chore(apu): implement more obscure behaviour
implement capacitor
This commit is contained in:
parent
548945a4ee
commit
2ef8fefbb7
87
src/apu.rs
87
src/apu.rs
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@ -1,3 +1,4 @@
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use crate::apu::gen::SAMPLE_RATE;
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use crate::bus::BusIo;
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use crate::bus::BusIo;
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use crate::emu::SM83_CLOCK_SPEED;
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use crate::emu::SM83_CLOCK_SPEED;
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use gen::SampleProducer;
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use gen::SampleProducer;
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@ -5,7 +6,7 @@ use types::ch1::{Sweep, SweepDirection};
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use types::ch3::Volume as Ch3Volume;
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use types::ch3::Volume as Ch3Volume;
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use types::ch4::{CounterWidth, Frequency as Ch4Frequency, PolynomialCounter};
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use types::ch4::{CounterWidth, Frequency as Ch4Frequency, PolynomialCounter};
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use types::common::{EnvelopeDirection, FrequencyHigh, SoundDuty, VolumeEnvelope};
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use types::common::{EnvelopeDirection, FrequencyHigh, SoundDuty, VolumeEnvelope};
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use types::fs::{FrameSequencer, State as FrameSequencerState};
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use types::fs::{FrameSequencer, State as FSState};
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use types::{ChannelControl, SoundOutput};
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use types::{ChannelControl, SoundOutput};
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pub mod gen;
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pub mod gen;
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@ -31,6 +32,8 @@ pub struct Apu {
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prod: Option<SampleProducer<f32>>,
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prod: Option<SampleProducer<f32>>,
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sample_counter: u64,
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sample_counter: u64,
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cap: f32,
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}
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}
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impl BusIo for Apu {
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impl BusIo for Apu {
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@ -66,7 +69,7 @@ impl BusIo for Apu {
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0x11 if self.ctrl.enabled => self.ch1.set_duty(byte),
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0x11 if self.ctrl.enabled => self.ch1.set_duty(byte),
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0x12 if self.ctrl.enabled => self.ch1.set_envelope(byte),
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0x12 if self.ctrl.enabled => self.ch1.set_envelope(byte),
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0x13 if self.ctrl.enabled => self.ch1.set_freq_lo(byte),
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0x13 if self.ctrl.enabled => self.ch1.set_freq_lo(byte),
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0x14 if self.ctrl.enabled => self.ch1.set_freq_hi(byte),
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0x14 if self.ctrl.enabled => self.ch1.set_freq_hi(&self.sequencer, byte),
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0x16 if self.ctrl.enabled => self.ch2.set_duty(byte),
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0x16 if self.ctrl.enabled => self.ch2.set_duty(byte),
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0x17 if self.ctrl.enabled => self.ch2.set_envelope(byte),
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0x17 if self.ctrl.enabled => self.ch2.set_envelope(byte),
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0x18 if self.ctrl.enabled => self.ch2.set_freq_lo(byte),
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0x18 if self.ctrl.enabled => self.ch2.set_freq_lo(byte),
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@ -96,7 +99,7 @@ impl Apu {
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// Frame Sequencer (512Hz)
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// Frame Sequencer (512Hz)
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if self.is_falling_edge(12, div) {
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if self.is_falling_edge(12, div) {
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use FrameSequencerState::*;
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use FSState::*;
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match self.sequencer.state() {
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match self.sequencer.state() {
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Length => self.clock_length(),
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Length => self.clock_length(),
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@ -121,25 +124,33 @@ impl Apu {
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if self.sample_counter >= SM83_CLOCK_SPEED {
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if self.sample_counter >= SM83_CLOCK_SPEED {
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self.sample_counter %= SM83_CLOCK_SPEED;
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self.sample_counter %= SM83_CLOCK_SPEED;
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if let Some(ref mut prod) = self.prod {
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if let Some(prod) = self.prod.as_mut() {
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if prod.available_blocking() {
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if prod.available_blocking() {
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// Sample the APU
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// Sample the APU
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let ch1_amplitude =
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Self::high_pass(&mut self.cap, self.ch1.amplitude(), self.ch1.enabled);
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let (left, right) = self.ctrl.out.ch1();
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let (left, right) = self.ctrl.out.ch1();
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let ch1_left = if left { self.ch1.amplitude() } else { 0.0 };
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let ch1_left = if left { ch1_amplitude } else { 0.0 };
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let ch1_right = if right { self.ch1.amplitude() } else { 0.0 };
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let ch1_right = if right { ch1_amplitude } else { 0.0 };
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let ch2_amplitude =
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Self::high_pass(&mut self.cap, self.ch2.amplitude(), self.ch2.enabled);
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let (left, right) = self.ctrl.out.ch2();
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let (left, right) = self.ctrl.out.ch2();
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let ch2_left = if left { self.ch2.amplitude() } else { 0.0 };
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let ch2_left = if left { ch2_amplitude } else { 0.0 };
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let ch2_right = if right { self.ch2.amplitude() } else { 0.0 };
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let ch2_right = if right { ch2_amplitude } else { 0.0 };
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let ch3_amplitude =
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Self::high_pass(&mut self.cap, self.ch3.amplitude(), self.ch3.enabled);
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let (left, right) = self.ctrl.out.ch3();
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let (left, right) = self.ctrl.out.ch3();
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let ch3_left = if left { self.ch3.amplitude() } else { 0.0 };
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let ch3_left = if left { ch3_amplitude } else { 0.0 };
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let ch3_right = if right { self.ch3.amplitude() } else { 0.0 };
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let ch3_right = if right { ch3_amplitude } else { 0.0 };
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let ch4_amplitude =
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Self::high_pass(&mut self.cap, self.ch4.amplitude(), self.ch4.enabled);
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let (left, right) = self.ctrl.out.ch4();
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let (left, right) = self.ctrl.out.ch4();
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let ch4_left = if left { self.ch4.amplitude() } else { 0.0 };
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let ch4_left = if left { ch4_amplitude } else { 0.0 };
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let ch4_right = if right { self.ch4.amplitude() } else { 0.0 };
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let ch4_right = if right { ch4_amplitude } else { 0.0 };
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let left_mixed = (ch1_left + ch2_left + ch3_left + ch4_left) / 4.0;
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let left_mixed = (ch1_left + ch2_left + ch3_left + ch4_left) / 4.0;
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let right_mixed = (ch1_right + ch2_right + ch3_right + ch4_right) / 4.0;
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let right_mixed = (ch1_right + ch2_right + ch3_right + ch4_right) / 4.0;
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@ -214,20 +225,20 @@ impl Apu {
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self.ch4.enabled = Default::default();
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self.ch4.enabled = Default::default();
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}
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}
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fn process_length(freq_hi: &FrequencyHigh, length_timer: &mut u16, enabled: &mut bool) {
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fn process_length(freq_hi: &FrequencyHigh, counter: &mut u16, enabled: &mut bool) {
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if freq_hi.length_disable() && *length_timer > 0 {
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if freq_hi.length_enable() && *counter > 0 {
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*length_timer -= 1;
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*counter -= 1;
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// Check in this scope ensures (only) the above subtraction
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// Check in this scope ensures (only) the above subtraction
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// made length_timer 0
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// made length_timer 0
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if *length_timer == 0 {
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if *counter == 0 {
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*enabled = false;
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*enabled = false;
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}
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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 ch4_process_length(freq: &Ch4Frequency, length_timer: &mut u16, enabled: &mut bool) {
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fn ch4_process_length(freq: &Ch4Frequency, length_timer: &mut u16, enabled: &mut bool) {
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if freq.length_disable() && *length_timer > 0 {
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if freq.length_enable() && *length_timer > 0 {
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*length_timer -= 1;
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*length_timer -= 1;
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// Check in this scope ensures (only) the above subtraction
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// Check in this scope ensures (only) the above subtraction
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@ -241,7 +252,7 @@ impl Apu {
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fn clock_length(&mut self) {
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fn clock_length(&mut self) {
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Self::process_length(
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Self::process_length(
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&self.ch1.freq_hi,
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&self.ch1.freq_hi,
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&mut self.ch1.length_timer,
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&mut self.ch1.length_counter,
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&mut self.ch1.enabled,
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&mut self.ch1.enabled,
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);
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);
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@ -334,6 +345,19 @@ impl Apu {
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None => false,
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None => false,
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}
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}
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}
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}
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fn high_pass(capacitor: &mut f32, input: f32, enabled: bool) -> f32 {
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const CHARGE_FACTOR: f32 = 0.999958;
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let mut output = 0.0;
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if enabled {
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output = input - *capacitor;
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*capacitor =
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input - output * CHARGE_FACTOR.powi(SM83_CLOCK_SPEED as i32 / SAMPLE_RATE as i32);
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}
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output
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}
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}
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}
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#[derive(Debug, Default)]
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#[derive(Debug, Default)]
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@ -405,7 +429,7 @@ pub(crate) struct Channel1 {
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sweep_enabled: bool,
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sweep_enabled: bool,
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// Length Functionality
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// Length Functionality
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length_timer: u16,
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length_counter: u16,
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freq_timer: u16,
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freq_timer: u16,
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duty_pos: u8,
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duty_pos: u8,
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@ -432,7 +456,7 @@ impl Channel1 {
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/// 0xFF11 | NR11 - Channel 1 Sound length / Wave pattern duty
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/// 0xFF11 | NR11 - Channel 1 Sound length / Wave pattern duty
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pub(crate) fn set_duty(&mut self, byte: u8) {
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pub(crate) fn set_duty(&mut self, byte: u8) {
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self.duty = byte.into();
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self.duty = byte.into();
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self.length_timer = 64 - self.duty.sound_length() as u16;
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self.length_counter = 64 - self.duty.sound_length() as u16;
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}
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}
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/// 0xFF12 | NR12 - Channel 1 Volume Envelope
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/// 0xFF12 | NR12 - Channel 1 Volume Envelope
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@ -460,9 +484,20 @@ impl Channel1 {
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}
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}
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/// 0xFF14 | NR14 - Channel 1 Frequency high
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/// 0xFF14 | NR14 - Channel 1 Frequency high
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pub(crate) fn set_freq_hi(&mut self, byte: u8) {
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pub(crate) fn set_freq_hi(&mut self, fs: &FrameSequencer, byte: u8) {
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let prev_le = self.freq_hi.length_enable();
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self.freq_hi = byte.into();
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self.freq_hi = byte.into();
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if !fs.next_clocks_length() {
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if !prev_le && self.freq_hi.length_enable() && self.length_counter != 0 {
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self.length_counter -= 1;
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if self.length_counter == 0 && !self.freq_hi.initial() {
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self.enabled = false;
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}
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}
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}
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// If this bit is set, a trigger event occurs
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// If this bit is set, a trigger event occurs
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if self.freq_hi.initial() {
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if self.freq_hi.initial() {
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if self.is_dac_enabled() {
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if self.is_dac_enabled() {
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@ -470,9 +505,13 @@ impl Channel1 {
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}
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}
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// Length behaviour during trigger event
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// Length behaviour during trigger event
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if self.length_timer == 0 {
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if self.length_counter == 0 {
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self.length_timer = 64;
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self.length_counter = if self.freq_hi.length_enable() && !fs.next_clocks_length() {
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}
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63
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} else {
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64
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};
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};
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// Envelope Behaviour during trigger event
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// Envelope Behaviour during trigger event
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self.period_timer = self.envelope.period();
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self.period_timer = self.envelope.period();
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@ -178,12 +178,12 @@ pub(super) mod ch4 {
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pub struct Frequency(u8);
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pub struct Frequency(u8);
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impl Debug;
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impl Debug;
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_initial, _: 7;
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_initial, _: 7;
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_length_disable, _: 6;
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_length_enable, _: 6;
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}
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}
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impl Frequency {
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impl Frequency {
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pub(crate) fn length_disable(&self) -> bool {
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pub(crate) fn length_enable(&self) -> bool {
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self._length_disable()
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self._length_enable()
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}
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}
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pub(crate) fn initial(&self) -> bool {
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pub(crate) fn initial(&self) -> bool {
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@ -224,7 +224,7 @@ pub(super) mod common {
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pub struct FrequencyHigh(u8);
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pub struct FrequencyHigh(u8);
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impl Debug;
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impl Debug;
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_initial, _: 7;
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_initial, _: 7;
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_length_disable, _: 6;
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_length_enable, _: 6;
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pub freq_bits, set_freq_bits: 2, 0;
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pub freq_bits, set_freq_bits: 2, 0;
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}
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}
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@ -233,8 +233,8 @@ pub(super) mod common {
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self._initial()
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self._initial()
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}
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}
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pub(crate) fn length_disable(&self) -> bool {
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pub(crate) fn length_enable(&self) -> bool {
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self._length_disable()
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self._length_enable()
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}
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}
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}
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}
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@ -557,6 +557,27 @@ pub(super) mod fs {
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};
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};
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}
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}
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fn peek(&self) -> State {
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use State::*;
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match (self.step + 1) % 8 {
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1 | 3 | 5 => Nothing,
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0 | 4 => Length,
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2 | 6 => LengthAndSweep,
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7 => Envelope,
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num => unreachable!("Step {} is invalid for the Frame Sequencer", num),
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}
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}
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pub(crate) fn next_clocks_length(&self) -> bool {
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use State::*;
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match self.peek() {
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Length | LengthAndSweep => true,
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Nothing | Envelope => false,
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}
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}
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pub(crate) fn state(&self) -> State {
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pub(crate) fn state(&self) -> State {
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self.state
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self.state
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}
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}
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@ -567,7 +588,7 @@ pub(super) mod fs {
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}
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}
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}
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}
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#[derive(Debug, Clone, Copy)]
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#[derive(Debug, Clone, Copy, PartialEq, Eq)]
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pub(crate) enum State {
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pub(crate) enum State {
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Length,
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Length,
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Nothing,
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Nothing,
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