{INSTalytics}: Cluster Filesystem Co-design for Big-data Analytics Sivathanu M, Vuppalapati M, Gulavani BS, Rajan K, Leeka J, Mohan J, Kedia P. 2019. {INSTalytics}: Cluster Filesystem Co-design for Big-data Analytics. 17th USENIX Conference on File and Storage Technologies (FAST 19). :235--248. Read more about {INSTalytics}: Cluster Filesystem Co-design for Big-data AnalyticsDBLPLog in to post commentsGoogle ScholarBibTeX
{DistCache}: Provable Load Balancing for {Large-Scale} Storage Systems with Distributed Caching Liu Z, Bai Z, Liu Z, Li X, Kim C, Braverman V, Jin X, Stoica I. 2019. {DistCache}: Provable Load Balancing for {Large-Scale} Storage Systems with Distributed Caching. 17th USENIX Conference on File and Storage Technologies (FAST 19). :143--157. Read more about {DistCache}: Provable Load Balancing for {Large-Scale} Storage Systems with Distributed CachingDBLPLog in to post commentsGoogle ScholarBibTeX
Automatic, {Application-Aware} {I/O} Forwarding Resource Allocation Ji X, Yang B, Zhang T, Ma X, Zhu X, Wang X, El-Sayed N, Zhai J, Liu W, Xue W. 2019. Automatic, {Application-Aware} {I/O} Forwarding Resource Allocation. 17th USENIX Conference on File and Storage Technologies (FAST 19). :265--279. Read more about Automatic, {Application-Aware} {I/O} Forwarding Resource AllocationDBLPLog in to post commentsGoogle ScholarBibTeX
{SPEICHER}: Securing {LSM-based} {Key-Value} Stores using Shielded Execution Bailleu M, Thalheim J, Bhatotia P, Fetzer C, Honda M, Vaswani K. 2019. {SPEICHER}: Securing {LSM-based} {Key-Value} Stores using Shielded Execution. 17th USENIX Conference on File and Storage Technologies (FAST 19). :173--190. Read more about {SPEICHER}: Securing {LSM-based} {Key-Value} Stores using Shielded ExecutionDBLPLog in to post commentsGoogle ScholarBibTeX
{GraphOne}: A Data Store for Real-time Analytics on Evolving Graphs Kumar P, H. Huang H. 2019. {GraphOne}: A Data Store for Real-time Analytics on Evolving Graphs. 17th USENIX Conference on File and Storage Technologies (FAST 19). :249--263. Read more about {GraphOne}: A Data Store for Real-time Analytics on Evolving GraphsDBLPLog in to post commentsGoogle ScholarBibTeX
Design Tradeoffs for {SSD} Reliability Kim BS, Choi J, Min SLyul. 2019. Design Tradeoffs for {SSD} Reliability. 17th USENIX Conference on File and Storage Technologies (FAST 19). :281--294. Read more about Design Tradeoffs for {SSD} ReliabilityDBLPLog in to post commentsGoogle ScholarBibTeX
Sliding {Look-Back} Window Assisted Data Chunk Rewriting for Improving Deduplication Restore Performance Cao Z, Liu S, Wu F, Wang G, Li B, Du DHC. 2019. Sliding {Look-Back} Window Assisted Data Chunk Rewriting for Improving Deduplication Restore Performance. 17th USENIX Conference on File and Storage Technologies (FAST 19). :129--142. Read more about Sliding {Look-Back} Window Assisted Data Chunk Rewriting for Improving Deduplication Restore PerformanceDBLPLog in to post commentsGoogle ScholarBibTeX
{OpenEC}: Toward Unified and Configurable Erasure Coding Management in Distributed Storage Systems Li X, Li R, Lee PPC, Hu Y. 2019. {OpenEC}: Toward Unified and Configurable Erasure Coding Management in Distributed Storage Systems. 17th USENIX Conference on File and Storage Technologies (FAST 19). :331--344. Read more about {OpenEC}: Toward Unified and Configurable Erasure Coding Management in Distributed Storage SystemsDBLPLog in to post commentsGoogle ScholarBibTeX
Reaping the performance of fast {NVM} storage with {uDepot} Kourtis K, Ioannou N, Koltsidas I. 2019. Reaping the performance of fast {NVM} storage with {uDepot}. 17th USENIX Conference on File and Storage Technologies (FAST 19). :1--15. Read more about Reaping the performance of fast {NVM} storage with {uDepot}DBLPLog in to post commentsGoogle ScholarBibTeX
Optimizing Systems for {Byte-Addressable} {NVM} by Reducing Bit Flipping Bittman D, Long DDE, Alvaro P, Miller EL. 2019. Optimizing Systems for {Byte-Addressable} {NVM} by Reducing Bit Flipping. 17th USENIX Conference on File and Storage Technologies (FAST 19). :17--30. Read more about Optimizing Systems for {Byte-Addressable} {NVM} by Reducing Bit FlippingDBLPLog in to post commentsGoogle ScholarBibTeX