ACM Transactions on Computer Systems · 1988 · 1.4K citations · 12 references
Distributed File SystemCluster ComputingEngineeringComputer ArchitectureParallel StorageParallel ComputingParallel File SystemData ManagementFile SystemsComputer EngineeringTile SystemDistributed SystemsComputer ScienceAndrew File SystemCache ValidationPerformance ScalabilityEdge ComputingCloud ComputingDistributed Data StoreFile SystemSystem Software
The Andrew File System is a location-transparent distributed tile system that will eventually span more than 5000 workstations at Carnegie Mellon University. Large scale affects performance and complicates system operation. In this paper we present observations of a prototype implementation, motivate changes in the areas of cache validation, server process structure, name translation, and low-level storage representation, and quantitatively demonstrate Andrews ability to scale gracefully. We establish the importance of whole-file transfer and caching in Andrew by comparing its performance with that of Sun Microsystems NFS tile system. We also show how the aggregation of files into volumes improves the operability of the system.
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A trace-driven analysis of the UNIX 4.2 BSD file system
John K. Ousterhout, Hervé Da Costa, David Harrison et al. · ACM SIGOPS Operating Systems Review · 1985 · 498 citations · Full text
The LOCUS distributed operating system
Bruce J. Walker, Gerald J. Popek, Robert English et al. · ACM SIGOPS Operating Systems Review · 1983 · 370 citations · Full text
A trace-driven analysis of the UNIX 4.2 BSD file system
John K. Ousterhout, Hervé Da Costa, David Harrison et al. · 1985 · 263 citations
Distributed File System, Storage Performance, Engineering +19
The ITC distributed file system
Mahadev Satyanarayanan, John H. Howard, David A. Nichols et al. · ACM SIGOPS Operating Systems Review · 1985 · 202 citations