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https://gitlab.freedesktop.org/gstreamer/gst-plugins-rs.git
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6dfd1c1496
Changes from https://gitlab.freedesktop.org/gstreamer/gstreamer-rs/-/merge_requests/1355 Part-of: <https://gitlab.freedesktop.org/gstreamer/gst-plugins-rs/-/merge_requests/1403>
146 lines
4.8 KiB
Rust
146 lines
4.8 KiB
Rust
// Copyright (C) 2021 Tomasz Andrzejak <andreiltd@gmail.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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use anyhow::{bail, Error};
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use std::sync::{Arc, Condvar, Mutex};
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use std::{env, thread, time};
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// Rotation in radians to apply to object position every 100 ms
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const ROTATION: f32 = 2.0 / 180.0 * std::f32::consts::PI;
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fn run() -> Result<(), Error> {
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gst::init()?;
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gstrsaudiofx::plugin_register_static()?;
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let args: Vec<String> = env::args().collect();
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// Ircam binaries that the hrtf plugin is using can be downloaded from:
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// https://github.com/mrDIMAS/hrir_sphere_builder/tree/master/hrtf_base/IRCAM
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//
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// Ideally provide a mono input as this example is moving a single object. Otherwise
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// the input will be downmixed to mono with the audioconvert element.
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//
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// e.g.: hrtfrender 'file:///path/to/my/awesome/mono/wav/awesome.wav' IRC_1002_C.bin
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if args.len() != 3 {
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bail!("Usage: {} URI HRIR", args[0].clone());
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}
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let uri = &args[1];
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let hrir = &args[2];
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let pipeline = gst::parse::launch(&format!(
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"uridecodebin uri={uri} ! audioconvert ! audio/x-raw,channels=1 !
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hrtfrender hrir-file={hrir} name=hrtf ! audioresample ! autoaudiosink"
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))?
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.downcast::<gst::Pipeline>()
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.expect("type error");
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let hrtf = pipeline.by_name("hrtf").expect("hrtf element not found");
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// At the beginning put an object in front of listener
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let objs = [gst::Structure::builder("application/spatial-object")
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.field("x", 0f32)
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.field("y", 0f32)
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.field("z", 1f32)
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.field("distance-gain", 1f32)
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.build()];
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hrtf.set_property("spatial-objects", gst::Array::new(objs));
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let state_cond = Arc::new((Mutex::new(gst::State::Null), Condvar::new()));
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let state_cond_clone = Arc::clone(&state_cond);
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thread::spawn(move || {
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// Wait for the pipeline to start up
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{
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let (lock, cvar) = &*state_cond_clone;
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let mut state = lock.lock().unwrap();
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while *state != gst::State::Playing {
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state = cvar.wait(state).unwrap();
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}
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}
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loop {
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// get current object position and rotate it clockwise
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let s = hrtf.property::<gst::Array>("spatial-objects")[0]
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.get::<gst::Structure>()
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.expect("type error");
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// positive values are on the right side of a listener
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let x = s.get::<f32>("x").expect("type error");
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// elevation, positive value is up
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let y = s.get::<f32>("y").expect("type error");
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// positive values are in front of a listener
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let z = s.get::<f32>("z").expect("type error");
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// gain
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let gain = s.get::<f32>("distance-gain").expect("type error");
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// rotate clockwise: https://en.wikipedia.org/wiki/Rotation_matrix
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let new_x = x * f32::cos(ROTATION) + z * f32::sin(ROTATION);
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let new_z = -x * f32::sin(ROTATION) + z * f32::cos(ROTATION);
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let objs = [gst::Structure::builder("application/spatial-object")
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.field("x", new_x)
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.field("y", y)
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.field("z", new_z)
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.field("distance-gain", gain)
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.build()];
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hrtf.set_property("spatial-objects", gst::Array::new(objs));
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thread::sleep(time::Duration::from_millis(100));
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}
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});
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pipeline.set_state(gst::State::Playing)?;
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let bus = pipeline.bus().unwrap();
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for msg in bus.iter_timed(gst::ClockTime::NONE) {
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use gst::MessageView;
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match msg.view() {
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MessageView::StateChanged(state_changed) => {
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if state_changed.src().map(|s| s == &pipeline).unwrap_or(false)
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&& state_changed.current() == gst::State::Playing
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{
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let (lock, cvar) = &*state_cond;
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let mut state = lock.lock().unwrap();
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*state = gst::State::Playing;
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cvar.notify_one();
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}
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}
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MessageView::Eos(..) => break,
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MessageView::Error(err) => {
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println!(
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"Error from {:?}: {} ({:?})",
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msg.src().map(|s| s.path_string()),
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err.error(),
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err.debug()
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);
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break;
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}
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_ => (),
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}
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}
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pipeline.set_state(gst::State::Null)?;
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Ok(())
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}
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fn main() {
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match run() {
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Ok(r) => r,
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Err(e) => eprintln!("Error! {e}"),
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}
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}
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