Improving Service Availability of Cloud Systems by Predicting Disk Error Xu Y, Sui K, Yao R, Zhang H, Lin Q, Dang Y, Li P, Jiang K, Zhang W, Lou J-G et al.. 2018. Improving Service Availability of Cloud Systems by Predicting Disk Error. 2018 USENIX Annual Technical Conference (USENIX ATC 18). :481--494. Read more about Improving Service Availability of Cloud Systems by Predicting Disk ErrorDBLPLog in to post commentsGoogle ScholarBibTeX
Pantheon: the training ground for Internet congestion-control research Yan FY, Ma J, Hill GD, Raghavan D, Wahby RS, Levis P, Winstein K. 2018. Pantheon: the training ground for Internet congestion-control research. 2018 USENIX Annual Technical Conference (USENIX ATC 18). :731--743. Read more about Pantheon: the training ground for Internet congestion-control researchDBLPLog in to post commentsGoogle ScholarBibTeX
{NanoLog}: A Nanosecond Scale Logging System Yang S, Park SJin, Ousterhout J. 2018. {NanoLog}: A Nanosecond Scale Logging System. 2018 USENIX Annual Technical Conference (USENIX ATC 18). :335--350. Read more about {NanoLog}: A Nanosecond Scale Logging SystemDBLPLog in to post commentsGoogle ScholarBibTeX
{DeepCPU}: Serving {RNN-based} Deep Learning Models 10x Faster Zhang M, Rajbhandari S, Wang W, He Y. 2018. {DeepCPU}: Serving {RNN-based} Deep Learning Models 10x Faster. 2018 USENIX Annual Technical Conference (USENIX ATC 18). :951--965. Read more about {DeepCPU}: Serving {RNN-based} Deep Learning Models 10x FasterDBLPLog in to post commentsGoogle ScholarBibTeX
{KylinX}: A Dynamic Library Operating System for Simplified and Efficient Cloud Virtualization Zhang Y, Crowcroft J, Li D, Zhang C, Li H, Wang Y, Yu K, Xiong Y, Chen G. 2018. {KylinX}: A Dynamic Library Operating System for Simplified and Efficient Cloud Virtualization. 2018 USENIX Annual Technical Conference (USENIX ATC 18). :173--186. Read more about {KylinX}: A Dynamic Library Operating System for Simplified and Efficient Cloud VirtualizationDBLPLog in to post commentsGoogle ScholarBibTeX
{CGraph}: A Correlations-aware Approach for Efficient Concurrent Iterative Graph Processing Zhang Y, Liao X, Jin H, Gu L, He L, He B, Liu H. 2018. {CGraph}: A Correlations-aware Approach for Efficient Concurrent Iterative Graph Processing. 2018 USENIX Annual Technical Conference (USENIX ATC 18). :441--452. Read more about {CGraph}: A Correlations-aware Approach for Efficient Concurrent Iterative Graph ProcessingDBLPLog in to post commentsGoogle ScholarBibTeX
Solar: Towards a {Shared-Everything} Database on Distributed {Log-Structured} Storage Zhu T, Zhao Z, Li F, Qian W, Zhou A, Xie D, Stutsman R, Li H, Hu H. 2018. Solar: Towards a {Shared-Everything} Database on Distributed {Log-Structured} Storage. 2018 USENIX Annual Technical Conference (USENIX ATC 18). :795--807. Read more about Solar: Towards a {Shared-Everything} Database on Distributed {Log-Structured} StorageDBLPLog in to post commentsGoogle ScholarBibTeX
Remote regions: a simple abstraction for remote memory Aguilera MK, Amit N, Calciu I, Deguillard X, Gandhi J, Novaković S, Ramanathan A, Subrahmanyam P, Suresh L, Tati K et al.. 2018. Remote regions: a simple abstraction for remote memory. 2018 USENIX Annual Technical Conference (USENIX ATC 18). :775--787. Read more about Remote regions: a simple abstraction for remote memoryDBLPLog in to post commentsGoogle ScholarBibTeX
{SAND}: Towards {High-Performance} Serverless Computing Akkus IEkin, Chen R, Rimac I, Stein M, Satzke K, Beck A, Aditya P, Hilt V. 2018. {SAND}: Towards {High-Performance} Serverless Computing. 2018 USENIX Annual Technical Conference (USENIX ATC 18). :923--935. Read more about {SAND}: Towards {High-Performance} Serverless ComputingDBLPLog in to post commentsGoogle ScholarBibTeX
{Can’t} We All Get Along? Redesigning Protection Storage for Modern Workloads Allu Y, Douglis F, Kamat M, Prabhakar R, Shilane P, Ugale R. 2018. {Can’t} We All Get Along? Redesigning Protection Storage for Modern Workloads 2018 USENIX Annual Technical Conference (USENIX ATC 18). :705--718. Read more about {Can’t} We All Get Along? Redesigning Protection Storage for Modern WorkloadsDBLPLog in to post commentsGoogle ScholarBibTeX