zchkpp.c
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00001 /* zchkpp.f -- translated by f2c (version 20061008).
00002    You must link the resulting object file with libf2c:
00003         on Microsoft Windows system, link with libf2c.lib;
00004         on Linux or Unix systems, link with .../path/to/libf2c.a -lm
00005         or, if you install libf2c.a in a standard place, with -lf2c -lm
00006         -- in that order, at the end of the command line, as in
00007                 cc *.o -lf2c -lm
00008         Source for libf2c is in /netlib/f2c/libf2c.zip, e.g.,
00009 
00010                 http://www.netlib.org/f2c/libf2c.zip
00011 */
00012 
00013 #include "f2c.h"
00014 #include "blaswrap.h"
00015 
00016 /* Common Block Declarations */
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 /* Table of constant values */
00032 
00033 static integer c__0 = 0;
00034 static integer c_n1 = -1;
00035 static integer c__2 = 2;
00036 static integer c__1 = 1;
00037 static integer c__8 = 8;
00038 
00039 /* Subroutine */ int zchkpp_(logical *dotype, integer *nn, integer *nval, 
00040         integer *nns, integer *nsval, doublereal *thresh, logical *tsterr, 
00041         integer *nmax, doublecomplex *a, doublecomplex *afac, doublecomplex *
00042         ainv, doublecomplex *b, doublecomplex *x, doublecomplex *xact, 
00043         doublecomplex *work, doublereal *rwork, integer *nout)
00044 {
00045     /* Initialized data */
00046 
00047     static integer iseedy[4] = { 1988,1989,1990,1991 };
00048     static char uplos[1*2] = "U" "L";
00049     static char packs[1*2] = "C" "R";
00050 
00051     /* Format strings */
00052     static char fmt_9999[] = "(\002 UPLO = '\002,a1,\002', N =\002,i5,\002, "
00053             "type \002,i2,\002, test \002,i2,\002, ratio =\002,g12.5)";
00054     static char fmt_9998[] = "(\002 UPLO = '\002,a1,\002', N =\002,i5,\002, "
00055             "NRHS=\002,i3,\002, type \002,i2,\002, test(\002,i2,\002) =\002,g"
00056             "12.5)";
00057 
00058     /* System generated locals */
00059     integer i__1, i__2, i__3, i__4;
00060 
00061     /* Builtin functions */
00062     /* Subroutine */ int s_copy(char *, char *, ftnlen, ftnlen);
00063     integer s_wsfe(cilist *), do_fio(integer *, char *, ftnlen), e_wsfe(void);
00064 
00065     /* Local variables */
00066     integer i__, k, n, in, kl, ku, lda, npp, ioff, mode, imat, info;
00067     char path[3], dist[1];
00068     integer irhs, nrhs;
00069     char uplo[1], type__[1];
00070     integer nrun;
00071     extern /* Subroutine */ int alahd_(integer *, char *);
00072     integer nfail, iseed[4];
00073     extern doublereal dget06_(doublereal *, doublereal *);
00074     doublereal rcond;
00075     integer nimat;
00076     doublereal anorm;
00077     extern /* Subroutine */ int zget04_(integer *, integer *, doublecomplex *, 
00078              integer *, doublecomplex *, integer *, doublereal *, doublereal *
00079 );
00080     integer iuplo, izero, nerrs;
00081     extern /* Subroutine */ int zppt01_(char *, integer *, doublecomplex *, 
00082             doublecomplex *, doublereal *, doublereal *), zppt02_(
00083             char *, integer *, integer *, doublecomplex *, doublecomplex *, 
00084             integer *, doublecomplex *, integer *, doublereal *, doublereal *), zppt03_(char *, integer *, doublecomplex *, 
00085             doublecomplex *, doublecomplex *, integer *, doublereal *, 
00086             doublereal *, doublereal *);
00087     logical zerot;
00088     extern /* Subroutine */ int zcopy_(integer *, doublecomplex *, integer *, 
00089             doublecomplex *, integer *), zppt05_(char *, integer *, integer *, 
00090              doublecomplex *, doublecomplex *, integer *, doublecomplex *, 
00091             integer *, doublecomplex *, integer *, doublereal *, doublereal *, 
00092              doublereal *);
00093     char xtype[1];
00094     extern /* Subroutine */ int zlatb4_(char *, integer *, integer *, integer 
00095             *, char *, integer *, integer *, doublereal *, integer *, 
00096             doublereal *, char *), alaerh_(char *, 
00097             char *, integer *, integer *, char *, integer *, integer *, 
00098             integer *, integer *, integer *, integer *, integer *, integer *, 
00099             integer *);
00100     doublereal rcondc;
00101     char packit[1];
00102     extern /* Subroutine */ int alasum_(char *, integer *, integer *, integer 
00103             *, integer *);
00104     doublereal cndnum;
00105     extern /* Subroutine */ int zlaipd_(integer *, doublecomplex *, integer *, 
00106              integer *);
00107     extern doublereal zlanhp_(char *, char *, integer *, doublecomplex *, 
00108             doublereal *);
00109     extern /* Subroutine */ int zlacpy_(char *, integer *, integer *, 
00110             doublecomplex *, integer *, doublecomplex *, integer *), 
00111             zlarhs_(char *, char *, char *, char *, integer *, integer *, 
00112             integer *, integer *, integer *, doublecomplex *, integer *, 
00113             doublecomplex *, integer *, doublecomplex *, integer *, integer *, 
00114              integer *), zppcon_(char *, 
00115             integer *, doublecomplex *, doublereal *, doublereal *, 
00116             doublecomplex *, doublereal *, integer *), zlatms_(
00117             integer *, integer *, char *, integer *, char *, doublereal *, 
00118             integer *, doublereal *, doublereal *, integer *, integer *, char 
00119             *, doublecomplex *, integer *, doublecomplex *, integer *);
00120     doublereal result[8];
00121     extern /* Subroutine */ int zerrpo_(char *, integer *), zpprfs_(
00122             char *, integer *, integer *, doublecomplex *, doublecomplex *, 
00123             doublecomplex *, integer *, doublecomplex *, integer *, 
00124             doublereal *, doublereal *, doublecomplex *, doublereal *, 
00125             integer *), zpptrf_(char *, integer *, doublecomplex *, 
00126             integer *), zpptri_(char *, integer *, doublecomplex *, 
00127             integer *), zpptrs_(char *, integer *, integer *, 
00128             doublecomplex *, doublecomplex *, integer *, integer *);
00129 
00130     /* Fortran I/O blocks */
00131     static cilist io___34 = { 0, 0, 0, fmt_9999, 0 };
00132     static cilist io___37 = { 0, 0, 0, fmt_9998, 0 };
00133     static cilist io___39 = { 0, 0, 0, fmt_9999, 0 };
00134 
00135 
00136 
00137 /*  -- LAPACK test routine (version 3.1) -- */
00138 /*     Univ. of Tennessee, Univ. of California Berkeley and NAG Ltd.. */
00139 /*     November 2006 */
00140 
00141 /*     .. Scalar Arguments .. */
00142 /*     .. */
00143 /*     .. Array Arguments .. */
00144 /*     .. */
00145 
00146 /*  Purpose */
00147 /*  ======= */
00148 
00149 /*  ZCHKPP tests ZPPTRF, -TRI, -TRS, -RFS, and -CON */
00150 
00151 /*  Arguments */
00152 /*  ========= */
00153 
00154 /*  DOTYPE  (input) LOGICAL array, dimension (NTYPES) */
00155 /*          The matrix types to be used for testing.  Matrices of type j */
00156 /*          (for 1 <= j <= NTYPES) are used for testing if DOTYPE(j) = */
00157 /*          .TRUE.; if DOTYPE(j) = .FALSE., then type j is not used. */
00158 
00159 /*  NN      (input) INTEGER */
00160 /*          The number of values of N contained in the vector NVAL. */
00161 
00162 /*  NVAL    (input) INTEGER array, dimension (NN) */
00163 /*          The values of the matrix dimension N. */
00164 
00165 /*  NNS     (input) INTEGER */
00166 /*          The number of values of NRHS contained in the vector NSVAL. */
00167 
00168 /*  NSVAL   (input) INTEGER array, dimension (NNS) */
00169 /*          The values of the number of right hand sides NRHS. */
00170 
00171 /*  THRESH  (input) DOUBLE PRECISION */
00172 /*          The threshold value for the test ratios.  A result is */
00173 /*          included in the output file if RESULT >= THRESH.  To have */
00174 /*          every test ratio printed, use THRESH = 0. */
00175 
00176 /*  TSTERR  (input) LOGICAL */
00177 /*          Flag that indicates whether error exits are to be tested. */
00178 
00179 /*  NMAX    (input) INTEGER */
00180 /*          The maximum value permitted for N, used in dimensioning the */
00181 /*          work arrays. */
00182 
00183 /*  A       (workspace) COMPLEX*16 array, dimension */
00184 /*                      (NMAX*(NMAX+1)/2) */
00185 
00186 /*  AFAC    (workspace) COMPLEX*16 array, dimension */
00187 /*                      (NMAX*(NMAX+1)/2) */
00188 
00189 /*  AINV    (workspace) COMPLEX*16 array, dimension */
00190 /*                      (NMAX*(NMAX+1)/2) */
00191 
00192 /*  B       (workspace) COMPLEX*16 array, dimension (NMAX*NSMAX) */
00193 /*          where NSMAX is the largest entry in NSVAL. */
00194 
00195 /*  X       (workspace) COMPLEX*16 array, dimension (NMAX*NSMAX) */
00196 
00197 /*  XACT    (workspace) COMPLEX*16 array, dimension (NMAX*NSMAX) */
00198 
00199 /*  WORK    (workspace) COMPLEX*16 array, dimension */
00200 /*                      (NMAX*max(3,NSMAX)) */
00201 
00202 /*  RWORK   (workspace) DOUBLE PRECISION array, dimension */
00203 /*                      (max(NMAX,2*NSMAX)) */
00204 
00205 /*  NOUT    (input) INTEGER */
00206 /*          The unit number for output. */
00207 
00208 /*  ===================================================================== */
00209 
00210 /*     .. Parameters .. */
00211 /*     .. */
00212 /*     .. Local Scalars .. */
00213 /*     .. */
00214 /*     .. Local Arrays .. */
00215 /*     .. */
00216 /*     .. External Functions .. */
00217 /*     .. */
00218 /*     .. External Subroutines .. */
00219 /*     .. */
00220 /*     .. Scalars in Common .. */
00221 /*     .. */
00222 /*     .. Common blocks .. */
00223 /*     .. */
00224 /*     .. Intrinsic Functions .. */
00225 /*     .. */
00226 /*     .. Data statements .. */
00227     /* Parameter adjustments */
00228     --rwork;
00229     --work;
00230     --xact;
00231     --x;
00232     --b;
00233     --ainv;
00234     --afac;
00235     --a;
00236     --nsval;
00237     --nval;
00238     --dotype;
00239 
00240     /* Function Body */
00241 /*     .. */
00242 /*     .. Executable Statements .. */
00243 
00244 /*     Initialize constants and the random number seed. */
00245 
00246     s_copy(path, "Zomplex precision", (ftnlen)1, (ftnlen)17);
00247     s_copy(path + 1, "PP", (ftnlen)2, (ftnlen)2);
00248     nrun = 0;
00249     nfail = 0;
00250     nerrs = 0;
00251     for (i__ = 1; i__ <= 4; ++i__) {
00252         iseed[i__ - 1] = iseedy[i__ - 1];
00253 /* L10: */
00254     }
00255 
00256 /*     Test the error exits */
00257 
00258     if (*tsterr) {
00259         zerrpo_(path, nout);
00260     }
00261     infoc_1.infot = 0;
00262 
00263 /*     Do for each value of N in NVAL */
00264 
00265     i__1 = *nn;
00266     for (in = 1; in <= i__1; ++in) {
00267         n = nval[in];
00268         lda = max(n,1);
00269         *(unsigned char *)xtype = 'N';
00270         nimat = 9;
00271         if (n <= 0) {
00272             nimat = 1;
00273         }
00274 
00275         i__2 = nimat;
00276         for (imat = 1; imat <= i__2; ++imat) {
00277 
00278 /*           Do the tests only if DOTYPE( IMAT ) is true. */
00279 
00280             if (! dotype[imat]) {
00281                 goto L100;
00282             }
00283 
00284 /*           Skip types 3, 4, or 5 if the matrix size is too small. */
00285 
00286             zerot = imat >= 3 && imat <= 5;
00287             if (zerot && n < imat - 2) {
00288                 goto L100;
00289             }
00290 
00291 /*           Do first for UPLO = 'U', then for UPLO = 'L' */
00292 
00293             for (iuplo = 1; iuplo <= 2; ++iuplo) {
00294                 *(unsigned char *)uplo = *(unsigned char *)&uplos[iuplo - 1];
00295                 *(unsigned char *)packit = *(unsigned char *)&packs[iuplo - 1]
00296                         ;
00297 
00298 /*              Set up parameters with ZLATB4 and generate a test matrix */
00299 /*              with ZLATMS. */
00300 
00301                 zlatb4_(path, &imat, &n, &n, type__, &kl, &ku, &anorm, &mode, 
00302                         &cndnum, dist);
00303 
00304                 s_copy(srnamc_1.srnamt, "ZLATMS", (ftnlen)32, (ftnlen)6);
00305                 zlatms_(&n, &n, dist, iseed, type__, &rwork[1], &mode, &
00306                         cndnum, &anorm, &kl, &ku, packit, &a[1], &lda, &work[
00307                         1], &info);
00308 
00309 /*              Check error code from ZLATMS. */
00310 
00311                 if (info != 0) {
00312                     alaerh_(path, "ZLATMS", &info, &c__0, uplo, &n, &n, &c_n1, 
00313                              &c_n1, &c_n1, &imat, &nfail, &nerrs, nout);
00314                     goto L90;
00315                 }
00316 
00317 /*              For types 3-5, zero one row and column of the matrix to */
00318 /*              test that INFO is returned correctly. */
00319 
00320                 if (zerot) {
00321                     if (imat == 3) {
00322                         izero = 1;
00323                     } else if (imat == 4) {
00324                         izero = n;
00325                     } else {
00326                         izero = n / 2 + 1;
00327                     }
00328 
00329 /*                 Set row and column IZERO of A to 0. */
00330 
00331                     if (iuplo == 1) {
00332                         ioff = (izero - 1) * izero / 2;
00333                         i__3 = izero - 1;
00334                         for (i__ = 1; i__ <= i__3; ++i__) {
00335                             i__4 = ioff + i__;
00336                             a[i__4].r = 0., a[i__4].i = 0.;
00337 /* L20: */
00338                         }
00339                         ioff += izero;
00340                         i__3 = n;
00341                         for (i__ = izero; i__ <= i__3; ++i__) {
00342                             i__4 = ioff;
00343                             a[i__4].r = 0., a[i__4].i = 0.;
00344                             ioff += i__;
00345 /* L30: */
00346                         }
00347                     } else {
00348                         ioff = izero;
00349                         i__3 = izero - 1;
00350                         for (i__ = 1; i__ <= i__3; ++i__) {
00351                             i__4 = ioff;
00352                             a[i__4].r = 0., a[i__4].i = 0.;
00353                             ioff = ioff + n - i__;
00354 /* L40: */
00355                         }
00356                         ioff -= izero;
00357                         i__3 = n;
00358                         for (i__ = izero; i__ <= i__3; ++i__) {
00359                             i__4 = ioff + i__;
00360                             a[i__4].r = 0., a[i__4].i = 0.;
00361 /* L50: */
00362                         }
00363                     }
00364                 } else {
00365                     izero = 0;
00366                 }
00367 
00368 /*              Set the imaginary part of the diagonals. */
00369 
00370                 if (iuplo == 1) {
00371                     zlaipd_(&n, &a[1], &c__2, &c__1);
00372                 } else {
00373                     zlaipd_(&n, &a[1], &n, &c_n1);
00374                 }
00375 
00376 /*              Compute the L*L' or U'*U factorization of the matrix. */
00377 
00378                 npp = n * (n + 1) / 2;
00379                 zcopy_(&npp, &a[1], &c__1, &afac[1], &c__1);
00380                 s_copy(srnamc_1.srnamt, "ZPPTRF", (ftnlen)32, (ftnlen)6);
00381                 zpptrf_(uplo, &n, &afac[1], &info);
00382 
00383 /*              Check error code from ZPPTRF. */
00384 
00385                 if (info != izero) {
00386                     alaerh_(path, "ZPPTRF", &info, &izero, uplo, &n, &n, &
00387                             c_n1, &c_n1, &c_n1, &imat, &nfail, &nerrs, nout);
00388                     goto L90;
00389                 }
00390 
00391 /*              Skip the tests if INFO is not 0. */
00392 
00393                 if (info != 0) {
00394                     goto L90;
00395                 }
00396 
00397 /* +    TEST 1 */
00398 /*              Reconstruct matrix from factors and compute residual. */
00399 
00400                 zcopy_(&npp, &afac[1], &c__1, &ainv[1], &c__1);
00401                 zppt01_(uplo, &n, &a[1], &ainv[1], &rwork[1], result);
00402 
00403 /* +    TEST 2 */
00404 /*              Form the inverse and compute the residual. */
00405 
00406                 zcopy_(&npp, &afac[1], &c__1, &ainv[1], &c__1);
00407                 s_copy(srnamc_1.srnamt, "ZPPTRI", (ftnlen)32, (ftnlen)6);
00408                 zpptri_(uplo, &n, &ainv[1], &info);
00409 
00410 /*              Check error code from ZPPTRI. */
00411 
00412                 if (info != 0) {
00413                     alaerh_(path, "ZPPTRI", &info, &c__0, uplo, &n, &n, &c_n1, 
00414                              &c_n1, &c_n1, &imat, &nfail, &nerrs, nout);
00415                 }
00416 
00417                 zppt03_(uplo, &n, &a[1], &ainv[1], &work[1], &lda, &rwork[1], 
00418                         &rcondc, &result[1]);
00419 
00420 /*              Print information about the tests that did not pass */
00421 /*              the threshold. */
00422 
00423                 for (k = 1; k <= 2; ++k) {
00424                     if (result[k - 1] >= *thresh) {
00425                         if (nfail == 0 && nerrs == 0) {
00426                             alahd_(nout, path);
00427                         }
00428                         io___34.ciunit = *nout;
00429                         s_wsfe(&io___34);
00430                         do_fio(&c__1, uplo, (ftnlen)1);
00431                         do_fio(&c__1, (char *)&n, (ftnlen)sizeof(integer));
00432                         do_fio(&c__1, (char *)&imat, (ftnlen)sizeof(integer));
00433                         do_fio(&c__1, (char *)&k, (ftnlen)sizeof(integer));
00434                         do_fio(&c__1, (char *)&result[k - 1], (ftnlen)sizeof(
00435                                 doublereal));
00436                         e_wsfe();
00437                         ++nfail;
00438                     }
00439 /* L60: */
00440                 }
00441                 nrun += 2;
00442 
00443                 i__3 = *nns;
00444                 for (irhs = 1; irhs <= i__3; ++irhs) {
00445                     nrhs = nsval[irhs];
00446 
00447 /* +    TEST 3 */
00448 /*              Solve and compute residual for  A * X = B. */
00449 
00450                     s_copy(srnamc_1.srnamt, "ZLARHS", (ftnlen)32, (ftnlen)6);
00451                     zlarhs_(path, xtype, uplo, " ", &n, &n, &kl, &ku, &nrhs, &
00452                             a[1], &lda, &xact[1], &lda, &b[1], &lda, iseed, &
00453                             info);
00454                     zlacpy_("Full", &n, &nrhs, &b[1], &lda, &x[1], &lda);
00455 
00456                     s_copy(srnamc_1.srnamt, "ZPPTRS", (ftnlen)32, (ftnlen)6);
00457                     zpptrs_(uplo, &n, &nrhs, &afac[1], &x[1], &lda, &info);
00458 
00459 /*              Check error code from ZPPTRS. */
00460 
00461                     if (info != 0) {
00462                         alaerh_(path, "ZPPTRS", &info, &c__0, uplo, &n, &n, &
00463                                 c_n1, &c_n1, &nrhs, &imat, &nfail, &nerrs, 
00464                                 nout);
00465                     }
00466 
00467                     zlacpy_("Full", &n, &nrhs, &b[1], &lda, &work[1], &lda);
00468                     zppt02_(uplo, &n, &nrhs, &a[1], &x[1], &lda, &work[1], &
00469                             lda, &rwork[1], &result[2]);
00470 
00471 /* +    TEST 4 */
00472 /*              Check solution from generated exact solution. */
00473 
00474                     zget04_(&n, &nrhs, &x[1], &lda, &xact[1], &lda, &rcondc, &
00475                             result[3]);
00476 
00477 /* +    TESTS 5, 6, and 7 */
00478 /*              Use iterative refinement to improve the solution. */
00479 
00480                     s_copy(srnamc_1.srnamt, "ZPPRFS", (ftnlen)32, (ftnlen)6);
00481                     zpprfs_(uplo, &n, &nrhs, &a[1], &afac[1], &b[1], &lda, &x[
00482                             1], &lda, &rwork[1], &rwork[nrhs + 1], &work[1], &
00483                             rwork[(nrhs << 1) + 1], &info);
00484 
00485 /*              Check error code from ZPPRFS. */
00486 
00487                     if (info != 0) {
00488                         alaerh_(path, "ZPPRFS", &info, &c__0, uplo, &n, &n, &
00489                                 c_n1, &c_n1, &nrhs, &imat, &nfail, &nerrs, 
00490                                 nout);
00491                     }
00492 
00493                     zget04_(&n, &nrhs, &x[1], &lda, &xact[1], &lda, &rcondc, &
00494                             result[4]);
00495                     zppt05_(uplo, &n, &nrhs, &a[1], &b[1], &lda, &x[1], &lda, 
00496                             &xact[1], &lda, &rwork[1], &rwork[nrhs + 1], &
00497                             result[5]);
00498 
00499 /*                 Print information about the tests that did not pass */
00500 /*                 the threshold. */
00501 
00502                     for (k = 3; k <= 7; ++k) {
00503                         if (result[k - 1] >= *thresh) {
00504                             if (nfail == 0 && nerrs == 0) {
00505                                 alahd_(nout, path);
00506                             }
00507                             io___37.ciunit = *nout;
00508                             s_wsfe(&io___37);
00509                             do_fio(&c__1, uplo, (ftnlen)1);
00510                             do_fio(&c__1, (char *)&n, (ftnlen)sizeof(integer))
00511                                     ;
00512                             do_fio(&c__1, (char *)&nrhs, (ftnlen)sizeof(
00513                                     integer));
00514                             do_fio(&c__1, (char *)&imat, (ftnlen)sizeof(
00515                                     integer));
00516                             do_fio(&c__1, (char *)&k, (ftnlen)sizeof(integer))
00517                                     ;
00518                             do_fio(&c__1, (char *)&result[k - 1], (ftnlen)
00519                                     sizeof(doublereal));
00520                             e_wsfe();
00521                             ++nfail;
00522                         }
00523 /* L70: */
00524                     }
00525                     nrun += 5;
00526 /* L80: */
00527                 }
00528 
00529 /* +    TEST 8 */
00530 /*              Get an estimate of RCOND = 1/CNDNUM. */
00531 
00532                 anorm = zlanhp_("1", uplo, &n, &a[1], &rwork[1]);
00533                 s_copy(srnamc_1.srnamt, "ZPPCON", (ftnlen)32, (ftnlen)6);
00534                 zppcon_(uplo, &n, &afac[1], &anorm, &rcond, &work[1], &rwork[
00535                         1], &info);
00536 
00537 /*              Check error code from ZPPCON. */
00538 
00539                 if (info != 0) {
00540                     alaerh_(path, "ZPPCON", &info, &c__0, uplo, &n, &n, &c_n1, 
00541                              &c_n1, &c_n1, &imat, &nfail, &nerrs, nout);
00542                 }
00543 
00544                 result[7] = dget06_(&rcond, &rcondc);
00545 
00546 /*              Print the test ratio if greater than or equal to THRESH. */
00547 
00548                 if (result[7] >= *thresh) {
00549                     if (nfail == 0 && nerrs == 0) {
00550                         alahd_(nout, path);
00551                     }
00552                     io___39.ciunit = *nout;
00553                     s_wsfe(&io___39);
00554                     do_fio(&c__1, uplo, (ftnlen)1);
00555                     do_fio(&c__1, (char *)&n, (ftnlen)sizeof(integer));
00556                     do_fio(&c__1, (char *)&imat, (ftnlen)sizeof(integer));
00557                     do_fio(&c__1, (char *)&c__8, (ftnlen)sizeof(integer));
00558                     do_fio(&c__1, (char *)&result[7], (ftnlen)sizeof(
00559                             doublereal));
00560                     e_wsfe();
00561                     ++nfail;
00562                 }
00563                 ++nrun;
00564 
00565 L90:
00566                 ;
00567             }
00568 L100:
00569             ;
00570         }
00571 /* L110: */
00572     }
00573 
00574 /*     Print a summary of the results. */
00575 
00576     alasum_(path, nout, &nfail, &nrun, &nerrs);
00577 
00578     return 0;
00579 
00580 /*     End of ZCHKPP */
00581 
00582 } /* zchkpp_ */


swiftnav
Author(s):
autogenerated on Sat Jun 8 2019 18:56:19