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3D-AMAP: A Latency-Aware Task Mapping onto 3D Mesh-Based NoCs with Partially-Filled TSVs

机译:3D-AMAP:延迟感知任务映射到基于3D网格的NOC,其中包含部分填充的TSVS

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This paper proposes a latency-aware task mapping algorithm called 3D-AMAP for 3D mesh-based NoCs with partially-filled TSVs. The 3D-AMAP algorithm divides communications of a given application graph into Low-volume (LV) and High-Volume (HV) communications. The 3D-AMAP algorithm bypasses the LV communications to partition the given application graph to some subgraphs. Then, 3D-AMAP algorithm fairly assigns 4-neighbor cores of the mesh topology between the high traffic rate tasks of the application graph to reach the bestmapping. The proposed mapping algorithm maps application subgraphs one by one based on their total intra communications considering where the vertical channels are located in the network. Evaluations of the 3D-AMAP mapping algorithm are done in a wide range of working conditions using Access Noxim NoC simulator in terms of network latency. Results show that 3D-AMAP algorithm offers at least 5% and at most 76% in network latencywith respect to NMAP algorithm.
机译:本文提出了一种延迟感知任务映射算法,用于具有部分填充的TSV的3D网状NOC的3D-AMAP。 3D-AMAP算法将给定申请图的通信划分为低容量(LV)和大容量(HV)通信。 3D-AMAP算法绕过LV通信,将给定的应用程序图分配给一些子图。然后,3D-AMAP算法在应用程序图的高流量速率任务之间公平地分配了网状拓扑的4邻核心,以达到最佳绘图。所提出的映射算法基于其总帧内通信,考虑到垂直通道位于网络中的位置,映射算法将应用子图映射。 3D-AMAP映射算法的评估在网络延迟方面使用Access Noxim NoC Simulator进行了广泛的工作条件。结果表明,3D-AMAP算法在网络延迟方面提供至少5%,最多76%,尊重NMAP算法。

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