godot::classes

Struct PhysicsDirectSpaceState2DExtension

#[repr(C)]
pub struct PhysicsDirectSpaceState2DExtension { /* private fields */ }
Expand description

Godot class PhysicsDirectSpaceState2DExtension.

Inherits PhysicsDirectSpaceState2D.

Related symbols:

See also Godot docs for PhysicsDirectSpaceState2DExtension.

§Construction

This class is manually managed. You can create a new instance using PhysicsDirectSpaceState2DExtension::new_alloc().

Do not forget to call free() or hand over ownership to Godot.

Implementations§

Methods from Deref<Target = PhysicsDirectSpaceState2D>§

pub fn intersect_point( &mut self, parameters: impl AsObjectArg<PhysicsPointQueryParameters2D>, ) -> Array<Dictionary>

To set the default parameters, use Self::intersect_point_ex and its builder methods. See the book for detailed usage instructions.

pub fn intersect_point_ex<'a>( &'a mut self, parameters: impl AsObjectArg<PhysicsPointQueryParameters2D>, ) -> ExIntersectPoint<'a>

pub fn intersect_ray( &mut self, parameters: impl AsObjectArg<PhysicsRayQueryParameters2D>, ) -> Dictionary

pub fn intersect_shape( &mut self, parameters: impl AsObjectArg<PhysicsShapeQueryParameters2D>, ) -> Array<Dictionary>

To set the default parameters, use Self::intersect_shape_ex and its builder methods. See the book for detailed usage instructions.

pub fn intersect_shape_ex<'a>( &'a mut self, parameters: impl AsObjectArg<PhysicsShapeQueryParameters2D>, ) -> ExIntersectShape<'a>

pub fn cast_motion( &mut self, parameters: impl AsObjectArg<PhysicsShapeQueryParameters2D>, ) -> PackedFloat32Array

pub fn collide_shape( &mut self, parameters: impl AsObjectArg<PhysicsShapeQueryParameters2D>, ) -> Array<Vector2>

To set the default parameters, use Self::collide_shape_ex and its builder methods. See the book for detailed usage instructions.

pub fn collide_shape_ex<'a>( &'a mut self, parameters: impl AsObjectArg<PhysicsShapeQueryParameters2D>, ) -> ExCollideShape<'a>

pub fn get_rest_info( &mut self, parameters: impl AsObjectArg<PhysicsShapeQueryParameters2D>, ) -> Dictionary

Methods from Deref<Target = Object>§

pub fn get_class(&self) -> GString

pub fn is_class(&self, class: impl AsArg<GString>) -> bool

pub fn set(&mut self, property: impl AsArg<StringName>, value: &Variant)

pub fn get(&self, property: impl AsArg<StringName>) -> Variant

pub fn set_indexed( &mut self, property_path: impl AsArg<NodePath>, value: &Variant, )

pub fn get_indexed(&self, property_path: impl AsArg<NodePath>) -> Variant

pub fn get_property_list(&self) -> Array<Dictionary>

pub fn get_method_list(&self) -> Array<Dictionary>

pub fn property_can_revert(&self, property: impl AsArg<StringName>) -> bool

pub fn property_get_revert(&self, property: impl AsArg<StringName>) -> Variant

pub fn set_script(&mut self, script: &Variant)

pub fn get_script(&self) -> Variant

pub fn set_meta(&mut self, name: impl AsArg<StringName>, value: &Variant)

pub fn remove_meta(&mut self, name: impl AsArg<StringName>)

pub fn get_meta(&self, name: impl AsArg<StringName>) -> Variant

To set the default parameters, use Self::get_meta_ex and its builder methods. See the book for detailed usage instructions.

pub fn get_meta_ex<'a>( &'a self, name: impl AsArg<StringName> + 'a, ) -> ExGetMeta<'a>

pub fn has_meta(&self, name: impl AsArg<StringName>) -> bool

pub fn get_meta_list(&self) -> Array<StringName>

pub fn add_user_signal(&mut self, signal: impl AsArg<GString>)

To set the default parameters, use Self::add_user_signal_ex and its builder methods. See the book for detailed usage instructions.

pub fn add_user_signal_ex<'a>( &'a mut self, signal: impl AsArg<GString> + 'a, ) -> ExAddUserSignal<'a>

pub fn has_user_signal(&self, signal: impl AsArg<StringName>) -> bool

pub fn remove_user_signal(&mut self, signal: impl AsArg<StringName>)

pub fn emit_signal( &mut self, signal: impl AsArg<StringName>, varargs: &[Variant], ) -> Error

§Panics

This is a varcall method, meaning parameters and return values are passed as Variant. It can detect call failures and will panic in such a case.

pub fn try_emit_signal( &mut self, signal: impl AsArg<StringName>, varargs: &[Variant], ) -> Result<Error, CallError>

§Return type

This is a varcall method, meaning parameters and return values are passed as Variant. It can detect call failures and will return Err in such a case.

pub fn call( &mut self, method: impl AsArg<StringName>, varargs: &[Variant], ) -> Variant

§Panics

This is a varcall method, meaning parameters and return values are passed as Variant. It can detect call failures and will panic in such a case.

pub fn try_call( &mut self, method: impl AsArg<StringName>, varargs: &[Variant], ) -> Result<Variant, CallError>

§Return type

This is a varcall method, meaning parameters and return values are passed as Variant. It can detect call failures and will return Err in such a case.

pub fn call_deferred( &mut self, method: impl AsArg<StringName>, varargs: &[Variant], ) -> Variant

§Panics

This is a varcall method, meaning parameters and return values are passed as Variant. It can detect call failures and will panic in such a case.

pub fn try_call_deferred( &mut self, method: impl AsArg<StringName>, varargs: &[Variant], ) -> Result<Variant, CallError>

§Return type

This is a varcall method, meaning parameters and return values are passed as Variant. It can detect call failures and will return Err in such a case.

pub fn set_deferred( &mut self, property: impl AsArg<StringName>, value: &Variant, )

pub fn callv( &mut self, method: impl AsArg<StringName>, arg_array: &Array<Variant>, ) -> Variant

pub fn has_method(&self, method: impl AsArg<StringName>) -> bool

pub fn get_method_argument_count(&self, method: impl AsArg<StringName>) -> i32

pub fn has_signal(&self, signal: impl AsArg<StringName>) -> bool

pub fn get_signal_list(&self) -> Array<Dictionary>

pub fn get_signal_connection_list( &self, signal: impl AsArg<StringName>, ) -> Array<Dictionary>

pub fn get_incoming_connections(&self) -> Array<Dictionary>

pub fn connect( &mut self, signal: impl AsArg<StringName>, callable: &Callable, ) -> Error

To set the default parameters, use Self::connect_ex and its builder methods. See the book for detailed usage instructions.

pub fn connect_ex<'a>( &'a mut self, signal: impl AsArg<StringName> + 'a, callable: &'a Callable, ) -> ExConnect<'a>

pub fn disconnect( &mut self, signal: impl AsArg<StringName>, callable: &Callable, )

pub fn is_connected( &self, signal: impl AsArg<StringName>, callable: &Callable, ) -> bool

pub fn set_block_signals(&mut self, enable: bool)

pub fn is_blocking_signals(&self) -> bool

pub fn notify_property_list_changed(&mut self)

pub fn set_message_translation(&mut self, enable: bool)

pub fn can_translate_messages(&self) -> bool

pub fn tr(&self, message: impl AsArg<StringName>) -> GString

To set the default parameters, use Self::tr_ex and its builder methods. See the book for detailed usage instructions.

pub fn tr_ex<'a>(&'a self, message: impl AsArg<StringName> + 'a) -> ExTr<'a>

pub fn tr_n( &self, message: impl AsArg<StringName>, plural_message: impl AsArg<StringName>, n: i32, ) -> GString

To set the default parameters, use Self::tr_n_ex and its builder methods. See the book for detailed usage instructions.

pub fn tr_n_ex<'a>( &'a self, message: impl AsArg<StringName> + 'a, plural_message: impl AsArg<StringName> + 'a, n: i32, ) -> ExTrN<'a>

pub fn is_queued_for_deletion(&self) -> bool

pub fn cancel_free(&mut self)

pub fn notify(&mut self, what: ObjectNotification)

⚠️ Sends a Godot notification to all classes inherited by the object.

Triggers calls to on_notification(), and depending on the notification, also to Godot’s lifecycle callbacks such as ready().

Starts from the highest ancestor (the Object class) and goes down the hierarchy. See also Godot docs for Object::notification().

§Panics

If you call this method on a user-defined object while holding a GdRef or GdMut guard on the instance, you will encounter a panic. The reason is that the receiving virtual method on_notification() acquires a GdMut lock dynamically, which must be exclusive.

pub fn notify_reversed(&mut self, what: ObjectNotification)

⚠️ Like Self::notify(), but starts at the most-derived class and goes up the hierarchy.

See docs of that method, including the panics.

Trait Implementations§

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impl Bounds for PhysicsDirectSpaceState2DExtension

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type Memory = MemManual

Defines the memory strategy of the static type.
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type Declarer = DeclEngine

Whether this class is a core Godot class provided by the engine, or declared by the user as a Rust struct.
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impl Debug for PhysicsDirectSpaceState2DExtension

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fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>

Formats the value using the given formatter. Read more
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impl Deref for PhysicsDirectSpaceState2DExtension

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type Target = PhysicsDirectSpaceState2D

The resulting type after dereferencing.
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fn deref(&self) -> &<PhysicsDirectSpaceState2DExtension as Deref>::Target

Dereferences the value.
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impl DerefMut for PhysicsDirectSpaceState2DExtension

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fn deref_mut( &mut self, ) -> &mut <PhysicsDirectSpaceState2DExtension as Deref>::Target

Mutably dereferences the value.
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impl GodotClass for PhysicsDirectSpaceState2DExtension

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const INIT_LEVEL: InitLevel = crate::init::InitLevel::Servers

Initialization level, during which this class should be initialized with Godot. Read more
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type Base = PhysicsDirectSpaceState2D

The immediate superclass of T. This is always a Godot engine class.
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fn class_name() -> ClassName

The name of the class, under which it is registered in Godot. Read more
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fn inherits<U>() -> bool
where U: GodotClass,

Returns whether Self inherits from U. Read more
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impl GodotDefault for PhysicsDirectSpaceState2DExtension

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impl Inherits<Object> for PhysicsDirectSpaceState2DExtension

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impl Inherits<PhysicsDirectSpaceState2D> for PhysicsDirectSpaceState2DExtension

Auto Trait Implementations§

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fn type_id(&self) -> TypeId

Gets the TypeId of self. Read more
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impl<T> Borrow<T> for T
where T: ?Sized,

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fn borrow(&self) -> &T

Immutably borrows from an owned value. Read more
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impl<T> BorrowMut<T> for T
where T: ?Sized,

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fn borrow_mut(&mut self) -> &mut T

Mutably borrows from an owned value. Read more
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impl<T> From<T> for T

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fn from(t: T) -> T

Returns the argument unchanged.

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impl<T, U> Into<U> for T
where U: From<T>,

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fn into(self) -> U

Calls U::from(self).

That is, this conversion is whatever the implementation of From<T> for U chooses to do.

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impl<T> NewAlloc for T
where T: GodotDefault<Memory = MemManual> + Bounds,

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fn new_alloc() -> Gd<T>

Return a new, manually-managed Gd containing a default-constructed instance. Read more
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impl<T, U> TryFrom<U> for T
where U: Into<T>,

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type Error = Infallible

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fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>

Performs the conversion.
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impl<T, U> TryInto<U> for T
where U: TryFrom<T>,

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type Error = <U as TryFrom<T>>::Error

The type returned in the event of a conversion error.
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fn try_into(self) -> Result<U, <U as TryFrom<T>>::Error>

Performs the conversion.
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impl<T> Inherits<T> for T
where T: GodotClass,