404 SUBROUTINE sdrgev( NSIZES, NN, NTYPES, DOTYPE, ISEED, THRESH,
405 $ NOUNIT, A, LDA, B, S, T, Q, LDQ, Z, QE, LDQE,
406 $ ALPHAR, ALPHAI, BETA, ALPHR1, ALPHI1, BETA1,
407 $ WORK, LWORK, RESULT, INFO )
414 INTEGER INFO, LDA, LDQ, LDQE, LWORK, NOUNIT, NSIZES,
420 INTEGER ISEED( 4 ), NN( * )
421 REAL A( LDA, * ), ALPHAI( * ), ALPHI1( * ),
422 $ alphar( * ), alphr1( * ), b( lda, * ),
423 $ beta( * ), beta1( * ), q( ldq, * ),
424 $ qe( ldqe, * ), result( * ), s( lda, * ),
425 $ t( lda, * ), work( * ), z( ldq, * )
432 PARAMETER ( ZERO = 0.0e+0, one = 1.0e+0 )
434 parameter( maxtyp = 26 )
438 INTEGER I, , IERR, IN, J, JC, , JSIZE, JTYPE,
439 $ MAXWRK, MINWRK, MTYPES, N, , NERRS, NMATS,
441 REAL SAFMAX, SAFMIN, ULP, ULPINV
444 INTEGER IASIGN( MAXTYP ), IBSIGN( MAXTYP ),
445 $ IOLDSD( 4 ), KADD( 6 ), KAMAGN( MAXTYP ),
446 $ KATYPE( MAXTYP ), KAZERO( MAXTYP ),
447 $ kbmagn( maxtyp ), kbtype( maxtyp ),
448 $ kbzero( maxtyp ), kclass( maxtyp ),
449 $ ktrian( maxtyp ), kz1( 6 ), kz2( 6 )
455 EXTERNAL ILAENV, , SLARND
462 INTRINSIC abs,
max,
min, real, sign
465 DATA kclass / 15*1, 10*2, 1*3 /
466 DATA kz1 / 0, 1, 2, 1, 3, 3 /
467 DATA kz2 / 0, 0, 1, 2, 1, 1 /
468 DATA kadd / 0, 0, 0, 0, 3, 2 /
469 DATA katype / 0, 1, 0, 1, 2, 3, 4, 1, 4, 4,
470 $ 4, 4, 2, 4, 5, 8, 7, 9, 4*4, 0 /
471 DATA kbtype / 0, 0, 1, 1, 2, -3, 1, 4, 1, 1, 4, 4,
472 $ 1, 1, -4, 2, -4, 8*8, 0 /
473 DATA kazero / 6*1, 2, 1, 2*2, 2*1, 2*2, 3, 1, 3,
475 DATA kbzero / 6*1, 1, 2, 2*1, 2*2, 2*1, 4, 1, 4,
477 DATA kamagn / 8*1, 2, 3, 2, 3, 2, 3, 7*1, 2, 3, 3,
479 DATA kbmagn / 8*1, 3, 2, 3, 2, 2, 3, 7*1, 3, 2, 3,
481 DATA ktrian / 16*0, 10*1 /
482 DATA iasign / 6*0, 2, 0, 2*2, 2*0, 3*2, 0, 2, 3*0,
484 DATA ibsign / 7*0, 2, 2*0, 2*2, 2*0, 2, 0, 2, 9*0 /
495 nmax =
max( nmax, nn( j ) )
500 IF( nsizes.LT.0 )
THEN
502 ELSE IF( badnn )
THEN
504 ELSE IF( ntypes.LT.0 )
THEN
506 ELSE IF( thresh.LT.zero )
THEN
508 ELSE IF( lda.LE.1 .OR. lda.LT.nmax )
THEN
510 ELSE IF( ldq.LE.1 .OR. ldq.LT.nmax )
THEN
512 ELSE IF( ldqe.LE.1 .OR. ldqe.LT.nmax
THEN
524 IF( info.EQ.0 .AND. lwork.GE.1 )
THEN
525 minwrk =
max( 1, 8*nmax, nmax*( nmax+1 ) )
526 maxwrk = 7*nmax + nmax*ilaenv( 1,
'SGEQRF',
' ', nmax, 1, nmax,
528 maxwrk =
max( maxwrk, nmax*( nmax+1 ) )
532 IF( lwork.LT.minwrk )
536 CALL xerbla(
'SDRGEV', -info )
542 IF( nsizes.EQ.0 .OR. ntypes.EQ.0 )
545 safmin = slamch(
'Safe minimum' )
546 ulp = slamch(
'Epsilon' )*slamch
'Base'
547 safmin = safmin / ulp
548 safmax = one / safmin
549 CALL slabad( safmin, safmax )
563 DO 220 jsize = 1, nsizes
566 rmagn( 2 ) = safmax*ulp / real( n1 )
567 rmagn( 3 ) = safmin*ulpinv*n1
569 IF( nsizes.NE.1 )
THEN
570 mtypes =
min( maxtyp, ntypes )
572 mtypes =
min( maxtyp+1, ntypes )
575 DO 210 jtype = 1, mtypes
576 IF( .NOT.dotype( jtype ) )
583 ioldsd( j ) = iseed( j )
609 IF( mtypes.GT.maxtyp )
612 IF( kclass( jtype ).LT.3 )
THEN
616 IF( abs( katype( jtype ) ).EQ.3 )
THEN
617 in = 2*( ( n-1 ) / 2 ) + 1
619 $
CALL slaset(
'Full', n, n, zero, zero, a, lda )
623 CALL slatm4( katype( jtype ), in, kz1( kazero( jtype ) ),
624 $ kz2( kazero( jtype ) ), iasign( jtype ),
625 $ rmagn( kamagn( jtype ) ), ulp,
626 $ rmagn( ktrian( jtype )*kamagn( jtype ) ), 2,
628 iadd = kadd( kazero( jtype ) )
629 IF( iadd.GT.0 .AND. iadd.LE.n )
630 $ a( iadd, iadd ) = one
634 IF( abs( kbtype( jtype ) ).EQ.3 )
THEN
635 in = 2*( ( n-1 ) / 2 ) + 1
637 $
CALL slaset(
'Full', n, n, zero, zero, b, lda )
641 CALL slatm4( kbtype( jtype ), in, kz1( kbzero( jtype ) ),
642 $ kz2( kbzero( jtype ) ), ibsign( jtype ),
643 $ rmagn( kbmagn( jtype ) ), one,
644 $ rmagn( ktrian( jtype )*kbmagn( jtype
646 iadd = kadd( kbzero( jtype ) )
647 IF( iadd.NE.0 .AND. iadd.LE.n )
648 $ b( iadd, iadd ) = one
650 IF( kclass( jtype ).EQ.2 .AND. n.GT.0 )
THEN
659 q( jr, jc ) = slarnd( 3, iseed )
660 z( jr, jc ) = slarnd( 3, iseed )
662 CALL slarfg( n+1-jc, q( jc, jc ), q( jc+1, jc ), 1,
664 work( 2*n+jc ) = sign( one, q( jc, jc ) )
666 CALL slarfg( n+1-jc, z( jc, jc ), z( jc+1, jc ), 1,
668 work( 3*n+jc ) = sign( one, z( jc, jc ) )
673 work( 3*n ) = sign( one, slarnd( 2, iseed ) )
676 work( 4*n ) = sign( one, slarnd( 2, iseed ) )
682 a( jr, jc ) = work( 2*n+jr )*work( 3*n+jc )*
684 b( jr, jc ) = work( 2*n+jr )*work( 3*n+jc )*
688 CALL sorm2r(
'L',
'N', n, n, n-1, q, ldq, work, a,
689 $ lda, work( 2*n+1 ), ierr )
692 CALL sorm2r(
'R',
'T', n, n, n-1, z, ldq, work( n+1 ),
693 $ a, lda, work( 2*n+1 ), ierr )
696 CALL sorm2r(
'L',
'N', n, n, n-1, q, ldq, work, b,
697 $ lda, work( 2*n+1 ), ierr )
701 $ b, lda, work( 2*n+1 ), ierr )
711 a( jr, jc ) = rmagn( kamagn( jtype ) )*
713 b( jr, jc ) = rmagn( kbmagn( jtype ) )*
722 WRITE( nounit, fmt = 9999 )
'Generator', ierr, n, jtype,
736 CALL slacpy(
' ', n, n, a, lda, s, lda )
737 CALL slacpy(
' ', n, n, b, lda, t, lda )
738 CALL sggev(
'V',
'V', n, s, lda, t, lda, alphar, alphai,
739 $ beta, q, ldq, z, ldq, work, lwork, ierr )
740 IF( ierr.NE.0 .AND. ierr.NE.n+1 )
THEN
742 WRITE( nounit, fmt = 9999 )
'SGGEV1',
750 CALL sget52( .true., n, a, lda, b, lda, q, ldq, alphar,
751 $ alphai, beta, work, result( 1 ) )
752 IF( result( 2 ).GT.thresh )
THEN
753 WRITE( nounit, fmt = 9998 )
'Left',
'SGGEV1',
754 $ result( 2 ), n, jtype, ioldsd
759 CALL sget52( .false., n, a, lda, b, lda, z, ldq, alphar,
760 $ alphai, beta, work, result( 3 ) )
761 IF( result( 4 ).GT.thresh )
THEN
762 WRITE( nounit, fmt = 9998 )
'Right',
'SGGEV1',
763 $ result( 4 ), n, jtype, ioldsd
768 CALL slacpy(
' ', n, n, a, lda, s, lda )
769 CALL slacpy(
' ', n, n, b, lda, t, lda )
770 CALL sggev(
'N',
'N', n, s, lda, t, lda, alphr1, alphi1,
771 $ beta1, q, ldq, z, ldq, work, lwork, ierr )
772 IF( ierr.NE.0 .AND. ierr.NE.n+1 )
THEN
774 WRITE( nounit, fmt = 9999 )'sggev2
', IERR, N, JTYPE,
781.NE..OR..NE.
IF( ALPHAR( J )ALPHR1( J ) ALPHAI( J )
782.OR..NE.
$ ALPHI1( J ) BETA( J )BETA1( J ) )
783 $ RESULT( 5 ) = ULPINV
789 CALL SLACPY( ' ', N, N, A, LDA, S, LDA )
790 CALL SLACPY( ' ', N, N, B, LDA, T, LDA )
791 CALL SGGEV( 'v
', 'n
', N, S, LDA, T, LDA, ALPHR1, ALPHI1,
792 $ BETA1, QE, LDQE, Z, LDQ, WORK, LWORK, IERR )
793.NE..AND..NE.
IF( IERR0 IERRN+1 ) THEN
795 WRITE( NOUNIT, FMT = 9999 )'sggev3', IERR, N, JTYPE,
802.NE..OR..NE.
IF( ALPHAR( J )ALPHR1( J ) ALPHAI( J )
803.OR..NE.
$ ALPHI1( J ) BETA( J )BETA1( J ) )
804 $ RESULT( 6 ) = ULPINV
809.NE.
IF( Q( J, JC )QE( J, JC ) )
810 $ RESULT( 6 ) = ULPINV
817 CALL SLACPY( ' ', N, N, A, LDA, S, LDA )
818 CALL SLACPY( ' ', N, N, B, LDA, T, LDA )
819 CALL SGGEV( 'n
', 'v
', N, S, LDA, T, LDA, ALPHR1, ALPHI1,
820 $ BETA1, Q, LDQ, QE, LDQE, WORK, LWORK, IERR )
821.NE..AND..NE.
IF( IERR0 IERRN+1 ) THEN
823 WRITE( NOUNIT, FMT = 9999 )'sggev4
', IERR, N, JTYPE,
830.NE..OR..NE.
IF( ALPHAR( J )ALPHR1( J ) ALPHAI( J )
831.OR..NE.
$ ALPHI1( J ) BETA( J )BETA1( J ) )
832 $ RESULT( 7 ) = ULPINV
837.NE.
IF( Z( J, JC )QE( J, JC ) )
838 $ RESULT( 7 ) = ULPINV
851.GE.
IF( RESULT( JR )THRESH ) THEN
856.EQ.
IF( NERRS0 ) THEN
857 WRITE( NOUNIT, FMT = 9997 )'sgv
'
861 WRITE( NOUNIT, FMT = 9996 )
862 WRITE( NOUNIT, FMT = 9995 )
863 WRITE( NOUNIT, FMT = 9994 )'orthogonal
'
867 WRITE( NOUNIT, FMT = 9993 )
871.LT.
IF( RESULT( JR )10000.0 ) THEN
872 WRITE( NOUNIT, FMT = 9992 )N, JTYPE, IOLDSD, JR,
875 WRITE( NOUNIT, FMT = 9991 )N, JTYPE, IOLDSD, JR,
886 CALL ALASVM( 'sgv
', NOUNIT, NERRS, NTESTT, 0 )
892 9999 FORMAT( ' sdrgev: ', a,
' returned INFO=', i6,
'.', / 3x,
'N=',
893 $ i6,
', JTYPE=', i6,
', ISEED=(', 4( i4,
',' ), i5,
')' )
895 9998
FORMAT(
' SDRGEV: ', a,
' Eigenvectors from ', a,
' incorrectly ',
896 $
'normalized.', /
' Bits of error=', 0p, g10.3,
',', 3x,
897 $
'N=', i4,
', JTYPE=', i3,
', ISEED=(', 4( i4,
',' ), i5,
900 9997
FORMAT( / 1x, a3,
' -- Real Generalized eigenvalue problem driver'
903 9996
FORMAT(
' Matrix types (see SDRGEV for details): ' )
905 9995
FORMAT(
' Special Matrices:', 23x,
906 $
'(J''=transposed Jordan block)',
907 $ /
' 1=(0,0) 2=(I,0) 3=(0,I) 4=(I,I) 5=(J'',J'') ',
908 $ '6=(diag(j
'',i), diag(i,j
''))
', / ' diagonal matrices: (
',
909 $ 'd=diag(0,1,2,...) )
', / ' 7=(d,i) 9=(large*d, small*i
',
910 $ ') 11=(large*i, small*d) 13=(large*d, large*i)
', /
911 $ ' 8=(i,d) 10=(small*d, large*i) 12=(small*i, large*d)
',
912 $ ' 14=(small*d, small*i)
', / ' 15=(d, reversed d)
' )
913 9994 FORMAT( ' matrices rotated by random
', A, ' matrices u, v:
',
914 $ / ' 16=transposed jordan blocks 19=geometric
',
915 $ 'alpha, beta=0,1
', / ' 17=arithm.
alpha&beta
',
916 $ ' 20=arithmetic
alpha, beta=0,1
', / ' 18=clustered
',
917 $ 'alpha, beta=0,1 21=random
alpha, beta=0,1
',
918 $ / ' large & small matrices:
', / ' 22=(large, small)
',
919 $ '23=(small,large) 24=(small,small) 25=(large,large)
',
920 $ / ' 26=random o(1) matrices.
' )
922 9993 FORMAT( / ' tests performed:
',
923 $ / ' 1 =
max | ( b a - a b )
''*l
',
924 $ / ' 2 = | |vr(i)| - 1 | / ulp,
',
925 $ / ' 3 =
max | ( b a - a b )*r | / const.
',
926 $ / ' 4 = | |vl(i)| - 1 | / ulp,
',
927 $ / ' 5 = 0
if w same no matter
if r or l computed,
',
928 $ / ' 6 = 0
if l same no matter
if l computed,
',
929 $ / ' 7 = 0
if r same no matter
if r computed,
', / 1X )
930 9992 FORMAT( ' matrix order=
', I5, ', type=
', I2, ',
seed=
',
931 $ 4( I4, ',
' ), ' result
', I2, ' is
', 0P, F8.2 )
932 9991 FORMAT( ' matrix order=
', I5, ', type=
', I2, ',
seed=
',
933 $ 4( I4, ',
' ), ' result
', I2, ' is
', 1P, E10.3 )