| 1 | // | 
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| 2 | // scfgradient.cc --- implementation of SCF::compute_gradient | 
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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 <iostream> | 
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| 29 |  | 
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| 30 | #include <stdexcept> | 
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| 31 |  | 
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| 32 | #include <util/misc/timer.h> | 
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| 33 | #include <util/misc/formio.h> | 
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| 34 |  | 
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| 35 | #include <math/scmat/offset.h> | 
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| 36 | #include <math/scmat/local.h> | 
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| 37 |  | 
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| 38 | #include <chemistry/qc/basis/obint.h> | 
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| 39 |  | 
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| 40 | #include <chemistry/qc/scf/scf.h> | 
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| 41 | #include <chemistry/qc/scf/scflocal.h> | 
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| 42 |  | 
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| 43 | using namespace sc; | 
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| 44 |  | 
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| 45 | ////////////////////////////////////////////////////////////////////////////// | 
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| 46 |  | 
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| 47 | static void | 
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| 48 | ob_gradient(const Ref<OneBodyDerivInt>& derint, double * gradient, | 
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| 49 | const RefSymmSCMatrix& density, const Ref<GaussianBasisSet>& gbs_, | 
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| 50 | const Ref<MessageGrp>& grp) | 
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| 51 | { | 
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| 52 | int gsh=0; | 
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| 53 |  | 
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| 54 | GaussianBasisSet& gbs = *gbs_.pointer(); | 
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| 55 | Molecule& mol = *gbs_->molecule().pointer(); | 
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| 56 |  | 
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| 57 | Ref<SCMatrixSubblockIter> diter = | 
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| 58 | density->local_blocks(SCMatrixSubblockIter::Read); | 
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| 59 |  | 
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| 60 | for (diter->begin(); diter->ready(); diter->next()) { | 
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| 61 | SCMatrixBlock *dblk = diter->block(); | 
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| 62 | double *ddata; | 
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| 63 | int istart, iend; | 
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| 64 | int jstart, jend; | 
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| 65 | int sub=0; | 
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| 66 |  | 
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| 67 | ddata = get_tri_block(dblk, istart, iend, jstart, jend, sub); | 
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| 68 | if (!ddata) { | 
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| 69 | ExEnv::errn() << indent << | 
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| 70 | "ob_gradient: can't figure out what density block is\n"; | 
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| 71 | abort(); | 
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| 72 | } | 
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| 73 |  | 
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| 74 | if (istart >= iend || jstart >= jend) | 
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| 75 | continue; | 
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| 76 |  | 
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| 77 | int ishstart = gbs.function_to_shell(istart); | 
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| 78 | int ishend = (iend) ? gbs.function_to_shell(iend-1) : 0; | 
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| 79 |  | 
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| 80 | int jshstart = gbs.function_to_shell(jstart); | 
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| 81 | int jshend = (jend) ? gbs.function_to_shell(jend-1) : 0; | 
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| 82 |  | 
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| 83 | for (int ish=ishstart; ish <= ishend; ish++) { | 
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| 84 | GaussianShell& gsi = gbs(ish); | 
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| 85 |  | 
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| 86 | int ist = gbs.shell_to_function(ish); | 
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| 87 | int ien = ist + gsi.nfunction(); | 
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| 88 |  | 
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| 89 | for (int jsh=jshstart; jsh <= jshend; jsh++, gsh++) { | 
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| 90 | if (jsh > ish) | 
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| 91 | break; | 
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| 92 |  | 
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| 93 | GaussianShell& gsj = gbs(jsh); | 
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| 94 |  | 
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| 95 | int jst = gbs.shell_to_function(jsh); | 
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| 96 | int jen = jst + gsj.nfunction(); | 
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| 97 |  | 
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| 98 | for (int x=0; x < mol.natom(); x++) { | 
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| 99 | derint->compute_shell(ish,jsh,x); | 
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| 100 | const double *buf = derint->buffer(); | 
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| 101 |  | 
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| 102 | int index=0; | 
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| 103 | double dx=0, dy=0, dz=0; | 
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| 104 | for (int i=ist; i < ien; i++) { | 
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| 105 | for (int j=jst; j < jen; j++) { | 
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| 106 | if (i < istart || i >= iend || j < jstart || j >= jend | 
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| 107 | || j > i) { | 
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| 108 | index += 3; | 
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| 109 | } else { | 
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| 110 | int doff = (sub) ? ij_offset(i,j) : | 
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| 111 | ij_offset(i-istart,j-jstart); | 
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| 112 | double denij = ddata[doff]; | 
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| 113 | if (j!=i) denij *= 2.0; | 
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| 114 | dx += buf[index++] * denij; | 
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| 115 | dy += buf[index++] * denij; | 
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| 116 | dz += buf[index++] * denij; | 
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| 117 | } | 
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| 118 | } | 
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| 119 | } | 
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| 120 |  | 
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| 121 | gradient[x*3+0] += dx; | 
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| 122 | gradient[x*3+1] += dy; | 
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| 123 | gradient[x*3+2] += dz; | 
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| 124 | } | 
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| 125 | } | 
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| 126 | } | 
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| 127 | } | 
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| 128 | } | 
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| 129 |  | 
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| 130 | ////////////////////////////////////////////////////////////////////////////// | 
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| 131 |  | 
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| 132 | void | 
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| 133 | SCF::compute_gradient(const RefSCVector& gradient) | 
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| 134 | { | 
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| 135 | tim_enter("compute gradient"); | 
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| 136 | int i; | 
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| 137 |  | 
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| 138 | init_gradient(); | 
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| 139 |  | 
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| 140 | int n3=gradient.n(); | 
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| 141 |  | 
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| 142 | if (atom_basis().nonnull()) { | 
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| 143 | throw std::runtime_error("SCF::compute_gradient: atom_basis not supported"); | 
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| 144 | } | 
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| 145 |  | 
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| 146 | // do the nuclear contribution | 
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| 147 | tim_enter("nuc rep"); | 
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| 148 |  | 
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| 149 | double *g = new double[n3]; | 
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| 150 | nuclear_repulsion_energy_gradient(g); | 
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| 151 |  | 
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| 152 | if (debug_) { | 
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| 153 | gradient.assign(g); | 
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| 154 | print_natom_3(gradient,"Nuclear Contribution to the Gradient:"); | 
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| 155 | } | 
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| 156 |  | 
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| 157 | double *o = new double[n3]; | 
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| 158 | memset(o,0,sizeof(double)*gradient.n()); | 
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| 159 |  | 
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| 160 | // form overlap contribution | 
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| 161 | tim_change("overlap gradient"); | 
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| 162 | RefSymmSCMatrix dens = lagrangian(); | 
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| 163 | Ref<OneBodyDerivInt> derint = integral()->overlap_deriv(); | 
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| 164 | ob_gradient(derint, o, dens, basis(), scf_grp_); | 
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| 165 |  | 
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| 166 | scf_grp_->sum(o,n3); | 
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| 167 |  | 
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| 168 | if (debug_) { | 
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| 169 | gradient.assign(o); | 
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| 170 | print_natom_3(gradient,"Overlap Contribution to the Gradient:"); | 
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| 171 | } | 
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| 172 |  | 
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| 173 | for (i=0; i < n3; i++) g[i] += o[i]; | 
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| 174 |  | 
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| 175 | // other one electron contributions | 
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| 176 | tim_change("one electron gradient"); | 
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| 177 | memset(o,0,sizeof(double)*gradient.n()); | 
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| 178 | dens = gradient_density(); | 
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| 179 | derint = integral()->hcore_deriv(); | 
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| 180 | ob_gradient(derint, o, dens, basis(), scf_grp_); | 
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| 181 |  | 
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| 182 | scf_grp_->sum(o,n3); | 
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| 183 |  | 
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| 184 | if (debug_) { | 
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| 185 | gradient.assign(o); | 
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| 186 | print_natom_3(gradient,"One-Electron Contribution to the Gradient:"); | 
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| 187 | } | 
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| 188 |  | 
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| 189 | for (i=0; i < n3; i++) g[i] += o[i]; | 
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| 190 |  | 
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| 191 | dens=0; | 
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| 192 | derint=0; | 
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| 193 |  | 
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| 194 | // now calculate two electron contribution | 
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| 195 | tim_change("two electron gradient"); | 
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| 196 | memset(o,0,sizeof(double)*gradient.n()); | 
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| 197 | two_body_deriv(o); | 
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| 198 | tim_exit("two electron gradient"); | 
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| 199 |  | 
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| 200 | if (debug_) { | 
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| 201 | gradient.assign(o); | 
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| 202 | print_natom_3(gradient,"Two-Electron Contribution to the Gradient:"); | 
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| 203 | } | 
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| 204 |  | 
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| 205 | for (i=0; i < n3; i++) g[i] += o[i]; | 
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| 206 |  | 
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| 207 | gradient.assign(g); | 
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| 208 | delete[] g; | 
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| 209 | delete[] o; | 
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| 210 |  | 
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| 211 | if (debug_) { | 
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| 212 | print_natom_3(gradient,"Total Gradient:"); | 
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| 213 | } | 
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| 214 |  | 
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| 215 | done_gradient(); | 
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| 216 | tim_exit("compute gradient"); | 
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| 217 | //tim_print(0); | 
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| 218 | } | 
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| 219 |  | 
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| 220 | ////////////////////////////////////////////////////////////////////////////// | 
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| 221 |  | 
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| 222 | void | 
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| 223 | SCF::compute_hessian(const RefSymmSCMatrix& hessian) | 
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| 224 | { | 
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| 225 | } | 
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| 226 |  | 
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| 227 | ///////////////////////////////////////////////////////////////////////////// | 
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| 228 |  | 
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| 229 | // Local Variables: | 
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| 230 | // mode: c++ | 
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| 231 | // c-file-style: "ETS" | 
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| 232 | // End: | 
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