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// This file was generated by gir (https://github.com/gtk-rs/gir)
// from gir-files (https://github.com/gtk-rs/gir-files)
// from gst-gir-files (https://gitlab.freedesktop.org/gstreamer/gir-files-rs.git)
// DO NOT EDIT
use crate::ffi;
use glib::{
prelude::*,
signal::{connect_raw, SignalHandlerId},
translate::*,
};
use std::boxed::Box as Box_;
glib::wrapper! {
/// This is the base class for audio sinks. Subclasses need to implement the
/// ::create_ringbuffer vmethod. This base class will then take care of
/// writing samples to the ringbuffer, synchronisation, clipping and flushing.
///
/// ## Properties
///
///
/// #### `alignment-threshold`
/// Readable | Writeable
///
///
/// #### `buffer-time`
/// Readable | Writeable
///
///
/// #### `can-activate-pull`
/// Readable | Writeable
///
///
/// #### `discont-wait`
/// A window of time in nanoseconds to wait before creating a discontinuity as
/// a result of breaching the drift-tolerance.
///
/// Readable | Writeable
///
///
/// #### `drift-tolerance`
/// Controls the amount of time in microseconds that clocks are allowed
/// to drift before resynchronisation happens.
///
/// Readable | Writeable
///
///
/// #### `latency-time`
/// Readable | Writeable
///
///
/// #### `provide-clock`
/// Readable | Writeable
///
///
/// #### `slave-method`
/// Readable | Writeable
/// <details><summary><h4>BaseSink</h4></summary>
///
///
/// #### `async`
/// If set to [`true`], the basesink will perform asynchronous state changes.
/// When set to [`false`], the sink will not signal the parent when it prerolls.
/// Use this option when dealing with sparse streams or when synchronisation is
/// not required.
///
/// Readable | Writeable
///
///
/// #### `blocksize`
/// The amount of bytes to pull when operating in pull mode.
///
/// Readable | Writeable
///
///
/// #### `enable-last-sample`
/// Enable the last-sample property. If [`false`], basesink doesn't keep a
/// reference to the last buffer arrived and the last-sample property is always
/// set to [`None`]. This can be useful if you need buffers to be released as soon
/// as possible, eg. if you're using a buffer pool.
///
/// Readable | Writeable
///
///
/// #### `last-sample`
/// The last buffer that arrived in the sink and was used for preroll or for
/// rendering. This property can be used to generate thumbnails. This property
/// can be [`None`] when the sink has not yet received a buffer.
///
/// Readable
///
///
/// #### `max-bitrate`
/// Control the maximum amount of bits that will be rendered per second.
/// Setting this property to a value bigger than 0 will make the sink delay
/// rendering of the buffers when it would exceed to max-bitrate.
///
/// Readable | Writeable
///
///
/// #### `max-lateness`
/// Readable | Writeable
///
///
/// #### `processing-deadline`
/// Maximum amount of time (in nanoseconds) that the pipeline can take
/// for processing the buffer. This is added to the latency of live
/// pipelines.
///
/// Readable | Writeable
///
///
/// #### `qos`
/// Readable | Writeable
///
///
/// #### `render-delay`
/// The additional delay between synchronisation and actual rendering of the
/// media. This property will add additional latency to the device in order to
/// make other sinks compensate for the delay.
///
/// Readable | Writeable
///
///
/// #### `stats`
/// Various [`gst_base::BaseSink`][crate::gst_base::BaseSink] statistics. This property returns a `GstStructure`
/// with name `application/x-gst-base-sink-stats` with the following fields:
///
/// - "average-rate" G_TYPE_DOUBLE average frame rate
/// - "dropped" G_TYPE_UINT64 Number of dropped frames
/// - "rendered" G_TYPE_UINT64 Number of rendered frames
///
/// Readable
///
///
/// #### `sync`
/// Readable | Writeable
///
///
/// #### `throttle-time`
/// The time to insert between buffers. This property can be used to control
/// the maximum amount of buffers per second to render. Setting this property
/// to a value bigger than 0 will make the sink create THROTTLE QoS events.
///
/// Readable | Writeable
///
///
/// #### `ts-offset`
/// Controls the final synchronisation, a negative value will render the buffer
/// earlier while a positive value delays playback. This property can be
/// used to fix synchronisation in bad files.
///
/// Readable | Writeable
/// </details>
/// <details><summary><h4>Object</h4></summary>
///
///
/// #### `name`
/// Readable | Writeable | Construct
///
///
/// #### `parent`
/// The parent of the object. Please note, that when changing the 'parent'
/// property, we don't emit [`notify`][struct@crate::glib::Object#notify] and [`deep-notify`][struct@crate::gst::Object#deep-notify]
/// signals due to locking issues. In some cases one can use
/// `GstBin::element-added` or `GstBin::element-removed` signals on the parent to
/// achieve a similar effect.
///
/// Readable | Writeable
/// </details>
///
/// # Implements
///
/// [`AudioBaseSinkExt`][trait@crate::prelude::AudioBaseSinkExt], [`trait@gst_base::prelude::BaseSinkExt`], [`trait@gst::prelude::ElementExt`], [`trait@gst::prelude::GstObjectExt`], [`trait@glib::ObjectExt`]
#[doc(alias = "GstAudioBaseSink")]
pub struct AudioBaseSink(Object<ffi::GstAudioBaseSink, ffi::GstAudioBaseSinkClass>) @extends gst_base::BaseSink, gst::Element, gst::Object;
match fn {
type_ => || ffi::gst_audio_base_sink_get_type(),
}
}
impl AudioBaseSink {
pub const NONE: Option<&'static AudioBaseSink> = None;
}
unsafe impl Send for AudioBaseSink {}
unsafe impl Sync for AudioBaseSink {}
mod sealed {
pub trait Sealed {}
impl<T: super::IsA<super::AudioBaseSink>> Sealed for T {}
}
/// Trait containing all [`struct@AudioBaseSink`] methods.
///
/// # Implementors
///
/// [`AudioBaseSink`][struct@crate::AudioBaseSink], [`AudioSink`][struct@crate::AudioSink]
pub trait AudioBaseSinkExt: IsA<AudioBaseSink> + sealed::Sealed + 'static {
//#[doc(alias = "gst_audio_base_sink_create_ringbuffer")]
//fn create_ringbuffer(&self) -> /*Ignored*/Option<AudioRingBuffer> {
// unsafe { TODO: call ffi:gst_audio_base_sink_create_ringbuffer() }
//}
/// Get the current alignment threshold, in nanoseconds, used by `self`.
///
/// # Returns
///
/// The current alignment threshold used by `self`.
#[doc(alias = "gst_audio_base_sink_get_alignment_threshold")]
#[doc(alias = "get_alignment_threshold")]
#[doc(alias = "alignment-threshold")]
fn alignment_threshold(&self) -> gst::ClockTime {
unsafe {
try_from_glib(ffi::gst_audio_base_sink_get_alignment_threshold(
self.as_ref().to_glib_none().0,
))
.expect("mandatory glib value is None")
}
}
/// Get the current discont wait, in nanoseconds, used by `self`.
///
/// # Returns
///
/// The current discont wait used by `self`.
#[doc(alias = "gst_audio_base_sink_get_discont_wait")]
#[doc(alias = "get_discont_wait")]
#[doc(alias = "discont-wait")]
fn discont_wait(&self) -> gst::ClockTime {
unsafe {
try_from_glib(ffi::gst_audio_base_sink_get_discont_wait(
self.as_ref().to_glib_none().0,
))
.expect("mandatory glib value is None")
}
}
/// Get the current drift tolerance, in microseconds, used by `self`.
///
/// # Returns
///
/// The current drift tolerance used by `self`.
#[doc(alias = "gst_audio_base_sink_get_drift_tolerance")]
#[doc(alias = "get_drift_tolerance")]
#[doc(alias = "drift-tolerance")]
fn drift_tolerance(&self) -> i64 {
unsafe { ffi::gst_audio_base_sink_get_drift_tolerance(self.as_ref().to_glib_none().0) }
}
/// Queries whether `self` will provide a clock or not. See also
/// gst_audio_base_sink_set_provide_clock.
///
/// # Returns
///
/// [`true`] if `self` will provide a clock.
#[doc(alias = "gst_audio_base_sink_get_provide_clock")]
#[doc(alias = "get_provide_clock")]
#[doc(alias = "provide-clock")]
fn is_provide_clock(&self) -> bool {
unsafe {
from_glib(ffi::gst_audio_base_sink_get_provide_clock(
self.as_ref().to_glib_none().0,
))
}
}
//#[doc(alias = "gst_audio_base_sink_get_slave_method")]
//#[doc(alias = "get_slave_method")]
//#[doc(alias = "slave-method")]
//fn slave_method(&self) -> /*Ignored*/AudioBaseSinkSlaveMethod {
// unsafe { TODO: call ffi:gst_audio_base_sink_get_slave_method() }
//}
/// Informs this base class that the audio output device has failed for
/// some reason, causing a discontinuity (for example, because the device
/// recovered from the error, but lost all contents of its ring buffer).
/// This function is typically called by derived classes, and is useful
/// for the custom slave method.
#[doc(alias = "gst_audio_base_sink_report_device_failure")]
fn report_device_failure(&self) {
unsafe {
ffi::gst_audio_base_sink_report_device_failure(self.as_ref().to_glib_none().0);
}
}
/// Controls the sink's alignment threshold.
/// ## `alignment_threshold`
/// the new alignment threshold in nanoseconds
#[doc(alias = "gst_audio_base_sink_set_alignment_threshold")]
#[doc(alias = "alignment-threshold")]
fn set_alignment_threshold(&self, alignment_threshold: gst::ClockTime) {
unsafe {
ffi::gst_audio_base_sink_set_alignment_threshold(
self.as_ref().to_glib_none().0,
alignment_threshold.into_glib(),
);
}
}
//#[doc(alias = "gst_audio_base_sink_set_custom_slaving_callback")]
//fn set_custom_slaving_callback(&self, callback: /*Unimplemented*/Fn(&AudioBaseSink, impl Into<Option<gst::ClockTime>>, impl Into<Option<gst::ClockTime>>, gst::ClockTimeDiff, /*Ignored*/AudioBaseSinkDiscontReason), user_data: /*Unimplemented*/Option<Basic: Pointer>) {
// unsafe { TODO: call ffi:gst_audio_base_sink_set_custom_slaving_callback() }
//}
/// Controls how long the sink will wait before creating a discontinuity.
/// ## `discont_wait`
/// the new discont wait in nanoseconds
#[doc(alias = "gst_audio_base_sink_set_discont_wait")]
#[doc(alias = "discont-wait")]
fn set_discont_wait(&self, discont_wait: gst::ClockTime) {
unsafe {
ffi::gst_audio_base_sink_set_discont_wait(
self.as_ref().to_glib_none().0,
discont_wait.into_glib(),
);
}
}
/// Controls the sink's drift tolerance.
/// ## `drift_tolerance`
/// the new drift tolerance in microseconds
#[doc(alias = "gst_audio_base_sink_set_drift_tolerance")]
#[doc(alias = "drift-tolerance")]
fn set_drift_tolerance(&self, drift_tolerance: i64) {
unsafe {
ffi::gst_audio_base_sink_set_drift_tolerance(
self.as_ref().to_glib_none().0,
drift_tolerance,
);
}
}
/// Controls whether `self` will provide a clock or not. If `provide` is [`true`],
/// [`ElementExtManual::provide_clock()`][crate::gst::prelude::ElementExtManual::provide_clock()] will return a clock that reflects the datarate
/// of `self`. If `provide` is [`false`], [`ElementExtManual::provide_clock()`][crate::gst::prelude::ElementExtManual::provide_clock()] will return
/// NULL.
/// ## `provide`
/// new state
#[doc(alias = "gst_audio_base_sink_set_provide_clock")]
#[doc(alias = "provide-clock")]
fn set_provide_clock(&self, provide: bool) {
unsafe {
ffi::gst_audio_base_sink_set_provide_clock(
self.as_ref().to_glib_none().0,
provide.into_glib(),
);
}
}
//#[doc(alias = "gst_audio_base_sink_set_slave_method")]
//#[doc(alias = "slave-method")]
//fn set_slave_method(&self, method: /*Ignored*/AudioBaseSinkSlaveMethod) {
// unsafe { TODO: call ffi:gst_audio_base_sink_set_slave_method() }
//}
#[doc(alias = "buffer-time")]
fn buffer_time(&self) -> i64 {
ObjectExt::property(self.as_ref(), "buffer-time")
}
#[doc(alias = "buffer-time")]
fn set_buffer_time(&self, buffer_time: i64) {
ObjectExt::set_property(self.as_ref(), "buffer-time", buffer_time)
}
#[doc(alias = "can-activate-pull")]
fn can_activate_pull(&self) -> bool {
ObjectExt::property(self.as_ref(), "can-activate-pull")
}
#[doc(alias = "can-activate-pull")]
fn set_can_activate_pull(&self, can_activate_pull: bool) {
ObjectExt::set_property(self.as_ref(), "can-activate-pull", can_activate_pull)
}
#[doc(alias = "latency-time")]
fn latency_time(&self) -> i64 {
ObjectExt::property(self.as_ref(), "latency-time")
}
#[doc(alias = "latency-time")]
fn set_latency_time(&self, latency_time: i64) {
ObjectExt::set_property(self.as_ref(), "latency-time", latency_time)
}
#[doc(alias = "alignment-threshold")]
fn connect_alignment_threshold_notify<F: Fn(&Self) + Send + Sync + 'static>(
&self,
f: F,
) -> SignalHandlerId {
unsafe extern "C" fn notify_alignment_threshold_trampoline<
P: IsA<AudioBaseSink>,
F: Fn(&P) + Send + Sync + 'static,
>(
this: *mut ffi::GstAudioBaseSink,
_param_spec: glib::ffi::gpointer,
f: glib::ffi::gpointer,
) {
let f: &F = &*(f as *const F);
f(AudioBaseSink::from_glib_borrow(this).unsafe_cast_ref())
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
b"notify::alignment-threshold\0".as_ptr() as *const _,
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
notify_alignment_threshold_trampoline::<Self, F> as *const (),
)),
Box_::into_raw(f),
)
}
}
#[doc(alias = "buffer-time")]
fn connect_buffer_time_notify<F: Fn(&Self) + Send + Sync + 'static>(
&self,
f: F,
) -> SignalHandlerId {
unsafe extern "C" fn notify_buffer_time_trampoline<
P: IsA<AudioBaseSink>,
F: Fn(&P) + Send + Sync + 'static,
>(
this: *mut ffi::GstAudioBaseSink,
_param_spec: glib::ffi::gpointer,
f: glib::ffi::gpointer,
) {
let f: &F = &*(f as *const F);
f(AudioBaseSink::from_glib_borrow(this).unsafe_cast_ref())
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
b"notify::buffer-time\0".as_ptr() as *const _,
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
notify_buffer_time_trampoline::<Self, F> as *const (),
)),
Box_::into_raw(f),
)
}
}
#[doc(alias = "can-activate-pull")]
fn connect_can_activate_pull_notify<F: Fn(&Self) + Send + Sync + 'static>(
&self,
f: F,
) -> SignalHandlerId {
unsafe extern "C" fn notify_can_activate_pull_trampoline<
P: IsA<AudioBaseSink>,
F: Fn(&P) + Send + Sync + 'static,
>(
this: *mut ffi::GstAudioBaseSink,
_param_spec: glib::ffi::gpointer,
f: glib::ffi::gpointer,
) {
let f: &F = &*(f as *const F);
f(AudioBaseSink::from_glib_borrow(this).unsafe_cast_ref())
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
b"notify::can-activate-pull\0".as_ptr() as *const _,
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
notify_can_activate_pull_trampoline::<Self, F> as *const (),
)),
Box_::into_raw(f),
)
}
}
#[doc(alias = "discont-wait")]
fn connect_discont_wait_notify<F: Fn(&Self) + Send + Sync + 'static>(
&self,
f: F,
) -> SignalHandlerId {
unsafe extern "C" fn notify_discont_wait_trampoline<
P: IsA<AudioBaseSink>,
F: Fn(&P) + Send + Sync + 'static,
>(
this: *mut ffi::GstAudioBaseSink,
_param_spec: glib::ffi::gpointer,
f: glib::ffi::gpointer,
) {
let f: &F = &*(f as *const F);
f(AudioBaseSink::from_glib_borrow(this).unsafe_cast_ref())
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
b"notify::discont-wait\0".as_ptr() as *const _,
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
notify_discont_wait_trampoline::<Self, F> as *const (),
)),
Box_::into_raw(f),
)
}
}
#[doc(alias = "drift-tolerance")]
fn connect_drift_tolerance_notify<F: Fn(&Self) + Send + Sync + 'static>(
&self,
f: F,
) -> SignalHandlerId {
unsafe extern "C" fn notify_drift_tolerance_trampoline<
P: IsA<AudioBaseSink>,
F: Fn(&P) + Send + Sync + 'static,
>(
this: *mut ffi::GstAudioBaseSink,
_param_spec: glib::ffi::gpointer,
f: glib::ffi::gpointer,
) {
let f: &F = &*(f as *const F);
f(AudioBaseSink::from_glib_borrow(this).unsafe_cast_ref())
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
b"notify::drift-tolerance\0".as_ptr() as *const _,
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
notify_drift_tolerance_trampoline::<Self, F> as *const (),
)),
Box_::into_raw(f),
)
}
}
#[doc(alias = "latency-time")]
fn connect_latency_time_notify<F: Fn(&Self) + Send + Sync + 'static>(
&self,
f: F,
) -> SignalHandlerId {
unsafe extern "C" fn notify_latency_time_trampoline<
P: IsA<AudioBaseSink>,
F: Fn(&P) + Send + Sync + 'static,
>(
this: *mut ffi::GstAudioBaseSink,
_param_spec: glib::ffi::gpointer,
f: glib::ffi::gpointer,
) {
let f: &F = &*(f as *const F);
f(AudioBaseSink::from_glib_borrow(this).unsafe_cast_ref())
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
b"notify::latency-time\0".as_ptr() as *const _,
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
notify_latency_time_trampoline::<Self, F> as *const (),
)),
Box_::into_raw(f),
)
}
}
#[doc(alias = "provide-clock")]
fn connect_provide_clock_notify<F: Fn(&Self) + Send + Sync + 'static>(
&self,
f: F,
) -> SignalHandlerId {
unsafe extern "C" fn notify_provide_clock_trampoline<
P: IsA<AudioBaseSink>,
F: Fn(&P) + Send + Sync + 'static,
>(
this: *mut ffi::GstAudioBaseSink,
_param_spec: glib::ffi::gpointer,
f: glib::ffi::gpointer,
) {
let f: &F = &*(f as *const F);
f(AudioBaseSink::from_glib_borrow(this).unsafe_cast_ref())
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
b"notify::provide-clock\0".as_ptr() as *const _,
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
notify_provide_clock_trampoline::<Self, F> as *const (),
)),
Box_::into_raw(f),
)
}
}
#[doc(alias = "slave-method")]
fn connect_slave_method_notify<F: Fn(&Self) + Send + Sync + 'static>(
&self,
f: F,
) -> SignalHandlerId {
unsafe extern "C" fn notify_slave_method_trampoline<
P: IsA<AudioBaseSink>,
F: Fn(&P) + Send + Sync + 'static,
>(
this: *mut ffi::GstAudioBaseSink,
_param_spec: glib::ffi::gpointer,
f: glib::ffi::gpointer,
) {
let f: &F = &*(f as *const F);
f(AudioBaseSink::from_glib_borrow(this).unsafe_cast_ref())
}
unsafe {
let f: Box_<F> = Box_::new(f);
connect_raw(
self.as_ptr() as *mut _,
b"notify::slave-method\0".as_ptr() as *const _,
Some(std::mem::transmute::<*const (), unsafe extern "C" fn()>(
notify_slave_method_trampoline::<Self, F> as *const (),
)),
Box_::into_raw(f),
)
}
}
}
impl<O: IsA<AudioBaseSink>> AudioBaseSinkExt for O {}