/* * Copyright (c) 1997 * Silicon Graphics Computer Systems, Inc. * * Permission to use, copy, modify, distribute and sell this software * and its documentation for any purpose is hereby granted without fee, * provided that the above copyright notice appear in all copies and * that both that copyright notice and this permission notice appear * in supporting documentation. Silicon Graphics makes no * representations about the suitability of this software for any * purpose. It is provided "as is" without express or implied warranty. */ /* NOTE: This is not portable code. Parts of numeric_limits<> are * inherently machine-dependent, and this file is written for the MIPS * architecture and the SGI MIPSpro C++ compiler. Parts of it (in * particular, some of the characteristics of floating-point types) * are almost certainly incorrect for any other platform. */ #ifndef __SGI_CPP_LIMITS #define __SGI_CPP_LIMITS #include #include #include __STL_BEGIN_NAMESPACE enum float_round_style { round_indeterminate = -1, round_toward_zero = 0, round_to_nearest = 1, round_toward_infinity = 2, round_toward_neg_infinity = 3 }; enum float_denorm_style { denorm_indeterminate = -1, denorm_absent = 0, denorm_present = 1 }; // Base class for all specializations of numeric_limits. template class _Numeric_limits_base { public: static const bool is_specialized = false; static __number min() __STL_NOTHROW { return __number(); } static __number max() __STL_NOTHROW { return __number(); } static const int digits = 0; static const int digits10 = 0; static const bool is_signed = false; static const bool is_integer = false; static const bool is_exact = false; static const int radix = 0; static __number epsilon() __STL_NOTHROW { return __number(); } static __number round_error() __STL_NOTHROW { return __number(); } static const int min_exponent = 0; static const int min_exponent10 = 0; static const int max_exponent = 0; static const int max_exponent10 = 0; static const bool has_infinity = false; static const bool has_quiet_NaN = false; static const bool has_signaling_NaN = false; static const float_denorm_style has_denorm = denorm_absent; static const bool has_denorm_loss = false; static __number infinity() __STL_NOTHROW { return __number(); } static __number quiet_NaN() __STL_NOTHROW { return __number(); } static __number signaling_NaN() __STL_NOTHROW { return __number(); } static __number denorm_min() __STL_NOTHROW { return __number(); } static const bool is_iec559 = false; static const bool is_bounded = false; static const bool is_modulo = false; static const bool traps = false; static const bool tinyness_before = false; static const float_round_style round_style = round_toward_zero; }; #define __declare_numeric_base_member(__type, __mem) \ template \ const __type _Numeric_limits_base<__number>:: __mem __declare_numeric_base_member(bool, is_specialized); __declare_numeric_base_member(int, digits); __declare_numeric_base_member(int, digits10); __declare_numeric_base_member(bool, is_signed); __declare_numeric_base_member(bool, is_integer); __declare_numeric_base_member(bool, is_exact); __declare_numeric_base_member(int, radix); __declare_numeric_base_member(int, min_exponent); __declare_numeric_base_member(int, max_exponent); __declare_numeric_base_member(int, min_exponent10); __declare_numeric_base_member(int, max_exponent10); __declare_numeric_base_member(bool, has_infinity); __declare_numeric_base_member(bool, has_quiet_NaN); __declare_numeric_base_member(bool, has_signaling_NaN); __declare_numeric_base_member(float_denorm_style, has_denorm); __declare_numeric_base_member(bool, has_denorm_loss); __declare_numeric_base_member(bool, is_iec559); __declare_numeric_base_member(bool, is_bounded); __declare_numeric_base_member(bool, is_modulo); __declare_numeric_base_member(bool, traps); __declare_numeric_base_member(bool, tinyness_before); __declare_numeric_base_member(float_round_style, round_style); #undef __declare_numeric_base_member // Base class for integers. template class _Integer_limits : public _Numeric_limits_base<_Int> { public: static const bool is_specialized = true; static _Int min() __STL_NOTHROW { return __imin; } static _Int max() __STL_NOTHROW { return __imax; } static const int digits = (__idigits < 0) ? sizeof(_Int) * CHAR_BIT - (__imin == 0 ? 0 : 1) : __idigits; static const int digits10 = (digits * 301) / 1000; // log 2 = 0.301029995664... static const bool is_signed = __imin != 0; static const bool is_integer = true; static const bool is_exact = true; static const int radix = 2; static const bool is_bounded = true; static const bool is_modulo = true; }; #define __declare_integer_limits_member(__type, __mem) \ template \ const __type _Integer_limits<_Int, __imin, __imax, __idigits>:: __mem __declare_integer_limits_member(bool, is_specialized); __declare_integer_limits_member(int, digits); __declare_integer_limits_member(int, digits10); __declare_integer_limits_member(bool, is_signed); __declare_integer_limits_member(bool, is_integer); __declare_integer_limits_member(bool, is_exact); __declare_integer_limits_member(int, radix); __declare_integer_limits_member(bool, is_bounded); __declare_integer_limits_member(bool, is_modulo); #undef __declare_integer_limits_member // Base class for floating-point numbers. template class _Floating_limits : public _Numeric_limits_base<__number> { public: static const bool is_specialized = true; static const int digits = __Digits; static const int digits10 = __Digits10; static const bool is_signed = true; static const int radix = 2; static const int min_exponent = __MinExp; static const int max_exponent = __MaxExp; static const int min_exponent10 = __MinExp10; static const int max_exponent10 = __MaxExp10; static const bool has_infinity = true; static const bool has_quiet_NaN = true; static const bool has_signaling_NaN = true; static const float_denorm_style has_denorm = denorm_indeterminate; static const bool has_denorm_loss = false; static __number infinity() __STL_NOTHROW { static unsigned int _S_inf[sizeof(__number) / sizeof(int)] = { __InfinityWord }; return *reinterpret_cast<__number*>(&_S_inf); } static __number quiet_NaN() __STL_NOTHROW { static unsigned int _S_nan[sizeof(__number) / sizeof(int)] = { __QNaNWord }; return *reinterpret_cast<__number*>(&_S_nan); } static __number signaling_NaN() __STL_NOTHROW { static unsigned int _S_nan[sizeof(__number) / sizeof(int)] = { __SNaNWord }; return *reinterpret_cast<__number*>(&_S_nan); } static const bool is_iec559 = __IsIEC559; static const bool is_bounded = true; static const bool traps = true; static const bool tinyness_before = false; static const float_round_style round_style = __RoundStyle; }; #define __declare_float_limits_member(__type, __mem) \ template \ const __type _Floating_limits<__Num, __Dig, __Dig10, \ __MnX, __MxX, __MnX10, __MxX10, \ __Inf, __QNaN, __SNaN,__IsIEEE, __Sty>:: __mem __declare_float_limits_member(bool, is_specialized); __declare_float_limits_member(int, digits); __declare_float_limits_member(int, digits10); __declare_float_limits_member(bool, is_signed); __declare_float_limits_member(int, radix); __declare_float_limits_member(int, min_exponent); __declare_float_limits_member(int, max_exponent); __declare_float_limits_member(int, min_exponent10); __declare_float_limits_member(int, max_exponent10); __declare_float_limits_member(bool, has_infinity); __declare_float_limits_member(bool, has_quiet_NaN); __declare_float_limits_member(bool, has_signaling_NaN); __declare_float_limits_member(float_denorm_style, has_denorm); __declare_float_limits_member(bool, has_denorm_loss); __declare_float_limits_member(bool, is_iec559); __declare_float_limits_member(bool, is_bounded); __declare_float_limits_member(bool, traps); __declare_float_limits_member(bool, tinyness_before); __declare_float_limits_member(float_round_style, round_style); #undef __declare_float_limits_member // Class numeric_limits // The unspecialized class. template class numeric_limits : public _Numeric_limits_base {}; // Specializations for all built-in integral types. #ifndef __STL_NO_BOOL template<> class numeric_limits : public _Integer_limits {}; #endif /* __STL_NO_BOOL */ template<> class numeric_limits : public _Integer_limits {}; template<> class numeric_limits : public _Integer_limits {}; template<> class numeric_limits : public _Integer_limits {}; #ifdef __STL_HAS_WCHAR_T template<> class numeric_limits : public _Integer_limits {}; #endif template<> class numeric_limits : public _Integer_limits {}; template<> class numeric_limits : public _Integer_limits {}; template<> class numeric_limits : public _Integer_limits {}; template<> class numeric_limits : public _Integer_limits {}; template<> class numeric_limits : public _Integer_limits {}; template<> class numeric_limits : public _Integer_limits {}; #ifdef __STL_LONG_LONG template<> class numeric_limits : public _Integer_limits {}; template<> class numeric_limits : public _Integer_limits {}; #endif /* __STL_LONG_LONG */ // Specializations for all built-in floating-point type. template<> class numeric_limits : public _Floating_limits { public: static float min() __STL_NOTHROW { return FLT_MIN; } static float denorm_min() __STL_NOTHROW { return FLT_MIN; } static float max() __STL_NOTHROW { return FLT_MAX; } static float epsilon() __STL_NOTHROW { return FLT_EPSILON; } static float round_error() __STL_NOTHROW { return 0.5f; } // Units: ulps. }; template<> class numeric_limits : public _Floating_limits { public: static double min() __STL_NOTHROW { return DBL_MIN; } static double denorm_min() __STL_NOTHROW { return DBL_MIN; } static double max() __STL_NOTHROW { return DBL_MAX; } static double epsilon() __STL_NOTHROW { return DBL_EPSILON; } static double round_error() __STL_NOTHROW { return 0.5; } // Units: ulps. }; template<> class numeric_limits : public _Floating_limits { public: static long double min() __STL_NOTHROW { return LDBL_MIN; } static long double denorm_min() __STL_NOTHROW { return LDBL_MIN; } static long double max() __STL_NOTHROW { return LDBL_MAX; } static long double epsilon() __STL_NOTHROW { return LDBL_EPSILON; } static long double round_error() __STL_NOTHROW { return 4; } // Units: ulps. }; __STL_END_NAMESPACE #endif /* __SGI_CPP_LIMITS */ // Local Variables: // mode:C++ // End: