use crate::model::common::{
ApplyTransform, ComputeEnvelope, GeometryType, HasGeometryType, IterGeometries,
};
use crate::model::geometry::primitives::{
AbstractRing, AsAbstractRing, AsAbstractRingMut, LinearRing,
};
use crate::model::geometry::refs::AbstractGeometryKindRef;
use crate::model::geometry::{DirectPosition, Envelope};
use crate::{impl_abstract_ring_mut_traits, impl_abstract_ring_traits};
use nalgebra::{Isometry3, Rotation3, Scale3, Transform3, Vector3};
#[derive(Debug, Clone, PartialEq)]
pub enum AbstractRingKind {
LinearRing(LinearRing),
AbstractRingKind(Box<AbstractRingKind>),
}
impl AsAbstractRing for AbstractRingKind {
fn abstract_ring(&self) -> &AbstractRing {
match self {
AbstractRingKind::LinearRing(x) => x.abstract_ring(),
AbstractRingKind::AbstractRingKind(x) => x.abstract_ring(),
}
}
}
impl AsAbstractRingMut for AbstractRingKind {
fn abstract_ring_mut(&mut self) -> &mut AbstractRing {
match self {
AbstractRingKind::LinearRing(x) => x.abstract_ring_mut(),
AbstractRingKind::AbstractRingKind(x) => x.abstract_ring_mut(),
}
}
}
impl_abstract_ring_traits!(AbstractRingKind);
impl_abstract_ring_mut_traits!(AbstractRingKind);
impl HasGeometryType for AbstractRingKind {
fn geometry_type(&self) -> GeometryType {
match self {
AbstractRingKind::LinearRing(x) => x.geometry_type(),
AbstractRingKind::AbstractRingKind(x) => x.geometry_type(),
}
}
}
#[macro_export]
macro_rules! impl_from_for_abstract_ring_kind {
($variant:ident, $type:ty) => {
impl From<$type> for $crate::model::geometry::primitives::AbstractRingKind {
#[allow(unreachable_code)]
fn from(x: $type) -> Self {
$crate::model::geometry::primitives::AbstractRingKind::$variant(x.into())
}
}
$crate::impl_from_for_abstract_curve_kind!(AbstractRingKind, $type);
};
($variant:ident) => {
$crate::impl_from_for_abstract_ring_kind!($variant, $variant);
};
}
#[macro_export]
macro_rules! impl_try_from_for_abstract_ring_kind {
($variant:ident, $type:ty) => {
impl TryFrom<$crate::model::geometry::primitives::AbstractRingKind> for $type {
type Error = ();
#[allow(unreachable_code)]
fn try_from(
x: $crate::model::geometry::primitives::AbstractRingKind,
) -> Result<Self, ()> {
match x {
$crate::model::geometry::primitives::AbstractRingKind::$variant(k) => {
k.try_into().map_err(|_| ())
}
#[allow(unreachable_patterns)]
_ => Err(()),
}
}
}
$crate::impl_try_from_for_abstract_curve_kind!(AbstractRingKind, $type);
};
($variant:ident) => {
$crate::impl_try_from_for_abstract_ring_kind!($variant, $variant);
};
}
impl_from_for_abstract_ring_kind!(LinearRing);
impl_try_from_for_abstract_ring_kind!(LinearRing);
impl AbstractRingKind {
pub fn points(&self) -> &[DirectPosition] {
match self {
AbstractRingKind::LinearRing(x) => x.points(),
AbstractRingKind::AbstractRingKind(x) => x.points(),
}
}
pub fn length_3d(&self) -> f64 {
match self {
AbstractRingKind::LinearRing(x) => x.length_3d(),
AbstractRingKind::AbstractRingKind(x) => x.length_3d(),
}
}
pub fn area_3d(&self) -> f64 {
match self {
AbstractRingKind::LinearRing(x) => x.area_3d(),
AbstractRingKind::AbstractRingKind(x) => x.area_3d(),
}
}
}
impl IterGeometries for AbstractRingKind {
fn iter_geometries(&self) -> Box<dyn Iterator<Item = AbstractGeometryKindRef<'_>> + '_> {
match self {
AbstractRingKind::LinearRing(x) => x.iter_geometries(),
AbstractRingKind::AbstractRingKind(x) => x.iter_geometries(),
}
}
}
impl ApplyTransform for AbstractRingKind {
fn apply_transform(&mut self, transform: Transform3<f64>) {
match self {
AbstractRingKind::LinearRing(x) => x.apply_transform(transform),
AbstractRingKind::AbstractRingKind(x) => x.apply_transform(transform),
}
}
fn apply_isometry(&mut self, isometry: Isometry3<f64>) {
match self {
AbstractRingKind::LinearRing(x) => x.apply_isometry(isometry),
AbstractRingKind::AbstractRingKind(x) => x.apply_isometry(isometry),
}
}
fn apply_translation(&mut self, vector: Vector3<f64>) {
match self {
AbstractRingKind::LinearRing(x) => x.apply_translation(vector),
AbstractRingKind::AbstractRingKind(x) => x.apply_translation(vector),
}
}
fn apply_rotation(&mut self, rotation: Rotation3<f64>) {
match self {
AbstractRingKind::LinearRing(x) => x.apply_rotation(rotation),
AbstractRingKind::AbstractRingKind(x) => x.apply_rotation(rotation),
}
}
fn apply_scale(&mut self, scale: Scale3<f64>) {
match self {
AbstractRingKind::LinearRing(x) => x.apply_scale(scale),
AbstractRingKind::AbstractRingKind(x) => x.apply_scale(scale),
}
}
}
impl ComputeEnvelope for AbstractRingKind {
fn compute_envelope(&self) -> Option<Envelope> {
match self {
AbstractRingKind::LinearRing(x) => x.compute_envelope(),
AbstractRingKind::AbstractRingKind(x) => x.compute_envelope(),
}
}
}