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Dynamic fault-tolerant routing algorithm for networks-on-chip based on localised detouring paths

机译:基于局部de回路径的片上网络动态容错路由算法

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Downscaled complementary metal-oxide semiconductor (CMOS) technology feature sizes have enabled massive transistor integration densities. Multi-core chips with billions of transistors are now a reality. However, this rapid increase in on-chip resources has come at the expense of higher susceptibility to defects and wear-out. The inter-router communication links of networks-on-chips (NoCs) are composed of metal wires that are especially vulnerable to catastrophic physical effects such as those of electro-migration, which can even cause link disconnects. To address this hazard, fault-tolerant (FT) routing algorithms sustain on-chip communication by re-routing messages around faulty links, or regions. This work presents a new FT routing scheme that employs a localised re-routing approach. Packets are de-toured around faulty links/regions based on purely local and distributed decisions, and without any global link state knowledge. The algorithm, which is proven to be deadlock- and livelock-free, also handles dynamically occurring faults. Detailed evaluation with synthetic traffic patterns and real applications within a full-system simulation environment demonstrate the efficacy of the new scheme with up to 12% of NoC links being faulty. Synthesis results also prove the feasibility of the proposed protocol at modest hardware and power consumption overheads of only over 5 and 2.5%, respectively.
机译:缩小的互补金属氧化物半导体(CMOS)技术特征尺寸实现了巨大的晶体管集成密度。具有数十亿个晶体管的多核芯片现已成为现实。但是,这种片上资源的快速增加是以对缺陷和磨损的更高敏感性为代价的。片上网络(NoC)的路由器间通信链路由金属线组成,这些金属线特别容易遭受灾难性的物理影响,例如电迁移的影响,甚至可能导致链路断开。为了解决这种危险,容错(FT)路由算法通过在故障链路或区域周围重新路由消息来维持片上通信。这项工作提出了一种采用局部重路由方法的新FT路由方案。根据纯粹的本地和分布式决策,在没有任何全局链路状态知识的情况下,将数据包绕过故障链路/区域绕行。该算法被证明是无死锁和无活锁的,还可以处理动态发生的故障。在整个系统仿真环境中使用综合流量模式进行的详细评估和实际应用证明了新方案的有效性,其中高达12%的NoC链路均出现故障。综合结果也证明了该协议在适度的硬件和仅分别超过5%和2.5%的功耗开销下的可行性。

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