English

HLC: A High-Quality Lightweight Mezzanine Codec Featuring High-Throughput Palette

Hardware Architecture 2026-04-01 v1 Multimedia

Abstract

Existing mezzanine image codecs lack specialized screen content coding tools and therefore struggle to maintain high image quality under bandwidth constraints, especially in areas with dense text. Although distribution codecs offer advanced screen content compression techniques, their high computational complexity makes them impractical for mezzanine coding. To address this shortfall, we introduce the High-quality Lightweight Codec (HLC), a solution centered on enabling practical, high-throughput palette for mezzanine coding. The core innovation is a novel data-dependency-free palette that eliminates the throughput bottlenecks. To ensure its effectiveness across all content, a co-designed rate-distortion optimization module arbitrates between the palette and traditional prediction modes, while a data reuse strategy between rate estimation and entropy coding minimizes the overall hardware resources required for the system. Experimental results show that, compared with a 4K@120fps JPEG-XS encoder, HLC achieves the same throughput while using only half the LUT resources and delivers BD-PSNR improvements of 3.461dB, 3.299dB, and 5.312dB on gaming, natural, and text content datasets, respectively.

Keywords

Cite

@article{arxiv.2603.29864,
  title  = {HLC: A High-Quality Lightweight Mezzanine Codec Featuring High-Throughput Palette},
  author = {Chenlong He and Leilei Huang and Wei Li and Hanyang Cui and Zhijian Hao and Xiaoyang Zeng and Yibo Fan},
  journal= {arXiv preprint arXiv:2603.29864},
  year   = {2026}
}

Comments

5 pages, 4 figures. Accepted to IEEE ISCAS 2026. Author accepted manuscript

R2 v1 2026-07-01T11:46:29.307Z