gst-plugins-rs/gst-plugin-threadshare/src/udpsrc.rs

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// Copyright (C) 2018 Sebastian Dröge <sebastian@centricular.com>
//
// This library is free software; you can redistribute it and/or
// modify it under the terms of the GNU Library General Public
// License as published by the Free Software Foundation; either
// version 2 of the License, or (at your option) any later version.
//
// This library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
// Library General Public License for more details.
//
// You should have received a copy of the GNU Library General Public
// License along with this library; if not, write to the
// Free Software Foundation, Inc., 51 Franklin Street, Suite 500,
// Boston, MA 02110-1335, USA.
use either::Either;
use futures::future::BoxFuture;
use futures::lock::{Mutex, MutexGuard};
use futures::prelude::*;
use gio;
use gio_sys as gio_ffi;
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use glib;
use glib::prelude::*;
use glib::subclass;
use glib::subclass::prelude::*;
use glib::{glib_object_impl, glib_object_subclass};
use gobject_sys as gobject_ffi;
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use gst;
use gst::prelude::*;
use gst::subclass::prelude::*;
use gst::{gst_debug, gst_element_error, gst_error, gst_error_msg, gst_log, gst_trace};
use gst::{EventView, QueryView};
use gst_net::*;
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use lazy_static::lazy_static;
use rand;
use std::io;
use std::net::{IpAddr, Ipv4Addr, Ipv6Addr, SocketAddr};
use std::sync::Arc;
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use std::u16;
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#[cfg(unix)]
use std::os::unix::io::{AsRawFd, FromRawFd, IntoRawFd, RawFd};
#[cfg(windows)]
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use std::os::windows::io::{AsRawSocket, FromRawSocket, IntoRawSocket, RawSocket};
use crate::block_on;
use crate::runtime::prelude::*;
use crate::runtime::{Context, PadSrc, PadSrcRef};
use super::socket::{Socket, SocketRead, SocketStream};
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const DEFAULT_ADDRESS: Option<&str> = Some("127.0.0.1");
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const DEFAULT_PORT: u32 = 5000;
const DEFAULT_REUSE: bool = true;
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const DEFAULT_CAPS: Option<gst::Caps> = None;
const DEFAULT_MTU: u32 = 1500;
const DEFAULT_SOCKET: Option<GioSocketWrapper> = None;
const DEFAULT_USED_SOCKET: Option<GioSocketWrapper> = None;
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const DEFAULT_CONTEXT: &str = "";
const DEFAULT_CONTEXT_WAIT: u32 = 0;
const DEFAULT_RETRIEVE_SENDER_ADDRESS: bool = true;
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// Send/Sync struct for passing around a gio::Socket
// and getting the raw fd from it
//
// gio::Socket is not Send/Sync as it's generally unsafe
// to access it from multiple threads. Getting the underlying raw
// fd is safe though, as is receiving/sending from two different threads
#[derive(Debug)]
struct GioSocketWrapper {
socket: *mut gio_ffi::GSocket,
}
unsafe impl Send for GioSocketWrapper {}
unsafe impl Sync for GioSocketWrapper {}
impl GioSocketWrapper {
fn new(socket: &gio::Socket) -> Self {
use glib::translate::*;
Self {
socket: socket.to_glib_full(),
}
}
fn as_socket(&self) -> gio::Socket {
unsafe {
use glib::translate::*;
from_glib_none(self.socket)
}
}
#[cfg(unix)]
fn get<T: FromRawFd>(&self) -> T {
unsafe { FromRawFd::from_raw_fd(libc::dup(gio_ffi::g_socket_get_fd(self.socket))) }
}
#[cfg(windows)]
fn get<T: FromRawSocket>(&self) -> T {
unsafe {
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FromRawSocket::from_raw_socket(
dup_socket(gio_ffi::g_socket_get_fd(self.socket) as _) as _
)
}
}
}
impl Clone for GioSocketWrapper {
fn clone(&self) -> Self {
Self {
socket: unsafe { gobject_ffi::g_object_ref(self.socket as *mut _) as *mut _ },
}
}
}
impl Drop for GioSocketWrapper {
fn drop(&mut self) {
unsafe {
gobject_ffi::g_object_unref(self.socket as *mut _);
}
}
}
#[cfg(windows)]
unsafe fn dup_socket(socket: usize) -> usize {
use std::mem;
use winapi::shared::ws2def;
use winapi::um::processthreadsapi;
use winapi::um::winsock2;
let mut proto_info = mem::MaybeUninit::uninit();
let ret = winsock2::WSADuplicateSocketA(
socket,
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processthreadsapi::GetCurrentProcessId(),
proto_info.as_mut_ptr(),
);
assert_eq!(ret, 0);
let mut proto_info = proto_info.assume_init();
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let socket = winsock2::WSASocketA(
ws2def::AF_INET,
ws2def::SOCK_DGRAM,
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ws2def::IPPROTO_UDP as i32,
&mut proto_info,
0,
0,
);
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assert_ne!(socket, winsock2::INVALID_SOCKET);
socket
}
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#[derive(Debug, Clone)]
struct Settings {
address: Option<String>,
port: u32,
reuse: bool,
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caps: Option<gst::Caps>,
mtu: u32,
socket: Option<GioSocketWrapper>,
used_socket: Option<GioSocketWrapper>,
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context: String,
context_wait: u32,
retrieve_sender_address: bool,
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}
impl Default for Settings {
fn default() -> Self {
Settings {
address: DEFAULT_ADDRESS.map(Into::into),
port: DEFAULT_PORT,
reuse: DEFAULT_REUSE,
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caps: DEFAULT_CAPS,
mtu: DEFAULT_MTU,
socket: DEFAULT_SOCKET,
used_socket: DEFAULT_USED_SOCKET,
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context: DEFAULT_CONTEXT.into(),
context_wait: DEFAULT_CONTEXT_WAIT,
retrieve_sender_address: DEFAULT_RETRIEVE_SENDER_ADDRESS,
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}
}
}
static PROPERTIES: [subclass::Property; 10] = [
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subclass::Property("address", |name| {
glib::ParamSpec::string(
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name,
"Address",
"Address/multicast group to listen on",
DEFAULT_ADDRESS,
glib::ParamFlags::READWRITE,
)
}),
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subclass::Property("port", |name| {
glib::ParamSpec::uint(
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name,
"Port",
"Port to listen on",
0,
u16::MAX as u32,
DEFAULT_PORT,
glib::ParamFlags::READWRITE,
)
}),
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subclass::Property("reuse", |name| {
glib::ParamSpec::boolean(
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name,
"Reuse",
"Allow reuse of the port",
DEFAULT_REUSE,
glib::ParamFlags::READWRITE,
)
}),
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subclass::Property("caps", |name| {
glib::ParamSpec::boxed(
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name,
"Caps",
"Caps to use",
gst::Caps::static_type(),
glib::ParamFlags::READWRITE,
)
}),
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subclass::Property("mtu", |name| {
glib::ParamSpec::uint(
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name,
"MTU",
"MTU",
0,
u16::MAX as u32,
DEFAULT_MTU,
glib::ParamFlags::READWRITE,
)
}),
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subclass::Property("socket", |name| {
glib::ParamSpec::object(
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name,
"Socket",
"Socket to use for UDP reception. (None == allocate)",
gio::Socket::static_type(),
glib::ParamFlags::READWRITE,
)
}),
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subclass::Property("used-socket", |name| {
glib::ParamSpec::object(
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name,
"Used Socket",
"Socket currently in use for UDP reception. (None = no socket)",
gio::Socket::static_type(),
glib::ParamFlags::READABLE,
)
}),
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subclass::Property("context", |name| {
glib::ParamSpec::string(
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name,
"Context",
"Context name to share threads with",
Some(DEFAULT_CONTEXT),
glib::ParamFlags::READWRITE,
)
}),
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subclass::Property("context-wait", |name| {
glib::ParamSpec::uint(
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name,
"Context Wait",
"Throttle poll loop to run at most once every this many ms",
0,
1000,
DEFAULT_CONTEXT_WAIT,
glib::ParamFlags::READWRITE,
)
}),
subclass::Property("retrieve-sender-address", |name| {
glib::ParamSpec::boolean(
name,
"Retrieve sender address",
"Whether to retrieve the sender address and add it to buffers as meta. Disabling this might result in minor performance improvements in certain scenarios",
DEFAULT_REUSE,
glib::ParamFlags::READWRITE,
)
}),
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];
#[derive(Debug)]
struct UdpReaderInner {
socket: tokio::net::udp::UdpSocket,
}
#[derive(Debug)]
pub struct UdpReader(Arc<Mutex<UdpReaderInner>>);
impl UdpReader {
fn new(socket: tokio::net::udp::UdpSocket) -> Self {
UdpReader(Arc::new(Mutex::new(UdpReaderInner { socket })))
}
}
impl SocketRead for UdpReader {
const DO_TIMESTAMP: bool = true;
fn read<'buf>(
&self,
buffer: &'buf mut [u8],
) -> BoxFuture<'buf, io::Result<(usize, Option<std::net::SocketAddr>)>> {
let this = Arc::clone(&self.0);
async move {
this.lock()
.await
.socket
.recv_from(buffer)
.await
.map(|(read_size, saddr)| (read_size, Some(saddr)))
}
.boxed()
}
}
#[derive(Debug)]
struct UdpSrcPadHandlerInner {
retrieve_sender_address: bool,
socket_stream: Option<SocketStream<UdpReader>>,
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need_initial_events: bool,
configured_caps: Option<gst::Caps>,
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}
impl Default for UdpSrcPadHandlerInner {
fn default() -> Self {
UdpSrcPadHandlerInner {
retrieve_sender_address: true,
socket_stream: None,
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need_initial_events: true,
configured_caps: None,
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}
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}
}
#[derive(Clone, Debug)]
struct UdpSrcPadHandler(Arc<Mutex<UdpSrcPadHandlerInner>>);
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impl UdpSrcPadHandler {
fn new() -> Self {
UdpSrcPadHandler(Arc::new(Mutex::new(UdpSrcPadHandlerInner::default())))
}
#[inline]
async fn lock(&self) -> MutexGuard<'_, UdpSrcPadHandlerInner> {
self.0.lock().await
}
async fn start_task(&self, pad: PadSrcRef<'_>, element: &gst::Element) {
let this = self.clone();
let pad_weak = pad.downgrade();
let element = element.clone();
pad.start_task(move || {
let this = this.clone();
let pad_weak = pad_weak.clone();
let element = element.clone();
async move {
let item = this
.lock()
.await
.socket_stream
.as_mut()
.expect("Missing SocketStream")
.next()
.await;
let pad = pad_weak.upgrade().expect("PadSrc no longer exists");
let (mut buffer, saddr) = match item {
Some(Ok((buffer, saddr))) => (buffer, saddr),
Some(Err(err)) => {
gst_error!(CAT, obj: &element, "Got error {}", err);
match err {
Either::Left(gst::FlowError::CustomError) => (),
Either::Left(err) => {
gst_element_error!(
element,
gst::StreamError::Failed,
("Internal data stream error"),
["streaming stopped, reason {}", err]
);
}
Either::Right(err) => {
gst_element_error!(
element,
gst::StreamError::Failed,
("I/O error"),
["streaming stopped, I/O error {}", err]
);
}
}
return;
}
None => {
gst_log!(CAT, obj: pad.gst_pad(), "SocketStream Stopped");
pad.pause_task().await;
return;
}
};
if let Some(saddr) = saddr {
if this.lock().await.retrieve_sender_address {
let inet_addr = match saddr.ip() {
IpAddr::V4(ip) => gio::InetAddress::new_from_bytes(
gio::InetAddressBytes::V4(&ip.octets()),
),
IpAddr::V6(ip) => gio::InetAddress::new_from_bytes(
gio::InetAddressBytes::V6(&ip.octets()),
),
};
let inet_socket_addr =
&gio::InetSocketAddress::new(&inet_addr, saddr.port());
NetAddressMeta::add(buffer.get_mut().unwrap(), inet_socket_addr);
}
}
this.push_buffer(pad, &element, buffer).await;
}
})
.await;
}
async fn push_buffer(&self, pad: PadSrcRef<'_>, element: &gst::Element, buffer: gst::Buffer) {
{
let mut events = Vec::new();
{
let mut inner = self.lock().await;
if inner.need_initial_events {
gst_debug!(CAT, obj: pad.gst_pad(), "Pushing initial events");
let stream_id =
format!("{:08x}{:08x}", rand::random::<u32>(), rand::random::<u32>());
events.push(
gst::Event::new_stream_start(&stream_id)
.group_id(gst::util_group_id_next())
.build(),
);
let udpsrc = UdpSrc::from_instance(element);
if let Some(ref caps) = udpsrc.settings.lock().await.caps {
events.push(gst::Event::new_caps(&caps).build());
inner.configured_caps = Some(caps.clone());
}
events.push(
gst::Event::new_segment(&gst::FormattedSegment::<gst::format::Time>::new())
.build(),
);
inner.need_initial_events = false;
}
}
for event in events {
pad.push_event(event).await;
}
}
match pad.push(buffer).await {
Ok(_) => {
gst_log!(CAT, obj: pad.gst_pad(), "Successfully pushed buffer");
}
Err(gst::FlowError::Flushing) => {
gst_debug!(CAT, obj: pad.gst_pad(), "Flushing");
pad.pause_task().await;
}
Err(gst::FlowError::Eos) => {
gst_debug!(CAT, obj: pad.gst_pad(), "EOS");
pad.pause_task().await;
}
Err(err) => {
gst_error!(CAT, obj: pad.gst_pad(), "Got error {}", err);
gst_element_error!(
element,
gst::StreamError::Failed,
("Internal data stream error"),
["streaming stopped, reason {}", err]
);
}
}
}
}
impl PadSrcHandler for UdpSrcPadHandler {
type ElementImpl = UdpSrc;
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fn src_event(
&self,
pad: PadSrcRef,
udpsrc: &UdpSrc,
element: &gst::Element,
event: gst::Event,
) -> Either<bool, BoxFuture<'static, bool>> {
gst_log!(CAT, obj: pad.gst_pad(), "Handling event {:?}", event);
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let ret = match event.view() {
EventView::FlushStart(..) => {
let _ = block_on!(udpsrc.pause(element));
true
}
EventView::FlushStop(..) => {
let (res, state, pending) = element.get_state(0.into());
if res == Ok(gst::StateChangeSuccess::Success) && state == gst::State::Playing
|| res == Ok(gst::StateChangeSuccess::Async) && pending == gst::State::Playing
{
let _ = block_on!(udpsrc.start(element));
}
true
}
EventView::Reconfigure(..) => true,
EventView::Latency(..) => true,
_ => false,
};
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if ret {
gst_log!(CAT, obj: pad.gst_pad(), "Handled event {:?}", event);
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} else {
gst_log!(CAT, obj: pad.gst_pad(), "Didn't handle event {:?}", event);
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}
Either::Left(ret)
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}
fn src_query(
&self,
pad: PadSrcRef,
_udpsrc: &UdpSrc,
_element: &gst::Element,
query: &mut gst::QueryRef,
) -> bool {
gst_log!(CAT, obj: pad.gst_pad(), "Handling query {:?}", query);
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let ret = match query.view_mut() {
QueryView::Latency(ref mut q) => {
q.set(true, 0.into(), 0.into());
true
}
QueryView::Scheduling(ref mut q) => {
q.set(gst::SchedulingFlags::SEQUENTIAL, 1, -1, 0);
q.add_scheduling_modes(&[gst::PadMode::Push]);
true
}
QueryView::Caps(ref mut q) => {
let inner = block_on!(self.lock());
let caps = if let Some(ref caps) = inner.configured_caps {
q.get_filter()
.map(|f| f.intersect_with_mode(caps, gst::CapsIntersectMode::First))
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.unwrap_or_else(|| caps.clone())
} else {
q.get_filter()
.map(|f| f.to_owned())
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.unwrap_or_else(gst::Caps::new_any)
};
q.set_result(&caps);
true
}
_ => false,
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};
if ret {
gst_log!(CAT, obj: pad.gst_pad(), "Handled query {:?}", query);
} else {
gst_log!(CAT, obj: pad.gst_pad(), "Didn't handle query {:?}", query);
}
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ret
}
}
#[derive(Debug)]
struct State {
socket: Option<Socket<UdpReader>>,
}
impl Default for State {
fn default() -> State {
State { socket: None }
}
}
#[derive(Debug)]
struct UdpSrc {
src_pad: PadSrc,
src_pad_handler: UdpSrcPadHandler,
state: Mutex<State>,
settings: Mutex<Settings>,
}
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lazy_static! {
static ref CAT: gst::DebugCategory = gst::DebugCategory::new(
"ts-udpsrc",
gst::DebugColorFlags::empty(),
Some("Thread-sharing UDP source"),
);
}
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impl UdpSrc {
async fn prepare(&self, element: &gst::Element) -> Result<(), gst::ErrorMessage> {
let mut state = self.state.lock().await;
gst_debug!(CAT, obj: element, "Preparing");
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let mut settings = self.settings.lock().await.clone();
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let context =
Context::acquire(&settings.context, settings.context_wait).map_err(|err| {
gst_error_msg!(
gst::ResourceError::OpenRead,
["Failed to acquire Context: {}", err]
)
})?;
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let socket = if let Some(ref wrapped_socket) = settings.socket {
use std::net::UdpSocket;
let socket: UdpSocket;
#[cfg(unix)]
{
socket = wrapped_socket.get()
}
#[cfg(windows)]
{
socket = wrapped_socket.get()
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}
let socket = tokio::net::UdpSocket::from_std(socket, context.reactor_handle())
.map_err(|err| {
gst_error_msg!(
gst::ResourceError::OpenRead,
["Failed to setup socket for tokio: {}", err]
)
})?;
settings.used_socket = Some(wrapped_socket.clone());
socket
} else {
let addr: IpAddr = match settings.address {
None => {
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return Err(gst_error_msg!(
gst::ResourceError::Settings,
["No address set"]
));
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}
Some(ref addr) => match addr.parse() {
Err(err) => {
return Err(gst_error_msg!(
gst::ResourceError::Settings,
["Invalid address '{}' set: {}", addr, err]
));
}
Ok(addr) => addr,
},
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};
let port = settings.port;
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// TODO: TTL, multicast loopback, etc
let saddr = if addr.is_multicast() {
// TODO: Use ::unspecified() constructor once stable
let bind_addr = if addr.is_ipv4() {
IpAddr::V4(Ipv4Addr::new(0, 0, 0, 0))
} else {
IpAddr::V6(Ipv6Addr::new(0, 0, 0, 0, 0, 0, 0, 0))
};
let saddr = SocketAddr::new(bind_addr, port as u16);
gst_debug!(
CAT,
obj: element,
"Binding to {:?} for multicast group {:?}",
saddr,
addr
);
saddr
} else {
let saddr = SocketAddr::new(addr, port as u16);
gst_debug!(CAT, obj: element, "Binding to {:?}", saddr);
saddr
};
let builder = if addr.is_ipv4() {
net2::UdpBuilder::new_v4()
} else {
net2::UdpBuilder::new_v6()
}
.map_err(|err| {
gst_error_msg!(
gst::ResourceError::OpenRead,
["Failed to create socket: {}", err]
)
})?;
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builder.reuse_address(settings.reuse).map_err(|err| {
gst_error_msg!(
gst::ResourceError::OpenRead,
["Failed to set reuse_address: {}", err]
)
})?;
#[cfg(unix)]
{
use net2::unix::UnixUdpBuilderExt;
builder.reuse_port(settings.reuse).map_err(|err| {
gst_error_msg!(
gst::ResourceError::OpenRead,
["Failed to set reuse_port: {}", err]
)
})?;
}
let socket = builder.bind(&saddr).map_err(|err| {
gst_error_msg!(
gst::ResourceError::OpenRead,
["Failed to bind socket: {}", err]
)
})?;
let socket = tokio::net::UdpSocket::from_std(socket, context.reactor_handle())
.map_err(|err| {
gst_error_msg!(
gst::ResourceError::OpenRead,
["Failed to setup socket for tokio: {}", err]
)
})?;
if addr.is_multicast() {
// TODO: Multicast interface configuration, going to be tricky
match addr {
IpAddr::V4(addr) => {
socket
.join_multicast_v4(addr, Ipv4Addr::new(0, 0, 0, 0))
.map_err(|err| {
gst_error_msg!(
gst::ResourceError::OpenRead,
["Failed to join multicast group: {}", err]
)
})?;
}
IpAddr::V6(addr) => {
socket.join_multicast_v6(&addr, 0).map_err(|err| {
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gst_error_msg!(
gst::ResourceError::OpenRead,
["Failed to join multicast group: {}", err]
)
})?;
}
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}
}
// Store the socket as used-socket in the settings
#[cfg(unix)]
unsafe {
let fd = libc::dup(socket.as_raw_fd());
// This is unsafe because it allows us to share the fd between the socket and the
// GIO socket below, but safety of this is the job of the application
struct FdConverter(RawFd);
impl IntoRawFd for FdConverter {
fn into_raw_fd(self) -> RawFd {
self.0
}
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}
let fd = FdConverter(fd);
let gio_socket = gio::Socket::new_from_fd(fd).map_err(|err| {
gst_error_msg!(
gst::ResourceError::OpenRead,
["Failed to create wrapped GIO socket: {}", err]
)
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})?;
let wrapper = GioSocketWrapper::new(&gio_socket);
settings.used_socket = Some(wrapper);
}
#[cfg(windows)]
unsafe {
// FIXME: Needs https://github.com/tokio-rs/tokio/pull/806
// and https://github.com/carllerche/mio/pull/859
let fd = unreachable!(); //dup_socket(socket.as_raw_socket() as _) as _;
// This is unsafe because it allows us to share the fd between the socket and the
// GIO socket below, but safety of this is the job of the application
struct SocketConverter(RawSocket);
impl IntoRawSocket for SocketConverter {
fn into_raw_socket(self) -> RawSocket {
self.0
}
}
let fd = SocketConverter(fd);
let gio_socket = gio::Socket::new_from_socket(fd).map_err(|err| {
gst_error_msg!(
gst::ResourceError::OpenRead,
["Failed to create wrapped GIO socket: {}", err]
)
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})?;
let wrapper = GioSocketWrapper::new(&gio_socket);
settings.used_socket = Some(wrapper);
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}
socket
};
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let buffer_pool = gst::BufferPool::new();
let mut config = buffer_pool.get_config();
config.set_params(None, settings.mtu, 0, 0);
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buffer_pool.set_config(config).map_err(|_| {
gst_error_msg!(
gst::ResourceError::Settings,
["Failed to configure buffer pool"]
)
})?;
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let socket = Socket::new(element.upcast_ref(), UdpReader::new(socket), buffer_pool);
let socket_stream = socket.prepare().await.map_err(|_| {
gst_error_msg!(gst::ResourceError::OpenRead, ["Failed to prepare socket"])
})?;
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{
let mut src_pad_handler = self.src_pad_handler.lock().await;
src_pad_handler.retrieve_sender_address = settings.retrieve_sender_address;
src_pad_handler.socket_stream = Some(socket_stream);
}
self.src_pad
.prepare(context, &self.src_pad_handler)
.await
.map_err(|err| {
gst_error_msg!(
gst::ResourceError::OpenRead,
["Error preparing src_pads: {:?}", err]
)
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})?;
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state.socket = Some(socket);
gst_debug!(CAT, obj: element, "Prepared");
drop(state);
element.notify("used-socket");
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Ok(())
}
async fn unprepare(&self, element: &gst::Element) -> Result<(), ()> {
let mut state = self.state.lock().await;
gst_debug!(CAT, obj: element, "Unpreparing");
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self.settings.lock().await.used_socket = None;
self.src_pad.stop_task().await;
{
let socket = state.socket.take().unwrap();
socket.unprepare().await.unwrap();
}
let _ = self.src_pad.unprepare().await;
self.src_pad_handler.lock().await.configured_caps = None;
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gst_debug!(CAT, obj: element, "Unprepared");
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Ok(())
}
async fn start(&self, element: &gst::Element) -> Result<(), ()> {
let state = self.state.lock().await;
gst_debug!(CAT, obj: element, "Starting");
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if let Some(ref socket) = state.socket {
socket
.start(element.get_clock(), Some(element.get_base_time()))
.await;
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}
self.src_pad_handler
.start_task(self.src_pad.as_ref(), element)
.await;
gst_debug!(CAT, obj: element, "Started");
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Ok(())
}
async fn pause(&self, element: &gst::Element) -> Result<(), ()> {
let pause_completion = {
let state = self.state.lock().await;
gst_debug!(CAT, obj: element, "Pausing");
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let pause_completion = self.src_pad.pause_task().await;
state.socket.as_ref().unwrap().pause().await;
pause_completion
};
gst_debug!(CAT, obj: element, "Waiting for Task Pause to complete");
pause_completion.await;
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gst_debug!(CAT, obj: element, "Paused");
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Ok(())
}
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}
impl ObjectSubclass for UdpSrc {
const NAME: &'static str = "RsTsUdpSrc";
type ParentType = gst::Element;
type Instance = gst::subclass::ElementInstanceStruct<Self>;
type Class = subclass::simple::ClassStruct<Self>;
glib_object_subclass!();
fn class_init(klass: &mut subclass::simple::ClassStruct<Self>) {
klass.set_metadata(
"Thread-sharing UDP source",
"Source/Network",
"Receives data over the network via UDP",
"Sebastian Dröge <sebastian@centricular.com>",
);
let caps = gst::Caps::new_any();
let src_pad_template = gst::PadTemplate::new(
"src",
gst::PadDirection::Src,
gst::PadPresence::Always,
&caps,
)
.unwrap();
klass.add_pad_template(src_pad_template);
#[cfg(not(windows))]
{
klass.install_properties(&PROPERTIES);
}
#[cfg(windows)]
{
let properties = PROPERTIES
.iter()
.filter(|p| match *p {
subclass::Property("socket", ..) | subclass::Property("used-socket", ..) => {
false
}
_ => true,
})
.collect::<Vec<_>>();
klass.install_properties(properties.as_slice());
}
}
fn new_with_class(klass: &subclass::simple::ClassStruct<Self>) -> Self {
let templ = klass.get_pad_template("src").unwrap();
let src_pad = PadSrc::new_from_template(&templ, Some("src"));
Self {
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src_pad,
src_pad_handler: UdpSrcPadHandler::new(),
state: Mutex::new(State::default()),
settings: Mutex::new(Settings::default()),
}
}
}
impl ObjectImpl for UdpSrc {
glib_object_impl!();
fn set_property(&self, _obj: &glib::Object, id: usize, value: &glib::Value) {
let prop = &PROPERTIES[id];
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match *prop {
subclass::Property("address", ..) => {
let mut settings = block_on!(self.settings.lock());
settings.address = value.get().expect("type checked upstream");
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}
subclass::Property("port", ..) => {
let mut settings = block_on!(self.settings.lock());
settings.port = value.get_some().expect("type checked upstream");
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}
subclass::Property("reuse", ..) => {
let mut settings = block_on!(self.settings.lock());
settings.reuse = value.get_some().expect("type checked upstream");
}
subclass::Property("caps", ..) => {
let mut settings = block_on!(self.settings.lock());
settings.caps = value.get().expect("type checked upstream");
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}
subclass::Property("mtu", ..) => {
let mut settings = block_on!(self.settings.lock());
settings.mtu = value.get_some().expect("type checked upstream");
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}
subclass::Property("socket", ..) => {
let mut settings = block_on!(self.settings.lock());
settings.socket = value
.get::<gio::Socket>()
.expect("type checked upstream")
.map(|socket| GioSocketWrapper::new(&socket));
}
subclass::Property("used-socket", ..) => {
unreachable!();
}
subclass::Property("context", ..) => {
let mut settings = block_on!(self.settings.lock());
settings.context = value
.get()
.expect("type checked upstream")
.unwrap_or_else(|| "".into());
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}
subclass::Property("context-wait", ..) => {
let mut settings = block_on!(self.settings.lock());
settings.context_wait = value.get_some().expect("type checked upstream");
}
subclass::Property("retrieve-sender-address", ..) => {
let mut settings = block_on!(self.settings.lock());
settings.retrieve_sender_address = value.get_some().expect("type checked upstream");
}
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_ => unimplemented!(),
}
}
fn get_property(&self, _obj: &glib::Object, id: usize) -> Result<glib::Value, ()> {
let prop = &PROPERTIES[id];
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match *prop {
subclass::Property("address", ..) => {
let settings = block_on!(self.settings.lock());
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Ok(settings.address.to_value())
}
subclass::Property("port", ..) => {
let settings = block_on!(self.settings.lock());
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Ok(settings.port.to_value())
}
subclass::Property("reuse", ..) => {
let settings = block_on!(self.settings.lock());
Ok(settings.reuse.to_value())
}
subclass::Property("caps", ..) => {
let settings = block_on!(self.settings.lock());
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Ok(settings.caps.to_value())
}
subclass::Property("mtu", ..) => {
let settings = block_on!(self.settings.lock());
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Ok(settings.mtu.to_value())
}
subclass::Property("socket", ..) => {
let settings = block_on!(self.settings.lock());
Ok(settings
.socket
.as_ref()
.map(GioSocketWrapper::as_socket)
.to_value())
}
subclass::Property("used-socket", ..) => {
let settings = block_on!(self.settings.lock());
Ok(settings
.used_socket
.as_ref()
.map(GioSocketWrapper::as_socket)
.to_value())
}
subclass::Property("context", ..) => {
let settings = block_on!(self.settings.lock());
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Ok(settings.context.to_value())
}
subclass::Property("context-wait", ..) => {
let settings = block_on!(self.settings.lock());
Ok(settings.context_wait.to_value())
}
subclass::Property("retrieve-sender-address", ..) => {
let settings = block_on!(self.settings.lock());
Ok(settings.retrieve_sender_address.to_value())
}
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_ => unimplemented!(),
}
}
fn constructed(&self, obj: &glib::Object) {
self.parent_constructed(obj);
let element = obj.downcast_ref::<gst::Element>().unwrap();
element.add_pad(self.src_pad.gst_pad()).unwrap();
super::set_element_flags(element, gst::ElementFlags::SOURCE);
}
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}
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impl ElementImpl for UdpSrc {
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fn change_state(
&self,
element: &gst::Element,
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transition: gst::StateChange,
) -> Result<gst::StateChangeSuccess, gst::StateChangeError> {
gst_trace!(CAT, obj: element, "Changing state {:?}", transition);
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match transition {
gst::StateChange::NullToReady => {
block_on!(self.prepare(element)).map_err(|err| {
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element.post_error_message(&err);
gst::StateChangeError
})?;
}
gst::StateChange::PlayingToPaused => {
block_on!(self.pause(element)).map_err(|_| gst::StateChangeError)?;
}
gst::StateChange::ReadyToNull => {
block_on!(self.unprepare(element)).map_err(|_| gst::StateChangeError)?;
}
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_ => (),
}
let mut success = self.parent_change_state(element, transition)?;
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match transition {
gst::StateChange::ReadyToPaused => {
success = gst::StateChangeSuccess::NoPreroll;
}
gst::StateChange::PausedToPlaying => {
block_on!(self.start(element)).map_err(|_| gst::StateChangeError)?;
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}
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gst::StateChange::PausedToReady => {
block_on!(async {
self.src_pad_handler.lock().await.need_initial_events = true;
});
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}
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_ => (),
}
Ok(success)
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}
}
pub fn register(plugin: &gst::Plugin) -> Result<(), glib::BoolError> {
gst::Element::register(
Some(plugin),
"ts-udpsrc",
gst::Rank::None,
UdpSrc::get_type(),
)
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}