1use std::path::{Path, PathBuf};
22use std::sync::LazyLock;
23
24use axum::body::Bytes;
25
26use koan_core::db::queries::TrackRow;
27
28pub(crate) const SIZES: [u32; 4] = [200, 400, 800, 1200];
31pub(crate) const GRID: u32 = 400;
33pub(crate) const LARGE: u32 = 800;
35
36const TRACKS_TRIED: usize = 3;
38const JPEG_QUALITY: u8 = 85;
39
40pub(crate) fn snap(size: Option<u32>) -> u32 {
41 let size = size.unwrap_or(LARGE);
42 SIZES
43 .into_iter()
44 .find(|s| *s >= size)
45 .unwrap_or(SIZES[SIZES.len() - 1])
46}
47
48static DECODE: LazyLock<rayon::ThreadPool> = LazyLock::new(|| {
50 let threads = std::thread::available_parallelism().map_or(2, |n| n.get().clamp(1, 4));
51 rayon::ThreadPoolBuilder::new()
52 .num_threads(threads)
53 .thread_name(|i| format!("koan-covers-{i}"))
54 .build()
55 .expect("cover threads")
56});
57
58pub struct Covers {
59 dir: PathBuf,
60}
61
62impl Covers {
63 pub fn new(dir: PathBuf) -> Self {
64 Self { dir }
65 }
66
67 pub fn in_config_dir() -> Self {
69 Self::new(koan_core::config::config_dir().join("covers"))
70 }
71
72 pub(crate) fn cover(&self, tracks: &[TrackRow], size: u32) -> Option<Bytes> {
77 let sources: Vec<(Source, String)> = tracks
78 .iter()
79 .filter_map(|t| crate::subsonic::track_file_path(t).map(PathBuf::from))
80 .take(TRACKS_TRIED)
81 .map(|p| {
82 let source = match koan_core::index::folder_art::folder_cover(&p) {
83 Some(image) => Source::Image(image),
84 None => Source::Embedded(p),
85 };
86 let key = key(source.path(), size);
87 (source, key)
88 })
89 .collect();
90 let (_, first_key) = sources.first()?;
94 if let Some(hit) = self.read_disk(first_key) {
95 return hit;
96 }
97 let art = DECODE.install(|| {
98 sources.iter().find_map(|(source, _)| {
99 let bytes = match source {
100 Source::Image(p) => std::fs::read(p).ok(),
101 Source::Embedded(p) => koan_core::index::metadata::extract_cover_art(p),
102 };
103 bytes.and_then(|bytes| encode(&bytes, size))
104 })
105 });
106 self.write_disk(first_key, art.as_deref());
107 art.map(Bytes::from)
108 }
109
110 fn read_disk(&self, key: &str) -> Option<Option<Bytes>> {
112 let bytes = std::fs::read(self.dir.join(key)).ok()?;
113 Some((!bytes.is_empty()).then(|| Bytes::from(bytes)))
114 }
115
116 fn write_disk(&self, key: &str, art: Option<&[u8]>) {
121 static WRITES: std::sync::atomic::AtomicU64 = std::sync::atomic::AtomicU64::new(0);
122 let _ = std::fs::create_dir_all(&self.dir);
123 let n = WRITES.fetch_add(1, std::sync::atomic::Ordering::Relaxed);
124 let tmp = self
125 .dir
126 .join(format!("{key}.{}-{n}.tmp", std::process::id()));
127 if std::fs::write(&tmp, art.unwrap_or_default()).is_ok()
128 && std::fs::rename(&tmp, self.dir.join(key)).is_err()
129 {
130 let _ = std::fs::remove_file(&tmp);
131 }
132 }
133}
134
135enum Source {
137 Image(PathBuf),
139 Embedded(PathBuf),
141}
142
143impl Source {
144 fn path(&self) -> &Path {
145 match self {
146 Self::Image(p) | Self::Embedded(p) => p,
147 }
148 }
149}
150
151fn key(path: &Path, size: u32) -> String {
154 let meta = std::fs::metadata(path).ok();
155 let mtime = meta
156 .as_ref()
157 .and_then(|m| m.modified().ok())
158 .and_then(|t| t.duration_since(std::time::UNIX_EPOCH).ok())
159 .map_or(0, |d| d.as_secs());
160 let len = meta.map_or(0, |m| m.len());
161 let digest = md5::compute(format!("{}\0{len}\0{mtime}", path.display()));
162 format!("{digest:x}-{size}.jpg")
163}
164
165fn encode(bytes: &[u8], size: u32) -> Option<Vec<u8>> {
168 use image::GenericImageView as _;
169 let img = image::load_from_memory(bytes).ok()?;
170 let (w, h) = img.dimensions();
171 if w.max(h) <= size && bytes.starts_with(&[0xFF, 0xD8]) {
172 return Some(bytes.to_vec());
173 }
174 let img = if w.max(h) > size {
175 img.thumbnail(size, size)
176 } else {
177 img
178 };
179 let mut out = Vec::new();
180 image::codecs::jpeg::JpegEncoder::new_with_quality(&mut out, JPEG_QUALITY)
181 .encode_image(&img.to_rgb8())
182 .ok()?;
183 Some(out)
184}
185
186#[cfg(test)]
187mod tests {
188 use super::*;
189
190 #[test]
191 fn requests_snap_up_to_a_served_size() {
192 assert_eq!(snap(Some(1)), 200);
193 assert_eq!(snap(Some(400)), 400);
194 assert_eq!(snap(Some(401)), 800);
195 assert_eq!(snap(Some(99_999)), 1200);
196 assert_eq!(snap(None), LARGE);
197 }
198
199 #[test]
200 fn writers_racing_on_one_cover_leave_it_whole() {
201 let dir = tempfile::tempdir().unwrap();
202 let covers = Covers::new(dir.path().to_path_buf());
203 let arts: Vec<Vec<u8>> = (0..8u8).map(|i| vec![i; 256 * 1024]).collect();
204 for _ in 0..20 {
205 std::thread::scope(|s| {
206 for art in &arts {
207 s.spawn(|| covers.write_disk("k-400.jpg", Some(art)));
208 }
209 });
210 let got = std::fs::read(dir.path().join("k-400.jpg")).unwrap();
211 assert!(arts.contains(&got), "a torn write of {} bytes", got.len());
212 }
213 let left: Vec<_> = std::fs::read_dir(dir.path()).unwrap().collect();
214 assert_eq!(left.len(), 1, "no temporary files left behind");
215 }
216
217 #[test]
218 fn covers_are_bounded_jpegs() {
219 use image::GenericImageView as _;
220 let png = {
221 let mut out = std::io::Cursor::new(Vec::new());
222 image::DynamicImage::new_rgba8(2400, 1200)
223 .write_to(&mut out, image::ImageFormat::Png)
224 .unwrap();
225 out.into_inner()
226 };
227 let out = encode(&png, 400).unwrap();
228 assert!(out.starts_with(&[0xFF, 0xD8]));
229 assert_eq!(
230 image::load_from_memory(&out).unwrap().dimensions(),
231 (400, 200)
232 );
233
234 let small = encode(&png, 400).unwrap();
235 assert_eq!(
236 encode(&small, 800).unwrap(),
237 small,
238 "a small JPEG passes through"
239 );
240 }
241}