SA-SPM:一种用于安全感知的临时存储器的高效编译器(特邀论文)

Thomas Haywood Dadzie, Jiwon Lee, Jihye Kim, Hyunok Oh
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引用次数: 3

摘要

Scratchpad memory (SPM)通常用于提高特定于应用程序的嵌入式系统的性能。在嵌入式系统中,主存储器容易受到外部攻击,如总线窥探或内存提取。因此,需要保证主存中数据的安全性。在软件管理的SPM中,可以通过执行软件辅助加密在主存中提供安全性。本文提出了一种高效的安全感知刮擦存储器(SA-SPM)编译器,以保证基于刮擦存储器的嵌入式系统主存的安全性。我们的编译器是第一种在基于spm的系统中支持内存区域(即堆栈、堆、代码和静态变量)完全加密的方法。此外,为了降低能量消耗和提高非易失性主存储器的寿命,我们提出了一种新的基于spm系统的双加密方案。实验结果表明,所提出的双加密方案与整个加密方案相比,比特翻转次数减少了31.8%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SA-SPM: an efficient compiler for security aware scratchpad memory (invited paper)
Scratchpad memories (SPM) are often used to boost the performance of application-specific embedded systems. In embedded systems, main memories are vulnerable to external attacks such as bus snooping or memory extraction. Therefore it is desirable to guarantee the security of data in a main memory. In software-managed SPM, it is possible to provide security in main memory by performing software-assistant encryption. In this paper, we present an efficient compiler for security aware scratch pad Memory (SA-SPM), which ensures the security of main memories in SPM-based embedded systems. Our compiler is the first approach to support full encryption of memory regions (i.e. stack, heap, code, and static variables) in a SPM-based system. Furthermore, to reduce the energy consumption and improve the lifetime of a non-volatile main memory by decreasing the number of bit flips, we propose a new dual encryption scheme for a SPM-based system. Our experimental results show that the proposed dual encryption scheme reduces the number of bit flips by 31.8% compared with the whole encryption.
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