A Deep Dive into Protocol Design: How to Improve IPFS Performance without Sacrificing Decentralization
Wenbin Zhu, Zhaoyan Shen, Mengying Zhao, Dongxiao Yu, Bingzhe Li
Abstract
The InterPlanetary File System (IPFS) is a prominent decentralized storage solution; however, it struggles with performance issues. To address this challenge, the IPFS team has patched a series of centralized components, resulting in improved performance while giving more significant roles to specific entities. Balancing speed and decentralization has always posed a complex dilemma for storage systems. In this paper, we conduct a series of experiments and analyses to identify the performance advantages and constraints associated with the IPFS decentralized protocol. Based on thorough analysis, we propose a novel scheme named XIPFS to optimize IPFS. This scheme includes facilitating parallel block exchange across multiple nodes, refining content Publication strategies, and improving node selection algorithms for content routing. Our goal is to maximize the benefits of decentralized multi-source parallel downloading while minimizing the negative impact of decentralized indexing on execution time. Compared to previous approaches, the proposed optimizations are lightweight and fully compatible with the decentralized protocol, enabling autonomous execution and utility realization at each node. Experimental results demonstrate that XIPFS significantly improves node performance without compromising decentralization.
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