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Energy Efficiency in Testing and Regression Testing A Comparison of DVFS Techniques

机译:测试和回归测试的能效测试DVFS技术的比较

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This paper conducts a pilot study on the energy efficiency in software regression testing. Existing techniques that harness the adjustment of CPU frequencies using Dynamic Voltage and Frequency Scaling can be classified into two categories: general and application-specific. However, existing general techniques ignore execution characteristics and existing application-specific techniques require execution profiling. We propose two non-intrusive algorithms (Case Majority and Case Optimal), which exploit an insight on regression test cases to assure efficiency in modified program versions. We conduct experimentation on three medium-size real-world benchmarks over a cycle-accurate power simulator. The empirical results show that applying our proposed techniques in the context of regression testing can effectively save more energy on one benchmark, and does not suffer from lower performance on the other two benchmarks.
机译:本文对软件回归测试中的能效进行了试验研究。使用动态电压和频率缩放的利用CPU频率调整CPU频率的现有技术可以分为两类:一般和特定于应用程序。但是,现有的通用技术忽略执行特征,并且现有的特定于应用程序特定技术需要执行分析。我们提出了两个非侵入式算法(案例多数和案例最佳),它利用了对回归测试用例的识别,以确保修改程序版本的效率。我们在循环准确的电源模拟器上进行三个中型现实基准测试的实验。经验结果表明,在回归测试的背景下应用我们所提出的技术可以有效地节省更多的能量,并不遭受其他两个基准的性能。

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