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Dynamic Task Mapping with Congestion Speculation for Reconfigurable Network-on-Chip

机译:可重配置片上网络的具有拥塞推测的动态任务映射

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Network-on-Chip (NoC) has been proposed as a promising communication architecture to replace the dedicated interconnections and shared buses for future embedded system platforms. In such a parallel platform, mapping application tasks to the NoC is a key issue because it affects throughput significantly due to the problem of communication congestion. Increased communication latency, low system performance, and low resource utilization are some side-effects of a bad mapping. Current mapping algorithms either do not consider link utilizations or consider only the current utilizations. Besides, to design an efficient NoC platform, mapping task to computation nodes and scheduling communication should be taken into consideration. In this work, we propose an efficient algorithm for dynamic task mapping with congestion speculation (DTMCS) that not only includes the conventional application mapping, but also further considers future traffic patterns based on the link utilization. The proposed algorithm can reduce overall congestion, instead of only improving the current packet blocking situation. Our experiment results have demonstrated that compared to the state-of-the-art congestion-aware Path Load algorithm, the proposed DTMCS algorithm can reduce up to 40.5% of average communication latency, while the maximal communication latency can be reduced by up to 67.7%.
机译:片上网络(NoC)已被提出作为一种有前途的通信体系结构,以取代未来嵌入式系统平台的专用互连和共享总线。在这样的并行平台中,将应用程序任务映射到NoC是一个关键问题,因为由于通信拥塞问题,它会显着影响吞吐量。通信延迟增加,系统性能降低和资源利用率低是不良映射的一些副作用。当前的映射算法要么不考虑链路利用率,要么仅考虑当前利用率。此外,为了设计高效的NoC平台,应考虑将任务映射到计算节点和调度通信。在这项工作中,我们提出了一种具有拥塞推测(DTMCS)的动态任务映射的高效算法,该算法不仅包括常规的应用程序映射,而且还基于链路利用率进一步考虑了未来的流量模式。所提出的算法可以减少总体拥塞,而不是仅仅改善当前的分组阻塞情况。我们的实验结果表明,与最新的拥塞感知路径负载算法相比,提出的DTMCS算法可以减少平均通信延迟的40.5%,而最大通信延迟可以减少67.7。 %。

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