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NODIFS: a novel, distributed circuit-partitioning based algorithm for fault simulation of combinational and sequential digital designs on loosely-coupled parallel processors

机译:结核病:基于分布式电路分配的基于组合和顺序数字设计的基于故障模拟算法,在松散的并联处理器上的组合和顺序数字设计

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The author introduces a distributed, circuit-partitioning-based algorithm for fault simulation of both combinational and sequential digital designs. In this approach, referred to as NODIFS, every component in the circuit is modeled as an asynchronous, concurrent entity that is fault simulated as soon as appropriate transitions and fault lists are asserted as its input ports. The circuit is partitioned such that components of ever partition are allocated to a unique processor of the parallel processor system. Consequently, a number of components may be concurrently fault simulated on multiple processors in NODIFS, implying significant increase in throughput. The algorithm is detailed and a mathematical proof of correctness is presented. The performance results indicate significant increase in the speedup for a few representative example digital designs.
机译:作者介绍了一种基于分布式的电路分区的基于电路分区的组合和顺序数字设计的故障模拟算法。在这种方法中,称为NODIFS,电路中的每个组件都被建模为异步,并发实体,这是一旦适当的转换和故障列表被置于其输入端口的故障。该电路被划分,使得有史以分区的组件被分配给并行处理器系统的唯一处理器。因此,许多组件可以在结核中的多个处理器上模拟的同时故障,这意味着吞吐量的显着增加。算法详细介绍了正确性的数学证明。绩效结果表明,对于少数代表性示例数字设计的加速度显着增加。

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