Skip to main navigation Skip to search Skip to main content

Building workload-independent storage with VT-Trees

  • Pradeep Shetty
  • , Richard Spillane
  • , Ravikant Malpani
  • , Binesh Andrews
  • , Justin Seyster
  • , Erez Zadok
  • Stony Brook University

Research output: Contribution to conferencePaperpeer-review

146 Scopus citations

Abstract

As the Internet and the amount of data grows, the variability of data sizes grows too-from small MP3 tags to large VM images. With applications using increasingly more complex queries and larger data-sets, data access patterns have become more complex and randomized. Current storage systems focus on optimizing for one band of workloads at the expense of other workloads due to limitations in existing storage system data structures. We designed a novel workload-independent data structure called the VT-tree which extends the LSM-tree to efficiently handle sequential and file-system workloads. We designed a system based solely on VT-trees which offers concurrent access to data via file system and database APIs, transactional guarantees, and consequently provides efficient and scalable access to both large and small data items regardless of the access pattern. Our evaluation shows that our user-level system has 2-6.6× better performance for random-write workloads and only a small average overhead for other workloads.

Original languageEnglish
Pages17-30
Number of pages14
StatePublished - 2013
Event11th USENIX Conference on File and Storage Technologies, FAST 2013 - San Jose, United States
Duration: Feb 12 2013Feb 15 2013

Conference

Conference11th USENIX Conference on File and Storage Technologies, FAST 2013
Country/TerritoryUnited States
CitySan Jose
Period02/12/1302/15/13

Fingerprint

Dive into the research topics of 'Building workload-independent storage with VT-Trees'. Together they form a unique fingerprint.

Cite this