2024-07-06 17:19:44 +02:00
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use comfy::{IVec2, TextureHandle, UVec2};
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2024-07-06 14:49:23 +02:00
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use std::collections::HashMap;
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2024-07-06 13:57:47 +02:00
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2024-07-06 17:19:44 +02:00
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pub enum MovementCost {
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2024-07-06 14:49:23 +02:00
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/// No movement possible - cost infinitely high.
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Infinite,
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/// There is a path for this movement - movement is cheap.
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Path,
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/// There is no path and no obstacle.
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Default,
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/// There is an obstacle (i.e. fence) - movement is expensive.
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Obstacle
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}
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#[derive(Debug)]
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2024-07-06 17:19:44 +02:00
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pub struct Tile {
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pub textures: Vec<TextureHandle>
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}
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2024-07-06 14:49:23 +02:00
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impl Tile {
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pub fn can_stand_inside(&self) -> bool {
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unimplemented!()
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}
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pub fn movement_cost_left(&self) -> MovementCost {
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unimplemented!()
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}
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pub fn movement_cost_right(&self) -> MovementCost {
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unimplemented!()
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}
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pub fn movement_cost_up(&self) -> MovementCost {
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unimplemented!()
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}
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pub fn movement_cost_down(&self) -> MovementCost {
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unimplemented!()
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}
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pub fn can_enter_house(&self) -> bool {
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unimplemented!()
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}
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}
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/// The size of a chunk (both width and height). This value squared gives the amount of
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/// tiles in the chunk.
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const CHUNK_SIZE: u32 = 100;
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/// Chunks
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#[derive(Debug)]
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pub struct Chunk {
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/// All tiles within this chunk.
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tiles: [Tile; (CHUNK_SIZE * CHUNK_SIZE) as usize],
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/// All paths that leave this chunk on the left hand side.
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paths_left: Vec<u32>,
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/// All paths that leave this chunk on the right hand side.
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paths_right: Vec<u32>,
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/// All paths that leave this chunk on the bottom side.
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paths_bottom: Vec<u32>,
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/// All paths that leave this chunk on the top side.
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paths_top: Vec<u32>
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}
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impl Chunk {
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pub fn get_tile(&self, local_chunk_coords: UVec2) -> Option<&Tile> {
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self.tiles
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.get((local_chunk_coords.y * CHUNK_SIZE + local_chunk_coords.x) as usize)
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}
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2024-07-06 16:16:38 +02:00
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/// iterate over all tiles and its local chunk coords
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pub fn iter_tiles(&self) -> impl Iterator<Item = (UVec2, &Tile)> {
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self.tiles.iter().enumerate().map(|(i, tile)| {
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let i = i as u32;
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(UVec2::new(i % CHUNK_SIZE, i / CHUNK_SIZE), tile)
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})
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}
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2024-07-06 14:49:23 +02:00
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}
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#[derive(Debug, Default)]
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pub struct Overworld {
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chunks: HashMap<IVec2, Chunk>
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}
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impl Overworld {
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/// Return a [`Tile`] at the given world coordinates, or `None` if that tile has not
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/// been generated yet.
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pub fn get_tile(&self, world_coords: IVec2) -> Option<&Tile> {
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let tile_coords = IVec2 {
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x: world_coords.x.div_euclid(CHUNK_SIZE as _),
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y: world_coords.y.div_euclid(CHUNK_SIZE as _)
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};
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let local_coords = UVec2 {
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x: world_coords.x.rem_euclid(CHUNK_SIZE as _) as _,
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y: world_coords.y.rem_euclid(CHUNK_SIZE as _) as _
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};
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let chunk = self.chunks.get(&tile_coords)?;
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chunk.get_tile(local_coords)
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}
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2024-07-06 13:57:47 +02:00
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2024-07-06 14:49:23 +02:00
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fn get_or_generate_tile(&self, world_coords: IVec2) -> &Tile {
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unimplemented!()
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2024-07-06 13:57:47 +02:00
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}
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2024-07-06 16:16:38 +02:00
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/// iterate over all tiles and its global coords
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pub fn iter_tiles(&self) -> impl Iterator<Item = (IVec2, &Tile)> {
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self.chunks.iter().flat_map(|(chunk_coords, chunk)| {
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chunk.iter_tiles().map(|(local_coords, tile)| {
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// never fail because chunksize fits alswas into i32
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let local_coords: IVec2 = local_coords.try_into().unwrap();
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(local_coords + (*chunk_coords * CHUNK_SIZE as i32), tile)
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})
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})
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}
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2024-07-06 13:57:47 +02:00
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}
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