loading...
Inherent Time Redundancy (ITR): Using Program Repetition for Low-Overhead Fault Tolerance
Edinburgh, UK June 25-June 28
DOI Bookmark: http://doi.ieeecomputersociety.org/10.1109/DSN.2007.5937th Annual IEEE/IFIP International C ...
 This Article 
 
PDF
HTML
 
 Share 
   
 Bibliographic References 
   
 Add to: 
 
Digg
Furl
Spurl
Blink
Simpy
Google
Del.icio.us
Y!MyWeb
 
 Search 
   
Vimal Reddy, North Carolina State University, USA
Eric Rotenberg, North Carolina State University, USA
A new approach is proposed that exploits repetition inherent in programs to provide low-overhead transient fault protection in a processor. Programs repeatedly execute the same instructions within close time periods. This can be viewed as a time redundant re-execution of a program, except that inputs to these inherent time redundant (ITR) instructions vary. Nevertheless, certain microarchitectural events in the processor are independent of the input and only depend on the program instructions. Such events can be recorded and confirmed when ITR instructions repeat.

In this paper, we use ITR to detect transient faults in the fetch and decode units of a processor pipeline, avoiding costly approaches like structural duplication or explicit time redundant execution.

Citation:
Vimal Reddy, Eric Rotenberg, "Inherent Time Redundancy (ITR): Using Program Repetition for Low-Overhead Fault Tolerance," dsn, pp.307-316, 37th Annual IEEE/IFIP International Conference on Dependable Systems and Networks (DSN'07), 2007
Usage of this product signifies your acceptance of the Terms of Use.