Hybrid Monitors for Concurrent Noninterference

Aslan Askarov, Stephen Chong, H. Mantel
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引用次数: 29

Abstract

Controlling confidential information in concurrent systems is difficult, due to covert channels resulting from interaction between threads. This problem is exacerbated if threads share resources at fine granularity. In this work, we propose a novel monitoring framework to enforce strong information security in concurrent programs. Our monitors are hybrid, combining dynamic and static program analysis to enforce security in a sound and rather precise fashion. In our framework, each thread is guarded by its own local monitor, and there is a single global monitor. We instantiate our monitoring framework to support rely-guarantee style reasoning about the use of shared resources, at the granularity of individual memory locations, and then specialize local monitors further to enforce flow-sensitive progress-sensitive information-flow control. Our local monitors exploit rely-guarantee-style reasoning about shared memory to achieve high precision. Soundness of rely-guarantee-style reasoning is guaranteed by all monitors cooperatively. The global monitor is invoked only when threads synchronize, and so does not needlessly restrict concurrency. We prove that our hybrid monitoring approach enforces a knowledge-based progress-sensitive non-interference security condition.
并行无干扰的混合监视器
由于线程之间的交互会产生隐蔽通道,因此在并发系统中控制机密信息是很困难的。如果线程以细粒度共享资源,这个问题会更加严重。在这项工作中,我们提出了一个新的监控框架,以加强并发程序的信息安全性。我们的监视器是混合的,结合了动态和静态程序分析,以一种可靠和相当精确的方式加强安全性。在我们的框架中,每个线程由自己的本地监视器保护,并且有一个全局监视器。我们实例化我们的监控框架,以支持在单个内存位置的粒度上对共享资源的使用进行可靠保证风格的推理,然后进一步专门化本地监视器,以强制执行对流敏感的进度敏感的信息流控制。我们的本地监视器利用可靠保证式的共享内存推理来实现高精度。可靠保证式推理的可靠性由各监视器共同保证。全局监视器仅在线程同步时调用,因此不会不必要地限制并发性。我们证明了我们的混合监控方法强制执行基于知识的进度敏感的无干扰安全条件。
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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