse effect of technology scaling is the increased susceptibility to failures resulting in failing links and routers in the network-on-chip. To keep the network connected, efficient fault adaptive routing algorithms are necessary to route around faults. To design and evaluate the fault resiliency of such adaptive routing algorithms, fast, accurate and flexible analytic models are required, especially in large networks for which simulations are extremely time costly. In this paper, we present an analytic approach to evaluate the reliability of adaptive routing algorithms based on algebraic manipulations of the channel dependency matrix. It allows also to evaluate the number of alternate paths between source-destination pairs, in the presence of any number of permanent faults in the network. The analytic model is general and can be adapted to evaluate network reliability for any network topology and with any adaptive routing algorithm based on the turn model. We present cycle-accurate simulations to compare the accuracy of the model for the 2-D mesh and the hexagonal networks. The model is able to estimate the network fault resilience with an accuracy of about 1% and more than 70 times faster than the cycle accurate simulation.
机译:晶体管门尺寸的快速缩放显着提高了片上集成的密度,并为性能大大提高的多核片上系统铺平了道路。这些复杂系统的互连网络的设计是至关重要的,而片上网络现在已成为此类大型核心阵列公认的高效互连。技术扩展的不幸不利影响是对故障的敏感性增加,导致片上网络中的链接和路由器出现故障。为了保持网络连接,必须使用高效的故障自适应路由算法来绕过故障进行路由。为了设计和评估这种自适应路由算法的容错能力,需要快速,准确和灵活的分析模型,尤其是在大型网络中,仿真的时间非常昂贵。在本文中,我们提出了一种基于信道依赖矩阵的代数处理来评估自适应路由算法可靠性的分析方法。在网络中存在任何数量的永久性故障的情况下,它还可以评估源-目的地对之间的备用路径数量。该分析模型是通用的,可以适用于评估任何网络拓扑的网络可靠性,并可以使用基于转弯模型的任何自适应路由算法进行评估。我们提出了精确的周期模拟,以比较二维网格和六角形网络模型的准确性。该模型能够以大约1%的准确度估算网络故障恢复能力,并且比周期精确仿真快70倍以上。

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