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Fixed OpenMP
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@ -11,7 +11,7 @@ BEGIN_PROVIDER [ double precision, int2_grad1u2_grad2u2_j1b2, (ao_num, ao_num, n
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implicit none
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integer :: i, j, ipoint, i_1s, i_fit
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double precision :: r(3), int_fit, expo_fit, coef_fit
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double precision :: r(3), expo_fit, coef_fit
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double precision :: coef, beta, B_center(3)
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double precision :: tmp
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double precision :: wall0, wall1
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@ -22,7 +22,6 @@ BEGIN_PROVIDER [ double precision, int2_grad1u2_grad2u2_j1b2, (ao_num, ao_num, n
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provide mu_erf final_grid_points_transp j1b_pen
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call wall_time(wall0)
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allocate(int_fit_v(n_points_final_grid))
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int2_grad1u2_grad2u2_j1b2(:,:,:) = 0.d0
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!$OMP PARALLEL DEFAULT (NONE) &
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@ -34,6 +33,8 @@ BEGIN_PROVIDER [ double precision, int2_grad1u2_grad2u2_j1b2, (ao_num, ao_num, n
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!$OMP List_all_comb_b3_coef, List_all_comb_b3_expo, &
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!$OMP List_all_comb_b3_cent, int2_grad1u2_grad2u2_j1b2,&
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!$OMP ao_overlap_abs)
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allocate(int_fit_v(n_points_final_grid))
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!$OMP DO SCHEDULE(dynamic)
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do i = 1, ao_num
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do j = i, ao_num
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@ -66,6 +67,7 @@ BEGIN_PROVIDER [ double precision, int2_grad1u2_grad2u2_j1b2, (ao_num, ao_num, n
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enddo
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enddo
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!$OMP END DO
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deallocate(int_fit_v)
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!$OMP END PARALLEL
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do ipoint = 1, n_points_final_grid
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@ -92,61 +94,65 @@ BEGIN_PROVIDER [ double precision, int2_u2_j1b2, (ao_num, ao_num, n_points_final
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END_DOC
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implicit none
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integer :: i, j, ipoint, i_1s, i_fit
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double precision :: r(3), int_fit, expo_fit, coef_fit
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double precision :: coef, beta, B_center(3), tmp
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double precision :: wall0, wall1
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integer :: i, j, ipoint, i_1s, i_fit
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double precision :: r(3), expo_fit, coef_fit
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double precision :: coef, beta, B_center(3), tmp
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double precision :: wall0, wall1
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double precision, allocatable :: int_fit_v(:)
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double precision, external :: overlap_gauss_r12_ao_with1s
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double precision, external :: overlap_gauss_r12_ao_with1s
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provide mu_erf final_grid_points j1b_pen
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provide mu_erf final_grid_points_transp j1b_pen
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call wall_time(wall0)
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int2_u2_j1b2 = 0.d0
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!$OMP PARALLEL DEFAULT (NONE) &
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!$OMP PRIVATE (ipoint, i, j, i_1s, i_fit, r, coef, beta, B_center, &
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!$OMP coef_fit, expo_fit, int_fit, tmp) &
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!$OMP SHARED (n_points_final_grid, ao_num, List_all_comb_b3_size, &
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!$OMP final_grid_points, n_max_fit_slat, &
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!$OMP expo_gauss_j_mu_x_2, coef_gauss_j_mu_x_2, &
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!$OMP List_all_comb_b3_coef, List_all_comb_b3_expo, &
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!$OMP List_all_comb_b3_cent, int2_u2_j1b2)
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!$OMP DO
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!do ipoint = 1, 10
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do ipoint = 1, n_points_final_grid
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r(1) = final_grid_points(1,ipoint)
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r(2) = final_grid_points(2,ipoint)
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r(3) = final_grid_points(3,ipoint)
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!$OMP PARALLEL DEFAULT (NONE) &
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!$OMP PRIVATE (ipoint, i, j, i_1s, i_fit, r, coef, beta, B_center,&
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!$OMP coef_fit, expo_fit, int_fit_v, tmp) &
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!$OMP SHARED (n_points_final_grid, ao_num, List_all_comb_b3_size,&
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!$OMP final_grid_points_transp, n_max_fit_slat, &
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!$OMP expo_gauss_j_mu_x_2, coef_gauss_j_mu_x_2, &
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!$OMP List_all_comb_b3_coef, List_all_comb_b3_expo, &
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!$OMP List_all_comb_b3_cent, int2_u2_j1b2)
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allocate(int_fit_v(n_points_final_grid))
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!$OMP DO
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do i = 1, ao_num
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do j = i, ao_num
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do i = 1, ao_num
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do j = i, ao_num
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tmp = 0.d0
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do i_1s = 1, List_all_comb_b3_size
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tmp = 0.d0
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do i_1s = 1, List_all_comb_b3_size
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coef = List_all_comb_b3_coef (i_1s)
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beta = List_all_comb_b3_expo (i_1s)
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B_center(1) = List_all_comb_b3_cent(1,i_1s)
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B_center(2) = List_all_comb_b3_cent(2,i_1s)
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B_center(3) = List_all_comb_b3_cent(3,i_1s)
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coef = List_all_comb_b3_coef (i_1s)
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beta = List_all_comb_b3_expo (i_1s)
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B_center(1) = List_all_comb_b3_cent(1,i_1s)
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B_center(2) = List_all_comb_b3_cent(2,i_1s)
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B_center(3) = List_all_comb_b3_cent(3,i_1s)
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do i_fit = 1, n_max_fit_slat
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do i_fit = 1, n_max_fit_slat
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expo_fit = expo_gauss_j_mu_x_2(i_fit)
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coef_fit = coef_gauss_j_mu_x_2(i_fit) * coef
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expo_fit = expo_gauss_j_mu_x_2(i_fit)
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coef_fit = coef_gauss_j_mu_x_2(i_fit)
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int_fit = overlap_gauss_r12_ao_with1s(B_center, beta, r, expo_fit, i, j)
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do ipoint = 1, n_points_final_grid
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r(1) = final_grid_points_transp(ipoint,1)
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r(2) = final_grid_points_transp(ipoint,2)
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r(3) = final_grid_points_transp(ipoint,3)
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tmp += coef * coef_fit * int_fit
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int_fit_v(ipoint) = overlap_gauss_r12_ao_with1s(B_center, beta, r, expo_fit, i, j)
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enddo
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do ipoint = 1, n_points_final_grid
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int2_u2_j1b2(j,i,ipoint) += coef_fit * int_fit_v(ipoint)
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enddo
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enddo
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int2_u2_j1b2(j,i,ipoint) = tmp
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enddo
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enddo
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enddo
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!$OMP END DO
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!$OMP END PARALLEL
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!$OMP END DO
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deallocate(int_fit_v)
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!$OMP END PARALLEL
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do ipoint = 1, n_points_final_grid
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do i = 2, ao_num
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