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A Software Protection Framework Based on Thin Virtual Machine Using Distorted Encryption

机译:基于精简虚拟机失真加密的软件保护框架

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The technology of software protection based on virtual machine is a hot research field of software protection. Considering the impact on the performance of target software, traditional virtual machine can only protect several key functions of target software, which makes it unable to prevent reverse engineering for the whole software. In order to balance the performance overheads against protection strength, we proposed a thin virtual machine based software protection framework using distorted encryption (TVMBDE) in this paper. Based on improving the algorithms of instruction transformation of traditional virtual machines, the framework makes use of thin virtual machine protection technology to enhance the efficiency and integration of distorted encryption so as to ensure the security. In order to implement overall protection, the common part of target software will be protected in low-power, while the key parts will be protected in high-power. Analysis and testing show the framework is effective, which achieves the purpose of protecting the whole software.
机译:基于虚拟机的软件保护技术是软件保护的研究热点。考虑到对目标软件性能的影响,传统虚拟机只能保护目标软件的几个关键功能,因此无法防止整个软件的逆向工程。为了在性能开销和保护强度之间取得平衡,我们在本文中提出了一种基于虚拟机的精简软件保护框架,该框架使用了失真加密(TVMBDE)。该框架在改进传统虚拟机指令转换算法的基础上,利用瘦虚拟机保护技术,提高了失真加密的效率和集成度,从而确保了安全性。为了实现整体保护,目标软件的通用部分将以低功耗进行保护,而关键部分将以高功耗进行保护。分析测试表明,该框架是有效的,达到了保护整个软件的目的。

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