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00013 #include "f2c.h"
00014 #include "blaswrap.h"
00015
00016
00017
00018 static doublecomplex c_b1 = {0.,0.};
00019
00020 int zsyt03_(char *uplo, integer *n, doublecomplex *a,
00021 integer *lda, doublecomplex *ainv, integer *ldainv, doublecomplex *
00022 work, integer *ldwork, doublereal *rwork, doublereal *rcond,
00023 doublereal *resid)
00024 {
00025
00026 integer a_dim1, a_offset, ainv_dim1, ainv_offset, work_dim1, work_offset,
00027 i__1, i__2, i__3, i__4;
00028 doublecomplex z__1;
00029
00030
00031 integer i__, j;
00032 doublereal eps;
00033 extern logical lsame_(char *, char *);
00034 doublereal anorm;
00035 extern int zsymm_(char *, char *, integer *, integer *,
00036 doublecomplex *, doublecomplex *, integer *, doublecomplex *,
00037 integer *, doublecomplex *, doublecomplex *, integer *);
00038 extern doublereal dlamch_(char *), zlange_(char *, integer *,
00039 integer *, doublecomplex *, integer *, doublereal *);
00040 doublereal ainvnm;
00041 extern doublereal zlansy_(char *, char *, integer *, doublecomplex *,
00042 integer *, doublereal *);
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00123 a_dim1 = *lda;
00124 a_offset = 1 + a_dim1;
00125 a -= a_offset;
00126 ainv_dim1 = *ldainv;
00127 ainv_offset = 1 + ainv_dim1;
00128 ainv -= ainv_offset;
00129 work_dim1 = *ldwork;
00130 work_offset = 1 + work_dim1;
00131 work -= work_offset;
00132 --rwork;
00133
00134
00135 if (*n <= 0) {
00136 *rcond = 1.;
00137 *resid = 0.;
00138 return 0;
00139 }
00140
00141
00142
00143 eps = dlamch_("Epsilon");
00144 anorm = zlansy_("1", uplo, n, &a[a_offset], lda, &rwork[1]);
00145 ainvnm = zlansy_("1", uplo, n, &ainv[ainv_offset], ldainv, &rwork[1]);
00146 if (anorm <= 0. || ainvnm <= 0.) {
00147 *rcond = 0.;
00148 *resid = 1. / eps;
00149 return 0;
00150 }
00151 *rcond = 1. / anorm / ainvnm;
00152
00153
00154
00155
00156 if (lsame_(uplo, "U")) {
00157 i__1 = *n;
00158 for (j = 1; j <= i__1; ++j) {
00159 i__2 = j - 1;
00160 for (i__ = 1; i__ <= i__2; ++i__) {
00161 i__3 = j + i__ * ainv_dim1;
00162 i__4 = i__ + j * ainv_dim1;
00163 ainv[i__3].r = ainv[i__4].r, ainv[i__3].i = ainv[i__4].i;
00164
00165 }
00166
00167 }
00168 } else {
00169 i__1 = *n;
00170 for (j = 1; j <= i__1; ++j) {
00171 i__2 = *n;
00172 for (i__ = j + 1; i__ <= i__2; ++i__) {
00173 i__3 = j + i__ * ainv_dim1;
00174 i__4 = i__ + j * ainv_dim1;
00175 ainv[i__3].r = ainv[i__4].r, ainv[i__3].i = ainv[i__4].i;
00176
00177 }
00178
00179 }
00180 }
00181 z__1.r = -1., z__1.i = -0.;
00182 zsymm_("Left", uplo, n, n, &z__1, &a[a_offset], lda, &ainv[ainv_offset],
00183 ldainv, &c_b1, &work[work_offset], ldwork);
00184
00185
00186
00187 i__1 = *n;
00188 for (i__ = 1; i__ <= i__1; ++i__) {
00189 i__2 = i__ + i__ * work_dim1;
00190 i__3 = i__ + i__ * work_dim1;
00191 z__1.r = work[i__3].r + 1., z__1.i = work[i__3].i + 0.;
00192 work[i__2].r = z__1.r, work[i__2].i = z__1.i;
00193
00194 }
00195
00196
00197
00198 *resid = zlange_("1", n, n, &work[work_offset], ldwork, &rwork[1]);
00199
00200 *resid = *resid * *rcond / eps / (doublereal) (*n);
00201
00202 return 0;
00203
00204
00205
00206 }