new engine interface for cylindrical fdtd, handling the closed cylinder
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1bab004858
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1a06418914
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@ -0,0 +1,79 @@
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/*
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* Copyright (C) 2011 Thorsten Liebig (Thorsten.Liebig@gmx.de)
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "engine_interface_cylindrical_fdtd.h"
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Engine_Interface_Cylindrical_FDTD::Engine_Interface_Cylindrical_FDTD(Operator* op, Engine* eng) : Engine_Interface_FDTD(op,eng)
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{
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m_Op_Cyl = dynamic_cast<Operator_Cylinder*>(op);
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if (m_Op_Cyl==NULL)
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{
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cerr << "Engine_Interface_Cylindrical_FDTD::Engine_Interface_Cylindrical_FDTD: Error: Operator is not a cylindrical operator! Exit!" << endl;
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exit(1);
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}
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}
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Engine_Interface_Cylindrical_FDTD::~Engine_Interface_Cylindrical_FDTD()
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{
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}
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double* Engine_Interface_Cylindrical_FDTD::GetHField(const unsigned int* pos, double* out) const
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{
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if ((m_Op_Cyl->GetClosedAlpha()==false) || (m_InterpolType!=NODE_INTERPOLATE))
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return Engine_Interface_FDTD::GetHField(pos, out);
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unsigned int iPos[] = {pos[0],pos[1],pos[2]};
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if (pos[1]==m_Op->GetNumberOfLines(1)-1)
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iPos[1]=0;
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return Engine_Interface_FDTD::GetHField(iPos, out);
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}
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double* Engine_Interface_Cylindrical_FDTD::GetRawInterpolatedField(const unsigned int* pos, double* out, int type) const
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{
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if (m_Op_Cyl->GetClosedAlpha()==false)
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return Engine_Interface_FDTD::GetRawInterpolatedField(pos,out,type);
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unsigned int iPos[] = {pos[0],pos[1],pos[2]};
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switch (m_InterpolType)
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{
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default:
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case NO_INTERPOLATION:
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return Engine_Interface_FDTD::GetRawInterpolatedField(pos,out,type);
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break;
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case NODE_INTERPOLATE:
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for (int n=0; n<3; ++n)
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{
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if (pos[1]==0)
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iPos[1]=m_Op->GetNumberOfLines(1)-1;
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return Engine_Interface_FDTD::GetRawInterpolatedField(iPos,out,type);
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}
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break;
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case CELL_INTERPOLATE:
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for (int n=0; n<3; ++n)
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{
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if (pos[1]==m_Op->GetNumberOfLines(1)-1)
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iPos[1]=0;
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return Engine_Interface_FDTD::GetRawInterpolatedField(iPos,out,type);
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}
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break;
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}
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//! this should not happen
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return Engine_Interface_FDTD::GetRawInterpolatedField(pos,out,type);
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}
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@ -0,0 +1,39 @@
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/*
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* Copyright (C) 2011 Thorsten Liebig (Thorsten.Liebig@gmx.de)
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "engine_interface_fdtd.h"
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#include "operator_cylinder.h"
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#ifndef ENGINE_INTERFACE_CYLINDRICAL_FDTD_H
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#define ENGINE_INTERFACE_CYLINDRICAL_FDTD_H
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class Engine_Interface_Cylindrical_FDTD : public Engine_Interface_FDTD
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{
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public:
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Engine_Interface_Cylindrical_FDTD(Operator* op, Engine* eng);
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virtual ~Engine_Interface_Cylindrical_FDTD();
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virtual double* GetHField(const unsigned int* pos, double* out) const;
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protected:
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Operator_Cylinder* m_Op_Cyl;
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//! Internal method to get an interpolated field of a given type. (0: E, 1: J, 2: rotH)
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virtual double* GetRawInterpolatedField(const unsigned int* pos, double* out, int type) const;
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};
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#endif // ENGINE_INTERFACE_CYLINDRICAL_FDTD_H
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@ -54,8 +54,10 @@ protected:
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Operator* m_Op;
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Operator* m_Op;
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Engine* m_Eng;
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Engine* m_Eng;
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double* GetRawInterpolatedField(const unsigned int* pos, double* out, int type) const;
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//! Internal method to get an interpolated field of a given type. (0: E, 1: J, 2: rotH)
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double GetRawField(unsigned int n, const unsigned int* pos, int type) const;
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virtual double* GetRawInterpolatedField(const unsigned int* pos, double* out, int type) const;
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//! Internal method to get a raw field of a given type. (0: E, 1: J, 2: rotH)
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virtual double GetRawField(unsigned int n, const unsigned int* pos, int type) const;
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};
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};
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#endif // ENGINE_INTERFACE_FDTD_H
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#endif // ENGINE_INTERFACE_FDTD_H
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@ -83,7 +83,8 @@ SOURCES += FDTD/engine.cpp \
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FDTD/excitation.cpp \
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FDTD/excitation.cpp \
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FDTD/operator_cylindermultigrid.cpp \
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FDTD/operator_cylindermultigrid.cpp \
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FDTD/engine_cylindermultigrid.cpp \
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FDTD/engine_cylindermultigrid.cpp \
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FDTD/engine_interface_fdtd.cpp
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FDTD/engine_interface_fdtd.cpp \
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FDTD/engine_interface_cylindrical_fdtd.cpp
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# FDTD/extensions source files
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# FDTD/extensions source files
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SOURCES += FDTD/extensions/engine_extension.cpp \
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SOURCES += FDTD/extensions/engine_extension.cpp \
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@ -143,7 +144,8 @@ HEADERS += FDTD/engine.h \
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FDTD/operator_multithread.h \
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FDTD/operator_multithread.h \
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FDTD/operator_cylindermultigrid.h \
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FDTD/operator_cylindermultigrid.h \
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FDTD/engine_cylindermultigrid.h \
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FDTD/engine_cylindermultigrid.h \
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FDTD/engine_interface_fdtd.h
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FDTD/engine_interface_fdtd.h \
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FDTD/engine_interface_cylindrical_fdtd.h
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# FDTD/extensions header files
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# FDTD/extensions header files
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HEADERS += FDTD/extensions/operator_extension.h \
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HEADERS += FDTD/extensions/operator_extension.h \
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27
openems.cpp
27
openems.cpp
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@ -27,6 +27,7 @@
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#include "FDTD/extensions/operator_ext_upml.h"
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#include "FDTD/extensions/operator_ext_upml.h"
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#include "FDTD/extensions/operator_ext_lorentzmaterial.h"
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#include "FDTD/extensions/operator_ext_lorentzmaterial.h"
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#include "FDTD/engine_interface_fdtd.h"
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#include "FDTD/engine_interface_fdtd.h"
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#include "FDTD/engine_interface_cylindrical_fdtd.h"
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#include "Common/processvoltage.h"
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#include "Common/processvoltage.h"
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#include "Common/processcurrent.h"
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#include "Common/processcurrent.h"
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#include "Common/processfieldprobe.h"
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#include "Common/processfieldprobe.h"
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@ -278,6 +279,14 @@ bool openEMS::SetupBoundaryConditions(TiXmlElement* BC)
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return true;
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return true;
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}
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}
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Engine_Interface_FDTD* openEMS::NewEngineInterface()
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{
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Operator_Cylinder* op_cyl = dynamic_cast<Operator_Cylinder*>(FDTD_Op);
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if (op_cyl)
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return new Engine_Interface_Cylindrical_FDTD(FDTD_Op,FDTD_Eng);
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return new Engine_Interface_FDTD(FDTD_Op,FDTD_Eng);
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}
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bool openEMS::SetupProcessing()
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bool openEMS::SetupProcessing()
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{
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{
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//*************** setup processing ************//
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//*************** setup processing ************//
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@ -310,21 +319,21 @@ bool openEMS::SetupProcessing()
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{
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{
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if (pb->GetProbeType()==0)
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if (pb->GetProbeType()==0)
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{
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{
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ProcessVoltage* procVolt = new ProcessVoltage(new Engine_Interface_FDTD(FDTD_Op,FDTD_Eng));
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ProcessVoltage* procVolt = new ProcessVoltage(NewEngineInterface());
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proc=procVolt;
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proc=procVolt;
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}
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}
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else if (pb->GetProbeType()==1)
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else if (pb->GetProbeType()==1)
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{
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{
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ProcessCurrent* procCurr = new ProcessCurrent(new Engine_Interface_FDTD(FDTD_Op,FDTD_Eng));
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ProcessCurrent* procCurr = new ProcessCurrent(NewEngineInterface());
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proc=procCurr;
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proc=procCurr;
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}
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}
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else if (pb->GetProbeType()==2)
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else if (pb->GetProbeType()==2)
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proc = new ProcessFieldProbe(new Engine_Interface_FDTD(FDTD_Op,FDTD_Eng),0);
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proc = new ProcessFieldProbe(NewEngineInterface(),0);
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else if (pb->GetProbeType()==3)
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else if (pb->GetProbeType()==3)
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proc = new ProcessFieldProbe(new Engine_Interface_FDTD(FDTD_Op,FDTD_Eng),1);
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proc = new ProcessFieldProbe(NewEngineInterface(),1);
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else if ((pb->GetProbeType()==10) || (pb->GetProbeType()==11))
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else if ((pb->GetProbeType()==10) || (pb->GetProbeType()==11))
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{
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{
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ProcessModeMatch* pmm = new ProcessModeMatch(new Engine_Interface_FDTD(FDTD_Op,FDTD_Eng));
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ProcessModeMatch* pmm = new ProcessModeMatch(NewEngineInterface());
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pmm->SetFieldType(pb->GetProbeType()-10);
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pmm->SetFieldType(pb->GetProbeType()-10);
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pmm->SetModeFunction(0,pb->GetAttributeValue("ModeFunctionX"));
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pmm->SetModeFunction(0,pb->GetAttributeValue("ModeFunctionX"));
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pmm->SetModeFunction(1,pb->GetAttributeValue("ModeFunctionY"));
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pmm->SetModeFunction(1,pb->GetAttributeValue("ModeFunctionY"));
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if (db)
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if (db)
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{
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{
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if ((db->GetDumpType()>=0) && (db->GetDumpType()<=3))
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if ((db->GetDumpType()>=0) && (db->GetDumpType()<=3))
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ProcField = new ProcessFieldsTD(new Engine_Interface_FDTD(FDTD_Op,FDTD_Eng));
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ProcField = new ProcessFieldsTD(NewEngineInterface());
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else if ((db->GetDumpType()>=10) && (db->GetDumpType()<=13))
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else if ((db->GetDumpType()>=10) && (db->GetDumpType()<=13))
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ProcField = new ProcessFieldsFD(new Engine_Interface_FDTD(FDTD_Op,FDTD_Eng));
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ProcField = new ProcessFieldsFD(NewEngineInterface());
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else if (db->GetDumpType()==20)
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else if (db->GetDumpType()==20)
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ProcField = new ProcessFieldsSAR(new Engine_Interface_FDTD(FDTD_Op,FDTD_Eng));
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ProcField = new ProcessFieldsSAR(NewEngineInterface());
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else
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else
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cerr << "openEMS::SetupFDTD: unknown dump box type... skipping!" << endl;
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cerr << "openEMS::SetupFDTD: unknown dump box type... skipping!" << endl;
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if (ProcField)
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if (ProcField)
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@ -696,7 +705,7 @@ void openEMS::RunFDTD()
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cout << "Running FDTD engine... this may take a while... grab a cup of coffee?!?" << endl;
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cout << "Running FDTD engine... this may take a while... grab a cup of coffee?!?" << endl;
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//special handling of a field processing, needed to realize the end criteria...
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//special handling of a field processing, needed to realize the end criteria...
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ProcessFields* ProcField = new ProcessFields(new Engine_Interface_FDTD(FDTD_Op,FDTD_Eng));
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ProcessFields* ProcField = new ProcessFields(NewEngineInterface());
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PA->AddProcessing(ProcField);
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PA->AddProcessing(ProcField);
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double maxE=0,currE=0;
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double maxE=0,currE=0;
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@ -30,6 +30,7 @@ class Engine_Interface_FDTD;
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class ProcessingArray;
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class ProcessingArray;
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class TiXmlElement;
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class TiXmlElement;
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class ContinuousStructure;
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class ContinuousStructure;
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class Engine_Interface_FDTD;
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double CalcDiffTime(timeval t1, timeval t2);
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double CalcDiffTime(timeval t1, timeval t2);
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string FormatTime(int sec);
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string FormatTime(int sec);
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@ -63,6 +64,8 @@ public:
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//! Check for abort conditions
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//! Check for abort conditions
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bool CheckAbortCond();
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bool CheckAbortCond();
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Engine_Interface_FDTD* NewEngineInterface();
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protected:
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protected:
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bool CylinderCoords;
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bool CylinderCoords;
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