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Information security: The SCAN — Secure processor with crypto-biometrics capabilities

机译:信息安全:SCAN —具有加密生物学功能的安全处理器

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Secure computing is gaining importance in recent times as computing capability is increasingly becoming distributed and information is everywhere. Prevention of piracy and digital rights management has become very important. Information security is mandatory rather than an additional feature. Numerous software techniques have been proposed to provide certain level of copyright and intellectual property protection. Techniques like obfuscation attempts to transform the code into a form that is harder to reverse engineer. Tamper-proofing causes a program to malfunction when it detects that it has been modified. Software watermarking embeds copyright notice in the software code to allow the owners of the software to assert their intellectual property rights. The software techniques discourage software theft, can trace piracy, prove ownership, but cannot prevent copying itself. Thus, software based security firewalls and encryption is not completely safe from determined hackers. This necessitates the need for information security at the hardware level, where secure processors assume importance. In this talk the SCAN-Secure Processor is presented as a possible solution to these important issues mentioned above. The SCAN-SP is a modified Sparc V8 processor architecture with a new instruction set to handle image compression, encryption, information hiding and biometric authentication. A SCAN based methodology for encryption and decryption of 32 bit instructions and data and a Local-Global graph based methodology for biometric authentication is presented. The modules to support the new instructions are synthesized in reconfigurable logic and the results of FPGA synthesis are presented. The ultimate goal of the presented work is the tradeoffs that exists between speed of execution and security of the processor. Designing a faster processor is not the goal of the presented work, rather exploring the architecture to provide security is of prime importance.
机译:随着计算能力越来越分散并且信息无处不在,安全计算在最近变得越来越重要。防止盗版和数字版权管理已变得非常重要。信息安全是强制性的,而不是附加功能。已经提出了许多软件技术来提供一定程度的版权和知识产权保护。混淆等技术试图将代码转换为难以逆向工程的形式。防篡改程序在检测到已被修改时会导致其故障。软件加水印将版权声明嵌入软件代码中,以允许软件所有者主张其知识产权。软件技术可以阻止软件盗窃,可以追踪盗版,证明所有权,但不能阻止自身复制。因此,基于软件的安全防火墙和加密对于确定的黑客来说并不完全安全。这就需要在硬件级别实现信息安全性,其中安全处理器至关重要。在本次演讲中,将介绍SCAN安全处理器作为上述这些重要问题的可能解决方案。 SCAN-SP是经过修改的Sparc V8处理器体系结构,具有新的指令集,可以处理图像压缩,加密,信息隐藏和生物特征认证。提出了一种用于32位指令和数据的加密和解密的基于SCAN的方法,以及一种用于生物特征认证的基于局部全局图的方法。支持新指令的模块以可重构逻辑进行综合,并给出了FPGA综合的结果。提出的工作的最终目标是在执行速度和处理器安全性之间进行权衡。设计更快的处理器并不是本文提出的目标,而是探索提供安全性的体系结构至关重要。

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