Efficient Implementation of Ring-LWE Encryption on High-End IoT Platform View Full Text


Ontology type: schema:Chapter     


Chapter Info

DATE

2017

AUTHORS

Zhe Liu , Reza Azarderakhsh , Howon Kim , Hwajeong Seo

ABSTRACT

ARM NEON architecture has occupied a significant share of high-end Internet of Things platforms such as mini computer, tablet and smartphone markets due to its low cost and high performance. This paper studies efficient techniques of lattice-based cryptography on ARM processor and presents the first implementation of ring-LWE encryption on ARM NEON architecture. We propose a vectorized version of Iterative Number Theoretic Transform (NTT) for high-speed computation and present a 32-bit variant of SAMS2 technique, original from Liu et al. in CHES2015, for fast reduction. Subsequently, we present a full-fledged implementation of Ring-LWE by taking advantage of proposed and previous optimization techniques. Ultimately, our ring-LWE implementation requires only 145 k clock cycles for encryption and 32.8 k cycles for decryption for \(n=256\). These results are more than 17.6 times faster than the fastest ECC implementation on ARM NEON with same security level. More... »

PAGES

76-90

References to SciGraph publications

  • 2013. Efficient Implementation of Bilinear Pairings on ARM Processors in SELECTED AREAS IN CRYPTOGRAPHY
  • 2012. NEON Crypto in CRYPTOGRAPHIC HARDWARE AND EMBEDDED SYSTEMS – CHES 2012
  • 2014. Parallel Implementations of LEA in INFORMATION SECURITY AND CRYPTOLOGY -- ICISC 2013
  • 2015. Implementing GCM on ARMv8 in TOPICS IN CRYPTOLOGY –- CT-RSA 2015
  • 2012. On the Design of Hardware Building Blocks for Modern Lattice-Based Encryption Schemes in CRYPTOGRAPHIC HARDWARE AND EMBEDDED SYSTEMS – CHES 2012
  • 2014. LEA: A 128-Bit Block Cipher for Fast Encryption on Common Processors in INFORMATION SECURITY APPLICATIONS
  • 2014. Compact Ring-LWE Cryptoprocessor in ADVANCED INFORMATION SYSTEMS ENGINEERING
  • 2014. Enhanced Lattice-Based Signatures on Reconfigurable Hardware in ADVANCED INFORMATION SYSTEMS ENGINEERING
  • 2012. Practical Lattice-Based Cryptography: A Signature Scheme for Embedded Systems in CRYPTOGRAPHIC HARDWARE AND EMBEDDED SYSTEMS – CHES 2012
  • 2015. Montgomery Modular Multiplication on ARM-NEON Revisited in INFORMATION SECURITY AND CRYPTOLOGY - ICISC 2014
  • 2015. Efficient Ring-LWE Encryption on 8-Bit AVR Processors in CRYPTOGRAPHIC HARDWARE AND EMBEDDED SYSTEMS -- CHES 2015
  • 2013. Fast Software Polynomial Multiplication on ARM Processors Using the NEON Engine in SECURITY ENGINEERING AND INTELLIGENCE INFORMATICS
  • 2014. Montgomery Multiplication Using Vector Instructions in SELECTED AREAS IN CRYPTOGRAPHY -- SAC 2013
  • 2015. Higher-Order Masking in Practice: A Vector Implementation of Masked AES for ARM NEON in TOPICS IN CRYPTOLOGY –- CT-RSA 2015
  • 2013. Improved Security for a Ring-Based Fully Homomorphic Encryption Scheme in CRYPTOGRAPHY AND CODING
  • Book

    TITLE

    Radio Frequency Identification and IoT Security

    ISBN

    978-3-319-62023-7
    978-3-319-62024-4

    Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1007/978-3-319-62024-4_6

    DOI

    http://dx.doi.org/10.1007/978-3-319-62024-4_6

    DIMENSIONS

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