Title :
Fault-tolerant communication in invasive networks on chip
Author :
Heisswolf, Jan ; Weichslgartner, Andreas ; Zaib, Aurang ; Friederich, Stephanie ; Masing, Leonard ; Stein, Carsten ; Duden, Marco ; Klopfer, Roman ; Teich, Jurgen ; Wild, Thomas ; Herkersdorf, Andreas ; Becker, Jurgen
Author_Institution :
Karlsruhe Inst. of Technol. (KIT), Karlsruhe, Germany
Abstract :
Dependability and fault tolerance will play an ever increasing role when using future technology nodes. The paper presents a fault-tolerance strategy for invasive networks on chip (i-NoC). The strategy focuses on permanent faults, resulting from either process fluctuations or aging effects and briefly outlines counter measurements against transient faults. We propose a scalable scheme for detection and localization of defects in NoCs. The localization scheme is used as a basis for disabling faulty routers. We propose a transparent bypass scheme to circumvent faulty routers and regions. It uses an architecture extension in the form of an additional lightweight network layer. The fault tolerance layer can be configured at run time according to the current fault map of the architecture. The presented evaluations analyze the fault coverage of the proposed detection and localization strategy. We also investigate the implementation cost and performance impact of the fault tolerance network layer.
Keywords :
fault tolerant computing; integrated circuit reliability; network-on-chip; aging effects; defect detection; defect localization scheme; fault map; fault tolerance network layer; fault-tolerant communication; faulty routers; i-NoC; invasive network on chip; lightweight network layer; process fluctuations; technology nodes; transient faults; transparent bypass scheme; Containers; Fault tolerance; Fault tolerant systems; Ports (Computers); Routing; Switches; Testing;
Conference_Titel :
Adaptive Hardware and Systems (AHS), 2015 NASA/ESA Conference on
Conference_Location :
Montreal, QC
DOI :
10.1109/AHS.2015.7231156