System-on-Chip Architectures and Implementations for Private-Key Data Encryption

  • Máire McLoone
  • John V. McCanny

Table of contents

  1. Front Matter
    Pages i-xiv
  2. Máire McLoone, John V. McCanny
    Pages 1-27
  3. Máire McLoone, John V. McCanny
    Pages 28-55
  4. Máire McLoone, John V. McCanny
    Pages 57-75
  5. Máire McLoone, John V. McCanny
    Pages 77-98
  6. Máire McLoone, John V. McCanny
    Pages 99-123
  7. Máire McLoone, John V. McCanny
    Pages 125-130
  8. Back Matter
    Pages 131-160

About this book

Introduction

In System-on-Chip Architectures and Implementations for Private-Key Data Encryption, new generic silicon architectures for the DES and Rijndael symmetric key encryption algorithms are presented. The generic architectures can be utilised to rapidly and effortlessly generate system-on-chip cores, which support numerous application requirements, most importantly, different modes of operation and encryption and decryption capabilities. In addition, efficient silicon SHA-1, SHA-2 and HMAC hash algorithm architectures are described. A single-chip Internet Protocol Security (IPSec) architecture is also presented that comprises a generic Rijndael design and a highly efficient HMAC-SHA-1 implementation.

In the opinion of the authors, highly efficient hardware implementations of cryptographic algorithms are provided in this book. However, these are not hard-fast solutions. The aim of the book is to provide an excellent guide to the design and development process involved in the translation from encryption algorithm to silicon chip implementation.

Keywords

Hardware algorithms architectures authentication cryptoanalysis data encryption development encryption finite field performance system on chip (SoC)

Authors and affiliations

  • Máire McLoone
    • 1
  • John V. McCanny
    • 1
  1. 1.Queen’s UniversityBelfastNorthern Ireland

Bibliographic information

  • DOI https://doi.org/10.1007/978-1-4615-0043-8
  • Copyright Information Kluwer Academic / Plenum Publishers, New York 2003
  • Publisher Name Springer, Boston, MA
  • eBook Packages Springer Book Archive
  • Print ISBN 978-1-4613-4897-9
  • Online ISBN 978-1-4615-0043-8
  • About this book
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