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Pin Tumbler Lock: A shift based encryption mechanism for racetrack memory

机译:Pin Tumbler Lock:用于赛道记忆的基于移位的加密机制

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As various non-volatile memory (NVM) technologies have been adopted in different levels of memory hierarchy, the security issue of protecting information retained in NVM after power-off has become a new challenge, which results in extensive research on data encryption for NVM. Previous encryption approaches, however, have some limitations, such as high design complexity and non-trivial timing and energy overhead. Recently, an emerging NVM called racetrack memory (RM) has been widely investigated because of its advantages of ultra-high storage density and fast read/write speed. Besides these well-known advantages, we observe that the tape-like structure of RM cell and its unique shift operation can also be leveraged to facilitate NVM data encryption. Base on this observation, we propose an efficient shift based mechanism, named Pin Tumbler Lock (PTL), which completes encryption and decryption by shifting racetracks in several nanoseconds. Experimental results demonstrate that our design can achieve the same security strength of AES-128 with 3.1% performance overhead and 3.7% energy overhead and 1.56% storage cost and 1.6% area cost.
机译:由于在不同级别的存储器层次结构中采用了各种非易失性存储器(NVM)技术,因此在断电后保护NVM中保留的信息的安全性问题已成为一个新的挑战,这导致了对NVM数据加密的广泛研究。然而,先前的加密方法具有一些局限性,例如高设计复杂度以及不重要​​的时序和能量开销。最近,由于其超高的存储密度和快速的读/写速度的优势,一种被称为跑马存储器(RM)的新兴NVM已经得到了广泛的研究。除了这些众所周知的优点外,我们还观察到RM单元的带状结构及其独特的移位操作也可用于促进NVM数据加密。基于此观察,我们提出了一种有效的基于移位的机制,称为Pin Tumbler Lock(PTL),该机制通过将赛道移位几纳秒来完成加密和解密。实验结果表明,我们的设计可以达到AES-128相同的安全强度,性能开销为3.1%,能源开销为3.7%,存储成本为1.56%,面积成本为1.6%。

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