历史的点滴,未来的挑战和自主计算技术

H. Müller
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引用次数: 17

摘要

在过去的15年中,软件逆向工程社区已经产生了许多软件工程方法、工具和技术,这些方法、工具和技术对软件行业产生了重大影响。在一个研究领域发展了10-20年之后,它很容易因为焦点狭窄、过度放牧或缺乏影响力而逐渐消失。试图评估一个研究领域中各种方法和结果的影响是困难的——但是值得。退后一步,从新的角度看待一个研究领域可能更容易,也会让人精神焕发。从这些实践中吸取的教训可能会带来新的研究挑战,促进研究领域之间的相互促进,并形成研究界的重点。最近几项研究将软件工程领域作为一个整体来评估,以定义研究议程和资助政策,受到这些研究的启发,作者讨论了关于持续软件进化问题的几个新观点,希望能启发逆向工程社区。作者随后主张,我们需要将对进化系统的监测推向前所未有的水平,以便能够在复杂和不断变化的环境中观察并可能协调它们的持续进化。然后,作者建议使用逆向工程技术,为不断发展的软件密集型系统配备自主元素,以增强其监控和评估能力
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bits of History, Challenges for the Future and Autonomic Computing Technology
Over the past fifteen years, the software reverse engineering community has produced many software engineering methods, tools, and techniques that have had significant impact in the software industry. After a research area has evolved for 10-20 years, it can easily fade away due to narrow focus, overgrazing, or lack of impact. Trying to assess the impact of various approaches and results in a research area is difficult - but worthwhile. Taking a step back and looking at a research area from new perspectives is probably easier and can be invigorating. The lessons learned from such exercises may result in new research challenges, foster cross-fertilization among research areas, and shape the focus of the research communities. Inspired by several recent studies that assess the field of software engineering as a whole to define research agendas and funding policies, the author discuss several new perspectives on the problem of continuous software evolution that will hopefully inspire the reverse engineering community. The author then advocate that we need to push monitoring of evolving systems to unprecedented levels to be able to observe and possibly orchestrate their continuous evolution in a complex and changing environment. The author then suggest to instrument evolving software-intensive systems with autonomic elements, using reverse engineering techniques, to enhance their monitoring and assessment capabilities
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