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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 csprfs_(char *uplo, integer *n, integer *nrhs, complex *
00022 ap, complex *afp, integer *ipiv, complex *b, integer *ldb, complex *x,
00023 integer *ldx, real *ferr, real *berr, complex *work, real *rwork,
00024 integer *info)
00025 {
00026
00027 integer b_dim1, b_offset, x_dim1, x_offset, i__1, i__2, i__3, i__4, i__5;
00028 real r__1, r__2, r__3, r__4;
00029 complex q__1;
00030
00031
00032 double r_imag(complex *);
00033
00034
00035 integer i__, j, k;
00036 real s;
00037 integer ik, kk;
00038 real xk;
00039 integer nz;
00040 real eps;
00041 integer kase;
00042 real safe1, safe2;
00043 extern logical lsame_(char *, char *);
00044 integer isave[3];
00045 extern int ccopy_(integer *, complex *, integer *,
00046 complex *, integer *), caxpy_(integer *, complex *, complex *,
00047 integer *, complex *, integer *);
00048 integer count;
00049 extern int cspmv_(char *, integer *, complex *, complex *
00050 , complex *, integer *, complex *, complex *, integer *);
00051 logical upper;
00052 extern int clacn2_(integer *, complex *, complex *, real
00053 *, integer *, integer *);
00054 extern doublereal slamch_(char *);
00055 real safmin;
00056 extern int xerbla_(char *, integer *);
00057 real lstres;
00058 extern int csptrs_(char *, integer *, integer *, complex
00059 *, integer *, complex *, integer *, integer *);
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00176
00177 --ap;
00178 --afp;
00179 --ipiv;
00180 b_dim1 = *ldb;
00181 b_offset = 1 + b_dim1;
00182 b -= b_offset;
00183 x_dim1 = *ldx;
00184 x_offset = 1 + x_dim1;
00185 x -= x_offset;
00186 --ferr;
00187 --berr;
00188 --work;
00189 --rwork;
00190
00191
00192 *info = 0;
00193 upper = lsame_(uplo, "U");
00194 if (! upper && ! lsame_(uplo, "L")) {
00195 *info = -1;
00196 } else if (*n < 0) {
00197 *info = -2;
00198 } else if (*nrhs < 0) {
00199 *info = -3;
00200 } else if (*ldb < max(1,*n)) {
00201 *info = -8;
00202 } else if (*ldx < max(1,*n)) {
00203 *info = -10;
00204 }
00205 if (*info != 0) {
00206 i__1 = -(*info);
00207 xerbla_("CSPRFS", &i__1);
00208 return 0;
00209 }
00210
00211
00212
00213 if (*n == 0 || *nrhs == 0) {
00214 i__1 = *nrhs;
00215 for (j = 1; j <= i__1; ++j) {
00216 ferr[j] = 0.f;
00217 berr[j] = 0.f;
00218
00219 }
00220 return 0;
00221 }
00222
00223
00224
00225 nz = *n + 1;
00226 eps = slamch_("Epsilon");
00227 safmin = slamch_("Safe minimum");
00228 safe1 = nz * safmin;
00229 safe2 = safe1 / eps;
00230
00231
00232
00233 i__1 = *nrhs;
00234 for (j = 1; j <= i__1; ++j) {
00235
00236 count = 1;
00237 lstres = 3.f;
00238 L20:
00239
00240
00241
00242
00243
00244 ccopy_(n, &b[j * b_dim1 + 1], &c__1, &work[1], &c__1);
00245 q__1.r = -1.f, q__1.i = -0.f;
00246 cspmv_(uplo, n, &q__1, &ap[1], &x[j * x_dim1 + 1], &c__1, &c_b1, &
00247 work[1], &c__1);
00248
00249
00250
00251
00252
00253
00254
00255
00256
00257
00258 i__2 = *n;
00259 for (i__ = 1; i__ <= i__2; ++i__) {
00260 i__3 = i__ + j * b_dim1;
00261 rwork[i__] = (r__1 = b[i__3].r, dabs(r__1)) + (r__2 = r_imag(&b[
00262 i__ + j * b_dim1]), dabs(r__2));
00263
00264 }
00265
00266
00267
00268 kk = 1;
00269 if (upper) {
00270 i__2 = *n;
00271 for (k = 1; k <= i__2; ++k) {
00272 s = 0.f;
00273 i__3 = k + j * x_dim1;
00274 xk = (r__1 = x[i__3].r, dabs(r__1)) + (r__2 = r_imag(&x[k + j
00275 * x_dim1]), dabs(r__2));
00276 ik = kk;
00277 i__3 = k - 1;
00278 for (i__ = 1; i__ <= i__3; ++i__) {
00279 i__4 = ik;
00280 rwork[i__] += ((r__1 = ap[i__4].r, dabs(r__1)) + (r__2 =
00281 r_imag(&ap[ik]), dabs(r__2))) * xk;
00282 i__4 = ik;
00283 i__5 = i__ + j * x_dim1;
00284 s += ((r__1 = ap[i__4].r, dabs(r__1)) + (r__2 = r_imag(&
00285 ap[ik]), dabs(r__2))) * ((r__3 = x[i__5].r, dabs(
00286 r__3)) + (r__4 = r_imag(&x[i__ + j * x_dim1]),
00287 dabs(r__4)));
00288 ++ik;
00289
00290 }
00291 i__3 = kk + k - 1;
00292 rwork[k] = rwork[k] + ((r__1 = ap[i__3].r, dabs(r__1)) + (
00293 r__2 = r_imag(&ap[kk + k - 1]), dabs(r__2))) * xk + s;
00294 kk += k;
00295
00296 }
00297 } else {
00298 i__2 = *n;
00299 for (k = 1; k <= i__2; ++k) {
00300 s = 0.f;
00301 i__3 = k + j * x_dim1;
00302 xk = (r__1 = x[i__3].r, dabs(r__1)) + (r__2 = r_imag(&x[k + j
00303 * x_dim1]), dabs(r__2));
00304 i__3 = kk;
00305 rwork[k] += ((r__1 = ap[i__3].r, dabs(r__1)) + (r__2 = r_imag(
00306 &ap[kk]), dabs(r__2))) * xk;
00307 ik = kk + 1;
00308 i__3 = *n;
00309 for (i__ = k + 1; i__ <= i__3; ++i__) {
00310 i__4 = ik;
00311 rwork[i__] += ((r__1 = ap[i__4].r, dabs(r__1)) + (r__2 =
00312 r_imag(&ap[ik]), dabs(r__2))) * xk;
00313 i__4 = ik;
00314 i__5 = i__ + j * x_dim1;
00315 s += ((r__1 = ap[i__4].r, dabs(r__1)) + (r__2 = r_imag(&
00316 ap[ik]), dabs(r__2))) * ((r__3 = x[i__5].r, dabs(
00317 r__3)) + (r__4 = r_imag(&x[i__ + j * x_dim1]),
00318 dabs(r__4)));
00319 ++ik;
00320
00321 }
00322 rwork[k] += s;
00323 kk += *n - k + 1;
00324
00325 }
00326 }
00327 s = 0.f;
00328 i__2 = *n;
00329 for (i__ = 1; i__ <= i__2; ++i__) {
00330 if (rwork[i__] > safe2) {
00331
00332 i__3 = i__;
00333 r__3 = s, r__4 = ((r__1 = work[i__3].r, dabs(r__1)) + (r__2 =
00334 r_imag(&work[i__]), dabs(r__2))) / rwork[i__];
00335 s = dmax(r__3,r__4);
00336 } else {
00337
00338 i__3 = i__;
00339 r__3 = s, r__4 = ((r__1 = work[i__3].r, dabs(r__1)) + (r__2 =
00340 r_imag(&work[i__]), dabs(r__2)) + safe1) / (rwork[i__]
00341 + safe1);
00342 s = dmax(r__3,r__4);
00343 }
00344
00345 }
00346 berr[j] = s;
00347
00348
00349
00350
00351
00352
00353
00354 if (berr[j] > eps && berr[j] * 2.f <= lstres && count <= 5) {
00355
00356
00357
00358 csptrs_(uplo, n, &c__1, &afp[1], &ipiv[1], &work[1], n, info);
00359 caxpy_(n, &c_b1, &work[1], &c__1, &x[j * x_dim1 + 1], &c__1);
00360 lstres = berr[j];
00361 ++count;
00362 goto L20;
00363 }
00364
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00387 i__2 = *n;
00388 for (i__ = 1; i__ <= i__2; ++i__) {
00389 if (rwork[i__] > safe2) {
00390 i__3 = i__;
00391 rwork[i__] = (r__1 = work[i__3].r, dabs(r__1)) + (r__2 =
00392 r_imag(&work[i__]), dabs(r__2)) + nz * eps * rwork[
00393 i__];
00394 } else {
00395 i__3 = i__;
00396 rwork[i__] = (r__1 = work[i__3].r, dabs(r__1)) + (r__2 =
00397 r_imag(&work[i__]), dabs(r__2)) + nz * eps * rwork[
00398 i__] + safe1;
00399 }
00400
00401 }
00402
00403 kase = 0;
00404 L100:
00405 clacn2_(n, &work[*n + 1], &work[1], &ferr[j], &kase, isave);
00406 if (kase != 0) {
00407 if (kase == 1) {
00408
00409
00410
00411 csptrs_(uplo, n, &c__1, &afp[1], &ipiv[1], &work[1], n, info);
00412 i__2 = *n;
00413 for (i__ = 1; i__ <= i__2; ++i__) {
00414 i__3 = i__;
00415 i__4 = i__;
00416 i__5 = i__;
00417 q__1.r = rwork[i__4] * work[i__5].r, q__1.i = rwork[i__4]
00418 * work[i__5].i;
00419 work[i__3].r = q__1.r, work[i__3].i = q__1.i;
00420
00421 }
00422 } else if (kase == 2) {
00423
00424
00425
00426 i__2 = *n;
00427 for (i__ = 1; i__ <= i__2; ++i__) {
00428 i__3 = i__;
00429 i__4 = i__;
00430 i__5 = i__;
00431 q__1.r = rwork[i__4] * work[i__5].r, q__1.i = rwork[i__4]
00432 * work[i__5].i;
00433 work[i__3].r = q__1.r, work[i__3].i = q__1.i;
00434
00435 }
00436 csptrs_(uplo, n, &c__1, &afp[1], &ipiv[1], &work[1], n, info);
00437 }
00438 goto L100;
00439 }
00440
00441
00442
00443 lstres = 0.f;
00444 i__2 = *n;
00445 for (i__ = 1; i__ <= i__2; ++i__) {
00446
00447 i__3 = i__ + j * x_dim1;
00448 r__3 = lstres, r__4 = (r__1 = x[i__3].r, dabs(r__1)) + (r__2 =
00449 r_imag(&x[i__ + j * x_dim1]), dabs(r__2));
00450 lstres = dmax(r__3,r__4);
00451
00452 }
00453 if (lstres != 0.f) {
00454 ferr[j] /= lstres;
00455 }
00456
00457
00458 }
00459
00460 return 0;
00461
00462
00463
00464 }