LAPACK  3.7.0
LAPACK: Linear Algebra PACKage
subroutine dsysv_aa ( character  UPLO,
integer  N,
integer  NRHS,
double precision, dimension( lda, * )  A,
integer  LDA,
integer, dimension( * )  IPIV,
double precision, dimension( ldb, * )  B,
integer  LDB,
double precision, dimension( * )  WORK,
integer  LWORK,
integer  INFO 
)

DSYSV_AA computes the solution to system of linear equations A * X = B for SY matrices

Download DSYSV_AA + dependencies [TGZ] [ZIP] [TXT]

Purpose:
 DSYSV computes the solution to a real system of linear equations
    A * X = B,
 where A is an N-by-N symmetric matrix and X and B are N-by-NRHS
 matrices.

 Aasen's algorithm is used to factor A as
    A = U * T * U**T,  if UPLO = 'U', or
    A = L * T * L**T,  if UPLO = 'L',
 where U (or L) is a product of permutation and unit upper (lower)
 triangular matrices, and T is symmetric tridiagonal. The factored
 form of A is then used to solve the system of equations A * X = B.
Parameters
[in]UPLO
          UPLO is CHARACTER*1
          = 'U':  Upper triangle of A is stored;
          = 'L':  Lower triangle of A is stored.
[in]N
          N is INTEGER
          The number of linear equations, i.e., the order of the
          matrix A.  N >= 0.
[in]NRHS
          NRHS is INTEGER
          The number of right hand sides, i.e., the number of columns
          of the matrix B.  NRHS >= 0.
[in,out]A
          A is DOUBLE PRECISION array, dimension (LDA,N)
          On entry, the symmetric matrix A.  If UPLO = 'U', the leading
          N-by-N upper triangular part of A contains the upper
          triangular part of the matrix A, and the strictly lower
          triangular part of A is not referenced.  If UPLO = 'L', the
          leading N-by-N lower triangular part of A contains the lower
          triangular part of the matrix A, and the strictly upper
          triangular part of A is not referenced.

          On exit, if INFO = 0, the tridiagonal matrix T and the
          multipliers used to obtain the factor U or L from the
          factorization A = U*T*U**T or A = L*T*L**T as computed by
          DSYTRF.
[in]LDA
          LDA is INTEGER
          The leading dimension of the array A.  LDA >= max(1,N).
[out]IPIV
          IPIV is INTEGER array, dimension (N)
          On exit, it contains the details of the interchanges, i.e.,
          the row and column k of A were interchanged with the
          row and column IPIV(k).
[in,out]B
          B is DOUBLE PRECISION array, dimension (LDB,NRHS)
          On entry, the N-by-NRHS right hand side matrix B.
          On exit, if INFO = 0, the N-by-NRHS solution matrix X.
[in]LDB
          LDB is INTEGER
          The leading dimension of the array B.  LDB >= max(1,N).
[out]WORK
          WORK is DOUBLE PRECISION array, dimension (MAX(1,LWORK))
          On exit, if INFO = 0, WORK(1) returns the optimal LWORK.
[in]LWORK
          LWORK is INTEGER
          The length of WORK.  LWORK >= MAX(1,2*N,3*N-2), and for
          the best performance, LWORK >= MAX(1,N*NB), where NB is
          the optimal blocksize for DSYTRF_AA.

          If LWORK = -1, then a workspace query is assumed; the routine
          only calculates the optimal size of the WORK array, returns
          this value as the first entry of the WORK array, and no error
          message related to LWORK is issued by XERBLA.
[out]INFO
          INFO is INTEGER
          = 0: successful exit
          < 0: if INFO = -i, the i-th argument had an illegal value
          > 0: if INFO = i, D(i,i) is exactly zero.  The factorization
               has been completed, but the block diagonal matrix D is
               exactly singular, so the solution could not be computed.
Author
Univ. of Tennessee
Univ. of California Berkeley
Univ. of Colorado Denver
NAG Ltd.
Date
December 2016

Definition at line 166 of file dsysv_aa.f.

166 *
167 * -- LAPACK driver routine (version 3.7.0) --
168 * -- LAPACK is a software package provided by Univ. of Tennessee, --
169 * -- Univ. of California Berkeley, Univ. of Colorado Denver and NAG Ltd..--
170 * December 2016
171 *
172 * .. Scalar Arguments ..
173  CHARACTER uplo
174  INTEGER info, lda, ldb, lwork, n, nrhs
175 * ..
176 * .. Array Arguments ..
177  INTEGER ipiv( * )
178  DOUBLE PRECISION a( lda, * ), b( ldb, * ), work( * )
179 * ..
180 *
181 * =====================================================================
182 *
183 * .. Local Scalars ..
184  LOGICAL lquery
185  INTEGER lwkopt, lwkopt_sytrf, lwkopt_sytrs
186 * ..
187 * .. External Functions ..
188  LOGICAL lsame
189  INTEGER ilaenv
190  EXTERNAL ilaenv, lsame
191 * ..
192 * .. External Subroutines ..
193  EXTERNAL xerbla, dsytrf, dsytrs, dsytrs2
194 * ..
195 * .. Intrinsic Functions ..
196  INTRINSIC max
197 * ..
198 * .. Executable Statements ..
199 *
200 * Test the input parameters.
201 *
202  info = 0
203  lquery = ( lwork.EQ.-1 )
204  IF( .NOT.lsame( uplo, 'U' ) .AND. .NOT.lsame( uplo, 'L' ) ) THEN
205  info = -1
206  ELSE IF( n.LT.0 ) THEN
207  info = -2
208  ELSE IF( nrhs.LT.0 ) THEN
209  info = -3
210  ELSE IF( lda.LT.max( 1, n ) ) THEN
211  info = -5
212  ELSE IF( ldb.LT.max( 1, n ) ) THEN
213  info = -8
214  ELSE IF( lwork.LT.max(2*n, 3*n-2) .AND. .NOT.lquery ) THEN
215  info = -10
216  END IF
217 *
218  IF( info.EQ.0 ) THEN
219  CALL dsytrf_aa( uplo, n, a, lda, ipiv, work, -1, info )
220  lwkopt_sytrf = int( work(1) )
221  CALL dsytrs_aa( uplo, n, nrhs, a, lda, ipiv, b, ldb, work,
222  $ -1, info )
223  lwkopt_sytrs = int( work(1) )
224  lwkopt = max( lwkopt_sytrf, lwkopt_sytrs )
225  work( 1 ) = lwkopt
226  IF( lwork.LT.lwkopt .AND. .NOT.lquery ) THEN
227  info = -10
228  END IF
229  END IF
230 *
231  IF( info.NE.0 ) THEN
232  CALL xerbla( 'DSYSV_AA ', -info )
233  RETURN
234  ELSE IF( lquery ) THEN
235  RETURN
236  END IF
237 *
238 * Compute the factorization A = U*T*U**T or A = L*T*L**T.
239 *
240  CALL dsytrf_aa( uplo, n, a, lda, ipiv, work, lwork, info )
241  IF( info.EQ.0 ) THEN
242 *
243 * Solve the system A*X = B, overwriting B with X.
244 *
245  CALL dsytrs_aa( uplo, n, nrhs, a, lda, ipiv, b, ldb, work,
246  $ lwork, info )
247 *
248  END IF
249 *
250  work( 1 ) = lwkopt
251 *
252  RETURN
253 *
254 * End of DSYSV_AA
255 *
integer function ilaenv(ISPEC, NAME, OPTS, N1, N2, N3, N4)
ILAENV
Definition: tstiee.f:83
subroutine xerbla(SRNAME, INFO)
XERBLA
Definition: xerbla.f:62
subroutine dsytrf_aa(UPLO, N, A, LDA, IPIV, WORK, LWORK, INFO)
DSYTRF_AA
Definition: dsytrf_aa.f:138
subroutine dsytrs(UPLO, N, NRHS, A, LDA, IPIV, B, LDB, INFO)
DSYTRS
Definition: dsytrs.f:122
logical function lsame(CA, CB)
LSAME
Definition: lsame.f:55
subroutine dsytrf(UPLO, N, A, LDA, IPIV, WORK, LWORK, INFO)
DSYTRF
Definition: dsytrf.f:184
subroutine dsytrs2(UPLO, N, NRHS, A, LDA, IPIV, B, LDB, WORK, INFO)
DSYTRS2
Definition: dsytrs2.f:134
subroutine dsytrs_aa(UPLO, N, NRHS, A, LDA, IPIV, B, LDB, WORK, LWORK, INFO)
DSYTRS_AA
Definition: dsytrs_aa.f:131

Here is the call graph for this function:

Here is the caller graph for this function: