gstreamer-rs/gstreamer-base/src/base_src.rs
2020-12-15 11:53:31 +01:00

115 lines
3.9 KiB
Rust

// Take a look at the license at the top of the repository in the LICENSE file.
use glib::object::IsA;
use glib::translate::*;
use std::mem;
use std::ptr;
use crate::BaseSrc;
pub trait BaseSrcExtManual: 'static {
fn get_allocator(&self) -> (Option<gst::Allocator>, gst::AllocationParams);
fn get_segment(&self) -> gst::Segment;
fn start_complete(&self, ret: Result<gst::FlowSuccess, gst::FlowError>);
fn start_wait(&self) -> Result<gst::FlowSuccess, gst::FlowError>;
fn wait_playing(&self) -> Result<gst::FlowSuccess, gst::FlowError>;
fn query_latency(&self) -> Result<(bool, gst::ClockTime, gst::ClockTime), glib::BoolError>;
#[cfg(any(feature = "v1_18", feature = "dox"))]
#[cfg_attr(feature = "dox", doc(cfg(feature = "v1_18")))]
fn new_segment(&self, segment: &gst::Segment) -> Result<(), glib::BoolError>;
}
impl<O: IsA<BaseSrc>> BaseSrcExtManual for O {
fn get_allocator(&self) -> (Option<gst::Allocator>, gst::AllocationParams) {
unsafe {
let mut allocator = ptr::null_mut();
let mut params = mem::zeroed();
ffi::gst_base_src_get_allocator(
self.as_ref().to_glib_none().0,
&mut allocator,
&mut params,
);
(from_glib_full(allocator), params.into())
}
}
fn get_segment(&self) -> gst::Segment {
unsafe {
let src: &ffi::GstBaseSrc = &*(self.as_ptr() as *const _);
let _guard = crate::utils::MutexGuard::lock(&src.element.object.lock);
from_glib_none(&src.segment as *const _)
}
}
fn start_complete(&self, ret: Result<gst::FlowSuccess, gst::FlowError>) {
let ret: gst::FlowReturn = ret.into();
unsafe {
ffi::gst_base_src_start_complete(self.as_ref().to_glib_none().0, ret.to_glib());
}
}
fn start_wait(&self) -> Result<gst::FlowSuccess, gst::FlowError> {
let ret: gst::FlowReturn =
unsafe { from_glib(ffi::gst_base_src_start_wait(self.as_ref().to_glib_none().0)) };
ret.into_result()
}
fn wait_playing(&self) -> Result<gst::FlowSuccess, gst::FlowError> {
let ret: gst::FlowReturn = unsafe {
from_glib(ffi::gst_base_src_wait_playing(
self.as_ref().to_glib_none().0,
))
};
ret.into_result()
}
fn query_latency(&self) -> Result<(bool, gst::ClockTime, gst::ClockTime), glib::BoolError> {
unsafe {
let mut live = mem::MaybeUninit::uninit();
let mut min_latency = mem::MaybeUninit::uninit();
let mut max_latency = mem::MaybeUninit::uninit();
let ret = from_glib(ffi::gst_base_src_query_latency(
self.as_ref().to_glib_none().0,
live.as_mut_ptr(),
min_latency.as_mut_ptr(),
max_latency.as_mut_ptr(),
));
let live = live.assume_init();
let min_latency = min_latency.assume_init();
let max_latency = max_latency.assume_init();
if ret {
Ok((
from_glib(live),
from_glib(min_latency),
from_glib(max_latency),
))
} else {
Err(glib::glib_bool_error!("Failed to query latency"))
}
}
}
#[cfg(any(feature = "v1_18", feature = "dox"))]
#[cfg_attr(feature = "dox", doc(cfg(feature = "v1_18")))]
fn new_segment(&self, segment: &gst::Segment) -> Result<(), glib::BoolError> {
unsafe {
let ret = from_glib(ffi::gst_base_src_new_segment(
self.as_ref().to_glib_none().0,
segment.to_glib_none().0,
));
if ret {
Ok(())
} else {
Err(glib::glib_bool_error!("Failed to configure new segment"))
}
}
}
}