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APC: A Novel Memory Metric and Measurement Methodology for Modern Memory Systems

机译:APC:现代内存系统的新型内存度量标准和测量方法

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摘要

Due to the infamous “memory wall” problem and a drastic increase in the number of data intensive applications, memory rather than processors has become the leading performance bottleneck in modern computing systems. Evaluating and understanding memory system performance is increasingly becoming the core of high-end computing. Conventional memory metrics, such as miss ratio, AMAT, etc., are designed to measure a given memory performance parameter, and do not reflect the overall performance or complexity of a modern memory system. On the other hand, widely used system-performance metrics, such as IPC, are designed to measure CPU performance, and do not directly reflect memory performance. In this paper, we propose a novel memory metric called Access Per Cycle (APC), which is the number of data accesses per cycle, to measure the overall memory performance with respect to the complexity of modern memory systems. A unique contribution of APC is its separation of memory evaluation from CPU evaluation; therefore, it provides a quantitative measurement of the “data-intensiveness” of an application. Simulation results show that the memory performance measured by APC captures the concurrency complexity of modern memory systems, while other metrics cannot. APC is simple, effective, and is significantly more appropriate than existing memory metrics in evaluating modern memory systems.
机译:由于臭名昭著的“内存墙”问题以及数据密集型应用程序的数量急剧增加,内存而不是处理器已成为现代计算系统中的主要性能瓶颈。评估和了解内存系统性能正日益成为高端计算的核心。常规内存指标(例如未命中率,AMAT等)旨在测量给定的内存性能参数,并且不能反映现代内存系统的整体性能或复杂性。另一方面,广泛使用的系统性能指标(例如IPC)旨在衡量CPU性能,而不直接反映内存性能。在本文中,我们提出了一种新颖的内存度量标准,称为“每个周期访问”(APC),它是每个周期的数据访问次数,用于相对于现代内存系统的复杂性来衡量总体内存性能。 APC的独特贡献是将内存评估与CPU评估分离;因此,它提供了应用程序“数据强度”的定量度量。仿真结果表明,APC衡量的内存性能捕获了现代内存系统的并发复杂性,而其他指标则无法做到。 APC简单,有效,并且在评估现代内存系统方面比现有内存指标更为合适。

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