// boost cast.hpp header file ----------------------------------------------// // (C) Copyright boost.org 1999. Permission to copy, use, modify, sell // and distribute this software is granted provided this copyright // notice appears in all copies. This software is provided "as is" without // express or implied warranty, and with no claim as to its suitability for // any purpose. // See http://www.boost.org for most recent version including documentation. // Revision History // 02 Apr 01 Removed BOOST_NO_LIMITS workarounds and included // instead (the workaround did not // actually compile when BOOST_NO_LIMITS was defined in // any case, so we loose nothing). (John Maddock) // 21 Jan 01 Undid a bug I introduced yesterday. numeric_cast<> never // worked with stock GCC; trying to get it to do that broke // vc-stlport. // 20 Jan 01 Moved BOOST_NO_LIMITS_COMPILE_TIME_CONSTANTS to config.hpp. // Removed unused BOOST_EXPLICIT_TARGET macro. Moved // boost::detail::type to boost/type.hpp. Made it compile with // stock gcc again (Dave Abrahams) // 29 Nov 00 Remove nested namespace cast, cleanup spacing before Formal // Review (Beman Dawes) // 19 Oct 00 Fix numeric_cast for floating-point types (Dave Abrahams) // 15 Jul 00 Suppress numeric_cast warnings for GCC, Borland and MSVC // (Dave Abrahams) // 30 Jun 00 More MSVC6 wordarounds. See comments below. (Dave Abrahams) // 28 Jun 00 Removed implicit_cast<>. See comment below. (Beman Dawes) // 27 Jun 00 More MSVC6 workarounds // 15 Jun 00 Add workarounds for MSVC6 // 2 Feb 00 Remove bad_numeric_cast ";" syntax error (Doncho Angelov) // 26 Jan 00 Add missing throw() to bad_numeric_cast::what(0 (Adam Levar) // 29 Dec 99 Change using declarations so usages in other namespaces work // correctly (Dave Abrahams) // 23 Sep 99 Change polymorphic_downcast assert to also detect M.I. errors // as suggested Darin Adler and improved by Valentin Bonnard. // 2 Sep 99 Remove controversial asserts, simplify, rename. // 30 Aug 99 Move to cast.hpp, replace value_cast with numeric_cast, // place in nested namespace. // 3 Aug 99 Initial version #ifndef BOOST_CAST_HPP #define BOOST_CAST_HPP # include # include # include # include # include // It has been demonstrated numerous times that MSVC 6.0 fails silently at link // time if you use a template function which has template parameters that don't // appear in the function's argument list. // // TODO: Add this to config.hpp? # if defined(BOOST_MSVC) && BOOST_MSVC <= 1200 // 1200 = VC6 # define BOOST_EXPLICIT_DEFAULT_TARGET , ::boost::type* = 0 # else # define BOOST_EXPLICIT_DEFAULT_TARGET # endif namespace boost { // See the documentation for descriptions of how to choose between // static_cast<>, dynamic_cast<>, polymorphic_cast<> and polymorphic_downcast<> // polymorphic_cast --------------------------------------------------------// // Runtime checked polymorphic downcasts and crosscasts. // Suggested in The C++ Programming Language, 3rd Ed, Bjarne Stroustrup, // section 15.8 exercise 1, page 425. template inline Target polymorphic_cast(Source* x BOOST_EXPLICIT_DEFAULT_TARGET) { Target tmp = dynamic_cast(x); if ( tmp == 0 ) throw std::bad_cast(); return tmp; } // polymorphic_downcast ----------------------------------------------------// // assert() checked polymorphic downcast. Crosscasts prohibited. // WARNING: Because this cast uses assert(), it violates the One Definition // Rule if NDEBUG is inconsistently defined across translation units. // Contributed by Dave Abrahams template inline Target polymorphic_downcast(Source* x BOOST_EXPLICIT_DEFAULT_TARGET) { assert( dynamic_cast(x) == x ); // detect logic error return static_cast(x); } // implicit_cast -----------------------------------------------------------// // // Removed due to uncertain purpose. Use either numeric_cast (see below) // or static_cast according to the need. // numeric_cast and related exception --------------------------------------// // Contributed by Kevlin Henney // bad_numeric_cast --------------------------------------------------------// // exception used to indicate runtime numeric_cast failure class bad_numeric_cast : public std::bad_cast { public: // constructors, destructors and assignment operator defaulted // function inlined for brevity and consistency with rest of library virtual const char *what() const throw() { return "bad numeric cast: loss of range in numeric_cast"; } }; // numeric_cast ------------------------------------------------------------// #if !defined(BOOST_NO_LIMITS_COMPILE_TIME_CONSTANTS) || defined(BOOST_SGI_CPP_LIMITS) namespace detail { template struct numeric_min_select; template<> struct numeric_min_select { template struct limits : std::numeric_limits { static inline T min() # ifndef __GNUC__ // bug workaround courtesy Jens Maurer { return std::numeric_limits::min() >= 0 // unary minus causes integral promotion, thus the static_cast<> ? static_cast(-std::numeric_limits::max()) : std::numeric_limits::min(); } # else ; # endif }; }; # ifdef __GNUC__ // bug workaround courtesy Jens Maurer template<> template inline T numeric_min_select::limits::min() { return std::numeric_limits::min() >= 0 // unary minus causes integral promotion, thus the static_cast<> ? static_cast(-std::numeric_limits::max()) : std::numeric_limits::min(); } # endif template<> struct numeric_min_select { template struct limits : std::numeric_limits {}; }; // Move to namespace boost in utility.hpp? template struct fixed_numeric_limits : public numeric_min_select< std::numeric_limits::is_signed >::template limits { }; } // namespace detail // less_than_type_min - // x_is_signed should be numeric_limits::is_signed // y_is_signed should be numeric_limits::is_signed // y_min should be numeric_limits::min() // // check(x, y_min) returns true iff x < y_min without invoking comparisons // between signed and unsigned values. // // "poor man's partial specialization" is in use here. template struct less_than_type_min { template static bool check(X x, Y y_min) { return x < y_min; } }; template <> struct less_than_type_min { template static bool check(X, Y) { return false; } }; template <> struct less_than_type_min { template static bool check(X x, Y) { return x < 0; } }; // greater_than_type_max - // same_sign should be: // numeric_limits::is_signed == numeric_limits::is_signed // y_max should be numeric_limits::max() // // check(x, y_max) returns true iff x > y_max without invoking comparisons // between signed and unsigned values. // // "poor man's partial specialization" is in use here. template struct greater_than_type_max; template<> struct greater_than_type_max { template static inline bool check(X x, Y y_max) { return x > y_max; } }; template <> struct greater_than_type_max { // What does the standard say about this? I think it's right, and it // will work with every compiler I know of. template static inline bool check(X x, Y) { return x >= 0 && static_cast(static_cast(x)) != x; } }; template<> struct greater_than_type_max { template static inline bool check(X x, Y y_max) { return x > y_max; } }; template <> struct greater_than_type_max { // What does the standard say about this? I think it's right, and it // will work with every compiler I know of. template static inline bool check(X x, Y) { return static_cast(static_cast(x)) != x; } }; #else // use #pragma hacks if available namespace detail { # if BOOST_MSVC # pragma warning(push) # pragma warning(disable : 4018) # pragma warning(disable : 4146) #elif defined(__BORLANDC__) # pragma option push -w-8041 # endif // Move to namespace boost in utility.hpp? template struct fixed_numeric_limits : public std::numeric_limits { static inline T min() { return std::numeric_limits::is_signed && std::numeric_limits::min() >= 0 ? T(-std::numeric_limits::max()) : std::numeric_limits::min(); } }; # if BOOST_MSVC # pragma warning(pop) #elif defined(__BORLANDC__) # pragma option pop # endif } // namespace detail #endif template inline Target numeric_cast(Source arg BOOST_EXPLICIT_DEFAULT_TARGET) { // typedefs abbreviating respective trait classes typedef std::numeric_limits arg_traits; typedef detail::fixed_numeric_limits result_traits; #if !defined(BOOST_NO_LIMITS_COMPILE_TIME_CONSTANTS) || defined(BOOST_SGI_CPP_LIMITS) // typedefs that act as compile time assertions // (to be replaced by boost compile time assertions // as and when they become available and are stable) typedef bool argument_must_be_numeric[arg_traits::is_specialized]; typedef bool result_must_be_numeric[result_traits::is_specialized]; const bool arg_is_signed = arg_traits::is_signed; const bool result_is_signed = result_traits::is_signed; const bool same_sign = arg_is_signed == result_is_signed; if (less_than_type_min::check(arg, result_traits::min()) || greater_than_type_max::check(arg, result_traits::max()) ) #else // We need to use #pragma hacks if available # if BOOST_MSVC # pragma warning(push) # pragma warning(disable : 4018) #elif defined(__BORLANDC__) #pragma option push -w-8012 # endif if ((arg < 0 && !result_traits::is_signed) // loss of negative range || (arg_traits::is_signed && arg < result_traits::min()) // underflow || arg > result_traits::max()) // overflow # if BOOST_MSVC # pragma warning(pop) #elif defined(__BORLANDC__) #pragma option pop # endif #endif { throw bad_numeric_cast(); } return static_cast(arg); } // numeric_cast # undef BOOST_EXPLICIT_DEFAULT_TARGET } // namespace boost #endif // BOOST_CAST_HPP