| 1 | //
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| 2 | // eri.cc
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| 3 | //
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| 4 | // Copyright (C) 2001 Edward Valeev
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| 5 | //
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| 6 | // Author: Edward Valeev <edward.valeev@chemistry.gatech.edu>
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| 7 | // Maintainer: EV
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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 __GNUG__
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| 29 | #pragma implementation
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| 30 | #endif
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| 31 | 
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| 32 | #include <util/misc/formio.h>
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| 33 | #include <chemistry/qc/basis/integral.h>
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| 34 | #include <chemistry/qc/cints/eri.h>
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| 35 | #ifdef DMALLOC
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| 36 | #include <dmalloc.h>
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| 37 | #endif
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| 38 | 
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| 39 | #define STORE_PAIR_DATA 1
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| 40 | 
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| 41 | using namespace std;
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| 42 | using namespace sc;
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| 43 | 
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| 44 | // This global object initializes the static interface of libint
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| 45 | LibintStaticInterface LibintStaticInitializer;
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| 46 | 
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| 47 | inline int max(int a,int b) { return (a > b) ? a : b;}
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| 48 | inline void fail()
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| 49 | {
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| 50 |   ExEnv::errn() << scprintf("failing module:\n%s",__FILE__) << endl;
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| 51 |   abort();
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| 52 | }
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| 53 | 
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| 54 | EriCints::EriCints(Integral *integral,
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| 55 |                    const Ref<GaussianBasisSet>& b1,
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| 56 |                    const Ref<GaussianBasisSet>& b2,
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| 57 |                    const Ref<GaussianBasisSet>& b3,
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| 58 |                    const Ref<GaussianBasisSet>& b4,
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| 59 |                    size_t storage) :
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| 60 |   Int2eCints(integral,b1,b2,b3,b4,storage)
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| 61 | {
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| 62 |   // The static part of Libint's interface is automatically initialized in libint.cc
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| 63 |   int l1 = bs1_->max_angular_momentum();
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| 64 |   int l2 = bs2_->max_angular_momentum();
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| 65 |   int l3 = bs3_->max_angular_momentum();
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| 66 |   int l4 = bs4_->max_angular_momentum();
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| 67 |   int lmax = max(max(l1,l2),max(l3,l4));
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| 68 |   if (lmax + 1 > LIBINT_MAX_AM) {
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| 69 |     ExEnv::errn() << scprintf("libint: the maximum angular momentum of the basis\n");
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| 70 |     ExEnv::errn() << scprintf("is too high - need to recompile libint\n");
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| 71 |     fail();
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| 72 |   }
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| 73 | 
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| 74 |   /*--- Initialize storage ---*/
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| 75 |   int max_num_prim_comb = bs1_->max_nprimitive_in_shell()*
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| 76 |     bs2_->max_nprimitive_in_shell()*
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| 77 |     bs3_->max_nprimitive_in_shell()*
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| 78 |     bs4_->max_nprimitive_in_shell();
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| 79 |   int max_cart_target_size = bs1_->max_ncartesian_in_shell()*bs2_->max_ncartesian_in_shell()*
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| 80 |     bs3_->max_ncartesian_in_shell()*bs4_->max_ncartesian_in_shell();
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| 81 |   int max_target_size = bs1_->max_nfunction_in_shell()*bs2_->max_nfunction_in_shell()*
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| 82 |     bs3_->max_nfunction_in_shell()*bs4_->max_nfunction_in_shell();
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| 83 |   size_t storage_needed = libint_storage_required(lmax,max_num_prim_comb)*sizeof(REALTYPE) +
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| 84 |     (max_target_size+max_cart_target_size)*sizeof(double);
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| 85 |   init_libint(&Libint_,lmax,max_num_prim_comb);
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| 86 |   target_ints_buffer_ = new double[max_target_size];
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| 87 |   cart_ints_ = new double[max_cart_target_size];
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| 88 |   if (bs1_->has_pure() || bs2_->has_pure() || bs3_->has_pure() || bs4_->has_pure() ||
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| 89 |       bs1_->max_ncontraction() != 1 || bs2_->max_ncontraction() != 1 ||
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| 90 |       bs3_->max_ncontraction() != 1 || bs4_->max_ncontraction() != 1) {
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| 91 |     sphharm_ints_ = new double[max_target_size];
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| 92 |     storage_needed += max_target_size*sizeof(double);
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| 93 |   }
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| 94 |   else {
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| 95 |     sphharm_ints_ = 0;
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| 96 |   }
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| 97 |   if (l1 || l2 || l3 || l4) {
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| 98 |     perm_ints_ = new double[max_target_size];
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| 99 |     storage_needed += max_target_size*sizeof(double);
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| 100 |   }
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| 101 |   else
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| 102 |     perm_ints_ = 0;
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| 103 | 
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| 104 |   // See if can store primitive-pair data
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| 105 |   size_t primitive_pair_storage_estimate = (bs1_->nprimitive()*bs2_->nprimitive() + 
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| 106 |     bs3_->nprimitive()*bs4_->nprimitive())*sizeof(prim_pair_t);
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| 107 |   //  ExEnv::errn() << scprintf("need %d bytes to store primitive pair data\n",primitive_pair_storage_estimate);
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| 108 | #if STORE_PAIR_DATA
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| 109 |   shell_pairs12_ = new ShellPairsCints(bs1_,bs2_);
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| 110 |   if ( (bs1_ == bs3_ && bs2_ == bs4_) /*||
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| 111 |        // if this is (ab|ba) case -- should i try to save storage?
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| 112 |        (bs1_ == bs4_ && bs2_ == bs3_)*/ )
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| 113 |     shell_pairs34_ = new ShellPairsCints(shell_pairs12_);
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| 114 |   else
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| 115 |     shell_pairs34_ = new ShellPairsCints(bs3_,bs4_);
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| 116 |   storage_needed += primitive_pair_storage_estimate;
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| 117 | #endif
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| 118 | 
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| 119 |   storage_used_ = storage_needed;
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| 120 |   // Check if storage_ > storage_needed
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| 121 |   check_storage_();
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| 122 | 
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| 123 |   int mmax = bs1_->max_angular_momentum() +
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| 124 |     bs2_->max_angular_momentum() +
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| 125 |     bs3_->max_angular_momentum() +
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| 126 |     bs4_->max_angular_momentum();
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| 127 |   Fm_Eval_ = new FJT(mmax);
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| 128 | }
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| 129 | 
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| 130 | 
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| 131 | EriCints::~EriCints()
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| 132 | { 
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| 133 |   free_libint(&Libint_);
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| 134 |   delete[] target_ints_buffer_;
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| 135 |   delete[] cart_ints_;
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| 136 |   if (sphharm_ints_)
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| 137 |     delete[] sphharm_ints_;
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| 138 |   if (perm_ints_)
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| 139 |     delete[] perm_ints_;
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| 140 | #ifdef DMALLOC
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| 141 |   dmalloc_shutdown();
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| 142 | #endif
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| 143 | }
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| 144 | 
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| 145 | size_t
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| 146 | EriCints::storage_required(const Ref<GaussianBasisSet>& b1,
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| 147 |                            const Ref<GaussianBasisSet>& b2,
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| 148 |                            const Ref<GaussianBasisSet>& b3,
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| 149 |                            const Ref<GaussianBasisSet>& b4)
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| 150 | {
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| 151 |   Ref<GaussianBasisSet> bs1 = b1;
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| 152 |   Ref<GaussianBasisSet> bs2 = b2;
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| 153 |   Ref<GaussianBasisSet> bs3 = b3;
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| 154 |   Ref<GaussianBasisSet> bs4 = b4;
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| 155 | 
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| 156 |   if (bs2.null())
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| 157 |     bs2 = bs1;
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| 158 |   if (bs3.null())
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| 159 |     bs3 = bs1;
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| 160 |   if (bs4.null())
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| 161 |     bs4 = bs1;
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| 162 | 
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| 163 |   int l1 = bs1->max_angular_momentum();
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| 164 |   int l2 = bs2->max_angular_momentum();
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| 165 |   int l3 = bs3->max_angular_momentum();
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| 166 |   int l4 = bs4->max_angular_momentum();
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| 167 |   int lmax = max(max(l1,l2),max(l3,l4));
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| 168 | 
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| 169 |   size_t storage_required = storage_required_(bs1,bs2,bs3,bs4);
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| 170 | 
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| 171 |   int max_num_prim_comb = bs1->max_nprimitive_in_shell()*
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| 172 |     bs2->max_nprimitive_in_shell()*
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| 173 |     bs3->max_nprimitive_in_shell()*
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| 174 |     bs4->max_nprimitive_in_shell();
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| 175 |   int max_cart_target_size = bs1->max_ncartesian_in_shell()*bs2->max_ncartesian_in_shell()*
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| 176 |     bs3->max_ncartesian_in_shell()*bs4->max_ncartesian_in_shell();
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| 177 |   int max_target_size = bs1->max_nfunction_in_shell()*bs2->max_nfunction_in_shell()*
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| 178 |     bs3->max_nfunction_in_shell()*bs4->max_nfunction_in_shell();
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| 179 | 
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| 180 |   storage_required += libint_storage_required(lmax,max_num_prim_comb)*sizeof(REALTYPE) +
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| 181 |     (max_target_size+max_cart_target_size)*sizeof(double);
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| 182 | 
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| 183 |   if (bs1->has_pure() || bs2->has_pure() || bs3->has_pure() || bs4->has_pure() ||
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| 184 |       bs1->max_ncontraction() != 1 || bs2->max_ncontraction() != 1 ||
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| 185 |       bs3->max_ncontraction() != 1 || bs4->max_ncontraction() != 1) {
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| 186 |     storage_required += max_target_size*sizeof(double);
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| 187 |   }
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| 188 | 
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| 189 |   if (l1 || l2 || l3 || l4) {
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| 190 |     storage_required += max_target_size*sizeof(double);
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| 191 |   }
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| 192 | 
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| 193 |   // See if can store primitive-pair data
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| 194 |   size_t primitive_pair_storage_estimate = (bs1->nprimitive()*bs2->nprimitive() + 
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| 195 |     bs3->nprimitive()*bs4->nprimitive())*sizeof(prim_pair_t);
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| 196 | #if STORE_PAIR_DATA
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| 197 |   storage_required += primitive_pair_storage_estimate;
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| 198 | #endif
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| 199 | 
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| 200 |   return storage_required;
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| 201 | }
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| 202 | 
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| 203 | 
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| 204 | /////////////////////////////////////////////////////////////////////////////
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| 205 | 
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| 206 | // Local Variables:
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| 207 | // mode: c++
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| 208 | // c-file-style: "CLJ-CONDENSED"
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| 209 | // End:
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