feat: v1.20.0 — FLAC Seek Fix, Genres, Genre Filter, Chinese, W10 Theme

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
This commit is contained in:
Psychotoxical
2026-03-29 18:04:01 +02:00
parent b35539d3cf
commit e1d27798eb
26 changed files with 2020 additions and 406 deletions
+1
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@@ -3370,6 +3370,7 @@ dependencies = [
"serde",
"serde_json",
"souvlaki",
"symphonia",
"tauri",
"tauri-build",
"tauri-plugin-dialog",
+1
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@@ -30,6 +30,7 @@ tauri-plugin-fs = "2"
serde = { version = "1", features = ["derive"] }
serde_json = "1"
rodio = { version = "0.19", default-features = false, features = ["symphonia-all"] }
symphonia = { version = "0.5", default-features = false, features = ["flac", "mp3", "pcm", "aac", "isomp4", "vorbis", "wav", "adpcm"] }
reqwest = { version = "0.12", features = ["stream", "json"] }
md5 = "0.7"
tokio = { version = "1", features = ["rt", "time"] }
+297 -10
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@@ -1,12 +1,21 @@
use std::io::Cursor;
use std::io::{Cursor, Read, Seek};
use std::sync::{Arc, Mutex};
use std::sync::atomic::{AtomicBool, AtomicU32, AtomicU64, Ordering};
use std::time::{Duration, Instant};
use biquad::{Biquad, Coefficients, DirectForm2Transposed, ToHertz, Type as FilterType};
use rodio::{Decoder, Sink, Source};
use rodio::{Sink, Source};
use rodio::source::UniformSourceIterator;
use serde::Serialize;
use symphonia::core::{
audio::{AudioBufferRef, SampleBuffer, SignalSpec},
codecs::{DecoderOptions, CODEC_TYPE_NULL},
formats::{FormatOptions, FormatReader, SeekMode, SeekTo},
io::{MediaSource, MediaSourceStream},
meta::MetadataOptions,
probe::Hint,
units::{self, Time},
};
use tauri::{AppHandle, Emitter, State};
// ─── 10-Band Graphic Equalizer ────────────────────────────────────────────────
@@ -394,6 +403,264 @@ impl<S: Source<Item = f32>> Source for CountingSource<S> {
}
}
// ─── SizedCursorSource — MediaSource with correct byte_len ────────────────────
//
// rodio's internal ReadSeekSource wraps Cursor<Vec<u8>> but hardcodes
// byte_len() → None. This tells symphonia "stream length unknown", which
// prevents the FLAC demuxer from seeking (it validates seek offsets against
// the total stream length from byte_len). MP3 is unaffected because its
// demuxer uses Xing/LAME headers instead.
//
// This wrapper provides the actual byte length, fixing seek for all formats.
struct SizedCursorSource {
inner: Cursor<Vec<u8>>,
len: u64,
}
impl Read for SizedCursorSource {
fn read(&mut self, buf: &mut [u8]) -> std::io::Result<usize> {
self.inner.read(buf)
}
}
impl Seek for SizedCursorSource {
fn seek(&mut self, pos: std::io::SeekFrom) -> std::io::Result<u64> {
self.inner.seek(pos)
}
}
impl MediaSource for SizedCursorSource {
fn is_seekable(&self) -> bool { true }
fn byte_len(&self) -> Option<u64> { Some(self.len) }
}
// ─── SizedDecoder — symphonia decoder with correct byte_len ───────────────────
//
// Replaces rodio::Decoder::new() which wraps the source in ReadSeekSource
// (byte_len = None). This constructs the symphonia pipeline directly,
// providing the correct byte_len via SizedCursorSource.
//
// Implements Iterator<Item = i16> + Source — identical interface to
// rodio::Decoder, so the rest of the source chain is unchanged.
const DECODE_MAX_RETRIES: usize = 3;
struct SizedDecoder {
decoder: Box<dyn symphonia::core::codecs::Decoder>,
current_frame_offset: usize,
format: Box<dyn FormatReader>,
total_duration: Option<Time>,
buffer: SampleBuffer<i16>,
spec: SignalSpec,
}
impl SizedDecoder {
fn new(data: Vec<u8>, format_hint: Option<&str>) -> Result<Self, String> {
let data_len = data.len() as u64;
let source = SizedCursorSource {
inner: Cursor::new(data),
len: data_len,
};
let mss = MediaSourceStream::new(
Box::new(source) as Box<dyn MediaSource>,
Default::default(),
);
let mut hint = Hint::new();
if let Some(ext) = format_hint {
hint.with_extension(ext);
}
let format_opts = FormatOptions {
enable_gapless: true,
..Default::default()
};
let probed = symphonia::default::get_probe()
.format(&hint, mss, &format_opts, &MetadataOptions::default())
.map_err(|e| format!("probe failed: {e}"))?;
let track = probed.format
.tracks()
.iter()
.find(|t| t.codec_params.codec != CODEC_TYPE_NULL)
.ok_or_else(|| "no supported audio track".to_string())?;
let track_id = track.id;
let total_duration = track.codec_params.time_base
.zip(track.codec_params.n_frames)
.map(|(base, frames)| base.calc_time(frames));
let mut decoder = symphonia::default::get_codecs()
.make(&track.codec_params, &DecoderOptions::default())
.map_err(|e| format!("codec init failed: {e}"))?;
let mut format = probed.format;
// Decode the first packet to initialise spec + buffer.
let mut decode_errors: usize = 0;
let decoded = loop {
let packet = match format.next_packet() {
Ok(p) => p,
Err(symphonia::core::errors::Error::IoError(_)) => {
break decoder.last_decoded();
}
Err(e) => return Err(format!("first packet: {e}")),
};
if packet.track_id() != track_id { continue; }
match decoder.decode(&packet) {
Ok(decoded) => break decoded,
Err(symphonia::core::errors::Error::DecodeError(_)) => {
decode_errors += 1;
if decode_errors > DECODE_MAX_RETRIES {
return Err("too many decode errors".into());
}
}
Err(e) => return Err(format!("decode: {e}")),
}
};
let spec = decoded.spec().to_owned();
let buffer = Self::make_buffer(decoded, &spec);
Ok(SizedDecoder {
decoder,
current_frame_offset: 0,
format,
total_duration,
buffer,
spec,
})
}
#[inline]
fn make_buffer(decoded: AudioBufferRef, spec: &SignalSpec) -> SampleBuffer<i16> {
let duration = units::Duration::from(decoded.capacity() as u64);
let mut buffer = SampleBuffer::<i16>::new(duration, *spec);
buffer.copy_interleaved_ref(decoded);
buffer
}
/// Refine position after a coarse seek — decode packets until we reach the
/// exact requested timestamp.
fn refine_position(
&mut self,
seek_res: symphonia::core::formats::SeekedTo,
) -> Result<(), String> {
let mut samples_to_pass = seek_res.required_ts - seek_res.actual_ts;
let packet = loop {
let candidate = self.format.next_packet()
.map_err(|e| format!("refine seek: {e}"))?;
if candidate.dur() > samples_to_pass {
break candidate;
}
samples_to_pass -= candidate.dur();
};
let mut decoded = self.decoder.decode(&packet);
for _ in 0..DECODE_MAX_RETRIES {
if decoded.is_err() {
let p = self.format.next_packet()
.map_err(|e| format!("refine retry: {e}"))?;
decoded = self.decoder.decode(&p);
}
}
let decoded = decoded.map_err(|e| format!("refine decode: {e}"))?;
decoded.spec().clone_into(&mut self.spec);
self.buffer = Self::make_buffer(decoded, &self.spec);
self.current_frame_offset = samples_to_pass as usize * self.spec.channels.count();
Ok(())
}
}
impl Iterator for SizedDecoder {
type Item = i16;
#[inline]
fn next(&mut self) -> Option<i16> {
if self.current_frame_offset >= self.buffer.len() {
let packet = self.format.next_packet().ok()?;
let mut decoded = self.decoder.decode(&packet);
for _ in 0..DECODE_MAX_RETRIES {
if decoded.is_err() {
let p = self.format.next_packet().ok()?;
decoded = self.decoder.decode(&p);
}
}
let decoded = decoded.ok()?;
decoded.spec().clone_into(&mut self.spec);
self.buffer = Self::make_buffer(decoded, &self.spec);
self.current_frame_offset = 0;
}
let sample = *self.buffer.samples().get(self.current_frame_offset)?;
self.current_frame_offset += 1;
Some(sample)
}
}
impl Source for SizedDecoder {
#[inline]
fn current_frame_len(&self) -> Option<usize> {
Some(self.buffer.samples().len())
}
#[inline]
fn channels(&self) -> u16 {
self.spec.channels.count() as u16
}
#[inline]
fn sample_rate(&self) -> u32 {
self.spec.rate
}
#[inline]
fn total_duration(&self) -> Option<Duration> {
self.total_duration.map(|Time { seconds, frac }| {
Duration::new(seconds, (frac * 1_000_000_000.0) as u32)
})
}
fn try_seek(&mut self, pos: Duration) -> Result<(), rodio::source::SeekError> {
let seek_beyond_end = self
.total_duration()
.is_some_and(|dur| dur.saturating_sub(pos).as_millis() < 1);
let time: Time = if seek_beyond_end {
let t = self.total_duration.unwrap_or(pos.as_secs_f64().into());
// Step back a tiny bit — some demuxers can't seek to the exact end.
let mut secs = t.seconds;
let mut frac = t.frac - 0.0001;
if frac < 0.0 {
secs = secs.saturating_sub(1);
frac = 1.0 - frac;
}
Time { seconds: secs, frac }
} else {
pos.as_secs_f64().into()
};
let to_skip = self.current_frame_offset % self.channels() as usize;
let seek_res = self
.format
.seek(SeekMode::Accurate, SeekTo::Time { time, track_id: None })
.map_err(|e| rodio::source::SeekError::Other(
Box::new(std::io::Error::new(std::io::ErrorKind::Other, e.to_string()))
))?;
self.refine_position(seek_res)
.map_err(|e| rodio::source::SeekError::Other(
Box::new(std::io::Error::new(std::io::ErrorKind::Other, e))
))?;
self.current_frame_offset += to_skip;
Ok(())
}
}
// ─── Encoder-gap trimming (iTunSMPB) ─────────────────────────────────────────
//
// MP3/AAC encoders prepend an "encoder delay" (typically 5762112 silent
@@ -473,6 +740,7 @@ struct BuiltSource {
///
/// `sample_counter`: atomic counter incremented per sample for drift-free position.
/// `target_rate`: canonical output sample rate for resampling (0 = no resampling).
/// `format_hint`: optional file extension (e.g. "flac", "mp3") to help symphonia probe.
fn build_source(
data: Vec<u8>,
duration_hint: f64,
@@ -482,11 +750,11 @@ fn build_source(
fade_in_dur: Duration,
sample_counter: Arc<AtomicU64>,
target_rate: u32,
format_hint: Option<&str>,
) -> Result<BuiltSource, String> {
let gapless = parse_gapless_info(&data);
let cursor = Cursor::new(data);
let decoder = Decoder::new(cursor).map_err(|e| e.to_string())?;
let decoder = SizedDecoder::new(data, format_hint)?;
let sample_rate = decoder.sample_rate();
let channels = decoder.channels();
@@ -881,6 +1149,10 @@ pub async fn audio_play(
// Reset sample counter for the new track.
state.samples_played.store(0, Ordering::Relaxed);
let target_rate = state.current_sample_rate.load(Ordering::Relaxed);
// Extract format hint from URL for better symphonia probing.
let format_hint = url.rsplit('.').next()
.and_then(|ext| ext.split('?').next())
.map(|s| s.to_lowercase());
let built = build_source(
data,
duration_hint,
@@ -890,6 +1162,7 @@ pub async fn audio_play(
fade_in_dur,
state.samples_played.clone(),
target_rate,
format_hint.as_deref(),
).map_err(|e| { app.emit("audio:error", &e).ok(); e })?;
let source = built.source;
let duration_secs = built.duration_secs;
@@ -1071,6 +1344,9 @@ pub async fn audio_chain_preload(
// samples_played when the chained track becomes active.
let chain_counter = Arc::new(AtomicU64::new(0));
let target_rate = state.current_sample_rate.load(Ordering::Relaxed);
let format_hint = url.rsplit('.').next()
.and_then(|ext| ext.split('?').next())
.map(|s| s.to_lowercase());
let built = build_source(
data,
duration_hint,
@@ -1080,6 +1356,7 @@ pub async fn audio_chain_preload(
Duration::ZERO, // gapless: no fade-in — sample-accurate boundary, no click
chain_counter.clone(),
target_rate,
format_hint.as_deref(),
).map_err(|e| e.to_string())?;
let source = built.source;
let duration_secs = built.duration_secs;
@@ -1144,6 +1421,8 @@ fn spawn_progress_task(
let mut near_end_ticks: u32 = 0;
// Local done-flag reference; swapped on gapless transition.
let mut current_done = initial_done;
// Local sample counter; swapped to chained source's counter on transition.
let mut samples_played = samples_played;
loop {
// 100 ms tick — tight enough for responsive UI, low enough CPU cost.
@@ -1163,12 +1442,11 @@ fn spawn_progress_task(
// Swap to the chained source's done flag.
current_done = info.source_done;
// Swap the sample counter: the chained source's counter
// is already being incremented by CountingSource. Copy its
// current value into the shared samples_played so the
// progress calculation stays accurate.
let chained_samples = info.sample_counter.load(Ordering::Relaxed);
samples_played.store(chained_samples, Ordering::Relaxed);
// Swap to the chained source's sample counter.
// The chained CountingSource increments its own Arc,
// so we must rebind our local reference to it —
// a one-time value copy would go stale immediately.
samples_played = info.sample_counter;
// Update tracking state.
{
@@ -1234,6 +1512,15 @@ fn spawn_progress_task(
near_end_ticks += 1;
// At 100 ms ticks, 10 ticks ≈ 1 s — equivalent to the old 2×500ms.
if near_end_ticks >= 10 {
// If a gapless chain is pending, the source hasn't
// exhausted yet — duration_hint (integer seconds from
// Subsonic) is shorter than the actual audio content.
// Don't emit audio:ended; let the gapless transition
// handle it when current_done fires.
let has_chain = chained_arc.lock().unwrap().is_some();
if has_chain {
continue;
}
gen_counter.fetch_add(1, Ordering::SeqCst);
app.emit("audio:ended", ()).ok();
break;
+1 -1
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@@ -1,7 +1,7 @@
{
"$schema": "https://schema.tauri.app/config/2",
"productName": "Psysonic",
"version": "1.19.0",
"version": "1.20.0",
"identifier": "dev.psysonic.player",
"build": {
"beforeDevCommand": "npm run dev",