// tuple_comparison.hpp ----------------------------------------------------- // // Copyright (C) 2001 Jaakko Jarvi (jaakko.jarvi@cs.utu.fi) // Copyright (C) 2001 Gary Powell (gary.powell@sierra.com) // // 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) // // For more information, see http://www.boost.org // // (The idea and first impl. of comparison operators was from Doug Gregor) // ----------------------------------------------------------------- #ifndef BOOST_TUPLE_COMPARISON_HPP #define BOOST_TUPLE_COMPARISON_HPP #include "boost/tuple/tuple.hpp" // ------------------------------------------------------------- // equality and comparison operators // // == and != compare tuples elementwise // <, >, <= and >= use lexicographical ordering // // Any operator between tuples of different length fails at compile time // No dependencies between operators are assumed // (i.e. !(a=b, a!=b does not imply a==b etc. // so any weirdnesses of elementary operators are respected). // // ------------------------------------------------------------- namespace boost { namespace tuples { inline bool operator==(const null_type&, const null_type&) { return true; } inline bool operator>=(const null_type&, const null_type&) { return true; } inline bool operator<=(const null_type&, const null_type&) { return true; } inline bool operator!=(const null_type&, const null_type&) { return false; } inline bool operator<(const null_type&, const null_type&) { return false; } inline bool operator>(const null_type&, const null_type&) { return false; } namespace detail { // comparison operators check statically the length of its operands and // delegate the comparing task to the following functions. Hence // the static check is only made once (should help the compiler). // These functions assume tuples to be of the same length. template inline bool eq(const T1& lhs, const T2& rhs) { return lhs.get_head() == rhs.get_head() && eq(lhs.get_tail(), rhs.get_tail()); } template<> inline bool eq(const null_type&, const null_type&) { return true; } template inline bool neq(const T1& lhs, const T2& rhs) { return lhs.get_head() != rhs.get_head() || neq(lhs.get_tail(), rhs.get_tail()); } template<> inline bool neq(const null_type&, const null_type&) { return false; } template inline bool lt(const T1& lhs, const T2& rhs) { return lhs.get_head() < rhs.get_head() || ( !(rhs.get_head() < lhs.get_head()) && lt(lhs.get_tail(), rhs.get_tail())); } template<> inline bool lt(const null_type&, const null_type&) { return false; } template inline bool gt(const T1& lhs, const T2& rhs) { return lhs.get_head() > rhs.get_head() || ( !(rhs.get_head() > lhs.get_head()) && gt(lhs.get_tail(), rhs.get_tail())); } template<> inline bool gt(const null_type&, const null_type&) { return false; } template inline bool lte(const T1& lhs, const T2& rhs) { return lhs.get_head() <= rhs.get_head() && ( !(rhs.get_head() <= lhs.get_head()) || lte(lhs.get_tail(), rhs.get_tail())); } template<> inline bool lte(const null_type&, const null_type&) { return true; } template inline bool gte(const T1& lhs, const T2& rhs) { return lhs.get_head() >= rhs.get_head() && ( !(rhs.get_head() >= lhs.get_head()) || gte(lhs.get_tail(), rhs.get_tail())); } template<> inline bool gte(const null_type&, const null_type&) { return true; } } // end of namespace detail // equal ---- template inline bool operator==(const cons& lhs, const cons& rhs) { // check that tuple lengths are equal BOOST_STATIC_ASSERT(length::value == length::value); return detail::eq(lhs, rhs); } // not equal ----- template inline bool operator!=(const cons& lhs, const cons& rhs) { // check that tuple lengths are equal BOOST_STATIC_ASSERT(length::value == length::value); return detail::neq(lhs, rhs); } // < template inline bool operator<(const cons& lhs, const cons& rhs) { // check that tuple lengths are equal BOOST_STATIC_ASSERT(length::value == length::value); return detail::lt(lhs, rhs); } // > template inline bool operator>(const cons& lhs, const cons& rhs) { // check that tuple lengths are equal BOOST_STATIC_ASSERT(length::value == length::value); return detail::gt(lhs, rhs); } // <= template inline bool operator<=(const cons& lhs, const cons& rhs) { // check that tuple lengths are equal BOOST_STATIC_ASSERT(length::value == length::value); return detail::lte(lhs, rhs); } // >= template inline bool operator>=(const cons& lhs, const cons& rhs) { // check that tuple lengths are equal BOOST_STATIC_ASSERT(length::value == length::value); return detail::gte(lhs, rhs); } } // end of namespace tuples } // end of namespace boost #endif // BOOST_TUPLE_COMPARISON_HPP