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LLNL/AMG/parcsr_ls/par_relax.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 * non...
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++) /* interior points first */ { /*----------------------------------------------------------- * If diagonal is nonzero, relax point i; otherwi...
LLNL/AMG/parcsr_ls/par_relax.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++) /* relax interior points */ { /*----------------------------------------------------------- * If i is of the right type ( C or F ) and diago...
LLNL/AMG/parcsr_ls/par_relax.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++) { v_buf_data[i - begin] = u_data[hypre_ParCSRCommPkgSendMapElmt(comm_pkg,i)]; }<LOOP-END> <OMP-START>#pragma omp parallel...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
{ if (num_threads > 1) { tmp_data = Ztemp_data; #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; j+...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
#endif 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 = (j+1)*size+j+1; } else { ...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
{ if (num_threads > 1) { tmp_data = Ztemp_data; #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; j+...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
#endif 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 = (j+1)*size+j+1; } else { ...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
} } } } } else { #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) HYPRE_SMP_SCHEDULE
100
{ if (num_threads > 1) { tmp_data = Ztemp_data; #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; j+...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
#endif 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 = (j+1)*size+j+1; } else { ...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
{ if (num_threads > 1) { tmp_data = Ztemp_data; #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; j+...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
#endif 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 = (j+1)*size+j+1; } else { ...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
(num_threads > 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; j+...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
#endif 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 = (j+1)*size+j+1; } else { ...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
if (num_threads > 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; j+...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
#endif 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 = (j+1)*size+j+1; } else { ...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
} } } } } else { #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) HYPRE_SMP_SCHEDULE
100
(num_threads > 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; j+...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
#endif 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 = (j+1)*size+j+1; } else { ...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
if (num_threads > 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; j+...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
#endif 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 = (j+1)*size+j+1; } else { ...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
{ if (num_threads > 1) { tmp_data = Ztemp_data; #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; j+...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
#endif 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 = (j+1)*size+j+1; } else { ...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
{ if (num_threads > 1) { tmp_data = Ztemp_data; #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; j+...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
#endif 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 = (j+1)*size+j+1; } else { ...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
} } } } } else { #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) HYPRE_SMP_SCHEDULE
100
{ if (num_threads > 1) { tmp_data = Ztemp_data; #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; j+...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
#endif 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 = (j+1)*size+j+1; } else { ...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
{ if (num_threads > 1) { tmp_data = Ztemp_data; #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; j+...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
#endif 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 = (j+1)*size+j+1; } else { ...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
if (num_threads > 1) { tmp_data = Ztemp_data; #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_thre...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
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; n...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
if (num_threads > 1) { tmp_data = Ztemp_data; #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_thre...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
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; n...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
} } } } } else { #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) HYPRE_SMP_SCHEDULE
100
if (num_threads > 1) { tmp_data = Ztemp_data; #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_thre...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
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; n...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
if (num_threads > 1) { tmp_data = Ztemp_data; #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_thre...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
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; n...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
if (num_threads > 1) { tmp_data = Ztemp_data; #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_thre...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
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; n...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
if (num_threads > 1) { tmp_data = Ztemp_data; #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_thre...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
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; n...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
} } } } } else { #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) HYPRE_SMP_SCHEDULE
100
if (num_threads > 1) { tmp_data = Ztemp_data; #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_thre...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
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; n...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
if (num_threads > 1) { tmp_data = Ztemp_data; #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_thre...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
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; n...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
if (num_threads > 1) { tmp_data = Ztemp_data; #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_thre...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
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; n...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
if (num_threads > 1) { tmp_data = Ztemp_data; #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_thre...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
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; n...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
} } } } } else { #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) HYPRE_SMP_SCHEDULE
100
if (num_threads > 1) { tmp_data = Ztemp_data; #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_thre...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
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; n...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
if (num_threads > 1) { tmp_data = Ztemp_data; #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_thre...
LLNL/AMG/parcsr_ls/par_relax.c
#pragma omp parallel for private(i,ii,j,jj,ns,ne,res,rest,size) HYPRE_SMP_SCHEDULE
100
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; n...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
Int, num_threads); fine_to_coarse = hypre_CTAlloc(HYPRE_Int, n_fine); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n_fine; i++) fine_to_coarse[i] = -1; jj_counter = start_indexing; jj_counter_offd = start_indexing; /*----------------------------------------------------------------------- ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i,j,i1,jj,ns,ne,size,rest) HYPRE_SMP_SCHEDULE
100
--------------------*/ /* RDF: this looks a little tricky, but doable */ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_threads; j++) { size = n_fine/num_threads; rest = n_fine - size*num_threads; if (j < rest) { ns = j*size+j; ne = (j+1)*size+j+1; } else ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i,j,ns,ne,size,rest,coarse_shift) HYPRE_SMP_SCHEDULE
100
); fine_to_coarse_offd = hypre_CTAlloc(HYPRE_Int, num_cols_A_offd); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_threads; j++) { coarse_shift = 0; if (j > 0) coarse_shift = coarse_counter[j-1]; size = n_fine/num_threads; rest = n_fine - size*num_threads; if (j < rest) ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
LL); } if (debug_flag==4) wall_time = time_getWallclockSeconds(); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n_fine; i++) fine_to_coarse[i] -= my_first_cpt; /*----------------------------------------------------------------------- * Loop over fine grid points. *--------------------------...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i,j,jl,i1,i2,jj,jj1,ns,ne,size,rest,sum,diagonal,distribute,P_marker,P_marker_offd,strong_f_marker,jj_counter,jj_counter_offd,sgn,c_num,jj_begin_row,jj_end_row,jj_begin_row_offd,jj_end_row_offd) HYPRE_SMP_SCHEDULE
100
------------------------------------------------------------------*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (jl = 0; jl < num_threads; jl++) { size = n_fine/num_threads; rest = n_fine - size*num_threads; if (jl < rest) { ns = jl*size+jl; ne = (jl+1)*size+jl+1; } ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
d_size) { P_marker = hypre_CTAlloc(HYPRE_Int, num_cols_A_offd); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < num_cols_A_offd; i++) P_marker[i] = 0; num_cols_P_offd = 0; for (i=0; i < P_offd_size; i++) { index = P_offd_j[i]; if (!P_marker[index]) { num_cols_P_offd++; ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
marker[index]==0) index++; col_map_offd_P[i] = index++; } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < P_offd_size; i++) P_offd_j[i] = hypre_BinarySearch(col_map_offd_P, P_offd_j[i], num_cols_P_offd); hypre_TFree(P_marker); } for (i=0; i < n_fine; i++) if (CF_mark...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
Int, num_threads); fine_to_coarse = hypre_CTAlloc(HYPRE_Int, n_fine); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n_fine; i++) fine_to_coarse[i] = -1; jj_counter = start_indexing; jj_counter_offd = start_indexing; /*----------------------------------------------------------------------- ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i,j,i1,jj,ns,ne,size,rest) HYPRE_SMP_SCHEDULE
100
--------------------*/ /* RDF: this looks a little tricky, but doable */ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_threads; j++) { size = n_fine/num_threads; rest = n_fine - size*num_threads; if (j < rest) { ns = j*size+j; ne = (j+1)*size+j+1; } else ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i,j,ns,ne,size,rest,coarse_shift) HYPRE_SMP_SCHEDULE
100
); fine_to_coarse_offd = hypre_CTAlloc(HYPRE_Int, num_cols_A_offd); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_threads; j++) { coarse_shift = 0; if (j > 0) coarse_shift = coarse_counter[j-1]; size = n_fine/num_threads; rest = n_fine - size*num_threads; if (j < rest) ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
LL); } if (debug_flag==4) wall_time = time_getWallclockSeconds(); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n_fine; i++) fine_to_coarse[i] -= my_first_cpt; /*----------------------------------------------------------------------- * Loop over fine grid points. *--------------------------...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i,j,jl,i1,i2,jj,jj1,ns,ne,size,rest,sum,diagonal,distribute,P_marker,P_marker_offd,jj_counter,jj_counter_offd,sgn,c_num,jj_begin_row,jj_end_row,jj_begin_row_offd,jj_end_row_offd) HYPRE_SMP_SCHEDULE
100
------------------------------------------------------------------*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (jl = 0; jl < num_threads; jl++) { size = n_fine/num_threads; rest = n_fine - size*num_threads; if (jl < rest) { ns = jl*size+jl; ne = (jl+1)*size+jl+1; } ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
d_size) { P_marker = hypre_CTAlloc(HYPRE_Int, num_cols_A_offd); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < num_cols_A_offd; i++) P_marker[i] = 0; num_cols_P_offd = 0; for (i=0; i < P_offd_size; i++) ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
marker[index]==0) index++; col_map_offd_P[i] = index++; } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < P_offd_size; i++) P_offd_j[i] = hypre_BinarySearch(col_map_offd_P, P_offd_j[i], num_cols_P_offd); hypre_TFree(P_marker); } for (i=0; i < n_fine; i++) if (CF_mark...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
Int, num_threads); fine_to_coarse = hypre_CTAlloc(HYPRE_Int, n_fine); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n_fine; i++) fine_to_coarse[i] = -1; jj_counter = start_indexing; jj_counter_offd = start_indexing; /*----------------------------------------------------------------------- ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i,j,i1,jj,ns,ne,size,rest) HYPRE_SMP_SCHEDULE
100
--------------------*/ /* RDF: this looks a little tricky, but doable */ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_threads; j++) { size = n_fine/num_threads; rest = n_fine - size*num_threads; if (j < rest) { ns = j*size+j; ne = (j+1)*size+j+1; } else ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i,j,ns,ne,size,rest,coarse_shift) HYPRE_SMP_SCHEDULE
100
); fine_to_coarse_offd = hypre_CTAlloc(HYPRE_Int, num_cols_A_offd); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_threads; j++) { coarse_shift = 0; if (j > 0) coarse_shift = coarse_counter[j-1]; size = n_fine/num_threads; rest = n_fine - size*num_threads; if (j < rest) ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
LL); } if (debug_flag==4) wall_time = time_getWallclockSeconds(); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n_fine; i++) fine_to_coarse[i] -= my_first_cpt; /*----------------------------------------------------------------------- * Loop over fine grid points. *--------------------------...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i,j,jl,i1,jj,ns,ne,size,rest,diagonal,P_marker,P_marker_offd,jj_counter,jj_counter_offd,jj_begin_row,jj_end_row,jj_begin_row_offd,jj_end_row_offd) HYPRE_SMP_SCHEDULE
100
------------------------------------------------------------------*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (jl = 0; jl < num_threads; jl++) { size = n_fine/num_threads; rest = n_fine - size*num_threads; if (jl < rest) { ns = jl*size+jl; ne = (jl+1)*size+jl+1; } ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
d_size) { P_marker = hypre_CTAlloc(HYPRE_Int, num_cols_A_offd); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < num_cols_A_offd; i++) P_marker[i] = 0; num_cols_P_offd = 0; for (i=0; i < P_offd_size; i++) ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
marker[index]==0) index++; col_map_offd_P[i] = index++; } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < P_offd_size; i++) P_offd_j[i] = hypre_BinarySearch(col_map_offd_P, P_offd_j[i], num_cols_P_offd); hypre_TFree(P_marker); } for (i=0; i < n_fine; i++) if (CF_mark...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
Int, num_threads); fine_to_coarse = hypre_CTAlloc(HYPRE_Int, n_fine); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n_fine; i++) fine_to_coarse[i] = -1; jj_counter = start_indexing; jj_counter_offd = start_indexing; /*----------------------------------------------------------------------- ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i,j,i1,jj,ns,ne,size,rest) HYPRE_SMP_SCHEDULE
100
--------------------*/ /* RDF: this looks a little tricky, but doable */ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_threads; j++) { size = n_fine/num_threads; rest = n_fine - size*num_threads; if (j < rest) { ns = j*size+j; ne = (j+1)*size+j+1; } else ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i,j,ns,ne,size,rest,coarse_shift) HYPRE_SMP_SCHEDULE
100
); fine_to_coarse_offd = hypre_CTAlloc(HYPRE_Int, num_cols_A_offd); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_threads; j++) { coarse_shift = 0; if (j > 0) coarse_shift = coarse_counter[j-1]; size = n_fine/num_threads; rest = n_fine - size*num_threads; if (j < rest) ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
LL); } if (debug_flag==4) wall_time = time_getWallclockSeconds(); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < n_fine; i++) fine_to_coarse[i] -= my_first_cpt; /*----------------------------------------------------------------------- * Loop over fine grid points. *--------------------------...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i,j,jl,i1,i2,jj,jj1,ns,ne,size,rest,sum,diagonal,distribute,P_marker,P_marker_offd,strong_f_marker,jj_counter,jj_counter_offd,sgn,c_num,jj_begin_row,jj_end_row,jj_begin_row_offd,jj_end_row_offd) HYPRE_SMP_SCHEDULE
100
------------------------------------------------------------------*/ #ifdef HYPRE_USING_OPENMP <LOOP-START>for (jl = 0; jl < num_threads; jl++) { size = n_fine/num_threads; rest = n_fine - size*num_threads; if (jl < rest) { ns = jl*size+jl; ne = (jl+1)*size+jl+1; } ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
d_size) { P_marker = hypre_CTAlloc(HYPRE_Int, num_cols_A_offd); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < num_cols_A_offd; i++) P_marker[i] = 0; num_cols_P_offd = 0; for (i=0; i < P_offd_size; i++) { index = P_offd_j[i]; if (!P_marker[index]) { num_cols_P_offd++; ...
LLNL/AMG/parcsr_ls/par_interp.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
marker[index]==0) index++; col_map_offd_P[i] = index++; } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < P_offd_size; i++) P_offd_j[i] = hypre_BinarySearch(col_map_offd_P, P_offd_j[i], num_cols_P_offd); hypre_TFree(P_marker); } for (i=0; i < n_fine; i++) if (CF_mark...
LLNL/AMG/utilities/hypre_merge_sort.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
n, out); hypre_UnorderedIntMapCreate(inverse_map, 2*len, 16*hypre_NumThreads()); HYPRE_Int i; <LOOP-START>for (i = 0; i < len; i++) { HYPRE_Int old = hypre_UnorderedIntMapPutIfAbsent(inverse_map, (*out)[i], i); assert(old == HYPRE_HOPSCOTCH_HASH_EMPTY); #ifdef DBG_MERGE_SORT if (hypre_Unorder...
LLNL/AMG/utilities/hypre_hopscotch_hash.c
#pragma omp parallel for
100
num_buckets); s->hash = hypre_TAlloc(HYPRE_Int, num_buckets); #ifdef HYPRE_CONCURRENT_HOPSCOTCH <LOOP-START>for (i = 0; i < num_buckets; ++i) { s->hopInfo[i] = 0; s->hash[i] = HYPRE_HOPSCOTCH_HASH_EMPTY; }<LOOP-END> <OMP-START>#pragma omp parallel for<OMP-END>
LLNL/AMG/utilities/hypre_hopscotch_hash.c
#pragma omp parallel for
100
m->table = hypre_TAlloc(hypre_HopscotchBucket, num_buckets); #ifdef HYPRE_CONCURRENT_HOPSCOTCH <LOOP-START>for (i = 0; i < num_buckets; i++) { InitBucket(&m->table[i]); }<LOOP-END> <OMP-START>#pragma omp parallel for<OMP-END>
LLNL/AMG/test/amg.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
HYPRE_Int, local_size); data = hypre_CTAlloc(HYPRE_Real, local_size); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i < local_size; i++) { num_cols[i] = 1; row_nums[i] = first_row+i; col_nums[i] = first_row+i; data[i] = eps; }<LOOP-END> <OMP-START>#pragma omp parallel for private(i) ...
LLNL/AMG/seq_mv/csr_matrix.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
RE_Int num_nonzeros = hypre_CSRMatrixNumNonzeros(A); HYPRE_Int i, j; #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i=0; i <= num_rows; i++) { B_i[i] = A_i[i]; }<LOOP-END> <OMP-START>#pragma omp parallel for HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/seq_mv/csr_matrix.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
#endif for (i=0; i <= num_rows; i++) { B_i[i] = A_i[i]; } #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j = 0; j < num_nonzeros; ++j) { B_j[j] = A_j[j]; }<LOOP-END> <OMP-START>#pragma omp parallel for HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/seq_mv/csr_matrix.c
#pragma omp parallel for HYPRE_SMP_SCHEDULE
100
A_data = hypre_CSRMatrixData(A); B_data = hypre_CSRMatrixData(B); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (j=0; j < num_nonzeros; j++) { B_data[j] = A_data[j]; }<LOOP-END> <OMP-START>#pragma omp parallel for HYPRE_SMP_SCHEDULE<OMP-END>
LLNL/AMG/seq_mv/vector.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
HYPRE_Int ierr = 0; size *=hypre_VectorNumVectors(v); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < size; i++) vector_data[i] = value; #ifdef HYPRE_PROFILE hypre_profile_times[HYPRE_TIMER_ID_BLAS1] += hypre_MPI_Wtime(); return ierr; } /*---------------------------------------...
LLNL/AMG/seq_mv/vector.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
if (size > size_y) size = size_y; size *=hypre_VectorNumVectors(x); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < size; i++) y_data[i] = x_data[i]; #ifdef HYPRE_PROFILE hypre_profile_times[HYPRE_TIMER_ID_BLAS1] += hypre_MPI_Wtime(); return ierr; } /*----------------------------------------...
LLNL/AMG/seq_mv/vector.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
HYPRE_Int ierr = 0; size *=hypre_VectorNumVectors(y); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < size; i++) y_data[i] *= alpha; #ifdef HYPRE_PROFILE hypre_profile_times[HYPRE_TIMER_ID_BLAS1] += hypre_MPI_Wtime(); return ierr; } /*-------------------------------------------...
LLNL/AMG/seq_mv/vector.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
HYPRE_Int ierr = 0; size *=hypre_VectorNumVectors(x); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < size; i++) y_data[i] += alpha * x_data[i]; #ifdef HYPRE_PROFILE hypre_profile_times[HYPRE_TIMER_ID_BLAS1] += hypre_MPI_Wtime(); return ierr; } /*-------------------------------...
LLNL/AMG/seq_mv/vector.c
#pragma omp parallel for private(i) reduction(+:result) HYPRE_SMP_SCHEDULE
100
; HYPRE_Real result = 0.0; size *=hypre_VectorNumVectors(x); #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < size; i++) result += hypre_conj(y_data[i]) * x_data[i]; #ifdef HYPRE_PROFILE hypre_profile_times[HYPRE_TIMER_ID_BLAS1] += hypre_MPI_Wtime(); return result; } /*----------------...
LLNL/AMG/seq_mv/csr_matvec.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
--------------------------------------------*/ if (alpha == 0.0) { #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < num_rows*num_vectors; i++) y_data[i] = beta*b_data[i]; #ifdef HYPRE_PROFILE hypre_profile_times[HYPRE_TIMER_ID_MATVEC] += hypre_MPI_Wtime() - time_begin; return ierr; ...
LLNL/AMG/seq_mv/csr_matvec.c
#pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE
100
if (temp != 1.0) { if (temp == 0.0) { #ifdef HYPRE_USING_OPENMP <LOOP-START>for (i = 0; i < num_rows*num_vectors; i++) y_data[i] = 0.0; } else { #ifdef HYPRE_USING_OPENMP #pragma omp parallel for private(i) HYPRE_SMP_SCHEDULE for...