2025-10-27 19:25:51 +01:00
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//! Common utilities for audio decoders.
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//!
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//! This module provides shared functionality for the FLAC, MP3, and Ogg/Vorbis decoders,
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//! reducing code duplication and ensuring consistent behavior across all decoders.
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2025-10-27 22:59:06 +01:00
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use std::{
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io,
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pin::Pin,
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task::{Context, Poll},
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};
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2025-10-27 19:25:51 +01:00
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use bytes::Bytes;
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use tokio::{
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2025-10-27 22:59:06 +01:00
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io::{AsyncRead, AsyncReadExt, AsyncWriteExt, DuplexStream, ReadBuf},
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2025-10-27 19:25:51 +01:00
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sync::mpsc,
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task::JoinHandle,
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};
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2025-10-27 22:59:06 +01:00
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use crate::{pcm::StreamInfo, stream::ManagedAsyncReader};
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2025-10-27 22:47:59 +01:00
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/// Generic error type shared by the streaming decoders.
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#[derive(thiserror::Error, Debug, Clone)]
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pub enum DecoderError {
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#[error("I/O error ({kind:?}): {message}")]
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Io {
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kind: io::ErrorKind,
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message: String,
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},
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#[error("{0}")]
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Decode(String),
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#[error("internal channel closed unexpectedly")]
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ChannelClosed,
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}
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impl From<io::Error> for DecoderError {
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fn from(err: io::Error) -> Self {
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DecoderError::Io {
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kind: err.kind(),
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message: err.to_string(),
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}
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}
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}
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impl From<String> for DecoderError {
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fn from(value: String) -> Self {
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DecoderError::Decode(value)
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}
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}
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impl From<&str> for DecoderError {
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fn from(value: &str) -> Self {
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DecoderError::Decode(value.to_owned())
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}
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}
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2025-10-27 22:59:06 +01:00
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/// Generic decoded stream wrapper shared by all decoders.
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pub struct DecodedStream<E>
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where
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E: std::error::Error,
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{
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info: StreamInfo,
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reader: ManagedAsyncReader<E>,
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}
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impl<E> DecodedStream<E>
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where
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E: std::error::Error,
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{
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/// Creates a new decoded stream from metadata and the underlying reader.
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pub fn new(info: StreamInfo, reader: ManagedAsyncReader<E>) -> Self {
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Self { info, reader }
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}
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/// Returns metadata about the decoded audio stream.
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pub fn info(&self) -> &StreamInfo {
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&self.info
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}
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/// Consumes the stream and returns its components.
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pub fn into_parts(self) -> (StreamInfo, ManagedAsyncReader<E>) {
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(self.info, self.reader)
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}
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/// Waits for the decoding pipeline to finish.
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pub async fn wait(self) -> Result<(), E>
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where
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E: From<String>,
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{
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self.reader.wait().await
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}
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}
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impl<E> AsyncRead for DecodedStream<E>
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where
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E: std::error::Error,
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{
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fn poll_read(
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mut self: Pin<&mut Self>,
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cx: &mut Context<'_>,
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buf: &mut ReadBuf<'_>,
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) -> Poll<io::Result<()>> {
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Pin::new(&mut self.reader).poll_read(cx, buf)
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}
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}
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2025-10-27 19:25:51 +01:00
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/// Size of chunks when reading input data.
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///
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/// This size balances between efficient I/O operations and memory usage.
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/// Larger chunks reduce system call overhead, while smaller chunks reduce latency.
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pub(crate) const INGEST_CHUNK_SIZE: usize = 16 * 1024;
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/// Channel capacity for async message passing between tasks.
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///
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/// This bounded capacity provides backpressure: if the decoder can't keep up,
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/// the ingest task will wait before reading more data.
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pub(crate) const CHANNEL_CAPACITY: usize = 8;
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/// Size of the duplex stream buffer for PCM output (256 KB).
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pub(crate) const DUPLEX_BUFFER_SIZE: usize = 256 * 1024;
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/// Spawns an async task that ingests data from a reader and sends it through a channel.
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///
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/// This task reads chunks of data from the input reader and forwards them via an mpsc channel
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/// to the decoder. It handles EOF and errors gracefully.
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///
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/// # Arguments
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///
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/// * `reader` - The async reader to ingest data from
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/// * `ingest_tx` - Channel sender to forward data chunks
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///
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/// # Type Parameters
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///
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/// * `R` - The async reader type
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/// * `E` - The error type (must be convertible from `io::Error`)
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pub(crate) fn spawn_ingest_task<R, E>(
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reader: R,
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ingest_tx: mpsc::Sender<Result<Bytes, E>>,
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) -> JoinHandle<()>
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where
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R: AsyncRead + Unpin + Send + 'static,
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E: From<io::Error> + Send + 'static,
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{
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tokio::spawn(async move {
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let mut reader = tokio::io::BufReader::new(reader);
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let mut buf = vec![0u8; INGEST_CHUNK_SIZE];
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loop {
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match reader.read(&mut buf).await {
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Ok(0) => break,
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Ok(n) => {
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let chunk = Bytes::copy_from_slice(&buf[..n]);
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if ingest_tx.send(Ok(chunk)).await.is_err() {
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break;
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}
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}
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Err(err) => {
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let _ = ingest_tx.send(Err(E::from(err))).await;
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break;
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}
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}
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}
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})
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}
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/// Spawns an async task that writes PCM data from a channel to a duplex stream.
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///
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/// This task receives PCM chunks from a channel and writes them to a duplex stream,
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/// which can be read by the consumer. It waits for the blocking decoder task to complete
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/// and propagates any errors.
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///
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/// # Arguments
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///
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/// * `pcm_rx` - Channel receiver for PCM data chunks
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/// * `pcm_writer` - Duplex stream writer for PCM output
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/// * `blocking_handle` - Join handle for the blocking decoder task
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/// * `role` - Name of the decoder role (for error messages)
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///
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/// # Type Parameters
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///
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/// * `E` - The error type
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///
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/// # Returns
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///
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/// A join handle for the writer task that returns `Result<(), E>`
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pub(crate) fn spawn_writer_task<E>(
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mut pcm_rx: mpsc::Receiver<Result<Vec<u8>, E>>,
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mut pcm_writer: DuplexStream,
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blocking_handle: JoinHandle<Result<(), E>>,
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role: &'static str,
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) -> JoinHandle<Result<(), E>>
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where
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E: From<io::Error> + From<String> + Send + 'static,
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{
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tokio::spawn(async move {
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while let Some(chunk_result) = pcm_rx.recv().await {
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let chunk = chunk_result?;
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if chunk.is_empty() {
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continue;
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}
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pcm_writer.write_all(&chunk).await.map_err(E::from)?;
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}
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pcm_writer.shutdown().await.map_err(E::from)?;
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match blocking_handle.await {
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Ok(res) => res,
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2025-10-27 20:42:16 +01:00
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Err(err) => Err(E::from(format!("{} task failed: {}", role, err))),
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2025-10-27 19:25:51 +01:00
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}
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})
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}
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