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Solution to a Linear System in a Symmetric Matrix (Simple Driver)

The subroutines described in this section solve a linear system AX = B for a symmetric matrix A and general matrices B and X. Note that the expert driver xSYSVX is also available.

Calling Sequence

CALL DSYSV 
(UPLO, N, NRHS, DA, LDA, IPIVOT, DB, LDB, DWORK, 
LDWORK, INFO)
CALL SSYSV 
(UPLO, N, NRHS, SA, LDA, IPIVOT, SB, LDB, SWORK, 
LDWORK, INFO)
CALL ZSYSV 
(UPLO, N, NRHS, ZA, LDA, IPIVOT, ZB, LDB, ZWORK, 
LDWORK, INFO)
CALL SSYSV 
(UPLO, N, NRHS, CA, LDA, IPIVOT, CB, LDB, CWORK, 
LDWORK, INFO)






void dsysv 
(char uplo, int n, int nrhs, double *da, int lda, int 
*ipivot, double *db, int ldb, int *info)
void ssysv 
(char uplo, int n, int nrhs, float *sa, int lda, int 
*ipivot, float *sb, int ldb, int *info)
void zsysv 
(char uplo, int n, int nrhs, doublecomplex *za, int 
lda, int *ipivot, doublecomplex *zb, int ldb, int 
*info)
void csysv 
(char uplo, int n, int nrhs, complex *ca, int lda, int 
*ipivot, complex *cb, int ldb, int *info)

Arguments

UPLO

Indicates whether xA contains the upper or lower triangle of the matrix. The legal values for UPLO are listed below. Any values not listed below are illegal.

'U' or 'u'

xA contains the upper triangle.

'L' or 'l'

xA contains the lower triangle.

N

Order of the matrix A. N 0.

NRHS

Number of right-hand sides, equal to the number of columns of the matrix B. NRHS 0.

xA

On entry, the upper or lower triangle of the matrix A.
On exit, the UDU or LDL factorization of the matrix A, as computed by xSYTRF.

LDA

Leading dimension of the array A as specified in a dimension or type statement. LDA max(1, N).

IPIVOT

On exit, pivot indices as computed by xSYTRF.

xB

On entry, the N×NRHS right-hand side matrix B.
On exit, the N×NRHS solution matrix X.

LDB

Leading dimension of the array B as specified in a dimension or type statement. LDB max(1, N).

xWORK

Scratch array with a dimension of LDWORK.

LDWORK

Leading dimension of the array WORK as specified in a dimension or type statement. LDWORK 1.

INFO

On exit:

INFO = 0

Subroutine completed normally.

INFO < 0

The ith argument, where i = |INFO|, had an illegal value.

INFO > 0

D(i,i), where i = INFO, is exactly zero and D is therefore singular. The factorization has been completed, but the solution could not be computed.

Sample Program




      PROGRAM TEST
      IMPLICIT NONE
C
      INTEGER           LDA, LDB, LDWORK, M, N, NRHS
      PARAMETER        (M = 3)
      PARAMETER        (N = 3)
      PARAMETER        (NRHS = 1)
      PARAMETER        (LDA = M)
      PARAMETER        (LDB = LDA)
      PARAMETER        (LDWORK = 1)
C
      DOUBLE PRECISION  A(LDA,N), B(LDB,NRHS), WORK(LDWORK)
      INTEGER           ICOL, INFO, IROW, IPIVOT(N)
C
      EXTERNAL          DSYSV
C
C     Initialize the array A to store the coefficient matrix A
C     shown below.  Initialize the array B to store the right
C     hand vector b shown below.
C
C         1  2  2        15
C     A = 2  1  2    b = 15
C         2  2  1        15
C
      DATA A / 1.0D0, 8D8, 8D8, 2.0D0, 1.0D0, 8D8, 2.0D0, 2.0D0,
     $         1.0D0 /
      DATA B / 1.5D1, 1.5D1, 1.5D1 /
C
      PRINT 1000
      DO 100, IROW = 1, N
        PRINT 1010, (A(ICOL,IROW), ICOL = 1, IROW - 1),
     $              (A(IROW,ICOL), ICOL = IROW, N)
  100 CONTINUE
      PRINT 1020
      DO 110, IROW = 1, LDA
        PRINT 1010, (A(IROW,ICOL), ICOL = 1, N)
  110 CONTINUE
      PRINT 1030
      PRINT 1040, B
C
      CALL DSYSV ('UPPER TRIANGULAR A', N, NRHS, A, LDA, IPIVOT,
     $            B, LDB, WORK, LDWORK, INFO)
      IF (INFO .EQ. 0) THEN
        PRINT 1050
        PRINT 1040, B
      ELSE
        PRINT 1060, INFO
      END IF
C
 1000 FORMAT (1X, 'A in full form:')
 1010 FORMAT (3(3X, F4.1))
 1020 FORMAT (/1X, 'A in symmetric form:  (* in unused elements)')
 1030 FORMAT (/1X, 'b:')
 1040 FORMAT (1X, 2X, F4.1)
 1050 FORMAT (/1X, 'x:')
 1060 FORMAT (1X, 'Solve failed with INFO = ', I6)
C
      END
 

Sample Output

 
 A in full form:
    1.0    2.0    2.0
    2.0    1.0    2.0
    2.0    2.0    1.0



 A in symmetric form:  (* in unused elements)
    1.0    2.0    2.0
   ****    1.0    2.0
   ****   ****    1.0



 b:
   15.0
   15.0
   15.0



 x:
    3.0
    3.0
    3.0






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