mirror of
https://gitlab.freedesktop.org/gstreamer/gst-plugins-rs.git
synced 2024-12-20 00:56:30 +00:00
bbf131086a
Previously the first buffer would be output immediately and synchronization would only happen from the second buffer onwards. This would mean that the first buffer would potentially be output too early. Instead, if there is no known output timestamp yet but a buffer with a timestamp, first of all take its start as the initial output timestamp and synchronize on that buffer. Part-of: <https://gitlab.freedesktop.org/gstreamer/gst-plugins-rs/-/merge_requests/1635>
206 lines
5.7 KiB
Rust
206 lines
5.7 KiB
Rust
// Copyright (C) 2022 LTN Global Communications, Inc.
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// Contact: Jan Alexander Steffens (heftig) <jan.steffens@ltnglobal.com>
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//
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// This Source Code Form is subject to the terms of the Mozilla Public License, v2.0.
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// If a copy of the MPL was not distributed with this file, You can obtain one at
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// <https://mozilla.org/MPL/2.0/>.
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//
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// SPDX-License-Identifier: MPL-2.0
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use gst::prelude::*;
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fn init() {
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use std::sync::Once;
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static INIT: Once = Once::new();
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INIT.call_once(|| {
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gst::init().unwrap();
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gstlivesync::plugin_register_static().expect("Failed to register livesync plugin");
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});
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}
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const DURATION: gst::ClockTime = gst::ClockTime::from_mseconds(100);
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const LATENCY: gst::ClockTime = gst::ClockTime::from_mseconds(200);
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const SEGMENT_OFFSET: gst::ClockTime = gst::ClockTime::from_seconds(60 * 60 * 1000);
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fn crank_pull(harness: &mut gst_check::Harness) -> gst::Buffer {
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harness.crank_single_clock_wait().unwrap();
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harness.pull().unwrap()
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}
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#[track_caller]
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fn assert_buf(
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buf: &gst::BufferRef,
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offset: u64,
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pts: gst::ClockTime,
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duration: gst::ClockTime,
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flags: gst::BufferFlags,
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) {
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assert_eq!(buf.offset(), offset, "Bad offset");
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assert_eq!(buf.pts(), Some(pts), "Bad PTS");
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assert_eq!(buf.duration(), Some(duration), "Bad duration");
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assert_eq!(
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buf.flags() - gst::BufferFlags::TAG_MEMORY,
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flags,
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"Bad flags",
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);
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}
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#[track_caller]
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fn assert_crank_pull(
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harness: &mut gst_check::Harness,
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offset_per_buffer: u64,
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src_buffer_number: u64,
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sink_buffer_number: u64,
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flags: gst::BufferFlags,
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singlesegment: bool,
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) {
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let pts = if singlesegment {
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LATENCY + DURATION * sink_buffer_number + SEGMENT_OFFSET
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} else {
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DURATION * sink_buffer_number
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};
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assert_buf(
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&crank_pull(harness),
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offset_per_buffer * src_buffer_number,
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pts,
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DURATION,
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flags,
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);
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}
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#[test]
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fn test_video_singlesegment() {
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test_video(true);
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}
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#[test]
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// FIXME: racy: https://gitlab.freedesktop.org/gstreamer/gst-plugins-rs/-/issues/328
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#[ignore]
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fn test_audio_singlesegment() {
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test_audio(true);
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}
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#[test]
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// FIXME: racy: https://gitlab.freedesktop.org/gstreamer/gst-plugins-rs/-/issues/357
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#[ignore]
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fn test_video_nonsinglesegment() {
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test_video(false);
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}
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#[test]
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// FIXME: racy: https://gitlab.freedesktop.org/gstreamer/gst-plugins-rs/-/issues/328
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#[ignore]
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fn test_audio_nonsinglesegment() {
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test_audio(false);
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}
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fn test_video(singlesegment: bool) {
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init();
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let mut h = gst_check::Harness::new("livesync");
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h.add_src_parse(
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r"videotestsrc is-live=1
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! capsfilter caps=video/x-raw,framerate=10/1
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",
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true,
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);
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let element = h.element().unwrap();
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element.set_property("latency", LATENCY);
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element.set_property("single-segment", singlesegment);
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test_livesync(&mut h, 1, singlesegment);
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}
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fn test_audio(singlesegment: bool) {
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init();
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let mut h = gst_check::Harness::new("livesync");
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h.add_src_parse(
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r"audiotestsrc is-live=1 samplesperbuffer=4800
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! capsfilter caps=audio/x-raw,rate=48000
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",
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true,
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);
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let element = h.element().unwrap();
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element.set_property("latency", LATENCY);
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element.set_property("single-segment", singlesegment);
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test_livesync(&mut h, 4800, singlesegment);
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}
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fn test_livesync(h: &mut gst_check::Harness, o: u64, singlesegment: bool) {
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// Normal operation ------------------------------
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// Push frames 0-1, pull frame 0
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h.push_from_src().unwrap();
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h.push_from_src().unwrap();
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assert_eq!(h.pull_event().unwrap().type_(), gst::EventType::StreamStart);
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// Caps are only output once waiting for the first buffer has finished
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h.crank_single_clock_wait().unwrap();
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assert_eq!(h.pull_event().unwrap().type_(), gst::EventType::Caps);
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assert_eq!(h.pull_event().unwrap().type_(), gst::EventType::Segment);
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assert_crank_pull(h, o, 0, 0, gst::BufferFlags::DISCONT, singlesegment);
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// Push frames 2-10, pull frames 1-9
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for i in 1..=9 {
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h.push_from_src().unwrap();
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assert_crank_pull(h, o, i, i, gst::BufferFlags::empty(), singlesegment);
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}
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// Pull frame 10
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assert_crank_pull(h, o, 10, 10, gst::BufferFlags::empty(), singlesegment);
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// Bridging gap ----------------------------------
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// Pull frames 11-19
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for i in 11..=19 {
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assert_crank_pull(h, o, 10, i, gst::BufferFlags::GAP, singlesegment);
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}
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// Push frames 11-19
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for _ in 11..=19 {
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h.push_from_src().unwrap();
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}
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// Normal operation ------------------------------
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// Push frames 20-21, pull frame 20
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for _ in 1..=2 {
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let mut src_h = h.src_harness_mut().unwrap();
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src_h.crank_single_clock_wait().unwrap();
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let mut buf = src_h.pull().unwrap();
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let buf_mut = buf.make_mut();
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buf_mut.set_flags(gst::BufferFlags::MARKER);
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h.push(buf).unwrap();
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}
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assert_crank_pull(h, o, 10, 20, gst::BufferFlags::GAP, singlesegment);
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// Push frame 22, pull frame 21
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h.push_from_src().unwrap();
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assert_crank_pull(
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h,
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o,
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21,
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21,
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gst::BufferFlags::DISCONT | gst::BufferFlags::MARKER,
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singlesegment,
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);
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// Push frames 23-30, pull frames 22-29
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for i in 22..=29 {
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h.push_from_src().unwrap();
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assert_crank_pull(h, o, i, i, gst::BufferFlags::empty(), singlesegment);
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}
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// EOS -------------------------------------------
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assert!(h.push_event(gst::event::Eos::new()));
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// Pull frame 30
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assert_crank_pull(h, o, 30, 30, gst::BufferFlags::empty(), singlesegment);
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assert_eq!(h.pull_event().unwrap().type_(), gst::EventType::Eos);
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assert_eq!(h.try_pull(), None);
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}
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