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Hardware oriented authenticated encr...
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Khairallah, Mustafa.
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Hardware oriented authenticated encryption based on tweakable block ciphers
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Hardware oriented authenticated encryption based on tweakable block ciphers/ by Mustafa Khairallah.
作者:
Khairallah, Mustafa.
出版者:
Singapore :Springer Singapore : : 2022.,
面頁冊數:
xviii, 192 p. :ill. (some col.), digital ;24 cm.
內容註:
Introduction -- Arguments for Tweakable Block Cipher-Based Cryptorgaphy -- State of the Art of TBC-based Authenticated Encryption -- Rekey-and-Chain: Concepts and Analysis of Lightweight TBC-based Authenticated Encyrption Proposals -- Romulus: Lightweight TBC-Based Authenticated Encryption -- Pushing the limits of the Cost of TBC-based Authenticated Encryption: Remus -- Leakage-Resilient Authenticated Encryption using TBC: TEDT and AET-LR -- Multi-key AEAD Security using TBCs -- Conclusions.
Contained By:
Springer Nature eBook
標題:
Data encryption (Computer science) -
電子資源:
https://doi.org/10.1007/978-981-16-6344-4
ISBN:
9789811663444
Hardware oriented authenticated encryption based on tweakable block ciphers
Khairallah, Mustafa.
Hardware oriented authenticated encryption based on tweakable block ciphers
[electronic resource] /by Mustafa Khairallah. - Singapore :Springer Singapore :2022. - xviii, 192 p. :ill. (some col.), digital ;24 cm. - Computer architecture and design methodologies,2367-3486. - Computer architecture and design methodologies..
Introduction -- Arguments for Tweakable Block Cipher-Based Cryptorgaphy -- State of the Art of TBC-based Authenticated Encryption -- Rekey-and-Chain: Concepts and Analysis of Lightweight TBC-based Authenticated Encyrption Proposals -- Romulus: Lightweight TBC-Based Authenticated Encryption -- Pushing the limits of the Cost of TBC-based Authenticated Encryption: Remus -- Leakage-Resilient Authenticated Encryption using TBC: TEDT and AET-LR -- Multi-key AEAD Security using TBCs -- Conclusions.
This book presents the use of tweakable block ciphers for lightweight authenticated encryption, especially applications targeted toward hardware acceleration where such efficient schemes have demonstrated competitive performance and strong provable security with large margins. The first part of the book describes and analyzes the hardware implementation aspects of state-of-the-art tweakable block cipher-based mode ΘCB3. With this approach, a framework for studying a class of tweakable block cipher-based schemes is developed and two family of authenticated encryption algorithms are designed for the lightweight standardization project initiated by the National Institute of Standards and Technology (NIST): Romulus and Remus. The Romulus family is a finalist for standardization and targets a wide range of applications and performance trade-offs which will prove interesting to engineers, hardware designers, and students who work in symmetric key cryptography.
ISBN: 9789811663444
Standard No.: 10.1007/978-981-16-6344-4doiSubjects--Topical Terms:
579162
Data encryption (Computer science)
LC Class. No.: QA76.9.A25 / K43 2022
Dewey Class. No.: 005.824
Hardware oriented authenticated encryption based on tweakable block ciphers
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Introduction -- Arguments for Tweakable Block Cipher-Based Cryptorgaphy -- State of the Art of TBC-based Authenticated Encryption -- Rekey-and-Chain: Concepts and Analysis of Lightweight TBC-based Authenticated Encyrption Proposals -- Romulus: Lightweight TBC-Based Authenticated Encryption -- Pushing the limits of the Cost of TBC-based Authenticated Encryption: Remus -- Leakage-Resilient Authenticated Encryption using TBC: TEDT and AET-LR -- Multi-key AEAD Security using TBCs -- Conclusions.
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This book presents the use of tweakable block ciphers for lightweight authenticated encryption, especially applications targeted toward hardware acceleration where such efficient schemes have demonstrated competitive performance and strong provable security with large margins. The first part of the book describes and analyzes the hardware implementation aspects of state-of-the-art tweakable block cipher-based mode ΘCB3. With this approach, a framework for studying a class of tweakable block cipher-based schemes is developed and two family of authenticated encryption algorithms are designed for the lightweight standardization project initiated by the National Institute of Standards and Technology (NIST): Romulus and Remus. The Romulus family is a finalist for standardization and targets a wide range of applications and performance trade-offs which will prove interesting to engineers, hardware designers, and students who work in symmetric key cryptography.
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