Those are just cosmetic changes to update version number and various other minor change.
194 lines
5.7 KiB
FortranFixed
194 lines
5.7 KiB
FortranFixed
SUBROUTINE DPBCON( UPLO, N, KD, AB, LDAB, ANORM, RCOND, WORK,
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$ IWORK, INFO )
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*
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* -- LAPACK routine (version 3.2) --
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* -- LAPACK is a software package provided by Univ. of Tennessee, --
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* -- Univ. of California Berkeley, Univ. of Colorado Denver and NAG Ltd..--
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* November 2006
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*
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* Modified to call DLACN2 in place of DLACON, 5 Feb 03, SJH.
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*
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* .. Scalar Arguments ..
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CHARACTER UPLO
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INTEGER INFO, KD, LDAB, N
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DOUBLE PRECISION ANORM, RCOND
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* ..
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* .. Array Arguments ..
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INTEGER IWORK( * )
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DOUBLE PRECISION AB( LDAB, * ), WORK( * )
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* ..
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*
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* Purpose
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* =======
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*
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* DPBCON estimates the reciprocal of the condition number (in the
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* 1-norm) of a real symmetric positive definite band matrix using the
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* Cholesky factorization A = U**T*U or A = L*L**T computed by DPBTRF.
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*
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* An estimate is obtained for norm(inv(A)), and the reciprocal of the
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* condition number is computed as RCOND = 1 / (ANORM * norm(inv(A))).
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*
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* Arguments
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* =========
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*
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* UPLO (input) CHARACTER*1
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* = 'U': Upper triangular factor stored in AB;
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* = 'L': Lower triangular factor stored in AB.
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*
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* N (input) INTEGER
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* The order of the matrix A. N >= 0.
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*
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* KD (input) INTEGER
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* The number of superdiagonals of the matrix A if UPLO = 'U',
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* or the number of subdiagonals if UPLO = 'L'. KD >= 0.
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*
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* AB (input) DOUBLE PRECISION array, dimension (LDAB,N)
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* The triangular factor U or L from the Cholesky factorization
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* A = U**T*U or A = L*L**T of the band matrix A, stored in the
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* first KD+1 rows of the array. The j-th column of U or L is
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* stored in the j-th column of the array AB as follows:
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* if UPLO ='U', AB(kd+1+i-j,j) = U(i,j) for max(1,j-kd)<=i<=j;
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* if UPLO ='L', AB(1+i-j,j) = L(i,j) for j<=i<=min(n,j+kd).
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*
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* LDAB (input) INTEGER
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* The leading dimension of the array AB. LDAB >= KD+1.
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*
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* ANORM (input) DOUBLE PRECISION
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* The 1-norm (or infinity-norm) of the symmetric band matrix A.
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*
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* RCOND (output) DOUBLE PRECISION
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* The reciprocal of the condition number of the matrix A,
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* computed as RCOND = 1/(ANORM * AINVNM), where AINVNM is an
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* estimate of the 1-norm of inv(A) computed in this routine.
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*
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* WORK (workspace) DOUBLE PRECISION array, dimension (3*N)
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*
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* IWORK (workspace) INTEGER array, dimension (N)
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*
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* INFO (output) INTEGER
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* = 0: successful exit
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* < 0: if INFO = -i, the i-th argument had an illegal value
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*
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* =====================================================================
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*
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* .. Parameters ..
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DOUBLE PRECISION ONE, ZERO
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PARAMETER ( ONE = 1.0D+0, ZERO = 0.0D+0 )
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* ..
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* .. Local Scalars ..
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LOGICAL UPPER
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CHARACTER NORMIN
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INTEGER IX, KASE
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DOUBLE PRECISION AINVNM, SCALE, SCALEL, SCALEU, SMLNUM
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* ..
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* .. Local Arrays ..
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INTEGER ISAVE( 3 )
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* ..
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* .. External Functions ..
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LOGICAL LSAME
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INTEGER IDAMAX
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DOUBLE PRECISION DLAMCH
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EXTERNAL LSAME, IDAMAX, DLAMCH
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* ..
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* .. External Subroutines ..
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EXTERNAL DLACN2, DLATBS, DRSCL, XERBLA
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* ..
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* .. Intrinsic Functions ..
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INTRINSIC ABS
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* ..
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* .. Executable Statements ..
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*
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* Test the input parameters.
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*
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INFO = 0
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UPPER = LSAME( UPLO, 'U' )
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IF( .NOT.UPPER .AND. .NOT.LSAME( UPLO, 'L' ) ) THEN
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INFO = -1
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ELSE IF( N.LT.0 ) THEN
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INFO = -2
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ELSE IF( KD.LT.0 ) THEN
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INFO = -3
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ELSE IF( LDAB.LT.KD+1 ) THEN
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INFO = -5
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ELSE IF( ANORM.LT.ZERO ) THEN
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INFO = -6
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END IF
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IF( INFO.NE.0 ) THEN
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CALL XERBLA( 'DPBCON', -INFO )
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RETURN
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END IF
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*
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* Quick return if possible
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*
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RCOND = ZERO
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IF( N.EQ.0 ) THEN
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RCOND = ONE
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RETURN
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ELSE IF( ANORM.EQ.ZERO ) THEN
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RETURN
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END IF
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*
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SMLNUM = DLAMCH( 'Safe minimum' )
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*
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* Estimate the 1-norm of the inverse.
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*
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KASE = 0
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NORMIN = 'N'
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10 CONTINUE
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CALL DLACN2( N, WORK( N+1 ), WORK, IWORK, AINVNM, KASE, ISAVE )
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IF( KASE.NE.0 ) THEN
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IF( UPPER ) THEN
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*
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* Multiply by inv(U').
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*
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CALL DLATBS( 'Upper', 'Transpose', 'Non-unit', NORMIN, N,
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$ KD, AB, LDAB, WORK, SCALEL, WORK( 2*N+1 ),
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$ INFO )
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NORMIN = 'Y'
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*
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* Multiply by inv(U).
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*
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CALL DLATBS( 'Upper', 'No transpose', 'Non-unit', NORMIN, N,
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$ KD, AB, LDAB, WORK, SCALEU, WORK( 2*N+1 ),
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$ INFO )
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ELSE
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*
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* Multiply by inv(L).
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*
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CALL DLATBS( 'Lower', 'No transpose', 'Non-unit', NORMIN, N,
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$ KD, AB, LDAB, WORK, SCALEL, WORK( 2*N+1 ),
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$ INFO )
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NORMIN = 'Y'
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*
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* Multiply by inv(L').
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*
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CALL DLATBS( 'Lower', 'Transpose', 'Non-unit', NORMIN, N,
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$ KD, AB, LDAB, WORK, SCALEU, WORK( 2*N+1 ),
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$ INFO )
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END IF
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*
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* Multiply by 1/SCALE if doing so will not cause overflow.
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*
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SCALE = SCALEL*SCALEU
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IF( SCALE.NE.ONE ) THEN
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IX = IDAMAX( N, WORK, 1 )
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IF( SCALE.LT.ABS( WORK( IX ) )*SMLNUM .OR. SCALE.EQ.ZERO )
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$ GO TO 20
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CALL DRSCL( N, SCALE, WORK, 1 )
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END IF
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GO TO 10
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END IF
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*
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* Compute the estimate of the reciprocal condition number.
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*
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IF( AINVNM.NE.ZERO )
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$ RCOND = ( ONE / AINVNM ) / ANORM
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*
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20 CONTINUE
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*
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RETURN
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*
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* End of DPBCON
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*
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END
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