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FL2STAR: A novel topology for on-chip routing in NoC with fault tolerance and deadlock prevention

机译:FL2STAR:具有容错和死锁预防的NOC片上路的新型拓扑结构

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CMP (Chip Multiprocessor) based architectures have offered a promising solution in tomorrow's high performance computing demands. Topology and routing policy are playing key roles in designing such architectures to develop a NoC (Network-on-Chip). Major influencing design metrics include scalability, modularity, transport latency, parallelism, and, efficient load-balancing (to avoid generation of hot spots). Efficiency of topology as well as good routing policy is again counted in terms of its ability of fault tolerance and its deadlock prevention scheme. In this work, our primary objective was to design an efficient scalable NoC architecture with efficient fault tolerant routing policies to improve performance of a NoC from all these aspects. This not only reduces the network latency considerably but also tries to balance the load of the network as well as ensures that the packet will always reach the destination through the possible shortest deadlock free path.
机译:基于CMP(芯片多处理器)的架构在明天的高性能计算需求中提供了一个有希望的解决方案。 拓扑和路由策略正在设计设计这些架构以开发NOC(片上网)的关键作用。 主要影响设计指标包括可伸缩性,模块化,传输延迟,并行性,以及高效的负载平衡(以避免产生热点)。 拓扑效率以及良好的路由政策再次计数其容错能力及其死锁预防方案。 在这项工作中,我们的主要目标是设计一个高效的可扩展NoC架构,具有高效的容错路由策略,以提高来自所有这些方面的NOC的性能。 这不仅可以显着降低网络延迟,而且还试图平衡网络的负载以及确保数据包将始终通过可能的最短死锁可用路径到达目的地。

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