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Fault-tolerant message switching based on wormhole switching and backtracking

机译:基于蠕虫孔切换和反溯的容错消息切换

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Parallel computers are now popularly applied to applications where many calculations are required. In a NO Remote memory Access model (NORA) parallel computer, many processors are connected by communication links and calculation results are obtained by communications among processors. The message switching method, which controls message transmission in the parallel computer, is one of the most important parameters to improve the performance of the parallel computer. Since parallel computers include many processors, its failure rate is very high and many fault-tolerant switching methods have been proposed. The existing methods have problems, however, such as low communication throughput, low fault-tolerant capability, and large hardware overhead. We propose fault-tolerant switching by improving wormhole switching. The proposed method inserts dummy flits, having no information, after the header flit, the first flit of the packet. By overwriting the header flit to the dummy flit, backtracking is implemented without hardware overhead. Computer simulation says that in a 16 by 16 2D torus, for example, the throughput of the proposed method is almost equal to that of existing methods which require large hardware overhead if the number of the faulty nodes is less then 40.
机译:并行计算机现在普遍应用于需要许多计算的应用程序。在没有远程存储器访问模型(NORA)并行计算机中,许多处理器通过通信链路连接,并且通过处理器之间的通信获得计算结果。消息切换方法,其控制并行计算机中的消息传输,是提高并行计算机性能的最重要参数之一。由于并行计算机包括许多处理器,因此其故障率非常高,并且已经提出了许多容错的切换方法。然而,现有方法具有问题,例如低通信吞吐量,低容错能力和大硬件开销。我们通过改善虫洞切换来提出容错的切换。所提出的方法在头部吹掠之后,没有信息,在瓦特之后,包裹的第一瓦特。通过覆盖纹理到虚拟粉碎的标题,在没有硬件开销的情况下实现回溯。例如,如果错误节点的数量小40,则计算机仿真在16乘16乘16乘16乘16乘16个2d torus之中几乎等于需要大硬件开销的现有方法的吞吐量。

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