Changes in src/Plane.cpp [d4c9ae:112b09]
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src/Plane.cpp
rd4c9ae r112b09 5 5 * Author: crueger 6 6 */ 7 8 #include "Helpers/MemDebug.hpp" 7 9 8 10 #include "Plane.hpp" … … 14 16 #include "Helpers/Assert.hpp" 15 17 #include <cmath> 18 #include "Line.hpp" 19 #include "Exceptions/MultipleSolutionsException.hpp" 16 20 17 21 /** … … 42 46 /** 43 47 * Constructs a plane from two direction vectors and a offset. 44 * If no offset is given a plane through origin is assumed45 48 */ 46 49 Plane::Plane(const Vector &y1, const Vector &y2, double _offset) throw(ZeroVectorException,LinearDependenceException) : … … 113 116 } 114 117 115 Vector Plane::getOffsetVector() {118 Vector Plane::getOffsetVector() const { 116 119 return getOffset()*getNormal(); 117 120 } 118 121 119 vector<Vector> Plane::getPointsOnPlane() {122 vector<Vector> Plane::getPointsOnPlane() const{ 120 123 std::vector<Vector> res; 121 124 res.reserve(3); … … 147 150 * \return true - \a this contains intersection point on return, false - line is parallel to plane (even if in-plane) 148 151 */ 149 Vector Plane::GetIntersection(const Vector &Origin, const Vector &LineVector)152 Vector Plane::GetIntersection(const Line& line) const 150 153 { 151 154 Info FunctionInfo(__func__); 152 155 Vector res; 153 156 154 // find intersection of a line defined by Offset and Direction with a plane defined by triangle 155 Vector Direction = LineVector - Origin; 156 Direction.Normalize(); 157 Log() << Verbose(1) << "INFO: Direction is " << Direction << "." << endl; 158 //Log() << Verbose(1) << "INFO: PlaneNormal is " << *PlaneNormal << " and PlaneOffset is " << *PlaneOffset << "." << endl; 159 double factor1 = Direction.ScalarProduct(*normalVector.get()); 160 if (fabs(factor1) < MYEPSILON) { // Uniqueness: line parallel to plane? 161 Log() << Verbose(1) << "BAD: Line is parallel to plane, no intersection." << endl; 162 throw LinearDependenceException(__FILE__,__LINE__); 163 } 164 165 double factor2 = Origin.ScalarProduct(*normalVector.get()); 166 if (fabs(factor2-offset) < MYEPSILON) { // Origin is in-plane 167 Log() << Verbose(1) << "GOOD: Origin of line is in-plane." << endl; 168 res = Origin; 169 return res; 170 } 171 157 double factor1 = getNormal().ScalarProduct(line.getDirection()); 158 if(fabs(factor1)<MYEPSILON){ 159 // the plane is parallel... under all circumstances this is bad luck 160 // we no have either no or infinite solutions 161 if(isContained(line.getOrigin())){ 162 throw MultipleSolutionsException<Vector>(__FILE__,__LINE__,line.getOrigin()); 163 } 164 else{ 165 throw LinearDependenceException(__FILE__,__LINE__); 166 } 167 } 168 169 double factor2 = getNormal().ScalarProduct(line.getOrigin()); 172 170 double scaleFactor = (offset-factor2)/factor1; 173 171 174 //factor = Origin->ScalarProduct(PlaneNormal)*(-PlaneOffset->ScalarProduct(PlaneNormal))/(Direction.ScalarProduct(PlaneNormal)); 175 Direction.Scale(scaleFactor); 176 res = Origin + Direction; 177 Log() << Verbose(1) << "INFO: Scaled direction is " << Direction << "." << endl; 178 179 // test whether resulting vector really is on plane 180 ASSERT(fabs(res.ScalarProduct(*normalVector) - offset) < MYEPSILON, 181 "Calculated line-Plane intersection does not lie on plane."); 172 res = line.getOrigin() + scaleFactor * line.getDirection(); 173 174 // tests to make sure the resulting vector really is on plane and line 175 ASSERT(isContained(res),"Calculated line-Plane intersection does not lie on plane."); 176 ASSERT(line.isContained(res),"Calculated line-Plane intersection does not lie on line."); 182 177 return res; 183 178 }; 179 180 Vector Plane::mirrorVector(const Vector &rhs) const { 181 Vector helper = getVectorToPoint(rhs); 182 // substract twice the Vector to the plane 183 return rhs+2*helper; 184 } 185 186 Line Plane::getOrthogonalLine(const Vector &origin) const{ 187 return Line(origin,getNormal()); 188 } 184 189 185 190 /************ Methods inherited from Space ****************/
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