pub struct KeyboardVirtualDPad { /* private fields */ }Expand description
A virtual single-axis control constructed from four KeyCodes.
Each key represents a specific direction (up, down, left, right),
functioning similarly to a directional pad (D-pad) on both X and Y axes,
and offering intermediate diagonals by means of two-key combinations.
§Behaviors
- Raw Value: Each axis behaves as follows:
-1.0: Only the negative key is currently pressed (Down/Left).1.0: Only the positive key is currently pressed (Up/Right).0.0: Neither key is pressed, or both keys on the same axis are pressed simultaneously.
- Value Processing: Configure a pipeline to modify the raw value before use,
see
WithDualAxisProcessingPipelineExtfor details. - Activation: Only if the processed value is non-zero on either axis.
use bevy::prelude::*;
use bevy::input::InputPlugin;
use leafwing_input_manager::prelude::*;
use leafwing_input_manager::user_input::testing_utils::FetchUserInput;
use leafwing_input_manager::plugin::{AccumulatorPlugin, CentralInputStorePlugin};
let mut app = App::new();
app.add_plugins((InputPlugin, AccumulatorPlugin, CentralInputStorePlugin));
// Define a virtual D-pad using the arrow keys
let input = KeyboardVirtualDPad::ARROW_KEYS;
// Pressing an arrow key activates the corresponding axis
KeyCode::ArrowUp.press(app.world_mut());
app.update();
assert_eq!(app.read_dual_axis_values(input), Vec2::new(0.0, 1.0));
// You can configure a processing pipeline (e.g., doubling the Y value)
let doubled = KeyboardVirtualDPad::ARROW_KEYS.sensitivity_y(2.0);
assert_eq!(app.read_dual_axis_values(doubled), Vec2::new(0.0, 2.0));Implementations§
source§impl KeyboardVirtualDPad
impl KeyboardVirtualDPad
sourcepub fn new(up: KeyCode, down: KeyCode, left: KeyCode, right: KeyCode) -> Self
pub fn new(up: KeyCode, down: KeyCode, left: KeyCode, right: KeyCode) -> Self
Creates a new KeyboardVirtualDPad with four given KeyCodes.
No processing is applied to raw data from the keyboard.
sourcepub const ARROW_KEYS: Self = _
pub const ARROW_KEYS: Self = _
The KeyboardVirtualDPad using the common arrow key mappings.
KeyCode::ArrowUpfor upward direction.KeyCode::ArrowDownfor downward direction.KeyCode::ArrowLeftfor leftward direction.KeyCode::ArrowRightfor rightward direction.
sourcepub const WASD: Self = _
pub const WASD: Self = _
The KeyboardVirtualDPad using the common WASD key mappings.
KeyCode::KeyWfor upward direction.KeyCode::KeySfor downward direction.KeyCode::KeyAfor leftward direction.KeyCode::KeyDfor rightward direction.
sourcepub const NUMPAD: Self = _
pub const NUMPAD: Self = _
The KeyboardVirtualDPad using the common numpad key mappings.
KeyCode::Numpad8for upward direction.KeyCode::Numpad2for downward direction.KeyCode::Numpad4for leftward direction.KeyCode::Numpad6for rightward direction.
Trait Implementations§
source§impl Clone for KeyboardVirtualDPad
impl Clone for KeyboardVirtualDPad
source§fn clone(&self) -> KeyboardVirtualDPad
fn clone(&self) -> KeyboardVirtualDPad
1.0.0 · source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
source. Read moresource§impl Debug for KeyboardVirtualDPad
impl Debug for KeyboardVirtualDPad
source§impl<'de> Deserialize<'de> for KeyboardVirtualDPad
impl<'de> Deserialize<'de> for KeyboardVirtualDPad
source§fn deserialize<__D>(__deserializer: __D) -> Result<Self, __D::Error>where
__D: Deserializer<'de>,
fn deserialize<__D>(__deserializer: __D) -> Result<Self, __D::Error>where
__D: Deserializer<'de>,
source§impl DualAxislike for KeyboardVirtualDPad
impl DualAxislike for KeyboardVirtualDPad
source§fn axis_pair(&self, input_store: &CentralInputStore, _gamepad: Gamepad) -> Vec2
fn axis_pair(&self, input_store: &CentralInputStore, _gamepad: Gamepad) -> Vec2
Retrieves the current X and Y values of this D-pad after processing by the associated processors.
source§fn set_axis_pair(&self, world: &mut World, value: Vec2)
fn set_axis_pair(&self, world: &mut World, value: Vec2)
Presses the corresponding buttons based on the quadrant of the given value.
source§impl FromReflect for KeyboardVirtualDPadwhere
Self: Any + Send + Sync,
KeyCode: FromReflect + TypePath + RegisterForReflection,
Vec<DualAxisProcessor>: FromReflect + TypePath + RegisterForReflection,
impl FromReflect for KeyboardVirtualDPadwhere
Self: Any + Send + Sync,
KeyCode: FromReflect + TypePath + RegisterForReflection,
Vec<DualAxisProcessor>: FromReflect + TypePath + RegisterForReflection,
source§fn from_reflect(reflect: &dyn Reflect) -> Option<Self>
fn from_reflect(reflect: &dyn Reflect) -> Option<Self>
Self from a reflected value.source§fn take_from_reflect(
reflect: Box<dyn Reflect>,
) -> Result<Self, Box<dyn Reflect>>
fn take_from_reflect( reflect: Box<dyn Reflect>, ) -> Result<Self, Box<dyn Reflect>>
Self using,
constructing the value using from_reflect if that fails. Read moresource§impl GetTypeRegistration for KeyboardVirtualDPadwhere
Self: Any + Send + Sync,
KeyCode: FromReflect + TypePath + RegisterForReflection,
Vec<DualAxisProcessor>: FromReflect + TypePath + RegisterForReflection,
impl GetTypeRegistration for KeyboardVirtualDPadwhere
Self: Any + Send + Sync,
KeyCode: FromReflect + TypePath + RegisterForReflection,
Vec<DualAxisProcessor>: FromReflect + TypePath + RegisterForReflection,
source§fn get_type_registration() -> TypeRegistration
fn get_type_registration() -> TypeRegistration
TypeRegistration for this type.source§fn register_type_dependencies(registry: &mut TypeRegistry)
fn register_type_dependencies(registry: &mut TypeRegistry)
source§impl Hash for KeyboardVirtualDPad
impl Hash for KeyboardVirtualDPad
source§impl PartialEq for KeyboardVirtualDPad
impl PartialEq for KeyboardVirtualDPad
source§impl Reflect for KeyboardVirtualDPadwhere
Self: Any + Send + Sync,
KeyCode: FromReflect + TypePath + RegisterForReflection,
Vec<DualAxisProcessor>: FromReflect + TypePath + RegisterForReflection,
impl Reflect for KeyboardVirtualDPadwhere
Self: Any + Send + Sync,
KeyCode: FromReflect + TypePath + RegisterForReflection,
Vec<DualAxisProcessor>: FromReflect + TypePath + RegisterForReflection,
source§fn get_represented_type_info(&self) -> Option<&'static TypeInfo>
fn get_represented_type_info(&self) -> Option<&'static TypeInfo>
source§fn as_any_mut(&mut self) -> &mut dyn Any
fn as_any_mut(&mut self) -> &mut dyn Any
&mut dyn Any.source§fn into_reflect(self: Box<Self>) -> Box<dyn Reflect>
fn into_reflect(self: Box<Self>) -> Box<dyn Reflect>
source§fn as_reflect(&self) -> &dyn Reflect
fn as_reflect(&self) -> &dyn Reflect
source§fn as_reflect_mut(&mut self) -> &mut dyn Reflect
fn as_reflect_mut(&mut self) -> &mut dyn Reflect
source§fn clone_value(&self) -> Box<dyn Reflect>
fn clone_value(&self) -> Box<dyn Reflect>
Reflect trait object. Read moresource§fn set(&mut self, value: Box<dyn Reflect>) -> Result<(), Box<dyn Reflect>>
fn set(&mut self, value: Box<dyn Reflect>) -> Result<(), Box<dyn Reflect>>
source§fn reflect_kind(&self) -> ReflectKind
fn reflect_kind(&self) -> ReflectKind
source§fn reflect_ref(&self) -> ReflectRef<'_>
fn reflect_ref(&self) -> ReflectRef<'_>
source§fn reflect_mut(&mut self) -> ReflectMut<'_>
fn reflect_mut(&mut self) -> ReflectMut<'_>
source§fn reflect_owned(self: Box<Self>) -> ReflectOwned
fn reflect_owned(self: Box<Self>) -> ReflectOwned
source§fn reflect_partial_eq(&self, value: &dyn Reflect) -> Option<bool>
fn reflect_partial_eq(&self, value: &dyn Reflect) -> Option<bool>
source§fn apply(&mut self, value: &(dyn Reflect + 'static))
fn apply(&mut self, value: &(dyn Reflect + 'static))
source§fn reflect_hash(&self) -> Option<u64>
fn reflect_hash(&self) -> Option<u64>
source§fn debug(&self, f: &mut Formatter<'_>) -> Result<(), Error>
fn debug(&self, f: &mut Formatter<'_>) -> Result<(), Error>
source§fn serializable(&self) -> Option<Serializable<'_>>
fn serializable(&self) -> Option<Serializable<'_>>
source§fn is_dynamic(&self) -> bool
fn is_dynamic(&self) -> bool
source§impl<'de> RegisterTypeTag<'de, dyn UserInput> for KeyboardVirtualDPad
impl<'de> RegisterTypeTag<'de, dyn UserInput> for KeyboardVirtualDPad
source§fn register_typetag(registry: &mut MapRegistry<dyn UserInput>)
fn register_typetag(registry: &mut MapRegistry<dyn UserInput>)
MapRegistry.source§impl Serialize for KeyboardVirtualDPad
impl Serialize for KeyboardVirtualDPad
source§impl Struct for KeyboardVirtualDPadwhere
Self: Any + Send + Sync,
KeyCode: FromReflect + TypePath + RegisterForReflection,
Vec<DualAxisProcessor>: FromReflect + TypePath + RegisterForReflection,
impl Struct for KeyboardVirtualDPadwhere
Self: Any + Send + Sync,
KeyCode: FromReflect + TypePath + RegisterForReflection,
Vec<DualAxisProcessor>: FromReflect + TypePath + RegisterForReflection,
source§fn field(&self, name: &str) -> Option<&dyn Reflect>
fn field(&self, name: &str) -> Option<&dyn Reflect>
name as a &dyn Reflect.source§fn field_mut(&mut self, name: &str) -> Option<&mut dyn Reflect>
fn field_mut(&mut self, name: &str) -> Option<&mut dyn Reflect>
name as a
&mut dyn Reflect.source§fn field_at(&self, index: usize) -> Option<&dyn Reflect>
fn field_at(&self, index: usize) -> Option<&dyn Reflect>
index as a
&dyn Reflect.source§fn field_at_mut(&mut self, index: usize) -> Option<&mut dyn Reflect>
fn field_at_mut(&mut self, index: usize) -> Option<&mut dyn Reflect>
index
as a &mut dyn Reflect.source§fn name_at(&self, index: usize) -> Option<&str>
fn name_at(&self, index: usize) -> Option<&str>
index.source§fn iter_fields(&self) -> FieldIter<'_>
fn iter_fields(&self) -> FieldIter<'_>
source§fn clone_dynamic(&self) -> DynamicStruct
fn clone_dynamic(&self) -> DynamicStruct
DynamicStruct.source§impl TypePath for KeyboardVirtualDPad
impl TypePath for KeyboardVirtualDPad
source§fn type_path() -> &'static str
fn type_path() -> &'static str
source§fn short_type_path() -> &'static str
fn short_type_path() -> &'static str
source§fn type_ident() -> Option<&'static str>
fn type_ident() -> Option<&'static str>
source§fn crate_name() -> Option<&'static str>
fn crate_name() -> Option<&'static str>
source§impl Typed for KeyboardVirtualDPadwhere
Self: Any + Send + Sync,
KeyCode: FromReflect + TypePath + RegisterForReflection,
Vec<DualAxisProcessor>: FromReflect + TypePath + RegisterForReflection,
impl Typed for KeyboardVirtualDPadwhere
Self: Any + Send + Sync,
KeyCode: FromReflect + TypePath + RegisterForReflection,
Vec<DualAxisProcessor>: FromReflect + TypePath + RegisterForReflection,
source§impl UserInput for KeyboardVirtualDPad
impl UserInput for KeyboardVirtualDPad
source§fn kind(&self) -> InputControlKind
fn kind(&self) -> InputControlKind
KeyboardVirtualDPad acts as a virtual dual-axis input.
source§fn decompose(&self) -> BasicInputs
fn decompose(&self) -> BasicInputs
KeyboardVirtualDPad represents a compositions of four KeyCodes.
source§impl WithDualAxisProcessingPipelineExt for KeyboardVirtualDPad
impl WithDualAxisProcessingPipelineExt for KeyboardVirtualDPad
source§fn reset_processing_pipeline(self) -> Self
fn reset_processing_pipeline(self) -> Self
source§fn replace_processing_pipeline(
self,
processors: impl IntoIterator<Item = DualAxisProcessor>,
) -> Self
fn replace_processing_pipeline( self, processors: impl IntoIterator<Item = DualAxisProcessor>, ) -> Self
DualAxisProcessors.source§fn with_processor(self, processor: impl Into<DualAxisProcessor>) -> Self
fn with_processor(self, processor: impl Into<DualAxisProcessor>) -> Self
DualAxisProcessor as the next processing step.source§fn digital(self) -> Self
fn digital(self) -> Self
DualAxisProcessor::Digital processor as the next processing step,
similar to Vec2::signum but returning 0.0 for zero values.source§fn inverted(self) -> Self
fn inverted(self) -> Self
DualAxisInverted::ALL processor as the next processing step,
flipping the sign of values on both axes.source§fn inverted_x(self) -> Self
fn inverted_x(self) -> Self
DualAxisInverted::ONLY_X processor as the next processing step,
only flipping the sign of the X-axis values.source§fn inverted_y(self) -> Self
fn inverted_y(self) -> Self
DualAxisInverted::ONLY_Y processor as the next processing step,
only flipping the sign of the Y-axis values.source§fn sensitivity(self, sensitivity: f32) -> Self
fn sensitivity(self, sensitivity: f32) -> Self
DualAxisSensitivity processor as the next processing step,
multiplying values on both axes with the given sensitivity factor.source§fn sensitivity_x(self, sensitivity: f32) -> Self
fn sensitivity_x(self, sensitivity: f32) -> Self
DualAxisSensitivity processor as the next processing step,
only multiplying the X-axis values with the given sensitivity factor.source§fn sensitivity_y(self, sensitivity: f32) -> Self
fn sensitivity_y(self, sensitivity: f32) -> Self
DualAxisSensitivity processor as the next processing step,
only multiplying the Y-axis values with the given sensitivity factor.source§fn with_bounds(self, min: f32, max: f32) -> Self
fn with_bounds(self, min: f32, max: f32) -> Self
DualAxisBounds processor as the next processing step,
restricting values within the same range [min, max] on both axes.source§fn with_bounds_symmetric(self, threshold: f32) -> Self
fn with_bounds_symmetric(self, threshold: f32) -> Self
DualAxisBounds processor as the next processing step,
restricting values within the same range [-threshold, threshold] on both axes.source§fn with_bounds_x(self, min: f32, max: f32) -> Self
fn with_bounds_x(self, min: f32, max: f32) -> Self
DualAxisBounds processor as the next processing step,
only restricting values within the range [min, max] on the X-axis.source§fn with_bounds_x_symmetric(self, threshold: f32) -> Self
fn with_bounds_x_symmetric(self, threshold: f32) -> Self
DualAxisBounds processor as the next processing step,
restricting values within the range [-threshold, threshold] on the X-axis.source§fn with_bounds_y(self, min: f32, max: f32) -> Self
fn with_bounds_y(self, min: f32, max: f32) -> Self
DualAxisBounds processor as the next processing step,
only restricting values within the range [min, max] on the Y-axis.source§fn with_bounds_y_symmetric(self, threshold: f32) -> Self
fn with_bounds_y_symmetric(self, threshold: f32) -> Self
DualAxisBounds processor as the next processing step,
restricting values within the range [-threshold, threshold] on the Y-axis.source§fn with_circle_bounds(self, max: f32) -> Self
fn with_circle_bounds(self, max: f32) -> Self
CircleBounds processor as the next processing step,
restricting values to a max magnitude.source§fn with_deadzone(self, min: f32, max: f32) -> Self
fn with_deadzone(self, min: f32, max: f32) -> Self
DualAxisDeadZone processor as the next processing step,
excluding values within the dead zone range [min, max] on both axes,
treating them as zeros, then normalizing non-excluded input values into the “live zone”,
the remaining range within the DualAxisBounds::symmetric_all(1.0)
after dead zone exclusion.source§fn with_deadzone_symmetric(self, threshold: f32) -> Self
fn with_deadzone_symmetric(self, threshold: f32) -> Self
DualAxisDeadZone processor as the next processing step,
excluding values within the dead zone range [-threshold, threshold] on both axes,
treating them as zeros, then normalizing non-excluded input values into the “live zone”,
the remaining range within the DualAxisBounds::symmetric_all(1.0)
after dead zone exclusion.source§fn with_deadzone_x(self, min: f32, max: f32) -> Self
fn with_deadzone_x(self, min: f32, max: f32) -> Self
DualAxisDeadZone processor as the next processing step,
excluding values within the dead zone range [min, max] on the X-axis,
treating them as zeros, then normalizing non-excluded input values into the “live zone”,
the remaining range within the DualAxisBounds::symmetric_all(1.0)
after dead zone exclusion.source§fn with_deadzone_x_symmetric(self, threshold: f32) -> Self
fn with_deadzone_x_symmetric(self, threshold: f32) -> Self
DualAxisDeadZone processor as the next processing step,
excluding values within the dead zone range [-threshold, threshold] on the X-axis,
treating them as zeros, then normalizing non-excluded input values into the “live zone”,
the remaining range within the DualAxisBounds::symmetric_all(1.0)
after dead zone exclusion.source§fn with_deadzone_y(self, min: f32, max: f32) -> Self
fn with_deadzone_y(self, min: f32, max: f32) -> Self
DualAxisDeadZone processor as the next processing step,
excluding values within the dead zone range [min, max] on the Y-axis,
treating them as zeros, then normalizing non-excluded input values into the “live zone”,
the remaining range within the DualAxisBounds::symmetric_all(1.0)
after dead zone exclusion.source§fn with_deadzone_y_symmetric(self, threshold: f32) -> Self
fn with_deadzone_y_symmetric(self, threshold: f32) -> Self
DualAxisDeadZone processor as the next processing step,
excluding values within the deadzone range [-threshold, threshold] on the Y-axis,
treating them as zeros, then normalizing non-excluded input values into the “live zone”,
the remaining range within the DualAxisBounds::symmetric_all(1.0)
after dead zone exclusion.source§fn with_circle_deadzone(self, min: f32) -> Self
fn with_circle_deadzone(self, min: f32) -> Self
CircleDeadZone processor as the next processing step,
ignoring values below a min magnitude, treating them as zeros,
then normalizing non-excluded input values into the “live zone”,
the remaining range within the CircleBounds::new(1.0)
after dead zone exclusion.source§fn with_deadzone_unscaled(self, min: f32, max: f32) -> Self
fn with_deadzone_unscaled(self, min: f32, max: f32) -> Self
DualAxisExclusion processor as the next processing step,
ignoring values within the dead zone range [min, max] on both axes,
treating them as zeros.source§fn with_deadzone_symmetric_unscaled(self, threshold: f32) -> Self
fn with_deadzone_symmetric_unscaled(self, threshold: f32) -> Self
DualAxisExclusion processor as the next processing step,
ignoring values within the dead zone range [-threshold, threshold] on both axes,
treating them as zeros.source§fn with_deadzone_x_unscaled(self, min: f32, max: f32) -> Self
fn with_deadzone_x_unscaled(self, min: f32, max: f32) -> Self
DualAxisExclusion processor as the next processing step,
only ignoring values within the dead zone range [min, max] on the X-axis,
treating them as zeros.source§fn with_deadzone_x_symmetric_unscaled(self, threshold: f32) -> Self
fn with_deadzone_x_symmetric_unscaled(self, threshold: f32) -> Self
DualAxisExclusion processor as the next processing step,
only ignoring values within the dead zone range [-threshold, threshold] on the X-axis,
treating them as zeros.source§fn with_deadzone_y_unscaled(self, min: f32, max: f32) -> Self
fn with_deadzone_y_unscaled(self, min: f32, max: f32) -> Self
DualAxisExclusion processor as the next processing step,
only ignoring values within the dead zone range [min, max] on the Y-axis,
treating them as zeros.source§fn with_deadzone_y_symmetric_unscaled(self, threshold: f32) -> Self
fn with_deadzone_y_symmetric_unscaled(self, threshold: f32) -> Self
DualAxisExclusion processor as the next processing step,
only ignoring values within the dead zone range [-threshold, threshold] on the Y-axis,
treating them as zeros.source§fn with_circle_deadzone_unscaled(self, min: f32) -> Self
fn with_circle_deadzone_unscaled(self, min: f32) -> Self
CircleExclusion processor as the next processing step,
ignoring values below a min magnitude, treating them as zeros.impl Eq for KeyboardVirtualDPad
impl StructuralPartialEq for KeyboardVirtualDPad
Auto Trait Implementations§
impl Freeze for KeyboardVirtualDPad
impl !RefUnwindSafe for KeyboardVirtualDPad
impl Send for KeyboardVirtualDPad
impl Sync for KeyboardVirtualDPad
impl Unpin for KeyboardVirtualDPad
impl !UnwindSafe for KeyboardVirtualDPad
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