ACM SIGARCH Computer Architecture News · 2014 · 14 citations · 47 references
EngineeringVlsi DesignComputer ArchitectureAcoustic SensorAcoustic ModelingSignal IntegrityHardware SecurityError DetectionOcean AcousticsHigh-performance ArchitectureAcoustic Wave DetectorsNoiseSystems EngineeringInstrumentationAcoustic Signal ProcessingParallel ComputingManycore ProcessorProcessor ChipComputer EngineeringComputer ScienceMicroelectronicsSignal ProcessingMemory ArchitectureError ContainmentVlsi ArchitectureSpeech Processing
The trend of downsizing transistors and operating voltage scaling has made the processor chip more sensitive against radiation phenomena making soft errors an important challenge. New reliability techniques for handling soft errors in the logic and memories that allow meeting the desired failures-in-time (FIT) target are key to keep harnessing the benefits of Moore's law. The failure to scale the soft error rate caused by particle strikes, may soon limit the total number of cores that one may have running at the same time This paper proposes a light-weight and scalable architecture to eliminate silent data corruption errors (SDC) and detected unrecoverable errors (DUE) of a core. The architecture uses acoustic wave detectors for error detection. We propose to recover by confining the errors in the cache hierarchy, allowing us to deal with the relatively long detection latencies. Our results show that the proposed mechanism protects the whole core (logic, latches and memory arrays) incurring performance overhead as low as 0.60%
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SWIFT: Software Implemented Fault Tolerance
George A. Reis, Jonathan Chang, Neil Vachharajani et al. · 2005 · 706 citations
Software Maintenance, Engineering, Computer Architecture +19