Add an analyze_paths_streaming
function
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parent
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# Changelog
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## bliss 0.3.3
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* Add a streaming analysis function, to help libraries displaying progress.
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## bliss 0.3.2
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* Fixed a rare ffmpeg multithreading bug.
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2
Cargo.lock
generated
2
Cargo.lock
generated
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@ -75,7 +75,7 @@ checksum = "cf1de2fe8c75bc145a2f577add951f8134889b4795d47466a54a5c846d691693"
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[[package]]
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name = "bliss-audio"
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version = "0.3.2"
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version = "0.3.3"
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dependencies = [
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"bliss-audio-aubio-rs",
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"crossbeam",
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@ -1,6 +1,6 @@
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[package]
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name = "bliss-audio"
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version = "0.3.2"
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version = "0.3.3"
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authors = ["Polochon-street <polochonstreet@gmx.fr>"]
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edition = "2018"
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license = "GPL-3.0-only"
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@ -66,7 +66,7 @@
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#![warn(missing_doc_code_examples)]
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mod chroma;
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pub mod distance;
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mod library;
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pub mod library;
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mod misc;
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mod song;
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mod temporal;
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109
src/library.rs
109
src/library.rs
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//! Module containing the Library trait, useful to get started to implement
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//! a plug-in for an audio player.
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//!
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//! Looking at the [reference implementation for
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//! MPD](https://github.com/Polochon-street/blissify-rs) could also be useful.
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#[cfg(doc)]
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use crate::distance;
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use crate::distance::DistanceMetric;
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@ -116,7 +119,7 @@ pub trait Library {
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/// Analyze and store songs in `paths`, using `store_song` and
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/// `store_error_song` implementations.
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///
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/// Note: this is mostly useful for updating a song library. For the first
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/// note: this is mostly useful for updating a song library. for the first
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/// run, you probably want to use `analyze_library`.
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fn analyze_paths(&mut self, paths: Vec<String>) -> BlissResult<()> {
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if paths.is_empty() {
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@ -192,6 +195,82 @@ pub trait Library {
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self.analyze_paths(paths)?;
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Ok(())
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}
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/// Analyze an entire library using `get_songs_paths`, but instead of
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/// storing songs using [store_song](Library::store_song)
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/// and [store_error_song](Library::store_error_song).
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///
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/// Returns an iterable [Receiver], whose items are a tuple made of
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/// the song path (to display to the user in case the analysis failed),
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/// and a Result<Song>.
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fn analyze_library_streaming(&mut self) -> BlissResult<Receiver<(String, BlissResult<Song>)>> {
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let paths = self
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.get_songs_paths()
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.map_err(|e| BlissError::ProviderError(e.to_string()))?;
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analyze_paths_streaming(paths)
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}
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}
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/// Analyze songs in `paths`, and return the analyzed [Song] objects through a
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/// [Receiver].
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///
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/// Returns an iterable [Receiver], whose items are a tuple made of
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/// the song path (to display to the user in case the analysis failed),
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/// and a Result<Song>.
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///
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/// Note: this is mostly useful for updating a song library, while displaying
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/// status to the user (since you have access to each song object). For the
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/// first run, you probably want to use `analyze_library`.
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///
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/// * Example:
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/// ```no_run
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/// use bliss_audio::{library::analyze_paths_streaming, BlissResult};
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///
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/// fn main() -> BlissResult<()> {
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/// let paths = vec![String::from("/path/to/song1"), String::from("/path/to/song2")];
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/// let rx = analyze_paths_streaming(paths)?;
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/// for (path, result) in rx.iter() {
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/// match result {
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/// Ok(song) => println!("Do something with analyzed song {} with title {:?}", song.path.display(), song.title),
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/// Err(e) => println!("Song at {} could not be analyzed. Failed with: {}", path, e),
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/// }
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/// }
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/// Ok(())
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/// }
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/// ```
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pub fn analyze_paths_streaming(
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paths: Vec<String>,
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) -> BlissResult<Receiver<(String, BlissResult<Song>)>> {
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let num_cpus = num_cpus::get();
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#[allow(clippy::type_complexity)]
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let (tx, rx): (
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Sender<(String, BlissResult<Song>)>,
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Receiver<(String, BlissResult<Song>)>,
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) = mpsc::channel();
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if paths.is_empty() {
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return Ok(rx);
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}
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let mut handles = Vec::new();
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let mut chunk_length = paths.len() / num_cpus;
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if chunk_length == 0 {
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chunk_length = paths.len();
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}
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for chunk in paths.chunks(chunk_length) {
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let tx_thread = tx.clone();
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let owned_chunk = chunk.to_owned();
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let child = thread::spawn(move || {
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for path in owned_chunk {
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info!("Analyzing file '{}'", path);
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let song = Song::new(&path);
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tx_thread.send((path.to_string(), song)).unwrap();
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}
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});
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handles.push(child);
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}
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Ok(rx)
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}
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#[cfg(test)]
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@ -325,6 +404,34 @@ mod test {
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assert!(test_library.analyze_library().is_ok())
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}
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#[test]
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fn test_analyze_library_streaming() {
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let mut test_library = TestLibrary {
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internal_storage: vec![],
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failed_files: vec![],
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};
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let rx = test_library.analyze_library_streaming().unwrap();
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let mut result = rx.iter().collect::<Vec<(String, BlissResult<Song>)>>();
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result.sort_by_key(|k| k.0.to_owned());
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let expected = result
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.iter()
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.map(|x| match &x.1 {
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Ok(s) => (true, s.path.to_string_lossy().to_string()),
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Err(_) => (false, x.0.to_owned()),
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})
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.collect::<Vec<(bool, String)>>();
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assert_eq!(
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vec![
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(true, String::from("./data/s16_mono_22_5kHz.flac")),
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(true, String::from("./data/white_noise.flac")),
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(false, String::from("definitely-not-existing.foo")),
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(false, String::from("not-existing.foo")),
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],
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expected,
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);
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}
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#[test]
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fn test_analyze_library() {
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let mut test_library = TestLibrary {
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@ -466,7 +466,7 @@ impl Song {
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song.sample_array = child.join().unwrap()?;
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return Ok(song);
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}
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Err(e) => warn!("decoding error: {}", e),
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Err(e) => warn!("error while decoding {}: {}", path.display(), e),
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};
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loop {
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song.sample_array = child.join().unwrap()?;
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return Ok(song);
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}
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Err(e) => warn!("decoding error: {}", e),
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Err(e) => warn!("error while decoding {}: {}", path.display(), e),
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};
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loop {
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