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Performance/energy aware task migration algorithm for many-core chips

机译:用于多核芯片的性能/能耗感知任务迁移算法

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This study proposes an efficient task migration algorithm for mesh-based multi- and many-core chips. The proposed algorithm collects tasks running on a rectangular-based set of cores, that is, source sub-mesh and moves the tasks to another rectangular-based set to remove chip temperature hotspots and to provide balanced load on the chip. The proposed migration algorithm uses the concept of gathering/scattering to minimise the traffic induced by the migration. In this regard, the proposed algorithm uses a selected node in each row of the source sub-mesh to gather tasks of all cores in the same row. Selection of the gathering node is done based on its location in the row and traffic rate of other cores in the row. When gathering nodes are migrated, in the destination sub-mesh, then, they scatter their tasks according to the same pattern among the cores in their rows. Simulations of the proposed migration algorithm are done by Access Noxim simulator in a various range of network conditions with application graphs of D263DECMP3DEC, DMPEG4, and DVOPD. Results obtained from simulations show that the proposed algorithm offers 36% better performance, 28% lower energy consumption, and 7% lower temperature in comparison with the previously proposed migration algorithms.
机译:这项研究为基于网格的多核和多核芯片提出了一种有效的任务迁移算法。所提出的算法收集在基于矩形的核心集(即源子网格)上运行的任务,并将任务移至另一个基于矩形的核心集,以消除芯片温度热点并在芯片上提供均衡的负载。所提出的迁移算法使用收集/分散的概念来最小化由迁移引起的流量。在这方面,所提出的算法使用源子网格的每一行中的选定节点来收集同一行中所有核心的任务。收集节点的选择是基于其在行中的位置以及行中其他核心的流量速率进行的。当迁移收集节点时,在目标子网格中,然后,它们根据行中各个核心之间的相同模式分散其任务。 Access Noxim模拟器在各种网络条件范围内使用D263DECMP3DEC,DMPEG4和DVOPD的应用图对提出的迁移算法进行了仿真。从仿真中获得的结果表明,与先前提出的迁移算法相比,所提出的算法性能提高了36%,能耗降低了28%,温度降低了7%。

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