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A Semi-Automatic and Trustworthy Scheme for Continuous Cloud Service Certification

机译:连续云服务认证的半自动和可信赖方案

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Traditional assurance solutions for software-based systems rely on static verification techniques and assume continuous availability of trusted third parties. With the advent of cloud computing, these solutions become ineffective since services/applications are flexible, dynamic, and change at runtime, at high rates. Although several assurance approaches have been defined, cloud requires a step-change moving current assurance techniques to fully embrace the cloud peculiarities. In this paper, we provide a rigorous and adaptive assurance technique based on certification, towards the definition of a transparent and trusted cloud ecosystem. It aims to increase the confidence of cloud customers that every piece of the cloud (from its infrastructure to hosted applications) behaves as expected and according to their requirements. We first present a test-based certification scheme proving non-functional properties of cloud-based services. The scheme is driven by non-functional requirements defined by the certification authority and by a model of the service under certification. We then define an automatic approach to verification of consistency between requirements and models, which is at the basis of the chain of trust supported by the certification scheme. We also present a continuous certificate life cycle management process including both certificate issuing and its adaptation to address contextual changes. Finally, we describe our certification framework and an experimental evaluation of its performance, quality, applicability, and practical usability in a real industrial scenario, which considers Engineering Ingegneria Informatica S.p.A. ENGpay online payment system.
机译:用于基于软件的系统的传统保证解决方案依赖于静态验证技术,并假定可信赖第三方的连续可用性。随着云计算的到来,这些解决方案变得无效,因为服务/应用程序是灵活,动态的,并且在运行时以高速率进行更改。尽管已经定义了几种保证方法,但是云需要逐步改变现有的保证技术来完全包含云的特性。在本文中,我们提供了一种基于认证的严格而自适应的保证技术,以定义透明和可信赖的云生态系统。它旨在提高云客户对云的每个部分(从其基础架构到托管应用程序)的行为均符合预期并符合其要求的信心。我们首先提出一种基于测试的认证方案,以证明基于云的服务的非功能特性。该方案由证书颁发机构定义的非功能性要求和受认证的服务模型驱动。然后,我们定义一种自动的方法来验证需求和模型之间的一致性,这是认证方案所支持的信任链的基础。我们还提出了一个连续的证书生命周期管理过程,包括证书颁发及其适应上下文变化的调整。最后,我们描述了我们的认证框架以及在实际工业场景中对其性能,质量,适用性和实际可用性的实验评估,其中考虑了Engineering Ingegneria Informatica S.p.A. ENGpay在线支付系统。

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