Covert Channels through Random Number Generator: Mechanisms, Capacity Estimation and Mitigations

Dmitry Evtyushkin, D. Ponomarev
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引用次数: 66

Abstract

Covert channels present serious security threat because they allow secret communication between two malicious processes even if the system inhibits direct communication. We describe, implement and quantify a new covert channel through shared hardware random number generation (RNG) module that is available on modern processors. We demonstrate that a reliable, high-capacity and low-error covert channel can be created through the RNG module that works across CPU cores and across virtual machines. We quantify the capacity of the RNG channel under different settings and show that transmission rates in the range of 7-200 kbit/s can be achieved depending on a particular system used for transmission, assumptions, and the load level. Finally, we describe challenges in mitigating the RNG channel, and propose several mitigation approaches both in software and hardware.
通过随机数生成器的隐蔽信道:机制、容量估计和缓解
由于隐蔽通道允许两个恶意进程之间的秘密通信,即使系统禁止直接通信,也存在严重的安全威胁。我们通过现代处理器上可用的共享硬件随机数生成(RNG)模块描述,实现和量化一个新的隐蔽通道。我们证明了通过RNG模块可以创建一个可靠的、高容量和低错误的隐蔽通道,该通道可以跨CPU内核和跨虚拟机工作。我们量化了不同设置下RNG信道的容量,并表明根据用于传输的特定系统、假设和负载水平,可以实现7-200 kbit/s范围内的传输速率。最后,我们描述了缓解RNG通道的挑战,并在软件和硬件方面提出了几种缓解方法。
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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