[0b990d] | 1 | //
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| 2 | // btest.cc --- test program
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| 3 | //
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| 4 | // Copyright (C) 1996 Limit Point Systems, Inc.
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| 5 | //
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| 6 | // Author: Edward Seidl <seidl@janed.com>
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| 7 | // Maintainer: LPS
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| 8 | //
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| 9 | // This file is part of the SC Toolkit.
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| 10 | //
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| 11 | // The SC Toolkit is free software; you can redistribute it and/or modify
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| 12 | // it under the terms of the GNU Library General Public License as published by
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| 13 | // the Free Software Foundation; either version 2, or (at your option)
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| 14 | // any later version.
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| 15 | //
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| 16 | // The SC Toolkit is distributed in the hope that it will be useful,
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| 17 | // but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 18 | // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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| 19 | // GNU Library General Public License for more details.
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| 20 | //
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| 21 | // You should have received a copy of the GNU Library General Public License
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| 22 | // along with the SC Toolkit; see the file COPYING.LIB. If not, write to
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| 23 | // the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
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| 24 | //
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| 25 | // The U.S. Government is granted a limited license as per AL 91-7.
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| 26 | //
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| 27 |
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| 28 | #include <scconfig.h>
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| 29 | #ifdef HAVE_SSTREAM
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| 30 | # include <sstream>
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| 31 | #else
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| 32 | # include <strstream.h>
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| 33 | #endif
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| 34 |
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| 35 | #include <util/misc/formio.h>
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| 36 | #include <util/keyval/keyval.h>
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| 37 | #include <util/state/stateio.h>
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| 38 | #include <util/state/state_text.h>
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| 39 | #include <util/state/state_bin.h>
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| 40 | #include <chemistry/qc/basis/basis.h>
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| 41 | #include <chemistry/qc/basis/files.h>
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| 42 | #include <chemistry/qc/basis/petite.h>
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| 43 | #include <chemistry/qc/basis/gpetite.h>
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| 44 | #include <chemistry/qc/basis/symmint.h>
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| 45 | #include <chemistry/qc/intv3/intv3.h>
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| 46 | #include <chemistry/qc/basis/sobasis.h>
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| 47 | #include <chemistry/qc/basis/sointegral.h>
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| 48 | #include <chemistry/qc/basis/extent.h>
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| 49 | #include <chemistry/qc/basis/orthog.h>
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| 50 |
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| 51 | using namespace std;
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| 52 | using namespace sc;
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| 53 |
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| 54 | static void
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| 55 | do_so_shell_test(const Ref<SOBasis>& sobas, const Ref<TwoBodySOInt> &soer,
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| 56 | int i, int j, int k, int l)
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| 57 | {
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| 58 | if (i>=soer->basis1()->nshell()
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| 59 | ||j>=soer->basis2()->nshell()
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| 60 | ||k>=soer->basis3()->nshell()
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| 61 | ||l>=soer->basis4()->nshell()) return;
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| 62 |
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| 63 | int p,q,r,s;
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| 64 | soer->compute_shell(i,j,k,l);
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| 65 | const double *buf = soer->buffer();
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| 66 | int np = sobas->nfunction(i);
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| 67 | int nq = sobas->nfunction(j);
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| 68 | int nr = sobas->nfunction(k);
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| 69 | int ns = sobas->nfunction(l);
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| 70 | int off = 0;
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| 71 | cout << "SHELL ("<<i<<j<<"|"<<k<<l<<"):" << endl;
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| 72 | for (p=0; p<np; p++) {
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| 73 | for (q=0; q<nq; q++) {
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| 74 | for (r=0; r<nr; r++) {
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| 75 | cout << " ("<<p<<q<<"|"<<r<<"*) =";
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| 76 | for (s=0; s<ns; s++, off++) {
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| 77 | cout << scprintf(" % 10.6f",buf[off]);
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| 78 | }
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| 79 | cout << endl;
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| 80 | }
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| 81 | }
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| 82 | }
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| 83 | }
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| 84 |
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| 85 | static void
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| 86 | do_so_shell_test(const Ref<SOBasis>& sobas, const Ref<OneBodySOInt> &soov,
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| 87 | int i, int j)
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| 88 | {
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| 89 | if (i>=soov->basis1()->nshell()
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| 90 | ||j>=soov->basis2()->nshell()) return;
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| 91 |
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| 92 | int p,q;
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| 93 | soov->compute_shell(i,j);
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| 94 | const double *buf = soov->buffer();
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| 95 | int np = sobas->nfunction(i);
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| 96 | int nq = sobas->nfunction(j);
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| 97 | int off = 0;
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| 98 | cout << "SHELL ("<<i<<"|"<<j<<"):" << endl;
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| 99 | for (p=0; p<np; p++) {
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| 100 | cout << " ("<<p<<"|"<<"*) =";
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| 101 | for (q=0; q<nq; q++, off++) {
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| 102 | cout << scprintf(" % 10.6f",buf[off]);
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| 103 | }
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| 104 | cout << endl;
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| 105 | }
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| 106 | }
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| 107 |
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| 108 | static void
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| 109 | do_so_test(const Ref<KeyVal> &keyval,
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| 110 | const Ref<Integral>& intgrl, const Ref<GaussianBasisSet> &gbs)
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| 111 | {
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| 112 | intgrl->set_basis(gbs);
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| 113 |
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| 114 | Ref<SOBasis> sobas = new SOBasis(gbs, intgrl);
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| 115 | sobas->print(cout);
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| 116 |
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| 117 | Ref<TwoBodyInt> aoer = intgrl->electron_repulsion();
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| 118 | Ref<TwoBodySOInt> soer = new TwoBodySOInt(aoer);
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| 119 |
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| 120 | Ref<OneBodyInt> aoov = intgrl->overlap();
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| 121 | Ref<OneBodySOInt> soov = new OneBodySOInt(aoov);
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| 122 |
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| 123 | sobas = soer->basis();
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| 124 | sobas->print(cout);
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| 125 |
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| 126 | if (keyval->exists(":shell")) {
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| 127 | do_so_shell_test(sobas, soer,
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| 128 | keyval->intvalue(":shell",0),
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| 129 | keyval->intvalue(":shell",1),
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| 130 | keyval->intvalue(":shell",2),
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| 131 | keyval->intvalue(":shell",3));
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| 132 | do_so_shell_test(sobas, soov,
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| 133 | keyval->intvalue(":shell",0),
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| 134 | keyval->intvalue(":shell",1));
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| 135 | }
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| 136 | else {
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| 137 | int i,j,k,l;
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| 138 | cout << "SO Electron Repulsion:" << endl;
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| 139 | for (i=0; i<sobas->nshell(); i++) {
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| 140 | for (j=0; j<sobas->nshell(); j++) {
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| 141 | for (k=0; k<sobas->nshell(); k++) {
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| 142 | for (l=0; l<sobas->nshell(); l++) {
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| 143 | do_so_shell_test(sobas, soer, i, j, k, l);
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| 144 | }
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| 145 | }
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| 146 | }
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| 147 | }
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| 148 | cout << "SO Overlap:" << endl;
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| 149 | for (i=0; i<sobas->nshell(); i++) {
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| 150 | for (j=0; j<sobas->nshell(); j++) {
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| 151 | do_so_shell_test(sobas, soov, i, j);
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| 152 | }
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| 153 | }
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| 154 | }
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| 155 | }
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| 156 |
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| 157 | static void
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| 158 | test_overlap(const Ref<GaussianBasisSet>& gbs, const Ref<GaussianBasisSet>& gbs2,
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| 159 | const Ref<Integral>& intgrl)
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| 160 | {
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| 161 | intgrl->set_basis(gbs);
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| 162 |
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| 163 | // first form AO basis overlap
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| 164 | RefSymmSCMatrix s(gbs->basisdim(), gbs->matrixkit());
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| 165 | Ref<SCElementOp> ov
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| 166 | = new OneBodyIntOp(new OneBodyIntIter(intgrl->overlap()));
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| 167 | s.assign(0.0);
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| 168 | s.element_op(ov);
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| 169 | ov=0;
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| 170 | s.print("overlap");
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| 171 |
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| 172 | // now transform s to SO basis
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| 173 | Ref<PetiteList> pl = intgrl->petite_list();
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| 174 | RefSymmSCMatrix sb = pl->to_SO_basis(s);
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| 175 | sb.print("blocked s");
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| 176 |
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| 177 | // and back to AO basis
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| 178 | s = pl->to_AO_basis(sb);
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| 179 | s.print("reconstituted s");
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| 180 |
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| 181 | // form skeleton overlap
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| 182 | ov = new OneBodyIntOp(new SymmOneBodyIntIter(intgrl->overlap(),pl));
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| 183 | s.assign(0.0);
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| 184 | s.element_op(ov);
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| 185 | ov=0;
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| 186 | s.print("overlap");
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| 187 |
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| 188 | // and symmetrize to get blocked overlap again
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| 189 | sb.assign(0.0);
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| 190 | pl->symmetrize(s,sb);
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| 191 | sb.print("blocked again");
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| 192 |
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| 193 | s=0; sb=0;
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| 194 |
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| 195 | // now try overlap between two basis sets
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| 196 | RefSCMatrix ssq(gbs2->basisdim(),gbs->basisdim(),gbs2->matrixkit());
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| 197 | intgrl->set_basis(gbs2,gbs);
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| 198 |
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| 199 | ov = new OneBodyIntOp(new OneBodyIntIter(intgrl->overlap()));
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| 200 | ssq.assign(0.0);
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| 201 | ssq.element_op(ov);
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| 202 | ssq.print("overlap sq");
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| 203 | ov=0;
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| 204 |
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| 205 | Ref<PetiteList> pl2 = intgrl->petite_list(gbs2);
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| 206 | RefSCMatrix ssqb(pl2->AO_basisdim(), pl->AO_basisdim(), gbs->so_matrixkit());
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| 207 | ssqb->convert(ssq);
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| 208 |
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| 209 | RefSCMatrix syms2 = pl2->aotoso().t() * ssqb * pl->aotoso();
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| 210 | syms2.print("symm S2");
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| 211 | }
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| 212 |
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| 213 | static void
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| 214 | test_aoorthog(const Ref<GaussianBasisSet>& gbs,
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| 215 | const Ref<Integral>& intgrl)
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| 216 | {
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| 217 | cout << "Beginning AO Orthog test" << endl;
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| 218 |
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| 219 | intgrl->set_basis(gbs);
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| 220 |
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| 221 | // first form AO basis overlap
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| 222 | RefSymmSCMatrix s(gbs->basisdim(), gbs->matrixkit());
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| 223 | Ref<SCElementOp> ov
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| 224 | = new OneBodyIntOp(new OneBodyIntIter(intgrl->overlap()));
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| 225 | s.assign(0.0);
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| 226 | s.element_op(ov);
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| 227 | ov=0;
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| 228 |
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| 229 | Ref<OverlapOrthog> orthog;
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| 230 | orthog = new OverlapOrthog(OverlapOrthog::Symmetric,
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| 231 | s,
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| 232 | s.kit(),
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| 233 | 0.0001,
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| 234 | 1);
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| 235 | orthog->basis_to_orthog_basis().print("basis to orthog basis");
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| 236 |
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| 237 | s = 0;
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| 238 | orthog = 0;
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| 239 |
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| 240 | cout << "Ending AO Orthog test" << endl;
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| 241 | }
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| 242 |
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| 243 | static void
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| 244 | test_eigvals(const Ref<GaussianBasisSet>& gbs, const Ref<Integral>& intgrl)
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| 245 | {
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| 246 | intgrl->set_basis(gbs);
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| 247 | Ref<PetiteList> pl = intgrl->petite_list();
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| 248 |
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| 249 | // form AO Hcore and evecs
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| 250 | RefSymmSCMatrix hcore_ao(gbs->basisdim(), gbs->matrixkit());
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| 251 | RefSCMatrix ao_evecs(gbs->basisdim(), gbs->basisdim(), gbs->matrixkit());
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| 252 | RefDiagSCMatrix ao_evals(gbs->basisdim(), gbs->matrixkit());
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| 253 |
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| 254 | hcore_ao.assign(0.0);
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| 255 |
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| 256 | Ref<SCElementOp> op
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| 257 | = new OneBodyIntOp(new OneBodyIntIter(intgrl->kinetic()));
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| 258 | hcore_ao.element_op(op);
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| 259 | op=0;
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| 260 |
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| 261 | Ref<OneBodyInt> nuc = intgrl->nuclear();
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| 262 | nuc->reinitialize();
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| 263 | op = new OneBodyIntOp(nuc);
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| 264 | hcore_ao.element_op(op);
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| 265 | op=0;
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| 266 |
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| 267 | hcore_ao.print("Hcore (AO)");
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| 268 |
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| 269 | hcore_ao.diagonalize(ao_evals, ao_evecs);
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| 270 | ao_evecs.print("AO Evecs");
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| 271 | ao_evals.print("AO Evals");
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| 272 |
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| 273 | // form SO Hcore and evecs
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| 274 | RefSymmSCMatrix hcore_so(pl->SO_basisdim(), gbs->so_matrixkit());
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| 275 | RefSCMatrix so_evecs(pl->SO_basisdim(), pl->SO_basisdim(),
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| 276 | gbs->so_matrixkit());
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| 277 | RefDiagSCMatrix so_evals(pl->SO_basisdim(), gbs->so_matrixkit());
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| 278 |
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| 279 | // reuse hcore_ao to get skeleton Hcore
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| 280 | hcore_ao.assign(0.0);
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| 281 |
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| 282 | op = new OneBodyIntOp(new SymmOneBodyIntIter(intgrl->kinetic(),pl));
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| 283 | hcore_ao.element_op(op);
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| 284 | op=0;
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| 285 |
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| 286 | nuc = intgrl->nuclear();
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| 287 | nuc->reinitialize();
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| 288 | op = new OneBodyIntOp(new SymmOneBodyIntIter(nuc,pl));
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| 289 | hcore_ao.element_op(op);
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| 290 | op=0;
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| 291 |
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| 292 | pl->symmetrize(hcore_ao, hcore_so);
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| 293 |
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| 294 | hcore_so.print("Hcore (SO)");
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| 295 |
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| 296 | hcore_so.diagonalize(so_evals, so_evecs);
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| 297 | so_evecs.print("SO Evecs");
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| 298 | so_evals.print("SO Evals");
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| 299 |
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| 300 | RefSCMatrix new_ao_evecs = pl->evecs_to_AO_basis(so_evecs);
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| 301 | new_ao_evecs.print("AO Evecs again");
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| 302 |
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| 303 | //RefSCMatrix new_so_evecs = pl->evecs_to_SO_basis(ao_evecs);
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| 304 | //new_so_evecs.print("SO Evecs again");
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| 305 |
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| 306 | pl->to_AO_basis(hcore_so).print("Hcore (AO) again");
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| 307 | }
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| 308 |
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| 309 | void
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| 310 | checkerror(const char *name, int shell, int func,
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| 311 | double numerical, double check)
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| 312 | {
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| 313 | double mag = fabs(check);
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| 314 | double err = fabs(numerical - check);
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| 315 | cout << scprintf("%2s %2d %2d %12.8f %12.8f er = %6.4f",
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| 316 | name, shell, func,
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| 317 | numerical, check, err/mag) << endl;
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| 318 | if (mag > 0.001) {
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| 319 | if (err/mag > 0.05) {
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| 320 | cout << scprintf("ERROR %2s %2d %2d %12.8f %12.8f er = %6.4f",
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| 321 | name, shell, func,
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| 322 | numerical, check, err/mag) << endl;
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| 323 | }
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| 324 | }
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| 325 | else if (err > 0.02) {
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| 326 | cout << scprintf("ERROR %2s %2d %2d %12.8f %12.8f ea = %16.14f",
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| 327 | name, shell, func, numerical, check, err) << endl;
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| 328 | }
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| 329 | }
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| 330 |
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| 331 | void
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| 332 | test_func_values(const Ref<GaussianBasisSet> &gbs,
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| 333 | const Ref<Integral> &integral)
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| 334 | {
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| 335 | cout << "testing basis function value gradient and hessian numerically"
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| 336 | << endl;
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| 337 |
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| 338 | int nbasis = gbs->nbasis();
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| 339 | double *b_val = new double[nbasis];
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| 340 | double *b_val_plsx = new double[nbasis];
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| 341 | double *b_val_mnsx = new double[nbasis];
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| 342 | double *b_val_plsy = new double[nbasis];
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| 343 | double *b_val_mnsy = new double[nbasis];
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| 344 | double *b_val_plsz = new double[nbasis];
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| 345 | double *b_val_mnsz = new double[nbasis];
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| 346 | double *b_val_plsyx = new double[nbasis];
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| 347 | double *b_val_mnsyx = new double[nbasis];
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| 348 | double *b_val_plszy = new double[nbasis];
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| 349 | double *b_val_mnszy = new double[nbasis];
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| 350 | double *b_val_plszx = new double[nbasis];
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| 351 | double *b_val_mnszx = new double[nbasis];
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| 352 | double *g_val = new double[3*nbasis];
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| 353 | double *h_val = new double[6*nbasis];
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| 354 |
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| 355 | const int x_ = 0;
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| 356 | const int y_ = 1;
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| 357 | const int z_ = 2;
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| 358 | const int xx_ = 0;
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| 359 | const int yx_ = 1;
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| 360 | const int yy_ = 2;
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| 361 | const int zx_ = 3;
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| 362 | const int zy_ = 4;
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| 363 | const int zz_ = 5;
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| 364 |
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| 365 | SCVector3 r;
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| 366 | SCVector3 d;
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| 367 | double delta = 0.001;
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| 368 | SCVector3 dx(delta, 0., 0.);
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| 369 | SCVector3 dy(0., delta, 0.);
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| 370 | SCVector3 dz(0., 0., delta);
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| 371 | SCVector3 dxy(delta, delta, 0.);
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| 372 | SCVector3 dxz(delta, 0., delta);
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| 373 | SCVector3 dyz(0., delta, delta);
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| 374 | double deltax = 0.1;
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| 375 | GaussianBasisSet::ValueData vdat(gbs, integral);
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| 376 | for (r.x()=0.0; r.x() < 1.0; r.x() += deltax) {
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| 377 | deltax *= 2.;
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| 378 | double deltay = 0.1;
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| 379 | for (r.y()=0.0; r.y() < 1.0; r.y() += deltay) {
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| 380 | deltay *= 2.;
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| 381 | double deltaz = 0.1;
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| 382 | for (r.z()=0.0; r.z() < 1.0; r.z() += deltaz) {
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| 383 | deltaz *= 2.;
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| 384 | cout << "R = " << r << endl;
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| 385 | gbs->hessian_values(r, &vdat, h_val, g_val, b_val);
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| 386 | gbs->values(r + dx, &vdat, b_val_plsx);
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| 387 | gbs->values(r - dx, &vdat, b_val_mnsx);
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| 388 | gbs->values(r + dy, &vdat, b_val_plsy);
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| 389 | gbs->values(r - dy, &vdat, b_val_mnsy);
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| 390 | gbs->values(r + dz, &vdat, b_val_plsz);
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| 391 | gbs->values(r - dz, &vdat, b_val_mnsz);
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| 392 | gbs->values(r + dxy, &vdat, b_val_plsyx);
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| 393 | gbs->values(r - dxy, &vdat, b_val_mnsyx);
|
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| 394 | gbs->values(r + dyz, &vdat, b_val_plszy);
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| 395 | gbs->values(r - dyz, &vdat, b_val_mnszy);
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| 396 | gbs->values(r + dxz, &vdat, b_val_plszx);
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| 397 | gbs->values(r - dxz, &vdat, b_val_mnszx);
|
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| 398 | for (int i=0; i<nbasis; i++) {
|
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| 399 | int shell = gbs->function_to_shell(i);
|
---|
| 400 | int func = i - gbs->shell_to_function(shell);
|
---|
| 401 | double g_val_test[3];
|
---|
| 402 | double h_val_test[6];
|
---|
| 403 | int x = i*3+x_;
|
---|
| 404 | int y = i*3+y_;
|
---|
| 405 | int z = i*3+z_;
|
---|
| 406 | g_val_test[x_] = 0.5*(b_val_plsx[i] - b_val_mnsx[i])/delta;
|
---|
| 407 | g_val_test[y_] = 0.5*(b_val_plsy[i] - b_val_mnsy[i])/delta;
|
---|
| 408 | g_val_test[z_] = 0.5*(b_val_plsz[i] - b_val_mnsz[i])/delta;
|
---|
| 409 | int xx = i*6+xx_;
|
---|
| 410 | int yx = i*6+yx_;
|
---|
| 411 | int yy = i*6+yy_;
|
---|
| 412 | int zx = i*6+zx_;
|
---|
| 413 | int zy = i*6+zy_;
|
---|
| 414 | int zz = i*6+zz_;
|
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| 415 | h_val_test[xx_]
|
---|
| 416 | = (b_val_plsx[i] + b_val_mnsx[i] - 2. * b_val[i])
|
---|
| 417 | * 1./(delta*delta);
|
---|
| 418 | h_val_test[yy_]
|
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| 419 | = (b_val_plsy[i] + b_val_mnsy[i] - 2. * b_val[i])
|
---|
| 420 | * 1./(delta*delta);
|
---|
| 421 | h_val_test[zz_]
|
---|
| 422 | = (b_val_plsz[i] + b_val_mnsz[i] - 2. * b_val[i])
|
---|
| 423 | * 1./(delta*delta);
|
---|
| 424 | h_val_test[yx_]
|
---|
| 425 | = 0.5 * ((b_val_plsyx[i]+b_val_mnsyx[i]-2.*b_val[i])
|
---|
| 426 | * 1. / (delta * delta)
|
---|
| 427 | - h_val_test[xx_] - h_val_test[yy_]);
|
---|
| 428 | h_val_test[zx_]
|
---|
| 429 | = 0.5 * ((b_val_plszx[i]+b_val_mnszx[i]-2.*b_val[i])
|
---|
| 430 | * 1. / (delta * delta)
|
---|
| 431 | - h_val_test[xx_] - h_val_test[zz_]);
|
---|
| 432 | h_val_test[zy_]
|
---|
| 433 | = 0.5 * ((b_val_plszy[i]+b_val_mnszy[i]-2.*b_val[i])
|
---|
| 434 | * 1. / (delta * delta)
|
---|
| 435 | - h_val_test[zz_] - h_val_test[yy_]);
|
---|
| 436 | checkerror("x", shell, func, g_val_test[x_], g_val[x]);
|
---|
| 437 | checkerror("y", shell, func, g_val_test[y_], g_val[y]);
|
---|
| 438 | checkerror("z", shell, func, g_val_test[z_], g_val[z]);
|
---|
| 439 | checkerror("xx", shell, func, h_val_test[xx_], h_val[xx]);
|
---|
| 440 | checkerror("yy", shell, func, h_val_test[yy_], h_val[yy]);
|
---|
| 441 | checkerror("zz", shell, func, h_val_test[zz_], h_val[zz]);
|
---|
| 442 | checkerror("yx", shell, func, h_val_test[yx_], h_val[yx]);
|
---|
| 443 | checkerror("zx", shell, func, h_val_test[zx_], h_val[zx]);
|
---|
| 444 | checkerror("zy", shell, func, h_val_test[zy_], h_val[zy]);
|
---|
| 445 | }
|
---|
| 446 | }
|
---|
| 447 | }
|
---|
| 448 | }
|
---|
| 449 | delete[] b_val;
|
---|
| 450 | delete[] b_val_plsx;
|
---|
| 451 | delete[] b_val_mnsx;
|
---|
| 452 | delete[] b_val_plsy;
|
---|
| 453 | delete[] b_val_mnsy;
|
---|
| 454 | delete[] b_val_plsz;
|
---|
| 455 | delete[] b_val_mnsz;
|
---|
| 456 | delete[] b_val_plsyx;
|
---|
| 457 | delete[] b_val_mnsyx;
|
---|
| 458 | delete[] b_val_plszy;
|
---|
| 459 | delete[] b_val_mnszy;
|
---|
| 460 | delete[] b_val_plszx;
|
---|
| 461 | delete[] b_val_mnszx;
|
---|
| 462 | delete[] g_val;
|
---|
| 463 | delete[] h_val;
|
---|
| 464 | }
|
---|
| 465 |
|
---|
| 466 | void
|
---|
| 467 | do_extent_test(const Ref<GaussianBasisSet> &gbs)
|
---|
| 468 | {
|
---|
| 469 | int i, j;
|
---|
| 470 | for (i=0; i<gbs->nshell(); i++) {
|
---|
| 471 | gbs->shell(i).print();
|
---|
| 472 | for (j=0; j<10; j++) {
|
---|
| 473 | cout << " " << gbs->shell(i).monobound(0.1*j);
|
---|
| 474 | }
|
---|
| 475 | cout << endl;
|
---|
| 476 | for (j=0; j<10; j++) {
|
---|
| 477 | double threshold = pow(10.0, -j);
|
---|
| 478 | //cout << " threshold = " << threshold << endl;
|
---|
| 479 | cout << " " << gbs->shell(i).extent(threshold);
|
---|
| 480 | }
|
---|
| 481 | cout << endl;
|
---|
| 482 | }
|
---|
| 483 |
|
---|
| 484 | Ref<ShellExtent> extent = new ShellExtent;
|
---|
| 485 | extent->init(gbs);
|
---|
| 486 | extent->print();
|
---|
| 487 | }
|
---|
| 488 |
|
---|
| 489 | void
|
---|
| 490 | do_gpetite_test(const Ref<GaussianBasisSet> &b1,
|
---|
| 491 | const Ref<GaussianBasisSet> &b2)
|
---|
| 492 | {
|
---|
| 493 | canonical_aabc c4(b1,b1,b1,b2);
|
---|
| 494 | Ref<GPetite4<canonical_aabc> > p4
|
---|
| 495 | = new GPetite4<canonical_aabc>(b1,b1,b1,b2,c4);
|
---|
| 496 | cout << "tesing GPetite4<canonical_aabc>" << endl;
|
---|
| 497 | for (int i=0; i<b1->nshell(); i++) {
|
---|
| 498 | for (int j=0; j<=i; j++) {
|
---|
| 499 | for (int k=0; k<b1->nshell(); k++) {
|
---|
| 500 | for (int l=0; l<b2->nshell(); l++) {
|
---|
| 501 | cout << " " << i
|
---|
| 502 | << " " << j
|
---|
| 503 | << " " << k
|
---|
| 504 | << " " << l
|
---|
| 505 | << " in p4: " << p4->in_p4(i,j,k,l)
|
---|
| 506 | << endl;
|
---|
| 507 | }
|
---|
| 508 | }
|
---|
| 509 | }
|
---|
| 510 | }
|
---|
| 511 | }
|
---|
| 512 |
|
---|
| 513 | int
|
---|
| 514 | main(int, char *argv[])
|
---|
| 515 | {
|
---|
| 516 | int i, j;
|
---|
| 517 |
|
---|
| 518 | char o[10000];
|
---|
| 519 | #ifdef HAVE_SSTREAM
|
---|
| 520 | ostringstream perlout(o);
|
---|
| 521 | #else
|
---|
| 522 | ostrstream perlout(o,sizeof(o));
|
---|
| 523 | #endif
|
---|
| 524 |
|
---|
| 525 | const char *filename = (argv[1]) ? argv[1] : SRCDIR "/btest.kv";
|
---|
| 526 |
|
---|
| 527 | Ref<KeyVal> keyval = new ParsedKeyVal(filename);
|
---|
| 528 |
|
---|
| 529 | Ref<Integral> intgrl = new IntegralV3;
|
---|
| 530 |
|
---|
| 531 | int doconcat = keyval->booleanvalue("concat");
|
---|
| 532 | int dooverlap = keyval->booleanvalue("overlap");
|
---|
| 533 | int doeigvals = keyval->booleanvalue("eigvals");
|
---|
| 534 | int dostate = keyval->booleanvalue("state");
|
---|
| 535 | int doso = keyval->booleanvalue("so");
|
---|
| 536 | int doatoms = keyval->booleanvalue("atoms");
|
---|
| 537 | int dopetite = keyval->booleanvalue("petite");
|
---|
| 538 | int dogpetite = keyval->booleanvalue("gpetite");
|
---|
| 539 | int dovalues = keyval->booleanvalue("values");
|
---|
| 540 | int doextent = keyval->booleanvalue("extent");
|
---|
| 541 | int doaoorthog = keyval->booleanvalue("aoorthog");
|
---|
| 542 |
|
---|
| 543 | if (doconcat) {
|
---|
| 544 | Ref<GaussianBasisSet> b1, b2;
|
---|
| 545 | b1 << keyval->describedclassvalue("concat1");
|
---|
| 546 | b2 << keyval->describedclassvalue("concat2");
|
---|
| 547 | Ref<GaussianBasisSet> b12 = b1->operator+(b2);
|
---|
| 548 | Ref<GaussianBasisSet> b121 = b12->operator+(b1);
|
---|
| 549 | b1->print();
|
---|
| 550 | b2->print();
|
---|
| 551 | b12->print();
|
---|
| 552 | b121->print();
|
---|
| 553 | }
|
---|
| 554 |
|
---|
| 555 | for (i=0; i<keyval->count("test"); i++) {
|
---|
| 556 | Ref<GaussianBasisSet> gbs;
|
---|
| 557 | gbs << keyval->describedclassvalue("test", i);
|
---|
| 558 | Ref<GaussianBasisSet> gbs2;
|
---|
| 559 | gbs2 << keyval->describedclassvalue("test2", i);
|
---|
| 560 |
|
---|
| 561 | if (dooverlap) test_overlap(gbs,gbs2,intgrl);
|
---|
| 562 |
|
---|
| 563 | if (doaoorthog) test_aoorthog(gbs,intgrl);
|
---|
| 564 |
|
---|
| 565 | if (doeigvals) test_eigvals(gbs,intgrl);
|
---|
| 566 |
|
---|
| 567 | if (dostate) {
|
---|
| 568 | StateOutBin out("btest.out");
|
---|
| 569 | SavableState::save_state(gbs.pointer(),out);
|
---|
| 570 | out.close();
|
---|
| 571 | StateInBin in("btest.out");
|
---|
| 572 | gbs << SavableState::restore_state(in);
|
---|
| 573 | gbs->print();
|
---|
| 574 | }
|
---|
| 575 |
|
---|
| 576 | if (dopetite) {
|
---|
| 577 | intgrl->set_basis(gbs);
|
---|
| 578 | intgrl->petite_list()->print();
|
---|
| 579 | }
|
---|
| 580 |
|
---|
| 581 | if (dogpetite) {
|
---|
| 582 | do_gpetite_test(gbs,gbs2);
|
---|
| 583 | }
|
---|
| 584 |
|
---|
| 585 | if (doso) {
|
---|
| 586 | do_so_test(keyval, intgrl, gbs);
|
---|
| 587 | }
|
---|
| 588 |
|
---|
| 589 | if (dovalues) {
|
---|
| 590 | intgrl->set_basis(gbs);
|
---|
| 591 | test_func_values(gbs,intgrl);
|
---|
| 592 | }
|
---|
| 593 |
|
---|
| 594 | if (doextent) {
|
---|
| 595 | do_extent_test(gbs);
|
---|
| 596 | }
|
---|
| 597 | }
|
---|
| 598 |
|
---|
| 599 | if (doatoms) {
|
---|
| 600 | const int nelem = 37;
|
---|
| 601 |
|
---|
| 602 | // Make H, C, and P molecules
|
---|
| 603 | Ref<Molecule> hmol = new Molecule();
|
---|
| 604 | hmol->add_atom(hmol->atominfo()->string_to_Z("H"),0,0,0);
|
---|
| 605 | Ref<Molecule> cmol = new Molecule();
|
---|
| 606 | cmol->add_atom(cmol->atominfo()->string_to_Z("C"),0,0,0);
|
---|
| 607 | Ref<Molecule> pmol = new Molecule();
|
---|
| 608 | pmol->add_atom(pmol->atominfo()->string_to_Z("P"),0,0,0);
|
---|
| 609 |
|
---|
| 610 | perlout << "%basissets = (" << endl;
|
---|
| 611 | int nbasis = keyval->count("basislist");
|
---|
| 612 | Ref<KeyVal> nullkv = new AssignedKeyVal();
|
---|
| 613 | for (i=0; i<nbasis; i++) {
|
---|
| 614 | int first_element = 1;
|
---|
| 615 | char *basisname = keyval->pcharvalue("basislist",i);
|
---|
| 616 | perlout << " \"" << basisname << "\" => (";
|
---|
| 617 | BasisFileSet bfs(nullkv);
|
---|
| 618 | Ref<KeyVal> basiskv = bfs.keyval(nullkv, basisname);
|
---|
| 619 | char elemstr[512];
|
---|
| 620 | elemstr[0] = '\0';
|
---|
| 621 | int last_elem_exists = 0;
|
---|
| 622 | int n0 = 0;
|
---|
| 623 | int n1 = 0;
|
---|
| 624 | int n2 = 0;
|
---|
| 625 | for (j=0; j<nelem; j++) {
|
---|
| 626 | Ref<AssignedKeyVal> atombaskv_a(new AssignedKeyVal());
|
---|
| 627 | Ref<KeyVal> atombaskv(atombaskv_a);
|
---|
| 628 | char keyword[256];
|
---|
| 629 | strcpy(keyword,":basis:");
|
---|
| 630 | strcat(keyword,hmol->atominfo()->name(j+1).c_str());
|
---|
| 631 | strcat(keyword,":");
|
---|
| 632 | strcat(keyword,basisname);
|
---|
| 633 | if (basiskv->exists(keyword)) {
|
---|
| 634 | if (!first_element) {
|
---|
| 635 | perlout << ",";
|
---|
| 636 | }
|
---|
| 637 | else {
|
---|
| 638 | first_element = 0;
|
---|
| 639 | }
|
---|
| 640 | // This will print the symbol:
|
---|
| 641 | //perlout << "\"" << AtomInfo::symbol(j+1) << "\"";
|
---|
| 642 | // This will print the atomic number:
|
---|
| 643 | perlout << j+1;
|
---|
| 644 | if (!last_elem_exists) {
|
---|
| 645 | if (elemstr[0] != '\0') strcat(elemstr,", ");
|
---|
| 646 | strcat(elemstr,hmol->atominfo()->symbol(j+1).c_str());
|
---|
| 647 | }
|
---|
| 648 | else if (last_elem_exists == 2) {
|
---|
| 649 | strcat(elemstr,"-");
|
---|
| 650 | }
|
---|
| 651 | last_elem_exists++;
|
---|
| 652 | if (j+1 == 1) {
|
---|
| 653 | atombaskv_a->assign("name", basisname);
|
---|
| 654 | atombaskv_a->assign("molecule", hmol.pointer());
|
---|
| 655 | Ref<GaussianBasisSet> gbs=new GaussianBasisSet(atombaskv);
|
---|
| 656 | n0 = gbs->nbasis();
|
---|
| 657 | }
|
---|
| 658 | if (j+1 == 6) {
|
---|
| 659 | atombaskv_a->assign("name", basisname);
|
---|
| 660 | atombaskv_a->assign("molecule", cmol.pointer());
|
---|
| 661 | Ref<GaussianBasisSet> gbs=new GaussianBasisSet(atombaskv);
|
---|
| 662 | n1 = gbs->nbasis();
|
---|
| 663 | }
|
---|
| 664 | if (j+1 == 15) {
|
---|
| 665 | atombaskv_a->assign("name", basisname);
|
---|
| 666 | atombaskv_a->assign("molecule", pmol.pointer());
|
---|
| 667 | Ref<GaussianBasisSet> gbs=new GaussianBasisSet(atombaskv);
|
---|
| 668 | n2 = gbs->nbasis();
|
---|
| 669 | }
|
---|
| 670 | }
|
---|
| 671 | else {
|
---|
| 672 | if (last_elem_exists > 1) {
|
---|
| 673 | if (last_elem_exists == 2) strcat(elemstr,", ");
|
---|
| 674 | strcat(elemstr, hmol->atominfo()->symbol(j).c_str());
|
---|
| 675 | }
|
---|
| 676 | last_elem_exists = 0;
|
---|
| 677 | }
|
---|
| 678 | }
|
---|
| 679 | perlout << ")";
|
---|
| 680 | if (i != nbasis-1) perlout << "," << endl;
|
---|
| 681 | perlout << endl;
|
---|
| 682 | cout << "<tr><td><tt>" << basisname
|
---|
| 683 | << "</tt><td>" << elemstr << "<td>";
|
---|
| 684 | if (n0>0) cout << n0;
|
---|
| 685 | cout << "<td>";
|
---|
| 686 | if (n1>0) cout << n1;
|
---|
| 687 | cout << "<td>";
|
---|
| 688 | if (n2>0) cout << n2;
|
---|
| 689 | cout << endl;
|
---|
| 690 | delete[] basisname;
|
---|
| 691 | }
|
---|
| 692 |
|
---|
| 693 | perlout << ")" << endl;
|
---|
| 694 |
|
---|
| 695 | #ifdef HAVE_SSTREAM
|
---|
| 696 | const char *perlout_s = perlout.str().c_str();
|
---|
| 697 | #else
|
---|
| 698 | perlout << ")" << ends;
|
---|
| 699 | char *perlout_s = perlout.str();
|
---|
| 700 | #endif
|
---|
| 701 | cout << perlout_s;
|
---|
| 702 | }
|
---|
| 703 |
|
---|
| 704 | return 0;
|
---|
| 705 | }
|
---|
| 706 |
|
---|
| 707 | /////////////////////////////////////////////////////////////////////////////
|
---|
| 708 |
|
---|
| 709 | // Local Variables:
|
---|
| 710 | // mode: c++
|
---|
| 711 | // c-file-style: "CLJ"
|
---|
| 712 | // End:
|
---|