在云环境中实现基于来源的安全访问控制

Adam Bates, Benjamin Mood, Masoud Valafar, Kevin R. B. Butler
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引用次数: 72

摘要

随着组织越来越依赖云计算来满足其数据存储需求,以更细粒度管理访问控制的需求变得尤为重要。由于缺乏支持跨地理边界和通过具有不同监管政策的组织进行数据迁移的政策,这一挑战更加严峻。在本文中,我们提出了一种用于安全分布式来源管理的体系结构,使其能够在安全关键应用程序中使用。出处是详细描述对象派生的元数据历史记录,它包含允许进行表达性的、与策略无关的访问控制决策的信息。我们将考虑如何管理和验证具有溯源意识的云系统的元数据,并引入允许在终端主机和云权威之间安全传输溯源元数据的协议。使用这些协议,我们为Cumulus云存储开发了一种基于来源的访问控制机制,能够在单个部署上每秒处理数千个操作。通过引入复制组件,我们实现的开销成本仅为14%,这表明基于溯源的访问控制是一种实用且可扩展的云解决方案。
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Towards secure provenance-based access control in cloud environments
As organizations become increasingly reliant on cloud computing for servicing their data storage requirements, the need to govern access control at finer granularities becomes particularly important. This challenge is increased by the lack of policy supporting data migration across geographic boundaries and through organizations with divergent regulatory policies. In this paper, we present an architecture for secure and distributed management of provenance, enabling its use in security-critical applications. Provenance, a metadata history detailing the derivation of an object, contains information that allows for expressive, policy-independent access control decisions. We consider how to manage and validate the metadata of a provenance-aware cloud system, and introduce protocols that allow for secure transfer of provenance metadata between end hosts and cloud authorities. Using these protocols, we develop a provenance-based access control mechanism for Cumulus cloud storage, capable of processing thousands of operations per second on a single deployment. Through the introduction of replicated components, we achieve overhead costs of just 14%, demonstrating that provenance-based access control is a practical and scalable solution for the cloud.
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