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Security analysis of reversible logic cryptography design with LFSR key on 32-bit microcontroller

机译:带LFSR键在32位微控制器上的可逆逻辑加密设计安全分析

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This paper presents a detailed security analysis of the research article on the digital image encryption scheme entitled "Reversible Logic Cryptography Design (RLCD) with Linear Feedback Shift Register (LFSR) key" (Karunamurthi S, and Natarajan VK, Microprocessors and Microsystems, 2019). Although the inadequate length of its 4-bit LFSR key makes the scheme extremely vulnerable to quick brute force attack, analyzing the various error metrics concerning the security of the encrypted images, this scheme provides statistically pleasing results. The major shortcoming identified on this RLCD-LFSR scheme is the traceable patterns that appear on its encrypted images due to the absence of confusion to break the pixels' correlation. In addition to the chosen plaintext attack, edge detection based cryptanalysis proposed in this paper to be sufficient to crack the RLCD-LFSR scheme. The enhancement made by the insertion of a confusion module in RLCD-LFSR scheme wipes out the perceptible patterns and edges from the encrypted images to resist the attacks. The failure of enhanced RLCD-LFSR under NIST tests confirms the flaws in the design of the Reversible Logic Gate (RLG) based diffusion process and its ineffectiveness for image encryption. Besides the security analysis, the performance of RLCD-LFSR scheme and the proposed improved version of the same is implemented on a 32-bit microcontroller to evaluate their suitability for real-time embedded applications.
机译:本文介绍了题为“可逆逻辑加密设计(RLCD)的数字图像加密方案的研究文章的详细安全分析,具有线性反馈移位寄存器(LFSR)键”(Karunamurthi S,Natarajan VK,微处理器和MicroSystems,2019) 。虽然其4位LFSR键的长度不足使得该方案非常容易受到快速蛮力攻击的攻击,但分析了关于加密图像的安全性的各种错误指标,该方案提供了统计上令人愉悦的结果。在此RLCD-LFSR方案上识别的主要缺点是由于没有混淆来破坏像素的相关性而在其加密图像上出现的可追踪模式。除了选择的明文攻击外,在本文中提出的边缘检测基于密码分析,足以破解RLCD-LFSR方案。通过在RLCD-LFSR方案中插入混淆模块的增强擦除从加密图像中的可感知模式和边缘来抵抗攻击。 NIST测试下的增强型RLCD-LFSR失败确认了基于可逆逻辑门(RLG)的扩散过程的设计中的缺陷及其无效性的图像加密。除了安全性分析外,在32位微控制器上实现了RLCD-LFSR方案的性能和相同的提出的改进版本,以评估它们对实时嵌入式应用程序的适用性。

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