| [de061d] | 1 | /*
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 | 2 |  *    vmg - a versatile multigrid solver
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 | 3 |  *    Copyright (C) 2012 Institute for Numerical Simulation, University of Bonn
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 | 4 |  *
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 | 5 |  *  vmg is free software: you can redistribute it and/or modify
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 | 6 |  *  it under the terms of the GNU General Public License as published by
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 | 7 |  *  the Free Software Foundation, either version 3 of the License, or
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 | 8 |  *  (at your option) any later version.
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 | 9 |  *
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 | 10 |  *  vmg is distributed in the hope that it will be useful,
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 | 11 |  *  but WITHOUT ANY WARRANTY; without even the implied warranty of
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 | 12 |  *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 | 13 |  *  GNU General Public License for more details.
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 | 14 |  *
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 | 15 |  *  You should have received a copy of the GNU General Public License
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 | 16 |  *  along with this program.  If not, see <http://www.gnu.org/licenses/>.
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 | 17 |  */
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 | 18 | 
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 | 19 | /**
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 | 20 |  * @file   grid.cpp
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 | 21 |  * @author Julian Iseringhausen <isering@ins.uni-bonn.de>
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 | 22 |  * @date   Mon Apr 18 12:53:27 2011
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 | 23 |  *
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 | 24 |  * @brief  VMG::Grid
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 | 25 |  *
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 | 26 |  */
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 | 27 | 
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 | 28 | #ifdef HAVE_CONFIG_H
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 | 29 | #include <libvmg_config.h>
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 | 30 | #endif
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 | 31 | 
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 | 32 | #include <cstdio>
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 | 33 | #include <cmath>
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 | 34 | #include <limits>
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 | 35 | 
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 | 36 | #include "base/helper.hpp"
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 | 37 | #include "base/stencil.hpp"
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 | 38 | #include "comm/comm.hpp"
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 | 39 | #include "grid/grid.hpp"
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 | 40 | #include "grid/tempgrid.hpp"
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 | 41 | #include "mg.hpp"
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 | 42 | 
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 | 43 | using namespace VMG;
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 | 44 | 
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 | 45 | void Grid::InitGrid()
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 | 46 | {
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 | 47 |   grid = new vmg_float[local.SizeTotal().Product()];
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 | 48 | }
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 | 49 | 
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 | 50 | Grid::~Grid()
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 | 51 | {
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 | 52 |   delete [] grid;
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 | 53 | }
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 | 54 | 
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 | 55 | Grid& Grid::operator=(const Grid& rhs)
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 | 56 | {
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 | 57 |   if (this != &rhs) {
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 | 58 | 
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 | 59 |     global = rhs.Global();
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 | 60 |     local = rhs.Local();
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 | 61 |     extent = rhs.Extent();
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 | 62 |     iterators = rhs.Iterators();
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 | 63 |     father = rhs.Father();
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 | 64 |     level = rhs.Level();
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 | 65 | 
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 | 66 |     delete [] grid;
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 | 67 |     grid = new vmg_float[local.SizeTotal().Product()];
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 | 68 | 
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 | 69 |     SetGrid(rhs);
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 | 70 | 
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 | 71 |   }
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 | 72 | 
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 | 73 |   return *this;
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 | 74 | }
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 | 75 | 
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 | 76 | void Grid::Clear()
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 | 77 | {
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 | 78 |   for (int i=0; i<local.SizeTotal().Product(); ++i)
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 | 79 |     grid[i] = 0.0;
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 | 80 | }
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 | 81 | 
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 | 82 | void Grid::ClearInner()
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 | 83 | {
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 | 84 |   for (Grid::iterator iter=Iterators().Local().Begin(); iter!=Iterators().Local().End(); ++iter)
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 | 85 |     (*this)(*iter) = 0.0;
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 | 86 | }
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 | 87 | 
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 | 88 | void Grid::ClearHalo()
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 | 89 | {
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 | 90 |   Grid::iterator iter;
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 | 91 | 
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 | 92 |   for (int i=0; i<3; ++i) {
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 | 93 | 
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 | 94 |     for (iter = Iterators().Halo1()[i].Begin(); iter != Iterators().Halo1()[i].End(); ++iter)
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 | 95 |       (*this)(*iter) = 0.0;
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 | 96 | 
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 | 97 |     for (iter = Iterators().Halo2()[i].Begin(); iter != Iterators().Halo2()[i].End(); ++iter)
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 | 98 |       (*this)(*iter) = 0.0;
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 | 99 | 
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 | 100 |   }
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 | 101 | 
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 | 102 | }
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 | 103 | 
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 | 104 | void Grid::ClearBoundary()
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 | 105 | {
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 | 106 |   Grid::iterator iter;
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 | 107 | 
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 | 108 |   for (int i=0; i<3; ++i) {
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 | 109 | 
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 | 110 |     for (iter = Iterators().Boundary1()[i].Begin(); iter != Iterators().Boundary1()[i].End(); ++iter)
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 | 111 |       (*this)(*iter) = 0.0;
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 | 112 | 
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 | 113 |     for (iter = Iterators().Boundary2()[i].Begin(); iter != Iterators().Boundary2()[i].End(); ++iter)
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 | 114 |       (*this)(*iter) = 0.0;
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 | 115 | 
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 | 116 |   }
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 | 117 | 
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 | 118 | }
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 | 119 | 
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 | 120 | void Grid::SetAverageToZero()
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 | 121 | {
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 | 122 |   Grid::iterator iter;
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 | 123 |   vmg_float avg = 0.0;
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 | 124 | 
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 | 125 |   for (iter = Iterators().Local().Begin(); iter != Iterators().Local().End(); ++iter)
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 | 126 |     avg += GetVal(*iter);
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 | 127 | 
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 | 128 |   avg = MG::GetComm()->GlobalSum(avg) / Global().GlobalSize().Product();
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 | 129 | 
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 | 130 |   MG::GetComm()->PrintOnce(Info, "Global constraint enforcement: %e", avg);
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 | 131 | 
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 | 132 |   if (std::abs(avg) > std::numeric_limits<vmg_float>::epsilon())
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 | 133 |     for (iter = Iterators().Local().Begin(); iter != Iterators().Local().End(); ++iter)
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 | 134 |       (*this)(*iter) -= avg;
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 | 135 | }
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 | 136 | 
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 | 137 | void Grid::ForceDiscreteCompatibilityCondition()
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 | 138 | {
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 | 139 |   Grid::iterator iter;
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 | 140 |   vmg_float val = 0.0;
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 | 141 | 
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 | 142 |   for (iter = Iterators().Local().Begin(); iter != Iterators().Local().End(); ++iter)
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 | 143 |     val += GetVal(*iter);
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 | 144 | 
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 | 145 |   val = MG::GetComm()->GlobalSum(val) / Global().GlobalSize().Product();
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 | 146 | 
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 | 147 |   if (std::abs(val) > std::numeric_limits<vmg_float>::epsilon()) {
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 | 148 | 
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 | 149 |     MG::GetComm()->PrintOnce(Info, "Right hand side does not satisfy the compatibility condition. Trying to enforce.");
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 | 150 | 
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 | 151 |     for (iter = Iterators().Local().Begin(); iter != Iterators().Local().End(); ++iter)
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 | 152 |       (*this)(*iter) -= val;
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 | 153 | 
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 | 154 | #ifdef OUPUT_DEBUG
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 | 155 |     val = 0.0;
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 | 156 |     for (iter = Iterators().Local().Begin(); iter != Iterators().Local().End(); ++iter)
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 | 157 |       val += GetVal(*iter);
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 | 158 |     val = MG::GetComm()->GlobalSumRoot(val);
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 | 159 |     MG::GetComm()->PrintOnce(Debug, "Sum of grid charges after forcing the discrete compatibility condition: %e", val);
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 | 160 | #endif
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 | 161 |   }
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 | 162 | }
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 | 163 | 
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 | 164 | void Grid::SetGrid(const Grid& rhs)
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 | 165 | {
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 | 166 | #ifdef DEBUG
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 | 167 |   IsCompatible(rhs);
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 | 168 | #endif
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 | 169 | 
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 | 170 |   std::memcpy(grid, rhs.grid, local.SizeTotal().Product()*sizeof(vmg_float));
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 | 171 | }
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 | 172 | 
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 | 173 | void Grid::SetBoundary(const Grid& rhs)
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 | 174 | {
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 | 175 | #ifdef DEBUG
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 | 176 |   IsCompatible(rhs);
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 | 177 | #endif
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 | 178 |   Grid::iterator iter;
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 | 179 | 
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 | 180 |   for (int i=0; i<3; ++i) {
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 | 181 | 
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 | 182 |     for (iter = Iterators().Boundary1()[i].Begin(); iter != Iterators().Boundary1()[i].End(); ++iter)
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 | 183 |       (*this)(*iter) = rhs.GetVal(*iter);
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 | 184 | 
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 | 185 |     for (iter = Iterators().Boundary2()[i].Begin(); iter != Iterators().Boundary2()[i].End(); ++iter)
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 | 186 |       (*this)(*iter) = rhs.GetVal(*iter);
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 | 187 | 
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 | 188 |   }
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 | 189 | }
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 | 190 | 
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 | 191 | void Grid::AddGrid(const Grid& rhs)
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 | 192 | {
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 | 193 | #ifdef DEBUG_MATRIX_CHECKS
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 | 194 |   IsCompatible(rhs);
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 | 195 | #endif
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 | 196 | 
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 | 197 |   for (Grid::iterator iter = Iterators().CompleteGrid().Begin(); iter != Iterators().CompleteGrid().End(); ++iter)
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 | 198 |     (*this)(*iter) += rhs.GetVal(*iter);
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 | 199 | }
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 | 200 | 
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 | 201 | void Grid::SubtractGrid(const Grid& rhs)
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 | 202 | {
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 | 203 | #ifdef DEBUG_MATRIX_CHECKS
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 | 204 |   IsCompatible(rhs);
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 | 205 | #endif
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 | 206 | 
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 | 207 |   for (Grid::iterator iter = Iterators().CompleteGrid().Begin(); iter != Iterators().CompleteGrid().End(); ++iter)
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 | 208 |     (*this)(*iter) -= rhs.GetVal(*iter);
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 | 209 | }
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 | 210 | 
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 | 211 | void Grid::MultiplyScalar(const vmg_float& scalar)
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 | 212 | {
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 | 213 |   for (Grid::iterator iter = Iterators().CompleteGrid().Begin(); iter != Iterators().CompleteGrid().End(); ++iter)
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 | 214 |     (*this)(*iter) *= scalar;
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 | 215 | }
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 | 216 | 
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 | 217 | void Grid::ApplyStencil(const Stencil& stencil)
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 | 218 | {
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 | 219 |   Grid::iterator grid_iter;
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 | 220 |   Stencil::iterator stencil_iter;
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 | 221 |   TempGrid *temp = MG::GetTempGrid();
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 | 222 | 
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 | 223 |   temp->SetProperties(*this);
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 | 224 |   temp->SetGrid(*this);
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 | 225 |   MG::GetComm()->CommToGhosts(*temp);
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 | 226 | 
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 | 227 |   for (grid_iter = Iterators().Local().Begin(); grid_iter != Iterators().Local().End(); ++grid_iter) {
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 | 228 | 
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 | 229 |         (*this)(*grid_iter) = stencil.GetDiag() * temp->GetVal(*grid_iter);
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 | 230 | 
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 | 231 |         for (stencil_iter=stencil.begin(); stencil_iter!=stencil.end(); ++stencil_iter)
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 | 232 |           (*this)(*grid_iter) += stencil_iter->Val() * temp->GetVal(*grid_iter + stencil_iter->Disp());
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 | 233 |       }
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 | 234 | }
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 | 235 | 
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 | 236 | bool Grid::IsCompatible(const Grid& rhs) const
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 | 237 | {
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 | 238 |   bool eq = true;
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 | 239 | 
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 | 240 |   eq &= Helper::IsEq(Local().Begin(), rhs.Local().Begin(), "Local().Begin");
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 | 241 |   eq &= Helper::IsEq(Local().End(), rhs.Local().End(), "Local().End");
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 | 242 |   eq &= Helper::IsEq(Local().Size(), rhs.Local().Size(), "Local().Size");
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 | 243 |   eq &= Helper::IsEq(Local().SizeTotal(), rhs.Local().SizeTotal(), "Local().SizeTotal");
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 | 244 | 
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 | 245 |   eq &= Helper::IsEq(Global().LocalBegin(), rhs.Global().LocalBegin(), "Global().LocalBegin");
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 | 246 |   eq &= Helper::IsEq(Global().LocalEnd(), rhs.Global().LocalEnd(), "Global().LocalEnd");
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 | 247 |   eq &= Helper::IsEq(Global().LocalSize(), rhs.Global().LocalSize(), "Global().LocalSize");
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 | 248 |   eq &= Helper::IsEq(Global().GlobalSizeFinest(), rhs.Global().GlobalSizeFinest(), "Global().GlobalSizeFinest");
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 | 249 | 
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 | 250 | 
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 | 251 |   eq &= Helper::IsEq(Local().HaloBegin1(), rhs.Local().HaloBegin1(), "Local().HaloBegin1");
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 | 252 |   eq &= Helper::IsEq(Local().HaloBegin2(), rhs.Local().HaloBegin2(), "Local().HaloBegin2");
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 | 253 |   eq &= Helper::IsEq(Local().HaloEnd1(), rhs.Local().HaloEnd1(), "Local().HaloEnd1");
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 | 254 |   eq &= Helper::IsEq(Local().HaloEnd2(), rhs.Local().HaloEnd2(), "Local().HaloEnd2");
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 | 255 | 
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 | 256 |   eq &= Helper::IsEq(Extent().MeshWidth(), rhs.Extent().MeshWidth(), "MeshWidth");
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 | 257 | 
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 | 258 |   return eq;
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 | 259 | }
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 | 260 | 
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 | 261 | bool Grid::IsConsistent() const
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 | 262 | {
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 | 263 |   bool consistent = true;
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 | 264 | 
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 | 265 |   for (Grid::iterator iter=Iterators().Local().Begin(); iter!=Iterators().Local().End(); ++iter)
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 | 266 |     consistent &= Helper::CheckNumber(GetVal(*iter));
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 | 267 | 
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 | 268 |   return consistent;
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 | 269 | }
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 | 270 | 
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 | 271 | Vector Grid::GetSpatialPos(const Index& index_local) const
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 | 272 | {
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 | 273 |   return Extent().Begin() + Extent().MeshWidth() * (index_local - Local().HaloSize1() + Global().LocalBegin() - Global().GlobalBegin());
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 | 274 | }
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 | 275 | 
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 | 276 | Vector Grid::GetSpatialPosGlobal(const Index& index_global) const
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 | 277 | {
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 | 278 |   return Extent().Begin() + Extent().MeshWidth() * (index_global - Global().GlobalBegin());
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 | 279 | }
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 | 280 | 
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 | 281 | 
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 | 282 | Index Grid::GetGlobalIndex(const Vector& pos) const
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 | 283 | {
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 | 284 |   const Index index = (pos - Extent().Begin()) / Extent().MeshWidth() + 0.5;
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 | 285 |   return index + (Global().BoundaryType() == LocallyRefined ? 1 : 0);
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 | 286 | }
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 | 287 | 
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