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LLNL/sundials/src/nvector/openmpdev/nvector_openmpdev.c
#pragma omp parallel for schedule(static, 1)
100
for (i = 0; i < nvec; i++) { xd_dev = xd_dev_ptrs[i]; yd_dev = yd_dev_ptrs[i]; <LOOP-START>for (j = 0; j < N; j++) { yd_dev[j] += a * xd_dev[j]; }<LOOP-END> <OMP-START>#pragma omp parallel for schedule(static, 1)<OMP-END>
LLNL/AMG/IJ_mv/IJMatrix_parcsr.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
atrix); indx_offd = hypre_AuxParCSRMatrixIndxOffd(aux_matrix); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < local_num_rows; i++) { indx_diag[i] = diag_i[i]; indx_offd[i] = offd_i[i]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/IJ_mv/IJMatrix_parcsr.c
#pragma omp parallel for private(i, row_index) HYPRE_SMP_SCHEDULE
100
HYPRE_NO_GLOBAL_PARTITION pstart = 0; #else pstart = my_id; #endif #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < nrows; i++) { row_index = rows[i]; if (row_index >= row_partitioning[pstart] && row_index < row_partitioning[pstart+1]) { /* compute local row number */ ...
LLNL/AMG/IJ_mv/IJMatrix_parcsr.c
#pragma omp parallel for private (i,j,j0,temp)
100
= hypre_CSRMatrixJ(diag); diag_data = hypre_CSRMatrixData(diag); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < num_rows; i++) { j0 = diag_i[i]; for (j=j0; j < diag_i[i+1]; j++) { diag_j[j] -= col_0; if (diag_j[j] == i) { temp...
LLNL/AMG/IJ_mv/IJMatrix_parcsr.c
#pragma omp parallel for private(i)
100
or (i=0; i < num_cols_offd; i++) col_map_offd[i] = aux_offd_j[i]; #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < nnz_offd; i++) offd_j[i]=hypre_BinarySearch(col_map_offd,offd_j[i],num_cols_offd); if (base) { for (i=0; i < num_cols_offd; i++) col_map_offd[i] -= base; }<LOOP...
LLNL/AMG/IJ_mv/IJVector_parcsr.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
eturn hypre_error_flag; } data = hypre_VectorData( local_vector ); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < vec_stop - vec_start; i++) data[i] = 0.; return hypre_error_flag; } /****************************************************************************** * * hypre_IJVectorSetValuesPa...
LLNL/AMG/IJ_mv/IJVector_parcsr.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
ignored!\n"); } num_values = vec_stop - vec_start +1; } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_values; j++) data[j] = values[j]; } return hypre_error_flag; } /****************************************************************************** * * hypre_IJVectorAddTo...
LLNL/AMG/IJ_mv/IJVector_parcsr.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
ignored!\n"); } num_values = vec_stop - vec_start +1; } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_values; j++) data[j] += values[j]; } return hypre_error_flag; } /****************************************************************************** * * hypre_IJVectorAsse...
LLNL/AMG/IJ_mv/IJVector_parcsr.c
#pragma omp parallel for private(i,j) HYPRE_SMP_SCHEDULE
100
} data = hypre_VectorData(local_vector); if (indices) { #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_values; j++) { i = indices[j] - vec_start; values[j] = data[i]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i,j) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/IJ_mv/IJVector_parcsr.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
{ hypre_error_in_arg(2); return hypre_error_flag; } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_values; j++) values[j] = data[j]; } return hypre_error_flag; } /****************************************************************************** * hypre_IJVectorAssembleOff...
LLNL/AMG/parcsr_mv/par_csr_matrix.c
#pragma omp parallel for private(ii, i, j, count) HYPRE_SMP_SCHEDULE
100
; size = num_rows/num_threads; rest = num_rows - size*num_threads; #ifdef HYPRE_USING_OPENMP <LOOP-START>for (ii=0; ii < num_threads; ii++) { HYPRE_Int ns, ne; if (ii < rest) { ns = ii*size+ii; ne = (ii+1)*size+ii+1; } else { ns = ii*size+rest; ne = (ii+1)*size+res...
LLNL/AMG/parcsr_mv/par_csr_matop.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
ap(col_map_offd_C, num_cols_offd_C, &col_map_offd_C, &col_map_offd_C_inverse); HYPRE_Int i, j; <LOOP-START>for (i = 0; i < num_cols_offd_A; i++) for (j=B_ext_offd_i[i]; j < B_ext_offd_i[i+1]; j++) B_ext_offd_j[j] = hypre_UnorderedIntMapGet(&col_map_offd_C_inverse, B_ext_offd_j[j]); if (num_co...
LLNL/AMG/parcsr_mv/par_csr_matop.c
#pragma omp parallel for private(ii, i, j)
100
t++; } map_to_B[i] = cnt; cnt++; } } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (ii=0; ii < num_threads; ii++) { HYPRE_Int *A_marker = NULL; HYPRE_Int ns, ne, A_col, num_cols, nmax; if (ii < rest) { ns = ii*size+ii; ne = (ii+1)*size+ii+1; } el...
LLNL/AMG/parcsr_mv/par_csr_matvec.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
HYPRE_Int end = hypre_ParCSRCommPkgSendMapStart(comm_pkg, num_sends); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = begin; i < end; i++) { #ifdef HYPRE_USING_PERSISTENT_COMM ((HYPRE_Complex *)persistent_comm_handle->send_data)[i - begin] #else x_buf_data[0][i - begin] = x_local...
LLNL/AMG/parcsr_ls/par_strength.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
d); HYPRE_Int *col_map_offd_A = hypre_ParCSRMatrixColMapOffd(A); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < num_cols_offd; i++) col_map_offd_S[i] = col_map_offd_A[i]; } /*------------------------------------------------------------------- * Get the dof_func data for the off-pro...
LLNL/AMG/parcsr_ls/par_strength.c
#pragma omp parallel for private(i,diag,row_scale,row_sum,jA) HYPRE_SMP_SCHEDULE
100
give S same nonzero structure as A */ hypre_ParCSRMatrixCopy(A,S,0); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < num_variables; i++) { diag = A_diag_data[A_diag_i[i]]; /* compute scaling factor and row sum */ row_scale = 0.0; row_sum = diag; if (num_functions > 1) ...
LLNL/AMG/parcsr_ls/par_strength.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
map_starts[num_sends]; int_buf_data = hypre_TAlloc(HYPRE_Int, end); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (index = begin; index < end; index++) { int_buf_data[index - begin] = fine_to_coarse[send_map_elmts[index]] + my_first_cpt; }<LOOP-END> <OMP-START>#pragma omp parallel for HYPRE_SMP_S...
LLNL/AMG/parcsr_ls/par_strength.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
hypre_ParCSRCommHandleDestroy(comm_handle); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (index = begin; index < end; index++) { int_buf_data[index - begin] = CF_marker[send_map_elmts[index]]; }<LOOP-END> <OMP-START>#pragma omp parallel for HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/par_strength.c
#pragma omp parallel for private(j,k) reduction(+:num_nonzeros) HYPRE_SMP_SCHEDULE
100
-------------------------*/ S_int_i[0] = 0; num_nonzeros = 0; #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = begin; j < end; j++) { HYPRE_Int jrow = send_map_elmts[j]; HYPRE_Int index = 0; for (k = S_diag_i[jrow]; k < S_diag_i[jrow+1]; k++) { if (CF_mark...
LLNL/AMG/parcsr_ls/par_strength.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
ypre_sort_and_create_inverse_map(temp, num_cols_offd_C, &col_map_offd_C, &col_map_offd_C_inverse); <LOOP-START>for (i=0 ; i < S_ext_offd_size; i++) S_ext_offd_j[i] = hypre_UnorderedIntMapGet(&col_map_offd_C_inverse, S_ext_offd_j[i]); if (num_cols_offd_C) hypre_UnorderedIntMapDestroy(&col_map_offd_C_inv...
LLNL/AMG/parcsr_ls/par_coarsen.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
G_OPENMP HYPRE_Int *measure_array_temp = hypre_CTAlloc(HYPRE_Int, num_variables+num_cols_offd); <LOOP-START>for (i=0; i < S_offd_i[num_variables]; i++) { #pragma omp atomic measure_array_temp[num_variables + S_offd_j[i]]++; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE<OM...
LLNL/AMG/parcsr_ls/par_coarsen.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
ables]; i++) { #pragma omp atomic measure_array_temp[num_variables + S_offd_j[i]]++; } <LOOP-START>for (i=0; i < num_cols_offd; i++) { measure_array[i + num_variables] = measure_array_temp[i + num_variables]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/par_coarsen.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
ables], buf_data); /* calculate the local part for the local nodes */ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < S_diag_i[num_variables]; i++) { #pragma omp atomic measure_array_temp[S_diag_j[i]]++; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/par_coarsen.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
_diag_i[num_variables]; i++) { #pragma omp atomic measure_array_temp[S_diag_j[i]]++; } <LOOP-START>for (i=0; i < num_variables; i++) { measure_array[i] = measure_array_temp[i]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/par_coarsen.c
#pragma omp parallel for private(ig, i) HYPRE_SMP_SCHEDULE
100
graph_array_offd, graph_offd_size, CF_marker, CF_marker_offd);*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (ig = 0; ig < graph_size; ig++) { i = graph_array[ig]; if (measure_array[i] > 1) { CF_marker[i] = 1; } }<LOOP-END> <OMP-START>#pra...
LLNL/AMG/parcsr_ls/par_coarsen.c
#pragma omp parallel for private(ig, i) HYPRE_SMP_SCHEDULE
100
> 1) { CF_marker[i] = 1; } } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (ig = 0; ig < graph_offd_size; ig++) { i = graph_array_offd[ig]; if (measure_array[i+num_variables] > 1) { CF_marker_offd[i] = 1; } ...
LLNL/AMG/parcsr_ls/par_coarsen.c
#pragma omp parallel for private(ig, i, jS, j, jj) HYPRE_SMP_SCHEDULE
100
nt set *-------------------------------------------------------*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (ig = 0; ig < graph_size; ig++) { i = graph_array[ig]; if (measure_array[i] > 1) { for (jS = S_diag_i[i]; jS < S_diag_i[i+1]; jS++) { ...
LLNL/AMG/parcsr_ls/par_coarsen.c
#pragma omp parallel for private(ig, i, jS, j) HYPRE_SMP_SCHEDULE
100
pts and F-pts. *------------------------------------------------*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (ig = 0; ig < graph_size; ig++) { i = graph_array[ig]; /*--------------------------------------------- * If the measure of i is smaller than 1, then * make i and F point (because i...
LLNL/AMG/parcsr_ls/par_multi_interp.c
#pragma omp parallel for private(i) reduction(+:n_coarse,n_SF ) HYPRE_SMP_SCHEDULE
100
coarse = hypre_CTAlloc(HYPRE_Int, n_fine); n_coarse = 0; n_SF = 0; #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < n_fine; i++) if (CF_marker[i] == 1) n_coarse++; else if (CF_marker[i] == -3) n_SF++; pass_array_size = n_fine-n_coarse-n_SF; if (pass_array_size) pass_array = hypre_CTAlloc(HY...
LLNL/AMG/parcsr_ls/par_multi_interp.c
#pragma omp parallel for private(i) reduction(+:n_coarse_offd,n_SF_offd) HYPRE_SMP_SCHEDULE
100
stroy(comm_handle); } } n_coarse_offd = 0; n_SF_offd = 0; #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < num_cols_offd; i++) if (CF_marker_offd[i] == 1) n_coarse_offd++; else if (CF_marker_offd[i] == -3) n_SF_offd++; if (num_cols_offd) { assigned_offd = hypre_CTAlloc(HYPRE_...
LLNL/AMG/parcsr_ls/par_multi_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
]) P_ncols = hypre_CTAlloc(HYPRE_Int,send_map_start[num_sends]); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < num_cols_offd+1; i++) { Pext_i[i] = 0; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/par_multi_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
dif for (i=0; i < num_cols_offd+1; i++) { Pext_i[i] = 0; } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < send_map_start[num_sends]; i++) { P_ncols[i] = 0; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/par_multi_interp.c
#pragma omp parallel for private(j,j1) reduction(+:Pext_send_size) HYPRE_SMP_SCHEDULE
100
pass][0] = 0; for (i=0; i < num_sends; i++) { #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j=send_map_start[i]; j < send_map_start[i+1]; j++) { j1 = send_map_elmt[j]; if (assigned[j1] == pass-1) { P_ncols[j] = P_diag_i[...
LLNL/AMG/parcsr_ls/par_multi_interp.c
#pragma omp parallel for private(i,i1) HYPRE_SMP_SCHEDULE
100
offd_i[i+1] += P_offd_i[i]; } /* determine P for coarse points */ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < n_coarse; i++) { i1 = C_array[i]; P_diag_j[P_diag_i[i1]] = fine_to_coarse[i1]; P_diag_data[P_diag_i[i1]] = 1.0; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i,...
LLNL/AMG/parcsr_ls/par_multi_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
else { P_marker_offd = hypre_CTAlloc(HYPRE_Int,num_cols_offd); } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < new_num_cols_offd; i++) { P_marker_offd[i] = 0; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/par_multi_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
P); permute = hypre_CTAlloc(HYPRE_Int, new_counter[num_passes-1]); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < new_counter[num_passes-1]; i++) permute[i] = -1; cnt = 0; for (i=0; i < num_passes-1; i++) { for (j=new_counter[i]; j < new_counter[i+1]; j++) { ...
LLNL/AMG/parcsr_ls/par_multi_interp.c
#pragma omp parallel for private(i,k1) HYPRE_SMP_SCHEDULE
100
} } hypre_qsort0(col_map_offd_P,0,num_cols_offd_P-1); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < new_counter[num_passes-1]; i++) { k1 = permute[i]; if (k1 != -1) permute[i] = hypre_BinarySearch(col_map_offd_P,k1,num_cols_offd_P); }<LOOP-END> <OMP-ST...
LLNL/AMG/parcsr_ls/par_multi_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
mute[i] = hypre_BinarySearch(col_map_offd_P,k1,num_cols_offd_P); } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < P_offd_size; i++) { P_offd_j[i] = permute[P_offd_j[i]]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/par_multi_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
hypre_CSRMatrixNumCols(P_offd) = num_cols_offd_P; } if (n_SF) { #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < n_fine; i++) if (CF_marker[i] == -3) CF_marker[i] = -1; } if (num_procs > 1) { hypre_MatvecCommPkgCreate(P); }<LOOP-END> <OMP-START>#pragma omp parallel for private...
LLNL/AMG/parcsr_ls/par_lr_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
r_offd, fine_to_coarse_offd); } hypre_MatvecCommPkgCreate(P); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < n_fine; i++) if (CF_marker[i] == -3) CF_marker[i] = -1; *P_ptr = P; /* Deallocate memory */ hypre_TFree(max_num_threads); hypre_TFree(fine_to_coarse); hypre_TFree(diag...
LLNL/AMG/parcsr_ls/ams.c
#pragma omp parallel for private(i,ii,j,k,ns,ne,rest,size,diag,cf_diag) HYPRE_SMP_SCHEDULE
100
CSRCommHandleDestroy(comm_handle); hypre_TFree(int_buf_data); } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (k = 0; k < num_threads; k++) { size = num_rows/num_threads; rest = num_rows - size*num_threads; if (k < rest) { ns = k*size+k; ne = (k+1)*size+k+1; } ...
LLNL/AMG/parcsr_ls/ams.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
comm_handle = NULL; } if (relax_type == 1) /* Jacobi */ { #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n; i++) { Vtemp_data[i] = u_data[i]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/ams.c
#pragma omp parallel for private(i,ii,jj,res) HYPRE_SMP_SCHEDULE
100
r (i = 0; i < n; i++) { Vtemp_data[i] = u_data[i]; } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n; i++) { /*----------------------------------------------------------- * If diagonal is nonzero, relax point i; otherwise, skip it. *-----------------------...
LLNL/AMG/parcsr_ls/ams.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
1 && omega == 1) { tmp_data = hypre_CTAlloc(HYPRE_Real,n); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n; i++) tmp_data[i] = u_data[i]; #ifdef HYPRE_USING_OPENMP #pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE for (j = 0; j < num_threads;...
LLNL/AMG/parcsr_ls/ams.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
dif for (i = 0; i < n; i++) tmp_data[i] = u_data[i]; #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_threads; j++) { size = n/num_threads; rest = n - size*num_threads; if (j < rest) { ns = j*size+j; ne ...
LLNL/AMG/parcsr_ls/ams.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
mega*(1.0-relax_weight); tmp_data = hypre_CTAlloc(HYPRE_Real,n); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n; i++) { tmp_data[i] = u_data[i]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/ams.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
0; i < n; i++) { tmp_data[i] = u_data[i]; } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_threads; j++) { size = n/num_threads; rest = n - size*num_threads; if (j < rest) { ns = j*size+j; ne ...
LLNL/AMG/parcsr_ls/par_relax_more.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
beta = gamma / gamma_old; /* p = s + beta p */ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j=0; j < local_size; j++) { p_data[j] = s_data[j] + beta*p_data[j]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/par_relax_more.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
hypre_ParCSRMatrixMatvec(1.0, A, u, 0.0, v); mult = coefs[i]; #ifdef HYPRE_USING_OPENMP <LOOP-START>for ( j = 0; j < num_rows; j++ ) { u_data[j] = mult * r_data[j] + v_data[j]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE <OMP-END>
LLNL/AMG/parcsr_ls/par_relax_more.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
u_data[j] = mult * r_data[j] + v_data[j]; } } #ifdef HYPRE_USING_OPENMP <LOOP-START>for ( i = 0; i < num_rows; i++ ) { u_data[i] = orig_u[i] + u_data[i]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE <OMP-END>
LLNL/AMG/parcsr_ls/par_relax_more.c
#pragma omp parallel for private(j,diag) HYPRE_SMP_SCHEDULE
100
s_data and get scaled residual: r = D^(-1/2)f - * D^(-1/2)A*u */ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_rows; j++) { diag = A_diag_data[A_diag_i[j]]; ds_data[j] = 1/sqrt(diag); r_data[j] = ds_data[j] * f_data[j]; }<LOOP-END> <OMP-START>#pragma omp para...
LLNL/AMG/parcsr_ls/par_relax_more.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
ta[j]; } hypre_ParCSRMatrixMatvec(-1.0, A, u, 0.0, tmp_vec); #ifdef HYPRE_USING_OPENMP <LOOP-START>for ( j = 0; j < num_rows; j++ ) { r_data[j] += ds_data[j] * tmp_data[j]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE <OMP-END>
LLNL/AMG/parcsr_ls/par_relax_more.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
then start the iteration by multiplying r by the cheby coef.*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for ( j = 0; j < num_rows; j++ ) { orig_u[j] = u_data[j]; /* orig, unscaled u */ u_data[j] = r_data[j] * coefs[cheby_order]; }<LOOP-END> <OMP-START>#pragma omp parallel for pr...
LLNL/AMG/parcsr_ls/par_relax_more.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
y_order - 1; i >= 0; i-- ) { /* v = D^(-1/2)AD^(-1/2)u */ #ifdef HYPRE_USING_OPENMP <LOOP-START>for ( j = 0; j < num_rows; j++ ) { tmp_data[j] = ds_data[j] * u_data[j]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE <OMP-END>
LLNL/AMG/parcsr_ls/par_relax_more.c
#pragma omp parallel for private(j,tmp_d) HYPRE_SMP_SCHEDULE
100
ec, 0.0, v); /* u_new = coef*r + v*/ mult = coefs[i]; #ifdef HYPRE_USING_OPENMP <LOOP-START>for ( j = 0; j < num_rows; j++ ) { tmp_d = ds_data[j]* v_data[j]; u_data[j] = mult * r_data[j] + tmp_d; }<LOOP-END> <OMP-START>#pragma omp parallel for private(j,tmp_...
LLNL/AMG/parcsr_ls/par_relax_more.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
op */ /* now we have to scale u_data before adding it to u_orig*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for ( j = 0; j < num_rows; j++ ) { u_data[j] = orig_u[j] + ds_data[j]*u_data[j]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE <OMP-END>
LLNL/AMG/parcsr_ls/par_relax_more.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
*-----------------------------------------------------------------*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n; i++) { Vtemp_data[i] = u_data[i]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/par_relax_more.c
#pragma omp parallel for private(i,ii,jj,res) HYPRE_SMP_SCHEDULE
100
---------------------------------*/ if (relax_points == 0) { #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n; i++) { /*----------------------------------------------------------- * If diagonal is nonzero, relax point i; otherwise, skip it. *--------...
LLNL/AMG/parcsr_ls/par_relax_more.c
#pragma omp parallel for private(i,ii,jj,res) HYPRE_SMP_SCHEDULE
100
--------------------------------------------------------*/ else { #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n; i++) { /*----------------------------------------------------------- * If i is of the right type ( C or F ) and diagonal is * nonzero, rela...
LLNL/AMG/parcsr_ls/par_nongalerkin.c
#pragma omp parallel for private(i,diag,row_scale,row_sum,jA) HYPRE_SMP_SCHEDULE
100
S same nonzero structure as A */ hypre_ParCSRMatrixCopy(A,S,1); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < num_variables; i++) { diag = A_diag_data[A_diag_i[i]]; /* compute scaling factor and row sum */ row_scale = 0.0; row_sum = diag; if (num_fu...
LLNL/AMG/parcsr_ls/par_nongalerkin.c
#pragma omp parallel for private(i,j,max_entry,max_entry_offd,global_col,global_row) HYPRE_SMP_SCHEDULE
100
Use drop-tolerance to compute new entries for sparsity pattern */ /*#ifdef HYPRE_USING_OPENMP <LOOP-START>*/ for(i = 0; i < num_variables; i++) { global_row = i+first_col_diag_RAP; /* Compute the drop tolerance for this row, which is just * abs(max of row i)*droptol *...
LLNL/AMG/parcsr_ls/par_cheby.c
#pragma omp parallel for private(j,diag) HYPRE_SMP_SCHEDULE
100
(diagonal) */ ds_data = hypre_CTAlloc(HYPRE_Real, num_rows); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_rows; j++) { diag = A_diag_data[A_diag_i[j]]; ds_data[j] = 1/sqrt(diag); }<LOOP-END> <OMP-START>#pragma omp parallel for private(j,diag) HYPRE_SMP_SCHEDULE <O...
LLNL/AMG/parcsr_ls/par_cheby.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
hypre_ParCSRMatrixMatvec(1.0, A, u, 0.0, v); mult = coefs[i]; #ifdef HYPRE_USING_OPENMP <LOOP-START>for ( j = 0; j < num_rows; j++ ) { u_data[j] = mult * r_data[j] + v_data[j]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE <OMP-END>
LLNL/AMG/parcsr_ls/par_cheby.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
u_data[j] = mult * r_data[j] + v_data[j]; } } #ifdef HYPRE_USING_OPENMP <LOOP-START>for ( i = 0; i < num_rows; i++ ) { u_data[i] = orig_u[i] + u_data[i]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE <OMP-END>
LLNL/AMG/parcsr_ls/par_cheby.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
D^(-1/2)A*u */ hypre_ParCSRMatrixMatvec(-1.0, A, u, 0.0, tmp_vec); #ifdef HYPRE_USING_OPENMP <LOOP-START>for ( j = 0; j < num_rows; j++ ) { r_data[j] = ds_data[j] * (f_data[j] + tmp_data[j]); orig_u[j] = u_data[j]; /* orig, unscaled u */ u_data[j] = r_data[j] * coefs[cheby_ord...
LLNL/AMG/parcsr_ls/par_cheby.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
y_order - 1; i >= 0; i-- ) { /* v = D^(-1/2)AD^(-1/2)u */ #ifdef HYPRE_USING_OPENMP <LOOP-START>for ( j = 0; j < num_rows; j++ ) { tmp_data[j] = ds_data[j] * u_data[j]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE <OMP-END>
LLNL/AMG/parcsr_ls/par_cheby.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
ec, 0.0, v); /* u_new = coef*r + v*/ mult = coefs[i]; #ifdef HYPRE_USING_OPENMP <LOOP-START>for ( j = 0; j < num_rows; j++ ) { u_data[j] = mult * r_data[j] + ds_data[j]*v_data[j]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE <OMP-END>
LLNL/AMG/parcsr_ls/par_cheby.c
#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE
100
op */ /* now we have to scale u_data before adding it to u_orig*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for ( j = 0; j < num_rows; j++ ) { u_data[j] = orig_u[j] + ds_data[j]*u_data[j]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(j) HYPRE_SMP_SCHEDULE <OMP-END>
LLNL/AMG/parcsr_ls/par_rap.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
p_elmts_set, 2*(send_map_starts_RT[num_sends_RT] - send_map_starts_RT[0]), 16*hypre_NumThreads()); <LOOP-START>for (i = send_map_starts_RT[0]; i < send_map_starts_RT[num_sends_RT]; i++) { HYPRE_Int key = send_map_elmts_RT[i]; hypre_UnorderedIntSetPut(&send_map_elmts_set, key); }<LOOP-END>...
LLNL/AMG/parcsr_ls/par_rap.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
dIntMapCreate(&send_map_elmts_RT_inverse_map, 2*send_map_elmts_unique_size, 16*hypre_NumThreads()); <LOOP-START>for (i = 0; i < send_map_elmts_unique_size; i++) { hypre_UnorderedIntMapPutIfAbsent(&send_map_elmts_RT_inverse_map, send_map_elmts_unique[i], i); }<LOOP-END> <OMP-START>#pragma omp parall...
LLNL/AMG/parcsr_ls/par_rap.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
); send_map_elmts_RT_aggregated = hypre_TAlloc(HYPRE_Int, send_map_starts_RT[num_sends_RT]); <LOOP-START>for (i = 0; i < send_map_elmts_unique_size; i++) { send_map_elmts_starts_RT_aggregated[i] = 0; }<LOOP-END> <OMP-START>#pragma omp parallel for HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/par_rap.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
d_map_elmts_unique_size; i++) { send_map_elmts_starts_RT_aggregated[i] = 0; } <LOOP-START>for (i = send_map_starts_RT[0]; i < send_map_starts_RT[num_sends_RT]; i++) { HYPRE_Int idx = hypre_UnorderedIntMapGet(&send_map_elmts_RT_inverse_map, send_map_elmts_RT[i]); #pragma omp atomic ...
LLNL/AMG/parcsr_ls/par_rap.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
end_map_elmts_starts_RT_aggregated[send_map_elmts_unique_size] = send_map_starts_RT[num_sends_RT]; <LOOP-START>for (i = send_map_starts_RT[num_sends_RT] - 1; i >= send_map_starts_RT[0]; i--) { HYPRE_Int idx = hypre_UnorderedIntMapGet(&send_map_elmts_RT_inverse_map, send_map_elmts_RT[i]); HYPRE_...
LLNL/AMG/parcsr_ls/par_rap.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
_and_create_inverse_map(temp, num_cols_offd_Pext, &col_map_offd_Pext, &col_map_offd_Pext_inverse); <LOOP-START>for (i=0 ; i < P_ext_offd_size; i++) P_ext_offd_j[i] = hypre_UnorderedIntMapGet(&col_map_offd_Pext_inverse, P_ext_offd_j[i]); if (num_cols_offd_Pext) hypre_UnorderedIntMapDestroy(&col_map_offd_...
LLNL/AMG/parcsr_ls/par_rap.c
#pragma omp parallel for private(i,ii,ic,i1,i2,i3,jj1,jj2,jj3,ns,ne,size,rest,jj_counter,jj_row_begining,A_marker,P_marker) HYPRE_SMP_SCHEDULE
100
m_cols_offd_RT) { jj_count = hypre_CTAlloc(HYPRE_Int, num_threads); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (ii = 0; ii < num_threads; ii++) { size = num_cols_offd_RT/num_threads; rest = num_cols_offd_RT - size*num_threads; if (ii < rest) { ns = ii*size+ii; ne = (ii+1)*siz...
LLNL/AMG/parcsr_ls/par_rap.c
#pragma omp parallel for private(i,ii,ic,i1,i2,i3,jj1,jj2,jj3,ns,ne,size,rest,jj_counter,jj_row_begining,A_marker,P_marker,r_entry,r_a_product,r_a_p_product) HYPRE_SMP_SCHEDULE
100
----------------------------------------------------------------------*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (ii = 0; ii < num_threads; ii++) { size = num_cols_offd_RT/num_threads; rest = num_cols_offd_RT - size*num_threads; if (ii < rest) { ns = ii*size+ii; ne = (ii+1)*siz...
LLNL/AMG/parcsr_ls/par_rap.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
----------------------------------------------------------------------*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < RAP_ext_size; i++) if (RAP_ext_j[i] < first_col_diag_RAP || RAP_ext_j[i] > last_col_diag_RAP) RAP_ext_j[i] = num_cols_diag_P #ifdef HYPRE_CONCURRENT_HO...
LLNL/AMG/parcsr_ls/par_rap.c
#pragma omp parallel for private(i,j,k,jcol,ii,ic,i1,i2,i3,jj1,jj2,jj3,ns,ne,size,rest,jj_count_diag,jj_count_offd,jj_row_begin_diag,jj_row_begin_offd,A_marker,P_marker) HYPRE_SMP_SCHEDULE
100
t, num_threads); jj_cnt_offd = hypre_CTAlloc(HYPRE_Int, num_threads); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (ii = 0; ii < num_threads; ii++) { size = num_cols_diag_RT/num_threads; rest = num_cols_diag_RT - size*num_threads; if (ii < rest) { ns = ii*size+ii; ne = (ii+1)*siz...
LLNL/AMG/parcsr_ls/par_rap.c
#pragma omp parallel for private(i,j,k,jcol,ii,ic,i1,i2,i3,jj1,jj2,jj3,ns,ne,size,rest,jj_count_diag,jj_count_offd,jj_row_begin_diag,jj_row_begin_offd,A_marker,P_marker,r_entry,r_a_product,r_a_p_product) HYPRE_SMP_SCHEDULE
100
----------------------------------------------------------------------*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (ii = 0; ii < num_threads; ii++) { size = num_cols_diag_RT/num_threads; rest = num_cols_diag_RT - size*num_threads; if (ii < rest) { ns = ii*size+ii; ne = (ii+1)*siz...
LLNL/AMG/parcsr_ls/par_rap.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
f necessary */ P_marker = hypre_CTAlloc(HYPRE_Int,num_cols_offd_RAP); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < num_cols_offd_RAP; i++) P_marker[i] = -1; jj_count_offd = 0; #ifdef HYPRE_USING_ATOMIC #pragma omp parallel for private(i3) reduction(+:jj_count_offd) HYPRE_SMP_SCHEDULE for (i=0; ...
LLNL/AMG/parcsr_ls/par_rap.c
#pragma omp parallel for private(i3) reduction(+:jj_count_offd) HYPRE_SMP_SCHEDULE
100
< num_cols_offd_RAP; i++) P_marker[i] = -1; jj_count_offd = 0; #ifdef HYPRE_USING_ATOMIC <LOOP-START>for (i=0; i < RAP_offd_size; i++) { i3 = RAP_offd_j[i]; #ifdef HYPRE_USING_ATOMIC if (hypre_compare_and_swap(P_marker + i3, -1, 0) == -1) { jj_count_offd++; } #else i...
LLNL/AMG/parcsr_ls/par_rap.c
#pragma omp parallel for private(i3) HYPRE_SMP_SCHEDULE
100
new_col_map_offd_RAP[jj_counter++] = col_map_offd_RAP[i]; } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < RAP_offd_size; i++) { i3 = RAP_offd_j[i]; RAP_offd_j[i] = P_marker[i3]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i3) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/aux_interp.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
; HYPRE_Int end = hypre_ParCSRCommPkgSendMapStart(comm_pkg, num_sends); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = begin; i < end; ++i) { int_buf_data[i - begin] = IN_marker[hypre_ParCSRCommPkgSendMapElmt(comm_pkg, i)]; }<LOOP-END> <OMP-START>#pragma omp parallel for HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/aux_interp.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
); end = hypre_ParCSRCommPkgSendMapStart(extend_comm_pkg, e_num_sends); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = begin; i < end; ++i) { int_buf_data[i - begin] = IN_marker[hypre_ParCSRCommPkgSendMapElmt(extend_comm_pkg, i)]; }<LOOP-END> <OMP-START>#pragma omp parallel for HYPRE_SMP_SCHEDULE<OM...
LLNL/AMG/parcsr_ls/aux_interp.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
HYPRE_Int i; /* Quicker initialization */ if(offd_n < diag_n) { #ifdef HYPRE_USING_OPENMP <LOOP-START>for(i = 0; i < offd_n; i++) { diag_ftc[i] = -1; offd_ftc[i] = -1; tmp_CF[i] = -1; if(diag_pm != NULL) { diag_pm[i] = -1; } if(offd_pm != NULL) { offd_pm[i] = -1...
LLNL/AMG/parcsr_ls/aux_interp.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
_pm[i] = -1; } if(offd_pm != NULL) { offd_pm[i] = -1;} } #ifdef HYPRE_USING_OPENMP <LOOP-START>for(i = offd_n; i < diag_n; i++) { diag_ftc[i] = -1; if(diag_pm != NULL) { diag_pm[i] = -1; } }<LOOP-END> <OMP-START>#pragma omp parallel for HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/aux_interp.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
if(diag_pm != NULL) { diag_pm[i] = -1; } } } else { #ifdef HYPRE_USING_OPENMP <LOOP-START>for(i = 0; i < diag_n; i++) { diag_ftc[i] = -1; offd_ftc[i] = -1; tmp_CF[i] = -1; if(diag_pm != NULL) { diag_pm[i] = -1;} if(offd_pm != NULL) { offd_pm[i] = -1;...
LLNL/AMG/parcsr_ls/aux_interp.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
g_pm[i] = -1;} if(offd_pm != NULL) { offd_pm[i] = -1;} } #ifdef HYPRE_USING_OPENMP <LOOP-START>for(i = diag_n; i < offd_n; i++) { offd_ftc[i] = -1; tmp_CF[i] = -1; if(offd_pm != NULL) { offd_pm[i] = -1;} }<LOOP-END> <OMP-START>#pragma omp parallel for HYPRE_SMP_SCHEDUL...
LLNL/AMG/parcsr_ls/aux_interp.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
e; hypre_UnorderedIntMapCreate(&col_map_offd_inverse, 2*num_cols_A_offd, 16*hypre_NumThreads()); <LOOP-START>for (i = 0; i < num_cols_A_offd; i++) { hypre_UnorderedIntMapPutIfAbsent(&col_map_offd_inverse, col_map_offd[i], i); }<LOOP-END> <OMP-START>#pragma omp parallel for HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/aux_interp.c
#pragma omp parallel for private(kk,k1,got_loc,loc_col) HYPRE_SMP_SCHEDULE
100
ndif /* Set column indices for Sop and A_ext such that offd nodes are * negatively indexed */ <LOOP-START>for(i = 0; i < num_cols_A_offd; i++) { if (CF_marker_offd[i] < 0) { for(kk = Sop_i[i]; kk < Sop_i[i+1]; kk++) { k1 = Sop_j[kk]; if(k1 > -1 && (k1 < col_1 || k1 >= col_n)) ...
LLNL/AMG/parcsr_ls/aux_interp.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
HYPRE_Int *int_buf_data = hypre_CTAlloc(HYPRE_Int, end); HYPRE_Int i; #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = begin; i < end; ++i) { int_buf_data[i - begin] = IN_marker[hypre_ParCSRCommPkgSendMapElmt(comm_pkg, i)]; }<LOOP-END> <OMP-START>#pragma omp parallel for HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/aux_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
cNodes) P_marker = hypre_TAlloc(HYPRE_Int, full_off_procNodes); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < full_off_procNodes; i++) P_marker[i] = 0; #ifdef HYPRE_CONCURRENT_HOPSCOTCH /* These two loops set P_marker[i] to 1 if it appears in P_offd_j and if * tmp_CF_marker_offd has i mar...
LLNL/AMG/parcsr_ls/aux_interp.c
#pragma omp parallel for private(i,index) HYPRE_SMP_SCHEDULE
100
ffd has i marked. num_cols_P_offd is then set to the * total number of times P_marker is set */ <LOOP-START>for (i=0; i < P_offd_size; i++) { index = P_offd_j[i]; if(tmp_CF_marker_offd[index] >= 0) { P_marker[index] = 1; } }<LOOP-END> <OMP-START>#pragma omp parallel for private(i,index) HYPRE_...
LLNL/AMG/parcsr_ls/aux_interp.c
#pragma omp parallel for
100
d_P, num_cols_P_offd, &col_map_offd_P, &col_map_offd_P_inverse); // find old idx -> new idx map <LOOP-START>for (i = 0; i < full_off_procNodes; i++) P_marker[i] = hypre_UnorderedIntMapGet(&col_map_offd_P_inverse, fine_to_coarse_offd[i]); if (num_cols_P_offd) { hypre_UnorderedIntMapDestroy(&col_map_...
LLNL/AMG/parcsr_ls/aux_interp.c
#pragma omp parallel for
100
i]); if (num_cols_P_offd) { hypre_UnorderedIntMapDestroy(&col_map_offd_P_inverse); } <LOOP-START>for(i = 0; i < P_offd_size; i++) P_offd_j[i] = P_marker[P_offd_j[i]]; #else /* HYPRE_CONCURRENT_HOPSCOTCH */ HYPRE_Int num_cols_P_offd = 0; HYPRE_Int j; for (i=0; i < P_offd_size; i++) ...
LLNL/AMG/parcsr_ls/par_add_cycle.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
{ hypre_ParVectorCopy(F_array[fine_grid],Vtemp); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < num_rows; i++) u_data[i] = relax_weight[level]*v_data[i] / A_data[A_i[i]]; } } else if (rlx_down != 18) { /*hypre_BoomerAMGRe...
LLNL/AMG/parcsr_ls/par_add_cycle.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
{ hypre_ParVectorCopy(F_array[fine_grid],Vtemp); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < num_rows; i++) u_data[i] += v_data[i] / l1_norms_lvl[i]; } } alpha = -1.0; beta = 1.0; hypre_ParCSRMatrixMatvec(alpha, A_ar...
LLNL/AMG/parcsr_ls/par_add_cycle.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
n_global = hypre_VectorSize(hypre_ParVectorLocalVector(Xtilde)); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < n_global; i++) x_global[i] += D_inv[i]*r_global[i]; } else { if (num_grid_sweeps[1] > 1) { n_global = hypre_VectorSize(hypre_ParVectorLocalVe...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
-------------------------------------------------------------*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n; i++) { Vtemp_data[i] = u_data[i]; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,jj,res) HYPRE_SMP_SCHEDULE
100
---------------------------*/ if (relax_points == 0) { #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n; i++) { /*----------------------------------------------------------- * If diagonal is nonzero, relax point i; otherwise, skip it. ...