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Reconfigurable mesh-connected processor arrays using row-column bypassing and direct replacement

机译:使用行列旁路和直接替换的可重构网格连接处理器阵列

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This paper proposes an advanced reconfiguration scheme using row-column bypassing and direct replacement for two-dimensional mesh-connected processing-node arrays that makes an array usable for massively parallel computing and stand-alone computing in an efficient divided manner. This scheme uses an array providing a switching circuit in every node for row-column bypassing and a simple bypass network with a tree structure allocated to the array by graph-node coloring with a minimum inter-node distance of three for direct replacement. It can reconfigure a subarray with a regular matrix of free nodes usable for parallel computing in the array while allowing a small delay in the mesh connections but maintaining a communication path from every busy node being used as stand-alone computing to the outside of the array. The direct replacement is used for substitution of busy nodes which are not covered by row-column bypassing with free nodes located in the rows or columns to be bypassed, helping to enlarge the size of the reconfigured subarray. The bypass allocation with a minimum distance of three enables distributed communications and simple routing in the array while attaining a large success probability of the direct replacement. The proposed scheme is advantageous for constructing fault-tolerant massively parallel systems by using personal computers or workstations as processing nodes and Ethernet devices for interconnections.
机译:本文提出了一种先进的重新配置方案,该方案使用行列旁路和直接替换二维网格连接的处理节点阵列,从而使该阵列可以有效地划分为大规模并行计算和独立计算。该方案使用在每个节点中提供开关电路以进行行列旁路的阵列,以及通过图节点着色将具有树结构的简单树状结构分配给阵列的简单旁路网络,其中最小节点间距离为3,以直接替换。它可以用可用节点的规则矩阵重新配置一个子阵列,该可用节点可用于阵列中的并行计算,同时允许网格连接中的一小段延迟,但保持从用作独立计算的每个繁忙节点到阵列外部的通信路径。直接替换用于用行旁路中的空闲节点替换要被行行旁路未覆盖的繁忙节点,从而有助于扩大重新配置的子阵列的大小。最小距离为3的旁路分配可实现阵列中的分布式通信和简单路由,同时获得很大的直接替换成功率。所提出的方案对于通过使用个人计算机或工作站作为处理节点和用于互连的以太网设备来构造容错的大规模并行系统是有利的。

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