mirror of
https://gitlab.freedesktop.org/gstreamer/gst-plugins-rs.git
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2c6ab9dd1f
hrtfrender tests are now using a fake hrir configuration file which is stripped of actual position coefficients. The generated config does not work anymore.
254 lines
7.5 KiB
Rust
254 lines
7.5 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::glib;
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use gst::prelude::*;
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use once_cell::sync::Lazy;
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static CONFIG: Lazy<glib::Bytes> = Lazy::new(|| {
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let buff = include_bytes!("test.hrir");
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glib::Bytes::from_owned(buff)
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});
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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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gstrsaudiofx::plugin_register_static().expect("Failed to register rsaudiofx plugin");
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});
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}
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fn build_harness(src_caps: gst::Caps, sink_caps: gst::Caps) -> (gst_check::Harness, gst::Element) {
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let hrtf = gst::ElementFactory::make("hrtfrender", None).unwrap();
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hrtf.set_property("hrir-raw", &*CONFIG);
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let mut h = gst_check::Harness::with_element(&hrtf, Some("sink"), Some("src"));
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h.set_caps(src_caps, sink_caps);
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(h, hrtf)
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}
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#[test]
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fn test_hrtfrender_samples_in_samples_out() {
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init();
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let src_caps = gst::Caps::builder("audio/x-raw")
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.field("format", gst_audio::AUDIO_FORMAT_F32.to_str())
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.field("rate", 44_100i32)
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.field("channels", 1i32)
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.field("channel-mask", gst::Bitmask::new(0x1))
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.field("layout", "interleaved")
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.build();
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let sink_caps = gst::Caps::builder("audio/x-raw")
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.field("format", gst_audio::AUDIO_FORMAT_F32.to_str())
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.field("rate", 44_100i32)
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.field("channels", 2i32)
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.field("layout", "interleaved")
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.build();
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let (mut h, _) = build_harness(src_caps, sink_caps);
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h.play();
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let inbpf = 4;
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let outbpf = 8;
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let full_block = 512 * 8;
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let mut buffer = gst::Buffer::with_size(full_block * inbpf + 20 * inbpf).unwrap();
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let buffer_mut = buffer.get_mut().unwrap();
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let full_block_time = (full_block as u64)
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.mul_div_round(*gst::ClockTime::SECOND, 44_100)
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.map(gst::ClockTime::from_nseconds);
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buffer_mut.set_pts(gst::ClockTime::ZERO);
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buffer_mut.set_duration(full_block_time);
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buffer_mut.set_offset(0);
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let ret = h.push(buffer);
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assert!(ret.is_ok());
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let buffer = h.pull().unwrap();
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assert_eq!(buffer.size(), full_block * outbpf);
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h.push_event(gst::event::Eos::new());
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let buffer = h.pull().unwrap();
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assert_eq!(buffer.size(), 20 * outbpf);
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assert_eq!(buffer.offset(), full_block as u64);
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assert_eq!(buffer.pts(), full_block_time);
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let residue_time = 20
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.mul_div_round(*gst::ClockTime::SECOND, 44_100)
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.map(gst::ClockTime::from_nseconds);
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assert_eq!(buffer.duration(), residue_time);
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}
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#[test]
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fn test_hrtfrender_implicit_spatial_objects() {
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init();
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let src_caps = gst::Caps::builder("audio/x-raw")
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.field("format", gst_audio::AUDIO_FORMAT_F32.to_str())
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.field("rate", 44_100i32)
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.field("channels", 8i32)
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.field("channel-mask", gst::Bitmask::new(0xc3f))
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.field("layout", "interleaved")
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.build();
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let sink_caps = gst::Caps::builder("audio/x-raw")
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.field("format", gst_audio::AUDIO_FORMAT_F32.to_str())
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.field("rate", 44_100i32)
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.field("channels", 2i32)
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.field("layout", "interleaved")
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.build();
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let (mut h, hrtf) = build_harness(src_caps, sink_caps);
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let objs = hrtf.property::<gst::Array>("spatial-objects");
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h.play();
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assert_eq!(objs.len(), 8);
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}
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#[test]
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fn test_hrtfrender_explicit_spatial_objects() {
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init();
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let src_caps = gst::Caps::builder("audio/x-raw")
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.field("format", gst_audio::AUDIO_FORMAT_F32.to_str())
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.field("rate", 44_100i32)
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.field("channels", 8i32)
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.field("layout", "interleaved")
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.build();
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let sink_caps = gst::Caps::builder("audio/x-raw")
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.field("format", gst_audio::AUDIO_FORMAT_F32.to_str())
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.field("rate", 44_100i32)
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.field("channels", 2i32)
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.field("layout", "interleaved")
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.build();
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let (mut h, hrtf) = build_harness(src_caps, sink_caps);
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let objs = (0..8)
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.map(|x| {
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gst::Structure::builder("application/spatial-object")
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.field("x", -1f32 + x as f32 / 8f32)
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.field("y", 0f32)
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.field("z", 1f32)
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.field("distance-gain", 0.1f32)
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.build()
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})
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.collect::<Vec<_>>();
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hrtf.set_property("spatial-objects", gst::Array::new(objs));
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h.play();
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let objs = hrtf.property::<gst::Array>("spatial-objects");
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assert_eq!(objs.len(), 8);
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}
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#[test]
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// Caps negotation should fail if we have mismatch between input channels and
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// of objects that we set via property. In this test case input has 6 channels
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// but the number of spatial objects set is 2.
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fn test_hrtfrender_caps_negotiation_fail() {
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init();
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let src_caps = gst::Caps::builder("audio/x-raw")
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.field("format", gst_audio::AUDIO_FORMAT_F32.to_str())
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.field("rate", 44_100i32)
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.field("channels", 6i32)
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.field("layout", "interleaved")
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.build();
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let sink_caps = gst::Caps::builder("audio/x-raw")
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.field("format", gst_audio::AUDIO_FORMAT_F32.to_str())
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.field("rate", 44_100i32)
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.field("channels", 2i32)
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.field("layout", "interleaved")
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.build();
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let (mut h, hrtf) = build_harness(src_caps, sink_caps);
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let objs = (0..2)
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.map(|_| {
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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", 0.1f32)
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.build()
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})
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.collect::<Vec<_>>();
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hrtf.set_property("spatial-objects", gst::Array::new(objs));
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h.play();
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let buffer = gst::Buffer::with_size(2048).unwrap();
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assert_eq!(h.push(buffer), Err(gst::FlowError::NotNegotiated));
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h.push_event(gst::event::Eos::new());
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// The harness sinkpad end up not having defined caps so, the current_caps
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// should be None
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let current_caps = h.sinkpad().expect("harness has no sinkpad").current_caps();
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assert!(current_caps.is_none());
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}
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#[test]
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fn test_hrtfrender_multiple_instances_sharing_thread_pool() {
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init();
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let src_caps = gst::Caps::builder("audio/x-raw")
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.field("format", gst_audio::AUDIO_FORMAT_F32.to_str())
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.field("rate", 44_100i32)
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.field("channels", 1i32)
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.field("layout", "interleaved")
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.build();
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let sink_caps = gst::Caps::builder("audio/x-raw")
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.field("format", gst_audio::AUDIO_FORMAT_F32.to_str())
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.field("rate", 44_100i32)
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.field("channels", 2i32)
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.field("layout", "interleaved")
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.build();
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let (_, hrtf) = build_harness(src_caps.clone(), sink_caps.clone());
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let block_length: u64 = hrtf.property::<u64>("block-length");
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let steps: u64 = hrtf.property::<u64>("interpolation-steps");
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let bps: u64 = 4;
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drop(hrtf);
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let blksz = (block_length * steps * bps) as usize;
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let mut harnesses = (0..4)
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.map(|_| build_harness(src_caps.clone(), sink_caps.clone()).0)
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.collect::<Vec<_>>();
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for h in harnesses.iter_mut() {
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h.play();
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let buffer = gst::Buffer::with_size(blksz).unwrap();
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assert!(h.push(buffer).is_ok());
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let buffer = h.pull().unwrap();
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assert_eq!(buffer.size(), 2 * blksz);
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h.push_event(gst::event::Eos::new());
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}
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}
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