HyperVerify: A VM-assisted Architecture for Monitoring Hypervisor Non-control Data

Baozeng Ding, Yeping He, Y. Wu, Yuqi Lin
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引用次数: 16

Abstract

Continuing bug reports and exploits in hyper visors indicate that hyper visors face similar integrity threats as tradition software. Previous approaches to protect a hyper visor that utilize hardware features are not easy to be extended. Besides, they mainly focus on code or control data integrity, without pay much attention to protecting non-control data. In this paper, we present Hyper Verify, a novel architecture to monitor hyper visor non-control data using a trusted VM. Since a VM cannot directly access a hyper visor's memory, Hyper Verify programs a popular device driver to read the hyper visor's hardware state in the trusted VM. Then a memory analysis library is used to translate the low-level hardware state into the high level hyper visor context. Several monitoring processes use such context to monitor hyper visor non-control data integrity. Each of the processes is responsible for monitoring one kind of non-control data. It is flexible for Hyper Verify to support monitoring new kinds of data structure. The experimental evaluation of our prototype shows that Hyper Verify incurs at most 4% performance overhead to end users.
HyperVerify:虚拟机辅助架构,用于监控虚拟机非控制数据
超级监控程序中不断出现的漏洞报告和漏洞利用表明,超级监控程序面临着与传统软件类似的完整性威胁。以前利用硬件特性保护超级遮阳板的方法不容易扩展。此外,它们主要关注代码或控制数据的完整性,而不太关注非控制数据的保护。在本文中,我们提出了Hyper Verify,一种使用可信虚拟机来监控Hyper visor非控制数据的新架构。由于VM不能直接访问hypervisor的内存,所以hyper Verify编写了一个流行的设备驱动程序来读取受信任VM中的hypervisor的硬件状态。然后使用内存分析库将低级硬件状态转换为高级hypervisor上下文。几个监控过程使用这样的上下文来监控超面罩非控制数据的完整性。每个过程负责监控一种非控制数据。对于Hyper Verify来说,它是灵活的,可以支持监控新的数据结构。我们的原型的实验评估表明,Hyper Verify会给最终用户带来最多4%的性能开销。
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