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  4. Complete and Improved FPGA Implementation of Classic McEliece
 
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2022
Journal Article
Title

Complete and Improved FPGA Implementation of Classic McEliece

Abstract
We present the first specification-compliant constant-time FPGA implementation of the Classic McEliece cryptosystem from the third-round of NIST’s Post-Quantum Cryptography standardization process. In particular, we present the first complete implementation including encapsulation and decapsulation modules as well as key generation with seed expansion. All the hardware modules are parametrizable, at compile time, with security level and performance parameters. As the most time consuming operation of Classic McEliece is the systemization of the public key matrix during key generation, we present and evaluate three new algorithms that can be used for systemization while complying with the specification: hybrid early-abort systemizer (HEA), single-pass early-abort systemizer (SPEA), and dual-pass early-abort systemizer (DPEA). All of the designs outperform the prior systemizer designs for Classic McEliece by 2.2× to 2.6× in average runtime and by 1.7× to 2.4× in time-area efficiency. We show that our complete Classic McEliece design for example can perform key generation in 5.2 ms to 20 ms, encapsulation in 0.1 ms to 0.5 ms, and decapsulation in 0.7 ms to 1.5 ms for all security levels on an Xlilinx Artix 7 FPGA. The performance can be increased even further at the cost of resources by increasing the level of parallelization using the performance parameters of our design.
Author(s)
Chen, Pojen
Chou, Tung
Deshpande, Sanjay
Lahr, Norman  
Fraunhofer-Institut für Sichere Informationstechnologie SIT  
Niederhagen, Ruben
Szefer, Jakub M.
Wang, Wen
Journal
IACR transactions on cryptographic hardware and embedded systems  
Open Access
DOI
10.46586/tches.v2022.i3.71-113
Additional full text version
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Language
English
Fraunhofer-Institut für Sichere Informationstechnologie SIT  
Keyword(s)
  • Classic McEliece

  • Code-Based Cryptography

  • FPGA

  • Hardware Implementation

  • Key Encapsulation Mechanism

  • PQC

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