Diff for /rpl/lapack/lapack/zlapmt.f between versions 1.7 and 1.8

version 1.7, 2010/12/21 13:53:50 version 1.8, 2011/11/21 20:43:16
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   *> \brief \b ZLAPMT
   *
   *  =========== DOCUMENTATION ===========
   *
   * Online html documentation available at 
   *            http://www.netlib.org/lapack/explore-html/ 
   *
   *> \htmlonly
   *> Download ZLAPMT + dependencies 
   *> <a href="http://www.netlib.org/cgi-bin/netlibfiles.tgz?format=tgz&filename=/lapack/lapack_routine/zlapmt.f"> 
   *> [TGZ]</a> 
   *> <a href="http://www.netlib.org/cgi-bin/netlibfiles.zip?format=zip&filename=/lapack/lapack_routine/zlapmt.f"> 
   *> [ZIP]</a> 
   *> <a href="http://www.netlib.org/cgi-bin/netlibfiles.txt?format=txt&filename=/lapack/lapack_routine/zlapmt.f"> 
   *> [TXT]</a>
   *> \endhtmlonly 
   *
   *  Definition:
   *  ===========
   *
   *       SUBROUTINE ZLAPMT( FORWRD, M, N, X, LDX, K )
   * 
   *       .. Scalar Arguments ..
   *       LOGICAL            FORWRD
   *       INTEGER            LDX, M, N
   *       ..
   *       .. Array Arguments ..
   *       INTEGER            K( * )
   *       COMPLEX*16         X( LDX, * )
   *       ..
   *  
   *
   *> \par Purpose:
   *  =============
   *>
   *> \verbatim
   *>
   *> ZLAPMT rearranges the columns of the M by N matrix X as specified
   *> by the permutation K(1),K(2),...,K(N) of the integers 1,...,N.
   *> If FORWRD = .TRUE.,  forward permutation:
   *>
   *>      X(*,K(J)) is moved X(*,J) for J = 1,2,...,N.
   *>
   *> If FORWRD = .FALSE., backward permutation:
   *>
   *>      X(*,J) is moved to X(*,K(J)) for J = 1,2,...,N.
   *> \endverbatim
   *
   *  Arguments:
   *  ==========
   *
   *> \param[in] FORWRD
   *> \verbatim
   *>          FORWRD is LOGICAL
   *>          = .TRUE., forward permutation
   *>          = .FALSE., backward permutation
   *> \endverbatim
   *>
   *> \param[in] M
   *> \verbatim
   *>          M is INTEGER
   *>          The number of rows of the matrix X. M >= 0.
   *> \endverbatim
   *>
   *> \param[in] N
   *> \verbatim
   *>          N is INTEGER
   *>          The number of columns of the matrix X. N >= 0.
   *> \endverbatim
   *>
   *> \param[in,out] X
   *> \verbatim
   *>          X is COMPLEX*16 array, dimension (LDX,N)
   *>          On entry, the M by N matrix X.
   *>          On exit, X contains the permuted matrix X.
   *> \endverbatim
   *>
   *> \param[in] LDX
   *> \verbatim
   *>          LDX is INTEGER
   *>          The leading dimension of the array X, LDX >= MAX(1,M).
   *> \endverbatim
   *>
   *> \param[in,out] K
   *> \verbatim
   *>          K is INTEGER array, dimension (N)
   *>          On entry, K contains the permutation vector. K is used as
   *>          internal workspace, but reset to its original value on
   *>          output.
   *> \endverbatim
   *
   *  Authors:
   *  ========
   *
   *> \author Univ. of Tennessee 
   *> \author Univ. of California Berkeley 
   *> \author Univ. of Colorado Denver 
   *> \author NAG Ltd. 
   *
   *> \date November 2011
   *
   *> \ingroup complex16OTHERauxiliary
   *
   *  =====================================================================
       SUBROUTINE ZLAPMT( FORWRD, M, N, X, LDX, K )        SUBROUTINE ZLAPMT( FORWRD, M, N, X, LDX, K )
 *  *
 *  -- LAPACK auxiliary routine (version 3.2) --  *  -- LAPACK auxiliary routine (version 3.4.0) --
 *  -- LAPACK is a software package provided by Univ. of Tennessee,    --  *  -- LAPACK is a software package provided by Univ. of Tennessee,    --
 *  -- Univ. of California Berkeley, Univ. of Colorado Denver and NAG Ltd..--  *  -- Univ. of California Berkeley, Univ. of Colorado Denver and NAG Ltd..--
 *     November 2006  *     November 2011
 *  *
 *     .. Scalar Arguments ..  *     .. Scalar Arguments ..
       LOGICAL            FORWRD        LOGICAL            FORWRD
Line 14 Line 118
       COMPLEX*16         X( LDX, * )        COMPLEX*16         X( LDX, * )
 *     ..  *     ..
 *  *
 *  Purpose  
 *  =======  
 *  
 *  ZLAPMT rearranges the columns of the M by N matrix X as specified  
 *  by the permutation K(1),K(2),...,K(N) of the integers 1,...,N.  
 *  If FORWRD = .TRUE.,  forward permutation:  
 *  
 *       X(*,K(J)) is moved X(*,J) for J = 1,2,...,N.  
 *  
 *  If FORWRD = .FALSE., backward permutation:  
 *  
 *       X(*,J) is moved to X(*,K(J)) for J = 1,2,...,N.  
 *  
 *  Arguments  
 *  =========  
 *  
 *  FORWRD  (input) LOGICAL  
 *          = .TRUE., forward permutation  
 *          = .FALSE., backward permutation  
 *  
 *  M       (input) INTEGER  
 *          The number of rows of the matrix X. M >= 0.  
 *  
 *  N       (input) INTEGER  
 *          The number of columns of the matrix X. N >= 0.  
 *  
 *  X       (input/output) COMPLEX*16 array, dimension (LDX,N)  
 *          On entry, the M by N matrix X.  
 *          On exit, X contains the permuted matrix X.  
 *  
 *  LDX     (input) INTEGER  
 *          The leading dimension of the array X, LDX >= MAX(1,M).  
 *  
 *  K       (input/output) INTEGER array, dimension (N)  
 *          On entry, K contains the permutation vector. K is used as  
 *          internal workspace, but reset to its original value on  
 *          output.  
 *  
 *  =====================================================================  *  =====================================================================
 *  *
 *     .. Local Scalars ..  *     .. Local Scalars ..

Removed from v.1.7  
changed lines
  Added in v.1.8


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