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			388 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			388 lines
		
	
	
		
			14 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| //  boost::compressed_pair test program   
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|     
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| //  (C) Copyright John Maddock 2000. 
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| //  Use, modification and distribution are subject to the Boost Software License,
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| //  Version 1.0. (See accompanying file LICENSE_1_0.txt or copy at
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| //  http://www.boost.org/LICENSE_1_0.txt).
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| 
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| // standalone test program for <boost/compressed_pair.hpp>
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| // Revised 03 Oct 2000: 
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| //    Enabled tests for VC6.
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| 
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| #include <iostream>
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| #include <typeinfo>
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| #include <cassert>
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| 
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| #include <boost/compressed_pair.hpp>
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| #include <boost/core/lightweight_test.hpp>
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| 
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| using namespace boost;
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| 
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| struct empty_UDT
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| {
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|    ~empty_UDT(){};
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|    empty_UDT& operator=(const empty_UDT&){ return *this; }
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|    bool operator==(const empty_UDT&)const
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|    { return true; }
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| };
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| struct empty_POD_UDT
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| {
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|    empty_POD_UDT& operator=(const empty_POD_UDT&){ return *this; }
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|    bool operator==(const empty_POD_UDT&)const
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|    { return true; }
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| };
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| 
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| struct non_empty1
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| { 
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|    int i;
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|    non_empty1() : i(1){}
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|    non_empty1(int v) : i(v){}
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|    friend bool operator==(const non_empty1& a, const non_empty1& b)
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|    { return a.i == b.i; }
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| };
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| 
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| struct non_empty2
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| { 
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|    int i;
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|    non_empty2() : i(3){}
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|    non_empty2(int v) : i(v){}
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|    friend bool operator==(const non_empty2& a, const non_empty2& b)
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|    { return a.i == b.i; }
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| };
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| 
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| #ifdef __GNUC__
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| using std::swap;
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| #endif
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| 
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| template <class T1, class T2>
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| struct compressed_pair_tester
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| {
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|    // define the types we need:
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|    typedef T1                                                 first_type;
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|    typedef T2                                                 second_type;
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|    typedef typename call_traits<first_type>::param_type       first_param_type;
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|    typedef typename call_traits<second_type>::param_type      second_param_type;
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|    // define our test proc:
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|    static void test(first_param_type p1, second_param_type p2, first_param_type p3, second_param_type p4);
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| };
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| 
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| template <class T1, class T2>
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| void compressed_pair_tester<T1, T2>::test(first_param_type p1, second_param_type p2, first_param_type p3, second_param_type p4)
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| {
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| #ifndef __GNUC__
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|    // gcc 2.90 can't cope with function scope using
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|    // declarations, and generates an internal compiler error...
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|    using std::swap;
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| #endif
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|    // default construct:
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|    boost::compressed_pair<T1,T2> cp1;
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|    // first param construct:
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|    boost::compressed_pair<T1,T2> cp2(p1);
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|    cp2.second() = p2;
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|    BOOST_TEST(cp2.first() == p1);
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|    BOOST_TEST(cp2.second() == p2);
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|    // second param construct:
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|    boost::compressed_pair<T1,T2> cp3(p2);
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|    cp3.first() = p1;
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|    BOOST_TEST(cp3.second() == p2);
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|    BOOST_TEST(cp3.first() == p1);
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|    // both param construct:
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|    boost::compressed_pair<T1,T2> cp4(p1, p2);
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|    BOOST_TEST(cp4.first() == p1);
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|    BOOST_TEST(cp4.second() == p2);
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|    boost::compressed_pair<T1,T2> cp5(p3, p4);
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|    BOOST_TEST(cp5.first() == p3);
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|    BOOST_TEST(cp5.second() == p4);
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|    // check const members:
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|    const boost::compressed_pair<T1,T2>& cpr1 = cp4;
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|    BOOST_TEST(cpr1.first() == p1);
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|    BOOST_TEST(cpr1.second() == p2);
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| 
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|    // copy construct:
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|    boost::compressed_pair<T1,T2> cp6(cp4);
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|    BOOST_TEST(cp6.first() == p1);
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|    BOOST_TEST(cp6.second() == p2);
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|    // assignment:
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|    cp1 = cp4;
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|    BOOST_TEST(cp1.first() == p1);
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|    BOOST_TEST(cp1.second() == p2);
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|    cp1 = cp5;
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|    BOOST_TEST(cp1.first() == p3);
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|    BOOST_TEST(cp1.second() == p4);
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|    // swap:
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|    cp4.swap(cp5);
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|    BOOST_TEST(cp4.first() == p3);
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|    BOOST_TEST(cp4.second() == p4);
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|    BOOST_TEST(cp5.first() == p1);
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|    BOOST_TEST(cp5.second() == p2);
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|    swap(cp4,cp5);
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|    BOOST_TEST(cp4.first() == p1);
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|    BOOST_TEST(cp4.second() == p2);
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|    BOOST_TEST(cp5.first() == p3);
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|    BOOST_TEST(cp5.second() == p4);
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| }
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| 
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| //
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| // tests for case where one or both 
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| // parameters are reference types:
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| //
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| template <class T1, class T2>
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| struct compressed_pair_reference_tester
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| {
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|    // define the types we need:
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|    typedef T1                                                 first_type;
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|    typedef T2                                                 second_type;
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|    typedef typename call_traits<first_type>::param_type       first_param_type;
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|    typedef typename call_traits<second_type>::param_type      second_param_type;
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|    // define our test proc:
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|    static void test(first_param_type p1, second_param_type p2, first_param_type p3, second_param_type p4);
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| };
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| 
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| template <class T1, class T2>
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| void compressed_pair_reference_tester<T1, T2>::test(first_param_type p1, second_param_type p2, first_param_type p3, second_param_type p4)
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| {
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| #ifndef __GNUC__
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|    // gcc 2.90 can't cope with function scope using
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|    // declarations, and generates an internal compiler error...
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|    using std::swap;
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| #endif
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|    // both param construct:
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|    boost::compressed_pair<T1,T2> cp4(p1, p2);
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|    BOOST_TEST(cp4.first() == p1);
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|    BOOST_TEST(cp4.second() == p2);
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|    boost::compressed_pair<T1,T2> cp5(p3, p4);
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|    BOOST_TEST(cp5.first() == p3);
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|    BOOST_TEST(cp5.second() == p4);
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|    // check const members:
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|    const boost::compressed_pair<T1,T2>& cpr1 = cp4;
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|    BOOST_TEST(cpr1.first() == p1);
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|    BOOST_TEST(cpr1.second() == p2);
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| 
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|    // copy construct:
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|    boost::compressed_pair<T1,T2> cp6(cp4);
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|    BOOST_TEST(cp6.first() == p1);
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|    BOOST_TEST(cp6.second() == p2);
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|    // assignment:
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|    // VC6 bug:
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|    // When second() is an empty class, VC6 performs the
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|    // assignment by doing a memcpy - even though the empty
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|    // class is really a zero sized base class, the result
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|    // is that the memory of first() gets trampled over.
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|    // Similar arguments apply to the case that first() is 
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|    // an empty base class.
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|    // Strangely the problem is dependent upon the compiler
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|    // settings - some generate the problem others do not.
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|    cp4.first() = p3;
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|    cp4.second() = p4;
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|    BOOST_TEST(cp4.first() == p3);
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|    BOOST_TEST(cp4.second() == p4);
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| }
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| //
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| // supplimentary tests for case where first arg only is a reference type:
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| //
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| template <class T1, class T2>
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| struct compressed_pair_reference1_tester
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| {
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|    // define the types we need:
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|    typedef T1                                                 first_type;
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|    typedef T2                                                 second_type;
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|    typedef typename call_traits<first_type>::param_type       first_param_type;
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|    typedef typename call_traits<second_type>::param_type      second_param_type;
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|    // define our test proc:
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|    static void test(first_param_type p1, second_param_type p2, first_param_type p3, second_param_type p4);
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| };
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| 
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| template <class T1, class T2>
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| void compressed_pair_reference1_tester<T1, T2>::test(first_param_type p1, second_param_type p2, first_param_type, second_param_type)
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| {
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| #ifndef BOOST_NO_TEMPLATE_PARTIAL_SPECIALIZATION
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|    // first param construct:
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|    boost::compressed_pair<T1,T2> cp2(p1);
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|    cp2.second() = p2;
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|    BOOST_TEST(cp2.first() == p1);
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|    BOOST_TEST(cp2.second() == p2);
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| #endif
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| }
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| //
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| // supplimentary tests for case where second arg only is a reference type:
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| //
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| template <class T1, class T2>
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| struct compressed_pair_reference2_tester
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| {
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|    // define the types we need:
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|    typedef T1                                                 first_type;
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|    typedef T2                                                 second_type;
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|    typedef typename call_traits<first_type>::param_type       first_param_type;
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|    typedef typename call_traits<second_type>::param_type      second_param_type;
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|    // define our test proc:
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|    static void test(first_param_type p1, second_param_type p2, first_param_type p3, second_param_type p4);
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| };
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| 
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| template <class T1, class T2>
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| void compressed_pair_reference2_tester<T1, T2>::test(first_param_type p1, second_param_type p2, first_param_type, second_param_type)
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| {
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| #ifndef BOOST_NO_TEMPLATE_PARTIAL_SPECIALIZATION
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|    // second param construct:
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|    boost::compressed_pair<T1,T2> cp3(p2);
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|    cp3.first() = p1;
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|    BOOST_TEST(cp3.second() == p2);
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|    BOOST_TEST(cp3.first() == p1);
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| #endif
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| }
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| 
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| //
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| // tests for where one or the other parameter is an array:
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| //
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| template <class T1, class T2>
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| struct compressed_pair_array1_tester
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| {
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|    // define the types we need:
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|    typedef T1                                                 first_type;
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|    typedef T2                                                 second_type;
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|    typedef typename call_traits<first_type>::param_type       first_param_type;
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|    typedef typename call_traits<second_type>::param_type      second_param_type;
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|    // define our test proc:
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|    static void test(first_param_type p1, second_param_type p2, first_param_type p3, second_param_type p4);
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| };
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| 
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| template <class T1, class T2>
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| void compressed_pair_array1_tester<T1, T2>::test(first_param_type p1, second_param_type p2, first_param_type, second_param_type)
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| {
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|   // default construct:
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|    boost::compressed_pair<T1,T2> cp1;
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|    // second param construct:
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|    boost::compressed_pair<T1,T2> cp3(p2);
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|    cp3.first()[0] = p1[0];
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|    BOOST_TEST(cp3.second() == p2);
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|    BOOST_TEST(cp3.first()[0] == p1[0]);
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|    // check const members:
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|    const boost::compressed_pair<T1,T2>& cpr1 = cp3;
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|    BOOST_TEST(cpr1.first()[0] == p1[0]);
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|    BOOST_TEST(cpr1.second() == p2);
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| 
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|    BOOST_TEST(sizeof(T1) == sizeof(cp1.first()));
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| }
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| 
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| template <class T1, class T2>
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| struct compressed_pair_array2_tester
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| {
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|    // define the types we need:
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|    typedef T1                                                 first_type;
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|    typedef T2                                                 second_type;
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|    typedef typename call_traits<first_type>::param_type       first_param_type;
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|    typedef typename call_traits<second_type>::param_type      second_param_type;
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|    // define our test proc:
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|    static void test(first_param_type p1, second_param_type p2, first_param_type p3, second_param_type p4);
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| };
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| 
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| template <class T1, class T2>
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| void compressed_pair_array2_tester<T1, T2>::test(first_param_type p1, second_param_type p2, first_param_type, second_param_type)
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| {
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|    // default construct:
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|    boost::compressed_pair<T1,T2> cp1;
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|    // first param construct:
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|    boost::compressed_pair<T1,T2> cp2(p1);
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|    cp2.second()[0] = p2[0];
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|    BOOST_TEST(cp2.first() == p1);
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|    BOOST_TEST(cp2.second()[0] == p2[0]);
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|    // check const members:
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|    const boost::compressed_pair<T1,T2>& cpr1 = cp2;
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|    BOOST_TEST(cpr1.first() == p1);
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|    BOOST_TEST(cpr1.second()[0] == p2[0]);
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| 
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|    BOOST_TEST(sizeof(T2) == sizeof(cp1.second()));
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| }
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| 
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| template <class T1, class T2>
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| struct compressed_pair_array_tester
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| {
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|    // define the types we need:
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|    typedef T1                                                 first_type;
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|    typedef T2                                                 second_type;
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|    typedef typename call_traits<first_type>::param_type       first_param_type;
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|    typedef typename call_traits<second_type>::param_type      second_param_type;
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|    // define our test proc:
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|    static void test(first_param_type p1, second_param_type p2, first_param_type p3, second_param_type p4);
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| };
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| 
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| template <class T1, class T2>
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| void compressed_pair_array_tester<T1, T2>::test(first_param_type p1, second_param_type p2, first_param_type, second_param_type)
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| {
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|    // default construct:
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|    boost::compressed_pair<T1,T2> cp1;
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|    cp1.first()[0] = p1[0];
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|    cp1.second()[0] = p2[0];
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|    BOOST_TEST(cp1.first()[0] == p1[0]);
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|    BOOST_TEST(cp1.second()[0] == p2[0]);
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|    // check const members:
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|    const boost::compressed_pair<T1,T2>& cpr1 = cp1;
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|    BOOST_TEST(cpr1.first()[0] == p1[0]);
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|    BOOST_TEST(cpr1.second()[0] == p2[0]);
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| 
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|    BOOST_TEST(sizeof(T1) == sizeof(cp1.first()));
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|    BOOST_TEST(sizeof(T2) == sizeof(cp1.second()));
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| }
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| 
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| int main()
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| {
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|    // declare some variables to pass to the tester:
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|    non_empty1 ne1(2);
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|    non_empty1 ne2(3);
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|    non_empty2 ne3(4);
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|    non_empty2 ne4(5);
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|    empty_POD_UDT  e1;
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|    empty_UDT      e2;
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| 
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|    // T1 != T2, both non-empty
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|    compressed_pair_tester<non_empty1,non_empty2>::test(ne1, ne3, ne2, ne4);
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|    // T1 != T2, T2 empty
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|    compressed_pair_tester<non_empty1,empty_POD_UDT>::test(ne1, e1, ne2, e1);
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|    // T1 != T2, T1 empty
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|    compressed_pair_tester<empty_POD_UDT,non_empty2>::test(e1, ne3, e1, ne4);
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|    // T1 != T2, both empty
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|    compressed_pair_tester<empty_POD_UDT,empty_UDT>::test(e1, e2, e1, e2);
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|    // T1 == T2, both non-empty
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|    compressed_pair_tester<non_empty1,non_empty1>::test(ne1, ne1, ne2, ne2);
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|    // T1 == T2, both empty
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|    compressed_pair_tester<empty_UDT,empty_UDT>::test(e2, e2, e2, e2);
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| 
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| 
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|    // test references:
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| 
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|    // T1 != T2, both non-empty
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|    compressed_pair_reference_tester<non_empty1&,non_empty2>::test(ne1, ne3, ne2, ne4);
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|    compressed_pair_reference_tester<non_empty1,non_empty2&>::test(ne1, ne3, ne2, ne4);
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|    compressed_pair_reference1_tester<non_empty1&,non_empty2>::test(ne1, ne3, ne2, ne4);
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|    compressed_pair_reference2_tester<non_empty1,non_empty2&>::test(ne1, ne3, ne2, ne4);
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|    // T1 != T2, T2 empty
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|    compressed_pair_reference_tester<non_empty1&,empty_POD_UDT>::test(ne1, e1, ne2, e1);
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|    compressed_pair_reference1_tester<non_empty1&,empty_POD_UDT>::test(ne1, e1, ne2, e1);
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|    // T1 != T2, T1 empty
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|    compressed_pair_reference_tester<empty_POD_UDT,non_empty2&>::test(e1, ne3, e1, ne4);
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|    compressed_pair_reference2_tester<empty_POD_UDT,non_empty2&>::test(e1, ne3, e1, ne4);
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|    // T1 == T2, both non-empty
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|    compressed_pair_reference_tester<non_empty1&,non_empty1&>::test(ne1, ne1, ne2, ne2);
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| 
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|    // tests arrays:
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|    non_empty1 nea1[2];
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|    non_empty1 nea2[2];
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|    non_empty2 nea3[2];
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|    non_empty2 nea4[2];
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|    nea1[0] = non_empty1(5);
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|    nea2[0] = non_empty1(6);
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|    nea3[0] = non_empty2(7);
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|    nea4[0] = non_empty2(8);
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|    
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|    // T1 != T2, both non-empty
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|    compressed_pair_array1_tester<non_empty1[2],non_empty2>::test(nea1, ne3, nea2, ne4);
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|    compressed_pair_array2_tester<non_empty1,non_empty2[2]>::test(ne1, nea3, ne2, nea4);
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|    compressed_pair_array_tester<non_empty1[2],non_empty2[2]>::test(nea1, nea3, nea2, nea4);
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|    // T1 != T2, T2 empty
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|    compressed_pair_array1_tester<non_empty1[2],empty_POD_UDT>::test(nea1, e1, nea2, e1);
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|    // T1 != T2, T1 empty
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|    compressed_pair_array2_tester<empty_POD_UDT,non_empty2[2]>::test(e1, nea3, e1, nea4);
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|    // T1 == T2, both non-empty
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|    compressed_pair_array_tester<non_empty1[2],non_empty1[2]>::test(nea1, nea1, nea2, nea2);
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|    return boost::report_errors();
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| }
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