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HBSP: A Lightweight Hardware Virtualization Based Framework for Transparent Software Protection in Commodity Operating Systems

机译:HBSP:商品操作系统中基于轻量级硬件虚拟化的透明软件保护框架

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Commodity operating systems are usually large and complex, leading host-based security tools often provide inadequate protection against malware because execution environment for software is untrusted. As a result, most software currently uses various ways to defend malware attacks. However, these approaches not only raise the complexity of the software but also fail to offer an engrained security solution. The focal point in the software protection battle is how to protect effectively versus how to conceal the protector from untrusted OSes. This paper describes a lightweight, transparent and flexible architecture framework called HBSP (Hypervisor Based Software Protector) for software protection. HBSP, which is based on hardware virtualization extension technology such as Intel VT, and by taking advantage of Memory-Hiding strategy, resides completely outside of the target OS environment. Our security analysis and the performance experiment results demonstrate that HBSP effectively protects applications running on unmodified Windows XP, while the total overhead is only 0.25% in average.
机译:商品操作系统通常很大且复杂,基于领先的基于主机的安全工具通常为恶意软件提供不充分的保护,因为软件的执行环境是不可信任的。因此,大多数软件目前使用各种方式来防御恶意软件攻击。但是,这些方法不仅提高了软件的复杂性,而且还可无法提供诱发的安全解决方案。软件保护战中的焦点是如何保护有效保护如何隐藏保护器免受不受信任的iSS。本文介绍了一个轻量级,透明和灵活的架构框架,称为HBSP(基于管理程序的软件保护器),用于软件保护。 HBSP基于硬件虚拟化扩展技术,如英特尔VT,并利用内存隐藏策略,完全驻留在目标OS环境之外。我们的安全性分析和性能实验结果表明,HBSP有效保护在未修改的Windows XP上运行的应用程序,而总开销平均仅为0.25%。

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