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										 |  |  | //  (C) Copyright John Maddock 2005. 
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							|  |  |  | //  Use, modification and distribution are subject to the 
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							|  |  |  | //  Boost Software License, Version 1.0. (See accompanying file 
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							|  |  |  | //  LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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							|  |  |  | 
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							|  |  |  | //  See http://www.boost.org/libs/config/test for most recent version.
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							|  |  |  | 
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							|  |  |  | //
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							|  |  |  | // This test prints out informative information about <math.h>, <float.h>
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							|  |  |  | // and <limits>.  Note that this file does require a correctly configured
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							|  |  |  | // Boost setup, and so can't be folded into config_info which is designed
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							|  |  |  | // to function without Boost.Confg support.  Each test is documented in
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							|  |  |  | // more detail below.
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							|  |  |  | //
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							|  |  |  | 
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							|  |  |  | #include <boost/limits.hpp>
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							|  |  |  | #include <limits.h>
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							|  |  |  | #include <math.h>
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							|  |  |  | #include <cmath>
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							|  |  |  | #include <float.h>
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							|  |  |  | #include <iostream>
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							|  |  |  | #include <iomanip>
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							|  |  |  | #include <cstring>
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							|  |  |  | #include <boost/type_traits/alignment_of.hpp>
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							|  |  |  | 
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										 |  |  | #ifdef BOOST_NO_STDC_NAMESPACE
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										 |  |  | namespace std{ using ::strcmp; using ::pow; using ::fabs; using ::sqrt; using ::sin; using ::atan2; } | 
					
						
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										 |  |  | #endif
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							|  |  |  | 
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										 |  |  | static unsigned int indent = 4; | 
					
						
							|  |  |  | static unsigned int width = 40; | 
					
						
							|  |  |  | 
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							|  |  |  | void print_macro(const char* name, const char* value) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  |    // if name == value+1 then then macro is not defined,
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							|  |  |  |    // in which case we don't print anything:
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										 |  |  |    if(0 != std::strcmp(name, value+1)) | 
					
						
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										 |  |  |    { | 
					
						
							|  |  |  |       for(unsigned i = 0; i < indent; ++i) std::cout.put(' '); | 
					
						
							|  |  |  |       std::cout << std::setw(width); | 
					
						
							|  |  |  |       std::cout.setf(std::istream::left, std::istream::adjustfield); | 
					
						
							|  |  |  |       std::cout << name; | 
					
						
							|  |  |  |       if(value[1]) | 
					
						
							|  |  |  |       { | 
					
						
							|  |  |  |          // macro has a value:
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							|  |  |  |          std::cout << value << "\n"; | 
					
						
							|  |  |  |       } | 
					
						
							|  |  |  |       else | 
					
						
							|  |  |  |       { | 
					
						
							|  |  |  |          // macro is defined but has no value:
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							|  |  |  |          std::cout << " [no value]\n"; | 
					
						
							|  |  |  |       } | 
					
						
							|  |  |  |    } | 
					
						
							|  |  |  | } | 
					
						
							|  |  |  | 
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							|  |  |  | #define PRINT_MACRO(X) print_macro(#X, BOOST_STRINGIZE(=X))
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							|  |  |  | 
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							|  |  |  | template <class T> | 
					
						
							|  |  |  | void print_expression(const char* expression, T val) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  |    for(unsigned i = 0; i < indent; ++i) std::cout.put(' '); | 
					
						
							|  |  |  |    std::cout << std::setw(width); | 
					
						
							|  |  |  |    std::cout.setf(std::istream::left, std::istream::adjustfield); | 
					
						
							|  |  |  |    std::cout << std::setprecision(std::numeric_limits<T>::digits10+2); | 
					
						
							|  |  |  |    std::cout << expression << "=" << val << std::endl; | 
					
						
							|  |  |  | } | 
					
						
							|  |  |  | 
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							|  |  |  | #define PRINT_EXPRESSION(E) print_expression(#E, E);
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							|  |  |  | 
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							|  |  |  | 
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							|  |  |  | template <class T> | 
					
						
							|  |  |  | void print_limits(T, const char* name) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  |    //
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							|  |  |  |    // Output general information on numeric_limits, as well as 
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							|  |  |  |    // probing known and supected problems.
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							|  |  |  |    //
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							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~\n" | 
					
						
							|  |  |  |       "std::numeric_limits information for type " << name << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    is_specialized       = " << std::numeric_limits<T>::is_specialized << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    min()                = " << std::setprecision(std::numeric_limits<T>::digits10 + 2) << (std::numeric_limits<T>::min)() << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    max()                = " << std::setprecision(std::numeric_limits<T>::digits10 + 2) << (std::numeric_limits<T>::max)() << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    digits               = " << std::numeric_limits<T>::digits << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    digits10             = " << std::numeric_limits<T>::digits10 << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    is_signed            = " << std::numeric_limits<T>::is_signed << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    is_integer           = " << std::numeric_limits<T>::is_integer << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    is_exact             = " << std::numeric_limits<T>::is_exact << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    radix                = " << std::numeric_limits<T>::radix << std::endl; | 
					
						
							|  |  |  | 
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							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    epsilon()            = " << std::setprecision(std::numeric_limits<T>::digits10 + 2) << (std::numeric_limits<T>::epsilon)() << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    round_error()        = " << std::setprecision(std::numeric_limits<T>::digits10 + 2) << (std::numeric_limits<T>::round_error)() << std::endl; | 
					
						
							|  |  |  | 
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							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    min_exponent         = " << std::numeric_limits<T>::min_exponent << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    min_exponent10       = " << std::numeric_limits<T>::min_exponent10 << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    max_exponent         = " << std::numeric_limits<T>::max_exponent << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    max_exponent10       = " << std::numeric_limits<T>::max_exponent10 << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    has_infinity         = " << std::numeric_limits<T>::has_infinity << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    has_quiet_NaN        = " << std::numeric_limits<T>::has_quiet_NaN << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    has_signaling_NaN    = " << std::numeric_limits<T>::has_signaling_NaN << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    has_denorm           = " << std::numeric_limits<T>::has_denorm << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    has_denorm_loss      = " << std::numeric_limits<T>::has_denorm_loss << std::endl; | 
					
						
							|  |  |  | 
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							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    infinity()           = " << std::setprecision(std::numeric_limits<T>::digits10 + 2) << (std::numeric_limits<T>::infinity)() << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    quiet_NaN()          = " << std::setprecision(std::numeric_limits<T>::digits10 + 2) << (std::numeric_limits<T>::quiet_NaN)() << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    signaling_NaN()      = " << std::setprecision(std::numeric_limits<T>::digits10 + 2) << (std::numeric_limits<T>::signaling_NaN)() << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    denorm_min()         = " << std::setprecision(std::numeric_limits<T>::digits10 + 2) << (std::numeric_limits<T>::denorm_min)() << std::endl; | 
					
						
							|  |  |  |     | 
					
						
							|  |  |  | 
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							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    is_iec559            = " << std::numeric_limits<T>::is_iec559 << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    is_bounded           = " << std::numeric_limits<T>::is_bounded << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    is_modulo            = " << std::numeric_limits<T>::is_modulo << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    traps                = " << std::numeric_limits<T>::traps << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    tinyness_before      = " << std::numeric_limits<T>::tinyness_before << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    round_style          = " << std::numeric_limits<T>::round_style << std::endl << std::endl; | 
					
						
							|  |  |  | 
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							|  |  |  |    if(std::numeric_limits<T>::is_exact == 0) | 
					
						
							|  |  |  |    { | 
					
						
							|  |  |  |       bool r = std::numeric_limits<T>::epsilon() == std::pow(static_cast<T>(std::numeric_limits<T>::radix), 1-std::numeric_limits<T>::digits); | 
					
						
							|  |  |  |       if(r) | 
					
						
							|  |  |  |          std::cout << "Epsilon has sane value of std::pow(std::numeric_limits<T>::radix, 1-std::numeric_limits<T>::digits)." << std::endl; | 
					
						
							|  |  |  |       else | 
					
						
							|  |  |  |          std::cout << "CAUTION: epsilon does not have a sane value." << std::endl; | 
					
						
							|  |  |  |       std::cout << std::endl; | 
					
						
							|  |  |  |    } | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    sizeof(" << name << ") = " << sizeof(T) << std::endl; | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "    alignment_of<" << name << "> = " << boost::alignment_of<T>::value << std::endl << std::endl; | 
					
						
							|  |  |  | } | 
					
						
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										 |  |  | /*
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										 |  |  | template <class T> | 
					
						
							|  |  |  | bool is_same_type(T, T) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  |    return true; | 
					
						
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										 |  |  | }*/ | 
					
						
							|  |  |  | bool is_same_type(float, float) | 
					
						
							|  |  |  | { return true; } | 
					
						
							|  |  |  | bool is_same_type(double, double) | 
					
						
							|  |  |  | { return true; } | 
					
						
							|  |  |  | bool is_same_type(long double, long double) | 
					
						
							|  |  |  | { return true; } | 
					
						
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										 |  |  | template <class T, class U> | 
					
						
							|  |  |  | bool is_same_type(T, U) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  |    return false; | 
					
						
							|  |  |  | } | 
					
						
							|  |  |  | 
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							|  |  |  | //
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							|  |  |  | // We need this to test whether abs has been overloaded for
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							|  |  |  | // the floating point types or not:
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							|  |  |  | //
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							|  |  |  | namespace std{ | 
					
						
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										 |  |  | #if !BOOST_WORKAROUND(BOOST_MSVC, == 1300)
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										 |  |  | template <class T> | 
					
						
							|  |  |  | char abs(T) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  |    return ' '; | 
					
						
							|  |  |  | } | 
					
						
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										 |  |  | #endif
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										 |  |  | } | 
					
						
							|  |  |  | 
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							|  |  |  | 
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							|  |  |  | template <class T> | 
					
						
							|  |  |  | void test_overloads(T, const char* name) | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  |    //
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							|  |  |  |    // Probe known and suspected problems with the std lib Math functions.
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							|  |  |  |    //
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							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~\n" | 
					
						
							|  |  |  |       "Math function overload information for type " << name << std::endl; | 
					
						
							|  |  |  | 
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							|  |  |  |    //
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							|  |  |  |    // Are the math functions overloaded for type T,
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							|  |  |  |    // or do we just get double versions?
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							|  |  |  |    //
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							|  |  |  |    bool r = is_same_type(std::fabs(T(0)), T(0)); | 
					
						
							|  |  |  |    r &= is_same_type(std::sqrt(T(0)), T(0)); | 
					
						
							|  |  |  |    r &= is_same_type(std::sin(T(0)), T(0)); | 
					
						
							|  |  |  |    if(r) | 
					
						
							|  |  |  |       std::cout << "The Math functions are overloaded for type " << name << std::endl; | 
					
						
							|  |  |  |    else | 
					
						
							|  |  |  |       std::cout << "CAUTION: The Math functions are NOT overloaded for type " << name << std::endl; | 
					
						
							|  |  |  | 
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							|  |  |  |    //
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							|  |  |  |    // Check that a few of the functions work OK, we do this because if these
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							|  |  |  |    // are implemented as double precision internally then we can get
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							|  |  |  |    // overflow or underflow when passing arguments of other types.
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							|  |  |  |    //
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							|  |  |  |    r = (std::fabs((std::numeric_limits<T>::max)()) == (std::numeric_limits<T>::max)()); | 
					
						
							|  |  |  |    r &= (std::fabs(-(std::numeric_limits<T>::max)()) == (std::numeric_limits<T>::max)()); | 
					
						
							|  |  |  |    r &= (std::fabs((std::numeric_limits<T>::min)()) == (std::numeric_limits<T>::min)()); | 
					
						
							|  |  |  |    r &= (std::fabs(-(std::numeric_limits<T>::min)()) == (std::numeric_limits<T>::min)()); | 
					
						
							|  |  |  |    if(r) | 
					
						
							|  |  |  |       std::cout << "std::fabs looks OK for type " << name << std::endl; | 
					
						
							|  |  |  |    else | 
					
						
							|  |  |  |       std::cout << "CAUTION: std::fabs is broken for type " << name << std::endl; | 
					
						
							|  |  |  | 
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							|  |  |  |    //
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							|  |  |  |    // abs not overloaded for real arguments with VC6 (and others?)
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							|  |  |  |    //
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							|  |  |  |    r = (std::abs((std::numeric_limits<T>::max)()) == (std::numeric_limits<T>::max)()); | 
					
						
							|  |  |  |    r &= (std::abs(-(std::numeric_limits<T>::max)()) == (std::numeric_limits<T>::max)()); | 
					
						
							|  |  |  |    r &= (std::abs((std::numeric_limits<T>::min)()) == (std::numeric_limits<T>::min)()); | 
					
						
							|  |  |  |    r &= (std::abs(-(std::numeric_limits<T>::min)()) == (std::numeric_limits<T>::min)()); | 
					
						
							|  |  |  |    if(r) | 
					
						
							|  |  |  |       std::cout << "std::abs looks OK for type " << name << std::endl; | 
					
						
							|  |  |  |    else | 
					
						
							|  |  |  |       std::cout << "CAUTION: std::abs is broken for type " << name << std::endl; | 
					
						
							|  |  |  | 
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							|  |  |  |    //
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							|  |  |  |    // std::sqrt on FreeBSD converts long double arguments to double leading to
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							|  |  |  |    // overflow/underflow:
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							|  |  |  |    //
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							|  |  |  |    r = (std::sqrt((std::numeric_limits<T>::max)()) < (std::numeric_limits<T>::max)()); | 
					
						
							|  |  |  |    if(r) | 
					
						
							|  |  |  |       std::cout << "std::sqrt looks OK for type " << name << std::endl; | 
					
						
							|  |  |  |    else | 
					
						
							|  |  |  |       std::cout << "CAUTION: std::sqrt is broken for type " << name << std::endl; | 
					
						
							|  |  |  | 
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							|  |  |  |    //
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							|  |  |  |    // Sanity check for atan2: verify that it returns arguments in the correct
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							|  |  |  |    // range and not just atan(x/y).
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							|  |  |  |    //
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							|  |  |  |    static const T half_pi = static_cast<T>(1.57079632679489661923132169163975144L); | 
					
						
							|  |  |  | 
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							|  |  |  |    T val = std::atan2(T(-1), T(-1)); | 
					
						
							|  |  |  |    r = -half_pi > val; | 
					
						
							|  |  |  |    val = std::atan2(T(1), T(-1)); | 
					
						
							|  |  |  |    r &= half_pi < val; | 
					
						
							|  |  |  |    val = std::atan2(T(1), T(1)); | 
					
						
							|  |  |  |    r &= (val > 0) && (val < half_pi); | 
					
						
							|  |  |  |    val = std::atan2(T(-1), T(1)); | 
					
						
							|  |  |  |    r &= (val < 0) && (val > -half_pi); | 
					
						
							|  |  |  |    if(r) | 
					
						
							|  |  |  |       std::cout << "std::atan2 looks OK for type " << name << std::endl; | 
					
						
							|  |  |  |    else | 
					
						
							|  |  |  |       std::cout << "CAUTION: std::atan2 is broken for type " << name << std::endl; | 
					
						
							|  |  |  | } | 
					
						
							|  |  |  | 
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							|  |  |  | 
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							|  |  |  | 
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							|  |  |  | int main() | 
					
						
							|  |  |  | { | 
					
						
							|  |  |  |    //
 | 
					
						
							|  |  |  |    // Start by printing the values of the macros from float.h
 | 
					
						
							|  |  |  |    //
 | 
					
						
							|  |  |  |    std::cout <<  | 
					
						
							|  |  |  |       "~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~\n" | 
					
						
							|  |  |  |       "Macros from <math.h>" << std::endl; | 
					
						
							|  |  |  | 
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							|  |  |  |    PRINT_EXPRESSION(HUGE_VAL); | 
					
						
							|  |  |  | #ifdef HUGE_VALF
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							|  |  |  |    PRINT_EXPRESSION(HUGE_VALF); | 
					
						
							|  |  |  | #endif
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							|  |  |  | #ifdef HUGE_VALL
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							|  |  |  |    PRINT_EXPRESSION(HUGE_VALL); | 
					
						
							|  |  |  | #endif
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							|  |  |  | #ifdef INFINITY
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							|  |  |  |    PRINT_EXPRESSION(INFINITY); | 
					
						
							|  |  |  | #endif
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							|  |  |  | 
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							|  |  |  |    PRINT_MACRO(NAN); | 
					
						
							|  |  |  |    PRINT_MACRO(FP_INFINITE); | 
					
						
							|  |  |  |    PRINT_MACRO(FP_NAN); | 
					
						
							|  |  |  |    PRINT_MACRO(FP_NORMAL); | 
					
						
							|  |  |  |    PRINT_MACRO(FP_SUBNORMAL); | 
					
						
							|  |  |  |    PRINT_MACRO(FP_ZERO); | 
					
						
							|  |  |  |    PRINT_MACRO(FP_FAST_FMA); | 
					
						
							|  |  |  |    PRINT_MACRO(FP_FAST_FMAF); | 
					
						
							|  |  |  |    PRINT_MACRO(FP_FAST_FMAL); | 
					
						
							|  |  |  |    PRINT_MACRO(FP_ILOGB0); | 
					
						
							|  |  |  |    PRINT_MACRO(FP_ILOGBNAN); | 
					
						
							|  |  |  |    PRINT_MACRO(MATH_ERRNO); | 
					
						
							|  |  |  |    PRINT_MACRO(MATH_ERREXCEPT); | 
					
						
							|  |  |  | 
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							|  |  |  |    PRINT_EXPRESSION(FLT_MIN_10_EXP); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(FLT_DIG); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(FLT_MIN_EXP); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(FLT_EPSILON); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(FLT_RADIX); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(FLT_MANT_DIG); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(FLT_ROUNDS); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(FLT_MAX); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(FLT_MAX_10_EXP); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(FLT_MAX_EXP); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(FLT_MIN); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(DBL_DIG); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(DBL_MIN_EXP); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(DBL_EPSILON); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(DBL_MANT_DIG); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(DBL_MAX); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(DBL_MIN); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(DBL_MAX_10_EXP); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(DBL_MAX_EXP); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(DBL_MIN_10_EXP); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(LDBL_MAX_10_EXP); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(LDBL_MAX_EXP); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(LDBL_MIN); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(LDBL_MIN_10_EXP); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(LDBL_DIG); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(LDBL_MIN_EXP); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(LDBL_EPSILON); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(LDBL_MANT_DIG); | 
					
						
							|  |  |  |    PRINT_EXPRESSION(LDBL_MAX); | 
					
						
							|  |  |  | 
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							|  |  |  |    std::cout << std::endl; | 
					
						
							|  |  |  | 
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							|  |  |  |    //
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							|  |  |  |    // print out numeric_limits info:
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							|  |  |  |    //
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							|  |  |  |    print_limits(float(0), "float"); | 
					
						
							|  |  |  |    print_limits(double(0), "double"); | 
					
						
							|  |  |  |    print_limits((long double)(0), "long double"); | 
					
						
							|  |  |  | 
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							|  |  |  |    //
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							|  |  |  |    // print out function overload information:
 | 
					
						
							|  |  |  |    //
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							|  |  |  |    test_overloads(float(0), "float"); | 
					
						
							|  |  |  |    test_overloads(double(0), "double"); | 
					
						
							|  |  |  |    test_overloads((long double)(0), "long double"); | 
					
						
							|  |  |  |    return 0; | 
					
						
							|  |  |  | } | 
					
						
							|  |  |  | 
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							|  |  |  | 
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