| 1 | /* | 
|---|
| 2 | * Project: MoleCuilder | 
|---|
| 3 | * Description: creates and alters molecular systems | 
|---|
| 4 | * Copyright (C)  2010-2012 University of Bonn. All rights reserved. | 
|---|
| 5 | * Please see the LICENSE file or "Copyright notice" in builder.cpp for details. | 
|---|
| 6 | */ | 
|---|
| 7 |  | 
|---|
| 8 | /* | 
|---|
| 9 | * BaseShapes_impl.cpp | 
|---|
| 10 | * | 
|---|
| 11 | *  Created on: Jun 18, 2010 | 
|---|
| 12 | *      Author: crueger | 
|---|
| 13 | */ | 
|---|
| 14 |  | 
|---|
| 15 | // include config.h | 
|---|
| 16 | #ifdef HAVE_CONFIG_H | 
|---|
| 17 | #include <config.h> | 
|---|
| 18 | #endif | 
|---|
| 19 |  | 
|---|
| 20 | #include "CodePatterns/MemDebug.hpp" | 
|---|
| 21 |  | 
|---|
| 22 | #include "Shapes/BaseShapes.hpp" | 
|---|
| 23 | #include "Shapes/BaseShapes_impl.hpp" | 
|---|
| 24 | #include "Shapes/ShapeExceptions.hpp" | 
|---|
| 25 | #include "Shapes/ShapeOps.hpp" | 
|---|
| 26 |  | 
|---|
| 27 | #include "Helpers/defs.hpp" | 
|---|
| 28 |  | 
|---|
| 29 | #include "CodePatterns/Assert.hpp" | 
|---|
| 30 | #include "LinearAlgebra/Vector.hpp" | 
|---|
| 31 | #include "LinearAlgebra/Line.hpp" | 
|---|
| 32 | #include "LinearAlgebra/Plane.hpp" | 
|---|
| 33 | #include "LinearAlgebra/LineSegment.hpp" | 
|---|
| 34 | #include "LinearAlgebra/LineSegmentSet.hpp" | 
|---|
| 35 |  | 
|---|
| 36 | #include <cmath> | 
|---|
| 37 | #include <algorithm> | 
|---|
| 38 |  | 
|---|
| 39 | bool Sphere_impl::isInside(const Vector &point) const{ | 
|---|
| 40 | return point.NormSquared()<=1.; | 
|---|
| 41 | } | 
|---|
| 42 |  | 
|---|
| 43 | bool Sphere_impl::isOnSurface(const Vector &point) const{ | 
|---|
| 44 | return fabs(point.NormSquared()-1.)<MYEPSILON; | 
|---|
| 45 | } | 
|---|
| 46 |  | 
|---|
| 47 | Vector Sphere_impl::getNormal(const Vector &point) const throw(NotOnSurfaceException){ | 
|---|
| 48 | if(!isOnSurface(point)){ | 
|---|
| 49 | throw NotOnSurfaceException() << ShapeVector(&point); | 
|---|
| 50 | } | 
|---|
| 51 | return point; | 
|---|
| 52 | } | 
|---|
| 53 |  | 
|---|
| 54 | Vector Sphere_impl::getCenter() const | 
|---|
| 55 | { | 
|---|
| 56 | return Vector(0.,0.,0.); | 
|---|
| 57 | } | 
|---|
| 58 |  | 
|---|
| 59 | double Sphere_impl::getRadius() const | 
|---|
| 60 | { | 
|---|
| 61 | return 1.; | 
|---|
| 62 | } | 
|---|
| 63 |  | 
|---|
| 64 | double Sphere_impl::getVolume() const | 
|---|
| 65 | { | 
|---|
| 66 | return (4./3.)*M_PI; // 4/3 pi r^3 | 
|---|
| 67 | } | 
|---|
| 68 |  | 
|---|
| 69 | double Sphere_impl::getSurfaceArea() const | 
|---|
| 70 | { | 
|---|
| 71 | return 2.*M_PI; // 2 pi r^2 | 
|---|
| 72 | } | 
|---|
| 73 |  | 
|---|
| 74 |  | 
|---|
| 75 | LineSegmentSet Sphere_impl::getLineIntersections(const Line &line) const{ | 
|---|
| 76 | LineSegmentSet res(line); | 
|---|
| 77 | std::vector<Vector> intersections = line.getSphereIntersections(); | 
|---|
| 78 | if(intersections.size()==2){ | 
|---|
| 79 | res.insert(LineSegment(intersections[0],intersections[1])); | 
|---|
| 80 | } | 
|---|
| 81 | return res; | 
|---|
| 82 | } | 
|---|
| 83 |  | 
|---|
| 84 | std::string Sphere_impl::toString() const{ | 
|---|
| 85 | return "Sphere()"; | 
|---|
| 86 | } | 
|---|
| 87 |  | 
|---|
| 88 | enum ShapeType Sphere_impl::getType() const | 
|---|
| 89 | { | 
|---|
| 90 | return SphereType; | 
|---|
| 91 | } | 
|---|
| 92 |  | 
|---|
| 93 | /** | 
|---|
| 94 | * algorithm taken from http://www.cgafaq.info/wiki/Evenly_distributed_points_on_sphere | 
|---|
| 95 | * \param N number of points on surface | 
|---|
| 96 | */ | 
|---|
| 97 | std::vector<Vector> Sphere_impl::getHomogeneousPointsOnSurface(const size_t N) const | 
|---|
| 98 | { | 
|---|
| 99 | std::vector<Vector> PointsOnSurface; | 
|---|
| 100 |  | 
|---|
| 101 | double PI=3.14159265358979323846; | 
|---|
| 102 | double a=4*PI/N; | 
|---|
| 103 | double d= sqrt(a); | 
|---|
| 104 | int Mtheta=int(PI/d); | 
|---|
| 105 | double dtheta=PI/Mtheta; | 
|---|
| 106 | double dphi=a/dtheta; | 
|---|
| 107 | for (int m=0; m<Mtheta; m++) | 
|---|
| 108 | { | 
|---|
| 109 | double theta=PI*(m+0.5)/Mtheta; | 
|---|
| 110 | int Mphi=int(2*PI*sin(theta)/dphi); | 
|---|
| 111 | for (int n=0; n<Mphi;n++) | 
|---|
| 112 | { | 
|---|
| 113 | double phi= 2*PI*n/Mphi; | 
|---|
| 114 | Vector point; | 
|---|
| 115 | point.Zero(); | 
|---|
| 116 | point[0]=sin(theta)*cos(phi); | 
|---|
| 117 | point[1]=sin(theta)*sin(phi); | 
|---|
| 118 | point[2]=cos(theta); | 
|---|
| 119 | PointsOnSurface.push_back(point); | 
|---|
| 120 | } | 
|---|
| 121 | } | 
|---|
| 122 | /*const double dlength = M_PI*(3.-sqrt(5.)); | 
|---|
| 123 | double length = 0; | 
|---|
| 124 | const double dz = 2.0/N; | 
|---|
| 125 | double z = 1. - dz/2.; | 
|---|
| 126 | Vector point; | 
|---|
| 127 | for (size_t ka = 0; ka<N; ka++){ | 
|---|
| 128 | const double r = sqrt(1.-z*z); | 
|---|
| 129 | point.Zero(); | 
|---|
| 130 | point[0] = cos(length)*r; | 
|---|
| 131 | point[1] = sin(length)*r; | 
|---|
| 132 | point[2] = z; | 
|---|
| 133 | PointsOnSurface.push_back(point); | 
|---|
| 134 | z = z - dz; | 
|---|
| 135 | length = length + dlength;*/ | 
|---|
| 136 |  | 
|---|
| 137 | //  ASSERT(PointsOnSurface.size() == N, | 
|---|
| 138 | //      "Sphere_impl::getHomogeneousPointsOnSurface() did not create " | 
|---|
| 139 | //      +::toString(N)+" but "+::toString(PointsOnSurface.size())+" points."); | 
|---|
| 140 | return PointsOnSurface; | 
|---|
| 141 | } | 
|---|
| 142 |  | 
|---|
| 143 | std::vector<Vector> Sphere_impl::getHomogeneousPointsInVolume(const size_t N) const { | 
|---|
| 144 | ASSERT(0, | 
|---|
| 145 | "Sphere_impl::getHomogeneousPointsInVolume() - not implemented."); | 
|---|
| 146 | return std::vector<Vector>(); | 
|---|
| 147 | } | 
|---|
| 148 |  | 
|---|
| 149 | Shape Sphere(){ | 
|---|
| 150 | Shape::impl_ptr impl = Shape::impl_ptr(new Sphere_impl()); | 
|---|
| 151 | return Shape(impl); | 
|---|
| 152 | } | 
|---|
| 153 |  | 
|---|
| 154 | Shape Sphere(const Vector ¢er,double radius){ | 
|---|
| 155 | return translate(resize(Sphere(),radius),center); | 
|---|
| 156 | } | 
|---|
| 157 |  | 
|---|
| 158 | Shape Ellipsoid(const Vector ¢er, const Vector &radius){ | 
|---|
| 159 | return translate(stretch(Sphere(),radius),center); | 
|---|
| 160 | } | 
|---|
| 161 |  | 
|---|
| 162 | bool Cuboid_impl::isInside(const Vector &point) const{ | 
|---|
| 163 | return (point[0]>=0 && point[0]<=1) && (point[1]>=0 && point[1]<=1) && (point[2]>=0 && point[2]<=1); | 
|---|
| 164 | } | 
|---|
| 165 |  | 
|---|
| 166 | bool Cuboid_impl::isOnSurface(const Vector &point) const{ | 
|---|
| 167 | bool retVal = isInside(point); | 
|---|
| 168 | // test all borders of the cuboid | 
|---|
| 169 | // double fabs | 
|---|
| 170 | retVal = retVal && | 
|---|
| 171 | (((fabs(point[0]-1.)  < MYEPSILON) || (fabs(point[0])  < MYEPSILON)) || | 
|---|
| 172 | ((fabs(point[1]-1.)  < MYEPSILON) || (fabs(point[1])  < MYEPSILON)) || | 
|---|
| 173 | ((fabs(point[2]-1.)  < MYEPSILON) || (fabs(point[2])  < MYEPSILON))); | 
|---|
| 174 | return retVal; | 
|---|
| 175 | } | 
|---|
| 176 |  | 
|---|
| 177 | Vector Cuboid_impl::getNormal(const Vector &point) const throw(NotOnSurfaceException){ | 
|---|
| 178 | if(!isOnSurface(point)){ | 
|---|
| 179 | throw NotOnSurfaceException() << ShapeVector(&point); | 
|---|
| 180 | } | 
|---|
| 181 | Vector res; | 
|---|
| 182 | // figure out on which sides the Vector lies (maximum 3, when it is in a corner) | 
|---|
| 183 | for(int i=NDIM;i--;){ | 
|---|
| 184 | if(fabs(fabs(point[i])-1)<MYEPSILON){ | 
|---|
| 185 | // add the scaled (-1/+1) Vector to the set of surface vectors | 
|---|
| 186 | res[i] = point[i]; | 
|---|
| 187 | } | 
|---|
| 188 | } | 
|---|
| 189 | ASSERT(res.NormSquared()>=1 && res.NormSquared()<=3,"To many or to few sides found for this Vector"); | 
|---|
| 190 |  | 
|---|
| 191 | res.Normalize(); | 
|---|
| 192 | return res; | 
|---|
| 193 | } | 
|---|
| 194 |  | 
|---|
| 195 |  | 
|---|
| 196 | Vector Cuboid_impl::getCenter() const | 
|---|
| 197 | { | 
|---|
| 198 | return Vector(0.5,0.5,0.5); | 
|---|
| 199 | } | 
|---|
| 200 |  | 
|---|
| 201 | double Cuboid_impl::getRadius() const | 
|---|
| 202 | { | 
|---|
| 203 | return .5; | 
|---|
| 204 | } | 
|---|
| 205 |  | 
|---|
| 206 | double Cuboid_impl::getVolume() const | 
|---|
| 207 | { | 
|---|
| 208 | return 1.; // l^3 | 
|---|
| 209 | } | 
|---|
| 210 |  | 
|---|
| 211 | double Cuboid_impl::getSurfaceArea() const | 
|---|
| 212 | { | 
|---|
| 213 | return 6.;      // 6 * l^2 | 
|---|
| 214 | } | 
|---|
| 215 |  | 
|---|
| 216 | LineSegmentSet Cuboid_impl::getLineIntersections(const Line &line) const{ | 
|---|
| 217 | LineSegmentSet res(line); | 
|---|
| 218 | // get the intersection on each of the six faces | 
|---|
| 219 | std::vector<Vector> intersections; | 
|---|
| 220 | intersections.resize(2); | 
|---|
| 221 | int c=0; | 
|---|
| 222 | int x[2]={-1,+1}; | 
|---|
| 223 | for(int i=NDIM;i--;){ | 
|---|
| 224 | for(int p=0;p<2;++p){ | 
|---|
| 225 | if(c==2) goto end; // I know this sucks, but breaking two loops is stupid | 
|---|
| 226 | Vector base; | 
|---|
| 227 | base[i]=x[p]; | 
|---|
| 228 | // base now points to the surface and is normal to it at the same time | 
|---|
| 229 | Plane p(base,base); | 
|---|
| 230 | Vector intersection = p.GetIntersection(line); | 
|---|
| 231 | if(isInside(intersection)){ | 
|---|
| 232 | // if we have a point on the edge it might already be contained | 
|---|
| 233 | if(c==1 && intersections[0]==intersection) | 
|---|
| 234 | continue; | 
|---|
| 235 | intersections[c++]=intersection; | 
|---|
| 236 | } | 
|---|
| 237 | } | 
|---|
| 238 | } | 
|---|
| 239 | end: | 
|---|
| 240 | if(c==2){ | 
|---|
| 241 | res.insert(LineSegment(intersections[0],intersections[1])); | 
|---|
| 242 | } | 
|---|
| 243 | return res; | 
|---|
| 244 | } | 
|---|
| 245 |  | 
|---|
| 246 | std::string Cuboid_impl::toString() const{ | 
|---|
| 247 | return "Cuboid()"; | 
|---|
| 248 | } | 
|---|
| 249 |  | 
|---|
| 250 | enum ShapeType Cuboid_impl::getType() const | 
|---|
| 251 | { | 
|---|
| 252 | return CuboidType; | 
|---|
| 253 | } | 
|---|
| 254 |  | 
|---|
| 255 | /** | 
|---|
| 256 | * \param N number of points on surface | 
|---|
| 257 | */ | 
|---|
| 258 | std::vector<Vector> Cuboid_impl::getHomogeneousPointsOnSurface(const size_t N) const { | 
|---|
| 259 | std::vector<Vector> PointsOnSurface; | 
|---|
| 260 | ASSERT(false, "Cuboid_impl::getHomogeneousPointsOnSurface() not implemented yet"); | 
|---|
| 261 | return PointsOnSurface; | 
|---|
| 262 | } | 
|---|
| 263 |  | 
|---|
| 264 | std::vector<Vector> Cuboid_impl::getHomogeneousPointsInVolume(const size_t N) const { | 
|---|
| 265 | ASSERT(0, | 
|---|
| 266 | "Cuboid_impl::getHomogeneousPointsInVolume() - not implemented."); | 
|---|
| 267 | return std::vector<Vector>(); | 
|---|
| 268 | } | 
|---|
| 269 |  | 
|---|
| 270 | Shape Cuboid(){ | 
|---|
| 271 | Shape::impl_ptr impl = Shape::impl_ptr(new Cuboid_impl()); | 
|---|
| 272 | return Shape(impl); | 
|---|
| 273 | } | 
|---|
| 274 |  | 
|---|
| 275 | Shape Cuboid(const Vector &corner1, const Vector &corner2){ | 
|---|
| 276 | // make sure the two edges are upper left front and lower right back | 
|---|
| 277 | Vector sortedC1; | 
|---|
| 278 | Vector sortedC2; | 
|---|
| 279 | for(int i=NDIM;i--;){ | 
|---|
| 280 | sortedC1[i] = std::min(corner1[i],corner2[i]); | 
|---|
| 281 | sortedC2[i] = std::max(corner1[i],corner2[i]); | 
|---|
| 282 | ASSERT(corner1[i]!=corner2[i],"Given points for cuboid edges did not define a valid space"); | 
|---|
| 283 | } | 
|---|
| 284 | // get the middle point | 
|---|
| 285 | Vector middle = (1./2.)*(sortedC1+sortedC2); | 
|---|
| 286 | Vector factors = sortedC2-middle; | 
|---|
| 287 | return translate(stretch(Cuboid(),factors),middle); | 
|---|
| 288 | } | 
|---|