三维炮击技术的分层存储结构

L. Shen, M.F.A. Deprettere
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引用次数: 2

摘要

作者早先提出了一种新的空间划分方法,用于将辐射方法的计算映射到高度流水线的并行架构上(L.S. Shen等人,1990;1991)。这种剥壳技术可以减轻共享内存架构中主机和处理器之间的通信负载,但是随着处理器数量的增加,系统性能可能会下降。提出了一种由驻留集、缓存和主存组成的层次结构。它可以减少一个补丁的平均访问时间,从而在处理吞吐量和内存带宽之间提供更好的平衡,以增强计算的流水线性。描述了一种选择驻留集的方法,并研究了缓存设计中的不同策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A hierarchical memory structure for the 3D shelling technique
The authors earlier proposed a new space partitioning for mapping computations of the radiosity method onto a highly pipelined parallel architecture (L.S. Shen et al., 1990; 1991). This shelling technique can alleviate the communication load between the host and the processors in a shared-memory architecture, but the system performance might deteriorate when increasing the number of processors. A memory structure which is a hierarchy of resident set, cache, and main memory is presented. It can reduce the average access time of a patch and thus provide better balancing between processing throughput and memory bandwidth, to enhance the pipelinability of computations. A method of selecting the resident set is described, and different policies in the cache design are investigated.<>
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