DocumentCode
839794
Title
An Efficient Byzantine-Resilient Tuple Space
Author
Bessani, Alysson Neves ; Correia, Miguel ; Da Silva Fraga, Joni ; Lung, Lau Cheuk
Author_Institution
Dept. de Inf., Univ. de Lisboa, Lisbon, Portugal
Volume
58
Issue
8
fYear
2009
Firstpage
1080
Lastpage
1094
Abstract
Open distributed systems are typically composed by an unknown number of processes running in heterogeneous hosts. Their communication often requires tolerance to temporary disconnections and security against malicious actions. Tuple spaces are a well-known coordination model for this kind of systems. They can support communication that is decoupled both in time and space. There are currently several implementations of distributed fault-tolerant tuple spaces but they are not Byzantine-resilient, i.e., they do not provide a correct service if some replicas are attacked and start to misbehave. This paper presents an efficient implementation of a linearizable Byzantine fault-tolerant Tuple Space (LBTS) that uses a novel Byzantine quorum systems replication technique in which most operations are implemented by quorum protocols while stronger operations are implemented by more expensive protocols based on consensus. LBTS is linearizable and wait-free, showing interesting performance gains when compared to a similar construction based on state machine replication.
Keywords
distributed algorithms; fault tolerant computing; protocols; security of data; coordination model; linearizable Byzantine fault-tolerant tuple space; open distributed system; quorum protocol; quorum systems replication technique; system security; Application software; Communication system security; Computer crashes; Distributed computing; Fault tolerance; Fault tolerant systems; Grid computing; Lungs; Performance gain; Protocols; Byzantine fault tolerance; Tuple spaces; intrusion tolerance; quorum systems.;
fLanguage
English
Journal_Title
Computers, IEEE Transactions on
Publisher
ieee
ISSN
0018-9340
Type
jour
DOI
10.1109/TC.2009.71
Filename
4912196
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