OBSCURE: Versatile Software Obfuscation from a Lightweight Secure Element

Darius Mercadier, Viet Sang Nguyen, Matthieu Rivain, A. Udovenko
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Abstract

Software obfuscation is a powerful tool to protect the intellectual property or secret keys inside programs. Strong software obfuscation is crucial in the context of untrusted execution environments (e.g., subject to malware infection) or to face potentially malicious users trying to reverse-engineer a sensitive program. Unfortunately, the state-of-the-art of pure software-based obfuscation (including white-box cryptography) is either insecure or infeasible in practice.This work introduces OBSCURE, a versatile framework for practical and cryptographically strong software obfuscation relying on a simple stateless secure element (to be embedded, for example, in a protected hardware chip or a token). Based on the foundational result by Goyal et al. from TCC 2010, our scheme enjoys provable security guarantees, and further focuses on practical aspects, such as efficient execution of the obfuscated programs, while maintaining simplicity of the secure element. In particular, we propose a new rectangular universalization technique, which is also of independent interest. We provide an implementation of OBSCURE taking as input a program source code written in a subset of the C programming language. This ensures usability and a broad range of applications of our framework. We benchmark the obfuscation on simple software programs as well as on cryptographic primitives, hence highlighting the possible use cases of the framework as an alternative to pure software-based white-box implementations.
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OBSCURE:来自轻量级安全元件的多功能软件混淆功能
软件混淆是保护程序内部知识产权或密钥的有力工具。在不信任的执行环境中(如受恶意软件感染),或面对试图逆向工程敏感程序的潜在恶意用户时,强大的软件混淆功能至关重要。遗憾的是,最先进的纯软件混淆(包括白盒加密技术)要么不安全,要么在实践中不可行。这项工作介绍了 OBSCURE,这是一个多功能框架,用于依赖简单的无状态安全元素(例如,嵌入到受保护的硬件芯片或令牌中)进行实用的强加密软件混淆。基于 Goyal 等人在 2010 年 TCC 会议上取得的基础性成果,我们的方案具有可证明的安全保证,并进一步关注实用性方面,如在保持安全元素简单性的同时,高效执行混淆程序。特别是,我们提出了一种新的矩形通用化技术,这也是我们的兴趣所在。我们提供了一种 OBSCURE 的实现方法,将用 C 编程语言子集编写的程序源代码作为输入。这确保了我们框架的可用性和广泛应用。我们在简单的软件程序和密码基元上对混淆进行了基准测试,从而突出了该框架作为纯软件白盒实现的替代方案的可能用例。
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