Emulation of software faults by educated mutations at machine-code level

J. Durães, H. Madeira
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引用次数: 40

Abstract

This paper proposes a new technique to emulate software faults by educated mutations introduced at the machine-code level and presents an experimental study on the accuracy of the injected faults. The proposed method consists of finding key programming structures at the machine code-level where high-level software faults can be emulated. The main advantage of emulating software faults at the machine-code level is that software faults can be injected even when the source code of the target application is not available, which is very important for the evaluation of COTS components or for the validation of software fault tolerance techniques in COTS based systems. The technique was evaluated using several real programs and different types of faults and, additionally, it includes our study on the key aspects that may impact on the technique accuracy. The portability of the technique is also addressed. The results show that classes of faults such as assignment, checking, interface, and simple algorithm faults can be directly emulated using this technique.
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在机器代码级别上通过受教育的突变来模拟软件故障
本文提出了一种通过在机器码级引入教育突变来模拟软件故障的新技术,并对注入故障的准确性进行了实验研究。所提出的方法包括在机器码级别找到关键的编程结构,在机器码级别可以模拟高级软件故障。在机器码级别模拟软件故障的主要优点是,即使在目标应用程序的源代码不可用的情况下,也可以注入软件故障,这对于基于COTS的系统中COTS组件的评估或软件容错技术的验证非常重要。利用几个实际程序和不同类型的断层对该技术进行了评估,并对可能影响该技术精度的关键方面进行了研究。还讨论了该技术的可移植性。结果表明,使用该技术可以直接模拟诸如赋值、检查、接口和简单算法故障等故障类型。
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Test reuse in the spreadsheet paradigm Heterogeneous software reliability modeling Toward a quantifiable definition of software faults Emulation of software faults by educated mutations at machine-code level Metrics for measuring the effectiveness of software-testing tools
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