mirror of
https://gitlab.freedesktop.org/gstreamer/gst-plugins-rs.git
synced 2024-11-29 06:50:59 +00:00
589 lines
19 KiB
Rust
589 lines
19 KiB
Rust
// Copyright (C) 2019 François Laignel <fengalin@free.fr>
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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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use gst::glib;
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use gst::prelude::*;
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use gst::{gst_debug, gst_error};
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use once_cell::sync::Lazy;
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use std::sync::mpsc;
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static CAT: Lazy<gst::DebugCategory> = Lazy::new(|| {
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gst::DebugCategory::new(
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"ts-test",
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gst::DebugColorFlags::empty(),
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Some("Thread-sharing test"),
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)
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});
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fn init() {
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use std::sync::Once;
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static INIT: Once = Once::new();
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INIT.call_once(|| {
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gst::init().unwrap();
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gstthreadshare::plugin_register_static().expect("gstthreadshare pipeline test");
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});
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}
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#[test]
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fn multiple_contexts_queue() {
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use std::net;
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use std::net::{IpAddr, Ipv4Addr, SocketAddr};
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use std::sync::mpsc;
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init();
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const CONTEXT_NB: u32 = 2;
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const SRC_NB: u16 = 4;
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const CONTEXT_WAIT: u32 = 1;
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const BUFFER_NB: u32 = 3;
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const FIRST_PORT: u16 = 40000;
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let l = glib::MainLoop::new(None, false);
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let pipeline = gst::Pipeline::new(None);
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let (sender, receiver) = mpsc::channel();
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for i in 0..SRC_NB {
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let src =
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gst::ElementFactory::make("ts-udpsrc", Some(format!("src-{}", i).as_str())).unwrap();
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src.set_property("context", format!("context-{}", (i as u32) % CONTEXT_NB));
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src.set_property("context-wait", CONTEXT_WAIT);
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src.set_property("port", (FIRST_PORT + i) as i32);
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let queue =
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gst::ElementFactory::make("ts-queue", Some(format!("queue-{}", i).as_str())).unwrap();
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queue.set_property("context", format!("context-{}", (i as u32) % CONTEXT_NB));
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queue.set_property("context-wait", CONTEXT_WAIT);
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let sink =
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gst::ElementFactory::make("appsink", Some(format!("sink-{}", i).as_str())).unwrap();
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sink.set_property("sync", false);
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sink.set_property("async", false);
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sink.set_property("emit-signals", true);
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pipeline.add_many(&[&src, &queue, &sink]).unwrap();
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gst::Element::link_many(&[&src, &queue, &sink]).unwrap();
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let appsink = sink.dynamic_cast::<gst_app::AppSink>().unwrap();
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let sender_clone = sender.clone();
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appsink.set_callbacks(
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gst_app::AppSinkCallbacks::builder()
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.new_sample(move |appsink| {
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let _sample = appsink.pull_sample().unwrap();
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sender_clone.send(()).unwrap();
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Ok(gst::FlowSuccess::Ok)
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})
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.build(),
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);
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}
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let pipeline_clone = pipeline.clone();
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let l_clone = l.clone();
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let mut test_scenario = Some(move || {
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let buffer = [0; 160];
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let socket = net::UdpSocket::bind("0.0.0.0:0").unwrap();
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let ipaddr = IpAddr::V4(Ipv4Addr::new(127, 0, 0, 1));
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let destinations = (FIRST_PORT..(FIRST_PORT + SRC_NB))
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.map(|port| SocketAddr::new(ipaddr, port))
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.collect::<Vec<_>>();
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for _ in 0..BUFFER_NB {
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for dest in &destinations {
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gst_debug!(CAT, "multiple_contexts_queue: sending buffer to {:?}", dest);
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socket.send_to(&buffer, dest).unwrap();
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std::thread::sleep(std::time::Duration::from_millis(CONTEXT_WAIT as u64));
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}
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}
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gst_debug!(
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CAT,
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"multiple_contexts_queue: waiting for all buffers notifications"
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);
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for _ in 0..(BUFFER_NB * (SRC_NB as u32)) {
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receiver.recv().unwrap();
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}
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pipeline_clone.set_state(gst::State::Null).unwrap();
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l_clone.quit();
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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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bus.add_watch(move |_, msg| {
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use gst::MessageView;
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match msg.view() {
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MessageView::StateChanged(state_changed) => {
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if let Some(source) = state_changed.src() {
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if source.type_() == gst::Pipeline::static_type()
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&& state_changed.old() == gst::State::Paused
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&& state_changed.current() == gst::State::Playing
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{
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if let Some(test_scenario) = test_scenario.take() {
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std::thread::spawn(test_scenario);
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}
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}
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}
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}
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MessageView::Error(err) => {
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gst_error!(
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CAT,
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"multiple_contexts_queue: 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::Continue(true)
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})
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.unwrap();
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pipeline.set_state(gst::State::Playing).unwrap();
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gst_debug!(CAT, "Starting main loop for multiple_contexts_queue...");
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l.run();
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gst_debug!(CAT, "Stopping main loop for multiple_contexts_queue...");
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}
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#[test]
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fn multiple_contexts_proxy() {
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use std::net;
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use std::net::{IpAddr, Ipv4Addr, SocketAddr};
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init();
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const CONTEXT_NB: u32 = 2;
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const SRC_NB: u16 = 4;
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const CONTEXT_WAIT: u32 = 1;
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const BUFFER_NB: u32 = 3;
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// Don't overlap with `multiple_contexts_queue`
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const OFFSET: u16 = 10;
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const FIRST_PORT: u16 = 40000 + OFFSET;
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let l = glib::MainLoop::new(None, false);
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let pipeline = gst::Pipeline::new(None);
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let (sender, receiver) = mpsc::channel();
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for i in 0..SRC_NB {
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let pipeline_index = i + OFFSET;
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let src = gst::ElementFactory::make(
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"ts-udpsrc",
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Some(format!("src-{}", pipeline_index).as_str()),
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)
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.unwrap();
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src.set_property("context", format!("context-{}", (i as u32) % CONTEXT_NB));
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src.set_property("context-wait", CONTEXT_WAIT);
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src.set_property("port", (FIRST_PORT + i) as i32);
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let proxysink = gst::ElementFactory::make(
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"ts-proxysink",
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Some(format!("proxysink-{}", pipeline_index).as_str()),
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)
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.unwrap();
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proxysink.set_property("proxy-context", format!("proxy-{}", pipeline_index));
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let proxysrc = gst::ElementFactory::make(
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"ts-proxysrc",
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Some(format!("proxysrc-{}", pipeline_index).as_str()),
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)
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.unwrap();
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proxysrc.set_property(
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"context",
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&format!("context-{}", (pipeline_index as u32) % CONTEXT_NB),
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);
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proxysrc.set_property("proxy-context", format!("proxy-{}", pipeline_index));
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let sink =
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gst::ElementFactory::make("appsink", Some(format!("sink-{}", pipeline_index).as_str()))
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.unwrap();
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sink.set_property("sync", false);
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sink.set_property("async", false);
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sink.set_property("emit-signals", true);
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pipeline
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.add_many(&[&src, &proxysink, &proxysrc, &sink])
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.unwrap();
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src.link(&proxysink).unwrap();
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proxysrc.link(&sink).unwrap();
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let appsink = sink.dynamic_cast::<gst_app::AppSink>().unwrap();
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let sender_clone = sender.clone();
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appsink.set_callbacks(
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gst_app::AppSinkCallbacks::builder()
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.new_sample(move |appsink| {
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let _sample = appsink.pull_sample().unwrap();
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sender_clone.send(()).unwrap();
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Ok(gst::FlowSuccess::Ok)
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})
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.build(),
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);
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}
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let pipeline_clone = pipeline.clone();
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let l_clone = l.clone();
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let mut test_scenario = Some(move || {
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let buffer = [0; 160];
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let socket = net::UdpSocket::bind("0.0.0.0:0").unwrap();
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let ipaddr = IpAddr::V4(Ipv4Addr::new(127, 0, 0, 1));
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let destinations = (FIRST_PORT..(FIRST_PORT + SRC_NB))
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.map(|port| SocketAddr::new(ipaddr, port))
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.collect::<Vec<_>>();
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for _ in 0..BUFFER_NB {
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for dest in &destinations {
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gst_debug!(CAT, "multiple_contexts_proxy: sending buffer to {:?}", dest);
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socket.send_to(&buffer, dest).unwrap();
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std::thread::sleep(std::time::Duration::from_millis(CONTEXT_WAIT as u64));
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}
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}
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gst_debug!(
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CAT,
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"multiple_contexts_proxy: waiting for all buffers notifications"
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);
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for _ in 0..(BUFFER_NB * (SRC_NB as u32)) {
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receiver.recv().unwrap();
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}
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pipeline_clone.set_state(gst::State::Null).unwrap();
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l_clone.quit();
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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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bus.add_watch(move |_, msg| {
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use gst::MessageView;
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match msg.view() {
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MessageView::StateChanged(state_changed) => {
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if let Some(source) = state_changed.src() {
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if source.type_() == gst::Pipeline::static_type()
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&& state_changed.old() == gst::State::Paused
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&& state_changed.current() == gst::State::Playing
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{
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if let Some(test_scenario) = test_scenario.take() {
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std::thread::spawn(test_scenario);
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}
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}
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}
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}
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MessageView::Error(err) => {
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gst_error!(
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CAT,
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"multiple_contexts_proxy: 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::Continue(true)
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})
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.unwrap();
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pipeline.set_state(gst::State::Playing).unwrap();
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gst_debug!(CAT, "Starting main loop for multiple_contexts_proxy...");
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l.run();
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gst_debug!(CAT, "Stopping main loop for multiple_contexts_proxy...");
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}
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#[test]
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fn eos() {
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const CONTEXT: &str = "test_eos";
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init();
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let l = glib::MainLoop::new(None, false);
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let pipeline = gst::Pipeline::new(None);
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let caps = gst::Caps::builder("foo/bar").build();
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let src = gst::ElementFactory::make("ts-appsrc", Some("src-eos")).unwrap();
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src.set_property("caps", &caps);
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src.set_property("do-timestamp", true);
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src.set_property("context", &CONTEXT);
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let queue = gst::ElementFactory::make("ts-queue", Some("queue-eos")).unwrap();
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queue.set_property("context", &CONTEXT);
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let appsink = gst::ElementFactory::make("appsink", Some("sink-eos")).unwrap();
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pipeline.add_many(&[&src, &queue, &appsink]).unwrap();
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gst::Element::link_many(&[&src, &queue, &appsink]).unwrap();
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appsink.set_property("sync", false);
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appsink.set_property("async", false);
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appsink.set_property("emit-signals", true);
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let (sample_notifier, sample_notif_rcv) = mpsc::channel();
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let (eos_notifier, eos_notif_rcv) = mpsc::channel();
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let appsink = appsink.dynamic_cast::<gst_app::AppSink>().unwrap();
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appsink.set_callbacks(
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gst_app::AppSinkCallbacks::builder()
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.new_sample(move |appsink| {
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gst_debug!(CAT, obj: appsink, "eos: pulling sample");
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let _ = appsink.pull_sample().unwrap();
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sample_notifier.send(()).unwrap();
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Ok(gst::FlowSuccess::Ok)
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})
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.eos(move |_appsink| eos_notifier.send(()).unwrap())
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.build(),
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);
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fn push_buffer(src: &gst::Element) -> bool {
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gst_debug!(CAT, obj: src, "eos: pushing buffer");
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src.emit_by_name::<bool>("push-buffer", &[&gst::Buffer::from_slice(vec![0; 1024])])
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}
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let pipeline_clone = pipeline.clone();
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let l_clone = l.clone();
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let mut scenario = Some(move || {
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// Initialize the dataflow
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assert!(push_buffer(&src));
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sample_notif_rcv.recv().unwrap();
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assert!(src.emit_by_name::<bool>("end-of-stream", &[]));
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eos_notif_rcv.recv().unwrap();
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// FIXME not ideal, but better than previous approach.
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// I think the "end-of-stream" signal should block
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// until the **src** element has actually reached EOS
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loop {
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std::thread::sleep(std::time::Duration::from_millis(10));
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if !push_buffer(&src) {
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break;
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}
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}
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pipeline_clone.set_state(gst::State::Null).unwrap();
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l_clone.quit();
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});
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let l_clone = l.clone();
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pipeline
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.bus()
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.unwrap()
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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::StateChanged(state_changed) => {
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if let Some(source) = state_changed.src() {
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if source.type_() != gst::Pipeline::static_type() {
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return glib::Continue(true);
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}
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if state_changed.old() == gst::State::Paused
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&& state_changed.current() == gst::State::Playing
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{
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if let Some(scenario) = scenario.take() {
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std::thread::spawn(scenario);
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}
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}
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}
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}
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MessageView::Error(err) => {
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gst_error!(
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CAT,
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"eos: 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::Continue(true)
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})
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.unwrap();
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pipeline.set_state(gst::State::Playing).unwrap();
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gst_debug!(CAT, "Starting main loop for eos...");
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l.run();
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gst_debug!(CAT, "Stopping main loop for eos...");
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}
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#[test]
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fn premature_shutdown() {
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init();
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const APPSRC_CONTEXT_WAIT: u32 = 0;
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const QUEUE_CONTEXT_WAIT: u32 = 1;
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const QUEUE_ITEMS_CAPACITY: u32 = 1;
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let l = glib::MainLoop::new(None, false);
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let pipeline = gst::Pipeline::new(None);
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let caps = gst::Caps::builder("foo/bar").build();
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let src = gst::ElementFactory::make("ts-appsrc", Some("src-ps")).unwrap();
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src.set_property("caps", &caps);
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src.set_property("do-timestamp", true);
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src.set_property("context", "appsrc-context");
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src.set_property("context-wait", APPSRC_CONTEXT_WAIT);
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let queue = gst::ElementFactory::make("ts-queue", Some("queue-ps")).unwrap();
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queue.set_property("context", "queue-context");
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queue.set_property("context-wait", QUEUE_CONTEXT_WAIT);
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queue.set_property("max-size-buffers", QUEUE_ITEMS_CAPACITY);
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let appsink = gst::ElementFactory::make("appsink", Some("sink-ps")).unwrap();
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pipeline.add_many(&[&src, &queue, &appsink]).unwrap();
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gst::Element::link_many(&[&src, &queue, &appsink]).unwrap();
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appsink.set_property("emit-signals", true);
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appsink.set_property("sync", false);
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appsink.set_property("async", false);
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let (appsink_sender, appsink_receiver) = mpsc::channel();
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let appsink = appsink.dynamic_cast::<gst_app::AppSink>().unwrap();
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appsink.set_callbacks(
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gst_app::AppSinkCallbacks::builder()
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.new_sample(move |appsink| {
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gst_debug!(CAT, obj: appsink, "premature_shutdown: pulling sample");
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let _sample = appsink.pull_sample().unwrap();
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appsink_sender.send(()).unwrap();
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Ok(gst::FlowSuccess::Ok)
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})
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.build(),
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);
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fn push_buffer(src: &gst::Element, intent: &str) -> bool {
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gst_debug!(
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CAT,
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obj: src,
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"premature_shutdown: pushing buffer {}",
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intent
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);
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src.emit_by_name::<bool>("push-buffer", &[&gst::Buffer::from_slice(vec![0; 1024])])
|
|
}
|
|
|
|
let pipeline_clone = pipeline.clone();
|
|
let l_clone = l.clone();
|
|
let mut scenario = Some(move || {
|
|
gst_debug!(CAT, "premature_shutdown: STEP 1: Playing");
|
|
// Initialize the dataflow
|
|
assert!(push_buffer(&src, "(initial)"));
|
|
|
|
// Wait for the buffer to reach AppSink
|
|
appsink_receiver.recv().unwrap();
|
|
assert_eq!(
|
|
appsink_receiver.try_recv().unwrap_err(),
|
|
mpsc::TryRecvError::Empty
|
|
);
|
|
|
|
assert!(push_buffer(&src, "before Playing -> Paused"));
|
|
|
|
gst_debug!(CAT, "premature_shutdown: STEP 2: Playing -> Paused");
|
|
pipeline_clone.set_state(gst::State::Paused).unwrap();
|
|
|
|
gst_debug!(CAT, "premature_shutdown: STEP 3: Paused -> Playing");
|
|
pipeline_clone.set_state(gst::State::Playing).unwrap();
|
|
|
|
gst_debug!(CAT, "premature_shutdown: Playing again");
|
|
|
|
gst_debug!(CAT, "Waiting for buffer sent before Playing -> Paused");
|
|
appsink_receiver.recv().unwrap();
|
|
|
|
assert!(push_buffer(&src, "after Paused -> Playing"));
|
|
gst_debug!(CAT, "Waiting for buffer sent after Paused -> Playing");
|
|
appsink_receiver.recv().unwrap();
|
|
|
|
// Fill up the (dataqueue) and abruptly shutdown
|
|
assert!(push_buffer(&src, "filling 1"));
|
|
assert!(push_buffer(&src, "filling 2"));
|
|
|
|
gst_debug!(CAT, "premature_shutdown: STEP 4: Playing -> Null");
|
|
|
|
pipeline_clone.set_state(gst::State::Null).unwrap();
|
|
|
|
assert!(!push_buffer(&src, "after Null"));
|
|
|
|
l_clone.quit();
|
|
});
|
|
|
|
let l_clone = l.clone();
|
|
pipeline
|
|
.bus()
|
|
.unwrap()
|
|
.add_watch(move |_, msg| {
|
|
use gst::MessageView;
|
|
|
|
match msg.view() {
|
|
MessageView::StateChanged(state_changed) => {
|
|
if let Some(source) = state_changed.src() {
|
|
if source.type_() != gst::Pipeline::static_type() {
|
|
return glib::Continue(true);
|
|
}
|
|
if state_changed.old() == gst::State::Paused
|
|
&& state_changed.current() == gst::State::Playing
|
|
{
|
|
if let Some(scenario) = scenario.take() {
|
|
std::thread::spawn(scenario);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
MessageView::Error(err) => {
|
|
gst_error!(
|
|
CAT,
|
|
"premature_shutdown: Error from {:?}: {} ({:?})",
|
|
err.src().map(|s| s.path_string()),
|
|
err.error(),
|
|
err.debug()
|
|
);
|
|
l_clone.quit();
|
|
}
|
|
_ => (),
|
|
};
|
|
|
|
glib::Continue(true)
|
|
})
|
|
.unwrap();
|
|
|
|
pipeline.set_state(gst::State::Playing).unwrap();
|
|
|
|
gst_debug!(CAT, "Starting main loop for premature_shutdown...");
|
|
l.run();
|
|
gst_debug!(CAT, "Stopped main loop for premature_shutdown...");
|
|
}
|