An efficient load balancing method for multi-core systems with asymmetric memory architectures

Byungjin Kim, Young-Si Hwang, Youngho Ahn, Ki-Seok Chung
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Abstract

As the number of cores in a processor increases, asymmetrically distributed memory architecture is expected to become widely adopted. Running an application program in a distributed fashion on an asymmetric memory architecture effectively is a challenging task. In this paper, we propose a novel load balancing technique for multi-core systems with asymmetric memory architectures. The proposed method uses probabilistic information on the expected execution time of the child processes for each parent process. Also, to maximize the load balancing effect with low cost, the proposed method groups processes, and treats each group as a load balancing unit. The trade-off between load balancing effect of each load balancing unit and the cost is taken into account. To show the effectiveness of this paper, we present test cases in which the proposed method show better performance than that of existing load balancing methods.
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非对称内存架构下多核系统的有效负载平衡方法
随着处理器核数的增加,非对称分布式内存架构有望得到广泛采用。在非对称内存架构上有效地以分布式方式运行应用程序是一项具有挑战性的任务。在本文中,我们提出了一种新的负载平衡技术,用于具有非对称内存架构的多核系统。所建议的方法使用关于每个父进程的子进程的预期执行时间的概率信息。此外,为了以低成本最大化负载均衡效果,提出的方法对进程进行分组,并将每组作为一个负载均衡单元。考虑了各负载均衡单元的负载均衡效果与成本之间的权衡。为了证明本文的有效性,我们给出了测试用例,其中所提出的方法比现有的负载平衡方法表现出更好的性能。
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