NAME

zgbcon - estimate the reciprocal of the condition number of a complex general band matrix A, in either the 1-norm or the infinity-norm,


SYNOPSIS

  SUBROUTINE ZGBCON( NORM, N, NSUB, NSUPER, A, LDA, IPIVOT, ANORM, 
 *      RCOND, WORK, WORK2, INFO)
  CHARACTER * 1 NORM
  DOUBLE COMPLEX A(LDA,*), WORK(*)
  INTEGER N, NSUB, NSUPER, LDA, INFO
  INTEGER IPIVOT(*)
  DOUBLE PRECISION ANORM, RCOND
  DOUBLE PRECISION WORK2(*)
  SUBROUTINE ZGBCON_64( NORM, N, NSUB, NSUPER, A, LDA, IPIVOT, ANORM, 
 *      RCOND, WORK, WORK2, INFO)
  CHARACTER * 1 NORM
  DOUBLE COMPLEX A(LDA,*), WORK(*)
  INTEGER*8 N, NSUB, NSUPER, LDA, INFO
  INTEGER*8 IPIVOT(*)
  DOUBLE PRECISION ANORM, RCOND
  DOUBLE PRECISION WORK2(*)

F95 INTERFACE

  SUBROUTINE GBCON( NORM, [N], NSUB, NSUPER, A, [LDA], IPIVOT, ANORM, 
 *       RCOND, [WORK], [WORK2], [INFO])
  CHARACTER(LEN=1) :: NORM
  COMPLEX(8), DIMENSION(:) :: WORK
  COMPLEX(8), DIMENSION(:,:) :: A
  INTEGER :: N, NSUB, NSUPER, LDA, INFO
  INTEGER, DIMENSION(:) :: IPIVOT
  REAL(8) :: ANORM, RCOND
  REAL(8), DIMENSION(:) :: WORK2
  SUBROUTINE GBCON_64( NORM, [N], NSUB, NSUPER, A, [LDA], IPIVOT, 
 *       ANORM, RCOND, [WORK], [WORK2], [INFO])
  CHARACTER(LEN=1) :: NORM
  COMPLEX(8), DIMENSION(:) :: WORK
  COMPLEX(8), DIMENSION(:,:) :: A
  INTEGER(8) :: N, NSUB, NSUPER, LDA, INFO
  INTEGER(8), DIMENSION(:) :: IPIVOT
  REAL(8) :: ANORM, RCOND
  REAL(8), DIMENSION(:) :: WORK2

C INTERFACE

#include <sunperf.h>

void zgbcon(char norm, int n, int nsub, int nsuper, doublecomplex *a, int lda, int *ipivot, double anorm, double *rcond, int *info);

void zgbcon_64(char norm, long n, long nsub, long nsuper, doublecomplex *a, long lda, long *ipivot, double anorm, double *rcond, long *info);


PURPOSE

zgbcon estimates the reciprocal of the condition number of a complex general band matrix A, in either the 1-norm or the infinity-norm, using the LU factorization computed by CGBTRF.

An estimate is obtained for norm(inv(A)), and the reciprocal of the condition number is computed as

   RCOND = 1 / ( norm(A) * norm(inv(A)) ).


ARGUMENTS