00001
00002
00003
00004
00005
00006
00007
00008
00009
00010
00011
00012
00013 #include "f2c.h"
00014 #include "blaswrap.h"
00015
00016
00017
00018 static complex c_b1 = {1.f,0.f};
00019 static integer c__1 = 1;
00020
00021 int cgerfs_(char *trans, integer *n, integer *nrhs, complex *
00022 a, integer *lda, complex *af, integer *ldaf, integer *ipiv, complex *
00023 b, integer *ldb, complex *x, integer *ldx, real *ferr, real *berr,
00024 complex *work, real *rwork, integer *info)
00025 {
00026
00027 integer a_dim1, a_offset, af_dim1, af_offset, b_dim1, b_offset, x_dim1,
00028 x_offset, i__1, i__2, i__3, i__4, i__5;
00029 real r__1, r__2, r__3, r__4;
00030 complex q__1;
00031
00032
00033 double r_imag(complex *);
00034
00035
00036 integer i__, j, k;
00037 real s, xk;
00038 integer nz;
00039 real eps;
00040 integer kase;
00041 real safe1, safe2;
00042 extern logical lsame_(char *, char *);
00043 extern int cgemv_(char *, integer *, integer *, complex *
00044 , complex *, integer *, complex *, integer *, complex *, complex *
00045 , integer *);
00046 integer isave[3];
00047 extern int ccopy_(integer *, complex *, integer *,
00048 complex *, integer *), caxpy_(integer *, complex *, complex *,
00049 integer *, complex *, integer *);
00050 integer count;
00051 extern int clacn2_(integer *, complex *, complex *, real
00052 *, integer *, integer *);
00053 extern doublereal slamch_(char *);
00054 real safmin;
00055 extern int xerbla_(char *, integer *), cgetrs_(
00056 char *, integer *, integer *, complex *, integer *, integer *,
00057 complex *, integer *, integer *);
00058 logical notran;
00059 char transn[1], transt[1];
00060 real lstres;
00061
00062
00063
00064
00065
00066
00067
00068
00069
00070
00071
00072
00073
00074
00075
00076
00077
00078
00079
00080
00081
00082
00083
00084
00085
00086
00087
00088
00089
00090
00091
00092
00093
00094
00095
00096
00097
00098
00099
00100
00101
00102
00103
00104
00105
00106
00107
00108
00109
00110
00111
00112
00113
00114
00115
00116
00117
00118
00119
00120
00121
00122
00123
00124
00125
00126
00127
00128
00129
00130
00131
00132
00133
00134
00135
00136
00137
00138
00139
00140
00141
00142
00143
00144
00145
00146
00147
00148
00149
00150
00151
00152
00153
00154
00155
00156
00157
00158
00159
00160
00161
00162
00163
00164
00165
00166
00167
00168
00169
00170
00171
00172
00173
00174
00175
00176
00177
00178 a_dim1 = *lda;
00179 a_offset = 1 + a_dim1;
00180 a -= a_offset;
00181 af_dim1 = *ldaf;
00182 af_offset = 1 + af_dim1;
00183 af -= af_offset;
00184 --ipiv;
00185 b_dim1 = *ldb;
00186 b_offset = 1 + b_dim1;
00187 b -= b_offset;
00188 x_dim1 = *ldx;
00189 x_offset = 1 + x_dim1;
00190 x -= x_offset;
00191 --ferr;
00192 --berr;
00193 --work;
00194 --rwork;
00195
00196
00197 *info = 0;
00198 notran = lsame_(trans, "N");
00199 if (! notran && ! lsame_(trans, "T") && ! lsame_(
00200 trans, "C")) {
00201 *info = -1;
00202 } else if (*n < 0) {
00203 *info = -2;
00204 } else if (*nrhs < 0) {
00205 *info = -3;
00206 } else if (*lda < max(1,*n)) {
00207 *info = -5;
00208 } else if (*ldaf < max(1,*n)) {
00209 *info = -7;
00210 } else if (*ldb < max(1,*n)) {
00211 *info = -10;
00212 } else if (*ldx < max(1,*n)) {
00213 *info = -12;
00214 }
00215 if (*info != 0) {
00216 i__1 = -(*info);
00217 xerbla_("CGERFS", &i__1);
00218 return 0;
00219 }
00220
00221
00222
00223 if (*n == 0 || *nrhs == 0) {
00224 i__1 = *nrhs;
00225 for (j = 1; j <= i__1; ++j) {
00226 ferr[j] = 0.f;
00227 berr[j] = 0.f;
00228
00229 }
00230 return 0;
00231 }
00232
00233 if (notran) {
00234 *(unsigned char *)transn = 'N';
00235 *(unsigned char *)transt = 'C';
00236 } else {
00237 *(unsigned char *)transn = 'C';
00238 *(unsigned char *)transt = 'N';
00239 }
00240
00241
00242
00243 nz = *n + 1;
00244 eps = slamch_("Epsilon");
00245 safmin = slamch_("Safe minimum");
00246 safe1 = nz * safmin;
00247 safe2 = safe1 / eps;
00248
00249
00250
00251 i__1 = *nrhs;
00252 for (j = 1; j <= i__1; ++j) {
00253
00254 count = 1;
00255 lstres = 3.f;
00256 L20:
00257
00258
00259
00260
00261
00262
00263 ccopy_(n, &b[j * b_dim1 + 1], &c__1, &work[1], &c__1);
00264 q__1.r = -1.f, q__1.i = -0.f;
00265 cgemv_(trans, n, n, &q__1, &a[a_offset], lda, &x[j * x_dim1 + 1], &
00266 c__1, &c_b1, &work[1], &c__1);
00267
00268
00269
00270
00271
00272
00273
00274
00275
00276
00277 i__2 = *n;
00278 for (i__ = 1; i__ <= i__2; ++i__) {
00279 i__3 = i__ + j * b_dim1;
00280 rwork[i__] = (r__1 = b[i__3].r, dabs(r__1)) + (r__2 = r_imag(&b[
00281 i__ + j * b_dim1]), dabs(r__2));
00282
00283 }
00284
00285
00286
00287 if (notran) {
00288 i__2 = *n;
00289 for (k = 1; k <= i__2; ++k) {
00290 i__3 = k + j * x_dim1;
00291 xk = (r__1 = x[i__3].r, dabs(r__1)) + (r__2 = r_imag(&x[k + j
00292 * x_dim1]), dabs(r__2));
00293 i__3 = *n;
00294 for (i__ = 1; i__ <= i__3; ++i__) {
00295 i__4 = i__ + k * a_dim1;
00296 rwork[i__] += ((r__1 = a[i__4].r, dabs(r__1)) + (r__2 =
00297 r_imag(&a[i__ + k * a_dim1]), dabs(r__2))) * xk;
00298
00299 }
00300
00301 }
00302 } else {
00303 i__2 = *n;
00304 for (k = 1; k <= i__2; ++k) {
00305 s = 0.f;
00306 i__3 = *n;
00307 for (i__ = 1; i__ <= i__3; ++i__) {
00308 i__4 = i__ + k * a_dim1;
00309 i__5 = i__ + j * x_dim1;
00310 s += ((r__1 = a[i__4].r, dabs(r__1)) + (r__2 = r_imag(&a[
00311 i__ + k * a_dim1]), dabs(r__2))) * ((r__3 = x[
00312 i__5].r, dabs(r__3)) + (r__4 = r_imag(&x[i__ + j *
00313 x_dim1]), dabs(r__4)));
00314
00315 }
00316 rwork[k] += s;
00317
00318 }
00319 }
00320 s = 0.f;
00321 i__2 = *n;
00322 for (i__ = 1; i__ <= i__2; ++i__) {
00323 if (rwork[i__] > safe2) {
00324
00325 i__3 = i__;
00326 r__3 = s, r__4 = ((r__1 = work[i__3].r, dabs(r__1)) + (r__2 =
00327 r_imag(&work[i__]), dabs(r__2))) / rwork[i__];
00328 s = dmax(r__3,r__4);
00329 } else {
00330
00331 i__3 = i__;
00332 r__3 = s, r__4 = ((r__1 = work[i__3].r, dabs(r__1)) + (r__2 =
00333 r_imag(&work[i__]), dabs(r__2)) + safe1) / (rwork[i__]
00334 + safe1);
00335 s = dmax(r__3,r__4);
00336 }
00337
00338 }
00339 berr[j] = s;
00340
00341
00342
00343
00344
00345
00346
00347 if (berr[j] > eps && berr[j] * 2.f <= lstres && count <= 5) {
00348
00349
00350
00351 cgetrs_(trans, n, &c__1, &af[af_offset], ldaf, &ipiv[1], &work[1],
00352 n, info);
00353 caxpy_(n, &c_b1, &work[1], &c__1, &x[j * x_dim1 + 1], &c__1);
00354 lstres = berr[j];
00355 ++count;
00356 goto L20;
00357 }
00358
00359
00360
00361
00362
00363
00364
00365
00366
00367
00368
00369
00370
00371
00372
00373
00374
00375
00376
00377
00378
00379
00380
00381 i__2 = *n;
00382 for (i__ = 1; i__ <= i__2; ++i__) {
00383 if (rwork[i__] > safe2) {
00384 i__3 = i__;
00385 rwork[i__] = (r__1 = work[i__3].r, dabs(r__1)) + (r__2 =
00386 r_imag(&work[i__]), dabs(r__2)) + nz * eps * rwork[
00387 i__];
00388 } else {
00389 i__3 = i__;
00390 rwork[i__] = (r__1 = work[i__3].r, dabs(r__1)) + (r__2 =
00391 r_imag(&work[i__]), dabs(r__2)) + nz * eps * rwork[
00392 i__] + safe1;
00393 }
00394
00395 }
00396
00397 kase = 0;
00398 L100:
00399 clacn2_(n, &work[*n + 1], &work[1], &ferr[j], &kase, isave);
00400 if (kase != 0) {
00401 if (kase == 1) {
00402
00403
00404
00405 cgetrs_(transt, n, &c__1, &af[af_offset], ldaf, &ipiv[1], &
00406 work[1], n, info);
00407 i__2 = *n;
00408 for (i__ = 1; i__ <= i__2; ++i__) {
00409 i__3 = i__;
00410 i__4 = i__;
00411 i__5 = i__;
00412 q__1.r = rwork[i__4] * work[i__5].r, q__1.i = rwork[i__4]
00413 * work[i__5].i;
00414 work[i__3].r = q__1.r, work[i__3].i = q__1.i;
00415
00416 }
00417 } else {
00418
00419
00420
00421 i__2 = *n;
00422 for (i__ = 1; i__ <= i__2; ++i__) {
00423 i__3 = i__;
00424 i__4 = i__;
00425 i__5 = i__;
00426 q__1.r = rwork[i__4] * work[i__5].r, q__1.i = rwork[i__4]
00427 * work[i__5].i;
00428 work[i__3].r = q__1.r, work[i__3].i = q__1.i;
00429
00430 }
00431 cgetrs_(transn, n, &c__1, &af[af_offset], ldaf, &ipiv[1], &
00432 work[1], n, info);
00433 }
00434 goto L100;
00435 }
00436
00437
00438
00439 lstres = 0.f;
00440 i__2 = *n;
00441 for (i__ = 1; i__ <= i__2; ++i__) {
00442
00443 i__3 = i__ + j * x_dim1;
00444 r__3 = lstres, r__4 = (r__1 = x[i__3].r, dabs(r__1)) + (r__2 =
00445 r_imag(&x[i__ + j * x_dim1]), dabs(r__2));
00446 lstres = dmax(r__3,r__4);
00447
00448 }
00449 if (lstres != 0.f) {
00450 ferr[j] /= lstres;
00451 }
00452
00453
00454 }
00455
00456 return 0;
00457
00458
00459
00460 }