用于开发融合实时应用程序的敏捷质量保证框架

A. Neto, F. Sartori, R. Vitelli, L. Capellà, G. Ferrò, Ivan Herrero, H. Novella
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引用次数: 4

摘要

在快速控制器原型项目的背景下,旨在测试ITER软件环境中快速工厂系统的集成,正在开发适合ITER实时应用(例如诊断控制系统)开发的软件质量保证(QA)策略。特别地,QA过程必须被设计成安全地集成来自大型和异构开发社区的贡献,其中包括来自科学社区和工业供应商的开发人员概要。值得注意的是,编码标准旨在演示misra - c++:2008的遵从性。MARTe软件框架目前被用于实现各种融合实时控制系统应用。作为一个模块化和多平台的框架,允许在部署在非常不同的体系结构中的系统之间重用组件、接口和服务。这利用了将相同的代码暴露给不同的环境配置,从而增加了对其质量和健壮性的信心。QA流程正在应用于新版MARTe框架的开发。主要目标是提供一个QA可认证的环境,在这个环境中,可以以更少的努力开发可认证的应用程序。这可以通过共享相同的QA方法和工具,以及通过最大化框架模块的重用(这些模块也是针对这些QA过程开发的)来实现。本文详细介绍了QA流程和相关工具,并讨论了其在融合开发环境中的适用性。
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An agile quality assurance framework for the development of fusion real-time applications
In the context of a fast controller prototype project, which aimed at testing the integration of fast plant systems in the ITER software environment, a software Quality Assurance (QA) strategy that is appropriate for the development of ITER real-time applications (e.g. diagnostic control systems) is being developed. In particular the QA processes had to be designed in order to safely integrate contributions from a large and heterogeneous development community, which includes developer profiles both from the scientific community and from the industrial suppliers. Notably the coding standard aims at demonstrating MISRA-C++:2008 compliance. The MARTe software framework is currently being used to implement a large variety of fusion real-time control system applications. Being a modular and multi-platform framework has allowed to reuse components, interfaces and services across systems which are deployed in very distinct architectures. This has leveraged the exposure of the same code to different environment configurations, thus increasing the confidence on its quality and robustness. The QA processes are being applied to the development of a new version of the MARTe framework. The main objective is to provide a QA certifiable environment from where it is possible to develop, with less effort, certifiable applications. This is expected to be achieved by sharing the same QA methodologies and tools and by maximising the reuse of framework modules (which were also developed against these QA processes). This paper details the QA processes, the associated tools and discusses its applicability to the fusion development environment.
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