mirror of
https://github.com/TREX-CoE/qmckl.git
synced 2025-05-01 12:54:46 +02:00
3765 lines
143 KiB
Org Mode
3765 lines
143 KiB
Org Mode
#+TITLE: Forces
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#+SETUPFILE: ../tools/theme.setup
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#+INCLUDE: ../tools/lib.org
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* Introduction
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* Headers :noexport:
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#+begin_src elisp :noexport :results none
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(org-babel-lob-ingest "../tools/lib.org")
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#+end_src
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#+begin_src c :tangle (eval h_private_func)
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#ifndef QMCKL_FORCES_HPF
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#define QMCKL_FORCES_HPF
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#+end_src
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#+begin_src c :tangle (eval h_private_type)
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#ifndef QMCKL_FORCES_HPT
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#define QMCKL_FORCES_HPT
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#include <stdbool.h>
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#+end_src
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#+begin_src c :tangle (eval c_test) :noweb yes
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#include "qmckl.h"
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#include <assert.h>
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#include <math.h>
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include <stdbool.h>
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#include <stdio.h>
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#include "n2.h"
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#include "qmckl_jastrow_champ_private_func.h"
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#include "qmckl_jastrow_champ_single_private_func.h"
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#include "qmckl_forces_private_func.h"
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int main() {
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qmckl_context context;
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context = qmckl_context_create();
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#+end_src
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#+begin_src c :tangle (eval c)
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#ifdef HAVE_STDINT_H
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#include <stdint.h>
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#elif HAVE_INTTYPES_H
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#include <inttypes.h>
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#endif
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#include <stdlib.h>
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#include <string.h>
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#include <stdbool.h>
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#include <assert.h>
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#include <math.h>
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#include <stdio.h>
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#include "qmckl.h"
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#include "qmckl_context_private_type.h"
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#include "qmckl_memory_private_type.h"
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#include "qmckl_memory_private_func.h"
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#include "qmckl_jastrow_champ_private_type.h"
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#include "qmckl_jastrow_champ_private_func.h"
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#include "qmckl_jastrow_champ_single_private_type.h"
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#include "qmckl_jastrow_champ_single_private_func.h"
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#include "qmckl_forces_private_type.h"
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#include "qmckl_forces_private_func.h"
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#+end_src
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* Context
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** Data structure
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#+begin_src c :comments org :tangle (eval h_private_type)
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typedef struct qmckl_forces_struct{
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double * restrict forces_jastrow_en;
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uint64_t forces_jastrow_en_date;
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double * restrict forces_jastrow_en_g;
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uint64_t forces_jastrow_en_g_date;
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double * restrict forces_jastrow_en_l;
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uint64_t forces_jastrow_en_l_date;
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double * restrict forces_tmp_c;
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uint64_t forces_tmp_c_date;
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double * restrict forces_dtmp_c;
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uint64_t forces_dtmp_c_date;
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double * restrict forces_een_n;
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uint64_t forces_een_n_date;
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double * restrict forces_jastrow_een;
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uint64_t forces_jastrow_een_date;
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double * restrict forces_jastrow_een_g;
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uint64_t forces_jastrow_een_g_date;
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double * restrict forces_jastrow_een_l;
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uint64_t forces_jastrow_een_l_date;
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} qmckl_forces_struct;
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#+end_src
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** Test
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#+begin_src c :tangle (eval c_test)
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/* Reference input data */
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int64_t walk_num = n2_walk_num;
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int64_t elec_num = n2_elec_num;
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int64_t elec_up_num = n2_elec_up_num;
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int64_t elec_dn_num = n2_elec_dn_num;
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int64_t nucl_num = n2_nucl_num;
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double rescale_factor_ee = 0.6;
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double rescale_factor_en[2] = { 0.6, 0.6 };
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double* elec_coord = &(n2_elec_coord[0][0][0]);
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const double* nucl_charge = n2_charge;
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double* nucl_coord = &(n2_nucl_coord[0][0]);
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/* Provide Electron data */
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qmckl_exit_code rc;
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assert(!qmckl_electron_provided(context));
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rc = qmckl_check(context,
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qmckl_set_electron_num (context, elec_up_num, elec_dn_num)
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);
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assert(rc == QMCKL_SUCCESS);
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assert(qmckl_electron_provided(context));
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rc = qmckl_check(context,
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qmckl_set_electron_coord (context, 'N', walk_num, elec_coord, walk_num*3*elec_num)
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);
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assert(rc == QMCKL_SUCCESS);
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double elec_coord2[walk_num*3*elec_num];
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rc = qmckl_check(context,
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qmckl_get_electron_coord (context, 'N', elec_coord2, walk_num*3*elec_num)
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);
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assert(rc == QMCKL_SUCCESS);
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for (int64_t i=0 ; i<3*elec_num ; ++i) {
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assert( elec_coord[i] == elec_coord2[i] );
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}
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/* Provide Nucleus data */
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assert(!qmckl_nucleus_provided(context));
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rc = qmckl_check(context,
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qmckl_set_nucleus_num (context, nucl_num)
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);
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assert(rc == QMCKL_SUCCESS);
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assert(!qmckl_nucleus_provided(context));
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double nucl_coord2[3*nucl_num];
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rc = qmckl_get_nucleus_coord (context, 'T', nucl_coord2, 3*nucl_num);
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assert(rc == QMCKL_NOT_PROVIDED);
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rc = qmckl_check(context,
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qmckl_set_nucleus_coord (context, 'T', &(nucl_coord[0]), 3*nucl_num)
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);
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assert(rc == QMCKL_SUCCESS);
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assert(!qmckl_nucleus_provided(context));
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rc = qmckl_check(context,
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qmckl_get_nucleus_coord (context, 'N', nucl_coord2, nucl_num*3)
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);
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assert(rc == QMCKL_SUCCESS);
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for (int64_t k=0 ; k<3 ; ++k) {
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for (int64_t i=0 ; i<nucl_num ; ++i) {
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assert( nucl_coord[nucl_num*k+i] == nucl_coord2[3*i+k] );
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}
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}
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rc = qmckl_check(context,
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qmckl_get_nucleus_coord (context, 'T', nucl_coord2, nucl_num*3)
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);
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assert(rc == QMCKL_SUCCESS);
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for (int64_t i=0 ; i<3*nucl_num ; ++i) {
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assert( nucl_coord[i] == nucl_coord2[i] );
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}
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double nucl_charge2[nucl_num];
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rc = qmckl_get_nucleus_charge(context, nucl_charge2, nucl_num);
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assert(rc == QMCKL_NOT_PROVIDED);
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rc = qmckl_check(context,
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qmckl_set_nucleus_charge(context, nucl_charge, nucl_num)
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);
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assert(rc == QMCKL_SUCCESS);
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rc = qmckl_check(context,
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qmckl_get_nucleus_charge(context, nucl_charge2, nucl_num)
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);
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assert(rc == QMCKL_SUCCESS);
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for (int64_t i=0 ; i<nucl_num ; ++i) {
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assert( nucl_charge[i] == nucl_charge2[i] );
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}
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assert(qmckl_nucleus_provided(context));
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assert(qmckl_electron_provided(context));
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int64_t type_nucl_num = n2_type_nucl_num;
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int64_t* type_nucl_vector = &(n2_type_nucl_vector[0]);
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int64_t aord_num = n2_aord_num;
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int64_t bord_num = n2_bord_num;
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int64_t cord_num = n2_cord_num;
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double* a_vector = &(n2_a_vector[0][0]);
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double* b_vector = &(n2_b_vector[0]);
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double* c_vector = &(n2_c_vector[0][0]);
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int64_t dim_c_vector=0;
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assert(!qmckl_jastrow_champ_provided(context));
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/* Set the data */
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rc = qmckl_check(context,
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qmckl_set_jastrow_champ_spin_independent(context, 0)
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);
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rc = qmckl_check(context,
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qmckl_set_jastrow_champ_aord_num(context, aord_num)
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);
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rc = qmckl_check(context,
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qmckl_set_jastrow_champ_bord_num(context, bord_num)
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);
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rc = qmckl_check(context,
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qmckl_set_jastrow_champ_cord_num(context, cord_num)
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);
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assert(rc == QMCKL_SUCCESS);
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rc = qmckl_check(context,
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qmckl_set_jastrow_champ_type_nucl_num(context, type_nucl_num)
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);
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assert(rc == QMCKL_SUCCESS);
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rc = qmckl_check(context,
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qmckl_set_jastrow_champ_type_nucl_vector(context, type_nucl_vector, nucl_num)
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);
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assert(rc == QMCKL_SUCCESS);
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rc = qmckl_check(context,
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qmckl_set_jastrow_champ_a_vector(context, a_vector,(aord_num+1)*type_nucl_num)
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);
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assert(rc == QMCKL_SUCCESS);
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rc = qmckl_check(context,
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qmckl_set_jastrow_champ_b_vector(context, b_vector,(bord_num+1))
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);
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assert(rc == QMCKL_SUCCESS);
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rc = qmckl_check(context,
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qmckl_get_jastrow_champ_dim_c_vector(context, &dim_c_vector)
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);
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assert(rc == QMCKL_SUCCESS);
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rc = qmckl_check(context,
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qmckl_set_jastrow_champ_c_vector(context, c_vector, dim_c_vector*type_nucl_num)
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);
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assert(rc == QMCKL_SUCCESS);
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double k_ee = 0.;
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double k_en[2] = { 0., 0. };
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rc = qmckl_check(context,
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qmckl_set_jastrow_champ_rescale_factor_en(context, rescale_factor_en, type_nucl_num)
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);
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assert(rc == QMCKL_SUCCESS);
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rc = qmckl_check(context,
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qmckl_set_jastrow_champ_rescale_factor_ee(context, rescale_factor_ee)
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);
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assert(rc == QMCKL_SUCCESS);
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rc = qmckl_check(context,
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qmckl_get_jastrow_champ_rescale_factor_ee (context, &k_ee)
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);
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assert(rc == QMCKL_SUCCESS);
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assert(k_ee == rescale_factor_ee);
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rc = qmckl_check(context,
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qmckl_get_jastrow_champ_rescale_factor_en (context, &(k_en[0]), type_nucl_num)
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);
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assert(rc == QMCKL_SUCCESS);
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for (int i=0 ; i<type_nucl_num ; ++i) {
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assert(k_en[i] == rescale_factor_en[i]);
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}
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/* Check if Jastrow is properly initialized */
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assert(qmckl_jastrow_champ_provided(context));
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double delta_x = 0.00001;
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double coef[9] = { 1.0/280.0, -4.0/105.0, 1.0/5.0, -4.0/5.0, 0.0, 4.0/5.0, -1.0/5.0, 4.0/105.0, -1.0/280.0 };
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#+end_src
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* Finite-difference function
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We introduce here a general function to compute the derivatives of any quantity with respect to nuclear coordinates.
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using finite-differences.
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#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
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typedef qmckl_exit_code (*function_callback)(qmckl_context context, double* const output, const int64_t size);
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qmckl_exit_code qmckl_finite_difference_deriv_n(
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qmckl_context context,
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const double delta_x, // Step size for finite difference
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function_callback get_function, // Function to compute values
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double* const derivative_output, // Output derivative array: nucl_num*3*size
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int64_t const size); // Size of the object to differentiate
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#+end_src
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#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
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typedef qmckl_exit_code (*function_callback)(qmckl_context context, double* const output, const int64_t size);
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qmckl_exit_code qmckl_finite_difference_deriv_n(
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qmckl_context context,
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const double delta_x,
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function_callback get_function,
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double* const derivative_output,
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int64_t const size)
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{
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// Finite difference coefficients for a 9-point stencil
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double coef[9] = { 1.0/280.0, -4.0/105.0, 1.0/5.0, -4.0/5.0, 0.0, 4.0/5.0, -1.0/5.0, 4.0/105.0, -1.0/280.0 };
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qmckl_exit_code rc;
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int64_t walk_num;
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rc = qmckl_get_electron_walk_num(context, &walk_num);
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if (rc != QMCKL_SUCCESS) {
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return rc;
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}
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int64_t nucl_num;
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rc = qmckl_get_nucleus_num(context, &nucl_num);
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if (rc != QMCKL_SUCCESS) {
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return rc;
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}
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double* nucleus_coord = (double*) malloc(3 * nucl_num * sizeof(double));
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if (nucleus_coord == NULL) {
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return QMCKL_ALLOCATION_FAILED;
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}
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rc = qmckl_get_nucleus_coord (context, 'N', nucleus_coord, 3*nucl_num);
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double* temp_coord = (double*) malloc(3 * nucl_num * sizeof(double));
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if (temp_coord == NULL) {
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free(nucleus_coord);
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return QMCKL_ALLOCATION_FAILED;
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}
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double* function_values = (double*) malloc(walk_num*size * sizeof(double));
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if (function_values == NULL) {
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free(nucleus_coord);
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free(temp_coord);
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return QMCKL_ALLOCATION_FAILED;
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}
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memset(derivative_output, 0, nucl_num*3*walk_num*size*sizeof(double));
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// Copy original coordinates
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for (int i = 0; i < 3 * nucl_num; i++) {
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temp_coord[i] = nucleus_coord[i];
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}
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for (int64_t a = 0; a < nucl_num; a++) {
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for (int64_t k = 0; k < 3; k++) {
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for (int64_t m = -4; m <= 4; m++) {
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// Apply finite difference displacement
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temp_coord[k+a*3] = nucleus_coord[k+3*a] + (double) m * delta_x;
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// Update coordinates in the context
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rc = qmckl_set_nucleus_coord(context, 'N', temp_coord, 3*nucl_num);
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assert(rc == QMCKL_SUCCESS);
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rc = qmckl_context_touch(context);
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assert(rc == QMCKL_SUCCESS);
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// Call the provided function
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rc = get_function(context, function_values, size);
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assert(rc == QMCKL_SUCCESS);
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// Accumulate derivative using finite-difference coefficients
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for (int64_t nw=0 ; nw<walk_num ; nw++) {
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int64_t shift = nucl_num*3*size*nw + size*(k + 3*a);
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for (int64_t i = 0; i < size; i++) {
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derivative_output[i+shift] += coef[m + 4] * function_values[nw*size+i];
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}
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}
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}
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temp_coord[k+a*3] = nucleus_coord[k+3*a];
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}
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}
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// Reset coordinates in the context
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rc = qmckl_set_nucleus_coord(context, 'N', temp_coord, 3*nucl_num);
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assert(rc == QMCKL_SUCCESS);
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rc = qmckl_context_touch(context);
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assert(rc == QMCKL_SUCCESS);
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// Normalize by the step size
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for (int64_t i = 0; i < size*3*nucl_num*walk_num ; i++) {
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derivative_output[i] /= delta_x;
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}
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free(nucleus_coord);
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free(temp_coord);
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free(function_values);
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return QMCKL_SUCCESS;
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}
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#+end_src
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* Force of en jastrow value
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** Get
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#+begin_src c :comments org :tangle (eval h_func) :noweb yes
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qmckl_exit_code
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qmckl_get_forces_jastrow_en(qmckl_context context,
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double* const forces_jastrow_en,
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const int64_t size_max);
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#+end_src
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#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
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qmckl_exit_code
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qmckl_get_forces_jastrow_en(qmckl_context context,
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double* const forces_jastrow_en,
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const int64_t size_max)
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{
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if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
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return QMCKL_NULL_CONTEXT;
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}
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qmckl_exit_code rc;
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rc = qmckl_provide_forces_jastrow_en(context);
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if (rc != QMCKL_SUCCESS) return rc;
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qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
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assert (ctx != NULL);
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int64_t sze = 3 * ctx->nucleus.num * ctx->electron.walker.num;
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if (size_max < sze) {
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return qmckl_failwith( context,
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QMCKL_INVALID_ARG_3,
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"qmckl_get_forces_jastrow_en",
|
|
"Array too small. Expected 3*nucl_num*walk_num");
|
|
}
|
|
|
|
memcpy(forces_jastrow_en, ctx->forces.forces_jastrow_en, sze * sizeof(double));
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
|
|
#+begin_src f90 :tangle (eval fh_func) :comments org
|
|
interface
|
|
integer(qmckl_exit_code) function qmckl_get_forces_jastrow_en (context, &
|
|
forces_jastrow_en, size_max) bind(C)
|
|
use, intrinsic :: iso_c_binding
|
|
import
|
|
implicit none
|
|
integer (qmckl_context) , intent(in), value :: context
|
|
integer(c_int64_t), intent(in), value :: size_max
|
|
real(c_double), intent(out) :: forces_jastrow_en(size_max)
|
|
end function qmckl_get_forces_jastrow_en
|
|
end interface
|
|
#+end_src
|
|
|
|
** Provide :noexport:
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_jastrow_en(qmckl_context context);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_jastrow_en(qmckl_context context)
|
|
{
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_INVALID_CONTEXT,
|
|
"qmckl_provide_forces_jastrow_en",
|
|
NULL);
|
|
}
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
if (!ctx->jastrow_champ.provided) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_NOT_PROVIDED,
|
|
"qmckl_provide_forces_jastrow_en",
|
|
NULL);
|
|
}
|
|
|
|
/* Check if en rescaled distance is provided */
|
|
rc = qmckl_provide_en_distance_rescaled(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_en_distance_rescaled_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Compute if necessary */
|
|
if (ctx->date > ctx->forces.forces_jastrow_en_date) {
|
|
|
|
if (ctx->electron.walker.num > ctx->electron.walker_old.num) {
|
|
if (ctx->forces.forces_jastrow_en != NULL) {
|
|
rc = qmckl_free(context, ctx->forces.forces_jastrow_en);
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return qmckl_failwith( context, rc,
|
|
"qmckl_provide_forces_jastrow_en",
|
|
"Unable to free ctx->forces.forces_jastrow_en");
|
|
}
|
|
ctx->forces.forces_jastrow_en = NULL;
|
|
}
|
|
}
|
|
|
|
/* Allocate array */
|
|
if (ctx->forces.forces_jastrow_en == NULL) {
|
|
|
|
qmckl_memory_info_struct mem_info = qmckl_memory_info_struct_zero;
|
|
mem_info.size = ctx->electron.walker.num * 3 * ctx->nucleus.num * sizeof(double);
|
|
double* forces_jastrow_en = (double*) qmckl_malloc(context, mem_info);
|
|
|
|
if (forces_jastrow_en == NULL) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_ALLOCATION_FAILED,
|
|
"qmckl_provide_forces_jastrow_en",
|
|
NULL);
|
|
}
|
|
ctx->forces.forces_jastrow_en = forces_jastrow_en;
|
|
}
|
|
|
|
rc = qmckl_compute_forces_jastrow_en(context,
|
|
ctx->electron.walker.num,
|
|
ctx->electron.num,
|
|
ctx->nucleus.num,
|
|
ctx->jastrow_champ.type_nucl_num,
|
|
ctx->jastrow_champ.type_nucl_vector,
|
|
ctx->jastrow_champ.aord_num,
|
|
ctx->jastrow_champ.a_vector,
|
|
ctx->jastrow_champ.en_distance_rescaled,
|
|
ctx->jastrow_champ.en_distance_rescaled_gl,
|
|
ctx->forces.forces_jastrow_en);
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return rc;
|
|
}
|
|
|
|
ctx->forces.forces_jastrow_en_date = ctx->date;
|
|
}
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
** Compute
|
|
|
|
:PROPERTIES:
|
|
:Name: qmckl_compute_forces_jastrow_en
|
|
:CRetType: qmckl_exit_code
|
|
:FRetType: qmckl_exit_code
|
|
:END:
|
|
|
|
#+NAME: qmckl_forces_jastrow_en_args
|
|
| Variable | Type | In/Out | Description |
|
|
|---------------------------+-------------------------------------------+--------+---------------------------------------|
|
|
| ~context~ | ~qmckl_context~ | in | Global state |
|
|
| ~walk_num~ | ~int64_t~ | in | Number of walkers |
|
|
| ~elec_num~ | ~int64_t~ | in | Number of electrons |
|
|
| ~nucl_num~ | ~int64_t~ | in | Number of nuclei |
|
|
| ~type_nucl_num~ | ~int64_t~ | in | Number of unique nuclei |
|
|
| ~type_nucl_vector~ | ~int64_t[nucl_num]~ | in | IDs of unique nuclei |
|
|
| ~aord_num~ | ~int64_t~ | in | Number of coefficients |
|
|
| ~a_vector~ | ~double[type_nucl_num][aord_num+1]~ | in | List of coefficients |
|
|
| ~en_distance_rescaled~ | ~double[walk_num][nucl_num][elec_num]~ | in | Electron-nucleus distances |
|
|
| ~en_distance_rescaled_gl~ | ~double[walk_num][nucl_num][elec_num][4]~ | in | Electron-nucleus distance derivatives |
|
|
| ~forces_jastrow_en~ | ~double[walk_num][nucl_num][3]~ | out | Electron-nucleus forces |
|
|
|
|
#+begin_src f90 :comments org :tangle (eval f) :noweb yes
|
|
function qmckl_compute_forces_jastrow_en_doc( &
|
|
context, walk_num, elec_num, nucl_num, type_nucl_num, &
|
|
type_nucl_vector, aord_num, a_vector, &
|
|
en_distance_rescaled, en_distance_rescaled_gl, forces_jastrow_en) &
|
|
bind(C) result(info)
|
|
use qmckl
|
|
implicit none
|
|
|
|
integer (qmckl_context), intent(in), value :: context
|
|
integer (c_int64_t) , intent(in) , value :: walk_num
|
|
integer (c_int64_t) , intent(in) , value :: elec_num
|
|
integer (c_int64_t) , intent(in) , value :: nucl_num
|
|
integer (c_int64_t) , intent(in) , value :: type_nucl_num
|
|
integer (c_int64_t) , intent(in) :: type_nucl_vector(nucl_num)
|
|
integer (c_int64_t) , intent(in) , value :: aord_num
|
|
real (c_double ) , intent(in) :: a_vector(aord_num+1,type_nucl_num)
|
|
real (c_double ) , intent(in) :: en_distance_rescaled(elec_num,nucl_num,walk_num)
|
|
real (c_double ) , intent(in) :: en_distance_rescaled_gl(4, elec_num,nucl_num,walk_num)
|
|
real (c_double ) , intent(out) :: forces_jastrow_en(3,nucl_num,walk_num)
|
|
integer(qmckl_exit_code) :: info
|
|
|
|
integer*8 :: i, a, k, nw, ii
|
|
double precision :: x, x1, kf
|
|
double precision :: denom, invdenom, invdenom2, f
|
|
double precision :: dx(3)
|
|
|
|
info = QMCKL_SUCCESS
|
|
|
|
if (context == QMCKL_NULL_CONTEXT) then
|
|
info = QMCKL_INVALID_CONTEXT
|
|
return
|
|
endif
|
|
|
|
if (walk_num <= 0) then
|
|
info = QMCKL_INVALID_ARG_2
|
|
return
|
|
endif
|
|
|
|
if (elec_num <= 0) then
|
|
info = QMCKL_INVALID_ARG_3
|
|
return
|
|
endif
|
|
|
|
if (nucl_num <= 0) then
|
|
info = QMCKL_INVALID_ARG_4
|
|
return
|
|
endif
|
|
|
|
if (aord_num < 0) then
|
|
info = QMCKL_INVALID_ARG_7
|
|
return
|
|
endif
|
|
|
|
do nw =1, walk_num
|
|
forces_jastrow_en(:,:,nw) = 0.0d0
|
|
do a = 1, nucl_num
|
|
do i = 1, elec_num
|
|
|
|
x = en_distance_rescaled(i,a,nw)
|
|
if(abs(x) < 1.d-12) continue
|
|
|
|
denom = 1.0d0 + a_vector(2, type_nucl_vector(a)+1) * x
|
|
invdenom = 1.0d0 / denom
|
|
invdenom2 = invdenom*invdenom
|
|
|
|
dx(1) = -en_distance_rescaled_gl(1,i,a,nw)
|
|
dx(2) = -en_distance_rescaled_gl(2,i,a,nw)
|
|
dx(3) = -en_distance_rescaled_gl(3,i,a,nw)
|
|
|
|
f = a_vector(1, type_nucl_vector(a)+1) * invdenom2
|
|
|
|
forces_jastrow_en(1,a,nw) = forces_jastrow_en(1,a,nw) + f * dx(1)
|
|
forces_jastrow_en(2,a,nw) = forces_jastrow_en(2,a,nw) + f * dx(2)
|
|
forces_jastrow_en(3,a,nw) = forces_jastrow_en(3,a,nw) + f * dx(3)
|
|
|
|
|
|
kf = 2.d0
|
|
x1 = x
|
|
x = 1.d0
|
|
do k=2, aord_num
|
|
f = a_vector(k+1,type_nucl_vector(a)+1) * kf * x
|
|
forces_jastrow_en(1,a,nw) = forces_jastrow_en(1,a,nw) + f * x1 * dx(1)
|
|
forces_jastrow_en(2,a,nw) = forces_jastrow_en(2,a,nw) + f * x1 * dx(2)
|
|
forces_jastrow_en(3,a,nw) = forces_jastrow_en(3,a,nw) + f * x1 * dx(3)
|
|
x = x*x1
|
|
kf = kf + 1.d0
|
|
end do
|
|
|
|
end do
|
|
end do
|
|
end do
|
|
|
|
|
|
end function qmckl_compute_forces_jastrow_en_doc
|
|
#+end_src
|
|
|
|
# #+CALL: generate_c_header(table=qmckl_factor_en_gl_args,rettyp=get_value("CRetType"),fname=get_value("Name"))
|
|
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_compute_forces_jastrow_en_doc (
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t type_nucl_num,
|
|
const int64_t* type_nucl_vector,
|
|
const int64_t aord_num,
|
|
const double* a_vector,
|
|
const double* en_distance_rescaled,
|
|
const double* en_distance_rescaled_gl,
|
|
double* const forces_jastrow_en );
|
|
|
|
qmckl_exit_code qmckl_compute_forces_jastrow_en (
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t type_nucl_num,
|
|
const int64_t* type_nucl_vector,
|
|
const int64_t aord_num,
|
|
const double* a_vector,
|
|
const double* en_distance_rescaled,
|
|
const double* en_distance_rescaled_gl,
|
|
double* const forces_jastrow_en );
|
|
|
|
qmckl_exit_code qmckl_compute_forces_jastrow_en (
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t type_nucl_num,
|
|
const int64_t* type_nucl_vector,
|
|
const int64_t aord_num,
|
|
const double* a_vector,
|
|
const double* en_distance_rescaled,
|
|
const double* en_distance_rescaled_gl,
|
|
double* const forces_jastrow_en );
|
|
#+end_src
|
|
|
|
|
|
#+begin_src c :tangle (eval c) :comments org :exports none
|
|
qmckl_exit_code
|
|
qmckl_compute_forces_jastrow_en (const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t type_nucl_num,
|
|
const int64_t* type_nucl_vector,
|
|
const int64_t aord_num,
|
|
const double* a_vector,
|
|
const double* en_distance_rescaled,
|
|
const double* en_distance_rescaled_gl,
|
|
double* const forces_jastrow_en )
|
|
{
|
|
#ifdef HAVE_HPC
|
|
return qmckl_compute_forces_jastrow_en_doc
|
|
#else
|
|
return qmckl_compute_forces_jastrow_en_doc
|
|
#endif
|
|
(context, walk_num, elec_num, nucl_num, type_nucl_num, type_nucl_vector, aord_num,
|
|
a_vector, en_distance_rescaled, en_distance_rescaled_gl, forces_jastrow_en);
|
|
}
|
|
#+end_src
|
|
|
|
** Test
|
|
|
|
#+begin_src c :tangle (eval c_test)
|
|
printf("Forces Jastrow en\n");
|
|
|
|
/* Check if Jastrow is properly initialized */
|
|
assert(qmckl_jastrow_champ_provided(context));
|
|
|
|
rc = qmckl_set_nucleus_coord(context, 'T', &(nucl_coord[0]), 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
double forces_jastrow_en[walk_num][nucl_num][3];
|
|
rc = qmckl_get_forces_jastrow_en(context, &forces_jastrow_en[0][0][0], 3*nucl_num*walk_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
double finite_difference_force_en[walk_num][nucl_num][3];
|
|
rc = qmckl_finite_difference_deriv_n(context, delta_x, &qmckl_get_jastrow_champ_factor_en, &(finite_difference_force_en[0][0][0]), 1);
|
|
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
//printf("%.10f\t", finite_difference_force_en[nw][a][k]);
|
|
//printf("%.10f\n", forces_jastrow_en[nw][a][k]);
|
|
}
|
|
}
|
|
}
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
assert(fabs(finite_difference_force_en[nw][a][k] - forces_jastrow_en[nw][a][k]) < 1.e-8);
|
|
}
|
|
}
|
|
}
|
|
printf("OK\n");
|
|
|
|
#+end_src
|
|
|
|
|
|
* Force of en jastrow gradient
|
|
|
|
** Get
|
|
|
|
|
|
#+begin_src c :comments org :tangle (eval h_func) :noweb yes
|
|
qmckl_exit_code
|
|
qmckl_get_forces_jastrow_en_g(qmckl_context context,
|
|
double* const forces_jastrow_en_g,
|
|
const int64_t size_max);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code
|
|
qmckl_get_forces_jastrow_en_g(qmckl_context context,
|
|
double* const forces_jastrow_en_g,
|
|
const int64_t size_max)
|
|
{
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return QMCKL_NULL_CONTEXT;
|
|
}
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
rc = qmckl_provide_forces_jastrow_en_g(context);
|
|
if (rc != QMCKL_SUCCESS) return rc;
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
int64_t sze = 3*3 * ctx->nucleus.num * ctx->electron.walker.num * ctx->electron.num;
|
|
if (size_max < sze) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_INVALID_ARG_3,
|
|
"qmckl_get_forces_jastrow_en_g",
|
|
"Array too small. Expected 3*3*nucl_num*walk_num_elec_num");
|
|
}
|
|
|
|
memcpy(forces_jastrow_en_g, ctx->forces.forces_jastrow_en_g, sze * sizeof(double));
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
|
|
#+begin_src f90 :tangle (eval fh_func) :comments org
|
|
interface
|
|
integer(qmckl_exit_code) function qmckl_get_forces_jastrow_en_g (context, &
|
|
forces_jastrow_en_g, size_max) bind(C)
|
|
use, intrinsic :: iso_c_binding
|
|
import
|
|
implicit none
|
|
integer (qmckl_context) , intent(in), value :: context
|
|
integer(c_int64_t), intent(in), value :: size_max
|
|
real(c_double), intent(out) :: forces_jastrow_en_g(size_max)
|
|
end function qmckl_get_forces_jastrow_en_g
|
|
end interface
|
|
#+end_src
|
|
|
|
** Provide :noexport:
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_jastrow_en_g(qmckl_context context);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_jastrow_en_g(qmckl_context context)
|
|
{
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_INVALID_CONTEXT,
|
|
"qmckl_provide_forces_jastrow_en_g",
|
|
NULL);
|
|
}
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
if (!ctx->jastrow_champ.provided) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_NOT_PROVIDED,
|
|
"qmckl_provide_forces_jastrow_en_g",
|
|
NULL);
|
|
}
|
|
|
|
|
|
/* Check if en rescaled distance is provided */
|
|
rc = qmckl_provide_en_distance_rescaled(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_en_distance_rescaled_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
rc = qmckl_provide_en_distance(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
|
|
/* Compute if necessary */
|
|
if (ctx->date > ctx->forces.forces_jastrow_en_g_date) {
|
|
|
|
if (ctx->electron.walker.num > ctx->electron.walker_old.num) {
|
|
if (ctx->forces.forces_jastrow_en_g != NULL) {
|
|
rc = qmckl_free(context, ctx->forces.forces_jastrow_en_g);
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return qmckl_failwith( context, rc,
|
|
"qmckl_provide_forces_jastrow_en",
|
|
"Unable to free ctx->forces.forces_jastrow_en_g");
|
|
}
|
|
ctx->forces.forces_jastrow_en_g = NULL;
|
|
}
|
|
}
|
|
|
|
/* Allocate array */
|
|
if (ctx->forces.forces_jastrow_en_g == NULL) {
|
|
|
|
qmckl_memory_info_struct mem_info = qmckl_memory_info_struct_zero;
|
|
mem_info.size = ctx->electron.walker.num * 3 * 3 * ctx->nucleus.num * ctx->electron.num * sizeof(double);
|
|
double* forces_jastrow_en_g = (double*) qmckl_malloc(context, mem_info);
|
|
|
|
if (forces_jastrow_en_g == NULL) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_ALLOCATION_FAILED,
|
|
"qmckl_provide_forces_jastrow_en_g",
|
|
NULL);
|
|
}
|
|
ctx->forces.forces_jastrow_en_g = forces_jastrow_en_g;
|
|
}
|
|
|
|
rc = qmckl_compute_forces_jastrow_en_g(context,
|
|
ctx->electron.walker.num,
|
|
ctx->electron.num,
|
|
ctx->nucleus.num,
|
|
ctx->jastrow_champ.type_nucl_num,
|
|
ctx->jastrow_champ.type_nucl_vector,
|
|
ctx->jastrow_champ.aord_num,
|
|
ctx->jastrow_champ.a_vector,
|
|
ctx->jastrow_champ.rescale_factor_en,
|
|
ctx->electron.en_distance,
|
|
ctx->jastrow_champ.en_distance_rescaled,
|
|
ctx->jastrow_champ.en_distance_rescaled_gl,
|
|
ctx->forces.forces_jastrow_en_g);
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return rc;
|
|
}
|
|
|
|
ctx->forces.forces_jastrow_en_g_date = ctx->date;
|
|
}
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
** Compute
|
|
|
|
:PROPERTIES:
|
|
:Name: qmckl_compute_forces_jastrow_en_g
|
|
:CRetType: qmckl_exit_code
|
|
:FRetType: qmckl_exit_code
|
|
:END:
|
|
|
|
#+NAME: qmckl_forces_jastrow_en_g_args
|
|
| Variable | Type | In/Out | Description |
|
|
|---------------------------+-------------------------------------------+--------+---------------------------------------|
|
|
| ~context~ | ~qmckl_context~ | in | Global state |
|
|
| ~walk_num~ | ~int64_t~ | in | Number of walkers |
|
|
| ~elec_num~ | ~int64_t~ | in | Number of electrons |
|
|
| ~nucl_num~ | ~int64_t~ | in | Number of nuclei |
|
|
| ~type_nucl_num~ | ~int64_t~ | in | Number of unique nuclei |
|
|
| ~type_nucl_vector~ | ~int64_t[nucl_num]~ | in | IDs of unique nuclei |
|
|
| ~aord_num~ | ~int64_t~ | in | Number of coefficients |
|
|
| ~a_vector~ | ~double[type_nucl_num][aord_num+1]~ | in | List of coefficients |
|
|
| ~rescale_factor_en~ | ~double[type_nucl_num]~ | in | Rescale factor for electron-nucleus |
|
|
| ~en_distance~ | ~double[elec_num][nucl_num]~ | in | Electron-nucleus distances |
|
|
| ~en_distance_rescaled~ | ~double[walk_num][nucl_num][elec_num]~ | in | Electron-nucleus distances |
|
|
| ~en_distance_rescaled_gl~ | ~double[walk_num][nucl_num][elec_num][4]~ | in | Electron-nucleus distance derivatives |
|
|
| ~forces_jastrow_en_g~ | ~double[walk_num][nucl_num][3][elec_num][3]~ | out | Electron-nucleus forces |
|
|
|
|
#+begin_src f90 :comments org :tangle (eval f) :noweb yes
|
|
function qmckl_compute_forces_jastrow_en_g_doc( &
|
|
context, walk_num, elec_num, nucl_num, type_nucl_num, &
|
|
type_nucl_vector, aord_num, a_vector, rescale_factor_en, en_distance, &
|
|
en_distance_rescaled, en_distance_rescaled_gl, forces_jastrow_en_g) &
|
|
bind(C) result(info)
|
|
use qmckl
|
|
implicit none
|
|
|
|
integer (qmckl_context), intent(in), value :: context
|
|
integer (c_int64_t) , intent(in) , value :: walk_num
|
|
integer (c_int64_t) , intent(in) , value :: elec_num
|
|
integer (c_int64_t) , intent(in) , value :: nucl_num
|
|
integer (c_int64_t) , intent(in) , value :: type_nucl_num
|
|
integer (c_int64_t) , intent(in) :: type_nucl_vector(nucl_num)
|
|
integer (c_int64_t) , intent(in) , value :: aord_num
|
|
real (c_double ) , intent(in) :: a_vector(aord_num+1,type_nucl_num)
|
|
real (c_double ) , intent(in) :: rescale_factor_en(type_nucl_num)
|
|
real (c_double ) , intent(in) :: en_distance(nucl_num, elec_num)
|
|
real (c_double ) , intent(in) :: en_distance_rescaled(elec_num,nucl_num,walk_num)
|
|
real (c_double ) , intent(in) :: en_distance_rescaled_gl(4, elec_num,nucl_num,walk_num)
|
|
real (c_double ) , intent(out) :: forces_jastrow_en_g(3,elec_num,3,nucl_num,walk_num)
|
|
integer(qmckl_exit_code) :: info
|
|
|
|
integer*8 :: i, a, k, nw, ii, m,l
|
|
double precision :: x, x1, kf
|
|
double precision :: denom, invdenom, invdenom2, f, f2, expk, invdist
|
|
double precision :: dx(3)
|
|
|
|
info = QMCKL_SUCCESS
|
|
|
|
if (context == QMCKL_NULL_CONTEXT) then
|
|
info = QMCKL_INVALID_CONTEXT
|
|
return
|
|
endif
|
|
|
|
if (walk_num <= 0) then
|
|
info = QMCKL_INVALID_ARG_2
|
|
return
|
|
endif
|
|
|
|
if (elec_num <= 0) then
|
|
info = QMCKL_INVALID_ARG_3
|
|
return
|
|
endif
|
|
|
|
if (nucl_num <= 0) then
|
|
info = QMCKL_INVALID_ARG_4
|
|
return
|
|
endif
|
|
|
|
if (aord_num < 0) then
|
|
info = QMCKL_INVALID_ARG_7
|
|
return
|
|
endif
|
|
|
|
do nw =1, walk_num
|
|
forces_jastrow_en_g(:,:,:,:,nw) = 0.0d0
|
|
do a = 1, nucl_num
|
|
do i = 1, elec_num
|
|
expk = dexp(rescale_factor_en(type_nucl_vector(a)+1) * en_distance(a,i))
|
|
invdist = 1.d0 / en_distance(a,i)
|
|
x = en_distance_rescaled(i,a,nw)
|
|
if(abs(x) < 1.d-12) continue
|
|
denom = 1.0d0 + a_vector(2, type_nucl_vector(a)+1) * x
|
|
invdenom = 1.0d0 / denom
|
|
invdenom2 = invdenom*invdenom
|
|
f = a_vector(1, type_nucl_vector(a)+1) * invdenom2
|
|
|
|
do m = 1, 3
|
|
dx(m) = en_distance_rescaled_gl(m,i,a,nw)
|
|
end do
|
|
|
|
do m = 1, 3
|
|
do l = 1,3
|
|
if (m == l) then
|
|
forces_jastrow_en_g(m,i,l,a,nw) = forces_jastrow_en_g(m,i,l,a,nw) - f * invdist / expk
|
|
end if
|
|
|
|
forces_jastrow_en_g(m,i,l,a,nw) = forces_jastrow_en_g(m,i,l,a,nw) + &
|
|
f * dx(m) * dx(l) * invdist * expk
|
|
forces_jastrow_en_g(m,i,l,a,nw) = forces_jastrow_en_g(m,i,l,a,nw) + 2.d0 * f * invdenom * &
|
|
a_vector(2, type_nucl_vector(a)+1) * dx(m) * dx(l)
|
|
end do
|
|
end do
|
|
|
|
kf = 2.d0
|
|
x1 = x
|
|
x = 1.d0
|
|
do k=2, aord_num
|
|
f = a_vector(k+1,type_nucl_vector(a)+1) * kf * x
|
|
f2 = a_vector(k+1,type_nucl_vector(a)+1) * kf * x * (kf-1.d0)
|
|
|
|
do m = 1, 3
|
|
do l = 1, 3
|
|
if (m == l) then
|
|
forces_jastrow_en_g(m,i,l,a,nw) = forces_jastrow_en_g(m,i,l,a,nw) - f * x1 * invdist / expk
|
|
end if
|
|
forces_jastrow_en_g(m,i,l,a,nw) = forces_jastrow_en_g(m,i,l,a,nw) - f2 * dx(m) * dx(l) &
|
|
+ f * x1 * dx(m) * dx(l) * rescale_factor_en(type_nucl_vector(a)+1) * expk &
|
|
+ f * x1 * dx(m) * dx(l) * invdist * expk
|
|
end do
|
|
end do
|
|
x = x*x1
|
|
kf = kf + 1.d0
|
|
end do
|
|
end do
|
|
end do
|
|
end do
|
|
|
|
|
|
|
|
end function qmckl_compute_forces_jastrow_en_g_doc
|
|
#+end_src
|
|
|
|
# #+CALL: generate_c_header(table=qmckl_factor_en_gl_args,rettyp=get_value("CRetType"),fname=get_value("Name"))
|
|
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_compute_forces_jastrow_en_g_doc (
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t type_nucl_num,
|
|
const int64_t* type_nucl_vector,
|
|
const int64_t aord_num,
|
|
const double* a_vector,
|
|
const double* rescale_factor_en,
|
|
const double* en_distance,
|
|
const double* en_distance_rescaled,
|
|
const double* en_distance_rescaled_gl,
|
|
double* const forces_jastrow_en_g );
|
|
|
|
qmckl_exit_code qmckl_compute_forces_jastrow_en_g (
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t type_nucl_num,
|
|
const int64_t* type_nucl_vector,
|
|
const int64_t aord_num,
|
|
const double* a_vector,
|
|
const double* rescale_factor_en,
|
|
const double* en_distance,
|
|
const double* en_distance_rescaled,
|
|
const double* en_distance_rescaled_gl,
|
|
double* const forces_jastrow_en_g );
|
|
|
|
qmckl_exit_code qmckl_compute_forces_jastrow_en_g (
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t type_nucl_num,
|
|
const int64_t* type_nucl_vector,
|
|
const int64_t aord_num,
|
|
const double* a_vector,
|
|
const double* rescale_factor_en,
|
|
const double* en_distance,
|
|
const double* en_distance_rescaled,
|
|
const double* en_distance_rescaled_gl,
|
|
double* const forces_jastrow_en_g );
|
|
#+end_src
|
|
|
|
|
|
#+begin_src c :tangle (eval c) :comments org :exports none
|
|
qmckl_exit_code
|
|
qmckl_compute_forces_jastrow_en_g (const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t type_nucl_num,
|
|
const int64_t* type_nucl_vector,
|
|
const int64_t aord_num,
|
|
const double* a_vector,
|
|
const double* rescale_factor_en,
|
|
const double* en_distance,
|
|
const double* en_distance_rescaled,
|
|
const double* en_distance_rescaled_gl,
|
|
double* const forces_jastrow_en_g )
|
|
{
|
|
#ifdef HAVE_HPC
|
|
return qmckl_compute_forces_jastrow_en_g_doc
|
|
#else
|
|
return qmckl_compute_forces_jastrow_en_g_doc
|
|
#endif
|
|
(context, walk_num, elec_num, nucl_num, type_nucl_num, type_nucl_vector, aord_num,
|
|
a_vector, rescale_factor_en, en_distance, en_distance_rescaled, en_distance_rescaled_gl, forces_jastrow_en_g);
|
|
}
|
|
#+end_src
|
|
|
|
** Test
|
|
|
|
#+begin_src c :tangle (eval c_test)
|
|
printf("Forces Jastrow en G\n");
|
|
|
|
/* Check if Jastrow is properly initialized */
|
|
assert(qmckl_jastrow_champ_provided(context));
|
|
|
|
rc = qmckl_set_nucleus_coord(context, 'T', &(nucl_coord[0]), 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
double forces_jastrow_en_g[walk_num][nucl_num][3][elec_num][3];
|
|
rc = qmckl_get_forces_jastrow_en_g(context, &forces_jastrow_en_g[0][0][0][0][0], 3*3*nucl_num*walk_num*elec_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
double finite_difference_force_en_g[walk_num][nucl_num][3][4][elec_num];
|
|
rc = qmckl_finite_difference_deriv_n(context, delta_x, &qmckl_get_jastrow_champ_factor_en_gl, &finite_difference_force_en_g[0][0][0][0][0], 4*elec_num);
|
|
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
for (int i = 0; i < elec_num; i++){
|
|
for (int l = 1; l < 3; l++){
|
|
//printf("finite_difference_force_en_g[%i][%i][%i][%i][%i] %+3.10f \n", nw,a,k,l,i,finite_difference_force_en_g[nw][a][k][l][i]);
|
|
//printf("forces_jastrow_en_g [%i][%i][%i][%i][%i] %+3.10f\n", nw,a,k,i,l,forces_jastrow_en_g[nw][a][k][i][l]);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
for (int i = 0; i < elec_num; i++){
|
|
for (int l = 1; l < 3; l++){
|
|
assert(fabs(finite_difference_force_en_g[nw][a][k][l][i] - forces_jastrow_en_g[nw][a][k][i][l]) < 1.e-8);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
printf("OK\n");
|
|
|
|
#+end_src
|
|
|
|
* Force of en jastrow laplacien
|
|
|
|
** Get
|
|
|
|
|
|
#+begin_src c :comments org :tangle (eval h_func) :noweb yes
|
|
qmckl_exit_code
|
|
qmckl_get_forces_jastrow_en_l(qmckl_context context,
|
|
double* const forces_jastrow_en_l,
|
|
const int64_t size_max);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code
|
|
qmckl_get_forces_jastrow_en_l(qmckl_context context,
|
|
double* const forces_jastrow_en_l,
|
|
const int64_t size_max)
|
|
{
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return QMCKL_NULL_CONTEXT;
|
|
}
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
rc = qmckl_provide_forces_jastrow_en_l(context);
|
|
if (rc != QMCKL_SUCCESS) return rc;
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
int64_t sze = 3 * ctx->nucleus.num * ctx->electron.walker.num;
|
|
if (size_max < sze) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_INVALID_ARG_3,
|
|
"qmckl_get_forces_jastrow_en_l",
|
|
"Array too small. Expected 3*nucl_num*walk_num");
|
|
}
|
|
|
|
memcpy(forces_jastrow_en_l, ctx->forces.forces_jastrow_en_l, sze * sizeof(double));
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
|
|
#+begin_src f90 :tangle (eval fh_func) :comments org
|
|
interface
|
|
integer(qmckl_exit_code) function qmckl_get_forces_jastrow_en_l (context, &
|
|
forces_jastrow_en_l, size_max) bind(C)
|
|
use, intrinsic :: iso_c_binding
|
|
import
|
|
implicit none
|
|
integer (qmckl_context) , intent(in), value :: context
|
|
integer(c_int64_t), intent(in), value :: size_max
|
|
real(c_double), intent(out) :: forces_jastrow_en_l(size_max)
|
|
end function qmckl_get_forces_jastrow_en_l
|
|
end interface
|
|
#+end_src
|
|
|
|
** Provide :noexport:
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_jastrow_en_l(qmckl_context context);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_jastrow_en_l(qmckl_context context)
|
|
{
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_INVALID_CONTEXT,
|
|
"qmckl_provide_forces_jastrow_en_l",
|
|
NULL);
|
|
}
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
if (!ctx->jastrow_champ.provided) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_NOT_PROVIDED,
|
|
"qmckl_provide_forces_jastrow_en_l",
|
|
NULL);
|
|
}
|
|
|
|
|
|
/* Check if en rescaled distance is provided */
|
|
rc = qmckl_provide_en_distance_rescaled(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_en_distance_rescaled_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
rc = qmckl_provide_en_distance(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
|
|
/* Compute if necessary */
|
|
if (ctx->date > ctx->forces.forces_jastrow_en_l_date) {
|
|
|
|
if (ctx->electron.walker.num > ctx->electron.walker_old.num) {
|
|
if (ctx->forces.forces_jastrow_en_l != NULL) {
|
|
rc = qmckl_free(context, ctx->forces.forces_jastrow_en_l);
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return qmckl_failwith( context, rc,
|
|
"qmckl_provide_forces_jastrow_en_l",
|
|
"Unable to free ctx->forces.forces_jastrow_en_l");
|
|
}
|
|
ctx->forces.forces_jastrow_en_l = NULL;
|
|
}
|
|
}
|
|
|
|
/* Allocate array */
|
|
if (ctx->forces.forces_jastrow_en_l == NULL) {
|
|
|
|
qmckl_memory_info_struct mem_info = qmckl_memory_info_struct_zero;
|
|
mem_info.size = ctx->electron.walker.num * 3 * ctx->nucleus.num * sizeof(double);
|
|
double* forces_jastrow_en_l = (double*) qmckl_malloc(context, mem_info);
|
|
|
|
if (forces_jastrow_en_l == NULL) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_ALLOCATION_FAILED,
|
|
"qmckl_provide_forces_jastrow_en_l",
|
|
NULL);
|
|
}
|
|
ctx->forces.forces_jastrow_en_l = forces_jastrow_en_l;
|
|
}
|
|
|
|
rc = qmckl_compute_forces_jastrow_en_l(context,
|
|
ctx->electron.walker.num,
|
|
ctx->electron.num,
|
|
ctx->nucleus.num,
|
|
ctx->jastrow_champ.type_nucl_num,
|
|
ctx->jastrow_champ.type_nucl_vector,
|
|
ctx->jastrow_champ.aord_num,
|
|
ctx->jastrow_champ.a_vector,
|
|
ctx->jastrow_champ.rescale_factor_en,
|
|
ctx->electron.en_distance,
|
|
ctx->jastrow_champ.en_distance_rescaled,
|
|
ctx->jastrow_champ.en_distance_rescaled_gl,
|
|
ctx->forces.forces_jastrow_en_l);
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return rc;
|
|
}
|
|
|
|
ctx->forces.forces_jastrow_en_l_date = ctx->date;
|
|
}
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
** Compute
|
|
|
|
:PROPERTIES:
|
|
:Name: qmckl_compute_forces_jastrow_en_l
|
|
:CRetType: qmckl_exit_code
|
|
:FRetType: qmckl_exit_code
|
|
:END:
|
|
|
|
#+NAME: qmckl_forces_jastrow_en_l_args
|
|
| Variable | Type | In/Out | Description |
|
|
|---------------------------+-------------------------------------------+--------+---------------------------------------|
|
|
| ~context~ | ~qmckl_context~ | in | Global state |
|
|
| ~walk_num~ | ~int64_t~ | in | Number of walkers |
|
|
| ~elec_num~ | ~int64_t~ | in | Number of electrons |
|
|
| ~nucl_num~ | ~int64_t~ | in | Number of nuclei |
|
|
| ~type_nucl_num~ | ~int64_t~ | in | Number of unique nuclei |
|
|
| ~type_nucl_vector~ | ~int64_t[nucl_num]~ | in | IDs of unique nuclei |
|
|
| ~aord_num~ | ~int64_t~ | in | Number of coefficients |
|
|
| ~a_vector~ | ~double[type_nucl_num][aord_num+1]~ | in | List of coefficients |
|
|
| ~rescale_factor_en~ | ~double[type_nucl_num]~ | in | Rescale factor for electron-nucleus |
|
|
| ~en_distance~ | ~double[elec_num][nucl_num]~ | in | Electron-nucleus distances |
|
|
| ~en_distance_rescaled~ | ~double[walk_num][nucl_num][elec_num]~ | in | Electron-nucleus distances |
|
|
| ~en_distance_rescaled_gl~ | ~double[walk_num][nucl_num][elec_num][4]~ | in | Electron-nucleus distance derivatives |
|
|
| ~forces_jastrow_en_l~ | ~double[walk_num][nucl_num][3]~ | out | Electron-nucleus forces |
|
|
|
|
#+begin_src f90 :comments org :tangle (eval f) :noweb yes
|
|
function qmckl_compute_forces_jastrow_en_l_doc( &
|
|
context, walk_num, elec_num, nucl_num, type_nucl_num, &
|
|
type_nucl_vector, aord_num, a_vector, rescale_factor_en, en_distance, &
|
|
en_distance_rescaled, en_distance_rescaled_gl, forces_jastrow_en_l) &
|
|
bind(C) result(info)
|
|
use qmckl
|
|
implicit none
|
|
|
|
integer (qmckl_context), intent(in), value :: context
|
|
integer (c_int64_t) , intent(in) , value :: walk_num
|
|
integer (c_int64_t) , intent(in) , value :: elec_num
|
|
integer (c_int64_t) , intent(in) , value :: nucl_num
|
|
integer (c_int64_t) , intent(in) , value :: type_nucl_num
|
|
integer (c_int64_t) , intent(in) :: type_nucl_vector(nucl_num)
|
|
integer (c_int64_t) , intent(in) , value :: aord_num
|
|
real (c_double ) , intent(in) :: a_vector(aord_num+1,type_nucl_num)
|
|
real (c_double ) , intent(in) :: rescale_factor_en(type_nucl_num)
|
|
real (c_double ) , intent(in) :: en_distance(nucl_num, elec_num)
|
|
real (c_double ) , intent(in) :: en_distance_rescaled(elec_num,nucl_num,walk_num)
|
|
real (c_double ) , intent(in) :: en_distance_rescaled_gl(4, elec_num,nucl_num,walk_num)
|
|
real (c_double ) , intent(out) :: forces_jastrow_en_l(3,nucl_num,walk_num)
|
|
integer(qmckl_exit_code) :: info
|
|
|
|
integer*8 :: i, a, k, nw, ii, m,l
|
|
double precision :: x, x1, kf
|
|
double precision :: denom, invdenom, invdenom2, f, f2, expk, invdist
|
|
double precision :: dx(3)
|
|
|
|
info = QMCKL_SUCCESS
|
|
|
|
if (context == QMCKL_NULL_CONTEXT) then
|
|
info = QMCKL_INVALID_CONTEXT
|
|
return
|
|
endif
|
|
|
|
if (walk_num <= 0) then
|
|
info = QMCKL_INVALID_ARG_2
|
|
return
|
|
endif
|
|
|
|
if (elec_num <= 0) then
|
|
info = QMCKL_INVALID_ARG_3
|
|
return
|
|
endif
|
|
|
|
if (nucl_num <= 0) then
|
|
info = QMCKL_INVALID_ARG_4
|
|
return
|
|
endif
|
|
|
|
if (aord_num < 0) then
|
|
info = QMCKL_INVALID_ARG_7
|
|
return
|
|
endif
|
|
|
|
do nw =1, walk_num
|
|
forces_jastrow_en_l(:,:,nw) = 0.0d0
|
|
do a = 1, nucl_num
|
|
do i = 1, elec_num
|
|
expk = dexp(rescale_factor_en(type_nucl_vector(a)+1) * en_distance(a,i))
|
|
invdist = 1.d0 / en_distance(a,i)
|
|
x = en_distance_rescaled(i,a,nw)
|
|
if(abs(x) < 1.d-12) continue
|
|
denom = 1.0d0 + a_vector(2, type_nucl_vector(a)+1) * x
|
|
invdenom = 1.0d0 / denom
|
|
invdenom2 = invdenom*invdenom
|
|
f = a_vector(1, type_nucl_vector(a)+1) * invdenom2
|
|
|
|
do m = 1, 4
|
|
dx(m) = en_distance_rescaled_gl(m,i,a,nw)
|
|
end do
|
|
|
|
!do m = 1, 3
|
|
! do l = 1,3
|
|
! if (m == l) then
|
|
! forces_jastrow_en_g(l,a,nw) = forces_jastrow_en_g(l,a,nw) - f * invdist / expk
|
|
! end if
|
|
|
|
! forces_jastrow_en_g(l,a,nw) = forces_jastrow_en_g(l,a,nw) + f * dx(m) * dx(l) * invdist * expk
|
|
! forces_jastrow_en_g(l,a,nw) = forces_jastrow_en_g(l,a,nw) + 2.d0 * f * invdenom * &
|
|
! a_vector(2, type_nucl_vector(a)+1) * dx(m) * dx(l)
|
|
! end do
|
|
!end do
|
|
|
|
|
|
kf = 2.d0
|
|
x1 = x
|
|
x = 1.d0
|
|
do k=2, aord_num
|
|
f = a_vector(k+1,type_nucl_vector(a)+1) * kf * x
|
|
do m = 1, 3
|
|
forces_jastrow_en_l(m,a,nw) = forces_jastrow_en_l(m,a,nw) &
|
|
- f * dx(m) * dx(4) * (kf-1.d0) &
|
|
- f / x1 * (kf-1.d0) * (kf-2.d0) * dx(m) /expk /expk &
|
|
+ f * x1 * rescale_factor_en(type_nucl_vector(a)+1) * dx(m) * dx(4) * expk &
|
|
+ f * x1 * 2 * dx(m) * invdist * invdist &
|
|
+ 2 * f * (kf-1.d0) * dx(m) * rescale_factor_en(type_nucl_vector(a)+1) / expk
|
|
end do
|
|
x = x*x1
|
|
kf = kf + 1.d0
|
|
end do
|
|
|
|
end do
|
|
end do
|
|
end do
|
|
|
|
|
|
|
|
end function qmckl_compute_forces_jastrow_en_l_doc
|
|
#+end_src
|
|
|
|
# #+CALL: generate_c_header(table=qmckl_factor_en_gl_args,rettyp=get_value("CRetType"),fname=get_value("Name"))
|
|
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_compute_forces_jastrow_en_l_doc (
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t type_nucl_num,
|
|
const int64_t* type_nucl_vector,
|
|
const int64_t aord_num,
|
|
const double* a_vector,
|
|
const double* rescale_factor_en,
|
|
const double* en_distance,
|
|
const double* en_distance_rescaled,
|
|
const double* en_distance_rescaled_gl,
|
|
double* const forces_jastrow_en_l );
|
|
|
|
qmckl_exit_code qmckl_compute_forces_jastrow_en_l (
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t type_nucl_num,
|
|
const int64_t* type_nucl_vector,
|
|
const int64_t aord_num,
|
|
const double* a_vector,
|
|
const double* rescale_factor_en,
|
|
const double* en_distance,
|
|
const double* en_distance_rescaled,
|
|
const double* en_distance_rescaled_gl,
|
|
double* const forces_jastrow_en_l );
|
|
|
|
qmckl_exit_code qmckl_compute_forces_jastrow_en_l (
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t type_nucl_num,
|
|
const int64_t* type_nucl_vector,
|
|
const int64_t aord_num,
|
|
const double* a_vector,
|
|
const double* rescale_factor_en,
|
|
const double* en_distance,
|
|
const double* en_distance_rescaled,
|
|
const double* en_distance_rescaled_gl,
|
|
double* const forces_jastrow_en_l );
|
|
#+end_src
|
|
|
|
|
|
#+begin_src c :tangle (eval c) :comments org :exports none
|
|
qmckl_exit_code
|
|
qmckl_compute_forces_jastrow_en_l (const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t type_nucl_num,
|
|
const int64_t* type_nucl_vector,
|
|
const int64_t aord_num,
|
|
const double* a_vector,
|
|
const double* rescale_factor_en,
|
|
const double* en_distance,
|
|
const double* en_distance_rescaled,
|
|
const double* en_distance_rescaled_gl,
|
|
double* const forces_jastrow_en_l )
|
|
{
|
|
#ifdef HAVE_HPC
|
|
return qmckl_compute_forces_jastrow_en_l_doc
|
|
#else
|
|
return qmckl_compute_forces_jastrow_en_l_doc
|
|
#endif
|
|
(context, walk_num, elec_num, nucl_num, type_nucl_num, type_nucl_vector, aord_num,
|
|
a_vector, rescale_factor_en, en_distance, en_distance_rescaled, en_distance_rescaled_gl, forces_jastrow_en_l);
|
|
}
|
|
#+end_src
|
|
|
|
** Test
|
|
|
|
#+begin_src c :tangle (eval c_test)
|
|
printf("Forces Jastrow en L\n");
|
|
|
|
/* Check if Jastrow is properly initialized */
|
|
assert(qmckl_jastrow_champ_provided(context));
|
|
|
|
rc = qmckl_set_nucleus_coord(context, 'T', &(nucl_coord[0]), 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
double forces_jastrow_en_l[walk_num][nucl_num][3];
|
|
rc = qmckl_get_forces_jastrow_en_l(context, &forces_jastrow_en_l[0][0][0], 3*nucl_num*walk_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
double finite_difference_force_en_l[walk_num][nucl_num][3][4][elec_num];
|
|
rc = qmckl_finite_difference_deriv_n(context, delta_x, &qmckl_get_jastrow_champ_factor_en_gl, &finite_difference_force_en_l[0][0][0][0][0], 4*elec_num);
|
|
|
|
|
|
double finite_difference_force_en_l_sum[walk_num][nucl_num][3];
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
finite_difference_force_en_l_sum[nw][a][k] = 0;
|
|
for (int i = 0; i < elec_num; i++){
|
|
finite_difference_force_en_l_sum[nw][a][k] = finite_difference_force_en_l_sum[nw][a][k] + finite_difference_force_en_l[nw][a][k][3][i];
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
//printf("finite_difference_force_en_l_sum[%i][%i][%i] %+3.10f \n", nw,a,k,finite_difference_force_en_l_sum[nw][a][k]);
|
|
//printf("forces_jastrow_en_l [%i][%i][%i] %+3.10f\n", nw,a,k,forces_jastrow_en_l[nw][a][k]);
|
|
|
|
}
|
|
}
|
|
}
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
assert(fabs(finite_difference_force_en_l_sum[nw][a][k] - forces_jastrow_en_l[nw][a][k]) < 1.e-8);
|
|
}
|
|
}
|
|
}
|
|
printf("OK\n");
|
|
|
|
#+end_src
|
|
|
|
* Force of tmp_c matrix
|
|
|
|
** Get
|
|
|
|
#+begin_src c :comments org :tangle (eval h_func) :noweb yes
|
|
qmckl_exit_code
|
|
qmckl_get_forces_tmp_c(qmckl_context context,
|
|
double* const forces_tmp_c,
|
|
const int64_t size_max);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code
|
|
qmckl_get_forces_tmp_c(qmckl_context context,
|
|
double* const forces_tmp_c,
|
|
const int64_t size_max)
|
|
{
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return QMCKL_NULL_CONTEXT;
|
|
}
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
rc = qmckl_provide_forces_tmp_c(context);
|
|
if (rc != QMCKL_SUCCESS) return rc;
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
int64_t sze = 4 * ctx->electron.walker.num * ctx->electron.num * ctx->nucleus.num *
|
|
ctx->jastrow_champ.cord_num * (ctx->jastrow_champ.cord_num+1);
|
|
|
|
|
|
if (size_max < sze) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_INVALID_ARG_3,
|
|
"qmckl_get_forces_tmp_c",
|
|
"Array too small. Expected 4*walk_num*elec_num*nucl_num*cord_num*(cord_num+1)");
|
|
}
|
|
|
|
memcpy(forces_tmp_c, ctx->forces.forces_tmp_c, sze * sizeof(double));
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
** Provide :noexport:
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_tmp_c(qmckl_context context);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_tmp_c(qmckl_context context)
|
|
{
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return QMCKL_NULL_CONTEXT;
|
|
}
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
if (ctx->jastrow_champ.cord_num > 0) {
|
|
|
|
/* Check if en rescaled distance is provided */
|
|
rc = qmckl_provide_een_rescaled_e(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance gl derivatives is provided */
|
|
rc = qmckl_provide_een_rescaled_n_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
}
|
|
|
|
/* Compute if necessary */
|
|
if (ctx->date > ctx->forces.forces_tmp_c_date) {
|
|
|
|
if (ctx->electron.walker.num > ctx->electron.walker_old.num) {
|
|
if (ctx->forces.forces_tmp_c != NULL) {
|
|
rc = qmckl_free(context, ctx->forces.forces_tmp_c);
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return qmckl_failwith( context, rc,
|
|
"qmckl_provide_forces_tmp_c",
|
|
"Unable to free ctx->forces.forces_tmp_c");
|
|
}
|
|
ctx->forces.forces_tmp_c = NULL;
|
|
}
|
|
}
|
|
|
|
/* Allocate array */
|
|
if (ctx->forces.forces_tmp_c == NULL) {
|
|
|
|
qmckl_memory_info_struct mem_info = qmckl_memory_info_struct_zero;
|
|
mem_info.size = 4 * ctx->electron.num * ctx->jastrow_champ.cord_num *
|
|
(ctx->jastrow_champ.cord_num+1) * ctx->nucleus.num * ctx->electron.walker.num * sizeof(double);
|
|
double* forces_tmp_c = (double*) qmckl_malloc(context, mem_info);
|
|
|
|
if (forces_tmp_c == NULL) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_ALLOCATION_FAILED,
|
|
"qmckl_provide_forces_tmp_c",
|
|
NULL);
|
|
}
|
|
ctx->forces.forces_tmp_c = forces_tmp_c;
|
|
}
|
|
|
|
|
|
rc = qmckl_compute_forces_tmp_c(context,
|
|
ctx->electron.walker.num,
|
|
ctx->electron.num,
|
|
ctx->nucleus.num,
|
|
ctx->jastrow_champ.cord_num,
|
|
ctx->jastrow_champ.een_rescaled_e,
|
|
ctx->jastrow_champ.een_rescaled_n_gl,
|
|
ctx->forces.forces_tmp_c);
|
|
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return rc;
|
|
}
|
|
|
|
ctx->forces.forces_tmp_c_date = ctx->date;
|
|
}
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
** Compute
|
|
:PROPERTIES:
|
|
:Name: qmckl_compute_forces_tmp_c
|
|
:CRetType: qmckl_exit_code
|
|
:FRetType: qmckl_exit_code
|
|
:END:
|
|
|
|
#+NAME: qmckl_forces_tmp_c_args
|
|
| Variable | Type | In/Out | Description |
|
|
|-----------------------+----------------------------------------------------+--------+--------------------------------------|
|
|
| ~context~ | ~qmckl_context~ | in | Global state |
|
|
| ~walk_num~ | ~int64_t~ | in | Number of walkers |
|
|
| ~elec_num~ | ~int64_t~ | in | Number of electrons |
|
|
| ~nucl_num~ | ~int64_t~ | in | Number of nuclei |
|
|
| ~cord_num~ | ~int64_t~ | in | order of polynomials |
|
|
| ~een_rescaled_e~ | ~double[walk_num][0:cord_num][elec_num][elec_num]~ | in | Electron-nucleus rescaled |
|
|
| ~een_rescaled_n_gl~ | ~double[walk_num][0:cord_num][nucl_num][4][elec_num]~ | in | Electron-nucleus rescaled factor |
|
|
| ~forces_tmp_c~ | ~double[walk_num][0:cord_num-1][0:cord_num][nucl_num][4][elec_num]~ | out | vector of non-zero coefficients |
|
|
|
|
#+begin_src f90 :comments org :tangle (eval f) :noweb yes
|
|
integer(qmckl_exit_code) function qmckl_compute_forces_tmp_c( &
|
|
context, walk_num, elec_num, nucl_num, cord_num,&
|
|
een_rescaled_e, een_rescaled_n_gl, forces_tmp_c) &
|
|
result(info) bind(C)
|
|
use, intrinsic :: iso_c_binding
|
|
use qmckl
|
|
implicit none
|
|
integer(qmckl_context), intent(in) :: context
|
|
integer (c_int64_t) , intent(in), value :: walk_num, elec_num, cord_num, nucl_num
|
|
real (c_double ) , intent(in) :: een_rescaled_e(elec_num, elec_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(in) :: een_rescaled_n_gl(elec_num, 4, nucl_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(out) :: forces_tmp_c(elec_num, 4, nucl_num,0:cord_num, 0:cord_num-1, walk_num)
|
|
|
|
integer*8 :: nw, i
|
|
|
|
integer*8 :: l, m, k, a,j
|
|
|
|
info = QMCKL_SUCCESS
|
|
|
|
if (context == QMCKL_NULL_CONTEXT) info = QMCKL_INVALID_CONTEXT
|
|
if (walk_num <= 0) info = QMCKL_INVALID_ARG_2
|
|
if (elec_num <= 0) info = QMCKL_INVALID_ARG_3
|
|
if (nucl_num <= 0) info = QMCKL_INVALID_ARG_4
|
|
if (cord_num < 0) info = QMCKL_INVALID_ARG_5
|
|
if (info /= QMCKL_SUCCESS) return
|
|
|
|
do nw=1, walk_num
|
|
do i=0, cord_num-1
|
|
info = qmckl_dgemm(context,'N','N',elec_num*1_8,&
|
|
nucl_num*(cord_num+1)*4_8, elec_num*1_8, -1.0d0, &
|
|
een_rescaled_e(1,1,i,nw),1_8*elec_num, &
|
|
een_rescaled_n_gl(1,1,1,0,nw),elec_num*1_8, &
|
|
0.0d0, &
|
|
forces_tmp_c(1,1,1,0,i,nw),1_8*elec_num)
|
|
end do
|
|
end do
|
|
|
|
|
|
|
|
end function qmckl_compute_forces_tmp_c
|
|
#+end_src
|
|
|
|
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_compute_forces_tmp_c (
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t cord_num,
|
|
const double* een_rescaled_e,
|
|
const double* een_rescaled_n_gl,
|
|
double* const forces_tmp_c );
|
|
#+end_src
|
|
|
|
** Test
|
|
|
|
#+begin_src c :tangle (eval c_test)
|
|
printf("Forces tmp_c\n");
|
|
|
|
/* Check if Jastrow is properly initialized */
|
|
assert(qmckl_jastrow_champ_provided(context));
|
|
|
|
rc = qmckl_set_nucleus_coord(context, 'T', &(nucl_coord[0]), 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
double forces_tmp_c[walk_num][cord_num][cord_num+1][nucl_num][4][elec_num];
|
|
rc = qmckl_get_forces_tmp_c(context, &forces_tmp_c[0][0][0][0][0][0], 4*nucl_num*walk_num*elec_num*(cord_num+1)*cord_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
|
|
double finite_difference_force_tmp_c[walk_num][cord_num][cord_num+1][nucl_num][3][elec_num];
|
|
|
|
double* nucleus_coord = (double*) malloc(3 * nucl_num * sizeof(double));
|
|
if (nucleus_coord == NULL) {
|
|
return QMCKL_ALLOCATION_FAILED;
|
|
}
|
|
|
|
rc = qmckl_get_nucleus_coord(context, 'N', nucleus_coord, 3*nucl_num);
|
|
|
|
double* temp_coord = (double*) malloc(3 * nucl_num * sizeof(double));
|
|
if (temp_coord == NULL) {
|
|
free(nucleus_coord);
|
|
return QMCKL_ALLOCATION_FAILED;
|
|
}
|
|
double output[walk_num][cord_num][cord_num+1][nucl_num][elec_num];
|
|
|
|
// Copy original coordinates
|
|
for (int i = 0; i < 3 * nucl_num; i++) {
|
|
temp_coord[i] = nucleus_coord[i];
|
|
}
|
|
|
|
|
|
|
|
for (int64_t a = 0; a < nucl_num; a++) {
|
|
for (int64_t k = 0; k < 3; k++) {
|
|
for (int64_t m = -4; m <= 4; m++) {
|
|
|
|
// Apply finite difference displacement
|
|
temp_coord[k+a*3] = nucleus_coord[k+3*a] + (double) m * delta_x;
|
|
|
|
// Update coordinates in the context
|
|
rc = qmckl_set_nucleus_coord(context, 'N', temp_coord, 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
rc = qmckl_context_touch(context);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
// Call the provided function
|
|
rc = qmckl_get_jastrow_champ_tmp_c(context,&output[0][0][0][0][0]);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
// Accumulate derivative using finite-difference coefficients
|
|
for (int nw=0 ; nw<walk_num ; nw++) {
|
|
for (int l = 0; l < cord_num; l++) {
|
|
for (int mm = 0; mm <= cord_num; mm++) {
|
|
for (int i = 0; i < elec_num; i++) {
|
|
|
|
if (m == -4) {
|
|
finite_difference_force_tmp_c[nw][l][mm][a][k][i] = 0.0;
|
|
}
|
|
finite_difference_force_tmp_c[nw][l][mm][a][k][i] += coef[m + 4] * output[nw][l][mm][a][i]/delta_x;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
temp_coord[k+a*3] = nucleus_coord[k+3*a];
|
|
}
|
|
}
|
|
|
|
// Reset coordinates in the context
|
|
rc = qmckl_set_nucleus_coord(context, 'N', temp_coord, 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
rc = qmckl_context_touch(context);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
free(nucleus_coord);
|
|
free(temp_coord);
|
|
|
|
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int l = 0; l < cord_num; l++){
|
|
for (int m = 0; m <= cord_num; m++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
for (int i = 0; i < elec_num; i++){
|
|
//printf("nw=%i l=%i m=%i a=%i k=%i i=%i\n",nw,l,m,a,k,i);
|
|
//printf("%.10f\t", finite_difference_force_tmp_c[nw][l][m][a][k][i]);
|
|
//printf("%.10f\n", forces_tmp_c[nw][l][m][a][k][i]);
|
|
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int l = 0; l < cord_num; l++){
|
|
for (int m = 0; m <= cord_num; m++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
for (int i = 0; i < elec_num; i++){
|
|
assert(fabs(finite_difference_force_tmp_c[nw][l][m][a][k][i] - forces_tmp_c[nw][l][m][a][k][i]) < 1.e-8);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
|
|
printf("OK\n");
|
|
|
|
#+end_src
|
|
|
|
* Force of dtmp_c matrix
|
|
|
|
** Get
|
|
|
|
#+begin_src c :comments org :tangle (eval h_func) :noweb yes
|
|
qmckl_exit_code
|
|
qmckl_get_forces_tmp_dc(qmckl_context context,
|
|
double* const forces_dtmp_c,
|
|
const int64_t size_max);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code
|
|
qmckl_get_forces_dtmp_c(qmckl_context context,
|
|
double* const forces_dtmp_c,
|
|
const int64_t size_max)
|
|
{
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return QMCKL_NULL_CONTEXT;
|
|
}
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
rc = qmckl_provide_forces_dtmp_c(context);
|
|
if (rc != QMCKL_SUCCESS) return rc;
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
int64_t sze = 4 * 4 * ctx->electron.walker.num * ctx->electron.num * ctx->nucleus.num *
|
|
ctx->jastrow_champ.cord_num * (ctx->jastrow_champ.cord_num+1);
|
|
|
|
|
|
if (size_max < sze) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_INVALID_ARG_3,
|
|
"qmckl_get_forces_dtmp_c",
|
|
"Array too small. Expected 4*4*walk_num*elec_num*nucl_num*cord_num*(cord_num+1)");
|
|
}
|
|
|
|
memcpy(forces_dtmp_c, ctx->forces.forces_dtmp_c, sze * sizeof(double));
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
** Provide :noexport:
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_dtmp_c(qmckl_context context);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_dtmp_c(qmckl_context context)
|
|
{
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return QMCKL_NULL_CONTEXT;
|
|
}
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
if (ctx->jastrow_champ.cord_num > 0) {
|
|
|
|
/* Check if en rescaled distance is provided */
|
|
rc = qmckl_provide_een_rescaled_e_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance gl derivatives is provided */
|
|
rc = qmckl_provide_een_rescaled_n_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
}
|
|
|
|
/* Compute if necessary */
|
|
if (ctx->date > ctx->forces.forces_dtmp_c_date) {
|
|
|
|
if (ctx->electron.walker.num > ctx->electron.walker_old.num) {
|
|
if (ctx->forces.forces_dtmp_c != NULL) {
|
|
rc = qmckl_free(context, ctx->forces.forces_dtmp_c);
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return qmckl_failwith( context, rc,
|
|
"qmckl_provide_forces_dtmp_c",
|
|
"Unable to free ctx->forces.forces_dtmp_c");
|
|
}
|
|
ctx->forces.forces_dtmp_c = NULL;
|
|
}
|
|
}
|
|
|
|
/* Allocate array */
|
|
if (ctx->forces.forces_dtmp_c == NULL) {
|
|
|
|
qmckl_memory_info_struct mem_info = qmckl_memory_info_struct_zero;
|
|
mem_info.size = 4* 4 * ctx->electron.num * ctx->jastrow_champ.cord_num *
|
|
(ctx->jastrow_champ.cord_num+1) * ctx->nucleus.num * ctx->electron.walker.num * sizeof(double);
|
|
double* forces_dtmp_c = (double*) qmckl_malloc(context, mem_info);
|
|
|
|
if (forces_dtmp_c == NULL) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_ALLOCATION_FAILED,
|
|
"qmckl_provide_forces_dtmp_c",
|
|
NULL);
|
|
}
|
|
ctx->forces.forces_dtmp_c = forces_dtmp_c;
|
|
}
|
|
|
|
|
|
rc = qmckl_compute_forces_dtmp_c(context,
|
|
ctx->electron.walker.num,
|
|
ctx->electron.num,
|
|
ctx->nucleus.num,
|
|
ctx->jastrow_champ.cord_num,
|
|
ctx->jastrow_champ.een_rescaled_e_gl,
|
|
ctx->jastrow_champ.een_rescaled_n_gl,
|
|
ctx->forces.forces_dtmp_c);
|
|
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return rc;
|
|
}
|
|
|
|
ctx->forces.forces_dtmp_c_date = ctx->date;
|
|
}
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
** Compute
|
|
:PROPERTIES:
|
|
:Name: qmckl_compute_forces_dtmp_c
|
|
:CRetType: qmckl_exit_code
|
|
:FRetType: qmckl_exit_code
|
|
:END:
|
|
|
|
#+NAME: qmckl_forces_dtmp_c_args
|
|
| Variable | Type | In/Out | Description |
|
|
|-----------------------+----------------------------------------------------+--------+--------------------------------------|
|
|
| ~context~ | ~qmckl_context~ | in | Global state |
|
|
| ~walk_num~ | ~int64_t~ | in | Number of walkers |
|
|
| ~elec_num~ | ~int64_t~ | in | Number of electrons |
|
|
| ~nucl_num~ | ~int64_t~ | in | Number of nuclei |
|
|
| ~cord_num~ | ~int64_t~ | in | order of polynomials |
|
|
| ~een_rescaled_e_gl~ | ~double[walk_num][0:cord_num][elec_num][4][elec_num]~ | in | Electron-nucleus rescaled |
|
|
| ~een_rescaled_n_gl~ | ~double[walk_num][0:cord_num][nucl_num][4][elec_num]~ | in | Electron-nucleus rescaled factor |
|
|
| ~forces_dtmp_c~ | ~double[walk_num][0:cord_num-1][0:cord_num][4][nucl_num][4][elec_num]~ | out | vector of non-zero coefficients |
|
|
|
|
#+begin_src f90 :comments org :tangle (eval f) :noweb yes
|
|
integer(qmckl_exit_code) function qmckl_compute_forces_dtmp_c( &
|
|
context, walk_num, elec_num, nucl_num, cord_num,&
|
|
een_rescaled_e_gl, een_rescaled_n_gl, forces_dtmp_c) &
|
|
result(info) bind(C)
|
|
use, intrinsic :: iso_c_binding
|
|
use qmckl
|
|
implicit none
|
|
integer(qmckl_context), intent(in) :: context
|
|
integer (c_int64_t) , intent(in), value :: walk_num, elec_num, cord_num, nucl_num
|
|
real (c_double ) , intent(in) :: een_rescaled_e_gl(elec_num, 4, elec_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(in) :: een_rescaled_n_gl(elec_num, 4, nucl_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(out) :: forces_dtmp_c(elec_num, 4, nucl_num,4,0:cord_num, 0:cord_num-1, walk_num)
|
|
|
|
integer*8 :: nw, i, k
|
|
|
|
integer*8 :: l, m, a,j, kk
|
|
|
|
info = QMCKL_SUCCESS
|
|
|
|
if (context == QMCKL_NULL_CONTEXT) info = QMCKL_INVALID_CONTEXT
|
|
if (walk_num <= 0) info = QMCKL_INVALID_ARG_2
|
|
if (elec_num <= 0) info = QMCKL_INVALID_ARG_3
|
|
if (nucl_num <= 0) info = QMCKL_INVALID_ARG_4
|
|
if (cord_num < 0) info = QMCKL_INVALID_ARG_5
|
|
if (info /= QMCKL_SUCCESS) return
|
|
|
|
do nw=1, walk_num
|
|
do i=0, cord_num-1
|
|
do k =1, 4
|
|
info = qmckl_dgemm(context,'N','N',elec_num*1_8,&
|
|
nucl_num*(cord_num+1)*4_8, elec_num*1_8, -1.0d0, &
|
|
een_rescaled_e_gl(1,k,1,i,nw),4_8*elec_num, &
|
|
een_rescaled_n_gl(1,1,1,0,nw),elec_num*1_8, &
|
|
0.0d0, &
|
|
forces_dtmp_c(1,k,1,1,0,i,nw),4_8*elec_num)
|
|
end do
|
|
end do
|
|
end do
|
|
|
|
if (.true.) then
|
|
do nw = 1, walk_num
|
|
do l = 0, cord_num-1
|
|
do m = 0, cord_num
|
|
do k = 1, 4
|
|
do a = 1, nucl_num
|
|
do kk = 1, 4
|
|
do i = 1, elec_num
|
|
forces_dtmp_c(i,kk,a,k,m,l,nw) = 0.0
|
|
do j = 1, elec_num
|
|
forces_dtmp_c(i,kk,a,k,m,l,nw) = forces_dtmp_c(i,kk,a,k,m,l,nw) - een_rescaled_e_gl(i,kk,j,l,nw) * een_rescaled_n_gl(j,k,a,m,nw)
|
|
end do
|
|
end do
|
|
end do
|
|
end do
|
|
end do
|
|
end do
|
|
end do
|
|
end do
|
|
end if
|
|
|
|
end function qmckl_compute_forces_dtmp_c
|
|
#+end_src
|
|
|
|
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_compute_forces_dtmp_c (
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t cord_num,
|
|
const double* een_rescaled_e_gl,
|
|
const double* een_rescaled_n_gl,
|
|
double* const forces_dtmp_c );
|
|
#+end_src
|
|
|
|
** Test
|
|
|
|
#+begin_src c :tangle (eval c_test)
|
|
printf("Forces dtmp_c\n");
|
|
|
|
/* Check if Jastrow is properly initialized */
|
|
assert(qmckl_jastrow_champ_provided(context));
|
|
|
|
rc = qmckl_set_nucleus_coord(context, 'T', &(nucl_coord[0]), 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
double forces_dtmp_c[walk_num][cord_num][cord_num+1][4][nucl_num][4][elec_num];
|
|
rc = qmckl_get_forces_dtmp_c(context, &forces_dtmp_c[0][0][0][0][0][0][0], 4*4*nucl_num*walk_num*elec_num*(cord_num+1)*cord_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
|
|
double finite_difference_force_dtmp_c[walk_num][cord_num][cord_num+1][3][nucl_num][4][elec_num];
|
|
|
|
nucleus_coord = (double*) malloc(3 * nucl_num * sizeof(double));
|
|
if (nucleus_coord == NULL) {
|
|
return QMCKL_ALLOCATION_FAILED;
|
|
}
|
|
|
|
rc = qmckl_get_nucleus_coord(context, 'N', nucleus_coord, 3*nucl_num);
|
|
|
|
temp_coord = (double*) malloc(3 * nucl_num * sizeof(double));
|
|
if (temp_coord == NULL) {
|
|
free(nucleus_coord);
|
|
return QMCKL_ALLOCATION_FAILED;
|
|
}
|
|
double doutput[walk_num][cord_num][cord_num+1][nucl_num][4][elec_num];
|
|
|
|
// Copy original coordinates
|
|
for (int i = 0; i < 3 * nucl_num; i++) {
|
|
temp_coord[i] = nucleus_coord[i];
|
|
}
|
|
|
|
|
|
|
|
for (int64_t a = 0; a < nucl_num; a++) {
|
|
for (int64_t k = 0; k < 3; k++) {
|
|
for (int64_t m = -4; m <= 4; m++) {
|
|
|
|
// Apply finite difference displacement
|
|
temp_coord[k+a*3] = nucleus_coord[k+3*a] + (double) m * delta_x;
|
|
|
|
// Update coordinates in the context
|
|
rc = qmckl_set_nucleus_coord(context, 'N', temp_coord, 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
rc = qmckl_context_touch(context);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
// Call the provided function
|
|
rc = qmckl_get_jastrow_champ_dtmp_c(context,&doutput[0][0][0][0][0][0]);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
// Accumulate derivative using finite-difference coefficients
|
|
for (int nw=0 ; nw<walk_num ; nw++) {
|
|
for (int l = 0; l < cord_num; l++) {
|
|
for (int mm = 0; mm <= cord_num; mm++) {
|
|
for (int i = 0; i < elec_num; i++) {
|
|
for (int j = 0; j < 4; j++) {
|
|
if (m == -4) {
|
|
finite_difference_force_dtmp_c[nw][l][mm][k][a][j][i] = 0.0;
|
|
}
|
|
finite_difference_force_dtmp_c[nw][l][mm][k][a][j][i] += coef[m + 4] * doutput[nw][l][mm][a][j][i]/delta_x;
|
|
}
|
|
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
temp_coord[k+a*3] = nucleus_coord[k+3*a];
|
|
}
|
|
}
|
|
|
|
// Reset coordinates in the context
|
|
rc = qmckl_set_nucleus_coord(context, 'N', temp_coord, 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
rc = qmckl_context_touch(context);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
free(nucleus_coord);
|
|
free(temp_coord);
|
|
|
|
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int l = 0; l < cord_num; l++){
|
|
for (int m = 0; m <= cord_num; m++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
for (int i = 0; i < elec_num; i++){
|
|
for (int kk = 0; kk<4; kk++){
|
|
//printf("nw=%i l=%i m=%i k=%i a=%i kk=%i i=%i\n",nw,l,m,k,a,kk,i);
|
|
//printf("%.10f\t", finite_difference_force_dtmp_c[nw][l][m][k][a][kk][i]);
|
|
//printf("%.10f\n", forces_dtmp_c[nw][l][m][k][a][kk][i]);
|
|
//assert(fabs(finite_difference_force_dtmp_c[nw][l][m][k][a][kk][i] - forces_dtmp_c[nw][l][m][k][a][kk][i]) < 1.e-8);
|
|
}
|
|
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int l = 0; l < cord_num; l++){
|
|
for (int m = 0; m <= cord_num; m++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
for (int i = 0; i < elec_num; i++){
|
|
for (int kk = 0; kk<4; kk++){
|
|
assert(fabs(finite_difference_force_dtmp_c[nw][l][m][k][a][kk][i] - forces_dtmp_c[nw][l][m][k][a][kk][i]) < 1.e-8);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
|
|
printf("OK\n");
|
|
|
|
#+end_src
|
|
* Force of een jastrow value
|
|
|
|
** Get
|
|
|
|
|
|
#+begin_src c :comments org :tangle (eval h_func) :noweb yes
|
|
qmckl_exit_code
|
|
qmckl_get_forces_jastrow_een(qmckl_context context,
|
|
double* const forces_jastrow_een,
|
|
const int64_t size_max);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code
|
|
qmckl_get_forces_jastrow_een(qmckl_context context,
|
|
double* const forces_jastrow_een,
|
|
const int64_t size_max)
|
|
{
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return QMCKL_NULL_CONTEXT;
|
|
}
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
rc = qmckl_provide_forces_jastrow_een(context);
|
|
if (rc != QMCKL_SUCCESS) return rc;
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
int64_t sze = 3 * ctx->nucleus.num * ctx->electron.walker.num;
|
|
if (size_max < sze) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_INVALID_ARG_3,
|
|
"qmckl_get_forces_jastrow_een",
|
|
"Array too small. Expected 3*nucl_num*walk_num");
|
|
}
|
|
|
|
memcpy(forces_jastrow_een, ctx->forces.forces_jastrow_een, sze * sizeof(double));
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
|
|
#+begin_src f90 :tangle (eval fh_func) :comments org
|
|
interface
|
|
integer(qmckl_exit_code) function qmckl_get_forces_jastrow_een (context, &
|
|
forces_jastrow_een, size_max) bind(C)
|
|
use, intrinsic :: iso_c_binding
|
|
import
|
|
implicit none
|
|
integer (qmckl_context) , intent(in), value :: context
|
|
integer(c_int64_t), intent(in), value :: size_max
|
|
real(c_double), intent(out) :: forces_jastrow_een(size_max)
|
|
end function qmckl_get_forces_jastrow_een
|
|
end interface
|
|
#+end_src
|
|
|
|
** Provide :noexport:
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_jastrow_een(qmckl_context context);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_jastrow_een(qmckl_context context)
|
|
{
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return QMCKL_NULL_CONTEXT;
|
|
}
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
if (ctx->jastrow_champ.cord_num > 0) {
|
|
|
|
/* Check if en rescaled distance is provided */
|
|
rc = qmckl_provide_een_rescaled_e(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_een_rescaled_n(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance gl derivatives is provided */
|
|
rc = qmckl_provide_een_rescaled_n_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if tmp_c is provided */
|
|
rc = qmckl_provide_tmp_c(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if forces_tmp_c is provided */
|
|
rc = qmckl_provide_forces_tmp_c(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_jastrow_champ_c_vector_full(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_lkpm_combined_index(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
|
|
|
|
}
|
|
|
|
/* Compute if necessary */
|
|
if (ctx->date > ctx->forces.forces_jastrow_een_date) {
|
|
|
|
if (ctx->electron.walker.num > ctx->electron.walker_old.num) {
|
|
if (ctx->forces.forces_jastrow_een != NULL) {
|
|
rc = qmckl_free(context, ctx->forces.forces_jastrow_een);
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return qmckl_failwith( context, rc,
|
|
"qmckl_provide_forces_jastrow_een",
|
|
"Unable to free ctx->forces.forces_jastrow_een");
|
|
}
|
|
ctx->forces.forces_jastrow_een = NULL;
|
|
}
|
|
}
|
|
|
|
/* Allocate array */
|
|
if (ctx->forces.forces_jastrow_een == NULL) {
|
|
|
|
qmckl_memory_info_struct mem_info = qmckl_memory_info_struct_zero;
|
|
mem_info.size = 3 * ctx->nucleus.num * ctx->electron.walker.num * sizeof(double);
|
|
double* forces_jastrow_een = (double*) qmckl_malloc(context, mem_info);
|
|
|
|
if (forces_jastrow_een == NULL) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_ALLOCATION_FAILED,
|
|
"qmckl_provide_forces_jastrow_een",
|
|
NULL);
|
|
}
|
|
ctx->forces.forces_jastrow_een = forces_jastrow_een;
|
|
}
|
|
|
|
|
|
rc = qmckl_compute_forces_jastrow_een(context,
|
|
ctx->electron.walker.num,
|
|
ctx->electron.num,
|
|
ctx->nucleus.num,
|
|
ctx->jastrow_champ.cord_num,
|
|
ctx->jastrow_champ.dim_c_vector,
|
|
ctx->jastrow_champ.c_vector_full,
|
|
ctx->jastrow_champ.lkpm_combined_index,
|
|
ctx->jastrow_champ.een_rescaled_e,
|
|
ctx->jastrow_champ.een_rescaled_n,
|
|
ctx->jastrow_champ.een_rescaled_n_gl,
|
|
ctx->jastrow_champ.tmp_c,
|
|
ctx->forces.forces_tmp_c,
|
|
ctx->forces.forces_jastrow_een);
|
|
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return rc;
|
|
}
|
|
|
|
ctx->forces.forces_jastrow_een_date = ctx->date;
|
|
}
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
** Compute
|
|
:PROPERTIES:
|
|
:Name: qmckl_compute_forces_jastrow_een
|
|
:CRetType: qmckl_exit_code
|
|
:FRetType: qmckl_exit_code
|
|
:END:
|
|
|
|
#+NAME: qmckl_forces_jastrow_een_args
|
|
| Variable | Type | In/Out | Description |
|
|
|-----------------------+----------------------------------------------------+--------+--------------------------------------|
|
|
| ~context~ | ~qmckl_context~ | in | Global state |
|
|
| ~walk_num~ | ~int64_t~ | in | Number of walkers |
|
|
| ~elec_num~ | ~int64_t~ | in | Number of electrons |
|
|
| ~nucl_num~ | ~int64_t~ | in | Number of nuclei |
|
|
| ~cord_num~ | ~int64_t~ | in | order of polynomials |
|
|
| ~dim_c_vector~ | ~int64_t~ | in | dimension of full coefficient vector |
|
|
| ~c_vector_full~ | ~double[dim_c_vector][nucl_num]~ | in | full coefficient vector |
|
|
| ~lkpm_combined_index~ | ~int64_t[4][dim_c_vector]~ | in | combined indices |
|
|
| ~een_rescaled_e~ | ~double[walk_num][0:cord_num][elec_num][elec_num]~ | in | Electron-nucleus rescaled |
|
|
| ~een_rescaled_n~ | ~double[walk_num][0:cord_num][nucl_num][elec_num]~ | in | Electron-nucleus rescaled factor |
|
|
| ~een_rescaled_n_gl~ | ~double[walk_num][0:cord_num][nucl_num][4][elec_num]~ | in | Electron-nucleus rescaled factor |
|
|
| ~tmp_c~ | ~double[walk_num][0:cord_num-1][0:cord_num][nucl_num][elec_num]~ | in | vector of non-zero coefficients |
|
|
| ~forces_tmp_c~ | ~double[walk_num][0:cord_num-1][0:cord_num][nucl_num][4][elec_num]~ | in | vector of non-zero coefficients |
|
|
| ~forces_jastrow_een~ | ~double[walk_num][nucl_num][3]~ | out | Electron-nucleus jastrow |
|
|
|
|
#+begin_src f90 :comments org :tangle (eval f) :noweb yes
|
|
integer(qmckl_exit_code) function qmckl_compute_forces_jastrow_een( &
|
|
context, walk_num, elec_num, nucl_num, cord_num,&
|
|
dim_c_vector, c_vector_full, lkpm_combined_index, &
|
|
een_rescaled_e, een_rescaled_n, een_rescaled_n_gl, tmp_c, forces_tmp_c,forces_jastrow_een) &
|
|
result(info) bind(C)
|
|
use, intrinsic :: iso_c_binding
|
|
use qmckl
|
|
implicit none
|
|
integer(qmckl_context), intent(in) :: context
|
|
integer (c_int64_t) , intent(in), value :: walk_num, elec_num, cord_num, nucl_num, dim_c_vector
|
|
integer (c_int64_t) , intent(in) :: lkpm_combined_index(dim_c_vector,4)
|
|
real (c_double ) , intent(in) :: c_vector_full(nucl_num, dim_c_vector)
|
|
real (c_double ) , intent(in) :: een_rescaled_e(elec_num, elec_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(in) :: een_rescaled_n(elec_num, nucl_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(in) :: een_rescaled_n_gl(elec_num, 4, nucl_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(in) :: tmp_c(elec_num, nucl_num,0:cord_num, 0:cord_num-1, walk_num)
|
|
real (c_double ) , intent(in) :: forces_tmp_c(elec_num,4, nucl_num,0:cord_num, 0:cord_num-1, walk_num)
|
|
real (c_double ) , intent(out) :: forces_jastrow_een(3, nucl_num, walk_num)
|
|
|
|
integer*8 :: i, a, j, l, k, p, m, n, nw, ii
|
|
double precision :: accu, accu2, cn
|
|
|
|
info = QMCKL_SUCCESS
|
|
|
|
if (context == QMCKL_NULL_CONTEXT) info = QMCKL_INVALID_CONTEXT
|
|
if (walk_num <= 0) info = QMCKL_INVALID_ARG_2
|
|
if (elec_num <= 0) info = QMCKL_INVALID_ARG_3
|
|
if (nucl_num <= 0) info = QMCKL_INVALID_ARG_4
|
|
if (cord_num < 0) info = QMCKL_INVALID_ARG_5
|
|
if (info /= QMCKL_SUCCESS) return
|
|
|
|
do nw =1, walk_num
|
|
do n = 1, dim_c_vector
|
|
l = lkpm_combined_index(n, 1)
|
|
k = lkpm_combined_index(n, 2)
|
|
p = lkpm_combined_index(n, 3)
|
|
m = lkpm_combined_index(n, 4)
|
|
|
|
do a = 1, nucl_num
|
|
cn = c_vector_full(a, n)
|
|
if(cn == 0.d0) cycle
|
|
do j = 1, elec_num
|
|
do ii = 1, 3
|
|
accu = een_rescaled_n(j,a,m,nw) * forces_tmp_c(j,ii,a,m+l,k,nw)
|
|
accu = accu - een_rescaled_n_gl(j,ii,a,m,nw) * tmp_c(j,a,m+l,k,nw)
|
|
|
|
forces_jastrow_een(ii, a, nw) = forces_jastrow_een(ii, a, nw) + accu * cn
|
|
end do
|
|
end do
|
|
end do
|
|
end do
|
|
end do
|
|
|
|
end function qmckl_compute_forces_jastrow_een
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_compute_forces_jastrow_een (
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t cord_num,
|
|
const int64_t dim_c_vector,
|
|
const double* c_vector_full,
|
|
const int64_t* lkpm_combined_index,
|
|
const double* een_rescaled_e,
|
|
const double* een_rescaled_n,
|
|
const double* een_rescaled_n_gl,
|
|
const double* tmp_c,
|
|
const double* forces_tmp_c,
|
|
double* const forces_jastrow_een );
|
|
#+end_src
|
|
|
|
|
|
** Test
|
|
|
|
#+begin_src c :tangle (eval c_test)
|
|
printf("Forces Jastrow een\n");
|
|
|
|
/* Check if Jastrow is properly initialized */
|
|
assert(qmckl_jastrow_champ_provided(context));
|
|
|
|
rc = qmckl_set_nucleus_coord(context, 'T', &(nucl_coord[0]), 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
double forces_jastrow_een[walk_num][nucl_num][3];
|
|
rc = qmckl_get_forces_jastrow_een(context, &forces_jastrow_een[0][0][0], 3*nucl_num*walk_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
double finite_difference_force_een[walk_num][nucl_num][3];
|
|
rc = qmckl_finite_difference_deriv_n(context, delta_x, &qmckl_get_jastrow_champ_factor_een, &(finite_difference_force_een[0][0][0]), 1);
|
|
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
//printf("%.10f\t", finite_difference_force_een[nw][a][k]);
|
|
//printf("%.10f\n", forces_jastrow_een[nw][a][k]);
|
|
}
|
|
}
|
|
}
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
assert(fabs(finite_difference_force_een[nw][a][k] - forces_jastrow_een[nw][a][k]) < 1.e-8);
|
|
}
|
|
}
|
|
}
|
|
printf("OK\n");
|
|
|
|
#+end_src
|
|
|
|
* Force of een_rescaled_n_gl
|
|
|
|
** Get
|
|
|
|
#+begin_src c :comments org :tangle (eval h_func) :noweb yes
|
|
qmckl_exit_code
|
|
qmckl_get_forces_een_rescaled_n_gl(qmckl_context context,
|
|
double* const forces_een_n,
|
|
const int64_t size_max);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code
|
|
qmckl_get_forces_een_rescaled_n_gl(qmckl_context context,
|
|
double* const forces_een_n,
|
|
const int64_t size_max)
|
|
{
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return QMCKL_NULL_CONTEXT;
|
|
}
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
rc = qmckl_provide_forces_een_rescaled_n_gl(context);
|
|
if (rc != QMCKL_SUCCESS) return rc;
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
int64_t sze = 3* ctx->electron.num * 4 * ctx->nucleus.num * ctx->electron.walker.num * (ctx->jastrow_champ.cord_num + 1);
|
|
if (size_max < sze) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_INVALID_ARG_3,
|
|
"qmckl_get_forces_een_rescaled_n_gl",
|
|
"Array too small. Expected ctx->electron.num * 3 * 4 * ctx->nucleus.num * ctx->electron.walker.num * (ctx->jastrow_champ.cord_num + 1)");
|
|
}
|
|
memcpy(forces_een_n, ctx->forces.forces_een_n, sze * sizeof(double));
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
** Provide :noexport:
|
|
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_een_rescaled_n_gl(qmckl_context context);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_een_rescaled_n_gl(qmckl_context context)
|
|
{
|
|
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return QMCKL_NULL_CONTEXT;
|
|
}
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
/* Check if ee distance is provided */
|
|
qmckl_exit_code rc = qmckl_provide_en_distance(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if ee distance is provided */
|
|
rc = qmckl_provide_een_rescaled_n(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if ee gl distance is provided */
|
|
rc = qmckl_provide_een_rescaled_n_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Compute if necessary */
|
|
if (ctx->date > ctx->forces.forces_een_n_date) {
|
|
|
|
if (ctx->electron.walker.num > ctx->electron.walker_old.num) {
|
|
if (ctx->forces.forces_een_n != NULL) {
|
|
rc = qmckl_free(context, ctx->forces.forces_een_n);
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return qmckl_failwith( context, rc,
|
|
"qmckl_provide_forces_een_rescaled_n_gl",
|
|
"Unable to free ctx->forces.forces_een_n");
|
|
}
|
|
ctx->forces.forces_een_n = NULL;
|
|
}
|
|
}
|
|
|
|
/* Allocate array */
|
|
if (ctx->forces.forces_een_n == NULL) {
|
|
|
|
qmckl_memory_info_struct mem_info = qmckl_memory_info_struct_zero;
|
|
mem_info.size = ctx->electron.num * 3 * 4 * ctx->nucleus.num *
|
|
ctx->electron.walker.num * (ctx->jastrow_champ.cord_num + 1) * sizeof(double);
|
|
double* forces_een_n = (double*) qmckl_malloc(context, mem_info);
|
|
|
|
if (forces_een_n == NULL) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_ALLOCATION_FAILED,
|
|
"qmckl_provide_forces_een_rescaled_n_gl",
|
|
NULL);
|
|
}
|
|
ctx->forces.forces_een_n = forces_een_n;
|
|
}
|
|
|
|
rc = qmckl_compute_forces_een_rescaled_n_gl(context,
|
|
ctx->electron.walker.num,
|
|
ctx->electron.num,
|
|
ctx->nucleus.num,
|
|
ctx->jastrow_champ.type_nucl_num,
|
|
ctx->jastrow_champ.type_nucl_vector,
|
|
ctx->jastrow_champ.cord_num,
|
|
ctx->jastrow_champ.rescale_factor_en,
|
|
ctx->electron.en_distance,
|
|
ctx->jastrow_champ.een_rescaled_n,
|
|
ctx->jastrow_champ.een_rescaled_n_gl,
|
|
ctx->forces.forces_een_n);
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return rc;
|
|
}
|
|
|
|
ctx->forces.forces_een_n_date = ctx->date;
|
|
}
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
** Compute
|
|
:PROPERTIES:
|
|
:Name: qmckl_compute_forces_een_rescaled_n_gl
|
|
:CRetType: qmckl_exit_code
|
|
:FRetType: qmckl_exit_code
|
|
:END:
|
|
|
|
#+NAME: qmckl_compute_forces_een_rescaled_n_gl_args
|
|
| Variable | Type | In/Out | Description |
|
|
|---------------------+-------------------------------------------------------+--------+-------------------------------------|
|
|
| ~context~ | ~qmckl_context~ | in | Global state |
|
|
| ~walk_num~ | ~int64_t~ | in | Number of walkers |
|
|
| ~elec_num~ | ~int64_t~ | in | Number of electrons |
|
|
| ~nucl_num~ | ~int64_t~ | in | Number of atoms |
|
|
| ~type_nucl_num~ | ~int64_t~ | in | Number of atom types |
|
|
| ~type_nucl_vector~ | ~int64_t[nucl_num]~ | in | Types of atoms |
|
|
| ~cord_num~ | ~int64_t~ | in | Order of polynomials |
|
|
| ~rescale_factor_en~ | ~double[nucl_num]~ | in | Factor to rescale ee distances |
|
|
| ~en_distance~ | ~double[walk_num][elec_num][nucl_num]~ | in | Electron-nucleus distances |
|
|
| ~een_rescaled_n~ | ~double[walk_num][0:cord_num][nucl_num][elec_num]~ | in | Electron-nucleus distances |
|
|
| ~een_rescaled_n_gl~ | ~double[walk_num][0:cord_num][nucl_num][4][elec_num]~ | in | Electron-nucleus distances |
|
|
| ~forces_een_n~ | ~double[walk_num][0:cord_num][3][nucl_num][4][elec_num]~ | out | Electron-nucleus rescaled distances |
|
|
|
|
#+begin_src f90 :comments org :tangle (eval f) :noweb yes
|
|
integer(qmckl_exit_code) function qmckl_compute_forces_een_rescaled_n_gl( &
|
|
context, walk_num, elec_num, nucl_num, type_nucl_num, type_nucl_vector, &
|
|
cord_num, rescale_factor_en, &
|
|
en_distance, een_rescaled_n, een_rescaled_n_gl,forces_een_n) &
|
|
result(info) bind(C)
|
|
use, intrinsic :: iso_c_binding
|
|
use qmckl
|
|
implicit none
|
|
integer(qmckl_context), intent(in) :: context
|
|
integer (c_int64_t) , intent(in),value :: walk_num, elec_num, nucl_num, type_nucl_num, cord_num
|
|
integer (c_int64_t) , intent(in) :: type_nucl_vector(nucl_num)
|
|
real (c_double ) , intent(in) :: rescale_factor_en(type_nucl_num)
|
|
real (c_double ) , intent(in) :: en_distance(nucl_num,elec_num,walk_num)
|
|
real (c_double ) , intent(in) :: een_rescaled_n(elec_num,nucl_num,0:cord_num,walk_num)
|
|
real (c_double ) , intent(in) :: een_rescaled_n_gl(elec_num,4,nucl_num,0:cord_num,walk_num)
|
|
real (c_double ) , intent(out) :: forces_een_n(elec_num,4,nucl_num,3,0:cord_num,walk_num)
|
|
|
|
double precision :: x, ria_inv, kappa_l
|
|
integer*8 :: i, a, k, l, nw, m, n
|
|
|
|
|
|
info = QMCKL_SUCCESS
|
|
|
|
if (context == QMCKL_NULL_CONTEXT) then
|
|
info = QMCKL_INVALID_CONTEXT
|
|
return
|
|
endif
|
|
|
|
if (walk_num <= 0) then
|
|
info = QMCKL_INVALID_ARG_2
|
|
return
|
|
endif
|
|
|
|
if (elec_num <= 0) then
|
|
info = QMCKL_INVALID_ARG_3
|
|
return
|
|
endif
|
|
|
|
if (nucl_num <= 0) then
|
|
info = QMCKL_INVALID_ARG_4
|
|
return
|
|
endif
|
|
|
|
if (cord_num < 0) then
|
|
info = QMCKL_INVALID_ARG_5
|
|
return
|
|
endif
|
|
|
|
|
|
|
|
forces_een_n = 0.0d0
|
|
do nw = 1, walk_num
|
|
do i = 1, elec_num
|
|
do a = 1, nucl_num
|
|
do l = 0, cord_num
|
|
kappa_l = dble(l)*rescale_factor_en(type_nucl_vector(a)+1)
|
|
do m = 1, 4
|
|
do n = 1, 3
|
|
if (l == 0) then
|
|
forces_een_n(i,m,a,n,l,nw) = 0.0d0
|
|
else
|
|
if (m == n) then
|
|
forces_een_n(i,m,a,n,l,nw) = forces_een_n(i,m,a,n,l,nw) + kappa_l*een_rescaled_n(i,a,l,nw)/en_distance(a,i,nw)
|
|
end if
|
|
if (m < 4) then
|
|
forces_een_n(i,m,a,n,l,nw) = forces_een_n(i,m,a,n,l,nw) - &
|
|
een_rescaled_n_gl(i,m,a,l,nw) * een_rescaled_n_gl(i,n,a,l,nw) /(kappa_l*een_rescaled_n(i,a,l,nw)*en_distance(a,i,nw)) - &
|
|
een_rescaled_n_gl(i,m,a,l,nw) * een_rescaled_n_gl(i,n,a,l,nw)/een_rescaled_n(i,a,l,nw)
|
|
else
|
|
forces_een_n(i,m,a,n,l,nw) = forces_een_n(i,m,a,n,l,nw) + &
|
|
2.0d0 * een_rescaled_n_gl(i,n,a,l,nw) /(en_distance(a,i,nw)*en_distance(a,i,nw)) - &
|
|
een_rescaled_n_gl(i,m,a,l,nw) * een_rescaled_n_gl(i,n,a,l,nw)/een_rescaled_n(i,a,l,nw)
|
|
end if
|
|
|
|
|
|
|
|
end if
|
|
end do
|
|
end do
|
|
end do
|
|
end do
|
|
end do
|
|
end do
|
|
|
|
|
|
end function qmckl_compute_forces_een_rescaled_n_gl
|
|
#+end_src
|
|
|
|
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_compute_forces_een_rescaled_n_gl (
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t type_nucl_num,
|
|
int64_t* const type_nucl_vector,
|
|
const int64_t cord_num,
|
|
const double* rescale_factor_en,
|
|
const double* en_distance,
|
|
const double* een_rescaled_n,
|
|
const double* een_rescaled_n_gl,
|
|
double* const forces_een_n );
|
|
#+end_src
|
|
|
|
** Test
|
|
|
|
#+begin_src c :tangle (eval c_test)
|
|
printf("Forces of een_rescaled_n_gl\n");
|
|
|
|
/* Check if Jastrow is properly initialized */
|
|
assert(qmckl_jastrow_champ_provided(context));
|
|
|
|
rc = qmckl_set_nucleus_coord(context, 'T', &(nucl_coord[0]), 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
double forces_een_n[walk_num][cord_num+1][3][nucl_num][4][elec_num];
|
|
rc = qmckl_get_forces_een_rescaled_n_gl(context, &forces_een_n[0][0][0][0][0][0], 3*4*nucl_num*walk_num*elec_num*(cord_num+1));
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
|
|
double finite_difference_force_een_n[walk_num][cord_num+1][3][nucl_num][4][elec_num];
|
|
|
|
nucleus_coord = (double*) malloc(3 * nucl_num * sizeof(double));
|
|
if (nucleus_coord == NULL) {
|
|
return QMCKL_ALLOCATION_FAILED;
|
|
}
|
|
|
|
rc = qmckl_get_nucleus_coord(context, 'N', nucleus_coord, 3*nucl_num);
|
|
|
|
temp_coord = (double*) malloc(3 * nucl_num * sizeof(double));
|
|
if (temp_coord == NULL) {
|
|
free(nucleus_coord);
|
|
return QMCKL_ALLOCATION_FAILED;
|
|
}
|
|
double ddoutput[walk_num][cord_num+1][nucl_num][4][elec_num];
|
|
|
|
// Copy original coordinates
|
|
for (int i = 0; i < 3 * nucl_num; i++) {
|
|
temp_coord[i] = nucleus_coord[i];
|
|
}
|
|
|
|
|
|
|
|
for (int64_t a = 0; a < nucl_num; a++) {
|
|
for (int64_t k = 0; k < 3; k++) {
|
|
for (int64_t m = -4; m <= 4; m++) {
|
|
|
|
// Apply finite difference displacement
|
|
temp_coord[k+a*3] = nucleus_coord[k+3*a] + (double) m * delta_x;
|
|
|
|
// Update coordinates in the context
|
|
rc = qmckl_set_nucleus_coord(context, 'N', temp_coord, 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
rc = qmckl_context_touch(context);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
// Call the provided function
|
|
rc = qmckl_get_jastrow_champ_een_rescaled_n_gl(context,&ddoutput[0][0][0][0][0], 4*elec_num*nucl_num*(cord_num+1)*walk_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
// Accumulate derivative using finite-difference coefficients
|
|
for (int nw=0 ; nw<walk_num ; nw++) {
|
|
for (int l = 0; l <= cord_num; l++) {
|
|
for (int i = 0; i < elec_num; i++) {
|
|
for (int j = 0; j < 4; j++) {
|
|
if (m == -4) {
|
|
finite_difference_force_een_n[nw][l][k][a][j][i] = 0.0;
|
|
}
|
|
finite_difference_force_een_n[nw][l][k][a][j][i] += coef[m + 4] * ddoutput[nw][l][a][j][i]/delta_x;
|
|
}
|
|
|
|
|
|
}
|
|
}
|
|
}
|
|
}
|
|
temp_coord[k+a*3] = nucleus_coord[k+3*a];
|
|
}
|
|
}
|
|
|
|
// Reset coordinates in the context
|
|
rc = qmckl_set_nucleus_coord(context, 'N', temp_coord, 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
rc = qmckl_context_touch(context);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
free(nucleus_coord);
|
|
free(temp_coord);
|
|
|
|
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int l = 0; l <=cord_num; l++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
for (int i = 0; i < elec_num; i++){
|
|
for (int kk = 0; kk<4; kk++){
|
|
//printf("nw=%i l=%i k=%i a=%i kk=%i i=%i\n",nw,l,k,a,kk,i);
|
|
//printf("%.10f\t", finite_difference_force_een_n[nw][l][k][a][kk][i]);
|
|
//printf("%.10f\n", forces_een_n[nw][l][k][a][kk][i]);
|
|
//assert(fabs(finite_difference_force_een_n[nw][l][k][a][kk][i] - forces_een_n[nw][l][k][a][kk][i]) < 1.e-6);
|
|
}
|
|
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int l = 0; l <= cord_num; l++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
for (int i = 0; i < elec_num; i++){
|
|
for (int kk = 0; kk<4; kk++){
|
|
assert(fabs(finite_difference_force_een_n[nw][l][k][a][kk][i] - forces_een_n[nw][l][k][a][kk][i]) < 1.e-6);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
|
|
printf("OK\n");
|
|
|
|
#+end_src
|
|
|
|
* Force of een jastrow gradient
|
|
|
|
** Get
|
|
#+begin_src c :comments org :tangle (eval h_func) :noweb yes
|
|
qmckl_exit_code
|
|
qmckl_get_forces_jastrow_een_g(qmckl_context context,
|
|
double* const forces_jastrow_een_g,
|
|
const int64_t size_max);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code
|
|
qmckl_get_forces_jastrow_een_g(qmckl_context context,
|
|
double* const forces_jastrow_een_g,
|
|
const int64_t size_max)
|
|
{
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return QMCKL_NULL_CONTEXT;
|
|
}
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
rc = qmckl_provide_forces_jastrow_een_g(context);
|
|
if (rc != QMCKL_SUCCESS) return rc;
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
int64_t sze = ctx->electron.walker.num * 3 * ctx->electron.num * 3 * ctx->nucleus.num;
|
|
if (size_max < sze) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_INVALID_ARG_3,
|
|
"qmckl_get_forces_jastrow_een_g",
|
|
"Array too small. Expected 3*3*walk_num*elec_num*nucl_num");
|
|
}
|
|
memcpy(forces_jastrow_een_g, ctx->forces.forces_jastrow_een_g, sze*sizeof(double));
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
#+begin_src f90 :tangle (eval fh_func) :comments org
|
|
interface
|
|
integer(qmckl_exit_code) function qmckl_get_forces_jastrow_een_g (context, &
|
|
forces_jastrow_een_g, size_max) bind(C)
|
|
use, intrinsic :: iso_c_binding
|
|
import
|
|
implicit none
|
|
integer (qmckl_context) , intent(in), value :: context
|
|
integer(c_int64_t), intent(in), value :: size_max
|
|
real(c_double), intent(out) :: forces_jastrow_een_g(size_max)
|
|
end function qmckl_get_forces_jastrow_een_g
|
|
end interface
|
|
#+end_src
|
|
#
|
|
|
|
** Provide :noexport:
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_jastrow_een_g(qmckl_context context);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_jastrow_een_g(qmckl_context context)
|
|
{
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return QMCKL_NULL_CONTEXT;
|
|
}
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
if (ctx->jastrow_champ.cord_num > 0) {
|
|
|
|
/* Check if en rescaled distance is provided */
|
|
rc = qmckl_provide_een_rescaled_e(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_een_rescaled_n(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance is provided */
|
|
rc = qmckl_provide_een_rescaled_e_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_een_rescaled_n_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_een_rescaled_e_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_jastrow_champ_c_vector_full(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_lkpm_combined_index(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if tmp_c is provided */
|
|
rc = qmckl_provide_tmp_c(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if dtmp_c is provided */
|
|
rc = qmckl_provide_dtmp_c(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if forces_tmp_c is provided */
|
|
rc = qmckl_provide_forces_tmp_c(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if forces_dtmp_c is provided */
|
|
rc = qmckl_provide_forces_dtmp_c(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if ne distance is provided */
|
|
rc = qmckl_provide_en_distance(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_forces_een_rescaled_n_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
}
|
|
|
|
/* Compute if necessary */
|
|
if (ctx->date > ctx->forces.forces_jastrow_een_g_date) {
|
|
|
|
if (ctx->electron.walker.num > ctx->electron.walker_old.num) {
|
|
if (ctx->forces.forces_jastrow_een_g != NULL) {
|
|
rc = qmckl_free(context, ctx->forces.forces_jastrow_een_g);
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return qmckl_failwith( context, rc,
|
|
"qmckl_provide_forces_jastrow_een_g",
|
|
"Unable to free ctx->forces.forces_jastrow_een_g");
|
|
}
|
|
ctx->forces.forces_jastrow_een_g = NULL;
|
|
}
|
|
}
|
|
|
|
/* Allocate array */
|
|
if (ctx->forces.forces_jastrow_een_g == NULL) {
|
|
|
|
qmckl_memory_info_struct mem_info = qmckl_memory_info_struct_zero;
|
|
mem_info.size = 3 * 3 * ctx->electron.num * ctx->electron.walker.num * ctx->nucleus.num * sizeof(double);
|
|
double* forces_jastrow_een_g = (double*) qmckl_malloc(context, mem_info);
|
|
|
|
if (forces_jastrow_een_g == NULL) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_ALLOCATION_FAILED,
|
|
"qmckl_provide_forces_jastrow_een_g",
|
|
NULL);
|
|
}
|
|
ctx->forces.forces_jastrow_een_g = forces_jastrow_een_g;
|
|
}
|
|
|
|
|
|
rc = qmckl_compute_forces_jastrow_een_g(context,
|
|
ctx->electron.walker.num,
|
|
ctx->electron.num,
|
|
ctx->nucleus.num,
|
|
ctx->jastrow_champ.cord_num,
|
|
ctx->jastrow_champ.dim_c_vector,
|
|
ctx->jastrow_champ.c_vector_full,
|
|
ctx->jastrow_champ.lkpm_combined_index,
|
|
ctx->electron.en_distance,
|
|
ctx->jastrow_champ.tmp_c,
|
|
ctx->jastrow_champ.dtmp_c,
|
|
ctx->forces.forces_tmp_c,
|
|
ctx->forces.forces_dtmp_c,
|
|
ctx->forces.forces_een_n,
|
|
ctx->jastrow_champ.een_rescaled_n,
|
|
ctx->jastrow_champ.een_rescaled_e,
|
|
ctx->jastrow_champ.een_rescaled_n_gl,
|
|
ctx->jastrow_champ.een_rescaled_e_gl,
|
|
ctx->forces.forces_jastrow_een_g);
|
|
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return rc;
|
|
}
|
|
|
|
ctx->forces.forces_jastrow_een_g_date = ctx->date;
|
|
}
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
** Compute
|
|
:PROPERTIES:
|
|
:Name: qmckl_compute_forces_jastrow_een_g
|
|
:CRetType: qmckl_exit_code
|
|
:FRetType: qmckl_exit_code
|
|
:END:
|
|
|
|
#+NAME: qmckl_forces_jastrow_een_g_args
|
|
| Variable | Type | In/Out | Description |
|
|
|-----------------------+---------------------------------------------------------------------+--------+------------------------------------------------|
|
|
| ~context~ | ~qmckl_context~ | in | Global state |
|
|
| ~walk_num~ | ~int64_t~ | in | Number of walkers |
|
|
| ~elec_num~ | ~int64_t~ | in | Number of electrons |
|
|
| ~nucl_num~ | ~int64_t~ | in | Number of nuclei |
|
|
| ~cord_num~ | ~int64_t~ | in | order of polynomials |
|
|
| ~dim_c_vector~ | ~int64_t~ | in | dimension of full coefficient vector |
|
|
| ~c_vector_full~ | ~double[dim_c_vector][nucl_num]~ | in | full coefficient vector |
|
|
| ~lkpm_combined_index~ | ~int64_t[4][dim_c_vector]~ | in | combined indices |
|
|
| ~en_distance~ | ~double[elec_num][nucl_num]~ | in | En distance |
|
|
| ~tmp_c~ | ~double[walk_num][0:cord_num-1][0:cord_num][nucl_num][elec_num]~ | in | Temporary intermediate tensor |
|
|
| ~dtmp_c~ | ~double[walk_num][0:cord_num-1][0:cord_num][nucl_num][4][elec_num]~ | in | vector of non-zero coefficients |
|
|
| ~forces_tmp_c~ | ~double[walk_num][0:cord_num-1][0:cord_num][nucl_num][4][elec_num]~ | in | Temporary intermediate tensor |
|
|
| ~forces_dtmp_c~ | ~double[walk_num][0:cord_num-1][0:cord_num][4][nucl_num][4][elec_num]~ | in | vector of non-zero coefficients |
|
|
| ~forces_een_n~ | ~double[walk_num][0:cord_num][3][nucl_num][4][elec_num]~ | in | Derivative of Electron-nucleus rescaled factor |
|
|
| ~een_rescaled_n~ | ~double[walk_num][0:cord_num][nucl_num][elec_num]~ | in | Electron-nucleus rescaled factor |
|
|
| ~een_rescaled_e~ | ~double[walk_num][0:cord_num][elec_num][elec_num]~ | in | Electron-nucleus rescaled factor |
|
|
| ~een_rescaled_n_gl~ | ~double[walk_num][0:cord_num][nucl_num][4][elec_num]~ | in | Derivative of Electron-nucleus rescaled factor |
|
|
| ~een_rescaled_e_gl~ | ~double[walk_num][0:cord_num][elec_num][4][elec_num]~ | in | Derivative of Electron-nucleus rescaled factor |
|
|
| ~forces_jastrow_een_g~| ~double[walk_num][3][nucl_num][3][elec_num]~ | out | Derivative of Electron-nucleus jastrow |
|
|
|
|
|
|
#+begin_src f90 :comments org :tangle (eval f) :noweb yes
|
|
integer(qmckl_exit_code) function qmckl_compute_forces_jastrow_een_g( &
|
|
context, walk_num, elec_num, nucl_num, &
|
|
cord_num, dim_c_vector, c_vector_full, lkpm_combined_index, &
|
|
en_distance, tmp_c, dtmp_c, forces_tmp_c, forces_dtmp_c, forces_een_n, een_rescaled_n, &
|
|
een_rescaled_e, een_rescaled_n_gl, een_rescaled_e_gl, forces_jastrow_een_g)&
|
|
result(info) bind(C)
|
|
use, intrinsic :: iso_c_binding
|
|
use qmckl
|
|
implicit none
|
|
integer(qmckl_context), intent(in) :: context
|
|
integer (c_int64_t) , intent(in),value :: walk_num, elec_num, cord_num, nucl_num, dim_c_vector
|
|
integer (c_int64_t) , intent(in) :: lkpm_combined_index(dim_c_vector,4)
|
|
real (c_double ) , intent(in) :: c_vector_full(nucl_num, dim_c_vector)
|
|
real (c_double ) , intent(in) :: en_distance(nucl_num, elec_num)
|
|
real (c_double ) , intent(in) :: tmp_c(elec_num, nucl_num,0:cord_num, 0:cord_num-1, walk_num)
|
|
real (c_double ) , intent(in) :: dtmp_c(elec_num, 4, nucl_num,0:cord_num, 0:cord_num-1, walk_num)
|
|
real (c_double ) , intent(in) :: forces_tmp_c(elec_num, 4,nucl_num,0:cord_num, 0:cord_num-1, walk_num)
|
|
real (c_double ) , intent(in) :: forces_dtmp_c(elec_num, 4, nucl_num,4,0:cord_num, 0:cord_num-1, walk_num)
|
|
real (c_double ) , intent(in) :: forces_een_n(elec_num, 4, nucl_num, 3, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(in) :: een_rescaled_n(elec_num, nucl_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(in) :: een_rescaled_e(elec_num, elec_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(in) :: een_rescaled_n_gl(elec_num, 4, nucl_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(in) :: een_rescaled_e_gl(elec_num, 4, elec_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(out) :: forces_jastrow_een_g(elec_num,3,nucl_num,3,walk_num)
|
|
|
|
integer*8 :: i, a, j, l, k, m, n, nw, ii, jj
|
|
double precision :: accu, accu2, cn
|
|
|
|
|
|
info = QMCKL_SUCCESS
|
|
|
|
if (context == QMCKL_NULL_CONTEXT) info = QMCKL_INVALID_CONTEXT
|
|
if (walk_num <= 0) info = QMCKL_INVALID_ARG_2
|
|
if (elec_num <= 0) info = QMCKL_INVALID_ARG_3
|
|
if (nucl_num <= 0) info = QMCKL_INVALID_ARG_4
|
|
if (cord_num < 0) info = QMCKL_INVALID_ARG_5
|
|
if (info /= QMCKL_SUCCESS) return
|
|
|
|
|
|
|
|
if (cord_num == 0) return
|
|
forces_jastrow_een_g = 0.0d0
|
|
do nw =1, walk_num
|
|
do n = 1, dim_c_vector
|
|
l = lkpm_combined_index(n, 1)
|
|
k = lkpm_combined_index(n, 2)
|
|
m = lkpm_combined_index(n, 4)
|
|
|
|
do a = 1, nucl_num
|
|
cn = c_vector_full(a, n)
|
|
if(cn == 0.d0) cycle
|
|
|
|
do ii = 1, 3
|
|
do i = 1, elec_num
|
|
do jj = 1, 3
|
|
forces_jastrow_een_g(i, ii, a, jj, nw) = forces_jastrow_een_g(i, ii, a, jj, nw) + (&
|
|
tmp_c(i,a, m, k,nw) * forces_een_n(i,ii,a,jj ,m+l,nw) + &
|
|
forces_tmp_c(i,jj,a, m, k,nw) * een_rescaled_n_gl(i,ii,a,m+l,nw) + &
|
|
tmp_c(i,a, m+l,k,nw) * forces_een_n(i,ii,a,jj, m, nw) + &
|
|
forces_tmp_c(i,jj,a, m+l,k,nw) * een_rescaled_n_gl(i,ii,a,m, nw) + &
|
|
dtmp_c(i,ii,a, m, k,nw) * -een_rescaled_n_gl(i,jj,a,m+l,nw) + &
|
|
forces_dtmp_c(i,ii,a,jj,m, k,nw) * een_rescaled_n(i,a, m+l,nw) + &
|
|
dtmp_c(i,ii,a, m+l,k,nw) * -een_rescaled_n_gl(i,jj,a,m, nw) + &
|
|
forces_dtmp_c(i,ii,a,jj,m+l,k,nw) * een_rescaled_n(i,a, m, nw) &
|
|
) * cn
|
|
|
|
end do
|
|
end do
|
|
end do
|
|
|
|
end do
|
|
end do
|
|
end do
|
|
|
|
end function qmckl_compute_forces_jastrow_een_g
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_compute_forces_jastrow_een_g(
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t cord_num,
|
|
const int64_t dim_c_vector,
|
|
const double* c_vector_full,
|
|
const int64_t* lkpm_combined_index,
|
|
const double* en_distance,
|
|
const double* tmp_c,
|
|
const double* dtmp_c,
|
|
const double* forces_tmp_c,
|
|
const double* forces_dtmp_c,
|
|
const double* forces_een_n,
|
|
const double* een_rescaled_n,
|
|
const double* een_rescaled_e,
|
|
const double* een_rescaled_n_gl,
|
|
const double* een_rescaled_e_gl,
|
|
double* const forces_jastrow_een_g );
|
|
#+end_src
|
|
|
|
|
|
|
|
** Test
|
|
|
|
#+begin_src c :tangle (eval c_test)
|
|
printf("Forces Jastrow een G\n");
|
|
|
|
/* Check if Jastrow is properly initialized */
|
|
assert(qmckl_jastrow_champ_provided(context));
|
|
|
|
rc = qmckl_set_nucleus_coord(context, 'T', &(nucl_coord[0]), 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
double forces_jastrow_een_g[walk_num][3][nucl_num][3][elec_num];
|
|
rc = qmckl_get_forces_jastrow_een_g(context, &forces_jastrow_een_g[0][0][0][0][0], 3*3*nucl_num*walk_num*elec_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
double finite_difference_force_een_g[walk_num][nucl_num][3][4][elec_num];
|
|
rc = qmckl_finite_difference_deriv_n(context, delta_x, &qmckl_get_jastrow_champ_factor_een_gl, &finite_difference_force_een_g[0][0][0][0][0], 4*elec_num);
|
|
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
for (int i = 0; i < elec_num; i++){
|
|
for (int l = 0; l < 3; l++){
|
|
//printf("finite_difference_force_een_g[%i][%i][%i][%i][%i] %+3.10f \n", nw,a,k,l,i,finite_difference_force_een_g[nw][a][k][l][i]);
|
|
//printf("forces_jastrow_een_g [%i][%i][%i][%i][%i] %+3.10f\n", nw,k,a,l,i,forces_jastrow_een_g[nw][k][a][l][i]);
|
|
//assert(fabs(finite_difference_force_een_g[nw][a][k][l][i] - forces_jastrow_een_g[nw][k][a][l][i]) < 1.e-8);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
for (int i = 0; i < elec_num; i++){
|
|
for (int l = 1; l < 3; l++){
|
|
assert(fabs(finite_difference_force_een_g[nw][a][k][l][i] - forces_jastrow_een_g[nw][k][a][l][i]) < 1.e-8);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
printf("OK\n");
|
|
|
|
#+end_src
|
|
|
|
* Force of een jastrow laplacian
|
|
|
|
** Get
|
|
#+begin_src c :comments org :tangle (eval h_func) :noweb yes
|
|
qmckl_exit_code
|
|
qmckl_get_forces_jastrow_een_l(qmckl_context context,
|
|
double* const forces_jastrow_een_l,
|
|
const int64_t size_max);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code
|
|
qmckl_get_forces_jastrow_een_l(qmckl_context context,
|
|
double* const forces_jastrow_een_l,
|
|
const int64_t size_max)
|
|
{
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return QMCKL_NULL_CONTEXT;
|
|
}
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
rc = qmckl_provide_forces_jastrow_een_l(context);
|
|
if (rc != QMCKL_SUCCESS) return rc;
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
int64_t sze = ctx->electron.walker.num * 3 * ctx->nucleus.num;
|
|
if (size_max < sze) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_INVALID_ARG_3,
|
|
"qmckl_get_forces_jastrow_een_l",
|
|
"Array too small. Expected 3*walk_num*nucl_num");
|
|
}
|
|
memcpy(forces_jastrow_een_l, ctx->forces.forces_jastrow_een_l, sze*sizeof(double));
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
#+begin_src f90 :tangle (eval fh_func) :comments org
|
|
interface
|
|
integer(qmckl_exit_code) function qmckl_get_forces_jastrow_een_l (context, &
|
|
forces_jastrow_een_l, size_max) bind(C)
|
|
use, intrinsic :: iso_c_binding
|
|
import
|
|
implicit none
|
|
integer (qmckl_context) , intent(in), value :: context
|
|
integer(c_int64_t), intent(in), value :: size_max
|
|
real(c_double), intent(out) :: forces_jastrow_een_l(size_max)
|
|
end function qmckl_get_forces_jastrow_een_l
|
|
end interface
|
|
#+end_src
|
|
#
|
|
|
|
** Provide :noexport:
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_jastrow_een_l(qmckl_context context);
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval c) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_provide_forces_jastrow_een_l(qmckl_context context)
|
|
{
|
|
|
|
qmckl_exit_code rc;
|
|
|
|
if (qmckl_context_check(context) == QMCKL_NULL_CONTEXT) {
|
|
return QMCKL_NULL_CONTEXT;
|
|
}
|
|
|
|
qmckl_context_struct* const ctx = (qmckl_context_struct*) context;
|
|
assert (ctx != NULL);
|
|
|
|
if (ctx->jastrow_champ.cord_num > 0) {
|
|
|
|
/* Check if en rescaled distance is provided */
|
|
rc = qmckl_provide_een_rescaled_e(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_een_rescaled_n(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance is provided */
|
|
rc = qmckl_provide_een_rescaled_e_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_een_rescaled_n_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_een_rescaled_e_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_jastrow_champ_c_vector_full(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_lkpm_combined_index(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if tmp_c is provided */
|
|
rc = qmckl_provide_tmp_c(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if dtmp_c is provided */
|
|
rc = qmckl_provide_dtmp_c(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if forces_tmp_c is provided */
|
|
rc = qmckl_provide_forces_tmp_c(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if forces_dtmp_c is provided */
|
|
rc = qmckl_provide_forces_dtmp_c(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if ne distance is provided */
|
|
rc = qmckl_provide_en_distance(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
|
|
/* Check if en rescaled distance derivatives is provided */
|
|
rc = qmckl_provide_forces_een_rescaled_n_gl(context);
|
|
if(rc != QMCKL_SUCCESS) return rc;
|
|
}
|
|
|
|
/* Compute if necessary */
|
|
if (ctx->date > ctx->forces.forces_jastrow_een_l_date) {
|
|
|
|
if (ctx->electron.walker.num > ctx->electron.walker_old.num) {
|
|
if (ctx->forces.forces_jastrow_een_l != NULL) {
|
|
rc = qmckl_free(context, ctx->forces.forces_jastrow_een_l);
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return qmckl_failwith( context, rc,
|
|
"qmckl_provide_forces_jastrow_een_l",
|
|
"Unable to free ctx->forces.forces_jastrow_een_l");
|
|
}
|
|
ctx->forces.forces_jastrow_een_l = NULL;
|
|
}
|
|
}
|
|
|
|
/* Allocate array */
|
|
if (ctx->forces.forces_jastrow_een_l == NULL) {
|
|
|
|
qmckl_memory_info_struct mem_info = qmckl_memory_info_struct_zero;
|
|
mem_info.size = 3 * ctx->electron.walker.num * ctx->nucleus.num * sizeof(double);
|
|
double* forces_jastrow_een_l = (double*) qmckl_malloc(context, mem_info);
|
|
|
|
if (forces_jastrow_een_l == NULL) {
|
|
return qmckl_failwith( context,
|
|
QMCKL_ALLOCATION_FAILED,
|
|
"qmckl_provide_forces_jastrow_een_l",
|
|
NULL);
|
|
}
|
|
ctx->forces.forces_jastrow_een_l = forces_jastrow_een_l;
|
|
}
|
|
|
|
|
|
rc = qmckl_compute_forces_jastrow_een_l(context,
|
|
ctx->electron.walker.num,
|
|
ctx->electron.num,
|
|
ctx->nucleus.num,
|
|
ctx->jastrow_champ.cord_num,
|
|
ctx->jastrow_champ.dim_c_vector,
|
|
ctx->jastrow_champ.c_vector_full,
|
|
ctx->jastrow_champ.lkpm_combined_index,
|
|
ctx->electron.en_distance,
|
|
ctx->jastrow_champ.tmp_c,
|
|
ctx->jastrow_champ.dtmp_c,
|
|
ctx->forces.forces_tmp_c,
|
|
ctx->forces.forces_dtmp_c,
|
|
ctx->forces.forces_een_n,
|
|
ctx->jastrow_champ.een_rescaled_n,
|
|
ctx->jastrow_champ.een_rescaled_e,
|
|
ctx->jastrow_champ.een_rescaled_n_gl,
|
|
ctx->jastrow_champ.een_rescaled_e_gl,
|
|
ctx->forces.forces_jastrow_een_l);
|
|
|
|
if (rc != QMCKL_SUCCESS) {
|
|
return rc;
|
|
}
|
|
|
|
ctx->forces.forces_jastrow_een_l_date = ctx->date;
|
|
}
|
|
|
|
return QMCKL_SUCCESS;
|
|
}
|
|
#+end_src
|
|
|
|
** Compute
|
|
:PROPERTIES:
|
|
:Name: qmckl_compute_forces_jastrow_een_l
|
|
:CRetType: qmckl_exit_code
|
|
:FRetType: qmckl_exit_code
|
|
:END:
|
|
|
|
#+NAME: qmckl_forces_jastrow_een_l_args
|
|
| Variable | Type | In/Out | Description |
|
|
|-----------------------+---------------------------------------------------------------------+--------+------------------------------------------------|
|
|
| ~context~ | ~qmckl_context~ | in | Global state |
|
|
| ~walk_num~ | ~int64_t~ | in | Number of walkers |
|
|
| ~elec_num~ | ~int64_t~ | in | Number of electrons |
|
|
| ~nucl_num~ | ~int64_t~ | in | Number of nuclei |
|
|
| ~cord_num~ | ~int64_t~ | in | order of polynomials |
|
|
| ~dim_c_vector~ | ~int64_t~ | in | dimension of full coefficient vector |
|
|
| ~c_vector_full~ | ~double[dim_c_vector][nucl_num]~ | in | full coefficient vector |
|
|
| ~lkpm_combined_index~ | ~int64_t[4][dim_c_vector]~ | in | combined indices |
|
|
| ~en_distance~ | ~double[elec_num][nucl_num]~ | in | En distance |
|
|
| ~tmp_c~ | ~double[walk_num][0:cord_num-1][0:cord_num][nucl_num][elec_num]~ | in | Temporary intermediate tensor |
|
|
| ~dtmp_c~ | ~double[walk_num][0:cord_num-1][0:cord_num][nucl_num][4][elec_num]~ | in | vector of non-zero coefficients |
|
|
| ~forces_tmp_c~ | ~double[walk_num][0:cord_num-1][0:cord_num][nucl_num][4][elec_num]~ | in | Temporary intermediate tensor |
|
|
| ~forces_dtmp_c~ | ~double[walk_num][0:cord_num-1][0:cord_num][4][nucl_num][4][elec_num]~ | in | vector of non-zero coefficients |
|
|
| ~forces_een_n~ | ~double[walk_num][0:cord_num][3][nucl_num][4][elec_num]~ | in | Derivative of Electron-nucleus rescaled factor |
|
|
| ~een_rescaled_n~ | ~double[walk_num][0:cord_num][nucl_num][elec_num]~ | in | Electron-nucleus rescaled factor |
|
|
| ~een_rescaled_e~ | ~double[walk_num][0:cord_num][elec_num][elec_num]~ | in | Electron-nucleus rescaled factor |
|
|
| ~een_rescaled_n_gl~ | ~double[walk_num][0:cord_num][nucl_num][4][elec_num]~ | in | Derivative of Electron-nucleus rescaled factor |
|
|
| ~een_rescaled_e_gl~ | ~double[walk_num][0:cord_num][elec_num][4][elec_num]~ | in | Derivative of Electron-nucleus rescaled factor |
|
|
| ~forces_jastrow_een_l~| ~double[walk_num][3][nucl_num]~ | out | Derivative of Electron-nucleus jastrow |
|
|
|
|
|
|
#+begin_src f90 :comments org :tangle (eval f) :noweb yes
|
|
integer(qmckl_exit_code) function qmckl_compute_forces_jastrow_een_l( &
|
|
context, walk_num, elec_num, nucl_num, &
|
|
cord_num, dim_c_vector, c_vector_full, lkpm_combined_index, &
|
|
en_distance, tmp_c, dtmp_c, forces_tmp_c, forces_dtmp_c, forces_een_n, een_rescaled_n, &
|
|
een_rescaled_e, een_rescaled_n_gl, een_rescaled_e_gl, forces_jastrow_een_l)&
|
|
result(info) bind(C)
|
|
use, intrinsic :: iso_c_binding
|
|
use qmckl
|
|
implicit none
|
|
integer(qmckl_context), intent(in) :: context
|
|
integer (c_int64_t) , intent(in),value :: walk_num, elec_num, cord_num, nucl_num, dim_c_vector
|
|
integer (c_int64_t) , intent(in) :: lkpm_combined_index(dim_c_vector,4)
|
|
real (c_double ) , intent(in) :: c_vector_full(nucl_num, dim_c_vector)
|
|
real (c_double ) , intent(in) :: en_distance(nucl_num, elec_num)
|
|
real (c_double ) , intent(in) :: tmp_c(elec_num, nucl_num,0:cord_num, 0:cord_num-1, walk_num)
|
|
real (c_double ) , intent(in) :: dtmp_c(elec_num, 4, nucl_num,0:cord_num, 0:cord_num-1, walk_num)
|
|
real (c_double ) , intent(in) :: forces_tmp_c(elec_num, 4,nucl_num,0:cord_num, 0:cord_num-1, walk_num)
|
|
real (c_double ) , intent(in) :: forces_dtmp_c(elec_num, 4, nucl_num,4,0:cord_num, 0:cord_num-1, walk_num)
|
|
real (c_double ) , intent(in) :: forces_een_n(elec_num, 4, nucl_num, 3, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(in) :: een_rescaled_n(elec_num, nucl_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(in) :: een_rescaled_e(elec_num, elec_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(in) :: een_rescaled_n_gl(elec_num, 4, nucl_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(in) :: een_rescaled_e_gl(elec_num, 4, elec_num, 0:cord_num, walk_num)
|
|
real (c_double ) , intent(out) :: forces_jastrow_een_l(nucl_num,3,walk_num)
|
|
|
|
integer*8 :: i, a, j, l, k, m, n, nw, ii, jj
|
|
double precision :: accu, accu2, cn
|
|
|
|
|
|
info = QMCKL_SUCCESS
|
|
|
|
if (context == QMCKL_NULL_CONTEXT) info = QMCKL_INVALID_CONTEXT
|
|
if (walk_num <= 0) info = QMCKL_INVALID_ARG_2
|
|
if (elec_num <= 0) info = QMCKL_INVALID_ARG_3
|
|
if (nucl_num <= 0) info = QMCKL_INVALID_ARG_4
|
|
if (cord_num < 0) info = QMCKL_INVALID_ARG_5
|
|
if (info /= QMCKL_SUCCESS) return
|
|
|
|
|
|
|
|
if (cord_num == 0) return
|
|
forces_jastrow_een_l = 0.0d0
|
|
do nw =1, walk_num
|
|
do n = 1, dim_c_vector
|
|
l = lkpm_combined_index(n, 1)
|
|
k = lkpm_combined_index(n, 2)
|
|
m = lkpm_combined_index(n, 4)
|
|
|
|
do a = 1, nucl_num
|
|
cn = c_vector_full(a, n)
|
|
if(cn == 0.d0) cycle
|
|
|
|
do ii = 1, 3
|
|
do i = 1, elec_num
|
|
forces_jastrow_een_l(a, ii, nw) = forces_jastrow_een_l(a, ii, nw) + (&
|
|
tmp_c(i,a, m, k,nw) * forces_een_n(i,4,a,ii ,m+l,nw) + &
|
|
forces_tmp_c(i,ii,a, m, k,nw) * een_rescaled_n_gl(i,4,a,m+l,nw) + &
|
|
tmp_c(i,a, m+l,k,nw) * forces_een_n(i,4,a,ii, m, nw) + &
|
|
forces_tmp_c(i,ii,a, m+l,k,nw) * een_rescaled_n_gl(i,4,a,m, nw) + &
|
|
dtmp_c(i,4,a, m, k,nw) * -een_rescaled_n_gl(i,ii,a,m+l,nw) + &
|
|
forces_dtmp_c(i,4,a,ii,m, k,nw) * een_rescaled_n(i,a, m+l,nw) + &
|
|
dtmp_c(i,4,a, m+l,k,nw) * -een_rescaled_n_gl(i,ii,a,m, nw) + &
|
|
forces_dtmp_c(i,4,a,ii,m+l,k,nw) * een_rescaled_n(i,a, m, nw) &
|
|
) * cn
|
|
end do
|
|
end do
|
|
|
|
cn = cn + cn
|
|
do ii = 1, 3
|
|
do i = 1, elec_num
|
|
do jj = 1, 3
|
|
forces_jastrow_een_l(a, ii, nw) = forces_jastrow_een_l(a, ii, nw) + (&
|
|
dtmp_c(i,jj,a,m, k,nw) * forces_een_n(i,jj,a,ii ,m+l,nw) + &
|
|
dtmp_c(i,jj,a,m+l, k,nw) * forces_een_n(i,jj,a,ii ,m,nw) + &
|
|
forces_dtmp_c(i,jj,a,ii,m, k,nw) * een_rescaled_n_gl(i,jj,a,m+l,nw) + &
|
|
forces_dtmp_c(i,jj,a,ii,m+l, k,nw) * een_rescaled_n_gl(i,jj,a,m,nw) &
|
|
) * cn
|
|
end do
|
|
end do
|
|
end do
|
|
end do
|
|
end do
|
|
end do
|
|
|
|
end function qmckl_compute_forces_jastrow_een_l
|
|
#+end_src
|
|
|
|
#+begin_src c :comments org :tangle (eval h_private_func) :noweb yes :exports none
|
|
qmckl_exit_code qmckl_compute_forces_jastrow_een_l(
|
|
const qmckl_context context,
|
|
const int64_t walk_num,
|
|
const int64_t elec_num,
|
|
const int64_t nucl_num,
|
|
const int64_t cord_num,
|
|
const int64_t dim_c_vector,
|
|
const double* c_vector_full,
|
|
const int64_t* lkpm_combined_index,
|
|
const double* en_distance,
|
|
const double* tmp_c,
|
|
const double* dtmp_c,
|
|
const double* forces_tmp_c,
|
|
const double* forces_dtmp_c,
|
|
const double* forces_een_n,
|
|
const double* een_rescaled_n,
|
|
const double* een_rescaled_e,
|
|
const double* een_rescaled_n_gl,
|
|
const double* een_rescaled_e_gl,
|
|
double* const forces_jastrow_een_l );
|
|
#+end_src
|
|
|
|
|
|
|
|
** Test
|
|
|
|
#+begin_src c :tangle (eval c_test)
|
|
printf("Forces Jastrow een l\n");
|
|
|
|
/* Check if Jastrow is properly initialized */
|
|
assert(qmckl_jastrow_champ_provided(context));
|
|
|
|
rc = qmckl_set_nucleus_coord(context, 'T', &(nucl_coord[0]), 3*nucl_num);
|
|
assert(rc == QMCKL_SUCCESS);
|
|
|
|
double forces_jastrow_een_l[walk_num][3][nucl_num];
|
|
rc = qmckl_get_forces_jastrow_een_l(context, &forces_jastrow_een_l[0][0][0], 3*nucl_num*walk_num);
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assert(rc == QMCKL_SUCCESS);
|
|
|
|
double finite_difference_force_een_l[walk_num][nucl_num][3][4][elec_num];
|
|
rc = qmckl_finite_difference_deriv_n(context, delta_x, &qmckl_get_jastrow_champ_factor_een_gl, &finite_difference_force_een_l[0][0][0][0][0], 4*elec_num);
|
|
|
|
double finite_difference_force_een_l_sum[walk_num][nucl_num][3];
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
finite_difference_force_een_l_sum[nw][a][k] = 0;
|
|
for (int i = 0; i < elec_num; i++){
|
|
finite_difference_force_een_l_sum[nw][a][k] = finite_difference_force_een_l_sum[nw][a][k] + finite_difference_force_een_l[nw][a][k][3][i];
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
printf("finite_difference_force_een_l_sum[%i][%i][%i] %+3.10f \n", nw,a,k,finite_difference_force_een_l_sum[nw][a][k]);
|
|
printf("forces_jastrow_een_l [%i][%i][%i] %+3.10f\n", nw,k,a,forces_jastrow_een_l[nw][k][a]);
|
|
assert(fabs(finite_difference_force_een_l_sum[nw][a][k] - forces_jastrow_een_l[nw][k][a]) < 1.e-8);
|
|
}
|
|
}
|
|
}
|
|
for (int nw = 0; nw < walk_num; nw++){
|
|
for (int a = 0; a < nucl_num; a++) {
|
|
for (int k = 0; k < 3; k++){
|
|
assert(fabs(finite_difference_force_een_l_sum[nw][a][k] - forces_jastrow_een_l[nw][k][a]) < 1.e-8);
|
|
}
|
|
}
|
|
}
|
|
printf("OK\n");
|
|
|
|
#+end_src
|
|
|
|
* End of files :noexport:
|
|
|
|
#+begin_src c :tangle (eval h_private_type)
|
|
#endif
|
|
#+end_src
|
|
|
|
#+begin_src c :tangle (eval h_private_func)
|
|
#endif
|
|
#+end_src
|
|
|
|
** Test
|
|
#+begin_src c :tangle (eval c_test)
|
|
rc = qmckl_context_destroy(context);
|
|
assert (rc == QMCKL_SUCCESS);
|
|
|
|
return 0;
|
|
}
|
|
#+end_src
|