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Updated: June 2017
 
 

csytrs_rook (3p)

Name

csytrs_rook - solve a system of linear equations A*X = B with a complex symmetric matrix A using the factorization A = U*D*U**T or A = L*D*L**T computed by CSYTRF_ROOK

Synopsis

SUBROUTINE CSYTRS_ROOK(UPLO, N, NRHS, A, LDA, IPIV, B, LDB, INFO)

CHARACTER*1 UPLO
COMPLEX A(LDA,*), B(LDB,*)
INTEGER N, NRHS, LDA, LDB, INFO
INTEGER IPIV(*)

SUBROUTINE CSYTRS_ROOK_64(UPLO, N, NRHS, A, LDA, IPIV, B, LDB, INFO)

CHARACTER*1 UPLO
COMPLEX A(LDA,*), B(LDB,*)
INTEGER*8 N, NRHS, LDA, LDB, INFO
INTEGER*8 IPIV(*)




F95 INTERFACE
SUBROUTINE SYTRS_ROOK(UPLO, N, NRHS, A, LDA, IPIV, B, LDB, INFO)

CHARACTER(LEN=1) :: UPLO
COMPLEX, DIMENSION(:,:) :: A, B
INTEGER :: N, NRHS, LDA, LDB, INFO
INTEGER, DIMENSION(:) :: IPIV

SUBROUTINE SYTRS_ROOK_64(UPLO, N, NRHS, A, LDA, IPIV, B, LDB,
INFO)

CHARACTER(LEN=1) :: UPLO
COMPLEX, DIMENSION(:,:) :: A, B
INTEGER(8) :: N, NRHS, LDA, LDB, INFO
INTEGER(8), DIMENSION(:) :: IPIV




C INTERFACE
#include <sunperf.h>

void  csytrs_rook(char  uplo, int n, int nrhs, complex *a, int lda, int
*ipiv, complex *b, int ldb, int *info);

void csytrs_rook_64(char uplo, long n, long nrhs, complex *a, long lda,
long *ipiv, complex *b, long ldb, long *info);

Description

Oracle Solaris Studio Performance Library                      csytrs_rook(3P)



NAME
       csytrs_rook - solve a system of linear equations A*X = B with a complex
       symmetric matrix A using the factorization A = U*D*U**T or A = L*D*L**T
       computed by CSYTRF_ROOK


SYNOPSIS
       SUBROUTINE CSYTRS_ROOK(UPLO, N, NRHS, A, LDA, IPIV, B, LDB, INFO)

       CHARACTER*1 UPLO
       COMPLEX A(LDA,*), B(LDB,*)
       INTEGER N, NRHS, LDA, LDB, INFO
       INTEGER IPIV(*)

       SUBROUTINE CSYTRS_ROOK_64(UPLO, N, NRHS, A, LDA, IPIV, B, LDB, INFO)

       CHARACTER*1 UPLO
       COMPLEX A(LDA,*), B(LDB,*)
       INTEGER*8 N, NRHS, LDA, LDB, INFO
       INTEGER*8 IPIV(*)




   F95 INTERFACE
       SUBROUTINE SYTRS_ROOK(UPLO, N, NRHS, A, LDA, IPIV, B, LDB, INFO)

       CHARACTER(LEN=1) :: UPLO
       COMPLEX, DIMENSION(:,:) :: A, B
       INTEGER :: N, NRHS, LDA, LDB, INFO
       INTEGER, DIMENSION(:) :: IPIV

       SUBROUTINE SYTRS_ROOK_64(UPLO, N, NRHS, A, LDA, IPIV, B, LDB,
              INFO)

       CHARACTER(LEN=1) :: UPLO
       COMPLEX, DIMENSION(:,:) :: A, B
       INTEGER(8) :: N, NRHS, LDA, LDB, INFO
       INTEGER(8), DIMENSION(:) :: IPIV




   C INTERFACE
       #include <sunperf.h>

       void  csytrs_rook(char  uplo, int n, int nrhs, complex *a, int lda, int
                 *ipiv, complex *b, int ldb, int *info);

       void csytrs_rook_64(char uplo, long n, long nrhs, complex *a, long lda,
                 long *ipiv, complex *b, long ldb, long *info);



PURPOSE
       csytrs_rook  solves a system of linear equations A*X = B with a complex
       symmetric matrix A using the factorization A = U*D*U**T or A = L*D*L**T
       computed by CSYTRF_ROOK.


ARGUMENTS
       UPLO (input)
                 Specifies whether the details of the factorization are stored
                 as an upper or lower triangular matrix.  = 'U':  Upper trian-
                 gular, form is A = U*D*U**T;
                 = 'L':  Lower triangular, form is A = L*D*L**T.


       N (input) The order of the matrix A. N >= 0.


       NRHS (input)
                 The  number  of right hand sides, i.e., the number of columns
                 of the matrix B.  NRHS >= 0.


       A (input) The block diagonal matrix  D  and  the  multipliers  used  to
                 obtain the factor U or L as computed by CSYTRF_ROOK.


       LDA (input)
                 The leading dimension of the array A. LDA >= max(1,N).


       IPIV (input)
                 Details  of  the interchanges and the block structure of D as
                 determined by CSYTRF_ROOK.


       B (input/output)
                 On entry, the right hand side matrix B.  On exit,  the  solu-
                 tion matrix X.


       LDB (input)
                 The leading dimension of the array B. LDB >= max(1,N).


       INFO (output)
                 = 0:  successful exit;
                 < 0:  if INFO = -i, the i-th argument had an illegal value.




                                  7 Nov 2015                   csytrs_rook(3P)