Dependability Evaluation of Middleware Technology for Large-scale Distributed Caching
August 16, 2020 Β· Declared Dead Β· π IEEE International Symposium on Software Reliability Engineering
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Authors
Domenico Cotroneo, Roberto Natella, Stefano Rosiello
arXiv ID
2008.06943
Category
cs.SE: Software Engineering
Citations
6
Venue
IEEE International Symposium on Software Reliability Engineering
Last Checked
4 months ago
Abstract
Distributed caching systems (e.g., Memcached) are widely used by service providers to satisfy accesses by millions of concurrent clients. Given their large-scale, modern distributed systems rely on a middleware layer to manage caching nodes, to make applications easier to develop, and to apply load balancing and replication strategies. In this work, we performed a dependability evaluation of three popular middleware platforms, namely Twemproxy by Twitter, Mcrouter by Facebook, and Dynomite by Netflix, to assess availability and performance under faults, including failures of Memcached nodes and congestion due to unbalanced workloads and network link bandwidth bottlenecks. We point out the different availability and performance trade-offs achieved by the three platforms, and scenarios in which few faulty components cause cascading failures of the whole distributed system.
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