| 1 | /*
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| 2 | * Project: MoleCuilder
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| 3 | * Description: creates and alters molecular systems
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| 4 | * Copyright (C) 2010-2012 University of Bonn. All rights reserved.
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| 5 | *
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| 6 | *
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| 7 | * This file is part of MoleCuilder.
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| 8 | *
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| 9 | * MoleCuilder is free software: you can redistribute it and/or modify
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| 10 | * it under the terms of the GNU General Public License as published by
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| 11 | * the Free Software Foundation, either version 2 of the License, or
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| 12 | * (at your option) any later version.
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| 13 | *
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| 14 | * MoleCuilder is distributed in the hope that it will be useful,
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| 15 | * but WITHOUT ANY WARRANTY; without even the implied warranty of
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| 16 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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| 17 | * GNU General Public License for more details.
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| 18 | *
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| 19 | * You should have received a copy of the GNU General Public License
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| 20 | * along with MoleCuilder. If not, see <http://www.gnu.org/licenses/>.
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| 21 | */
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| 22 |
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| 23 | /*
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| 24 | * Shape.cpp
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| 25 | *
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| 26 | * Created on: Jun 18, 2010
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| 27 | * Author: crueger
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| 28 | */
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| 29 |
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| 30 | // include config.h
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| 31 | #ifdef HAVE_CONFIG_H
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| 32 | #include <config.h>
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| 33 | #endif
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| 34 |
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| 35 | #include "CodePatterns/MemDebug.hpp"
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| 36 |
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| 37 | #include "CodePatterns/Assert.hpp"
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| 38 | #include "LinearAlgebra/Vector.hpp"
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| 39 |
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| 40 | #include "Shapes/Shape.hpp"
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| 41 | #include "Shapes/Shape_impl.hpp"
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| 42 | #include "Shapes/ShapeExceptions.hpp"
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| 43 | #include "Shapes/ShapeType.hpp"
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| 44 |
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| 45 | #include "Tesselation/ApproximateShapeArea.hpp"
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| 46 | #include "Tesselation/ApproximateShapeVolume.hpp"
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| 47 |
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| 48 | #include <algorithm>
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| 49 | #include <limits>
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| 50 | #include <string>
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| 51 |
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| 52 |
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| 53 | Shape::Shape(const Shape& src) :
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| 54 | impl(src.getImpl())
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| 55 | {}
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| 56 |
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| 57 | Shape::~Shape(){}
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| 58 |
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| 59 | bool Shape::isInside(const Vector &point) const{
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| 60 | return impl->isInside(point);
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| 61 | }
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| 62 |
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| 63 | bool Shape::isOnSurface(const Vector &point) const{
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| 64 | return impl->isOnSurface(point);
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| 65 | }
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| 66 |
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| 67 | Vector Shape::getNormal(const Vector &point) const throw (NotOnSurfaceException){
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| 68 | return impl->getNormal(point);
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| 69 | }
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| 70 |
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| 71 | Vector Shape::getCenter() const{
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| 72 | return impl->getCenter();
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| 73 | }
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| 74 |
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| 75 | double Shape::getRadius() const{
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| 76 | return impl->getRadius();
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| 77 | }
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| 78 |
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| 79 | /** Returns the volume of the Shape.
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| 80 | *
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| 81 | * If the underlying implementation does not have a working implementation,
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| 82 | * i.e. returns -1., then we use an approximate method to calculate the
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| 83 | * volume via a mesh of grid points and checking for isInside (basically
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| 84 | * a Monte-Carlo integration of the volume).
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| 85 | *
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| 86 | * \return volume of the shape
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| 87 | */
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| 88 | double Shape::getVolume() const
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| 89 | {
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| 90 | const double volume = impl->getVolume();
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| 91 | if (volume != -1.) {
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| 92 | return volume;
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| 93 | } else {
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| 94 | ApproximateShapeVolume Approximator(*this);
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| 95 | return Approximator();
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| 96 | }
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| 97 | }
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| 98 |
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| 99 | /** Returns the surface area of the Shape.
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| 100 | *
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| 101 | * If the underlying implementation does not have a working implementation,
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| 102 | * i.e. returns -1., then we use the working filling of the shapes surface
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| 103 | * with points and subsequent tesselation and obtaining the approximate
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| 104 | * surface area therefrom.
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| 105 | *
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| 106 | * @return surface area of the Shape
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| 107 | */
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| 108 | double Shape::getSurfaceArea() const
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| 109 | {
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| 110 | const double surfacearea = impl->getSurfaceArea();
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| 111 | if (surfacearea != -1.) {
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| 112 | return surfacearea;
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| 113 | } else {
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| 114 | ApproximateShapeArea Approximator(*this);
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| 115 | return Approximator();
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| 116 | }
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| 117 | }
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| 118 |
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| 119 | LineSegmentSet Shape::getLineIntersections(const Line &line) const{
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| 120 | return impl->getLineIntersections(line);
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| 121 | }
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| 122 |
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| 123 | std::vector<Vector> Shape::getHomogeneousPointsOnSurface(const size_t N) const {
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| 124 | return impl->getHomogeneousPointsOnSurface(N);
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| 125 | }
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| 126 |
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| 127 | std::vector<Vector> Shape::getHomogeneousPointsInVolume(const size_t N) const {
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| 128 | return impl->getHomogeneousPointsInVolume(N);
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| 129 | }
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| 130 |
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| 131 | Shape::Shape(Shape::impl_ptr _impl) :
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| 132 | impl(_impl)
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| 133 | {}
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| 134 |
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| 135 | Shape &Shape::operator=(const Shape& rhs){
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| 136 | if(&rhs!=this){
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| 137 | impl=rhs.getImpl();
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| 138 | }
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| 139 | return *this;
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| 140 | }
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| 141 |
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| 142 | bool Shape::operator==(const Shape &rhs) const{
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| 143 | return (this->getType() == rhs.getType());
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| 144 | }
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| 145 |
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| 146 | std::string Shape::toString() const{
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| 147 | return impl->toString();
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| 148 | }
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| 149 |
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| 150 | enum ShapeType Shape::getType() const{
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| 151 | return impl->getType();
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| 152 | }
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| 153 |
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| 154 | Shape::impl_ptr Shape::getImpl() const{
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| 155 | return impl;
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| 156 | }
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| 157 |
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| 158 | // allows arbitrary friendship, but only if implementation is known
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| 159 | Shape::impl_ptr getShapeImpl(const Shape &shape){
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| 160 | return shape.getImpl();
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| 161 | }
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| 162 |
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| 163 | /***************************** Some simple Shapes ***************************/
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| 164 |
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| 165 | Shape Everywhere(){
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| 166 | static Shape::impl_ptr impl = Shape::impl_ptr(new Everywhere_impl());
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| 167 | return Shape(impl);
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| 168 | }
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| 169 |
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| 170 | Shape Nowhere(){
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| 171 | static Shape::impl_ptr impl = Shape::impl_ptr(new Nowhere_impl());
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| 172 | return Shape(impl);
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| 173 | }
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| 174 |
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| 175 | /****************************** Operators ***********************************/
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| 176 |
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| 177 | // AND
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| 178 |
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| 179 | AndShape_impl::AndShape_impl(const Shape::impl_ptr &_lhs, const Shape::impl_ptr &_rhs) :
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| 180 | lhs(_lhs),rhs(_rhs)
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| 181 | {}
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| 182 |
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| 183 | AndShape_impl::~AndShape_impl(){}
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| 184 |
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| 185 | bool AndShape_impl::isInside(const Vector &point) const{
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| 186 | return lhs->isInside(point) && rhs->isInside(point);
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| 187 | }
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| 188 |
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| 189 | bool AndShape_impl::isOnSurface(const Vector &point) const{
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| 190 | // check the number of surfaces that this point is on
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| 191 | int surfaces =0;
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| 192 | surfaces += lhs->isOnSurface(point);
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| 193 | surfaces += rhs->isOnSurface(point);
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| 194 |
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| 195 | switch(surfaces){
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| 196 | case 0:
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| 197 | return false;
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| 198 | // no break necessary
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| 199 | case 1:
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| 200 | // if it is inside for the object where it does not lie on
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| 201 | // the surface the whole point lies inside
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| 202 | return (lhs->isOnSurface(point) && rhs->isInside(point)) ||
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| 203 | (rhs->isOnSurface(point) && lhs->isInside(point));
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| 204 | // no break necessary
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| 205 | case 2:
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| 206 | {
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| 207 | // it lies on both Shapes... could be an edge or an inner point
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| 208 | // test the direction of the normals
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| 209 | Vector direction=lhs->getNormal(point)+rhs->getNormal(point);
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| 210 | // if the directions are opposite we lie on the inside
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| 211 | return !direction.IsZero();
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| 212 | }
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| 213 | // no break necessary
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| 214 | default:
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| 215 | // if this happens there is something wrong
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| 216 | ASSERT(0,"Default case should have never been used");
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| 217 | }
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| 218 | return false; // never reached
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| 219 | }
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| 220 |
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| 221 | Vector AndShape_impl::getNormal(const Vector &point) const throw (NotOnSurfaceException){
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| 222 | Vector res;
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| 223 | if(!isOnSurface(point)){
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| 224 | throw NotOnSurfaceException() << ShapeVector(&point);
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| 225 | }
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| 226 | res += lhs->isOnSurface(point)?lhs->getNormal(point):zeroVec;
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| 227 | res += rhs->isOnSurface(point)?rhs->getNormal(point):zeroVec;
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| 228 | res.Normalize();
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| 229 | return res;
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| 230 | }
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| 231 |
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| 232 | Vector AndShape_impl::getCenter() const
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| 233 | {
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| 234 | // calculate closest position on sphere surface to other center ..
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| 235 | const Vector rhsDistance = rhs->getCenter() + rhs->getRadius()*((lhs->getCenter() - rhs->getCenter()).getNormalized());
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| 236 | const Vector lhsDistance = lhs->getCenter() + lhs->getRadius()*((rhs->getCenter() - lhs->getCenter()).getNormalized());
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| 237 | // .. and then it's right in between those two
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| 238 | return 0.5*(rhsDistance + lhsDistance);
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| 239 | }
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| 240 |
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| 241 | double AndShape_impl::getRadius() const
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| 242 | {
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| 243 | const double distance = (lhs->getCenter() - rhs->getCenter()).Norm();
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| 244 | const double minradii = std::min(lhs->getRadius(), rhs->getRadius());
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| 245 | // if no intersection
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| 246 | if (distance > (lhs->getRadius() + rhs->getRadius()))
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| 247 | return 0.;
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| 248 | else // if intersection it can only be the smaller one
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| 249 | return minradii;
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| 250 | }
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| 251 |
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| 252 | double AndShape_impl::getVolume() const
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| 253 | {
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| 254 | // TODO
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| 255 | return -1.;
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| 256 | }
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| 257 |
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| 258 | double AndShape_impl::getSurfaceArea() const
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| 259 | {
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| 260 | // TODO
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| 261 | return -1.;
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| 262 | }
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| 263 |
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| 264 | LineSegmentSet AndShape_impl::getLineIntersections(const Line &line) const{
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| 265 | return intersect(lhs->getLineIntersections(line),rhs->getLineIntersections(line));
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| 266 | }
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| 267 |
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| 268 | std::string AndShape_impl::toString() const{
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| 269 | return std::string("(") + lhs->toString() + std::string("&&") + rhs->toString() + std::string(")");
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| 270 | }
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| 271 |
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| 272 | enum ShapeType AndShape_impl::getType() const{
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| 273 | return CombinedType;
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| 274 | }
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| 275 |
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| 276 | std::vector<Vector> AndShape_impl::getHomogeneousPointsOnSurface(const size_t N) const {
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| 277 | std::vector<Vector> PointsOnSurface_lhs = lhs->getHomogeneousPointsOnSurface(N);
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| 278 | std::vector<Vector> PointsOnSurface_rhs = rhs->getHomogeneousPointsOnSurface(N);
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| 279 | std::vector<Vector> PointsOnSurface;
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| 280 |
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| 281 | for (std::vector<Vector>::const_iterator iter = PointsOnSurface_lhs.begin(); iter != PointsOnSurface_lhs.end(); ++iter) {
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| 282 | if (rhs->isInside(*iter))
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| 283 | PointsOnSurface.push_back(*iter);
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| 284 | }
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| 285 | for (std::vector<Vector>::const_iterator iter = PointsOnSurface_rhs.begin(); iter != PointsOnSurface_rhs.end(); ++iter) {
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| 286 | if (lhs->isInside(*iter))
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| 287 | PointsOnSurface.push_back(*iter);
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| 288 | }
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| 289 |
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| 290 | return PointsOnSurface;
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| 291 | }
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| 292 |
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| 293 | std::vector<Vector> AndShape_impl::getHomogeneousPointsInVolume(const size_t N) const {
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| 294 | ASSERT(0,
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| 295 | "AndShape_impl::getHomogeneousPointsInVolume() - not implemented.");
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| 296 | return std::vector<Vector>();
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| 297 | }
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| 298 |
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| 299 |
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| 300 | Shape operator&&(const Shape &lhs,const Shape &rhs){
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| 301 | Shape::impl_ptr newImpl = Shape::impl_ptr(new AndShape_impl(getShapeImpl(lhs),getShapeImpl(rhs)));
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| 302 | return Shape(newImpl);
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| 303 | }
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| 304 |
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| 305 | // OR
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| 306 |
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| 307 | OrShape_impl::OrShape_impl(const Shape::impl_ptr &_lhs, const Shape::impl_ptr &_rhs) :
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| 308 | lhs(_lhs),rhs(_rhs)
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| 309 | {}
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| 310 |
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| 311 | OrShape_impl::~OrShape_impl(){}
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| 312 |
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| 313 | bool OrShape_impl::isInside(const Vector &point) const{
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| 314 | return rhs->isInside(point) || lhs->isInside(point);
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| 315 | }
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| 316 |
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| 317 | bool OrShape_impl::isOnSurface(const Vector &point) const{
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| 318 | // check the number of surfaces that this point is on
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| 319 | int surfaces =0;
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| 320 | surfaces += lhs->isOnSurface(point);
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| 321 | surfaces += rhs->isOnSurface(point);
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| 322 |
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| 323 | switch(surfaces){
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| 324 | case 0:
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| 325 | return false;
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| 326 | // no break necessary
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| 327 | case 1:
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| 328 | // if it is inside for the object where it does not lie on
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| 329 | // the surface the whole point lies inside
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| 330 | return (lhs->isOnSurface(point) && !rhs->isInside(point)) ||
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| 331 | (rhs->isOnSurface(point) && !lhs->isInside(point));
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| 332 | // no break necessary
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| 333 | case 2:
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| 334 | {
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| 335 | // it lies on both Shapes... could be an edge or an inner point
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| 336 | // test the direction of the normals
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| 337 | Vector direction=lhs->getNormal(point)+rhs->getNormal(point);
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| 338 | // if the directions are opposite we lie on the inside
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| 339 | return !direction.IsZero();
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| 340 | }
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| 341 | // no break necessary
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| 342 | default:
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| 343 | // if this happens there is something wrong
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| 344 | ASSERT(0,"Default case should have never been used");
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| 345 | }
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| 346 | return false; // never reached
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| 347 | }
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| 348 |
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| 349 | Vector OrShape_impl::getNormal(const Vector &point) const throw (NotOnSurfaceException){
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| 350 | Vector res;
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| 351 | if(!isOnSurface(point)){
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| 352 | throw NotOnSurfaceException() << ShapeVector(&point);
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| 353 | }
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| 354 | res += lhs->isOnSurface(point)?lhs->getNormal(point):zeroVec;
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| 355 | res += rhs->isOnSurface(point)?rhs->getNormal(point):zeroVec;
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| 356 | res.Normalize();
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| 357 | return res;
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| 358 | }
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| 359 |
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| 360 | Vector OrShape_impl::getCenter() const
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| 361 | {
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| 362 | // calculate furthest position on sphere surface to other center ..
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| 363 | const Vector rhsDistance = rhs->getCenter() + rhs->getRadius()*((rhs->getCenter() - lhs->getCenter()).getNormalized());
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| 364 | const Vector lhsDistance = lhs->getCenter() + lhs->getRadius()*((lhs->getCenter() - rhs->getCenter()).getNormalized());
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| 365 | // .. and then it's right in between those two
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| 366 | return .5*(rhsDistance + lhsDistance);
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| 367 | }
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| 368 |
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| 369 | double OrShape_impl::getRadius() const
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| 370 | {
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| 371 | const Vector rhsDistance = rhs->getCenter() + rhs->getRadius()*((rhs->getCenter() - lhs->getCenter()).getNormalized());
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| 372 | const Vector lhsDistance = lhs->getCenter() + lhs->getRadius()*((lhs->getCenter() - rhs->getCenter()).getNormalized());
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| 373 | return .5*(rhsDistance - lhsDistance).Norm();
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| 374 | }
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| 375 |
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| 376 | double OrShape_impl::getVolume() const
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| 377 | {
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| 378 | // TODO
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| 379 | return -1.;
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| 380 | }
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| 381 |
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| 382 | double OrShape_impl::getSurfaceArea() const
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| 383 | {
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| 384 | // TODO
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| 385 | return -1.;
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| 386 | }
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| 387 |
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| 388 | LineSegmentSet OrShape_impl::getLineIntersections(const Line &line) const{
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| 389 | return merge(lhs->getLineIntersections(line),rhs->getLineIntersections(line));
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| 390 | }
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| 391 |
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| 392 | std::string OrShape_impl::toString() const{
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| 393 | return std::string("(") + lhs->toString() + std::string("||") + rhs->toString() + std::string(")");
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| 394 | }
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| 395 |
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| 396 | enum ShapeType OrShape_impl::getType() const{
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| 397 | return CombinedType;
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| 398 | }
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| 399 |
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| 400 | std::vector<Vector> OrShape_impl::getHomogeneousPointsOnSurface(const size_t N) const {
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| 401 | std::vector<Vector> PointsOnSurface_lhs = lhs->getHomogeneousPointsOnSurface(N);
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| 402 | std::vector<Vector> PointsOnSurface_rhs = rhs->getHomogeneousPointsOnSurface(N);
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| 403 | std::vector<Vector> PointsOnSurface;
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| 404 |
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| 405 | for (std::vector<Vector>::const_iterator iter = PointsOnSurface_lhs.begin(); iter != PointsOnSurface_lhs.end(); ++iter) {
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| 406 | if (!rhs->isInside(*iter))
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| 407 | PointsOnSurface.push_back(*iter);
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| 408 | }
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| 409 | for (std::vector<Vector>::const_iterator iter = PointsOnSurface_rhs.begin(); iter != PointsOnSurface_rhs.end(); ++iter) {
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| 410 | if (!lhs->isInside(*iter))
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| 411 | PointsOnSurface.push_back(*iter);
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| 412 | }
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| 413 |
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| 414 | return PointsOnSurface;
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| 415 | }
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| 416 |
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| 417 | std::vector<Vector> OrShape_impl::getHomogeneousPointsInVolume(const size_t N) const {
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| 418 | ASSERT(0,
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| 419 | "OrShape_impl::getHomogeneousPointsInVolume() - not implemented.");
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| 420 | return std::vector<Vector>();
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| 421 | }
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| 422 |
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| 423 | Shape operator||(const Shape &lhs,const Shape &rhs){
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| 424 | Shape::impl_ptr newImpl = Shape::impl_ptr(new OrShape_impl(getShapeImpl(lhs),getShapeImpl(rhs)));
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| 425 | return Shape(newImpl);
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| 426 | }
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| 427 |
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| 428 | // NOT
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| 429 |
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| 430 | NotShape_impl::NotShape_impl(const Shape::impl_ptr &_arg) :
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| 431 | arg(_arg)
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| 432 | {}
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| 433 |
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| 434 | NotShape_impl::~NotShape_impl(){}
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| 435 |
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| 436 | bool NotShape_impl::isInside(const Vector &point) const{
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| 437 | return !arg->isInside(point);
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| 438 | }
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| 439 |
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| 440 | bool NotShape_impl::isOnSurface(const Vector &point) const{
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| 441 | return arg->isOnSurface(point);
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| 442 | }
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| 443 |
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| 444 | Vector NotShape_impl::getNormal(const Vector &point) const throw(NotOnSurfaceException){
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| 445 | return -1.*arg->getNormal(point);
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| 446 | }
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| 447 |
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| 448 | Vector NotShape_impl::getCenter() const
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| 449 | {
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| 450 | return arg->getCenter();
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| 451 | }
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| 452 |
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| 453 | double NotShape_impl::getRadius() const
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| 454 | {
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| 455 | return std::numeric_limits<double>::infinity();
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| 456 | }
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| 457 |
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| 458 | double NotShape_impl::getVolume() const
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| 459 | {
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| 460 | // TODO
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| 461 | return -1.; //-arg->getVolume();
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| 462 | }
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| 463 |
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| 464 | double NotShape_impl::getSurfaceArea() const
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| 465 | {
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| 466 | // TODO
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| 467 | return -1.; // -arg->getSurfaceArea();
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| 468 | }
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| 469 |
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| 470 | LineSegmentSet NotShape_impl::getLineIntersections(const Line &line) const{
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| 471 | return invert(arg->getLineIntersections(line));
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| 472 | }
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| 473 |
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| 474 | std::string NotShape_impl::toString() const{
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| 475 | return std::string("!") + arg->toString();
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| 476 | }
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| 477 |
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| 478 | enum ShapeType NotShape_impl::getType() const{
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| 479 | return CombinedType;
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| 480 | }
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| 481 |
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| 482 | std::vector<Vector> NotShape_impl::getHomogeneousPointsOnSurface(const size_t N) const {
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| 483 | // surfaces are the same, only normal direction is different
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| 484 | return arg->getHomogeneousPointsOnSurface(N);
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| 485 | }
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| 486 |
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| 487 | std::vector<Vector> NotShape_impl::getHomogeneousPointsInVolume(const size_t N) const {
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| 488 | ASSERT(0,
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|---|
| 489 | "NotShape_impl::getHomogeneousPointsInVolume() - not implemented.");
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|---|
| 490 | return std::vector<Vector>();
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| 491 | }
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| 492 |
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| 493 | Shape operator!(const Shape &arg){
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| 494 | Shape::impl_ptr newImpl = Shape::impl_ptr(new NotShape_impl(getShapeImpl(arg)));
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| 495 | return Shape(newImpl);
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| 496 | }
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| 497 |
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| 498 | /**************** global operations *********************************/
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| 499 | std::ostream &operator<<(std::ostream &ost,const Shape &shape){
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| 500 | ost << shape.toString();
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| 501 | return ost;
|
|---|
| 502 | }
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