use super::*;
#[derive(Clone, Debug, PartialEq, PartialOrd)]
#[repr(transparent)]
pub struct OrientationSensor {
inner: Sensor,
}
impl FromVal for OrientationSensor {
fn from_val(v: &Any) -> Self {
OrientationSensor {
inner: Sensor::from_val(v),
}
}
fn take_ownership(v: AnyHandle) -> Self {
Self::from_val(&Any::take_ownership(v))
}
fn as_handle(&self) -> AnyHandle {
self.inner.as_handle()
}
}
impl core::ops::Deref for OrientationSensor {
type Target = Sensor;
fn deref(&self) -> &Self::Target {
&self.inner
}
}
impl core::ops::DerefMut for OrientationSensor {
fn deref_mut(&mut self) -> &mut Self::Target {
&mut self.inner
}
}
impl AsRef<Any> for OrientationSensor {
fn as_ref(&self) -> &Any {
&self.inner
}
}
impl AsMut<Any> for OrientationSensor {
fn as_mut(&mut self) -> &mut Any {
&mut self.inner
}
}
impl From<OrientationSensor> for Any {
fn from(s: OrientationSensor) -> Any {
let handle = s.inner.as_handle();
core::mem::forget(s);
Any::take_ownership(handle)
}
}
impl From<&OrientationSensor> for Any {
fn from(s: &OrientationSensor) -> Any {
s.inner.clone().into()
}
}
jsbind::utils::impl_dyn_cast!(OrientationSensor);
impl OrientationSensor {
pub fn quaternion(&self) -> TypedArray<f64> {
self.inner.get("quaternion").as_::<TypedArray<f64>>()
}
}
impl OrientationSensor {
pub fn populate_matrix(&self, target_matrix: &Any) -> Undefined {
self.inner
.call("populateMatrix", &[target_matrix.into()])
.as_::<Undefined>()
}
}