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use crate::{
    config::CHUNK_SIZE,
    sim::{cell::materials::MaterialId, cell_sim::world::World, rb_sim::RbSimManager},
};

pub mod cell;
pub mod cell_sim;
pub mod lib;
pub mod rb_sim;

pub fn write_rb_entity_to_world(
    world: &mut World,
    rb_sim_manager: &RbSimManager,
    rb_entity_id: u32,
    // make sure these cells will be simulated
    seqno: u64,
    // (entity_x, entity_y, cell_x, cell_y)
) -> Vec<(u8, u8, i32, i32)> {
    let mut cells_written: Vec<(u8, u8, i32, i32)> = Vec::new();
    if let Some(rb_entity) = rb_sim_manager.rb_entities.get(&rb_entity_id)
        && let Some((rb_x, rb_y, cos, sin)) = rb_sim_manager.get_rb_entity_transform(rb_entity_id)
    {
        let half_size = CHUNK_SIZE as f32 / 2.0;
        // half-extent of the rotated grid's axis-aligned bounding box, plus a cell of margin
        let radius = half_size * (cos.abs() + sin.abs()) + 1.0;

        let world_xl = (rb_x - radius).floor() as i32;
        let world_xu = (rb_x + radius).ceil() as i32;
        let world_yl = (rb_y - radius).floor() as i32;
        let world_yu = (rb_y + radius).ceil() as i32;

        for world_x in world_xl..=world_xu {
            for world_y in world_yl..=world_yu {
                // same as shader
                let d = (world_x as f32 + 0.5 - rb_x, world_y as f32 + 0.5 - rb_y);
                let q = (d.0.floor() + 0.5, d.1.floor() + 0.5);
                let (lx, ly) = (
                    (q.0 * cos + q.1 * sin + half_size).floor() as i32,
                    (-q.0 * sin + q.1 * cos + half_size).floor() as i32,
                );

                if lx < 0 || ly < 0 || lx >= CHUNK_SIZE || ly >= CHUNK_SIZE {
                    continue;
                }

                let mut cell = rb_entity.get_cell_at_local_position(lx as u8, ly as u8);
                if cell.material == MaterialId::Void {
                    continue;
                }

                cell.match_parity(seqno);

                // TODO: OPTIMIZE!!
                world.set_cell_from_game_position(world_x, world_y, cell, false);
                cells_written.push((lx as u8, ly as u8, world_x, world_y));
            }
        }
    }
    cells_written
}