DocumentCode
3295964
Title
Forensix: a robust, high-performance reconstruction system
Author
Goel, Ankush ; Feng, W.-C. ; Maier, David ; Feng, W.-C. ; Walpole, J.
Author_Institution
Toronto Univ., Ont., Canada
fYear
2005
fDate
6-10 June 2005
Firstpage
155
Lastpage
162
Abstract
When computer intrusions occur, one of the most costly, time-consuming, and human-intensive tasks is the analysis and recovery of the compromised system. At a time when the cost of human resources dominates the cost of CPU, network, and storage resources, we argue that computing systems should, in fact, be built with automated analysis and recovery as a primary goal. Towards this end, we describe the design, implementation, and evaluation of Forensix: a robust, high-precision reconstruction and analysis system for supporting the computer equivalent of "TiVo". Forensix uses three key mechanisms to improve the accuracy and reduce the human overhead of performing forensic analysis. First it performs comprehensive monitoring of the execution of a target system at the kernel event level, giving a high-resolution, application-independent view of all activity. Second, it streams the kernel event information, in real-time, to append-only storage on a separate, hardened, logging machine, making the system resilient to a wide variety of attacks. Third, it uses database technology to support high-level querying of the archived log, greatly reducing the human cost of performing forensic analysis.
Keywords
database management systems; security of data; system recovery; Forensix; append-only storage; automated analysis; database technology; forensic analysis; high-performance reconstruction system; human-intensive task; kernel event level; Computer networks; Computerized monitoring; Costs; Forensics; Humans; Kernel; Performance analysis; Real time systems; Robustness; Storage automation;
fLanguage
English
Publisher
ieee
Conference_Titel
Distributed Computing Systems Workshops, 2005. 25th IEEE International Conference on
Print_ISBN
0-7695-2328-5
Type
conf
DOI
10.1109/ICDCSW.2005.62
Filename
1437170
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