Overhaul: Input-Driven Access Control for Better Privacy on Traditional Operating Systems

Kaan Onarlioglu, William K. Robertson, E. Kirda
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引用次数: 12

Abstract

The prevailing security model for OSes focuses on isolating users from each other, however, the changing computing landscape has led to the extension of traditional access control models for single-user devices. Modern OSes for mobile devices such as iOS and Android have taken the opportunity provided by these new platforms to introduce permission systems in which users can manage access to sensitive resources during application installation or runtime. One drawback of similar efforts on desktop environments is that applications must be rewritten with this security model in mind, which hinders traditional OSes from enjoying the benefits of user-driven access control. We present a novel architecture for retrofitting a dynamic, input-driven access control model into traditional OSes. In this model, access to privacy-sensitive resources is mediated based on the temporal proximity of user interactions to access requests, and requests are communicated back to the user via visual alerts. We present a prototype implementation and demonstrate how input-driven access control can be realized for resources such as the microphone, camera, clipboard, and screen contents. Our approach is transparent to applications and users, and incurs no discernible performance overhead.
大修:传统操作系统上更好的隐私输入驱动访问控制
操作系统的主流安全模型侧重于将用户彼此隔离,然而,不断变化的计算环境导致了传统的单用户设备访问控制模型的扩展。面向移动设备的现代操作系统(如iOS和Android)利用这些新平台提供的机会引入了权限系统,用户可以在应用程序安装或运行时管理对敏感资源的访问。在桌面环境中进行类似工作的一个缺点是,必须根据这种安全模型重写应用程序,这阻碍了传统操作系统享受用户驱动访问控制的好处。我们提出了一种新的架构,用于将动态的、输入驱动的访问控制模型改造到传统的操作系统中。在该模型中,对隐私敏感资源的访问是基于用户交互与访问请求的时间接近度进行调节的,并且请求通过可视化警报传达给用户。我们提出了一个原型实现,并演示了如何为麦克风、相机、剪贴板和屏幕内容等资源实现输入驱动的访问控制。我们的方法对应用程序和用户是透明的,并且不会产生明显的性能开销。
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