Sprout: A functional caching approach to minimize service latency in erasure-coded storage
September 30, 2016 Β· Declared Dead Β· π IEEE International Conference on Distributed Computing Systems
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Authors
Vaneet Aggarwal, Yih-Farn R. Chen, Tian Lan, Yu Xiang
arXiv ID
1609.09827
Category
cs.DC: Distributed Computing
Cross-listed
cs.IT
Citations
45
Venue
IEEE International Conference on Distributed Computing Systems
Last Checked
6 months ago
Abstract
Modern distributed storage systems often use erasure codes to protect against disk and node failures to increase reliability, while trying to meet the latency requirements of the applications and clients. Storage systems may have caches at the proxy or client ends in order to reduce the latency. In this paper, we consider a novel caching framework with erasure code called functional caching. Functional Caching involves using erasure-coded chunks in the cache such that the code formed by the chunks in storage nodes and cache combined are maximal-distance-separable (MDS) erasure codes. Based on the arrival rates of different files, placement of file chunks on the servers, and service time distribution of storage servers, an optimal functional caching placement and the access probabilities of the file request from different disks are considered. The proposed algorithm gives significant latency improvement in both simulations and a prototyped solution in an open-source, cloud storage deployment.
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