Comparison of two storage models in data-driven multithreaded architectures

M. Annavaram, W. Najjar
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引用次数: 11

Abstract

Multithreaded execution models attempt to combine some aspects of dataflow-like execution with von Neumann model execution, with the objective of masking the latency of inter-processor communications and remote memory accesses in multiprocessors. An important issue in the analysis and evaluation of multithreaded execution is the design and performance of the storage hierarchy. Because of the sequential execution of threads, the locality of access within an executing thread can be exploited using registers and cache. At the inter-thread level, however, the locality of accesses to memory and its effect on the cache is not yet well understood. Two storage hierarchy models, that attempt to capture and exploit this locality, are described and evaluated in this paper.
数据驱动多线程体系结构中两种存储模型的比较
多线程执行模型试图将数据流执行的某些方面与冯·诺伊曼模型执行结合起来,目的是掩盖多处理器间通信和远程内存访问的延迟。在多线程执行的分析和评估中,一个重要的问题是存储层次结构的设计和性能。由于线程是顺序执行的,因此可以使用寄存器和缓存利用执行线程内访问的局部性。然而,在线程间级别上,对内存访问的局部性及其对缓存的影响还没有得到很好的理解。本文描述并评估了试图捕获和利用该局部性的两种存储层次模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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