use crate::building_blocks::EffectType;
use crate::building_blocks::EnvelopeSegmentInfo;
use crate::building_blocks::EnvelopeSegmentType;
use crate::building_blocks::FilterType;
use crate::building_blocks::OscillatorType;
use crate::building_blocks::Synth;
use crate::building_blocks::SynthParameterAddress;
use crate::building_blocks::ambisonics::encoder::Encoder;
use crate::building_blocks::bitcrusher::Bitcrusher;
use crate::building_blocks::delay::MonoDelay;
use crate::building_blocks::envelopes::*;
use crate::building_blocks::filters::BiquadHpf12dB;
use crate::building_blocks::filters::BiquadHpf24dB;
use crate::building_blocks::filters::BiquadLpf12dB;
use crate::building_blocks::filters::BiquadLpf24dB;
use crate::building_blocks::filters::ButterworthHpf;
use crate::building_blocks::filters::ButterworthLpf;
use crate::building_blocks::filters::DummyFilter;
use crate::building_blocks::filters::Lpf18;
use crate::building_blocks::filters::PeakEq;
use crate::building_blocks::oscillators::*;
use crate::building_blocks::routing::PanChan;
use crate::building_blocks::waveshaper::Waveshaper;
use crate::building_blocks::{
MonoEffect, MonoSource, Panner, SynthParameterLabel, SynthParameterValue,
};
use crate::synths::SynthDescription;
use self::naive_blit::NaiveBlitOsc;
pub struct KarPlusPlus<const BUFSIZE: usize, const NCHAN: usize> {
source: Box<dyn MonoSource<BUFSIZE> + Sync + Send>,
source_gain: f32,
pre_filter_effects: Vec<Box<dyn MonoEffect<BUFSIZE> + Send + Sync>>,
fb_delay: MonoDelay<BUFSIZE>,
post_filter: Box<dyn MonoEffect<BUFSIZE> + Sync + Send>,
envelope: MultiPointEffectEnvelope<BUFSIZE>,
balance: Box<dyn Panner<BUFSIZE, NCHAN> + Sync + Send>,
reverb: f32,
delay: f32,
samplerate: f32,
burst_len: usize,
}
impl<const BUFSIZE: usize, const NCHAN: usize> KarPlusPlus<BUFSIZE, NCHAN> {
pub fn new(desc: SynthDescription, samplerate: f32) -> Self {
let env_segments = vec![
EnvelopeSegmentInfo {
from: 0.0,
to: 0.6,
time: 0.007,
segment_type: EnvelopeSegmentType::Lin,
},
EnvelopeSegmentInfo {
from: 0.6,
to: 0.6,
time: 0.1,
segment_type: EnvelopeSegmentType::Constant,
},
EnvelopeSegmentInfo {
from: 0.6,
to: 0.0,
time: 0.001,
segment_type: EnvelopeSegmentType::Lin,
},
];
let envelope = MultiPointEffectEnvelope::new(env_segments, false, samplerate);
let post_filter_type = desc.filters.first().unwrap_or(&FilterType::BiquadHpf12dB);
let delay_filter_type = desc.filters.get(1).unwrap_or(&FilterType::Dummy);
let mut pre_filter_effects: Vec<Box<dyn MonoEffect<BUFSIZE> + Sync + Send>> = Vec::new();
for ef in desc.pre_filter_effects.into_iter() {
match ef {
EffectType::Bitcrusher(m) => pre_filter_effects.push(Box::new(Bitcrusher::new(m))),
EffectType::Waveshaper => pre_filter_effects.push(Box::new(Waveshaper::new())),
}
}
KarPlusPlus {
fb_delay: MonoDelay::with_filter_type(samplerate, *delay_filter_type),
source: match desc
.oscillator_types
.first()
.unwrap_or(&OscillatorType::WhiteNoise)
{
OscillatorType::Sine => Box::new(SineOsc::new(440.0, 0.5, samplerate)),
OscillatorType::LFTri => Box::new(LFTri::new(440.0, 0.5, samplerate)),
OscillatorType::LFSquare => Box::new(LFSquare::new(440.0, 0.5, 0.5, samplerate)),
OscillatorType::LFSaw => Box::new(LFSaw::new(440.0, 0.5, samplerate)),
OscillatorType::LFRsaw => Box::new(LFRSaw::new(440.0, 0.5, samplerate)),
OscillatorType::LFCub => Box::new(LFCub::new(440.0, 0.5, samplerate)),
OscillatorType::FMSquare => Box::new(FMSquare::new(440.0, 0.5, 0.5, samplerate)),
OscillatorType::FMSaw => Box::new(FMSaw::new(440.0, 0.5, samplerate)),
OscillatorType::FMTri => Box::new(FMTri::new(440.0, 0.5, samplerate)),
OscillatorType::WTSaw => Box::new(WTSaw::new(440.0, 0.5, samplerate)),
OscillatorType::Wavetable => Box::new(Wavetable::new(samplerate)),
OscillatorType::Wavematrix => Box::new(Wavematrix::new(samplerate)),
OscillatorType::WhiteNoise => Box::new(WhiteNoise::new(0.2)),
OscillatorType::BrownNoise => Box::new(BrownNoise::new(0.2, 0.125)),
OscillatorType::NaiveBlit => Box::new(NaiveBlitOsc::new(440.0, 0.5, samplerate)),
},
pre_filter_effects,
post_filter: match post_filter_type {
FilterType::Dummy => Box::new(DummyFilter::new()),
FilterType::Lpf18 => Box::new(Lpf18::new(1500.0, 0.5, 0.1, samplerate)),
FilterType::BiquadLpf12dB => Box::new(BiquadLpf12dB::new(1500.0, 0.5, samplerate)),
FilterType::BiquadLpf24dB => Box::new(BiquadLpf24dB::new(1500.0, 0.5, samplerate)),
FilterType::BiquadHpf12dB => Box::new(BiquadHpf12dB::new(1500.0, 0.5, samplerate)),
FilterType::BiquadHpf24dB => Box::new(BiquadHpf24dB::new(1500.0, 0.5, samplerate)),
FilterType::ButterworthLpf(order) => {
Box::new(ButterworthLpf::new(1500.0, *order, samplerate))
}
FilterType::ButterworthHpf(order) => {
Box::new(ButterworthHpf::new(1500.0, *order, samplerate))
}
FilterType::PeakEQ => Box::new(PeakEq::new(1500.0, 100.0, 0.0, samplerate)),
},
source_gain: 1.0,
envelope,
balance: if desc.ambisonic {
Box::new(Encoder::new())
} else {
Box::new(PanChan::new())
},
reverb: 0.0,
delay: 0.0,
samplerate,
burst_len: 0,
}
}
}
impl<const BUFSIZE: usize, const NCHAN: usize> Synth<BUFSIZE, NCHAN>
for KarPlusPlus<BUFSIZE, NCHAN>
{
fn set_parameter(&mut self, par: SynthParameterAddress, val: &SynthParameterValue) {
let SynthParameterAddress { label, idx } = par;
if let Some(0) = idx {
self.source.set_parameter(label, val);
} else {
match label {
SynthParameterLabel::PitchFrequency => {
if let SynthParameterValue::ScalarF32(f) = val {
let del_time_samples = self.samplerate / f;
let del_time_s = del_time_samples / self.samplerate;
self.burst_len = del_time_samples as usize;
self.fb_delay.set_parameter(
SynthParameterLabel::DelayTime,
&SynthParameterValue::ScalarF32(del_time_s),
);
}
}
SynthParameterLabel::OscillatorAmplitude => {
if let SynthParameterValue::ScalarF32(g) = val {
self.source_gain = *g;
}
}
_ => {}
}
}
for ef in self.pre_filter_effects.iter_mut() {
ef.set_parameter(label, val);
}
self.envelope.set_parameter(label, val);
self.balance.set_parameter(label, val);
self.fb_delay.set_parameter(label, val);
self.post_filter.set_parameter(label, val);
match label {
SynthParameterLabel::ReverbMix => {
if let SynthParameterValue::ScalarF32(r) = val {
self.reverb = *r
}
}
SynthParameterLabel::DelayMix => {
if let SynthParameterValue::ScalarF32(d) = val {
self.delay = *d
}
}
_ => (),
};
}
fn set_modulator(
&mut self,
par: SynthParameterAddress,
init: f32,
modulator: crate::building_blocks::Modulator<BUFSIZE>,
) {
let SynthParameterAddress { label, idx } = par;
if let Some(0) = idx {
self.source.set_modulator(label, init, modulator.clone());
} else {
for ef in self.pre_filter_effects.iter_mut() {
ef.set_modulator(label, init, modulator.clone());
}
self.envelope.set_modulator(label, init, modulator.clone());
self.balance.set_modulator(label, init, modulator.clone());
self.fb_delay.set_modulator(label, init, modulator.clone());
self.post_filter
.set_modulator(label, init, modulator.clone());
}
}
fn finish(&mut self) {
self.envelope.finish();
}
fn is_finished(&self) -> bool {
self.envelope.is_finished()
}
fn get_next_block(
&mut self,
start_sample: usize,
sample_buffers: &[crate::building_blocks::SampleBuffer],
) -> [[f32; BUFSIZE]; NCHAN] {
let burst_block = if self.burst_len > 0 {
let mut bb = self.source.get_next_block(start_sample, sample_buffers);
let block_len = BUFSIZE - start_sample;
if self.burst_len > block_len {
self.burst_len -= block_len;
} else {
for i in (start_sample + self.burst_len)..BUFSIZE {
bb[i] = 0.0;
}
self.burst_len = 0;
}
bb
} else {
[0.0; BUFSIZE]
};
let mut out = self
.fb_delay
.process_block(burst_block, start_sample, sample_buffers);
for s in start_sample..BUFSIZE {
out[s] *= self.source_gain;
}
for ef in self.pre_filter_effects.iter_mut() {
out = ef.process_block(out, start_sample, sample_buffers)
}
out = self
.post_filter
.process_block(out, start_sample, sample_buffers);
out = self
.envelope
.process_block(out, start_sample, sample_buffers);
self.balance
.process_block(out, start_sample, sample_buffers) }
fn reverb_level(&self) -> f32 {
self.reverb
}
fn delay_level(&self) -> f32 {
self.delay
}
}