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usr
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boost
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mpl
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aux_
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preprocessed
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msvc60
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/usr/include/boost/mpl/aux_/preprocessed/msvc60
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advance_backward.hpp
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advance_forward.hpp
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and.hpp
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apply.hpp
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apply_fwd.hpp
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apply_wrap.hpp
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arg.hpp
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basic_bind.hpp
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bind.hpp
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bind_fwd.hpp
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bitand.hpp
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bitor.hpp
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bitxor.hpp
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deque.hpp
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divides.hpp
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equal_to.hpp
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fold_impl.hpp
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full_lambda.hpp
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greater.hpp
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greater_equal.hpp
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inherit.hpp
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iter_fold_if_impl.hpp
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iter_fold_impl.hpp
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lambda_no_ctps.hpp
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less.hpp
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less_equal.hpp
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list.hpp
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list_c.hpp
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map.hpp
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minus.hpp
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modulus.hpp
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not_equal_to.hpp
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or.hpp
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placeholders.hpp
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plus.hpp
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quote.hpp
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reverse_fold_impl.hpp
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reverse_iter_fold_impl.hpp
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set.hpp
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set_c.hpp
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shift_left.hpp
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shift_right.hpp
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template_arity.hpp
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times.hpp
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unpack_args.hpp
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vector.hpp
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vector_c.hpp
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Edit:
/usr/include/boost/mpl/aux_/preprocessed/msvc60/reverse_iter_fold_impl.hpp
(9138B)
// Copyright Aleksey Gurtovoy 2000-2004 // // Distributed under the Boost Software License, Version 1.0. // (See accompanying file LICENSE_1_0.txt or copy at // http://www.boost.org/LICENSE_1_0.txt) // // Preprocessed version of "boost/mpl/aux_/reverse_iter_fold_impl.hpp" header // -- DO NOT modify by hand! namespace boost { namespace mpl { namespace aux { /// forward declaration template< long N , typename First , typename Last , typename State , typename BackwardOp , typename ForwardOp > struct reverse_iter_fold_impl; template< long N > struct reverse_iter_fold_chunk; template<> struct reverse_iter_fold_chunk<0> { template< typename First , typename Last , typename State , typename BackwardOp , typename ForwardOp > struct result_ { typedef First iter0; typedef State fwd_state0; typedef fwd_state0 bkwd_state0; typedef bkwd_state0 state; typedef iter0 iterator; }; /// ETI workaround template<> struct result_< int,int,int,int,int > { typedef int state; typedef int iterator; }; }; template<> struct reverse_iter_fold_chunk<1> { template< typename First , typename Last , typename State , typename BackwardOp , typename ForwardOp > struct result_ { typedef First iter0; typedef State fwd_state0; typedef typename apply2< ForwardOp,fwd_state0,iter0 >::type fwd_state1; typedef typename mpl::next<iter0>::type iter1; typedef fwd_state1 bkwd_state1; typedef typename apply2< BackwardOp,bkwd_state1,iter0 >::type bkwd_state0; typedef bkwd_state0 state; typedef iter1 iterator; }; /// ETI workaround template<> struct result_< int,int,int,int,int > { typedef int state; typedef int iterator; }; }; template<> struct reverse_iter_fold_chunk<2> { template< typename First , typename Last , typename State , typename BackwardOp , typename ForwardOp > struct result_ { typedef First iter0; typedef State fwd_state0; typedef typename apply2< ForwardOp,fwd_state0,iter0 >::type fwd_state1; typedef typename mpl::next<iter0>::type iter1; typedef typename apply2< ForwardOp,fwd_state1,iter1 >::type fwd_state2; typedef typename mpl::next<iter1>::type iter2; typedef fwd_state2 bkwd_state2; typedef typename apply2< BackwardOp,bkwd_state2,iter1 >::type bkwd_state1; typedef typename apply2< BackwardOp,bkwd_state1,iter0 >::type bkwd_state0; typedef bkwd_state0 state; typedef iter2 iterator; }; /// ETI workaround template<> struct result_< int,int,int,int,int > { typedef int state; typedef int iterator; }; }; template<> struct reverse_iter_fold_chunk<3> { template< typename First , typename Last , typename State , typename BackwardOp , typename ForwardOp > struct result_ { typedef First iter0; typedef State fwd_state0; typedef typename apply2< ForwardOp,fwd_state0,iter0 >::type fwd_state1; typedef typename mpl::next<iter0>::type iter1; typedef typename apply2< ForwardOp,fwd_state1,iter1 >::type fwd_state2; typedef typename mpl::next<iter1>::type iter2; typedef typename apply2< ForwardOp,fwd_state2,iter2 >::type fwd_state3; typedef typename mpl::next<iter2>::type iter3; typedef fwd_state3 bkwd_state3; typedef typename apply2< BackwardOp,bkwd_state3,iter2 >::type bkwd_state2; typedef typename apply2< BackwardOp,bkwd_state2,iter1 >::type bkwd_state1; typedef typename apply2< BackwardOp,bkwd_state1,iter0 >::type bkwd_state0; typedef bkwd_state0 state; typedef iter3 iterator; }; /// ETI workaround template<> struct result_< int,int,int,int,int > { typedef int state; typedef int iterator; }; }; template<> struct reverse_iter_fold_chunk<4> { template< typename First , typename Last , typename State , typename BackwardOp , typename ForwardOp > struct result_ { typedef First iter0; typedef State fwd_state0; typedef typename apply2< ForwardOp,fwd_state0,iter0 >::type fwd_state1; typedef typename mpl::next<iter0>::type iter1; typedef typename apply2< ForwardOp,fwd_state1,iter1 >::type fwd_state2; typedef typename mpl::next<iter1>::type iter2; typedef typename apply2< ForwardOp,fwd_state2,iter2 >::type fwd_state3; typedef typename mpl::next<iter2>::type iter3; typedef typename apply2< ForwardOp,fwd_state3,iter3 >::type fwd_state4; typedef typename mpl::next<iter3>::type iter4; typedef fwd_state4 bkwd_state4; typedef typename apply2< BackwardOp,bkwd_state4,iter3 >::type bkwd_state3; typedef typename apply2< BackwardOp,bkwd_state3,iter2 >::type bkwd_state2; typedef typename apply2< BackwardOp,bkwd_state2,iter1 >::type bkwd_state1; typedef typename apply2< BackwardOp,bkwd_state1,iter0 >::type bkwd_state0; typedef bkwd_state0 state; typedef iter4 iterator; }; /// ETI workaround template<> struct result_< int,int,int,int,int > { typedef int state; typedef int iterator; }; }; template< long N > struct reverse_iter_fold_chunk { template< typename First , typename Last , typename State , typename BackwardOp , typename ForwardOp > struct result_ { typedef First iter0; typedef State fwd_state0; typedef typename apply2< ForwardOp,fwd_state0,iter0 >::type fwd_state1; typedef typename mpl::next<iter0>::type iter1; typedef typename apply2< ForwardOp,fwd_state1,iter1 >::type fwd_state2; typedef typename mpl::next<iter1>::type iter2; typedef typename apply2< ForwardOp,fwd_state2,iter2 >::type fwd_state3; typedef typename mpl::next<iter2>::type iter3; typedef typename apply2< ForwardOp,fwd_state3,iter3 >::type fwd_state4; typedef typename mpl::next<iter3>::type iter4; typedef reverse_iter_fold_impl< ( (N - 4) < 0 ? 0 : N - 4 ) , iter4 , Last , fwd_state4 , BackwardOp , ForwardOp > nested_chunk; typedef typename nested_chunk::state bkwd_state4; typedef typename apply2< BackwardOp,bkwd_state4,iter3 >::type bkwd_state3; typedef typename apply2< BackwardOp,bkwd_state3,iter2 >::type bkwd_state2; typedef typename apply2< BackwardOp,bkwd_state2,iter1 >::type bkwd_state1; typedef typename apply2< BackwardOp,bkwd_state1,iter0 >::type bkwd_state0; typedef bkwd_state0 state; typedef typename nested_chunk::iterator iterator; }; }; template< typename First , typename Last , typename State , typename BackwardOp , typename ForwardOp > struct reverse_iter_fold_step; template< typename Last , typename State > struct reverse_iter_fold_null_step { typedef Last iterator; typedef State state; }; template<> struct reverse_iter_fold_chunk< -1 > { template< typename First , typename Last , typename State , typename BackwardOp , typename ForwardOp > struct result_ { typedef typename if_< typename is_same< First,Last >::type , reverse_iter_fold_null_step< Last,State > , reverse_iter_fold_step< First,Last,State,BackwardOp,ForwardOp > >::type res_; typedef typename res_::state state; typedef typename res_::iterator iterator; }; /// ETI workaround template<> struct result_< int,int,int,int,int > { typedef int state; typedef int iterator; }; }; template< typename First , typename Last , typename State , typename BackwardOp , typename ForwardOp > struct reverse_iter_fold_step { typedef reverse_iter_fold_chunk< -1 >::template result_< typename mpl::next<First>::type , Last , typename apply2< ForwardOp,State,First >::type , BackwardOp , ForwardOp > nested_step; typedef typename apply2< BackwardOp , typename nested_step::state , First >::type state; typedef typename nested_step::iterator iterator; }; template< long N , typename First , typename Last , typename State , typename BackwardOp , typename ForwardOp > struct reverse_iter_fold_impl : reverse_iter_fold_chunk<N> ::template result_< First,Last,State,BackwardOp,ForwardOp > { }; }}}
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