safe_numerics/test/test_checked_multiply_constexpr.cpp
Robert Ramey 56e08ca37d address misc errors which are only showing with clang
specify template stack depth
2018-12-11 15:48:55 -08:00

100 lines
2.7 KiB
C++

// Copyright (c) 2018 Robert Ramey
//
// 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 <boost/safe_numerics/checked_result.hpp>
#include <boost/safe_numerics/checked_result_operations.hpp>
#include <boost/safe_numerics/checked_integer.hpp>
template<class T>
constexpr bool test_checked_multiply(
T v1,
T v2,
char expected_result
){
using namespace boost::safe_numerics;
const T result = v1 * v2;
switch(expected_result){
case '0':
case '.':
if(result.exception()){
return false;
}
if(expected_result == '0'
&& result != T(0)
){
return false;
}
return true;
case '-':
return safe_numerics_error::negative_overflow_error == result.m_e;
case '+':
return safe_numerics_error::positive_overflow_error == result.m_e;
case '!':
return safe_numerics_error::range_error == result.m_e;
}
return false;
}
#include "test_checked_multiply.hpp"
template<typename T, typename First, typename Second>
struct test_signed_pair {
static const std::size_t i = First();
static const std::size_t j = Second();
// note: is constexpr really required here? compilers disagree!
constexpr static const bool value = test_checked_multiply(
signed_values<T>[i],
signed_values<T>[j],
signed_multiplication_results[i][j]
);
};
template<typename T, typename First, typename Second>
struct test_unsigned_pair {
static const std::size_t i = First();
static const std::size_t j = Second();
// note: is constexpr really required here? compilers disagree!
constexpr static const bool value = test_checked_multiply(
unsigned_values<T>[i],
unsigned_values<T>[j],
unsigned_multiplication_results[i][j]
);
};
#include "check_symmetry.hpp"
#include <boost/mp11/algorithm.hpp>
int main(){
using namespace boost::mp11;
check_symmetry(signed_multiplication_results);
check_symmetry(unsigned_multiplication_results);
static_assert(
mp_all_of<
mp_product<
test_signed_pair,
signed_test_types,
signed_value_indices, signed_value_indices
>,
mp_to_bool
>(),
"all values for all signed types correctly multiplied"
);
static_assert(
mp_all_of<
mp_product<
test_unsigned_pair,
unsigned_test_types,
unsigned_value_indices, unsigned_value_indices
>,
mp_to_bool
>(),
"all values for all unsigned types correctly multiplied"
);
return 0;
}