192 lines
5.1 KiB
Rust
192 lines
5.1 KiB
Rust
// {{{ Imports
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use std::fs;
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use anyhow::Context;
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use image::{imageops::FilterType, GenericImageView, Rgba};
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use num::Integer;
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use serde::{Deserialize, Serialize};
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use serde_with::serde_as;
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use crate::arcaea::chart::{Difficulty, Jacket, SongCache};
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use crate::assets::{get_asset_dir, should_skip_jacket_art};
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use crate::context::Error;
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// }}}
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/// How many sub-segments to split each side into
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pub const SPLIT_FACTOR: u32 = 8;
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pub const IMAGE_VEC_DIM: usize = (SPLIT_FACTOR * SPLIT_FACTOR * 3) as usize;
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pub const BITMAP_IMAGE_SIZE: u32 = 174;
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#[serde_as]
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#[derive(Debug, Clone, Serialize, Deserialize)]
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pub struct ImageVec {
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#[serde_as(as = "[_; IMAGE_VEC_DIM]")]
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pub colors: [f32; IMAGE_VEC_DIM],
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}
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impl ImageVec {
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// {{{ (Image => vector) encoding
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#[allow(clippy::identity_op)]
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pub fn from_image(image: &impl GenericImageView<Pixel = Rgba<u8>>) -> Self {
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let mut colors = [0.0; IMAGE_VEC_DIM];
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let chunk_width = image.width() / SPLIT_FACTOR;
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let chunk_height = image.height() / SPLIT_FACTOR;
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for i in 0..(SPLIT_FACTOR * SPLIT_FACTOR) {
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let (iy, ix) = i.div_rem(&SPLIT_FACTOR);
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let cropped = image.view(
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chunk_width * ix,
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chunk_height * iy,
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chunk_width,
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chunk_height,
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);
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let mut r = 0;
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let mut g = 0;
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let mut b = 0;
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let mut count = 0;
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for (_, _, pixel) in cropped.pixels() {
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r += (pixel.0[0] as u64).pow(2);
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g += (pixel.0[1] as u64).pow(2);
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b += (pixel.0[2] as u64).pow(2);
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count += 1;
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}
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let count = count as f64;
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let r = (r as f64 / count).sqrt();
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let g = (g as f64 / count).sqrt();
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let b = (b as f64 / count).sqrt();
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colors[i as usize * 3 + 0] = r as f32;
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colors[i as usize * 3 + 1] = g as f32;
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colors[i as usize * 3 + 2] = b as f32;
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}
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Self { colors }
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}
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#[inline]
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pub fn distance_squared_to(&self, other: &Self) -> f32 {
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let mut total = 0.0;
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for i in 0..IMAGE_VEC_DIM {
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let d = self.colors[i] - other.colors[i];
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total += d * d;
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}
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total
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}
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// }}}
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}
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#[derive(Clone)]
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pub struct JacketCache {
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jackets: Vec<(u32, ImageVec)>,
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}
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impl JacketCache {
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// {{{ Generate
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// This is a bit inefficient (using a hash set), but only runs once
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pub fn new(song_cache: &mut SongCache) -> Result<Self, Error> {
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let jacket_vectors = if should_skip_jacket_art() {
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let path = get_asset_dir().join("placeholder_jacket.jpg");
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let contents: &'static _ = fs::read(path)?.leak();
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let image = image::load_from_memory(contents)?;
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let bitmap: &'static _ = Box::leak(Box::new(
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image
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.resize(BITMAP_IMAGE_SIZE, BITMAP_IMAGE_SIZE, FilterType::Nearest)
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.into_rgb8(),
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));
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for chart in song_cache.charts_mut() {
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chart.cached_jacket = Some(Jacket {
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raw: contents,
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bitmap,
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});
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}
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Vec::new()
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} else {
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let songs_dir = get_asset_dir().join("songs/by_id");
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let entries =
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fs::read_dir(songs_dir).with_context(|| "Couldn't read songs directory")?;
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let bytes = fs::read(get_asset_dir().join("songs/recognition_matrix"))
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.with_context(|| "Could not read jacket recognition matrix")?;
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let jacket_vectors = postcard::from_bytes(&bytes)
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.with_context(|| "Could not decode jacket recognition matrix")?;
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for entry in entries {
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let dir = entry?;
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let raw_dir_name = dir.file_name();
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let dir_name = raw_dir_name.to_str().unwrap();
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let song_id = dir_name.parse().with_context(|| {
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format!("Dir name {dir_name} could not be parsed as `u32` song id")
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})?;
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let entries =
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fs::read_dir(dir.path()).with_context(|| "Couldn't read song directory")?;
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for entry in entries {
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let file = entry?;
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let raw_name = file.file_name();
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let name = raw_name.to_str().unwrap().strip_suffix(".jpg").unwrap();
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let difficulty = Difficulty::DIFFICULTY_SHORTHANDS
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.iter()
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.zip(Difficulty::DIFFICULTIES)
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.find_map(|(s, d)| Some(d).filter(|_| name == s.to_lowercase()));
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let contents: &'static _ = fs::read(file.path())
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.with_context(|| "Coult not read prepared jacket image")?
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.leak();
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let image = image::load_from_memory(contents)
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.with_context(|| "Could not load jacket image from prepared bytes")?;
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let bitmap: &'static _ = Box::leak(Box::new(image.into_rgb8()));
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if let Some(difficulty) = difficulty {
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let chart = song_cache
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.lookup_by_difficulty_mut(song_id, difficulty)
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.unwrap();
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chart.cached_jacket = Some(Jacket {
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raw: contents,
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bitmap,
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});
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} else {
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for chart_id in song_cache.lookup_song(song_id)?.charts() {
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let chart = song_cache.lookup_chart_mut(chart_id)?;
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if chart.cached_jacket.is_none() {
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chart.cached_jacket = Some(Jacket {
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raw: contents,
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bitmap,
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});
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}
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}
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}
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}
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}
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jacket_vectors
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};
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let result = Self {
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jackets: jacket_vectors,
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};
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Ok(result)
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}
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// }}}
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// {{{ Recognise
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#[inline]
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pub fn recognise(
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&self,
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image: &impl GenericImageView<Pixel = Rgba<u8>>,
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) -> Option<(f32, &u32)> {
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let vec = ImageVec::from_image(image);
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self.jackets
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.iter()
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.map(|(i, v)| (i, v, v.distance_squared_to(&vec)))
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.min_by(|(_, _, d1), (_, _, d2)| d1.partial_cmp(d2).expect("NaN distance encountered"))
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.map(|(i, _, d)| (d.sqrt(), i))
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}
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// }}}
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}
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