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1 #if !defined(BOOST_PROTO_DONT_USE_PREPROCESSED_FILES)
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2
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3 #ifndef BOOST_NO_CXX11_VARIADIC_TEMPLATES
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4 #include <boost/proto/detail/preprocessed/expr_variadic.hpp>
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5 #else
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6 #include <boost/proto/detail/preprocessed/expr.hpp>
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7 #endif
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8
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9 #elif !defined(BOOST_PP_IS_ITERATING)
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10
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11 /// INTERNAL ONLY
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12 ///
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13 #define BOOST_PROTO_CHILD(Z, N, DATA) \
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14 typedef BOOST_PP_CAT(Arg, N) BOOST_PP_CAT(proto_child, N); \
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15 BOOST_PP_CAT(proto_child, N) BOOST_PP_CAT(child, N); \
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16 /**< INTERNAL ONLY */
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17
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18 /// INTERNAL ONLY
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19 ///
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20 #define BOOST_PROTO_VOID(Z, N, DATA) \
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21 typedef void BOOST_PP_CAT(proto_child, N); \
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22 /**< INTERNAL ONLY */
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23
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24 // Generate variadic versions of expr
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25 #if defined(__WAVE__) && defined(BOOST_PROTO_CREATE_PREPROCESSED_FILES)
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26 #pragma wave option(preserve: 2, line: 0, output: "preprocessed/expr_variadic.hpp")
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27 #endif
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28
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29 ///////////////////////////////////////////////////////////////////////////////
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30 /// \file expr_variadic.hpp
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31 /// Contains definition of expr\<\> class template.
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32 //
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33 // Copyright 2008 Eric Niebler. Distributed under the Boost
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34 // Software License, Version 1.0. (See accompanying file
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35 // LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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36
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37 #if defined(__WAVE__) && defined(BOOST_PROTO_CREATE_PREPROCESSED_FILES)
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38 #pragma wave option(preserve: 1)
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39 #endif
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40
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41 // The expr<> specializations are actually defined here.
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42 #define BOOST_PROTO_DEFINE_TERMINAL
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43 #define BOOST_PP_ITERATION_PARAMS_1 \
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44 (3, (0, 0, <boost/proto/detail/expr.hpp>))
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45 #include BOOST_PP_ITERATE()
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46
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47 #undef BOOST_PROTO_DEFINE_TERMINAL
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48 #define BOOST_PP_ITERATION_PARAMS_1 \
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49 (3, (1, BOOST_PROTO_MAX_ARITY, <boost/proto/detail/expr.hpp>))
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50 #include BOOST_PP_ITERATE()
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51
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52 // Generate non-variadic versions of expr
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53 #if defined(__WAVE__) && defined(BOOST_PROTO_CREATE_PREPROCESSED_FILES)
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54 #define BOOST_NO_CXX11_VARIADIC_TEMPLATES
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55 #pragma wave option(preserve: 2, line: 0, output: "preprocessed/expr.hpp")
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56
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57 ///////////////////////////////////////////////////////////////////////////////
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58 /// \file expr.hpp
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59 /// Contains definition of expr\<\> class template.
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60 //
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61 // Copyright 2008 Eric Niebler. Distributed under the Boost
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62 // Software License, Version 1.0. (See accompanying file
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63 // LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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64
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65 #pragma wave option(preserve: 1)
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66
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67 // The expr<> specializations are actually defined here.
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68 #define BOOST_PROTO_DEFINE_TERMINAL
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69 #define BOOST_PP_ITERATION_PARAMS_1 (3, (0, 0, <boost/proto/detail/expr.hpp>))
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70 #include BOOST_PP_ITERATE()
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71
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72 #undef BOOST_PROTO_DEFINE_TERMINAL
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73 #define BOOST_PP_ITERATION_PARAMS_1 (3, (1, BOOST_PROTO_MAX_ARITY, <boost/proto/detail/expr.hpp>))
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74 #include BOOST_PP_ITERATE()
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75
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76 #pragma wave option(output: null)
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77 #undef BOOST_NO_CXX11_VARIADIC_TEMPLATES
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78 #endif
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79
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80 #undef BOOST_PROTO_CHILD
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81 #undef BOOST_PROTO_VOID
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82
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83 #else
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84
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85 #define ARG_COUNT BOOST_PP_MAX(1, BOOST_PP_ITERATION())
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86
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87 /// \brief Representation of a node in an expression tree.
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88 ///
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89 /// \c proto::expr\<\> is a node in an expression template tree. It
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90 /// is a container for its child sub-trees. It also serves as
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91 /// the terminal nodes of the tree.
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92 ///
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93 /// \c Tag is type that represents the operation encoded by
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94 /// this expression. It is typically one of the structs
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95 /// in the \c boost::proto::tag namespace, but it doesn't
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96 /// have to be.
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97 ///
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98 /// \c Args is a type list representing the type of the children
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99 /// of this expression. It is an instantiation of one
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100 /// of \c proto::list1\<\>, \c proto::list2\<\>, etc. The
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101 /// child types must all themselves be either \c expr\<\>
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102 /// or <tt>proto::expr\<\>&</tt>. If \c Args is an
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103 /// instantiation of \c proto::term\<\> then this
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104 /// \c expr\<\> type represents a terminal expression;
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105 /// the parameter to the \c proto::term\<\> template
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106 /// represents the terminal's value type.
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107 ///
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108 /// \c Arity is an integral constant representing the number of child
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109 /// nodes this node contains. If \c Arity is 0, then this
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110 /// node is a terminal.
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111 ///
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112 /// \c proto::expr\<\> is a valid Fusion random-access sequence, where
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113 /// the elements of the sequence are the child expressions.
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114 #ifdef BOOST_PROTO_DEFINE_TERMINAL
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115 template<typename Tag, typename Arg0>
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116 struct expr<Tag, term<Arg0>, 0>
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117 #else
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118 template<typename Tag BOOST_PP_ENUM_TRAILING_PARAMS(ARG_COUNT, typename Arg)>
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119 struct expr<Tag, BOOST_PP_CAT(list, BOOST_PP_ITERATION())<BOOST_PP_ENUM_PARAMS(ARG_COUNT, Arg)>, BOOST_PP_ITERATION() >
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120 #endif
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121 {
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122 typedef Tag proto_tag;
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123 static const long proto_arity_c = BOOST_PP_ITERATION();
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124 typedef mpl::long_<BOOST_PP_ITERATION() > proto_arity;
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125 typedef expr proto_base_expr;
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126 #ifdef BOOST_PROTO_DEFINE_TERMINAL
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127 typedef term<Arg0> proto_args;
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128 #else
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129 typedef BOOST_PP_CAT(list, BOOST_PP_ITERATION())<BOOST_PP_ENUM_PARAMS(ARG_COUNT, Arg)> proto_args;
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130 #endif
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131 typedef basic_expr<Tag, proto_args, BOOST_PP_ITERATION() > proto_grammar;
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132 typedef default_domain proto_domain;
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133 typedef default_generator proto_generator;
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134 typedef proto::tag::proto_expr<Tag, proto_domain> fusion_tag;
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135 typedef expr proto_derived_expr;
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136 typedef void proto_is_expr_; /**< INTERNAL ONLY */
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137
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138 BOOST_PP_REPEAT(ARG_COUNT, BOOST_PROTO_CHILD, ~)
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139 BOOST_PP_REPEAT_FROM_TO(ARG_COUNT, BOOST_PROTO_MAX_ARITY, BOOST_PROTO_VOID, ~)
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140
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141 /// \return *this
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142 ///
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143 BOOST_FORCEINLINE
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144 expr const &proto_base() const
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145 {
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146 return *this;
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147 }
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148
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149 /// \overload
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150 ///
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151 BOOST_FORCEINLINE
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152 expr &proto_base()
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153 {
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154 return *this;
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155 }
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156
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157 #ifdef BOOST_PROTO_DEFINE_TERMINAL
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158 /// \return A new \c expr\<\> object initialized with the specified
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159 /// arguments.
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160 ///
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161 template<typename A0>
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162 BOOST_FORCEINLINE
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163 static expr const make(A0 &a0)
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164 {
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165 return detail::make_terminal(a0, static_cast<expr *>(0), static_cast<proto_args *>(0));
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166 }
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167
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168 /// \overload
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169 ///
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170 template<typename A0>
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171 BOOST_FORCEINLINE
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172 static expr const make(A0 const &a0)
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173 {
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174 return detail::make_terminal(a0, static_cast<expr *>(0), static_cast<proto_args *>(0));
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175 }
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176 #else
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177 /// \return A new \c expr\<\> object initialized with the specified
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178 /// arguments.
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179 ///
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180 template<BOOST_PP_ENUM_PARAMS(ARG_COUNT, typename A)>
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181 BOOST_FORCEINLINE
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182 static expr const make(BOOST_PP_ENUM_BINARY_PARAMS(ARG_COUNT, A, const &a))
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183 {
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184 expr that = {BOOST_PP_ENUM_PARAMS(ARG_COUNT, a)};
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185 return that;
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186 }
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187 #endif
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188
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189 #if 1 == BOOST_PP_ITERATION()
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190 /// If \c Tag is \c boost::proto::tag::address_of and \c proto_child0 is
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191 /// <tt>T&</tt>, then \c address_of_hack_type_ is <tt>T*</tt>.
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192 /// Otherwise, it is some undefined type.
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193 typedef typename detail::address_of_hack<Tag, proto_child0>::type address_of_hack_type_;
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194
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195 /// \return The address of <tt>this->child0</tt> if \c Tag is
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196 /// \c boost::proto::tag::address_of. Otherwise, this function will
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197 /// fail to compile.
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198 ///
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199 /// \attention Proto overloads <tt>operator&</tt>, which means that
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200 /// proto-ified objects cannot have their addresses taken, unless we use
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201 /// the following hack to make \c &x implicitly convertible to \c X*.
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202 BOOST_FORCEINLINE
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203 operator address_of_hack_type_() const
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204 {
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205 return boost::addressof(this->child0);
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206 }
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207 #else
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208 /// INTERNAL ONLY
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209 ///
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210 typedef detail::not_a_valid_type address_of_hack_type_;
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211 #endif
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212
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213 /// Assignment
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214 ///
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215 /// \param a The rhs.
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216 /// \return A new \c expr\<\> node representing an assignment of \c that to \c *this.
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217 BOOST_FORCEINLINE
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218 proto::expr<
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219 proto::tag::assign
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220 , list2<expr &, expr const &>
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221 , 2
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222 > const
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223 operator =(expr const &a)
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224 {
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225 proto::expr<
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226 proto::tag::assign
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227 , list2<expr &, expr const &>
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228 , 2
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229 > that = {*this, a};
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230 return that;
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231 }
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232
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233 /// Assignment
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234 ///
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235 /// \param a The rhs.
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236 /// \return A new \c expr\<\> node representing an assignment of \c a to \c *this.
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237 template<typename A>
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238 BOOST_FORCEINLINE
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239 proto::expr<
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240 proto::tag::assign
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241 , list2<expr const &, typename result_of::as_child<A>::type>
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242 , 2
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243 > const
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244 operator =(A &a) const
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245 {
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246 proto::expr<
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247 proto::tag::assign
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248 , list2<expr const &, typename result_of::as_child<A>::type>
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249 , 2
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250 > that = {*this, proto::as_child(a)};
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251 return that;
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252 }
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253
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254 /// \overload
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255 ///
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256 template<typename A>
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257 BOOST_FORCEINLINE
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258 proto::expr<
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259 proto::tag::assign
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260 , list2<expr const &, typename result_of::as_child<A const>::type>
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261 , 2
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262 > const
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263 operator =(A const &a) const
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264 {
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265 proto::expr<
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266 proto::tag::assign
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267 , list2<expr const &, typename result_of::as_child<A const>::type>
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268 , 2
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269 > that = {*this, proto::as_child(a)};
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270 return that;
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271 }
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272
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273 #ifdef BOOST_PROTO_DEFINE_TERMINAL
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274 /// \overload
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275 ///
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276 template<typename A>
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277 BOOST_FORCEINLINE
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278 proto::expr<
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279 proto::tag::assign
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280 , list2<expr &, typename result_of::as_child<A>::type>
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281 , 2
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282 > const
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283 operator =(A &a)
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284 {
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285 proto::expr<
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286 proto::tag::assign
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287 , list2<expr &, typename result_of::as_child<A>::type>
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288 , 2
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289 > that = {*this, proto::as_child(a)};
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290 return that;
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291 }
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292
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293 /// \overload
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294 ///
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295 template<typename A>
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296 BOOST_FORCEINLINE
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297 proto::expr<
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298 proto::tag::assign
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299 , list2<expr &, typename result_of::as_child<A const>::type>
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300 , 2
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301 > const
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302 operator =(A const &a)
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303 {
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304 proto::expr<
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305 proto::tag::assign
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306 , list2<expr &, typename result_of::as_child<A const>::type>
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307 , 2
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308 > that = {*this, proto::as_child(a)};
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309 return that;
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310 }
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311 #endif
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312
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313 /// Subscript
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314 ///
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315 /// \param a The rhs.
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316 /// \return A new \c expr\<\> node representing \c *this subscripted with \c a.
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317 template<typename A>
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318 BOOST_FORCEINLINE
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319 proto::expr<
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320 proto::tag::subscript
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321 , list2<expr const &, typename result_of::as_child<A>::type>
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322 , 2
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323 > const
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324 operator [](A &a) const
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325 {
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326 proto::expr<
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327 proto::tag::subscript
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328 , list2<expr const &, typename result_of::as_child<A>::type>
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329 , 2
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330 > that = {*this, proto::as_child(a)};
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331 return that;
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332 }
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333
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334 /// \overload
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335 ///
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336 template<typename A>
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337 BOOST_FORCEINLINE
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338 proto::expr<
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339 proto::tag::subscript
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340 , list2<expr const &, typename result_of::as_child<A const>::type>
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341 , 2
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342 > const
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343 operator [](A const &a) const
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344 {
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345 proto::expr<
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346 proto::tag::subscript
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347 , list2<expr const &, typename result_of::as_child<A const>::type>
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348 , 2
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349 > that = {*this, proto::as_child(a)};
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350 return that;
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351 }
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352
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353 #ifdef BOOST_PROTO_DEFINE_TERMINAL
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354 /// \overload
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355 ///
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356 template<typename A>
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357 BOOST_FORCEINLINE
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358 proto::expr<
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359 proto::tag::subscript
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360 , list2<expr &, typename result_of::as_child<A>::type>
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361 , 2
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362 > const
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363 operator [](A &a)
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364 {
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365 proto::expr<
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366 proto::tag::subscript
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367 , list2<expr &, typename result_of::as_child<A>::type>
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368 , 2
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369 > that = {*this, proto::as_child(a)};
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370 return that;
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371 }
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372
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373 /// \overload
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374 ///
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375 template<typename A>
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376 BOOST_FORCEINLINE
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377 proto::expr<
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378 proto::tag::subscript
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379 , list2<expr &, typename result_of::as_child<A const>::type>
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380 , 2
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381 > const
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382 operator [](A const &a)
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383 {
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384 proto::expr<
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385 proto::tag::subscript
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386 , list2<expr &, typename result_of::as_child<A const>::type>
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387 , 2
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388 > that = {*this, proto::as_child(a)};
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389 return that;
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390 }
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391 #endif
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392
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393 /// Encodes the return type of \c expr\<\>::operator(), for use with \c boost::result_of\<\>
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394 ///
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395 template<typename Sig>
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396 struct result
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397 {
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398 typedef typename result_of::funop<Sig, expr, default_domain>::type const type;
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399 };
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400
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401 #ifndef BOOST_NO_CXX11_VARIADIC_TEMPLATES
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402 /// \overload
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403 ///
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404 template<typename ...A>
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405 BOOST_FORCEINLINE
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406 typename result_of::funop<
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407 expr const(A const &...)
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408 , expr
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409 , default_domain
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410 >::type const
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411 operator ()(A const &... a) const
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412 {
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413 return result_of::funop<
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414 expr const(A const &...)
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415 , expr
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416 , default_domain
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417 >::call(*this, a...);
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418 }
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419
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420 #ifdef BOOST_PROTO_DEFINE_TERMINAL
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421 /// \overload
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422 ///
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423 template<typename ...A>
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424 BOOST_FORCEINLINE
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425 typename result_of::funop<
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426 expr(A const &...)
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427 , expr
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428 , default_domain
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429 >::type const
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430 operator ()(A const &... a)
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431 {
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432 return result_of::funop<
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433 expr(A const &...)
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434 , expr
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435 , default_domain
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436 >::call(*this, a...);
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437 }
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438 #endif
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439
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440 #else // BOOST_NO_CXX11_VARIADIC_TEMPLATES
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441
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442 /// Function call
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443 ///
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444 /// \return A new \c expr\<\> node representing the function invocation of \c (*this)().
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445 BOOST_FORCEINLINE
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446 proto::expr<proto::tag::function, list1<expr const &>, 1> const
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447 operator ()() const
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448 {
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449 proto::expr<proto::tag::function, list1<expr const &>, 1> that = {*this};
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450 return that;
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451 }
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452
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453 #ifdef BOOST_PROTO_DEFINE_TERMINAL
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454 /// \overload
|
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455 ///
|
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456 BOOST_FORCEINLINE
|
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457 proto::expr<proto::tag::function, list1<expr &>, 1> const
|
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458 operator ()()
|
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459 {
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460 proto::expr<proto::tag::function, list1<expr &>, 1> that = {*this};
|
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|
461 return that;
|
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|
462 }
|
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463 #endif
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464
|
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465 #define BOOST_PP_ITERATION_PARAMS_2 \
|
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466 (3, (1, BOOST_PP_DEC(BOOST_PROTO_MAX_FUNCTION_CALL_ARITY), <boost/proto/detail/expr_funop.hpp>))
|
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467 #include BOOST_PP_ITERATE()
|
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|
468
|
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|
469 #endif
|
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|
470 };
|
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471
|
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472 #undef ARG_COUNT
|
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|
473
|
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|
474 #endif
|