Equational Reasoning on x86 Assembly Code

Kevin Coogan, S. Debray
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引用次数: 11

Abstract

Analysis of software is essential to addressing problems of correctness, efficiency, and security. Existing source code analysis tools are very useful for such purposes, but there are many instances where high-level source code is not available for software that needs to be analyzed. A need exists for tools that can analyze assembly code, whether from disassembled binaries or from handwritten sources. This paper describes an equational reasoning system for assembly code for the ubiquitous Intel x86 architecture, focusing on various problems that arise in low-level equational reasoning, such as register-name aliasing, memory indirection, condition-code flags, etc. Our system has successfully been applied to the problem of simplifying execution traces from obfuscated malware executables.
x86汇编代码的等式推理
对软件进行分析对于解决正确性、效率和安全性问题至关重要。现有的源代码分析工具对于这种目的非常有用,但是在许多情况下,需要分析的软件无法获得高级源代码。需要能够分析汇编代码的工具,无论是来自反汇编的二进制文件还是来自手写的源代码。本文介绍了一个面向通用Intel x86架构的汇编代码等式推理系统,重点讨论了在低级等式推理中出现的各种问题,如寄存器名混叠、内存间接、条件码标志等。我们的系统已经成功地应用于简化恶意软件可执行文件的执行痕迹问题。
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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