491 lines
12 KiB
C++
491 lines
12 KiB
C++
#ifndef GODOT_HPP
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#define GODOT_HPP
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#include <cstdlib>
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#include <cstring>
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#include <gdnative_api_struct.gen.h>
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#include <nativescript/godot_nativescript.h>
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#include "CoreTypes.hpp"
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#include "Variant.hpp"
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#include "Ref.hpp"
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#include "Object.hpp"
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#include "GodotGlobal.hpp"
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namespace godot {
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template<class T>
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T *as(Object *obj)
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{
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return (T *) godot::nativescript_api->godot_nativescript_get_userdata(obj);
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}
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template<class T>
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class GodotScript {
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public:
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T *owner;
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// GodotScript() {}
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void _init() {}
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static const char *___get_base_type_name()
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{
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return T::___get_class_name();
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}
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static GodotScript<T> *___get_from_variant(Variant a)
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{
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return as<GodotScript<T> >((Object *) a);
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}
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static void _register_methods() {}
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};
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#define GODOT_CLASS(Name) \
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public: inline static const char *___get_type_name() { return static_cast<const char *>(#Name); } \
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private:
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#define GODOT_SUBCLASS(Name, Base) \
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public: inline static const char *___get_type_name() { return static_cast<const char *>(#Name); } \
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inline static const char *___get_base_type_name() { return static_cast<const char *>(#Base); } \
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private:
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template<class T>
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struct _ArgCast {
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static T _arg_cast(Variant a)
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{
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return a;
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}
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};
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template<class T>
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struct _ArgCast<T*> {
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static T *_arg_cast(Variant a)
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{
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return (T *) T::___get_from_variant(a);
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}
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};
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template<>
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struct _ArgCast<Variant> {
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static Variant _arg_cast(Variant a)
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{
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return a;
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}
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};
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// instance and destroy funcs
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template<class T>
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void *_godot_class_instance_func(godot_object *p, void *method_data)
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{
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T *d = new T();
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*(godot_object **) &d->owner = p;
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d->_init();
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return d;
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}
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template<class T>
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void _godot_class_destroy_func(godot_object *p, void *method_data, void *data)
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{
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T *d = (T *) data;
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delete d;
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}
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template<class T>
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void register_class()
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{
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godot_instance_create_func create = {};
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create.create_func = _godot_class_instance_func<T>;
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godot_instance_destroy_func destroy = {};
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destroy.destroy_func = _godot_class_destroy_func<T>;
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godot::nativescript_api->godot_nativescript_register_class(godot::_RegisterState::nativescript_handle, T::___get_type_name(), T::___get_base_type_name(), create, destroy);
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T::_register_methods();
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}
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template<class T>
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void register_tool_class()
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{
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godot_instance_create_func create = {};
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create.create_func = _godot_class_instance_func<T>;
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godot_instance_destroy_func destroy = {};
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destroy.destroy_func = _godot_class_destroy_func<T>;
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godot::nativescript_api->godot_nativescript_register_tool_class(godot::_RegisterState::nativescript_handle, T::___get_type_name(), T::___get_base_type_name(), create, destroy);
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T::_register_methods();
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}
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// method registering
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typedef godot_variant (*__godot_wrapper_method)(godot_object *, void *, void *, int, godot_variant **);
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template<class T, class R, class ...args>
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const char *___get_method_class_name(R (T::*p)(args... a))
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{
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return T::___get_type_name();
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}
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template<class T, class R, class ...args>
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const char *___get_method_class_name(R (T::*p)(args... a) const)
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{
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return T::___get_type_name();
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}
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// Okay, time for some template magic.
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// Many thanks to manpat from the GDL Discord Server.
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// This is stuff that's available in C++14 I think, but whatever.
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template<int... I>
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struct __Sequence{};
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template<int N, int... I>
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struct __construct_sequence {
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using type = typename __construct_sequence<N-1, N-1, I...>::type;
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};
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template<int... I>
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struct __construct_sequence<0, I...> {
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using type = __Sequence<I...>;
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};
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// Now the wrapping part.
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template<class T, class R, class... As>
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struct _WrappedMethod {
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R (T::*f)(As...);
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template<int... I>
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void apply(Variant* ret, T* obj, Variant** args, __Sequence<I...>) {
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*ret = (obj->*f)( _ArgCast<As>::_arg_cast(*args[I])... );
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}
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};
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template<class T, class... As>
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struct _WrappedMethod<T, void, As...> {
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void (T::*f)(As...);
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template<int... I>
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void apply(Variant* ret, T* obj, Variant** args, __Sequence<I...>) {
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(obj->*f)( _ArgCast<As>::_arg_cast(*args[I])... );
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}
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};
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template<class T, class R, class... As>
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godot_variant __wrapped_method(godot_object *, void *method_data, void *user_data, int num_args, godot_variant **args)
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{
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godot_variant v;
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godot::api->godot_variant_new_nil(&v);
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T *obj = (T *) user_data;
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_WrappedMethod<T, R, As...> *method = (_WrappedMethod<T, R, As...>*) method_data;
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Variant *var = (Variant *) &v;
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Variant **arg = (Variant **) args;
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method->apply(var, obj, arg, typename __construct_sequence<sizeof...(As)>::type {});
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return v;
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}
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template<class T, class R, class... As>
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void *___make_wrapper_function(R (T::*f)(As...))
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{
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using MethodType = _WrappedMethod<T, R, As...>;
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MethodType *p = (MethodType *) godot::api->godot_alloc(sizeof(MethodType));
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p->f = f;
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return (void *) p;
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}
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template<class T, class R, class... As>
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__godot_wrapper_method ___get_wrapper_function(R (T::*f)(As...))
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{
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return (__godot_wrapper_method) &__wrapped_method<T, R, As...>;
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}
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template<class T, class R, class ...A>
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void *___make_wrapper_function(R (T::*f)(A...) const)
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{
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return ___make_wrapper_function((R (T::*)(A...)) f);
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}
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template<class T, class R, class ...A>
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__godot_wrapper_method ___get_wrapper_function(R (T::*f)(A...) const)
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{
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return ___get_wrapper_function((R (T::*)(A...)) f);
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}
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template<class M>
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void register_method(const char *name, M method_ptr, godot_method_rpc_mode rpc_type = GODOT_METHOD_RPC_MODE_DISABLED)
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{
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godot_instance_method method = {};
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method.method_data = ___make_wrapper_function(method_ptr);
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method.free_func = godot::api->godot_free;
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method.method = (__godot_wrapper_method) ___get_wrapper_function(method_ptr);
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godot_method_attributes attr = {};
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attr.rpc_type = rpc_type;
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godot::nativescript_api->godot_nativescript_register_method(godot::_RegisterState::nativescript_handle, ___get_method_class_name(method_ptr), name, attr, method);
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}
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template<class T, class P>
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struct _PropertySetFunc {
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void (T::*f)(P);
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static void _wrapped_setter(godot_object *object, void *method_data, void *user_data, godot_variant *value)
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{
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_PropertySetFunc<T, P> *set_func = (_PropertySetFunc<T, P> *) method_data;
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T *obj = (T *) user_data;
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Variant *v = (Variant *) value;
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(obj->*(set_func->f))(_ArgCast<P>::_arg_cast(*v));
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}
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};
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template<class T, class P>
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struct _PropertyGetFunc {
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P (T::*f)();
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static godot_variant _wrapped_getter(godot_object *object, void *method_data, void *user_data)
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{
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_PropertyGetFunc<T, P> *get_func = (_PropertyGetFunc<T, P> *) method_data;
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T *obj = (T *) user_data;
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godot_variant var;
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godot::api->godot_variant_new_nil(&var);
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Variant *v = (Variant *) &var;
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*v = (obj->*(get_func->f))();
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return var;
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}
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};
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template<class T, class P>
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struct _PropertyDefaultSetFunc {
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P (T::*f);
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static void _wrapped_setter(godot_object *object, void *method_data, void *user_data, godot_variant *value)
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{
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_PropertyDefaultSetFunc<T, P> *set_func = (_PropertyDefaultSetFunc<T, P> *) method_data;
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T *obj = (T *) user_data;
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Variant *v = (Variant *) value;
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(obj->*(set_func->f)) = _ArgCast<P>::_arg_cast(*v);
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}
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};
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template<class T, class P>
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struct _PropertyDefaultGetFunc {
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P (T::*f);
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static godot_variant _wrapped_getter(godot_object *object, void *method_data, void *user_data)
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{
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_PropertyDefaultGetFunc<T, P> *get_func = (_PropertyDefaultGetFunc<T, P> *) method_data;
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T *obj = (T *) user_data;
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godot_variant var;
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godot::api->godot_variant_new_nil(&var);
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Variant *v = (Variant *) &var;
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*v = (obj->*(get_func->f));
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return var;
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}
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};
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template<class T, class P>
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void register_property(const char *name, P (T::*var), P default_value, godot_method_rpc_mode rpc_mode = GODOT_METHOD_RPC_MODE_DISABLED, godot_property_usage_flags usage = GODOT_PROPERTY_USAGE_DEFAULT, godot_property_hint hint = GODOT_PROPERTY_HINT_NONE, String hint_string = "")
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{
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Variant def_val = default_value;
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usage = (godot_property_usage_flags) ((int) usage | GODOT_PROPERTY_USAGE_SCRIPT_VARIABLE);
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if (def_val.get_type() == Variant::OBJECT) {
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Object *o = def_val;
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if (o && o->is_class("Resource")) {
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hint = (godot_property_hint) ((int) hint | GODOT_PROPERTY_HINT_RESOURCE_TYPE);
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hint_string = o->get_class();
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}
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}
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godot_string *_hint_string = (godot_string*) &hint_string;
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godot_property_attributes attr = {};
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attr.type = def_val.get_type();
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attr.default_value = *(godot_variant *) &def_val;
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attr.hint = hint;
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attr.rset_type = rpc_mode;
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attr.usage = usage;
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attr.hint_string = *_hint_string;
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_PropertyDefaultSetFunc<T, P> *wrapped_set = (_PropertyDefaultSetFunc<T, P> *)godot::api->godot_alloc(sizeof(_PropertyDefaultSetFunc<T, P>));
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wrapped_set->f = var;
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_PropertyDefaultGetFunc<T, P> *wrapped_get = (_PropertyDefaultGetFunc<T, P> *) godot::api->godot_alloc(sizeof(_PropertyDefaultGetFunc<T, P>));
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wrapped_get->f = var;
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godot_property_set_func set_func = {};
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set_func.method_data = (void *) wrapped_set;
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set_func.free_func = godot::api->godot_free;
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set_func.set_func = &_PropertyDefaultSetFunc<T, P>::_wrapped_setter;
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godot_property_get_func get_func = {};
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get_func.method_data = (void *) wrapped_get;
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get_func.free_func = godot::api->godot_free;
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get_func.get_func = &_PropertyDefaultGetFunc<T, P>::_wrapped_getter;
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godot::nativescript_api->godot_nativescript_register_property(godot::_RegisterState::nativescript_handle, T::___get_type_name(), name, &attr, set_func, get_func);
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}
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template<class T, class P>
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void register_property(const char *name, void (T::*setter)(P), P (T::*getter)(), P default_value, godot_method_rpc_mode rpc_mode = GODOT_METHOD_RPC_MODE_DISABLED, godot_property_usage_flags usage = GODOT_PROPERTY_USAGE_DEFAULT, godot_property_hint hint = GODOT_PROPERTY_HINT_NONE, String hint_string = "")
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{
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Variant def_val = default_value;
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godot_property_attributes attr = {};
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attr.type = def_val.get_type();
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attr.default_value = *(godot_variant *) &def_val;
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attr.hint = hint;
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attr.rset_type = rpc_mode;
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attr.usage = usage;
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_PropertySetFunc<T, P> *wrapped_set = (_PropertySetFunc<T, P> *) godot::api->godot_alloc(sizeof(_PropertySetFunc<T, P>));
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wrapped_set->f = setter;
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_PropertyGetFunc<T, P> *wrapped_get = (_PropertyGetFunc<T, P> *) godot::api->godot_alloc(sizeof(_PropertyGetFunc<T, P>));
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wrapped_get->f = getter;
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godot_property_set_func set_func = {};
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set_func.method_data = (void *) wrapped_set;
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set_func.free_func = godot::api->godot_free;
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set_func.set_func = &_PropertySetFunc<T, P>::_wrapped_setter;
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godot_property_get_func get_func = {};
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get_func.method_data = (void *) wrapped_get;
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get_func.free_func = godot::api->godot_free;
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get_func.get_func = &_PropertyGetFunc<T, P>::_wrapped_getter;
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godot::nativescript_api->godot_nativescript_register_property(godot::_RegisterState::nativescript_handle, T::___get_type_name(), name, &attr, set_func, get_func);
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}
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template<class T, class P>
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void register_property(const char *name, void (T::*setter)(P), P (T::*getter)() const, P default_value, godot_method_rpc_mode rpc_mode = GODOT_METHOD_RPC_MODE_DISABLED, godot_property_usage_flags usage = GODOT_PROPERTY_USAGE_DEFAULT, godot_property_hint hint = GODOT_PROPERTY_HINT_NONE, String hint_string = "")
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{
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register_property(name, setter, (P (T::*)()) getter, default_value, rpc_mode, usage, hint, hint_string);
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}
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template<class T>
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void register_signal(String name, Dictionary args = Dictionary())
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{
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godot_signal signal = {};
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signal.name = *(godot_string *)&name;
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signal.num_args = args.size();
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signal.num_default_args = 0;
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// Need to check because malloc(0) is platform-dependent. Zero arguments will leave args to NULL.
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if(signal.num_args != 0) {
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signal.args = (godot_signal_argument*) godot::api->godot_alloc(sizeof(godot_signal_argument) * signal.num_args);
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memset((void *) signal.args, 0, sizeof(godot_signal_argument) * signal.num_args);
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}
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for (int i = 0; i < signal.num_args; i++) {
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// Array entry = args[i];
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// String name = entry[0];
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String name = args.keys()[i];
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godot_string *_key = (godot_string *)&name;
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godot::api->godot_string_new_copy(&signal.args[i].name, _key);
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// if (entry.size() > 1) {
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// signal.args[i].type = entry[1];
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// }
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signal.args[i].type = args.values()[i];
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}
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godot::nativescript_api->godot_nativescript_register_signal(godot::_RegisterState::nativescript_handle, T::___get_type_name(), &signal);
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for (int i = 0; i < signal.num_args; i++) {
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godot::api->godot_string_destroy(&signal.args[i].name);
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}
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if(signal.args) {
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godot::api->godot_free(signal.args);
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}
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}
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}
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#endif // GODOT_H
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