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update single
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@ -20,8 +20,8 @@
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// CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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// This file was generated with a script.
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// Generated 2017-02-17 10:46:09.695757 UTC
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// This header was generated with sol v2.15.8 (revision 37420dc)
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// Generated 2017-02-19 02:59:41.608823 UTC
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// This header was generated with sol v2.15.8 (revision a9cfe4b)
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// https://github.com/ThePhD/sol2
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#ifndef SOL_SINGLE_INCLUDE_HPP
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@ -8535,7 +8535,7 @@ namespace sol {
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namespace sol {
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namespace function_detail {
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template <typename... Functions>
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template <int start_skew = 0, typename... Functions>
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struct overloaded_function {
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typedef std::tuple<Functions...> overload_list;
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typedef std::make_index_sequence<sizeof...(Functions)> indices;
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@ -8557,7 +8557,7 @@ namespace sol {
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int operator()(lua_State* L) {
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auto mfx = [&](auto&&... args) { return this->call(std::forward<decltype(args)>(args)...); };
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return call_detail::overload_match<Functions...>(mfx, L, 1);
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return call_detail::overload_match<Functions...>(mfx, L, 1 + start_skew);
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}
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};
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} // function_detail
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@ -8718,6 +8718,8 @@ namespace sol {
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namespace function_detail {
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template<typename T>
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struct class_indicator {};
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struct call_indicator {};
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}
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namespace stack {
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template<typename... Sigs>
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@ -8921,13 +8923,13 @@ namespace sol {
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template<typename... Functions>
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struct pusher<overload_set<Functions...>> {
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static int push(lua_State* L, overload_set<Functions...>&& set) {
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typedef function_detail::overloaded_function<Functions...> F;
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typedef function_detail::overloaded_function<0, Functions...> F;
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pusher<function_sig<>>{}.set_fx<F>(L, std::move(set.functions));
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return 1;
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}
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static int push(lua_State* L, const overload_set<Functions...>& set) {
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typedef function_detail::overloaded_function<Functions...> F;
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typedef function_detail::overloaded_function<0, Functions...> F;
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pusher<function_sig<>>{}.set_fx<F>(L, set.functions);
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return 1;
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}
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@ -8991,16 +8993,28 @@ namespace sol {
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template <typename... Functions>
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struct pusher<factory_wrapper<Functions...>> {
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static int push(lua_State* L, const factory_wrapper<Functions...>& fw) {
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typedef function_detail::overloaded_function<Functions...> F;
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typedef function_detail::overloaded_function<0, Functions...> F;
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pusher<function_sig<>>{}.set_fx<F>(L, fw.functions);
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return 1;
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}
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static int push(lua_State* L, factory_wrapper<Functions...>&& fw) {
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typedef function_detail::overloaded_function<Functions...> F;
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typedef function_detail::overloaded_function<0, Functions...> F;
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pusher<function_sig<>>{}.set_fx<F>(L, std::move(fw.functions));
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return 1;
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}
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static int push(lua_State* L, const factory_wrapper<Functions...>& set, function_detail::call_indicator) {
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typedef function_detail::overloaded_function<1, Functions...> F;
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pusher<function_sig<>>{}.set_fx<F>(L, set.functions);
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return 1;
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}
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static int push(lua_State* L, factory_wrapper<Functions...>&& set, function_detail::call_indicator) {
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typedef function_detail::overloaded_function<1, Functions...> F;
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pusher<function_sig<>>{}.set_fx<F>(L, std::move(set.functions));
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return 1;
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}
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};
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template <typename T, typename... Lists>
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@ -10825,19 +10839,31 @@ namespace sol {
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hint->second = std::move(o);
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}
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template <typename N, typename F, typename... Args>
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void insert_prepare(std::true_type, lua_State* L, N&& n, F&& f, Args&&... args) {
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object o = make_object<F>(L, std::forward<F>(f), function_detail::call_indicator(), std::forward<Args>(args)...);
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callconstructfunc = std::move(o);
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}
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template <typename N, typename F, typename... Args>
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void insert_prepare(std::false_type, lua_State* L, N&& n, F&& f, Args&&... args) {
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object o = make_object<F>(L, std::forward<F>(f), std::forward<Args>(args)...);
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insert(std::forward<N>(n), std::move(o));
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}
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template <typename N, typename F>
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void add_member_function(std::true_type, lua_State* L, N&& n, F&& f) {
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object o = make_object<F>(L, std::forward<F>(f), function_detail::class_indicator<T>());
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if (std::is_same<meta::unqualified_t<N>, call_construction>::value) {
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callconstructfunc = std::move(o);
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return;
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}
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insert(std::forward<N>(n), std::move(o));
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insert_prepare(std::is_same<meta::unqualified_t<N>, call_construction>(), L, std::forward<N>(n), std::forward<F>(f), function_detail::class_indicator<T>());
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}
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template <typename N, typename F>
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void add_member_function(std::false_type, lua_State* L, N&& n, F&& f) {
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object o = make_object<F>(L, std::forward<F>(f));
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insert_prepare(std::is_same<meta::unqualified_t<N>, call_construction>(), L, std::forward<N>(n), std::forward<F>(f));
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}
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template <typename N, typename F, meta::enable<meta::is_callable<meta::unwrap_unqualified_t<F>>> = meta::enabler>
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void add_function(lua_State* L, N&& n, F&& f) {
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object o = make_object(L, as_function_reference(std::forward<F>(f)));
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if (std::is_same<meta::unqualified_t<N>, call_construction>::value) {
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callconstructfunc = std::move(o);
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return;
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@ -10845,11 +10871,6 @@ namespace sol {
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insert(std::forward<N>(n), std::move(o));
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}
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template <typename N, typename F, meta::enable<meta::is_callable<meta::unwrap_unqualified_t<F>>> = meta::enabler>
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void add_function(lua_State* L, N&& n, F&& f) {
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insert(std::forward<N>(n), make_object(L, as_function_reference(std::forward<F>(f))));
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}
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template <typename N, typename F, meta::disable<meta::is_callable<meta::unwrap_unqualified_t<F>>> = meta::enabler>
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void add_function(lua_State* L, N&& n, F&& f) {
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add_member_function(std::is_member_pointer<meta::unwrap_unqualified_t<F>>(), L, std::forward<N>(n), std::forward<F>(f));
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