1 SUBROUTINE pzpbinfo( SUMMRY, NOUT, UPLO, NMAT, NVAL, LDNVAL, NBW,
2 $ BWVAL, LDBWVAL, NNB, NBVAL, LDNBVAL, NNR,
3 $ NRVAL, LDNRVAL, NNBR, NBRVAL, LDNBRVAL,
4 $ NGRIDS, PVAL, LDPVAL, QVAL, LDQVAL, THRESH,
18 $ LDBWVAL, LDNBRVAL, LDNBVAL, , LDNVAL,
19 $ ldpval, ldqval, ngrids, nmat, nnb, nnbr, nbw,
24 INTEGER NBRVAL( LDNBRVAL ), NBVAL( LDNBVAL ),
25 $ nrval( ldnrval ), nval( ldnval ),
27 $ pval( ldpval ), qval(ldqval), work( * )
154 PARAMETER ( NIN = 11 )
168 DOUBLE PRECISION PDLAMCH
169 EXTERNAL LSAME, PDLAMCH
183 OPEN( nin, file =
'BLLT.dat', status =
'OLD' )
184 READ( nin, fmt = * ) summry
189 READ( nin, fmt = 9999 ) usrinfo
193 READ( nin, fmt = * ) summry
194 READ( nin, fmt = * ) nout
195 IF( nout.NE.0 .AND. nout.NE.6 )
196 $
OPEN( nout, file = summry, status =
'UNKNOWN' )
202 READ( nin, fmt = * ) uplo
207 READ( nin, fmt = * ) nmat
208 IF( nmat.LT.1 .OR. nmat.GT.ldnval )
THEN
209 WRITE( nout, fmt = 9994 )
'N', ldnval
212 READ( nin, fmt = * ) ( nval( i ), i = 1, nmat )
216 READ( nin, fmt = * ) nbw
217 IF( nbw.LT.1 .OR. nbw.GT.ldbwval )
THEN
218 WRITE( nout, fmt = 9994 )
'BW', ldbwval
221 READ( nin, fmt = * ) ( bwval( i ), i = 1, nbw )
225 READ( nin, fmt = * ) nnb
226 IF( nnb.LT.1 .OR. nnb.GT.ldnbval )
THEN
227 WRITE( nout, fmt = 9994 )
'NB', ldnbval
230 READ( nin, fmt = * ) ( nbval( i ), i = 1, nnb )
234 READ( nin, fmt = * ) nnr
235 IF( nnr.LT.1 .OR. nnr.GT.ldnrval )
THEN
236 WRITE( nout, fmt = 9994 )
'NRHS', ldnrval
239 READ( nin, fmt = * ) ( nrval( i ), i = 1, nnr )
243 READ( nin, fmt = * ) nnbr
244 IF( nnbr.LT.1 .OR. nnbr.GT.ldnbrval )
THEN
245 WRITE( nout, fmt = 9994 )
'NBRHS', ldnbrval
248 READ( nin, fmt = * ) ( nbrval( i ), i = 1, nnbr )
252 READ( nin, fmt = * ) ngrids
253 IF( ngrids.LT.1 .OR. ngrids.GT.ldpval )
THEN
254 WRITE( nout, fmt = 9994 )
'Grids', ldpval
256 ELSE IF( ngrids.GT.ldqval )
THEN
257 WRITE( nout, fmt = 9994 )
'Grids', ldqval
262 DO 8738 i = 1, ngrids
268 READ( nin, fmt = * ) ( qval( i ), i = 1, ngrids )
272 READ( nin, fmt = * ) thresh
281 IF( nprocs.LT.1 )
THEN
284 nprocs =
max( nprocs, pval( i )*qval( i ) )
286 CALL blacs_setup( iam, nprocs )
292 CALL blacs_get( -1, 0, ictxt )
297 eps = pdlamch( ictxt,
'eps' )
301 CALL sgebs2d( ictxt,
'All',
' ', 1, 1, thresh, 1 )
315 IF( lsame( uplo,
'L' ) )
THEN
322 CALL igebs2d( ictxt,
'All',
' ', 1, 1, i-1, 1 )
324 CALL igebs2d( ictxt,
'All',
' ', i-1, 1, work, i-1 )
327 CALL icopy( nmat, nval, 1, work( i ), 1 )
329 CALL icopy( nbw, bwval, 1, work( i ), 1 )
331 CALL icopy( nnb, nbval, 1, work( i ), 1 )
333 CALL icopy( nnr, nrval, 1, work( i ), 1 )
335 CALL icopy( nnbr, nbrval, 1, work( i ), 1 )
337 CALL icopy( ngrids, pval, 1, work( i ), 1 )
339 CALL icopy( ngrids, qval, 1, work( i ), 1 )
341 CALL igebs2d( ictxt,
'All',
' ', i-1, 1, work, i-1 )
345 WRITE( nout, fmt = 9999 )
346 $
'SCALAPACK banded linear systems.'
347 WRITE( nout, fmt = 9999 ) usrinfo
348 WRITE( nout, fmt = * )
349 WRITE( nout, fmt = 9999 )
350 $
'Tests of the parallel '//
351 $
'complex single precision band matrix solve '
352 WRITE( nout, fmt = 9999 )
353 $
'The following scaled residual '//
354 $
'checks will be computed:'
355 WRITE( nout, fmt = 9999 )
356 $
' Solve residual = ||Ax - b|| / '//
357 $
'(||x|| * ||A|| * eps * N)'
358 IF( lsame( uplo,
'L' ) )
THEN
359 WRITE( nout, fmt = 9999 )
360 $
' Factorization residual = ||A - LL''|| /'//
361 $
' (||A|| * eps * N)'
363 WRITE( nout, fmt = 9999 )
364 $
' Factorization residual = ||A - U''U|| /'//
365 $
' (||A|| * eps * N)'
367 WRITE( nout, fmt = 9999 )
368 $
'The matrix A is randomly '//
369 $
'generated for each test.'
370 WRITE( nout, fmt = * )
371 WRITE( nout, fmt = 9999 )
372 $
'An explanation of the input/output '//
373 $
'parameters follows:'
374 WRITE( nout, fmt = 9999 )
375 $
'TIME : Indicates whether WALL or '//
376 $
'CPU time was used.'
378 WRITE( nout, fmt = 9999 )
379 $
'UPLO : Whether data represents ''Upper'//
380 $
''' or ''Lower'' triangular portion of array A.'
381 WRITE( nout, fmt = 9999 )
382 $
'TRANS : Whether solve is to be done with'//
383 $
' ''Transpose'' of matrix A (T,C) or not (N).'
384 WRITE( nout, fmt = 9999 )
385 $ 'n :
the number of rows and columns
'//
387 WRITE( NOUT, FMT = 9999 )
388 $ 'bw :
the number of diagonals
'//
390 WRITE( NOUT, FMT = 9999 )
391 $ 'nb :
the size of
the column panels
the'//
392 $ ' matrix a is
split into. [-1
for default]
'
393 WRITE( NOUT, FMT = 9999 )
394 $ 'nrhs :
the total number of rhs to solve
'//
396 WRITE( NOUT, FMT = 9999 )
397 $ 'nbrhs :
the number of rhs to be put on
'//
398 $ 'a column of processes before going
'
399 WRITE( NOUT, FMT = 9999 )
400 $ ' on to
the next column of processes.
'
401 WRITE( NOUT, FMT = 9999 )
402 $ 'p :
the number of process rows.
'
403 WRITE( NOUT, FMT = 9999 )
404 $ 'q :
the number of process columns.
'
405 WRITE( NOUT, FMT = 9999 )
406 $ 'thresh :
If a residual
value is less than
'//
407 $ ' thresh, check is flagged as passed
'
408 WRITE( NOUT, FMT = 9999 )
409 $ 'fact time: time in seconds to factor
the'//
411 WRITE( NOUT, FMT = 9999 )
412 $ 'sol time: time in seconds to solve
the'//
414 WRITE( NOUT, FMT = 9999 )
415 $ 'mflops : rate of execution
for factor
'//
416 $ 'and solve using sequential operation count.
'
417 WRITE( NOUT, FMT = 9999 )
418 $ 'mflop2 : rough estimate of speed
'//
419 $ 'using actual op count(accurate big p,n).
'
420 WRITE( NOUT, FMT = * )
421 WRITE( NOUT, FMT = 9999 )
422 $ 'the following
parameter values will be used:
'
423 WRITE( NOUT, FMT = 9999 )
425 WRITE( NOUT, FMT = 9996 )
426 $ 'n
', ( NVAL(I), I = 1, MIN(NMAT, 10) )
428 $ WRITE( NOUT, FMT = 9997 ) ( NVAL(I), I = 11, NMAT )
429 WRITE( NOUT, FMT = 9996 )
430 $ 'bw
', ( BWVAL(I), I = 1, MIN(NBW, 10) )
432 $ WRITE( NOUT, FMT = 9997 ) ( BWVAL(I), I = 11, NBW )
433 WRITE( NOUT, FMT = 9996 )
434 $ 'nb
', ( NBVAL(I), I = 1, MIN(NNB, 10) )
436 $ WRITE( NOUT, FMT = 9997 ) ( NBVAL(I), I = 11, NNB )
437 WRITE( NOUT, FMT = 9996 )
438 $ 'nrhs
', ( NRVAL(I), I = 1, MIN(NNR, 10) )
440 $ WRITE( NOUT, FMT = 9997 ) ( NRVAL(I), I = 11, NNR )
441 WRITE( NOUT, FMT = 9996 )
442 $ 'nbrhs
', ( NBRVAL(I), I = 1, MIN(NNBR, 10) )
444 $ WRITE( NOUT, FMT = 9997 ) ( NBRVAL(I), I = 11, NNBR )
445 WRITE( NOUT, FMT = 9996 )
446 $ 'p
', ( PVAL(I), I = 1, MIN(NGRIDS, 10) )
448 $ WRITE( NOUT, FMT = 9997) ( PVAL(I), I = 11, NGRIDS )
449 WRITE( NOUT, FMT = 9996 )
450 $ 'q
', ( QVAL(I), I = 1, MIN(NGRIDS, 10) )
452 $ WRITE( NOUT, FMT = 9997 ) ( QVAL(I), I = 11, NGRIDS )
453 WRITE( NOUT, FMT = * )
454 WRITE( NOUT, FMT = 9995 ) EPS
455 WRITE( NOUT, FMT = 9998 ) THRESH
462 $ CALL BLACS_SETUP( IAM, NPROCS )
467 CALL BLACS_GET( -1, 0, ICTXT )
468 CALL BLACS_GRIDINIT( ICTXT, 'row-major
', 1, NPROCS )
472 EPS = PDLAMCH( ICTXT, 'eps
' )
474 CALL SGEBR2D( ICTXT, 'all
', ' ', 1, 1, THRESH, 1, 0, 0 )
475 CALL IGEBR2D( ICTXT, 'all
', ' ', 1, 1, I, 1, 0, 0 )
476 CALL IGEBR2D( ICTXT, 'all
', ' ', I, 1, WORK, I, 0, 0 )
490.EQ.
IF( WORK( I ) 1 ) THEN
497 I = NMAT + NBW + NNB + NNR + NNBR + 2*NGRIDS
499 CALL IGEBR2D( ICTXT, 'all
', ' ', 1, I, WORK, 1, 0, 0 )
501 CALL ICOPY( NMAT, WORK( I ), 1, NVAL, 1 )
503 CALL ICOPY( NBW, WORK( I ), 1, BWVAL, 1 )
505 CALL ICOPY( NNB, WORK( I ), 1, NBVAL, 1 )
507 CALL ICOPY( NNR, WORK( I ), 1, NRVAL, 1 )
509 CALL ICOPY( NNBR, WORK( I ), 1, NBRVAL, 1 )
511 CALL ICOPY( NGRIDS, WORK( I ), 1, PVAL, 1 )
513 CALL ICOPY( NGRIDS, WORK( I ), 1, QVAL, 1 )
517 CALL BLACS_GRIDEXIT( ICTXT )
521 20 WRITE( NOUT, FMT = 9993 )
523.NE..AND..NE.
IF( NOUT6 NOUT0 )
526 CALL BLACS_ABORT( ICTXT, 1 )
530 9998 FORMAT( 'routines pass computational tests
if scaled residual
',
531 $ 'is less than
', G12.5 )
532 9997 FORMAT( ' ', 10I6 )
533 9996 FORMAT( 2X, A5, ':
', 10I6 )
534 9995 FORMAT( 'relative machine precision(eps) is taken to be
',
536 9994 FORMAT( ' number of values of
',5A, ' is less than 1 or greater
',
538 9993 FORMAT( ' illegal input in file
',40A,'. aborting run.
' )
subroutine pzpbinfo(summry, nout, uplo, nmat, nval, ldnval, nbw, bwval, ldbwval, nnb, nbval, ldnbval, nnr, nrval, ldnrval, nnbr, nbrval, ldnbrval, ngrids, pval, ldpval, qval, ldqval, thresh, work, iam, nprocs)