Self diagnosis of processor arrays using a comparison model

P. Maestrini, P. Santi
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引用次数: 25

Abstract

This paper introduces a diagnosing algorithm for bidimensional processor arrays, where processors are interconnected in horizontal and vertical meshes. For the purpose of diagnosis, the array is considered to be partitioned in square clusters of processors. The algorithm is based on interprocessor tests, using a comparison model. The algorithm, which is divided in four steps, called intracluster diagnosis, interluster diagnosis, fault-free core identification and augmentation, identifies a set of non-faulty and a set of faulty units. The diagnosis is proved to be correct in the worst case, assuming that the actual number of faulty processors is no more that T(N), an increasing function of the number N of processors. It is shown that T(N) is O(N/sup 2/3/). Although correct, the diagnosis is generally incomplete. However, using probabilistic techniques, it is shown that the diagnosis is very likely to be complete under the same limitations which ensure correctness in the worst case.
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使用比较模型的处理器阵列的自诊断
本文介绍了一种二维处理器阵列的诊断算法,其中处理器在水平和垂直网格中相互连接。为了便于诊断,将阵列划分为处理器的方形集群。该算法基于处理器间测试,采用比较模型。该算法分为簇内诊断、簇间诊断、无故障核识别和增强四个步骤,分别对一组非故障单元和一组故障单元进行识别。在最坏的情况下,假设故障处理器的实际数量不超过T(N),即处理器数量N的递增函数,证明诊断是正确的。结果表明,T(N) = 0 (N/sup 2/3/)。虽然正确,但诊断通常是不完整的。然而,使用概率技术表明,在保证最坏情况下的正确性的相同限制下,诊断很可能是完整的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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