• DocumentCode
    2547230
  • Title

    QCDOC: A 10 Teraflops Computer for Tightly-Coupled Calculations

  • Author

    Boyle, Peter A. ; Chen, D. ; Christ ; Clark, Matthew ; Cohen, Sholom ; Zhihua Dong ; Gara, A. ; Balint Joo ; Chulwoo Jung ; Guofeng Liu ; Ohta, Satoshi ; Petrov, K. ; Wettig, Tilo ; Yamaguchi, Akira ; Cristian, C.

  • Author_Institution
    University of Edinburgh and Columbia University
  • fYear
    2004
  • fDate
    06-12 Nov. 2004
  • Firstpage
    40
  • Lastpage
    40
  • Abstract
    Numerical simulations of the strong nuclear force, known as quantum chromodynamics or QCD, have proven to be a demanding, forefront problem in high-performance computing. In this report, we describe a new computer, QCDOC (QCD On a Chip), designed for optimal price/performance in the study of QCD. QCDOC uses a six-dimensional, low-latency mesh network to connect processing nodes, each of which includes a single custom ASIC, designed by our collaboration and built by IBM, plus DDR SDRAM. Each node has a peak speed of 1Gigaflops and two 12,288node, 10+ Teraflops machines are to be completed in the fall of 2004. Currently, a 512 node machine is running, delivering efficiencies as high as 45% of peak on the conjugate gradient solvers that dominate our calculations and a 4096-node machine with a cost of $1.6M is under construction. This should give us a price/performance less than $1per sustained Megaflops.
  • Keywords
    Bandwidth; Computer networks; Concurrent computing; Delay; Integral equations; Mesh networks; Monte Carlo methods; Nearest neighbor searches; Numerical simulation; Quantum computing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Supercomputing, 2004. Proceedings of the ACM/IEEE SC2004 Conference
  • Print_ISBN
    0-7695-2153-3
  • Type

    conf

  • DOI
    10.1109/SC.2004.46
  • Filename
    1392970