blob: b538225db756add6ae7e153d2cac33d1b0f5f04f [file] [log] [blame]
/*=============================================================================
Copyright (c) 2001-2007 Joel de Guzman
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)
==============================================================================*/
#include <string>
#include <boost/detail/lightweight_test.hpp>
#include <boost/spirit/include/phoenix_core.hpp>
#include <boost/spirit/include/phoenix_operator.hpp>
using namespace boost::phoenix;
using namespace boost::phoenix::arg_names;
using namespace std;
int
main()
{
{ // From Phoenix 1.1 binary tests
int i2 = 2, i3 = 3, i = 5;
const char* world = " world";
BOOST_TEST((ref(i) = ref(i))() == 5);
BOOST_TEST((ref(i) = 3)() == 3);
BOOST_TEST(i == 3);
i = 5;
int x, y, z;
(ref(x) = ref(y) = ref(z) = 10)();
BOOST_TEST(x == 10 && y == 10 && z == 10);
BOOST_TEST((val(world)[3])() == world[3]);
BOOST_TEST((ref(i) += 5)() == 10);
BOOST_TEST((ref(i) -= 5)() == 5);
BOOST_TEST((ref(i) *= 5)() == 25);
BOOST_TEST((ref(i) /= 5)() == 5);
BOOST_TEST((ref(i) %= 2)() == 1);
BOOST_TEST((ref(i) <<= 3)() == 8);
BOOST_TEST((ref(i) >>= 1)() == 4);
BOOST_TEST((ref(i) |= 0xFF)() == 0xFF);
BOOST_TEST((ref(i) &= 0xF0)() == 0xF0);
BOOST_TEST((ref(i) ^= 0xFFFFFFFF)() == int(0xFFFFFF0F));
BOOST_TEST((val(5) == val(5))());
BOOST_TEST((val(5) == 5)());
BOOST_TEST((arg1 + arg2)(i2, i3) == i2 + i3);
BOOST_TEST((arg1 - arg2)(i2, i3) == i2 - i3);
BOOST_TEST((arg1 * arg2)(i2, i3) == i2 * i3);
BOOST_TEST((arg1 / arg2)(i2, i3) == i2 / i3);
BOOST_TEST((arg1 % arg2)(i2, i3) == i2 % i3);
BOOST_TEST((arg1 & arg2)(i2, i3) == (i2 & i3));
BOOST_TEST((arg1 | arg2)(i2, i3) == (i2 | i3));
BOOST_TEST((arg1 ^ arg2)(i2, i3) == (i2 ^ i3));
BOOST_TEST((arg1 << arg2)(i2, i3) == i2 << i3);
BOOST_TEST((arg1 >> arg2)(i2, i3) == i2 >> i3);
BOOST_TEST((val(5) != val(6))());
BOOST_TEST((val(5) < val(6))());
BOOST_TEST(!(val(5) > val(6))());
BOOST_TEST((val(5) < val(6))());
BOOST_TEST((val(5) <= val(6))());
BOOST_TEST((val(5) <= val(5))());
BOOST_TEST((val(7) >= val(6))());
BOOST_TEST((val(7) >= val(7))());
BOOST_TEST((val(false) && val(false))() == false);
BOOST_TEST((val(true) && val(false))() == false);
BOOST_TEST((val(false) && val(true))() == false);
BOOST_TEST((val(true) && val(true))() == true);
BOOST_TEST((val(false) || val(false))() == false);
BOOST_TEST((val(true) || val(false))() == true);
BOOST_TEST((val(false) || val(true))() == true);
BOOST_TEST((val(true) || val(true))() == true);
}
{ // From Phoenix 1.1 mixed_binary tests
int i1 = 1, i2 = 2, i50 = 50, i100 = 100;
double d2_5 = 2.5;
string hello = "hello";
const char* world = " world";
BOOST_TEST((arg1 + arg2)(i100, i50) == (i100 + i50));
BOOST_TEST((arg1 + 3)(i100) == (3 + i100));
BOOST_TEST((arg1 + arg2)(hello, world) == "hello world");
BOOST_TEST((arg1 + arg2)(i1, d2_5) == (i1 + d2_5));
BOOST_TEST((*(arg1 + arg2))(world, i2) == *(world + i2));
BOOST_TEST((*(arg1 + arg2))(i2, world) == *(i2 + world));
BOOST_TEST((*(val(world+i2) - arg1))(i2) == *world);
}
return boost::report_errors();
}