| 1 | // | 
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| 2 | // clscf.cc --- implementation of the closed shell SCF class | 
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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 | #ifdef __GNUC__ | 
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| 29 | #pragma implementation | 
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| 30 | #endif | 
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| 31 |  | 
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| 32 | #include <math.h> | 
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| 33 |  | 
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| 34 | #include <util/misc/timer.h> | 
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| 35 | #include <util/misc/formio.h> | 
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| 36 | #include <util/state/stateio.h> | 
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| 37 |  | 
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| 38 | #include <math/scmat/block.h> | 
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| 39 | #include <math/scmat/blocked.h> | 
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| 40 | #include <math/scmat/blkiter.h> | 
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| 41 | #include <math/scmat/local.h> | 
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| 42 |  | 
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| 43 | #include <math/optimize/scextrapmat.h> | 
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| 44 |  | 
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| 45 | #include <chemistry/qc/basis/petite.h> | 
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| 46 |  | 
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| 47 | #include <chemistry/qc/scf/scflocal.h> | 
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| 48 | #include <chemistry/qc/scf/scfops.h> | 
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| 49 | #include <chemistry/qc/scf/clscf.h> | 
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| 50 | #include <chemistry/qc/scf/ltbgrad.h> | 
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| 51 | #include <chemistry/qc/scf/clhftmpl.h> | 
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| 52 |  | 
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| 53 | using namespace std; | 
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| 54 | using namespace sc; | 
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| 55 |  | 
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| 56 | namespace sc { | 
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| 57 |  | 
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| 58 | /////////////////////////////////////////////////////////////////////////// | 
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| 59 | // CLSCF | 
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| 60 |  | 
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| 61 | static ClassDesc CLSCF_cd( | 
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| 62 | typeid(CLSCF),"CLSCF",2,"public SCF", | 
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| 63 | 0, 0, 0); | 
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| 64 |  | 
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| 65 | CLSCF::CLSCF(StateIn& s) : | 
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| 66 | SavableState(s), | 
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| 67 | SCF(s), | 
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| 68 | cl_fock_(this) | 
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| 69 | { | 
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| 70 | cl_fock_.result_noupdate() = | 
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| 71 | basis_matrixkit()->symmmatrix(so_dimension()); | 
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| 72 | cl_fock_.restore_state(s); | 
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| 73 | cl_fock_.result_noupdate().restore(s); | 
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| 74 |  | 
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| 75 | s.get(user_occupations_); | 
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| 76 | s.get(tndocc_); | 
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| 77 | s.get(nirrep_); | 
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| 78 | s.get(ndocc_); | 
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| 79 | if (s.version(::class_desc<CLSCF>()) >= 2) { | 
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| 80 | s.get(initial_ndocc_); | 
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| 81 | most_recent_pg_ << SavableState::restore_state(s); | 
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| 82 | } else { | 
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| 83 | initial_ndocc_ = new int[nirrep_]; | 
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| 84 | memcpy(initial_ndocc_, ndocc_, sizeof(int)*nirrep_); | 
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| 85 | } | 
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| 86 |  | 
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| 87 | // now take care of memory stuff | 
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| 88 | init_mem(2); | 
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| 89 | } | 
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| 90 |  | 
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| 91 | CLSCF::CLSCF(const Ref<KeyVal>& keyval) : | 
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| 92 | SCF(keyval), | 
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| 93 | cl_fock_(this) | 
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| 94 | { | 
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| 95 | int i; | 
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| 96 | int me = scf_grp_->me(); | 
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| 97 |  | 
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| 98 | cl_fock_.compute()=0; | 
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| 99 | cl_fock_.computed()=0; | 
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| 100 |  | 
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| 101 | // calculate the total nuclear charge | 
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| 102 | double Znuc=molecule()->nuclear_charge(); | 
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| 103 |  | 
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| 104 | // check to see if this is to be a charged molecule | 
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| 105 | double charge = keyval->doublevalue("total_charge"); | 
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| 106 |  | 
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| 107 | int nelectron = (int)((Znuc-charge+1.0e-4)); | 
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| 108 |  | 
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| 109 | // now see if ndocc was specified | 
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| 110 | if (keyval->exists("ndocc")) { | 
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| 111 | tndocc_ = keyval->intvalue("ndocc"); | 
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| 112 | } else { | 
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| 113 | tndocc_ = nelectron/2; | 
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| 114 | if (nelectron%2 && me==0) { | 
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| 115 | ExEnv::err0() << endl | 
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| 116 | << indent << "CLSCF::init: Warning, there's a leftover electron.\n" | 
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| 117 | << incindent << indent << "total_charge = " << charge << endl | 
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| 118 | << indent << "total nuclear charge = " << Znuc << endl | 
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| 119 | << indent << "ndocc_ = " << tndocc_ << endl << decindent; | 
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| 120 | } | 
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| 121 | } | 
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| 122 |  | 
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| 123 | ExEnv::out0() << endl << indent | 
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| 124 | << "CLSCF::init: total charge = " << Znuc-2*tndocc_ << endl << endl; | 
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| 125 |  | 
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| 126 | nirrep_ = molecule()->point_group()->char_table().ncomp(); | 
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| 127 |  | 
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| 128 | ndocc_ = read_occ(keyval, "docc", nirrep_); | 
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| 129 | if (ndocc_) { | 
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| 130 | user_occupations_=1; | 
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| 131 | initial_ndocc_ = new int[nirrep_]; | 
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| 132 | memcpy(initial_ndocc_, ndocc_, sizeof(int)*nirrep_); | 
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| 133 | } else { | 
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| 134 | initial_ndocc_=0; | 
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| 135 | ndocc_=0; | 
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| 136 | user_occupations_=0; | 
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| 137 | set_occupations(0); | 
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| 138 | } | 
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| 139 |  | 
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| 140 | ExEnv::out0() << indent << "docc = ["; | 
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| 141 | for (i=0; i < nirrep_; i++) | 
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| 142 | ExEnv::out0() << " " << ndocc_[i]; | 
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| 143 | ExEnv::out0() << " ]\n"; | 
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| 144 |  | 
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| 145 | ExEnv::out0() << indent << "nbasis = " << basis()->nbasis() << endl; | 
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| 146 |  | 
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| 147 | // check to see if this was done in SCF(keyval) | 
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| 148 | if (!keyval->exists("maxiter")) | 
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| 149 | maxiter_ = 100; | 
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| 150 |  | 
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| 151 | // now take care of memory stuff | 
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| 152 | init_mem(2); | 
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| 153 | } | 
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| 154 |  | 
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| 155 | CLSCF::~CLSCF() | 
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| 156 | { | 
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| 157 | if (ndocc_) { | 
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| 158 | delete[] ndocc_; | 
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| 159 | ndocc_=0; | 
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| 160 | } | 
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| 161 | delete[] initial_ndocc_; | 
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| 162 | } | 
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| 163 |  | 
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| 164 | void | 
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| 165 | CLSCF::save_data_state(StateOut& s) | 
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| 166 | { | 
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| 167 | SCF::save_data_state(s); | 
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| 168 |  | 
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| 169 | cl_fock_.save_data_state(s); | 
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| 170 | cl_fock_.result_noupdate().save(s); | 
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| 171 |  | 
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| 172 | s.put(user_occupations_); | 
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| 173 | s.put(tndocc_); | 
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| 174 | s.put(nirrep_); | 
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| 175 | s.put(ndocc_,nirrep_); | 
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| 176 | s.put(initial_ndocc_,nirrep_); | 
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| 177 | SavableState::save_state(most_recent_pg_.pointer(),s); | 
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| 178 | } | 
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| 179 |  | 
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| 180 | double | 
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| 181 | CLSCF::occupation(int ir, int i) | 
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| 182 | { | 
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| 183 | if (i < ndocc_[ir]) return 2.0; | 
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| 184 | return 0.0; | 
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| 185 | } | 
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| 186 |  | 
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| 187 | int | 
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| 188 | CLSCF::n_fock_matrices() const | 
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| 189 | { | 
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| 190 | return 1; | 
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| 191 | } | 
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| 192 |  | 
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| 193 | RefSymmSCMatrix | 
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| 194 | CLSCF::fock(int n) | 
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| 195 | { | 
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| 196 | if (n > 0) { | 
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| 197 | ExEnv::err0() << indent | 
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| 198 | << "CLSCF::fock: there is only one fock matrix, " | 
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| 199 | << scprintf("but fock(%d) was requested\n",n); | 
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| 200 | abort(); | 
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| 201 | } | 
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| 202 |  | 
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| 203 | return cl_fock_.result(); | 
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| 204 | } | 
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| 205 |  | 
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| 206 | int | 
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| 207 | CLSCF::spin_polarized() | 
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| 208 | { | 
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| 209 | return 0; | 
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| 210 | } | 
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| 211 |  | 
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| 212 | void | 
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| 213 | CLSCF::print(ostream&o) const | 
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| 214 | { | 
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| 215 | SCF::print(o); | 
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| 216 | o << indent << "CLSCF Parameters:\n" << incindent | 
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| 217 | << indent << "charge = " << molecule()->nuclear_charge()-2*tndocc_ << endl | 
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| 218 | << indent << "ndocc = " << tndocc_ << endl | 
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| 219 | << indent << "docc = ["; | 
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| 220 | for (int i=0; i < nirrep_; i++) | 
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| 221 | o << " " << ndocc_[i]; | 
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| 222 | o << " ]" << endl << decindent << endl; | 
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| 223 | } | 
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| 224 |  | 
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| 225 | ////////////////////////////////////////////////////////////////////////////// | 
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| 226 |  | 
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| 227 | void | 
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| 228 | CLSCF::set_occupations(const RefDiagSCMatrix& ev) | 
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| 229 | { | 
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| 230 | if (user_occupations_ || (initial_ndocc_ && ev.null())) { | 
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| 231 | if (form_occupations(ndocc_, initial_ndocc_)) { | 
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| 232 | most_recent_pg_ = new PointGroup(molecule()->point_group()); | 
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| 233 | return; | 
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| 234 | } | 
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| 235 | ExEnv::out0() << indent | 
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| 236 | << "CLSCF: WARNING: reforming occupation vector from scratch" << endl; | 
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| 237 | } | 
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| 238 |  | 
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| 239 | if (nirrep_==1) { | 
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| 240 | delete[] ndocc_; | 
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| 241 | ndocc_=new int[1]; | 
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| 242 | ndocc_[0]=tndocc_; | 
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| 243 | if (!initial_ndocc_) { | 
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| 244 | initial_ndocc_=new int[1]; | 
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| 245 | initial_ndocc_[0]=tndocc_; | 
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| 246 | } | 
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| 247 | return; | 
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| 248 | } | 
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| 249 |  | 
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| 250 | int i,j; | 
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| 251 |  | 
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| 252 | RefDiagSCMatrix evals; | 
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| 253 |  | 
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| 254 | if (ev.null()) { | 
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| 255 | initial_vector(0); | 
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| 256 | evals = eigenvalues_.result_noupdate(); | 
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| 257 | } | 
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| 258 | else | 
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| 259 | evals = ev; | 
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| 260 |  | 
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| 261 | // first convert evals to something we can deal with easily | 
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| 262 | BlockedDiagSCMatrix *evalsb = require_dynamic_cast<BlockedDiagSCMatrix*>(evals, | 
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| 263 | "CLSCF::set_occupations"); | 
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| 264 |  | 
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| 265 | double **vals = new double*[nirrep_]; | 
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| 266 | for (i=0; i < nirrep_; i++) { | 
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| 267 | int nf=oso_dimension()->blocks()->size(i); | 
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| 268 | if (nf) { | 
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| 269 | vals[i] = new double[nf]; | 
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| 270 | evalsb->block(i)->convert(vals[i]); | 
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| 271 | } else { | 
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| 272 | vals[i] = 0; | 
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| 273 | } | 
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| 274 | } | 
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| 275 |  | 
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| 276 | // now loop to find the tndocc_ lowest eigenvalues and populate those | 
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| 277 | // MO's | 
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| 278 | int *newocc = new int[nirrep_]; | 
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| 279 | memset(newocc,0,sizeof(int)*nirrep_); | 
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| 280 |  | 
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| 281 | for (i=0; i < tndocc_; i++) { | 
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| 282 | // find lowest eigenvalue | 
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| 283 | int lir=0,ln=0; | 
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| 284 | double lowest=999999999; | 
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| 285 |  | 
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| 286 | for (int ir=0; ir < nirrep_; ir++) { | 
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| 287 | int nf=oso_dimension()->blocks()->size(ir); | 
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| 288 | if (!nf) | 
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| 289 | continue; | 
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| 290 | for (j=0; j < nf; j++) { | 
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| 291 | if (vals[ir][j] < lowest) { | 
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| 292 | lowest=vals[ir][j]; | 
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| 293 | lir=ir; | 
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| 294 | ln=j; | 
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| 295 | } | 
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| 296 | } | 
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| 297 | } | 
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| 298 | vals[lir][ln]=999999999; | 
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| 299 | newocc[lir]++; | 
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| 300 | } | 
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| 301 |  | 
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| 302 | // get rid of vals | 
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| 303 | for (i=0; i < nirrep_; i++) | 
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| 304 | if (vals[i]) | 
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| 305 | delete[] vals[i]; | 
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| 306 | delete[] vals; | 
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| 307 |  | 
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| 308 | if (!ndocc_) { | 
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| 309 | ndocc_=newocc; | 
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| 310 | } else if (most_recent_pg_.nonnull() | 
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| 311 | && most_recent_pg_->equiv(molecule()->point_group())) { | 
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| 312 | // test to see if newocc is different from ndocc_ | 
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| 313 | for (i=0; i < nirrep_; i++) { | 
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| 314 | if (ndocc_[i] != newocc[i]) { | 
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| 315 | ExEnv::err0() << indent << "CLSCF::set_occupations:  WARNING!!!!\n" | 
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| 316 | << incindent << indent | 
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| 317 | << scprintf("occupations for irrep %d have changed\n",i+1) | 
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| 318 | << indent | 
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| 319 | << scprintf("ndocc was %d, changed to %d", ndocc_[i],newocc[i]) | 
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| 320 | << endl << decindent; | 
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| 321 | } | 
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| 322 | } | 
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| 323 |  | 
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| 324 | memcpy(ndocc_,newocc,sizeof(int)*nirrep_); | 
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| 325 | delete[] newocc; | 
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| 326 | } | 
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| 327 |  | 
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| 328 | if (!initial_ndocc_ | 
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| 329 | || initial_pg_->equiv(molecule()->point_group())) { | 
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| 330 | delete[] initial_ndocc_; | 
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| 331 | initial_ndocc_ = new int[nirrep_]; | 
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| 332 | memcpy(initial_ndocc_,ndocc_,sizeof(int)*nirrep_); | 
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| 333 | } | 
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| 334 |  | 
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| 335 | most_recent_pg_ = new PointGroup(molecule()->point_group()); | 
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| 336 | } | 
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| 337 |  | 
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| 338 | void | 
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| 339 | CLSCF::symmetry_changed() | 
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| 340 | { | 
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| 341 | SCF::symmetry_changed(); | 
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| 342 | cl_fock_.result_noupdate()=0; | 
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| 343 | nirrep_ = molecule()->point_group()->char_table().ncomp(); | 
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| 344 | set_occupations(0); | 
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| 345 | } | 
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| 346 |  | 
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| 347 | ////////////////////////////////////////////////////////////////////////////// | 
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| 348 | // | 
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| 349 | // scf things | 
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| 350 | // | 
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| 351 |  | 
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| 352 | void | 
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| 353 | CLSCF::init_vector() | 
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| 354 | { | 
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| 355 | init_threads(); | 
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| 356 |  | 
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| 357 | // initialize the two electron integral classes | 
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| 358 | ExEnv::out0() << indent | 
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| 359 | << "integral intermediate storage = " << integral()->storage_used() | 
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| 360 | << " bytes" << endl; | 
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| 361 | ExEnv::out0() << indent | 
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| 362 | << "integral cache = " << integral()->storage_unused() | 
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| 363 | << " bytes" << endl; | 
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| 364 |  | 
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| 365 | // allocate storage for other temp matrices | 
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| 366 | cl_dens_ = hcore_.clone(); | 
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| 367 | cl_dens_.assign(0.0); | 
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| 368 |  | 
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| 369 | cl_dens_diff_ = hcore_.clone(); | 
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| 370 | cl_dens_diff_.assign(0.0); | 
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| 371 |  | 
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| 372 | // gmat is in AO basis | 
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| 373 | cl_gmat_ = basis()->matrixkit()->symmmatrix(basis()->basisdim()); | 
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| 374 | cl_gmat_.assign(0.0); | 
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| 375 |  | 
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| 376 | if (cl_fock_.result_noupdate().null()) { | 
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| 377 | cl_fock_ = hcore_.clone(); | 
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| 378 | cl_fock_.result_noupdate().assign(0.0); | 
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| 379 | } | 
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| 380 |  | 
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| 381 | // set up trial vector | 
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| 382 | initial_vector(1); | 
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| 383 |  | 
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| 384 | oso_scf_vector_ = oso_eigenvectors_.result_noupdate(); | 
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| 385 |  | 
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| 386 | if (accumddh_.nonnull()) accumddh_->init(this); | 
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| 387 | } | 
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| 388 |  | 
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| 389 | void | 
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| 390 | CLSCF::done_vector() | 
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| 391 | { | 
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| 392 | done_threads(); | 
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| 393 |  | 
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| 394 | if (accumddh_.nonnull()) { | 
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| 395 | accumddh_->print_summary(); | 
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| 396 | accumddh_->done(); | 
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| 397 | } | 
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| 398 |  | 
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| 399 | cl_gmat_ = 0; | 
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| 400 | cl_dens_ = 0; | 
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| 401 | cl_dens_diff_ = 0; | 
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| 402 |  | 
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| 403 | oso_scf_vector_ = 0; | 
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| 404 | } | 
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| 405 |  | 
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| 406 | void | 
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| 407 | CLSCF::reset_density() | 
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| 408 | { | 
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| 409 | cl_gmat_.assign(0.0); | 
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| 410 | cl_dens_diff_.assign(cl_dens_); | 
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| 411 | } | 
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| 412 |  | 
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| 413 | RefSymmSCMatrix | 
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| 414 | CLSCF::density() | 
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| 415 | { | 
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| 416 | if (!density_.computed()) { | 
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| 417 | RefSymmSCMatrix dens(so_dimension(), basis_matrixkit()); | 
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| 418 | so_density(dens, 2.0); | 
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| 419 | dens.scale(2.0); | 
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| 420 |  | 
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| 421 | density_ = dens; | 
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| 422 | // only flag the density as computed if the calc is converged | 
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| 423 | if (!value_needed()) density_.computed() = 1; | 
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| 424 | } | 
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| 425 |  | 
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| 426 | return density_.result_noupdate(); | 
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| 427 | } | 
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| 428 |  | 
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| 429 | double | 
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| 430 | CLSCF::new_density() | 
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| 431 | { | 
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| 432 | // copy current density into density diff and scale by -1.  later we'll | 
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| 433 | // add the new density to this to get the density difference. | 
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| 434 | cl_dens_diff_.assign(cl_dens_); | 
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| 435 | cl_dens_diff_.scale(-1.0); | 
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| 436 |  | 
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| 437 | so_density(cl_dens_, 2.0); | 
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| 438 | cl_dens_.scale(2.0); | 
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| 439 |  | 
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| 440 | cl_dens_diff_.accumulate(cl_dens_); | 
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| 441 |  | 
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| 442 | Ref<SCElementScalarProduct> sp(new SCElementScalarProduct); | 
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| 443 | cl_dens_diff_.element_op(sp.pointer(), cl_dens_diff_); | 
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| 444 |  | 
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| 445 | double delta = sp->result(); | 
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| 446 | delta = sqrt(delta/i_offset(cl_dens_diff_.n())); | 
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| 447 |  | 
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| 448 | return delta; | 
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| 449 | } | 
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| 450 |  | 
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| 451 | double | 
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| 452 | CLSCF::scf_energy() | 
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| 453 | { | 
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| 454 | RefSymmSCMatrix t = cl_fock_.result_noupdate().copy(); | 
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| 455 | t.accumulate(hcore_); | 
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| 456 |  | 
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| 457 | SCFEnergy *eop = new SCFEnergy; | 
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| 458 | eop->reference(); | 
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| 459 | Ref<SCElementOp2> op = eop; | 
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| 460 | t.element_op(op,cl_dens_); | 
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| 461 | op=0; | 
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| 462 | eop->dereference(); | 
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| 463 |  | 
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| 464 | double eelec = eop->result(); | 
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| 465 |  | 
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| 466 | delete eop; | 
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| 467 |  | 
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| 468 | return eelec; | 
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| 469 | } | 
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| 470 |  | 
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| 471 | Ref<SCExtrapData> | 
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| 472 | CLSCF::extrap_data() | 
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| 473 | { | 
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| 474 | Ref<SCExtrapData> data = | 
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| 475 | new SymmSCMatrixSCExtrapData(cl_fock_.result_noupdate()); | 
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| 476 | return data; | 
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| 477 | } | 
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| 478 |  | 
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| 479 | RefSymmSCMatrix | 
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| 480 | CLSCF::effective_fock() | 
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| 481 | { | 
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| 482 | // just return MO fock matrix.  use fock() instead of cl_fock_ just in | 
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| 483 | // case this is called from someplace outside SCF::compute_vector() | 
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| 484 | RefSymmSCMatrix mofock(oso_dimension(), basis_matrixkit()); | 
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| 485 | mofock.assign(0.0); | 
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| 486 |  | 
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| 487 | if (debug_ > 1) { | 
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| 488 | fock(0).print("CL Fock matrix in SO basis"); | 
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| 489 | } | 
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| 490 |  | 
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| 491 | // use eigenvectors if scf_vector_ is null | 
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| 492 | if (oso_scf_vector_.null()) | 
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| 493 | mofock.accumulate_transform(eigenvectors(), fock(0), | 
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| 494 | SCMatrix::TransposeTransform); | 
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| 495 | else | 
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| 496 | mofock.accumulate_transform(so_to_orthog_so().t() * oso_scf_vector_, | 
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| 497 | fock(0), | 
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| 498 | SCMatrix::TransposeTransform); | 
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| 499 |  | 
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| 500 | return mofock; | 
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| 501 | } | 
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| 502 |  | 
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| 503 | ////////////////////////////////////////////////////////////////////////////// | 
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| 504 |  | 
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| 505 | void | 
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| 506 | CLSCF::init_gradient() | 
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| 507 | { | 
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| 508 | // presumably the eigenvectors have already been computed by the time | 
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| 509 | // we get here | 
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| 510 | oso_scf_vector_ = oso_eigenvectors_.result_noupdate(); | 
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| 511 | } | 
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| 512 |  | 
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| 513 | void | 
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| 514 | CLSCF::done_gradient() | 
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| 515 | { | 
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| 516 | cl_dens_=0; | 
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| 517 | oso_scf_vector_ = 0; | 
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| 518 | } | 
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| 519 |  | 
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| 520 | ///////////////////////////////////////////////////////////////////////////// | 
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| 521 |  | 
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| 522 | class CLLag : public BlockedSCElementOp { | 
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| 523 | private: | 
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| 524 | CLSCF *scf_; | 
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| 525 |  | 
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| 526 | public: | 
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| 527 | CLLag(CLSCF* s) : scf_(s) {} | 
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| 528 | ~CLLag() {} | 
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| 529 |  | 
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| 530 | int has_side_effects() { return 1; } | 
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| 531 |  | 
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| 532 | void process(SCMatrixBlockIter& bi) { | 
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| 533 | int ir=current_block(); | 
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| 534 |  | 
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| 535 | for (bi.reset(); bi; bi++) { | 
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| 536 | double occi = scf_->occupation(ir,bi.i()); | 
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| 537 |  | 
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| 538 | if (occi==0.0) | 
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| 539 | bi.set(0.0); | 
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| 540 | } | 
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| 541 | } | 
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| 542 | }; | 
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| 543 |  | 
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| 544 | RefSymmSCMatrix | 
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| 545 | CLSCF::lagrangian() | 
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| 546 | { | 
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| 547 | // the MO lagrangian is just the eigenvalues of the occupied MO's | 
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| 548 | RefSymmSCMatrix mofock = effective_fock(); | 
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| 549 |  | 
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| 550 | Ref<SCElementOp> op = new CLLag(this); | 
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| 551 | mofock.element_op(op); | 
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| 552 |  | 
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| 553 | // transform MO lagrangian to SO basis | 
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| 554 | RefSymmSCMatrix so_lag(so_dimension(), basis_matrixkit()); | 
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| 555 | so_lag.assign(0.0); | 
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| 556 | so_lag.accumulate_transform(so_to_orthog_so().t() * oso_scf_vector_, mofock); | 
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| 557 |  | 
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| 558 | // and then from SO to AO | 
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| 559 | Ref<PetiteList> pl = integral()->petite_list(); | 
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| 560 | RefSymmSCMatrix ao_lag = pl->to_AO_basis(so_lag); | 
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| 561 | ao_lag->scale(-2.0); | 
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| 562 |  | 
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| 563 | return ao_lag; | 
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| 564 | } | 
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| 565 |  | 
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| 566 | RefSymmSCMatrix | 
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| 567 | CLSCF::gradient_density() | 
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| 568 | { | 
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| 569 | cl_dens_ = basis_matrixkit()->symmmatrix(so_dimension()); | 
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| 570 | cl_dens_.assign(0.0); | 
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| 571 |  | 
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| 572 | so_density(cl_dens_, 2.0); | 
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| 573 | cl_dens_.scale(2.0); | 
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| 574 |  | 
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| 575 | Ref<PetiteList> pl = integral()->petite_list(basis()); | 
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| 576 |  | 
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| 577 | cl_dens_ = pl->to_AO_basis(cl_dens_); | 
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| 578 |  | 
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| 579 | return cl_dens_; | 
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| 580 | } | 
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| 581 |  | 
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| 582 | ///////////////////////////////////////////////////////////////////////////// | 
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| 583 |  | 
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| 584 | void | 
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| 585 | CLSCF::init_hessian() | 
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| 586 | { | 
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| 587 | } | 
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| 588 |  | 
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| 589 | void | 
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| 590 | CLSCF::done_hessian() | 
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| 591 | { | 
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| 592 | } | 
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| 593 |  | 
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| 594 | ///////////////////////////////////////////////////////////////////////////// | 
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| 595 |  | 
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| 596 | void | 
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| 597 | CLSCF::two_body_deriv_hf(double * tbgrad, double exchange_fraction) | 
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| 598 | { | 
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| 599 | int i; | 
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| 600 | int na3 = molecule()->natom()*3; | 
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| 601 | int nthread = threadgrp_->nthread(); | 
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| 602 |  | 
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| 603 | tim_enter("setup"); | 
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| 604 | Ref<SCElementMaxAbs> m = new SCElementMaxAbs; | 
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| 605 | cl_dens_.element_op(m.pointer()); | 
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| 606 | double pmax = m->result(); | 
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| 607 | m=0; | 
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| 608 |  | 
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| 609 | double **grads = new double*[nthread]; | 
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| 610 | Ref<TwoBodyDerivInt> *tbis = new Ref<TwoBodyDerivInt>[nthread]; | 
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| 611 | for (i=0; i < nthread; i++) { | 
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| 612 | tbis[i] = integral()->electron_repulsion_deriv(); | 
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| 613 | grads[i] = new double[na3]; | 
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| 614 | memset(grads[i], 0, sizeof(double)*na3); | 
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| 615 | } | 
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| 616 |  | 
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| 617 | Ref<PetiteList> pl = integral()->petite_list(); | 
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| 618 |  | 
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| 619 | tim_change("contribution"); | 
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| 620 |  | 
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| 621 | // now try to figure out the matrix specialization we're dealing with. | 
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| 622 | // if we're using Local matrices, then there's just one subblock, or | 
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| 623 | // see if we can convert P to a local matrix | 
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| 624 | if (local_ || local_dens_) { | 
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| 625 | double *pmat; | 
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| 626 | RefSymmSCMatrix ptmp = get_local_data(cl_dens_, pmat, SCF::Read); | 
|---|
| 627 |  | 
|---|
| 628 | LocalCLHFGradContribution l(pmat); | 
|---|
| 629 | LocalTBGrad<LocalCLHFGradContribution> **tblds = | 
|---|
| 630 | new LocalTBGrad<LocalCLHFGradContribution>*[nthread]; | 
|---|
| 631 |  | 
|---|
| 632 | for (i=0; i < nthread; i++) { | 
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| 633 | tblds[i] = new LocalTBGrad<LocalCLHFGradContribution>( | 
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| 634 | l, tbis[i], pl, basis(), scf_grp_, grads[i], pmax, | 
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| 635 | desired_gradient_accuracy(), nthread, i, exchange_fraction); | 
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| 636 | threadgrp_->add_thread(i, tblds[i]); | 
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| 637 | } | 
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| 638 |  | 
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| 639 | tim_enter("start thread"); | 
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| 640 | if (threadgrp_->start_threads() < 0) { | 
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| 641 | ExEnv::err0() << indent | 
|---|
| 642 | << "CLSCF: error starting threads" << endl; | 
|---|
| 643 | abort(); | 
|---|
| 644 | } | 
|---|
| 645 | tim_exit("start thread"); | 
|---|
| 646 |  | 
|---|
| 647 | tim_enter("stop thread"); | 
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| 648 | if (threadgrp_->wait_threads() < 0) { | 
|---|
| 649 | ExEnv::err0() << indent | 
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| 650 | << "CLSCF: error waiting for threads" << endl; | 
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| 651 | abort(); | 
|---|
| 652 | } | 
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| 653 | tim_exit("stop thread"); | 
|---|
| 654 |  | 
|---|
| 655 | for (i=0; i < nthread; i++) { | 
|---|
| 656 | if (i) { | 
|---|
| 657 | for (int j=0; j < na3; j++) | 
|---|
| 658 | grads[0][j] += grads[i][j]; | 
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| 659 |  | 
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| 660 | delete[] grads[i]; | 
|---|
| 661 | } | 
|---|
| 662 |  | 
|---|
| 663 | delete tblds[i]; | 
|---|
| 664 | } | 
|---|
| 665 |  | 
|---|
| 666 | if (scf_grp_->n() > 1) | 
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| 667 | scf_grp_->sum(grads[0], na3); | 
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| 668 |  | 
|---|
| 669 | for (i=0; i < na3; i++) | 
|---|
| 670 | tbgrad[i] += grads[0][i]; | 
|---|
| 671 |  | 
|---|
| 672 | delete[] grads[0]; | 
|---|
| 673 | delete[] tblds; | 
|---|
| 674 | delete[] grads; | 
|---|
| 675 | } | 
|---|
| 676 |  | 
|---|
| 677 | // for now quit | 
|---|
| 678 | else { | 
|---|
| 679 | ExEnv::err0() << indent | 
|---|
| 680 | << "CLHF::two_body_deriv: can't do gradient yet\n"; | 
|---|
| 681 | abort(); | 
|---|
| 682 | } | 
|---|
| 683 |  | 
|---|
| 684 | for (i=0; i < nthread; i++) | 
|---|
| 685 | tbis[i] = 0; | 
|---|
| 686 | delete[] tbis; | 
|---|
| 687 |  | 
|---|
| 688 | tim_exit("contribution"); | 
|---|
| 689 | } | 
|---|
| 690 |  | 
|---|
| 691 | ///////////////////////////////////////////////////////////////////////////// | 
|---|
| 692 |  | 
|---|
| 693 | } | 
|---|
| 694 |  | 
|---|
| 695 | // Local Variables: | 
|---|
| 696 | // mode: c++ | 
|---|
| 697 | // c-file-style: "ETS" | 
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| 698 | // End: | 
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