mirror of
https://gitlab.freedesktop.org/gstreamer/gst-plugins-rs.git
synced 2024-11-26 21:41:03 +00:00
285 lines
9.8 KiB
Rust
285 lines
9.8 KiB
Rust
// Copyright (C) 2018 Sebastian Dröge <sebastian@centricular.com>
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//
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// This library is free software; you can redistribute it and/or
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// modify it under the terms of the GNU Library General Public
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// License as published by the Free Software Foundation; either
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// version 2 of the License, or (at your option) any later version.
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//
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// This library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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// Library General Public License for more details.
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//
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// You should have received a copy of the GNU Library General Public
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// License along with this library; if not, write to the
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// Free Software Foundation, Inc., 51 Franklin Street, Suite 500,
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// Boston, MA 02110-1335, USA.
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//
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// SPDX-License-Identifier: LGPL-2.1-or-later
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use gst::glib;
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use gst::glib::once_cell::sync::Lazy;
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use gst::prelude::*;
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use std::env;
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use std::sync::atomic::{AtomicU64, Ordering};
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use std::sync::Arc;
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use std::thread;
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use std::time::{Duration, Instant};
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const THROUGHPUT_PERIOD: Duration = Duration::from_secs(20);
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pub static CAT: Lazy<gst::DebugCategory> = Lazy::new(|| {
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gst::DebugCategory::new(
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"ts-benchmark",
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gst::DebugColorFlags::empty(),
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Some("Thread-sharing benchmarking receiver"),
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)
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});
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fn main() {
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gst::init().unwrap();
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// Register the plugins statically:
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// - The executable can be run from anywhere.
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// - No risk of running against a previous version.
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// - `main` can use features that rely on `static`s or `thread_local`
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// such as `Context::acquire` which otherwise don't point to
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// the same `static` or `thread_local`, probably because
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// the shared object uses its owns and the executable, others.
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gstthreadshare::plugin_register_static().unwrap();
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let args = env::args().collect::<Vec<_>>();
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assert!(args.len() > 4);
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let n_streams: u16 = args[1].parse().unwrap();
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let source = &args[2];
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let n_groups: u32 = args[3].parse().unwrap();
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let wait: u32 = args[4].parse().unwrap();
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// Nb buffers to await before stopping.
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let max_buffers: Option<f32> = if args.len() > 5 {
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args[5].parse().ok()
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} else {
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None
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};
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let is_rtp = args.len() > 6 && (args[6] == "rtp");
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let rtp_caps = gst::Caps::builder("application/x-rtp")
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.field("media", "audio")
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.field("payload", 8i32)
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.field("clock-rate", 8000)
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.field("encoding-name", "PCMA")
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.build();
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let l = glib::MainLoop::new(None, false);
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let pipeline = gst::Pipeline::default();
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let counter = Arc::new(AtomicU64::new(0));
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for i in 0..n_streams {
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let build_context = || format!("context-{}", (i as u32) % n_groups);
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let sink = gst::ElementFactory::make("fakesink")
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.name(format!("sink-{i}").as_str())
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.property("sync", false)
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.property("async", false)
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.property("signal-handoffs", true)
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.build()
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.unwrap();
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sink.connect(
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"handoff",
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true,
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glib::clone!(@strong counter => move |_| {
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let _ = counter.fetch_add(1, Ordering::SeqCst);
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None
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}),
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);
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let (source, context) = match source.as_str() {
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"udpsrc" => {
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let source = gst::ElementFactory::make("udpsrc")
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.name(format!("source-{i}").as_str())
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.property("port", 5004i32 + i as i32)
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.property("retrieve-sender-address", false)
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.build()
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.unwrap();
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(source, None)
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}
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"ts-udpsrc" => {
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let context = build_context();
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let source = gst::ElementFactory::make("ts-udpsrc")
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.name(format!("source-{i}").as_str())
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.property("port", 5004i32 + i as i32)
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.property("context", &context)
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.property("context-wait", wait)
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.build()
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.unwrap();
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if is_rtp {
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source.set_property("caps", &rtp_caps);
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}
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(source, Some(context))
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}
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"tcpclientsrc" => {
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let source = gst::ElementFactory::make("tcpclientsrc")
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.name(format!("source-{i}").as_str())
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.property("host", "127.0.0.1")
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.property("port", 40000i32)
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.build()
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.unwrap();
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(source, None)
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}
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"ts-tcpclientsrc" => {
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let context = build_context();
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let source = gst::ElementFactory::make("ts-tcpclientsrc")
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.name(format!("source-{i}").as_str())
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.property("host", "127.0.0.1")
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.property("port", 40000i32)
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.property("context", &context)
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.property("context-wait", wait)
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.build()
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.unwrap();
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(source, Some(context))
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}
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"tonegeneratesrc" => {
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let source = gst::ElementFactory::make("tonegeneratesrc")
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.name(format!("source-{i}").as_str())
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.property("samplesperbuffer", (wait as i32) * 8000 / 1000)
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.build()
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.unwrap();
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sink.set_property("sync", true);
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(source, None)
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}
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"ts-tonesrc" => {
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let context = build_context();
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let source = gst::ElementFactory::make("ts-tonesrc")
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.name(format!("source-{i}").as_str())
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.property("samples-per-buffer", wait * 8000 / 1000)
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.property("context", &context)
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.property("context-wait", wait)
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.build()
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.unwrap();
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(source, Some(context))
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}
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_ => unimplemented!(),
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};
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if is_rtp {
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let jb = gst::ElementFactory::make("ts-jitterbuffer")
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.name(format!("jb-{i}").as_str())
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.property("context-wait", wait)
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.property("latency", wait)
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.build()
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.unwrap();
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if let Some(context) = context {
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jb.set_property("context", &context);
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}
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let elements = &[&source, &jb, &sink];
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pipeline.add_many(elements).unwrap();
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gst::Element::link_many(elements).unwrap();
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} else {
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let elements = &[&source, &sink];
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pipeline.add_many(elements).unwrap();
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gst::Element::link_many(elements).unwrap();
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}
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}
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let bus = pipeline.bus().unwrap();
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let l_clone = l.clone();
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let _bus_watch = bus
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.add_watch(move |_, msg| {
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use gst::MessageView;
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match msg.view() {
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MessageView::Eos(..) => l_clone.quit(),
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MessageView::Error(err) => {
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gst::error!(
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CAT,
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"Error from {:?}: {} ({:?})",
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err.src().map(|s| s.path_string()),
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err.error(),
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err.debug()
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);
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l_clone.quit();
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}
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_ => (),
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};
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glib::ControlFlow::Continue
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})
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.expect("Failed to add bus watch");
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pipeline.set_state(gst::State::Playing).unwrap();
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gst::info!(CAT, "started");
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let l_clone = l.clone();
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thread::spawn(move || {
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let n_streams_f32 = n_streams as f32;
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let mut total_count = 0.0;
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let mut ramp_up_complete_instant: Option<Instant> = None;
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#[cfg(feature = "tuning")]
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let ctx_0 = gstthreadshare::runtime::Context::acquire(
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"context-0",
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Duration::from_millis(wait as u64),
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)
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.unwrap();
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#[cfg(feature = "tuning")]
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let mut parked_init = Duration::ZERO;
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loop {
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total_count += counter.fetch_and(0, Ordering::SeqCst) as f32 / n_streams_f32;
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if let Some(max_buffers) = max_buffers {
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if total_count > max_buffers {
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gst::info!(CAT, "Stopping");
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let stopping_instant = Instant::now();
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pipeline.set_state(gst::State::Ready).unwrap();
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gst::info!(CAT, "Stopped. Took {:?}", stopping_instant.elapsed());
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pipeline.set_state(gst::State::Null).unwrap();
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gst::info!(CAT, "Unprepared");
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l_clone.quit();
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break;
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}
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}
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if let Some(init) = ramp_up_complete_instant {
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let elapsed = init.elapsed();
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gst::info!(
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CAT,
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"Thrpt: {:>6.2}",
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total_count * 1_000.0 / elapsed.as_millis() as f32
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);
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#[cfg(feature = "tuning")]
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gst::info!(
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CAT,
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"Parked: {:>6.2}%",
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(ctx_0.parked_duration() - parked_init).as_nanos() as f32 * 100.0
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/ elapsed.as_nanos() as f32
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);
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} else {
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// Ramp up 30s worth of buffers before following parked
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if total_count > 50.0 * 30.0 {
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total_count = 0.0;
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ramp_up_complete_instant = Some(Instant::now());
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#[cfg(feature = "tuning")]
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{
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parked_init = ctx_0.parked_duration();
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}
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}
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}
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thread::sleep(THROUGHPUT_PERIOD);
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}
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});
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l.run();
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}
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