mirror of
https://gitlab.freedesktop.org/gstreamer/gst-plugins-rs.git
synced 2024-12-21 09:36:28 +00:00
Improve usability thanks to opt-ops
The crate option-operations simplifies usage when dealing with `Option`s, which is often the case with `ClockTime`.
This commit is contained in:
parent
bd8a7e8df7
commit
27b9f0d868
29 changed files with 175 additions and 308 deletions
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@ -235,7 +235,9 @@ impl State {
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let distance_ts = distance_samples
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.mul_div_floor(*gst::ClockTime::SECOND, self.info.rate() as u64)
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.map(gst::ClockTime::from_nseconds);
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let pts = pts.zip(distance_ts).map(|(pts, dist)| pts + dist);
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let pts = pts
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.opt_checked_add(distance_ts)
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.map_err(|_| gst::FlowError::Error)?;
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let inbuf = self
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.adapter
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@ -276,7 +278,9 @@ impl State {
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let distance_ts = distance_samples
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.mul_div_floor(*gst::ClockTime::SECOND, self.info.rate() as u64)
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.map(gst::ClockTime::from_nseconds);
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let pts = pts.zip(distance_ts).map(|(pts, dist)| pts + dist);
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let pts = pts
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.opt_checked_add(distance_ts)
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.map_err(|_| gst::FlowError::Error)?;
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let mut _mapped_inbuf = None;
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let src = if self.adapter.available() > 0 {
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@ -1702,7 +1706,7 @@ impl AudioLoudNorm {
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q.set(
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live,
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min_latency + 3 * gst::ClockTime::SECOND,
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max_latency.map(|max| max + 3 * gst::ClockTime::SECOND),
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max_latency.opt_add(3 * gst::ClockTime::SECOND),
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);
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true
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} else {
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@ -74,8 +74,9 @@ impl State {
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// pts at the beginning of the adapter.
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let samples = distance / self.in_info.bpf() as u64;
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prev_pts
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.zip(self.samples_to_time(samples))
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.map(|(prev_pts, time_offset)| prev_pts + time_offset)
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.opt_checked_add(self.samples_to_time(samples))
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.ok()
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.flatten()
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}
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fn needs_more_data(&self) -> bool {
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@ -367,8 +368,7 @@ impl BaseTransformImpl for AudioRNNoise {
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);
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min += gst::ClockTime::from_seconds((FRAME_SIZE / 48000) as u64);
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max = max
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.map(|max| max + gst::ClockTime::from_seconds((FRAME_SIZE / 48000) as u64));
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max = max.opt_add(gst::ClockTime::from_seconds((FRAME_SIZE / 48000) as u64));
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q.set(live, min, max);
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return true;
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}
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@ -481,12 +481,12 @@ impl BaseTransformImpl for EbuR128Level {
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// The timestamp we report in messages is always the timestamp until which measurements
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// are included, not the starting timestamp.
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timestamp = timestamp.map(|ts| {
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ts + to_process
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timestamp = timestamp.opt_add(
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to_process
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.mul_div_floor(*gst::ClockTime::SECOND, state.info.rate() as u64)
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.map(gst::ClockTime::from_nseconds)
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.unwrap()
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});
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.unwrap(),
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);
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// Post a message whenever an interval is full
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if state.interval_frames_remaining.is_zero() {
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@ -120,8 +120,9 @@ impl State {
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// pts at the beginning of the adapter.
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let samples = distance / self.in_info.bpf() as u64;
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prev_pts
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.zip(self.samples_to_time(samples))
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.map(|(prev_pts, time_offset)| prev_pts + time_offset)
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.opt_checked_add(self.samples_to_time(samples))
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.ok()
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.flatten()
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}
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fn buffer_duration(&self, buffer_size: u64) -> Option<gst::ClockTime> {
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@ -181,7 +181,7 @@ fn csound_filter_eos() {
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let samples_at_eos = (EOS_NUM_BUFFERS * EOS_NUM_SAMPLES) % ksmps;
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assert_eq!(
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buffer.as_ref().pts(),
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duration_from_samples(samples_at_eos as _, sr as _).map(|duration| in_pts - duration)
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in_pts.opt_sub(duration_from_samples(samples_at_eos as _, sr as _))
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);
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let map = buffer.into_mapped_buffer_readable().unwrap();
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@ -38,8 +38,7 @@ use crate::runtime::prelude::*;
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use crate::runtime::{Context, PadSrc, PadSrcRef, PadSrcWeak, Task, TaskState};
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const DEFAULT_CONTEXT: &str = "";
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// FIXME use Duration::ZERO when MSVC >= 1.53.2
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const DEFAULT_CONTEXT_WAIT: Duration = Duration::from_nanos(0);
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const DEFAULT_CONTEXT_WAIT: Duration = Duration::ZERO;
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const DEFAULT_CAPS: Option<gst::Caps> = None;
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const DEFAULT_MAX_BUFFERS: u32 = 10;
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const DEFAULT_DO_TIMESTAMP: bool = false;
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@ -391,10 +390,7 @@ impl AppSrc {
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let now = clock.time();
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let buffer = buffer.make_mut();
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buffer.set_dts(
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now.zip(base_time)
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.and_then(|(now, base_time)| now.checked_sub(base_time)),
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);
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buffer.set_dts(now.opt_checked_sub(base_time).ok().flatten());
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buffer.set_pts(None);
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} else {
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gst_error!(CAT, obj: element, "Don't have a clock yet");
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@ -35,8 +35,7 @@ use crate::runtime::prelude::*;
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use crate::runtime::{self, PadSink, PadSinkRef, PadSrc, PadSrcRef};
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const DEFAULT_CONTEXT: &str = "";
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// FIXME use Duration::ZERO when MSVC >= 1.53.2
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const DEFAULT_CONTEXT_WAIT: Duration = Duration::from_nanos(0);
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const DEFAULT_CONTEXT_WAIT: Duration = Duration::ZERO;
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#[derive(Debug, Clone)]
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struct Settings {
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@ -82,13 +81,9 @@ impl InputSelectorPadSinkHandler {
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) {
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let now = element.current_running_time();
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match running_time
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.into()
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.zip(now)
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.and_then(|(running_time, now)| running_time.checked_sub(now))
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{
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Some(delay) => runtime::time::delay_for(delay.into()).await,
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None => runtime::executor::yield_now().await,
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match running_time.into().opt_checked_sub(now) {
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Ok(Some(delay)) => runtime::time::delay_for(delay.into()).await,
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_ => runtime::executor::yield_now().await,
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}
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}
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@ -315,10 +310,7 @@ impl PadSrcHandler for InputSelectorPadSrcHandler {
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let (live, min, max) = peer_query.result();
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if live {
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min_latency = min.max(min_latency);
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max_latency = max
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.zip(max_latency)
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.map(|(max, max_latency)| max.min(max_latency))
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.or(max);
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max_latency = max.opt_min(max_latency).or(max);
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}
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}
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}
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@ -212,10 +212,7 @@ impl SinkHandler {
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) {
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if inner.ips_rtptime != Some(rtptime) {
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let pts = pts.into();
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let new_packet_spacing = inner
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.ips_pts
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.zip(pts)
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.and_then(|(ips_pts, pts)| pts.checked_sub(ips_pts));
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let new_packet_spacing = pts.opt_checked_sub(inner.ips_pts).ok().flatten();
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if let Some(new_packet_spacing) = new_packet_spacing {
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let old_packet_spacing = state.packet_spacing;
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@ -744,7 +741,6 @@ impl SrcHandler {
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&[
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("seqnum", &(lost_seqnum as u32)),
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("timestamp", ×tamp),
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// FIXME would probably make sense being a ClockTime
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("duration", &duration.nseconds()),
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("retry", &0),
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],
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@ -864,8 +860,7 @@ impl SrcHandler {
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if state.eos {
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gst_debug!(CAT, obj: element, "EOS, not waiting");
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// FIXME use Duration::ZERO when MSVC >= 1.53.2
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return (now, Some((now, Duration::from_nanos(0))));
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return (now, Some((now, Duration::ZERO)));
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}
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if state.earliest_pts.is_none() {
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@ -877,10 +872,8 @@ impl SrcHandler {
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.map(|earliest_pts| earliest_pts + latency - state.packet_spacing - context_wait / 2);
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let delay = next_wakeup
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.zip(now)
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.map_or(gst::ClockTime::ZERO, |(next_wakeup, now)| {
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next_wakeup.saturating_sub(now)
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});
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.opt_saturating_sub(now)
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.unwrap_or(gst::ClockTime::ZERO);
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gst_debug!(
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CAT,
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@ -1113,8 +1106,7 @@ impl TaskImpl for JitterBufferTask {
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);
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let (delay_fut, abort_handle) = match next_wakeup {
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// FIXME use Duration::ZERO when MSVC >= 1.53.2
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Some((_, delay)) if delay == Duration::from_nanos(0) => (None, None),
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Some((_, delay)) if delay.is_zero() => (None, None),
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_ => {
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let (delay_fut, abort_handle) = abortable(async move {
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match next_wakeup {
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@ -1166,10 +1158,7 @@ impl TaskImpl for JitterBufferTask {
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);
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if let Some((next_wakeup, _)) = next_wakeup {
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if next_wakeup
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.zip(now)
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.map_or(false, |(next_wakeup, now)| next_wakeup > now)
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{
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if next_wakeup.opt_gt(now).unwrap_or(false) {
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// Reschedule and wait a bit longer in the next iteration
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return Ok(());
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}
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@ -53,8 +53,7 @@ const DEFAULT_MAX_SIZE_BUFFERS: u32 = 200;
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const DEFAULT_MAX_SIZE_BYTES: u32 = 1024 * 1024;
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const DEFAULT_MAX_SIZE_TIME: gst::ClockTime = gst::ClockTime::SECOND;
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const DEFAULT_CONTEXT: &str = "";
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// FIXME use Duration::ZERO when MSVC >= 1.53.2
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const DEFAULT_CONTEXT_WAIT: Duration = Duration::from_nanos(0);
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const DEFAULT_CONTEXT_WAIT: Duration = Duration::ZERO;
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#[derive(Debug, Clone)]
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struct SettingsSink {
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@ -40,8 +40,7 @@ const DEFAULT_MAX_SIZE_BUFFERS: u32 = 200;
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const DEFAULT_MAX_SIZE_BYTES: u32 = 1024 * 1024;
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const DEFAULT_MAX_SIZE_TIME: gst::ClockTime = gst::ClockTime::SECOND;
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const DEFAULT_CONTEXT: &str = "";
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// FIXME use Duration::ZERO when MSVC >= 1.53.2
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const DEFAULT_CONTEXT_WAIT: Duration = Duration::from_nanos(0);
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const DEFAULT_CONTEXT_WAIT: Duration = Duration::ZERO;
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#[derive(Debug, Clone)]
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struct Settings {
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@ -1612,9 +1612,7 @@ mod tests {
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task.prepare(TaskPrepareTest { prepare_receiver }, context.clone())
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.unwrap();
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// FIXME use Duration::ZERO when MSVC >= 1.53.2
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let start_ctx =
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Context::acquire("prepare_start_ok_requester", Duration::from_nanos(0)).unwrap();
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let start_ctx = Context::acquire("prepare_start_ok_requester", Duration::ZERO).unwrap();
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let task_clone = task.clone();
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let (ready_sender, ready_receiver) = oneshot::channel();
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let start_handle = start_ctx.spawn(async move {
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@ -1737,9 +1735,7 @@ mod tests {
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)
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.unwrap();
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// FIXME use Duration::ZERO when MSVC >= 1.53.2
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let start_ctx =
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Context::acquire("prepare_start_error_requester", Duration::from_nanos(0)).unwrap();
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let start_ctx = Context::acquire("prepare_start_error_requester", Duration::ZERO).unwrap();
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let task_clone = task.clone();
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let (ready_sender, ready_receiver) = oneshot::channel();
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let start_handle = start_ctx.spawn(async move {
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@ -143,11 +143,7 @@ impl<T: SocketRead> Socket<T> {
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Ok((len, saddr)) => {
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let dts = if T::DO_TIMESTAMP {
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let time = self.clock.as_ref().unwrap().time();
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let running_time = time
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.zip(self.base_time)
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// TODO Do we want None if time < base_time
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// or do we expect Some?
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.and_then(|(time, base_time)| time.checked_sub(base_time));
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let running_time = time.opt_checked_sub(self.base_time).ok().flatten();
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// FIXME maybe we should check if running_time.is_none
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// so as to display another message
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gst_debug!(
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@ -48,8 +48,7 @@ const DEFAULT_PORT: i32 = 4953;
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const DEFAULT_CAPS: Option<gst::Caps> = None;
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const DEFAULT_BLOCKSIZE: u32 = 4096;
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const DEFAULT_CONTEXT: &str = "";
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// FIXME use Duration::ZERO when MSVC >= 1.53.2
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const DEFAULT_CONTEXT_WAIT: Duration = Duration::from_nanos(0);
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const DEFAULT_CONTEXT_WAIT: Duration = Duration::ZERO;
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#[derive(Debug, Clone)]
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struct Settings {
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@ -62,8 +62,7 @@ const DEFAULT_TTL_MC: u32 = 1;
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const DEFAULT_QOS_DSCP: i32 = -1;
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const DEFAULT_CLIENTS: &str = "";
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const DEFAULT_CONTEXT: &str = "";
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// FIXME use Duration::ZERO when MSVC >= 1.53.2
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const DEFAULT_CONTEXT_WAIT: Duration = Duration::from_nanos(0);
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const DEFAULT_CONTEXT_WAIT: Duration = Duration::ZERO;
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#[derive(Debug, Clone)]
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struct Settings {
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@ -412,10 +411,7 @@ impl UdpSinkPadHandler {
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rtime = segment
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.downcast_ref::<gst::format::Time>()
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.and_then(|segment| {
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segment
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.to_running_time(buffer.pts())
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.zip(inner.latency)
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.map(|(rtime, latency)| rtime + latency)
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segment.to_running_time(buffer.pts()).opt_add(inner.latency)
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});
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}
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@ -529,13 +525,9 @@ impl UdpSinkPadHandler {
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) {
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let now = element.current_running_time();
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match running_time
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.into()
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.zip(now)
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.and_then(|(running_time, now)| running_time.checked_sub(now))
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{
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Some(delay) => runtime::time::delay_for(delay.into()).await,
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None => runtime::executor::yield_now().await,
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match running_time.into().opt_checked_sub(now) {
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Ok(Some(delay)) => runtime::time::delay_for(delay.into()).await,
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_ => runtime::executor::yield_now().await,
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}
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}
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|
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@ -48,8 +48,7 @@ const DEFAULT_MTU: u32 = 1492;
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const DEFAULT_SOCKET: Option<GioSocketWrapper> = None;
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const DEFAULT_USED_SOCKET: Option<GioSocketWrapper> = None;
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const DEFAULT_CONTEXT: &str = "";
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// FIXME use Duration::ZERO when MSVC >= 1.53.2
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const DEFAULT_CONTEXT_WAIT: Duration = Duration::from_nanos(0);
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const DEFAULT_CONTEXT_WAIT: Duration = Duration::ZERO;
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const DEFAULT_RETRIEVE_SENDER_ADDRESS: bool = true;
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#[derive(Debug, Clone)]
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@ -760,9 +760,7 @@ impl Transcriber {
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let running_time = state.in_segment.to_running_time(buffer.pts());
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let now = element.current_running_time();
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delay = running_time
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.zip(now)
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.and_then(|(running_time, now)| running_time.checked_sub(now));
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delay = running_time.opt_checked_sub(now).ok().flatten();
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}
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}
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|
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@ -194,7 +194,7 @@ impl State {
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) {
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let buffer = buffer.get_mut().unwrap();
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self.last_position = pts.zip(duration).map(|(pts, duration)| pts + duration);
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self.last_position = pts.opt_add(duration);
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buffer.set_pts(pts);
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@ -263,7 +263,7 @@ impl JsonGstParse {
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let mut buffer = gst::Buffer::from_mut_slice(data.into_bytes());
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if let Some(last_position) = state.last_position {
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if let Some(duration) = pts.map(|pts| pts.checked_sub(last_position)) {
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if let Ok(Some(duration)) = pts.opt_checked_sub(last_position) {
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events.push(
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gst::event::Gap::builder(last_position)
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.duration(duration)
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@ -274,12 +274,11 @@ impl JsonGstParse {
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state.add_buffer_metadata(element, &mut buffer, pts, duration);
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let send_eos = state
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.segment
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.stop()
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.zip(buffer.pts())
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.zip(buffer.duration())
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.map_or(false, |((stop, pts), duration)| pts + duration >= stop);
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let send_eos = buffer
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.pts()
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.opt_add(buffer.duration())
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.opt_ge(state.segment.stop())
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.unwrap_or(false);
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// Drop our state mutex while we push out buffers or events
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drop(state);
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|
@ -346,11 +345,7 @@ impl JsonGstParse {
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pts: impl Into<Option<gst::ClockTime>>,
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mut state: MutexGuard<State>,
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) -> MutexGuard<State> {
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if pts
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.into()
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.zip(state.segment.start())
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.map_or(false, |(pts, start)| pts >= start)
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{
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if pts.into().opt_ge(state.segment.start()).unwrap_or(false) {
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state.seeking = false;
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state.discont = true;
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state.replay_last_line = true;
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|
@ -503,7 +498,7 @@ impl JsonGstParse {
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data: _data,
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}) = serde_json::from_slice(line)
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{
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last_pts = pts.zip(duration).map(|(pts, duration)| pts + duration);
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last_pts = pts.opt_add(duration);
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -757,17 +752,11 @@ impl JsonGstParse {
|
|||
let pull = state.pull.as_ref().unwrap();
|
||||
|
||||
if start_type == gst::SeekType::Set {
|
||||
start = start
|
||||
.zip(pull.duration)
|
||||
.map(|(start, duration)| start.min(duration))
|
||||
.or(start);
|
||||
start = start.opt_min(pull.duration).or(start);
|
||||
}
|
||||
|
||||
if stop_type == gst::SeekType::Set {
|
||||
stop = stop
|
||||
.zip(pull.duration)
|
||||
.map(|(stop, duration)| stop.min(duration))
|
||||
.or(stop);
|
||||
stop = stop.opt_min(pull.duration).or(stop);
|
||||
}
|
||||
|
||||
state.seeking = true;
|
||||
|
|
|
@ -203,10 +203,9 @@ impl TextWrap {
|
|||
|
||||
let add_buffer = state
|
||||
.start_ts
|
||||
.zip(Some(accumulate_time))
|
||||
.map_or(false, |(start_ts, accumulate_time)| {
|
||||
start_ts + accumulate_time < pts
|
||||
});
|
||||
.opt_add(accumulate_time)
|
||||
.opt_lt(pts)
|
||||
.unwrap_or(false);
|
||||
|
||||
if add_buffer {
|
||||
let mut buf =
|
||||
|
@ -214,12 +213,8 @@ impl TextWrap {
|
|||
{
|
||||
let buf_mut = buf.get_mut().unwrap();
|
||||
buf_mut.set_pts(state.start_ts);
|
||||
buf_mut.set_duration(
|
||||
state
|
||||
.end_ts
|
||||
.zip(state.start_ts)
|
||||
.and_then(|(end_ts, start_ts)| end_ts.checked_sub(start_ts)),
|
||||
);
|
||||
buf_mut
|
||||
.set_duration(state.end_ts.opt_checked_sub(state.start_ts).ok().flatten());
|
||||
}
|
||||
bufferlist.get_mut().unwrap().add(buf);
|
||||
|
||||
|
@ -262,10 +257,7 @@ impl TextWrap {
|
|||
.collect::<Vec<String>>()
|
||||
.join("\n");
|
||||
} else {
|
||||
let duration = state
|
||||
.end_ts
|
||||
.zip(state.start_ts)
|
||||
.and_then(|(end_ts, start_ts)| end_ts.checked_sub(start_ts));
|
||||
let duration = state.end_ts.opt_checked_sub(state.start_ts).ok().flatten();
|
||||
let contents = chunk
|
||||
.iter()
|
||||
.map(|l| l.to_string())
|
||||
|
@ -291,7 +283,7 @@ impl TextWrap {
|
|||
}
|
||||
|
||||
current_text = trailing;
|
||||
state.end_ts = state.end_ts.map(|end_ts| end_ts + duration_per_word);
|
||||
state.end_ts = state.end_ts.opt_add(duration_per_word);
|
||||
}
|
||||
|
||||
state.current_text = current_text;
|
||||
|
@ -399,10 +391,7 @@ impl TextWrap {
|
|||
let buf_mut = buf.get_mut().unwrap();
|
||||
buf_mut.set_pts(state.start_ts);
|
||||
buf_mut.set_duration(
|
||||
state
|
||||
.end_ts
|
||||
.zip(state.start_ts)
|
||||
.and_then(|(end_ts, start_ts)| end_ts.checked_sub(start_ts)),
|
||||
state.end_ts.opt_checked_sub(state.start_ts).ok().flatten(),
|
||||
);
|
||||
}
|
||||
|
||||
|
|
|
@ -770,19 +770,11 @@ impl PushSrcImpl for SineSrc {
|
|||
|
||||
let segment = element.segment().downcast::<gst::format::Time>().unwrap();
|
||||
let base_time = element.base_time();
|
||||
let running_time = segment.to_running_time(
|
||||
buffer
|
||||
.pts()
|
||||
.zip(buffer.duration())
|
||||
.map(|(pts, duration)| pts + duration),
|
||||
);
|
||||
let running_time = segment.to_running_time(buffer.pts().opt_add(buffer.duration()));
|
||||
|
||||
// The last sample's clock time is the base time of the element plus the
|
||||
// running time of the last sample
|
||||
let wait_until = match running_time
|
||||
.zip(base_time)
|
||||
.map(|(running_time, base_time)| running_time + base_time)
|
||||
{
|
||||
let wait_until = match running_time.opt_add(base_time) {
|
||||
Some(wait_until) => wait_until,
|
||||
None => return Ok(CreateSuccess::NewBuffer(buffer)),
|
||||
};
|
||||
|
|
|
@ -703,16 +703,12 @@ For working in live mode, we have to add a few different parts in various places
|
|||
let running_time = segment.to_running_time(
|
||||
buffer
|
||||
.pts()
|
||||
.zip(buffer.duration())
|
||||
.map(|(pts, duration)| pts + duration),
|
||||
.opt_add(buffer.duration()),
|
||||
);
|
||||
|
||||
// The last sample's clock time is the base time of the element plus the
|
||||
// running time of the last sample
|
||||
let wait_until = match running_time
|
||||
.zip(base_time)
|
||||
.map(|(running_time, base_time)| running_time + base_time)
|
||||
{
|
||||
let wait_until = match running_time.opt_add(base_time) {
|
||||
Some(wait_until) => wait_until,
|
||||
None => return Ok(buffer),
|
||||
};
|
||||
|
|
|
@ -200,8 +200,8 @@ impl FallbackSwitch {
|
|||
|
||||
if pts.is_none()
|
||||
|| new_running_time
|
||||
.zip(target_running_time.into())
|
||||
.map_or(false, |(new, target)| new <= target)
|
||||
.opt_le(target_running_time.into())
|
||||
.unwrap_or(false)
|
||||
{
|
||||
gst_debug!(CAT, obj: pad, "Dropping trailing buffer {:?}", buffer);
|
||||
pad.drop_buffer();
|
||||
|
@ -269,16 +269,13 @@ impl FallbackSwitch {
|
|||
}
|
||||
|
||||
let cur_running_time = cur_running_time.into();
|
||||
let (is_late, deadline) = cur_running_time
|
||||
.zip(agg.latency())
|
||||
.zip(running_time)
|
||||
.map_or(
|
||||
(false, None),
|
||||
|((cur_running_time, latency), running_time)| {
|
||||
let dealine = running_time + latency + 40 * gst::ClockTime::MSECOND;
|
||||
(cur_running_time > dealine, Some(dealine))
|
||||
},
|
||||
);
|
||||
let (is_late, deadline) = match (cur_running_time, agg.latency(), running_time) {
|
||||
(Some(cur_running_time), Some(latency), Some(running_time)) => {
|
||||
let deadline = running_time + latency + 40 * gst::ClockTime::MSECOND;
|
||||
(cur_running_time > deadline, Some(deadline))
|
||||
}
|
||||
_ => (false, None),
|
||||
};
|
||||
|
||||
if is_late {
|
||||
gst_debug!(
|
||||
|
@ -289,13 +286,12 @@ impl FallbackSwitch {
|
|||
deadline.display(),
|
||||
);
|
||||
|
||||
let is_late = state.last_output_time.zip(running_time).map_or(
|
||||
false,
|
||||
|(last_output_time, running_time)| {
|
||||
last_output_time + settings.timeout <= running_time
|
||||
},
|
||||
);
|
||||
if is_late {
|
||||
let is_late = state
|
||||
.last_output_time
|
||||
.opt_add(settings.timeout)
|
||||
.opt_le(running_time);
|
||||
|
||||
if let Some(true) = is_late {
|
||||
/* This buffer arrived too late - we either already switched
|
||||
* to the other pad or there's no point outputting this anyway */
|
||||
gst_debug!(
|
||||
|
@ -418,12 +414,11 @@ impl FallbackSwitch {
|
|||
};
|
||||
|
||||
if !ignore_timeout {
|
||||
let timed_out = !state.last_output_time.zip(running_time).map_or(
|
||||
false,
|
||||
|(last_output_time, running_time)| {
|
||||
last_output_time + settings.timeout > running_time
|
||||
},
|
||||
);
|
||||
let timed_out = state
|
||||
.last_output_time
|
||||
.opt_add(settings.timeout)
|
||||
.opt_le(running_time)
|
||||
.unwrap_or(true);
|
||||
|
||||
// Get the next one if this one is before the timeout
|
||||
if !timed_out {
|
||||
|
@ -544,10 +539,7 @@ impl FallbackSwitch {
|
|||
let base_time = agg.base_time();
|
||||
|
||||
let cur_running_time = if let Some(clock) = clock {
|
||||
clock
|
||||
.time()
|
||||
.zip(base_time)
|
||||
.and_then(|(time, base_time)| time.checked_sub(base_time))
|
||||
clock.time().opt_checked_sub(base_time).ok().flatten()
|
||||
} else {
|
||||
gst::ClockTime::NONE
|
||||
};
|
||||
|
@ -1168,16 +1160,13 @@ impl AggregatorImpl for FallbackSwitch {
|
|||
audio_info.bpf(),
|
||||
)
|
||||
} else if pad_state.video_info.is_some() {
|
||||
let stop = pts.zip(duration).map(|(pts, duration)| pts + duration);
|
||||
let stop = pts.opt_add(duration);
|
||||
segment.clip(pts, stop).map(|(start, stop)| {
|
||||
{
|
||||
let buffer = buffer.make_mut();
|
||||
buffer.set_pts(start);
|
||||
if duration.is_some() {
|
||||
buffer.set_duration(
|
||||
stop.zip(start)
|
||||
.and_then(|(stop, start)| stop.checked_sub(start)),
|
||||
);
|
||||
buffer.set_duration(stop.opt_checked_sub(start).ok().flatten());
|
||||
}
|
||||
}
|
||||
|
||||
|
|
|
@ -210,7 +210,7 @@ impl HandleData for (gst::ClockTime, Option<gst::ClockTime>) {
|
|||
|
||||
segment.clip(self.0, stop).map(|(start, stop)| {
|
||||
let start = start.expect("provided a defined value");
|
||||
(start, stop.map(|stop| stop - start))
|
||||
(start, stop.opt_sub(start))
|
||||
})
|
||||
}
|
||||
}
|
||||
|
@ -306,9 +306,7 @@ impl HandleData for gst::Buffer {
|
|||
let buffer = self.make_mut();
|
||||
buffer.set_pts(start);
|
||||
buffer.set_duration(
|
||||
stop.zip(start)
|
||||
.and_then(|(stop, start)| stop.checked_sub(start)),
|
||||
// FIXME we could expect here
|
||||
stop.opt_checked_sub(start).ok().flatten(), // FIXME we could expect here
|
||||
);
|
||||
}
|
||||
|
||||
|
@ -370,7 +368,6 @@ impl ToggleRecord {
|
|||
};
|
||||
|
||||
// This will only do anything for non-raw data
|
||||
// FIXME comment why we can unwrap
|
||||
dts_or_pts = state.in_segment.start().unwrap().max(dts_or_pts);
|
||||
dts_or_pts_end = state.in_segment.start().unwrap().max(dts_or_pts_end);
|
||||
if let Some(stop) = state.in_segment.stop() {
|
||||
|
@ -380,13 +377,12 @@ impl ToggleRecord {
|
|||
|
||||
let current_running_time = state.in_segment.to_running_time(dts_or_pts);
|
||||
let current_running_time_end = state.in_segment.to_running_time(dts_or_pts_end);
|
||||
|
||||
state.current_running_time = current_running_time
|
||||
.zip(state.current_running_time)
|
||||
.map(|(cur_rt, state_rt)| cur_rt.max(state_rt))
|
||||
.opt_max(state.current_running_time)
|
||||
.or(current_running_time);
|
||||
state.current_running_time_end = current_running_time_end
|
||||
.zip(state.current_running_time_end)
|
||||
.map(|(cur_rt_end, state_rt_end)| cur_rt_end.max(state_rt_end))
|
||||
.opt_max(state.current_running_time_end)
|
||||
.or(current_running_time_end);
|
||||
|
||||
// FIXME we should probably return if either current_running_time or current_running_time_end
|
||||
|
@ -455,8 +451,9 @@ impl ToggleRecord {
|
|||
rec_state.last_recording_stop = current_running_time;
|
||||
let last_recording_duration = rec_state
|
||||
.last_recording_stop
|
||||
.zip(rec_state.last_recording_start)
|
||||
.and_then(|(stop, start)| stop.checked_sub(start));
|
||||
.opt_checked_sub(rec_state.last_recording_start)
|
||||
.ok()
|
||||
.flatten();
|
||||
gst_debug!(
|
||||
CAT,
|
||||
obj: pad,
|
||||
|
@ -477,8 +474,8 @@ impl ToggleRecord {
|
|||
let s = s.state.lock();
|
||||
s.eos
|
||||
|| s.current_running_time
|
||||
.zip(current_running_time)
|
||||
.map_or(false, |(s_cur_rt, cur_rt)| s_cur_rt >= cur_rt)
|
||||
.opt_ge(current_running_time)
|
||||
.unwrap_or(false)
|
||||
})
|
||||
{
|
||||
gst_log!(CAT, obj: pad, "Waiting for other streams to stop");
|
||||
|
@ -570,8 +567,8 @@ impl ToggleRecord {
|
|||
let s = s.state.lock();
|
||||
s.eos
|
||||
|| s.current_running_time
|
||||
.zip(current_running_time)
|
||||
.map_or(false, |(s_cur_rt, cur_rt)| s_cur_rt >= cur_rt)
|
||||
.opt_ge(current_running_time)
|
||||
.unwrap_or(false)
|
||||
})
|
||||
{
|
||||
gst_log!(CAT, obj: pad, "Waiting for other streams to start");
|
||||
|
@ -649,7 +646,6 @@ impl ToggleRecord {
|
|||
};
|
||||
|
||||
// This will only do anything for non-raw data
|
||||
// FIXME comment why we can unwrap
|
||||
pts = state.in_segment.start().unwrap().max(pts);
|
||||
pts_end = state.in_segment.start().unwrap().max(pts_end);
|
||||
if let Some(stop) = state.in_segment.stop() {
|
||||
|
@ -660,12 +656,10 @@ impl ToggleRecord {
|
|||
let current_running_time = state.in_segment.to_running_time(pts);
|
||||
let current_running_time_end = state.in_segment.to_running_time(pts_end);
|
||||
state.current_running_time = current_running_time
|
||||
.zip(state.current_running_time)
|
||||
.map(|(cur_rt, state_rt)| cur_rt.max(state_rt))
|
||||
.opt_max(state.current_running_time)
|
||||
.or(current_running_time);
|
||||
state.current_running_time_end = current_running_time_end
|
||||
.zip(state.current_running_time_end)
|
||||
.map(|(cur_rt_end, state_rt_end)| cur_rt_end.max(state_rt_end))
|
||||
.opt_max(state.current_running_time_end)
|
||||
.or(current_running_time_end);
|
||||
|
||||
gst_log!(
|
||||
|
@ -703,18 +697,20 @@ impl ToggleRecord {
|
|||
&& rec_state.recording_state != RecordingState::Stopping
|
||||
&& main_state
|
||||
.current_running_time_end
|
||||
.zip(current_running_time_end)
|
||||
.map_or(false, |(main_rt_end, cur_rt_end)| main_rt_end < cur_rt_end)
|
||||
.opt_lt(current_running_time_end)
|
||||
.unwrap_or(false)
|
||||
|| rec_state.recording_state == RecordingState::Starting
|
||||
&& rec_state
|
||||
.last_recording_start
|
||||
.map_or(true, |last_rec_start| {
|
||||
current_running_time.map_or(false, |cur_rt| last_rec_start <= cur_rt)
|
||||
})
|
||||
&& (rec_state.last_recording_start.is_none()
|
||||
|| rec_state
|
||||
.last_recording_start
|
||||
.opt_le(current_running_time)
|
||||
.unwrap_or(false))
|
||||
|| rec_state.recording_state == RecordingState::Stopping
|
||||
&& rec_state.last_recording_stop.map_or(true, |last_rec_stop| {
|
||||
current_running_time.map_or(false, |cur_rt| last_rec_stop <= cur_rt)
|
||||
}))
|
||||
&& (rec_state.last_recording_stop.is_none()
|
||||
|| rec_state
|
||||
.last_recording_stop
|
||||
.opt_le(current_running_time)
|
||||
.unwrap_or(false)))
|
||||
&& !main_state.eos
|
||||
&& !state.flushing
|
||||
{
|
||||
|
@ -800,7 +796,10 @@ impl ToggleRecord {
|
|||
gst_warning!(CAT, obj: pad, "Complete buffer clipped!");
|
||||
return Ok(HandleResult::Drop);
|
||||
}
|
||||
} else if current_running_time.map_or(false, |cur_rt| cur_rt < last_recording_start) {
|
||||
} else if current_running_time
|
||||
.opt_lt(last_recording_start)
|
||||
.unwrap_or(false)
|
||||
{
|
||||
// Otherwise if the buffer starts before the recording start, drop it. This
|
||||
// means that we either can't clip, or that the end is also before the
|
||||
// recording start
|
||||
|
@ -814,13 +813,11 @@ impl ToggleRecord {
|
|||
return Ok(HandleResult::Drop);
|
||||
} else if data.can_clip(&*state)
|
||||
&& current_running_time
|
||||
.zip(rec_state.last_recording_stop)
|
||||
.map_or(false, |(cur_rt, last_rec_stop)| cur_rt < last_rec_stop)
|
||||
.opt_lt(rec_state.last_recording_stop)
|
||||
.unwrap_or(false)
|
||||
&& current_running_time_end
|
||||
.zip(rec_state.last_recording_stop)
|
||||
.map_or(false, |(cur_rt_end, last_rec_stop)| {
|
||||
cur_rt_end > last_rec_stop
|
||||
})
|
||||
.opt_gt(rec_state.last_recording_stop)
|
||||
.unwrap_or(false)
|
||||
{
|
||||
// Similarly if the end is after the recording stop but the start is before and we
|
||||
// can clip, clip the buffer and pass it through.
|
||||
|
@ -863,10 +860,8 @@ impl ToggleRecord {
|
|||
)));
|
||||
}
|
||||
} else if current_running_time_end
|
||||
.zip(rec_state.last_recording_stop)
|
||||
.map_or(false, |(cur_rt_end, last_rec_stop)| {
|
||||
cur_rt_end > last_rec_stop
|
||||
})
|
||||
.opt_gt(rec_state.last_recording_stop)
|
||||
.unwrap_or(false)
|
||||
{
|
||||
// Otherwise if the end of the buffer is after the recording stop, we're EOS
|
||||
// now. This means that we either couldn't clip or that the start is also after
|
||||
|
@ -887,11 +882,12 @@ impl ToggleRecord {
|
|||
} else {
|
||||
// In all other cases the buffer is fully between recording start and end and
|
||||
// can be passed through as is
|
||||
assert!(current_running_time.map_or(false, |cur_rt| cur_rt >= last_recording_start));
|
||||
assert!(current_running_time
|
||||
.opt_ge(last_recording_start)
|
||||
.unwrap_or(false));
|
||||
assert!(current_running_time_end
|
||||
.zip(rec_state.last_recording_stop)
|
||||
.map_or(false, |(cur_rt_end, last_rec_stop)| cur_rt_end
|
||||
<= last_rec_stop));
|
||||
.opt_le(rec_state.last_recording_stop)
|
||||
.unwrap_or(false));
|
||||
|
||||
gst_debug!(
|
||||
CAT,
|
||||
|
@ -910,15 +906,14 @@ impl ToggleRecord {
|
|||
// The end of our buffer must be before/at the end of the previous buffer of the main
|
||||
// stream
|
||||
assert!(current_running_time_end
|
||||
.zip(main_state.current_running_time_end)
|
||||
.map_or(false, |(cur_rt_end, main_cur_rt_end)| cur_rt_end
|
||||
<= main_cur_rt_end));
|
||||
.opt_le(main_state.current_running_time_end)
|
||||
.unwrap_or(false));
|
||||
|
||||
// We're properly started, must have a start position and
|
||||
// be actually after that start position
|
||||
assert!(current_running_time
|
||||
.zip(rec_state.last_recording_start)
|
||||
.map_or(false, |(cur_rt, last_rec_start)| cur_rt >= last_rec_start));
|
||||
.opt_ge(rec_state.last_recording_start)
|
||||
.unwrap_or(false));
|
||||
gst_log!(CAT, obj: pad, "Passing buffer (recording)");
|
||||
Ok(HandleResult::Pass(data))
|
||||
}
|
||||
|
@ -998,9 +993,8 @@ impl ToggleRecord {
|
|||
// The end of our buffer must be before/at the end of the previous buffer of the main
|
||||
// stream
|
||||
assert!(current_running_time_end
|
||||
.zip(main_state.current_running_time_end)
|
||||
.map_or(false, |(cur_rt_end, state_rt_end)| cur_rt_end
|
||||
<= state_rt_end));
|
||||
.opt_le(main_state.current_running_time_end)
|
||||
.unwrap_or(false));
|
||||
|
||||
// We're properly stopped
|
||||
gst_log!(CAT, obj: pad, "Dropping buffer (stopped)");
|
||||
|
@ -1357,11 +1351,7 @@ impl ToggleRecord {
|
|||
|
||||
forward = match handle_result {
|
||||
Ok(HandleResult::Pass((new_pts, new_duration))) => {
|
||||
if new_pts != pts
|
||||
|| new_duration
|
||||
.zip(duration)
|
||||
.map_or(false, |(new_duration, duration)| new_duration != duration)
|
||||
{
|
||||
if new_pts != pts || new_duration.is_some() && new_duration != duration {
|
||||
event = gst::event::Gap::builder(new_pts)
|
||||
.duration(new_duration)
|
||||
.build();
|
||||
|
@ -1587,10 +1577,9 @@ impl ToggleRecord {
|
|||
{
|
||||
if let Some(delta) = state
|
||||
.current_running_time_end
|
||||
.zip(rec_state.last_recording_start)
|
||||
.and_then(|(cur_rt_end, last_rec_start)| {
|
||||
cur_rt_end.checked_sub(last_rec_start)
|
||||
})
|
||||
.opt_checked_sub(rec_state.last_recording_start)
|
||||
.ok()
|
||||
.flatten()
|
||||
{
|
||||
gst_debug!(
|
||||
CAT,
|
||||
|
@ -1622,10 +1611,9 @@ impl ToggleRecord {
|
|||
{
|
||||
if let Some(delta) = state
|
||||
.current_running_time_end
|
||||
.zip(rec_state.last_recording_start)
|
||||
.and_then(|(cur_rt_end, last_rec_start)| {
|
||||
cur_rt_end.checked_sub(last_rec_start)
|
||||
})
|
||||
.opt_checked_sub(rec_state.last_recording_start)
|
||||
.ok()
|
||||
.flatten()
|
||||
{
|
||||
gst_debug!(
|
||||
CAT,
|
||||
|
|
|
@ -400,9 +400,7 @@ fn dump(
|
|||
duration: impl Into<Option<gst::ClockTime>>,
|
||||
) {
|
||||
let pts = pts.into();
|
||||
let end = pts
|
||||
.zip(duration.into())
|
||||
.map(|(pts, duration)| pts + duration);
|
||||
let end = pts.opt_add(duration.into());
|
||||
|
||||
if cc_data != 0x8080 {
|
||||
gst_debug!(
|
||||
|
@ -478,10 +476,10 @@ impl State {
|
|||
Some(Cea608Mode::PopOn) => gst::ClockTime::NONE,
|
||||
_ => self
|
||||
.current_pts
|
||||
.zip(self.current_duration)
|
||||
.map(|(cur_pts, cur_duration)| cur_pts + cur_duration)
|
||||
.zip(self.first_pts)
|
||||
.and_then(|(cur_end, first_pts)| cur_end.checked_sub(first_pts)),
|
||||
.opt_add(self.current_duration)
|
||||
.opt_checked_sub(self.first_pts)
|
||||
.ok()
|
||||
.flatten(),
|
||||
}
|
||||
};
|
||||
|
||||
|
@ -541,10 +539,10 @@ impl State {
|
|||
gst_log!(CAT, obj: element, "Draining pending");
|
||||
pending.duration = self
|
||||
.current_pts
|
||||
.zip(self.current_duration)
|
||||
.map(|(cur_pts, cur_dur)| cur_pts + cur_dur)
|
||||
.zip(pending.pts)
|
||||
.and_then(|(cur_end, pending_pts)| cur_end.checked_sub(pending_pts));
|
||||
.opt_add(self.current_duration)
|
||||
.opt_checked_sub(pending.pts)
|
||||
.ok()
|
||||
.flatten();
|
||||
Some(pending)
|
||||
} else {
|
||||
None
|
||||
|
|
|
@ -68,7 +68,7 @@ fn clamp(
|
|||
mut pts: gst::ClockTime,
|
||||
mut duration: Option<gst::ClockTime>,
|
||||
) -> Option<(gst::ClockTime, Option<gst::ClockTime>)> {
|
||||
let end_pts = duration.map(|duration| pts + duration).unwrap_or(pts);
|
||||
let end_pts = pts.opt_add(duration).unwrap_or(pts);
|
||||
|
||||
if let Some(segment_start) = segment.start() {
|
||||
if end_pts < segment_start {
|
||||
|
@ -76,9 +76,7 @@ fn clamp(
|
|||
}
|
||||
|
||||
if pts < segment_start {
|
||||
if let Some(ref mut duration) = duration {
|
||||
*duration = duration.saturating_sub(segment_start - pts);
|
||||
}
|
||||
duration.opt_sub_assign(segment_start - pts);
|
||||
pts = segment_start;
|
||||
}
|
||||
}
|
||||
|
@ -89,9 +87,7 @@ fn clamp(
|
|||
}
|
||||
|
||||
if end_pts > segment_stop {
|
||||
if let Some(ref mut duration) = duration {
|
||||
*duration = duration.saturating_sub(end_pts - segment_stop);
|
||||
}
|
||||
duration.opt_sub_assign(end_pts - segment_stop);
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -322,10 +318,7 @@ impl State {
|
|||
|
||||
self.drain(&mut ret, self.segment.to_running_time(pts));
|
||||
|
||||
self.last_pts = Some(pts)
|
||||
.zip(duration)
|
||||
.map(|(pts, duration)| pts + duration)
|
||||
.or(Some(pts));
|
||||
self.last_pts = Some(pts).opt_add(duration).or(Some(pts));
|
||||
|
||||
ret
|
||||
}
|
||||
|
|
|
@ -1015,17 +1015,11 @@ impl MccParse {
|
|||
let pull = state.pull.as_ref().unwrap();
|
||||
|
||||
if start_type == gst::SeekType::Set {
|
||||
start = start
|
||||
.zip(pull.duration)
|
||||
.map(|(start, duration)| start.min(duration))
|
||||
.or(start);
|
||||
start = start.opt_min(pull.duration).or(start);
|
||||
}
|
||||
|
||||
if stop_type == gst::SeekType::Set {
|
||||
stop = stop
|
||||
.zip(pull.duration)
|
||||
.map(|(stop, duration)| stop.min(duration))
|
||||
.or(stop);
|
||||
stop = stop.opt_min(pull.duration).or(stop);
|
||||
}
|
||||
|
||||
state.seeking = true;
|
||||
|
|
|
@ -429,14 +429,8 @@ impl SccParse {
|
|||
timecode.increment_frame();
|
||||
|
||||
if clip_buffers {
|
||||
let end_time = buffer
|
||||
.pts()
|
||||
.zip(buffer.duration())
|
||||
.map(|(pts, duration)| pts + duration);
|
||||
if end_time
|
||||
.zip(segment_start)
|
||||
.map_or(false, |(end_time, segment_start)| end_time < segment_start)
|
||||
{
|
||||
let end_time = buffer.pts().opt_add(buffer.duration());
|
||||
if end_time.opt_lt(segment_start).unwrap_or(false) {
|
||||
gst_trace!(
|
||||
CAT,
|
||||
obj: element,
|
||||
|
@ -448,12 +442,11 @@ impl SccParse {
|
|||
}
|
||||
}
|
||||
|
||||
send_eos = state.segment.stop().map_or(false, |stop| {
|
||||
buffer
|
||||
.pts()
|
||||
.zip(buffer.duration())
|
||||
.map_or(false, |(pts, duration)| pts + duration >= stop)
|
||||
});
|
||||
send_eos = buffer
|
||||
.pts()
|
||||
.opt_add(buffer.duration())
|
||||
.opt_ge(state.segment.stop())
|
||||
.unwrap_or(false);
|
||||
|
||||
let buffers = buffers.get_mut().unwrap();
|
||||
buffers.add(buffer);
|
||||
|
@ -899,17 +892,11 @@ impl SccParse {
|
|||
let pull = state.pull.as_ref().unwrap();
|
||||
|
||||
if start_type == gst::SeekType::Set {
|
||||
start = start
|
||||
.zip(pull.duration)
|
||||
.map(|(start, duration)| start.min(duration))
|
||||
.or(start);
|
||||
start = start.opt_min(pull.duration).or(start);
|
||||
}
|
||||
|
||||
if stop_type == gst::SeekType::Set {
|
||||
stop = stop
|
||||
.zip(pull.duration)
|
||||
.map(|(stop, duration)| stop.min(duration))
|
||||
.or(stop);
|
||||
stop = stop.opt_min(pull.duration).or(stop);
|
||||
}
|
||||
|
||||
state.seeking = true;
|
||||
|
|
|
@ -1198,15 +1198,9 @@ impl StreamingState {
|
|||
|
||||
fn update_position(&mut self, buffer: &gst::Buffer) {
|
||||
if let Some(pts) = buffer.pts() {
|
||||
self.last_position = self
|
||||
.last_position
|
||||
.map(|last_pos| last_pos.max(pts))
|
||||
.or(Some(pts));
|
||||
self.last_position = self.last_position.opt_max(pts).or(Some(pts));
|
||||
} else if let Some(dts) = buffer.dts() {
|
||||
self.last_position = self
|
||||
.last_position
|
||||
.map(|last_pos| last_pos.max(dts))
|
||||
.or(Some(dts));
|
||||
self.last_position = self.last_position.opt_max(dts).or(Some(dts));
|
||||
}
|
||||
}
|
||||
}
|
||||
|
|
|
@ -401,9 +401,9 @@ impl VideoEncoderImpl for GifEnc {
|
|||
// is probably less visible than the large stuttering when a complete 10ms have to
|
||||
// "catch up".
|
||||
gif_frame.delay = (frame_delay.mseconds() as f32 / 10.0).round() as u16;
|
||||
state.gif_pts = state.gif_pts.map(|gif_pts| {
|
||||
gif_pts + gst::ClockTime::from_mseconds(gif_frame.delay as u64 * 10)
|
||||
});
|
||||
state.gif_pts = state
|
||||
.gif_pts
|
||||
.opt_add(gst::ClockTime::from_mseconds(gif_frame.delay as u64 * 10));
|
||||
|
||||
// encode new frame
|
||||
let context = state.context.as_mut().unwrap();
|
||||
|
|
|
@ -48,9 +48,7 @@ fn test_decode() {
|
|||
assert_eq!(buf.pts(), expected_timestamp);
|
||||
assert_eq!(buf.duration(), expected_duration);
|
||||
|
||||
expected_timestamp = expected_timestamp
|
||||
.zip(expected_duration)
|
||||
.map(|(ts, duration)| ts + duration);
|
||||
expected_timestamp = expected_timestamp.opt_add(expected_duration);
|
||||
count += 1;
|
||||
}
|
||||
|
||||
|
|
Loading…
Reference in a new issue