/*************************************************************************/ /* variant.cpp */ /*************************************************************************/ /* This file is part of: */ /* GODOT ENGINE */ /* https://godotengine.org */ /*************************************************************************/ /* Copyright (c) 2007-2021 Juan Linietsky, Ariel Manzur. */ /* Copyright (c) 2014-2021 Godot Engine contributors (cf. AUTHORS.md). */ /* */ /* Permission is hereby granted, free of charge, to any person obtaining */ /* a copy of this software and associated documentation files (the */ /* "Software"), to deal in the Software without restriction, including */ /* without limitation the rights to use, copy, modify, merge, publish, */ /* distribute, sublicense, and/or sell copies of the Software, and to */ /* permit persons to whom the Software is furnished to do so, subject to */ /* the following conditions: */ /* */ /* The above copyright notice and this permission notice shall be */ /* included in all copies or substantial portions of the Software. */ /* */ /* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */ /* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */ /* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/ /* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */ /* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */ /* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */ /* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */ /*************************************************************************/ #include #include #include #include #include namespace godot { GDNativeVariantFromTypeConstructorFunc Variant::from_type_constructor[Variant::VARIANT_MAX]{}; GDNativeTypeFromVariantConstructorFunc Variant::to_type_constructor[Variant::VARIANT_MAX]{}; void Variant::init_bindings() { // Start from 1 to skip NIL. for (int i = 1; i < VARIANT_MAX; i++) { from_type_constructor[i] = internal::gdn_interface->get_variant_from_type_constructor((GDNativeVariantType)i); to_type_constructor[i] = internal::gdn_interface->get_variant_to_type_constructor((GDNativeVariantType)i); } String::init_bindings(); StringName::init_bindings(); NodePath::init_bindings(); RID::init_bindings(); Callable::init_bindings(); Signal::init_bindings(); Dictionary::init_bindings(); Array::init_bindings(); PackedByteArray::init_bindings(); PackedInt32Array::init_bindings(); PackedInt64Array::init_bindings(); PackedFloat32Array::init_bindings(); PackedFloat64Array::init_bindings(); PackedStringArray::init_bindings(); PackedVector2Array::init_bindings(); PackedVector3Array::init_bindings(); PackedColorArray::init_bindings(); } Variant::Variant() { internal::gdn_interface->variant_new_nil(ptr()); } Variant::Variant(const GDNativeVariantPtr native_ptr) { internal::gdn_interface->variant_new_copy(ptr(), native_ptr); } Variant::Variant(const Variant &other) { internal::gdn_interface->variant_new_copy(ptr(), other.ptr()); } Variant::Variant(Variant &&other) { std::swap(opaque, other.opaque); } Variant::Variant(bool v) { GDNativeBool encoded; PtrToArg::encode(v, &encoded); from_type_constructor[BOOL](ptr(), &encoded); } Variant::Variant(int64_t v) { GDNativeInt encoded; PtrToArg::encode(v, &encoded); from_type_constructor[INT](ptr(), &encoded); } Variant::Variant(double v) { double encoded; PtrToArg::encode(v, &encoded); from_type_constructor[FLOAT](ptr(), &encoded); } Variant::Variant(const String &v) { from_type_constructor[STRING](ptr(), v.ptr()); } Variant::Variant(const Vector2 &v) { from_type_constructor[VECTOR2](ptr(), v.ptr()); } Variant::Variant(const Vector2i &v) { from_type_constructor[VECTOR2I](ptr(), v.ptr()); } Variant::Variant(const Rect2 &v) { from_type_constructor[RECT2](ptr(), v.ptr()); } Variant::Variant(const Rect2i &v) { from_type_constructor[RECT2I](ptr(), v.ptr()); } Variant::Variant(const Vector3 &v) { from_type_constructor[VECTOR3](ptr(), v.ptr()); } Variant::Variant(const Vector3i &v) { from_type_constructor[VECTOR3I](ptr(), v.ptr()); } Variant::Variant(const Transform2D &v) { from_type_constructor[TRANSFORM2D](ptr(), v.ptr()); } Variant::Variant(const Plane &v) { from_type_constructor[PLANE](ptr(), v.ptr()); } Variant::Variant(const Quaternion &v) { from_type_constructor[QUATERNION](ptr(), v.ptr()); } Variant::Variant(const godot::AABB &v) { from_type_constructor[AABB](ptr(), v.ptr()); } Variant::Variant(const Basis &v) { from_type_constructor[BASIS](ptr(), v.ptr()); } Variant::Variant(const Transform3D &v) { from_type_constructor[TRANSFORM3D](ptr(), v.ptr()); } Variant::Variant(const Color &v) { from_type_constructor[COLOR](ptr(), v.ptr()); } Variant::Variant(const StringName &v) { from_type_constructor[STRING_NAME](ptr(), v.ptr()); } Variant::Variant(const NodePath &v) { from_type_constructor[NODE_PATH](ptr(), v.ptr()); } Variant::Variant(const godot::RID &v) { from_type_constructor[RID](ptr(), v.ptr()); } Variant::Variant(const Object *v) { from_type_constructor[OBJECT](ptr(), const_cast(&v->_owner)); } Variant::Variant(const Callable &v) { from_type_constructor[CALLABLE](ptr(), v.ptr()); } Variant::Variant(const Signal &v) { from_type_constructor[SIGNAL](ptr(), v.ptr()); } Variant::Variant(const Dictionary &v) { from_type_constructor[DICTIONARY](ptr(), v.ptr()); } Variant::Variant(const Array &v) { from_type_constructor[ARRAY](ptr(), v.ptr()); } Variant::Variant(const PackedByteArray &v) { from_type_constructor[PACKED_BYTE_ARRAY](ptr(), v.ptr()); } Variant::Variant(const PackedInt32Array &v) { from_type_constructor[PACKED_INT32_ARRAY](ptr(), v.ptr()); } Variant::Variant(const PackedInt64Array &v) { from_type_constructor[PACKED_INT64_ARRAY](ptr(), v.ptr()); } Variant::Variant(const PackedFloat32Array &v) { from_type_constructor[PACKED_FLOAT32_ARRAY](ptr(), v.ptr()); } Variant::Variant(const PackedFloat64Array &v) { from_type_constructor[PACKED_FLOAT64_ARRAY](ptr(), v.ptr()); } Variant::Variant(const PackedStringArray &v) { from_type_constructor[PACKED_STRING_ARRAY](ptr(), v.ptr()); } Variant::Variant(const PackedVector2Array &v) { from_type_constructor[PACKED_VECTOR2_ARRAY](ptr(), v.ptr()); } Variant::Variant(const PackedVector3Array &v) { from_type_constructor[PACKED_VECTOR3_ARRAY](ptr(), v.ptr()); } Variant::Variant(const PackedColorArray &v) { from_type_constructor[PACKED_COLOR_ARRAY](ptr(), v.ptr()); } Variant::~Variant() { internal::gdn_interface->variant_destroy(ptr()); } Variant::operator bool() const { GDNativeBool result; to_type_constructor[BOOL](&result, ptr()); return PtrToArg::convert(&result); } Variant::operator int64_t() const { GDNativeInt result; to_type_constructor[INT](&result, ptr()); return PtrToArg::convert(&result); } Variant::operator int32_t() const { return static_cast(operator int64_t()); } Variant::operator uint64_t() const { return static_cast(operator int64_t()); } Variant::operator uint32_t() const { return static_cast(operator int64_t()); } Variant::operator double() const { double result; to_type_constructor[FLOAT](&result, ptr()); return PtrToArg::convert(&result); } Variant::operator float() const { return static_cast(operator double()); } Variant::operator String() const { String result; to_type_constructor[STRING](result.ptr(), ptr()); return result; } Variant::operator Vector2() const { Vector2 result; to_type_constructor[VECTOR2](result.ptr(), ptr()); return result; } Variant::operator Vector2i() const { Vector2i result; to_type_constructor[VECTOR2I](result.ptr(), ptr()); return result; } Variant::operator Rect2() const { Rect2 result; to_type_constructor[RECT2](result.ptr(), ptr()); return result; } Variant::operator Rect2i() const { Rect2i result; to_type_constructor[RECT2I](result.ptr(), ptr()); return result; } Variant::operator Vector3() const { Vector3 result; to_type_constructor[VECTOR3](result.ptr(), ptr()); return result; } Variant::operator Vector3i() const { Vector3i result; to_type_constructor[VECTOR3I](result.ptr(), ptr()); return result; } Variant::operator Transform2D() const { Transform2D result; to_type_constructor[TRANSFORM2D](result.ptr(), ptr()); return result; } Variant::operator Plane() const { Plane result; to_type_constructor[PLANE](result.ptr(), ptr()); return result; } Variant::operator Quaternion() const { Quaternion result; to_type_constructor[QUATERNION](result.ptr(), ptr()); return result; } Variant::operator godot::AABB() const { godot::AABB result; to_type_constructor[AABB](result.ptr(), ptr()); return result; } Variant::operator Basis() const { Basis result; to_type_constructor[BASIS](result.ptr(), ptr()); return result; } Variant::operator Transform3D() const { Transform3D result; to_type_constructor[TRANSFORM3D](result.ptr(), ptr()); return result; } Variant::operator Color() const { Color result; to_type_constructor[COLOR](result.ptr(), ptr()); return result; } Variant::operator StringName() const { StringName result; to_type_constructor[STRING_NAME](result.ptr(), ptr()); return result; } Variant::operator NodePath() const { NodePath result; to_type_constructor[NODE_PATH](result.ptr(), ptr()); return result; } Variant::operator godot::RID() const { godot::RID result; to_type_constructor[RID](result.ptr(), ptr()); return result; } Variant::operator Object *() const { GodotObject *obj; to_type_constructor[OBJECT](&obj, ptr()); if (obj == nullptr) { return nullptr; } return reinterpret_cast(internal::gdn_interface->object_get_instance_binding(obj, internal::token, &Object::___binding_callbacks)); } Variant::operator Callable() const { Callable result; to_type_constructor[CALLABLE](result.ptr(), ptr()); return result; } Variant::operator Signal() const { Signal result; to_type_constructor[SIGNAL](result.ptr(), ptr()); return result; } Variant::operator Dictionary() const { Dictionary result; to_type_constructor[DICTIONARY](result.ptr(), ptr()); return result; } Variant::operator Array() const { Array result; to_type_constructor[ARRAY](result.ptr(), ptr()); return result; } Variant::operator PackedByteArray() const { PackedByteArray result; to_type_constructor[PACKED_BYTE_ARRAY](result.ptr(), ptr()); return result; } Variant::operator PackedInt32Array() const { PackedInt32Array result; to_type_constructor[PACKED_INT32_ARRAY](result.ptr(), ptr()); return result; } Variant::operator PackedInt64Array() const { PackedInt64Array result; to_type_constructor[PACKED_INT64_ARRAY](result.ptr(), ptr()); return result; } Variant::operator PackedFloat32Array() const { PackedFloat32Array result; to_type_constructor[PACKED_FLOAT32_ARRAY](result.ptr(), ptr()); return result; } Variant::operator PackedFloat64Array() const { PackedFloat64Array result; to_type_constructor[PACKED_FLOAT64_ARRAY](result.ptr(), ptr()); return result; } Variant::operator PackedStringArray() const { PackedStringArray result; to_type_constructor[PACKED_STRING_ARRAY](result.ptr(), ptr()); return result; } Variant::operator PackedVector2Array() const { PackedVector2Array result; to_type_constructor[PACKED_VECTOR2_ARRAY](result.ptr(), ptr()); return result; } Variant::operator PackedVector3Array() const { PackedVector3Array result; to_type_constructor[PACKED_VECTOR3_ARRAY](result.ptr(), ptr()); return result; } Variant::operator PackedColorArray() const { PackedColorArray result; to_type_constructor[PACKED_COLOR_ARRAY](result.ptr(), ptr()); return result; } Variant &Variant::operator=(const Variant &other) { clear(); internal::gdn_interface->variant_new_copy(ptr(), other.ptr()); return *this; } Variant &Variant::operator=(Variant &&other) { std::swap(opaque, other.opaque); return *this; } bool Variant::operator==(const Variant &other) const { if (get_type() != other.get_type()) { return false; } bool valid = false; Variant result; evaluate(OP_EQUAL, *this, other, result, valid); return result.operator bool(); } bool Variant::operator!=(const Variant &other) const { if (get_type() != other.get_type()) { return true; } bool valid = false; Variant result; evaluate(OP_NOT_EQUAL, *this, other, result, valid); return result.operator bool(); } bool Variant::operator<(const Variant &other) const { if (get_type() != other.get_type()) { return get_type() < other.get_type(); } bool valid = false; Variant result; evaluate(OP_LESS, *this, other, result, valid); return result.operator bool(); } void Variant::call(const StringName &method, const Variant **args, int argcount, Variant &r_ret, GDNativeCallError &r_error) { internal::gdn_interface->variant_call(ptr(), method.ptr(), reinterpret_cast(const_cast(args)), argcount, r_ret.ptr(), &r_error); } void Variant::call_static(Variant::Type type, const StringName &method, const Variant **args, int argcount, Variant &r_ret, GDNativeCallError &r_error) { internal::gdn_interface->variant_call_static(static_cast(type), method.ptr(), reinterpret_cast(const_cast(args)), argcount, r_ret.ptr(), &r_error); } void Variant::evaluate(const Operator &op, const Variant &a, const Variant &b, Variant &r_ret, bool &r_valid) { GDNativeBool valid; internal::gdn_interface->variant_evaluate(static_cast(op), a.ptr(), b.ptr(), r_ret.ptr(), &valid); r_valid = PtrToArg::convert(&valid); } void Variant::set(const Variant &key, const Variant &value, bool *r_valid) { GDNativeBool valid; internal::gdn_interface->variant_set(ptr(), key.ptr(), value.ptr(), &valid); if (r_valid) { *r_valid = PtrToArg::convert(&valid); } } void Variant::set_named(const StringName &name, const Variant &value, bool &r_valid) { GDNativeBool valid; internal::gdn_interface->variant_set_named(ptr(), name.ptr(), value.ptr(), &valid); r_valid = PtrToArg::convert(&valid); } void Variant::set_indexed(int64_t index, const Variant &value, bool &r_valid, bool &r_oob) { GDNativeBool valid, oob; internal::gdn_interface->variant_set_indexed(ptr(), index, value.ptr(), &valid, &oob); r_valid = PtrToArg::convert(&valid); r_oob = PtrToArg::convert(&oob); } void Variant::set_keyed(const Variant &key, const Variant &value, bool &r_valid) { GDNativeBool valid; internal::gdn_interface->variant_set_keyed(ptr(), key.ptr(), value.ptr(), &valid); r_valid = PtrToArg::convert(&valid); } Variant Variant::get(const Variant &key, bool *r_valid) const { Variant result; GDNativeBool valid; internal::gdn_interface->variant_get(ptr(), key.ptr(), result.ptr(), &valid); if (r_valid) { *r_valid = PtrToArg::convert(&valid); } return result; } Variant Variant::get_named(const StringName &name, bool &r_valid) const { Variant result; GDNativeBool valid; internal::gdn_interface->variant_get_named(ptr(), name.ptr(), result.ptr(), &valid); r_valid = PtrToArg::convert(&valid); return result; } Variant Variant::get_indexed(int64_t index, bool &r_valid, bool &r_oob) const { Variant result; GDNativeBool valid; GDNativeBool oob; internal::gdn_interface->variant_get_indexed(ptr(), index, result.ptr(), &valid, &oob); r_valid = PtrToArg::convert(&valid); r_oob = PtrToArg::convert(&oob); return result; } Variant Variant::get_keyed(const Variant &key, bool &r_valid) const { Variant result; GDNativeBool valid; internal::gdn_interface->variant_get_keyed(ptr(), key.ptr(), result.ptr(), &valid); r_valid = PtrToArg::convert(&valid); return result; } bool Variant::in(const Variant &index, bool *r_valid) const { Variant result; bool valid; evaluate(OP_IN, *this, index, result, valid); if (r_valid) { *r_valid = valid; } return result.operator bool(); } bool Variant::iter_init(Variant &r_iter, bool &r_valid) const { GDNativeBool valid; internal::gdn_interface->variant_iter_init(ptr(), r_iter.ptr(), &valid); return PtrToArg::convert(&valid); } bool Variant::iter_next(Variant &r_iter, bool &r_valid) const { GDNativeBool valid; internal::gdn_interface->variant_iter_next(ptr(), r_iter.ptr(), &valid); return PtrToArg::convert(&valid); } Variant Variant::iter_get(const Variant &r_iter, bool &r_valid) const { Variant result; GDNativeBool valid; internal::gdn_interface->variant_iter_get(ptr(), r_iter.ptr(), result.ptr(), &valid); r_valid = PtrToArg::convert(&valid); return result; } Variant::Type Variant::get_type() const { return static_cast(internal::gdn_interface->variant_get_type(ptr())); } bool Variant::has_method(const StringName &method) const { GDNativeBool has = internal::gdn_interface->variant_has_method(ptr(), method.ptr()); return PtrToArg::convert(&has); } bool Variant::has_key(const Variant &key, bool *r_valid) const { GDNativeBool valid; GDNativeBool has = internal::gdn_interface->variant_has_key(ptr(), key.ptr(), &valid); if (r_valid) { *r_valid = PtrToArg::convert(&valid); } return PtrToArg::convert(&has); } bool Variant::has_member(Variant::Type type, const StringName &member) { GDNativeBool has = internal::gdn_interface->variant_has_member(static_cast(type), member.ptr()); return PtrToArg::convert(&has); } bool Variant::hash_compare(const Variant &variant) const { GDNativeBool compare = internal::gdn_interface->variant_hash_compare(ptr(), variant.ptr()); return PtrToArg::convert(&compare); } bool Variant::booleanize() const { GDNativeBool booleanized = internal::gdn_interface->variant_booleanize(ptr()); return PtrToArg::convert(&booleanized); } String Variant::stringify() const { String result; internal::gdn_interface->variant_stringify(ptr(), result.ptr()); return result; } Variant Variant::duplicate(bool deep) const { Variant result; GDNativeBool _deep; PtrToArg::encode(deep, &_deep); internal::gdn_interface->variant_duplicate(ptr(), result.ptr(), _deep); return result; } void Variant::blend(const Variant &a, const Variant &b, float c, Variant &r_dst) { internal::gdn_interface->variant_blend(a.ptr(), b.ptr(), c, r_dst.ptr()); } void Variant::interpolate(const Variant &a, const Variant &b, float c, Variant &r_dst) { internal::gdn_interface->variant_interpolate(a.ptr(), b.ptr(), c, r_dst.ptr()); } String Variant::get_type_name(Variant::Type type) { String result; internal::gdn_interface->variant_get_type_name(static_cast(type), result.ptr()); return result; } bool Variant::can_convert(Variant::Type from, Variant::Type to) { GDNativeBool can; internal::gdn_interface->variant_can_convert(static_cast(from), static_cast(to)); return PtrToArg::convert(&can); } bool Variant::can_convert_strict(Variant::Type from, Variant::Type to) { GDNativeBool can; internal::gdn_interface->variant_can_convert_strict(static_cast(from), static_cast(to)); return PtrToArg::convert(&can); } void Variant::clear() { static const bool needs_deinit[Variant::VARIANT_MAX] = { false, //NIL, false, //BOOL, false, //INT, false, //FLOAT, true, //STRING, false, //VECTOR2, false, //VECTOR2I, false, //RECT2, false, //RECT2I, false, //VECTOR3, false, //VECTOR3I, true, //TRANSFORM2D, false, //PLANE, false, //QUATERNION, true, //AABB, true, //BASIS, true, //TRANSFORM, // misc types false, //COLOR, true, //STRING_NAME, true, //NODE_PATH, false, //RID, true, //OBJECT, true, //CALLABLE, true, //SIGNAL, true, //DICTIONARY, true, //ARRAY, // typed arrays true, //PACKED_BYTE_ARRAY, true, //PACKED_INT32_ARRAY, true, //PACKED_INT64_ARRAY, true, //PACKED_FLOAT32_ARRAY, true, //PACKED_FLOAT64_ARRAY, true, //PACKED_STRING_ARRAY, true, //PACKED_VECTOR2_ARRAY, true, //PACKED_VECTOR3_ARRAY, true, //PACKED_COLOR_ARRAY, }; if (unlikely(needs_deinit[get_type()])) { // Make it fast for types that don't need deinit. internal::gdn_interface->variant_destroy(ptr()); } internal::gdn_interface->variant_new_nil(ptr()); } } // namespace godot