Time-memory trade-off in Toom-Cook multiplication: an application to module-lattice based cryptography

Author:

Bermudo Mera Jose Maria,Karmakar Angshuman,Verbauwhede Ingrid

Abstract

Since the introduction of the ring-learning with errors problem, the number theoretic transform (NTT) based polynomial multiplication algorithm has been studied extensively. Due to its faster quasilinear time complexity, it has been the preferred choice of cryptographers to realize ring-learning with errors cryptographic schemes. Compared to NTT, Toom-Cook or Karatsuba based polynomial multiplication algorithms, though being known for a long time, still have a fledgling presence in the context of post-quantum cryptography.In this work, we observe that the pre- and post-processing steps in Toom-Cook based multiplications can be expressed as linear transformations. Based on this observation we propose two novel techniques that can increase the efficiency of Toom-Cook based polynomial multiplications. Evaluation is reduced by a factor of 2, and we call this method precomputation, and interpolation is reduced from quadratic to linear, and we call this method lazy interpolation.As a practical application, we applied our algorithms to the Saber post-quantum key-encapsulation mechanism. We discuss in detail the various implementation aspects of applying our algorithms to Saber. We show that our algorithm can improve the efficiency of the computationally costly matrix-vector multiplication by 12−37% compared to previous methods on their respective platforms. Secondly, we propose different methods to reduce the memory footprint of Saber for Cortex-M4 microcontrollers. Our implementation shows between 2.6 and 5.7 KB reduction in the memory usage with respect to the smallest implementation in the literature.

Publisher

Universitatsbibliothek der Ruhr-Universitat Bochum

Subject

General Earth and Planetary Sciences,General Environmental Science

Cited by 17 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A Survey of Polynomial Multiplications for Lattice-Based Cryptosystems;IACR Communications in Cryptology;2024-07-08

2. Fault-Tolerant Parallel Integer Multiplication;Proceedings of the 36th ACM Symposium on Parallelism in Algorithms and Architectures;2024-06-17

3. High- and Half-Degree Quantum Multiplication for Post-Quantum Security Evaluation;IEEE Access;2024

4. Minimizing I/O in Toom-Cook Algorithms;Lecture Notes in Computer Science;2024

5. A Comparative Analysis between Karatsuba, Toom-Cook and NTT Multiplier for Polynomial Multiplication in NTRU on FPGA;2023 Asian Hardware Oriented Security and Trust Symposium (AsianHOST);2023-12-13

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