• DocumentCode
    2535060
  • Title

    A mechanism for online diagnosis of hard faults in microprocessors

  • Author

    Bower, Fred A. ; Sorin, Daniel J. ; Ozev, Sule

  • Author_Institution
    Dept. of Comput. Sci., Duke Univ., Durham, NC, USA
  • fYear
    2005
  • fDate
    12-16 Nov. 2005
  • Abstract
    We develop a microprocessor design that tolerates hard faults, including fabrication defects and in-field faults, by leveraging existing microprocessor redundancy. To do this, we must: detect and correct errors, diagnose hard faults at the field deconfigurable unit (FDU) granularity, and deconfigure FDUs with hard faults. In our reliable microprocessor design, we use DIVA dynamic verification to detect and correct errors. Our new scheme for diagnosing hard faults tracks instructions´ core structure occupancy from decode until commit. If a DIVA checker detects an error in an instruction, it increments a small saturating error counter for every FDU used by that instruction, including that DIVA checker. A hard fault in an FDU quickly leads to an above-threshold error counter for that FDU and thus diagnoses the fault. For deconfiguration, we use previously developed schemes for functional units and buffers, and we present a scheme for deconfiguring DIVA checkers. Experimental results show that our reliable microprocessor quickly and accurately diagnoses each hard fault that is injected and continues to function, albeit with somewhat degraded performance.
  • Keywords
    fault diagnosis; microprocessor chips; DIVA checker; DIVA dynamic verification; error correction; error detection; fabrication defects; field deconfigurable unit granularity; hard faults; microprocessor redundancy; online diagnosis; Circuit faults; Costs; Degradation; Electromigration; Error correction; Fault detection; Fault diagnosis; Microprocessors; Temperature; Wire;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Microarchitecture, 2005. MICRO-38. Proceedings. 38th Annual IEEE/ACM International Symposium on
  • Print_ISBN
    0-7695-2440-0
  • Type

    conf

  • DOI
    10.1109/MICRO.2005.8
  • Filename
    1540960