polynomialutils.cpp
Go to the documentation of this file.
00001 // This file is part of Eigen, a lightweight C++ template library
00002 // for linear algebra.
00003 //
00004 // Copyright (C) 2010 Manuel Yguel <manuel.yguel@gmail.com>
00005 //
00006 // This Source Code Form is subject to the terms of the Mozilla
00007 // Public License v. 2.0. If a copy of the MPL was not distributed
00008 // with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
00009 
00010 #include "main.h"
00011 #include <unsupported/Eigen/Polynomials>
00012 #include <iostream>
00013 
00014 using namespace std;
00015 
00016 namespace Eigen {
00017 namespace internal {
00018 template<int Size>
00019 struct increment_if_fixed_size
00020 {
00021   enum {
00022     ret = (Size == Dynamic) ? Dynamic : Size+1
00023   };
00024 };
00025 }
00026 }
00027 
00028 template<typename _Scalar, int _Deg>
00029 void realRoots_to_monicPolynomial_test(int deg)
00030 {
00031   typedef internal::increment_if_fixed_size<_Deg>            Dim;
00032   typedef Matrix<_Scalar,Dim::ret,1>                  PolynomialType;
00033   typedef Matrix<_Scalar,_Deg,1>                      EvalRootsType;
00034 
00035   PolynomialType pols(deg+1);
00036   EvalRootsType roots = EvalRootsType::Random(deg);
00037   roots_to_monicPolynomial( roots, pols );
00038 
00039   EvalRootsType evr( deg );
00040   for( int i=0; i<roots.size(); ++i ){
00041     evr[i] = std::abs( poly_eval( pols, roots[i] ) ); }
00042 
00043   bool evalToZero = evr.isZero( test_precision<_Scalar>() );
00044   if( !evalToZero ){
00045     cerr << evr.transpose() << endl; }
00046   VERIFY( evalToZero );
00047 }
00048 
00049 template<typename _Scalar> void realRoots_to_monicPolynomial_scalar()
00050 {
00051   CALL_SUBTEST_2( (realRoots_to_monicPolynomial_test<_Scalar,2>(2)) );
00052   CALL_SUBTEST_3( (realRoots_to_monicPolynomial_test<_Scalar,3>(3)) );
00053   CALL_SUBTEST_4( (realRoots_to_monicPolynomial_test<_Scalar,4>(4)) );
00054   CALL_SUBTEST_5( (realRoots_to_monicPolynomial_test<_Scalar,5>(5)) );
00055   CALL_SUBTEST_6( (realRoots_to_monicPolynomial_test<_Scalar,6>(6)) );
00056   CALL_SUBTEST_7( (realRoots_to_monicPolynomial_test<_Scalar,7>(7)) );
00057   CALL_SUBTEST_8( (realRoots_to_monicPolynomial_test<_Scalar,17>(17)) );
00058 
00059   CALL_SUBTEST_9( (realRoots_to_monicPolynomial_test<_Scalar,Dynamic>(
00060           internal::random<int>(18,26) )) );
00061 }
00062 
00063 
00064 
00065 
00066 template<typename _Scalar, int _Deg>
00067 void CauchyBounds(int deg)
00068 {
00069   typedef internal::increment_if_fixed_size<_Deg>            Dim;
00070   typedef Matrix<_Scalar,Dim::ret,1>                  PolynomialType;
00071   typedef Matrix<_Scalar,_Deg,1>                      EvalRootsType;
00072 
00073   PolynomialType pols(deg+1);
00074   EvalRootsType roots = EvalRootsType::Random(deg);
00075   roots_to_monicPolynomial( roots, pols );
00076   _Scalar M = cauchy_max_bound( pols );
00077   _Scalar m = cauchy_min_bound( pols );
00078   _Scalar Max = roots.array().abs().maxCoeff();
00079   _Scalar min = roots.array().abs().minCoeff();
00080   bool eval = (M >= Max) && (m <= min);
00081   if( !eval )
00082   {
00083     cerr << "Roots: " << roots << endl;
00084     cerr << "Bounds: (" << m << ", " << M << ")" << endl;
00085     cerr << "Min,Max: (" << min << ", " << Max << ")" << endl;
00086   }
00087   VERIFY( eval );
00088 }
00089 
00090 template<typename _Scalar> void CauchyBounds_scalar()
00091 {
00092   CALL_SUBTEST_2( (CauchyBounds<_Scalar,2>(2)) );
00093   CALL_SUBTEST_3( (CauchyBounds<_Scalar,3>(3)) );
00094   CALL_SUBTEST_4( (CauchyBounds<_Scalar,4>(4)) );
00095   CALL_SUBTEST_5( (CauchyBounds<_Scalar,5>(5)) );
00096   CALL_SUBTEST_6( (CauchyBounds<_Scalar,6>(6)) );
00097   CALL_SUBTEST_7( (CauchyBounds<_Scalar,7>(7)) );
00098   CALL_SUBTEST_8( (CauchyBounds<_Scalar,17>(17)) );
00099 
00100   CALL_SUBTEST_9( (CauchyBounds<_Scalar,Dynamic>(
00101           internal::random<int>(18,26) )) );
00102 }
00103 
00104 void test_polynomialutils()
00105 {
00106   for(int i = 0; i < g_repeat; i++)
00107   {
00108     realRoots_to_monicPolynomial_scalar<double>();
00109     realRoots_to_monicPolynomial_scalar<float>();
00110     CauchyBounds_scalar<double>();
00111     CauchyBounds_scalar<float>();
00112   }
00113 }


shape_reconstruction
Author(s): Roberto Martín-Martín
autogenerated on Sat Jun 8 2019 18:34:28