Performance Cloning: A Technique for Disseminating Proprietary Applications as Benchmarks

A. Joshi, L. Eeckhout, R. Bell, L. John
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引用次数: 58

Abstract

Many embedded real world applications are intellectual property, and vendors hesitate to share these proprietary applications with computer architects and designers. This poses a serious problem for embedded microprocessor designers - how do they customize the design of their microprocessor to provide optimal performance for a class of target customer applications? In this paper, we explore a technique that can automatically extract key performance attributes of a real world application and clone them into a synthetic benchmark. The advantage of the synthetic benchmark clone is that it hides functional meaning of the code but exhibits similar performance characteristics as the target application. Unlike previously proposed workload synthesis techniques, we only model microarchitecture-independent performance attributes into the synthetic clone. By using a set of embedded benchmarks from the MediaBench and MiBench suites, we demonstrate that the performance and power consumption of the synthetic clone correlates well with that of the original application across a wide range of microarchitecture configurations
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性能克隆:一种将专有应用程序作为基准进行传播的技术
现实世界中的许多嵌入式应用程序都是知识产权,供应商不愿与计算机架构师和设计人员共享这些专有应用程序。这给嵌入式微处理器设计人员提出了一个严重的问题——他们如何定制微处理器的设计,为一类目标客户应用程序提供最佳性能?在本文中,我们探索了一种可以自动提取真实应用程序的关键性能属性并将其克隆到合成基准的技术。合成基准克隆的优点是,它隐藏了代码的功能含义,但表现出与目标应用程序相似的性能特征。与以前提出的工作负载合成技术不同,我们只将与微架构无关的性能属性建模到合成克隆中。通过使用一组来自mediabbench和MiBench套件的嵌入式基准测试,我们证明了合成克隆的性能和功耗与原始应用程序的性能和功耗在广泛的微体系结构配置中具有良好的相关性
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