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https://github.com/TREX-CoE/qmckl.git
synced 2024-12-22 12:23:56 +01:00
Removed calloc
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@ -3566,7 +3566,7 @@ assert(0 == test_qmckl_ao_gaussian_vgl(context));
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const double* coord,
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const double* nucl_coord,
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const double* expo,
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double* const primitive_vgl );
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double* const primitive_vgl );
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#+end_src
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@ -3578,6 +3578,8 @@ function qmckl_compute_ao_basis_primitive_gaussian_vgl &
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use, intrinsic :: iso_c_binding
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use qmckl_constants
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use qmckl, only: qmckl_get_numprec_epsilon
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implicit none
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integer (qmckl_context), intent(in) , value :: context
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integer (c_int64_t) , intent(in) , value :: prim_num
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@ -3596,7 +3598,7 @@ function qmckl_compute_ao_basis_primitive_gaussian_vgl &
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info = QMCKL_SUCCESS
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! Don't compute exponentials when the result will be almost zero.
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cutoff = 27.631021115928547d0 ! -dlog(1.d-12)
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cutoff = -dlog(qmckl_get_numprec_epsilon(context))
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do inucl=1,nucl_num
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! C is zero-based, so shift bounds by one
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@ -3867,7 +3869,7 @@ print ( "[7][4][26] : %e"% lf(a,x,y))
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const double* nucl_coord,
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const double* expo,
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const double* coef_normalized,
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double* const shell_vgl );
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double* const shell_vgl );
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#+end_src
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#+begin_src f90 :comments org :tangle (eval f) :noweb yes
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@ -3880,6 +3882,7 @@ function qmckl_compute_ao_basis_shell_gaussian_vgl( &
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use, intrinsic :: iso_c_binding
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use qmckl_constants
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use qmckl, only: qmckl_get_numprec_epsilon
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implicit none
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integer (qmckl_context), intent(in) , value :: context
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@ -3908,7 +3911,7 @@ function qmckl_compute_ao_basis_shell_gaussian_vgl( &
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! Don't compute exponentials when the result will be almost zero.
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! TODO : Use numerical precision here
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cutoff = 27.631021115928547d0 !-dlog(1.d-12)
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cutoff = -dlog(qmckl_get_numprec_epsilon(context))
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do ipoint = 1, point_num
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@ -4237,7 +4240,7 @@ print ( "[1][4][26] : %25.15e"% lf(a,x,y))
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const double* X,
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const int32_t* LMAX,
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double* const P,
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const int64_t ldp );
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const int64_t ldp );
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#+end_src
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#+begin_src f90 :tangle (eval f)
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@ -4317,7 +4320,7 @@ end function qmckl_ao_power
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*** Test :noexport:
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#+begin_src f90 :tangle (eval f_test)
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function test_qmckl_ao_power(context) bind(C)
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function test_qmckl_ao_power(context) bind(C)
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use qmckl
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implicit none
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@ -4452,7 +4455,7 @@ assert(0 == test_qmckl_ao_power(context));
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int32_t* const L,
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const int64_t ldl,
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double* const VGL,
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const int64_t ldv );
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const int64_t ldv );
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#+end_src
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#+CALL: generate_c_header(table=qmckl_ao_polynomial_vgl_args,rettyp=get_value("CRetType"),fname="qmckl_ao_polynomial_vgl_doc")
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@ -4468,7 +4471,7 @@ assert(0 == test_qmckl_ao_power(context));
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int32_t* const L,
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const int64_t ldl,
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double* const VGL,
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const int64_t ldv );
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const int64_t ldv );
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#+end_src
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#+begin_src c :tangle (eval c) :comments org
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@ -4693,7 +4696,7 @@ end function qmckl_ao_polynomial_vgl_doc
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int32_t* const L,
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const int64_t ldl,
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double* const VGL,
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const int64_t ldv );
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const int64_t ldv );
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#+end_src
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#+CALL: generate_c_header(table=qmckl_ao_polynomial_vgl_args,rettyp=get_value("CRetType"),fname="qmckl_ao_polynomial_transp_vgl_doc")
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@ -4709,7 +4712,7 @@ end function qmckl_ao_polynomial_vgl_doc
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int32_t* const L,
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const int64_t ldl,
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double* const VGL,
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const int64_t ldv );
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const int64_t ldv );
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#+end_src
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# #+CALL: generate_c_header(table=qmckl_ao_polynomial_vgl_args,rettyp=get_value("CRetType"),fname="qmckl_ao_polynomial_transp_vgl_hpc")
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@ -5204,7 +5207,7 @@ qmckl_ao_polynomial_transp_vgl_hpc (const qmckl_context context,
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*** Test :noexport:
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#+begin_src f90 :tangle (eval f_test)
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function test_qmckl_ao_polynomial_vgl(context) bind(C)
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function test_qmckl_ao_polynomial_vgl(context) bind(C)
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use qmckl
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implicit none
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@ -5579,7 +5582,7 @@ qmckl_compute_ao_value_hpc_gaussian (const qmckl_context context,
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float exp_mat_sp[prim_max] __attribute__((aligned(64)));
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double ce_mat[shell_max] __attribute__((aligned(64)));
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int32_t (*coef_mat_sparse_idx)[shell_max][prim_max+1] __attribute__((aligned(64))) =
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int32_t (*coef_mat_sparse_idx)[shell_max][prim_max+1] __attribute__((aligned(64))) =
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malloc(nucl_num * sizeof (*coef_mat_sparse_idx));
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double (*coef_mat_sparse)[shell_max][prim_max+1] __attribute__((aligned(64))) =
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@ -6365,7 +6368,7 @@ qmckl_compute_ao_vgl_hpc_gaussian (
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float exp_mat_sp[prim_max] __attribute__((aligned(64)));
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double ce_mat[shell_max][8] __attribute__((aligned(64))) ;
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int32_t (*coef_mat_sparse_idx)[shell_max][prim_max+1] __attribute__((aligned(64))) =
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int32_t (*coef_mat_sparse_idx)[shell_max][prim_max+1] __attribute__((aligned(64))) =
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malloc(nucl_num * sizeof (*coef_mat_sparse_idx));
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double (*coef_mat_sparse)[shell_max][prim_max+1] __attribute__((aligned(64))) =
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@ -1309,18 +1309,23 @@ qmckl_compute_mo_basis_mo_value_hpc_sp (const qmckl_context context,
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}
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#ifdef HAVE_OPENMP
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#pragma omp parallel for
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#pragma omp parallel
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#endif
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{
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int64_t* __attribute__((aligned(64))) idx = calloc((size_t) ao_num, sizeof(int64_t));
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float* __attribute__((aligned(64))) av1 = calloc((size_t) ao_num, sizeof(float));
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assert (idx != NULL);
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assert (av1 != NULL);
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#ifdef HAVE_OPENMP
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#pragma omp for
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#endif
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for (int64_t ipoint=0 ; ipoint < point_num ; ++ipoint) {
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double* restrict const vgl1 = &(mo_value[ipoint*mo_num]);
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const double* restrict avgl1 = &(ao_value[ipoint*ao_num]);
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// memset(vgl_sp, 0, mo_num*sizeof(float));
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int64_t* __attribute__((aligned(64))) idx = calloc((size_t) ao_num, sizeof(int64_t));
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float* __attribute__((aligned(64))) av1 = calloc((size_t) ao_num, sizeof(float));
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float* __attribute__((aligned(64))) vgl_sp = calloc((size_t) mo_num, sizeof(float));
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assert (idx != NULL);
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assert (av1 != NULL);
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assert (vgl_sp != NULL);
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int64_t nidx=0;
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@ -1374,9 +1379,10 @@ qmckl_compute_mo_basis_mo_value_hpc_sp (const qmckl_context context,
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for (int64_t i=0 ; i<mo_num ; ++i) {
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vgl1[i] = (double) vgl_sp[i];
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}
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free(av1);
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free(idx);
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free(vgl_sp);
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}
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free(av1);
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free(idx);
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}
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free(coefficient_t_sp);
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return QMCKL_SUCCESS;
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