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- #ifndef BOOST_HANA_SUM_HPP
- #define BOOST_HANA_SUM_HPP
- #include <boost/hana/fwd/sum.hpp>
- #include <boost/hana/concept/foldable.hpp>
- #include <boost/hana/concept/monoid.hpp>
- #include <boost/hana/config.hpp>
- #include <boost/hana/core/dispatch.hpp>
- #include <boost/hana/fold_left.hpp>
- #include <boost/hana/integral_constant.hpp> // required by fwd decl
- #include <boost/hana/plus.hpp>
- #include <boost/hana/zero.hpp>
- namespace boost { namespace hana {
-
- template <typename M>
- template <typename Xs>
- constexpr decltype(auto) sum_t<M>::operator()(Xs&& xs) const {
- using S = typename hana::tag_of<Xs>::type;
- using Sum = BOOST_HANA_DISPATCH_IF(sum_impl<S>,
- hana::Foldable<S>::value
- );
- #ifndef BOOST_HANA_CONFIG_DISABLE_CONCEPT_CHECKS
- static_assert(hana::Monoid<M>::value,
- "hana::sum<M> requires 'M' to be a Monoid");
- static_assert(hana::Foldable<S>::value,
- "hana::sum<M>(xs) requires 'xs' to be Foldable");
- #endif
- return Sum::template apply<M>(static_cast<Xs&&>(xs));
- }
-
- template <typename T, bool condition>
- struct sum_impl<T, when<condition>> : default_ {
- template <typename M, typename Xs>
- static constexpr decltype(auto) apply(Xs&& xs) {
- return hana::fold_left(static_cast<Xs&&>(xs), hana::zero<M>(), hana::plus);
- }
- };
- }}
- #endif
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