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1 /*-----------------------------------------------------------------------------+
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2 Copyright (c) 2007-2010: Joachim Faulhaber
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3 +------------------------------------------------------------------------------+
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4 Copyright (c) 1999-2006: Cortex Software GmbH, Kantstrasse 57, Berlin
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5 +------------------------------------------------------------------------------+
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6 Distributed under the Boost Software License, Version 1.0.
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7 (See accompanying file LICENCE.txt or copy at
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8 http://www.boost.org/LICENSE_1_0.txt)
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9 +-----------------------------------------------------------------------------*/
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10 #ifndef BOOST_ICL_SET_ALGO_HPP_JOFA_990225
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11 #define BOOST_ICL_SET_ALGO_HPP_JOFA_990225
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12
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13 #include <boost/type_traits/remove_const.hpp>
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14 #include <boost/icl/detail/notate.hpp>
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15 #include <boost/icl/concept/container.hpp>
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16 #include <boost/icl/concept/set_value.hpp>
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17 #include <boost/icl/concept/map_value.hpp>
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18
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19
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20 namespace boost{namespace icl
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21 {
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22
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23 namespace Set
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24 {
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25
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26 template<class ObjectT, class ConstObjectT, class IteratorT>
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27 bool common_range(IteratorT& lwb, IteratorT& upb, ObjectT& x1, const ConstObjectT& x2)
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28 {
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29 // lwb and upb are iterators of x1 marking the lower and upper bound of
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30 // the common range of x1 and x2.
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31 typedef typename ConstObjectT::const_iterator ConstObject_iterator;
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32 // ObjectT may be const or non const.
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33 typedef typename remove_const<ObjectT>::type PureObjectT;
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34
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35 lwb = x1.end();
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36 upb = x1.end();
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37
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38 if(icl::is_empty(x1) || icl::is_empty(x2))
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39 return false;
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40
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41 IteratorT x1_fst_ = x1.begin();
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42 IteratorT x1_lst_ = x1.end(); x1_lst_--;
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43
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44 ConstObject_iterator x2_fst_ = x2.begin();
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45 ConstObject_iterator x2_lst_ = x2.end(); x2_lst_--;
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46
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47 typename ObjectT::key_compare key_less;
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48 if(key_less(icl::key_value< PureObjectT>(x1_lst_),
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49 icl::key_value<ConstObjectT>(x2_fst_))) // {x1} {x2}
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50 return false;
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51 if(key_less(icl::key_value<ConstObjectT>(x2_lst_),
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52 icl::key_value< PureObjectT>(x1_fst_))) // {x2} {x1}
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53 return false;
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54
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55 // We do have a common range
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56 lwb = x1.lower_bound(icl::key_value<ConstObjectT>(x2_fst_));
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57 upb = x1.upper_bound(icl::key_value<ConstObjectT>(x2_lst_));
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58
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59 return true;
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60 }
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61
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62
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63 /** Function template <tt>contained_in</tt> implements the subset relation.
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64 <tt>contained_in(sub, super)</tt> is true if <tt>sub</tt> is contained in <tt>super</tt> */
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65 template<class SetType>
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66 inline bool within(const SetType& sub, const SetType& super)
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67 {
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68 if(&super == &sub) return true;
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69 if(icl::is_empty(sub)) return true;
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70 if(icl::is_empty(super)) return false;
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71
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72 typename SetType::const_iterator common_lwb_, common_upb_;
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73 if(!common_range(common_lwb_, common_upb_, sub, super))
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74 return false;
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75
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76 typename SetType::const_iterator sub_ = common_lwb_, super_;
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77 while(sub_ != common_upb_)
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78 {
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79 super_ = super.find(*sub_++);
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80 if(super_ == super.end())
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81 return false;
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82 }
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83 return true;
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84 }
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85
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86 template<class SetType>
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87 bool intersects(const SetType& left, const SetType& right)
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88 {
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89 typename SetType::const_iterator common_lwb_right_, common_upb_right_;
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90 if(!common_range(common_lwb_right_, common_upb_right_, right, left))
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91 return false;
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92
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93 typename SetType::const_iterator right_ = common_lwb_right_, found_;
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94 while(right_ != common_upb_right_)
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95 {
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96 found_ = left.find(*right_++);
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97 if(found_ != left.end())
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98 return true; // found a common element
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99 }
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100 // found no common element
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101 return false;
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102 }
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103
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104
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105 #ifdef BOOST_MSVC
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106 #pragma warning(push)
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107 #pragma warning(disable:4996) //'std::equal': Function call with parameters that may be unsafe - this call relies on the caller to check that the passed values are correct. To disable this warning, use -D_SCL_SECURE_NO_WARNINGS. See documentation on how to use Visual C++ 'Checked Iterators'
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108 #endif // I do guarantee here that I am using the parameters correctly :)
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109
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110 /** Function template <tt>lexicographical_equal</tt> implements
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111 lexicographical equality. */
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112 template<class SetType>
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113 inline bool lexicographical_equal(const SetType& left, const SetType& right)
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114 {
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115 if(&left == &right)
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116 return true;
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117 else return left.iterative_size() == right.iterative_size()
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118 && std::equal(left.begin(), left.end(), right.begin());
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119 }
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120
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121 #ifdef BOOST_MSVC
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122 #pragma warning(pop)
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123 #endif
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124
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125
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126 } // namespace Set
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127
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128 }} // namespace icl boost
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129
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130 #endif
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131
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