DocumentCode
168670
Title
Efficient Checkpointing of Virtual Machines Using Virtual Machine Introspection
Author
Aderholdt, Ferrol ; Fang Han ; Scott, Stephen L. ; Naughton, Thomas
Author_Institution
ECE Dept., Tennessee Technol. Univ., Cookeville, TN, USA
fYear
2014
fDate
26-29 May 2014
Firstpage
414
Lastpage
423
Abstract
Cloud Computing environments rely heavily on system-level virtualization. This is due to the inherent benefits of virtualization including fault tolerance through checkpoint/restart (C/R) mechanisms. Because clouds are the abstraction of large data enters and large data enters have a higher potential for failure, it is imperative that a C/R mechanism for such an environment provide minimal latency as well as a small checkpoint file size. Recently, there has been much research into C/R with respect to virtual machines (VM) providing excellent solutions to reduce either checkpoint latency or checkpoint file size. However, these approaches do not provide both. This paper presents a method of check pointing VMs by utilizing virtual machine introspection (VMI). Through the usage of VMI, we are able to determine which pages of memory within the guest are used or free and are better able to reduce the amount of pages written to disk during a checkpoint. We have validated this work by using various benchmarks to measure the latency along with the checkpoint size. With respect to checkpoint file size, our approach results in file sizes within 24% or less of the actual used memory within the guest. Additionally, the checkpoint latency of our approach is up to 52% faster than KVM´s default method.
Keywords
checkpointing; cloud computing; fault tolerance; virtual machines; virtualisation; C/R mechanisms; VMI; checkpoint/restart mechanisms; cloud computing environments; fault tolerance; system-level virtualization; virtual machine introspection; Checkpointing; Kernel; Linux; Memory management; Monitoring; Virtual machine monitors; Virtual machining; Checkpointing; Cloud; Virtualization;
fLanguage
English
Publisher
ieee
Conference_Titel
Cluster, Cloud and Grid Computing (CCGrid), 2014 14th IEEE/ACM International Symposium on
Conference_Location
Chicago, IL
Type
conf
DOI
10.1109/CCGrid.2014.72
Filename
6846477
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