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00013 #include "f2c.h"
00014 #include "blaswrap.h"
00015
00016
00017
00018 static integer c__1 = 1;
00019
00020 int ztbcon_(char *norm, char *uplo, char *diag, integer *n,
00021 integer *kd, doublecomplex *ab, integer *ldab, doublereal *rcond,
00022 doublecomplex *work, doublereal *rwork, integer *info)
00023 {
00024
00025 integer ab_dim1, ab_offset, i__1;
00026 doublereal d__1, d__2;
00027
00028
00029 double d_imag(doublecomplex *);
00030
00031
00032 integer ix, kase, kase1;
00033 doublereal scale;
00034 extern logical lsame_(char *, char *);
00035 integer isave[3];
00036 doublereal anorm;
00037 logical upper;
00038 doublereal xnorm;
00039 extern int zlacn2_(integer *, doublecomplex *,
00040 doublecomplex *, doublereal *, integer *, integer *);
00041 extern doublereal dlamch_(char *);
00042 extern int xerbla_(char *, integer *);
00043 doublereal ainvnm;
00044 extern integer izamax_(integer *, doublecomplex *, integer *);
00045 extern doublereal zlantb_(char *, char *, char *, integer *, integer *,
00046 doublecomplex *, integer *, doublereal *);
00047 logical onenrm;
00048 extern int zlatbs_(char *, char *, char *, char *,
00049 integer *, integer *, doublecomplex *, integer *, doublecomplex *,
00050 doublereal *, doublereal *, integer *), zdrscl_(integer *, doublereal *, doublecomplex *,
00051 integer *);
00052 char normin[1];
00053 doublereal smlnum;
00054 logical nounit;
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00150 ab_dim1 = *ldab;
00151 ab_offset = 1 + ab_dim1;
00152 ab -= ab_offset;
00153 --work;
00154 --rwork;
00155
00156
00157 *info = 0;
00158 upper = lsame_(uplo, "U");
00159 onenrm = *(unsigned char *)norm == '1' || lsame_(norm, "O");
00160 nounit = lsame_(diag, "N");
00161
00162 if (! onenrm && ! lsame_(norm, "I")) {
00163 *info = -1;
00164 } else if (! upper && ! lsame_(uplo, "L")) {
00165 *info = -2;
00166 } else if (! nounit && ! lsame_(diag, "U")) {
00167 *info = -3;
00168 } else if (*n < 0) {
00169 *info = -4;
00170 } else if (*kd < 0) {
00171 *info = -5;
00172 } else if (*ldab < *kd + 1) {
00173 *info = -7;
00174 }
00175 if (*info != 0) {
00176 i__1 = -(*info);
00177 xerbla_("ZTBCON", &i__1);
00178 return 0;
00179 }
00180
00181
00182
00183 if (*n == 0) {
00184 *rcond = 1.;
00185 return 0;
00186 }
00187
00188 *rcond = 0.;
00189 smlnum = dlamch_("Safe minimum") * (doublereal) max(*n,1);
00190
00191
00192
00193 anorm = zlantb_(norm, uplo, diag, n, kd, &ab[ab_offset], ldab, &rwork[1]);
00194
00195
00196
00197 if (anorm > 0.) {
00198
00199
00200
00201 ainvnm = 0.;
00202 *(unsigned char *)normin = 'N';
00203 if (onenrm) {
00204 kase1 = 1;
00205 } else {
00206 kase1 = 2;
00207 }
00208 kase = 0;
00209 L10:
00210 zlacn2_(n, &work[*n + 1], &work[1], &ainvnm, &kase, isave);
00211 if (kase != 0) {
00212 if (kase == kase1) {
00213
00214
00215
00216 zlatbs_(uplo, "No transpose", diag, normin, n, kd, &ab[
00217 ab_offset], ldab, &work[1], &scale, &rwork[1], info);
00218 } else {
00219
00220
00221
00222 zlatbs_(uplo, "Conjugate transpose", diag, normin, n, kd, &ab[
00223 ab_offset], ldab, &work[1], &scale, &rwork[1], info);
00224 }
00225 *(unsigned char *)normin = 'Y';
00226
00227
00228
00229 if (scale != 1.) {
00230 ix = izamax_(n, &work[1], &c__1);
00231 i__1 = ix;
00232 xnorm = (d__1 = work[i__1].r, abs(d__1)) + (d__2 = d_imag(&
00233 work[ix]), abs(d__2));
00234 if (scale < xnorm * smlnum || scale == 0.) {
00235 goto L20;
00236 }
00237 zdrscl_(n, &scale, &work[1], &c__1);
00238 }
00239 goto L10;
00240 }
00241
00242
00243
00244 if (ainvnm != 0.) {
00245 *rcond = 1. / anorm / ainvnm;
00246 }
00247 }
00248
00249 L20:
00250 return 0;
00251
00252
00253
00254 }