Reviving In-Storage Hardware Compression on ZNS SSDs through Host-SSD Collaboration
Yingjia Wang, Tao Lu, Yuhong Liang, Xiang Chen, Ming-Chang Yang
Abstract
Zoned Namespace (ZNS) is an emerging SSD interface with great potential for performance and cost in largescale cloud SSD deployments. Enabling in-storage hardware compression on ZNS SSDs is promising for further enhancing the cost-effectiveness of ZNS-based storage infrastructures. However, based on our investigation, existing solutions based on the hosttransparent methodology are sub-optimal on ZNS SSDs due to two intrinsic challenges: (1) locating compressed chunks and (2) harvesting space savings from compression.
In this paper, we for the first time revisit the compression storage system architecture on the emerging ZNS SSD and propose to decouple compression execution with indexing. We propose CCZNS (CC: collaborative compression), an advanced ZNS interface that revives in-storage hardware compression on ZNS SSDs through a novel host-SSD collaborative approach. We present how CCZNS can benefit host software by performing a case study on RocksDB and ZenFS. Extensive experiments demonstrate that the CCZNS-based storage system significantly outperforms existing system solutions.
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 4a3095b4-3d8d-4626-a425-2e710989fe9eCited by top-tier papers4
- SolidAttention: Low-Latency SSD-based Serving on Memory-Constrained PCsXinrui Zheng, Dongliang Wei, Jianxiang Gao, Yixin Song et al.FAST 2026 · 9 citations
- RosenBridge: A Framework for Enabling Express I/O Paths Across the Virtualization BoundaryShi Qiu, Li Wang, Jianqin Yan, Ruofan Xiong et al.FAST 2026 · 1 citation
- Making LSM-Tree-based Key-Value Store Practical and Efficient for Multi-Tenant Serverless Cloud DatabasesYingjia Wang, Caixin Gong, Guoyun Zhu, Sheng Wang et al.SIGMOD 2026 · 1 citation
- ASIC-based Compression Accelerators for Storage Systems: Design, Placement, and Profiling InsightsTao Lu, Jiapin Wang, Yelin Shan, Xiangping Zhang et al.EuroSys 2026
Builds on23
- Pond: CXL-Based Memory Pooling Systems for Cloud PlatformsHuaicheng Li, Daniel S. Berger, Lisa Hsu, Daniel Ernst et al.ASPLOS 2023 · 328 citations
- A large scale analysis of hundreds of in-memory cache clusters at TwitterJuncheng Yang, Yao Yue, K. V. RashmiOSDI 2020 · 245 citations
- The CacheLib Caching Engine: Design and Experiences at ScaleBenjamin Berg, Daniel S. Berger, Sara McAllister, Isaac Grosof et al.OSDI 2020 · 145 citations
- POLARDB Meets Computational Storage: Efficiently Support Analytical Workloads in Cloud-Native Relational DatabaseWei Cao, Yang Liu, Zhushi Cheng, Ning Zheng et al.FAST 2020 · 140 citations
- ZNS+: Advanced Zoned Namespace Interface for Supporting In-Storage Zone CompactionKyuhwa Han, Hyunho Gwak, Dongkun Shin, Jooyoung HwangOSDI 2021 · 107 citations
Related papers
- ZNS: Avoiding the Block Interface Tax for Flash-based SSDsMatias Bjørling, Abutalib Aghayev, Hans Holmberg, Aravind Ramesh et al.USENIX ATC 2021 · 221 citations
- ZoneKV: A Space-Efficient Key-Value Store for ZNS SSDsMingchen Lu, Peiquan Jin, Xiaoliang Wang, Yongping Luo et al.DAC 2023 · 16 citations
- eZNS: An Elastic Zoned Namespace for Commodity ZNS SSDsJaehong Min, Chenxingyu Zhao, Ming Liu, Arvind KrishnamurthyOSDI 2023 · 56 citations
- Balloon-ZNS: Constructing High-Capacity and Low-Cost ZNS SSDs with Built-in CompressionYu Wang, Zibin Sun, You Zhou, Tao Lu et al.DAC 2024 · 7 citations
- FineRR-ZNS: Enabling Fine-Granularity Read Refreshing for ZNS SSDsJun Li, Zhibing Sha, Fan Yang, Xiaofei Xu et al.DAC 2025 · 1 citation
