mirror of
https://github.com/rbock/sqlpp11.git
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259 lines
8.4 KiB
C++
259 lines
8.4 KiB
C++
/*
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* Copyright (c) 2013-2015, Roland Bock
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without modification,
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* are permitted provided that the following conditions are met:
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*
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* Redistributions of source code must retain the above copyright notice, this
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* list of conditions and the following disclaimer.
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*
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* Redistributions in binary form must reproduce the above copyright notice, this
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* list of conditions and the following disclaimer in the documentation and/or
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* other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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* WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR
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* ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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* LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
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* ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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* SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#ifndef SQLPP_EXPRESSION_H
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#define SQLPP_EXPRESSION_H
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#include <sqlpp11/alias.h>
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#include <sqlpp11/data_types/boolean.h>
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#include <sqlpp11/expression_fwd.h>
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#include <sqlpp11/noop.h>
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#include <sqlpp11/rhs_wrap.h>
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#include <sqlpp11/serializer.h>
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#include <sqlpp11/tvin.h>
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#include <sqlpp11/wrap_operand.h>
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namespace sqlpp
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{
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template <typename Lhs, typename Rhs>
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struct binary_expression_t<Lhs, op::equal_to, Rhs>
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: public expression_operators<binary_expression_t<Lhs, op::equal_to, Rhs>, boolean>,
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public alias_operators<binary_expression_t<Lhs, op::equal_to, Rhs>>
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{
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using _traits = make_traits<boolean, tag::is_expression>;
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using _lhs_t = Lhs;
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using _rhs_t = rhs_wrap_t<allow_tvin_t<Rhs>, trivial_value_is_null_t<_lhs_t>::value>;
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using _nodes = detail::type_vector<_lhs_t, _rhs_t>;
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binary_expression_t(Lhs lhs, Rhs rhs) : _lhs(lhs), _rhs(rhs)
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{
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}
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binary_expression_t(const binary_expression_t&) = default;
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binary_expression_t(binary_expression_t&&) = default;
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binary_expression_t& operator=(const binary_expression_t&) = default;
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binary_expression_t& operator=(binary_expression_t&&) = default;
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~binary_expression_t() = default;
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_lhs_t _lhs;
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_rhs_t _rhs;
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};
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template <typename Context, typename Lhs, typename Rhs>
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struct serializer_t<Context, binary_expression_t<Lhs, op::equal_to, Rhs>>
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{
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using T = binary_expression_t<Lhs, op::equal_to, Rhs>;
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using _serialize_check = serialize_check_of<Context, typename T::_lhs_t, typename T::_rhs_t>;
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static Context& _(const T& t, Context& context)
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{
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context << "(";
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serialize_operand(t._lhs, context);
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if (t._rhs._is_null())
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{
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context << " IS NULL";
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}
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else
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{
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context << "=";
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serialize_operand(t._rhs, context);
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}
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context << ")";
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return context;
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}
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};
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template <typename Lhs, typename Rhs>
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struct binary_expression_t<Lhs, op::not_equal_to, Rhs>
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: public expression_operators<binary_expression_t<Lhs, op::not_equal_to, Rhs>, boolean>,
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public alias_operators<binary_expression_t<Lhs, op::not_equal_to, Rhs>>
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{
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using _traits = make_traits<boolean, tag::is_expression>;
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using _lhs_t = Lhs;
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using _rhs_t = rhs_wrap_t<allow_tvin_t<Rhs>, trivial_value_is_null_t<_lhs_t>::value>;
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using _nodes = detail::type_vector<_lhs_t, _rhs_t>;
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binary_expression_t(Lhs lhs, Rhs rhs) : _lhs(lhs), _rhs(rhs)
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{
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}
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binary_expression_t(const binary_expression_t&) = default;
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binary_expression_t(binary_expression_t&&) = default;
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binary_expression_t& operator=(const binary_expression_t&) = default;
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binary_expression_t& operator=(binary_expression_t&&) = default;
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~binary_expression_t() = default;
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_lhs_t _lhs;
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_rhs_t _rhs;
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};
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template <typename Context, typename Lhs, typename Rhs>
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struct serializer_t<Context, binary_expression_t<Lhs, op::not_equal_to, Rhs>>
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{
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using T = binary_expression_t<Lhs, op::not_equal_to, Rhs>;
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using _serialize_check = serialize_check_of<Context, typename T::_lhs_t, typename T::_rhs_t>;
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static Context& _(const T& t, Context& context)
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{
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context << "(";
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serialize_operand(t._lhs, context);
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if (t._rhs._is_null())
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{
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context << " IS NOT NULL";
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}
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else
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{
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context << "<>";
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serialize_operand(t._rhs, context);
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}
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context << ")";
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return context;
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}
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};
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template <typename Rhs>
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struct unary_expression_t<op::logical_not, Rhs>
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: public expression_operators<unary_expression_t<op::logical_not, Rhs>, boolean>,
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public alias_operators<unary_expression_t<op::logical_not, Rhs>>
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{
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using _traits = make_traits<boolean, tag::is_expression>;
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using _nodes = detail::type_vector<Rhs>;
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unary_expression_t(Rhs rhs) : _rhs(rhs)
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{
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}
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unary_expression_t(const unary_expression_t&) = default;
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unary_expression_t(unary_expression_t&&) = default;
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unary_expression_t& operator=(const unary_expression_t&) = default;
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unary_expression_t& operator=(unary_expression_t&&) = default;
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~unary_expression_t() = default;
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Rhs _rhs;
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};
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template <typename Context, typename Rhs>
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struct serializer_t<Context, unary_expression_t<op::logical_not, Rhs>>
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{
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using _serialize_check = serialize_check_of<Context, Rhs>;
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using T = unary_expression_t<op::logical_not, Rhs>;
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static Context& _(const T& t, Context& context)
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{
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context << "(";
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if (trivial_value_is_null_t<Rhs>::value)
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{
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serialize_operand(t._rhs, context);
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context << " IS NULL ";
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}
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else
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{
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context << "NOT ";
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serialize_operand(t._rhs, context);
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}
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context << ")";
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return context;
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}
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};
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template <typename Lhs, typename O, typename Rhs>
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struct binary_expression_t : public expression_operators<binary_expression_t<Lhs, O, Rhs>, value_type_of<O>>,
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public alias_operators<binary_expression_t<Lhs, O, Rhs>>
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{
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using _traits = make_traits<value_type_of<O>, tag::is_expression>;
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using _nodes = detail::type_vector<Lhs, Rhs>;
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binary_expression_t(Lhs lhs, Rhs rhs) : _lhs(lhs), _rhs(rhs)
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{
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}
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binary_expression_t(const binary_expression_t&) = default;
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binary_expression_t(binary_expression_t&&) = default;
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binary_expression_t& operator=(const binary_expression_t&) = default;
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binary_expression_t& operator=(binary_expression_t&&) = default;
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~binary_expression_t() = default;
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Lhs _lhs;
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Rhs _rhs;
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};
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template <typename Context, typename Lhs, typename O, typename Rhs>
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struct serializer_t<Context, binary_expression_t<Lhs, O, Rhs>>
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{
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using _serialize_check = serialize_check_of<Context, Lhs, Rhs>;
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using T = binary_expression_t<Lhs, O, Rhs>;
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static Context& _(const T& t, Context& context)
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{
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context << "(";
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serialize_operand(t._lhs, context);
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context << O::_name;
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serialize_operand(t._rhs, context);
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context << ")";
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return context;
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}
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};
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template <typename O, typename Rhs>
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struct unary_expression_t : public expression_operators<unary_expression_t<O, Rhs>, value_type_of<O>>,
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public alias_operators<unary_expression_t<O, Rhs>>
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{
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using _traits = make_traits<value_type_of<O>, tag::is_expression>;
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using _nodes = detail::type_vector<Rhs>;
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unary_expression_t(Rhs rhs) : _rhs(rhs)
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{
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}
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unary_expression_t(const unary_expression_t&) = default;
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unary_expression_t(unary_expression_t&&) = default;
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unary_expression_t& operator=(const unary_expression_t&) = default;
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unary_expression_t& operator=(unary_expression_t&&) = default;
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~unary_expression_t() = default;
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Rhs _rhs;
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};
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template <typename Context, typename O, typename Rhs>
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struct serializer_t<Context, unary_expression_t<O, Rhs>>
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{
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using _serialize_check = serialize_check_of<Context, Rhs>;
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using T = unary_expression_t<O, Rhs>;
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static Context& _(const T& t, Context& context)
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{
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context << "(";
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context << O::_name;
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serialize_operand(t._rhs, context);
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context << ")";
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return context;
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}
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};
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}
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#endif
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