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Bridging the Gap between Unstructured SpMM and Structured Sparse Tensor Cores

Yukang Dong, Ziyuan Shen, Wenbin Jiang, Zhenghang Liu, Ye Xu, Bingyi He, Ran Zheng, Hai Jin

2025Year
4Citations

Abstract

The acceleration of Sparse-dense Matrix Multiplication (SpMM) using Tensor Cores (TCs) in GPUs has recently garnered significant attention. TCs are designed for block-wise matrix multiplication, however, block partitioning of general unstructured sparse matrices often results in low-level density, causing a substantial waste of computational resources. Sparse Tensor Cores (SpTCs) can mitigate this issue by skipping 50% of zero values, however, SpTCs are limited to strict 2:4 or 1:2 structured sparsity. To bridge this gap, we propose MP-SpMM, a novel Matching and Padding approach that transforms general sparse matrices into structured sparsity, drawing inspiration from the maximum matching problem in graph theory. Moreover, we introduce a novel storage format and a highly optimized GPU kernel that fully exploits the capabilities of SpTCs. Extensive experiments on modern GPUs demonstrate that MP-SpMM outperforms state-of-the-art SpMM libraries, DTC-SpMM and RoDe, with an average speedup of 2.42 × (up to 7.65 ×) and 1.92 × (up to 8.60 ×).

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