130 SUBROUTINE ctpcon( NORM, UPLO, DIAG, N, AP, RCOND, WORK, RWORK,
139 CHARACTER diag, norm, uplo
145 COMPLEX ap( * ), work( * )
152 parameter( one = 1.0e+0, zero = 0.0e+0 )
155 LOGICAL nounit, onenrm, upper
157 INTEGER ix, kase, kase1
158 REAL ainvnm, anorm, scale, smlnum, xnorm
174 INTRINSIC abs, aimag, max, real
180 cabs1( zdum ) = abs(
REAL( ZDUM ) ) + abs( aimag( zdum ) )
187 upper =
lsame( uplo,
'U' )
188 onenrm = norm.EQ.
'1' .OR.
lsame( norm,
'O' )
189 nounit =
lsame( diag,
'N' )
191 IF( .NOT.onenrm .AND. .NOT.
lsame( norm,
'I' ) )
THEN
193 ELSE IF( .NOT.upper .AND. .NOT.
lsame( uplo,
'L' ) )
THEN
195 ELSE IF( .NOT.nounit .AND. .NOT.
lsame( diag,
'U' ) )
THEN
197 ELSE IF( n.LT.0 )
THEN
201 CALL
xerbla(
'CTPCON', -info )
213 smlnum =
slamch(
'Safe minimum' )*
REAL( MAX( 1, N ) )
217 anorm =
clantp( norm, uplo, diag, n, ap, rwork )
221 IF( anorm.GT.zero )
THEN
234 CALL
clacn2( n, work( n+1 ), work, ainvnm, kase, isave )
236 IF( kase.EQ.kase1 )
THEN
240 CALL
clatps( uplo,
'No transpose', diag, normin, n, ap,
241 $ work, scale, rwork, info )
246 CALL
clatps( uplo,
'Conjugate transpose', diag, normin,
247 $ n, ap, work, scale, rwork, info )
253 IF( scale.NE.one )
THEN
255 xnorm = cabs1( work( ix ) )
256 IF( scale.LT.xnorm*smlnum .OR. scale.EQ.zero )
258 CALL
csrscl( n, scale, work, 1 )
266 $ rcond = ( one / anorm ) / ainvnm