Scheduling in co-partitioned array architectures

U. Eckhardt, R. Merker
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引用次数: 7

Abstract

We consider a balanced combined application of the known LPGS- and LSGP-partitioning which we call co-partitioning. This approach allows a structural adjustment of the array design as well as a balancing of the size of the local memory and the IO-demand between the processing elements of the co-partitioned array. We determine the size of the LSGP-partitions such that there exists a sequential scheduling within the LSGP-partitions which is free of wait states. We give the proof for the existence of such a scheduling, and we give explicit formulas for the lower and upper bounds of the loops of a for-loop program which represents one of the possible sequential schedulings.
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共分区阵列架构中的调度
我们考虑了已知的LPGS-和lpgp -分区的平衡组合应用,我们称之为协分区。这种方法允许对阵列设计进行结构调整,并在共分区阵列的处理元素之间平衡本地内存的大小和io需求。我们确定lsgp分区的大小,以便在lsgp分区中存在一个没有等待状态的顺序调度。我们证明了这种调度的存在性,并给出了表示一种可能的顺序调度的for循环程序的循环下界和上界的显式公式。
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