mirror of
https://gitlab.freedesktop.org/gstreamer/gst-plugins-rs.git
synced 2024-12-23 18:40:32 +00:00
230 lines
7.4 KiB
Rust
230 lines
7.4 KiB
Rust
use std::collections::HashMap;
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use std::sync::{Arc, Mutex};
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use anyhow::Error;
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use async_tungstenite::tungstenite::Message as WsMessage;
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use clap::Parser;
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use futures::channel::mpsc;
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use futures::prelude::*;
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use gst::glib::Type;
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use gst::prelude::*;
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use tokio::net::{TcpListener, TcpStream};
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use tokio::task;
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use tokio::time;
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use tracing::{debug, info, trace};
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use tracing_subscriber::prelude::*;
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#[derive(Parser, Debug)]
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#[clap(about, version, author)]
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/// Program arguments
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struct Args {
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/// URI of file to serve. Must hold at least one audio and video stream
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uri: String,
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/// Disable Forward Error Correction
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#[clap(long)]
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disable_fec: bool,
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/// Disable retransmission
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#[clap(long)]
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disable_retransmission: bool,
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/// Disable congestion control
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#[clap(long)]
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disable_congestion_control: bool,
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}
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fn serialize_value(val: &gst::glib::Value) -> Option<serde_json::Value> {
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match val.type_() {
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Type::STRING => Some(val.get::<String>().unwrap().into()),
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Type::BOOL => Some(val.get::<bool>().unwrap().into()),
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Type::I32 => Some(val.get::<i32>().unwrap().into()),
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Type::U32 => Some(val.get::<u32>().unwrap().into()),
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Type::I_LONG | Type::I64 => Some(val.get::<i64>().unwrap().into()),
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Type::U_LONG | Type::U64 => Some(val.get::<u64>().unwrap().into()),
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Type::F32 => Some(val.get::<f32>().unwrap().into()),
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Type::F64 => Some(val.get::<f64>().unwrap().into()),
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_ => {
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if let Ok(s) = val.get::<gst::Structure>() {
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serde_json::to_value(
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s.iter()
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.filter_map(|(name, value)| {
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serialize_value(value).map(|value| (name.to_string(), value))
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})
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.collect::<HashMap<String, serde_json::Value>>(),
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)
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.ok()
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} else if let Ok(a) = val.get::<gst::Array>() {
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serde_json::to_value(
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a.iter()
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.filter_map(|value| serialize_value(value))
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.collect::<Vec<serde_json::Value>>(),
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)
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.ok()
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} else if let Some((_klass, values)) = gst::glib::FlagsValue::from_value(val) {
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Some(
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values
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.iter()
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.map(|value| value.nick())
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.collect::<Vec<&str>>()
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.join("+")
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.into(),
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)
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} else if let Ok(value) = val.serialize() {
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Some(value.as_str().into())
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} else {
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None
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}
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}
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}
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}
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#[derive(Clone)]
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struct Listener {
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id: uuid::Uuid,
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sender: mpsc::Sender<WsMessage>,
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}
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struct State {
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listeners: Vec<Listener>,
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}
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async fn run(args: Args) -> Result<(), Error> {
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tracing_log::LogTracer::init().expect("Failed to set logger");
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let env_filter = tracing_subscriber::EnvFilter::try_from_env("WEBRTCSINK_STATS_LOG")
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.unwrap_or_else(|_| tracing_subscriber::EnvFilter::new("info"));
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let fmt_layer = tracing_subscriber::fmt::layer()
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.with_thread_ids(true)
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.with_target(true)
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.with_span_events(
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tracing_subscriber::fmt::format::FmtSpan::NEW
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| tracing_subscriber::fmt::format::FmtSpan::CLOSE,
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);
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let subscriber = tracing_subscriber::Registry::default()
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.with(env_filter)
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.with(fmt_layer);
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tracing::subscriber::set_global_default(subscriber).expect("Failed to set subscriber");
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let state = Arc::new(Mutex::new(State { listeners: vec![] }));
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let addr = "127.0.0.1:8484".to_string();
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// Create the event loop and TCP listener we'll accept connections on.
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let try_socket = TcpListener::bind(&addr).await;
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let listener = try_socket.expect("Failed to bind");
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info!("Listening on: {}", addr);
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let pipeline_str = format!(
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"webrtcsink name=ws do-retransmission={} do-fec={} congestion-control={} \
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uridecodebin name=d uri={} \
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d. ! video/x-raw ! queue ! ws.video_0 \
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d. ! audio/x-raw ! queue ! ws.audio_0",
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!args.disable_retransmission,
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!args.disable_fec,
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if args.disable_congestion_control {
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"disabled"
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} else {
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"homegrown"
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},
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args.uri
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);
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let pipeline = gst::parse_launch(&pipeline_str)?;
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let ws = pipeline
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.downcast_ref::<gst::Bin>()
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.unwrap()
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.by_name("ws")
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.unwrap();
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ws.connect("encoder-setup", false, |values| {
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let encoder = values[3].get::<gst::Element>().unwrap();
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info!("Encoder: {}", encoder.factory().unwrap().name());
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let configured = if let Some(factory) = encoder.factory() {
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matches!(factory.name().as_str(), "does-not-exist")
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} else {
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false
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};
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Some(configured.to_value())
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});
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let ws_clone = ws.downgrade();
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let state_clone = state.clone();
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task::spawn(async move {
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let mut interval = time::interval(std::time::Duration::from_millis(100));
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loop {
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interval.tick().await;
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if let Some(ws) = ws_clone.upgrade() {
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let stats = ws.property::<gst::Structure>("stats");
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let stats = serialize_value(&stats.to_value()).unwrap();
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debug!("Stats: {}", serde_json::to_string_pretty(&stats).unwrap());
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let msg = WsMessage::Text(serde_json::to_string(&stats).unwrap());
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let listeners = state_clone.lock().unwrap().listeners.clone();
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for mut listener in listeners {
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if listener.sender.send(msg.clone()).await.is_err() {
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let mut state = state_clone.lock().unwrap();
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let index = state
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.listeners
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.iter()
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.position(|l| l.id == listener.id)
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.unwrap();
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state.listeners.remove(index);
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}
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}
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} else {
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break;
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}
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}
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});
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pipeline.set_state(gst::State::Playing)?;
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while let Ok((stream, _)) = listener.accept().await {
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task::spawn(accept_connection(state.clone(), stream));
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}
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Ok(())
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}
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async fn accept_connection(state: Arc<Mutex<State>>, stream: TcpStream) {
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let addr = stream
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.peer_addr()
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.expect("connected streams should have a peer address");
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info!("Peer address: {}", addr);
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let mut ws_stream = async_tungstenite::tokio::accept_async(stream)
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.await
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.expect("Error during the websocket handshake occurred");
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info!("New WebSocket connection: {}", addr);
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let mut state = state.lock().unwrap();
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let (sender, mut receiver) = mpsc::channel::<WsMessage>(1000);
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state.listeners.push(Listener {
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id: uuid::Uuid::new_v4(),
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sender,
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});
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drop(state);
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task::spawn(async move {
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while let Some(msg) = receiver.next().await {
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trace!("Sending to one listener!");
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if ws_stream.send(msg).await.is_err() {
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info!("Listener errored out");
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receiver.close();
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}
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}
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});
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}
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#[tokio::main]
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async fn main() -> Result<(), Error> {
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gst::init()?;
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let args = Args::parse();
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run(args).await
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}
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