DocumentCode
943437
Title
Automated Rule-Based Diagnosis Through a Distributed Monitor System
Author
Khanna, Gunjan ; Cheng, Mike Yu ; Varadharajan, Padma ; Bagchi, Saurabh ; Correia, Miguel P. ; Verissimo, P.J.
Author_Institution
Purdue Univ., West Lafayette
Volume
4
Issue
4
fYear
2007
Firstpage
266
Lastpage
279
Abstract
In today´s world, where distributed systems form many of our critical infrastructures, dependability outages are becoming increasingly common. In many situations, it is necessary to not only detect a failure but also to diagnose the failure, that is, to identify the source of the failure. Diagnosis is challenging, since high-throughput applications with frequent interactions between the different components allow fast error propagation. It is desirable to consider applications as blackboxes for the diagnostic process. In this paper, we propose a Monitor architecture for diagnosing failures in large-scale network protocols. The monitor only observes the message exchanges between the protocol entities (PEs) remotely and does not access the internal protocol state. At runtime, it builds a causal graph between the PEs based on their communication and uses this together with a rule base of allowed state-transition paths to diagnose the failure. The tests used for the diagnosis are based on the rule base and are assumed to have imperfect coverage. The hierarchical monitor framework allows distributed diagnosis handling failures at individual Monitors. The framework is implemented and applied to a reliable multicast protocol executing on our campuswide network. Fault injection experiments are carried out to evaluate the accuracy and latency of the diagnosis.
Keywords
computer networks; fault diagnosis; graph theory; message passing; multicast protocols; system monitoring; system recovery; automated rule-based diagnosis; causal graph; dependability outage; distributed monitor system; error propagation; failure detection; failure diagnosis; fault injection; large-scale network protocol; message exchange; reliable multicast protocol; state-transition path; Distributed system diagnosis; fault injection based evaluation; hierarchical Monitor system; runtime monitoring;
fLanguage
English
Journal_Title
Dependable and Secure Computing, IEEE Transactions on
Publisher
ieee
ISSN
1545-5971
Type
jour
DOI
10.1109/TDSC.2007.70211
Filename
4358702
Link To Document