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A performance comparison of hierarchical ring- and mesh-connected multiprocessor networks

机译:分层的环形和网格连接的多处理器网络的性能比较

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This paper compares the performance of hierarchical ring- and mesh-connected wormhole routed shared memory multiprocessor networks in a simulation study. Hierarchical rings are interesting alternatives to meshes since (i) they can be clocked at faster rates, (ii) they can have wider data paths and hence shorter message sates, (iii) they allow addition and removal of processing nodes at arbitrary locations, (iv) their topology allows natural exploitation in the spatial locality of application memory access patterns, and (v) their topology allows efficient implementation of broadcasts. Our study shows that for workloads with little locality, meshes scale better than ring networks because ring-based systems have limited bisection bandwidth. However, for workloads with some memory access locality hierarchical rings outperform meshes by 20-40% for system sizes of up to 128 processors. Even with poor access locality, hierarchical rings will outperform meshes for these system sizes if the mesh router buffers are only 1-flit large, and they will outperform meshes an systems with less than 36 processors regardless of mesh router buffer size.
机译:本文在仿真研究中比较了分层环连接和网格连接的虫孔路由共享内存多处理器网络的性能。分层环是网格的有趣替代方案,因为(i)它们可以以更快的速率计时,(ii)它们可以具有更宽的数据路径,因此消息状态更短,(iii)允许在任意位置添加和删除处理节点,( iv)它们的拓扑允许对应用程序内存访问模式的空间局部性进行自然开发,并且(v)它们的拓扑允许广播的高效实现。我们的研究表明,对于局域性很小的工作负载,网格划分的规模要大于环形网络,因为基于环形的系统的二等分带宽有限。但是,对于具有某些内存访问位置的工作负载,对于最多128个处理器的系统大小,分层环的性能优于网格的20-40%。即使访问位置较差,如果网状路由器缓冲区只有1层大,对于这些系统大小,分层环也将胜过网状网络,并且无论网状路由器缓冲区的大小如何,分层环都将优于具有少于36个处理器的系统。

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