LADR: Low-cost application-level detector for reducing silent output corruptions

C Chen, G Eisenhauer, M Wolf, S Pande - Proceedings of the 27th …, 2018 - dl.acm.org
Applications running on future high performance computing (HPC) systems are more likely
to experience transient faults due to technology scaling trends with respect to higher circuit …

[PDF][PDF] LADR: Low-cost Application-level Detector for Reducing Silent Output Corruptions

C Chen, G Eisenhauer, M Wolf, S Pande - researchgate.net
Applications running on future high performance computing (HPC) systems are more likely
to experience transient faults due to technology scaling trends with respect to higher circuit …

LADR: low-cost application-level detector for reducing silent output corruptions

C Chen, G Eisenhauer, MD Wolf, S Pande - 2018 - osti.gov
Applications running on future high performance computing (HPC) systems are more likely
to experience transient faults due to technology scaling trends with respect to higher circuit …

[PDF][PDF] LADR: Low-cost Application-level Detector for Reducing Silent Output Corruptions

C Chen, G Eisenhauer, M Wolf, S Pande - 2018 - cchen435.com
Applications running on future high performance computing (HPC) systems are more likely
to experience transient faults due to technology scaling trends with respect to higher circuit …

LADR: low-cost application-level detector for reducing silent output corruptions...

C Chen, G Eisenhauer, MD Wolf, S Pande - ornl.gov
Applications running on future high performance computing (HPC) systems are more likely
to experience transient faults due to technology scaling trends with respect to higher circuit …

[PDF][PDF] LADR: Low-cost Application-level Detector for Reducing Silent Output Corruptions

C Chen, G Eisenhauer, M Wolf, S Pande - 2018 - cchen435.com
Applications running on future high performance computing (HPC) systems are more likely
to experience transient faults due to technology scaling trends with respect to higher circuit …