Xilinx fpga位流加密的实际分析

Eunchae Lee, Soyeon Choi, Jiho Park, S. Shin, Hoyoung Yoo
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引用次数: 1

摘要

基于sram的现场可编程门阵列(FPGA)由于其速度快、适应性强,被广泛应用于各个应用领域。由于存储在外部存储器中的比特流容易受到恶意攻击,因此大多数FPGA制造商都提供比特流加密。本文研究了Xilinx FPGA系列中未加密比特流和加密比特流的结构差异。首先,描述了每个系列使用的加密算法,然后是使用Xilinx ISE和Vivado生成加密比特流的过程。最后,比较了Xilinx fpga在7系列之前、7系列之后和7系列之后未加密和加密的比特流之间的差异。通过分析,我们证明了在从外部存储器到FPGA的传输过程中,可以利用从比特流中提取的加密信息来验证加密是否在现实世界中应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Practical Analysis of Xilinx FPGAs' Bitstream Encryption
Due to its speed and adaptability, SRAM-based Field Programmable Gate Array (FPGA) is extensively employed in various application fields. Since bitstreams stored in external memory are vulnerable to malicious attacks, most FPGA manufacturers provide bitstream encryption. In this paper, the structural differences between an unencrypted bitstream and an encrypted bitstream for Xilinx's FPGA series are investigated. First, the encryption algorithms used for each series are described, followed by the procedure for generating an encrypted bitstream using Xilinx ISE and Vivado. Lastly, the difference between the unencrypted and encrypted bitstreams for Xilinx FPGAs before 7-Series, 7-Series and after 7-Series is compared. Using the analysis, we demonstrated that it can be possible to verify if encryption is applied or not in real world utilizing encryption information extracted from the bitstream during its transfer from external memory to FPGA.
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