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Move many third-party components' source codes from the src folder to a new folder called deps_src. The goal is to make the code structure clearer and easier to navigate.
188 lines
5.0 KiB
C++
188 lines
5.0 KiB
C++
/****************************************************************************
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**
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** Copyright (c) 2009-2015 C.B. Barber. All rights reserved.
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** $Id: //main/2015/qhull/src/libqhullcpp/QhullHyperplane.cpp#3 $$Change: 2066 $
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** $DateTime: 2016/01/18 19:29:17 $$Author: bbarber $
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**
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****************************************************************************/
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#include "libqhullcpp/QhullHyperplane.h"
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#include "libqhullcpp/Qhull.h"
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#include "libqhullcpp/QhullPoint.h"
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#include <iostream>
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#ifdef _MSC_VER // Microsoft Visual C++ -- warning level 4
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#endif
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namespace orgQhull {
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#//!\name Constructors
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QhullHyperplane::
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QhullHyperplane(const Qhull &q)
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: hyperplane_coordinates(0)
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, qh_qh(q.qh())
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, hyperplane_offset(0.0)
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, hyperplane_dimension(0)
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{
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}
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QhullHyperplane::
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QhullHyperplane(const Qhull &q, int hyperplaneDimension, coordT *c, coordT hyperplaneOffset)
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: hyperplane_coordinates(c)
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, qh_qh(q.qh())
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, hyperplane_offset(hyperplaneOffset)
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, hyperplane_dimension(hyperplaneDimension)
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{
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}
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#//!\name Conversions
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// See qt-qhull.cpp for QList conversions
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#ifndef QHULL_NO_STL
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std::vector<coordT> QhullHyperplane::
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toStdVector() const
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{
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QhullHyperplaneIterator i(*this);
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std::vector<coordT> fs;
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while(i.hasNext()){
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fs.push_back(i.next());
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}
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fs.push_back(hyperplane_offset);
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return fs;
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}//toStdVector
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#endif //QHULL_NO_STL
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#//!\name GetSet
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//! Return true if equal
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//! If qh_qh defined, tests qh.distanceEpsilon and qh.angleEpsilon
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//! otherwise, tests equal coordinates and offset
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bool QhullHyperplane::
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operator==(const QhullHyperplane &other) const
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{
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if(hyperplane_dimension!=other.hyperplane_dimension || !hyperplane_coordinates || !other.hyperplane_coordinates){
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return false;
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}
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double d= fabs(hyperplane_offset-other.hyperplane_offset);
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if(d > (qh_qh ? qh_qh->distanceEpsilon() : 0.0)){
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return false;
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}
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double angle= hyperplaneAngle(other);
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double a= fabs(angle-1.0);
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if(a > (qh_qh ? qh_qh->angleEpsilon() : 0.0)){
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return false;
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}
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return true;
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}//operator==
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#//!\name Methods
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//! Return distance from point to hyperplane.
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//! If greater than zero, the point is above the facet (i.e., outside).
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// qh_distplane [geom_r.c], QhullFacet::distance, and QhullHyperplane::distance are copies
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// Does not support RANDOMdist or logging
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double QhullHyperplane::
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distance(const QhullPoint &p) const
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{
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const coordT *point= p.coordinates();
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int dim= p.dimension();
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QHULL_ASSERT(dim==dimension());
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const coordT *normal= coordinates();
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double dist;
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switch (dim){
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case 2:
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dist= offset() + point[0] * normal[0] + point[1] * normal[1];
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break;
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case 3:
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dist= offset() + point[0] * normal[0] + point[1] * normal[1] + point[2] * normal[2];
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break;
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case 4:
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dist= offset()+point[0]*normal[0]+point[1]*normal[1]+point[2]*normal[2]+point[3]*normal[3];
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break;
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case 5:
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dist= offset()+point[0]*normal[0]+point[1]*normal[1]+point[2]*normal[2]+point[3]*normal[3]+point[4]*normal[4];
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break;
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case 6:
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dist= offset()+point[0]*normal[0]+point[1]*normal[1]+point[2]*normal[2]+point[3]*normal[3]+point[4]*normal[4]+point[5]*normal[5];
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break;
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case 7:
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dist= offset()+point[0]*normal[0]+point[1]*normal[1]+point[2]*normal[2]+point[3]*normal[3]+point[4]*normal[4]+point[5]*normal[5]+point[6]*normal[6];
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break;
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case 8:
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dist= offset()+point[0]*normal[0]+point[1]*normal[1]+point[2]*normal[2]+point[3]*normal[3]+point[4]*normal[4]+point[5]*normal[5]+point[6]*normal[6]+point[7]*normal[7];
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break;
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default:
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dist= offset();
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for (int k=dim; k--; )
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dist += *point++ * *normal++;
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break;
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}
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return dist;
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}//distance
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double QhullHyperplane::
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hyperplaneAngle(const QhullHyperplane &other) const
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{
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volatile realT result= 0.0;
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QH_TRY_(qh_qh){ // no object creation -- destructors skipped on longjmp()
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result= qh_getangle(qh_qh, hyperplane_coordinates, other.hyperplane_coordinates);
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}
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qh_qh->NOerrexit= true;
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qh_qh->maybeThrowQhullMessage(QH_TRY_status);
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return result;
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}//hyperplaneAngle
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double QhullHyperplane::
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norm() const {
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double d= 0.0;
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const coordT *c= coordinates();
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for (int k=dimension(); k--; ){
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d += *c * *c;
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++c;
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}
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return sqrt(d);
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}//norm
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}//namespace orgQhull
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#//!\name Global functions
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using std::ostream;
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using orgQhull::QhullHyperplane;
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#//!\name GetSet<<
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ostream &
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operator<<(ostream &os, const QhullHyperplane &p)
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{
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os << p.print("");
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return os;
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}
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ostream &
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operator<<(ostream &os, const QhullHyperplane::PrintHyperplane &pr)
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{
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os << pr.print_message;
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QhullHyperplane p= *pr.hyperplane;
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const realT *c= p.coordinates();
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for(int k=p.dimension(); k--; ){
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realT r= *c++;
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if(pr.print_message){
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os << " " << r; // FIXUP QH11010 %8.4g
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}else{
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os << " " << r; // FIXUP QH11010 qh_REAL_1
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}
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}
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os << pr.hyperplane_offset_message << " " << p.offset();
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os << std::endl;
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return os;
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}//PrintHyperplane
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