• DocumentCode
    3596781
  • Title

    On-chip checkpointing with 3D-stacked memories

  • Author

    Sato, Masayuki ; Egawa, Ryusuke ; Takizawa, Hiroyuki ; Kobayashi, Hiroaki

  • Author_Institution
    Cyberscience Center, Tohoku Univ., Sendai, Japan
  • fYear
    2014
  • Firstpage
    1
  • Lastpage
    6
  • Abstract
    Since deep-submicron process technologies induce soft errors, advanced computing systems face a low dependability problem. Checkpointing, which copies data required for continuing the program execution as a backup, is expected as a promising approach to keeping a high dependability. However, checkpointing causes additional memory accesses, which cause performance and energy overheads. To reduce these overheads, this paper focuses on 3D-stacking technologies. Since the technologies realize large on-chip memories with a short latency and a high bandwidth, the overheads of checkpointing are expected to decrease. In order to examine the reduction of the overheads, this paper supposes a future 3D-stacked processor-memory module, and proposes an on-chip checkpointing mechanism. The evaluation results indicate that the on-chip checkpointing with 3D-stacked memories can reduce the execution time by 15% and energy consumption by 26% on average, compared with the checkpointing mechanism with off-chip memories.
  • Keywords
    energy consumption; integrated circuit testing; integrated memory circuits; low-power electronics; microprocessor chips; three-dimensional integrated circuits; 3D-stacked processor-memory module; 3D-stacking technologies; computing systems; deep-submicron process technologies; energy consumption; energy overheads; on-chip checkpointing mechanism; program execution; soft errors; Checkpointing; Energy consumption; Error correction codes; Memory management; Random access memory; System-on-chip; Three-dimensional displays;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    3D Systems Integration Conference (3DIC), 2014 International
  • Type

    conf

  • DOI
    10.1109/3DIC.2014.7152173
  • Filename
    7152173