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Optimal granularity and scheme of parallel test generation in a distributed system

机译:分布式系统中最佳粒度和并行测试生成方案

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Client-Agent-Server model (CAS model) which can decrease the work load of the client by adding agent processors to the Client-Server model (CS model) is proposed and an approach to parallel test generation for logic circuits on the CAS model is presented. Two problems are considered: optimal granularity problem and optimal scheme problem. First, the problem of parallel test generation on the CAS model is formulated to analyze the effect of the granularity (grain size of target faults allocated to processors) in both cases of static and dynamic task allocation (optimal granularity problem). Then the relationship between the number of processors and the total processing time is analyzed (optimal scheme problem). From the analysis, it is shown that the CAS model can reduce the total processing time over the CS model and that there exists an optimal scheme (an optimal pair of numbers of agent processors and server processors) for the CAS model which minimizes the total processing time for a given number of processors. To corroborate the analysis, the proposed parallel test generation algorithm is implemented on a network of more than 100 workstations and experimental results for the ISCAS benchmark circuits are presented. It is shown that the experimental results are very close to the theoretical results which confirms the existence of optimal granularity and optimal scheme which minimizes the total processing time for the CAS model.
机译:提出了一种通过将代理处理器添加到客户端-服务器模型(CS模型)来减少客户端工作量的客户端-代理-服务器模型(CAS模型),并提出了一种在CAS模型上并行生成逻辑电路测试的方法。提出了。考虑了两个问题:最优粒度问题和最优方案问题。首先,制定了在CAS模型上并行测试生成的问题,以分析粒度(静态和动态任务分配(最优粒度问题))的影响(分配给处理器的目标故障的粒度)。然后,分析处理器数量与总处理时间之间的关系(最佳方案问题)。从分析中可以看出,CAS模型可以比CS模型减少总处理时间,并且存在一种CAS模型的最佳方案(代理处理器和服务器处理器的最佳数量对),可以最大程度地减少总处理量给定数量的处理器的时间。为了证实这一分析,在100多个工作站的网络上实施了所提出的并行测试生成算法,并给出了ISCAS基准电路的实验结果。结果表明,实验结果与理论结果非常接近,这证实了最优粒度和最优方案的存在,从而使CAS模型的总处理时间最小化。

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