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https://github.com/italicsjenga/agb.git
synced 2024-12-23 08:11:33 +11:00
Reintroduce the first special casing
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parent
d6384a6886
commit
1aa8e5fd33
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@ -66,6 +66,7 @@ agb_arm_end \fn_name
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.endm
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stereo_add_fn agb_rs__mixer_add_stereo false
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stereo_add_fn agb_rs__mixer_add_stereo_first true
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@ TODO(GI): Might bring this back later
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@ stereo_add_fn agb_rs__mixer_add_stereo_first true
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@ -28,6 +28,13 @@ extern "C" {
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buffer_size: usize,
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);
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fn agb_rs__mixer_add_stereo_first(
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sound_data: *const u8,
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sound_buffer: *mut Num<i16, 4>,
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volume: Num<i16, 4>,
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buffer_size: usize,
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);
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fn agb_rs__mixer_collapse(
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sound_buffer: *mut i8,
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input_buffer: *const Num<i16, 4>,
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@ -387,15 +394,24 @@ impl MixerBuffer {
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working_buffer: &mut [Num<i16, 4>],
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channels: impl Iterator<Item = &'a mut SoundChannel>,
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) {
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working_buffer.fill(0.into());
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let mut channels =
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channels.filter(|channel| !channel.is_done && channel.volume != 0.into());
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for channel in channels.filter(|channel| !channel.is_done) {
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if channel.volume != 0.into() {
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if channel.is_stereo {
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self.write_stereo(channel, working_buffer);
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} else {
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self.write_mono(channel, working_buffer);
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}
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if let Some(channel) = channels.next() {
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if channel.is_stereo {
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self.write_stereo::<true>(channel, working_buffer);
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} else {
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self.write_mono::<true>(channel, working_buffer);
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}
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} else {
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working_buffer.fill(0.into());
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}
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for channel in channels {
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if channel.is_stereo {
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self.write_stereo::<false>(channel, working_buffer);
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} else {
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self.write_mono::<false>(channel, working_buffer);
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}
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}
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@ -410,7 +426,11 @@ impl MixerBuffer {
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}
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}
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fn write_stereo(&self, channel: &mut SoundChannel, working_buffer: &mut [Num<i16, 4>]) {
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fn write_stereo<const IS_FIRST: bool>(
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&self,
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channel: &mut SoundChannel,
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working_buffer: &mut [Num<i16, 4>],
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) {
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if (channel.pos + 2 * self.frequency.buffer_size() as u32).floor()
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>= channel.data.len() as u32
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{
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@ -418,16 +438,28 @@ impl MixerBuffer {
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channel.pos = channel.restart_point * 2;
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} else {
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channel.is_done = true;
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if IS_FIRST {
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working_buffer.fill(0.into());
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}
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return;
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}
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}
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unsafe {
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agb_rs__mixer_add_stereo(
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channel.data.as_ptr().add(channel.pos.floor() as usize),
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working_buffer.as_mut_ptr(),
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channel.volume,
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self.frequency.buffer_size(),
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);
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if IS_FIRST {
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agb_rs__mixer_add_stereo_first(
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channel.data.as_ptr().add(channel.pos.floor() as usize),
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working_buffer.as_mut_ptr(),
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channel.volume,
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self.frequency.buffer_size(),
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);
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} else {
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agb_rs__mixer_add_stereo(
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channel.data.as_ptr().add(channel.pos.floor() as usize),
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working_buffer.as_mut_ptr(),
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channel.volume,
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self.frequency.buffer_size(),
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);
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}
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}
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channel.pos += 2 * self.frequency.buffer_size() as u32;
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@ -435,7 +467,11 @@ impl MixerBuffer {
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#[link_section = ".iwram.write_mono"]
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#[inline(never)]
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fn write_mono(&self, channel: &mut SoundChannel, working_buffer: &mut [Num<i16, 4>]) {
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fn write_mono<const IS_FIRST: bool>(
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&self,
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channel: &mut SoundChannel,
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working_buffer: &mut [Num<i16, 4>],
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) {
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let right_amount = ((channel.panning + 1) / 2) * channel.volume;
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let left_amount = ((-channel.panning + 1) / 2) * channel.volume;
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@ -463,6 +499,16 @@ impl MixerBuffer {
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channel.pos -= channel_len - channel.restart_point;
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} else {
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channel.is_done = true;
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if IS_FIRST {
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for j in i..self.frequency.buffer_size() {
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// SAFETY: working buffer length = self.frequency.buffer_size()
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unsafe {
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*working_buffer_i32.get_unchecked_mut(j) = 0.into();
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}
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}
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}
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break;
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}
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}
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@ -472,10 +518,16 @@ impl MixerBuffer {
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unsafe { *channel.data.get_unchecked(channel.pos.floor() as usize) } as i8 as i32;
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// SAFETY: working buffer length = self.frequency.buffer_size()
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unsafe {
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let value_ref = working_buffer_i32.get_unchecked_mut(i);
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*value_ref = value_ref.wrapping_add(value.wrapping_mul(mul_amount));
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};
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if IS_FIRST {
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unsafe {
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*working_buffer_i32.get_unchecked_mut(i) = value.wrapping_mul(mul_amount);
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}
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} else {
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unsafe {
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let value_ref = working_buffer_i32.get_unchecked_mut(i);
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*value_ref = value_ref.wrapping_add(value.wrapping_mul(mul_amount));
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};
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}
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channel.pos += playback_speed;
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}
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}
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