00001
00002
00003
00004
00005
00006
00007
00008
00009
00010
00011
00012
00013 #include "f2c.h"
00014 #include "blaswrap.h"
00015
00016
00017
00018 struct {
00019 integer infot, nunit;
00020 logical ok, lerr;
00021 } infoc_;
00022
00023 #define infoc_1 infoc_
00024
00025 struct {
00026 char srnamt[32];
00027 } srnamc_;
00028
00029 #define srnamc_1 srnamc_
00030
00031
00032
00033 static integer c__2 = 2;
00034 static integer c__0 = 0;
00035 static integer c_n1 = -1;
00036 static integer c__1 = 1;
00037 static integer c__3 = 3;
00038
00039 int zchkqr_(logical *dotype, integer *nm, integer *mval,
00040 integer *nn, integer *nval, integer *nnb, integer *nbval, integer *
00041 nxval, integer *nrhs, doublereal *thresh, logical *tsterr, integer *
00042 nmax, doublecomplex *a, doublecomplex *af, doublecomplex *aq,
00043 doublecomplex *ar, doublecomplex *ac, doublecomplex *b, doublecomplex
00044 *x, doublecomplex *xact, doublecomplex *tau, doublecomplex *work,
00045 doublereal *rwork, integer *iwork, integer *nout)
00046 {
00047
00048
00049 static integer iseedy[4] = { 1988,1989,1990,1991 };
00050
00051
00052 static char fmt_9999[] = "(\002 M=\002,i5,\002, N=\002,i5,\002, K=\002,i"
00053 "5,\002, NB=\002,i4,\002, NX=\002,i5,\002, type \002,i2,\002, tes"
00054 "t(\002,i2,\002)=\002,g12.5)";
00055
00056
00057 integer i__1, i__2, i__3, i__4;
00058
00059
00060 int s_copy(char *, char *, ftnlen, ftnlen);
00061 integer s_wsfe(cilist *), do_fio(integer *, char *, ftnlen), e_wsfe(void);
00062
00063
00064 integer i__, k, m, n, nb, ik, im, in, kl, nk, ku, nt, nx, lda, inb, mode,
00065 imat, info;
00066 char path[3];
00067 integer kval[4];
00068 char dist[1], type__[1];
00069 integer nrun;
00070 extern int alahd_(integer *, char *);
00071 integer nfail, iseed[4];
00072 extern int zget02_(char *, integer *, integer *, integer
00073 *, doublecomplex *, integer *, doublecomplex *, integer *,
00074 doublecomplex *, integer *, doublereal *, doublereal *);
00075 doublereal anorm;
00076 integer minmn, nerrs, lwork;
00077 extern int zqrt01_(integer *, integer *, doublecomplex *,
00078 doublecomplex *, doublecomplex *, doublecomplex *, integer *,
00079 doublecomplex *, doublecomplex *, integer *, doublereal *,
00080 doublereal *), zqrt02_(integer *, integer *, integer *,
00081 doublecomplex *, doublecomplex *, doublecomplex *, doublecomplex *
00082 , integer *, doublecomplex *, doublecomplex *, integer *,
00083 doublereal *, doublereal *), zqrt03_(integer *, integer *,
00084 integer *, doublecomplex *, doublecomplex *, doublecomplex *,
00085 doublecomplex *, integer *, doublecomplex *, doublecomplex *,
00086 integer *, doublereal *, doublereal *), zlatb4_(char *, integer *,
00087 integer *, integer *, char *, integer *, integer *, doublereal *,
00088 integer *, doublereal *, char *),
00089 alaerh_(char *, char *, integer *, integer *, char *, integer *,
00090 integer *, integer *, integer *, integer *, integer *, integer *,
00091 integer *, integer *), alasum_(char *,
00092 integer *, integer *, integer *, integer *);
00093 doublereal cndnum;
00094 extern logical zgennd_(integer *, integer *, doublecomplex *, integer *);
00095 extern int xlaenv_(integer *, integer *), zlacpy_(char *,
00096 integer *, integer *, doublecomplex *, integer *, doublecomplex *
00097 , integer *), zlarhs_(char *, char *, char *, char *,
00098 integer *, integer *, integer *, integer *, integer *,
00099 doublecomplex *, integer *, doublecomplex *, integer *,
00100 doublecomplex *, integer *, integer *, integer *), zlatms_(integer *, integer *, char *, integer *,
00101 char *, doublereal *, integer *, doublereal *, doublereal *,
00102 integer *, integer *, char *, doublecomplex *, integer *,
00103 doublecomplex *, integer *), zgeqrs_(
00104 integer *, integer *, integer *, doublecomplex *, integer *,
00105 doublecomplex *, doublecomplex *, integer *, doublecomplex *,
00106 integer *, integer *);
00107 doublereal result[8];
00108 extern int zerrqr_(char *, integer *);
00109
00110
00111 static cilist io___33 = { 0, 0, 0, fmt_9999, 0 };
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
00179
00180
00181
00182
00183
00184
00185
00186
00187
00188
00189
00190
00191
00192
00193
00194
00195
00196
00197
00198
00199
00200
00201
00202
00203
00204
00205
00206
00207
00208
00209
00210
00211
00212
00213
00214
00215
00216
00217
00218
00219
00220
00221
00222
00223 --iwork;
00224 --rwork;
00225 --work;
00226 --tau;
00227 --xact;
00228 --x;
00229 --b;
00230 --ac;
00231 --ar;
00232 --aq;
00233 --af;
00234 --a;
00235 --nxval;
00236 --nbval;
00237 --nval;
00238 --mval;
00239 --dotype;
00240
00241
00242
00243
00244
00245
00246
00247 s_copy(path, "Zomplex precision", (ftnlen)1, (ftnlen)17);
00248 s_copy(path + 1, "QR", (ftnlen)2, (ftnlen)2);
00249 nrun = 0;
00250 nfail = 0;
00251 nerrs = 0;
00252 for (i__ = 1; i__ <= 4; ++i__) {
00253 iseed[i__ - 1] = iseedy[i__ - 1];
00254
00255 }
00256
00257
00258
00259 if (*tsterr) {
00260 zerrqr_(path, nout);
00261 }
00262 infoc_1.infot = 0;
00263 xlaenv_(&c__2, &c__2);
00264
00265 lda = *nmax;
00266 lwork = *nmax * max(*nmax,*nrhs);
00267
00268
00269
00270 i__1 = *nm;
00271 for (im = 1; im <= i__1; ++im) {
00272 m = mval[im];
00273
00274
00275
00276 i__2 = *nn;
00277 for (in = 1; in <= i__2; ++in) {
00278 n = nval[in];
00279 minmn = min(m,n);
00280 for (imat = 1; imat <= 8; ++imat) {
00281
00282
00283
00284 if (! dotype[imat]) {
00285 goto L50;
00286 }
00287
00288
00289
00290
00291 zlatb4_(path, &imat, &m, &n, type__, &kl, &ku, &anorm, &mode,
00292 &cndnum, dist);
00293
00294 s_copy(srnamc_1.srnamt, "ZLATMS", (ftnlen)32, (ftnlen)6);
00295 zlatms_(&m, &n, dist, iseed, type__, &rwork[1], &mode, &
00296 cndnum, &anorm, &kl, &ku, "No packing", &a[1], &lda, &
00297 work[1], &info);
00298
00299
00300
00301 if (info != 0) {
00302 alaerh_(path, "ZLATMS", &info, &c__0, " ", &m, &n, &c_n1,
00303 &c_n1, &c_n1, &imat, &nfail, &nerrs, nout);
00304 goto L50;
00305 }
00306
00307
00308
00309
00310
00311 kval[0] = minmn;
00312 kval[1] = 0;
00313 kval[2] = 1;
00314 kval[3] = minmn / 2;
00315 if (minmn == 0) {
00316 nk = 1;
00317 } else if (minmn == 1) {
00318 nk = 2;
00319 } else if (minmn <= 3) {
00320 nk = 3;
00321 } else {
00322 nk = 4;
00323 }
00324
00325
00326
00327 i__3 = nk;
00328 for (ik = 1; ik <= i__3; ++ik) {
00329 k = kval[ik - 1];
00330
00331
00332
00333 i__4 = *nnb;
00334 for (inb = 1; inb <= i__4; ++inb) {
00335 nb = nbval[inb];
00336 xlaenv_(&c__1, &nb);
00337 nx = nxval[inb];
00338 xlaenv_(&c__3, &nx);
00339 for (i__ = 1; i__ <= 8; ++i__) {
00340 result[i__ - 1] = 0.;
00341 }
00342 nt = 2;
00343 if (ik == 1) {
00344
00345
00346
00347 zqrt01_(&m, &n, &a[1], &af[1], &aq[1], &ar[1], &
00348 lda, &tau[1], &work[1], &lwork, &rwork[1],
00349 result);
00350 if (! zgennd_(&m, &n, &af[1], &lda)) {
00351 result[7] = *thresh * 2;
00352 }
00353 ++nt;
00354 } else if (m >= n) {
00355
00356
00357
00358
00359 zqrt02_(&m, &n, &k, &a[1], &af[1], &aq[1], &ar[1],
00360 &lda, &tau[1], &work[1], &lwork, &rwork[
00361 1], result);
00362 }
00363 if (m >= k) {
00364
00365
00366
00367
00368 zqrt03_(&m, &n, &k, &af[1], &ac[1], &ar[1], &aq[1]
00369 , &lda, &tau[1], &work[1], &lwork, &rwork[
00370 1], &result[2]);
00371 nt += 4;
00372
00373
00374
00375
00376
00377 if (k == n && inb == 1) {
00378
00379
00380
00381
00382 s_copy(srnamc_1.srnamt, "ZLARHS", (ftnlen)32,
00383 (ftnlen)6);
00384 zlarhs_(path, "New", "Full", "No transpose", &
00385 m, &n, &c__0, &c__0, nrhs, &a[1], &
00386 lda, &xact[1], &lda, &b[1], &lda,
00387 iseed, &info);
00388
00389 zlacpy_("Full", &m, nrhs, &b[1], &lda, &x[1],
00390 &lda);
00391 s_copy(srnamc_1.srnamt, "ZGEQRS", (ftnlen)32,
00392 (ftnlen)6);
00393 zgeqrs_(&m, &n, nrhs, &af[1], &lda, &tau[1], &
00394 x[1], &lda, &work[1], &lwork, &info);
00395
00396
00397
00398 if (info != 0) {
00399 alaerh_(path, "ZGEQRS", &info, &c__0,
00400 " ", &m, &n, nrhs, &c_n1, &nb, &
00401 imat, &nfail, &nerrs, nout);
00402 }
00403
00404 zget02_("No transpose", &m, &n, nrhs, &a[1], &
00405 lda, &x[1], &lda, &b[1], &lda, &rwork[
00406 1], &result[6]);
00407 ++nt;
00408 }
00409 }
00410
00411
00412
00413
00414 for (i__ = 1; i__ <= 8; ++i__) {
00415 if (result[i__ - 1] >= *thresh) {
00416 if (nfail == 0 && nerrs == 0) {
00417 alahd_(nout, path);
00418 }
00419 io___33.ciunit = *nout;
00420 s_wsfe(&io___33);
00421 do_fio(&c__1, (char *)&m, (ftnlen)sizeof(
00422 integer));
00423 do_fio(&c__1, (char *)&n, (ftnlen)sizeof(
00424 integer));
00425 do_fio(&c__1, (char *)&k, (ftnlen)sizeof(
00426 integer));
00427 do_fio(&c__1, (char *)&nb, (ftnlen)sizeof(
00428 integer));
00429 do_fio(&c__1, (char *)&nx, (ftnlen)sizeof(
00430 integer));
00431 do_fio(&c__1, (char *)&imat, (ftnlen)sizeof(
00432 integer));
00433 do_fio(&c__1, (char *)&i__, (ftnlen)sizeof(
00434 integer));
00435 do_fio(&c__1, (char *)&result[i__ - 1], (
00436 ftnlen)sizeof(doublereal));
00437 e_wsfe();
00438 ++nfail;
00439 }
00440
00441 }
00442 nrun += nt;
00443
00444 }
00445
00446 }
00447 L50:
00448 ;
00449 }
00450
00451 }
00452
00453 }
00454
00455
00456
00457 alasum_(path, nout, &nfail, &nrun, &nerrs);
00458
00459 return 0;
00460
00461
00462
00463 }