185 lines
5.6 KiB
C++
185 lines
5.6 KiB
C++
///////////////////////////////////////////////////////////////
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// Copyright 2012 John Maddock. Distributed under the Boost
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// Software License, Version 1.0. (See accompanying file
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// LICENSE_1_0.txt or copy at https://www.boost.org/LICENSE_1_0.txt
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#ifdef _MSC_VER
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#define _SCL_SECURE_NO_WARNINGS
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#endif
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#include <boost/multiprecision/cpp_int.hpp>
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#include <boost/random/mersenne_twister.hpp>
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#include <boost/random/uniform_int.hpp>
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#include "test.hpp"
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#if defined(HAS_GMP)
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#include <boost/multiprecision/gmp.hpp>
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#endif
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#if defined(HAS_MPFR)
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#include <boost/multiprecision/mpfr.hpp>
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#endif
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#if defined(HAS_MPFI)
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#include <boost/multiprecision/mpfi.hpp>
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#endif
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#ifdef HAS_TOMMATH
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#include <boost/multiprecision/tommath.hpp>
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#endif
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#ifdef HAS_FLOAT128
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#include <boost/multiprecision/float128.hpp>
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#endif
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#include <boost/multiprecision/cpp_bin_float.hpp>
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#include <boost/multiprecision/cpp_dec_float.hpp>
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using namespace boost::multiprecision;
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#ifdef BOOST_MSVC
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#pragma warning(disable : 4127)
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#endif
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template <class T>
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T generate_random()
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{
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typedef int e_type;
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static boost::random::mt19937 gen;
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T val = gen();
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T prev_val = -1;
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while (val != prev_val)
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{
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val *= (gen.max)();
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prev_val = val;
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val += gen();
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}
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e_type e;
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val = frexp(val, &e);
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static boost::random::uniform_int_distribution<e_type> ui(-20, 20);
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return ldexp(val, ui(gen));
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}
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template <class From, class To>
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void test_convert_neg_int(From from, const boost::mpl::true_&)
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{
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from = -from;
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To t3(from);
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To t4 = from.template convert_to<To>();
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BOOST_CHECK_EQUAL(From(trunc(from)), From(t3));
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BOOST_CHECK_EQUAL(From(trunc(from)), From(t4));
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}
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template <class From, class To>
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void test_convert_neg_int(From const&, const boost::mpl::false_&)
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{
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}
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template <class From, class To>
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void test_convert_imp(boost::mpl::int_<number_kind_floating_point> const&, boost::mpl::int_<number_kind_integer> const&)
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{
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for (unsigned i = 0; i < 100; ++i)
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{
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From from = generate_random<From>();
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To t1(from);
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To t2 = from.template convert_to<To>();
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BOOST_CHECK_EQUAL(From(trunc(from)), From(t1));
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BOOST_CHECK_EQUAL(From(trunc(from)), From(t2));
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test_convert_neg_int<From, To>(from, boost::mpl::bool_ < std::numeric_limits<From>::is_signed && std::numeric_limits<To>::is_signed > ());
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}
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}
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template <class From, class To>
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void test_convert_neg_rat(From from, const boost::mpl::true_&)
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{
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from = -from;
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To t3(from);
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To t4 = from.template convert_to<To>();
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From tol = std::numeric_limits<From>::epsilon();
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BOOST_CHECK_CLOSE_FRACTION(From(t3), from, tol);
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BOOST_CHECK_CLOSE_FRACTION(From(t4), from, tol);
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}
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template <class From, class To>
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void test_convert_rat_int(From const&, const boost::mpl::false_&)
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{
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}
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template <class From, class To>
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void test_convert_imp(boost::mpl::int_<number_kind_floating_point> const&, boost::mpl::int_<number_kind_rational> const&)
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{
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for (unsigned i = 0; i < 100; ++i)
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{
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From from = generate_random<From>();
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To t1(from);
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To t2 = from.template convert_to<To>();
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From tol = std::numeric_limits<From>::epsilon();
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BOOST_CHECK_CLOSE_FRACTION(From(t1), from, tol);
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BOOST_CHECK_CLOSE_FRACTION(From(t2), from, tol);
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test_convert_neg_rat<From, To>(from, boost::mpl::bool_ < std::numeric_limits<From>::is_signed && std::numeric_limits<To>::is_signed > ());
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}
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}
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template <class From, class To>
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void test_convert_neg_float(From from, const boost::mpl::true_&)
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{
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from = -from;
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To t3(from);
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To t4 = from.template convert_to<To>();
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To answer(from.str());
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To tol = (std::max)(std::numeric_limits<To>::epsilon(), To(std::numeric_limits<From>::epsilon())) * 2;
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BOOST_CHECK_CLOSE_FRACTION(t3, answer, tol);
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BOOST_CHECK_CLOSE_FRACTION(t4, answer, tol);
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}
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template <class From, class To>
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void test_convert_neg_float(From const&, const boost::mpl::false_&)
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{
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}
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template <class From, class To>
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void test_convert_imp(boost::mpl::int_<number_kind_floating_point> const&, boost::mpl::int_<number_kind_floating_point> const&)
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{
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for (unsigned i = 0; i < 100; ++i)
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{
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From from = generate_random<From>();
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To t1(from);
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To t2 = from.template convert_to<To>();
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To answer(from.str());
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To tol = (std::max)(std::numeric_limits<To>::epsilon(), To(std::numeric_limits<From>::epsilon())) * 2;
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BOOST_CHECK_CLOSE_FRACTION(t1, answer, tol);
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BOOST_CHECK_CLOSE_FRACTION(t2, answer, tol);
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test_convert_neg_float<From, To>(from, boost::mpl::bool_ < std::numeric_limits<From>::is_signed && std::numeric_limits<To>::is_signed > ());
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}
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}
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template <class From, class To>
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void test_convert()
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{
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test_convert_imp<From, To>(typename number_category<From>::type(), typename number_category<To>::type());
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}
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int main()
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{
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test_convert<cpp_dec_float_50, cpp_int>();
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test_convert<cpp_dec_float_50, int128_t>();
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test_convert<cpp_dec_float_50, uint128_t>();
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test_convert<cpp_dec_float_50, cpp_rational>();
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test_convert<cpp_dec_float_50, cpp_bin_float_50>();
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#if defined(HAS_GMP)
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test_convert<cpp_dec_float_50, mpz_int>();
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test_convert<cpp_dec_float_50, mpq_rational>();
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test_convert<cpp_dec_float_50, mpf_float_50>();
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#endif
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#if defined(HAS_MPFR)
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test_convert<cpp_dec_float_50, mpfr_float_50>();
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#endif
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#if defined(HAS_MPFI)
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test_convert<cpp_dec_float_50, mpfi_float_50>();
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#endif
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#ifdef HAS_TOMMATH
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test_convert<cpp_dec_float_50, tom_int>();
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test_convert<cpp_dec_float_50, tom_rational>();
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#endif
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#ifdef HAS_FLOAT128
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test_convert<cpp_dec_float_50, float128>();
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#endif
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return boost::report_errors();
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}
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