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petite.h00001 // 00002 // petite.h --- definition of the PetiteList class 00003 // 00004 // Copyright (C) 1996 Limit Point Systems, Inc. 00005 // 00006 // Author: Edward Seidl <seidl@janed.com> 00007 // Maintainer: LPS 00008 // 00009 // This file is part of the SC Toolkit. 00010 // 00011 // The SC Toolkit is free software; you can redistribute it and/or modify 00012 // it under the terms of the GNU Library General Public License as published by 00013 // the Free Software Foundation; either version 2, or (at your option) 00014 // any later version. 00015 // 00016 // The SC Toolkit is distributed in the hope that it will be useful, 00017 // but WITHOUT ANY WARRANTY; without even the implied warranty of 00018 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 00019 // GNU Library General Public License for more details. 00020 // 00021 // You should have received a copy of the GNU Library General Public License 00022 // along with the SC Toolkit; see the file COPYING.LIB. If not, write to 00023 // the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. 00024 // 00025 // The U.S. Government is granted a limited license as per AL 91-7. 00026 // 00027 00028 #ifndef _chemistry_qc_basis_petite_h 00029 #define _chemistry_qc_basis_petite_h 00030 00031 #ifdef __GNUC__ 00032 #pragma interface 00033 #endif 00034 00035 #include <iostream> 00036 00037 #include <util/misc/scint.h> 00038 #include <util/ref/ref.h> 00039 #include <util/container/array.h> 00040 #include <math/scmat/blocked.h> 00041 #include <math/scmat/offset.h> 00042 #include <chemistry/molecule/molecule.h> 00043 #include <chemistry/qc/basis/gaussbas.h> 00044 #include <chemistry/qc/basis/integral.h> 00045 00046 // ////////////////////////////////////////////////////////////////////////// 00047 00048 namespace sc { 00049 00050 inline sc_int_least64_t 00051 ij_offset64(sc_int_least64_t i, sc_int_least64_t j) 00052 { 00053 return (i>j) ? (((i*(i+1)) >> 1) + j) : (((j*(j+1)) >> 1) + i); 00054 } 00055 00056 inline sc_int_least64_t 00057 i_offset64(sc_int_least64_t i) 00058 { 00059 return ((i*(i+1)) >> 1); 00060 } 00061 00062 // ////////////////////////////////////////////////////////////////////////// 00063 00064 struct contribution { 00065 int bfn; 00066 double coef; 00067 00068 contribution(); 00069 contribution(int b, double c); 00070 ~contribution(); 00071 }; 00072 00073 struct SO { 00074 int len; 00075 int length; 00076 contribution *cont; 00077 00078 SO(); 00079 SO(int); 00080 ~SO(); 00081 00082 SO& operator=(const SO&); 00083 00084 void set_length(int); 00085 void reset_length(int); 00086 00087 // is this equal to so to within a sign 00088 int equiv(const SO& so); 00089 }; 00090 00091 struct SO_block { 00092 int len; 00093 SO *so; 00094 00095 SO_block(); 00096 SO_block(int); 00097 ~SO_block(); 00098 00099 void set_length(int); 00100 void reset_length(int); 00101 00102 int add(SO& s, int i); 00103 void print(const char *title); 00104 }; 00105 00106 // ////////////////////////////////////////////////////////////////////////// 00107 // this should only be used from within a SymmGaussianBasisSet 00108 00109 class PetiteList : public RefCount { 00110 private: 00111 int natom_; 00112 int nshell_; 00113 int ng_; 00114 int nirrep_; 00115 int nblocks_; 00116 int c1_; 00117 00118 Ref<GaussianBasisSet> gbs_; 00119 Ref<Integral> ints_; 00120 00121 char *p1_; // p1[n] is 1 if shell n is in the group P1 00122 int **atom_map_; // atom_map[n][g] is the atom that symop g maps atom n 00123 // into 00124 int **shell_map_; // shell_map[n][g] is the shell that symop g maps shell n 00125 // into 00126 char *lamij_; // see Dupuis & King, IJQC 11,613,(1977) 00127 00128 int *nbf_in_ir_; 00129 00130 void init(); 00131 00132 public: 00133 PetiteList(const Ref<GaussianBasisSet>&, const Ref<Integral>&); 00134 ~PetiteList(); 00135 00136 int nirrep() const { return nirrep_; } 00137 int order() const { return ng_; } 00138 int atom_map(int n, int g) const { return (c1_) ? n : atom_map_[n][g]; } 00139 int shell_map(int n, int g) const { return (c1_) ? n : shell_map_[n][g]; } 00140 int lambda(int ij) const { return (c1_) ? 1 : (int) lamij_[ij]; } 00141 int lambda(int i, int j) const 00142 { return (c1_) ? 1 : (int) lamij_[ij_offset(i,j)]; } 00143 00144 int in_p1(int n) const { return (c1_) ? 1 : (int) p1_[n]; } 00145 int in_p2(int ij) const { return (c1_) ? 1 : (int) lamij_[ij]; } 00146 int in_p4(int ij, int kl, int i, int j, int k, int l) const; 00147 00148 int nfunction(int i) const 00149 { return (c1_) ? gbs_->nbasis() : nbf_in_ir_[i]; } 00150 00151 int nblocks() const { return nblocks_; } 00152 00153 void print(std::ostream& =ExEnv::out0(), int verbose=1); 00154 00155 // these return blocked dimensions 00156 RefSCDimension AO_basisdim(); 00157 RefSCDimension SO_basisdim(); 00158 00159 // return the basis function rotation matrix R(g) 00160 RefSCMatrix r(int g); 00161 00162 // return information about the transformation from AOs to SOs 00163 SO_block * aotoso_info(); 00164 RefSCMatrix aotoso(); 00165 RefSCMatrix sotoao(); 00166 00167 // given a skeleton matrix, form the symmetrized matrix in the SO basis 00168 void symmetrize(const RefSymmSCMatrix& skel, const RefSymmSCMatrix& sym); 00169 00170 // transform a matrix from AO->SO or SO->AO. 00171 // this can take either a blocked or non-blocked AO basis matrix. 00172 RefSymmSCMatrix to_SO_basis(const RefSymmSCMatrix&); 00173 00174 // this returns a non-blocked AO basis matrix. 00175 RefSymmSCMatrix to_AO_basis(const RefSymmSCMatrix&); 00176 00177 // these two are just for eigenvectors 00178 // returns non-blocked AO basis eigenvectors 00179 RefSCMatrix evecs_to_AO_basis(const RefSCMatrix&); 00180 // returns blocked SO basis eigenvectors 00181 RefSCMatrix evecs_to_SO_basis(const RefSCMatrix&); 00182 }; 00183 00184 inline int 00185 PetiteList::in_p4(int ij, int kl, int i, int j, int k, int l) const 00186 { 00187 if (c1_) 00188 return 1; 00189 00190 sc_int_least64_t ijkl = i_offset64(ij)+kl; 00191 int nijkl=0; 00192 00193 for (int g=0; g < ng_; g++) { 00194 int gij = ij_offset(shell_map_[i][g],shell_map_[j][g]); 00195 int gkl = ij_offset(shell_map_[k][g],shell_map_[l][g]); 00196 sc_int_least64_t gijkl = ij_offset64(gij,gkl); 00197 00198 if (gijkl > ijkl) 00199 return 0; 00200 else if (gijkl == ijkl) 00201 nijkl++; 00202 } 00203 00204 return ng_/nijkl; 00205 } 00206 00207 } 00208 00209 #endif 00210 00211 // Local Variables: 00212 // mode: c++ 00213 // c-file-style: "ETS" 00214 // End: Generated at Fri Jan 10 08:14:09 2003 for MPQC 2.1.3 using the documentation package Doxygen 1.2.14. |