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Tolerating transient illegal turn faults in NoCs

机译:容忍NoC中的瞬时非法转弯故障

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Network-on-Chip (NoC) is becoming a competitive solution to connect hundreds of processing elements in modern computing platforms. Under the trend of shrinking feature sizes, circuits are likely to suffer from faults which lead to degraded performance and erroneous behaviour. Compared to permanent faults, transient faults happen even more frequently and seriously while they are hidden within complex on chip behaviours. One of the serious consequences caused by transient faults is taking illegal turns by the packets after the damage of control logic in on-chip routers which may lead to a deadlock situation and eventually crashing the entire system. To avoid this situation, in this paper, we propose a comprehensive scheme called ODT including an improved router architecture, an illegal-turn-resilient routing algorithm, online fault-detect units and a fault classification method. By applying ODT, more turns are supported on routing level and the deadlock situations can be significantly reduced. Experimental results indicate up to 22% increase of the survived packets in the network when 4% of routing computation units in failure. The extra area overhead and power consumption of ODT method is around 9.22% and 9.63%. (C) 2016 Elsevier B.V. All rights reserved.
机译:片上网络(NoC)成为一种竞争性解决方案,可以连接现代计算平台中的数百个处理元素。在特征尺寸减小的趋势下,电路可能会遭受故障,从而导致性能下降和错误的行为。与永久性故障相比,暂态故障更频繁,更严重地发生,同时它们隐藏在复杂的芯片行为中。由瞬态故障引起的严重后果之一是片上路由器中的控制逻辑损坏之后,数据包非法转入数据包,这可能导致死锁情况,并最终使整个系统崩溃。为了避免这种情况,在本文中,我们提出了一种称为ODT的综合方案,其中包括改进的路由器体系结构,非法转弯弹性路由算法,在线故障检测单元和故障分类方法。通过使用ODT,可以在路由级别上支持更多转弯,并且可以大大减少死锁情况。实验结果表明,当4%的路由计算单元出现故障时,网络中存活的数据包最多增加22%。 ODT方法的额外面积开销和功耗约为9.22%和9.63%。 (C)2016 Elsevier B.V.保留所有权利。

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