NEW.PDSsearch.html 664 1636 1334 2173 5762363243 7351 PDS: The Performance Database Server PDS: Search
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NEW.spec.html 664 1636 1334 20645 6264551662 6515 PDS: The Performance Database Server

PDS: The Performance Database Server


This SPEC information is provided courtesy of SPEC and the University of Tennessee. All information has previously appeared in the SPEC Newsletter and the contents are the SPEC submitter's responsibility. SPEC and the University of Tennessee make no warranties about the accuracy or veracity of the data. Please note that other results may be in circulation; by license agreement, these results must comply with SPEC run and reporting rules.

SPEC Documents:

SPEC Frequently Asked Questions (FAQ) List

Combined SPEC Summaries:

CINT92 Summary
CINT92 Baseline Summary
CINT92 Rate Summary
CINT92 Rate Baseline Summary
CFP92 Summary
CFP92 Baseline Summary
CFP92 Rate Summary
CFP92 Rate Baseline Summary
SDM 1 Summary (057.SDET)
SDM 1 Summary (061.KENBUS1)
SFS1 Baseline Summary (097.LADDIS)

SPEC Newsletters:

December 1994 (Volume 6, Issue 4)
CINT92 Summary
CINT92 Baseline Summary
CINT92 Rate Summary
CINT92 Rate Baseline Summary
CFP92 Summary
CFP92 Baseline Summary
CFP92 Rate Summary
CFP92 Rate Baseline Summary
SDM 1 Summary (057.SDET)
SDM 1 Summary (061.KENBUS1)
SFS1 Baseline Summary (097.LADDIS)
September 1994 (Volume 6, Issue 3)
CINT92 Summary
CINT92 Baseline Summary
CINT92 Rate Summary
CINT92 Rate Baseline Summary
CFP92 Summary
CFP92 Baseline Summary
CFP92 Rate Summary
CFP92 Rate Baseline Summary
SDM 1 Summary (057.SDET)
SFS1 Baseline Summary (097.LADDIS)
June 1994 (Volume 6, Issue 2)
CINT92 Summary
CINT92 Baseline Summary
CINT92 Rate Summary
CINT92 Rate Baseline Summary
CFP92 Summary
CFP92 Baseline Summary
CFP92 Rate Summary
CFP92 Rate Baseline Summary
SDM 1 Summary (057.SDET)
SFS1 Baseline Summary (097.LADDIS)
March 1994 (Volume 6, Issue 1)
CINT92 Summary
CINT92 Homogeneous Capacity Summary
CFP92 Summary
CFP92 Homogeneous Capacity Summary
SFS1 Baseline Summary (097.LADDIS)
December 1993 (Volume 5, Issue 4)
CINT92 Summary
CINT92 Homogeneous Capacity Summary
CFP92 Summary
CFP92 Homogeneous Capacity Summary
SFS1 Baseline Summary (097.LADDIS)
SDM 1 Summary (057.SDET)
September 1993 (Volume 5, Issue 3)
CINT92 Summary
CINT92 Homogeneous Capacity Summary
CFP92 Summary
CFP92 Homogeneous Capacity Summary
SFS1 Baseline Summary (097.LADDIS)
June 1993 (Volume 5, Issue 2)
CINT92 Summary
CINT92 Homogeneous Capacity Summary
CFP92 Summary
CFP92 Homogeneous Capacity Summary
SFS1 Baseline Summary (097.LADDIS)

Questions? Concerns? Send mail to utpds@cs.utk.edu
EF="http://performance.netlib.org/performance/html/specbase.crfp92.12_94.col0.html">CFP92 RPDSbib.html 664 1636 1334 2417 6300355652 6203 PDS: The Performance Database Server PDS: Bibliography
Bibliography
The following are LaTeX versions of performance bibliographies provided by various sources. They are listed here in the hope that the bibliographic information will be of use to interested parties.
Perfect
The Perfect bibliographic information
Date: January 25, 1993
Dave Schneider / CRSD
Larson
The John Larson bibliographic information
Date: January 12, 1993
John Larson / CRSD

If you have questions or concerns, please send mail to utpds@cs.utk.edu
PDSbrowse.html 664 1636 1334 6553 6312330136 6746 PDS: The Performance Database Server PDS: Browse
Select desired benchmark:

Select desired machines:

Alliant      ELXSI     Kendall Square Pyramid
Amdahl       ETA       Maspar         Sequent
Apollo       FPS       Masscomp       SGI
Apple        Fujitsu   Meiko          Siemens
CDC          Gould     MIPS           Solbourne
Compaq       Harris    Multiflow      Sperry
Concurrent   Hitachi   NAS            Stardent
Convex       Honeywell nCUBE          Sun
Cray         HP        NEC            Tektronix
Data General IBM       Next           TMC
Digital      Intel     Prime          Vax

If you have questions or concerns, please send mail to utpds@cs.utk.edu
ect desired machines:
Alliant      ELXSI     

  

PDS: Papers & Notes


Papers
The following are papers related to benchmarks and benchmarking methodologies.
The Complete Linpack Report (in Postscript)
Date: November 10, 1998
Jack J. Dongarra / University of Tennessee / dongarra@cs.utk.edu
The Development and Implementation of a Performance Database Server
(in Postscript)
University of Tennessee Technical Report CS-93-195, August 1993
A description of the implementation of PDS
Brian LaRose / University of Tennessee / larose@cs.utk.edu
Notes
The following notes have been provided by the authors to aid in the understanding of the published performance metrics.
Dhrystone
Date: November 11, 1996
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Fhourstone
Date: November 5, 1996
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Flops 1
Date: November 5, 1996
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Flops 2
Date: November 5, 1996
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Flops 3
Date: November 5, 1996
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Flops 4
Date: November 5, 1996
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Hanoi
Date: November 10, 1996
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Heapsort
Date: November 10, 1996
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
NSieve
Date: November 9, 1996
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Sim
Date: November 11, 1996
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
TFFTdp
Date: November 11, 1996
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil

If you have questions or concerns, please send mail to utpds@cs.utk.edu
PDSreports.html 664 1636 1334 17251 6622102762 7166 PDS: The Performance Database Server PDS: Reports
Linpack
Last update: November 10, 1998
Jack Dongarra / University of Tennessee / dongarra@cs.utk.edu
Linpack-Parallel
Last update: November 10, 1998
Jack Dongarra / University of Tennessee / dongarra@cs.utk.edu
Linpack-Peak
Last update: November 10, 1998
Jack Dongarra / University of Tennessee / dongarra@cs.utk.edu
SPEC (Standard Performance Evaluation Corporation)
Last update: January 29, 1997
SPEC / Standard Performance Evaluation Corporation / spec-ncga@cup.portal.com


BJ
Last update: October 27, 1997
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Dhrystone
Last update: October 27, 1997
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
FFT
Last update: October 27, 1997
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Fhourstone
Last update: October 27, 1997
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Fib
Last update: October 27, 1997
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Flops
Last update: October 27, 1997
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Hanoi
Last update: October 27, 1997
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Heapsort
Last update: October 27, 1997
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
MM
Last update: October 27, 1997
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
NAS Parallel Benchmarks
Last update: February 5, 1996
David H. Bailey, Eric Barszcz, Leonardo Dagum and Horst D. Simon
NSieve
Last update: October 27, 1997
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Queens
Last update: October 27, 1997
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Shuffle
Last update: October 27, 1997
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
Sim
Last update: October 27, 1997
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
TFFTdp
Last update: October 27, 1997
Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil

If you have questions or concerns, please send mail to utpds@cs.utk.edu
PDSsearch.html 664 1636 1334 2705 6312324227 6711 PDS: The Performance Database Server PDS: Search
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Type of search: OR AND

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PDStop.html 664 1636 1334 3334 6622103034 6240 PDS: The Performance Database Server


View complete, sorted benchmark reports
To display sorted data from various available published benchmark reports
Browse the performance database
To browse the performance data tree by selecting the benchmark to be listed and the machines desired
Search the performance database
To specify search strings for literal text matching
Papers
To access ASCII and Postscript benchmark papers as contributed by the authors
Bibliography
To access a bibliography of benchmark and performance-related literature in the BibTeX format. This data is contributed from various sources.
Graphical Benchmark Information Service (GBIS)
Genesis and ParkBench performances results using GBIS.


If you have questions or concerns, please send mail to utpds@cs.utk.edu
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y(DEC)h(7000-740)e(\(4)h(pro)q(c\))i (3.64)e(ns)p 579 2421 V 1433 2421 V 1112 w(693)p 1789 2421 V 262 w(1100)-95 2456 y(DEC)h(7000-720)e(\(2)h(pro)q(c\))i(3.64)e (ns)p 579 2471 V 1433 2471 V 1112 w(361)p 1789 2471 V 272 w(550)-95 2506 y(DEC)h(7000-710)e(\(1)h(pro)q(c\))i(3.64)e(ns)p 579 2521 V 136 w(3.6)g(-O5)g(-fast)486 b(53)p 1433 2521 V 221 w(208)p 1789 2521 V 272 w(275)p eop %%Page: 14 15 14 14 bop -120 -25 a Fl(No)o(v)o(em)o(b)q(er)15 b(7,)f(1998)1548 b Fv(14)158 113 y Fo(Computer)p 618 128 2 50 v 482 w(\\LINP)m(A)o(CK)13 b(Benc)o(hmark")p 1475 128 V 317 w(\\TPP")p 1830 128 V 159 w(\\Theoretical)p 618 178 V 618 178 V 975 163 a(n)g(=)i(100)p 1475 178 V 433 w(Best)g(E\013ort)p 1830 178 V 103 w(P)o(eak")f (M\015op/s)p 618 228 V 618 228 V 830 213 a(OS/Compiler)235 b(M\015op/s)p 1475 228 V 50 w(n=1000,)12 b(M\015op/s)p 1830 228 V -120 230 2266 2 v -95 265 a(IBM)i(RS/6000-390)e(\(66.5)g (MHz\))p 618 280 2 50 v 189 w(v3.1.1)g(xlf)h(-Pv)h(-Wp,-fz,-me,-)o(ew)p 1475 280 V 1830 280 V 618 329 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w(160)-95 2407 y(Meik)o(o)f(Comp.)k(Surface)d(\(2)g (pro)q(c\))p 644 2421 V 211 w(-O4)g(-Mv)o(ect=smallv)o(ect)p 1550 2421 V 630 w(58)p 1906 2421 V 293 w(80)-95 2456 y(Meik)o(o)f(Comp.)k(Surface)d(\(1)g(pro)q(c\))p 644 2471 V 211 w(-Minline=daxp)o(y)470 b(11)p 1550 2471 V 232 w(31)p 1906 2471 V 293 w(40)-95 2506 y(Gatew)o(a)o(y)13 b(2000)g(P5-90\(90)g(MHz)h(P)o(en)o(tium\))p 644 2521 V 49 w(Windo)o(ws)f(NT)h(/G5)f(/Oxb2)302 b(11)p 1550 2521 V 1906 2521 V eop %%Page: 20 21 20 20 bop -120 -25 a Fl(No)o(v)o(em)o(b)q(er)15 b(7,)f(1998)1548 b Fv(20)129 113 y Fo(Computer)p 560 128 2 50 v 397 w(\\LINP)m(A)o(CK)14 b(Benc)o(hmark")p 1306 128 V 261 w(\\TPP")p 1661 128 V 158 w(\\Theoretical)p 560 178 V 560 178 V 861 163 a(n)g(=)g(100)p 1306 178 V 377 w(Best)h(E\013ort)p 1661 178 V 104 w(P)o(eak")f (M\015op/s)p 560 228 V 560 228 V 717 213 a(OS/Compiler)178 b(M\015op/s)p 1306 228 V 50 w(n=1000,)13 b(M\015op/s)p 1661 228 V -120 230 2097 2 v -95 265 a(SGI)g(P)o(o)o(w)o(er)h(Series)h (50MHz)f(R4000)p 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y(In)o(tel)g(iPSC/860)e(d5)i(\(32)g(pro)q(c\))p 560 2322 V 1306 2322 V 1037 w(167)p 1661 2322 V 262 w(1280)-95 2357 y(In)o(tel)g(iPSC/860)e(d4)i(\(16)g(pro)q(c\))p 560 2372 V 1306 2372 V 1037 w(131)p 1661 2372 V 272 w(640)-95 2407 y(In)o(tel)g(iPSC/860)e(d3)i(\(8)g(pro)q(c\))p 560 2421 V 1306 2421 V 1058 w(103)p 1661 2421 V 272 w(320)-95 2456 y(In)o(tel)g(iPSC/860)e(d2)i(\(4)g(pro)q(c\))p 560 2471 V 1306 2471 V 1068 w(75)p 1661 2471 V 283 w(160)-95 2506 y(In)o(tel)g(iPSC/860)e(d1)i(\(2)g(pro)q(c\))p 560 2521 V 191 w(if77)e(-O4)i(-Mv)o(ect=smallv)o(ect)p 1306 2521 V 390 w(52)p 1661 2521 V 294 w(80)p eop %%Page: 21 22 21 21 bop -120 -25 a Fl(No)o(v)o(em)o(b)q(er)15 b(7,)f(1998)1548 b Fv(21)187 113 y Fo(Computer)p 675 128 2 50 v 464 w(\\LINP)m(A)o(CK)14 b(Benc)o(hmark")p 1440 128 V 271 w(\\TPP")p 1796 128 V 158 w(\\Theoretical)p 675 178 V 675 178 V 986 163 a(n)g(=)g(100)p 1440 178 V 387 w(Best)h(E\013ort)p 1796 178 V 104 w(P)o(eak")e (M\015op/s)p 675 228 V 675 228 V 841 213 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b(6000/510)d(\(1)i(pro)q(c\))p 675 2023 V 153 w(F)m(ortran)g(HPO)g(V1.2)277 b(7.0)p 1440 2023 V 225 w(28)p 1796 2023 V 293 w(45)-95 2058 y(CECp)o(x)14 b(XL)g(560)f(P)o(en)o(tium)f(60)i(MHz)p 675 2073 V 194 w(10.5)f(wfc386)g(/l=dos4g)g(/o)o(x)150 b(7.2)p 1440 2073 V 1796 2073 V -95 2108 a(Sun)14 b(SP)m(AR)o(Csystem)f(10/41)g (40MHz)p 675 2123 V 190 w(f77)g(-nativ)o(e)g(-fast)h(-O4)g(-Bstatic)95 b(7.0)p 1440 2123 V 1796 2123 V -95 2157 a(Starden)o(t)15 b(1510)d(\(Arden)o(t)j(Titan-1\))p 675 2172 V 220 w(f77)e(1.0)g(-O2)h (-inline)288 b(6.9)p 1440 2172 V 225 w(13)p 1796 2172 V 293 w(16)-95 2207 y(IBM)14 b(3090/180)p 675 2222 V 532 w(VS)g(opt=3)437 b(6.8)p 1440 2222 V 225 w(65)p 1796 2222 V 283 w(108)-95 2257 y(Allian)o(t)12 b(FX/40)i(\(4)f(pro)q(c.\))p 675 2272 V 366 w(-O)h(-D)o(AS)f(-inline)332 b(6.7)p 1440 2272 V 225 w(33)p 1796 2272 V 293 w(94)-95 2307 y(IBM)14 b(RS/6000-N40\(P)o(o)o(w)o(erPC601)e(50MHz\))p 675 2322 V 50 w(xlf)h(-O)h(-P)g(-Wp,-ea478)234 b(6.7)p 1440 2322 V 1796 2322 V 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y(Ap)q(ollo)13 b(DN10000)p 640 977 V 458 w(f77,10.7)508 b(5.8)p 1437 977 V 1792 977 V -95 1012 a(Allian)o(t)12 b(FX/40)i(\(3)f(pro)q(c.\))p 640 1027 V 330 w(-O)h(-D)o(AS)g(-inline)363 b(5.6)p 1437 1027 V 226 w(27)p 1792 1027 V 293 w(71)-95 1062 y(Gatew)o(a)o(y)13 b(P5-60)g(\(60)h(MHz)g(P)o(en)o(tium\))p 640 1077 V 127 w(F77L-EM32)f(5.01)g(/4)g(/Z1)210 b(5.4)p 1437 1077 V 1792 1077 V -95 1111 a(DEC)14 b(5900)f(RISC)p 640 1126 V 460 w(Ultrix)h(4.1)473 b(5.3)p 1437 1126 V 1792 1126 V -95 1161 a(DEC)14 b(5000/240)p 640 1176 V 488 w(Ultrix)541 b(5.3)p 1437 1176 V 1792 1176 V -95 1211 a(Gatew)o(a)o(y)13 b(P5-60)g(\(60)h(MHz)g(P)o(en)o(tium\))p 640 1226 V 127 w(77/32/mf/d1/w)n(arn/5/f)o(p5/ot)124 b(5.3)p 1437 1226 V 1792 1226 V -95 1261 a(Allian)o(t)12 b(FX/4)i(\(3)g(pro)q(c.\))p 640 1276 V 350 w(-O)g(-D)o(AS)g(-inline)363 b(5.1)p 1437 1276 V 226 w(17)p 1792 1276 V 293 w(35)-95 1311 y(CDC)13 b(4330-300)f(\(33)i(MHz\))p 640 1326 V 307 w(f77)f(2.20)g(-O3)427 b(5.1)p 1437 1326 V 1792 1326 V -95 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h(180)f(\(15)h(ns\))p 640 1774 V 165 w(V)-5 b(AST-2/VS)14 b(F)m(ortran)g(V2R4)161 b(4.9)p 1437 1774 V 1792 1774 V -95 1809 a(CDC)13 b(CYBER)i(875)p 640 1824 V 428 w(FTN)f(5)g(opt=3) 400 b(4.8)p 1437 1824 V 1792 1824 V -95 1859 a(Num)o(b)q(er)13 b(Smasher)h(i860)e(40MHz)p 640 1874 V 217 w(-on)i(-OLM)g(-fdiv)f (-inline)243 b(4.7)p 1437 1874 V 1792 1874 V 561 w(40)-95 1908 y(CDC)13 b(CYBER)i(176)p 640 1923 V 428 w(FTN)f(5.1)f(opt=2)368 b(4.6)p 1437 1923 V 1792 1923 V -95 1958 a(MIPS)14 b(R)o(C3360)e (\(33.3MHz\))p 640 1973 V 292 w(f77)h(2.20)g(-O)448 b(4.5)p 1437 1973 V 226 w(11)p 1792 1973 V 293 w(13)-95 2008 y(Allian)o(t)12 b(FX/80)i(\(2)f(pro)q(c.\))p 640 2023 V 330 w(-O)h(-D)o(AS)g(-inline)363 b(4.4)p 1437 2023 V 226 w(22)p 1792 2023 V 293 w(47)-95 2058 y(AMD)14 b(486D)o(X5-133)p 640 2073 V 422 w(f2c)g(and)g(gcc2.7.0)359 b(4.4)p 1437 2073 V 1792 2073 V -95 2108 a(Allian)o(t)12 b(FX/40)i(\(2)f(pro)q(c.\)) p 640 2123 V 330 w(-O)h(-D)o(AS)g(-inline)363 b(4.3)p 1437 2123 V 226 w(19)p 1792 2123 V 293 w(47)-95 2157 y(NAS)14 b(AS/EX)g(30)p 640 2172 V 471 w(VS)g(1.4.1)f(opt=3)369 b(4.3)p 1437 2172 V 1792 2172 V -95 2207 a(SGI)13 b(4D/35)p 640 2222 V 560 w(f77)g(-O3)515 b(4.3)p 1437 2222 V 1792 2222 V -95 2257 a(Sun)14 b(4/600)f(MP)p 640 2272 V 493 w(f77)g(1.4)g(-O3)h(-cg89)f(-dalign)200 b(4.3)p 1437 2272 V 1792 2272 V -95 2307 a(IBM)14 b(ES/9221-170)e(\(16)i(ns\))p 640 2322 V 292 w(V)-5 b(AST-2/VS)14 b(F)m(ortran)g(2.5)211 b(4.1)p 1437 2322 V 1792 2322 V -95 2357 a(Sun)14 b(SP)m(AR)o(Cstation) f(IPX)p 640 2372 V 326 w(f77)g(1.4)g(-O3)h(-cg89)f(-dalign)200 b(4.1)p 1437 2372 V 1792 2372 V -95 2407 a(Sun)14 b(4/50)f(IPX)p 640 2421 V 506 w(f77)g(1.4)g(-O3)h(-cg89)f(-dalign)200 b(4.1)p 1437 2421 V 1792 2421 V -95 2456 a(CDC)13 b(CYBER)i(4360)p 640 2471 V 407 w(f77)e(2.11.2)f(o2)420 b(4.0)p 1437 2471 V 1792 2471 V -95 2506 a(Sun)14 b(SP)m(AR)o(Cstation)f(2)p 640 2521 V 379 w(f77)g(1.4)g(-O3)h(-cg89)f(-dalign)200 b(4.0)p 1437 2521 V 1792 2521 V eop %%Page: 23 24 23 23 bop -120 -25 a Fl(No)o(v)o(em)o(b)q(er)15 b(7,)f(1998)1548 b Fv(23)136 113 y Fo(Computer)p 573 128 2 50 v 396 w(\\LINP)m(A)o(CK)14 b(Benc)o(hmark")p 1306 128 V 255 w(\\TPP")p 1661 128 V 158 w(\\Theoretical)p 573 178 V 573 178 V 867 163 a(n)g(=)g(100)p 1306 178 V 371 w(Best)i(E\013ort)p 1661 178 V 103 w(P)o(eak")e (M\015op/s)p 573 228 V 573 228 V 723 213 a(OS/Compiler)173 b(M\015op/s)p 1306 228 V 50 w(n=1000,)12 b(M\015op/s)p 1661 228 V -120 230 2097 2 v -95 265 a(SGI)h(Indigo)g(33MHz)h(R3000)p 573 280 2 50 v 223 w(-O2)g(-G)f(8192)g(-sopt)258 b(4.0)p 1306 280 V 1661 280 V -95 314 a(Amdahl)12 b(5860)h(HSFPF)p 573 329 V 302 w(H)h(enhanced)i(opt=3)245 b(3.9)p 1306 329 V 1661 329 V -95 364 a(MIPS)14 b(M/2000)f(\(25.0MHz\))p 573 379 V 225 w(f77)g(2.20)g(-O)384 b(3.9)p 1306 379 V 220 w(7.9)p 1661 379 V 287 w(10)-95 414 y(MIPS)14 b(R)o(C3260)e (\(25.0MHz\))p 573 429 V 225 w(f77)h(2.20)g(-O)384 b(3.9)p 1306 429 V 220 w(7.9)p 1661 429 V 287 w(10)-95 464 y(Allian)o(t)12 b(FX/4)i(\(2)g(pro)q(c.\))p 573 479 V 283 w(-O)g(-D)o(AS)g(-inline)299 b(3.8)p 1306 479 V 226 w(12)p 1661 479 V 293 w(24)-95 514 y(SGI)13 b(4D/210\(1)g(pro)q(c\))h(25MHz)p 573 529 V 184 w(f77)f(-O2)451 b(3.9)p 1306 529 V 220 w(7.8)p 1661 529 V 287 w(10)-95 563 y(Amdahl)12 b(5860)h(HSFPF)p 573 578 V 302 w(VS)h(opt=3)405 b(3.8)p 1306 578 V 1661 578 V -95 613 a(CDC)13 b(4320)p 573 628 V 504 w(f77)g(2.20)g(opt=02)296 b(3.7)p 1306 628 V 1661 628 V -95 663 a(DEC)14 b(station)f(5000/200)f (\(25)i(Mhz\))p 573 678 V 104 w(MIPS)h(f77)e(2.0)345 b(3.7)p 1306 678 V 1661 678 V -95 713 a(MIPS)14 b(RS3230)f(\(25.0MHz\)) p 573 728 V 230 w(f77)g(2.20)g(-O)384 b(3.7)p 1306 728 V 220 w(7.8)p 1661 728 V 287 w(10)-95 763 y(DEC)14 b(V)-5 b(AXv)o(ector)15 b(6000/420)d(\(2)i(pro)q(c\))p 573 778 V 50 w(F)m(ortran)g(HPO)h(V1.0)p 1306 778 V 524 w(43)p 1661 778 V 293 w(90)-95 813 y(DEC)f(V)-5 b(AXv)o(ector)15 b(6000/410)d(\(1)i(pro)q(c\))p 573 827 V 50 w(F)m(ortran)g(HPO)h(V1.0) 244 b(3.6)p 1306 827 V 226 w(24)p 1661 827 V 293 w(45)-95 862 y(Sun)14 b(4/490)p 573 877 V 505 w(4.1.1)f(f77)g(-O3)351 b(3.6)p 1306 877 V 1661 877 V -95 912 a(CDC)13 b(4330)p 573 927 V 504 w(f77)g(2.20)g(opt=02)296 b(3.5)p 1306 927 V 1661 927 V -95 962 a(Apple)14 b(P)o(o)o(w)o(er)g(Macin)o(tosh)g (6100/60)p 573 977 V 100 w(Absoft)g(F77)g(SDK)282 b(3.4)p 1306 977 V 1661 977 V -95 1012 a(NAS)14 b(8093)f(w/HSA)p 573 1027 V 361 w(VS)h(1.4.0)f(opt=3)305 b(3.5)p 1306 1027 V 1661 1027 V -95 1062 a(CDC)13 b(7600)p 573 1077 V 504 w(FTN)498 b(3.3)p 1306 1077 V 1661 1077 V -95 1111 a(Sun)14 b(Sparc)g(ELC)p 573 1126 V 411 w(-dalign)f(-xcg89)g(-fsimple)f (-O4)94 b(3.3)p 1306 1126 V 1661 1126 V -95 1161 a(CDC)13 b(CYBER)i(960-31)p 573 1176 V 305 w(NOS/VE)g(1.3.1)d(FTN)i(1.6)150 b(3.1)p 1306 1176 V 1661 1176 V -95 1211 a(Gould)13 b(NP1)p 573 1226 V 488 w(F)m(ortran)449 b(3.1)p 1306 1226 V 1661 1226 V -95 1261 a(IBM)14 b(3090/120E)p 573 1276 V 401 w(VS)g(2.1.1)f(opt=3)305 b(3.1)p 1306 1276 V 226 w(54)p 1661 1276 V 282 w(108)-95 1311 y(MIPS)14 b(R)o(C3240)e(\(25.0MHz\))p 573 1326 V 225 w(f77)h(2.20)g(-O)384 b(3.1)p 1306 1326 V 220 w(7.1)p 1661 1326 V 287 w(10)-95 1360 y(T)m(adp)q(ole)13 b(SP)m(AR)o(Cb)q(o)q(ok)g(2)p 573 1375 V 272 w(f77)g(-O)472 b(3.1)p 1306 1375 V 1661 1375 V -95 1410 a(CDC)13 b(CYBER)i(4340)p 573 1425 V 340 w(f77)e(2.11.2)f(o2)356 b(3.0)p 1306 1425 V 1661 1425 V -95 1460 a(Con)o(v)o(ex)14 b(C-1/XP)p 573 1475 V 400 w(F)m(ortran)g(2.0)381 b(3.0)p 1306 1475 V 1661 1475 V 561 w(20)-95 1510 y(DEC)14 b(V)-5 b(AX)14 b(6540)p 573 1525 V 403 w(VMS)g(5.4-2)391 b(3.0)p 1306 1525 V 1661 1525 V -95 1560 a(FPS-264/20)13 b(\(M64/50\))p 573 1575 V 287 w(F02)h(APFTN64)g(OPT=4)157 b(3.0)p 1306 1575 V 226 w(17)p 1661 1575 V -95 1610 a(Harris)14 b(Nigh)o(tha)o(wk)f (4802)g(\(88100\))p 573 1624 V 123 w(f77)531 b(3.0)p 1306 1624 V 1661 1624 V -95 1659 a(Con)o(v)o(ex)14 b(C-1/XL)p 573 1674 V 402 w(F)m(ortran)g(1.6)381 b(2.9)p 1306 1674 V 1661 1674 V 561 w(20)-95 1709 y(IBM)14 b(ES/9000)f(Mo)q(del)h(150)p 573 1724 V 238 w(VS)g(F)m(ortran)g(V2R4)263 b(2.9)p 1306 1724 V 1661 1724 V -95 1759 a(NAS)14 b(AS/EX)g(25)p 573 1774 V 404 w(VS)g(1.4.1)f(opt=3)305 b(2.9)p 1306 1774 V 1661 1774 V -95 1809 a(Solb)q(ourne)14 b(5/602)p 573 1824 V 393 w(f77)f(\(Sun\))i(1.2)e(-O3)g(-dalign)129 b(2.9)p 1306 1824 V 1661 1824 V -95 1859 a(Sun)14 b(4/330)p 573 1874 V 505 w(f77)f(1.4)g(-O3)h(-dalign)244 b(2.7)p 1306 1874 V 1661 1874 V -95 1908 a(Sun)14 b(4/370)p 573 1923 V 505 w(f77)f(1.3.1)g(-O3)g(-cg89)h(-dalign)103 b(2.7)p 1306 1923 V 1661 1923 V -95 1958 a(CDC)13 b(CYBER)i(760)p 573 1973 V 361 w(FTN)f(5,)g(opt=3)324 b(2.6)p 1306 1973 V 1661 1973 V -95 2008 a(Cyb)q(erPlus)p 573 2023 V 504 w(CPFTN)15 b(1.1-07)315 b(2.6)p 1306 2023 V 1661 2023 V -95 2058 a(IBM)14 b(370/195)p 573 2073 V 450 w(H)g(enhanced)i(opt=3) 245 b(2.5)p 1306 2073 V 1661 2073 V -95 2108 a(Sun)14 b(4/330)f(SparcServ)o(er)p 573 2123 V 279 w(f77)g(1.2,)g(-O3)h(-dalign) 232 b(2.5)p 1306 2123 V 1661 2123 V -95 2157 a(Allian)o(t)12 b(FX/80)i(\(1)f(pro)q(c.\))p 573 2172 V 263 w(-O)h(-D)o(AS)g(-inline) 299 b(2.4)p 1306 2172 V 226 w(12)p 1661 2172 V 293 w(24)-95 2207 y(Allian)o(t)12 b(FX/40)i(\(1)f(pro)q(c.\))p 573 2222 V 263 w(-O)h(-D)o(AS)g(-inline)299 b(2.4)p 1306 2222 V 226 w(10)p 1661 2222 V 293 w(24)-95 2257 y(Gatew)o(a)o(y)13 b(2000)g(66)g(MHz)i(80486-D)o(X2)p 573 2272 V 65 w(F77L-EM32)e(5.01)g (/4)g(/Z1)146 b(2.4)p 1306 2272 V 1661 2272 V -95 2307 a(Apple)14 b(Mac)g(Quadra)g(840A)-5 b(V)p 573 2322 V 211 w(Absoft)14 b(-w)g(-v)g(-O)g(-f)f(-s)h(-N40)113 b(2.3)p 1306 2322 V 1661 2322 V -95 2357 a(HP-APOLLO)15 b(9000/425e)d (\(68040\))p 573 2372 V 95 w(f77)h(-O4)h(rev)h(10.3.5)258 b(2.3)p 1306 2372 V 1661 2372 V -95 2407 a(NAS)14 b(AS/EX)g(20)p 573 2421 V 404 w(VS)g(1.4.1)f(opt=3)305 b(2.2)p 1306 2421 V 1661 2421 V -95 2456 a(F)m(ujitsu)13 b(AP1000)g(\(512)h(pro)q (c.\))p 573 2471 V 1306 2471 V 1052 w(610)p 1661 2471 V 262 w(2844)-95 2506 y(F)m(ujitsu)f(AP1000)g(\(256)h(pro)q(c.\))p 573 2521 V 1306 2521 V 1052 w(333)p 1661 2521 V 262 w(1422)p eop %%Page: 24 25 24 24 bop -120 -25 a Fl(No)o(v)o(em)o(b)q(er)15 b(7,)f(1998)1548 b Fv(24)111 113 y Fo(Computer)p 524 128 2 50 v 426 w(\\LINP)m(A)o(CK)14 b(Benc)o(hmark")p 1364 128 V 309 w(\\TPP")p 1720 128 V 158 w(\\Theoretical)p 524 178 V 524 178 V 872 163 a(n)g(=)g(100)p 1364 178 V 425 w(Best)h(E\013ort)p 1720 178 V 104 w(P)o(eak")e (M\015op/s)p 524 228 V 524 228 V 728 213 a(OS/Compiler)226 b(M\015op/s)p 1364 228 V 50 w(n=1000,)13 b(M\015op/s)p 1720 228 V -120 230 2156 2 v -95 265 a(F)m(ujitsu)g(AP1000)g(\(128)h (pro)q(c.\))p 524 280 2 50 v 1364 280 V 1111 w(193)p 1720 280 V 272 w(711)-95 314 y(F)m(ujitsu)f(AP1000)g(\(64)h(pro)q(c.\)) p 524 329 V 1364 329 V 1132 w(100)p 1720 329 V 272 w(356)-95 364 y(F)m(ujitsu)f(AP1000)g(\(1)h(pro)q(c.\))p 524 379 V 191 w(Sun)g(f77)f(1.3.1)f(-O3)i(-dalign)236 b(2.2)p 1364 379 V 219 w(1.7)p 1720 379 V 281 w(5.6)-95 414 y(HP-APOLLO)15 b(9000/425t)d(\(68040\))p 524 429 V 49 w(f77)h(-O4)g(rev)i(10.3.4)366 b(2.2)p 1364 429 V 1720 429 V -95 464 a(Allian)o(t)12 b(FX/4)i(\(1)g(pro)q(c.\))p 524 479 V 235 w(-O)g(-D)o(AS)f(-inline)407 b(2.1)p 1364 479 V 219 w(6.3)p 1720 479 V 287 w(12)-95 514 y(CDC)13 b(CYBER)i(175)p 524 529 V 313 w(FTN)f(5)f(opt=2)444 b(2.1)p 1364 529 V 1720 529 V -95 563 a(CDC)13 b(CYBER)i(180-860)p 524 578 V 236 w(NOS/VE)f(OPT=HIGH)281 b(2.1)p 1364 578 V 1720 578 V -95 613 a(FPS-M64/30)p 524 628 V 410 w(APFTN464)13 b(OPT=4)327 b(2.1)p 1364 628 V 225 w(10)p 1720 628 V -95 663 a(IBM)14 b(ES/9000)f(Mo)q(del)h(130)p 524 678 V 190 w(VS)g(F)m(ortran)f(V2R4)371 b(2.1)p 1364 678 V 1720 678 V -95 713 a(IBM)14 b(3081)f(K)h(\(1)g(pro)q(c.\))p 524 728 V 248 w(H)g(enhanced)h(opt=3)353 b(2.1)p 1364 728 V 1720 728 V -95 763 a(MIPS)14 b(M120-5)p 524 778 V 391 w(UMIPS)g(v.3)f(3.0)g(f771.31)f(-O)221 b(2.1)p 1364 778 V 219 w(3.6)p 1720 778 V 281 w(8.3)-95 813 y(MIPS)14 b(M/120)f(\(16.7MHz\))p 524 827 V 198 w(f77)g(2.20)f(-O)492 b(2.1)p 1364 827 V 219 w(4.8)p 1720 827 V 281 w(6.7)-95 862 y(Prism")13 b(486-50)f(\(50)h(MHz\))p 524 877 V 198 w(Salford)g(v2.69)f(/optimise)267 b(2.1)p 1364 877 V 1720 877 V -95 912 a(T)m(adp)q(ole)13 b(SP)m(AR)o(Cb)q(o)q(ok)g(\(25)h (MHz\))p 524 927 V 70 w(f77)f(-O)579 b(2.1)p 1364 927 V 1720 927 V -95 962 a(Apple)14 b(Macin)o(tosh)g(QUADRA)g(950)p 524 977 V 58 w(Absoft)g(-w)f(-v)h(-O)g(-f)f(-s)h(-N40)221 b(2.0)p 1364 977 V 1720 977 V -95 1012 a(CDC)13 b(7600)p 524 1027 V 456 w(Lo)q(cal)594 b(2.0)p 1364 1027 V 1720 1027 V -95 1062 a(IBM)14 b(3081)f(K)h(\(1)g(pro)q(c.\))p 524 1077 V 248 w(VS)g(opt=3)512 b(2.0)p 1364 1077 V 1720 1077 V -95 1111 a(Culler)14 b(PSC)p 524 1126 V 439 w(CSD)f(F)m(ortran)h (3.21)369 b(2.0)p 1364 1126 V 1720 1126 V 571 w(5)-95 1161 y(FPS)14 b(M64/35)p 524 1176 V 410 w(APFTN464)483 b(2.0)p 1364 1176 V 1720 1176 V -95 1211 a(Micronics)14 b(486-50MHz)f(EISA2)p 524 1226 V 120 w(NDP)h(F)m(ortran)f(486:)18 b(-on)287 b(2.0)p 1364 1226 V 1720 1226 V -95 1261 a(HP)14 b(425T)f(\(68040\))p 524 1276 V 1022 w(1.9)p 1364 1276 V 1720 1276 V -95 1311 a(CDC)g(CYBER)i(175)p 524 1326 V 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524 1774 V 265 w(FR7X)583 b(1.7)p 1364 1774 V 1720 1774 V -95 1809 a(IBM)14 b(3033)p 524 1824 V 465 w(H)g(enhanced)h(opt=3)353 b(1.7)p 1364 1824 V 1720 1824 V -95 1859 a(IBM)14 b(3033)p 524 1874 V 465 w(VS)g(opt=3)512 b(1.7)p 1364 1874 V 1720 1874 V -95 1908 a(IBM)14 b(3081)f(D)p 524 1923 V 420 w(VS)h(opt=3)512 b(1.7)p 1364 1923 V 1720 1923 V -95 1958 a(MIPS)14 b(RS2030)f (\(16.7MHz\))p 524 1973 V 182 w(f77)g(2.20)f(-O)492 b(1.7)p 1364 1973 V 219 w(4.7)p 1720 1973 V 281 w(6.7)-95 2008 y(Sp)q(erry)15 b(1100/90)d(ext)p 524 2023 V 296 w(UFTN)574 b(1.7)p 1364 2023 V 1720 2023 V -95 2058 a(HP)14 b(9000)f(Series)i(850) e(w/fp)p 524 2073 V 194 w(2.0)g(fc)h(-O)535 b(1.6)p 1364 2073 V 1720 2073 V -95 2108 a(Amdahl)12 b(470)h(V/8)p 524 2123 V 338 w(H)h(enhanced)h(opt=3)353 b(1.6)p 1364 2123 V 1720 2123 V -95 2157 a(CDC)13 b(CYBER)i(170-750)p 524 2172 V 236 w(FTN)f(5.1,)e(opt=3)400 b(1.6)p 1364 2172 V 1720 2172 V -95 2207 a(CDC)13 b(CYBER)i(180-850)p 524 2222 V 236 w(NOS/VE)f(OPT=HIGH)281 b(1.6)p 1364 2222 V 1720 2222 V -95 2257 a(DECstation)13 b(3100)p 524 2272 V 333 w(V3.0/V1.31)e(-O)424 b(1.6)p 1364 2272 V 1720 2272 V -95 2307 a(DEC)14 b(5400)p 524 2322 V 457 w(f77)f(-O3)558 b(1.6)p 1364 2322 V 1720 2322 V -95 2357 a(Amdahl)12 b(470)h(V/8)p 524 2372 V 338 w(VS)h(opt=3)512 b(1.5)p 1364 2372 V 1720 2372 V -95 2407 a(DEC)14 b(V)-5 b(AXstation)14 b(4000-60)p 524 2421 V 174 w(V)g(5.2)594 b(1.5)p 1364 2421 V 1720 2421 V -95 2456 a(MIPS)14 b(M/1000)f(\(15.0MHz\))p 524 2471 V 177 w(f77)g(2.20)f(-O)492 b(1.5)p 1364 2471 V 219 w(3.7)p 1720 2471 V 298 w(6)-95 2506 y(NAS)14 b(8093)p 524 2521 V 462 w(VS)g(1.4.0)e(opt=3)413 b(1.5)p 1364 2521 V 1720 2521 V eop %%Page: 25 26 25 25 bop -120 -25 a Fl(No)o(v)o(em)o(b)q(er)15 b(7,)f(1998)1548 b Fv(25)147 113 y Fo(Computer)p 595 128 2 50 v 455 w(\\LINP)m(A)o(CK)14 b(Benc)o(hmark")p 1423 128 V 302 w(\\TPP")p 1778 128 V 159 w(\\Theoretical)p 595 178 V 595 178 V 937 163 a(n)g(=)g(100)p 1423 178 V 419 w(Best)h(E\013ort)p 1778 178 V 103 w(P)o(eak")f 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b(1.0)p 1423 1824 V 1778 1824 V -95 1859 a(CDC)13 b(CYBER)i(180-840)p 595 1874 V 307 w(NOS/VE)f(OPT=HIGH)268 b(.99)p 1423 1874 V 1778 1874 V -95 1908 a(DEC)14 b(V)-5 b(AX)14 b(8800)f(\(4)h(pro)q (c\))p 595 1923 V 1423 1923 V 1221 w(4.9)p 1778 1923 V -95 1958 a(DEC)g(V)-5 b(AX)14 b(8800)f(\(3)h(pro)q(c\))p 595 1973 V 1423 1973 V 1221 w(3.7)p 1778 1973 V -95 2008 a(DEC)g(V)-5 b(AX)14 b(8800)f(\(2)h(pro)q(c\))p 595 2023 V 1423 2023 V 1221 w(2.5)p 1778 2023 V -95 2058 a(DEC)g(V)-5 b(AX)14 b(8550/8700/8800)p 595 2073 V 216 w(VMS)g(v4.5)498 b(.99)p 1423 2073 V 220 w(1.3)p 1778 2073 V -95 2108 a(Solb)q(ourne)p 595 2123 V 535 w(f77)13 b(-O)566 b(.98)p 1423 2123 V 1778 2123 V -95 2157 a(IBM)14 b(4381-22)p 595 2172 V 480 w(VS)g(F)m(ortran)g(2.1.1)e(opt=3)249 b(.97)p 1423 2172 V 1778 2172 V -95 2207 a(IBM)14 b(4381)f(MG2)p 595 2222 V 431 w(VS)h(F)m(ortran)g(opt=3)348 b(.96)p 1423 2222 V 1778 2222 V -95 2257 a(IBM)14 b(4381-12)p 595 2272 V 480 w(VS)g(F)m(ortran)g(1.4.0)e(opt=3)249 b(.95)p 1423 2272 V 1778 2272 V -95 2307 a(ICL)14 b(3980)f(w/FPU)p 595 2322 V 397 w(F)o(OR)m(TRAN77)f(PLUS)j(V10.02)167 b(.93)p 1423 2322 V 1778 2322 V -95 2357 a(IBM-486)13 b(33MHz)p 595 2372 V 415 w(Microsoft)h(5.1)441 b(.94)p 1423 2372 V 1778 2372 V -95 2407 a(Siemens)13 b(7860E)p 595 2421 V 445 w(F)m(ortran)h(77)f(V10.3)368 b(.92)p 1423 2421 V 1778 2421 V -95 2456 a(Concurren)o(t)15 b(3280XP)p 595 2471 V 355 w(F)m(ortran)f(VI)q(I,Z)g(8.1)362 b(.87)p 1423 2471 V 1778 2471 V -95 2506 a(MIPS)14 b(M800)f(w/R2010)f(FP)p 595 2521 V 251 w(f77)h(1.10)537 b(.87)p 1423 2521 V 1778 2521 V eop %%Page: 26 27 26 26 bop -120 -25 a Fl(No)o(v)o(em)o(b)q(er)15 b(7,)f(1998)1548 b Fv(26)140 113 y Fo(Computer)p 582 128 2 50 v 371 w(\\LINP)m(A)o(CK)14 b(Benc)o(hmark")p 1254 128 V 225 w(\\TPP")p 1610 128 V 158 w(\\Theoretical)p 582 178 V 582 178 V 846 163 a(n)g(=)g(100)p 1254 178 V 341 w(Best)h(E\013ort)p 1610 178 V 104 w(P)o(eak")e (M\015op/s)p 582 228 V 582 228 V 702 213 a(OS/Compiler)142 b(M\015op/s)p 1254 228 V 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w(Lahey)i(F77,)f(4.00)233 b(.56)p 1254 1674 V -95 1709 a(Harris)14 b(H1200)p 582 1724 V 461 w(V)o(OS)h(4.1)d(opt)i(g)265 b(.56)p 1254 1724 V -95 1759 a(HP/Ap)q(ollo)13 b(DN4500)g(\(68030\))p 582 1774 V 717 w(.55)p 1254 1774 V -95 1809 a(HP)h(9000)f(Series)i(825) p 582 1824 V 351 w(2.0)e(fc)h(-O)368 b(.53)p 1254 1824 V -95 1859 a(HP-APOLLO)15 b(9000/400t)d(\(68030\))p 582 1874 V 106 w(f77)h(-O4)h(rev)h(10.8\(190\))136 b(.51)p 1254 1874 V -95 1908 a(Harris)14 b(HCX-9)p 582 1923 V 449 w(hf77)f(-O3)368 b(.50)p 1254 1923 V -95 1958 a(Pyramid)12 b(9810)p 582 1973 V 448 w(OSx)i(4.0)381 b(.50)p 1254 1973 V -95 2008 a(HP)14 b(9000)f(Series)i(840)p 582 2023 V 351 w(2.0)e(fc)h(-O)368 b(.49)p 1254 2023 V -95 2058 a(DEC)14 b(V)-5 b(AX)14 b(8600)p 582 2073 V 412 w(VMS)g(v4.5)344 b(.48)p 1254 2073 V -95 2108 a(Harris)14 b(HCX-7)g(w/fpp)p 582 2123 V 325 w(f77)f(1.0)404 b(.48)p 1254 2123 V -95 2157 a(CDC)13 b(6600)p 582 2172 V 513 w(FTN)h(4.6)f(opt=2)244 b(.48)p 1254 2172 V -95 2207 a(CDC)13 b(CYBER)i(170-835)p 582 2222 V 293 w(FTN)f(5)g(opt=2)276 b(.47)p 1254 2222 V -95 2257 a(CCI)14 b(P)o(o)o(w)o(er)g(6/32)f(w/fpa)p 582 2272 V 284 w(UNIX)i(4.2)d(bsd)j(f77)205 b(.47)p 1254 2272 V -95 2307 a(IBM)14 b(4381-21)p 582 2322 V 466 w(VS)g(F)m(ortran)g (2.1.1)e(opt=3)95 b(.47)p 1254 2322 V -95 2357 a(Sp)q(erry)15 b(7000)p 582 2372 V 484 w(4.2)472 b(.47)p 1254 2372 V -95 2407 a(Gould)13 b(PN9000)p 582 2421 V 434 w(UNIX)418 b(.47)p 1254 2421 V -95 2456 a(SUN-3/260)13 b(+)h(FP)m(A)p 582 2471 V 356 w(3.2)f(f77)g(-O)h(-\013pa)249 b(.46)p 1254 2471 V -95 2506 a(IBM)14 b(4381)f(MG1)p 582 2521 V 417 w(VS)h(F)m(ortran)g(opt=3)194 b(.46)p 1254 2521 V eop %%Page: 27 28 27 27 bop -120 -25 a Fl(No)o(v)o(em)o(b)q(er)15 b(7,)f(1998)1548 b Fv(27)127 113 y Fo(Computer)p 556 128 2 50 v 408 w(\\LINP)m(A)o(CK)14 b(Benc)o(hmark")p 1329 128 V 276 w(\\TPP")p 1684 128 V 158 w(\\Theoretical)p 556 178 V 556 178 V 870 163 a(n)g(=)g(100)p 1329 178 V 392 w(Best)h(E\013ort)p 1684 178 V 103 w(P)o(eak")f 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w(UL)m(TRIX)h(2.2/VFU)287 b(.40)p 1329 678 V -95 713 a(IBM)14 b(9370-60)p 556 728 V 440 w(VS)g(F)m(ortran)g(1.4.0)e (opt=3)195 b(.40)p 1329 728 V -95 763 a(Sun-3/160)13 b(+)h(FP)m(A)p 556 778 V 346 w(3.2)f(f77)g(-O)h(-\013pa)349 b(.40)p 1329 778 V -95 813 a(Prime)13 b(P9755)p 556 827 V 441 w(f77)g(rev)i(20.2.b2)d(-opt)270 b(.40)p 1329 827 V -95 862 a(Ridge)13 b(3200)g(Mo)q(del)h(90)p 556 877 V 292 w(R)o(OS/rf)491 b(.39)p 1329 877 V -95 912 a(IBM)14 b(4381-11)p 556 927 V 440 w(VS)g(F)m(ortran)g(1.4.0)e(opt=3)195 b(.39)p 1329 927 V -95 962 a(Gould)13 b(32/9705)f(m)o(ult)g(acc)p 556 977 V 237 w(fort77+)i(4.3)418 b(.39)p 1329 977 V -95 1012 a(NORSK)14 b(D)o(A)m(T)m(A)f(ND-570/2)p 556 1027 V 201 w(F)m(ortran-500-E)370 b(.38)p 1329 1027 V -95 1062 a(Sp)q(erry)15 b(1100/80)p 556 1077 V 395 w(FTN)f(opt=ZEO)347 b(.38)p 1329 1077 V -95 1111 a(Apple)14 b(Mac)g(I)q(Ifx)p 556 1126 V 398 w(Absoft)g(-w)g(-v)g(-O)g(-f)f(-s)254 b(.37)p 1329 1126 V -95 1161 a(CDC)13 b(CYBER)i(930-11)p 556 1176 V 288 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w(\\LINP)m(A)o(CK)14 b(Benc)o(hmark")p 1318 128 V 247 w(\\TPP")p 1674 128 V 158 w(\\Theoretical)p 601 178 V 601 178 V 888 163 a(n)g(=)g(100)p 1318 178 V 363 w(Best)h(E\013ort)p 1674 178 V 103 w(P)o(eak")f (M\015op/s)p 601 228 V 601 228 V 743 213 a(OS/Compiler)165 b(M\015op/s)p 1318 228 V 50 w(n=1000,)12 b(M\015op/s)p 1674 228 V -120 230 2110 2 v -95 265 a(IBM)i(R)m(T)f(w/68881)p 601 280 2 50 v 399 w(f77)514 b(.12)p 1318 280 V -95 314 a(V)-5 b(AX)15 b(11/750)d(FP)m(A)p 601 329 V 398 w(VMS)i(v4.1)387 b(.12)p 1318 329 V -95 364 a(micro)12 b(V)-5 b(AX)15 b(I)q(I)p 601 379 V 473 w(UL)m(TRIX)e(2.2/VFU)231 b(.12)p 1318 379 V -95 414 a(Concurren)o(t)15 b(3230)p 601 429 V 420 w(OS)f(6.2.2)e(fortran)i(5.2)207 b(.11)p 1318 429 V -95 464 a(De\014nicon)14 b(DSI-780)p 601 479 V 391 w(SVS)g(F)m(ortran)g(\(MSDOS\))147 b(.11)p 1318 479 V -95 514 a(ENCORE)14 b(Multimax)e(NS32332)p 601 529 V 177 w(f77)514 b(.11)p 1318 529 V -95 563 a(HP)14 b(9000)f(Series)i(350) p 601 578 V 371 w(HP-UX,)f(f77)f(5.2)286 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31 30 30 bop -120 -25 a Fl(No)o(v)o(em)o(b)q(er)15 b(7,)f(1998)1548 b Fv(30)163 113 y Fo(Computer)p 628 128 2 50 v 426 w(\\LINP)m(A)o(CK)14 b(Benc)o(hmark")p 1363 128 V 256 w(\\TPP")p 1719 128 V 158 w(\\Theoretical)p 628 178 V 628 178 V 924 163 a(n)g(=)g(100)p 1363 178 V 372 w(Best)h(E\013ort)p 1719 178 V 104 w(P)o(eak")e (M\015op/s)p 628 228 V 628 228 V 780 213 a(OS/Compiler)173 b(M\015op/s)p 1363 228 V 50 w(n=1000,)13 b(M\015op/s)p 1719 228 V -120 230 2155 2 v -95 265 a(IBM)h(4331)f(MG2)p 628 280 2 50 v 464 w(H)h(opt=3)419 b(.038)p 1363 280 V -95 314 a(Burroughs)15 b(B6800)p 628 329 V 433 w(F)m(ortran)f(77)f(v) o(er)h(34)260 b(.037)p 1363 329 V -95 364 a(V)-5 b(AX)15 b(11/725)d(FP)m(A)p 628 379 V 425 w(VMS)i(v4.1)395 b(.037)p 1363 379 V -95 414 a(Masscomp)13 b(MCS-541)g(w/FPB)p 628 429 V 231 w(F)m(ortran)h(3.1)372 b(.037)p 1363 429 V -95 464 a(IBM)14 b(R)m(T)f(PC)h(Mo)q(del)g(20)p 628 479 V 341 w(f77)522 b(.036)p 1363 479 V -95 514 a(V)-5 b(AX)15 b(11/730)d(FP)m(A)p 628 529 V 425 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b(.94)20 2548 y(Cra)o(y)13 b(2S)384 b(1.76)206 b(2)235 b(.902)191 b(1.93)149 b(.96)p -5 2564 V 20 2599 a(Cra)o(y)13 b(X-MP/4)275 b(3.10)206 b(4)235 b(.813)191 b(3.78)149 b(.94)p eop %%Page: 32 33 32 32 bop -120 -25 a Fl(No)o(v)o(em)o(b)q(er)15 b(7,)f(1998)1548 b Fv(32)130 113 y Fo(Computer)347 b(1000)13 b(x)h(1000)f(Problem)f (with)i(P)o(arallel)f(Pro)q(cessing)534 163 y(Time)153 b(no.)17 b(of)181 b(Time)141 b(Sp)q(eedup)51 b(E\016ciency)469 213 y(unipro)q(cessor)g(pro)q(cessors)h(m)o(ultipro)q(cessors)p -1 230 1712 2 v -1 238 V 24 273 a(Cra)o(y)14 b(X-MP/4)266 b(3.10)206 b(3)234 b(1.07)192 b(2.87)149 b(.96)24 323 y(Cra)o(y)14 b(X-MP/4)266 b(3.10)206 b(2)234 b(1.57)192 b(1.96)149 b(.98)p -1 339 V 24 374 a(Con)o(v)o(ex)14 b(C3880)259 b(5.90)206 b(8)234 b(.841)192 b(7.02)149 b(.88)24 424 y(Con)o(v)o(ex)14 b(C3840)259 b(5.90)206 b(4)234 b(1.58)192 b(3.74)149 b(.94)24 474 y(Con)o(v)o(ex)14 b(C3830)259 b(5.90)206 b(3)234 b(2.05)192 b(2.88)149 b(.96)24 524 y(Con)o(v)o(ex)14 b(C3820)259 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b(.94)24 2279 y(IBM)15 b(3090/J)d(\(14.5)h(ns\)) 106 b(6.8832)185 b(4)234 b(1.80)192 b(3.81)149 b(.95)24 2328 y(IBM)15 b(3090/J)d(\(14.5)h(ns\))106 b(6.8832)185 b(3)234 b(2.35)192 b(2.93)149 b(.98)24 2378 y(IBM)15 b(3090/J)d(\(14.5)h(ns\))106 b(6.8832)185 b(2)234 b(3.48)192 b(1.98)149 b(.99)p -1 2395 V 24 2430 a(IBM)15 b(3090/600S)c(VF)164 b(7.27)206 b(6)234 b(1.29)192 b(5.64)149 b(.94)24 2480 y(IBM)15 b(3090/500S)c(VF)164 b(7.27)206 b(5)234 b(1.52)192 b(4.78)149 b(.96)24 2529 y(IBM)15 b(3090/400S)c(VF)164 b(7.27)206 b(4)234 b(1.89)192 b(3.85)149 b(.96)p eop %%Page: 33 34 33 33 bop -120 -25 a Fl(No)o(v)o(em)o(b)q(er)15 b(7,)f(1998)1548 b Fv(33)130 113 y Fo(Computer)436 b(1000)13 b(x)h(1000)f(Problem)f (with)i(P)o(arallel)f(Pro)q(cessing)623 163 y(Time)152 b(no.)18 b(of)181 b(Time)141 b(Sp)q(eedup)51 b(E\016ciency)558 213 y(unipro)q(cessor)g(pro)q(cessors)h(m)o(ultipro)q(cessors)p -90 230 1890 2 v -90 238 V -65 273 a(IBM)15 b(3090/300S)d(VF)340 b(7.27)207 b(3)234 b(2.46)192 b(2.96)149 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b(.95)p -100 2197 V -75 2232 a(Supren)o(um)13 b(S1C1)443 b(51)213 b(16)234 b(6.4)212 b(8.0)160 b(.50)-75 2282 y(Supren)o(um)13 b(S1C1)443 b(51)213 b(14)234 b(7.1)212 b(7.2)160 b(.51)-75 2332 y(Supren)o(um)13 b(S1C1)443 b(51)213 b(12)234 b(7.9)212 b(6.5)160 b(.54)-75 2382 y(Supren)o(um)13 b(S1C1)443 b(51)213 b(10)234 b(8.9)212 b(5.8)160 b(.58)-75 2431 y(Supren)o(um)13 b(S1C1)443 b(51)223 b(8)234 b(10.4)202 b(4.9)160 b(.61)-75 2481 y(Supren)o(um)13 b(S1C1)443 b(51)223 b(6)234 b(13.1)202 b(3.9)160 b(.65)-75 2531 y(Supren)o(um)13 b(S1C1)443 b(51)223 b(4)234 b(18.1)202 b(2.8)160 b(.70)p eop %%Page: 35 36 35 35 bop -120 -25 a Fl(No)o(v)o(em)o(b)q(er)15 b(7,)f(1998)1548 b Fv(35)130 113 y Fo(Computer)438 b(1000)13 b(x)g(1000)g(Problem)g (with)h(P)o(arallel)e(Pro)q(cessing)625 163 y(Time)152 b(no.)18 b(of)180 b(Time)141 b(Sp)q(eedup)52 b(E\016ciency)559 213 y(unipro)q(cessor)g(pro)q(cessors)g(m)o(ultipro)q(cessors)p -91 230 1893 2 v -91 238 V -66 273 a(Supren)o(um)13 b(S1C1)425 b(51)223 b(2)235 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1661 2421 V -95 2456 a(F)m(ujitsu)13 b(AP1000)g(\(512)h(pro)q (c.\))p 573 2471 V 1306 2471 V 1052 w(610)p 1661 2471 V 262 w(2844)-95 2506 y(F)m(ujitsu)f(AP1000)g(\(256)h(pro)q(c.\))p 573 2521 V 1306 2521 V 1052 w(333)p 1661 2521 V 262 w(1422)p eop %%Page: 24 25 24 24 bop -120 -25 a Fl(Octob)q(er)16 b(20,)e(1998)1564 b Fv(24)111 113 y Fo(Computer)p 524 128 2 50 v 426 w(\\LINP)m(A)o(CK)14 b(Benc)o(hmark")p 1364 128 V 309 w(\\TPP")p 1720 128 V 158 w(\\Theoretical)p 524 178 V 524 178 V 872 163 a(n)g(=)g(100)p 1364 178 V 425 w(Best)h(E\013ort)p 1720 178 V 104 w(P)o(eak")e (M\015op/s)p 524 228 V 524 228 V 728 213 a(OS/Compiler)226 b(M\015op/s)p 1364 228 V 50 w(n=1000,)13 b(M\015op/s)p 1720 228 V -120 230 2156 2 v -95 265 a(F)m(ujitsu)g(AP1000)g(\(128)h (pro)q(c.\))p 524 280 2 50 v 1364 280 V 1111 w(193)p 1720 280 V 272 w(711)-95 314 y(F)m(ujitsu)f(AP1000)g(\(64)h(pro)q(c.\)) p 524 329 V 1364 329 V 1132 w(100)p 1720 329 V 272 w(356)-95 364 y(F)m(ujitsu)f(AP1000)g(\(1)h(pro)q(c.\))p 524 379 V 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113 y Fo(Computer)p 595 128 2 50 v 455 w(\\LINP)m(A)o(CK)14 b(Benc)o(hmark")p 1423 128 V 302 w(\\TPP")p 1778 128 V 159 w(\\Theoretical)p 595 178 V 595 178 V 937 163 a(n)g(=)g(100)p 1423 178 V 419 w(Best)h(E\013ort)p 1778 178 V 103 w(P)o(eak")f (M\015op/s)p 595 228 V 595 228 V 793 213 a(OS/Compiler)220 b(M\015op/s)p 1423 228 V 50 w(n=1000,)12 b(M\015op/s)p 1778 228 V -120 230 2214 2 v -95 265 a(Siemens)h(7570-P)p 595 280 2 50 v 431 w(F)m(or1)g(1.6A)500 b(1.5)p 1423 280 V 1778 280 V -95 314 a(ALR)13 b(486/33)g(m-b)q(oard,)f(256K)h(cac)o (he)p 595 329 V 92 w(Lahey)h(F77L3,)f(v5.0)f(/Z1)260 b(1.4)p 1423 329 V 1778 329 V -95 364 a(Apple)14 b(Mac)g(Quadra)g(700)p 595 379 V 291 w(Absoft)g(-w)g(-v)f(-O)h(-f)g(-s)g(-N40)207 b(1.4)p 1423 379 V 1778 379 V -95 414 a(Compaq)12 b(Deskpro)i (486/33l-120)d(w/487)p 595 429 V 49 w(Micro)o(w)o(a)o(y)i(NDPF487)g(-O) h(-OL)g(-on)94 b(1.4)p 1423 429 V 1778 429 V -95 464 a(NeXTCub)q(e)p 595 479 V 511 w(2.0)13 b(gcc)h(1.36)f(-O)408 b(1.4)p 1423 479 V 1778 479 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b(.040)p 1318 2471 V -95 2506 a(Acorn)14 b(Cam)o(bridge)p 601 2521 V 400 w(fortran)433 b(.039)p 1318 2521 V eop %%Page: 30 31 30 30 bop -120 -25 a Fl(Octob)q(er)16 b(20,)e(1998)1564 b Fv(30)163 113 y Fo(Computer)p 628 128 2 50 v 426 w(\\LINP)m(A)o(CK)14 b(Benc)o(hmark")p 1363 128 V 256 w(\\TPP")p 1719 128 V 158 w(\\Theoretical)p 628 178 V 628 178 V 924 163 a(n)g(=)g(100)p 1363 178 V 372 w(Best)h(E\013ort)p 1719 178 V 104 w(P)o(eak")e (M\015op/s)p 628 228 V 628 228 V 780 213 a(OS/Compiler)173 b(M\015op/s)p 1363 228 V 50 w(n=1000,)13 b(M\015op/s)p 1719 228 V -120 230 2155 2 v -95 265 a(IBM)h(4331)f(MG2)p 628 280 2 50 v 464 w(H)h(opt=3)419 b(.038)p 1363 280 V -95 314 a(Burroughs)15 b(B6800)p 628 329 V 433 w(F)m(ortran)f(77)f(v) o(er)h(34)260 b(.037)p 1363 329 V -95 364 a(V)-5 b(AX)15 b(11/725)d(FP)m(A)p 628 379 V 425 w(VMS)i(v4.1)395 b(.037)p 1363 379 V -95 414 a(Masscomp)13 b(MCS-541)g(w/FPB)p 628 429 V 231 w(F)m(ortran)h(3.1)372 b(.037)p 1363 429 V -95 464 a(IBM)14 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b(57.7)149 b(.45)-65 2529 y(nCUBE)15 b(2)527 b(331)202 b(64)224 b(8.70)192 b(38.0)149 b(.59)p eop %%Page: 34 35 34 34 bop -120 -25 a Fl(Octob)q(er)16 b(20,)e(1998)1564 b Fv(34)130 113 y Fo(Computer)446 b(1000)13 b(x)h(1000)f(Problem)g (with)g(P)o(arallel)g(Pro)q(cessing)633 163 y(Time)153 b(no.)17 b(of)181 b(Time)141 b(Sp)q(eedup)51 b(E\016ciency)568 213 y(unipro)q(cessor)g(pro)q(cessors)h(m)o(ultipro)q(cessors)p -100 230 1910 2 v -100 238 V -75 273 a(nCUBE)15 b(2)547 b(331)203 b(32)223 b(14.5)192 b(22.8)149 b(.71)-75 323 y(nCUBE)15 b(2)547 b(331)203 b(16)223 b(25.6)192 b(12.9)149 b(.81)-75 372 y(nCUBE)15 b(2)547 b(331)213 b(8)234 b(46.9)192 b(7.04)149 b(.88)-75 422 y(nCUBE)15 b(2)547 b(331)213 b(4)234 b(89.1)192 b(3.71)149 b(.93)-75 472 y(nCUBE)15 b(2)547 b(331)213 b(2)234 b(171.)192 b(1.93)149 b(.97)p -100 489 V -75 524 a(In)o(tel)14 b(iPSC/860)461 b(22)202 b(128)224 b(2.8)202 b(7.68)149 b(.06)-75 573 y(In)o(tel)14 b(iPSC/860)461 b(22)213 b(64)234 b(3.2)202 b(6.72)149 b(.11)-75 623 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b(AlphaServ)o(er)h(8400)e(5/300)p 908 1973 V 566 w(6)p 1152 1973 V 178 w(2.4)101 b(9640)76 b(540)107 b(3.6)-89 2008 y(DEC)14 b(AlphaServ)o(er)h(8200)e(5/300)p 908 2023 V 566 w(6)p 1152 2023 V 178 w(2.4)101 b(9640)76 b(540)107 b(3.6)-89 2058 y(IBM)15 b(SP-1)p 908 2073 V 916 w(32)p 1152 2073 V 167 w(2.4)91 b(16000)54 b(4000)113 b(4)-89 2108 y(Thinking)13 b(Mac)o(hines)i(CM-200)d(\(10)i(MHz\))p 908 2123 V 395 w(512)p 1152 2123 V 156 w(2.4)91 b(14848)54 b(5632)113 b(5)-89 2157 y(SGI)14 b(PO)o(WER)g(CHALLENGE)g(\(75)f(MHz\)) p 908 2172 V 387 w(10)p 1152 2172 V 146 w(2.395)80 b(2000)c(470)107 b(3.0)-89 2207 y(SGI)14 b(PO)o(WER)g(CHALLENGE)g(\(90)f(MHz\))p 908 2222 V 397 w(8)p 1152 2222 V 157 w(2.318)80 b(1900)c(360)107 b(2.9)-89 2257 y(Allian)o(t)13 b(CAMPUS/800)g(\(40)h(MHz\))p 908 2272 V 507 w(96)p 1152 2272 V 167 w(2.3)91 b(13020)54 b(4396)97 b(3.8)-89 2307 y(In)o(tel)14 b(iPSC/860)f(\(40)g(MHz\))p 908 2322 V 628 w(120)p 1152 2322 V 156 w(2.3)91 b(12000)54 b(4500)97 b(4.8)-89 2357 y(F)m(ujitsu)14 b(AP1000)p 908 2372 V 805 w(512)p 1152 2372 V 156 w(2.3)91 b(25600)54 b(2500)97 b(2.8)-89 2407 y(Sun)14 b(Ultra)g(HPC)g(6000)f(167)g(MHz)i (\(1MB)f(L2)f(Cac)o(he\))p 908 2421 V 235 w(8)p 1152 2421 V 157 w(2.185)70 b(14000)65 b(500)107 b(2.7)-89 2456 y(HP)15 b(Exemplar)d(S-Class)i(SPP-UX)g(5.2)p 908 2471 V 478 w(4)p 1152 2471 V 157 w(2.121)70 b(13320)65 b(520)107 b(2.9)-89 2506 y(Sun)14 b(Ultra)g(HPC)g(450)f(\(300)h(MHz\))p 908 2521 V 541 w(4)p 1152 2521 V 168 w(2.09)80 b(10944)65 b(492)107 b(2.4)p eop %%Page: 45 46 45 45 bop -120 -25 a Fl(Octob)q(er)16 b(20,)e(1998)1564 b Fv(45)307 113 y Fo(Computer)p 901 128 2 50 v 437 w(Num)o(b)q(er)13 b(of)68 b Fd(R)1221 119 y Fc(max)1358 113 y Fd(N)1391 119 y Fc(max)1515 113 y Fd(N)1548 120 y Fb(1)p Fc(=)p Fb(2)1672 113 y Fd(R)1704 119 y Fc(peak)257 163 y Fo(\(F)m(ull)13 b(Precision\))p 901 178 V 392 w(Pro)q(cessors)p 1145 178 V 55 w(G\015op/s)p 1331 178 V 53 w(order)56 b(order)50 b(G\015op/s)p -107 180 1924 2 v -82 215 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Fc(max)1270 113 y Fd(N)1303 119 y Fc(max)1432 113 y Fd(N)1465 120 y Fb(1)p Fc(=)p Fb(2)1593 113 y Fd(R)1625 119 y Fc(peaPERFORM.tex 644 2432 1334 532341 6622102403 6072 \documentstyle[supertab,11pt]{article} % \documentstyle[]{article} \oddsidemargin -0.40in \evensidemargin -0.40in \textwidth 6.5in \textheight 9.1in \topmargin -.25in % % macros used in QR algorithm % \newcommand {\apphh} {{\it apphh\/}~} \newcommand {\genhh} {{\it genhh\/}~} \newcommand {\appcwy} {{\it appcwy\/}~} \newcommand {\gencwy} {{\it gencwy\/}~} % % math macros % \newcommand{\twonorm}[1]{\/ \| \/ {#1} \/ \|_{2} \/ } \newcommand{\onebytwo}[2]{ \left( \begin{array}{ccc} {#1} &\!{,}\!& #2 \end{array} \right) } \newcommand{\twobytwo}[4]{ \left( \begin{array}{cc} #1 & #2 \\ #3 & #4 \end{array} \right) } \newcommand{\twobyone}[2]{ \left( \begin{array}{c} #1 \\ #2 \end{array} \right) } % % macros for pseudocode % \newcommand {\bfor} {{\bf for}\=~} \newcommand {\bto} {{\bf to~}} \newcommand {\bdo} {{\bf do~}} \newcommand {\bendfor} {{\bf end for~}} \begin{document} \begin{center} ------------------------ \\ CS - 89 - 85 \\ ------------------------ \\ \vspace{1in} \vspace{.7in} \LARGE {\bf Performance of Various Computers Using Standard Linear Equations Software } \vspace{.4in} {\rm Jack J. Dongarra*} \normalsize \vspace{.4in} Computer Science Department \\ University of Tennessee\\ Knoxville, TN 37996-1301\\ \vspace{.2in} and\\ \vspace{.2in} Mathematical Sciences Section \\ Oak Ridge National Laboratory\\ Oak Ridge, TN 37831\\ \vspace{.5in} CS - 89 - 85 \\ \vspace{.5in} \today \end{center} \vspace{.75in} \noindent * Electronic mail address: dongarra@cs.utk.edu. \noindent An up-to-date version of this report can be found at http://www.netlib.org/benchmark/performance.ps \noindent This work was supported in part by the Applied Mathematical Sciences subprogram of the Office of Energy Research, U.S. Department of Energy, under Contract DE-AC05-96OR22464, and in part by the Science Alliance a state supported program at the University of Tennessee. \pagebreak \begin{center} \renewcommand{\thefootnote}{\fnsymbol{footnote}} \Large \bf Performance of Various Computers Using Standard Linear Equations Software% % \footnote{This work was supported in part by the Applied Mathematical Sciences subprogram of the Office of Energy Research, U.S. Department of Energy, under Contract DE-AC05-84OR21400, and in part by the Science Alliance a state supported program at the University of Tennessee.\\ An up-to-date version of this report can be found at http://www.netlib.org/benchmark/performance.ps } \\[0.5cm] \setcounter{footnote}{0} \large \it Jack J. Dongarra \\[0.1cm] \normalsize \rm Computer Science Department\\ University of Tennessee\\ Knoxville, TN 37996-1301 \\[0.2cm] \vspace{.1in} and\\ \vspace{.1in} Mathematical Sciences Section \\ Oak Ridge National Laboratory\\ Oak Ridge, TN 37831\\ \vspace{.1in} \today\\ ~\\ \end{center} \begin{abstract} This report compares the performance of different computer systems in solving dense systems of linear equations. The comparison involves approximately a hundred computers, ranging from a Cray Y-MP to scientific workstations such as the Apollo and Sun to IBM PCs. \end{abstract} \setcounter{page}{1} \pagestyle{myheadings} \section{Introduction and Objectives} \label{sec:intro} The timing information presented here should in no way be used to judge the overall performance of a computer system. The results reflect only one problem area: solving dense systems of equations. This report provides performance information on a wide assortment of computers ranging from the home-used PC up to the most powerful supercomputers. The information has been collected over a period of time and will undergo change as new machines are added and as hardware and software systems improve. The programs used to generate this data can easily be obtained over the Internet. While we make every attempt to verify the results obtained from users and vendors, errors are bound to exist and should be brought to our attention. We encourage users to obtain the programs and run the routines on their machines, reporting any discrepancies with the numbers listed here. The first table reports three numbers for each machine listed (in some cases the numbers are missing because of lack of data). All performance numbers reflect arithmetic performed in full precision (usually 64-bit), unless noted. On some machines full precision may be single precision, such as the Cray, or double precision, such as the IBM. The first number is for the LINPACK \cite{linpack} benchmark program for a matrix of order 100 in a Fortran environment. The second number is for solving a system of equations of order 1000, with no restriction on the method or its implementation. The third number is the theoretical peak performance of the machine. LINPACK programs can be characterized as having a high percentage of floating-point arithmetic operations. The routines involved in this timing study, SGEFA and SGESL, use column-oriented algorithms. That is, the programs usually reference array elements sequentially down a column, not across a row. Column orientation is important in increasing efficiency because of the way Fortran stores arrays. Most floating-point operations in LINPACK take place in a set of subprograms, the Basic Linear Algebra Subprograms (BLAS) \cite{blas1}, which are called repeatedly throughout the calculation. These BLAS, referred to now as Level 1 BLAS, reference one-dimensional arrays, rather than two-dimensional arrays. In the first case, the problem size is relatively small (order 100), and no changes were made to the LINPACK software. Moreover, no attempt was made to use special hardware features or to exploit vector capabilities or multiple processors. (The compilers on some machines may, of course, generate optimized code that itself accesses special features.) Thus, many high-performance machines may not have reached their asymptotic execution rates. In the second case, the problem size is larger (matrix of order 1000), and modifying or replacing the algorithm and software was permitted to achieve as high an execution rate as possible. Thus, the hardware had more opportunity for reaching near-asymptotic rates. An important constraint, however, was that all optimized programs maintain the same relative accuracy as standard techniques, such as Gaussian elimination used in LINPACK. Furthermore, the driver program (supplied with the LINPACK benchmark) had to be run to ensure that the same problem is solved. The driver program sets up the matrix, calls the routines to solve the problem, verifies that the answers are correct, and computes the total number of operations to solve the problem (independent of the method) as $ 2n ^ 3 / 3 + 2n ^ 2 $, where $n = 1000$. The last column is based not on an actual program run, but on a paper computation to determine the theoretical peak Mflop/s rate for the machine. This is the number manufacturers often cite; it represents an upper bound on performance. That is, the manufacturer guarantees that programs will not exceed this rate---sort of a ``speed of light'' for a given computer. The theoretical peak performance is determined by counting the number of floating-point additions and multiplications (in full precision) that can be completed during a period of time, usually the cycle time of the machine. As an example, the Cray Y-MP/8 has a cycle time of 6 ns. During a cycle the results of both an addition and a multiplication can be completed $\frac{2 \mbox{ operations } } {1 \mbox{ cycle } } * \frac{1 \mbox{ cycle } } {6 \mbox{ ns } } = 333 \mbox{ Mflop/s }$ on a single processor. On the Cray Y-MP/8 there are 8 processors; thus, the peak performance is 2667 Mflop/s. The information in this report is presented to users to provide a range of performance for the various computers and to show the effects of typical Fortran programming and the results that can be obtained through careful programming. The maximum rate of execution is given for comparison. \markboth{\today}{\today} \markright{\today} The column labeled ``Computer'' gives the name of the computer hardware on which the program was run. In some cases we have indicated the number of processors in the configuration and, in some cases, the cycle time of the processor in nanoseconds. The column labeled ``LINPACK Benchmark'' gives the operating system and compiler used. The run was based on two routines from LINPACK: SGEFA and SGESL were used for single precision, and DGEFA and DGESL were used for double precision. These routines perform standard LU decomposition with partial pivoting and backsubstitution. The timing was done on a matrix of order 100, where no changes are allowed to the Fortran programs. The column labeled ``TPP'' (Toward Peak Performance) gives the results of hand optimization; the problem size was of order 1000. The final column labeled ``Theoretical Peak'' gives the maximum rate of execution based on the cycle time of the hardware. % The reflects runs made with a rolled version of the BLAS. % In a Fortran implementation of the BLAS, loops are unrolled \cite{dongarra84c} % to obtain better performance on scalar machines. % On vector machines, however, loop unrolling usually results in poor performance, % because the compiler cannot recognize the vector loop; hence, the loops are % rolled. The same matrix was used to solve the system of equations. The results were checked for accuracy by calculating a residual for the problem $ || Ax - b || / ( || A || || x|| ) .$ The term Mflop/s, used as a rate of execution, stands for millions of floating-point operations completed per second. For solving a system of $n$ equations, $ 2/3 n ^ 3 + 2 n ^ 2 $ operations are performed (we count both additions and multiplications). The information in the tables was compiled over a period of time. Subsequent systems software and hardware changes may alter the timings to some extent. One further note: The following tables should not be taken too seriously. In multiprogramming environments it is often difficult to reliably measure the execution time of a single program. We trust that anyone actually evaluating machines and operating systems will gather more reliable and more representative data. \section{ A Look at Parallel Processing } While collecting the data presented in Table 1, we were able to experiment with parallel processing on a number of computer systems. For these experiments, we used either the standard LINPACK algorithm or an algorithm based on matrix-matrix \cite{ddsv} techniques. In the case of the LINPACK algorithm, the loop around the SAXPY can be performed in parallel. In the matrix-matrix implementation the matrix product can be split into submatrices and performed in parallel. In either case, the parallelism follows a simple fork-and-join model where each processor gets some number of operations to perform. For a problem of size 1000, we expect a high degree of parallelism. Thus, it is not surprising that we get such high efficiency (see Table 2). The actual percentage of parallelism, of course, depends on the algorithm and on the speed of the uniprocessor on the parallel part relative to the speed of the uniprocessor on the non-parallel part. \section{ Highly Parallel Computing } With the arrival of massively parallel computers there is a need to benchmark such machines on problems that make sense. The problem size and rule for the runs reflected in the Tables 1 and 2 do not permit massively parallel computers to demonstrate their potential performance. The basic flaw is the problem size is too small. To provide a forum for comparing such machines the following benchmark was run on a number of massively parallel machines. The benchmark involves solving a system of linear equations (as was done in Tables 1 and 2). However in this case, the problem size is allowed to increase and the performance numbers reflect the largest problem run on the machine. The ground rules are as follows: Solve systems of linear equations by some method, allow the size of the problem to vary, and measure the execution time for each size problem. In computing the floating-point execution rate, use $2n^3/3 + 2n^2$ operations independent of the actual method used. (If you choose to do Gaussian Elimination, partial pivoting must be used.) Compute and report a residual for the accuracy of solution as $ || Ax - b || / ( || A || || x|| ) .$ The columns in Table 3 are defined as follows: $R _{max}$ the performance in Gflop/s for the largest problem run on a machine. $N _{max}$ the size of the largest problem run on a machine. $N _ {1/2}$ the size where half the $R_{max}$ execution rate is achieved. $R _{peak}$ the theoretical peak performance in Gflop/s for the machine. In addition, the number of processors and the cycle time is listed. \section{ Obtaining the Software and Running the Benchmarks} The software used to generate the data for this report can be obtained by sending electronic mail to {\em netlib@ornl.gov } \subsection{LINPACK Benchmark} The first results listed in Table 1 involved no hand optimization of the LINPACK benchmark. To receive the single-precision software for this benchmark, in the mail message to {\em netlib@ornl.gov } type: {\em send linpacks from benchmark }. To receive the double-precision software for the LINPACK Benchmark, type: {\em send linpackd from benchmark }. To run the timing programs, one must supply a real function SECOND which returns the time in seconds from some fixed starting time. There is only one ground rule for running this benchmark: \begin{itemize} \item No changes are to be made to the Fortran source code, not even changes in the comments. \end{itemize} The compiler and operating system must be generally available. Results from a beta version of a compiler are allowed, however the standard compiler results must also be listed. \subsection{Toward Peak Performance } The second set of results listed in Table 1 reflected user optimization of the software. To receive the single-precision software for the column labeled ``Toward Peak Performance,'' in the mail message {\em netlib@ornl.gov } type: {\em send 1000s from benchmark} To receive the double-precision software, type: {\em send 1000d from benchmark} The ground rules for running this benchmark are as follows: \begin{itemize} \item Replacements or modifications are allowed in the routine LU. \item The user is allowed to supply any method for the solution of the system of equations. \item The Mflop/s rate will be computed based on the operation count for LU decomposition. \item In all cases, the main driver routine, with its test matrix generator and residual check, must be used. \end{itemize} This report is updated from time to time. A fax copy of this report can be supplied, for details contact the author. To obtain a Postscript copy of the report send mail to {\em netlib@ornl.gov } and in the message type: {\em send performance from benchmark}. To have results verified, please send the output of the runs to \begin{flushleft} Jack Dongarra\\ Computer Science Department\\ University of Tennessee\\ Knoxville, TN 37996-1301 \\ \vspace {.1in} Internet: dongarra@cs.utk.edu \vspace {.1in} Fax number: 423-974-8296 \end{flushleft} \small \pagebreak \begin{center} \Large Table 1: {\bf Performance in Solving a System of Linear Equations } \small \end{center} \vskip .15 in \begin{center} \tablehead{ \multicolumn{1}{c}{Computer} & \multicolumn{2}{|c|}{``LINPACK Benchmark'' } & \multicolumn{1}{c|}{``TPP''} & \multicolumn{1}{c}{``Theoretical} \\ & \multicolumn{2}{|c|}{n = 100 } & \multicolumn{1}{c|}{Best Effort} & \multicolumn{1}{c}{Peak'' Mflop/s} \\ & \multicolumn{1}{|c}{OS/Compiler} & \multicolumn{1}{c|}{Mflop/s} & \multicolumn{1}{c|}{n=1000, Mflop/s} & \\ \hline } %begin data here \begin{supertabular}{l|lc|c|c} Cray T932 (32 proc. 2.2 ns) & & &29360 &57600 \\ Cray T928 (28 proc. 2.2 ns) & & &28340 &50400 \\ Cray T924 (24 proc. 2.2 ns) & & &26170 &43200 \\ Cray T916 (16 proc. 2.2 ns) & & &19980 &28800 \\ Cray T916 (8 proc. 2.2 ns) & & &10880 &14400 \\ Cray T94 (4 proc. 2.2 ns) & & & 5735 & 7200 \\ Cray T94 (3 proc. 2.2 ns) & &1097 & 4387 & 5400 \\ Cray T94 (2 proc. 2.2 ns) & & 962 & 2998 & 3600 \\ Cray T94 (1 proc. 2.2 ns) & f90 -O3,inline2 & 705 & 1603 & 1800 \\ NEC SX-4/32 (32 proc. 8.0 ns) & & &31060 &64000 \\ NEC SX-4/24 (24 proc. 8.0 ns) & & &27440 &48000 \\ NEC SX-4/16 (16 proc. 8.0 ns) & & &21470 &32000 \\ NEC SX-4/8 (8 proc. 8.0 ns) & & &12780 &16000 \\ NEC SX-4/4 (4 proc. 8.0 ns) & & & 6780 & 8000 \\ NEC SX-4/2 (2 proc. 8.0 ns) & & & 3570 & 4000 \\ NEC SX-4/1 (1 proc. 8.0 ns) & 137 R6.1 -fopp f=x inline& 578 & 1944 & 2000 \\ NEC SX-4B/2(2proc.8.8ns) & & & 3246 & 3636 \\ NEC SX-4B/1(1proc.8.8ns) & R7.1 -fopp f=x inline & 524 & 1767 & 1818 \\ NEC SX-4/Ce (1 proc. ) & R7.1 -fopp f=x inline & 500 & 980 & 1000 \\ Cray C90 (16 proc. 4.2 ns) & CF77 5.0 -Zp -Wd-e68 & 479 &10780 &15238 \\ Cray C90 (8 proc. 4.2 ns) & CF77 5.0 -Zp -Wd-e68 & 468 & 6175 & 7619 \\ NEC SX-4/16A(16proc.8.0ns) & & &20620 &32000 \\ NEC SX-4/8A(8proc.8.0ns) & & &12490 &16000 \\ NEC SX-4/4A(4proc.8.0ns) & & & 6692 & 8000 \\ NEC SX-4/2A(2proc.8.0ns) & & & 3525 & 4000 \\ NEC SX-4/1A(1proc.8.0ns) & R7.1 -fopp f=x inline & 467 & 1929 & 2000 \\ NEC SX-4B/2A (2 proc. 8.8 ns) & & & 3204 & 3636 \\ Compaq 8400 6/575(8proc 1.7 ns)& & & 5305 & 9600 \\ Compaq 8400 6/575(6proc 1.7 ns)& & & 4085 & 6900 \\ Compaq 8400 6/575(4proc 1.7 ns)& & & 3003 & 4600 \\ Compaq 8400 6/575(2proc 1.7 ns)& & & 1615 & 2300 \\ Compaq 8400 6/575(1proc 1.7 ns)&kf77 -fkapargs='-inline=daxpy& & & \\ &-ur=12' -tune ev6 -O5 & 460 & 847 & 1150 \\ NEC SX-4B/e (1 proc. 8.8ns) & R7.1 -fopp f=x inline & 454 & 890 & 909 \\ Compaq 8200 6/575(6proc 1.7 ns)& & & 3981 & 6900 \\ Compaq 8200 6/575(4proc 1.7 ns)& & & 3003 & 4600 \\ Compaq 8200 6/575(2proc 1.7 ns)& & & 1615 & 2300 \\ Compaq 8200 6/575(1proc 1.7 ns)&kf77 -fkapargs='-inline=daxpy& & & \\ &-ur=12' -tune ev6 -O5 & 431 & 831 & 1150 \\ NEC SX-4B/1A (1 proc. 8.8 ns) & R7.1 -fopp f=x inline & 427 & 1753 & 1818 \\ Cray 3-128 (4 proc. 2.11 ns) & CSOS 1.0 level 129 & 421 & 2862 & 3792 \\ Hitachi S-3800/480(4 proc 2 ns)& & &20640 &32000 \\ Hitachi S-3800/380(3 proc 2 ns)& & &16880 &24000 \\ Hitachi S-3800/280(2 proc 2 ns)& & &12190 &16000 \\ Hitachi S-3800/180(1 proc 2 ns)& OSF/1 MJ FORTRAN:V03-00 & 408 & 6431 & 8000 \\ Cray 3-128 (2 proc. 2.11 ns) & CSOS 1.0 level 129 & 393 & 1622 & 1896 \\ Cray C90 (4 proc. 4.2 ns) & CF77 5.0 -Zp -Wd-e68 & 388 & 3275 & 3810 \\ Cray C90 (2 proc. 4.2 ns) & CF77 5.0 -Zp -Wd-e68 & 387 & 1703 & 1905 \\ Cray C90 (1 proc. 4.2 ns) & CF77 5.0 -Zp -Wd-e68 & 387 & 902 & 952 \\ NEC SX-3/44R (4 proc. 2.5 ns) & & &15120 &25600 \\ NEC SX-3/42R (4 proc. 2.5 ns) & & & 8950 &12800 \\ NEC SX-3/41R (4 proc. 2.5 ns) & & & 4815 & 6400 \\ NEC SX-3/34R (3 proc. 2.5 ns) & & &12730 &19200 \\ NEC SX-3/32R (3 proc. 2.5 ns) & & & 6718 & 9600 \\ NEC SX-3/31R (3 proc. 2.5 ns) & & & 3638 & 4800 \\ NEC SX-3/24R (2 proc. 2.5 ns) & & & 9454 &12800 \\ NEC SX-3/22R (2 proc. 2.5 ns) & & & 5116 & 6400 \\ NEC SX-3/21R (2 proc. 2.5 ns) & & & 2627 & 3200 \\ NEC SX-3/14R (1 proc. 2.5 ns) & f77sx 040 R2.2 -pi*:* & 368 & 5199 & 6400 \\ NEC SX-3/12R (1 proc. 2.5 ns) & f77sx 040 R2.2 -pi*:* & 368 & 2757 & 3200 \\ Cray 3-128 (1 proc. 2.11 ns) & CSOS 1.0 level 129 & 327 & 876 & 948 \\ IBM RS6000/397(160 MHz ThinNode)&-qarch=pwr2 -qhot -O3 -Pv& & & \\ & -Wp,-ea478,-g1 & 315 & 532 & 640 \\ NEC SX-3/44 (4 proc. 2.9 ns) & & &13420 &22000 \\ NEC SX-3/24 (2 proc. 2.9 ns) & & & 8149 &11000 \\ NEC SX-3/42 (4 proc. 2.9 ns) & & & 7752 &11000 \\ NEC SX-3/22 (2 proc. 2.9 ns) & & & 4404 & 5500 \\ NEC SX-3/14 (1 proc. 2.9 ns) & f77sx 020 R1.13 -pi*:* & 314 & 4511 & 5500 \\ NEC SX-3/12 (1 proc. 2.9 ns) & f77sx 020 R1.13 -pi*:* & 313 & 2283 & 2750 \\ DEC 8400 5/625(8 proc,612 MHz) & & & 3608 & 9792 \\ DEC 8400 5/625(4 proc,612 MHz) & & & 2377 & 4896 \\ DEC 8400 5/625(2 proc,612 MHz) & & & 1375 & 2448 \\ DEC 8400 5/625(1 proc,612 MHz) & f77 -O5 -fast & 287 & 764 & 1224 \\ Cray Y-MP/832 (8 proc. 6 ns) & CF77 4.0 -Zp -Wd-e68 & 275 & 2144 & 2667 \\ DEC 8200 5/625(8 proc,612 MHz) & & & 2696 & 9792 \\ DEC 8200 5/625(4 proc,612 MHz) & & & 2313 & 4896 \\ DEC 8200 5/625(2 proc,612 MHz) & & & 1366 & 2448 \\ DEC 8200 5/625(1 proc,612 MHz) & f77 -O5 -fast & 268 & 750 & 1224 \\ IBM RS6000/595(135 MHz WideNode)&-qarch=pwr2 -qhot -O3 -Pv& & & \\ & -Wp,-ea478,-g1 & 265 & 440 & 540 \\ Fujitsu VP2600/10 (3.2 ns) & FORTRAN77 EX/VP V11L10 & 249 & 4009 & 5000 \\ DEC 500/500 (1 proc, 500 MHz) & kf77 -inline=daxpy -ur=3 & & & \\ & -fast -O5 -tune ev5 & 235 & 590 & 1000 \\ IBM P2SC (120 MHz Thin Node) & -qarch=pwr2 -qhot -O3 -Pv& & & \\ & -Wp,-ea478,-g1 & 233 & 406 & 480 \\ DEC PersonalWorkstation 600 & -O5 -fast -tune ev56 & & & \\ &-inline all -speculate all& 227 & & 1200 \\ Cray Y-MP/832 (4 proc. 6 ns) & CF77 4.0 -Zp -Wd-e68 & 226 & 1159 & 1333 \\ Fujitsu VPP500/1(1 proc. 10 ns)& FORTRAN77EX/VP V12L20 & 206 & 1490 & 1600 \\ DEC 8400 5/440(8 proc, 440 MHz)& kf77 -inline=daxpy -ur=3 & & & \\ & -fast -O5 -tune ev5 & & 3112 & 7040 \\ DEC 8100 5/440(4 proc, 440 MHz)& kf77 -inline=daxpy -ur=3 & & & \\ & -fast -O5 -tune ev5 & & 1945 & 3520 \\ DEC 8100 5/440(2 proc, 440 MHz)& kf77 -inline=daxpy -ur=3 & & & \\ & -fast -O5 -tune ev5 & & 1090 & 1760 \\ DEC 8100 5/440(1 proc, 440 MHz)& kf77 -inline=daxpy -ur=3 & & & \\ & -fast -O5 -tune ev5 & 205 & 588 & 880 \\ Cray Y-MP M98 (8 proc. 6 ns) & CF77 5.0 -Zp -Wd-e68 & 204 & 1733 & 2666 \\ Fujitsu VX/1 (1 proc. 7 ns)& Fortran90/VP V10L10 & 203 & 1936 & 2200 \\ Fujitsu VPP300/1 (1 proc. 7 ns)& Fortran90/VP V10L10 & 203 & 1936 & 2200 \\ Fujitsu VPP700/1 (1 proc. 7 ns)& Fortran90/VP V10L10 & 203 & 1936 & 2200 \\ Fujitsu VP2200/10 (3.2 ns) & FORTRAN77 EX/VP V12L10 & 203 & 1048 & 1250 \\ HP Exemplar V-Class(16 proc.240 MHz)& +O3 +Oinline=daxpy & & 5935 &15360 \\ HP Exemplar V-Class(14 proc.240 MHz)& +O3 +Oinline=daxpy & & 5394 &13440 \\ HP Exemplar V-Class(12 proc.240 MHz)& +O3 +Oinline=daxpy & & 5202 &11520 \\ HP Exemplar V-Class(10 proc.240 MHz)& +O3 +Oinline=daxpy & & 4585 & 9600 \\ HP Exemplar V-Class(8 proc.240 MHz)& +O3 +Oinline=daxpy & & 4125 & 7680 \\ HP Exemplar V-Class(6 proc.240 MHz)& +O3 +Oinline=daxpy & & 3350 & 4760 \\ HP Exemplar V-Class(4 proc.240 MHz)& +O3 +Oinline=daxpy & & 2414 & 3840 \\ HP Exemplar V-Class(2 proc.240 MHz)& +O3 +Oinline=daxpy & & 1260 & 1920 \\ HP Exemplar V-Class(1 proc.240 MHz)& HP-UX 11.0 & & & \\ & +O3 +Oinline=daxpy & 203 & 743 & 960 \\ Cray 2S/4-128 (4 proc. 4.1 ns) & CSOS 1.0 level 129 & 202 & 1406 & 1951 \\ NEC SX-3/11R (1 proc. 2.5 ns) & f77sx 040 R2.2 -pi*:* & 202 & 1418 & 1600 \\ NEC SX-3/1LR (1 proc. 2.5 ns) & f77sx 040 R2.2 -pi*:* & 201 & 767 & 800 \\ Hewlett-Packard C240 236 MHz & +O3 +Oinline=daxpy & 197 & 667 & 944 \\ DEC 500/400 (1 proc, 400 MHz) & kf77 -inline=daxpy -ur=3 & & & \\ & -fast -O5 -tune ev5 & 189 & 449 & 800 \\ DEC 4100 5/400(4 proc, 400 MHz)& kf77 -inline=daxpy -ur=3 & & & \\ & -fast -O5 -tune ev5 & & 1821 & 3200 \\ DEC 4100 5/400(2 proc, 400 MHz)& kf77 -inline=daxpy -ur=3 & & & \\ & -fast -O5 -tune ev5 & & 1001 & 1600 \\ DEC 4100 5/400(1 proc, 400 MHz)& kf77 -inline=daxpy -ur=3 & & & \\ & -fast -O5 -tune ev5 & 189 & 531 & 800 \\ DEC 1000A 5/400(1 proc, 400 MHz)&kf77 -inline=daxpy -ur=3 & & & \\ & -fast -O5 -tune ev5 & 187 & 440 & 800 \\ Cray Y-MP/832 (2 proc. 6 ns) & CF77 5.0 -Zp -Wd-e68 & 181 & 604 & 667 \\ Cray X-MP/416 (4 proc. 8.5 ns) & CF77 4.0 -Zp -Wd-e68 & 178 & 822 & 940 \\ Cray Y-MP M98 (4 proc. 6 ns) & CF77 5.0 -Zp -Wd-e68 & 177 & 1114 & 1333 \\ NEC SX-3/11 (1 proc. 2.9 ns) & f77sx 020 R1.13 -pi*:* & 173 & 1223 & 1370 \\ NEC SX-3/1L (1 proc. 2.9 ns) & f77sx 020 R1.13 -pi*:* & 171 & 661 & 680 \\ Fujitsu VP2400/10 (4 ns) & FORTRAN77 EX/VP V11L10 & 170 & 1688 & 2000 \\ HP Exemplar V-Class(16 proc.200 MHz)& HP-UX 11.0 & & 4832 &12800 \\ HP Exemplar V-Class(14 proc.200 MHz)& HP-UX 11.0 & & 4442 &11200 \\ HP Exemplar V-Class(12 proc.200 MHz)& HP-UX 11.0 & & 4109 & 8400 \\ HP Exemplar V-Class(10 proc.200 MHz)& HP-UX 11.0 & & 3506 & 8000 \\ HP Exemplar V-Class(8 proc.200 MHz)& HP-UX 11.0 & & 3206 & 6400 \\ HP Exemplar V-Class(6 proc.200 MHz)& HP-UX 11.0 & & 2608 & 4200 \\ HP Exemplar V-Class(4 proc.200 MHz)& HP-UX 11.0 & & 1912 & 3200 \\ HP Exemplar V-Class(2 proc.200 MHz)& HP-UX 11.0 & & 1082 & 1600 \\ HP Exemplar V-Class(1 proc.200 MHz)&HP-UX 11.0 & & & \\ & +O3 +Oinline=daxpy & 169 & 613 & 800 \\ Cray 2S/4-128 (2 proc. 4.1 ns) & CSOS 1.0 level 129 & 167 & 741 & 976 \\ Hewlett-Packard C200 200 MHz & +O3 +Oinline=daxpy & 166 & 550 & 800 \\ DEC 8400 5/350 (1 proc 350 MHz)&kf77 -fkapargs='-inline=daxpy& & & \\ &-ur3=100' -tune ev5 -O5 & & & \\ &-assume nounderscore & 164 & 510 & 700 \\ DEC 8400 5/300 (8 proc 300 MHz)& & & 2282 & 4800 \\ DEC 8400 5/300 (6 proc 300 MHz)& & & 1902 & 3600 \\ DEC 8400 5/300 (4 proc 300 MHz)& & & 1351 & 2400 \\ DEC 8400 5/300 (2 proc 300 MHz)& & & 757 & 1200 \\ Cray Y-MP/832 (1 proc. 6 ns) & CF77 5.0 -Zp -Wd-e68 & 161 & 324 & 333 \\ Convex C4/XA-4(4 proc) &fc9.0.0.5 -tm c4 -O3 -ds & & & \\ \hspace{.5in}(7.41 ns) & -ep 4 -is . & 160 & 2531 & 3240 \\ Hewlett-Packard K460-EG 180 MHz& +Oall +Oinline=daxpy & 158 & 510 & 720 \\ Hewlett-Packard C180-XP 180 MHz& +Oall +Oinline=daxpy & 158 & 480 & 720 \\ HP Exemplar S-Class (16 proc) & SPP-UX 5.2 & & 4609 &11520 \\ HP Exemplar S-Class (14 proc) & SPP-UX 5.2 & & 4217 &10080 \\ HP Exemplar S-Class (12 proc) & SPP-UX 5.2 & & 4019 & 8640 \\ HP Exemplar S-Class (10 proc) & SPP-UX 5.2 & & 3389 & 7200 \\ HP Exemplar S-Class (8 proc) & SPP-UX 5.2 & & 2979 & 5760 \\ HP Exemplar S-Class (6 proc) & SPP-UX 5.2 & & 2305 & 4320 \\ HP Exemplar S-Class (4 proc) & SPP-UX 5.2 & & 1629 & 2880 \\ HP Exemplar S-Class (2 proc) & SPP-UX 5.2 & & 967 & 1440 \\ HP Exemplar S-Class(1 proc) &SPP-UX 5.2+Oall +Oinline=daxpy&156 & 545 & 720 \\ Sun UltraSPARC II(30 proc)336MHz& & & 5187 &20160 \\ Sun UltraSPARC II(24 proc)336MHz& & & 4755 &16128 \\ Sun UltraSPARC II(16 proc)336MHz& & & 3981 &10752 \\ Sun UltraSPARC II(14 proc)336MHz& & & 3721 & 9408 \\ Sun UltraSPARC II(8 proc)336MHz& & & 2481 & 5376 \\ Sun UltraSPARC II(6 proc)336MHz& & & 1990 & 4032 \\ Sun UltraSPARC II(4 proc)336MHz& & & 1438 & 2688 \\ Sun UltraSPARC II(2 proc)336MHz& & & 843 & 1344 \\ Sun UltraSPARC II(1 proc)336MHz&-fast -xO5 -xarch=v8plusa & & & \\ & -xchip=ultra -o & 154 & 461 & 672 \\ Cray Y-MP M98 (2 proc. 6 ns) & CF77 5.0 -Zp -Wd-e68 & 154 & 596 & 666 \\ DEC AlphaStation 600 5/333 MHz &-fkapargs='-inline=daxpy & & & \\ &-ur3=100' -tune ev5 -O5 & 153 & & 666 \\ Convex C4/XA-3(3 proc) &fc9.0.0.5 -tm c4 -O3 -ds & & & \\ \hspace{.5in}(7.41 ns) & -ep 3 -is . & 151 & 1933 & 2430 \\ Cray Y-MP M98 (1 proc. 6 ns) & CF77 5.0 -Zp -Wd-e68 & 150 & 307 & 333 \\ Cray Y-MP M92 (2 proc. 6 ns) & CF77 5.0 -Zp -Wd-e68 & 145 & 550 & 666 \\ Cray Y-MP M92 (1 proc. 6 ns) & CF77 5.0 -Zp -Wd-e68 & 145 & 332 & 333 \\ Cray X-MP/416 (2 proc. 8.5 ns) & CF77 5.0 -Zp -Wd-e68 & 143 & 426 & 470 \\ IBM RS/6000-R24 (71.5 MHz) &v3.1.1 xlf -Pv -Wp,-me,-ew& & & \\ &-O3 -qarch=pwrx -qtune=pwrx& & & \\ &-qhot-qhsflt -qnosave & 142 & 246 & 284 \\ DEC Alphastations 433 MHz & f90 -O & 141 & & 866 \\ Hewlett-Packard C160 160 MHz & +Oall +Oinline=daxpy & 140 & 421 & 640 \\ IBM POWER2-990(71.5 MHz) &-O-Pv-Wp-ea478-g1-qarch=pwrx& 140 & 254 & 286 \\ DEC 4100 5/300(4 proc, 300 MHz)& kf77 -inline=daxpy -ur=3 & & & \\ & -fast -O5 -tune ev5 & & 1287 & 2400 \\ DEC 4100 5/300(2 proc, 300 MHz)& kf77 -inline=daxpy -ur=3 & & & \\ & -fast -O5 -tune ev5 & & 734 & 1200 \\ DEC 4100 5/300(1 proc, 300 MHz)& kf77 -inline=daxpy -ur=3 & & & \\ & -fast -O5 -tune ev5 & 140 & 420 & 600 \\ DEC 8400 5/350 (8 proc 350 MHz)& & & 2853 & 5600 \\ DEC 8400 5/350 (6 proc 350 MHz)& & & 2313 & 4200 \\ DEC 8400 5/350 (4 proc 350 MHz)& & & 1678 & 2800 \\ DEC 8400 5/350 (2 proc 350 MHz)& & & 938 & 1400 \\ DEC 8400 5/300 (1 proc 300 MHz)& -inline=daxpy -ur=3 -fast& & & \\ & -O5 -tune ev5 & 140 & 411 & 600 \\ DEC 8200 5/300 (6 proc 300 MHz)& & & 1821 & 3600 \\ DEC 8200 5/300 (4 proc 300 MHz)& & & 1317 & 2400 \\ DEC 8200 5/300 (2 proc 300 MHz)& & & 752 & 1200 \\ DEC 8200 5/300 (1 proc 300 MHz)& -inline=daxpy -ur=3 -fast& & & \\ & -O5 -tune ev5 & 140 & 411 & 600 \\ IBM RS/6000-59H (66 MHz) &v3.1.1 xlf -Pv -Wp,-me,-ew& & & \\ &-O3 -qarch=pwrx -qtune=pwrx& & & \\ &-qhot-qhsflt -qnosave & 132 & 230 & 264 \\ IBM POWER2 model 590(66 MHz)&-O-Pv-Wp,-ea478,-g1-qarch=pwrx&130 & 236 & 264 \\ Convex C4/XA-2(2 proc) &fc9.0.0.5 -tm c4 -O3 -ds & & & \\ \hspace{.5in}(7.41 ns) & -ep 2 -is . & 129 & 1335 & 1620 \\ Cray J916 (16 proc. 10 ns) & CF77 6.0 -Zp -Wd-e68 & & 2471 & 3200 \\ Cray J916 (12 proc. 10 ns) & CF77 6.0 -Zp -Wd-e68 & & 2046 & 2400 \\ Cray J916 (8 proc. 10 ns) & CF77 6.0 -Zp -Wd-e68 & & 1439 & 1600 \\ Cray J916 (7 proc. 10 ns) & CF77 6.0 -Zp -Wd-e68 & 129 & 1254 & 1400 \\ Fujitsu VP2200/10 (4 ns) & FORTRAN77 EX/VP V11L10 & 127 & 842 & 1000 \\ Cray J932 (32 proc. 10 ns) & cf77 (6.0) -Zp -Wd-68 & & 4486 & 6400 \\ Cray J932 (28 proc. 10 ns) & cf77 (6.0) -Zp -Wd-68 & & 4235 & 5600 \\ Cray J932 (24 proc. 10 ns) & cf77 (6.0) -Zp -Wd-68 & & 3775 & 4800 \\ Cray J932 (20 proc. 10 ns) & cf77 (6.0) -Zp -Wd-68 & & 3238 & 4000 \\ Cray J932 (16 proc. 10 ns) & cf77 (6.0) -Zp -Wd-68 & & 2709 & 3200 \\ Cray J932 (12 proc. 10 ns) & cf77 (6.0) -Zp -Wd-68 & & 2029 & 2400 \\ Cray J932 (8 proc. 10 ns) & cf77 (6.0) -Zp -Wd-68 & & 1425 & 1600 \\ Cray J932 (7 proc. 10 ns) & cf77 (6.0) -Zp -Wd-68 & 126 & 1221 & 1400 \\ SGI POWER CHALLENGE & & & & \\ \hspace{.5in}(90 MHz,16 proc) & & & 3240 & 5760 \\ SGI POWER CHALLENGE & & & & \\ \hspace{.5in}(90 MHz,8 proc) & & & 2045 & 2880 \\ SGI POWER CHALLENGE & & & & \\ \hspace{.5in}(90 MHz,4 proc) & & & 1124 & 1440 \\ SGI POWER CHALLENGE & & & & \\ \hspace{.5in}(90 MHz,2 proc) & & & 569 & 720 \\ SGI POWER CHALLENGE &-non\_shared -OPT: & & & \\ \hspace{.5in}(90 MHz,1 proc) &IEEE\_arithmetic=3:roundoff=3& & & \\ &-TENV:X=4 -col120 -WK,-ur=12,& & & \\ &-ur2=200 -WK,-so=3,-ro=3,-o=5& & & \\ &-WK,-inline=daxpy:dscal:idamax& & & \\ &-SWP:max\_pair\_candidates=2& & & \\ & -SWP:strict\_ivdep=false & 126 & 308 & 360 \\ Cray J916 (4 proc. 10 ns) & CF77 6.0 -Zp -Wd-e68 & 121 & 743 & 800 \\ Cray X-MP/416 (1 proc. 8.5 ns) & CF77 5.0 -Zp -Wd-e68 & 121 & 218 & 235 \\ Cray 2S/4-128 (1 proc. 4.1 ns) & CSOS 1.0 level 129 & 120 & 384 & 488 \\ DEC 2100 5/250 (4 proc 250 MHz)& & & 1022 & 2000 \\ DEC 2100 5/250 (2 proc 250 MHz)& & & 578 & 1000 \\ DEC 2100 5/250 (1 proc 250 MHz)& -inline=daxpy -ur=3 -fast& & & \\ & -O5 -tune ev5 & 119 & 317 & 500 \\ Cray J932 (4 proc. 10 ns) & cf77 (6.0) -Zp -Wd-68 & 117 & 730 & 800 \\ SGI Origin 2000 & & & & \\ \hspace{.5in}(195 MHz, 16 proc)& & & 3146 & 6240 \\ SGI Origin 2000 & & & & \\ \hspace{.5in}(195 MHz, 8 proc) & & & 2182 & 3120 \\ SGI Origin 2000 & & & & \\ \hspace{.5in}(195 MHz, 4 proc) & & & 1292 & 1560 \\ SGI Origin 2000 & & & & \\ \hspace{.5in}(195 MHz, 2 proc) & & & 667 & 780 \\ SGI Origin 2000 &-n32 -mips4 -Ofast=ip27 -TENV:X=4& & & \\ \hspace{.5in}(195MHz,1proc)&-LNO:blocking=off:ou\_max=6:pf2=0&114& 344 & 390 \\ IBM RS/6000 F50 (332 MHz,4 proc)& & & 1049 & 2656 \\ IBM RS/6000 F50 (332 MHz,3 proc)& & & 842 & 1992 \\ IBM RS/6000 F50 (332 MHz,2 proc)& & & 599 & 1328 \\ IBM RS/6000 F50 (332 MHz,1 proc)&-O -qhot -qarch=ppc & & & \\ &-qfloat=hsflt -Pv -Wp,-ea478,& & & \\ &-g1 -bnso -bI:/lib/syscalls.exp& & & \\ & -bnodelcsect & 116 & 317 & 664 \\ Fujitsu VP2100/10 (4 ns) & FORTRAN77 EX/VP V11L10 & 112 & 445 & 500 \\ Cray J916 (2 proc. 10 ns) & CF77 6.0 -Zp -Wd-e68 & 111 & 380 & 400 \\ Sun Ultra HPC 6000(250 MHz,30 p)& & & 4755 &15000 \\ Sun Ultra HPC 6000(250 MHz,24 p)& & & 4389 &12000 \\ Sun Ultra HPC 6000(250 MHz,16 p)& & & 3493 & 8000 \\ Sun Ultra HPC 6000(250 MHz,14 p)& & & 3112 & 7000 \\ Sun Ultra HPC 6000(250 MHz, 8 p)& & & 2038 & 4000 \\ Sun Ultra HPC 6000(250 MHz, 6 p)& & & 1607 & 3000 \\ Sun Ultra HPC 6000(250 MHz, 4 p)& & & 1126 & 2000 \\ Sun Ultra HPC 6000 &-fast -native -xarch=v8plusa & & & \\ \hspace{.5in}(250 MHz,1MB L2) &-xsafe=mem -dalign -libmil -xO5& & & \\ &-fsimple=2 -stackvar -xarch=v8plusa& & & \\ &-xcache=16/32/1:512/64/1 -xchip=ultra&& & \\ &-xdepend -xlibmil -xlibmopt -xsafe=mem&& & \\ &-Qoption cg -Qms\_pipe+float\_loop\_ld=16&& & \\ &-xcrossfile & 110 & & 500 \\ Cray J932 (2 proc. 10 ns) & cf77 (6.0) -Zp -Wd-68 & 109 & 376 & 400 \\ Hitachi S-820/80 (4 ns) & FORT77/HAP V23-0C & 107 & & 3000 \\ Cray J916 (1 proc. 10 ns) & CF77 6.0 -Zp -Wd-e68 & 106 & 203 & 200 \\ Cray J932 (1 proc. 10 ns) & cf77 (6.0) -Zp -Wd-68 & 104 & 202 & 200 \\ Cray 2S/8-128 (8 proc. 4.1 ns) & CF77 4.0 -Zp -Wd-e68 & 102 & 2171 & 3902 \\ IBM POWER2 model 58H(55 MHz) &-O-Pv-Wp-ea478-g1-qarch=pwrx& 101 & 197 & 220 \\ SGI POWER CHALLENGE & & & & \\ \hspace{.5in}(75 MHz,18 proc) & & & 3227 & 5400 \\ SGI POWER CHALLENGE & & & & \\ \hspace{.5in}(75 MHz,16 proc) & & & 3033 & 4800 \\ SGI POWER CHALLENGE & & & & \\ \hspace{.5in}(75 MHz,14 proc) & & & 2775 & 4200 \\ SGI POWER CHALLENGE & & & & \\ \hspace{.5in}(75 MHz,12 proc) & & & 2499 & 3600 \\ SGI POWER CHALLENGE & & & & \\ \hspace{.5in}(75 MHz,10 proc) & & & 2167 & 3000 \\ SGI POWER CHALLENGE & & & & \\ \hspace{.5in}(75 MHz,8 proc) & & & 1818 & 2400 \\ SGI POWER CHALLENGE & & & & \\ \hspace{.5in}(75 MHz,6 proc) & & & 1421 & 1800 \\ SGI POWER CHALLENGE & & & & \\ \hspace{.5in}(75 MHz,4 proc) & & & 993 & 1200 \\ SGI POWER CHALLENGE & & & & \\ \hspace{.5in}(75 MHz,2 proc) & & & 505 & 600 \\ SGI POWER CHALLENGE &-non\_shared -OPT: & & & \\ \hspace{.5in}(75 MHz,1 proc) &IEEE\_arithmetic=3:roundoff=3& & & \\ &-TENV:X=4 -col120 -WK,-ur=12,& & & \\ &-ur2=200 -WK,-so=3,-ro=3,-o=5& & & \\ &-WK,-inline=daxpy:dscal:idamax& & & \\ &-SWP:max\_pair\_candidates=2& & & \\ &-SWP:strict\_ivdep=false & 104 & 261 & 300 \\ Convex C4/XA-1(1 proc.)(7.41 ns)&fc9.0.0.5 -tm c4 -O2 -is .& 99 & 705 & 810 \\ ETA 10-G (1 proc. 7 ns) & ETAV/FTN200 & 93 & 496 & 571 \\ Convex C-3880 (8 proc.) (16.7 ns) &fc7.0 -tm c38 -O3 -ep 8 -ds -is .& 86 & 795 & 960 \\ IBM ES/9000-982 VF(8 proc 7.1ns)&VAST-2/VS Fortran V2R5 & & 2278 & 4507 \\ IBM ES/9000-972 VF(7 proc 7.1ns)&VAST-2/VS Fortran V2R5 & & 2072 & 3944 \\ IBM ES/9000-962 VF(6 proc 7.1ns)&VAST-2/VS Fortran V2R5 & & 1923 & 3380 \\ IBM ES/9000-952 VF(5 proc 7.1ns)&VAST-2/VS Fortran V2R5 & & 1681 & 2817 \\ IBM ES/9000-942 VF(4 proc 7.1ns)&VAST-2/VS Fortran V2R5 & & 1377 & 2254 \\ IBM ES/9000-831 VF(3 proc 7.1ns)&VAST-2/VS Fortran V2R5 & & 1082 & 1690 \\ IBM ES/9000-821 VF(2 proc 7.1ns)&VAST-2/VS Fortran V2R5 & & 767 & 1127 \\ IBM ES/9000-711 VF(1 proc 7.1ns)&VAST-2/VS Fortran V2R5 & 86 & 422 & 563 \\ HALstation 300 model 350(118MHz)&-Kfast -Keval -KGREG -Kgs& & & \\ &-KV8PLUS -X7 -Kpreex & & & \\ &-Kpreload -Kfuse -x FLDFLAGS = -dn & 85 & 177 & 236 \\ SUN-Ultra 1 mod. 170 & f77 v4.0 -fast -O4 & 76 & & \\ Convex C-3840 (4 proc.) (16.7 ns) &fc7.0 -tm c38 -O3 -ep 4 -ds -is .& 75 & 425 & 480 \\ HALstation 300 model 330(101MHz)&-Kfast -Keval -KGREG -Kgs& & & \\ &-KV8PLUS -X7 -Kpreex & & & \\ &-Kpreload -Kfuse -x FLDFLAGS = -dn & 72 & 153 & 202 \\ SGI CHALLENGE/Onyx & & & & \\ \hspace{.5in}(6.6ns, 36 proc) & & & 557 & 2700 \\ SGI CHALLENGE/Onyx & & & & \\ \hspace{.5in}(6.6ns, 32 proc) & & & 539 & 2400 \\ SGI CHALLENGE/Onyx & & & & \\ \hspace{.5in}(6.6ns, 28 proc) & & & 531 & 2100 \\ SGI CHALLENGE/Onyx & & & & \\ \hspace{.5in}(6.6ns, 24 proc) & & & 499 & 1800 \\ SGI CHALLENGE/Onyx & & & & \\ \hspace{.5in}(6.6ns, 20 proc) & & & 474 & 1500 \\ SGI CHALLENGE/Onyx & & & & \\ \hspace{.5in}(6.6ns, 18 proc) & & & 458 & 1350 \\ SGI CHALLENGE/Onyx & & & & \\ \hspace{.5in}(6.6ns, 16 proc) & & & 431 & 1200 \\ SGI CHALLENGE/Onyx & & & & \\ \hspace{.5in}(6.6ns, 14 proc) & & & 393 & 1050 \\ SGI CHALLENGE/Onyx & & & & \\ \hspace{.5in}(6.6ns, 12 proc) & & & 374 & 900 \\ SGI CHALLENGE/Onyx & & & & \\ \hspace{.5in}(6.6ns, 10 proc) & & & 338 & 750 \\ SGI CHALLENGE/Onyx &IRIX 5.2,f77,-O2-mips2-Wo,& & & \\ \hspace{.5in}(6.6ns, 8 proc) &-loopunroll,8-Olimit2000-Wf& & & \\ &-dchacheopt-jmpopt-non\_shared& & & \\ &-pfa keep-WK, -WK, & & & \\ &-ipa=daxpy:saxpy,-ur=1,-mc=100& 73 & 311 & 600 \\ Convex C-3830 (3 proc.) (16.7 ns) & & & \\ &fc7.0 -tm c38 -O3 -ep 3 -ds -is .& 71 & 327 & 360 \\ Sun UltraSPARC 1(24 proc)167MHz& & & 3566 & 8000 \\ Sun UltraSPARC 1(20 proc)167MHz& & & 3170 & 6667 \\ Sun UltraSPARC 1(16 proc)167MHz& & & 2761 & 5333 \\ Sun UltraSPARC 1(12 proc)167MHz& & & 2238 & 4000 \\ Sun UltraSPARC 1(8 proc)167MHz & & & 1607 & 2667 \\ Sun UltraSPARC 1(4 proc)167MHz & & & 871 & 1333 \\ Sun UltraSPARC 1(2 proc)167MHz & & & 456 & 667 \\ Sun UltraSPARC 1(1 proc)167MHz &-V -fast -native -dalign & & & \\ & -libmil -xO4 -xsafe=3Dmem& & & \\ & -Qoption cg=20 & & & \\ &-Qms\_pipe+float\_loop\_ld=3D16& & & \\ & -onetrip -xcrossfile & 70 & 237 & 333 \\ SGI CHALLENGE/Onyx &IRIX 5.2,f77,-O2-mips2-Wo,& & & \\ \hspace{.5in}(6.6ns, 6 proc) &-loopunroll,8-Olimit2000-Wf& & & \\ &-dchacheopt-jmpopt-non\_shared& & & \\ &-pfa keep-WK, -WK, & & & \\ &-ipa=daxpy:saxpy,-ur=1,-mc=100& 69 & & 450 \\ Convex SPP-1600(8 proc) 120 MHz& & & 934 & 1920 \\ Convex SPP-1200(8 proc) 120 MHz& & & 656 & 1920 \\ Convex SPP-1600(7 proc) 120 MHz& & & 860 & 1680 \\ Convex SPP-1600(6 proc) 120 MHz& & & 722 & 1440 \\ Convex SPP-1200(6 proc) 120 MHz& & & 530 & 1440 \\ Convex SPP-1600(5 proc) 120 MHz& & & 633 & 1200 \\ Convex SPP-1600(4 proc) 120 MHz& & & 518 & 960 \\ Convex SPP-1200(4 proc) 120 MHz& & & 383 & 960 \\ Convex SPP-1600(3 proc) 120 MHz& & & 415 & 720 \\ Convex SPP-1600(2 proc) 120 MHz& & & 290 & 480 \\ Convex SPP-1200(2 proc) 120 MHz& & & 213 & 480 \\ Convex SPP-1600(1 proc) 120 MHz& fc9.2.1 fc -is & 65 & 195 & 240 \\ Convex SPP-1200(1 proc) 120 MHz& fc9.2.1 fc -is & 65 & 123 & 240 \\ SUN-Ultra 1 mod. 140 & f77 v4.0 -fast -O4 & 63 & & \\ Convex C-3820 (2 proc.) (16.7 ns) & & & \\ &fc7.0 -tm c38 -O3 -ep 2 -ds -is .& 62 & 222 & 240 \\ Cray-2/4-256 (4 proc. 4.1 ns) & cf77 3.0 & 62 & 1226 & 1951 \\ ETA 10-E (1 proc. 10.5 ns) & ETAV/FTN200 & 62 & 334 & 381 \\ Gateway 2000 G6-200 PentiumPro & MS Fortran NT /G5 /Oxb2 & 62 & & 200 \\ IBM ES/9000-900 VF(6 proc. 9 ns)&VAST-2/VS Fortran V2R4 & & 1457 & 2664 \\ IBM ES/9000-860 VF(5 proc. 9 ns)&VAST-2/VS Fortran V2R4 & & 1210 & 2220 \\ IBM ES/9000-820 VF(4 proc. 9 ns)&VAST-2/VS Fortran V2R4 & & 1003 & 1776 \\ IBM ES/9000-740 VF(3 proc. 9 ns)&VAST-2/VS Fortran V2R4 & & 775 & 1332 \\ IBM ES/9000-640 VF(2 proc. 9 ns)&VAST-2/VS Fortran V2R4 & & 539 & 888 \\ IBM ES/9000-660 VF(2 proc. 9 ns)&VAST-2/VS Fortran V2R4 & & 535 & 888 \\ IBM ES/9000-520 VF(1 proc. 9 ns)&VAST-2/VS Fortran V2R4 & 60 & 338 & 444 \\ SGI CHALLENGE/Onyx &IRIX 5.2,f77,-O2-mips2-Wo,& & & \\ \hspace{.5in}(6.6ns, 4 proc) &-loopunroll,8-Olimit2000-Wf& & & \\ &-dchacheopt-jmpopt-non\_shared& & & \\ &-pfa keep-WK, -WK, & & & \\ &-ipa=daxpy:saxpy,-ur=1,-mc=100& 58 & 178 & 300 \\ Cray X-MP/14se (10 ns) & cf77 3.0 & 53 & 184 & 210 \\ DEC 7000-760 (6 proc) 3.64 ns & & & 962 & 1650 \\ DEC 7000-740 (4 proc) 3.64 ns & & & 693 & 1100 \\ DEC 7000-720 (2 proc) 3.64 ns & & & 361 & 550 \\ DEC 7000-710 (1 proc) 3.64 ns &3.6 -O5 -fast & 53 & 208 & 275 \\ IBM RS/6000-390 (66.5 MHz) &v3.1.1 xlf -Pv -Wp,-fz,-me,-ew& & & \\ &-O3 -Q -qstrict -qarch=pwr-qtune&& & \\ &=pwrx -qhot -qhsflt -qnosave& 53 & 181 & 266 \\ DEC 2100 4/275 A500MP(4 proc) & & & 625 & 1100 \\ DEC 2100 4/275 A500MP(2 proc) & & & 348 & 550 \\ DEC 2100 4/275 A500MP(1 proc) &3.6 -O5 -fast & 52 & 208 & 275 \\ DEC 3000-900 (1 proc) 3.64 ns &3.6 -O5 -fast & 52 & 193 & 275 \\ Convex SPP-1000(15 procs)100MHz& & & 965 & 3000 \\ Convex SPP-1000(12 procs)100MHz& & & 916 & 2400 \\ Convex SPP-1000(8 procs)100 MHz& & & 751 & 1600 \\ Convex SPP-1000(4 procs)100 MHz& & & 442 & 800 \\ Convex SPP-1000(2 procs)100 MHz& & & 255 & 400 \\ Convex SPP-1000(1 proc) 100 MHz& fc9.2.1 fc -is & 48 & 123 & 200 \\ Cray-2/4-256 (2 proc. 4.1 ns) & cf77 3.0 & 48 & 709 & 976 \\ IBM ES/9000-711 (1 proc 7.1ns) &VAST-2/VS Fortran V2R5 & 48 & & \\ DEC 3000-700 (1 proc) 4.44 ns &3.6 -O5 -fast & 45 & 164 & 225 \\ DEC 400 4/233 (1 proc) 4.3 ns &3.6 -O5 -fast & 45 & 138 & 233 \\ Convex C-3810 (1 proc.) (16.7 ns)& fc7.0 -tm c38 -O2 -is .& 44 & 113 & 120 \\ DEC 7000-660 (6 procs) 5.0 ns & & & 755 & 1200 \\ DEC 7000-650 (5 procs) 5.0 ns & & & 641 & 1000 \\ DEC 7000-640 (4 procs) 5.0 ns & & & 538 & 800 \\ DEC 7000-630 (3 procs) 5.0 ns & & & 413 & 600 \\ DEC 7000-620 (2 procs) 5.0 ns & & & 279 & 400 \\ DEC 7000-610 (1 proc) 5.0 ns &1.3 -O5 -fast & 44 & 156 & 200 \\ DEC 3000-800 Alpha AXP 5.0 ns &1.3 -O5 -fast & 44 & 145 & 200 \\ DEC 2100-A500MP(4 procs)5.25 ns&1.3 -O5 -fast & & 358 & 760 \\ DEC 2100-A500MP(3 procs)5.25 ns&1.3 -O5 -fast & & 293 & 570 \\ DEC 2100-A500MP(2 procs)5.25 ns&1.3 -O5 -fast & & 209 & 380 \\ DEC 2100-A500MP(1 proc) 5.25 ns&1.3 -O5 -fast & 43 & 129 & 190 \\ DEC 10000-660 Alpha AXP(6 proc)& & & 751 & 1200 \\ DEC 10000-650 Alpha AXP(5 proc)& & & 639 & 1000 \\ DEC 10000-640 Alpha AXP(4 proc)& & & 523 & 800 \\ DEC 10000-630 Alpha AXP(3 proc)& & & 403 & 600 \\ DEC 10000-620 Alpha AXP(2 proc)& & & 273 & 400 \\ DEC 10000-610 Alpha AXP 200 MHz&3.2 inl=daxpy,ur=4,ur2=240& 43 & 155 & 200 \\ NEC SX-2 (6 ns) & FORTRAN 77/SX & 43 & 885 & 1300 \\ Cray Y-MP EL (4 proc. 30 ns) & CF77 5.0 -Zp -Wd-e68 & 41 & 345 & 532 \\ HP 9000/735 (99 MHz) &+OP3 -Wl,-aarchive -WP,-nv& & & \\ &-w, ConvexMLIB 1.2 & 41 & 120 & 198 \\ Compaq Proliant 5000 200 MHz &MS Power Stat. 4.0 Full Opt& 40 & & 200 \\ Cray Y-MP EL98 (8 proc. 30 ns) & CF77 5.0 -Zp -Wd-e68 & 40 & 567 & 1068 \\ Cray Y-MP EL98 (4 proc. 30 ns) & CF77 5.0 -Zp -Wd-e68 & 40 & 357 & 534 \\ Cray Y-MP EL94 (4 proc. 30 ns) & CF77 5.0 -Zp -Wd-e68 & 40 & 331 & 532 \\ Cray S-MP/11v2 (1 proc. 30 ns)&uf77 5.1.2 vec=collapse pi+& 39 & 206 & 267 \\ Cray Y-MP EL94 (2 proc. 30 ns) & CF77 5.0 -Zp -Wd-e68 & 39 & 190 & 266 \\ Cray Y-MP EL (2 proc. 30 ns) & CF77 5.0 -Zp -Wd-e68 & 39 & 191 & 266 \\ DEC 4000-720 (2 procs) 5.25 ns & & & 235 & 380 \\ DEC 4000-710 (1 procs) 5.25 ns &1.3 -O5 -fast & 39 & 143 & 190 \\ DEC 1000 4/200 (5 ns) &3.6 -O5 -fast & 39 & 147 & 200 \\ Cray-2/4-256 (1 proc. 4.1 ns) & cf77 3.0 & 38 & 360 & 488 \\ IBM RISC Sys/6000-580 (62.5MHz)&v2.3 xlf -O -P -Wp,-ea478 & 38 & 104 & 125 \\ IBM RISC Sys/6000-980 (62.5MHz)&v2.3 xlf -O -P -Wp,-ea478 & 38 & 104 & 125 \\ IBM ES/9000-520 (1 proc. 9 ns) & VAST-2/VS Fortran V2R4 & 38 & & \\ IBM ES/9000-820 (1 proc. 9 ns) & VAST-2/VS Fortran V2R4 & 38 & & \\ SGI CHALLENGE/Onyx &IRIX 5.2,f77,-O2-mips2-Wo,& & & \\ \hspace{.5in}(6.6ns, 2 proc) &-loopunroll,8-Olimit2000-Wf& & & \\ &-dchacheopt-jmpopt-non\_shared& & & \\ &-pfa keep-WK, -WK, & & & \\ &-ipa=daxpy:saxpy,-ur=1,-mc=100& 38 & 93.5& 150 \\ DEC 4000-610 Alpha AXP(160 MHz)&3.2 inl=daxpy,ur=4,ur2=240& 36 & 114 & 160 \\ Pentium Pro 200 Mhz &Solaris 2.5 GNU F77 v0.5.5& 38 & & 200 \\ NEC SX-1 & FORTRAN 77/SX & 36 & 422 & 650 \\ Cray Y-MP EL98 (2 proc. 30 ns) & CF77 5.0 -Zp -Wd-e68 & 35 & 192 & 267 \\ Apple Macintosh 9500/233 & MF -O4 -Asched=2,targ=604& 34 & & \\ Apple Macintosh 6500/275 & MF -O4 -Asched=2,targ=604& 20 & & \\ Convex C-3440 (4 proc.) &fc7.0 fc -O3 -ep 4 -ds -is .& 34 & 172 & 200 \\ Cray Y-MP EL98 (1 proc. 30 ns) & CF77 5.0 -Zp -Wd-e68 & 34 & 107 & 133 \\ ETA 10-Q (1 proc. 19 ns) & ETAV/FTN200 & 34 & 185 & 210 \\ Cray Y-MP EL94 (1 proc. 30 ns) & CF77 5.0 -Zp -Wd-e68 & 34 & 107 & 133 \\ Cray Y-MP EL (1 proc. 30 ns) & CF77 5.0 -Zp -Wd-e68 & 34 & 107 & 133 \\ DEC 3000-600 Alpha AXP 5.7 ns &1.3 -O5 -fast & 34 & 129 & 180 \\ Cray S-MP/MCP784(84 proc. 25 ns)& & & 742 & 3360 \\ Cray S-MP/MCP756(56 proc. 25 ns)& & & 678 & 2240 \\ Cray S-MP/MCP728(28 proc. 25 ns)& & & 508 & 1120 \\ Cray S-MP/MCP707 (7 proc. 25 ns)& MCP Release 2.2 & 33 & 194 & 280 \\ DEC 200 4/166 (1 proc) 6 ns &3.6 -O5 -fast & 33 & 100 & 167 \\ FPS 510S MCP784 (84 proc. 25 ns)& & & 548 & 3360 \\ FPS 510S MCP756 (56 proc. 25 ns)& & & 513 & 2240 \\ FPS 510S MCP728 (28 proc. 25 ns)& & & 414 & 1120 \\ FPS 510S MCP707 (7 proc. 25 ns)& pgf77 -O4 -Minline & 33 & 184 & 280 \\ CDC Cyber 2000V & Fortran V2 & 32 & & \\ Convex C-3430 (3 proc.) &fc7.0 fc -O3 -ep 3 -ds -is .& 32 & 132 & 150 \\ Macintosh 7300/200MHz &4.4, Absoft Corp.-c -O -o & 32 & & 200 \\ NEC SX-1E & FORTRAN 77/SX & 32 & 221 & 325 \\ SGI Indigo2 (R4400/200MHz) &-mips2 -Olimit 3000 -Wo, & & & \\ &-loopunroll,8 -Wf,-dcacheopt& & & \\ &-Wf,-dcacheoptx -O3 -non\_shared& 32 & & \\ Alliant FX/2800-200 (14 proc) &fortran 1.1.27 -O -inline & 31 & 325 & 560 \\ IBM RISC Sys/6000-970 (50 MHz)&v2.2.1 xlf -O -P -Wp,-ea478& 31 & 84 & 100 \\ IBM RS/6000 Cluster(8 proc 62.5 MHz)& & & 269 & 1000 \\ IBM RS/6000 Cluster(4 proc 62.5 MHz)& & & 206 & 500 \\ IBM RS/6000 Cluster(2 proc 62.5 MHz)& & & 144 & 250 \\ IBM RS/6000 Cluster(8 proc 50 MHz)& & & 194 & 800 \\ IBM RS/6000 Cluster(6 proc 50 MHz)& & & 174 & 600 \\ IBM RS/6000 Cluster(4 proc 50 MHz)& & & 152 & 400 \\ IBM RS/6000 Cluster(2 proc 50 MHz)& & & 111 & 200 \\ IBM RISC Sys/6000-560 (50 MHz)&v2.2.1 xlf -O -P -Wp,-ea478& 31 & 84 & 100 \\ IBM ES/9000-742 VF(4 proc 11ns)&VAST-2/VS Fortran V2R5 & & 441 & 752 \\ IBM ES/9000-732 VF(3 proc 11ns)&VAST-2/VS Fortran V2R5 & & 352 & 545 \\ IBM ES/9000-622 VF(2 proc 11ns)&VAST-2/VS Fortran V2R5 & & 244 & 364 \\ IBM ES/9000-621 VF(2 proc 11ns)&VAST-2/VS Fortran V2R5 & & 244 & 364 \\ IBM ES/9000-521 VF(2 proc 11ns)&VAST-2/VS Fortran V2R5 & & 185 & 364 \\ IBM ES/9000-511 VF(1 proc 11ns)&VAST-2/VS Fortran V2R5 & 30 & 130 & 182 \\ DEC 3000-500 Alpha AXP(150 MHz)&3.2 inl=daxpy,ur=4,ur2=240& 30 & 107 & 150 \\ Hitachi SR2201(1 proc 150 MHz) &f90 PVEC,OPT(0(S),FOLD(2))& 30 & 248 & 300 \\ SGI CHALLENGES 200Mhz R4400SC & IRIX 5.3 f77 -O4 -mips2 & 30 & & \\ Alliant FX/2800-200 (12 proc) &fortran 1.1.27 -O -inline & 29 & 290 & 480 \\ HP 9000/715 (75 MHz) & HP-UX f77 +OP4 & 29 & & \\ IBM 9672-R12 &VAST-2/VS Fortran 2.5 & 29 & & 83 \\ Sun Sparc 20 90 MHz, (1 proc) &Sun 5.3 -fast -unroll=4 -O4& 29 & & \\ Alliant FX/2800 210 (1 proc) &fortran 1.3.02 -Ovg -inline& 25 & 34 & 50 \\ Alliant FX/2800-200 (10 proc) &fortran 1.1.27 -O -inline & 27 & 250 & 400 \\ ETA 10-P (1 proc. 24 ns) & ETAV/FTN200 & 27 & 146 & 167 \\ Convex C-3420 (2 proc.) &fc7.0 fc -O3 -ep 2 -ds -is .& 27 & 90 & 100 \\ Cray-1S (12.5 ns) & cf77 2.1 & 27 & 110 & 160 \\ Convex C-3240 (4 proc.) &fc -O3 -ep 2 -uo -pp=fcpp1 -is .& 26 & 171 & 200 \\ Convex C-240 (4 proc.) & 6.1 -O3 -ep2 -uo -pp=fcpp1 -is .& 26 & 166 & 200 \\ Convex C-3230 (3 proc.) &fc -O3 -ep 2 -uo -pp=fcpp1 -is .& 26 & 132 & 150 \\ Convex C-230 (3 proc.) & 6.1 -O3 -ep2 -uo -pp=fcpp1 -is .& 26 & 128 & 150 \\ DEC 2000-300 Alpha AXP 6.7 ns &1.3 -O5 -fast & 26 & 88 & 150 \\ DEC 3000-400 Alpha AXP(133 MHz)&3.2 inl=daxpy,ur=4,ur2=240& 26 & 90 & 133 \\ IBM RISC Sys/6000-950 (42 MHz)&v2.2.1 xlf -O -P -Wp,-ea478& 26 & 70 & 84 \\ IBM RISC Sys/6000-550 (42 MHz)&v2.2.1 xlf -O -P -Wp,-ea478& 26 & 70 & 84 \\ IBM RISC Sys/6000-375(62.5 MHz)&v2.3.0 xlf -O -P -Wp,-ea478& 26 & 90 & 125 \\ IBM RISC Sys/6000-370(62.5 MHz)&v2.3.0 xlf -O -P -Wp,-ea478& 26 & 90 & 125 \\ SGI CHALLENGE/Onyx &IRIX 5.2,f77,-O2-mips2-Wo,& & & \\ \hspace{.5in}(6.6ns, 1 proc) &-loopunroll,8-Olimit2000-Wf& & & \\ &-dchacheopt-jmpopt-non\_shared& & & \\ &-pfa keep-WK, -WK, & & & \\ &-ipa=daxpy:saxpy,-ur=1,-mc=100& 26 & 48.4& 75 \\ Alliant FX/2800-200 (8 proc) &fortran 1.1.27 -O -inline & 25 & 207 & 320 \\ NAS AS/EX 100 VPF (4 proc) & & & 320 & 484 \\ NAS AS/EX 90 VPF (3 proc) & & & 251 & 363 \\ NAS AS/EX 80 VPF (2 proc) & & & 173 & 242 \\ NAS AS/EX 60 VPF & VAST-2/VS 2.3.0 opt=3 & 25 & 94 & 121 \\ HP 9000/750 (66 MHz) &+OP3 -Wl,-aarchive -WP,-nv -w& 24 & 47 & 66 \\ HP 9000/730 (66 MHz) &+OP3 -Wl,-aarchive -WP,-nv -w& 24 & 49 & 66 \\ IBM ES/9000 Model 480 VF & VAST-2/VS Fortran V2R4 & & 180 & 266 \\ IBM ES/9000-340 VF (14.5 ns) & VAST-2/VS Fortran V2R4 & 23 & & 138 \\ IBM ES/9000-411 VF(1 proc 11ns)& VAST-2/VS Fortran V2R5 & 23 & 99 & 182 \\ Meiko CS2 (64 proc) & & & 652 &11520 \\ Meiko CS2 (32 proc) & & & 649 & 5760 \\ Meiko CS2 (16 proc) & & & 530 & 2880 \\ Meiko CS2 (8 proc) & & & 420 & 1440 \\ Meiko CS2 (4 proc) & & & 289 & 720 \\ Meiko CS2 (2 proc) & & & 169 & 360 \\ Meiko CS2 (1 proc) &-dalign -O5 -XT=ss10h,unroll=1& 24 & 97 & 180 \\ Fujitsu M1800/20 & EX V10L20 frt -Of -Ne & 23 & & \\ Sun Sparc 10-52 (1 proc) &Sun 3.0 -fast -O4 & & & \\ & -unroll=4 -Bstatic & 23 & & \\ DEC VAX 9000 420VP(2 proc 16 ns)&HPO V1.3-163V, DXML & & 155 & 250 \\ DEC VAX 9000 410VP(1 proc 16 ns)&HPO V1.3-163V, DXML & 22 & 89 & 125 \\ IBM ES/9000-610 VF (4 proc 15 ns)& VAST-2/VS Fortran V2R4 & & 335 & 532 \\ IBM ES/9000-570 VF (3 proc 15 ns)& VAST-2/VS Fortran V2R4 & & 252 & 399 \\ Apple Macintosh 9500/132 &MF77 -O4 -Ashed=2,target=604& 22 & & \\ IBM ES/9000-490 VF (2 proc 15 ns)& VAST-2/VS Fortran V2R4 & & 171 & 266 \\ IBM ES/9000-320 VF (1 proc 15 ns)& VAST-2/VS Fortran V2R4 & 22 & 91 & 133 \\ IBM RISC Sys/6000-570 (50 MHz) &v2.3.0 xlf -O -P -Wp,-ea478& 22 & 73 & 100 \\ IBM RISC Sys/6000-365 (50 MHz) &v2.3.0 xlf -O -P -Wp,-ea478& 22 & 73 & 100 \\ IBM RISC Sys/6000-360 (50 MHz) &v2.3.0 xlf -O -P -Wp,-ea478& 22 & 73 & 100 \\ Multiflow TRACE 28/300 & Fortran 2.2.1 & 22 & 69 & 123 \\ Convex C-3220 (2 proc.) &fc -O3 -ep 2 -uo -pp=fcpp1 -is .& 22 & 89 & 100 \\ Convex C-220 (2 proc.) & 6.1 -O3 -ep2 -uo -pp=fcpp1 -is .& 22 & 87 & 100 \\ % fsplit first then -il -pp=fcpp1 Alliant FX/2800-200 (6 proc) &fortran 1.1.27 -O -inline & 21 & 148 & 240 \\ Siemens VP400-EX (7 ns) & Fortran 77/VP V10L30 & 21 & 794 & 1714 \\ IBM ES/9221-211 (16 ns) & VAST-2/VS Fortran 2.5 & 21 & & \\ Apple Macintosh 6500/275 & MF -O4 -Asched=2,targ=604& 20 & & \\ Apple Power Mac 8500/120 &Absoft Power PC v4.1 -O -U& 20 & & \\ FPS Model 522 & F77 4.2 & 20 & 105 & 133 \\ Fujitsu VP-400 & Fortran 77 V10L30 & 20 & & 1142 \\ IBM RISC Sys/6000-530H(33 MHz)&v2.2.1 xlf -O -P -Wp,-ea478& 20 & 55 & 66 \\ IBM RS/6000-C10(601 - 80 MHz) &v3.1.1 xlf -Pv -Wp,-fz,-me,& & & \\ &-ew -O3 -qarch=ppc -qhot & & & \\ &-qhsflt -qnosave -qnofold & 20 & 63 & 80 \\ IBM ES/9672-R11 (16 ns) & VAST-2/VS Fortran 2.5 & 20 & & \\ Siemens VP200-EX (7 ns) & Fortran 77 V10L30 & 20 & 472 & 857 \\ Amdahl 1400 & 77/VP V10L20 & 19 & 521 & 1142 \\ Amdahl 1200 & 77/VP V10L20 & 19 & 424 & 571 \\ Apple Power Mac 9500/132 &Absoft Power PC v4.1 -O -U& 19 & & \\ Convex C-3410 (1 proc.) &fc7.0 fc -O2 -is . & 19 & 47 & 50 \\ Gateway 2000 P5-133 & MS PS 32 NT /G5 /Oxb2 & 19 & & \\ IBM ES/9000 Model 260 VF (15 ns)& VAST-2/VS Fortran V2R4 & 19 & 78 & 133 \\ IBM RISC Sys/6000-550L(42 MHz)&v2.3.0 xlf -O -P -Wp,-ea478& 19 & 61 & 82 \\ IBM RISC Sys/6000-540 (30 MHz)&v2.2.1 xlf -O -P -Wp,-ea478& 19 & 50 & 60 \\ IBM RISC Sys/6000-355 (42 MHz)&v2.3.0 xlf -O -P -Wp,-ea478& 19 & 61 & 84 \\ IBM RISC Sys/6000-350 (42 MHz)&v2.2.1 xlf -O -P -Wp,-ea478& 19 & 61 & 84 \\ IBM RISC Sys/6000-34H (42 MHz)&v2.3.0 xlf -O -P -Wp,-ea478& 19 & 61 & 84 \\ IBM ES/9000-311 VF(1 proc 11ns)& VAST-2/VS Fortran V2R5 & 19 & 82 & 182 \\ Cray S-MP/11 (1 proc. 30 ns) &uf77 5.1.2 -Oc a2 & 18 & 60 & 67 \\ Compaq Deskpro 4000 166 MHz &MS Power Stat. 4.0 Full Opt& 18 & & 166 \\ Fujitsu VP-200 & Fortran 77 & 18 & 422 & 533 \\ HP 9000/720 (50 MHz) & HP-UX 8.05 f77 +OP4 +O3 & 18 & 36 & 50 \\ IBM ES/9221-201 (16 ns) & VAST-2/VS Fortran 2.5 & 18 & & \\ NAS AS/EX 50 VPF & VAST-2/VS 2.3.0 & 18 & 82 & 121 \\ SGI 4D/480(8 proc) 40MHz & f77 -O2 -mp & 18 & 71 & 128 \\ Siemens VP100-EX (7 ns) & Fortran 77/VP V10L30 & 18 & 254 & 428 \\ Sun 670MP Ross Hypersparc(55Mhz)&-cg89 -dalign -libmil -O4& 18 & & \\ Apple PowerMacintosh 8100/100 & Motorola MF77 -O4 & 17 & & \\ Apple Power Mac 6500/275 & Absoft f77 v4.4 -O & 17 & & \\ Alliant FX/2800-200 (4 proc) &fortran 1.1.27 -O -inline & 17 & 94 & 160 \\ Amdahl 1100 & 77/VP V10L20 & 17 & 248 & 285 \\ CDC CYBER 205 (4-pipe) & FTN & 17 & 195 & 400 \\ CDC CYBER 205 (2-pipe) & FTN & 17 & 113 & 200 \\ Convex C-3210 (1 proc.) &fc -O2 -uo -pp=fcpp1 -is .& 17 & 44 & 50 \\ Convex C-210 (1 proc.) &6.1 -O2 -uo -pp=fcpp1 -is .& 17 & 44 & 50 \\ Cray XMS (55 ns) & cf77 5.0 -Zp -Wd-e68 & 17 & 34 & 36 \\ Hitachi S-810/20 & FORT77/HAP & 17 & & 840 \\ IBM ES/9000 Model 210 VF (15 ns)& VAST-2/VS Fortran V2R4 & 17 & 72 & 133 \\ Siemens VP50-EX (7 ns) & Fortran 77/VP V10L30 & 17 & 238 & 285 \\ Multiflow TRACE 14/300 & Fortran 2.2.1 & 17 & 42 & 63 \\ Amdahl 500 & 77/VP V10L20 & 16 & 133 & 142 \\ Fujitsu VP-100 & Fortran 77 & 16 & & 267 \\ Hitachi M680H/vector & Fort 77 E2 V04-0I & 16 & & \\ Hitachi S-810/10 & HAP V21.00 & 16 & & 315 \\ IBM 3090/600J VF (6 proc, 14.5 ns)& & & 540 & 828 \\ IBM 3090/500J VF (5 proc, 14.5 ns)& & & 458 & 690 \\ IBM 3090/400J VF (4 proc, 14.5 ns)& & & 370 & 552 \\ IBM 3090/380J VF (3 proc, 14.5 ns)& & & 282 & 414 \\ IBM 3090/300J VF (3 proc, 14.5 ns)& & & 284 & 414 \\ IBM 3090/280J VF (2 proc, 14.5 ns)& & & 191 & 276 \\ IBM 3090/200J VF (2 proc, 14.5 ns)& & & 192 & 276 \\ IBM 3090/180J VF (1 proc, 14.5 ns)& VS Fortran V2R3 & 16 & 97 & 138 \\ PowerPC 601/100 MHz & LS Fortran 1.5 prerelease& 16 & & \\ SGI Crimson(1 proc 50 MHz R4000)&-O2 -mips2 -G 8192 & 16 & 32 & 50 \\ SGI 4D/380(8 proc) 33MHz & f77 -O2 -mp & 16 & 60 & 106 \\ SGI Indigo2 Extreme(R4000/100MHz)&-O2 -mips2 -G 8192 & 15 & & \\ FPS Model 511 & F77 4.2 & 15 & 56 & 67 \\ Hitachi M680H & Fort 77 E2 V04-0I & 15 & & \\ IBM RISC Sys/6000-930 (25 MHz)&v2.2.1 xlf -O -P -Wp,-ea478& 15 & 42 & 50 \\ IBM RISC Sys/6000-530 (25 MHz)&v2.2.1 xlf -O -P -Wp,-ea478& 15 & 42 & 50 \\ IBM RISC Sys/6000-340 (33 MHz)&v2.2.1 xlf -O -P -Wp,-ea478& 15 & 49 & 66 \\ IBM ES/9000-511 (1 proc 11ns) &VAST-2/VS Fortran V2R5 & 15 & & \\ Kendall Square (32 proc) & & & 513 & 1280 \\ Kendall Square (16 proc) & & & 307 & 640 \\ Kendall Square (8 proc) & & & 146 & 320 \\ Kendall Square (4 proc) & & & 47 & 160 \\ Kendall Square (1 proc) &ksrf77 -O2 -r8 -inline\_auto& 15 & 31 & 40 \\ NAS AS/EX 60 & Fortran & 15 & & 40 \\ SGI 4D/440(4 proc) 40MHz & f77 -O2 -mp & 15 & 42 & 64 \\ Siemens H120F & Fortran 77 & 15 & & \\ Apple Power Mac 5500/250 & Absoft f77 v4.4 -O & 14 & & \\ Power Computing 100/601/100 & Absoft f77 Power PC v4.1 & 14 & & \\ Cydrome CYDRA 5 & Fortran 77 Rel 2.4.1 & 14 & & 25 \\ Fujitsu VP-50 & Fortran 77 & 14 & & 133 \\ IBM ES/9000 Model 190 VF(15 ns)& VAST-2/VS Fortran V2R4 & 14 & 60 & 133 \\ IBM ES/9221-191 (16 ns) & VAST-2/VS Fortran 2.5 & 14 & & \\ Apple Power Mac 7100/80 & Absoft f77 Power PC v4.1 & 13 & & \\ DELL XMT5133 Pentium 133MHz & PS 32 NT V 1.0 /G5 /Oxb2 & 14 & & \\ IBM POWERPC 250 (66 MHz) &-O-Pv-Wp-ea478-g1-qarch=pwrx& 13 & & 66 \\ IBM 3090/180E VF & VS 2.1.1 opt=3 & 13 & 71 & 116 \\ SGI 4D/340(4 proc) 33MHz & f77 -O2 -mp & 13 & 36 & 53 \\ Apple Power Mac 7500/100 & Absoft f77 Power PC v4.1 & 12 & & \\ Apple Power Mac 8100/80 & Absoft f77 Power PC v4.1 & 12 & & \\ CDC CYBER 990E & FTN V2 VL=HIGH & 12 & & \\ Cray-1S (12.5 ns, 1983 run) & CFT 1.12 & 12 & 110 & 160 \\ Gateway 2000 P5-100XL &MS PS 32 /G5 /Ox /D "NDEBUG"& 12 & & \\ IBM 3090/180 VF & VS Fortran V2 & 12 & 65 & 108 \\ IBM RISC Sys/6000-520H(25 MHz)&v2.2.1 xlf -O -P -Wp,-ea478& 12 & 37 & 50 \\ IBM RISC Sys/6000-320H(25 MHz)&v2.2.1 xlf -O -P -Wp,-ea478& 12 & 37 & 50 \\ SGI Indigo 4000 50MHz & -O2 -mips2 -G 8192 -sopt & 12 & & \\ Stardent 3040 & 3.0 -inline -nmax=300 & 12 & 77 & 128 \\ Stardent 3030 & 3.0 -inline -nmax=300 & 12 & 63 & 96 \\ Stardent 2040 (Stellar GS2000) & f77 -O3 -is R2.1 & 12 & & 40 \\ Stardent 1040 (Stellar GS1000) & f77 -O3 -is -re R2.0 & 12 & & 40 \\ CDC 4680InfoServer (60 MHz)&f77 2.20 -O3 -mips2 -Wb,-r6000& 11 & & \\ Cray S-MP/MCP101 (1 proc. 25 ns)& MCP Release 2.2 & 11 & 31 & 40 \\ FPS 510S MCP101 (1 proc. 25 ns)& pgf77 -O4 & 11 & 30 & 40 \\ IBM ES/9000 Model 340 & VAST-2/VS Fortran V2R4 & 11 & & \\ IBM ES/9000-411 (1 proc 11ns) & VAST-2/VS Fortran V2R5 & 11 & & \\ Meiko Comp. Surface (32 proc) & & & 210 & 1280 \\ Meiko Comp. Surface (16 proc) & & & 187 & 640 \\ Meiko Comp. Surface (8 proc) & & & 147 & 320 \\ Meiko Comp. Surface (4 proc) & & & 98 & 160 \\ Meiko Comp. Surface (2 proc) & -O4 -Mvect=smallvect & & 58 & 80 \\ Meiko Comp. Surface (1 proc) &-Minline=daxpy & 11 & 31 & 40 \\ Gateway 2000 P5-90(90 MHz Pentium)&Windows NT /G5 /Oxb2 & 11 & & \\ SGI Power Series 50MHz R4000 & -O2 -mips2 -G 8192 -sopt & 11 & & \\ Stardent 3020 & 3.0 -inline -nmax=300 & 11 & 46 & 64 \\ Sperry 1100/90 ext w/ISP & UCS level 2 & 11 & & \\ Multiflow TRACE 7/300 & Fortran 2.2.1 & 11 & 22 & 31 \\ Alliant FX/2800-200 (2 proc) &fortran 1.1.27 -O -inline & 10 & 53 & 80 \\ Alliant FX/80 (8 proc.) & -O -DAS -inline & 10 & 69 & 188 \\ IBM 3090/180J & VS Fortran V2R3 & 10 & & \\ Intel Paragon (1 proc) & -O4 -Mvect=smallvect & 10 & 34 & 50 \\ & -Minline=daxpy -Knoieee & & & \\ MIPS RC6280 (60.0MHz) & f77 2.20 -O & 10 & 16 & 24 \\ MIPS RC6260 (60.0MHz) & f77 2.20 -O & 10 & 16 & 24 \\ Multiflow TRACE 14/200 & Fortran 1.7 & 10 & & 31 \\ Stardent 3010 & 3.0 -inline -nmax=300 & 10 & 25 & 32 \\ Stardent 1540 (Ardent Titan-4) & & & 47 & 64 \\ Stardent 1530 (Ardent Titan-3) & & & 37 & 48 \\ Stardent 1520 (Ardent Titan-2) & f77 1.0 -O3 -inline & 10 & 25 & 32 \\ Sun Sparc2000(50 MHz)(16 proc) & & & 333 & 800 \\ Sun Sparc2000(50 MHz)(12 proc) & & & 295 & 600 \\ Sun Sparc2000(50 MHz)(8 proc) & & & 223 & 400 \\ Sun Sparc2000(50 MHz)(1 proc) & & & 28 & 50 \\ Sun Sparc1000(50 MHz)(8 proc) & & & 198 & 400 \\ Sun Sparc1000(50 MHz)(4 proc) & & & 107 & 200 \\ Sun Sparc1000(50 MHz)(2 proc) & & & 53 & 100 \\ Sun Sparc1000(50 MHz)(1 proc) & & & 25 & 50 \\ Sun Sparc10/514(50 MHz)(4 proc)& & & 98 & 200 \\ Sun Sparc10/512(50 MHz)(2 proc)& & & 57 & 100 \\ Sun Sparc10/51(50 MHz)(1 proc) & & & 27 & 50 \\ Sun Sparc10/402(40 MHz)(2 proc)& & & 41 & 81 \\ Sun Sparc10/40(40 MHz)(1 proc)&-fast -O4 -unroll=4 -Bstatic& 10 & 23 & 40 \\ Intel iPSC/Delta (512 proc) & & & 446 &20480 \\ Intel iPSC/Delta (256 proc) & & & 418 &10240 \\ Intel iPSC/Delta (128 proc) & & & 393 & 5120 \\ Intel iPSC/Delta (64 proc) & & & 352 & 2560 \\ Intel iPSC/Delta (32 proc) & & & 304 & 1280 \\ Intel iPSC/Delta (16 proc) & & & 231 & 640 \\ Intel iPSC/Delta (8 proc) & & & 163 & 320 \\ Intel iPSC/Delta (4 proc) & & & 100 & 160 \\ Intel iPSC/Delta (2 proc) & if77 -O4 -Mvect=smallvect& & 58 & 80 \\ Intel iPSC/Delta (1 proc) & -Minline=daxpy -Knoieee & 9.8 & 34 & 40 \\ Intel iPSC/860 d7 (128 proc) & & & 219 & 5120 \\ Intel iPSC/860 d6 (64 proc) & & & 208 & 2560 \\ Intel iPSC/860 d5 (32 proc) & & & 167 & 1280 \\ Intel iPSC/860 d4 (16 proc) & & & 131 & 640 \\ Intel iPSC/860 d3 (8 proc) & & & 103 & 320 \\ Intel iPSC/860 d2 (4 proc) & & & 75 & 160 \\ Intel iPSC/860 d1 (2 proc) & if77 -O4 -Mvect=smallvect& & 52 & 80 \\ Intel iPSC/860 d0 (1 proc) & -Minline=daxpy -Knoieee & 9.8 & 34 & 40 \\ SGI 4D/240(4 proc) 25MHz & f77 -O2 -mp & 9.8 & 28 & 40 \\ Apple Power Mac 6100/66 & Absoft f77 Power PC v4.1 & 9.7 & & \\ Apple Power Macintosh 6100/60 & Absoft v4.0 F77 -O & 9.6 & & \\ IBM 3090/180S & VS Fortran 2.3.0 & 9.6 & 92 & 133 \\ Alliant FX/80 (7 proc.) & -O -DAS -inline & 9.5 & 63 & 165 \\ CDC CYBER 4680 & f77 2.11.2 o2 & 9.4 & & \\ IBM Power Vis. Sys. (32 proc.) & & & 310 & 1280 \\ IBM Power Vis. Sys. (1 proc.) & -O4 -Minline=daxpy & 9.3 & & \\ NAS AS/EX 50 & Fortran & 9.3 & & 28 \\ Sun SPARCsystem 10/30 36MHz &f77 -O4 -cg89 -libmil -native& 9.3 & & \\ SGI 4D/420(2 proc) 40MHz & f77 -O2 -mp & 9.3 & 23 & 32 \\ IBM RISC Sys/6000-520 (20 MHz)&v2.2.1 xlf -O -P -Wp,-ea478& 9.0 & 29 & 40 \\ IBM RISC Sys/6000-320 (20 MHz)&v2.2.1 xlf -O -P -Wp,-ea478& 9.0 & 29 & 40 \\ IBM ES/9000-180 VF(15 ns) & VAST-2/VS Fortran V2R4 & 8.9 & 48 & 133 \\ Solbourne 6/904 (Viking sparc) & f77 -O3 -cg89 -dalign & 8.9 & & \\ IBM RISC Sys/6000-230 (45 MHz)&v2.3.0 xlf -O -P -Wp,-ea478& 8.8 & 19 & 90 \\ DEC VAXvector 6000/520 (2 proc)& Fortran HPO V1.2 & 8.8 & 51 & 90 \\ Comparex 8/92 (Fujitsu M382) & VS/FORTRAN 2.4.0 & 8.7 & & \\ DEC VAXstation 4000-90 & V 5.2 & 8.7 & & \\ Apple Power Macintosh 7100/66 & Absoft v4.0 F77 -O & 8.6 & & \\ IBM ES/9000-311 (1 proc 11ns) & VAST-2/VS Fortran V2R5 & 8.6 & & \\ IBM ES/9000 Model 320 & VAST-2/VS Fortran V2R4 & 8.5 & & \\ NAS AS/9160 & VAST/VS 1.4.1 opt=3 & 8.3 & & \\ Alliant FX/80 (5 proc.) & -O -DAS -inline & 8.1 & 49 & 118 \\ IBM ES/9000 Model 260 & VAST-2/VS Fortran V2R4 & 8.0 & & \\ SCS-40 & CFT 1.13 & 8.0 & 17 & 45 \\ SGI 4D/320(2 proc) 33MHz & f77 -O2 -mp & 8.0 & 20 & 26 \\ IBM ES/9000 Model 210 & VAST-2/VS Fortran V2R4 & 7.7 & & \\ IBM ES/9000 Model 320 & VS/FORTRAN V2R4 & 7.6 & & \\ IBM 3090/120E VF & VS 2.1.1 opt=3 & 7.5 & 54 & 108 \\ IBM 3090/180E & VS 2.1.1 opt=3 & 7.4 & 71 & 116 \\ Siemens 7890F & Fortran 77 V10.3 & 7.2 & & \\ Convex C-130 & Fortran 4.0 & 7.2 & 31 & 36 \\ Alliant FX/80 (4 proc.) & -O -DAS -inline & 7.2 & 33 & 94 \\ DEC VAXvector 6000/510 (1 proc)& Fortran HPO V1.2 & 7.0 & 28 & 45 \\ CECpx XL 560 Pentium 60 MHz & 10.5 wfc386 /l=dos4g /ox & 7.2 & & \\ Sun SPARCsystem 10/41 40MHz &f77 -native -fast -O4 -Bstatic&7.0 & & \\ Stardent 1510 (Ardent Titan-1) & f77 1.0 -O2 -inline & 6.9 & 13 & 16 \\ IBM 3090/180 & VS opt=3 & 6.8 & 65 & 108 \\ Alliant FX/40 (4 proc.) & -O -DAS -inline & 6.7 & 33 & 94 \\ IBM RS/6000-N40(PowerPC601 50MHz)&xlf -O -P -Wp,-ea478 & 6.7 & & 50 \\ IBM RISC Sys/6000-M20 (33 MHz) &v2.3.0 xlf -O -P -Wp,-ea478&6.6 & 14 & 66 \\ IBM RISC Sys/6000-M2A (33 MHz) &v2.3.0 xlf -O -P -Wp,-ea478&6.6 & 14 & 66 \\ IBM ES/9000 Model 190 & VAST-2/VS Fortran V2R4 & 6.6 & & 133 \\ Convex C-120 & fc 5.1 & 6.5 & 17 & 20 \\ IBM RISC Sys/6000-220 (33 MHz) &v2.2.1 xlf -O -P -Wp,ea478& 6.5 & 14 & 66 \\ Alliant FX/4 (4 proc.) & -O -DAS -inline & 6.4 & 21 & 47 \\ Alliant FX/2800-200 (1 proc) &fortran 1.1.27 -O -inline & 6.4 & 28 & 40 \\ Apple PowerBook PB1400cs(133 MHz)&MF -O4 -Asched=2,targ=604&6.3 & & \\ Fujitsu M-380 & Fortran 77, opt=3 & 6.3 & & \\ DEC VAX 6620 & V5.5 & 6.2 & & \\ Multiflow TRACE 7/200 & Fortran 1.4 & 6.0 & & 15 \\ SGI 4D/420(1 proc) 40MHz & f77 -O2 & 6.0 & 12 & 16 \\ Apple Performa 6230CD/603/75 & Absoft f77 Power PC v4.1 & 5.9 & & \\ Siemens 7890G & Fortran 77 V10.3 opt=4 & 5.9 & & \\ IBM 3090/150E & VS 2.1.1 opt=3 & 5.9 & 64 & 112 \\ FPS-264 (M64/60) & F02 APFTN64 OPT=4 & 5.9 & 34 & 38 \\ Alliant FX/80 (3 proc.) & -O -DAS -inline & 5.9 & 32 & 71 \\ SGI 4D/220(2 proc) 25MHz & f77 -O2 -mp & 5.9 & 15 & 20 \\ Apollo DN10000 & f77,10.7 & 5.8 & & \\ Alliant FX/40 (3 proc.) & -O -DAS -inline & 5.6 & 27 & 71 \\ Gateway P5-60 (60 MHz Pentium) & F77L-EM32 5.01 /4 /Z1 & 5.4 & & \\ DEC 5900 RISC & Ultrix 4.1 & 5.3 & & \\ DEC 5000/240 & Ultrix & 5.3 & & \\ Gateway P5-60 (60 MHz Pentium) & 77/32/mf/d1/warn/5/fp5/ot& 5.3 & & \\ Alliant FX/4 (3 proc.) & -O -DAS -inline & 5.1 & 17 & 35 \\ CDC 4330-300 (33 MHz) & f77 2.20 -O3 & 5.1 & & \\ Number-Smasher 860 40MHz &NDP -vast-inline-on-OLM-fdiv& 5.1 & & \\ VAXstation 4000-90 & DEC FORTRAN V5.2 & 5.1 & & \\ DEC VAX 6000/610 (1 proc) & VMS V5.2 & 5.0 & & \\ Intel iPSC/2 d4/VX (16 proc) & & & 39 & \\ Intel iPSC/2 d5/VX (32 proc) & & & 52 & \\ SGI 4D/310(1 proc) 33MHz & f77 -O2 & 5.0 & 10 & 13 \\ Honeywell DPS90 & ES F77V 1.0 & 5.0 & & \\ Siemens 7890D & Fortran 77 V10.3 & 5.0 & & \\ IBM ES/9000 Model 180 (15 ns) & VAST-2/VS Fortran V2R4 & 4.9 & & \\ CDC CYBER 875 & FTN 5 opt=3 & 4.8 & & \\ Number Smasher i860 40MHz & -on -OLM -fdiv -inline & 4.7 & & 40 \\ CDC CYBER 176 & FTN 5.1 opt=2 & 4.6 & & \\ MIPS RC3360 (33.3MHz) & f77 2.20 -O & 4.5 & 11 & 13 \\ Alliant FX/80 (2 proc.) & -O -DAS -inline & 4.4 & 22 & 47 \\ AMD 486DX5-133 & f2c and gcc2.7.0 & 4.4 & & \\ Alliant FX/40 (2 proc.) & -O -DAS -inline & 4.3 & 19 & 47 \\ NAS AS/EX 30 & VS 1.4.1 opt=3 & 4.3 & & \\ SGI 4D/35 & f77 -O3 & 4.3 & & \\ Sun 4/600 MP &f77 1.4 -O3 -cg89 -dalign & 4.3 & & \\ IBM ES/9221-170 (16 ns) & VAST-2/VS Fortran 2.5 & 4.1 & & \\ Sun SPARCstation IPX &f77 1.4 -O3 -cg89 -dalign & 4.1 & & \\ Sun 4/50 IPX &f77 1.4 -O3 -cg89 -dalign & 4.1 & & \\ CDC CYBER 4360 & f77 2.11.2 o2 & 4.0 & & \\ Sun SPARCstation 2 &f77 1.4 -O3 -cg89 -dalign & 4.0 & & \\ SGI Indigo 33MHz R3000 & -O2 -G 8192 -sopt & 4.0 & & \\ Amdahl 5860 HSFPF & H enhanced opt=3 & 3.9 & & \\ MIPS M/2000 (25.0MHz) & f77 2.20 -O & 3.9 & 7.9 & 10 \\ MIPS RC3260 (25.0MHz) & f77 2.20 -O & 3.9 & 7.9 & 10 \\ Alliant FX/4 (2 proc.) & -O -DAS -inline & 3.8 & 12 & 24 \\ SGI 4D/210(1 proc) 25MHz & f77 -O2 & 3.9 & 7.8 & 10 \\ Amdahl 5860 HSFPF & VS opt=3 & 3.8 & & \\ CDC 4320 & f77 2.20 opt=02 & 3.7 & & \\ DEC station 5000/200 (25 Mhz) & MIPS f77 2.0 & 3.7 & & \\ MIPS RS3230 (25.0MHz) & f77 2.20 -O & 3.7 & 7.8 & 10 \\ DEC VAXvector 6000/420 (2 proc)& Fortran HPO V1.0 & & 43 & 90 \\ DEC VAXvector 6000/410 (1 proc)& Fortran HPO V1.0 & 3.6 & 24 & 45 \\ Sun 4/490 & 4.1.1 f77 -O3 & 3.6 & & \\ CDC 4330 & f77 2.20 opt=02 & 3.5 & & \\ Apple Power Macintosh 6100/60 & Absoft F77 SDK & 3.4 & & \\ NAS 8093 w/HSA & VS 1.4.0 opt=3 & 3.5 & & \\ CDC 7600 & FTN & 3.3 & & \\ Sun Sparc ELC &-dalign -xcg89 -fsimple -O4& 3.3 & & \\ CDC CYBER 960-31 & NOS/VE 1.3.1 FTN 1.6 & 3.1 & & \\ Gould NP1 & Fortran & 3.1 & & \\ IBM 3090/120E & VS 2.1.1 opt=3 & 3.1 & 54 & 108 \\ MIPS RC3240 (25.0MHz) & f77 2.20 -O & 3.1 & 7.1 & 10 \\ Tadpole SPARCbook 2 & f77 -O & 3.1 & & \\ CDC CYBER 4340 & f77 2.11.2 o2 & 3.0 & & \\ Convex C-1/XP & Fortran 2.0 & 3.0 & & 20 \\ DEC VAX 6540 & VMS 5.4-2 & 3.0 & & \\ FPS-264/20 (M64/50) & F02 APFTN64 OPT=4 & 3.0 & 17 & \\ Harris Nighthawk 4802 (88100) & f77 & 3.0 & & \\ Convex C-1/XL & Fortran 1.6 & 2.9 & & 20 \\ IBM ES/9000 Model 150 & VS Fortran V2R4 & 2.9 & & \\ NAS AS/EX 25 & VS 1.4.1 opt=3 & 2.9 & & \\ Solbourne 5/602 & f77 (Sun) 1.2 -O3 -dalign& 2.9 & & \\ Sun 4/330 & f77 1.4 -O3 -dalign & 2.7 & & \\ Sun 4/370 &f77 1.3.1 -O3 -cg89 -dalign& 2.7 & & \\ CDC CYBER 760 & FTN 5, opt=3 & 2.6 & & \\ CyberPlus & CPFTN 1.1-07 & 2.6 & & \\ IBM 370/195 & H enhanced opt=3 & 2.5 & & \\ Sun 4/330 SparcServer & f77 1.2, -O3 -dalign & 2.5 & & \\ Alliant FX/80 (1 proc.) & -O -DAS -inline & 2.4 & 12 & 24 \\ Alliant FX/40 (1 proc.) & -O -DAS -inline & 2.4 & 10 & 24 \\ Gateway 2000 66 MHz 80486-DX2 & F77L-EM32 5.01 /4 /Z1 & 2.4 & & \\ Apple Mac Quadra 840AV &Absoft -w -v -O -f -s -N40& 2.3 & & \\ HP-APOLLO 9000/425e (68040) & f77 -O4 rev 10.3.5 & 2.3 & & \\ NAS AS/EX 20 & VS 1.4.1 opt=3 & 2.2 & & \\ Fujitsu AP1000 (512 proc.) & & & 610 & 2844 \\ Fujitsu AP1000 (256 proc.) & & & 333 & 1422 \\ Fujitsu AP1000 (128 proc.) & & & 193 & 711 \\ Fujitsu AP1000 (64 proc.) & & & 100 & 356 \\ Fujitsu AP1000 (1 proc.) & Sun f77 1.3.1 -O3 -dalign& 2.2 & 1.7 & 5.6 \\ HP-APOLLO 9000/425t (68040) & f77 -O4 rev 10.3.4 & 2.2 & & \\ Alliant FX/4 (1 proc.) & -O -DAS -inline & 2.1 & 6.3 & 12 \\ CDC CYBER 175 & FTN 5 opt=2 & 2.1 & & \\ CDC CYBER 180-860 & NOS/VE OPT=HIGH & 2.1 & & \\ FPS-M64/30 & APFTN464 OPT=4 & 2.1 & 10 & \\ IBM ES/9000 Model 130 & VS Fortran V2R4 & 2.1 & & \\ IBM 3081 K (1 proc.) & H enhanced opt=3 & 2.1 & & \\ MIPS M120-5 & UMIPS v.3 3.0 f771.31 -O & 2.1 & 3.6 & 8.3 \\ MIPS M/120 (16.7MHz) & f77 2.20 -O & 2.1 & 4.8 & 6.7 \\ Prism" 486-50 (50 MHz) &Salford v2.69 /optimise & 2.1 & & \\ Tadpole SPARCbook (25 MHz) & f77 -O & 2.1 & & \\ Apple Macintosh QUADRA 950 &Absoft -w -v -O -f -s -N40& 2.0 & & \\ CDC 7600 & Local & 2.0 & & \\ IBM 3081 K (1 proc.) & VS opt=3 & 2.0 & & \\ Culler PSC & CSD Fortran 3.21 & 2.0 & & 5 \\ FPS M64/35 & APFTN464 & 2.0 & & \\ Micronics 486-50MHz EISA2 & NDP Fortran 486: -on & 2.0 & & \\ HP 425T (68040) & & 1.9 & & \\ CDC CYBER 175 & FTN 5 opt=1 & 1.8 & & \\ HP 9000 Series 835 & 2.1 fc -O & 1.8 & & \\ Sperry 1100/90 & FTN opt=ZEO & 1.8 & & \\ Sun SPARCstation 1+ &f77 1.4 -O3 -cg89 -dalign & 1.8 & & \\ ELXSI 6420 (5 proc.) & & & 6.4 & \\ ELXSI 6420 (3 proc.) & & & 4.0 & \\ ELXSI 6420 (2 proc.) & & & 2.7 & \\ ELXSI 6420 (1 proc.) &EMBOS 6.3 +opt+inline+vector& 1.7 & 1.4 & \\ FPS-164/364 (M64/40) & F02 APFTN64 OPT=4 & 1.7 & 9 & \\ Honeywell DPS 8/88 & FR7X & 1.7 & & \\ IBM 3033 & H enhanced opt=3 & 1.7 & & \\ IBM 3033 & VS opt=3 & 1.7 & & \\ IBM 3081 D & VS opt=3 & 1.7 & & \\ MIPS RS2030 (16.7MHz) & f77 2.20 -O & 1.7 & 4.7 & 6.7 \\ Sperry 1100/90 ext & UFTN & 1.7 & & \\ HP 9000 Series 850 w/fp & 2.0 fc -O & 1.6 & & \\ Amdahl 470 V/8 & H enhanced opt=3 & 1.6 & & \\ CDC CYBER 170-750 & FTN 5.1, opt=3 & 1.6 & & \\ CDC CYBER 180-850 & NOS/VE OPT=HIGH & 1.6 & & \\ DECstation 3100 & V3.0/V1.31 -O & 1.6 & & \\ DEC 5400 & f77 -O3 & 1.6 & & \\ Amdahl 470 V/8 & VS opt=3 & 1.5 & & \\ DEC VAXstation 4000-60 & V 5.2 & 1.5 & & \\ MIPS M/1000 (15.0MHz) & f77 2.20 -O & 1.5 & 3.7 & 6 \\ NAS 8093 & VS 1.4.0 opt=3 & 1.5 & & \\ Siemens 7570-P & For1 1.6A & 1.5 & & \\ ALR 486/33 m-board, 256K cache & Lahey F77L3, v5.0 /Z1 & 1.4 & & \\ Apple Mac Quadra 700 &Absoft -w -v -O -f -s -N40& 1.4 & & \\ Compaq Deskpro 486/33l-120 w/487&Microway NDPF487 -O -OL -on&1.4& & \\ NeXTCube & 2.0 gcc 1.36 -O & 1.4 & & \\ Sun SPARCstation 1 &f77 1.3.1 -O3 -cg89 -dalign& 1.4 & & \\ IBM 4381-23 & VS Fortran 2.1.1 opt=3 & 1.3 & & \\ Compaq Deskpro 486/33l-120 w/487&Salford FTN77/ optimized & 1.3 & & \\ Compaq Deskpro 486/33l-120 w/487&Watcom WFC386P /OL /OT & 1.3 & & \\ ALR 486/33 m-board, 256K cache & Lahey F77L3, v5.0 /nZ1 & 1.2 & & \\ CDC 7600 & CHAT, No opt & 1.2 & & \\ CSPI MAP-6430 & Fortran 1.5.35 & 1.2 & & \\ DEC VAX 6000/460 (6 proc) & & & 8.4 & 15 \\ DEC VAX 6000/450 (5 proc) & & & 7.1 & 13 \\ DEC VAX 6000/440 (4 proc) & & & 5.8 & 10 \\ DEC VAX 6000/430 (3 proc) & & & 4.4 & 7.6 \\ DEC VAX 6000/420 (2 proc) & & & 3.0 & 5.1 \\ DEC VAX 6000/410 (1 proc) & VMS V5.2 & 1.2 & 1.5 & 2.6 \\ ELXSI 6420 & Fortran 5.14 opt=10 & 1.2 & 1.4 & \\ Gateway 2000/Micronics 486DX/33& f2c emx/gcc -O2 -m486 & 1.2 & & \\ Gateway Pentium (66HHz) & Lahey F77, 4.00 & 1.2 & & \\ IBM ES/9000 Model 120 & VS Fortran V2R4 & 1.2 & & \\ IBM 370/168 Fast Mult & H Ext & 1.2 & & \\ IBM 4381 90E & VS Fortran 2.1.1 opt=3 & 1.2 & & \\ IBM 4381-13 & VS 1.4.0 opt=3 & 1.2 & & \\ MIPS M/800 (12.5MHz) & f77 1.31 -O & 1.2 & & 5 \\ Prime P6350 & f77 rev 20.2.b2 -opt & 1.2 & & \\ Siemans 7580-E & BS2000 & 1.2 & & \\ Amdahl 470 V/6 & H opt=2 & 1.1 & & \\ Compaq Deskpro 486/33l-120 w/487&Lahey F77L3 /Z1 & 1.1 & & \\ Sun 4/260 & f77 -O sys4-beta2 & 1.1 & 1.1 & 3.3 \\ ES1066 (1 proc. 80 ns Russian)&f77(like IBM VS1.4.1 OPT=3)& 1.0 & & \\ CDC CYBER 180-840 & NOS/VE OPT=HIGH & .99 & & \\ DEC VAX 8800 (4 proc) & & & 4.9 & \\ DEC VAX 8800 (3 proc) & & & 3.7 & \\ DEC VAX 8800 (2 proc) & & & 2.5 & \\ DEC VAX 8550/8700/8800 & VMS v4.5 & .99 & 1.3 & \\ Solbourne & f77 -O & .98 & & \\ IBM 4381-22 & VS Fortran 2.1.1 opt=3 & .97 & & \\ IBM 4381 MG2 & VS Fortran opt=3 & .96 & & \\ IBM 4381-12 & VS Fortran 1.4.0 opt=3 & .95 & & \\ ICL 3980 w/FPU & FORTRAN77 PLUS V10.02 & .93 & & \\ IBM-486 33MHz & Microsoft 5.1 & .94 & & \\ Siemens 7860E & Fortran 77 V10.3 & .92 & & \\ Concurrent 3280XP & Fortran VII,Z 8.1 & .87 & & \\ MIPS M800 w/R2010 FP & f77 1.10 & .87 & & \\ Gould PN 9005 & VTX/32 2.0 Fortran 77 & .87 & & \\ VAXstation 3100-76 & DEC FORTRAN V5.2 & .85 & & \\ IBM 9370-90 & VS Fortran 1.3.0 opt=3 & .78 & & \\ nCUBE 2, 1024 proc & & & 258 & 2409 \\ nCUBE 2, 512 proc & & & 204 & 1205 \\ nCUBE 2, 256 proc & & & 165 & 602 \\ nCUBE 2, 128 proc & & & 116 & 301 \\ nCUBE 2, 64 proc & & & 76.9 & 151 \\ nCUBE 2, 32 proc & & & 46.0 & 75 \\ nCUBE 2, 16 proc & & & 26.1 & 38 \\ nCUBE 2, 8 proc & & & 14.2 & 19 \\ nCUBE 2, 4 proc & & & 7.50 & 9.4 \\ nCUBE 2, 2 proc & & & 3.91 & 4.7 \\ nCUBE 2, 1 proc & Fort77/ncc -O3 & .78 & 2.02 & 2.35 \\ IBM 370/165 Fast Mult & H Ext & .77 & & \\ Prime P9955II & f77 rev 20.2.b2 -opt & .72 & & \\ DEC VAX 8530 & VMS v4.6 & .73 & & \\ HP 9000 Series 850 & 2.0 fc -O & .71 \\ DEC VAX 8650 & VMS v4.5 & .70 \\ DEC VAX 8500 & VMS v4.5 & .65 \\ HP/Apollo DN4500 (68030 + FPA) & & .60 \\ Mentor Graphics Computer & fortran & .60 \\ MIPS M/500 ( 8.3HHz) & f77 1.21 -O & .60 & & 3.3 \\ Data General MV/20000 & f77 & .59 \\ IBM 9377-80 & VS Fortran 2.1.1 opt=3 & .58 \\ Sperry 1100/80 w/SAM & FTN opt=ZEO & .58 \\ CDC CYBER 930-31 & NOS/VE 1.2.2 & .58 \\ Russian PS-2100 & FORTRAN-PS & .57 & 1.6 & \\ Gateway 486DX-2 (66HHz) & Lahey F77, 4.00 & .56 \\ Harris H1200 & VOS 4.1 opt g & .56 \\ HP/Apollo DN4500 (68030) & & .55 \\ HP 9000 Series 825 & 2.0 fc -O & .53 \\ HP-APOLLO 9000/400t (68030) & f77 -O4 rev 10.8(190) & .51 \\ Harris HCX-9 & hf77 -O3 & .50 \\ Pyramid 9810 & OSx 4.0 & .50 \\ HP 9000 Series 840 & 2.0 fc -O & .49 \\ DEC VAX 8600 & VMS v4.5 & .48 \\ Harris HCX-7 w/fpp & f77 1.0 & .48 \\ CDC 6600 & FTN 4.6 opt=2 & .48 \\ CDC CYBER 170-835 & FTN 5 opt=2 & .47 \\ CCI Power 6/32 w/fpa & UNIX 4.2 bsd f77 & .47 \\ IBM 4381-21 & VS Fortran 2.1.1 opt=3 & .47 \\ Sperry 7000 & 4.2 & .47 \\ Gould PN9000 & UNIX & .47 \\ SUN-3/260 + FPA & 3.2 f77 -O -ffpa & .46 \\ IBM 4381 MG1 & VS Fortran opt=3 & .46 \\ DEC VAX 6210 (1 proc.) & VMS v5.0 & .46 \\ CDC CYBER 170-835 & FTN 5 opt=1 & .44 \\ HP 9000 Series 840 & HP-UX 14.3 & .43 \\ IBM RT 135 & AIX-2.2 & .42 \\ Harris H1000 & VOS 3.3 opt g & .41 \\ microVAX 3200/3500/3600 & VMS v4.6 & .41 \\ Apple Macintosh IIfx & A/UX 2.0 f77 & .41 \\ Apollo DN5xxT FPX & DOMAIN/IX SR9.7 opt 4 & .40 \\ microVAX 3200/3500/3600 & ULTRIX 2.2/VFU & .40 \\ IBM 9370-60 & VS Fortran 1.4.0 opt=3 & .40 \\ Sun-3/160 + FPA & 3.2 f77 -O -ffpa & .40 \\ Prime P9755 & f77 rev 20.2.b2 -opt & .40 \\ Ridge 3200 Model 90 & ROS/rf & .39 \\ IBM 4381-11 & VS Fortran 1.4.0 opt=3 & .39 \\ Gould 32/9705 mult acc & fort77+ 4.3 & .39 \\ NORSK DATA ND-570/2 & Fortran-500-E & .38 \\ Sperry 1100/80 & FTN opt=ZEO & .38 \\ Apple Mac IIfx & Absoft -w -v -O -f -s & .37 \\ CDC CYBER 930-11 & NOS/VE OPT=High & .37 \\ CSA w/T800C-20 & Fortran 3L & .37 \\ Inmos T800 (20 MHz) & Fortran 3L -:o0 & .37 \\ Sequent Symmetry (386 w/fpa) & Fortran -fpa -O3 & .37 \\ CONCEPT 32/8750 & UTX/32 & .36 \\ Celerity C1230 & UNIX 4.2 bsd f77 & .36 \\ IBM RT PC 6150/115 fpa2 & f77 & .36 \\ IBM 9373-30 & VS Fortran 2.1.1 opt=3 & .36 \\ CDC 6600 & RUN & .36 \\ Gould PN9080 & UTX/32 & .35 \\ Prime 9950 & F77 19.4.2 & .34 \\ Opus Series 300pm 30 MHz & UNIX Greenhills & .33 \\ Masscomp MC5600 w/fpa & f77 v1.2 -O3 rtv v3.1 & .33 \\ Data General MV/10000 & f77 opt level 2 & .30 \\ IBM 4361 MG5 & VS Fortran opt=3 & .30 \\ DATEK 80386-33 /w 64KB Cache &MS Fortran 5.0 -Ox -AH -G2& .27 \\ Inmos T800 (20 MHz) & Fortran 3L -:o1 & .26 \\ Apollo DN3500 & FTN -CPU 3000 -opt 4 & .25 \\ IRIS 2400 Turbo/FPA & f77 & .24 \\ CDC CYBER 180-830 & NOS/VE OPT=HIGH & .24 \\ Apple Macintosh PowerBook 170 & Absoft -w -v -O -f -s & .23 \\ Gould PN 6005 & VTX/32 2.0 Fortran 77 & .23 \\ Harris 800 & Fortran 77 & .23 \\ IBM 370/158 & H opt=3 & .23 \\ IBM 370/158 & VS Fortran opt=3 & .22 \\ NORSK DATA ND-560 & Fortran-500 & .22 \\ Celerity C1200 & UNIX 4.2 bsd f77 & .21 \\ Honeywell DPS 8/70 & FR7X & .21 \\ Denelcor HEP & f77 UPX & .21 \\ VAX 11/785 FPA & VMS v4.5 & .20 \\ CDC CYBER 170-720 & FTN 5, opt=2 & .20 \\ Apple Macintosh IIsi & Absoft -w -v -O -f -s & .19 \\ Itel AS/5 mod 3 & H & .19 \\ NORSK DATA ND-500 & Fortran-500-E & .19 \\ KONTRON KSM/386 & UNIX SVS F77 2.8 & .19 \\ Sun 386i/250 25 MHz & SunOS 4.0; Sun 1.1 -O & .19 \\ CDC CYBER 170-825 & FTN 5, opt=2 & .19 \\ IBM 4341 MG10 & VS Fortran opt=3 & .19 \\ Apollo DN2500 & & .18 \\ Pyramid 98xe & OSx 4.0 & .18 \\ IBM 9370-40 & VS Fortran 1.4.0 opt=3 & .18 \\ VAX 11/785 FPA & UNIX 4.2 bsd f77 & .18 \\ DEC VAX 8250/8350 (UP) & VMS v4.6 & .18 \\ CDC CYBER 170-825 & FTN 5, opt=1 & .18 \\ Ridge Server/RT EFP & ROS/rf & .18 \\ CDC CYBER 170-720 & FTN 5, opt=1 & .17 \\ Ridge 32/130 & OS 3.3/RISC & .17 \\ PC Craft 2400/25MHz w/80387 & PLI Fortran 2.09 & .17 \\ Concurrent 3252 & OS 6.2.4 fortran z & .17 \\ Tandy 5000 MC 20 MHz & LPI Fortran 3.0 & .17 \\ Tektronix 4315 w/68882 & UTEK f77 & .17 \\ CDC CYBER 180-810 & NOS/VE OPT=HIGH & .17 \\ Prime P2755 & f77 rev 20.2.b2 -opt & .17 \\ Apple Macintosh IIx & A/UX 2.0 f77 & .16 \\ Concurrent 3242 & OS 32 v7.2 f77 & .16 \\ Compaq 386/20 w/387 & Microsoft Fortran 4.1 & .16 \\ Apple Macintosh IIcx & Absoft -w -v -O -f -s & .15 \\ Apple Macintosh IIx & Absoft -w -v -O -f -s & .15 \\ DEC VAX 8200/8300 & VMS v4.5 & .15 \\ IBM PS/2-70 (20 MHz) & AIX 1.2 & .15 \\ Apple Macintosh SE 30 & Absoft -w -v -O -f -s & .14 \\ Apollo DN4000 & DOMAIN/IX SR9.7 opt 4 & .14 \\ ICL 2988 & f77 OPT=2 & .14 \\ IBM 9370-20 & VS Fortran 1.4.0 opt=3 & .14 \\ HP Vectra RS/20C 20 MHz & LPI Fortran 3.0 & .14 \\ VAX 11/780 FPA & VMS v4.5 & .14 \\ Compaq 386/20 w/387 & RM/Forrtan 2.43 & .13 \\ microVAX II & VMS v4.5 & .13 \\ Prime P2450 & f77 rev 20.2.b2 -opt & .13 \\ Apple Macintosh IIsi & Fortran & .12 \\ Apple Mac II/16 Mhz/25 Mhz 68882&Absoft 2.4 -w -v -O -f -s& .12 \\ CDC 6500 & FUN & .12 \\ CONCEPT 32/6750 & UTX/32 & .12 \\ IBM PS/2-70 (16 MHz) & AIX 1.2 & .12 \\ IBM RT w/68881 & f77 & .12 \\ VAX 11/750 FPA & VMS v4.1 & .12 \\ micro VAX II & ULTRIX 2.2/VFU & .12 \\ Concurrent 3230 & OS 6.2.2 fortran 5.2 & .11 \\ Definicon DSI-780 & SVS Fortran (MSDOS) & .11 \\ ENCORE Multimax NS32332 & f77 & .11 \\ HP 9000 Series 350 & HP-UX, f77 5.2 & .11 \\ Northgate 386/387 (25MHz) & Lahey F77, 4.00 & .11 \\ Prime 750 & Primos f77 v19.1 & .11 \\ Sun 3/260, 20 MHz 68881 & 3.2 f77 -O -f68881 & .11 \\ Tektronix 4315 w/68881 & UTEK f77 & .11 \\ VAX 11/780 FPA & UNIX 4.3 BSD f77 -O & .11 \\ Sun 3/160, 16.7 MHz 68881 & 3.2 f77 -O -f68881 & .10 \\ NCUBE (1 proc. 8 MHz) & Fortran & .10 \\ Apple Mac SE/30 & ABSOFT 2.4 & .10 \\ Apollo DN590 & DOMAIN/IX SR9.7 opt 4 & .099 \\ Masscomp MC5600 68881 & f77 v1.2 -O3 rtv v3.1 & .099 \\ VAX 11/750 FPA & UNIX 4.2 bsd f77 & .096 \\ Prime 850 & Primos & .095 \\ Sperry 1100/60 & FTN opt=ZEO & .093 \\ Pyramid 90X FPA & UNIX 4.2 bsd f77 & .088 \\ Apple Mac II/16 Mhz/25 Mhz 68882& Absoft 2.4 & .087 \\ SUN-3/50, 16.7 MHz 68881 & 3.2 f77 -O -f68881 & .087 \\ HP 9000 Series 330 & HP-UX, f77 5.2 & .087 \\ Apple Macintosh II & Absoft -w -v -O -f -s & .083 \\ microVAX II & f77 Ultrix 1.1 & .082 \\ Apple Mac SE + 20 MHz 68881 & ABSOFT 2.4 & .082 \\ Ridge 32/110 & ROS 3.3/RISC & .081 \\ Data General MV/8000 & f77 opt level 2 & .078 \\ Apple MAC II w/882 & & .078 \\ Prime P2350 & f77 rev 20.2.b2 -opt & .077 \\ Apple Mac/Levco Prodigy 4 & ABSOFT MacFort 020 & .076 \\ Apple Mac II w/68020 & FORTRAN & .074 \\ HP 9000 Series 320 & HP-UX, f77 5.2 & .073 \\ Apollo DN3000 & DOMAIN/IX SR9.7 opt 4 & .071 \\ Apollo DN460/660 & AEGIS 8.0 FTN & .069 \\ Masscomp MC500 w/FPP & 3.1 Fortran & .061 \\ Harris HS-20 w/FPP & Fortran 77 3.1 & .061 \\ Sequent Balance 8000 & DYNIX Fortran 2.4.4 & .059 \\ Definicon DSI-32/10 & Greenhills f77 (MSDOS) & .057 \\ VAX 11/750 & VMS v4.1 & .057 \\ Encore Multimax & f77 & .055 \\ HP 9000 Series 500 & Fortran 1.7 & .043 \\ Opus 32.32 & UNIX, f77 4.2 bsd & .043 \\ ATT 3B20 FP & UNIX V 2.0/4 & .040 \\ Acorn Cambridge & fortran & .039 \\ IBM 4331 MG2 & H opt=3 & .038 \\ Burroughs B6800 & Fortran 77 ver 34 & .037 \\ VAX 11/725 FPA & VMS v4.1 & .037 \\ Masscomp MCS-541 w/FPB & Fortran 3.1 & .037 \\ IBM RT PC Model 20 & f77 & .036 \\ VAX 11/730 FPA & VMS & .036 \\ Prime 2250 & Fortran 77 & .034 \\ IBM PC-AT/370 & VS Fortran opt=3 & .033 \\ IBM PC-XT/370 & H opt=3 & .031 \\ VAX 11/750 & UNIX 4.2 bsd f77 & .029 \\ Apollo DN320 & AEGIS 8.0 FTN & .028 \\ Sun 2/50 + SKY FFP & f77 -O -fsky 3.0 & .027 \\ Ametek S14/32 (1 node) & RM Fortran 2.11 & .026 \\ Apollo DN550 FPA & AEGIS 8.0 FTN & .025 \\ AMSTRAC 1512 8086/8087 9.54 MHz& MS-Fortran 4.0 -Ox -AH & .022 \\ microVAX I & VMS & .023 \\ Canaan & VS & .021 \\ Chas. River Data 6835+SKY & SVS Fortran 77 & .018 \\ Apollo DN 420 PEB & AEGIS 7+ FTN & .017 \\ IBM AT w/80287 & PROFORT 1.0 & .012 \\ IBM PC w/8087 & PROFORT 1.0 & .012 \\ Cadtrak DS1/8087 & Intel Fortran 77 & .011 \\ Apple Mac Classic II/16 MHz68030&Absoft 2.4 & .011 \\ IBM PC/AT w/80287 & Microsoft 3.2 & .0091 \\ Chas. River Data 6835 & SVS Fortran 77 & .0088 \\ Apollo DN300 & AEGIS 8.0 FTN & .0071 \\ Masscomp MC500 & 3.1 Fortran & .0070 \\ IBM PC w/8087 & Microsoft 3.2 & .0069 \\ Apple Mac II & ABSOFT 2.4 & .0064 \\ HP 9000 Series 200 & HP-UX & .0062 \\ Sun 2/50 & f77 -O -fsoft 3.0 & .0055 \\ Atari ST & ABSOFT AC/Fortran v2.2 & .0051 \\ Apple Macintosh & ABSOFT 2.0b & .0038 \\ Palm Pilot III & & .00169 \\ HP 48GX & & .00081 \\ \end{supertabular} \end{center} %end data here \normalsize \pagebreak \small \begin{center} \Large Table 2: {\bf A Look at Parallel Processing} \small \end{center} \vskip .15 in \begin{center} \tablehead{ \multicolumn{1}{c}{Computer} & \multicolumn{5}{c}{1000 x 1000 Problem with Parallel Processing } \\ & \multicolumn{1}{c}{Time } & \multicolumn{1}{c}{no. of} & \multicolumn{1}{c}{Time}&\multicolumn{1}{c}{Speedup}&\multicolumn{1}{c}{Efficiency} \\ & \multicolumn{1}{c}{uniprocessor } & \multicolumn{1}{c}{processors} & \multicolumn{1}{c}{multiprocessors}&&\\ \hline \hline } \begin{supertabular}{l c c c c c} Hitachi S-3800/480 & 0.104 & 4 & .0324 & 3.21 & .80 \\ Hitachi S-3800/380 & 0.104 & 3 & .0396 & 2.63 & .88 \\ Hitachi S-3800/280 & 0.104 & 2 & .0549 & 1.89 & .95 \\ \hline NEC SX-3/*4R & 0.128 & 4 & .0442 & 2.91 & .73 \\ NEC SX-3/*4R & 0.128 & 2 & .0707 & 1.82 & .91 \\ \hline NEC SX-3/*4 & 0.148 & 4 & .0498 & 2.98 & .74 \\ NEC SX-3/*4 & 0.148 & 2 & .0821 & 1.81 & .90 \\ \hline NEC SX-3/*2R & 0.243 & 4 & .0747 & 3.25 & .81 \\ NEC SX-3/*2R & 0.243 & 2 & .1307 & 1.86 & .93 \\ \hline NEC SX-3/*2 & 0.293 & 4 & .0863 & 3.40 & .85 \\ NEC SX-3/*2 & 0.293 & 2 & .1518 & 1.93 & .96 \\ \hline Cray C90 & 0.740 & 16 & .0618 & 11.95 & .75 \\ Cray C90 & 0.740 & 8 & .108 & 6.85 & .86 \\ Cray C90 & 0.740 & 4 & .204 & 3.63 & .91 \\ Cray C90 & 0.740 & 2 & .392 & 1.89 & .94 \\ \hline NEC SX-3 & 0.149 & 2 & .0820 & 1.82 & .91 \\ \hline NEC SX-3/*1R & 0.472 & 4 & .139 & 3.40 & .85 \\ NEC SX-3/*1R & 0.472 & 2 & .255 & 1.85 & .93 \\ \hline Convex C4/XA & 0.949 & 4 & .264 & 3.59 & .90 \\ Convex C4/XA & 0.949 & 3 & .346 & 2.74 & .91 \\ Convex C4/XA & 0.949 & 2 & .501 & 1.89 & .95 \\ \hline IBM ES/9000 (7.1 ns) & 1.58 & 8 & .293 & 5.34 & .67 \\ IBM ES/9000 (7.1 ns) & 1.58 & 7 & .322 & 4.91 & .70 \\ IBM ES/9000 (7.1 ns) & 1.58 & 6 & .347 & 4.56 & .76 \\ IBM ES/9000 (7.1 ns) & 1.58 & 5 & .397 & 3.98 & .80 \\ IBM ES/9000 (7.1 ns) & 1.58 & 4 & .485 & 3.26 & .82 \\ IBM ES/9000 (7.1 ns) & 1.58 & 3 & .617 & 2.56 & .85 \\ IBM ES/9000 (7.1 ns) & 1.58 & 2 & .871 & 1.82 & .91 \\ \hline Cray Y-MP/8 & 2.17 & 8 & .312 & 6.96 & .87 \\ Cray Y-MP/8 & 2.17 & 4 & .577 & 3.76 & .94 \\ Cray Y-MP/8 & 2.17 & 3 & .754 & 2.88 & .96 \\ Cray Y-MP/8 & 2.17 & 2 & 1.11 & 1.96 & .98 \\ \hline Cray Y-MP/98 & 2.17 & 8 & .386 & 5.65 & .71 \\ Cray Y-MP/98 & 2.17 & 4 & .600 & 3.63 & .91 \\ Cray Y-MP/98 & 2.17 & 2 & 1.12 & 1.94 & .97 \\ \hline IBM ES/9000 (9 ns) & 1.98 & 6 & .458 & 4.31 & .72 \\ IBM ES/9000 (9 ns) & 1.98 & 5 & .552 & 3.58 & .72 \\ IBM ES/9000 (9 ns) & 1.98 & 4 & .666 & 2.97 & .74 \\ IBM ES/9000 (9 ns) & 1.98 & 3 & .862 & 2.29 & .76 \\ IBM ES/9000 (9 ns) & 1.98 & 2 & 1.24 & 1.59 & .80 \\ \hline Cray 2S & 1.76 & 4 & .476 & 3.66 & .91 \\ Cray 2S & 1.76 & 3 & .617 & 2.82 & .94 \\ Cray 2S & 1.76 & 2 & .902 & 1.93 & .96 \\ \hline Cray X-MP/4 & 3.10 & 4 & .813 & 3.78 & .94 \\ Cray X-MP/4 & 3.10 & 3 & 1.07 & 2.87 & .96 \\ Cray X-MP/4 & 3.10 & 2 & 1.57 & 1.96 & .98 \\ \hline Convex C3880 & 5.90 & 8 & .841 & 7.02 & .88 \\ Convex C3840 & 5.90 & 4 & 1.58 & 3.74 & .94 \\ Convex C3830 & 5.90 & 3 & 2.05 & 2.88 & .96 \\ Convex C3820 & 5.90 & 2 & 3.01 & 1.96 & .98 \\ \hline DEC 10000 Alpha & 4.31 & 6 & .889 & 4.85 & .81 \\ DEC 10000 Alpha & 4.31 & 5 & 1.04 & 4.12 & .82 \\ DEC 10000 Alpha & 4.31 & 4 & 1.28 & 3.37 & .84 \\ DEC 10000 Alpha & 4.31 & 3 & 1.66 & 2.60 & .87 \\ DEC 10000 Alpha & 4.31 & 2 & 2.44 & 1.76 & .88 \\ \hline Convex SPP-1000 &i 5.45 & 8 & 0.8905 & 6.120 & .77 \\ Convex SPP-1000 &i 5.45 & 4 & 1.513 & 3.602 & .90 \\ Convex SPP-1000 &i 5.45 & 2 & 2.628 & 2.073 & 1.03 \\ \hline Cray S-MP/MCP784 & 21.4 & 84 & .902 & 23.7 & .28 \\ Cray S-MP/MCP756 & 21.4 & 56 & .986 & 21.7 & .39 \\ Cray S-MP/MCP728 & 21.4 & 28 & 1.32 & 16.2 & .58 \\ Cray S-MP/MCP707 & 21.4 & 7 & 3.46 & 6.19 & .88 \\ \hline DEC 7000 Alpha & 4.74 & 6 & .978 & 4.84 & .81 \\ DEC 7000 Alpha & 4.74 & 5 & 1.14 & 4.16 & .83 \\ DEC 7000 Alpha & 4.74 & 4 & 1.38 & 3.43 & .86 \\ DEC 7000 Alpha & 4.74 & 3 & 1.81 & 2.62 & .87 \\ DEC 7000 Alpha & 4.74 & 2 & 2.67 & 1.77 & .89 \\ \hline Meiko CS2 & 6.89 & 64 & 1.03 & 6.69 & .10 \\ Meiko CS2 & 6.89 & 32 & 1.03 & 6.69 & .21 \\ Meiko CS2 & 6.89 & 16 & 1.26 & 5.47 & .34 \\ Meiko CS2 & 6.89 & 8 & 1.59 & 4.33 & .54 \\ Meiko CS2 & 6.89 & 4 & 2.32 & 2.97 & .74 \\ Meiko CS2 & 6.89 & 2 & 3.96 & 1.74 & .87 \\ \hline Fujitsu AP1000 & 160 &512 & 1.10 & 147 & .29 \\ Fujitsu AP1000 & 160 &256 & 1.50 & 108 & .42 \\ Fujitsu AP1000 & 160 &128 & 2.42 & 66.5 & .52 \\ Fujitsu AP1000 & 160 & 64 & 3.51 & 46.0 & .72 \\ Fujitsu AP1000 & 160 & 32 & 6.71 & 24.0 & .75 \\ Fujitsu AP1000 & 160 & 16 & 11.5 & 13.9 & .87 \\ Fujitsu AP1000 & 160 & 8 & 22.6 & 7.12 & .89 \\ Fujitsu AP1000 & 160 & 4 & 41.3 & 3.90 & .97 \\ Fujitsu AP1000 & 160 & 2 & 81.4 & 1.96 & .98 \\ \hline IBM 3090/J (14.5 ns) & 6.8832 & 6 & 1.24 & 5.57 & .93 \\ IBM 3090/J (14.5 ns) & 6.8832 & 5 & 1.46 & 4.72 & .94 \\ IBM 3090/J (14.5 ns) & 6.8832 & 4 & 1.80 & 3.81 & .95 \\ IBM 3090/J (14.5 ns) & 6.8832 & 3 & 2.35 & 2.93 & .98 \\ IBM 3090/J (14.5 ns) & 6.8832 & 2 & 3.48 & 1.98 & .99 \\ \hline IBM 3090/600S VF & 7.27 & 6 & 1.29 & 5.64 & .94 \\ IBM 3090/500S VF & 7.27 & 5 & 1.52 & 4.78 & .96 \\ IBM 3090/400S VF & 7.27 & 4 & 1.89 & 3.85 & .96 \\ IBM 3090/300S VF & 7.27 & 3 & 2.46 & 2.96 & .99 \\ IBM 3090/280S VF & 7.27 & 2 & 3.65 & 1.99 & .99 \\ IBM 3090/200S VF & 7.27 & 2 & 3.64 & 1.99 & .99 \\ \hline Kendall Square Research & 21.5 & 32 & 1.30 & 16.5 & .52 \\ Kendall Square Research & 21.5 & 16 & 2.17 & 9.90 & .62 \\ Kendall Square Research & 21.5 & 8 & 4.57 & 4.71 & .59 \\ Kendall Square Research & 21.5 & 4 &14.2 & 1.52 & .38 \\ \hline IBM ES/9000 (11 ns) & 5.14 & 4 & 1.51 & 3.39 & .85 \\ IBM ES/9000 (11 ns) & 5.14 & 3 & 1.90 & 2.71 & .90 \\ IBM ES/9000 (11 ns) & 5.14 & 2 & 2.74 & 1.88 & .94 \\ \hline Intel Delta & 22 &512 & 1.5 & 14.7 & .03 \\ Intel Delta & 22 &256 & 1.6 & 13.8 & .05 \\ Intel Delta & 22 &128 & 1.7 & 12.9 & .10 \\ Intel Delta & 22 & 64 & 1.9 & 11.5 & .18 \\ Intel Delta & 22 & 32 & 2.2 & 10.0 & .31 \\ Intel Delta & 22 & 16 & 2.9 & 7.59 & .47 \\ Intel Delta & 22 & 8 & 4.1 & 5.37 & .67 \\ Intel Delta & 22 & 4 & 6.7 & 3.28 & .82 \\ Intel Delta & 22 & 2 & 11.6 & 1.90 & .95 \\ \hline IBM 3090/600E VF & 9.36 & 6 & 1.73 & 5.41 & .90 \\ IBM 3090/500E VF & 9.36 & 5 & 2.02 & 4.63 & .93 \\ IBM 3090/400E VF & 9.36 & 4 & 2.48 & 3.77 & .94 \\ IBM 3090/300E VF & 9.36 & 3 & 3.21 & 2.92 & .97 \\ IBM 3090/200E VF & 9.36 & 2 & 4.73 & 1.98 & .99 \\ \hline Sun Sparc2000(50 MHz) & 23.85 & 16 & 2.01 & 11.89 & .74 \\ Sun Sparc2000(50 MHz) & 23.85 & 12 & 2.26 & 10.54 & .88 \\ Sun Sparc2000(50 MHz) & 23.85 & 8 & 2.99 & 7.96 & .99 \\ \hline Alliant FX/2800-200 & 22.9 & 14 & 2.06 & 11.1 & .79 \\ Alliant FX/2800-200 & 22.9 & 12 & 2.30 & 10.0 & .83 \\ Alliant FX/2800-200 & 22.9 & 10 & 2.68 & 8.54 & .85 \\ Alliant FX/2800-200 & 22.9 & 8 & 3.24 & 7.07 & .88 \\ Alliant FX/2800-200 & 22.9 & 4 & 6.07 & 3.77 & .94 \\ Alliant FX/2800-200 & 22.9 & 2 & 11.8 & 1.94 & .97 \\ \hline IBM PVS & 20.4 & 32 & 2.17 & 9.35 & .29 \\ IBM PVS & 20.4 & 16 & 2.35 & 8.64 & .54 \\ IBM PVS & 20.4 & 8 & 3.41 & 5.95 & .74 \\ IBM PVS & 20.4 & 4 & 5.71 & 3.56 & .89 \\ IBM PVS & 20.4 & 2 & 10.6 & 1.92 & .96 \\ \hline IBM RS/6000 Cluster (62.5 ns) & 7.42 & 8 & 2.48 & 2.99 & .37 \\ IBM RS/6000 Cluster (62.5 ns) & 7.42 & 4 & 3.24 & 2.29 & .57 \\ IBM RS/6000 Cluster (62.5 ns) & 7.42 & 2 & 4.64 & 1.60 & .80 \\ \hline nCUBE 2 & 331 &1024 & 2.59 & 128 & .12 \\ nCUBE 2 & 331 &512 & 3.29 & 101 & .20 \\ nCUBE 2 & 331 &256 & 4.05 & 81.7 & .32 \\ nCUBE 2 & 331 &128 & 5.74 & 57.7 & .45 \\ nCUBE 2 & 331 & 64 & 8.70 & 38.0 & .59 \\ nCUBE 2 & 331 & 32 & 14.5 & 22.8 & .71 \\ nCUBE 2 & 331 & 16 & 25.6 & 12.9 & .81 \\ nCUBE 2 & 331 & 8 & 46.9 & 7.04 & .88 \\ nCUBE 2 & 331 & 4 & 89.1 & 3.71 & .93 \\ nCUBE 2 & 331 & 2 &171. & 1.93 & .97 \\ \hline Intel iPSC/860 & 22 &128 & 2.8 & 7.68 & .06 \\ Intel iPSC/860 & 22 & 64 & 3.2 & 6.72 & .11 \\ Intel iPSC/860 & 22 & 32 & 4.0 & 5.38 & .17 \\ Intel iPSC/860 & 22 & 16 & 5.1 & 4.22 & .26 \\ Intel iPSC/860 & 22 & 8 & 6.5 & 3.31 & .41 \\ Intel iPSC/860 & 22 & 4 & 8.9 & 2.42 & .60 \\ Intel iPSC/860 & 22 & 2 & 12.8 & 1.68 & .84 \\ \hline Meiko Computing Surface (i860)& 21.9 & 32 & 3.19 & 6.85 & .21 \\ Meiko Computing Surface (i860)& 21.9 & 24 & 3.30 & 6.62 & .28 \\ Meiko Computing Surface (i860)& 21.9 & 16 & 3.57 & 6.12 & .38 \\ Meiko Computing Surface (i860)& 21.9 & 8 & 4.56 & 4.79 & .60 \\ Meiko Computing Surface (i860)& 21.9 & 4 & 6.83 & 3.20 & .80 \\ Meiko Computing Surface (i860)& 21.9 & 2 & 11.6 & 1.88 & .94 \\ \hline IBM RS/6000 Cluster (50 ns) & 7.95 & 8 & 3.44 & 2.31 & .29 \\ IBM RS/6000 Cluster (50 ns) & 7.95 & 6 & 3.84 & 2.07 & .35 \\ IBM RS/6000 Cluster (50 ns) & 7.95 & 4 & 4.39 & 1.81 & .45 \\ IBM RS/6000 Cluster (50 ns) & 7.95 & 2 & 6.02 & 1.32 & .66 \\ \hline Sun Sparc2000(50 MHz) & 26.71 & 8 & 3.37 & 7.92 & .99 \\ Sun Sparc2000(50 MHz) & 26.71 & 4 & 6.24 & 4.28 & 1.07 \\ Sun Sparc2000(50 MHz) & 26.71 & 2 &12.60 & 2.12 & 1.06 \\ \hline Convex C3240 & 14.9 & 4 & 3.92 & 3.81 & .95 \\ Convex C3230 & 14.9 & 3 & 5.06 & 2.95 & .98 \\ Convex C3220 & 14.9 & 2 & 7.50 & 1.99 & .99 \\ \hline Convex C-240 & 15 & 4 & 4.03 & 3.76 & .94 \\ Convex C-230 & 15 & 3 & 5.20 & 2.91 & .97 \\ Convex C-220 & 15 & 2 & 7.65 & 1.98 & .99 \\ \hline Parsytec FT-400 &1075 &400 & 4.90 & 219. & .55 \\ Parsytec FT-400 &1075 &256 & 6.59 & 163. & .64 \\ Parsytec FT-400 &1075 &100 & 13.2 & 81.4 & .81 \\ Parsytec FT-400 &1075 & 64 & 19.1 & 56.3 & .88 \\ Parsytec FT-400 &1075 & 16 & 69.2 & 15.5 & .97 \\ \hline Sun Sparc10/514(50 MHz) & 24.73 & 4 & 6.81 & 3.63 & .91 \\ Sun Sparc10/514(50 MHz) & 24.73 & 2 &11.71 & 2.11 & 1.06 \\ \hline FPS Model 522 & 12 & 2 & 6.36 & 1.89 & .95 \\ \hline Suprenum S1C1 & 51 & 16 & 6.4 & 8.0 & .50 \\ Suprenum S1C1 & 51 & 14 & 7.1 & 7.2 & .51 \\ Suprenum S1C1 & 51 & 12 & 7.9 & 6.5 & .54 \\ Suprenum S1C1 & 51 & 10 & 8.9 & 5.8 & .58 \\ Suprenum S1C1 & 51 & 8 & 10.4 & 4.9 & .61 \\ Suprenum S1C1 & 51 & 6 & 13.1 & 3.9 & .65 \\ Suprenum S1C1 & 51 & 4 & 18.1 & 2.8 & .70 \\ Suprenum S1C1 & 51 & 2 & 33.4 & 1.5 & .75 \\ \hline Alliant FX/800-200 & 24.2 & 4 & 7.09 & 3.41 & .85 \\ Alliant FX/800-200 & 24.2 & 2 & 12.7 & 1.91 & .95 \\ \hline Alliant FX/80 & 57.7 & 8 & 9.64 & 5.99 & .75 \\ Alliant FX/80 & 57.7 & 7 & 10.6 & 5.44 & .78 \\ Alliant FX/80 & 57.7 & 6 & 11.8 & 4.89 & .82 \\ Alliant FX/80 & 57.7 & 5 & 13.6 & 4.24 & .85 \\ Alliant FX/80 & 57.7 & 4 & 16.2 & 3.56 & .89 \\ Alliant FX/80 & 57.7 & 3 & 20.7 & 2.79 & .93 \\ Alliant FX/80 & 57.7 & 2 & 29.8 & 1.94 & .97 \\ \hline Stardent 1540 (Ardent Titan-4)& 51.2 & 4 & 14.3 & 3.57 & .89 \\ Stardent 1530 (Ardent Titan-3)& 51.2 & 3 & 18.3 & 2.80 & .93 \\ Stardent 1520 (Ardent Titan-2)& 51.2 & 2 & 26.3 & 1.95 & .97 \\ \hline SGI 4D/480 40 MHz & 54.0 & 8 & 9.48 & 5.70 & .71 \\ SGI 4D/440 40 MHz & 54.0 & 4 & 15.91 & 3.39 & .85 \\ SGI 4D/420 40 MHz & 54.0 & 2 & 28.80 & 1.88 & .94 \\ \hline SGI 4D/380 33 MHz & 65.0 & 8 & 11.13 & 5.84 & .73 \\ SGI 4D/340 33 MHz & 65.0 & 4 & 18.62 & 3.49 & .87 \\ SGI 4D/320 33 MHz & 65.0 & 2 & 34.17 & 1.90 & .95 \\ \hline Sun Sparc10/402(40 MHz) & 29.03 & 2 &16.28 & 1.78 & .89 \\ \hline Alliant FX/40 & 66.1 & 4 & 20.5 & 3.22 & .81 \\ Alliant FX/40 & 66.1 & 3 & 24.9 & 2.65 & .88 \\ Alliant FX/40 & 66.1 & 2 & 34.8 & 1.90 & .95 \\ \hline SGI 4D/240 25 MHz & 85.2 & 4 & 23.89 & 3.57 & .89 \\ SGI 4D/220 25 MHz & 85.2 & 2 & 44.89 & 1.90 & .95 \\ \hline Alliant FX/4 & 106 & 4 & 32.3 & 3.28 & .82 \\ Alliant FX/4 & 106 & 3 & 38.7 & 2.74 & .91 \\ Alliant FX/4 & 106 & 2 & 55.8 & 1.90 & .95 \\ \hline DEC VAX 6000-460 & 439 & 6 & 80 & 5.5 & .92 \\ DEC VAX 6000-450 & 439 & 5 & 94 & 4.7 & .94 \\ DEC VAX 6000-440 & 439 & 4 &114 & 3.8 & .96 \\ DEC VAX 6000-430 & 439 & 3 &152 & 2.9 & .96 \\ DEC VAX 6000-420 & 439 & 2 &222 & 1.9 & .99 \\ \hline ELXSI 6420 & 475 & 5 &104 & 4.57 & .91 \\ ELXSI 6420 & 475 & 3 &167 & 2.84 & .95 \\ ELXSI 6420 & 475 & 2 &245 & 1.94 & .97 \\ \hline DEC VAX 6240 &1295 & 4 &332 & 3.90 & .98 \\ DEC VAX 6230 &1295 & 3 &439 & 2.95 & .98 \\ DEC VAX 6220 &1295 & 2 &654 & 1.98 & .99 \\ \hline Sequent Balance 21000 &11111 &30 &445 & 25.0 & .83 \\ \end{supertabular} \end{center} \normalsize \pagebreak \small \begin{center} \Large Table 3: {\bf Highly Parallel Computing } \small \end{center} \vskip .15 in \begin{center} % \begin{tabular}{l | c | c c c c} \tablehead{ \multicolumn{1}{c|}{Computer} & \multicolumn{1}{c}{Number of} & \multicolumn{1}{c}{$R _{max}$}&\multicolumn{1}{c}{$N_{max}$}&\multicolumn{1}{c}{$N_{1/2}$}&\multicolumn{1}{c}{$R_{peak}$} \\ \multicolumn{1}{c|}{(Full Precision)} & \multicolumn{1}{c|}{Processors} & \multicolumn{1}{c|}{Gflop/s}&\multicolumn{1}{c}{order}&\multicolumn{1}{c}{order}&\multicolumn{1}{c}{Gflop/s} \\ \hline } \begin{supertabular}{l | c | c c c c} SGI ASCI Blue Mountain & 5040 &1608. &374400 &13800&2520 \\ Intel ASCI Option Red (200 MHz Pentium Pro)&9152 &1338. &235000 &63000&1830 \\ Intel ASCI Option Red (200 MHz Pentium Pro)&7264 &1068. &215000 &53400&1453 \\ CRAY T3E-1200E (600 MHz) & 1080 &891.5 &259200 &26400&1296 \\ CRAY T3E-900 (450 MHz) & 1320 &815.1 &134400 &26880&1188 \\ SGI Origin 2000 (250 MHz) & 2048 &690.9 &229248 &80640&1024 \\ IBM SP 475 nodes (332 MHz 604e) & 1900 &547.0 &244000 &58000&1262 \\ SGI Origin 2000 (250 MHz) & 1536 &543.2 &203904 &64512& 768 \\ IBM ASCI Option Blue Pacific (332 MHz) &1344 &468.2 &205000 &65000& 892 \\ CRAY T3E (300 MHz) & 1024 &448.6 &119808 &19008& 614 \\ CRAY T3E-1200E (600 MHz) & 540 &447.8 &181440 &17280& 648 \\ CRAY T3E-900 (450 MHz) & 690 &443.1 &144000 &18720& 621 \\ CRAY T3E-900 (450 MHz) & 640 &413.7 &138240 &18432& 576 \\ SGI Origin 2000 (250 MHz) & 1024 &379.6 &164736 &40500& 512 \\ CP-PACS* (150 MHz PA-RISC based CPU) & 2048 &368.2 &103680 &30720& 614 \\ CRAY T3E (300 MHz) & 784 &342.8 &104832 &17280& 470 \\ CRAY T3E-900 (450 MHz) & 512 &321.1 &122880 &15360& 461 \\ IBM SP 256 nodes (332 MHz 604e) & 1024 &311.9 &180000 &40000& 680 \\ Intel Paragon XP/S MP (50 MHz OS=SUNMOS) & 6768 &281.1 &128600 &25700& 338 \\ Intel Paragon XP/S MP (50 MHz OS=SUNMOS) & 6144 &256.2 &122500 &24300& 307 \\ CRAY T3E (300 MHz) & 540 &234.9 & 86400 &14400& 324 \\ HITACHI SR2201/1024(150MHz) & 1024 &232.3 &155520 &34560& 307 \\ Numerical Wind Tunnel* (9.5 ns) & 167 &229.7 & 66132 &18018& 281 \\ Intel Paragon XP/S MP (50 MHz OS=SUNMOS) & 5376 &223.6 &114500 &22900& 269 \\ CRAY T3E (300 MHz) & 512 &222.3 & 84480 &12480& 307 \\ Fujitsu VPP700/116(7nsec) & 116 &213.0 &111360 &18560& 255 \\ CRAY T3E-1200E (600 MHz) & 256 &211.8 &125952 &11520& 307 \\ Fujitsu VPP500/153(10nsec) & 153 &200.6 & 62730 &17000& 245 \\ IBM ASCI Option Blue Pacific (332 MHz) & 672 &198.6 & 95000 &37000& 446 \\ SGI Origin 2000 (250 MHz) & 512 &195.6 &110592 &23040& 256 \\ Numerical Wind Tunnel* (9.5 ns) & 140 &195.0 & 60480 &15730& 236 \\ Intel Paragon XP/S MP (50 MHz OS=SUNMOS) & 4608 &191.5 &106000 &21000& 230 \\ Numerical Wind Tunnel* (9.5 ns) & 128 &179.2 & 56832 &14800& 216 \\ Fujitsu VPP500/128(10nsec) & 128 &170.2 & 56832 &14804& 205 \\ CRAY T3E-900 (450 MHz) & 256 &161.6 & 84480 &10080& 230 \\ IBM SP 128 nodes (332 MHz 604e) & 512 &156.8 &125000 &27000& 340 \\ IBM SP/472 (120 MHz) & 460 &151.8 & 61000 &22600& 221 \\ Intel Paragon XP/S MP (50 MHz OS=SUNMOS) & 3648 &151.7 & 95000 &18100& 182 \\ SGI Origin 2000 (250 MHz) & 384 &147.1 & 96768 &17280& 192 \\ Intel Paragon XPS-140 (50 MHz OS=SUNMOS) & 3680 &143.4 & 55700 &20500& 184 \\ SGI Origin 2000 (195 MHz) & 480 &141.2 &108864 &21312& 187 \\ Fujitsu VPP500/100(10nsec) & 100 &135.3 & 51000 &12816& 160 \\ Fujitsu VPP700/64 (7nsec) & 64 &129.5 &115200 &12800& 141 \\ Fujitsu VPP500/96 (10nsec) & 96 &129.5 & 49728 &12430& 154 \\ Paragon XP/S MP(1024 Nodes, OS=SUNMOS S1.6)&3072 &127.1 & 86000 &17800& 154 \\ Sun HPC 10000 Cluster/4 (336 MHz, 4MB L2) & 256 &123.9 & 80640 &26880& 172 \\ NEC SX-4/64M2 (8.0 ns) & 64 &122.2 & 30080 & 4352& 128 \\ CRAY T3E-900 (450 MHz) & 192 &116.0 & 51840 & 8448& 171 \\ CRAY T3E (300 MHz) & 256 &112.8 & 59904 & 8832& 154 \\ IBM SP (160 MHz, P2SC) & 256 &111.64& 52000 &13100& 163 \\ Fujitsu VPP700/56 (7nsec) & 56 &110.3 &109200 &10752& 123 \\ Fujitsu VPP500/80 (10nsec) & 80 &109.8 & 46400 &11030& 128 \\ CRAY T3E-1200E(600 MHz) & 128 &106.0 & 89088 & 7488& 154 \\ SGI Origin 2000 (250 MHz) & 256 &101.4 & 86400 &13248& 128 \\ Cray T3D 1024 (150 MHz) & 1024 &100.5 & 81920 &10224& 152 \\ Sun Ultra HPC10000 Cluster/4(250 MHz,4MB L2)&256 &100.4 & 80640 &22528& 128 \\ Fujitsu VPP700/46 ( 7nsec) & 46 & 94.3 &100280 & 8280& 101 \\ NEC SX-4/48M2 (8.0 ns) & 48 & 92.63& 30080 & 2688& 96 \\ Sun Ultra HPC10000 Cluster/4(250 MHz,4MB L2)&244 & 92.6 & 80640 &21504& 122 \\ Fujitsu VPP500/64 (10nsec) & 64 & 89.3 & 41472 & 9820& 102 \\ IBM SP2-T2 (66 MHz) & 512 & 88.4 & 73500 &20150& 136 \\ Sun Ultra HPC10000 Cluster/4(250 MHz,4MB L2)&224 & 87.94& 80640 &19200& 112 \\ CRAY T3E (300 MHz) & 192 & 83.07& 51840 & 7680& 115 \\ CRAY T3E-900 (450 MHz) & 128 & 79.59& 42240 & 6432& 115 \\ IBM SP 64 nodes (332 MHz 604e) & 256 & 79.17& 89000 &18000& 170 \\ Hitachi S-3000 cluster/412 (3x4) (2 ns) & 12 & 78.2 & 31120 & 4880& 96 \\ Sun Ultra HPC10000 Cluster/3(250 MHz,4MB L2)&192 & 75.65& 65520 &19200& 96 \\ Sun Ultra HPC10000 Cluster/4(250 MHz,4MB L2)&192 & 75.58& 80640 &16320& 96 \\ Intel Paragon XPS-140 (50 MHz) & 1872 & 72.9 & 55000 &17500& 94 \\ Fujitsu VPP700/32 ( 7nsec) & 32 & 67.3 & 83200 & 5760& 70 \\ Sun HPC 10000 Cluster/2 (336 MHz, 4MB L2) & 128 & 66.93& 57120 &10080& 86 \\ NEC SX-4/32 (8.0 ns) *** & 32 & 66.53& 15360 & 1792& 64 \\ Paragon XP/S MP(512 Nodes, OS=SUNMOS S1.6)& 1516 & 64.0 & 61000 &12200& 77 \\ Cray T932 (2.2 ns) *** & 32 & 61.8 & 16384 & 1280& 58 \\ NEC SX-4/32 (8.0 ns) & 32 & 61.77& 20480 & 1688& 64 \\ NEC SX-4/32M2 (8.0 ns) & 32 & 61.32& 20480 & 2432 64 \\ Thinking Machines CM-5 & 1024 & 59.7 & 52224 &24064& 131 \\ Hitachi S-3000 cluster/309 (3x3) (2 ns) & 9 & 59.0 & 26940 & 3180& 72 \\ HITACHI SR2201/256(150MHz) & 256 & 58.68& 77760 &13440& 78 \\ Fujitsu VPP700/26E (6.5nsec) & 26 & 58.0 & 74880 & 5200& 62 \\ IBM SP2 (160 MHz) & 128 & 57.24& 39000 & 9180& 82 \\ Sun Ultra HPC10000 Cluster/3(250 MHz,4MB L2)&144 & 56.97& 65520 &14400& 72 \\ CRAY T3E (300 MHz) & 128 & 55.72& 42240 & 5952& 76.8\\ Hitachi S-3000 cluster/408 (2x4) (2 ns) & 8 & 54.1 & 31200 & 3760& 64 \\ CRAY T3E-1200E (600 MHz) & 64 & 53.07& 62976 & 4992& 76.8\\ SGI Origin 2000 (250 MHz) & 128 & 51.44& 61000 &10000& 64 \\ Cray T932 (2.2 ns) *** & 24 & 51.1 & 16384 & 1000& 43 \\ Sun Ultra HPC10000 Cluster/2(250 MHz,4MB L2)&128 & 51.08& 44352 &12096& 64 \\ Cray T3D 512 (150 MHz) & 512 & 50.8 & 57856 & 7136& 76 \\ Sun Ultra HPC10000 Cluster/4(250 MHz,4MB L2)&128 & 48.85& 80640 &10368& 64 \\ LANL Avalon Cluster:Alpha 533 Mhz+100Mb/s sw&140 & 48.6 & 62720 &25200&149.4\\ Sun Ultra HPC6000 Cluster/4(250 MHz,4MB L2)& 120 & 46.56& 53760 &24192& 60 \\ Fujitsu VPP500/32 (10nsec) & 32 & 46.1 & 29760 & 5350& 51 \\ IBM SP2-T2 (66 MHz) & 256 & 44.2 & 53000 &13500& 68 \\ Sun E6000 "WildFire" 4 servers (250 MHz) & 104 & 41.58& 34944 & 9408& 52 \\ CRAY T3E-900 (450 MHz) & 64 & 41.52& 43776 & 4608& 58 \\ Hitachi S-3000 cluster/306 (2x3) (2 ns) & 6 & 40.9 & 27000 & 2400& 48 \\ IBM SP 32 nodes (332 MHz 604e) & 128 & 40.67& 63000 &12000& 85 \\ Hitachi S-3000 cluster/206 (3x2) (2 ns) & 6 & 40.6 & 21600 & 2160& 48 \\ SGI Origin 2000 (195 MHz) & 128 & 40.25& 60000 & 6000& 49.9\\ Sun Ultra HPC6000 Cluster/4(250 MHz,4MB L2)& 96 & 38.44& 53760 &19968& 48 \\ Sun E6000 "WildFire" 4 servers (250 MHz) & 96 & 38.13& 29568 & 8064& 48 \\ Sun Ultra HPC10000 Cluster/2(250 MHz,4MB L2)& 96 & 37.79& 50400 & 6528& 48 \\ Sun Ultra HPC10000 Cluster/3(250 MHz,4MB L2)& 96 & 36.91& 65520 & 8640& 48 \\ Cray T932 (2.2 ns) *** & 16 & 36.6 & 16384 & 1000& 29 \\ Fujitsu VPP700/16E (6.5nsec) & 16 & 36.4 & 57600 & 3520& 38 \\ Fujitsu VPP300/16E (6.5nsec) & 16 & 36.4 & 57600 & 3520& 38 \\ NEC SX-4/16 (8.0 ns) *** & 16 & 34.42& 14336 & 960& 32 \\ Sun HPC 10000(333MHz 4MB L2 Cache) & 64 & 34.17& 20352 & 3648& 42.6\\ Fujitsu VPP700/16 ( 7nsec) & 16 & 34.1 & 59200 & 3520& 35 \\ Fujitsu VPP300/16 ( 7nsec) & 16 & 34.1 & 59200 & 3520& 35 \\ Sun HPC 10000(333MHz 4MB L2 Cache) & 60 & 32.27& 20352 & 3456& 40.0\\ Paragon XP/S MP(256 Nodes, OS=SUNMOS S1.6)& 768 & 31.7 & 43500 & 8400& 38 \\ NEC SX-4/16 (8.0 ns) & 16 & 31.10& 20480 & 960& 32 \\ NEC SX-4/16M2 (8.0 ns) & 16 & 31.09& 20480 & 2048 32 \\ Sun HPC 6500 Cluster/4 (250 MHz, 4MB L2) & 80 & 30.98& 24192 &13440& 40 \\ DEC AlphaServer 8400 5/612 (625 MHz) & 64 & 30.90& 30704 & 8360& 80 \\ NEC SX-4/16A (8.0 ns) & 16 & 30.83& 20480 & 960& 32 \\ Thinking Machines CM-5 & 512 & 30.4 & 36864 &16384& 66 \\ Sun HPC 10000(333MHz 4MB L2 Cache) & 56 & 30.27& 20352 & 3264& 37.3\\ Hitachi SR2201/128(150MHz) & 128 & 29.46& 51840 & 7680& 38.4\\ IBM SP2 (160 MHz) & 64 & 29.45& 27500 & 5700& 41 \\ IBM SP2-T2 (66 MHz) & 160 & 28.7 & 42200 &10300& 42 \\ Hitachi S-3800/480 (2 ns) & 4 & 28.4 & 15500 & 830& 32 \\ Sun HPC 10000(333MHz 4MB L2 Cache) & 52 & 28.32& 20352 & 3072& 34.6\\ CRAY T3E (300 MHz) & 64 & 28.31& 29952 & 4032& 38.4\\ Hitachi S-3000 cluster/204 (2x2) (2 ns) & 4 & 27.9 & 21600 & 1640& 32 \\ HP Exemplar X-Class SPP-UX 5.2 & 64 & 27.56& 29956 & 4584& 46 \\ Hitachi S-3000 cluster/404 (1x4) (2 ns) & 4 & 27.2 & 31200 & 2680& 32 \\ SGI POWER CHALLENGE (90 MHz) & 128 & 26.7 & 53000 &20000& 46 \\ CRAY T3E-1200E (600 MHz) & 32 & 26.58& 44544 & 3456& 38.4\\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 64 & 26.45& 19968 & 3072& 32 \\ Sun HPC 10000(333MHz 4MB L2 Cache) & 48 & 26.38& 20352 & 2880& 32.0\\ SGI Origin 2000 (250 MHz) & 64 & 26.24& 43520 & 5200& 32 \\ Sun HPC 6500 Cluster/4 (250 MHz, 4MB L2) & 64 & 25.40& 26880 &10752& 32 \\ DEC AlphaServer 8400 5/612 (625 MHz) & 56 & 25.39& 26864 & 8360& 70 \\ Cray T3D 256 (150 MHz) & 256 & 25.3 & 40960 & 4918& 38 \\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 60 & 24.83& 19968 & 2800& 30 \\ DEC 8400 5/440 (440 MHz) & 64 & 24.7 & 30712 & 4584& 56.3\\ Sun HPC 10000(333MHz 4MB L2 Cache) & 44 & 24.36& 20352 & 2688& 29.3\\ Fujitsu VPP500/16 (10nsec) & 16 & 23.6 & 21120 & 3360& 26 \\ IBM SP2 thin-node2,SP-sw,256MB/node(66 MHz)& 128 & 23.45& 56000 & 9200& 33.6\\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 56 & 23.38& 19968 & 2880& 28 \\ NEC SX-3/44R (2.5 ns) & 4 & 23.2 & 6400 & 830& 26 \\ IBM SP2-T2 (66 MHz) & 128 & 22.9 & 37000 & 9200& 34 \\ IBM POWER2 Super Chip RS/6000 SP(120 MHz) & 64 & 22.55& 27400 & 6500& 31 \\ Sun HPC 10000(333MHz 4MB L2 Cache) & 40 & 22.27& 20352 & 2496& 26.6\\ DEC 8400 5/440 (440 MHz) & 56 & 21.8 & 26856 & 4072& 49.3\\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 52 & 21.68& 19968 & 2496& 26 \\ Hitachi S-3800/380 (2 ns) & 3 & 21.6 & 15680 & 760& 24 \\ Hitachi S-3000 cluster/303 (1x3) (2 ns) & 3 & 21.5 & 27000 & 1560& 24 \\ Sun Ultra HPC 10000(250 MHz 1MB L2 Cache) & 64 & 21.37& 15000 & 4200& 32.0\\ Sun Ultra HPC 10000(250 MHz 1MB L2 Cache) & 63 & 21.14& 15000 & 4200& 31.5\\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 50 & 21.05& 19968 & 2496& 25 \\ CRAY T3E-900 (450 MHz) & 32 & 20.86& 31104 & 3072& 29 \\ IBM SP 16 nodes (332 MHz 604e) & 64 & 20.83& 44800 & 7800& 42 \\ SGI Origin 2000 (195 MHz) & 64 & 20.75& 43520 & 4608& 25.0\\ Cray C90 (240 MHz)*** & 16 & 20.65& 13312 & 700& 15 \\ DEC AlphaServer 8400 5/612 (625 MHz) & 40 & 20.54& 24552 & 8960& 50 \\ Sun Ultra HPC 10000(250 MHz 1MB L2 Cache) & 60 & 20.31& 15000 & 3600& 30.0\\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 48 & 20.30& 19968 & 2496& 24 \\ Sun HPC 10000(333MHz 4MB L2 Cache) & 36 & 20.11& 20352 & 2304& 24.0\\ NEC SX-3/44 (2.9 ns) & 4 & 20.0 & 6144 & 832& 22 \\ Sun HPC 6500 Cluster/2 (250 MHz, 4MB L2) & 48 & 19.42& 18816 & 5376& 24 \\ LANL Avalon Cluster:Alpha 533 Mhz+100Mb/s sw& 68 & 19.33& 30464 &14376& 72.5\\ DEC 8400 5/440 (440 MHz) & 48 & 19.2 & 23032 & 4048& 42.2\\ Sun Ultra HPC 10000(250 MHz 1MB L2 Cache) & 56 & 19.14& 15000 & 3600& 28.0\\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 44 & 18.67& 19968 & 2496& 22 \\ Fujitsu VPP700/8E (6.5nsec) & 8 & 18.6 & 41600 & 2400& 19 \\ Fujitsu VPP300/8E (6.5nsec) & 8 & 18.6 & 41600 & 2400& 19 \\ SGI POWER CHALLENGE (75 MHz) & 96 & 18.5 & 53000 &20000& 29 \\ DEC AlphaServer 8400 5/612 (625 MHz) & 32 & 17.96& 25624 & 4088& 40 \\ Sun HPC 10000(333MHz 4MB L2 Cache) & 32 & 17.91& 20352 & 2112& 21.3\\ Sun HPC 6000(336MHz 4MB L2 Cache) & 30 & 17.89& 20352 & 2112& 20.2\\ NEC SX-3/34R (2.5 ns) & 3 & 17.4 & 6144 & 691& 19 \\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 40 & 17.12& 19968 & 2496& 20 \\ Fujitsu VPP700/8 ( 7nsec) & 8 & 17.1 & 41600 & 2080& 18 \\ Fujitsu VPP300/8 ( 7nsec) & 8 & 17.1 & 41600 & 2080& 18 \\ Sun HPC 6000(336MHz 4MB L2 Cache) & 28 & 16.74& 20352 & 2112& 18.8\\ Sun Ultra2/2200 Sparc Cluster & 32 & 16.71& 28416 & 9216& 25.6\\ DEC 8400 5/440 (440 MHz) & 40 & 16.7 & 20456 & 3200& 35.2\\ Sun Ultra HPC 10000(250 MHz 1MB L2 Cache) & 48 & 16.66& 15000 & 3600& 24.0\\ Paragon XP/S MP(128 Nodes, OS=SUNMOS S1.6)& 384 & 16.0 & 30700 & 5700& 19 \\ Cray C90 (240 MHz)*** & 12 & 15.97& 13312 & 600& 12 \\ Sun HPC 4500 Cluster/4 (250 MHz, 4MB L2) & 44 & 15.96& 26880 & 8064& 22 \\ Sun HPC 10000(333MHz 4MB L2 Cache) & 28 & 15.66& 20352 & 1728& 18.6\\ SGI POWER CHALLENGE (90 MHz) & 64 & 15.6 & 37000 & 8500& 23 \\ Sun HPC 6000(336MHz 4MB L2 Cache) & 26 & 15.59& 20352 & 1920& 17.5\\ NEC SX-4/8M2 (8.0 ns) & 8 & 15.44& 9984 & 1920 16 \\ NEC SX-4/8 (8.0 ns) & 8 & 15.43& 9984 & 860& 16 \\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 36 & 15.42& 19968 & 2112& 18 \\ NEC SX-4/8A (8.0 ns) & 8 & 15.31& 9984 & 860& 16 \\ Intel Paragon XPS-35 (50 MHz, OS=R1.1) & 512 & 15.2 & 23000 & 9000& 26 \\ Thinking Machines CM-5 & 256 & 15.1 & 26112 &12032& 33 \\ HP Exemplar X-Class SPP-UX 5.2 & 32 & 15.01& 26848 & 1840& 23 \\ IBM SP2 (160 MHz) & 32 & 14.93& 20000 & 3840& 20 \\ HITACHI SR2201/64(150MHz) & 64 & 14.89& 38880 & 6720& 19 \\ Hitachi S-3800/280 (2 ns) & 2 & 14.6 & 15680 & 570& 16 \\ Sun HPC 10000(333MHz 4MB L2 Cache) & 26 & 14.53& 20352 & 1728& 17.3\\ IBM SP2 (77 MHz, switch of 4/96) & 64 & 14.5 & 27000 & 5100& 20 \\ Hitachi S-3000 cluster/202 (1x2) (2 ns) & 2 & 14.5 & 21600 & 1100& 16 \\ Sun HPC 6000(336MHz 4MB L2 Cache) & 24 & 14.49& 20352 & 1728& 16.1\\ Sun Ultra HPC 10000(250 MHz 1MB L2 Cache) & 40 & 14.06& 15000 & 3000& 20.0\\ CRAY T3E (300 MHz) & 32 & 14.03& 21120 & 2832& 19.2\\ Intel Delta (40 MHz) & 512 & 13.9 & 25000 & 7500& 20 \\ DEC AlphaServer 8400 5/612 (625 MHz) & 24 & 13.79& 25624 & 3072& 30 \\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 32 & 13.77& 19968 & 1920& 16 \\ Cray Y-MP C90 (240 MHz 4.2 ns) & 16 & 13.7 & 10000 & 650& 15 \\ DEC 8400 5/440 (440 MHz) & 32 & 13.7 & 19176 & 4584& 28.2\\ CRAY T3E-1200E (600 MHz) & 16 & 13.41& 31680 & 2304& 19.2\\ Sun Ultra HPC 6000(250 MHz 4MB L2 Cache) & 30 & 13.39& 19968 & 1920& 15 \\ Sun HPC 10000(333MHz 4MB L2 Cache) & 24 & 13.39& 20352 & 1728& 16.0\\ Sun HPC 6000(336MHz 4MB L2 Cache) & 22 & 13.33& 20352 & 1728& 14.8\\ SGI Origin 2000 (250 MHz) & 32 & 13.22& 30720 & 3200& 16 \\ HITACHI SR2201/56(150MHz) & 56 & 12.98& 33600 & 4480& 17 \\ Sun HPC 6500 Cluster/2 (250 MHz, 4MB L2) & 32 & 12.85& 17472 & 5376& 16 \\ Cray T3D 128 (150 MHz) & 128 & 12.8 & 20736 & 3408& 19 \\ Sun Ultra HPC 6000(250 MHz 4MB L2 Cache) & 28 & 12.53& 19968 & 1728& 14 \\ IBM SP2 thin-node2,SP-sw,256MB/node(66 MHz)& 64 & 12.50& 39000 & 7000& 16.8\\ Intel Paragon XPS-35 (50 MHz) & 296 & 12.5 & 29400 & 5000& 15 \\ Sun Ultra HPC 6000 250 MHz (1MB L2 Cache) & 30 & 12.42& 15700 & 4000& 15.0\\ DEC 4100 5/400 (400 MHz) & 32 & 12.37& 15340 & 6120& 25.6\\ Sun HPC 10000(333MHz 4MB L2 Cache) & 22 & 12.32& 20352 & 1536& 14.7\\ Sun HPC 6000(336MHz 4MB L2 Cache) & 20 & 12.13& 20352 & 1536& 13.4\\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 28 & 12.05& 19968 & 1728& 14 \\ Fujitsu VPP500/8 (10nsec) & 8 & 12.0 & 14960 & 2216& 13 \\ Sun Ultra HPC 6000(250 MHz 4MB L2 Cache) & 26 & 11.66& 19968 & 1728& 13 \\ NEC SX-3/42R (2.5 ns) & 4 & 11.6 & 4352 & 516& 13 \\ NEC SX-3/24R (2.5 ns) & 2 & 11.6 & 4352 & 492& 13 \\ IBM SP2-T2 (66 MHz) & 64 & 11.4 & 26500 & 6250& 16 \\ IBM POWER2 Super Chip RS/6000 SP(120 MHz) & 32 & 11.38& 19500 & 4100& 15 \\ Sun Ultra HPC 10000(250 MHz 1MB L2 Cache) & 32 & 11.34& 15000 & 2400& 16.0\\ Sun HPC 10000(333MHz 4MB L2 Cache) & 20 & 11.24& 20352 & 1536& 13.3\\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 26 & 11.20& 19968 & 1728& 13 \\ Sun HPC 6000(336MHz 4MB L2 Cache) & 18 & 10.94& 20352 & 1344& 12.1\\ Cray C90 (240 MHz)*** & 8 & 10.93& 13312 & 490& 7.7\\ SGI Origin 2000 (195 MHz, 4MB L2 Cache) & 32 & 10.9 & 32000 & 6400& 12.5\\ DEC 8400 5/440 (440 MHz) & 24 & 10.9 & 15340 & 4088& 21.1\\ Sun Ultra HPC 6000(250 MHz 4MB L2 Cache) & 24 & 10.78& 19968 & 1728& 12 \\ HP Exemplar V-Class (240 MHz) & 16 & 10.65& 14944 & 896& 15 \\ CRAY T3E-900 (450 MHz) & 16 & 10.45& 22080 & 2016& 14 \\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 24 & 10.35& 19968 & 1728& 12 \\ IBM SP 8 nodes (332 MHz 604e) & 32 & 10.33& 31600 & 5000& 21 \\ Intel Delta (40 MHz) & 384 & 10.2 & 20000 & 6000& 15 \\ Berkeley NOW:UltraSPARC-1(167-Mhz)+Myricom& 100 & 10.14& 32768 & 8192& 33.4\\ NEC SX-3/24 (2.9 ns) & 2 & 10.0 & 4352 & 500& 11 \\ NEC SX-3/42 (2.9 ns) & 4 & 10.0 & 4608 & 640& 11 \\ Sun Ultra HPC 6000 250 MHz (1MB L2 Cache) & 24 & 9.992& 15700 & 1632& 12.0\\ Sun Ultra HPC 6000(250 MHz 4MB L2 Cache) & 22 & 9.887& 19968 & 1728& 11 \\ Thinking Machines CM-200 (10 MHz) & 2048 & 9.8 & 29696 &11264& 20 \\ Sun HPC 6000(336MHz 4MB L2 Cache) & 16 & 9.715& 20352 & 1344& 10.8\\ DEC AlphaServer 8400 5/612 (625 MHz) & 16 & 9.592& 25624 & 3072& 20 \\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 22 & 9.513& 19968 & 1728& 11 \\ DEC 4100 5/400 (400 MHz) & 24 & 9.48 & 15344 & 3600& 19.2\\ Cray T94 (2.2 ns) *** & 4 & 9.414& 8192 & 420& 7.2\\ SGI POWER CHALLENGE (90 MHz) & 40 & 9.4 & 27000 & 6775& 14 \\ Fujitsu VPP700/4E (6.5nsec) & 4 & 9.33 & 28800 & 1280& 9.6\\ Fujitsu VPP300/4E (6.5nsec) & 4 & 9.33 & 28800 & 1280& 9.6\\ Fujitsu VX/4E (6.5nsec) & 4 & 9.33 & 28800 & 1280& 9.6\\ HP Exemplar V-Class (200 MHz) & 16 & 9.203& 14944 & 868& 12.8\\ Sun HPC 10000(333MHz 4MB L2 Cache) & 16 & 9.107& 20352 & 1344& 10.7\\ Sun Ultra HPC 6000(250 MHz 4MB L2 Cache) & 20 & 8.997& 19968 & 1344& 10 \\ NEC SX-3/32R (2.5 ns) & 3 & 8.7 & 6144 & 717& 9.6\\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 20 & 8.679& 19968 & 1344& 10 \\ Fujitsu VPP700/4 ( 7nsec) & 4 & 8.6 & 28800 & 1280& 8.8\\ Fujitsu VPP300/4 ( 7nsec) & 4 & 8.6 & 28800 & 1280& 8.8\\ Fujitsu VX/4 ( 7nsec) & 4 & 8.6 & 28800 & 1280& 8.8\\ Sun HPC 6000(336MHz 4MB L2 Cache) & 14 & 8.527& 20352 & 1344& 9.4\\ Cray C90 (240 MHz)*** & 6 & 8.29 & 13312 & 450& 5.8\\ SGI POWER CHALLENGE (195 MHz, 2MB cache) & 32 & 8.233& 16000 & 4000& 12 \\ HP Exemplar V-Class (240 MHz) & 12 & 8.228& 14944 & 736& 11.5\\ Sun Ultra HPC 6000(250 MHz 4MB L2 Cache) & 18 & 8.113& 19968 & 1344& 9 \\ Parsytec GC/Power Plus (80 MHz) & 192 & 8.0 & 27192 & 9500& 15 \\ SGI Origin 2000 (195 MHz, 4MB cache) & 24 & 7.928& 19000 & 3500& 9.4\\ Sun Ultra HPC 6000 167 MHz (1MB L2 Cache) & 30 & 7.806& 14000 & 1000& 10.0\\ Paderborn SCI Cluster:SNI/Scali(300MHz PII)& 64 & 7.8 & 28000 & 8000& 19.2\\ SGI POWER CHALLENGE (75 MHz) & 40 & 7.8 & 27000 & 6775& 12 \\ HP Exemplar S-Class SPP-UX 5.2 & 16 & 7.783& 13320 & 1044& 11.5\\ DEC 8400 5/440 (440 MHz) & 16 & 7.7 & 15340 & 3270& 14.1\\ Thinking Machines CM-5 & 128 & 7.7 & 18432 & 8192& 16 \\ Cray J932 (10 ns) *** & 32 & 7.622& 19456 & 800& 6.4\\ SGI POWER CHALLENGE (195 MHz, 2MB cache) & 28 & 7.635& 15000 & 4000& 11 \\ Intel Paragon XPS-35 (50 MHz, OS=R1.1) & 256 & 7.6 & 16000 & 4000& 13 \\ IBM SP2 (160 MHz) & 16 & 7.57 & 13500 & 2280& 10 \\ SGI POWER CHALLENGE (90 MHz) & 32 & 7.5 & 22000 & 5600& 16 \\ Cray J928 (10 ns) *** & 28 & 7.413& 19456 & 750& 5.6\\ Hitachi S-3800/180 (2 ns) & 1 & 7.4 & 15680 & 470& 8 \\ IBM SP2 (77 MHz, switch of 4/96) & 32 & 7.3 & 19500 & 3500& 10 \\ Sun Ultra HPC 6000(250 MHz 4MB L2 Cache) & 16 & 7.219& 19968 & 1344& 8 \\ CRAY T3E (300 MHz) & 16 & 7.133& 14976 & 1728& 9.6 \\ DEC 8400 5/625 (612 MHz) & 12 & 7.283& 9548 & 1800& 14.7\\ Cray T94 (2.2 ns) *** & 3 & 7.112& 8192 & 370& 5.4\\ HP Exemplar V-Class (200 MHz) & 12 & 7.094& 14944 & 696& 9.6\\ Sun Ultra HPC 10000(250 MHz 4MB L2 Cache) & 16 & 7.023& 19968 & 1344& 8 \\ Intel Delta (40 MHz) & 256 & 7.0 & 18000 & 5000& 10 \\ SGI POWER CHALLENGE (195 MHz, 2MB cache) & 24 & 6.819& 15000 & 3500& 9.4\\ DEC 4100 5/400 (400 MHz) & 16 & 6.89 & 15344 & 2760& 12.8\\ Sun Ultra HPC 6000 250 MHz (1MB L2 Cache) & 16 & 6.688& 15700 & 1088& 8.0\\ DEC Alphaserver 8400 5/440(440MHz, 4MB cache)&12 & 6.678& 9548 & 1028& 10.6\\ CRAY T3E-1200E (600 MHz) & 8 & 6.674& 22272 & 1536& 9.6\\ Cray J924 (10 ns) *** & 24 & 6.645& 19456 & 700& 4.8\\ IBM SP2 thin-node2,SP-sw,256MB/node(66 MHz)& 32 & 6.569& 28000 & 5200& 8.4\\ Cray T3D 64 (150 MHz) & 64 & 6.4 & 20736 & 2368& 9.6\\ Sun Ultra HPC 6000 167 MHz (1MB L2 Cache) & 24 & 6.350& 14000 & 800& 8.0\\ Sun Ultra HPC 6000 250 MHz (4MB L2 Cache) & 14 & 6.251& 15552 & 1152& 7.0\\ Convex SPP-1000(64 procs)100 MHz & 64 & 6.192& 41000 &11400& 12.8\\ SGI POWER CHALLENGE (195 MHz, 1 MB cache) & 24 & 6.118& 15000 & 3100& 9.3\\ Fujitsu VPP500/4 (10nsec) & 4 & 6.1 & 10560 & 1390& 6.4\\ HP Exemplar S-Class SPP-UX 5.2 & 12 & 6.005& 13320 & 800& 8.6\\ Cray J920 (10 ns) *** & 20 & 5.917& 19456 & 675& 4.0\\ DEC 8400 5/350 (12 proc 350 MHz) & 12 & 5.904& 9548 & 3010& 8.4\\ SGI POWER CHALLENGE (195 MHz, 2MB cache) & 20 & 5.872& 15000 & 3000& 7.8\\ Sun Ultra HPC 6000 250 MHz (1MB L2 Cache) & 14 & 5.856& 15700 & 960& 7.0\\ DEC Alphaserver 8400 5/440(440MHz, 4MB cache)&10 & 5.845& 9548 & 1124& 8.8\\ SGI POWER CHALLENGE (195 MHz, 1 MB cache) & 22 & 5.812& 15000 & 2900& 8.6\\ IBM SP2-T2 (66 MHz) & 32 & 5.8 & 18000 & 4500& 8.4\\ NEC SX-3/41R (2.5 ns) & 4 & 5.8 & 3584 & 414& 6.4\\ NEC SX-3/22R (2.5 ns) & 2 & 5.8 & 3072 & 370& 6.4\\ NEC SX-3/14R (2.5 ns) & 1 & 5.8 & 2816 & 282& 6.4\\ IBM POWER2 Super Chip RS/6000 SP(120 MHz) & 16 & 5.767& 13500 & 2600& 7.7\\ Cray C90 (240 MHz)*** & 4 & 5.75 & 13312 & 420& 3.8\\ HP Exemplar V-Class (240 MHz) & 8 & 5.657& 14944 & 560& 7.68\\ Convex SPP-1600(32 procs)120 MHz & 32 & 5.452& 27000 & 4500& 7.7\\ SGI POWER CHALLENGE (195 MHz, 1 MB cache) & 20 & 5.430& 15000 & 2600& 7.8\\ IBM SP 4 nodes (332 MHz 604e) & 16 & 5.37 & 22400 & 3200& 11 \\ SGI Origin 2000 (195 MHz, 4MB cache) & 16 & 5.300& 16000 & 1000& 6.2\\ CRAY T3E-900 (450 MHz) & 8 & 5.243& 15552 & 1488& 7.2\\ Intel Delta (40 MHz) & 192 & 5.2 & 15000 & 4500& 7.7\\ Parsytec GC/Power Plus (80 MHz) & 128 & 5.2 & 22000 & 7800& 10 \\ Thinking Machines CM-2 (7 MHz) & 2048 & 5.2 & 26624 &11000& 14 \\ DEC AlphaServer 8400 5/300 & 12 & 5.0 & 9548 & 1148& 7.2\\ Meiko CS2 & 64 & 5.0 & 18688 & 6144& 11.5\\ NEC SX-3/22 (2.9 ns) & 2 & 5.0 & 3072 & 384& 5.5\\ NEC SX-3/14 (2.9 ns) & 1 & 5.0 & 3072 & 384& 5.5\\ Thinking Machines CM-200 (10 MHz) & 1024 & 5.0 & 21504 & 8192& 10 \\ SGI POWER CHALLENGE (195 MHz, 2MB cache) & 18 & 4.992& 15000 & 2350& 7.0\\ Cray J916 (10 ns) *** & 16 & 4.911& 19456 & 640& 3.2\\ SGI POWER CHALLENGE (75 MHz) & 24 & 4.9 & 18000 & 3500& 7.2\\ Cray T94 (2.2 ns) *** & 2 & 4.886& 8192 & 350& 3.6\\ Sun HPC 6000(336MHz 4MB L2 Cache) & 8 & 4.886& 20352 & 960& 5.4\\ SGI POWER CHALLENGE (195 MHz, 2MB cache) & 16 & 4.862& 15000 & 2500& 6.2\\ HP Exemplar V-Class (200 MHz) & 8 & 4.860& 14944 & 552& 6.4\\ Alliant CAMPUS/800 (40 MHz) & 192 & 4.8 & 17024 & 5768& 7.7\\ IBM SP-1 & 64 & 4.8 & 26000 & 6000& 8 \\ DEC Alphaserver 8400 5/440(440MHz, 4MB cache)& 8 & 4.754& 7644 & 1500& 7.0\\ SGI POWER CHALLENGE (90 MHz) & 18 & 4.620& 2500 & 540& 6.5\\ Compaq Digital AlphaServer 8400 (575 MHz) & 6 & 4.600& 11504 & 900& 6.9\\ Compaq Digital AlphaServer 8200 (575 MHz) & 6 & 4.450& 11504 & 800& 6.9\\ SGI POWER CHALLENGE (195 MHz, 1 MB cache) & 16 & 4.527& 15000 & 2200& 6.2\\ NEC SX-3/31R (2.5 ns) & 3 & 4.4 & 6144 & 414& 5.4\\ SGI POWER CHALLENGE (90 MHz) & 16 & 4.323& 2500 & 540& 5.8\\ Cray C90 (240 MHz)*** & 3 & 4.31 & 13312 & 380& 2.9\\ Sun Ultra HPC 6000 167 MHz (1MB L2 Cache) & 16 & 4.305& 14000 & 700& 5.3\\ SGI POWER CHALLENGE (75 MHz) & 18 & 4.142& 2604 & 570& 5.4\\ HP Exemplar S-Class SPP-UX 5.2 & 8 & 4.103& 13320 & 520& 5.8\\ Alliant CAMPUS/800 (40 MHz) & 168 & 4.1 & 16016 & 5516& 6.7\\ SGI POWER CHALLENGE (195 MHz, 1 MB cache) & 14 & 4.041& 15000 & 2000& 5.5\\ SGI Origin 2000 (195 MHz, 4MB cache) & 12 & 4.038& 15000 & 1000& 4.7\\ DEC 8400 5/625 (612 MHz) & 6 & 4.003& 9156 & 1100& 7.34\\ Intel Paragon XPS-35 (50 MHz, OS=R1.1) & 128 & 4.0 & 12000 & 3000& 6.4\\ Convex SPP-1200(32 procs)120 MHz & 32 & 3.962& 27700 & 4500& 7.7\\ DEC AlphaServer 8400 5/300 & 10 & 3.9 & 9540 & 812& 6.0\\ Parsytec GC/Power Plus (80 MHz) & 96 & 3.9 & 19000 & 6599& 7.7\\ IBM SP2 (160 MHz) & 8 & 3.83 & 10000 & 1320& 5.1\\ Thinking Machines CM-5 & 64 & 3.8 & 13056 & 6016& 8 \\ Cray J912 (10 ns) *** & 12 & 3.768& 19456 & 690& 2.4\\ SGI POWER CHALLENGE (90 MHz) & 14 & 3.767& 2000 & 470& 5.0\\ HITACHI SR2201/16(150MHz) & 16 & 3.74 & 19440 & 2880& 4.8\\ IBM SP2 (77 MHz, switch of 4/96) & 16 & 3.7 & 13500 & 2200& 5 \\ SGI POWER CHALLENGE (75 MHz) & 16 & 3.7 & 2500 & 540& 4.8\\ Sun HPC 6000(336MHz 4MB L2 Cache) & 6 & 3.672& 20352 & 960& 4.0\\ SGI POWER CHALLENGE (195 MHz, 2MB cache) & 12 & 3.604& 10000 & 2000& 4.7\\ Sun Ultra HPC 6000 250 MHz (4MB L2 Cache) & 8 & 3.589& 15552 & 768& 4.0\\ DEC 4100 5/400 (400 MHz) & 8 & 3.57 & 8964 & 1340& 6.4\\ CRAY T3E (300 MHz) & 8 & 3.542& 10560 & 1152& 4.8\\ Intel Delta (40 MHz) & 128 & 3.5 & 12500 & 3500& 5 \\ Alliant CAMPUS/800 (40 MHz) & 144 & 3.5 & 15484 & 4956& 5.8\\ SGI POWER CHALLENGE (195 MHz, 1 MB cache) & 12 & 3.496& 15000 & 1650& 4.7\\ IBM SP2 thin-node2,SP-sw,256MB/node(66 MHz)& 16 & 3.414& 19000 & 3400& 4.2\\ SGI POWER CHALLENGE (90 MHz) & 12 & 3.398& 2000 & 450& 4.3\\ CRAY T3E-1200E (600 MHz) & 4 & 3.372& 15936 & 960& 4.8\\ Sun Ultra HPC 6000 250 MHz (1MB L2 Cache) & 8 & 3.328& 15700 & 700& 4.0\\ Convex SPP-1000(32 procs)100 MHz & 32 & 3.306& 25800 & 4700& 6.4\\ Cray T3D 32 (150 MHz) & 32 & 3.2 & 14592 & 1616& 3.6\\ DEC AlphaServer 8400 5/300 & 8 & 3.2 & 7668 & 540& 4.8\\ SGI POWER CHALLENGE (75 MHz) & 14 & 3.203& 2000 & 470& 4.2\\ IBM SP2-T2 (66 MHz) & 16 & 3.0 & 13000 & 2600& 4.2\\ Cray C90 (240 MHz)*** & 2 & 2.92 & 13312 & 350& 1.9\\ HP Exemplar V-Class (240 MHz) & 4 & 2.910& 14944 & 400& 3.84\\ Alliant CAMPUS/800 (40 MHz) & 120 & 2.9 & 14000 & 4620& 4.8\\ NEC SX-3/21R (2.5 ns) & 2 & 2.9 & 2560 & 257& 3.2\\ NEC SX-3/12R (2.5 ns) & 1 & 2.9 & 2048 & 174& 3.2\\ IBM POWER2 Super Chip RS/6000 SP(120 MHz) & 8 & 2.876& 9500 & 1500& 3.8\\ SGI POWER CHALLENGE (75 MHz) & 12 & 2.874& 2000 & 450& 3.6\\ Convex SPP-1600(16 procs)120 MHz & 16 & 2.840& 18000 & 2400& 3.8\\ SGI POWER CHALLENGE (90 MHz) & 10 & 2.830& 2000 & 400& 3.6\\ Meiko CS2 & 32 & 2.8 & 13824 & 3488& 5.8\\ Parsytec GC/Power Plus (80 MHz) & 64 & 2.8 & 16000 & 4500& 5.1\\ Convex SPP-1200(24 procs)120 MHz & 24 & 2.830& 21100 & 3400& 5.8\\ Sun Ultra HPC 6000 250 MHz (4MB L2 Cache) & 6 & 2.694& 15552 & 672& 3.0\\ SGI Origin 2000 (195 MHz, 4MB cache) & 8 & 2.678& 10000 & 1000& 3.1\\ CRAY T3E-900 (450 MHz) & 4 & 2.630& 11040 & 880& 3.6\\ Intel iPSC/860 (40 MHz) & 128 & 2.6 & 12000 & 4500& 5. \\ Cray J908 (10 ns) *** & 8 & 2.585& 19456 & 520& 1.6\\ SGI POWER CHALLENGE (195 MHz, 2MB cache) & 8 & 2.513& 10000 & 1500& 3.1\\ NEC SX-3/12 (2.9 ns) & 1 & 2.5 & 2048 & 256& 2.8\\ HP Exemplar V-Class (200 MHz) & 4 & 2.495& 14944 & 384& 3.2\\ Sun Ultra HPC 6000 250 MHz (1MB L2 Cache) & 6 & 2.483& 15700 & 700& 3.0\\ Cray T94 (2.2 ns) *** & 1 & 2.474& 8192 & 280& 1.8\\ Sun HPC 6000(336MHz 4MB L2 Cache) & 4 & 2.452& 20352 & 960& 2.7\\ DEC AlphaServer 8400 5/300 & 6 & 2.4 & 9640 & 540& 3.6\\ DEC AlphaServer 8200 5/300 & 6 & 2.4 & 9640 & 540& 3.6\\ IBM SP-1 & 32 & 2.4 & 16000 & 4000& 4 \\ Thinking Machines CM-200 (10 MHz) & 512 & 2.4 & 14848 & 5632& 5 \\ SGI POWER CHALLENGE (75 MHz) & 10 & 2.395& 2000 & 470& 3.0\\ SGI POWER CHALLENGE (90 MHz) & 8 & 2.318& 1900 & 360& 2.9\\ Alliant CAMPUS/800 (40 MHz) & 96 & 2.3 & 13020 & 4396& 3.8\\ Intel iPSC/860 (40 MHz) & 120 & 2.3 & 12000 & 4500& 4.8\\ Fujitsu AP1000 & 512 & 2.3 & 25600 & 2500& 2.8\\ Sun Ultra HPC 6000 167 MHz (1MB L2 Cache) & 8 & 2.185& 14000 & 500& 2.7\\ HP Exemplar S-Class SPP-UX 5.2 & 4 & 2.121& 13320 & 520& 2.9\\ Sun Ultra HPC 450 (300 MHz) & 4 & 2.09 & 10944 & 492& 2.4\\ Convex SPP-1200(16 procs)120 MHz & 16 & 2.032& 19000 & 2800& 3.8\\ DEC 4100 5/400 (400 MHz) & 4 & 2.019& 4929 & 1280& 3.2\\ Intel Paragon XPS-35 (50 MHz, OS=R1.1) & 64 & 2.0 & 8000 & 2000& 3.2\\ SGI POWER CHALLENGE (75 MHz) & 8 & 1.955& 1900 & 360& 2.4\\ Thinking Machines CM-5 & 32 & 1.9 & 9216 & 4096& 4 \\ Intel iPSC/860 (40 MHz) & 96 & 1.9 & 11000 & 4000& 3.8\\ nCUBE 2 (20 MHz) & 1024 & 1.9 & 21376 & 3193& 2.4\\ CRAY T3E (300 MHz) & 4 & 1.806& 7488 & 768& 2.4\\ IBM SP2 (77 MHz, switch of 4/96) & 8 & 1.8 & 9500 & 1200& 2.5\\ Sun Ultra HPC 6000 250 MHz (4MB L2 Cache) & 4 & 1.798& 15552 & 576& 2.0\\ IBM SP2 thin-node2,SP-sw,256MB/node(66 MHz)& 8 & 1.768& 12000 & 1700& 2.1\\ Intel Delta (40 MHz) & 64 & 1.7 & 8000 & 2500& 2.6\\ CRAY T3E-1200E (600 MHz) & 2 & 1.675& 11040 & 576& 2.4\\ SGI POWER CHALLENGE (90 MHz) & 6 & 1.690& 2000 & 294& 2.2\\ Alliant CAMPUS/800 (40 MHz) & 72 & 1.6 & 12012 & 3724& 2.9\\ MasPar MP-2216 (80ns) &16384 & 1.6 & 11264 & 1920& 2.4\\ Sun Ultra HPC 6000 250 MHz (1MB L2 Cache) & 4 & 1.560& 15700 & 500& 2.0\\ DEC 4100 5/300 (300 MHz) & 4 & 1.544& 4436 & 500& 2.4\\ IBM SP2-T2 (66 MHz) & 8 & 1.5 & 9000 & 1680& 2.1\\ Meiko CS2 & 16 & 1.5 & 10880 & 1952& 2.9\\ NEC SX-3/11R (2.5 ns) & 1 & 1.5 & 2048 & 130& 1.6\\ Parsytec GC/Power Plus (80 MHz) & 32 & 1.5 & 11000 & 3500& 2.5\\ Convex SPP-1600(8 procs)120 MHz & 8 & 1.455& 11000 & 750& 1.9\\ SGI POWER CHALLENGE (75 MHz) & 6 & 1.430& 2000 & 294& 1.8\\ Intel iPSC/860 (40 MHz) & 72 & 1.4 & 9000 & 3500& 2.9\\ Intel iPSC/860 (40 MHz) & 64 & 1.4 & 9000 & 3500& 2.6\\ SGI Origin 2000 (195 MHz, 4MB cache) & 4 & 1.385& 10000 & 1000& 1.6\\ CRAY T3E-900 (450 MHz) & 2 & 1.323& 7776 & 528& 1.8\\ SGI POWER CHALLENGE (195 MHz, 2MB cache) & 4 & 1.305& 10000 & 1000& 1.6\\ Meiko Computing Surface (40 MHz) & 62 & 1.3 & 8500 & 3500& 2.5\\ NEC SX-3/11 (2.9 ns) & 1 & 1.3 & 2816 & 192& 1.4\\ SGI CHALLENGE (6.6ns) & 36 & 1.284& 8000 & 2000& 2.7\\ SGI CHALLENGE (6.6ns) & 32 & 1.254& 8000 & 2000& 2.4\\ DEC AlphaServer 2100 5/250 & 4 & 1.2 & 4056 & 800& 2.0\\ Fujitsu AP1000 & 256 & 1.2 & 18000 & 1600& 1.4\\ IBM SP-1 & 16 & 1.2 & 12000 & 2300& 2 \\ Thinking Machines CM-200 (10 MHz) & 256 & 1.2 & 10752 & 4096& 2.5\\ SGI CHALLENGE (6.6ns) & 28 & 1.153& 8000 & 2000& 2.1\\ SGI POWER CHALLENGE (90 MHz) & 4 & 1.182& 1000 & 240& 1.4\\ Alliant CAMPUS/800 (40 MHz) & 48 & 1.1 & 10024 & 3024& 1.9\\ Sun Ultra HPC 450 (300 MHz) & 2 & 1.05 & 10944 & 192& 1.2\\ SGI POWER CHALLENGE (75 MHz) & 4 & 1.046& 14000 & 1000& 1.2\\ Convex SPP-1200(8 procs)120 MHz & 8 & 1.026& 11000 & 750& 1.9\\ SGI CHALLENGE/Onyx (6.6ns) & 24 & 1.014& 8000 & 1000& 1.8\\ Sun HPC 2 (300 MHz) & 2 & 1.01 & 7104 & 288& 1.2\\ Convex SPP-1000(8 procs)100 MHz & 8 & 1.005& 11000 & 550& 1.6\\ SGI POWER CHALLENGE (75 MHz) & 4 & .993& 1000 & 240& 1.2\\ Intel iPSC/860 (40 MHz) & 48 & .98 & 7000 & 3000& 1.9\\ Thinking Machines CM-5 & 16 & .98 & 6528 & 3008& 2 \\ nCUBE 2 (20 MHz) & 512 & .958& 15200 & 2240& 1.2\\ HITACHI SR2201/4(150MHz) & 4 & .941& 9720 & 1200& 1.2\\ IBM PVS (40MHz) & 32 & .925& 6000 & 1560& 1.3\\ Intel Delta (40 MHz) & 32 & .9 & 6000 & 2000& 1.3\\ CRAY T3E (300 MHz) & 2 & 0.896& 5280 & 384& 1.2\\ SGI CHALLENGE/Onyx (6.6ns) & 20 & .866& 7000 & 1000& 1.5\\ Meiko Computing Surface (40 MHz) & 32 & .825& 7000 & 3000& 1.3\\ Meiko CS2 & 8 & .8 & 8064 & 1088& 1.4\\ SGI CHALLENGE/Onyx (6.6ns) & 18 & .796& 8000 & 1000& 1.35\\ NEC SX-3/1LR (2.5 ns) & 1 & .78 & 2304 & 112& 0.8\\ SGI CHALLENGE/Onyx (6.6ns) & 16 & .702& 8000 & 1000& 1.2\\ SGI Origin 2000 (195 MHz, 4MB cache) & 2 & .699& 10000 & 600& .78\\ IBM RS/6000 Cluster (PARC) (62.5 MHz) & 8 & .694& 10000 & 1500& 1.0\\ Parsytec GC/Power Plus (80 MHz) & 16 & .68 & 7700 & 2200& 1.3 \\ NEC SX-3/1L (2.9 ns) & 1 & .67 & 2048 & 128& .68\\ Intel iPSC/860 (40 MHz) & 32 & .64 & 6000 & 2500& 1.3\\ SGI POWER CHALLENGE (195 MHz, 2MB cache) & 2 & .663& 10000 & 600& .78\\ SGI CHALLENGE/Onyx (6.6ns) & 14 & .631& 8000 & 1000& 1.05\\ SGI POWER CHALLENGE (90 MHz) & 2 & .601& 1000 & 180& .72\\ Fujitsu AP1000 & 128 & .566& 12800 & 1100& .71\\ SGI CHALLENGE/Onyx (6.6ns) & 12 & .554& 7000 & 1000& .9\\ IBM RS/6000 Cluster (PARC) (50 MHz) & 8 & .520& 7500 & 1300& .8\\ Sun Ultra HPC 450 (300 MHz) & 1 & .52 & 10944 & 192& .6\\ Alliant CAMPUS/800 (40 MHz) & 24 & .504& 7000 & 2492& .96\\ SGI POWER CHALLENGE (75 MHz) & 2 & .505& 1000 & 180& .6\\ Sun HPC 2 (300 MHz) & 1 & .50 & 7104 & 288& .6\\ Intel iPSC/860 (40 MHz) & 24 & .49 & 5000 & 2000& .96\\ nCUBE 2 (20 MHz) & 256 & .482& 10784 & 1504& .64\\ MasPar MP-1216 (80ns) &16384 & .473& 11264 & 1280& .55\\ SGI CHALLENGE/Onyx (6.6ns) & 10 & .472& 8000 & 1000& .75\\ Intel Delta (40 MHz) & 16 & .45 & 4000 & 1000& .64\\ Meiko Computing Surface (40 MHz) & 16 & .445& 5000 & 2000& .64\\ MasPar MP-1 (80 ns) &16384 & .44 & 5504 & 1180& .58\\ IBM RS/6000 Cluster (PARC) (50 MHz) & 6 & .404& 7000 & 1200& .6\\ ALR Revolution Quad 6 (4 Pentium 200 MHz) & 4 & .403& 2750 & 530& .8\\ MasPar MP-2204 (80ns) & 4096 & .374& 5632 & 896& .60\\ IBM RS/6000 Cluster (PARC) (62.5 MHz) & 4 & .37 & 5500 & 850& .50\\ Intel iPSC/860 (40 MHz) & 16 & .36 & 4500 & 1500& .64\\ SGI Origin 2000 (195 MHz, 4MB cache) & 1 & .356& 10000 & 200& .39\\ SGI POWER CHALLENGE (195 MHz, 2MB cache) & 1 & .334& 10000 & 200& .39\\ SGI POWER CHALLENGE (90 MHz) & 1 & .311& 1000 & 100& .36\\ IBM RS/6000 Cluster (PARC) (50 MHz) & 4 & .293& 5500 & 1000& .4\\ Fujitsu AP1000 & 64 & .291& 10000 & 648& .36\\ SGI POWER CHALLENGE (75 MHz) & 1 & .261& 1000 & 100& .3\\ nCUBE 2 (20 MHz) & 128 & .242& 7776 & 1050& .32\\ HITACHI SR2201/1(150MHz) & 1 & .237& 4860 & 420& .3\\ Meiko Computing Surface (40 MHz) & 8 & .235& 3500 & 750& .32\\ Parsytec FT-400 (20 MHz) & 400 & .232& 7999 & 814& .6 \\ Intel Delta (40 MHz) & 8 & .23 & 3000 & 1000& .32\\ Intel iPSC/860 (40 MHz) & 8 & .19 & 3000 & 850& .32\\ Meiko Computing Surface (40 MHz) & 4 & .121& 2500 & 500& .16\\ nCUBE 2 (20 MHz) & 64 & .121& 5472 & 701& .15\\ Intel Delta (40 MHz) & 4 & .12 & 2000 & 500& .16\\ MasPar MP-1204 (80ns) & 4096 & .116& 5632 & 640& .138\\ Intel iPSC/860 (40 MHz) & 4 & .10 & 2250 & 550& .16\\ IBM RS/6000 (62.5 MHz) & 1 & .096& 3000 & & .125\\ MasPar MP-2201 (80ns) & 1024 & .092& 2816 & 448& .15\\ Meiko Computing Surface (40 MHz) & 2 & .062& 1750 & 250& .08\\ Thinking Machines CM-5 & 1 & .068& 1632 & 672&.128 \\ nCUBE 2 (20 MHz) & 32 & .061& 3888 & 486& .075\\ Intel Delta (40 MHz) & 2 & .06 & 1500 & 500& .08\\ Intel iPSC/860 (40 MHz) & 2 & .058& 1500 & 400& .08\\ nCUBE 2 (20 MHz) & 16 & .032& 5580 & 342& .038\\ Meiko Computing Surface (40 MHz) & 1 & .031& 1250 & & .04\\ MasPar MP-1201 (80ns) & 1024 & .029& 2816 & 320& .034\\ Intel iPSC/860 (40 MHz) & 1 & .024& 750 & & .040\\ nCUBE 2 (20 MHz) & 8 & .0161& 3960 & 241& .019\\ nCUBE 2 (20 MHz) & 4 & .0080& 2760 & 143&.0094\\ nCUBE 2 (20 MHz) & 2 & .0040& 1280 & 94&.0047\\ nCUBE 2 (20 MHz) & 1 & .0020& 1280 & 51&.0024\\ \hline \hline Thinking Machines CM-200 (half precision) & 2048 & 18.5 & 39936 &14336& 40 \\ Thinking Machines CM-2 (half precision) & 2048 & 10.4 & 33920 &14000& 28 \\ IBM GF11** (half precision) (51.9 ns) & 500 & 5.6 & 2500 & 1060& 9.6\\ Fujitsu AP1000 (half precision) & 512 & 3.53 & 40000 & 2368& 4.3\\ \end{supertabular} \end{center} \noindent * The Numerical Wind Tunnel is not a commercial product, it is a computer of the National Aerospace Laboratory in Japan and is based on the Fujitsu vector processor board. The CP-PACS (Computational Physics by Parallel Array Computer System) is not a commercial product, it is a computer of the University of Tsukuba, Japan. Hitachi modified several points in their SR-2201 computer. The processor, manufactured by Hitachi, is a custom superscalar processor. It is based on the PA-RISC Architecture enhanced with a PVP-SW (pseudo vector processor based on slide window registers) scheme. \noindent ** The IBM GF11 is an experimental research computer and not a commercial product. \noindent *** Indicates Strassen Algorithm was used in computing the solution. Note the ``achieved rate'' is large than the ``peak rate'' for the computer. The rate of execution for this problem is based on the the number of floating point operations divided by the time to solve the problem. The floating point operation count, $2/3 n ^ 3 + O(n^2 ) $, is based on a conventional Gaussian Elimination implementation. Strassen's Algorithm reduced the number of operations actually performed. The results obtained using Strassen Algorithm are as accurate as that from Gaussian Elimination. \noindent The columns in Table 3 are defined as follows: $R _{max}$ the performance in Gflop/s for the largest problem run on a machine. $N _{max}$ the size of the largest problem run on a machine. $N _ {1/2}$ the size where half the $R_{max}$ execution rate is achieved. $R _{peak}$ the theoretical peak performance in Gflop/s for the machine. In addition, the number of processors and the cycle time is listed. Full or half precision reflects the computation was computed using 64 or 32-bit floating point arithmetic respectively. \subsection{ Acknowledgments} I am indebted to the many people who have helped put together this collection. % \newpage % \bibliographystyle{plain} % \bibliography{general} \begin{thebibliography}{1} \bibitem{linpack} J.~Dongarra, J.~Bunch, C.~Moler, and G.~W. Stewart. \newblock {\em LINPACK User's Guide}. \newblock SIAM, Philadelphia, PA, 1979. \bibitem{ddsv} J.~J. Dongarra, I.~S. Duff, D.~C. Sorensen, and H.~A.~Van der Vorst. \newblock {\em Solving Linear Systems on Vector and Shared Memory Computers}. \newblock SIAM Publications, Philadelphia, PA, 1990. \bibitem{blas1} C.~Lawson, R.~Hanson, D.~Kincaid, and F.~Krogh. \newblock Basic linear algebra subprograms for {F}ortran usage. \newblock {\em ACM Trans. Math. Softw.}, 5:308--323, 1979. \end{thebibliography} \end{document} ) & 2 & 0.896& 5280 & 384& 1.2\\ SGI CHALLENGE/Onyx (6.6ns) & 20 & .866& 7000 & 1000& 1.5\\ Meiko Computing Surface (40 MHz) & 32 & .825& 7000 & 3000& 1.3\\ Meiko CS2 & 8 & .8 & 8064 & 1bj.data.col0.html 664 1636 1334 10151 6425156462 7257 Bj

PDS: The Performance Database Server

Bj

Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
    System                       OS         CPU/FPU    CPU  Run Time  REF
                                                      (MHz) (seconds)
### ---------------------- -------------- ----------- ----- --------- ---

001 SGI Indigo2            IRIX 6.2       MIPS R10000   195   106.452   5
002 Sun UltraSPARC-2       Solaris 2.5.1  UltraSPARC    300   168.406   9
003 AMD K6                 Windows 95     AMD K6        200   193.319   7
004 PowerPC 7300           BeOS           604e          200   207.415   8
005 SGI Origin2            IRIX 6.3       MIPS R5000    180   208.913   5
006 Pentium Pro            Windows 95     Pentium Pro   200   216.549   6
007 AMD K5-PR133           Windows 95     AMD K5        100   243.050   2
008 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   296.81    4
009 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   312.406   1
010 HP 9000/J210XC         HP-UX 10.20    7200--02CPU   120   326.520   3
011 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   349.231   1
012 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   470.89    4
013 Sun HyperSPARC 20      SunOS 5.4      HyperSPARC    100   474.509   1
014 HP 9000/712            HP-UX 10.20    HP-PA7100LC   100   475.100   3
015 AMD K5-PR133           RH Linux 3.0.3 AMD K5        100   528.140   2
016 AMD 5x86-133           MS DOS 6.22    Am5x86-P75    133   623.901   1
bj.data.col1.html 664 1636 1334 10151 6425156462 7260 Bj

PDS: The Performance Database Server

Bj

Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
    System                       OS         CPU/FPU    CPU  Run Time  REF
                                                      (MHz) (seconds)
### ---------------------- -------------- ----------- ----- --------- ---

016 AMD 5x86-133           MS DOS 6.22    Am5x86-P75    133   623.901   1
007 AMD K5-PR133           Windows 95     AMD K5        100   243.050   2
015 AMD K5-PR133           RH Linux 3.0.3 AMD K5        100   528.140   2
003 AMD K6                 Windows 95     AMD K6        200   193.319   7
014 HP 9000/712            HP-UX 10.20    HP-PA7100LC   100   475.100   3
010 HP 9000/J210XC         HP-UX 10.20    7200--02CPU   120   326.520   3
008 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   296.81    4
012 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   470.89    4
006 Pentium Pro            Windows 95     Pentium Pro   200   216.549   6
004 PowerPC 7300           BeOS           604e          200   207.415   8
001 SGI Indigo2            IRIX 6.2       MIPS R10000   195   106.452   5
005 SGI Origin2            IRIX 6.3       MIPS R5000    180   208.913   5
013 Sun HyperSPARC 20      SunOS 5.4      HyperSPARC    100   474.509   1
011 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   349.231   1
009 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   312.406   1
002 Sun UltraSPARC-2       Solaris 2.5.1  UltraSPARC    300   168.406   9
010 HP 9000/J210XC HP-UX 10.20 7200--02CPU 120 326.520 3 008 IBM RS/6000 25E AIX 3.2.5 PPC601 66 296.81 Bj Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
    System                       OS         CPU/FPU    CPU  Run Time  REF
                                                      (MHz) (seconds)
### ---------------------- -------------- ----------- ----- --------- ---

001 SGI Indigo2            IRIX 6.2       MIPS R10000   195   106.452   5
002 Sun UltraSPARC-2       Solaris 2.5.1  UltraSPARC    300   168.406   9
003 AMD K6                 Windows 95     AMD K6        200   193.319   7
004 PowerPC 7300           BeOS           604e          200   207.415   8
005 SGI Origin2            IRIX 6.3       MIPS R5000    180   208.913   5
006 Pentium Pro            Windows 95     Pentium Pro   200   216.549   6
007 AMD K5-PR133           Windows 95     AMD K5        100   243.050   2
008 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   296.81    4
009 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   312.406   1
010 HP 9000/J210XC         HP-UX 10.20    7200--02CPU   120   326.520   3
011 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   349.231   1
012 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   470.89    4
013 Sun HyperSPARC 20      SunOS 5.4      HyperSPARC    100   474.509   1
014 HP 9000/712            HP-UX 10.20    HP-PA7100LC   100   475.100   3
015 AMD K5-PR133           RH Linux 3.0.3 AMD K5        100   528.140   2
016 AMD 5x86-133           MS DOS 6.22    Am5x86-P75    133   623.901   1
bj.data.col11.html 664 1636 1334 10151 6425156462 7341 Bj

PDS: The Performance Database Server

Bj

Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
    System                       OS         CPU/FPU    CPU  Run Time  REF
                                                      (MHz) (seconds)
### ---------------------- -------------- ----------- ----- --------- ---

016 AMD 5x86-133           MS DOS 6.22    Am5x86-P75    133   623.901   1
009 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   312.406   1
013 Sun HyperSPARC 20      SunOS 5.4      HyperSPARC    100   474.509   1
011 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   349.231   1
015 AMD K5-PR133           RH Linux 3.0.3 AMD K5        100   528.140   2
007 AMD K5-PR133           Windows 95     AMD K5        100   243.050   2
014 HP 9000/712            HP-UX 10.20    HP-PA7100LC   100   475.100   3
010 HP 9000/J210XC         HP-UX 10.20    7200--02CPU   120   326.520   3
008 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   296.81    4
012 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   470.89    4
001 SGI Indigo2            IRIX 6.2       MIPS R10000   195   106.452   5
005 SGI Origin2            IRIX 6.3       MIPS R5000    180   208.913   5
006 Pentium Pro            Windows 95     Pentium Pro   200   216.549   6
003 AMD K6                 Windows 95     AMD K6        200   193.319   7
004 PowerPC 7300           BeOS           604e          200   207.415   8
002 Sun UltraSPARC-2       Solaris 2.5.1  UltraSPARC    300   168.406   9
bj.data.col12.html 664 1636 1334 2734 6312311475 7322 Bj

PDS: The Performance Database Server

Bj

Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil

<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<( bj )>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>
    System                       OS         CPU/FPU     CPU  Run Time  REF
                                                       (MHz) (seconds)
### ---------------------- -------------- ----------- ------ --------- ---

001 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC   143.0   312.406   1
002 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC   143.0   349.231   1
003 Sun HyperSPARC 20      SunOS 5.4      HyperSPARC   100.0   474.509   1
004 AMD 5x86-133           MS DOS 6.22    Am5x86-P75   133.0   623.901   1
bj.data.col13.html 664 1636 1334 2734 6312311475 7323 Bj

PDS: The Performance Database Server

Bj

Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil

<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<( bj )>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>
    System                       OS         CPU/FPU     CPU  Run Time  REF
                                                       (MHz) (seconds)
### ---------------------- -------------- ----------- ------ --------- ---

001 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC   143.0   312.406   1
002 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC   143.0   349.231   1
003 Sun HyperSPARC 20      SunOS 5.4      HyperSPARC   100.0   474.509   1
004 AMD 5x86-133           MS DOS 6.22    Am5x86-P75   133.0   623.901   1
bj.data.col2.html 664 1636 1334 10151 6425156462 7261 Bj

PDS: The Performance Database Server

Bj

Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
    System                       OS         CPU/FPU    CPU  Run Time  REF
                                                      (MHz) (seconds)
### ---------------------- -------------- ----------- ----- --------- ---

001 SGI Indigo2            IRIX 6.2       MIPS R10000   195   106.452   5
002 Sun UltraSPARC-2       Solaris 2.5.1  UltraSPARC    300   168.406   9
003 AMD K6                 Windows 95     AMD K6        200   193.319   7
004 PowerPC 7300           BeOS           604e          200   207.415   8
005 SGI Origin2            IRIX 6.3       MIPS R5000    180   208.913   5
006 Pentium Pro            Windows 95     Pentium Pro   200   216.549   6
007 AMD K5-PR133           Windows 95     AMD K5        100   243.050   2
008 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   296.81    4
009 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   312.406   1
010 HP 9000/J210XC         HP-UX 10.20    7200--02CPU   120   326.520   3
011 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   349.231   1
012 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   470.89    4
013 Sun HyperSPARC 20      SunOS 5.4      HyperSPARC    100   474.509   1
014 HP 9000/712            HP-UX 10.20    HP-PA7100LC   100   475.100   3
015 AMD K5-PR133           RH Linux 3.0.3 AMD K5        100   528.140   2
016 AMD 5x86-133           MS DOS 6.22    Am5x86-P75    133   623.901   1
bj.data.col3.html 664 1636 1334 10151 6425156462 7262 Bj

PDS: The Performance Database Server

Bj

Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
    System                       OS         CPU/FPU    CPU  Run Time  REF
                                                      (MHz) (seconds)
### ---------------------- -------------- ----------- ----- --------- ---

001 SGI Indigo2            IRIX 6.2       MIPS R10000   195   106.452   5
002 Sun UltraSPARC-2       Solaris 2.5.1  UltraSPARC    300   168.406   9
003 AMD K6                 Windows 95     AMD K6        200   193.319   7
004 PowerPC 7300           BeOS           604e          200   207.415   8
005 SGI Origin2            IRIX 6.3       MIPS R5000    180   208.913   5
006 Pentium Pro            Windows 95     Pentium Pro   200   216.549   6
007 AMD K5-PR133           Windows 95     AMD K5        100   243.050   2
008 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   296.81    4
009 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   312.406   1
010 HP 9000/J210XC         HP-UX 10.20    7200--02CPU   120   326.520   3
011 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   349.231   1
012 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   470.89    4
013 Sun HyperSPARC 20      SunOS 5.4      HyperSPARC    100   474.509   1
014 HP 9000/712            HP-UX 10.20    HP-PA7100LC   100   475.100   3
015 AMD K5-PR133           RH Linux 3.0.3 AMD K5        100   528.140   2
016 AMD 5x86-133           MS DOS 6.22    Am5x86-P75    133   623.901   1
006 Pentium Pro Windows 95 Pentium Pro 200 216.549 6 007 AMD K5-PR133 Windows 95 AMD K5 100 243.050 Bj Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
    System                       OS         CPU/FPU    CPU  Run Time  REF
                                                      (MHz) (seconds)
### ---------------------- -------------- ----------- ----- --------- ---

008 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   296.81    4
012 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   470.89    4
004 PowerPC 7300           BeOS           604e          200   207.415   8
014 HP 9000/712            HP-UX 10.20    HP-PA7100LC   100   475.100   3
010 HP 9000/J210XC         HP-UX 10.20    7200--02CPU   120   326.520   3
001 SGI Indigo2            IRIX 6.2       MIPS R10000   195   106.452   5
005 SGI Origin2            IRIX 6.3       MIPS R5000    180   208.913   5
016 AMD 5x86-133           MS DOS 6.22    Am5x86-P75    133   623.901   1
015 AMD K5-PR133           RH Linux 3.0.3 AMD K5        100   528.140   2
002 Sun UltraSPARC-2       Solaris 2.5.1  UltraSPARC    300   168.406   9
013 Sun HyperSPARC 20      SunOS 5.4      HyperSPARC    100   474.509   1
011 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   349.231   1
009 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   312.406   1
007 AMD K5-PR133           Windows 95     AMD K5        100   243.050   2
006 Pentium Pro            Windows 95     Pentium Pro   200   216.549   6
003 AMD K6                 Windows 95     AMD K6        200   193.319   7
bj.data.col5.html 664 1636 1334 10151 6425156462 7264 Bj

PDS: The Performance Database Server

Bj

Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
    System                       OS         CPU/FPU    CPU  Run Time  REF
                                                      (MHz) (seconds)
### ---------------------- -------------- ----------- ----- --------- ---

004 PowerPC 7300           BeOS           604e          200   207.415   8
010 HP 9000/J210XC         HP-UX 10.20    7200--02CPU   120   326.520   3
016 AMD 5x86-133           MS DOS 6.22    Am5x86-P75    133   623.901   1
015 AMD K5-PR133           RH Linux 3.0.3 AMD K5        100   528.140   2
007 AMD K5-PR133           Windows 95     AMD K5        100   243.050   2
003 AMD K6                 Windows 95     AMD K6        200   193.319   7
014 HP 9000/712            HP-UX 10.20    HP-PA7100LC   100   475.100   3
013 Sun HyperSPARC 20      SunOS 5.4      HyperSPARC    100   474.509   1
001 SGI Indigo2            IRIX 6.2       MIPS R10000   195   106.452   5
005 SGI Origin2            IRIX 6.3       MIPS R5000    180   208.913   5
006 Pentium Pro            Windows 95     Pentium Pro   200   216.549   6
012 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   470.89    4
008 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   296.81    4
011 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   349.231   1
002 Sun UltraSPARC-2       Solaris 2.5.1  UltraSPARC    300   168.406   9
009 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   312.406   1
bj.data.col6.html 664 1636 1334 10151 6425156463 7266 Bj

PDS: The Performance Database Server

Bj

Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
    System                       OS         CPU/FPU    CPU  Run Time  REF
                                                      (MHz) (seconds)
### ---------------------- -------------- ----------- ----- --------- ---

001 SGI Indigo2            IRIX 6.2       MIPS R10000   195   106.452   5
002 Sun UltraSPARC-2       Solaris 2.5.1  UltraSPARC    300   168.406   9
003 AMD K6                 Windows 95     AMD K6        200   193.319   7
004 PowerPC 7300           BeOS           604e          200   207.415   8
005 SGI Origin2            IRIX 6.3       MIPS R5000    180   208.913   5
006 Pentium Pro            Windows 95     Pentium Pro   200   216.549   6
007 AMD K5-PR133           Windows 95     AMD K5        100   243.050   2
008 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   296.81    4
009 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   312.406   1
010 HP 9000/J210XC         HP-UX 10.20    7200--02CPU   120   326.520   3
011 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   349.231   1
012 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   470.89    4
013 Sun HyperSPARC 20      SunOS 5.4      HyperSPARC    100   474.509   1
014 HP 9000/712            HP-UX 10.20    HP-PA7100LC   100   475.100   3
015 AMD K5-PR133           RH Linux 3.0.3 AMD K5        100   528.140   2
016 AMD 5x86-133           MS DOS 6.22    Am5x86-P75    133   623.901   1
195 106.452 5 002 Sun UltraSPARC-2 Solaris 2.5.1 UltraSPARC 300 168.406 9 0bj.data.col7.html 664 1636 1334 10151 6425156463 7267 Bj

PDS: The Performance Database Server

Bj

Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
    System                       OS         CPU/FPU    CPU  Run Time  REF
                                                      (MHz) (seconds)
### ---------------------- -------------- ----------- ----- --------- ---

008 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   296.81    4
012 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   470.89    4
015 AMD K5-PR133           RH Linux 3.0.3 AMD K5        100   528.140   2
013 Sun HyperSPARC 20      SunOS 5.4      HyperSPARC    100   474.509   1
007 AMD K5-PR133           Windows 95     AMD K5        100   243.050   2
014 HP 9000/712            HP-UX 10.20    HP-PA7100LC   100   475.100   3
010 HP 9000/J210XC         HP-UX 10.20    7200--02CPU   120   326.520   3
016 AMD 5x86-133           MS DOS 6.22    Am5x86-P75    133   623.901   1
009 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   312.406   1
011 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   349.231   1
005 SGI Origin2            IRIX 6.3       MIPS R5000    180   208.913   5
001 SGI Indigo2            IRIX 6.2       MIPS R10000   195   106.452   5
006 Pentium Pro            Windows 95     Pentium Pro   200   216.549   6
004 PowerPC 7300           BeOS           604e          200   207.415   8
003 AMD K6                 Windows 95     AMD K6        200   193.319   7
002 Sun UltraSPARC-2       Solaris 2.5.1  UltraSPARC    300   168.406   9
bj.data.col8.html 664 1636 1334 10151 6425156463 7270 Bj

PDS: The Performance Database Server

Bj

Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
    System                       OS         CPU/FPU    CPU  Run Time  REF
                                                      (MHz) (seconds)
### ---------------------- -------------- ----------- ----- --------- ---

001 SGI Indigo2            IRIX 6.2       MIPS R10000   195   106.452   5
002 Sun UltraSPARC-2       Solaris 2.5.1  UltraSPARC    300   168.406   9
003 AMD K6                 Windows 95     AMD K6        200   193.319   7
004 PowerPC 7300           BeOS           604e          200   207.415   8
005 SGI Origin2            IRIX 6.3       MIPS R5000    180   208.913   5
006 Pentium Pro            Windows 95     Pentium Pro   200   216.549   6
007 AMD K5-PR133           Windows 95     AMD K5        100   243.050   2
008 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   296.81    4
009 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   312.406   1
010 HP 9000/J210XC         HP-UX 10.20    7200--02CPU   120   326.520   3
011 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   349.231   1
012 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   470.89    4
013 Sun HyperSPARC 20      SunOS 5.4      HyperSPARC    100   474.509   1
014 HP 9000/712            HP-UX 10.20    HP-PA7100LC   100   475.100   3
015 AMD K5-PR133           RH Linux 3.0.3 AMD K5        100   528.140   2
016 AMD 5x86-133           MS DOS 6.22    Am5x86-P75    133   623.901   1
bj.data.col9.html 664 1636 1334 10151 6425156463 7271 Bj

PDS: The Performance Database Server

Bj

Alfred Aburto / Naval Ocean Systems Center, San Diego / aburto@nosc.mil
    System                       OS         CPU/FPU    CPU  Run Time  REF
                                                      (MHz) (seconds)
### ---------------------- -------------- ----------- ----- --------- ---

001 SGI Indigo2            IRIX 6.2       MIPS R10000   195   106.452   5
002 Sun UltraSPARC-2       Solaris 2.5.1  UltraSPARC    300   168.406   9
003 AMD K6                 Windows 95     AMD K6        200   193.319   7
004 PowerPC 7300           BeOS           604e          200   207.415   8
005 SGI Origin2            IRIX 6.3       MIPS R5000    180   208.913   5
006 Pentium Pro            Windows 95     Pentium Pro   200   216.549   6
007 AMD K5-PR133           Windows 95     AMD K5        100   243.050   2
008 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   296.81    4
009 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   312.406   1
010 HP 9000/J210XC         HP-UX 10.20    7200--02CPU   120   326.520   3
011 Sun UltraSPARC-1       SunOS 5.5.1    UltraSPARC    143   349.231   1
012 IBM RS/6000 25E        AIX 3.2.5      PPC601         66   470.89    4
013 Sun HyperSPARC 20      SunOS 5.4      HyperSPARC    100   474.509   1
014 HP 9000/712            HP-UX 10.20    HP-PA7100LC   100   475.100   3
015 AMD K5-PR133           RH Linux 3.0.3 AMD K5        100   528.140   2
016 AMD 5x86-133           MS DOS 6.22    Am5x86-P75    133   623.901