227 SUBROUTINE dsygvd( ITYPE, JOBZ, UPLO, N, A, LDA, B, LDB, W, WORK,
228 $ LWORK, IWORK, LIWORK, INFO )
237 INTEGER INFO, ITYPE, LDA, LDB, LIWORK, LWORK, N
241 DOUBLE PRECISION A( lda, * ), B( ldb, * ), W( * ), WORK( * )
248 parameter( one = 1.0d+0 )
251 LOGICAL LQUERY, UPPER, WANTZ
253 INTEGER LIOPT, LIWMIN, LOPT, LWMIN
269 wantz = lsame( jobz,
'V' )
270 upper = lsame( uplo,
'U' )
271 lquery = ( lwork.EQ.-1 .OR. liwork.EQ.-1 )
277 ELSE IF( wantz )
THEN 279 lwmin = 1 + 6*n + 2*n**2
286 IF( itype.LT.1 .OR. itype.GT.3 )
THEN 288 ELSE IF( .NOT.( wantz .OR. lsame( jobz,
'N' ) ) )
THEN 290 ELSE IF( .NOT.( upper .OR. lsame( uplo,
'L' ) ) )
THEN 292 ELSE IF( n.LT.0 )
THEN 294 ELSE IF( lda.LT.max( 1, n ) )
THEN 296 ELSE IF( ldb.LT.max( 1, n ) )
THEN 304 IF( lwork.LT.lwmin .AND. .NOT.lquery )
THEN 306 ELSE IF( liwork.LT.liwmin .AND. .NOT.lquery )
THEN 312 CALL xerbla(
'DSYGVD', -info )
314 ELSE IF( lquery )
THEN 325 CALL dpotrf( uplo, n, b, ldb, info )
333 CALL dsygst( itype, uplo, n, a, lda, b, ldb, info )
334 CALL dsyevd( jobz, uplo, n, a, lda, w, work, lwork, iwork, liwork,
336 lopt = max( dble( lopt ), dble( work( 1 ) ) )
337 liopt = max( dble( liopt ), dble( iwork( 1 ) ) )
339 IF( wantz .AND. info.EQ.0 )
THEN 343 IF( itype.EQ.1 .OR. itype.EQ.2 )
THEN 354 CALL dtrsm(
'Left', uplo, trans,
'Non-unit', n, n, one,
357 ELSE IF( itype.EQ.3 )
THEN 368 CALL dtrmm(
'Left', uplo, trans,
'Non-unit', n, n, one,
subroutine dtrsm(SIDE, UPLO, TRANSA, DIAG, M, N, ALPHA, A, LDA, B, LDB)
DTRSM
subroutine dpotrf(UPLO, N, A, LDA, INFO)
DPOTRF
subroutine dtrmm(SIDE, UPLO, TRANSA, DIAG, M, N, ALPHA, A, LDA, B, LDB)
DTRMM
subroutine dsygvd(ITYPE, JOBZ, UPLO, N, A, LDA, B, LDB, W, WORK, LWORK, IWORK, LIWORK, INFO)
DSYGVD
subroutine xerbla(SRNAME, INFO)
XERBLA
subroutine dsyevd(JOBZ, UPLO, N, A, LDA, W, WORK, LWORK, IWORK, LIWORK, INFO)
DSYEVD computes the eigenvalues and, optionally, the left and/or right eigenvectors for SY matrices ...
subroutine dsygst(ITYPE, UPLO, N, A, LDA, B, LDB, INFO)
DSYGST