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1 // Boost result_of library
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2
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3 // Copyright Douglas Gregor 2004. Use, modification and
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4 // distribution is subject to the Boost Software License, Version
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5 // 1.0. (See accompanying file LICENSE_1_0.txt or copy at
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6 // http://www.boost.org/LICENSE_1_0.txt)
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7
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8 // For more information, see http://www.boost.org/libs/utility
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9 #ifndef BOOST_RESULT_OF_HPP
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10 #define BOOST_RESULT_OF_HPP
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11
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12 #include <boost/config.hpp>
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13 #include <boost/preprocessor/cat.hpp>
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14 #include <boost/preprocessor/iteration/iterate.hpp>
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15 #include <boost/preprocessor/repetition/enum_params.hpp>
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16 #include <boost/preprocessor/repetition/enum_trailing_params.hpp>
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17 #include <boost/preprocessor/repetition/enum_binary_params.hpp>
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18 #include <boost/preprocessor/repetition/enum_shifted_params.hpp>
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19 #include <boost/preprocessor/facilities/intercept.hpp>
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20 #include <boost/detail/workaround.hpp>
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21 #include <boost/mpl/has_xxx.hpp>
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22 #include <boost/mpl/if.hpp>
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23 #include <boost/mpl/eval_if.hpp>
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24 #include <boost/mpl/bool.hpp>
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25 #include <boost/mpl/identity.hpp>
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26 #include <boost/mpl/or.hpp>
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27 #include <boost/type_traits/is_class.hpp>
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28 #include <boost/type_traits/is_pointer.hpp>
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29 #include <boost/type_traits/is_member_function_pointer.hpp>
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30 #include <boost/type_traits/remove_cv.hpp>
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31 #include <boost/type_traits/remove_reference.hpp>
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32 #include <boost/utility/declval.hpp>
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33 #include <boost/utility/enable_if.hpp>
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34
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35 #ifndef BOOST_RESULT_OF_NUM_ARGS
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36 # define BOOST_RESULT_OF_NUM_ARGS 16
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37 #endif
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38
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39 // Use the decltype-based version of result_of by default if the compiler
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40 // supports N3276 <http://www.open-std.org/JTC1/SC22/WG21/docs/papers/2011/n3276.pdf>.
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41 // The user can force the choice by defining BOOST_RESULT_OF_USE_DECLTYPE,
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42 // BOOST_RESULT_OF_USE_TR1, or BOOST_RESULT_OF_USE_TR1_WITH_DECLTYPE_FALLBACK but not more than one!
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43 #if (defined(BOOST_RESULT_OF_USE_DECLTYPE) && defined(BOOST_RESULT_OF_USE_TR1)) || \
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44 (defined(BOOST_RESULT_OF_USE_DECLTYPE) && defined(BOOST_RESULT_OF_USE_TR1_WITH_DECLTYPE_FALLBACK)) || \
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45 (defined(BOOST_RESULT_OF_USE_TR1) && defined(BOOST_RESULT_OF_USE_TR1_WITH_DECLTYPE_FALLBACK))
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46 # error More than one of BOOST_RESULT_OF_USE_DECLTYPE, BOOST_RESULT_OF_USE_TR1 and \
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47 BOOST_RESULT_OF_USE_TR1_WITH_DECLTYPE_FALLBACK cannot be defined at the same time.
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48 #endif
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49
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50 #if defined(BOOST_RESULT_OF_USE_TR1_WITH_DECLTYPE_FALLBACK) && defined(BOOST_MPL_CFG_NO_HAS_XXX_TEMPLATE)
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51 # error Cannot fallback to decltype if BOOST_MPL_CFG_NO_HAS_XXX_TEMPLATE is not defined.
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52 #endif
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53
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54 #ifndef BOOST_RESULT_OF_USE_TR1
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55 # ifndef BOOST_RESULT_OF_USE_DECLTYPE
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56 # ifndef BOOST_RESULT_OF_USE_TR1_WITH_DECLTYPE_FALLBACK
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57 # ifndef BOOST_NO_CXX11_DECLTYPE_N3276 // this implies !defined(BOOST_NO_CXX11_DECLTYPE)
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58 # define BOOST_RESULT_OF_USE_DECLTYPE
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59 # else
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60 # define BOOST_RESULT_OF_USE_TR1
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61 # endif
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62 # endif
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63 # endif
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64 #endif
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65
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66 namespace boost {
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67
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68 template<typename F> struct result_of;
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69 template<typename F> struct tr1_result_of; // a TR1-style implementation of result_of
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70
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71 #if !defined(BOOST_NO_SFINAE)
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72 namespace detail {
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73
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74 BOOST_MPL_HAS_XXX_TRAIT_DEF(result_type)
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75
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76 // Work around a nvcc bug by only defining has_result when it's needed.
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77 #ifdef BOOST_RESULT_OF_USE_TR1_WITH_DECLTYPE_FALLBACK
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78 BOOST_MPL_HAS_XXX_TEMPLATE_DEF(result)
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79 #endif
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80
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81 template<typename F, typename FArgs, bool HasResultType> struct tr1_result_of_impl;
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82
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83 template<typename F> struct cpp0x_result_of;
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84
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85 #ifdef BOOST_NO_SFINAE_EXPR
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86
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87 // There doesn't seem to be any other way to turn this off such that the presence of
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88 // the user-defined operator,() below doesn't cause spurious warning all over the place,
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89 // so unconditionally turn it off.
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90 #if BOOST_MSVC
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91 # pragma warning(disable: 4913) // user defined binary operator ',' exists but no overload could convert all operands, default built-in binary operator ',' used
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92 #endif
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93
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94 struct result_of_private_type {};
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95
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96 struct result_of_weird_type {
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97 friend result_of_private_type operator,(result_of_private_type, result_of_weird_type);
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98 };
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99
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100 typedef char result_of_yes_type; // sizeof(result_of_yes_type) == 1
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101 typedef char (&result_of_no_type)[2]; // sizeof(result_of_no_type) == 2
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102
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103 template<typename T>
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104 result_of_no_type result_of_is_private_type(T const &);
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105 result_of_yes_type result_of_is_private_type(result_of_private_type);
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106
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107 template<typename C>
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108 struct result_of_callable_class : C {
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109 result_of_callable_class();
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110 typedef result_of_private_type const &(*pfn_t)(...);
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111 operator pfn_t() const volatile;
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112 };
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113
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114 template<typename C>
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115 struct result_of_wrap_callable_class {
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116 typedef result_of_callable_class<C> type;
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117 };
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118
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119 template<typename C>
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120 struct result_of_wrap_callable_class<C const> {
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121 typedef result_of_callable_class<C> const type;
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122 };
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123
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124 template<typename C>
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125 struct result_of_wrap_callable_class<C volatile> {
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126 typedef result_of_callable_class<C> volatile type;
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127 };
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128
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129 template<typename C>
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130 struct result_of_wrap_callable_class<C const volatile> {
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131 typedef result_of_callable_class<C> const volatile type;
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132 };
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133
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134 template<typename C>
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135 struct result_of_wrap_callable_class<C &> {
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136 typedef typename result_of_wrap_callable_class<C>::type &type;
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137 };
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138
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139 template<typename F, bool TestCallability = true> struct cpp0x_result_of_impl;
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140
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141 #else // BOOST_NO_SFINAE_EXPR
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142
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143 template<typename T>
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144 struct result_of_always_void
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145 {
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146 typedef void type;
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147 };
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148
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149 template<typename F, typename Enable = void> struct cpp0x_result_of_impl {};
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150
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151 #endif // BOOST_NO_SFINAE_EXPR
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152
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153 template<typename F>
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154 struct result_of_void_impl
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155 {
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156 typedef void type;
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157 };
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158
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159 template<typename R>
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160 struct result_of_void_impl<R (*)(void)>
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161 {
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162 typedef R type;
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163 };
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164
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165 template<typename R>
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166 struct result_of_void_impl<R (&)(void)>
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167 {
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168 typedef R type;
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169 };
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170
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171 // Determine the return type of a function pointer or pointer to member.
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172 template<typename F, typename FArgs>
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173 struct result_of_pointer
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174 : tr1_result_of_impl<typename remove_cv<F>::type, FArgs, false> { };
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175
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176 template<typename F, typename FArgs>
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177 struct tr1_result_of_impl<F, FArgs, true>
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178 {
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179 typedef typename F::result_type type;
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180 };
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181
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182 template<typename FArgs>
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183 struct is_function_with_no_args : mpl::false_ {};
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184
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185 template<typename F>
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186 struct is_function_with_no_args<F(void)> : mpl::true_ {};
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187
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188 template<typename F, typename FArgs>
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189 struct result_of_nested_result : F::template result<FArgs>
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190 {};
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191
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192 template<typename F, typename FArgs>
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193 struct tr1_result_of_impl<F, FArgs, false>
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194 : mpl::if_<is_function_with_no_args<FArgs>,
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195 result_of_void_impl<F>,
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196 result_of_nested_result<F, FArgs> >::type
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197 {};
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198
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199 } // end namespace detail
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200
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201 #define BOOST_PP_ITERATION_PARAMS_1 (3,(0,BOOST_RESULT_OF_NUM_ARGS,<boost/utility/detail/result_of_iterate.hpp>))
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202 #include BOOST_PP_ITERATE()
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203
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204 #else
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205 # define BOOST_NO_RESULT_OF 1
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206 #endif
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207
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208 }
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209
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210 #endif // BOOST_RESULT_OF_HPP
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