1 SUBROUTINE pslsinfo( SUMMRY, NOUT, NMAT, MVAL, LDMVAL,
2 $ NVAL, LDNVAL, NNB, NBVAL, LDNBVAL, NNR,
3 $ NRVAL, LDNRVAL, NNBR, NBRVAL, LDNBRVAL,
4 $ NGRIDS, PVAL, LDPVAL, QVAL, LDQVAL, THRESH,
13 CHARACTER*( * ) SUMMRY
14 INTEGER IAM, LDMVAL, LDNBRVAL, LDNBVAL, LDNRVAL,
15 $ LDNVAL, LDPVAL, LDQVAL, NGRIDS, NMAT, NNB,
16 $ NNBR, NNR, NOUT, NPROCS
20 INTEGER MVAL( LDMVAL ), NBRVAL( LDNBRVAL ),
21 $ nbval( ldnbval ), nrval( ldnrval ),
22 $ nval( ldnval ), pval( ldpval ),
23 $ qval( ldqval ), work( * )
138 INTEGER BLOCK_CYCLIC_2D, CSRC_, CTXT_, DLEN_, DTYPE_,
139 $ LLD_, MB_, M_, NB_, N_, RSRC_
140 PARAMETER ( BLOCK_CYCLIC_2D = 1, dlen_ = 9, dtype_ = 1,
141 $ ctxt_ = 2, m_ = 3, n_ = 4, mb_ = 5, nb_ = 6,
142 $ rsrc_ = 7, csrc_ = 8, lld_ = 9 )
144 parameter( nin = 11 )
159 EXTERNAL LSAME, PSLAMCH
173 OPEN( nin, file=
'LS.dat', status=
'OLD' )
174 READ( nin, fmt = * ) summry
179 READ( nin, fmt = 9999 ) usrinfo
183 READ( nin, fmt = * ) summry
184 READ( nin, fmt = * ) nout
185 IF( nout.NE.0 .AND. nout.NE.6 )
186 $
OPEN( nout, file = summry, status =
'UNKNOWN' )
192 READ( nin, fmt = * ) nmat
193 IF( nmat.LT.1 .OR. nmat.GT.ldnval )
THEN
194 WRITE( nout, fmt = 9994 )
'N', ldnval
196 ELSE IF( nmat.GT.ldmval )
THEN
197 WRITE( nout, fmt = 9994 )
'M', ldmval
200 READ( nin, fmt = * ) ( mval( i ), i = 1, nmat )
201 READ( nin, fmt = * ) ( nval( i ), i = 1, nmat )
205 READ( nin, fmt = * ) nnb
206 IF( nnb.LT.1 .OR. nnb.GT.ldnbval )
THEN
207 WRITE( nout, fmt = 9994 )
'NB', ldnbval
210 READ( nin, fmt = * ) ( nbval( i ), i = 1, nnb )
214 READ( nin, fmt = * ) nnr
215 IF( nnr.LT.1 .OR. nnr.GT.ldnrval )
THEN
216 WRITE( nout, fmt = 9994 )
'NRHS', ldnrval
219 READ( nin, fmt = * ) ( nrval( i ), i = 1, nnr )
223 READ( nin, fmt = * ) nnbr
224 IF( nnbr.LT.1 .OR. nnbr.GT.ldnbrval )
THEN
225 WRITE( nout, fmt
'NBRHS', ldnbrval
228 READ( nin, fmt = * ) ( nbrval( i ), i = 1, nnbr )
232 READ( nin, fmt = * ) ngrids
233 IF( ngrids.LT.1 .OR. ngrids.GT.ldpval )
THEN
234 WRITE( nout, fmt = 9994 )
'Grids', ldpval
236 ELSE IF( ngrids.GT.ldqval )
THEN
237 WRITE( nout, fmt = 9994 )
'Grids', ldqval
243 READ( nin, fmt = * ) ( pval( i ), i = 1, ngrids )
244 READ( nin, fmt = * ) ( qval( i ), i = 1, ngrids )
248 READ( nin, fmt = * ) thresh
257 IF( nprocs.LT.1 )
THEN
260 nprocs =
max( nprocs, pval( i )*qval( i ) )
262 CALL blacs_setup( iam, nprocs )
268 CALL blacs_get( -1, 0, ictxt )
273 eps = pslamch( ictxt,
'eps' )
277 CALL sgebs2d( ictxt,
'All',
' ', 1, 1, thresh, 1 )
284 CALL igebs2d( ictxt,
'All',
' ', 5, 1, work, 5 )
287 CALL icopy( nmat, mval, 1, work( i ), 1 )
289 CALL icopy( nmat, nval, 1, work( i ), 1 )
291 CALL icopy( nnb, nbval, 1, work( i ), 1 )
293 CALL icopy( nnr, nrval, 1, work( i ), 1 )
295 CALL icopy( nnbr, nbrval, 1, work( i ), 1 )
297 CALL icopy( ngrids, pval, 1, work( i ), 1 )
299 CALL icopy( ngrids, qval, 1, work( i ), 1 )
301 CALL igebs2d( ictxt,
'All',
' ', i, 1, work, i )
305 WRITE( nout, fmt = 9999 )
306 $
'SCALAPACK min ||Ax-b|| by QR factorizations.'
307 WRITE( nout, fmt = 9999 ) usrinfo
308 WRITE( nout, fmt = * )
309 WRITE( nout, fmt = 9999 )
310 $
'Tests of the parallel '//
311 $
'real single precision least-square solve.'
312 WRITE( nout, fmt = 9999 )
313 $
'The following scaled residual '//
314 $
'checks will be computed:'
315 WRITE( nout, fmt = 9999 )
316 $
' Solve residual = ||Ax - b|| / '//
317 $
'(||x|| * ||A|| * eps * N)'
318 WRITE( nout, fmt = 9999 )
319 $
' Factorization residual = ||A - QR|| / '//
320 $
'(||A|| * eps * N)'
321 WRITE( nout, fmt = 9999 )
322 $
'The matrix A is randomly '//
323 $
'generated for each test.'
324 WRITE( nout, fmt = * )
325 WRITE( nout, fmt = 9999 )
326 $
'An explanation of the input/output '//
327 $
'parameters follows:'
328 WRITE( nout, fmt = 9999 )
329 $
'TIME : Indicates whether WALL or '//
330 $
'CPU time was used. If CPU and WALL time'
331 WRITE( nout, fmt = 9999 )
332 $
' are the same, only one line '//
333 $
'is printed, and the label is ''BOTH''.'
335 WRITE( nout, fmt = 9999 )
336 $
'M : The number of rows in the '//
338 WRITE( nout, fmt = 9999 )
339 $
'N : The number of columns in the '//
341 WRITE( NOUT, FMT = 9999 )
342 $ 'nb :
the size of
the square blocks
the'//
343 $ ' matrix a is
split into.
'
344 WRITE( NOUT, FMT = 9999 )
345 $ 'nrhs :
the total number of rhs to solve
'//
347 WRITE( NOUT, FMT = 9999 )
348 $ 'nbrhs :
the number of rhs to be put on
'//
349 $ 'a column of processes before going
'
350 WRITE( NOUT, FMT = 9999 )
351 $ ' on to
the next column of processes.
'
352 WRITE( NOUT, FMT = 9999 )
353 $ 'p :
the number of process rows.
'
354 WRITE( NOUT, FMT = 9999 )
355 $ 'q :
the number of process columns.
'
356 WRITE( NOUT, FMT = 9999 )
357 $ 'thresh :
If a residual
value is less than
'//
358 $ ' thresh, check is flagged as passed
'
359 WRITE( NOUT, FMT = 9999 )
360 WRITE( NOUT, FMT = 9999 )
361 $ 'qr time : time in seconds to factor
the'//
363 WRITE( NOUT, FMT = 9999 )
364 $ 'sol time: time in seconds to solve
the'//
366 WRITE( NOUT, FMT = 9999 )
367 $ 'mflops : rate of
'//
369 WRITE( NOUT, FMT = * )
370 WRITE( NOUT, FMT = 9999 )
371 $ 'the following
parameter values will be used:
'
372 WRITE( NOUT, FMT = 9996 )
373 $ 'm
', ( MVAL(I), I = 1, MIN(NMAT, 10) )
375 $ WRITE( NOUT, FMT = 9997 ) ( MVAL(I), I = 11, NMAT )
376 WRITE( NOUT, FMT = 9996 )
377 $ 'n
', ( NVAL(I), I = 1, MIN(NMAT, 10) )
379 $ WRITE( NOUT, FMT = 9997 ) ( NVAL(I), I = 11, NMAT )
380 WRITE( NOUT, FMT = 9996 )
381 $ 'nb
', ( NBVAL(I), I = 1, MIN(NNB, 10) )
383 $ WRITE( NOUT, FMT = 9997 ) ( NBVAL(I), I = 11, NNB )
384 WRITE( NOUT, FMT = 9996 )
385 $ 'nrhs
', ( NRVAL(I), I = 1, MIN(NNR, 10) )
387 $ WRITE( NOUT, FMT = 9997 ) ( NRVAL(I), I = 11, NNR )
388 WRITE( NOUT, FMT = 9996 )
389 $ 'nbrhs
', ( NBRVAL(I), I = 1, MIN(NNBR, 10) )
391 $ WRITE( NOUT, FMT = 9997 ) ( NBRVAL(I), I = 11, NNBR )
392 WRITE( NOUT, FMT = 9996 )
393 $ 'p
', ( PVAL(I), I = 1, MIN(NGRIDS, 10) )
395 $ WRITE( NOUT, FMT = 9997) ( PVAL(I), I = 11, NGRIDS )
396 WRITE( NOUT, FMT = 9996 )
397 $ 'q
', ( QVAL(I), I = 1, MIN(NGRIDS, 10) )
399 $ WRITE( NOUT, FMT = 9997 ) ( QVAL(I), I = 11, NGRIDS )
400 WRITE( NOUT, FMT = * )
401 WRITE( NOUT, FMT = 9995 ) EPS
402 WRITE( NOUT, FMT = 9998 ) THRESH
409 $ CALL BLACS_SETUP( IAM, NPROCS )
414 CALL BLACS_GET( -1, 0, ICTXT )
415 CALL BLACS_GRIDINIT( ICTXT, 'row-major
', 1, NPROCS )
419 EPS = PSLAMCH( ICTXT, 'eps
' )
421 CALL SGEBR2D( ICTXT, 'all
', ' ', 1, 1, THRESH, 1, 0, 0 )
423 CALL IGEBR2D( ICTXT, 'all
', ' ', 5, 1, WORK, 5, 0, 0 )
430 I = 2*NMAT + NNB + NNR + NNBR + 2*NGRIDS
431 CALL IGEBR2D( ICTXT, 'all
', ' ', I, 1, WORK, I, 0, 0 )
433 CALL ICOPY( NMAT, WORK( I ), 1, MVAL, 1 )
435 CALL ICOPY( NMAT, WORK( I ), 1, NVAL, 1 )
437 CALL ICOPY( NNB, WORK( I ), 1, NBVAL, 1 )
439 CALL ICOPY( NNR, WORK( I ), 1, NRVAL, 1 )
441 CALL ICOPY( NNBR, WORK( I ), 1, NBRVAL, 1 )
443 CALL ICOPY( NGRIDS, WORK( I ), 1, PVAL, 1 )
445 CALL ICOPY( NGRIDS, WORK( I ), 1, QVAL, 1 )
449 CALL BLACS_GRIDEXIT( ICTXT )
453 20 WRITE( NOUT, FMT = 9993 )
455.NE..AND..NE.
IF( NOUT6 NOUT0 )
457 CALL BLACS_ABORT( ICTXT, 1 )
462 9998 FORMAT( 'routines pass computational
if scaled residual
',
463 $ 'is less than
', G12.5 )
464 9997 FORMAT( ' ', 10I6 )
465 9996 FORMAT( 2X, A5, ' :
', 10I6 )
466 9995 FORMAT( 'relative machine precision(eps) is taken to be
',
468 9994 FORMAT( ' number of values of
',5A, ' is less than 1 or greater
',
470 9993 FORMAT( ' illegal input in file
',40A,'. aborting run.
' )
subroutine pslsinfo(summry, nout, nmat, mval, ldmval, nval, ldnval, nnb, nbval, ldnbval, nnr, nrval, ldnrval, nnbr, nbrval, ldnbrval, ngrids, pval, ldpval, qval, ldqval, thresh, work, iam, nprocs)