Add a features' version number
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@ -1,5 +1,8 @@
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# Changelog
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## bliss 0.4.3
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* Add features' version on each Song instance.
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## bliss 0.4.2
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* Add a binary example to easily make playlists.
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2
Cargo.lock
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2
Cargo.lock
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@ -86,7 +86,7 @@ checksum = "bef38d45163c2f1dde094a7dfd33ccf595c92905c8f8f4fdc18d06fb1037718a"
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[[package]]
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name = "bliss-audio"
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version = "0.4.2"
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version = "0.4.3"
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dependencies = [
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"anyhow",
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"bliss-audio-aubio-rs",
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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 = "0.4.2"
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version = "0.4.3"
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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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@ -321,7 +321,7 @@ fn estimate_tuning(
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resolution: f64,
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bins_per_octave: u32,
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) -> BlissResult<f64> {
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let (pitch, mag) = pip_track(sample_rate, &spectrum, n_fft)?;
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let (pitch, mag) = pip_track(sample_rate, spectrum, n_fft)?;
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let (filtered_pitch, filtered_mag): (Vec<N64>, Vec<N64>) = pitch
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.iter()
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@ -107,7 +107,7 @@ pub fn dedup_playlist_custom_distance(
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distance: impl DistanceMetric,
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) {
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songs.dedup_by(|s1, s2| {
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n32(s1.custom_distance(&s2, &distance)) < distance_threshold.unwrap_or(0.05)
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n32(s1.custom_distance(s2, &distance)) < distance_threshold.unwrap_or(0.05)
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|| (s1.title.is_some()
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&& s2.title.is_some()
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&& s1.artist.is_some()
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@ -85,6 +85,10 @@ pub use song::{Analysis, AnalysisIndex, Song, NUMBER_FEATURES};
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const CHANNELS: u16 = 1;
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const SAMPLE_RATE: u32 = 22050;
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/// Stores the current version of bliss-rs' features.
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/// It is bumped every time one or more feature is added, updated or removed,
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/// so plug-ins can rescan libraries when there is a major change.
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const FEATURES_VERSION: u16 = 1;
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#[derive(Error, Clone, Debug, PartialEq)]
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/// Umbrella type for bliss error types
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@ -56,7 +56,7 @@ pub trait Library {
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for song in &songs {
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if let Some(album) = &song.album {
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if let Some(analysis) = albums_analysis.get_mut(&album as &str) {
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if let Some(analysis) = albums_analysis.get_mut(album as &str) {
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analysis
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.push_row(song.analysis.as_arr1().view())
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.map_err(|e| {
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@ -65,7 +65,7 @@ pub trait Library {
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} else {
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let mut array = Array::zeros((1, song.analysis.as_arr1().len()));
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array.assign(&song.analysis.as_arr1());
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albums_analysis.insert(&album, array);
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albums_analysis.insert(album, array);
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}
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}
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}
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@ -92,7 +92,7 @@ pub trait Library {
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albums.sort_by_key(|(_, analysis)| {
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n32(euclidean_distance(
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first_analysis.as_ref().unwrap(),
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&analysis,
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analysis,
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))
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});
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let albums = albums.get(..playlist_length).unwrap_or(&albums);
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14
src/song.rs
14
src/song.rs
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@ -12,7 +12,7 @@ extern crate ffmpeg_next as ffmpeg;
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extern crate ndarray;
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extern crate ndarray_npy;
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use super::CHANNELS;
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use crate::{CHANNELS, FEATURES_VERSION};
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use crate::chroma::ChromaDesc;
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use crate::distance::{euclidean_distance, DistanceMetric};
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use crate::misc::LoudnessDesc;
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@ -61,6 +61,10 @@ pub struct Song {
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pub genre: Option<String>,
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/// bliss analysis results
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pub analysis: Analysis,
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/// Version of the features the song was analyzed with.
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/// A simple integer that is bumped every time a breaking change
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/// is introduced in the features.
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pub features_version: u16,
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}
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#[derive(Debug, EnumIter, EnumCount)]
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@ -251,6 +255,7 @@ impl Song {
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track_number: raw_song.track_number,
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genre: raw_song.genre,
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analysis: Song::analyse(raw_song.sample_array)?,
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features_version: FEATURES_VERSION,
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})
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}
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@ -289,7 +294,7 @@ impl Song {
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.step_by(BPMDesc::HOP_SIZE);
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for window in windows {
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tempo_desc.do_(&window)?;
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tempo_desc.do_(window)?;
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}
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Ok(tempo_desc.get_value())
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});
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@ -310,7 +315,7 @@ impl Song {
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.windows(SpectralDesc::WINDOW_SIZE)
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.step_by(SpectralDesc::HOP_SIZE);
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for window in windows {
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spectral_desc.do_(&window)?;
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spectral_desc.do_(window)?;
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}
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let centroid = spectral_desc.get_centroid();
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let rolloff = spectral_desc.get_rolloff();
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@ -330,7 +335,7 @@ impl Song {
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let windows = sample_array.chunks(LoudnessDesc::WINDOW_SIZE);
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for window in windows {
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loudness_desc.do_(&window);
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loudness_desc.do_(window);
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}
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Ok(loudness_desc.get_value())
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});
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@ -657,6 +662,7 @@ mod tests {
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for (x, y) in song.analysis.as_vec().iter().zip(expected_analysis) {
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assert!(0.01 > (x - y).abs());
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}
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assert_eq!(FEATURES_VERSION, song.features_version);
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}
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fn _test_decode(path: &Path, expected_hash: &[u8]) {
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@ -204,12 +204,12 @@ impl SpectralDesc {
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self.values_rolloff.push(freq);
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let cvec: CVec = fftgrain.as_slice().into();
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let geo_mean = geometric_mean(&cvec.norm());
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let geo_mean = geometric_mean(cvec.norm());
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if geo_mean == 0.0 {
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self.values_flatness.push(0.0);
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return Ok(());
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}
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let flatness = geo_mean / mean(&cvec.norm());
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let flatness = geo_mean / mean(cvec.norm());
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self.values_flatness.push(flatness);
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Ok(())
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}
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@ -29,7 +29,7 @@ pub(crate) fn stft(signal: &[f32], window_length: usize, hop_length: usize) -> A
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(signal.len() as f32 / hop_length as f32).ceil() as usize,
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window_length / 2 + 1,
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));
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let signal = reflect_pad(&signal, window_length / 2);
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let signal = reflect_pad(signal, window_length / 2);
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// Periodic, so window_size + 1
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let mut hann_window = Array::zeros(window_length + 1);
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.step_by(hop_length)
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.zip(stft.rows_mut())
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{
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let mut signal = (arr1(&window) * &hann_window).mapv(|x| Complex::new(x, 0.));
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let mut signal = (arr1(window) * &hann_window).mapv(|x| Complex::new(x, 0.));
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match signal.as_slice_mut() {
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Some(s) => fft.process(s),
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None => {
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