230 lines
6.3 KiB
C++
230 lines
6.3 KiB
C++
#include <iostream>
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#include <fstream>
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#include <sstream>
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#include <time.h>
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#include "tools/array_ops.h"
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#include "FDTD/cartoperator.h"
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#include "FDTD/engine.h"
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#include "FDTD/processvoltage.h"
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#include "FDTD/processfields_td.h"
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#include "ContinuousStructure.h"
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using namespace std;
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void BuildMSL(ContinuousStructure &CSX);
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void BuildDipol(ContinuousStructure &CSX);
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void BuildPlaneWave(ContinuousStructure &CSX);
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int main(int argc, char *argv[])
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{
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time_t startTime=time(NULL);
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//*************** setup/read geometry ************//
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ContinuousStructure CSX;
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BuildPlaneWave(CSX);
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//*************** setup operator ************//
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CartOperator cop;
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cop.SetGeometryCSX(&CSX);
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cop.CalcECOperator();
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double fmax=1e9;
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cop.CalcGaussianPulsExcitation(fmax/2,fmax/8);
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time_t OpDoneTime=time(NULL);
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cop.ShowSize();
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bool bnd[] = {1,1,0,0,0,0};
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cop.ApplyMagneticBC(bnd);
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cerr << "Nyquist number of timesteps: " << cop.GetNyquistNum(fmax) << endl;
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unsigned int NrIter = cop.GetNyquistNum(fmax)/3;
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cerr << "Time for operator: " << difftime(OpDoneTime,startTime) << endl;
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//create FDTD engine
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Engine eng(&cop);
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time_t currTime = time(NULL);
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//*************** setup processing ************//
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ProcessVoltage PV(&cop,&eng);
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PV.OpenFile("tmp/u1");
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double start[]={-100,-250,0};
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double stop[]={-100,250,0};
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PV.DefineStartStopCoord(start,stop);
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unsigned int maxIter = 2000;
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ProcessFieldsTD PETD(&cop,&eng);
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start[0]=-250;start[1]=0;start[2]=-2000;
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stop[0]=250;stop[1]=0;stop[2]=4000;
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// start[0]=-250;start[1]=-250;start[2]=0;
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// stop[0]=250;stop[1]=250;stop[2]=0;
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PETD.SetDumpType(0);
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PETD.SetFilePattern("tmp/Et_");
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PETD.DefineStartStopCoord(start,stop);
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ProcessFieldsTD PHTD(&cop,&eng);
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start[0]=-1000;start[2]=0;start[1]=-1000;
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stop[0]=1000;stop[2]=0;stop[1]=1000;
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PHTD.SetDumpType(1);
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PHTD.SetFilePattern("tmp/Ht_");
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PHTD.DefineStartStopCoord(start,stop);
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PETD.SetEnable(false);
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PHTD.SetEnable(false);
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PV.Process();
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PETD.Process();
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PHTD.Process();
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//*************** simulate ************//
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for (unsigned int i=0;i<maxIter;i+=NrIter)
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{
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eng.IterateTS(NrIter);
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PV.Process();
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PETD.Process();
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PHTD.Process();
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}
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//*************** postproc ************//
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time_t prevTime = currTime;
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currTime = time(NULL);
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double t_diff = difftime(currTime,prevTime);
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cerr << "Time for " << eng.GetNumberOfTimesteps() << " iterations with " << cop.GetNumberCells() << " cells : " << t_diff << " sec" << endl;
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cerr << "Speed (MCells/s): " << (double)cop.GetNumberCells()*(double)eng.GetNumberOfTimesteps()/t_diff/1e6 << endl;
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return 0;
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}
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void BuildDipol(ContinuousStructure &CSX)
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{
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CSPropMaterial* mat = new CSPropMaterial(CSX.GetParameterSet());
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mat->SetKappa(0.001);
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CSX.AddProperty(mat);
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CSPrimBox* matbox = new CSPrimBox(CSX.GetParameterSet(),mat);
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matbox->SetCoord(0,-1000.0);matbox->SetCoord(1,1000.0);
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matbox->SetCoord(2,-1000.0);matbox->SetCoord(3,1000.0);
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matbox->SetCoord(4,-1000.0);matbox->SetCoord(5,1000.0);
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CSX.AddPrimitive(matbox);
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CSPropElectrode* elec = new CSPropElectrode(CSX.GetParameterSet());
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elec->SetExcitation(1,1);
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elec->SetExcitType(1);
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elec->SetActiveDir(0,0);//disable x
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elec->SetActiveDir(0,2);//disable z
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// elec->SetDelay(2.0e-9);
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CSX.AddProperty(elec);
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CSPrimBox* box = new CSPrimBox(CSX.GetParameterSet(),elec);
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box->SetCoord(0,-10.0);box->SetCoord(1,10.0);
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box->SetCoord(2,-75.0);box->SetCoord(3,75.0);
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box->SetCoord(4,-10.0);box->SetCoord(5,10.0);
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CSX.AddPrimitive(box);
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CSRectGrid* grid = CSX.GetGrid();
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for (int n=-990;n<=990;n+=20)
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grid->AddDiscLine(2,(double)n);
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for (int n=-990;n<=990;n+=20)
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grid->AddDiscLine(0,(double)n);
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for (int n=-990;n<=990;n+=20)
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grid->AddDiscLine(1,(double)n);
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grid->SetDeltaUnit(1e-3);
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CSX.Write2XML("tmp/Dipol.xml");
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}
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void BuildPlaneWave(ContinuousStructure &CSX)
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{
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// CSPropMaterial* mat = new CSPropMaterial(CSX.GetParameterSet());
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//// mat->SetKappa(0.001);
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// CSX.AddProperty(mat);
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//
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// CSPrimBox* matbox = new CSPrimBox(CSX.GetParameterSet(),mat);
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// matbox->SetCoord(0,-1000.0);matbox->SetCoord(1,1000.0);
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// matbox->SetCoord(2,-1000.0);matbox->SetCoord(3,1000.0);
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// matbox->SetCoord(4,-2000.0);matbox->SetCoord(5,4000.0);
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// CSX.AddPrimitive(matbox);
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CSPropElectrode* elec = new CSPropElectrode(CSX.GetParameterSet());
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elec->SetExcitation(1,1);
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elec->SetExcitType(0);
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elec->SetActiveDir(0,0);//disable x
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elec->SetActiveDir(0,2);//disable z
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// elec->SetDelay(2.0e-9);
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CSX.AddProperty(elec);
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CSPrimBox* box = new CSPrimBox(CSX.GetParameterSet(),elec);
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box->SetCoord(0,-250.0);box->SetCoord(1,250.0);
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box->SetCoord(2,-250.0);box->SetCoord(3,250.0);
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box->SetCoord(4,-0000.0);box->SetCoord(5,-0000.0);
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CSX.AddPrimitive(box);
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CSRectGrid* grid = CSX.GetGrid();
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for (int n=-250;n<=250;n+=10)
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grid->AddDiscLine(0,(double)n);
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for (int n=-250;n<=250;n+=10)
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grid->AddDiscLine(1,(double)n);
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for (int n=-4000;n<=4000;n+=10)
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grid->AddDiscLine(2,(double)n);
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grid->SetDeltaUnit(1e-3);
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CSX.Write2XML("tmp/PlaneWave.xml");
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}
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void BuildMSL(ContinuousStructure &CSX)
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{
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// CSPropMaterial* mat = new CSPropMaterial(CSX.GetParameterSet());
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// mat->SetEpsilon(3.6);
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// CSX.AddProperty(mat);
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//
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// CSPrimBox* box = new CSPrimBox(CSX.GetParameterSet(),mat);
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// box->SetCoord(0,-200.0);box->SetCoord(1,200.0);
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// box->SetCoord(2,0.0);box->SetCoord(3,50.0);
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// box->SetCoord(4,-1000.0);box->SetCoord(5,1000.0);
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// CSX.AddPrimitive(box);
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//
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// CSPropMaterial* MSL = new CSPropMaterial(CSX.GetParameterSet());
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// MSL->SetKappa(56e6);
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// CSX.AddProperty(MSL);
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//
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// box = new CSPrimBox(CSX.GetParameterSet(),MSL);
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// box->SetCoord(0,-20.0);box->SetCoord(1,20.0);
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// box->SetCoord(2,0.0);box->SetCoord(3,50.0);
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// box->SetCoord(4,-1000.0);box->SetCoord(5,1000.0);
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// CSX.AddPrimitive(box);
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CSPropElectrode* elec = new CSPropElectrode(CSX.GetParameterSet());
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elec->SetExcitation(1,1);
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elec->SetExcitType(0);
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// elec->SetDelay(2.0e-9);
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CSX.AddProperty(elec);
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CSPrimBox* box = new CSPrimBox(CSX.GetParameterSet(),elec);
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box->SetCoord(0,-1.0);box->SetCoord(1,1.0);
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box->SetCoord(2,0.0);box->SetCoord(3,50.0);
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box->SetCoord(4,-1.0);box->SetCoord(5,1.0);
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CSX.AddPrimitive(box);
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CSRectGrid* grid = CSX.GetGrid();
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for (int n=-300;n<=300;n+=20)
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grid->AddDiscLine(0,(double)n);
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for (int n=0;n<=300;n+=20)
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grid->AddDiscLine(1,(double)n);
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for (int n=-1000;n<=1000;n+=20)
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grid->AddDiscLine(2,(double)n);
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grid->SetDeltaUnit(1e-3);
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CSX.Write2XML("tmp/MSL.xml");
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}
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