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Use deduplication in hyperspace roll
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6d56e72d66
commit
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152
agb-image-converter/src/deduplicator.rs
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152
agb-image-converter/src/deduplicator.rs
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@ -0,0 +1,152 @@
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use std::{collections::HashMap, hash::BuildHasher};
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use crate::{colour::Colour, image_loader::Image};
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pub struct Transformation {
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pub vflip: bool,
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pub hflip: bool,
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}
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impl Transformation {
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pub fn none() -> Self {
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Self {
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vflip: false,
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hflip: false,
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}
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}
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pub fn vflipped() -> Self {
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Self {
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vflip: true,
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hflip: false,
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}
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}
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pub fn hflipped() -> Self {
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Self {
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vflip: false,
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hflip: true,
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}
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}
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pub fn vhflipped() -> Self {
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Self {
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vflip: true,
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hflip: true,
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}
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}
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}
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pub struct DeduplicatedData {
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pub new_index: usize,
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pub transformation: Transformation,
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}
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#[derive(Clone, PartialEq, Eq, Hash)]
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struct Tile {
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data: [Colour; 64],
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}
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impl Tile {
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fn split_image(input: &Image) -> Vec<Self> {
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let mut ret = vec![];
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for y in 0..(input.height / 8) {
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for x in 0..(input.width / 8) {
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let mut tile_data = Vec::with_capacity(64);
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for j in 0..8 {
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for i in 0..8 {
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tile_data.push(input.colour(x * 8 + i, y * 8 + j));
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}
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}
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ret.push(Tile {
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data: tile_data.try_into().unwrap(),
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});
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}
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}
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ret
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}
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fn vflipped(&self) -> Self {
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let mut new_data = self.data;
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for y in 0..8 {
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for x in 0..8 {
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new_data.swap(y * 8 + x, (7 - y) * 8 + x);
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}
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}
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Self { data: new_data }
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}
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fn hflipped(&self) -> Self {
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let mut new_data = self.data;
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for y in 0..8 {
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for x in 0..8 {
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new_data.swap(y * 8 + x, y * 8 + (7 - x));
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}
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}
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Self { data: new_data }
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}
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}
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pub(crate) fn deduplicate_image(input: &Image, can_flip: bool) -> (Image, Vec<DeduplicatedData>) {
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let mut resulting_tiles = vec![];
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let mut deduplication_data = vec![];
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let all_tiles = Tile::split_image(input);
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let mut existing_tiles = HashMap::new();
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let hasher = std::collections::hash_map::RandomState::new();
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for tile in all_tiles {
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let (tile, transformation) = if can_flip {
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let vflipped = tile.vflipped();
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let hflipped = tile.hflipped();
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let vhflipped = vflipped.hflipped();
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// find the one with the smallest hash
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let tile_hash = hasher.hash_one(&tile);
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let vflipped_hash = hasher.hash_one(&vflipped);
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let hflipped_hash = hasher.hash_one(&hflipped);
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let vhflipped_hash = hasher.hash_one(&vhflipped);
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let minimum = tile_hash
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.min(vflipped_hash)
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.min(hflipped_hash)
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.min(vhflipped_hash);
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if minimum == tile_hash {
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(tile, Transformation::none())
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} else if minimum == vflipped_hash {
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(vflipped, Transformation::vflipped())
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} else if minimum == hflipped_hash {
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(hflipped, Transformation::hflipped())
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} else {
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(vhflipped, Transformation::vhflipped())
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}
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} else {
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(tile, Transformation::none())
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};
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let index = *existing_tiles.entry(tile.clone()).or_insert_with(|| {
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resulting_tiles.push(tile);
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resulting_tiles.len() - 1
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});
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deduplication_data.push(DeduplicatedData {
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new_index: index,
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transformation,
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});
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}
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let image_data = resulting_tiles
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.iter()
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.flat_map(|tile| tile.data)
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.collect::<Vec<_>>();
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(Image::from_colour_data(image_data), deduplication_data)
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}
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@ -6,11 +6,11 @@ use agb::{
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use crate::sfx::Sfx;
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include_background_gfx!(backgrounds, "121105",
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stars => "gfx/stars.aseprite",
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title => "gfx/title-screen.aseprite",
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help => "gfx/help-text.aseprite",
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descriptions1 => "gfx/descriptions1.png",
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descriptions2 => "gfx/descriptions2.png",
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stars => deduplicate "gfx/stars.aseprite",
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title => deduplicate "gfx/title-screen.aseprite",
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help => deduplicate "gfx/help-text.aseprite",
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descriptions1 => deduplicate "gfx/descriptions1.png",
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descriptions2 => deduplicate "gfx/descriptions2.png",
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);
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pub fn load_palettes(vram: &mut VRamManager) {
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@ -35,12 +35,7 @@ pub(crate) fn load_help_text(
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vram,
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(x + at_tile.0, at_tile.1).into(),
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&help_tileset,
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TileSetting::new(
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tile_id,
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false,
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false,
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backgrounds::help.palette_assignments[tile_id as usize],
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),
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backgrounds::help.tile_settings[tile_id as usize],
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)
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}
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}
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@ -50,13 +45,13 @@ pub(crate) fn load_description(
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descriptions_map: &mut RegularMap,
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vram: &mut VRamManager,
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) {
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let (tileset, palette_assignments) = if face_id < 10 {
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let (tileset, tile_settings) = if face_id < 10 {
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(
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TileSet::new(
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backgrounds::descriptions1.tiles,
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agb::display::tiled::TileFormat::FourBpp,
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),
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backgrounds::descriptions1.palette_assignments,
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backgrounds::descriptions1.tile_settings,
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)
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} else {
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(
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backgrounds::descriptions2.tiles,
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agb::display::tiled::TileFormat::FourBpp,
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),
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backgrounds::descriptions2.palette_assignments,
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backgrounds::descriptions2.tile_settings,
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)
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};
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vram,
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(x, y).into(),
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&tileset,
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TileSetting::new(tile_id, false, false, palette_assignments[tile_id as usize]),
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tile_settings[tile_id as usize],
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)
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}
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}
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@ -87,16 +82,12 @@ fn create_background_map(map: &mut RegularMap, vram: &mut VRamManager, stars_til
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for y in 0..32u16 {
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let blank = rng::gen().rem_euclid(32) < 30;
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let (tile_id, palette_id) = if blank {
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((1 << 10) - 1, 0)
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let tile_setting = if blank {
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TileSetting::new((1 << 10) - 1, false, false, 0)
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} else {
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let tile_id = rng::gen().rem_euclid(64) as u16;
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(
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tile_id,
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backgrounds::stars.palette_assignments[tile_id as usize],
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)
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backgrounds::stars.tile_settings[tile_id as usize]
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};
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let tile_setting = TileSetting::new(tile_id, false, false, palette_id);
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map.set_tile(vram, (x, y).into(), stars_tileset, tile_setting);
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}
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vram,
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(x, y).into(),
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&tile_set,
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TileSetting::new(
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tile_id,
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false,
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false,
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backgrounds::title.palette_assignments[tile_id as usize],
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),
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backgrounds::title.tile_settings[tile_id as usize],
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);
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}
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