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Low-Cost Area-Efficient FPGA-Based Multi-Functional ECDSA/EdDSA

Kieu-Do-nguyen Department of Computer and Network Engineering, The University of Electro-Communications (UEC), 1-5-1 Chofugaoka, Chofu-shi, Tokyo, 182-8585, Japan|
Trong-Thuc (56024762000) | Cong-Kha (56186480400); Hoang | Ngoc-Thinh (24723198300); Pham | Cuong (35318506300); Tran | Binh (57200626731); Pham-Quoc Faculty of Computer Science and Engineering, Ho Chi Minh City University of Technology (HCMUT), 268 Ly Thuong Kiet St., Dist. 10, Ho Chi Minh City, 740050, Viet Nam|

Cryptography Số 2, năm 2022 (Tập 6, trang -)

ISSN: 2410387X

ISSN: 2410387X

DOI:

Tài liệu thuộc danh mục:

Article

English

Tóm tắt tiếng anh
In cryptography, elliptic curve cryptography (ECC) is considered an efficient and secure method to implement digital signature algorithms (DSAs). ECC plays an essential role in many security applications, such as transport layer security (TLS), internet protocol security (IPsec), and wireless sensor networks (WSNs). The proposed designs of ECC hardware implementation only focus on a single ECC variant and use many resources. These proposals cannot be used for resource-constrained applications or for the devices that need to provide multiple levels of security. This work provides a multi-functional elliptic curve digital signature algorithm (ECDSA) and Edwards-curve digital signature algorithm (EdDSA) hardware implementation. The core can run multiple ECDSA/EdDSA algorithms in a single design. The design consumes fewer resources than the other single-functional design, and is not based on digital signal processors (DSP). The experiments show that the proposed core could run up to 112.2 megahertz with Virtex-7 devices while consuming only 10,259 slices in total. � 2022 by the authors. Licensee MDPI, Basel, Switzerland.

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