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509 lines
17 KiB
C++
509 lines
17 KiB
C++
// Boost Lambda Library -- switch.hpp -----------------------------------
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//
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// Copyright (C) 2000 Gary Powell (powellg@amazon.com)
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// Copyright (C) 1999, 2000 Jaakko Jarvi (jaakko.jarvi@cs.utu.fi)
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//
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// Distributed under the Boost Software License, Version 1.0. (See
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// 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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// For more information, see www.boost.org
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// --------------------------------------------------------------------------
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#if !defined(BOOST_LAMBDA_SWITCH_HPP)
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#define BOOST_LAMBDA_SWITCH_HPP
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#include "boost/lambda/core.hpp"
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#include "boost/lambda/detail/control_constructs_common.hpp"
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#include "boost/preprocessor/enum_shifted_params.hpp"
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#include "boost/preprocessor/repeat_2nd.hpp"
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#include "boost/preprocessor/tuple.hpp"
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namespace boost {
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namespace lambda {
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// Switch actions
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template <int N, class Switch1 = null_type, class Switch2 = null_type,
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class Switch3 = null_type, class Switch4 = null_type,
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class Switch5 = null_type, class Switch6 = null_type,
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class Switch7 = null_type, class Switch8 = null_type,
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class Switch9 = null_type>
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struct switch_action {};
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namespace detail {
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// templates to represent special lambda functors for the cases in
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// switch statements
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template <int Value> struct case_label {};
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struct default_label {};
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template<class Type> struct switch_case_tag {};
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// a normal case is represented as:
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// tagged_lambda_functor<switch_case_tag<case_label<N> > >, LambdaFunctor>
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// the default case as:
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// tagged_lambda_functor<switch_case_tag<default_label> >, LambdaFunctor>
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} // end detail
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/// create switch_case_tag tagged_lambda_functors
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template <int CaseValue, class Arg>
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inline const
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tagged_lambda_functor<
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detail::switch_case_tag<detail::case_label<CaseValue> >,
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lambda_functor<Arg>
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>
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case_statement(const lambda_functor<Arg>& a) {
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return
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tagged_lambda_functor<
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detail::switch_case_tag<detail::case_label<CaseValue> >,
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lambda_functor<Arg>
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>(a);
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}
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// No case body case.
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template <int CaseValue>
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inline const
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tagged_lambda_functor<
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detail::switch_case_tag<detail::case_label<CaseValue> >,
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lambda_functor<
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lambda_functor_base<
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do_nothing_action,
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null_type
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>
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>
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>
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case_statement() {
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return
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tagged_lambda_functor<
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detail::switch_case_tag<detail::case_label<CaseValue> >,
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lambda_functor<
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lambda_functor_base<
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do_nothing_action,
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null_type
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>
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>
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> () ;
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}
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// default label
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template <class Arg>
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inline const
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tagged_lambda_functor<
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detail::switch_case_tag<detail::default_label>,
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lambda_functor<Arg>
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>
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default_statement(const lambda_functor<Arg>& a) {
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return
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tagged_lambda_functor<
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detail::switch_case_tag<detail::default_label>,
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lambda_functor<Arg>
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>(a);
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}
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// default lable, no case body case.
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inline const
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tagged_lambda_functor<
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detail::switch_case_tag<detail::default_label>,
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lambda_functor<
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lambda_functor_base<
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do_nothing_action,
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null_type
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>
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>
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>
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default_statement() {
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return
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lambda_functor_base<
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do_nothing_action,
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null_type
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> () ;
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}
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// Specializations for lambda_functor_base of case_statement -----------------
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// 0 case type:
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// useless (just the condition part) but provided for completeness.
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template<class Args>
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class
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lambda_functor_base<
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switch_action<1>,
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Args
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>
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{
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public:
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Args args;
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template <class SigArgs> struct sig { typedef void type; };
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public:
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explicit lambda_functor_base(const Args& a) : args(a) {}
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template<class RET, CALL_TEMPLATE_ARGS>
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RET call(CALL_FORMAL_ARGS) const {
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detail::select(::boost::tuples::get<1>(args), CALL_ACTUAL_ARGS);
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}
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};
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// 1 case type:
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// template<class Args, int Case1>
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// class
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// lambda_functor_base<
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// action<
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// 2,
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// return_void_action<switch_action<detail::case_label<Case1> > >
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// >,
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// Args
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// >
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// {
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// Args args;
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// public:
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// explicit lambda_functor_base(const Args& a) : args(a) {}
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// template<class RET, class A, class B, class C>
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// RET call(A& a, B& b, C& c) const {
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// switch( detail::select(::boost::tuples::get<0>(args), a, b, c) )
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// {
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// case Case1:
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// detail::select(::boost::tuples::get<1>(args), a, b, c);
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// break;
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// }
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// }
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// };
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// switch with default being the sole label - doesn't make much sense but
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// it is there for completeness
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// template<class Args>
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// class
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// lambda_functor_base<
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// action<
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// 2,
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// return_void_action<switch_action<detail::default_label> >
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// >,
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// Args
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// >
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// {
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// Args args;
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// public:
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// explicit lambda_functor_base(const Args& a) : args(a) {}
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//
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// template<class RET, class A, class B, class C>
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// RET call(A& a, B& b, C& c) const {
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// switch( detail::select(::boost::tuples::get<0>(args), a, b, c) )
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// {
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// default:
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// detail::select(::boost::tuples::get<1>(args), a, b, c);
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// break;
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// }
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// }
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// };
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// // 2 case type:
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// The different specializations are generated with Vesa Karvonen's
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// preprocessor library.
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// This is just a comment to show what the generated classes look like
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// template<class Args, int Case1, int Case2>
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// class
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// lambda_functor_base<
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// action<3,
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// return_void_action<
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// switch_action<
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// detail::case_label<Case1>,
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// detail::case_label<Case2>
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// >
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// >
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// >,
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// Args
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// >
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// {
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// Args args;
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// public:
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// explicit lambda_functor_base(const Args& a) : args(a) {}
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// template<class RET, class A, class B, class C>
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// RET call(A& a, B& b, C& c) const {
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// switch( detail::select(::boost::tuples::get<0>(args), a, b, c) )
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// {
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// case Case1:
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// detail::select(::boost::tuples::get<1>(args), a, b, c);
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// break;
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// case Case2:
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// detail::select(::boost::tuples::get<2>(args), a, b, c);
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// break;
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// }
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// }
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// };
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// template<class Args, int Case1>
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// class
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// lambda_functor_base<
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// action<3,
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// return_void_action<
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// switch_action<
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// detail::case_label<Case1>,
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// detail::default_label
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// >
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// >
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// >,
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// Args
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// >
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// {
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// Args args;
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// public:
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// explicit lambda_functor_base(const Args& a) : args(a) {}
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// template<class RET, class A, class B, class C>
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// RET call(A& a, B& b, C& c) const {
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// switch( detail::select(::boost::tuples::get<0>(args), a, b, c) )
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// {
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// case Case1:
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// detail::select(::boost::tuples::get<1>(args), a, b, c);
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// break;
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// default:
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// detail::select(::boost::tuples::get<2>(args), a, b, c);
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// break;
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// }
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// }
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// };
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// -------------------------
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// Some helper preprocessor macros ---------------------------------
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// BOOST_LAMBDA_A_I_LIST(N, X) is a list of form X0, X1, ..., XN
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// BOOST_LAMBDA_A_I_B_LIST(N, X, Y) is a list of form X0 Y, X1 Y, ..., XN Y
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#define BOOST_LAMBDA_A_I(z, i, A) \
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BOOST_PP_COMMA_IF(i) BOOST_PP_CAT(A,i)
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#define BOOST_LAMBDA_A_I_B(z, i, T) \
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BOOST_PP_COMMA_IF(i) BOOST_PP_CAT(BOOST_PP_TUPLE_ELEM(2,0,T),i) BOOST_PP_TUPLE_ELEM(2,1,T)
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#define BOOST_LAMBDA_A_I_LIST(i, A) \
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BOOST_PP_REPEAT(i,BOOST_LAMBDA_A_I, A)
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#define BOOST_LAMBDA_A_I_B_LIST(i, A, B) \
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BOOST_PP_REPEAT(i,BOOST_LAMBDA_A_I_B, (A,B))
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// Switch related macros -------------------------------------------
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#define BOOST_LAMBDA_SWITCH_CASE_BLOCK(z, N, A) \
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case Case##N: \
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detail::select(::boost::tuples::get<BOOST_PP_INC(N)>(args), CALL_ACTUAL_ARGS); \
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break;
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#define BOOST_LAMBDA_SWITCH_CASE_BLOCK_LIST(N) \
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BOOST_PP_REPEAT(N, BOOST_LAMBDA_SWITCH_CASE_BLOCK, FOO)
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// 2 case type:
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#define BOOST_LAMBDA_SWITCH_NO_DEFAULT_CASE(N) \
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template<class Args, BOOST_LAMBDA_A_I_LIST(N, int Case)> \
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class \
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lambda_functor_base< \
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switch_action<BOOST_PP_INC(N), \
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BOOST_LAMBDA_A_I_B_LIST(N, detail::case_label<Case,>) \
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>, \
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Args \
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> \
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{ \
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public: \
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Args args; \
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template <class SigArgs> struct sig { typedef void type; }; \
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public: \
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explicit lambda_functor_base(const Args& a) : args(a) {} \
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\
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template<class RET, CALL_TEMPLATE_ARGS> \
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RET call(CALL_FORMAL_ARGS) const { \
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switch( detail::select(::boost::tuples::get<0>(args), CALL_ACTUAL_ARGS) ) \
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{ \
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BOOST_LAMBDA_SWITCH_CASE_BLOCK_LIST(N) \
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} \
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} \
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};
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#define BOOST_LAMBDA_SWITCH_WITH_DEFAULT_CASE(N) \
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template< \
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class Args BOOST_PP_COMMA_IF(BOOST_PP_DEC(N)) \
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BOOST_LAMBDA_A_I_LIST(BOOST_PP_DEC(N), int Case) \
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> \
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class \
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lambda_functor_base< \
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switch_action<BOOST_PP_INC(N), \
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BOOST_LAMBDA_A_I_B_LIST(BOOST_PP_DEC(N), \
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detail::case_label<Case, >) \
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BOOST_PP_COMMA_IF(BOOST_PP_DEC(N)) \
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detail::default_label \
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>, \
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Args \
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> \
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{ \
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public: \
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Args args; \
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template <class SigArgs> struct sig { typedef void type; }; \
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public: \
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explicit lambda_functor_base(const Args& a) : args(a) {} \
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\
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template<class RET, CALL_TEMPLATE_ARGS> \
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RET call(CALL_FORMAL_ARGS) const { \
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switch( detail::select(::boost::tuples::get<0>(args), CALL_ACTUAL_ARGS) ) \
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{ \
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BOOST_LAMBDA_SWITCH_CASE_BLOCK_LIST(BOOST_PP_DEC(N)) \
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default: \
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detail::select(::boost::tuples::get<N>(args), CALL_ACTUAL_ARGS); \
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break; \
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} \
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} \
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};
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// switch_statement bind functions -------------------------------------
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// The zero argument case, for completeness sake
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inline const
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lambda_functor<
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lambda_functor_base<
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do_nothing_action,
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null_type
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>
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>
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switch_statement() {
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return
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lambda_functor_base<
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do_nothing_action,
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null_type
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>
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();
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}
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// 1 argument case, this is useless as well, just the condition part
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template <class TestArg>
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inline const
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lambda_functor<
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lambda_functor_base<
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switch_action<1>,
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tuple<lambda_functor<TestArg> >
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>
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>
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switch_statement(const lambda_functor<TestArg>& a1) {
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return
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lambda_functor_base<
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switch_action<1>,
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tuple< lambda_functor<TestArg> >
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>
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( tuple<lambda_functor<TestArg> >(a1));
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}
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#define HELPER(z, N, FOO) \
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BOOST_PP_COMMA_IF(N) \
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BOOST_PP_CAT( \
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const tagged_lambda_functor<detail::switch_case_tag<TagData, \
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N>) \
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BOOST_PP_COMMA() Arg##N>& a##N
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#define HELPER_LIST(N) BOOST_PP_REPEAT(N, HELPER, FOO)
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#define BOOST_LAMBDA_SWITCH_STATEMENT(N) \
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template <class TestArg, \
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BOOST_LAMBDA_A_I_LIST(N, class TagData), \
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BOOST_LAMBDA_A_I_LIST(N, class Arg)> \
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inline const \
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lambda_functor< \
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lambda_functor_base< \
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switch_action<BOOST_PP_INC(N), \
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BOOST_LAMBDA_A_I_LIST(N, TagData) \
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>, \
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tuple<lambda_functor<TestArg>, BOOST_LAMBDA_A_I_LIST(N, Arg)> \
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> \
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> \
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switch_statement( \
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const lambda_functor<TestArg>& ta, \
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HELPER_LIST(N) \
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) \
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{ \
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return \
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lambda_functor_base< \
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switch_action<BOOST_PP_INC(N), \
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BOOST_LAMBDA_A_I_LIST(N, TagData) \
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>, \
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tuple<lambda_functor<TestArg>, BOOST_LAMBDA_A_I_LIST(N, Arg)> \
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> \
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( tuple<lambda_functor<TestArg>, BOOST_LAMBDA_A_I_LIST(N, Arg)> \
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(ta, BOOST_LAMBDA_A_I_LIST(N, a) )); \
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}
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// Here's the actual generation
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#define BOOST_LAMBDA_SWITCH(N) \
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BOOST_LAMBDA_SWITCH_NO_DEFAULT_CASE(N) \
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BOOST_LAMBDA_SWITCH_WITH_DEFAULT_CASE(N)
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// Use this to avoid case 0, these macros work only from case 1 upwards
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#define BOOST_LAMBDA_SWITCH_HELPER(z, N, A) \
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BOOST_LAMBDA_SWITCH( BOOST_PP_INC(N) )
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// Use this to avoid cases 0 and 1, these macros work only from case 2 upwards
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#define BOOST_LAMBDA_SWITCH_STATEMENT_HELPER(z, N, A) \
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BOOST_LAMBDA_SWITCH_STATEMENT(BOOST_PP_INC(N))
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#ifdef BOOST_MSVC
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#pragma warning(push)
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#pragma warning(disable:4065)
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#endif
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// up to 9 cases supported (counting default:)
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BOOST_PP_REPEAT_2ND(9,BOOST_LAMBDA_SWITCH_HELPER,FOO)
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BOOST_PP_REPEAT_2ND(9,BOOST_LAMBDA_SWITCH_STATEMENT_HELPER,FOO)
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#ifdef BOOST_MSVC
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#pragma warning(pop)
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#endif
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} // namespace lambda
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} // namespace boost
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#undef HELPER
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#undef HELPER_LIST
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#undef BOOST_LAMBDA_SWITCH_HELPER
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#undef BOOST_LAMBDA_SWITCH
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#undef BOOST_LAMBDA_SWITCH_NO_DEFAULT_CASE
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#undef BOOST_LAMBDA_SWITCH_WITH_DEFAULT_CASE
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#undef BOOST_LAMBDA_SWITCH_CASE_BLOCK
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#undef BOOST_LAMBDA_SWITCH_CASE_BLOCK_LIST
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#undef BOOST_LAMBDA_SWITCH_STATEMENT
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#undef BOOST_LAMBDA_SWITCH_STATEMENT_HELPER
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#endif
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