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boost_endian/test/endian_operations_test.cpp
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// endian_operations_test.cpp ----------------------------------------------//
// Copyright Beman Dawes 2008
// Distributed under the Boost Software License, Version 1.0. (See accompanying
// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
// See library home page at http://www.boost.org/libs/endian
//----------------------------------------------------------------------------//
// This test probes operator overloading, including interaction between
// operand types.
// See endian_test for tests of endianess correctness, size, and value.
//----------------------------------------------------------------------------//
#define BOOST_ENDIAN_LOG
#include <boost/endian/detail/disable_warnings.hpp>
#ifdef _MSC_VER
# pragma warning( disable : 4242 ) // conversion ..., possible loss of data
# pragma warning( disable : 4244 ) // conversion ..., possible loss of data
# pragma warning( disable : 4018 ) // signed/unsigned mismatch
# pragma warning( disable : 4365 ) // signed/unsigned mismatch
# pragma warning( disable : 4389 ) // signed/unsigned mismatch
#endif
#include <boost/endian/integers.hpp>
#include <boost/detail/lightweight_main.hpp>
#include <cassert>
#include <iostream>
namespace be = boost::endian;
template <class T1, class T2>
struct default_construct
{
static void test()
{
T1 o1;
o1 = 1; // quiet warnings
if (o1) return; // quiet warnings
}
};
template <class T1, class T2>
struct construct
{
static void test()
{
T2 o2(1);
T1 o1(o2);
++o1; // quiet gcc unused variable warning
}
};
template <class T1, class T2>
struct initialize
{
static void test()
{
T1 o2(2);
T1 o1 = o2;
++o1; // quiet gcc unused variable warning
}
};
template <class T1, class T2>
struct assign
{
static void test()
{
T2 o2;
o2 = 1;
T1 o1;
o1 = o2;
if (o1) return; // quiet warnings
}
};
template <class T1, class T2>
struct relational
{
static void test()
{
T1 o1(1);
T2 o2(2);
if ( o1 == o2 ) return;
if ( o1 != o2 ) return;
if ( o1 < o2 ) return;
if ( o1 <= o2 ) return;
if ( o1 > o2 ) return;
if ( o1 >= o2 ) return;
}
};
template <class T1, class T2>
struct op_plus
{
static void test()
{
T1 o1(1);
T2 o2(2);
T1 o3;
o3 = +o1;
o3 = o1 + o2;
o1 += o2;
if (o3) return; // quiet warnings
}
};
template <class T1, class T2>
struct op_star
{
static void test()
{
T1 o1(1);
T2 o2(2);
T1 o3;
o3 = o1 * o2;
o1 *= o2;
if (o3) return; // quiet warnings
}
};
template <template<class, class> class Test, class T1>
void op_test_aux()
{
#ifdef BOOST_SHORT_ENDIAN_TEST
Test<T1, int>::test();
Test<T1, unsigned int>::test();
Test<T1, be::big16_t>::test();
Test<T1, be::ubig64_t>::test();
#else
Test<T1, char>::test();
Test<T1, unsigned char>::test();
Test<T1, signed char>::test();
Test<T1, short>::test();
Test<T1, unsigned short>::test();
Test<T1, int>::test();
Test<T1, unsigned int>::test();
Test<T1, long>::test();
Test<T1, unsigned long>::test();
Test<T1, long long>::test();
Test<T1, unsigned long long>::test();
Test<T1, be::big8_t>::test();
Test<T1, be::big16_t>::test();
Test<T1, be::big24_t>::test();
Test<T1, be::big32_t>::test();
Test<T1, be::big40_t>::test();
Test<T1, be::big48_t>::test();
Test<T1, be::big56_t>::test();
Test<T1, be::big64_t>::test();
Test<T1, be::ubig8_t>::test();
Test<T1, be::ubig16_t>::test();
Test<T1, be::ubig24_t>::test();
Test<T1, be::ubig32_t>::test();
Test<T1, be::ubig40_t>::test();
Test<T1, be::ubig48_t>::test();
Test<T1, be::ubig56_t>::test();
Test<T1, be::ubig64_t>::test();
Test<T1, be::little8_t>::test();
Test<T1, be::little16_t>::test();
Test<T1, be::little24_t>::test();
Test<T1, be::little32_t>::test();
Test<T1, be::little40_t>::test();
Test<T1, be::little48_t>::test();
Test<T1, be::little56_t>::test();
Test<T1, be::little64_t>::test();
Test<T1, be::ulittle8_t>::test();
Test<T1, be::ulittle16_t>::test();
Test<T1, be::ulittle24_t>::test();
Test<T1, be::ulittle32_t>::test();
Test<T1, be::ulittle40_t>::test();
Test<T1, be::ulittle48_t>::test();
Test<T1, be::ulittle56_t>::test();
Test<T1, be::ulittle64_t>::test();
Test<T1, be::native8_t>::test();
Test<T1, be::native16_t>::test();
Test<T1, be::native24_t>::test();
Test<T1, be::native32_t>::test();
Test<T1, be::native40_t>::test();
Test<T1, be::native48_t>::test();
Test<T1, be::native56_t>::test();
Test<T1, be::native64_t>::test();
Test<T1, be::unative8_t>::test();
Test<T1, be::unative16_t>::test();
Test<T1, be::unative24_t>::test();
Test<T1, be::unative32_t>::test();
Test<T1, be::unative40_t>::test();
Test<T1, be::unative48_t>::test();
Test<T1, be::unative56_t>::test();
Test<T1, be::unative64_t>::test();
#endif
}
template <template<class, class> class Test>
void op_test()
{
#ifdef BOOST_SHORT_ENDIAN_TEST
op_test_aux<Test, unsigned short>();
op_test_aux<Test, int>();
op_test_aux<Test, be::big32_t>();
op_test_aux<Test, be::ubig32_t>();
op_test_aux<Test, be::little48_t>();
#else
op_test_aux<Test, char>();
op_test_aux<Test, unsigned char>();
op_test_aux<Test, signed char>();
op_test_aux<Test, short>();
op_test_aux<Test, unsigned short>();
op_test_aux<Test, int>();
op_test_aux<Test, unsigned int>();
op_test_aux<Test, long>();
op_test_aux<Test, unsigned long>();
op_test_aux<Test, long long>();
op_test_aux<Test, unsigned long long>();
op_test_aux<Test, be::big8_t>();
op_test_aux<Test, be::big16_t>();
op_test_aux<Test, be::big24_t>();
op_test_aux<Test, be::big32_t>();
op_test_aux<Test, be::big40_t>();
op_test_aux<Test, be::big48_t>();
op_test_aux<Test, be::big56_t>();
op_test_aux<Test, be::big64_t>();
op_test_aux<Test, be::ubig8_t>();
op_test_aux<Test, be::ubig16_t>();
op_test_aux<Test, be::ubig24_t>();
op_test_aux<Test, be::ubig32_t>();
op_test_aux<Test, be::ubig40_t>();
op_test_aux<Test, be::ubig48_t>();
op_test_aux<Test, be::ubig56_t>();
op_test_aux<Test, be::ubig64_t>();
op_test_aux<Test, be::little8_t>();
op_test_aux<Test, be::little16_t>();
op_test_aux<Test, be::little24_t>();
op_test_aux<Test, be::little32_t>();
op_test_aux<Test, be::little40_t>();
op_test_aux<Test, be::little48_t>();
op_test_aux<Test, be::little56_t>();
op_test_aux<Test, be::little64_t>();
op_test_aux<Test, be::ulittle8_t>();
op_test_aux<Test, be::ulittle16_t>();
op_test_aux<Test, be::ulittle24_t>();
op_test_aux<Test, be::ulittle32_t>();
op_test_aux<Test, be::ulittle40_t>();
op_test_aux<Test, be::ulittle48_t>();
op_test_aux<Test, be::ulittle56_t>();
op_test_aux<Test, be::ulittle64_t>();
op_test_aux<Test, be::native8_t>();
op_test_aux<Test, be::native16_t>();
op_test_aux<Test, be::native24_t>();
op_test_aux<Test, be::native32_t>();
op_test_aux<Test, be::native40_t>();
op_test_aux<Test, be::native48_t>();
op_test_aux<Test, be::native56_t>();
op_test_aux<Test, be::native64_t>();
op_test_aux<Test, be::unative8_t>();
op_test_aux<Test, be::unative16_t>();
op_test_aux<Test, be::unative24_t>();
op_test_aux<Test, be::unative32_t>();
op_test_aux<Test, be::unative40_t>();
op_test_aux<Test, be::unative48_t>();
op_test_aux<Test, be::unative56_t>();
op_test_aux<Test, be::unative64_t>();
#endif
}
// main ------------------------------------------------------------------------------//
int cpp_main(int, char * [])
{
be::endian_log = false;
// make sure some simple things work
be::big32_t o1(1);
be::big32_t o2(2L);
be::big32_t o3(3LL);
be::big64_t o4(1);
// use cases; if BOOST_ENDIAN_LOG is defined, will output to clog info on
// what overloads and conversions are actually being performed.
be::endian_log = true;
std::clog << "set up test values\n";
be::big32_t big(12345);
be::ulittle16_t ulittle(10);
be::big64_t result;
std::clog << "\nresult = +big\n";
result = +big;
std::clog << "\nresult = -big\n";
result = -big;
std::clog << "\n++big\n";
++big;
std::clog << "\nresult = big++\n";
result = big++;
std::clog << "\n--big\n";
--big;
std::clog << "\nbig--\n";
big--;
std::clog << "\nresult = big * big\n";
result = big * big;
std::clog << "\nresult = big * big\n";
result = big * big;
std::clog << "\nresult = big * ulittle\n";
result = big * ulittle;
std::clog << "\nbig *= ulittle\n";
big *= ulittle;
std::clog << "\nresult = ulittle * big\n";
result = ulittle * big;
std::clog << "\nresult = big * 5\n";
result = big * 5;
std::clog << "\nbig *= 5\n";
big *= 5;
std::clog << "\nresult = 5 * big\n";
result = 5 * big;
std::clog << "\nresult = ulittle * 5\n";
result = ulittle * 5;
std::clog << "\nresult = 5 * ulittle\n";
result = 5 * ulittle;
std::clog << "\nresult = 5 * 10\n";
result = 5 * 10;
std::clog << "\n";
be::endian_log = false;
// test from Roland Schwarz that detected ambiguities
unsigned u;
be::ulittle32_t u1;
be::ulittle32_t u2;
u = 1;
u1 = 1;
u2 = u1 + u;
// one more wrinkle
be::ulittle16_t u3(3);
u3 = 3;
u2 = u1 + u3;
// perform the indicated test on ~60*60 operand types
op_test<default_construct>();
op_test<construct>(); // includes copy construction
op_test<initialize>();
op_test<assign>();
op_test<relational>();
op_test<op_plus>();
op_test<op_star>();
return 0;
}