2021-10-22 13:51:21 +00:00
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// Take a look at the license at the top of the repository in the LICENSE file.
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use std::ptr;
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2023-01-03 18:58:25 +00:00
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use glib::{ffi::gpointer, prelude::*, translate::*};
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use crate::TaskPool;
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2021-10-22 13:51:21 +00:00
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unsafe extern "C" fn task_pool_trampoline<P: FnOnce() + Send + 'static>(data: gpointer) {
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let func = Box::from_raw(data as *mut P);
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func()
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}
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2023-07-05 20:21:43 +00:00
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mod sealed {
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pub trait Sealed {}
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impl<T: super::IsA<super::TaskPool>> Sealed for T {}
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2021-10-22 13:51:21 +00:00
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}
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2023-07-05 20:21:43 +00:00
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pub trait TaskPoolExtManual: sealed::Sealed + IsA<TaskPool> + 'static {
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#[doc(alias = "gst_task_pool_push")]
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2021-10-22 13:51:21 +00:00
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fn push<P: FnOnce() + Send + 'static>(
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&self,
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func: P,
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) -> Result<Option<TaskPoolTaskHandle>, glib::Error> {
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unsafe {
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let mut error = ptr::null_mut();
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let func: Box<P> = Box::new(func);
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let func = Box::into_raw(func);
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let handle = ffi::gst_task_pool_push(
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self.as_ref().to_glib_none().0,
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Some(task_pool_trampoline::<P>),
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func as gpointer,
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&mut error,
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);
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if !error.is_null() {
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2022-12-25 10:47:02 +00:00
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debug_assert!(handle.is_null());
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2021-10-22 13:51:21 +00:00
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// Assume that task_pool_trampoline was
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// not called and will not be called
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drop(Box::from_raw(func));
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return Err(from_glib_full(error));
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}
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let handle = ptr::NonNull::new(handle).map(|handle| TaskPoolTaskHandle {
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handle,
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task_pool: Some(self.as_ref().clone()),
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});
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Ok(handle)
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}
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}
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}
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2023-07-05 20:21:43 +00:00
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impl<O: IsA<TaskPool>> TaskPoolExtManual for O {}
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2021-10-22 13:51:21 +00:00
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impl TaskPool {
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unsafe fn join(&self, id: ptr::NonNull<libc::c_void>) {
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ffi::gst_task_pool_join(self.to_glib_none().0, id.as_ptr())
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}
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2023-05-04 05:55:48 +00:00
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#[cfg(feature = "v1_20")]
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#[cfg_attr(docsrs, doc(cfg(feature = "v1_20")))]
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2021-10-22 13:51:21 +00:00
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unsafe fn dispose_handle(&self, id: ptr::NonNull<libc::c_void>) {
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ffi::gst_task_pool_dispose_handle(self.to_glib_none().0, id.as_ptr())
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}
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}
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// rustdoc-stripper-ignore-next
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/// A handle for a task which was pushed to a task pool.
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pub trait TaskHandle {
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// rustdoc-stripper-ignore-next
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/// Wait for the task to complete.
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fn join(self);
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}
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impl TaskHandle for () {
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fn join(self) {}
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}
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impl TaskHandle for std::convert::Infallible {
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fn join(self) {}
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}
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// rustdoc-stripper-ignore-next
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/// An opaque handle for a task associated with a particular task pool.
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///
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/// Keeps a reference to the pool alive.
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///
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/// If the `v1_20` feature is enabled, requests the task pool to dispose of the handle when it is
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/// dropped. Otherwise, needs to be `join`ed to avoid a leak.
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2023-05-04 05:55:48 +00:00
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#[cfg_attr(not(any(feature = "v1_20", docsrs)), must_use)]
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2021-10-22 13:51:21 +00:00
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#[derive(Debug, PartialEq, Eq, PartialOrd, Ord, Hash)]
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pub struct TaskPoolTaskHandle {
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handle: ptr::NonNull<libc::c_void>,
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task_pool: Option<TaskPool>,
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}
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impl TaskHandle for TaskPoolTaskHandle {
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#[doc(alias = "gst_task_pool_join")]
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fn join(mut self) {
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let task_pool = self.task_pool.take().unwrap();
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unsafe { task_pool.join(self.handle) }
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}
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}
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impl Drop for TaskPoolTaskHandle {
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#[doc(alias = "gst_task_pool_dispose_handle")]
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2022-12-18 08:18:31 +00:00
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#[inline]
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2021-10-22 13:51:21 +00:00
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fn drop(&mut self) {
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if let Some(task_pool) = self.task_pool.take() {
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cfg_if::cfg_if! {
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2023-05-04 05:55:48 +00:00
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if #[cfg(feature = "v1_20")] {
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2021-10-22 13:51:21 +00:00
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unsafe { task_pool.dispose_handle(self.handle) }
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} else {
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crate::warning!(crate::CAT_RUST, obj: &task_pool, "Leaked task handle");
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}
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}
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}
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}
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}
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#[cfg(test)]
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mod tests {
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2023-01-03 18:58:25 +00:00
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use std::sync::mpsc::{channel, RecvError};
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2021-10-22 13:51:21 +00:00
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use super::*;
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use crate::prelude::*;
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#[test]
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fn test_simple() {
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crate::init().unwrap();
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let pool = TaskPool::new();
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pool.prepare().unwrap();
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let (sender, receiver) = channel();
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let handle = pool
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.push(move || {
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sender.send(()).unwrap();
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})
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.unwrap();
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assert_eq!(receiver.recv(), Ok(()));
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if let Some(handle) = handle {
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handle.join();
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}
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// Can't test try_recv here as the default task pool produces no
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// handles and thus no way to wait for channel destruction
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assert_eq!(receiver.recv(), Err(RecvError));
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pool.cleanup();
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}
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}
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