内存系统扩展的评估

Kai Li, K. Petersen
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引用次数: 18

摘要

单处理器的传统存储系统由一级或二级缓存、主存储器和后备存储器组成。可以通过向内存层次结构中添加便宜但速度较慢的内存来扩展这样的内存系统。本文采用实验的方法来评估两种扩展存储系统的方法:直接和缓存。直接方法将较慢的内存添加到内存层次结构中,将其置于与主内存相同的级别,允许CPU直接访问较慢的内存;而缓存方法将较慢的内存放在主内存和后备存储之间,使用主内存作为较慢内存的缓存。我们已经实现了这两种方法,我们的实验表明,使用扩展内存系统,具有非常大数据结构的应用程序可以显著受益,并且在内存受限的应用程序中,直接方法优于缓存方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of memory system extensions
A traditional memory system for a uniprocessor consists of one or two levels of cache, a main memory and a backing store. One can extend such a memory sys tem by adding inexpensive but slower memories into the memory hierarchy. This paper uses an experimental approach to evaluate two methods of extending a memory system: direct and caching. The direct method adds the slower memory into the memory hierarchy by putting it at the same level as the main memory, allowing the CPU to access the slower memories directly; whereas the caching method puts the slower memory between the main memory and the backing store, using the main memory as a cache for the slower memory. We have implemented both approaches and our experiments indicate that applications with very large data structures can benefit significantly using an extended memory system, and that the direct approach outperforms the caching approach in memory-bound applications.
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