English

Hardware-Software Co-Design of BIKE with HLS-Generated Accelerators

Hardware Architecture 2023-01-10 v2 Cryptography and Security

Abstract

In order to mitigate the security threat of quantum computers, NIST is undertaking a process to standardize post-quantum cryptosystems, aiming to assess their security and speed up their adoption in production scenarios. Several hardware and software implementations have been proposed for each candidate, while only a few target heterogeneous platforms featuring CPUs and FPGAs. This work presents a HW/SW co-design of BIKE for embedded platforms featuring both CPUs and small FPGAs and employs high-level synthesis (HLS) to timely deliver the hardware accelerators. In contrast to state-of-the-art solutions targeting performance-optimized HLS accelerators, the proposed solution targets the small FPGAs implemented in the heterogeneous platforms for embedded systems. Compared to the software-only execution of BIKE, the experimental results collected on the systems-on-chip of the entire Xilinx Zynq-7000 family highlight a performance speedup ranging from 1.37x, on Z-7010, to 2.78x, on Z-7020.

Keywords

Cite

@article{arxiv.2209.03830,
  title  = {Hardware-Software Co-Design of BIKE with HLS-Generated Accelerators},
  author = {Gabriele Montanaro and Andrea Galimberti and Ernesto Colizzi and Davide Zoni},
  journal= {arXiv preprint arXiv:2209.03830},
  year   = {2023}
}
R2 v1 2026-06-28T00:57:44.887Z