add get_part_box
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0673ba6981
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@ -121,6 +121,7 @@ if TYPE_CHECKING:
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@property
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def img_pos(self) -> Tuple[int, int, int, int]: ...
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""" -x -y +x +y 左下右上 """
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def get_part_box(self, part_id: int) -> Optional[Tuple[Tuple[int, int], Tuple[int, int]]]: ...
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class Console_rs:
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def __init__(self) -> None: ...
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@ -42,7 +42,6 @@ fn test_call(py_obj: &PyAny) -> PyResult<bool> {
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fn module_init(_py: Python<'_>, m: &PyModule) -> PyResult<()> {
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m.add_function(wrap_pyfunction!(get_version_str, m)?)?;
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m.add_function(wrap_pyfunction!(test_call, m)?)?;
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m.add_function(wrap_pyfunction!(simulator::simulation, m)?)?;
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m.add_function(wrap_pyfunction!(sr1_data::part_list::read_part_list_py, m)?)?;
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m.add_function(wrap_pyfunction!(sr1_data::ship::py_raw_ship_from_file, m)?)?;
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m.add_class::<render::camera::CameraRs>()?;
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@ -12,6 +12,7 @@
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/// 插件加载
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///
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#[allow(unused)]
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pub mod plugin_trait {
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pub struct ModInfo {
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pub name: String,
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@ -12,6 +12,7 @@ pub mod data {
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use pyo3::prelude::*;
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use crate::sr1_data::part_list::RawPartList;
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use crate::types::math::{Point2D, Rotatable};
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use crate::types::sr1::{get_max_box, SR1PartData, SR1PartListTrait};
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use crate::types::sr1::{SR1PartList, SR1PartType, SR1Ship};
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@ -142,6 +143,25 @@ pub mod data {
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}
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parts
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}
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fn get_part_box(&self, part_id: i64) -> Option<((f64, f64), (f64, f64))> {
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let part_data = self.ship.parts.iter().find(|&x| x.id == part_id);
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if let Some(part_data) = part_data {
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let part_type = self.part_list.get_part_type(part_data.part_type_id.clone()).unwrap();
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// rotate
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let radius = part_data.angle;
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let ((x1, y1), (x2, y2)) = part_type.get_box();
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let mut p1 = Point2D::new(x1, y1);
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let mut p2 = Point2D::new(x2, y2);
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p1.rotate_radius_mut(radius);
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p2.rotate_radius_mut(radius);
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// transform
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p1.add_mut(part_data.x * 2.0, part_data.y * 2.0);
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p2.add_mut(part_data.x * 2.0, part_data.y * 2.0);
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return Some(((p1.x, p1.y), (p2.x, p2.y)));
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}
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None
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}
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}
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}
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@ -206,30 +226,6 @@ pub mod translate {
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}
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}
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pub mod physics {
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use pyo3::prelude::*;
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use crate::simulator::interface::PhysicsSpace;
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#[pyclass]
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#[pyo3(name = "PhysicsSpace_rs")]
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pub struct PyPhysicsSpace {
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pub space: PhysicsSpace,
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}
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#[pymethods]
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impl PyPhysicsSpace {
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#[new]
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fn new(gravity: (f64, f64)) -> Self {
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Self {
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space: PhysicsSpace::new(gravity),
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}
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}
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fn tick_space(&mut self) { self.space.tick_space() }
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}
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}
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pub mod console {
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use pyo3::prelude::*;
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@ -9,6 +9,7 @@
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use pyo3::prelude::*;
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use rapier2d_f64::prelude::*;
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#[allow(unused)]
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#[pyfunction]
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#[pyo3(name = "simulation")]
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pub fn simulation() -> () {
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@ -63,75 +64,8 @@ pub fn simulation() -> () {
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}
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}
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pub mod interface {
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#[allow(unused)]
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pub mod python {
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use pyo3::prelude::*;
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use rapier2d_f64::prelude::*;
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pub struct PhysicsSpace {
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pub rigid_body_set: RigidBodySet,
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pub collider_set: ColliderSet,
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pub gravity: Vector<f64>,
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pub integration_parameters: IntegrationParameters,
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pub physics_pipeline: PhysicsPipeline,
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pub island_manager: IslandManager,
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pub broad_phase: BroadPhase,
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pub narrow_phase: NarrowPhase,
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pub impulse_joint_set: ImpulseJointSet,
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pub multibody_joint_set: MultibodyJointSet,
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pub ccd_solver: CCDSolver,
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pub physics_hooks: (),
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pub event_handler: (),
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}
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impl PhysicsSpace {
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pub fn new(gravity: (f64, f64)) -> Self {
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let rigid_body_set = RigidBodySet::new();
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let collider_set = ColliderSet::new();
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let gravity = vector![gravity.0, gravity.1];
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let integration_parameters = IntegrationParameters::default();
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let physics_pipeline = PhysicsPipeline::new();
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let island_manager = IslandManager::new();
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let broad_phase = BroadPhase::new();
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let narrow_phase = NarrowPhase::new();
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let impulse_joint_set = ImpulseJointSet::new();
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let multibody_joint_set = MultibodyJointSet::new();
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let ccd_solver = CCDSolver::new();
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let physics_hooks = ();
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let event_handler = ();
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Self {
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rigid_body_set,
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collider_set,
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gravity,
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integration_parameters,
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physics_pipeline,
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island_manager,
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broad_phase,
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narrow_phase,
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impulse_joint_set,
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multibody_joint_set,
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ccd_solver,
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physics_hooks,
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event_handler,
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}
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}
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pub fn tick_space(&mut self) {
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self.physics_pipeline.step(
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&self.gravity,
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&self.integration_parameters,
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&mut self.island_manager,
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&mut self.broad_phase,
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&mut self.narrow_phase,
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&mut self.rigid_body_set,
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&mut self.collider_set,
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&mut self.impulse_joint_set,
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&mut self.multibody_joint_set,
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&mut self.ccd_solver,
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None,
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&self.physics_hooks,
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&self.event_handler,
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);
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}
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}
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}
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@ -197,9 +197,13 @@ pub mod sr1 {
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}
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impl SR1PartType {
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pub fn get_box(&self) -> (f64, f64, f64, f64) {
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let x = self.width as f64 / 2.0;
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(-x, 0.0, x, self.height as f64)
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pub fn get_box(&self) -> ((f64, f64), (f64, f64)) {
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// -x, -y, x, y
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// 居中
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(
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(-(self.width as f64 / 2.0), -(self.height as f64 / 2.0)),
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(self.width as f64 / 2.0, self.height as f64 / 2.0),
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)
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}
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}
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@ -777,14 +781,14 @@ pub mod sr1 {
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let mut max_box = (0_f64, 0_f64, 0_f64, 0_f64);
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for part in parts.iter() {
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let part_type = part_list.get_part_type(part.part_type_id.clone()).unwrap();
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let (x1, y1, x2, y2) = part_type.get_box();
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let ((x1, y1), (x2, y2)) = part_type.get_box();
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// rotate
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let mut p1 = Point2D::new(x1, y1);
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let mut p2 = Point2D::new(x2, y2);
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p1.rotate_radius_mut(part.angle);
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p2.rotate_radius_mut(part.angle);
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let p1 = p1.add(part.x, part.y);
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let p2 = p2.add(part.x, part.y);
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let p1 = p1.add(part.x * 2.0, part.y * 2.0);
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let p2 = p2.add(part.x * 2.0, part.y * 2.0);
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let (x1, y1, x2, y2) = (p1.x, p1.y, p2.x, p2.y);
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// get max box
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max_box.0 = max_box.0.min(x1).min(part.x);
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@ -835,6 +839,12 @@ pub mod math {
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#[inline]
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pub fn add(&self, x: f64, y: f64) -> Self { Point2D::new(self.x + x, self.y + y) }
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#[inline]
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pub fn add_mut(&mut self, x: f64, y: f64) -> () {
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self.x += x;
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self.y += y;
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}
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}
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impl Rotatable for Point2D {
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