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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >Handling Physical-Layer Deadlock Caused by Permanent Faults in Quasi-Delay-Insensitive Networks-on-Chip
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Handling Physical-Layer Deadlock Caused by Permanent Faults in Quasi-Delay-Insensitive Networks-on-Chip

机译:处理准延迟不敏感片上网络中永久性故障导致的物理层死锁

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摘要

Networks-on-Chip (NoCs) are promising fabrics to provide scalable and efficient on-chip communication for large-scale many-core systems. In place of the well-studied synchronous NoCs, the event-driven asynchronous ones have emerged as promising replacement thanks to their strong timing robustness especially when implemented in quasi-delay-insensitive (QDI) circuits. However, their fault tolerance has rarely been studied. The QDI NoCs show complicated failure scenarios and behave differently from synchronous ones. As the scaling semiconductor technology is expected with the accelerated aging process, permanent faults become more likely to happen at runtime. These faults can break the handshake, leading to physical-layer deadlocks which can spread and paralyze the whole QDI NoC. This physical-layer deadlock cannot be resolved using conventional fault-tolerant or deadlock management techniques. This paper systematically studies the impact of permanent faults on QDI NoCs, and presents novel deadlock detection and recovery techniques to handle the fault-caused physical-layer deadlock. The proposed detection technique has been implemented to protect the NoC data paths that occupy 90% of the logic. Employing the detection and recovery techniques to protect interrouter links (60% of the logic), a permanently faulty link is precisely located and the network function can be recovered with graceful performance degradation.
机译:片上网络(NoC)是有望为大型多核系统提供可扩展且高效的片上通信的结构。事件驱动的异步NoC凭借其强大的时序鲁棒性,尤其是在准延迟不敏感(QDI)电路中实现时,已经取代了经过研究的同步NoC,成为有前途的替代产品。然而,很少研究它们的容错性。 QDI NoC显示复杂的故障情况,并且行为与同步情况不同。由于随着加速老化过程的发展,人们有望使用规模化的半导体技术,因此在运行时更容易发生永久性故障。这些故障可能会破坏握手,导致物理层死锁,从而可能扩散并瘫痪整个QDI NoC。使用常规的容错或死锁管理技术无法解决此物理层死锁。本文系统地研究了永久性故障对QDI NoC的影响,并提出了新颖的死锁检测和恢复技术来处理由故障引起的物理层死锁。所提出的检测技术已经实现,以保护占据逻辑90%的NoC数据路径。利用检测和恢复技术来保护路由器间链路(逻辑的60%),可以精确定位永久性故障链路,并且可以恢复网络功能,并且性能会降低。

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