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In-Memory Non-Binary LDPC Decoding

Ferraz, Ó. ; Silva, V. ; Falcão, G.

IEEE Access Vol. 13, Nº , pp. 186887 - 186902, October, 2025.

ISSN (print):
ISSN (online): 2169-3536

Scimago Journal Ranking: 0,88 (in 2025)

Digital Object Identifier: 10.1109/ACCESS.2025.3626043

Abstract
Low-density parity-check (LDPC) codes are an important feature of several communication and storage applications, offering a flexible and effective method for error correction. These codes are computationally complex and require the exploitation of parallel processing to meet real-time constraints. As advancements in arithmetic and logic unit technology allowed for higher performance of computing systems, memory technology has not kept the same pace of development, creating a data movement bottleneck and affecting parallel processing systems more dramatically. To alleviate the severity of this bottleneck, several solutions have been proposed, namely the processing in-memory (PiM) paradigm that involves the design of compute units to where (or near) the data is stored, utilizing thousands of low-complexity processing units to perform out bit-wise and simple arithmetic operations. This paper presents a novel efficient solution for near-memory non-binary LDPC decoders in the UPMEM system, for the best of our knowledge the first real hardware PiM-based non-binary LDPC decoder that is benchmarked against low-power GPU parallel solutions highly optimized for throughput performance. PiM-based non-binary LDPC decoders can achieve 76 Mbit/s of decoding throughput, which is even competitive when compared against implementations running in edge GPUs.