[0b990d] | 1 | //
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| 2 | // scf.h --- definition of the SCF abstract base 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 | #ifndef _chemistry_qc_scf_scf_h
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| 29 | #define _chemistry_qc_scf_scf_h
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| 30 |
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| 31 | #ifdef __GNUC__
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| 32 | #pragma interface
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| 33 | #endif
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| 34 |
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| 35 | #include <util/group/thread.h>
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| 36 |
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| 37 | #include <math/optimize/scextrap.h>
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| 38 |
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| 39 | #include <chemistry/qc/basis/tbint.h>
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| 40 | #include <chemistry/qc/wfn/accum.h>
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| 41 | #include <chemistry/qc/wfn/obwfn.h>
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| 42 |
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| 43 | namespace sc {
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| 44 |
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| 45 | // //////////////////////////////////////////////////////////////////////////
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| 46 |
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| 47 | /** The SCF class is the base for all classes that use a self-consistent
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| 48 | field procedure to solve an effective one body problem. */
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| 49 | class SCF: public OneBodyWavefunction {
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| 50 | protected:
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| 51 | int need_vec_;
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| 52 | int compute_guess_;
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| 53 |
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| 54 | int keep_guess_wfn_;
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| 55 | Ref<OneBodyWavefunction> guess_wfn_;
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| 56 |
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| 57 | int always_use_guess_wfn_;
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| 58 |
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| 59 | Ref<SelfConsistentExtrapolation> extrap_;
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| 60 |
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| 61 | Ref<AccumH> accumdih_;
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| 62 | Ref<AccumH> accumddh_;
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| 63 |
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| 64 | int maxiter_;
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| 65 | int dens_reset_freq_;
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| 66 | int reset_occ_;
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| 67 | int local_dens_;
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| 68 | size_t storage_;
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| 69 | int print_all_evals_;
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| 70 | int print_occ_evals_;
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| 71 |
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| 72 | double level_shift_;
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| 73 |
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| 74 | Ref<MessageGrp> scf_grp_;
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| 75 | Ref<ThreadGrp> threadgrp_;
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| 76 | int local_;
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| 77 |
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| 78 | Ref<TwoBodyInt>* tbis_; // a two body integral evaluator for each thread
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| 79 | virtual void init_threads();
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| 80 | virtual void done_threads();
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| 81 |
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| 82 | // implement the Compute::compute() function
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| 83 | virtual void compute();
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| 84 |
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| 85 | // calculate the scf vector, returning the accuracy
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| 86 | virtual double compute_vector(double&, double enuclear);
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| 87 |
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| 88 | // return the DIIS error matrices
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| 89 | virtual Ref<SCExtrapError> extrap_error();
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| 90 |
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| 91 | // calculate the scf gradient
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| 92 | virtual void compute_gradient(const RefSCVector&);
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| 93 |
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| 94 | // calculate the scf hessian
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| 95 | virtual void compute_hessian(const RefSymmSCMatrix&);
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| 96 |
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| 97 | // saves state and restart information after every checkpoint_freq()
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| 98 | // SCF iterations
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| 99 | virtual void savestate_iter(int);
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| 100 |
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| 101 | // saves state to the given filename
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| 102 | virtual void savestate_to_file(const std::string &filename);
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| 103 | std::string previous_savestate_file_;
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| 104 |
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| 105 | // returns the log of the max density element in each shell block
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| 106 | signed char * init_pmax(double *);
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| 107 |
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| 108 | // given a matrix, this will convert the matrix to a local matrix if
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| 109 | // it isn't one already, and return that local matrix. it will also
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| 110 | // set the double* to point to the local matrix's data.
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| 111 | enum Access { Read, Write, Accum };
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| 112 | RefSymmSCMatrix get_local_data(const RefSymmSCMatrix&, double*&, Access);
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| 113 |
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| 114 | // create the initial scf vector. either use the eigenvectors in
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| 115 | // guess_wfn_, or use a core Hamiltonian guess. Call this with needv
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| 116 | // equal to 0 if you expect to call it twice with the same geometry
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| 117 | // (eg. when calling from both set_occupations() and init_vector()).
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| 118 | virtual void initial_vector(int needv=1);
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| 119 |
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| 120 | // given the total number of density and fock matrices, figure out
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| 121 | // how much memory that will require and then set the local_dens_
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| 122 | // variable accordingly
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| 123 | void init_mem(int);
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| 124 |
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| 125 | void so_density(const RefSymmSCMatrix& d, double occ, int alp=1);
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| 126 |
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| 127 | // Returns a new'ed allocation vector if it is in the input,
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| 128 | // otherwise null.
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| 129 | int *read_occ(const Ref<KeyVal> &, const char *name, int nirrep);
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| 130 | public:
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| 131 | SCF(StateIn&);
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| 132 | /** The KeyVal constructor.
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| 133 |
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| 134 | <dl>
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| 135 |
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| 136 | <dt><tt>maxiter</tt><dd> This integer specifies the maximum number
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| 137 | of SCF iterations. The default is 40.
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| 138 |
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| 139 | <dt><tt>density_reset_frequency</tt><dd> This integer specifies how
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| 140 | often, in term of SCF iterations, \f$\Delta D\f$ will be reset to
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| 141 | \f$D\f$. The default is 10.
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| 142 |
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| 143 | <dt><tt>reset_occuptions</tt><dd> Reassign the occupations after
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| 144 | each iteration based on the eigenvalues. This only has an effect
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| 145 | for molecules with higher than \f$C_1\f$ symmetry. The default is
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| 146 | false.
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| 147 |
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| 148 | <dt><tt>level_shift</tt><dd> The default is 0.
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| 149 |
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| 150 | <dt><tt>extrap</tt><dd> This specifies an object of type
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| 151 | SelfConsistentExtrapolation. The default is a DIIS object.
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| 152 |
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| 153 | <dt><tt>memory</tt><dd> The amount of memory that each processor
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| 154 | may use. The default is 0 (minimal memory use).
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| 155 |
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| 156 | <dt><tt>local_density</tt><dd> If this is true, a local copy of the
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| 157 | density and \f$G\f$ matrix will be made on all nodes, even if a
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| 158 | distributed matrix specialization is used. The default is true.
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| 159 |
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| 160 | <dt><tt>guess_wavefunction</tt><dd> This specifies the initial
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| 161 | guess for the solution to the SCF equations. This can be either a
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| 162 | OneBodyWavefunction object or the name of file that contains the
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| 163 | saved state of a OneBodyWavefunction object. By default the
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| 164 | one-electron hamiltonian will be diagonalized to obtain the initial
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| 165 | guess.
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| 166 |
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| 167 | <dt><tt>keep_guess_wavefunction</tt><dd> The guess wavefunction is
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| 168 | normally discarded after it is projected. Setting this boolean
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| 169 | variable to true will cause the guess to be kept. This is useful
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| 170 | when doing frequencies of symmetric molecules by finite
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| 171 | displacements, because the wavefunction is lost whenever the
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| 172 | molecule is displaced into lower symmetry.
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| 173 |
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| 174 | <dt><tt>always_use_guess_wavefunction</tt><dd> If the orbitals must
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| 175 | be recomputed after they have already been computed once, then the
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| 176 | old orbitals are used as the initial guess by default. However, if
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| 177 | this option is true, then the guess wavefunction will be used, if
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| 178 | available. If a guess wavefunction is not available, then a core
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| 179 | Hamiltonian guess will be used. If this option is set to true,
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| 180 | then keep_guess_wavefunction should also be set to true.
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| 181 |
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| 182 | <dt><tt>print_evals</tt><dd>Takes a boolean value. If true, print
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| 183 | all eigenvalues after the SCF procedure converges. Takes a boolean
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| 184 | value. The default is false.
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| 185 |
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| 186 | <dt><tt>print_occ_evals</tt><dd>Takes a boolean value. If true,
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| 187 | print the occupied eigenvalues after the SCF procedure converges.
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| 188 | The default is false.
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| 189 |
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| 190 | </dl> */
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| 191 | SCF(const Ref<KeyVal>&);
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| 192 | ~SCF();
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| 193 |
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| 194 | void save_data_state(StateOut&);
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| 195 |
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| 196 | RefSCMatrix oso_eigenvectors();
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| 197 | RefDiagSCMatrix eigenvalues();
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| 198 |
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| 199 | int spin_unrestricted(); // return 0
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| 200 |
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| 201 | // return the number of AO Fock matrices needed
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| 202 | virtual int n_fock_matrices() const =0;
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| 203 |
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| 204 | // returns the n'th AO Fock matrix
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| 205 | virtual RefSymmSCMatrix fock(int) =0;
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| 206 |
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| 207 | // return the effective MO fock matrix
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| 208 | virtual RefSymmSCMatrix effective_fock() =0;
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| 209 |
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| 210 | virtual double one_body_energy();
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| 211 | virtual void two_body_energy(double &ec, double &ex);
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| 212 |
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| 213 | void symmetry_changed();
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| 214 |
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| 215 | void obsolete();
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| 216 |
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| 217 | void print(std::ostream&o=ExEnv::out0()) const;
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| 218 |
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| 219 | protected:
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| 220 | // the following are scratch and are not checkpointed
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| 221 | RefSCMatrix oso_scf_vector_;
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| 222 | RefSCMatrix oso_scf_vector_beta_; // only used if !spin_restricted
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| 223 | RefSymmSCMatrix hcore_;
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| 224 |
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| 225 | // //////////////////////////////////////////////////////////////////////
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| 226 | // pure virtual member functions follow
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| 227 |
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| 228 | // tries to automagically guess the MO occupations
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| 229 | virtual void set_occupations(const RefDiagSCMatrix&) =0;
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| 230 |
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| 231 | // //////////////////////////////////////////////////////////////////////
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| 232 | // do setup for SCF calculation
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| 233 | virtual void init_vector() =0;
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| 234 | virtual void done_vector() =0;
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| 235 |
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| 236 | // calculate new density matrices, returns the rms density difference
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| 237 | virtual double new_density() =0;
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| 238 |
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| 239 | // reset density diff matrix and zero out delta G matrix
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| 240 | virtual void reset_density() =0;
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| 241 |
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| 242 | // return the scf electronic energy
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| 243 | virtual double scf_energy() =0;
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| 244 |
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| 245 | // return the DIIS data matrices
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| 246 | virtual Ref<SCExtrapData> extrap_data() =0;
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| 247 |
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| 248 | // form the AO basis fock matrices
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| 249 | virtual void ao_fock(double accuracy) =0;
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| 250 |
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| 251 | // //////////////////////////////////////////////////////////////////////
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| 252 | // do setup for gradient calculation
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| 253 | virtual void init_gradient() =0;
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| 254 | virtual void done_gradient() =0;
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| 255 |
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| 256 | virtual RefSymmSCMatrix lagrangian() =0;
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| 257 | virtual RefSymmSCMatrix gradient_density() =0;
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| 258 | virtual void two_body_deriv(double*) =0;
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| 259 |
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| 260 | // //////////////////////////////////////////////////////////////////////
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| 261 | // do setup for hessian calculation
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| 262 | virtual void init_hessian() =0;
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| 263 | virtual void done_hessian() =0;
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| 264 |
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| 265 | private:
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| 266 | // This experimental function does SVD of Coulomb matrix
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| 267 | // to be used in low-rank reconstruction
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| 268 | void svd_product_basis();
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| 269 | };
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| 270 |
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| 271 | }
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| 272 |
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| 273 | #endif
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| 274 |
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| 275 | // Local Variables:
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| 276 | // mode: c++
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| 277 | // c-file-style: "ETS"
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| 278 | // End:
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