Title :
Transparent Throughput Elasticity for IaaS Cloud Storage Using Guest-Side Block-Level Caching
Author :
Nicolae, Bogdan ; Riteau, Pierre ; Keahey, Kate
Author_Institution :
IBM Res., Dublin, Ireland
Abstract :
Storage elasticity on IaaS clouds is a crucial feature in the age of data-intensive computing. However, the traditional provisioning model of leveraging virtual disks of fixed capacity and performance characteristics has limited ability to match the increasingly dynamic nature of I/O application requirements. This mismatch is particularly problematic in the context of scientific applications that interleave periods of I/O inactivity with I/O intensive bursts. In this context, over-provisioning for best performance during peaks leads to significant extra costs because of unnecessarily tied-up resources, while any other trade-off leads to performance loss. This paper provides a transparent solution that automatically boosts I/O bandwidth during peaks for underlying virtual disks, effectively avoiding over-provisioning without performance loss. Our proposal relies on the idea of leveraging short lived virtual disks of better performance characteristics (and thus more expensive) to act during peaks as a caching layer for the persistent virtual disks where the application data is stored. We show how this idea can be achieved efficiently at the block-device level, using a caching mechanism that leverages iterative behavior and learns from past experience. We demonstrate the benefits of our proposal both for micro benchmarks and for two real life applications using large-scale experiments.
Keywords :
cache storage; cloud computing; iterative methods; virtualisation; I/O application requirements; I/O bandwidth; IaaS cloud storage; block-device level; caching mechanism; data-intensive computing; guest-side block-level caching; iterative behavior; performance characteristics; short-lived virtual disks; transparent throughput elasticity; virtual disks; Bandwidth; Cloud computing; Context; Elasticity; Performance evaluation; Throughput; Virtual machine monitors; adaptive I/O; block-level caching; cloud computing; storage elasticity; virtual disk;
Conference_Titel :
Utility and Cloud Computing (UCC), 2014 IEEE/ACM 7th International Conference on
Conference_Location :
London
DOI :
10.1109/UCC.2014.27