EDT:反应系统的规范符号

R. Venkatesh, U. Shrotri, G. M. Krishna, Supriya Agrawal
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引用次数: 5

摘要

反应系统的需求表达了传感器和执行器之间的关系,通常用自然语言和基于状态和基于流的范例的混合来描述。将这些转换成正式语言是自动化需求验证的重要先决条件。翻译所需的分析工作是获得软件工程师和测试人员认可的形式化的主要障碍。我们提出了表达决策表(Expressive Decision Tables, EDT),这是一种新颖的形式化符号,旨在减少基于状态和基于流的非正式需求的翻译工作。我们还构建了一个工具EDTTool,用于从EDT规范生成测试数据和预期输出。在一个包含200多个实际汽车应用程序的非正式需求的案例研究中,将非正式需求转换为EDT所需的时间比转换为Statecharts所需的时间少43%。此外,我们使用EDTTool根据相应的EDT规范生成的测试数据测试Statecharts。该测试检测到一个成熟特性中的一个错误,并暴露了另一个特性中缺少的几个需求。本文介绍了EDT符号,与其他类似符号的比较和案例研究的细节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EDT: A specification notation for reactive systems
Requirements of reactive systems express the relationship between sensors and actuators and are usually described in a natural language and a mix of state-based and stream-based paradigms. Translating these into a formal language is an important pre-requisite to automate the verification of requirements. The analysis effort required for the translation is a prime hurdle to formalization gaining acceptance among software engineers and testers. We present Expressive Decision Tables (EDT), a novel formal notation designed to reduce the translation efforts from both state-based and stream-based informal requirements. We have also built a tool, EDTTool, to generate test data and expected output from EDT specifications. In a case study consisting of more than 200 informal requirements of a real-life automotive application, translation of the informal requirements into EDT needed 43% lesser time than their translation into Statecharts. Further, we tested the Statecharts using test data generated by EDTTool from the corresponding EDT specifications. This testing detected one bug in a mature feature and exposed several missing requirements in another. The paper presents the EDT notation, comparison to other similar notations and the details of the case study.
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