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/* |
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* Copyright (C) 2000-2004 Object Oriented Parallel Simulation Engine (OOPSE) project |
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* |
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* Contact: oopse@oopse.org |
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* |
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* This program is free software; you can redistribute it and/or |
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* modify it under the terms of the GNU Lesser General Public License |
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* as published by the Free Software Foundation; either version 2.1 |
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* of the License, or (at your option) any later version. |
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* All we ask is that proper credit is given for our work, which includes |
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* - but is not limited to - adding the above copyright notice to the beginning |
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* of your source code files, and to any copyright notice that you may distribute |
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* with programs based on this work. |
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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 Lesser General Public License for more details. |
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* |
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* You should have received a copy of the GNU Lesser General Public License |
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* along with this program; if not, write to the Free Software |
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* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. |
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* Copyright (c) 2005 The University of Notre Dame. All Rights Reserved. |
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* |
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* The University of Notre Dame grants you ("Licensee") a |
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* non-exclusive, royalty free, license to use, modify and |
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* redistribute this software in source and binary code form, provided |
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* that the following conditions are met: |
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* |
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* 1. Redistributions of source code must retain the above copyright |
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* notice, this list of conditions and the following disclaimer. |
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* |
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* 2. Redistributions in binary form must reproduce the above copyright |
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* notice, this list of conditions and the following disclaimer in the |
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* documentation and/or other materials provided with the |
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* distribution. |
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* |
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* This software is provided "AS IS," without a warranty of any |
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* kind. All express or implied conditions, representations and |
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* warranties, including any implied warranty of merchantability, |
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* fitness for a particular purpose or non-infringement, are hereby |
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* excluded. The University of Notre Dame and its licensors shall not |
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* be liable for any damages suffered by licensee as a result of |
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* using, modifying or distributing the software or its |
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* derivatives. In no event will the University of Notre Dame or its |
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* licensors be liable for any lost revenue, profit or data, or for |
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* direct, indirect, special, consequential, incidental or punitive |
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* damages, however caused and regardless of the theory of liability, |
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* arising out of the use of or inability to use software, even if the |
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* University of Notre Dame has been advised of the possibility of |
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* such damages. |
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* |
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* SUPPORT OPEN SCIENCE! If you use OpenMD or its source code in your |
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* research, please cite the appropriate papers when you publish your |
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* work. Good starting points are: |
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* |
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* [1] Meineke, et al., J. Comp. Chem. 26, 252-271 (2005). |
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* [2] Fennell & Gezelter, J. Chem. Phys. 124, 234104 (2006). |
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* [3] Sun, Lin & Gezelter, J. Chem. Phys. 128, 24107 (2008). |
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* [4] Kuang & Gezelter, J. Chem. Phys. 133, 164101 (2010). |
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* [5] Vardeman, Stocker & Gezelter, J. Chem. Theory Comput. 7, 834 (2011). |
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*/ |
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|
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/** |
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* @file DataStorage.cpp |
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* @author tlin |
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* @date 10/26/2004 |
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* @time 11:56am |
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* @version 1.0 |
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*/ |
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/** |
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* @file DataStorage.cpp |
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* @author tlin |
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* @date 10/26/2004 |
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* @time 11:56am |
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* @version 1.0 |
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*/ |
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|
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#include "brains/DataStorage.hpp" |
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using namespace std; |
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namespace OpenMD { |
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|
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DataStorage::DataStorage() : size_(0), storageLayout_(0){ |
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|
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DataStorage::DataStorage() : size_(0), storageLayout_(0){ |
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} |
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|
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} |
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|
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DataStorage::DataStorage(int size, int storageLayout) : size_(size){ |
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DataStorage::DataStorage(int size, int storageLayout) : size_(size){ |
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setStorageLayout(storageLayout); |
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resize(size); |
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} |
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} |
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|
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int DataStorage::getSize() { |
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int DataStorage::getSize() { |
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|
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if (storageLayout_ & dslPosition && position.size() != size_) { |
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//error |
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std::cerr << "size does not match"<< std::endl; |
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//error |
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cerr << "size does not match"<< endl; |
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} |
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|
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if (storageLayout_ & dslVelocity && velocity.size() != size_) { |
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//error |
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std::cerr << "size does not match"<< std::endl; |
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//error |
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cerr << "size does not match"<< endl; |
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} |
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|
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if (storageLayout_ & dslAmat && aMat.size() != size_) { |
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//error |
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std::cerr << "size does not match"<< std::endl; |
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//error |
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cerr << "size does not match"<< endl; |
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} |
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|
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if (storageLayout_ & dslAngularMomentum && angularMomentum.size() != size_) { |
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//error |
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std::cerr << "size does not match"<< std::endl; |
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//error |
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cerr << "size does not match"<< endl; |
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} |
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|
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if (storageLayout_ & dslUnitVector && unitVector.size() != size_) { |
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//error |
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std::cerr << "size does not match"<< std::endl; |
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if (storageLayout_ & dslElectroFrame && electroFrame.size() != size_) { |
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//error |
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cerr << "size does not match"<< endl; |
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} |
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|
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if (storageLayout_ & dslZAngle && zAngle.size() != size_) { |
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//error |
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std::cerr << "size does not match"<< std::endl; |
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} |
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|
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if (storageLayout_ & dslForce && force.size() != size_) { |
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//error |
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std::cerr << "size does not match"<< std::endl; |
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//error |
93 |
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cerr << "size does not match"<< endl; |
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} |
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|
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if (storageLayout_ & dslTorque && torque.size() != size_) { |
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//error |
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std::cerr << "size does not match"<< std::endl; |
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//error |
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cerr << "size does not match"<< endl; |
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} |
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|
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if (storageLayout_ & dslParticlePot && particlePot.size() != size_) { |
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//error |
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cerr << "size does not match"<< endl; |
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} |
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|
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if (storageLayout_ & dslDensity && density.size() != size_) { |
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//error |
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cerr << "size does not match"<< endl; |
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} |
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|
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if (storageLayout_ & dslFunctional && functional.size() != size_) { |
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//error |
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cerr << "size does not match"<< endl; |
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} |
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|
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if (storageLayout_ & dslFunctionalDerivative && functionalDerivative.size() != size_) { |
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//error |
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cerr << "size does not match"<< endl; |
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} |
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|
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if (storageLayout_ & dslElectricField && electricField.size() != size_) { |
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//error |
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cerr << "size does not match"<< endl; |
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} |
125 |
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|
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if (storageLayout_ & dslSkippedCharge && skippedCharge.size() != size_) { |
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//error |
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cerr << "size does not match"<< endl; |
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} |
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|
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if (storageLayout_ & dslFlucQPosition && flucQPos.size() != size_) { |
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//error |
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cerr << "size does not match"<< endl; |
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} |
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|
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if (storageLayout_ & dslFlucQVelocity && flucQVel.size() != size_) { |
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//error |
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cerr << "size does not match"<< endl; |
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} |
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|
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if (storageLayout_ & dslFlucQForce && flucQFrc.size() != size_) { |
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//error |
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cerr << "size does not match"<< endl; |
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} |
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|
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return size_; |
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|
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} |
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} |
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|
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void DataStorage::resize(int newSize) { |
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> |
void DataStorage::resize(int newSize) { |
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|
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if (storageLayout_ & dslPosition) { |
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internalResize(position, newSize); |
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internalResize(position, newSize); |
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} |
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|
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if (storageLayout_ & dslVelocity) { |
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internalResize(velocity, newSize); |
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internalResize(velocity, newSize); |
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} |
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|
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if (storageLayout_ & dslAmat) { |
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internalResize(aMat, newSize); |
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internalResize(aMat, newSize); |
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} |
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|
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if (storageLayout_ & dslAngularMomentum) { |
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internalResize(angularMomentum, newSize); |
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internalResize(angularMomentum, newSize); |
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} |
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|
|
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if (storageLayout_ & dslUnitVector) { |
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internalResize(unitVector, newSize); |
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if (storageLayout_ & dslElectroFrame) { |
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> |
internalResize(electroFrame, newSize); |
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} |
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|
|
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if (storageLayout_ & dslZAngle) { |
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internalResize(zAngle, newSize); |
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} |
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|
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|
if (storageLayout_ & dslForce) { |
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internalResize(force, newSize); |
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> |
internalResize(force, newSize); |
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} |
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|
|
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if (storageLayout_ & dslTorque) { |
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internalResize(torque, newSize); |
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> |
internalResize(torque, newSize); |
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} |
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|
|
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if (storageLayout_ & dslParticlePot) { |
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internalResize(particlePot, newSize); |
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} |
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|
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if (storageLayout_ & dslDensity) { |
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internalResize(density, newSize); |
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} |
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|
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if (storageLayout_ & dslFunctional) { |
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internalResize(functional, newSize); |
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} |
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|
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if (storageLayout_ & dslFunctionalDerivative) { |
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internalResize(functionalDerivative, newSize); |
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} |
195 |
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|
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if (storageLayout_ & dslElectricField) { |
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internalResize(electricField, newSize); |
198 |
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} |
199 |
+ |
|
200 |
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if (storageLayout_ & dslSkippedCharge) { |
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internalResize(skippedCharge, newSize); |
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} |
203 |
+ |
|
204 |
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if (storageLayout_ & dslFlucQPosition) { |
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internalResize(flucQPos, newSize); |
206 |
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} |
207 |
+ |
|
208 |
+ |
if (storageLayout_ & dslFlucQVelocity) { |
209 |
+ |
internalResize(flucQVel, newSize); |
210 |
+ |
} |
211 |
+ |
|
212 |
+ |
if (storageLayout_ & dslFlucQForce) { |
213 |
+ |
internalResize(flucQFrc, newSize); |
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} |
215 |
+ |
|
216 |
|
size_ = newSize; |
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< |
} |
217 |
> |
} |
218 |
|
|
219 |
< |
void DataStorage::reserve(int size) { |
219 |
> |
void DataStorage::reserve(int size) { |
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|
if (storageLayout_ & dslPosition) { |
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< |
position.reserve(size); |
221 |
> |
position.reserve(size); |
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|
} |
223 |
|
|
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|
if (storageLayout_ & dslVelocity) { |
225 |
< |
velocity.reserve(size); |
225 |
> |
velocity.reserve(size); |
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|
} |
227 |
|
|
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|
if (storageLayout_ & dslAmat) { |
229 |
< |
aMat.reserve(size); |
229 |
> |
aMat.reserve(size); |
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|
} |
231 |
|
|
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|
if (storageLayout_ & dslAngularMomentum) { |
233 |
< |
angularMomentum.reserve(size); |
233 |
> |
angularMomentum.reserve(size); |
234 |
|
} |
235 |
|
|
236 |
< |
if (storageLayout_ & dslUnitVector) { |
237 |
< |
unitVector.reserve(size); |
236 |
> |
if (storageLayout_ & dslElectroFrame) { |
237 |
> |
electroFrame.reserve(size); |
238 |
|
} |
239 |
|
|
150 |
– |
if (storageLayout_ & dslZAngle) { |
151 |
– |
zAngle.reserve(size); |
152 |
– |
} |
153 |
– |
|
240 |
|
if (storageLayout_ & dslForce) { |
241 |
< |
force.reserve(size); |
241 |
> |
force.reserve(size); |
242 |
|
} |
243 |
|
|
244 |
|
if (storageLayout_ & dslTorque) { |
245 |
< |
torque.reserve(size); |
245 |
> |
torque.reserve(size); |
246 |
|
} |
247 |
+ |
|
248 |
+ |
if (storageLayout_ & dslParticlePot) { |
249 |
+ |
particlePot.reserve(size); |
250 |
+ |
} |
251 |
|
|
252 |
< |
} |
252 |
> |
if (storageLayout_ & dslDensity) { |
253 |
> |
density.reserve(size); |
254 |
> |
} |
255 |
|
|
256 |
< |
void DataStorage::copy(int source, int num, int target) { |
256 |
> |
if (storageLayout_ & dslFunctional) { |
257 |
> |
functional.reserve(size); |
258 |
> |
} |
259 |
> |
|
260 |
> |
if (storageLayout_ & dslFunctionalDerivative) { |
261 |
> |
functionalDerivative.reserve(size); |
262 |
> |
} |
263 |
> |
|
264 |
> |
if (storageLayout_ & dslElectricField) { |
265 |
> |
electricField.reserve(size); |
266 |
> |
} |
267 |
> |
|
268 |
> |
if (storageLayout_ & dslSkippedCharge) { |
269 |
> |
skippedCharge.reserve(size); |
270 |
> |
} |
271 |
> |
|
272 |
> |
if (storageLayout_ & dslFlucQPosition) { |
273 |
> |
flucQPos.reserve(size); |
274 |
> |
} |
275 |
> |
|
276 |
> |
if (storageLayout_ & dslFlucQVelocity) { |
277 |
> |
flucQVel.reserve(size); |
278 |
> |
} |
279 |
> |
|
280 |
> |
if (storageLayout_ & dslFlucQForce) { |
281 |
> |
flucQFrc.reserve(size); |
282 |
> |
} |
283 |
> |
} |
284 |
> |
|
285 |
> |
void DataStorage::copy(int source, int num, int target) { |
286 |
|
if (num + target > size_ ) { |
287 |
< |
//error |
287 |
> |
//error |
288 |
|
} |
289 |
|
|
290 |
|
if (storageLayout_ & dslPosition) { |
291 |
< |
interalCopy(position, source, num, target); |
291 |
> |
internalCopy(position, source, num, target); |
292 |
|
} |
293 |
|
|
294 |
|
if (storageLayout_ & dslVelocity) { |
295 |
< |
interalCopy(velocity, source, num, target); |
296 |
< |
} |
295 |
> |
internalCopy(velocity, source, num, target); |
296 |
> |
} |
297 |
|
|
298 |
|
if (storageLayout_ & dslAmat) { |
299 |
< |
interalCopy(aMat, source, num, target); |
300 |
< |
} |
299 |
> |
internalCopy(aMat, source, num, target); |
300 |
> |
} |
301 |
|
|
302 |
|
if (storageLayout_ & dslAngularMomentum) { |
303 |
< |
interalCopy(angularMomentum, source, num, target); |
303 |
> |
internalCopy(angularMomentum, source, num, target); |
304 |
|
} |
305 |
|
|
306 |
< |
if (storageLayout_ & dslUnitVector) { |
307 |
< |
interalCopy(unitVector, source, num, target); |
306 |
> |
if (storageLayout_ & dslElectroFrame) { |
307 |
> |
internalCopy(electroFrame, source, num, target); |
308 |
|
} |
309 |
|
|
189 |
– |
if (storageLayout_ & dslZAngle) { |
190 |
– |
interalCopy(zAngle, source, num, target); |
191 |
– |
} |
192 |
– |
|
310 |
|
if (storageLayout_ & dslForce) { |
311 |
< |
interalCopy(force, source, num, target); |
311 |
> |
internalCopy(force, source, num, target); |
312 |
|
} |
313 |
|
|
314 |
|
if (storageLayout_ & dslTorque) { |
315 |
< |
interalCopy(torque, source, num, target); |
315 |
> |
internalCopy(torque, source, num, target); |
316 |
|
} |
200 |
– |
|
317 |
|
|
318 |
< |
} |
318 |
> |
if (storageLayout_ & dslParticlePot) { |
319 |
> |
internalCopy(particlePot, source, num, target); |
320 |
> |
} |
321 |
|
|
322 |
< |
int DataStorage::getStorageLayout() { |
322 |
> |
if (storageLayout_ & dslDensity) { |
323 |
> |
internalCopy(density, source, num, target); |
324 |
> |
} |
325 |
> |
|
326 |
> |
if (storageLayout_ & dslFunctional) { |
327 |
> |
internalCopy(functional, source, num, target); |
328 |
> |
} |
329 |
> |
|
330 |
> |
if (storageLayout_ & dslFunctionalDerivative) { |
331 |
> |
internalCopy(functionalDerivative, source, num, target); |
332 |
> |
} |
333 |
> |
|
334 |
> |
if (storageLayout_ & dslElectricField) { |
335 |
> |
internalCopy(electricField, source, num, target); |
336 |
> |
} |
337 |
> |
|
338 |
> |
if (storageLayout_ & dslSkippedCharge) { |
339 |
> |
internalCopy(skippedCharge, source, num, target); |
340 |
> |
} |
341 |
> |
|
342 |
> |
if (storageLayout_ & dslFlucQPosition) { |
343 |
> |
internalCopy(flucQPos, source, num, target); |
344 |
> |
} |
345 |
> |
|
346 |
> |
if (storageLayout_ & dslFlucQVelocity) { |
347 |
> |
internalCopy(flucQVel, source, num, target); |
348 |
> |
} |
349 |
> |
if (storageLayout_ & dslFlucQForce) { |
350 |
> |
internalCopy(flucQFrc, source, num, target); |
351 |
> |
} |
352 |
> |
} |
353 |
> |
|
354 |
> |
int DataStorage::getStorageLayout() { |
355 |
|
return storageLayout_; |
356 |
< |
} |
356 |
> |
} |
357 |
|
|
358 |
< |
void DataStorage::setStorageLayout(int layout) { |
358 |
> |
void DataStorage::setStorageLayout(int layout) { |
359 |
|
storageLayout_ = layout; |
360 |
|
resize(size_); |
361 |
< |
} |
361 |
> |
} |
362 |
|
|
363 |
< |
double* DataStorage::getArrayPointer(int whichArray) { |
363 |
> |
RealType* DataStorage::getArrayPointer(int whichArray) { |
364 |
|
|
365 |
|
switch (whichArray) { |
366 |
< |
case dslPosition: |
367 |
< |
return internalGetArrayPointer(torque); |
218 |
< |
break; |
366 |
> |
case dslPosition: |
367 |
> |
return internalGetArrayPointer(position); |
368 |
|
|
369 |
< |
case dslVelocity: |
370 |
< |
return internalGetArrayPointer(velocity); |
222 |
< |
break; |
369 |
> |
case dslVelocity: |
370 |
> |
return internalGetArrayPointer(velocity); |
371 |
|
|
372 |
< |
case dslAmat: |
373 |
< |
return internalGetArrayPointer(aMat); |
226 |
< |
break; |
372 |
> |
case dslAmat: |
373 |
> |
return internalGetArrayPointer(aMat); |
374 |
|
|
375 |
< |
case dslAngularMomentum: |
376 |
< |
return internalGetArrayPointer(angularMomentum); |
230 |
< |
break; |
375 |
> |
case dslAngularMomentum: |
376 |
> |
return internalGetArrayPointer(angularMomentum); |
377 |
|
|
378 |
< |
case dslUnitVector: |
379 |
< |
return internalGetArrayPointer(unitVector); |
234 |
< |
break; |
378 |
> |
case dslElectroFrame: |
379 |
> |
return internalGetArrayPointer(electroFrame); |
380 |
|
|
381 |
< |
case dslZAngle: |
382 |
< |
return internalGetArrayPointer(zAngle); |
238 |
< |
break; |
381 |
> |
case dslForce: |
382 |
> |
return internalGetArrayPointer(force); |
383 |
|
|
384 |
< |
case dslForce: |
385 |
< |
return internalGetArrayPointer(force); |
242 |
< |
break; |
384 |
> |
case dslTorque: |
385 |
> |
return internalGetArrayPointer(torque); |
386 |
|
|
387 |
< |
case dslTorque: |
388 |
< |
return internalGetArrayPointer(torque); |
246 |
< |
break; |
247 |
< |
|
248 |
< |
default: |
249 |
< |
//error message |
250 |
< |
return NULL; |
387 |
> |
case dslParticlePot: |
388 |
> |
return internalGetArrayPointer(particlePot); |
389 |
|
|
390 |
+ |
case dslDensity: |
391 |
+ |
return internalGetArrayPointer(density); |
392 |
+ |
|
393 |
+ |
case dslFunctional: |
394 |
+ |
return internalGetArrayPointer(functional); |
395 |
+ |
|
396 |
+ |
case dslFunctionalDerivative: |
397 |
+ |
return internalGetArrayPointer(functionalDerivative); |
398 |
+ |
|
399 |
+ |
case dslElectricField: |
400 |
+ |
return internalGetArrayPointer(electricField); |
401 |
+ |
|
402 |
+ |
case dslSkippedCharge: |
403 |
+ |
return internalGetArrayPointer(skippedCharge); |
404 |
+ |
|
405 |
+ |
case dslFlucQPosition: |
406 |
+ |
return internalGetArrayPointer(flucQPos); |
407 |
+ |
|
408 |
+ |
case dslFlucQVelocity: |
409 |
+ |
return internalGetArrayPointer(flucQVel); |
410 |
+ |
|
411 |
+ |
case dslFlucQForce: |
412 |
+ |
return internalGetArrayPointer(flucQFrc); |
413 |
+ |
|
414 |
+ |
default: |
415 |
+ |
//error message |
416 |
+ |
return NULL; |
417 |
+ |
|
418 |
|
} |
419 |
< |
} |
419 |
> |
} |
420 |
|
|
421 |
< |
double* DataStorage::internalGetArrayPointer(std::vector<Vector3d>& v) { |
421 |
> |
RealType* DataStorage::internalGetArrayPointer(std::vector<Vector3d>& v) { |
422 |
|
if (v.size() == 0) { |
423 |
< |
return NULL; |
423 |
> |
return NULL; |
424 |
|
} else { |
425 |
< |
return v[0].getArrayPointer(); |
425 |
> |
return v[0].getArrayPointer(); |
426 |
|
} |
427 |
< |
} |
427 |
> |
} |
428 |
|
|
429 |
< |
double* DataStorage::internalGetArrayPointer(std::vector<RotMat3x3d>& v) { |
429 |
> |
RealType* DataStorage::internalGetArrayPointer(std::vector<RotMat3x3d>& v) { |
430 |
|
if (v.size() == 0) { |
431 |
< |
return NULL; |
431 |
> |
return NULL; |
432 |
|
} else { |
433 |
< |
return v[0].getArrayPointer(); |
433 |
> |
return v[0].getArrayPointer(); |
434 |
|
} |
435 |
|
|
436 |
< |
} |
436 |
> |
} |
437 |
|
|
438 |
< |
double* DataStorage::internalGetArrayPointer(std::vector<double>& v) { |
438 |
> |
RealType* DataStorage::internalGetArrayPointer(std::vector<RealType>& v) { |
439 |
|
if (v.size() == 0) { |
440 |
< |
return NULL; |
440 |
> |
return NULL; |
441 |
|
} else { |
442 |
< |
return &(v[0]); |
442 |
> |
return &(v[0]); |
443 |
|
} |
444 |
|
|
445 |
< |
} |
445 |
> |
} |
446 |
|
|
447 |
< |
template<typename T> |
448 |
< |
void DataStorage::internalResize(std::vector<T>& v, int newSize){ |
447 |
> |
template<typename T> |
448 |
> |
void DataStorage::internalResize(std::vector<T>& v, int newSize){ |
449 |
|
int oldSize = v.size(); |
450 |
|
|
451 |
|
if (oldSize == newSize) { |
452 |
< |
return; |
452 |
> |
return; |
453 |
|
} else if (oldSize < newSize) { |
454 |
< |
v.insert(v.end(), newSize-oldSize, T()); |
454 |
> |
v.insert(v.end(), newSize-oldSize, T()); |
455 |
|
} else { |
456 |
< |
typename std::vector<T>::iterator i; |
457 |
< |
i = v.begin(); |
458 |
< |
std::advance(i, newSize); |
459 |
< |
v.erase(i, v.end()); |
456 |
> |
typename std::vector<T>::iterator i; |
457 |
> |
i = v.begin(); |
458 |
> |
std::advance(i, newSize); |
459 |
> |
v.erase(i, v.end()); |
460 |
|
} |
461 |
< |
} |
461 |
> |
} |
462 |
|
|
463 |
< |
template<typename T> |
464 |
< |
void DataStorage::interalCopy(std::vector<T>& v, int source, int num, int target) { |
463 |
> |
template<typename T> |
464 |
> |
void DataStorage::internalCopy(std::vector<T>& v, int source, int num, int target) { |
465 |
|
typename std::vector<T>::iterator first; |
466 |
|
typename std::vector<T>::iterator last; |
467 |
|
typename std::vector<T>::iterator result; |
476 |
|
std::advance(result, target ); |
477 |
|
|
478 |
|
std::copy(first, last, result); |
479 |
+ |
} |
480 |
+ |
|
481 |
+ |
int DataStorage::getBytesPerStuntDouble(int layout) { |
482 |
+ |
int bytes = 0; |
483 |
+ |
if (layout & dslPosition) { |
484 |
+ |
bytes += sizeof(Vector3d); |
485 |
+ |
} |
486 |
+ |
if (layout & dslVelocity) { |
487 |
+ |
bytes += sizeof(Vector3d); |
488 |
+ |
} |
489 |
+ |
if (layout & dslAmat) { |
490 |
+ |
bytes += sizeof(RotMat3x3d); |
491 |
+ |
} |
492 |
+ |
if (layout & dslAngularMomentum) { |
493 |
+ |
bytes += sizeof(Vector3d); |
494 |
+ |
} |
495 |
+ |
if (layout & dslElectroFrame) { |
496 |
+ |
bytes += sizeof(Mat3x3d); |
497 |
+ |
} |
498 |
+ |
if (layout & dslForce) { |
499 |
+ |
bytes += sizeof(Vector3d); |
500 |
+ |
} |
501 |
+ |
if (layout & dslTorque) { |
502 |
+ |
bytes += sizeof(Vector3d); |
503 |
+ |
} |
504 |
+ |
if (layout & dslParticlePot) { |
505 |
+ |
bytes += sizeof(RealType); |
506 |
+ |
} |
507 |
+ |
if (layout & dslDensity) { |
508 |
+ |
bytes += sizeof(RealType); |
509 |
+ |
} |
510 |
+ |
if (layout & dslFunctional) { |
511 |
+ |
bytes += sizeof(RealType); |
512 |
+ |
} |
513 |
+ |
if (layout & dslFunctionalDerivative) { |
514 |
+ |
bytes += sizeof(RealType); |
515 |
+ |
} |
516 |
+ |
if (layout & dslElectricField) { |
517 |
+ |
bytes += sizeof(Vector3d); |
518 |
+ |
} |
519 |
+ |
if (layout & dslSkippedCharge) { |
520 |
+ |
bytes += sizeof(RealType); |
521 |
+ |
} |
522 |
+ |
if (layout & dslFlucQPosition) { |
523 |
+ |
bytes += sizeof(RealType); |
524 |
+ |
} |
525 |
+ |
if (layout & dslFlucQVelocity) { |
526 |
+ |
bytes += sizeof(RealType); |
527 |
+ |
} |
528 |
+ |
if (layout & dslFlucQForce) { |
529 |
+ |
bytes += sizeof(RealType); |
530 |
+ |
} |
531 |
+ |
|
532 |
+ |
return bytes; |
533 |
+ |
} |
534 |
+ |
|
535 |
|
} |