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https://github.com/TREX-CoE/qmckl.git
synced 2024-12-22 20:36:01 +01:00
Fixed efence compilation
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commit
d1e88ad475
40
configure.ac
40
configure.ac
@ -330,6 +330,26 @@ AS_IF([test "$HAVE_CUBLAS_OFFLOAD" = "yes"], [
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esac
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])
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AC_ARG_ENABLE(malloc-trace, [AS_HELP_STRING([--enable-malloc-trace],[use debug malloc/free])], ok=$enableval, ok=no)
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if test "$ok" = "yes"; then
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AC_DEFINE(MALLOC_TRACE,"malloc_trace.dat",[Define to use debugging malloc/free])
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ARGS="${ARGS} malloc-trace"
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fi
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AC_ARG_ENABLE(prof, [AS_HELP_STRING([--enable-prof],[compile for profiling])], ok=$enableval, ok=no)
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if test "$ok" = "yes"; then
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CFLAGS="${CFLAGS} -pg"
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AC_DEFINE(ENABLE_PROF,1,[Define when using the profiler tool])
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ARGS="${ARGS} prof"
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fi
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AC_ARG_WITH(efence, [AS_HELP_STRING([--with-efence],[use ElectricFence library])], ok=$withval, ok=no)
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if test "$ok" = "yes"; then
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AC_CHECK_LIB([efence], [malloc])
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ARGS="${ARGS} efence"
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fi
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##
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@ -356,26 +376,6 @@ if test "$ok" = "yes"; then
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ARGS="${ARGS} debug"
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fi
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AC_ARG_ENABLE(malloc-trace, [AS_HELP_STRING([--enable-malloc-trace],[use debug malloc/free])], ok=$enableval, ok=no)
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if test "$ok" = "yes"; then
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AC_DEFINE(MALLOC_TRACE,"malloc_trace.dat",[Define to use debugging malloc/free])
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ARGS="${ARGS} malloc-trace"
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fi
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AC_ARG_ENABLE(prof, [AS_HELP_STRING([--enable-prof],[compile for profiling])], ok=$enableval, ok=no)
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if test "$ok" = "yes"; then
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CFLAGS="${CFLAGS} -pg"
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AC_DEFINE(ENABLE_PROF,1,[Define when using the profiler tool])
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ARGS="${ARGS} prof"
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fi
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AC_ARG_WITH(efence, [AS_HELP_STRING([--with-efence],[use ElectricFence library])], ok=$withval, ok=no)
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if test "$ok" = "yes"; then
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AC_CHECK_LIB(efence, malloc)
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ARGS="${ARGS} efence"
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fi
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# Checks for header files.
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## qmckl
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@ -256,10 +256,8 @@ bool qmckl_mo_basis_provided(const qmckl_context context) {
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#+end_src
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*** Fortran interfaces
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#+begin_src f90 :tangle (eval fh_func) :comments org
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interface
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integer(c_int32_t) function qmckl_get_mo_basis_mo_num (context, &
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mo_num) bind(C)
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@ -665,6 +663,10 @@ integer function qmckl_compute_mo_basis_mo_vgl_doc_f(context, &
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integer*8 :: i,j,k
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double precision :: c1, c2, c3, c4, c5
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integer*8 :: LDA, LDB, LDC
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info = QMCKL_SUCCESS
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if (.True.) then ! fast algorithm
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do j=1,point_num
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mo_vgl(:,:,j) = 0.d0
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do k=1,ao_num
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@ -684,7 +686,18 @@ integer function qmckl_compute_mo_basis_mo_vgl_doc_f(context, &
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end if
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end do
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end do
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info = QMCKL_SUCCESS
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else ! dgemm
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LDA = size(coef_normalized_t,1)
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LDB = size(ao_vgl,1)
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LDC = size(mo_vgl,1)
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info = qmckl_dgemm(context,'N', 'N', mo_num, point_num*5_8, ao_num*1_8, 1.d0, &
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coef_normalized_t, LDA, ao_vgl, LDB, &
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0.d0, mo_vgl, LDC)
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end if
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end function qmckl_compute_mo_basis_mo_vgl_doc_f
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#+end_src
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@ -789,16 +802,19 @@ qmckl_compute_mo_basis_mo_vgl_hpc (const qmckl_context context,
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const double* restrict ao_vgl,
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double* restrict const mo_vgl )
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{
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assert (context != QMCKL_NULL_CONTEXT);
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#ifdef HAVE_OPENMP
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#pragma omp parallel 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_vgl[ipoint*5*mo_num]);
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const double* restrict avgl1 = &(ao_vgl[ipoint*5*ao_num]);
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double* restrict const vgl2 = vgl1 + mo_num;
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double* restrict const vgl3 = vgl1 + (mo_num << 1);
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double* restrict const vgl4 = vgl1 + (mo_num << 1) + mo_num;
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double* restrict const vgl5 = vgl1 + (mo_num << 2);
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const double* restrict avgl1 = &(ao_vgl[ipoint*5*ao_num]);
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const double* restrict avgl2 = avgl1 + ao_num;
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const double* restrict avgl3 = avgl1 + (ao_num << 1);
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const double* restrict avgl4 = avgl1 + (ao_num << 1) + ao_num;
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@ -832,6 +848,7 @@ qmckl_compute_mo_basis_mo_vgl_hpc (const qmckl_context context,
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}
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int64_t n;
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for (n=0 ; n < nidx-4 ; n+=4) {
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const double* restrict ck1 = coef_normalized_t + idx[n ]*mo_num;
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const double* restrict ck2 = coef_normalized_t + idx[n+1]*mo_num;
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@ -875,8 +892,7 @@ qmckl_compute_mo_basis_mo_vgl_hpc (const qmckl_context context,
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}
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}
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int64_t n0 = nidx-4;
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n0 = n0 < 0 ? 0 : n0;
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const int64_t n0 = n < 0 ? 0 : n;
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for (int64_t m=n0 ; m < nidx ; m+=1) {
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const double* restrict ck = coef_normalized_t + idx[m]*mo_num;
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const double a1 = av1[m];
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@ -250,19 +250,19 @@ qmckl_exit_code qmckl_set_numprec_range(const qmckl_context context, const int r
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# Fortran interface
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#+begin_src f90 :tangle (eval fh_func)
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interface
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integer (qmckl_exit_code) function qmckl_numprec_set_range(context, range) bind(C)
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integer (qmckl_exit_code) function qmckl_set_numprec_range(context, range) bind(C)
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use, intrinsic :: iso_c_binding
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import
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integer (qmckl_context), intent(in), value :: context
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integer (c_int32_t), intent(in), value :: range
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end function qmckl_numprec_set_range
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end function qmckl_set_numprec_range
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end interface
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#+end_src
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~qmckl_get_numprec_range~ returns the value of the numerical range in the context.
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#+begin_src c :comments org :tangle (eval h_func) :exports none
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int32_t qmckl_get_numprec_get_range(const qmckl_context context);
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int32_t qmckl_get_numprec_range(const qmckl_context context);
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#+end_src
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# Source
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