2022-03-18 09:24:54 +11:00
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use atomic_float::AtomicF32;
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use nih_plug::prelude::*;
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use nih_plug_egui::{create_egui_editor, egui, widgets, EguiState};
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use std::sync::Arc;
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/// This is mostly identical to the gain example, minus some fluff, and with a GUI.
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struct Gain {
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2022-04-07 23:31:46 +10:00
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params: Arc<GainParams>,
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2022-03-18 09:24:54 +11:00
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editor_state: Arc<EguiState>,
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/// Needed to normalize the peak meter's response based on the sample rate.
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peak_meter_decay_weight: f32,
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/// The current data for the peak meter. This is stored as an [`Arc`] so we can share it between
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/// the GUI and the audio processing parts. If you have more state to share, then it's a good
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/// idea to put all of that in a struct behind a single `Arc`.
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///
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/// This is stored as voltage gain.
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peak_meter: Arc<AtomicF32>,
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}
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#[derive(Params)]
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struct GainParams {
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#[id = "gain"]
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pub gain: FloatParam,
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// TODO: Remove this parameter when we're done implementing the widgets
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#[id = "foobar"]
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pub some_int: IntParam,
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}
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impl Default for Gain {
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fn default() -> Self {
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Self {
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params: Arc::new(GainParams::default()),
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editor_state: EguiState::from_size(300, 180),
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peak_meter_decay_weight: 1.0,
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peak_meter: Arc::new(AtomicF32::new(util::MINUS_INFINITY_DB)),
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}
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}
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}
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impl Default for GainParams {
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fn default() -> Self {
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Self {
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gain: FloatParam::new(
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"Gain",
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0.0,
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FloatRange::Linear {
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min: -30.0,
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max: 30.0,
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},
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)
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.with_smoother(SmoothingStyle::Linear(50.0))
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.with_step_size(0.01)
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.with_unit(" dB"),
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some_int: IntParam::new("Something", 3, IntRange::Linear { min: 0, max: 3 }),
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}
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}
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}
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impl Plugin for Gain {
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const NAME: &'static str = "Gain GUI (egui)";
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const VENDOR: &'static str = "Moist Plugins GmbH";
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const URL: &'static str = "https://youtu.be/dQw4w9WgXcQ";
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const EMAIL: &'static str = "info@example.com";
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const VERSION: &'static str = "0.0.1";
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const DEFAULT_NUM_INPUTS: u32 = 2;
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const DEFAULT_NUM_OUTPUTS: u32 = 2;
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const SAMPLE_ACCURATE_AUTOMATION: bool = true;
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2022-04-07 23:31:46 +10:00
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fn params(&self) -> Arc<dyn Params> {
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self.params.clone()
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}
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fn editor(&self) -> Option<Box<dyn Editor>> {
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let params = self.params.clone();
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let peak_meter = self.peak_meter.clone();
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create_egui_editor(
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self.editor_state.clone(),
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(),
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move |egui_ctx, setter, _state| {
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egui::CentralPanel::default().show(egui_ctx, |ui| {
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// NOTE: See `plugins/diopser/src/editor.rs` for an example using the generic UI widget
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// This is a fancy widget that can get all the information it needs to properly
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// display and modify the parameter from the parametr itself
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// It's not yet fully implemented, as the text is missing.
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ui.label("Some random integer");
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ui.add(widgets::ParamSlider::for_param(¶ms.some_int, setter));
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ui.label("Gain");
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ui.add(widgets::ParamSlider::for_param(¶ms.gain, setter));
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ui.label(
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"Also gain, but with a lame widget. Can't even render the value correctly!",
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);
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// This is a simple naieve version of a parameter slider that's not aware of how
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// the parameters work
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ui.add(
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egui::widgets::Slider::from_get_set(-30.0..=30.0, |new_value| {
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match new_value {
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Some(new_value) => {
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setter.begin_set_parameter(¶ms.gain);
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setter.set_parameter(¶ms.gain, new_value as f32);
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setter.end_set_parameter(¶ms.gain);
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new_value
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}
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None => params.gain.value as f64,
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}
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})
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.suffix(" dB"),
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);
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// TODO: Add a proper custom widget instead of reusing a progress bar
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let peak_meter =
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util::gain_to_db(peak_meter.load(std::sync::atomic::Ordering::Relaxed));
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let peak_meter_text = if peak_meter > util::MINUS_INFINITY_DB {
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format!("{:.1} dBFS", peak_meter)
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} else {
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String::from("-inf dBFS")
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};
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let peak_meter_normalized = (peak_meter + 60.0) / 60.0;
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ui.allocate_space(egui::Vec2::splat(2.0));
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ui.add(
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egui::widgets::ProgressBar::new(peak_meter_normalized)
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.text(peak_meter_text),
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);
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});
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},
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)
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}
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fn accepts_bus_config(&self, config: &BusConfig) -> bool {
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// This works with any symmetrical IO layout
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config.num_input_channels == config.num_output_channels && config.num_input_channels > 0
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}
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fn initialize(
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&mut self,
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_bus_config: &BusConfig,
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buffer_config: &BufferConfig,
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_context: &mut impl ProcessContext,
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) -> bool {
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// TODO: How do you tie this exponential decay to an actual time span?
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self.peak_meter_decay_weight = 0.9992f32.powf(44_100.0 / buffer_config.sample_rate);
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true
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}
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fn process(
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&mut self,
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buffer: &mut Buffer,
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_context: &mut impl ProcessContext,
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) -> ProcessStatus {
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for channel_samples in buffer.iter_samples() {
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let mut amplitude = 0.0;
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let num_samples = channel_samples.len();
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let gain = self.params.gain.smoothed.next();
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for sample in channel_samples {
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*sample *= util::db_to_gain(gain);
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amplitude += *sample;
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}
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// To save resources, a plugin can (and probably should!) only perform expensive
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// calculations that are only displayed on the GUI while the GUI is open
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if self.editor_state.is_open() {
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amplitude = (amplitude / num_samples as f32).abs();
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let current_peak_meter = self.peak_meter.load(std::sync::atomic::Ordering::Relaxed);
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let new_peak_meter = if amplitude > current_peak_meter {
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amplitude
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} else {
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current_peak_meter * self.peak_meter_decay_weight
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+ amplitude * (1.0 - self.peak_meter_decay_weight)
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};
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self.peak_meter
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.store(new_peak_meter, std::sync::atomic::Ordering::Relaxed)
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}
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}
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ProcessStatus::Normal
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}
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}
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impl ClapPlugin for Gain {
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const CLAP_ID: &'static str = "com.moist-plugins-gmbh-egui.gain-gui";
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const CLAP_DESCRIPTION: &'static str = "A smoothed gain parameter example plugin";
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const CLAP_FEATURES: &'static [&'static str] = &["audio_effect", "mono", "stereo", "tool"];
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const CLAP_MANUAL_URL: &'static str = Self::URL;
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const CLAP_SUPPORT_URL: &'static str = Self::URL;
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}
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impl Vst3Plugin for Gain {
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const VST3_CLASS_ID: [u8; 16] = *b"GainGuiYeahBoyyy";
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const VST3_CATEGORIES: &'static str = "Fx|Dynamics";
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}
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nih_export_clap!(Gain);
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nih_export_vst3!(Gain);
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