LeaFTL: A Learning-Based Flash Translation Layer for Solid-State Drives
Jinghan Sun, Shaobo Li, Yunxin Sun, Chao Sun, Dejan Vucinic, Jian Huang
Abstract
In modern solid-state drives (SSDs), the indexing of flash pages is a critical component in their storage controllers. It not only affects the data access performance, but also determines the efficiency of the precious in-device DRAM resource. A variety of address mapping schemes and optimizations have been proposed. However, most of them were developed with human-driven heuristics.
In this paper, we present a learning-based flash translation layer (FTL), named LeaFTL, which learns the address mapping to tolerate dynamic data access patterns via linear regression at runtime. By grouping a large set of mapping entries into a learned segment, it significantly reduces the memory footprint of the address mapping table, which further benefits the data caching in SSD controllers. LeaFTL also employs various optimization techniques, including out-of-band metadata verification to tolerate mispredictions, optimized flash allocation, and dynamic compaction of learned index segments. We implement LeaFTL with both a validated SSD simulator and a real open-channel SSD board. Our evaluation with various storage workloads demonstrates that LeaFTL saves the memory consumption of the mapping table by 2.9× and improves the storage performance by 1.4× on average, in comparison with state-of-the-art FTL schemes.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 25bff0d6-ae9a-4e41-8bf0-7442257dba45Cited by top-tier papers16
- GL-Cache: Group-level learning for efficient and high-performance cachingJuncheng Yang, Ziming Mao, Yao Yue, K. V. RashmiFAST 2023 · 60 citations
- ZMS: Zone Abstraction for Mobile Flash StorageJoo Young Hwang, Seokhwan Kim, Daejun Park, Yong-Gil Song et al.USENIX ATC 2024 · 22 citations
- LearnedFTL: A Learning-Based Page-Level FTL for Reducing Double Reads in Flash-Based SSDsShengzhe Wang, Zihang Lin, Suzhen Wu, Hong Jiang et al.HPCA 2024 · 17 citations
- LSGraph: A Locality-centric High-performance Streaming Graph EngineHao Qi, Yiyang Wu, Ligang He, Yu Zhang et al.EuroSys 2024 · 15 citations
- REIS: A High-Performance and Energy-Efficient Retrieval System with In-Storage ProcessingKangqi Chen, Rakesh Nadig, Manos Frouzakis, Nika Mansouri-Ghiasi et al.ISCA 2025 · 14 citations
Builds on10
- The PGM-index: a fully-dynamic compressed learned index with provable worst-case boundsPaolo Ferragina, Giorgio VinciguerraVLDB 2020 · 178 citations
- From WiscKey to Bourbon: A Learned Index for Log-Structured Merge TreesYifan Dai, Yien Xu, Aishwarya Ganesan, Ramnatthan Alagappan et al.OSDI 2020 · 138 citations
- An Imitation Learning Approach for Cache ReplacementEvan Zheran Liu, Milad Hashemi, Kevin Swersky, Parthasarathy Ranganathan et al.ICML 2020 · 108 citations
- ZNS+: Advanced Zoned Namespace Interface for Supporting In-Storage Zone CompactionKyuhwa Han, Hyunho Gwak, Dongkun Shin, Jooyoung HwangOSDI 2021 · 107 citations
- Designing a Cost-Effective Cache Replacement Policy using Machine LearningSubhash Sethumurugan, Jieming Yin, John SartoriHPCA 2021 · 81 citations
Related papers
- Learning to Walk: Architecting Learned Virtual Memory TranslationKaiyang Zhao, Yuang Chen, Xenia Xu, Dan Schatzberg et al.MICRO 2025 · 2 citations
- Expanding Logical Space Freely: A Memory-efficient Mapping Table Design for Compressional SSDsZixuan Huang, Tianyu Wang, Kecheng Huang, Zelin Du et al.DAC 2025
- Learning to Drive Software-Defined Solid-State DrivesDaixuan Li, Jinghan Sun, Jian HuangMICRO 2023 · 5 citations
- Learning-based Data Separation for Write Amplification Reduction in Solid State DrivesPenghao Sun, Litong You, Shengan Zheng, Wanru Zhang et al.DAC 2023 · 9 citations
- Fair Will Go On: A Collaboration-Aware Fairness Scheme for NVMe SSD in Cloud Storage SystemYang Zhou, Fang Wang, Zhan Shi, Dan Feng et al.DAC 2023 · 7 citations
