145 lines
4.6 KiB
C++
145 lines
4.6 KiB
C++
// This file is part of libigl, a simple c++ geometry processing library.
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//
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// Copyright (C) 2014 Nico Pietroni <nico.pietroni@gmail.com>
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//
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// This Source Code Form is subject to the terms of the Mozilla Public License
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// v. 2.0. If a copy of the MPL was not distributed with this file, You can
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// obtain one at http://mozilla.org/MPL/2.0/.
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#include "line_field_mismatch.h"
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#include <vector>
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#include <deque>
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#include <igl/comb_line_field.h>
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#include <igl/rotate_vectors.h>
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#include <igl/comb_cross_field.h>
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#include <igl/comb_line_field.h>
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#include <igl/per_face_normals.h>
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#include <igl/is_border_vertex.h>
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#include <igl/vertex_triangle_adjacency.h>
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#include <igl/triangle_triangle_adjacency.h>
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#include <igl/rotation_matrix_from_directions.h>
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#include <igl/local_basis.h>
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#include <igl/PI.h>
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namespace igl {
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template <typename DerivedV, typename DerivedF, typename DerivedO>
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class MismatchCalculatorLine
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{
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public:
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const Eigen::PlainObjectBase<DerivedV> &V;
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const Eigen::PlainObjectBase<DerivedF> &F;
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const Eigen::PlainObjectBase<DerivedV> &PD1;
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const Eigen::PlainObjectBase<DerivedV> &PD2;
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DerivedV N;
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private:
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// internal
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std::vector<bool> V_border; // bool
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std::vector<std::vector<int> > VF;
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std::vector<std::vector<int> > VFi;
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DerivedF TT;
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DerivedF TTi;
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private:
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//compute the mismatch between 2 faces
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inline int mismatchByLine(const int f0,
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const int f1)
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{
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Eigen::Matrix<typename DerivedV::Scalar, 3, 1> dir0 = PD1.row(f0);
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Eigen::Matrix<typename DerivedV::Scalar, 3, 1> dir1 = PD1.row(f1);
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Eigen::Matrix<typename DerivedV::Scalar, 3, 1> n0 = N.row(f0);
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Eigen::Matrix<typename DerivedV::Scalar, 3, 1> n1 = N.row(f1);
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Eigen::Matrix<typename DerivedV::Scalar, 3, 1> dir1Rot = igl::rotation_matrix_from_directions(n1,n0)*dir1;
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dir1Rot.normalize();
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// TODO: this should be equivalent to the other code below, to check!
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// Compute the angle between the two vectors
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// double a0 = atan2(dir0.dot(B2.row(f0)),dir0.dot(B1.row(f0)));
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// double a1 = atan2(dir1Rot.dot(B2.row(f0)),dir1Rot.dot(B1.row(f0)));
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//
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// double angle_diff = a1-a0; //VectToAngle(f0,dir1Rot);
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double angle_diff = atan2(dir1Rot.dot(PD2.row(f0)),dir1Rot.dot(PD1.row(f0)));
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double step=igl::PI;
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int i=(int)std::floor((angle_diff/step)+0.5);
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assert((i>=-2)&&(i<=2));
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int k=0;
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if (i>=0)
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k=i%2;
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else
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k=(2+i)%2;
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assert((k==0)||(k==1));
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return (k*2);
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}
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public:
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inline MismatchCalculatorLine(const Eigen::PlainObjectBase<DerivedV> &_V,
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const Eigen::PlainObjectBase<DerivedF> &_F,
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const Eigen::PlainObjectBase<DerivedV> &_PD1,
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const Eigen::PlainObjectBase<DerivedV> &_PD2
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):
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V(_V),
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F(_F),
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PD1(_PD1),
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PD2(_PD2)
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{
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igl::per_face_normals(V,F,N);
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V_border = igl::is_border_vertex(V,F);
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igl::vertex_triangle_adjacency(V,F,VF,VFi);
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igl::triangle_triangle_adjacency(F,TT,TTi);
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}
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inline void calculateMismatchLine(Eigen::PlainObjectBase<DerivedO> &Handle_MMatch)
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{
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Handle_MMatch.setConstant(F.rows(),3,-1);
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for (unsigned int i=0;i<F.rows();i++)
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{
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for (int j=0;j<3;j++)
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{
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if (i==TT(i,j) || TT(i,j) == -1)
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Handle_MMatch(i,j)=0;
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else
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Handle_MMatch(i,j) = mismatchByLine(i, TT(i, j));
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}
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}
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}
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};
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}
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template <typename DerivedV, typename DerivedF, typename DerivedO>
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IGL_INLINE void igl::line_field_mismatch(const Eigen::PlainObjectBase<DerivedV> &V,
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const Eigen::PlainObjectBase<DerivedF> &F,
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const Eigen::PlainObjectBase<DerivedV> &PD1,
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const bool isCombed,
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Eigen::PlainObjectBase<DerivedO> &mismatch)
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{
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DerivedV PD1_combed;
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DerivedV PD2_combed;
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if (!isCombed)
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igl::comb_line_field(V,F,PD1,PD1_combed);
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else
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{
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PD1_combed = PD1;
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}
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Eigen::MatrixXd B1,B2,B3;
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igl::local_basis(V,F,B1,B2,B3);
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PD2_combed = igl::rotate_vectors(PD1_combed, Eigen::VectorXd::Constant(1,igl::PI/2), B1, B2);
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igl::MismatchCalculatorLine<DerivedV, DerivedF, DerivedO> sf(V, F, PD1_combed, PD2_combed);
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sf.calculateMismatchLine(mismatch);
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}
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#ifdef IGL_STATIC_LIBRARY
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// Explicit template instantiation
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#endif
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