e9d606edc4
[CI SKIP]
331 lines
11 KiB
C++
331 lines
11 KiB
C++
//
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// Copyright (c) 2000-2002
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// Joerg Walter, Mathias Koch
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//
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// Distributed under the Boost Software License, Version 1.0. (See
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// accompanying file LICENSE_1_0.txt or copy at
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// http://www.boost.org/LICENSE_1_0.txt)
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//
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// The authors gratefully acknowledge the support of
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// GeNeSys mbH & Co. KG in producing this work.
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//
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#if defined(__GNUC__) && (__GNUC__ >= 9)
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#pragma GCC diagnostic ignored "-Wdeprecated-copy"
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#endif
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#include "test1.hpp"
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// Test matrix expression templates
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template <class M, int N>
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struct test_my_matrix
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{
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typedef typename M::value_type value_type;
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template <class VP>
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void test_container_with(VP& v1) const
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{
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// Container type tests in addition to expression types
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// Insert and erase
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v1.insert_element(0, 0, 55);
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v1.erase_element(1, 1);
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v1.clear();
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}
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template <class MP>
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void test_expression_with(MP& m1, MP& m2, MP& m3) const
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{
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value_type t;
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// Default Construct
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default_construct<MP>::test();
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// Copy and swap
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initialize_matrix(m1);
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initialize_matrix(m2);
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m1 = m2;
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std::cout << "m1 = m2 = " << m1 << std::endl;
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m1.assign_temporary(m2);
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std::cout << "m1.assign_temporary (m2) = " << m1 << std::endl;
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m1.swap(m2);
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std::cout << "m1.swap (m2) = " << m1 << " " << m2 << std::endl;
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// Zero assignment
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m1 = ublas::zero_matrix<>(m1.size1(), m1.size2());
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std::cout << "m1.zero_matrix = " << m1 << std::endl;
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m1 = m2;
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#ifndef BOOST_NO_FUNCTION_TEMPLATE_ORDERING
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// Project range and slice
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initialize_matrix(m1);
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initialize_matrix(m2);
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project(m1, ublas::range(0, 1), ublas::range(0, 1)) = project(m2, ublas::range(0, 1), ublas::range(0, 1));
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project(m1, ublas::range(0, 1), ublas::range(0, 1)) = project(m2, ublas::slice(0, 1, 1), ublas::slice(0, 1, 1));
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project(m1, ublas::slice(2, -1, 2), ublas::slice(2, -1, 2)) = project(m2, ublas::slice(0, 1, 2), ublas::slice(0, 1, 2));
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project(m1, ublas::slice(2, -1, 2), ublas::slice(2, -1, 2)) = project(m2, ublas::range(0, 2), ublas::range(0, 2));
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std::cout << "m1 = range/slice " << m1 << std::endl;
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#endif
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// Unary matrix operations resulting in a matrix
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initialize_matrix(m1);
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m2 = -m1;
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std::cout << "- m1 = " << m2 << std::endl;
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m2 = ublas::conj(m1);
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std::cout << "conj (m1) = " << m2 << std::endl;
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// Binary matrix operations resulting in a matrix
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initialize_matrix(m1);
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initialize_matrix(m2);
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m3 = m1 + m2;
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std::cout << "m1 + m2 = " << m3 << std::endl;
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m3 = m1 - m2;
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std::cout << "m1 - m2 = " << m3 << std::endl;
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m3 = ublas::element_prod(m1, m2);
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std::cout << "element_prod (m1, m2) = " << m3 << std::endl;
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// Scaling a matrix
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t = N;
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initialize_matrix(m1);
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m2 = value_type(1.) * m1;
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std::cout << "1. * m1 = " << m2 << std::endl;
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m2 = t * m1;
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std::cout << "N * m1 = " << m2 << std::endl;
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initialize_matrix(m1);
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m2 = m1 * value_type(1.);
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std::cout << "m1 * 1. = " << m2 << std::endl;
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m2 = m1 * t;
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std::cout << "m1 * N = " << m2 << std::endl;
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// Some assignments
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initialize_matrix(m1);
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initialize_matrix(m2);
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m2 += m1;
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std::cout << "m2 += m1 = " << m2 << std::endl;
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m2 -= m1;
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std::cout << "m2 -= m1 = " << m2 << std::endl;
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m2 = m2 + m1;
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std::cout << "m2 = m2 + m1 = " << m2 << std::endl;
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m2 = m2 - m1;
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std::cout << "m2 = m2 - m1 = " << m2 << std::endl;
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m1 *= value_type(1.);
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std::cout << "m1 *= 1. = " << m1 << std::endl;
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m1 *= t;
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std::cout << "m1 *= N = " << m1 << std::endl;
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// Transpose
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initialize_matrix(m1);
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m2 = ublas::trans(m1);
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std::cout << "trans (m1) = " << m2 << std::endl;
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// Hermitean
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initialize_matrix(m1);
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m2 = ublas::herm(m1);
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std::cout << "herm (m1) = " << m2 << std::endl;
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// Matrix multiplication
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initialize_matrix(m1);
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initialize_matrix(m2);
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m3 = ublas::prod(m1, m2);
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std::cout << "prod (m1, m2) = " << m3 << std::endl;
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}
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void operator()() const
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{
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M m1(N, N), m2(N, N), m3(N, N);
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test_expression_with(m1, m2, m3);
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test_container_with(m1);
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#ifdef USE_RANGE
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ublas::matrix_range<M> mr1(m1, ublas::range(0, N), ublas::range(0, N)),
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mr2(m2, ublas::range(0, N), ublas::range(0, N)),
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mr3(m3, ublas::range(0, N), ublas::range(0, N));
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test_expression_with(mr1, mr2, mr3);
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#endif
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#ifdef USE_SLICE
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ublas::matrix_slice<M> ms1(m1, ublas::slice(0, 1, N), ublas::slice(0, 1, N)),
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ms2(m2, ublas::slice(0, 1, N), ublas::slice(0, 1, N)),
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ms3(m3, ublas::slice(0, 1, N), ublas::slice(0, 1, N));
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test_expression_with(ms1, ms2, ms3);
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#endif
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}
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};
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// Test matrix
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void test_matrix()
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{
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std::cout << "test_matrix" << std::endl;
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#ifdef USE_MATRIX
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#ifdef USE_BOUNDED_ARRAY
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#ifdef USE_FLOAT
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std::cout << "mp_test_type, bounded_array" << std::endl;
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test_my_matrix<ublas::matrix<mp_test_type, ublas::row_major, ublas::bounded_array<mp_test_type, 3 * 3> >, 3>()();
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#endif
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#ifdef USE_DOUBLE
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std::cout << "double, bounded_array" << std::endl;
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test_my_matrix<ublas::matrix<double, ublas::row_major, ublas::bounded_array<double, 3 * 3> >, 3>()();
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#endif
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#ifdef USE_STD_COMPLEX
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#ifdef USE_FLOAT
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std::cout << "std::complex<mp_test_type>, bounded_array" << std::endl;
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test_my_matrix<ublas::matrix<std::complex<mp_test_type>, ublas::row_major, ublas::bounded_array<std::complex<mp_test_type>, 3 * 3> >, 3>()();
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#endif
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#ifdef USE_DOUBLE
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std::cout << "std::complex<double>, bounded_array" << std::endl;
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test_my_matrix<ublas::matrix<std::complex<double>, ublas::row_major, ublas::bounded_array<std::complex<double>, 3 * 3> >, 3>()();
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#endif
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#endif
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#endif
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#ifdef USE_UNBOUNDED_ARRAY
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#ifdef USE_FLOAT
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std::cout << "mp_test_type, unbounded_array" << std::endl;
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test_my_matrix<ublas::matrix<mp_test_type, ublas::row_major, ublas::unbounded_array<mp_test_type> >, 3>()();
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#endif
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#ifdef USE_DOUBLE
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std::cout << "double, unbounded_array" << std::endl;
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test_my_matrix<ublas::matrix<double, ublas::row_major, ublas::unbounded_array<double> >, 3>()();
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#endif
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#ifdef USE_STD_COMPLEX
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#ifdef USE_FLOAT
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std::cout << "std::complex<mp_test_type>, unbounded_array" << std::endl;
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test_my_matrix<ublas::matrix<std::complex<mp_test_type>, ublas::row_major, ublas::unbounded_array<std::complex<mp_test_type> > >, 3>()();
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#endif
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#ifdef USE_DOUBLE
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std::cout << "std::complex<double>, unbounded_array" << std::endl;
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test_my_matrix<ublas::matrix<std::complex<double>, ublas::row_major, ublas::unbounded_array<std::complex<double> > >, 3>()();
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#endif
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#endif
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#endif
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#ifdef USE_STD_VECTOR
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#ifdef USE_FLOAT
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std::cout << "mp_test_type, std::vector" << std::endl;
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test_my_matrix<ublas::matrix<mp_test_type, ublas::row_major, std::vector<mp_test_type> >, 3>()();
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#endif
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#ifdef USE_DOUBLE
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std::cout << "double, std::vector" << std::endl;
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test_my_matrix<ublas::matrix<double, ublas::row_major, std::vector<double> >, 3>()();
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#endif
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#ifdef USE_STD_COMPLEX
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#ifdef USE_FLOAT
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std::cout << "std::complex<mp_test_type>, std::vector" << std::endl;
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test_my_matrix<ublas::matrix<std::complex<mp_test_type>, ublas::row_major, std::vector<std::complex<mp_test_type> > >, 3>()();
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#endif
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#ifdef USE_DOUBLE
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std::cout << "std::complex<double>, std::vector" << std::endl;
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test_my_matrix<ublas::matrix<std::complex<double>, ublas::row_major, std::vector<std::complex<double> > >, 3>()();
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#endif
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#endif
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#endif
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#endif
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#ifdef USE_BOUNDED_MATRIX
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#ifdef USE_FLOAT
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std::cout << "mp_test_type, bounded" << std::endl;
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test_my_matrix<ublas::bounded_matrix<mp_test_type, 3, 3>, 3>()();
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#endif
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#ifdef USE_DOUBLE
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std::cout << "double, bounded" << std::endl;
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test_my_matrix<ublas::bounded_matrix<double, 3, 3>, 3>()();
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#endif
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#ifdef USE_STD_COMPLEX
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#ifdef USE_FLOAT
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std::cout << "std::complex<mp_test_type>, bounded" << std::endl;
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test_my_matrix<ublas::bounded_matrix<std::complex<mp_test_type>, 3, 3>, 3>()();
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#endif
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#ifdef USE_DOUBLE
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std::cout << "std::complex<double>, bounded" << std::endl;
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test_my_matrix<ublas::bounded_matrix<std::complex<double>, 3, 3>, 3>()();
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#endif
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#endif
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#endif
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#ifdef USE_VECTOR_OF_VECTOR
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#ifdef USE_BOUNDED_ARRAY
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#ifdef USE_FLOAT
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std::cout << "mp_test_type, bounded_array" << std::endl;
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test_my_matrix<ublas::vector_of_vector<mp_test_type, ublas::row_major, ublas::bounded_array<ublas::bounded_array<mp_test_type, 3>, 3 + 1> >, 3>()();
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#endif
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#ifdef USE_DOUBLE
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std::cout << "double, bounded_array" << std::endl;
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test_my_matrix<ublas::vector_of_vector<double, ublas::row_major, ublas::bounded_array<ublas::bounded_array<double, 3>, 3 + 1> >, 3>()();
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#endif
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#ifdef USE_STD_COMPLEX
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#ifdef USE_FLOAT
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std::cout << "std::complex<mp_test_type>, bounded_array" << std::endl;
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test_my_matrix<ublas::vector_of_vector<std::complex<mp_test_type>, ublas::row_major, ublas::bounded_array<ublas::bounded_array<std::complex<mp_test_type>, 3>, 3 + 1> >, 3>()();
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#endif
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#ifdef USE_DOUBLE
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std::cout << "std::complex<double>, bounded_array" << std::endl;
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test_my_matrix<ublas::vector_of_vector<std::complex<double>, ublas::row_major, ublas::bounded_array<ublas::bounded_array<std::complex<double>, 3>, 3 + 1> >, 3>()();
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#endif
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#endif
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#endif
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#ifdef USE_UNBOUNDED_ARRAY
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#ifdef USE_FLOAT
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std::cout << "mp_test_type, unbounded_array" << std::endl;
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test_my_matrix<ublas::vector_of_vector<mp_test_type, ublas::row_major, ublas::unbounded_array<ublas::unbounded_array<mp_test_type> > >, 3>()();
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#endif
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#ifdef USE_DOUBLE
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std::cout << "double, unbounded_array" << std::endl;
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test_my_matrix<ublas::vector_of_vector<double, ublas::row_major, ublas::unbounded_array<ublas::unbounded_array<double> > >, 3>()();
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#endif
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#ifdef USE_STD_COMPLEX
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#ifdef USE_FLOAT
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std::cout << "std::complex<mp_test_type>, unbounded_array" << std::endl;
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test_my_matrix<ublas::vector_of_vector<std::complex<mp_test_type>, ublas::row_major, ublas::unbounded_array<ublas::unbounded_array<std::complex<mp_test_type> > > >, 3>()();
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#endif
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#ifdef USE_DOUBLE
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std::cout << "std::complex<double>, unbounded_array" << std::endl;
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test_my_matrix<ublas::vector_of_vector<std::complex<double>, ublas::row_major, ublas::unbounded_array<ublas::unbounded_array<std::complex<double> > > >, 3>()();
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#endif
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#endif
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#endif
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#ifdef USE_STD_VECTOR
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#ifdef USE_FLOAT
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std::cout << "mp_test_type, std::vector" << std::endl;
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test_my_matrix<ublas::vector_of_vector<mp_test_type, ublas::row_major, std::vector<std::vector<mp_test_type> > >, 3>()();
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#endif
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#ifdef USE_DOUBLE
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std::cout << "double, std::vector" << std::endl;
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test_my_matrix<ublas::vector_of_vector<double, ublas::row_major, std::vector<std::vector<double> > >, 3>()();
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#endif
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#ifdef USE_STD_COMPLEX
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#ifdef USE_FLOAT
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std::cout << "std::complex<mp_test_type>, std::vector" << std::endl;
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test_my_matrix<ublas::vector_of_vector<std::complex<mp_test_type>, ublas::row_major, std::vector<std::vector<std::complex<mp_test_type> > > >, 3>()();
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#endif
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#ifdef USE_DOUBLE
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std::cout << "std::complex<double>, std::vector" << std::endl;
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test_my_matrix<ublas::vector_of_vector<std::complex<double>, ublas::row_major, std::vector<std::vector<std::complex<double> > > >, 3>()();
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#endif
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#endif
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#endif
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#endif
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}
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