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OE+IOE: A novel turn model based fault tolerant routing scheme for networks-on-chip

机译:OE + IOE:一种新颖的基于转弯模型的片上网络容错路由方案

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Network-on-chip (NoC) communication architectures are increasingly being used today to interconnect cores on chip multiprocessors (CMPs). Permanent faults in NoCs due to fabrication challenges in ultra deep submicron (UDSM) technology nodes and due to wearout have led to an increased emphasis on fault tolerant design techniques. To ensure fault tolerant communication in NoCs, several fault tolerant routing algorithms have been proposed in recent years with the goal of routing flits around faults. A majority of these algorithms are based on the turn model approach due to its simplicity and inherent freedom from deadlock. However, existing turn model based fault tolerant routing algorithms are either too restrictive in the choice of paths that flits can traverse, or are tailored to work efficiently only on very specific fault distribution patterns. In this paper, we propose a novel low overhead fault tolerant routing scheme that combines the odd-even (OE) and inverted odd-even (IOE) turn models to achieve much better fault tolerance than traditional turn model based schemes. The proposed scheme uses replication opportunistically to optimize the balance between energy overhead and arrival rate. Our experimental results indicate that the proposed OE+IOE routing scheme provides better fault tolerance than existing turn model, N-random walk, and dual virtual channel based routing schemes that have been proposed in literature.
机译:如今,越来越多地使用片上网络(NoC)通信体系结构来互连芯片多处理器(CMP)上的内核。由于超深亚微米(UDSM)技术节点中的制造挑战以及磨损导致的NoC中的永久性故障,导致人们越来越重视容错设计技术。为了确保NoC中的容错通信,近年来已经提出了几种容错路由算法,其目标是围绕故障路由纤网。由于这些算法的简单性和固有的免于死锁的能力,因此大多数算法都基于转弯模型方法。但是,现有的基于转弯模型的容错路由算法或者对飞刀可以通过的路径的选择过于严格,或者被定制为仅在非常特定的故障分布模式下有效地工作。在本文中,我们提出了一种新颖的低开销容错路由方案,该方案结合了奇偶(OE)和反向奇偶(IOE)转向模型,以实现比传统的基于转向模型的方案更好的容错能力。所提出的方案机会性地使用复制来优化能量开销和到达率之间的平衡。我们的实验结果表明,与文献中已经提出的现有转弯模型,N随机游走和基于双虚拟通道的路由方案相比,该OE + IOE路由方案具有更好的容错能力。

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