ExaFMM 1
Fast-multipole Method for exascale systems
unit_test/let.cxx
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00001 /*
00002 Copyright (C) 2011 by Rio Yokota, Simon Layton, Lorena Barba
00003 
00004 Permission is hereby granted, free of charge, to any person obtaining a copy
00005 of this software and associated documentation files (the "Software"), to deal
00006 in the Software without restriction, including without limitation the rights
00007 to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
00008 copies of the Software, and to permit persons to whom the Software is
00009 furnished to do so, subject to the following conditions:
00010 
00011 The above copyright notice and this permission notice shall be included in
00012 all copies or substantial portions of the Software.
00013 
00014 THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
00015 IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
00016 FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
00017 AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
00018 LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
00019 OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
00020 THE SOFTWARE.
00021 */
00022 #include "parallelfmm.h"
00023 #ifdef VTK
00024 #include "vtk.h"
00025 #endif
00026 
00027 int main() {
00028   const int numBodies = 100000;
00029   IMAGES = 0;
00030   THETA = 1 / sqrtf(4);
00031   Bodies bodies(numBodies);
00032   Cells cells;
00033   ParallelFMM<Laplace> FMM;
00034   FMM.initialize();
00035   if( MPIRANK == 0 ) FMM.printNow = true;
00036 
00037   FMM.startTimer("Set bodies   ");
00038   FMM.random(bodies,MPIRANK+1);
00039   FMM.stopTimer("Set bodies   ",FMM.printNow);
00040 
00041   FMM.startTimer("Set domain   ");
00042   FMM.setGlobDomain(bodies);
00043   FMM.stopTimer("Set domain   ",FMM.printNow);
00044 
00045   FMM.octsection(bodies);
00046 
00047 #ifdef TOPDOWN
00048   FMM.topdown(bodies,cells);
00049 #else
00050   FMM.bottomup(bodies,cells);
00051 #endif
00052 
00053   FMM.commBodies(cells);
00054 
00055   FMM.commCells(bodies,cells);
00056 
00057 #ifdef VTK
00058   for( B_iter B=bodies.begin(); B!=bodies.end(); ++B ) B->ICELL = 0;
00059   for( C_iter C=cells.begin(); C!=cells.end(); ++C ) {
00060     Body body;
00061     body.ICELL = 1;
00062     body.X     = C->X;
00063     body.SRC   = 0;
00064     bodies.push_back(body);
00065   }
00066 
00067   int Ncell = 0;
00068   vtkPlot vtk;
00069   if( MPIRANK == 0 ) {
00070     vtk.setDomain(FMM.getR0(),FMM.getX0());
00071     vtk.setGroupOfPoints(bodies,Ncell);
00072   }
00073   for( int i=1; i!=MPISIZE; ++i ) {
00074     FMM.shiftBodies(bodies);
00075     if( MPIRANK == 0 ) {
00076       vtk.setGroupOfPoints(bodies,Ncell);
00077     }
00078   }
00079   if( MPIRANK == 0 ) {
00080     vtk.plot(Ncell);
00081   }
00082 #endif
00083   FMM.finalize();
00084 }
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