Cloud calculus: Security verification in elastic cloud computing platform

Yosr Jarraya, A. Eghtesadi, M. Debbabi, Y. Zhang, M. Pourzandi
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引用次数: 33

Abstract

Cloud orchestration involves cloud resources scaling up and down, management, as well as manipulation to better respond user's requests and to facilitate operational objectives of the service providers. These promote the elastic nature of cloud platform but force upon significant challenges to cloud service providers. Particularly, security issues such as inconsistency may arise while dynamic changes such as virtual machine migration occur. In this paper, we propose a formal framework for the specification of virtual machines migration and security policies updates. This framework enables us to verify that the global security policy after the migration is consistently preserved with respect to the initial one. To this end, we define a new calculus, namely cloud calculus that can be used to specify the topology of a cloud computing system and firewall security rules. It also enables specifying the virtual machines migration along with their security policies. The semantics of our calculus is based on structural congruence and a reduction relation. In order to verify the global security policy within the new configuration, we define a testing equivalence over cloud terms. Finally, we provide an illustrative case study to demonstrate the applicability of our approach.
云计算:弹性云计算平台中的安全验证
云编排涉及云资源的上下伸缩、管理和操作,以更好地响应用户请求并促进服务提供商的操作目标。这些提升了云平台的弹性,但也给云服务提供商带来了重大挑战。特别是,在发生虚拟机迁移等动态更改时,可能会出现不一致等安全问题。在本文中,我们提出了一个规范虚拟机迁移和安全策略更新的正式框架。此框架使我们能够验证迁移后的全局安全策略是否与初始安全策略一致。为此,我们定义了一种新的微积分,即云微积分,它可以用来指定云计算系统的拓扑结构和防火墙的安全规则。它还支持指定虚拟机迁移及其安全策略。我们微积分的语义是基于结构同余和约简关系。为了验证新配置中的全局安全策略,我们定义了云术语的测试等价性。最后,我们提供了一个说明性的案例研究来证明我们的方法的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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