Parallel Sponge-Based Authenticated Encryption With Side-Channel Protection and Adversary-Invisible Nonces

Bridges; Side channel attack; Authenticated encryption; CAESAR competition; Cipher; Code; Confidentiality; Cryptographic sponge function; CryptoGraphics; Integrity; Message authentication codes; NIST; NIST-LW competition; Security; Sponge functions; Authentication

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Main Authors: Jimale M.A., Z'Aba M.R., Kiah M.L.B.M., Idris M.Y.I., Jamil N., Mohamad M.S., Rohmad M.S.
Other Authors: 57440872300
Format: Article
Published: Institute of Electrical and Electronics Engineers Inc. 2023
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spelling my.uniten.dspace-272002023-05-29T17:40:52Z Parallel Sponge-Based Authenticated Encryption With Side-Channel Protection and Adversary-Invisible Nonces Jimale M.A. Z'Aba M.R. Kiah M.L.B.M. Idris M.Y.I. Jamil N. Mohamad M.S. Rohmad M.S. 57440872300 24726154700 57671479600 7005361464 36682671900 36662779700 24463710800 Bridges; Side channel attack; Authenticated encryption; CAESAR competition; Cipher; Code; Confidentiality; Cryptographic sponge function; CryptoGraphics; Integrity; Message authentication codes; NIST; NIST-LW competition; Security; Sponge functions; Authentication Since its birth in 2000, authenticated encryption (AE) has been a hot research topic, and many new features have been proposed to boost its security or performance. The Block cipher was the dominant primitive in constructing AE schemes, followed by stream ciphers and compression functions until the sponge construction emerged in 2011. Sponge-based AE schemes provide functional characteristics such as parallelizability, incrementality, and being online. They also offer security features for protection against active or passive adversaries. Currently, there exist parallel sponge-based AE schemes, but they are not protected against simple power analysis (SPA) and differential power analysis (DPA). On the other hand, sponge-based AE schemes that protect against such attacks are serial and cannot be parallelized. Furthermore, sponge-based AE schemes handle the nonces in a way that could allow misuse. So, sponge-based AE schemes that hide the nonce from adversaries are also an open problem. This work aims to bridge these gaps by proposing a parallel sponge-based AE with side-channel protection and adversary-invisible nonces (PSASPIN), using parallel fresh rekeying and the duplex mode of the sponge construction. A leveled implementation is used to implement the key generation part using a pseudorandom function (PRF) based on the Galois field multiplication. The data processing (the rekeyed) part is implemented using the sponge-based duplex mode. Finally, the security proof of the proposed scheme is provided using game-based theory according to the PRP/PRF switching lemma, and its performance is analyzed. � 2013 IEEE. Final 2023-05-29T09:40:52Z 2023-05-29T09:40:52Z 2022 Article 10.1109/ACCESS.2022.3171853 2-s2.0-85129652127 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85129652127&doi=10.1109%2fACCESS.2022.3171853&partnerID=40&md5=1d05c84832dd2a716650a564820e506e https://irepository.uniten.edu.my/handle/123456789/27200 10 50819 50838 All Open Access, Gold Institute of Electrical and Electronics Engineers Inc. Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description Bridges; Side channel attack; Authenticated encryption; CAESAR competition; Cipher; Code; Confidentiality; Cryptographic sponge function; CryptoGraphics; Integrity; Message authentication codes; NIST; NIST-LW competition; Security; Sponge functions; Authentication
author2 57440872300
author_facet 57440872300
Jimale M.A.
Z'Aba M.R.
Kiah M.L.B.M.
Idris M.Y.I.
Jamil N.
Mohamad M.S.
Rohmad M.S.
format Article
author Jimale M.A.
Z'Aba M.R.
Kiah M.L.B.M.
Idris M.Y.I.
Jamil N.
Mohamad M.S.
Rohmad M.S.
spellingShingle Jimale M.A.
Z'Aba M.R.
Kiah M.L.B.M.
Idris M.Y.I.
Jamil N.
Mohamad M.S.
Rohmad M.S.
Parallel Sponge-Based Authenticated Encryption With Side-Channel Protection and Adversary-Invisible Nonces
author_sort Jimale M.A.
title Parallel Sponge-Based Authenticated Encryption With Side-Channel Protection and Adversary-Invisible Nonces
title_short Parallel Sponge-Based Authenticated Encryption With Side-Channel Protection and Adversary-Invisible Nonces
title_full Parallel Sponge-Based Authenticated Encryption With Side-Channel Protection and Adversary-Invisible Nonces
title_fullStr Parallel Sponge-Based Authenticated Encryption With Side-Channel Protection and Adversary-Invisible Nonces
title_full_unstemmed Parallel Sponge-Based Authenticated Encryption With Side-Channel Protection and Adversary-Invisible Nonces
title_sort parallel sponge-based authenticated encryption with side-channel protection and adversary-invisible nonces
publisher Institute of Electrical and Electronics Engineers Inc.
publishDate 2023
_version_ 1806426334590664704
score 13.223943