Cross-architecture performance predictions for scientific applications using parameterized models

G. Marin, J. Mellor-Crummey
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引用次数: 238

Abstract

This paper describes a toolkit for semi-automatically measuring and modeling static and dynamic characteristics of applications in an architecture-neutral fashion. For predictable applications, models of dynamic characteristics have a convex and differentiable profile. Our toolkit operates on application binaries and succeeds in modeling key application characteristics that determine program performance. We use these characterizations to explore the interactions between an application and a target architecture. We apply our toolkit to SPARC binaries to develop architecture-neutral models of computation and memory access patterns of the ASCI Sweep3D and the NAS SP, BT and LU benchmarks. From our models, we predict the L1, L2 and TLB cache miss counts as well as the overall execution time of these applications on an Origin 2000 system. We evaluate our predictions by comparing them against measurements collected using hardware performance counters.
使用参数化模型的科学应用的跨架构性能预测
本文描述了一个工具箱,用于以与体系结构无关的方式半自动测量和建模应用程序的静态和动态特性。对于可预测的应用,动态特性模型具有凸和可微分的轮廓。我们的工具包对应用程序二进制文件进行操作,并成功地对决定程序性能的关键应用程序特征进行了建模。我们使用这些特征来探索应用程序和目标体系结构之间的交互。我们将我们的工具包应用到SPARC二进制文件中,以开发与架构无关的计算模型和ASCI Sweep3D以及NAS SP、BT和LU基准的内存访问模式。从我们的模型中,我们预测了L1, L2和TLB缓存丢失计数以及这些应用程序在Origin 2000系统上的总体执行时间。我们通过将预测结果与使用硬件性能计数器收集的测量结果进行比较来评估预测结果。
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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