SystemC中嵌入式软件和虚拟样机的原生二进制突变分析

C. Kuznik, W. Müller
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引用次数: 3

摘要

突变分析是验证环境白盒测试的有力工具,它可以产生可靠和高质量的软件产品。然而,由于高计算成本和对高级软件语言(如Java)的关注,突变分析尚未广泛应用于针对嵌入式(软件)系统的商业设计流程。在这里,业界在更高的抽象层次上对硬件和相关软件部分进行建模,称为虚拟原型,以加速并行开发并缩短上市时间。在本文中,我们提出了一个基于SystemC的虚拟原型的突变测试验证流程,该流程可能不仅仅依赖于源代码,而是依赖于带注释的基本块,并且能够在汇编层创建突变,从而大大降低执行成本和等效突变的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Native Binary Mutation Analysis for Embedded Software and Virtual Prototypes in SystemC
Mutation analysis is a powerful tool for white-box testing of the verification environment in order to produce dependable and higher quality software products. However, due to high computational costs and the focus on high-level software languages such as Java mutation analysis is not yet widely used in commercial design flows targeting embedded (software) systems. Here the industry is modeling both hardware and related software parts at higher levels of abstraction, called virtual prototypes, to accelerate parallel development and shorten time-to-market. In this paper we propose a mutation testing verification flow for SystemC based virtual prototypes that may not rely on source code only but on annotated basic blocks and enables mutant creation at assembler level to heavily reduce execution costs and equivalence mutants likelihood.
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