基于模糊谓词的参数化平坦化控制流模糊算法

Zheheng Liang, Wenlin Li, Jing Guo, Deyu Qi, Jijun Zeng
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引用次数: 2

摘要

为了提高软件的白盒安全性,我们提出了一种重复代码混淆算法来保护源代码。首先利用参数分解树对代码进行形式化,然后利用扁平化控制流系统将源代码分解为多分支WHILE-SWITCH循环结构。最后,我们应用不透明的谓词来混淆被平化的代码以进行二次混淆。本文给出了不透明谓词码的表示以及在程序分支和序列块中插入不透明谓词的不同方法。通过实验比较了源代码和混淆代码的时间空间成本。结果表明,该算法可以提高代码的抗攻击能力,同时也增加了逆向工程的难度。
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A parameterized flattening control flow based obfuscation algorithm with opaque predicate for reduplicate obfuscation
In order to enhance the white box security of software, we proposed a reduplicate code obfuscation algorithm to protect the source code. Firstly, we apply the parameter decomposition tree to formalize the code, and then we utilize flattening control flow system to decompose the source code into a multi-branch WHILE-SWITCH loop structure. Finally, we apply opaque predicates to obfuscate the flattened code for the secondary obfuscation. In this paper, opaque predicate code representation and different methods of inserting opaque predicates into program braches and sequence blocks were given. Experiments has been made to compare time-space cost of source code and obfuscated code. The results demonstrate that the proposed algorithm can improve code's anti-attack ability, increasing the difficulty of reverse engineering as well.
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