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Low Area and Low Power Implementation for CAESAR Authenticated Ciphers

机译:凯撒认证密码的低区域和低功耗实现

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Authenticated Encryption (AE) and Authenticated Encryption with Associated Data (AEAD) play a significant role in cryptography as they simultaneously provide confidentiality, integrity, and authenticity assurances on the data. The Competition for Authenticated Encryption, Security, Applicability, and Robustness (CAESAR) seeks optimal authenticated ciphers based on multiple criteria, including security, performance, area, and energy-efficiency. In this paper, low area and low power implementations of selected ciphers from the CAESAR candidates namely NORX, Tiaoxin, SILC, and COLM are provided. A reduction in area with an average of 43% and a reduction in dynamic power with an average of 54% are achieved compared to their corresponding high-speed architectures. Moreover, throughput (TP) in (Mbps) decreases by an average of 68% and throughput-to-area (TP/A) in (Mbps/Slices) decreases by an average of 48 %.
机译:经过身份验证的加密(AE)和具有相关数据(AEAD)的经过身份验证的加密在密码术中发挥着重要作用,因为它们同时为数据提供机密性,完整性和真实性保证。经过身份验证的加密,安全性,适用性和鲁棒性(CAESAR)的竞争基于多个标准寻求最佳认证密码,包括安全性,性能,面积和能效。在本文中,提供了来自凯撒候选的所选密码的低区域和低功率实现,即Norx,Tiaoxin,Silc和COLM。与其相应的高速架构相比,实现了平均43%的区域的降低,平均为54%,实现了54%。此外,(Mbps)的通量(TP)平均降低了68%,并且(Mbps /切片)的吞吐量到面积(Tp / a)平均降低48%。

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