181 lines
		
	
	
		
			5.0 KiB
		
	
	
	
		
			Fortran
		
	
	
	
			
		
		
	
	
			181 lines
		
	
	
		
			5.0 KiB
		
	
	
	
		
			Fortran
		
	
	
	
| *> \brief \b ZLAT2C converts a double complex triangular matrix to a complex triangular matrix.
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| *
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| *  =========== DOCUMENTATION ===========
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| *
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| * Online html documentation available at 
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| *            http://www.netlib.org/lapack/explore-html/ 
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| *
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| *> \htmlonly
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| *> Download ZLAT2C + dependencies 
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| *> <a href="http://www.netlib.org/cgi-bin/netlibfiles.tgz?format=tgz&filename=/lapack/lapack_routine/zlat2c.f"> 
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| *> [TGZ]</a> 
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| *> <a href="http://www.netlib.org/cgi-bin/netlibfiles.zip?format=zip&filename=/lapack/lapack_routine/zlat2c.f"> 
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| *> [ZIP]</a> 
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| *> <a href="http://www.netlib.org/cgi-bin/netlibfiles.txt?format=txt&filename=/lapack/lapack_routine/zlat2c.f"> 
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| *> [TXT]</a>
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| *> \endhtmlonly 
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| *
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| *  Definition:
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| *  ===========
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| *
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| *       SUBROUTINE ZLAT2C( UPLO, N, A, LDA, SA, LDSA, INFO )
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| * 
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| *       .. Scalar Arguments ..
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| *       CHARACTER          UPLO
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| *       INTEGER            INFO, LDA, LDSA, N
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| *       ..
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| *       .. Array Arguments ..
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| *       COMPLEX            SA( LDSA, * )
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| *       COMPLEX*16         A( LDA, * )
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| *       ..
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| *  
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| *
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| *> \par Purpose:
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| *  =============
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| *>
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| *> \verbatim
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| *>
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| *> ZLAT2C converts a COMPLEX*16 triangular matrix, SA, to a COMPLEX
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| *> triangular matrix, A.
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| *>
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| *> RMAX is the overflow for the SINGLE PRECISION arithmetic
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| *> ZLAT2C checks that all the entries of A are between -RMAX and
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| *> RMAX. If not the convertion is aborted and a flag is raised.
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| *>
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| *> This is an auxiliary routine so there is no argument checking.
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| *> \endverbatim
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| *
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| *  Arguments:
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| *  ==========
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| *
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| *> \param[in] UPLO
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| *> \verbatim
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| *>          UPLO is CHARACTER*1
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| *>          = 'U':  A is upper triangular;
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| *>          = 'L':  A is lower triangular.
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| *> \endverbatim
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| *>
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| *> \param[in] N
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| *> \verbatim
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| *>          N is INTEGER
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| *>          The number of rows and columns of the matrix A.  N >= 0.
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| *> \endverbatim
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| *>
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| *> \param[in] A
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| *> \verbatim
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| *>          A is COMPLEX*16 array, dimension (LDA,N)
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| *>          On entry, the N-by-N triangular coefficient matrix A.
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| *> \endverbatim
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| *>
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| *> \param[in] LDA
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| *> \verbatim
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| *>          LDA is INTEGER
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| *>          The leading dimension of the array A.  LDA >= max(1,N).
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| *> \endverbatim
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| *>
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| *> \param[out] SA
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| *> \verbatim
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| *>          SA is COMPLEX array, dimension (LDSA,N)
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| *>          Only the UPLO part of SA is referenced.  On exit, if INFO=0,
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| *>          the N-by-N coefficient matrix SA; if INFO>0, the content of
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| *>          the UPLO part of SA is unspecified.
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| *> \endverbatim
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| *>
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| *> \param[in] LDSA
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| *> \verbatim
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| *>          LDSA is INTEGER
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| *>          The leading dimension of the array SA.  LDSA >= max(1,M).
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| *> \endverbatim
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| *>
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| *> \param[out] INFO
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| *> \verbatim
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| *>          INFO is INTEGER
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| *>          = 0:  successful exit.
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| *>          = 1:  an entry of the matrix A is greater than the SINGLE
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| *>                PRECISION overflow threshold, in this case, the content
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| *>                of the UPLO part of SA in exit is unspecified.
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| *> \endverbatim
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| *
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| *  Authors:
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| *  ========
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| *
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| *> \author Univ. of Tennessee 
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| *> \author Univ. of California Berkeley 
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| *> \author Univ. of Colorado Denver 
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| *> \author NAG Ltd. 
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| *
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| *> \date September 2012
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| *
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| *> \ingroup complex16OTHERauxiliary
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| *
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| *  =====================================================================
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|       SUBROUTINE ZLAT2C( UPLO, N, A, LDA, SA, LDSA, INFO )
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| *
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| *  -- LAPACK auxiliary routine (version 3.4.2) --
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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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| *     September 2012
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| *
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| *     .. Scalar Arguments ..
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|       CHARACTER          UPLO
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|       INTEGER            INFO, LDA, LDSA, N
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| *     ..
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| *     .. Array Arguments ..
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|       COMPLEX            SA( LDSA, * )
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|       COMPLEX*16         A( LDA, * )
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| *     ..
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| *
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| *  =====================================================================
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| *
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| *     .. Local Scalars ..
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|       INTEGER            I, J
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|       DOUBLE PRECISION   RMAX
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|       LOGICAL            UPPER
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| *     ..
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| *     .. Intrinsic Functions ..
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|       INTRINSIC          DBLE, DIMAG
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| *     ..
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| *     .. External Functions ..
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|       REAL               SLAMCH
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|       LOGICAL            LSAME
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|       EXTERNAL           SLAMCH, LSAME
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| *     ..
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| *     .. Executable Statements ..
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| *
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|       RMAX = SLAMCH( 'O' )
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|       UPPER = LSAME( UPLO, 'U' )
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|       IF( UPPER ) THEN
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|          DO 20 J = 1, N
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|             DO 10 I = 1, J
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|                IF( ( DBLE( A( I, J ) ).LT.-RMAX ) .OR.
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|      $             ( DBLE( A( I, J ) ).GT.RMAX ) .OR.
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|      $             ( DIMAG( A( I, J ) ).LT.-RMAX ) .OR.
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|      $             ( DIMAG( A( I, J ) ).GT.RMAX ) ) THEN
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|                   INFO = 1
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|                   GO TO 50
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|                END IF
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|                SA( I, J ) = A( I, J )
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|    10       CONTINUE
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|    20    CONTINUE
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|       ELSE
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|          DO 40 J = 1, N
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|             DO 30 I = J, N
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|                IF( ( DBLE( A( I, J ) ).LT.-RMAX ) .OR.
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|      $             ( DBLE( A( I, J ) ).GT.RMAX ) .OR.
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|      $             ( DIMAG( A( I, J ) ).LT.-RMAX ) .OR.
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|      $             ( DIMAG( A( I, J ) ).GT.RMAX ) ) THEN
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|                   INFO = 1
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|                   GO TO 50
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|                END IF
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|                SA( I, J ) = A( I, J )
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|    30       CONTINUE
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|    40    CONTINUE
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|       END IF
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|    50 CONTINUE
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| *
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|       RETURN
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| *
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| *     End of ZLAT2C
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| *
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|       END
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