use crate::model::common::{FeatureRef, FeatureRefMut};
use crate::model::construction::{
AbstractFillingElement, AsAbstractFillingElement, AsAbstractFillingElementMut,
};
use crate::model::core::AsAbstractFeatureMut;
use egml::model::basic::Code;
use egml::model::geometry::Envelope;
use nalgebra::Isometry3;
#[derive(Debug, Clone, PartialEq)]
pub struct Window {
pub abstract_filling_element: AbstractFillingElement,
pub(crate) class: Option<Code>,
pub(crate) functions: Vec<Code>,
pub(crate) usages: Vec<Code>,
}
impl Window {
pub fn new(abstract_filling_element: AbstractFillingElement) -> Self {
Self {
abstract_filling_element,
class: None,
functions: Vec::new(),
usages: Vec::new(),
}
}
pub fn iter_features<'a>(&'a self) -> impl Iterator<Item = FeatureRef<'a>> + 'a {
std::iter::once(self.into()).chain(self.abstract_filling_element.iter_features())
}
pub fn for_each_feature_mut<F: FnMut(FeatureRefMut<'_>)>(&mut self, f: &mut F) {
f((&mut *self).into());
self.abstract_filling_element.for_each_feature_mut(f);
}
pub fn compute_envelope(&self) -> Option<Envelope> {
self.abstract_filling_element.compute_envelope()
}
pub fn recompute_bounding_shape(&mut self) {
self.set_bounding_shape_from_envelope(self.compute_envelope());
}
pub fn apply_transform(&mut self, m: &Isometry3<f64>) {
self.abstract_filling_element.apply_transform(m);
}
}
impl AsAbstractFillingElement for Window {
fn abstract_filling_element(&self) -> &AbstractFillingElement {
&self.abstract_filling_element
}
}
impl AsAbstractFillingElementMut for Window {
fn abstract_filling_element_mut(&mut self) -> &mut AbstractFillingElement {
&mut self.abstract_filling_element
}
}
crate::impl_abstract_filling_element_traits!(Window);
impl<'a> From<&'a Window> for FeatureRef<'a> {
fn from(item: &'a Window) -> Self {
FeatureRef::Window(item)
}
}
impl<'a> From<&'a mut Window> for FeatureRefMut<'a> {
fn from(item: &'a mut Window) -> Self {
FeatureRefMut::Window(item)
}
}