f8cb9f5516
After discussing this with @reduz on IRC we agreed to remove these checks. We now consider cast_to() to be NULL safe
770 lines
42 KiB
C++
770 lines
42 KiB
C++
/*************************************************************************/
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/* object.h */
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/*************************************************************************/
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/* This file is part of: */
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/* GODOT ENGINE */
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/* https://godotengine.org */
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/*************************************************************************/
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/* Copyright (c) 2007-2017 Juan Linietsky, Ariel Manzur. */
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/* Copyright (c) 2014-2017 Godot Engine contributors (cf. AUTHORS.md) */
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/* */
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/* Permission is hereby granted, free of charge, to any person obtaining */
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/* a copy of this software and associated documentation files (the */
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/* "Software"), to deal in the Software without restriction, including */
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/* without limitation the rights to use, copy, modify, merge, publish, */
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/* distribute, sublicense, and/or sell copies of the Software, and to */
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/* permit persons to whom the Software is furnished to do so, subject to */
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/* the following conditions: */
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/* */
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/* The above copyright notice and this permission notice shall be */
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/* included in all copies or substantial portions of the Software. */
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/* */
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/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
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/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
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/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
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/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
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/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
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/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
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/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
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/*************************************************************************/
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#ifndef OBJECT_H
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#define OBJECT_H
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#include "list.h"
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#include "map.h"
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#include "os/rw_lock.h"
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#include "set.h"
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#include "variant.h"
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#include "vmap.h"
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#define VARIANT_ARG_LIST const Variant &p_arg1 = Variant(), const Variant &p_arg2 = Variant(), const Variant &p_arg3 = Variant(), const Variant &p_arg4 = Variant(), const Variant &p_arg5 = Variant()
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#define VARIANT_ARG_PASS p_arg1, p_arg2, p_arg3, p_arg4, p_arg5
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#define VARIANT_ARG_DECLARE const Variant &p_arg1, const Variant &p_arg2, const Variant &p_arg3, const Variant &p_arg4, const Variant &p_arg5
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#define VARIANT_ARG_MAX 5
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#define VARIANT_ARGPTRS const Variant *argptr[5] = { &p_arg1, &p_arg2, &p_arg3, &p_arg4, &p_arg5 };
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#define VARIANT_ARGPTRS_PASS *argptr[0], *argptr[1], *argptr[2], *argptr[3], *argptr[4]
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#define VARIANT_ARGS_FROM_ARRAY(m_arr) m_arr[0], m_arr[1], m_arr[2], m_arr[3], m_arr[4]
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/**
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@author Juan Linietsky <reduzio@gmail.com>
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*/
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enum PropertyHint {
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PROPERTY_HINT_NONE, ///< no hint provided.
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PROPERTY_HINT_RANGE, ///< hint_text = "min,max,step,slider; //slider is optional"
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PROPERTY_HINT_EXP_RANGE, ///< hint_text = "min,max,step", exponential edit
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PROPERTY_HINT_ENUM, ///< hint_text= "val1,val2,val3,etc"
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PROPERTY_HINT_EXP_EASING, /// exponential easing function (Math::ease)
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PROPERTY_HINT_LENGTH, ///< hint_text= "length" (as integer)
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PROPERTY_HINT_SPRITE_FRAME,
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PROPERTY_HINT_KEY_ACCEL, ///< hint_text= "length" (as integer)
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PROPERTY_HINT_FLAGS, ///< hint_text= "flag1,flag2,etc" (as bit flags)
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PROPERTY_HINT_LAYERS_2D_RENDER,
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PROPERTY_HINT_LAYERS_2D_PHYSICS,
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PROPERTY_HINT_LAYERS_3D_RENDER,
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PROPERTY_HINT_LAYERS_3D_PHYSICS,
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PROPERTY_HINT_FILE, ///< a file path must be passed, hint_text (optionally) is a filter "*.png,*.wav,*.doc,"
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PROPERTY_HINT_DIR, ///< a directort path must be passed
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PROPERTY_HINT_GLOBAL_FILE, ///< a file path must be passed, hint_text (optionally) is a filter "*.png,*.wav,*.doc,"
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PROPERTY_HINT_GLOBAL_DIR, ///< a directort path must be passed
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PROPERTY_HINT_RESOURCE_TYPE, ///< a resource object type
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PROPERTY_HINT_MULTILINE_TEXT, ///< used for string properties that can contain multiple lines
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PROPERTY_HINT_COLOR_NO_ALPHA, ///< used for ignoring alpha component when editing a color
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PROPERTY_HINT_IMAGE_COMPRESS_LOSSY,
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PROPERTY_HINT_IMAGE_COMPRESS_LOSSLESS,
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PROPERTY_HINT_OBJECT_ID,
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PROPERTY_HINT_TYPE_STRING, ///< a type string, the hint is the base type to choose
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PROPERTY_HINT_NODE_PATH_TO_EDITED_NODE, ///< so something else can provide this (used in scripts)
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PROPERTY_HINT_METHOD_OF_VARIANT_TYPE, ///< a method of a type
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PROPERTY_HINT_METHOD_OF_BASE_TYPE, ///< a method of a base type
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PROPERTY_HINT_METHOD_OF_INSTANCE, ///< a method of an instance
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PROPERTY_HINT_METHOD_OF_SCRIPT, ///< a method of a script & base
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PROPERTY_HINT_PROPERTY_OF_VARIANT_TYPE, ///< a property of a type
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PROPERTY_HINT_PROPERTY_OF_BASE_TYPE, ///< a property of a base type
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PROPERTY_HINT_PROPERTY_OF_INSTANCE, ///< a property of an instance
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PROPERTY_HINT_PROPERTY_OF_SCRIPT, ///< a property of a script & base
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PROPERTY_HINT_OBJECT_TOO_BIG, ///< object is too big to send
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PROPERTY_HINT_MAX,
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};
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enum PropertyUsageFlags {
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PROPERTY_USAGE_STORAGE = 1,
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PROPERTY_USAGE_EDITOR = 2,
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PROPERTY_USAGE_NETWORK = 4,
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PROPERTY_USAGE_EDITOR_HELPER = 8,
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PROPERTY_USAGE_CHECKABLE = 16, //used for editing global variables
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PROPERTY_USAGE_CHECKED = 32, //used for editing global variables
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PROPERTY_USAGE_INTERNATIONALIZED = 64, //hint for internationalized strings
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PROPERTY_USAGE_GROUP = 128, //used for grouping props in the editor
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PROPERTY_USAGE_CATEGORY = 256,
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PROPERTY_USAGE_STORE_IF_NONZERO = 512, //only store if nonzero
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PROPERTY_USAGE_STORE_IF_NONONE = 1024, //only store if false
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PROPERTY_USAGE_NO_INSTANCE_STATE = 2048,
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PROPERTY_USAGE_RESTART_IF_CHANGED = 4096,
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PROPERTY_USAGE_SCRIPT_VARIABLE = 8192,
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PROPERTY_USAGE_STORE_IF_NULL = 16384,
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PROPERTY_USAGE_ANIMATE_AS_TRIGGER = 32768,
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PROPERTY_USAGE_UPDATE_ALL_IF_MODIFIED = 65536,
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PROPERTY_USAGE_SCRIPT_DEFAULT_VALUE = 1 << 17,
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PROPERTY_USAGE_CLASS_IS_ENUM = 1 << 18,
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PROPERTY_USAGE_NIL_IS_VARIANT = 1 << 19,
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PROPERTY_USAGE_DEFAULT = PROPERTY_USAGE_STORAGE | PROPERTY_USAGE_EDITOR | PROPERTY_USAGE_NETWORK,
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PROPERTY_USAGE_DEFAULT_INTL = PROPERTY_USAGE_STORAGE | PROPERTY_USAGE_EDITOR | PROPERTY_USAGE_NETWORK | PROPERTY_USAGE_INTERNATIONALIZED,
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PROPERTY_USAGE_NOEDITOR = PROPERTY_USAGE_STORAGE | PROPERTY_USAGE_NETWORK,
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};
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#define ADD_SIGNAL(m_signal) ClassDB::add_signal(get_class_static(), m_signal)
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#define ADD_PROPERTY(m_property, m_setter, m_getter) ClassDB::add_property(get_class_static(), m_property, _scs_create(m_setter), _scs_create(m_getter))
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#define ADD_PROPERTYI(m_property, m_setter, m_getter, m_index) ClassDB::add_property(get_class_static(), m_property, _scs_create(m_setter), _scs_create(m_getter), m_index)
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#define ADD_PROPERTYNZ(m_property, m_setter, m_getter) ClassDB::add_property(get_class_static(), (m_property).added_usage(PROPERTY_USAGE_STORE_IF_NONZERO), _scs_create(m_setter), _scs_create(m_getter))
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#define ADD_PROPERTYINZ(m_property, m_setter, m_getter, m_index) ClassDB::add_property(get_class_static(), (m_property).added_usage(PROPERTY_USAGE_STORE_IF_NONZERO), _scs_create(m_setter), _scs_create(m_getter), m_index)
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#define ADD_PROPERTYNO(m_property, m_setter, m_getter) ClassDB::add_property(get_class_static(), (m_property).added_usage(PROPERTY_USAGE_STORE_IF_NONONE), _scs_create(m_setter), _scs_create(m_getter))
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#define ADD_PROPERTYINO(m_property, m_setter, m_getter, m_index) ClassDB::add_property(get_class_static(), (m_property).added_usage(PROPERTY_USAGE_STORE_IF_NONONE), _scs_create(m_setter), _scs_create(m_getter), m_index)
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#define ADD_GROUP(m_name, m_prefix) ClassDB::add_property_group(get_class_static(), m_name, m_prefix)
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struct PropertyInfo {
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Variant::Type type;
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String name;
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StringName class_name; //for classes
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PropertyHint hint;
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String hint_string;
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uint32_t usage;
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_FORCE_INLINE_ PropertyInfo added_usage(int p_fl) const {
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PropertyInfo pi = *this;
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pi.usage |= p_fl;
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return pi;
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}
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operator Dictionary() const;
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static PropertyInfo from_dict(const Dictionary &p_dict);
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PropertyInfo()
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: type(Variant::NIL),
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hint(PROPERTY_HINT_NONE),
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usage(PROPERTY_USAGE_DEFAULT) {
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}
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PropertyInfo(Variant::Type p_type, const String p_name, PropertyHint p_hint = PROPERTY_HINT_NONE, const String &p_hint_string = "", uint32_t p_usage = PROPERTY_USAGE_DEFAULT, const StringName &p_class_name = StringName())
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: type(p_type),
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name(p_name),
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hint(p_hint),
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hint_string(p_hint_string),
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usage(p_usage) {
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if (hint == PROPERTY_HINT_RESOURCE_TYPE) {
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class_name = hint_string;
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} else {
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class_name = p_class_name;
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}
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}
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PropertyInfo(const StringName &p_class_name)
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: type(Variant::OBJECT),
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hint(PROPERTY_HINT_NONE),
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usage(PROPERTY_USAGE_DEFAULT) {
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class_name = p_class_name;
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}
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bool operator<(const PropertyInfo &p_info) const {
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return name < p_info.name;
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}
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};
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Array convert_property_list(const List<PropertyInfo> *p_list);
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struct MethodInfo {
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String name;
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List<PropertyInfo> arguments;
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Vector<Variant> default_arguments;
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PropertyInfo return_val;
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uint32_t flags;
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int id;
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inline bool operator==(const MethodInfo &p_method) const { return id == p_method.id; }
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inline bool operator<(const MethodInfo &p_method) const { return id == p_method.id ? (name < p_method.name) : (id < p_method.id); }
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operator Dictionary() const;
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static MethodInfo from_dict(const Dictionary &p_dict);
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MethodInfo();
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MethodInfo(const String &p_name);
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MethodInfo(const String &p_name, const PropertyInfo &p_param1);
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MethodInfo(const String &p_name, const PropertyInfo &p_param1, const PropertyInfo &p_param2);
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MethodInfo(const String &p_name, const PropertyInfo &p_param1, const PropertyInfo &p_param2, const PropertyInfo &p_param3);
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MethodInfo(const String &p_name, const PropertyInfo &p_param1, const PropertyInfo &p_param2, const PropertyInfo &p_param3, const PropertyInfo &p_param4);
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MethodInfo(const String &p_name, const PropertyInfo &p_param1, const PropertyInfo &p_param2, const PropertyInfo &p_param3, const PropertyInfo &p_param4, const PropertyInfo &p_param5);
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MethodInfo(Variant::Type ret);
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MethodInfo(Variant::Type ret, const String &p_name);
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MethodInfo(Variant::Type ret, const String &p_name, const PropertyInfo &p_param1);
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MethodInfo(Variant::Type ret, const String &p_name, const PropertyInfo &p_param1, const PropertyInfo &p_param2);
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MethodInfo(Variant::Type ret, const String &p_name, const PropertyInfo &p_param1, const PropertyInfo &p_param2, const PropertyInfo &p_param3);
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MethodInfo(Variant::Type ret, const String &p_name, const PropertyInfo &p_param1, const PropertyInfo &p_param2, const PropertyInfo &p_param3, const PropertyInfo &p_param4);
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MethodInfo(Variant::Type ret, const String &p_name, const PropertyInfo &p_param1, const PropertyInfo &p_param2, const PropertyInfo &p_param3, const PropertyInfo &p_param4, const PropertyInfo &p_param5);
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MethodInfo(const PropertyInfo &p_ret, const String &p_name);
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MethodInfo(const PropertyInfo &p_ret, const String &p_name, const PropertyInfo &p_param1);
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MethodInfo(const PropertyInfo &p_ret, const String &p_name, const PropertyInfo &p_param1, const PropertyInfo &p_param2);
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MethodInfo(const PropertyInfo &p_ret, const String &p_name, const PropertyInfo &p_param1, const PropertyInfo &p_param2, const PropertyInfo &p_param3);
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MethodInfo(const PropertyInfo &p_ret, const String &p_name, const PropertyInfo &p_param1, const PropertyInfo &p_param2, const PropertyInfo &p_param3, const PropertyInfo &p_param4);
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MethodInfo(const PropertyInfo &p_ret, const String &p_name, const PropertyInfo &p_param1, const PropertyInfo &p_param2, const PropertyInfo &p_param3, const PropertyInfo &p_param4, const PropertyInfo &p_param5);
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};
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// old cast_to
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//if ( is_type(T::get_class_static()) )
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//return static_cast<T*>(this);
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////else
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//return NULL;
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/*
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the following is an uncomprehensible blob of hacks and workarounds to compensate for many of the fallencies in C++. As a plus, this macro pretty much alone defines the object model.
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*/
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#define REVERSE_GET_PROPERTY_LIST \
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public: \
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_FORCE_INLINE_ bool _is_gpl_reversed() const { return true; }; \
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\
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private:
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#define UNREVERSE_GET_PROPERTY_LIST \
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public: \
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_FORCE_INLINE_ bool _is_gpl_reversed() const { return false; }; \
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\
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private:
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#define GDCLASS(m_class, m_inherits) \
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private: \
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void operator=(const m_class &p_rval) {} \
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mutable StringName _class_name; \
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friend class ClassDB; \
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\
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public: \
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virtual String get_class() const { \
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return String(#m_class); \
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} \
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virtual const StringName *_get_class_namev() const { \
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if (!_class_name) \
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_class_name = get_class_static(); \
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return &_class_name; \
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} \
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static _FORCE_INLINE_ void *get_class_ptr_static() { \
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static int ptr; \
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return &ptr; \
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} \
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static _FORCE_INLINE_ String get_class_static() { \
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return String(#m_class); \
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} \
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static _FORCE_INLINE_ String get_parent_class_static() { \
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return m_inherits::get_class_static(); \
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} \
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static void get_inheritance_list_static(List<String> *p_inheritance_list) { \
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m_inherits::get_inheritance_list_static(p_inheritance_list); \
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p_inheritance_list->push_back(String(#m_class)); \
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} \
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static String get_category_static() { \
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String category = m_inherits::get_category_static(); \
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if (_get_category != m_inherits::_get_category) { \
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if (category != "") \
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category += "/"; \
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category += _get_category(); \
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} \
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return category; \
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} \
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static String inherits_static() { \
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return String(#m_inherits); \
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} \
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virtual bool is_class(const String &p_class) const { return (p_class == (#m_class)) ? true : m_inherits::is_class(p_class); } \
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virtual bool is_class_ptr(void *p_ptr) const { return (p_ptr == get_class_ptr_static()) ? true : m_inherits::is_class_ptr(p_ptr); } \
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\
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static void get_valid_parents_static(List<String> *p_parents) { \
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\
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if (m_class::_get_valid_parents_static != m_inherits::_get_valid_parents_static) { \
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m_class::_get_valid_parents_static(p_parents); \
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} \
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\
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m_inherits::get_valid_parents_static(p_parents); \
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} \
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\
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protected: \
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_FORCE_INLINE_ static void (*_get_bind_methods())() { \
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return &m_class::_bind_methods; \
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} \
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\
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public: \
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static void initialize_class() { \
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static bool initialized = false; \
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if (initialized) \
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return; \
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m_inherits::initialize_class(); \
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ClassDB::_add_class<m_class>(); \
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if (m_class::_get_bind_methods() != m_inherits::_get_bind_methods()) \
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_bind_methods(); \
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initialized = true; \
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} \
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\
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protected: \
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virtual void _initialize_classv() { \
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initialize_class(); \
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} \
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_FORCE_INLINE_ bool (Object::*(_get_get() const))(const StringName &p_name, Variant &) const { \
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return (bool (Object::*)(const StringName &, Variant &) const) & m_class::_get; \
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} \
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virtual bool _getv(const StringName &p_name, Variant &r_ret) const { \
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if (m_class::_get_get() != m_inherits::_get_get()) { \
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if (_get(p_name, r_ret)) \
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return true; \
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} \
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return m_inherits::_getv(p_name, r_ret); \
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} \
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_FORCE_INLINE_ bool (Object::*(_get_set() const))(const StringName &p_name, const Variant &p_property) { \
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return (bool (Object::*)(const StringName &, const Variant &)) & m_class::_set; \
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} \
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virtual bool _setv(const StringName &p_name, const Variant &p_property) { \
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if (m_inherits::_setv(p_name, p_property)) return true; \
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if (m_class::_get_set() != m_inherits::_get_set()) { \
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return _set(p_name, p_property); \
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} \
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return false; \
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} \
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_FORCE_INLINE_ void (Object::*(_get_get_property_list() const))(List<PropertyInfo> * p_list) const { \
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return (void (Object::*)(List<PropertyInfo> *) const) & m_class::_get_property_list; \
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} \
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virtual void _get_property_listv(List<PropertyInfo> *p_list, bool p_reversed) const { \
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if (!p_reversed) { \
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m_inherits::_get_property_listv(p_list, p_reversed); \
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} \
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p_list->push_back(PropertyInfo(Variant::NIL, get_class_static(), PROPERTY_HINT_NONE, String(), PROPERTY_USAGE_CATEGORY)); \
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if (!_is_gpl_reversed()) \
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ClassDB::get_property_list(#m_class, p_list, true, this); \
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if (m_class::_get_get_property_list() != m_inherits::_get_get_property_list()) { \
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_get_property_list(p_list); \
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} \
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if (_is_gpl_reversed()) \
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ClassDB::get_property_list(#m_class, p_list, true, this); \
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if (p_reversed) { \
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m_inherits::_get_property_listv(p_list, p_reversed); \
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} \
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} \
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_FORCE_INLINE_ void (Object::*(_get_notification() const))(int) { \
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return (void (Object::*)(int)) & m_class::_notification; \
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} \
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virtual void _notificationv(int p_notification, bool p_reversed) { \
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if (!p_reversed) \
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m_inherits::_notificationv(p_notification, p_reversed); \
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if (m_class::_get_notification() != m_inherits::_get_notification()) { \
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_notification(p_notification); \
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} \
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if (p_reversed) \
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m_inherits::_notificationv(p_notification, p_reversed); \
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} \
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\
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private:
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#define OBJ_CATEGORY(m_category) \
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protected: \
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_FORCE_INLINE_ static String _get_category() { return m_category; } \
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\
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private:
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#define OBJ_SAVE_TYPE(m_class) \
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public: \
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virtual String get_save_class() const { return #m_class; } \
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\
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private:
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class ScriptInstance;
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typedef uint64_t ObjectID;
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class Object {
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public:
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enum ConnectFlags {
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CONNECT_DEFERRED = 1,
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CONNECT_PERSIST = 2, // hint for scene to save this connection
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CONNECT_ONESHOT = 4
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};
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struct Connection {
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Object *source;
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StringName signal;
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Object *target;
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StringName method;
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uint32_t flags;
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Vector<Variant> binds;
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bool operator<(const Connection &p_conn) const;
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operator Variant() const;
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Connection() {
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source = NULL;
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target = NULL;
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flags = 0;
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}
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Connection(const Variant &p_variant);
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};
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private:
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enum {
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MAX_SCRIPT_INSTANCE_BINDINGS = 8
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};
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#ifdef DEBUG_ENABLED
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friend class _ObjectDebugLock;
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#endif
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friend bool predelete_handler(Object *);
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friend void postinitialize_handler(Object *);
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struct Signal {
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struct Target {
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ObjectID _id;
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StringName method;
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_FORCE_INLINE_ bool operator<(const Target &p_target) const { return (_id == p_target._id) ? (method < p_target.method) : (_id < p_target._id); }
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Target(const ObjectID &p_id, const StringName &p_method)
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: _id(p_id),
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method(p_method) {
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}
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Target() { _id = 0; }
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};
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struct Slot {
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Connection conn;
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List<Connection>::Element *cE;
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};
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MethodInfo user;
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VMap<Target, Slot> slot_map;
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int lock;
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Signal() { lock = 0; }
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};
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HashMap<StringName, Signal, StringNameHasher> signal_map;
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List<Connection> connections;
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#ifdef DEBUG_ENABLED
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SafeRefCount _lock_index;
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#endif
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bool _block_signals;
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int _predelete_ok;
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Set<Object *> change_receptors;
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ObjectID _instance_ID;
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bool _predelete();
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void _postinitialize();
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bool _can_translate;
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#ifdef TOOLS_ENABLED
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bool _edited;
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uint32_t _edited_version;
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Set<String> editor_section_folding;
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#endif
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ScriptInstance *script_instance;
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RefPtr script;
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Dictionary metadata;
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mutable StringName _class_name;
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mutable const StringName *_class_ptr;
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void _add_user_signal(const String &p_name, const Array &p_args = Array());
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bool _has_user_signal(const StringName &p_name) const;
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Variant _emit_signal(const Variant **p_args, int p_argcount, Variant::CallError &r_error);
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Array _get_signal_list() const;
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Array _get_signal_connection_list(const String &p_signal) const;
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Array _get_incoming_connections() const;
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void _set_bind(const String &p_set, const Variant &p_value);
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Variant _get_bind(const String &p_name) const;
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void *_script_instance_bindings[MAX_SCRIPT_INSTANCE_BINDINGS];
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void property_list_changed_notify();
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protected:
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virtual void _initialize_classv() { initialize_class(); }
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virtual bool _setv(const StringName &p_name, const Variant &p_property) { return false; };
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virtual bool _getv(const StringName &p_name, Variant &r_property) const { return false; };
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virtual void _get_property_listv(List<PropertyInfo> *p_list, bool p_reversed) const {};
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virtual void _notificationv(int p_notification, bool p_reversed){};
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static String _get_category() { return ""; }
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static void _bind_methods();
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bool _set(const StringName &p_name, const Variant &p_property) { return false; };
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bool _get(const StringName &p_name, Variant &r_property) const { return false; };
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void _get_property_list(List<PropertyInfo> *p_list) const {};
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void _notification(int p_notification){};
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_FORCE_INLINE_ static void (*_get_bind_methods())() {
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return &Object::_bind_methods;
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}
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_FORCE_INLINE_ bool (Object::*(_get_get() const))(const StringName &p_name, Variant &r_ret) const {
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return &Object::_get;
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}
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_FORCE_INLINE_ bool (Object::*(_get_set() const))(const StringName &p_name, const Variant &p_property) {
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return &Object::_set;
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}
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_FORCE_INLINE_ void (Object::*(_get_get_property_list() const))(List<PropertyInfo> *p_list) const {
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return &Object::_get_property_list;
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}
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_FORCE_INLINE_ void (Object::*(_get_notification() const))(int) {
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return &Object::_notification;
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}
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static void get_valid_parents_static(List<String> *p_parents);
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static void _get_valid_parents_static(List<String> *p_parents);
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void cancel_delete();
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virtual void _changed_callback(Object *p_changed, const char *p_prop);
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//Variant _call_bind(const StringName& p_name, const Variant& p_arg1 = Variant(), const Variant& p_arg2 = Variant(), const Variant& p_arg3 = Variant(), const Variant& p_arg4 = Variant());
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//void _call_deferred_bind(const StringName& p_name, const Variant& p_arg1 = Variant(), const Variant& p_arg2 = Variant(), const Variant& p_arg3 = Variant(), const Variant& p_arg4 = Variant());
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Variant _call_bind(const Variant **p_args, int p_argcount, Variant::CallError &r_error);
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Variant _call_deferred_bind(const Variant **p_args, int p_argcount, Variant::CallError &r_error);
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virtual const StringName *_get_class_namev() const {
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if (!_class_name)
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_class_name = get_class_static();
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return &_class_name;
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}
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PoolVector<String> _get_meta_list_bind() const;
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Array _get_property_list_bind() const;
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Array _get_method_list_bind() const;
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void _clear_internal_resource_paths(const Variant &p_var);
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friend class ClassDB;
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virtual void _validate_property(PropertyInfo &property) const;
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public: //should be protected, but bug in clang++
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static void initialize_class();
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_FORCE_INLINE_ static void register_custom_data_to_otdb(){};
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public:
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#ifdef TOOLS_ENABLED
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_FORCE_INLINE_ void _change_notify(const char *p_property = "") {
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_edited = true;
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for (Set<Object *>::Element *E = change_receptors.front(); E; E = E->next())
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((Object *)(E->get()))->_changed_callback(this, p_property);
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}
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#else
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_FORCE_INLINE_ void _change_notify(const char *p_what = "") {}
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#endif
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static void *get_class_ptr_static() {
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static int ptr;
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return &ptr;
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}
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bool _is_gpl_reversed() const { return false; }
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_FORCE_INLINE_ ObjectID get_instance_id() const { return _instance_ID; }
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// this is used for editors
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void add_change_receptor(Object *p_receptor);
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void remove_change_receptor(Object *p_receptor);
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template <class T>
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static T *cast_to(Object *p_object) {
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#ifndef NO_SAFE_CAST
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return dynamic_cast<T *>(p_object);
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#else
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if (!p_object)
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return NULL;
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if (p_object->is_class_ptr(T::get_class_ptr_static()))
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return static_cast<T *>(p_object);
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else
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return NULL;
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#endif
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}
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template <class T>
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static const T *cast_to(const Object *p_object) {
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#ifndef NO_SAFE_CAST
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return dynamic_cast<const T *>(p_object);
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#else
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if (!p_object)
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return NULL;
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if (p_object->is_class_ptr(T::get_class_ptr_static()))
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return static_cast<const T *>(p_object);
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else
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return NULL;
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#endif
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}
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enum {
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NOTIFICATION_POSTINITIALIZE = 0,
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NOTIFICATION_PREDELETE = 1
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};
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/* TYPE API */
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static void get_inheritance_list_static(List<String> *p_inheritance_list) { p_inheritance_list->push_back("Object"); }
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static String get_class_static() { return "Object"; }
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static String get_parent_class_static() { return String(); }
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static String get_category_static() { return String(); }
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virtual String get_class() const { return "Object"; }
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virtual String get_save_class() const { return get_class(); } //class stored when saving
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virtual bool is_class(const String &p_class) const { return (p_class == "Object"); }
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virtual bool is_class_ptr(void *p_ptr) const { return get_class_ptr_static() == p_ptr; }
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_FORCE_INLINE_ const StringName &get_class_name() const {
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if (!_class_ptr) {
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return *_get_class_namev();
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} else {
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return *_class_ptr;
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}
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}
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/* IAPI */
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//void set(const String& p_name, const Variant& p_value);
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//Variant get(const String& p_name) const;
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void set(const StringName &p_name, const Variant &p_value, bool *r_valid = NULL);
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Variant get(const StringName &p_name, bool *r_valid = NULL) const;
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void get_property_list(List<PropertyInfo> *p_list, bool p_reversed = false) const;
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bool has_method(const StringName &p_method) const;
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void get_method_list(List<MethodInfo> *p_list) const;
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Variant callv(const StringName &p_method, const Array &p_args);
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virtual Variant call(const StringName &p_method, const Variant **p_args, int p_argcount, Variant::CallError &r_error);
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virtual void call_multilevel(const StringName &p_method, const Variant **p_args, int p_argcount);
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virtual void call_multilevel_reversed(const StringName &p_method, const Variant **p_args, int p_argcount);
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Variant call(const StringName &p_name, VARIANT_ARG_LIST); // C++ helper
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void call_multilevel(const StringName &p_name, VARIANT_ARG_LIST); // C++ helper
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void notification(int p_notification, bool p_reversed = false);
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//used mainly by script, get and set all INCLUDING string
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virtual Variant getvar(const Variant &p_key, bool *r_valid = NULL) const;
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virtual void setvar(const Variant &p_key, const Variant &p_value, bool *r_valid = NULL);
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/* SCRIPT */
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void set_script(const RefPtr &p_script);
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RefPtr get_script() const;
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/* SCRIPT */
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bool has_meta(const String &p_name) const;
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void set_meta(const String &p_name, const Variant &p_value);
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Variant get_meta(const String &p_name) const;
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void get_meta_list(List<String> *p_list) const;
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#ifdef TOOLS_ENABLED
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void set_edited(bool p_edited);
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bool is_edited() const;
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uint32_t get_edited_version() const; //this function is used to check when something changed beyond a point, it's used mainly for generating previews
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#endif
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void set_script_instance(ScriptInstance *p_instance);
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_FORCE_INLINE_ ScriptInstance *get_script_instance() const { return script_instance; }
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void set_script_and_instance(const RefPtr &p_script, ScriptInstance *p_instance); //some script languages can't control instance creation, so this function eases the process
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void add_user_signal(const MethodInfo &p_signal);
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Error emit_signal(const StringName &p_name, VARIANT_ARG_LIST);
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Error emit_signal(const StringName &p_name, const Variant **p_args, int p_argcount);
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void get_signal_list(List<MethodInfo> *p_signals) const;
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void get_signal_connection_list(const StringName &p_signal, List<Connection> *p_connections) const;
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void get_all_signal_connections(List<Connection> *p_connections) const;
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bool has_persistent_signal_connections() const;
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void get_signals_connected_to_this(List<Connection> *p_connections) const;
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Error connect(const StringName &p_signal, Object *p_to_object, const StringName &p_to_method, const Vector<Variant> &p_binds = Vector<Variant>(), uint32_t p_flags = 0);
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void disconnect(const StringName &p_signal, Object *p_to_object, const StringName &p_to_method);
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bool is_connected(const StringName &p_signal, Object *p_to_object, const StringName &p_to_method) const;
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void call_deferred(const StringName &p_method, VARIANT_ARG_LIST);
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void set_block_signals(bool p_block);
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bool is_blocking_signals() const;
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Variant::Type get_static_property_type(const StringName &p_property, bool *r_valid = NULL) const;
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virtual void get_translatable_strings(List<String> *p_strings) const;
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virtual void get_argument_options(const StringName &p_function, int p_idx, List<String> *r_options) const;
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StringName tr(const StringName &p_message) const; // translate message (internationalization)
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bool _is_queued_for_deletion; // set to true by SceneTree::queue_delete()
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bool is_queued_for_deletion() const;
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_FORCE_INLINE_ void set_message_translation(bool p_enable) { _can_translate = p_enable; }
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_FORCE_INLINE_ bool can_translate_messages() const { return _can_translate; }
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#ifdef TOOLS_ENABLED
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void editor_set_section_unfold(const String &p_section, bool p_unfolded);
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bool editor_is_section_unfolded(const String &p_section);
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#endif
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//used by script languages to store binding data
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void *get_script_instance_binding(int p_script_language_index);
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void clear_internal_resource_paths();
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Object();
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virtual ~Object();
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};
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bool predelete_handler(Object *p_object);
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void postinitialize_handler(Object *p_object);
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class ObjectDB {
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struct ObjectPtrHash {
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static _FORCE_INLINE_ uint32_t hash(const Object *p_obj) {
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union {
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const Object *p;
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unsigned long i;
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} u;
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u.p = p_obj;
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return HashMapHasherDefault::hash((uint64_t)u.i);
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}
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};
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static HashMap<ObjectID, Object *> instances;
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static HashMap<Object *, ObjectID, ObjectPtrHash> instance_checks;
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static ObjectID instance_counter;
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friend class Object;
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friend void unregister_core_types();
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static RWLock *rw_lock;
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static void cleanup();
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static ObjectID add_instance(Object *p_object);
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static void remove_instance(Object *p_object);
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friend void register_core_types();
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static void setup();
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public:
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typedef void (*DebugFunc)(Object *p_obj);
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static Object *get_instance(ObjectID p_instance_ID);
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static void debug_objects(DebugFunc p_func);
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static int get_object_count();
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|
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#ifdef DEBUG_ENABLED
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_FORCE_INLINE_ static bool instance_validate(Object *p_ptr) {
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return instance_checks.has(p_ptr);
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}
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#else
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_FORCE_INLINE_ static bool instance_validate(Object *p_ptr) { return true; }
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#endif
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};
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//needed by macros
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|
#include "class_db.h"
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#endif
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