use std::time::Duration;
use unsafe_libopus::{
OPUS_OK, OPUS_RESET_STATE, OpusDecoder, opus_decode_float, opus_decoder_create, opus_decoder_ctl_impl,
opus_decoder_destroy, varargs,
};
#[cfg(feature = "aac")]
use symphonia_core::codecs::audio::AudioDecoder;
#[cfg(feature = "aac")]
use crate::aac;
use crate::opus;
use crate::pcm;
use crate::{Error, Format};
const MAX_FRAME_MS: usize = 120;
#[derive(Clone, Debug, Default)]
#[non_exhaustive]
pub struct Config {
pub format: Format,
pub sample_rate: Option<u32>,
pub channels: Option<u32>,
pub latency_max: Option<Duration>,
}
impl Config {
pub fn new() -> Self {
Self::default()
}
}
pub struct Decoder {
backend: Backend,
sample_rate: u32,
channel_count: u32,
delay: usize,
}
enum Backend {
Opus(Opus),
Pcm {
bytes_per_frame: usize,
},
#[cfg(feature = "aac")]
Aac(Box<Aac>),
}
struct Opus {
inner: *mut OpusDecoder,
pre_skip_remaining: usize,
max_frame_size: usize,
}
unsafe impl Send for Opus {}
#[cfg(feature = "aac")]
struct Aac {
inner: symphonia_codec_aac::AacDecoder,
}
impl Decoder {
pub fn new(catalog: &hang::catalog::AudioConfig) -> Result<Self, Error> {
match &catalog.codec {
hang::catalog::AudioCodec::Opus => Self::new_opus(catalog),
hang::catalog::AudioCodec::Pcm => Self::new_pcm(catalog),
#[cfg(feature = "aac")]
hang::catalog::AudioCodec::AAC(aac) => Self::new_aac(catalog, aac.profile),
codec => Err(Error::Unsupported(format!("unsupported audio codec: {codec}"))),
}
}
fn new_opus(catalog: &hang::catalog::AudioConfig) -> Result<Self, Error> {
let (sample_rate, channel_count, pre_skip) = if let Some(desc) = &catalog.description {
let mut buf = desc.as_ref();
match moq_mux::codec::opus::Config::parse(&mut buf) {
Ok(head) => (head.sample_rate, head.channel_count, head.pre_skip),
Err(_) => (catalog.sample_rate, catalog.channel_count, 0),
}
} else {
(catalog.sample_rate, catalog.channel_count, 0)
};
opus::validate_rate(sample_rate)?;
let channels = opus::validate_channels(channel_count)?;
let mut err = 0i32;
let inner = unsafe { opus_decoder_create(sample_rate as i32, channels, &mut err) };
if err != OPUS_OK || inner.is_null() {
return Err(opus::error(err, "opus_decoder_create"));
}
let max_frame_size = (sample_rate as usize * MAX_FRAME_MS) / 1000;
let pre_skip_remaining = (pre_skip as usize * sample_rate as usize) / 48_000;
Ok(Self {
backend: Backend::Opus(Opus {
inner,
pre_skip_remaining,
max_frame_size,
}),
sample_rate,
channel_count,
delay: pre_skip_remaining,
})
}
#[cfg(feature = "aac")]
fn new_aac(catalog: &hang::catalog::AudioConfig, profile: u8) -> Result<Self, Error> {
use symphonia_core::codecs::audio::well_known::CODEC_ID_AAC;
use symphonia_core::codecs::audio::{AudioCodecParameters, AudioDecoderOptions};
let description = aac::description(catalog, profile)?;
let mut params = AudioCodecParameters::new();
params
.for_codec(CODEC_ID_AAC)
.with_extra_data(description.to_vec().into_boxed_slice());
let inner = symphonia_codec_aac::AacDecoder::try_new(¶ms, &AudioDecoderOptions::default())
.map_err(|err| Error::Unsupported(format!("aac decoder: {err}")))?;
let params = inner.codec_params();
let sample_rate = params
.sample_rate
.ok_or_else(|| Error::Unsupported("aac config declares no sample rate".into()))?;
let channel_count = params
.channels
.as_ref()
.map(|channels| channels.count())
.ok_or_else(|| Error::Unsupported("aac config declares no channels".into()))?;
Ok(Self {
backend: Backend::Aac(Box::new(Aac { inner })),
sample_rate,
channel_count: channel_count as u32,
delay: 0,
})
}
fn new_pcm(catalog: &hang::catalog::AudioConfig) -> Result<Self, Error> {
if catalog.sample_rate == 0 {
return Err(Error::Unsupported("pcm sample rate must be greater than zero".into()));
}
if catalog.channel_count == 0 {
return Err(Error::Unsupported("pcm channel count must be greater than zero".into()));
}
if catalog.description.is_some() {
return Err(Error::Unsupported("pcm catalog description must be absent".into()));
}
let bitrate = pcm::bitrate(catalog.sample_rate, catalog.channel_count)?;
if catalog.bitrate.is_some_and(|declared| declared != bitrate) {
return Err(Error::Unsupported(format!(
"pcm catalog bitrate must be {bitrate} bits per second"
)));
}
let bytes_per_frame = pcm::frame_bytes(1, catalog.channel_count)?;
Ok(Self {
backend: Backend::Pcm { bytes_per_frame },
sample_rate: catalog.sample_rate,
channel_count: catalog.channel_count,
delay: 0,
})
}
pub fn sample_rate(&self) -> u32 {
self.sample_rate
}
pub fn channel_count(&self) -> u32 {
self.channel_count
}
pub fn reset(&mut self) -> Result<(), Error> {
match &mut self.backend {
Backend::Opus(opus) => {
let rc = unsafe { opus_decoder_ctl_impl(opus.inner, OPUS_RESET_STATE, varargs![]) };
if rc != OPUS_OK {
return Err(crate::opus::error(rc, "OPUS_RESET_STATE"));
}
opus.pre_skip_remaining = self.delay;
}
Backend::Pcm { .. } => {}
#[cfg(feature = "aac")]
Backend::Aac(aac) => aac.inner.reset(),
}
Ok(())
}
pub(super) fn delay(&self) -> usize {
self.delay
}
pub fn decode(&mut self, packet: &[u8]) -> Result<Vec<f32>, Error> {
match &mut self.backend {
Backend::Opus(opus) => {
let mut out = vec![0.0f32; opus.max_frame_size * self.channel_count as usize];
let samples = unsafe {
opus_decode_float(
&mut *opus.inner,
packet.as_ptr(),
packet.len() as i32,
out.as_mut_ptr(),
opus.max_frame_size as i32,
0,
)
};
if samples < 0 {
return Err(crate::opus::decode_error(samples));
}
out.truncate(samples as usize * self.channel_count as usize);
let trim_frames = opus.pre_skip_remaining.min(samples as usize);
if trim_frames > 0 {
let trim_samples = trim_frames * self.channel_count as usize;
out.copy_within(trim_samples.., 0);
out.truncate(out.len() - trim_samples);
opus.pre_skip_remaining -= trim_frames;
}
Ok(out)
}
Backend::Pcm { bytes_per_frame } => {
if packet.is_empty() || !packet.len().is_multiple_of(*bytes_per_frame) {
return Err(Error::Misaligned {
got: packet.len(),
expected: packet.len().max(1).next_multiple_of(*bytes_per_frame),
});
}
Ok(packet
.chunks_exact(pcm::BYTES_PER_SAMPLE)
.map(|sample| f32::from_le_bytes([sample[0], sample[1], sample[2], sample[3]]))
.collect())
}
#[cfg(feature = "aac")]
Backend::Aac(aac) => {
let packet = symphonia_core::packet::PacketRef::new(
0,
symphonia_core::units::Timestamp::ZERO,
symphonia_core::units::Duration::ZERO,
packet,
);
let decoded = aac
.inner
.decode_ref(&packet)
.map_err(|err| Error::Decode(format!("aac: {err}")))?;
let mut out = Vec::new();
decoded.copy_to_vec_interleaved(&mut out);
Ok(out)
}
}
}
}
impl Drop for Opus {
fn drop(&mut self) {
unsafe { opus_decoder_destroy(self.inner) };
}
}
#[cfg(test)]
mod tests {
use super::*;
#[cfg(feature = "aac")]
const AAC_DESCRIPTION: &[u8] = b"\x12\x08";
#[cfg(feature = "aac")]
const AAC_FRAMES: [&[u8]; 3] = [
b"\x01\x52\xf2\x8b\x1a\xd7\x8e\x7b\xfd\xa7\xef\xe7\xe3\x55\xd3\x4d\x2f\x55\x2e\x47\x1c\x92\x49\x11\x20\x77\x3f\xbe\x74\xdd\x99\xb3\x7b\xfb\x90\xc9\xf0\x61\x9f\xdc\x0c\x9f\x06\x19\xfd\xe1\x1f\x1f\x00\x67\xf7\x03\x87\xc0\x19\xfd\xc0\xc9\xf0\x07",
b"\x01\x1e\x32\x89\xe2\x9d\x6b\x33\xe7\xff\xe2\xfe\xbf\xfa\xff\xe7\x2f\x8b\xd5\xd5\xe7\x5f\x3f\x59\xeb\xf1\xcb\xba\xa5\x5e\x52\x4a\xbd\x8d\x74\x50\x8c\x08\xa8\xa0\xd4\x51\x40\xa1\x86\x5d\x06\xb4\x6c\x32\xe6\x25\x9a\x66\x75\xcd\xf9\xbf\x6f\x83\xb7\x53\x80",
b"\x01\x1e\x32\x8a\x22\x7d\x40\x87\x48\xdb\xdf\xff\xf9\x4f\xff\x87\xde\xef\x8b\xeb\x1e\x77\x5d\xfc\x67\x8f\x8c\x77\x8a\xd6\x29\x96\x1f\x29\xe7\x39\xd4\x53\xcf\x3c\xf3\xce\x79\xd4\x27\x9c\xf5\x65\x2a\x9b\xe9\x80\xb7\xba\xa9\xf9\x58\xc7\x3c\x58\x27\x8a\x60\xa1\x57",
];
#[cfg(feature = "aac")]
fn aac_catalog() -> hang::catalog::AudioConfig {
let mut catalog = hang::catalog::AudioConfig::new(hang::catalog::AAC { profile: 2 }, 44_100, 1);
catalog.description = Some(bytes::Bytes::from_static(AAC_DESCRIPTION));
catalog
}
#[cfg(feature = "aac")]
#[test]
fn aac_decodes_a_sine() {
let mut decoder = Decoder::new(&aac_catalog()).unwrap();
assert_eq!(decoder.sample_rate(), 44_100);
assert_eq!(decoder.channel_count(), 1);
let decoded: Vec<Vec<f32>> = AAC_FRAMES.iter().map(|frame| decoder.decode(frame).unwrap()).collect();
for pcm in &decoded {
assert_eq!(pcm.len(), 1024);
}
let last = decoded.last().unwrap();
let rms = (last.iter().map(|s| s * s).sum::<f32>() / last.len() as f32).sqrt();
assert!((0.65..0.8).contains(&rms), "expected a full-scale sine, got {rms} RMS");
}
#[cfg(feature = "aac")]
#[test]
fn aac_reports_a_truncated_packet_as_decode() {
let mut decoder = Decoder::new(&aac_catalog()).unwrap();
let truncated = &AAC_FRAMES[0][..16];
assert!(matches!(decoder.decode(truncated), Err(Error::Decode(_))));
}
#[cfg(feature = "aac")]
#[test]
fn aac_synthesizes_a_missing_description() {
let mut catalog = aac_catalog();
catalog.description = None;
let mut decoder = Decoder::new(&catalog).unwrap();
assert_eq!(decoder.sample_rate(), 44_100);
assert_eq!(decoder.decode(AAC_FRAMES[0]).unwrap().len(), 1024);
}
#[test]
fn opus_reports_a_rejected_packet_as_decode() {
let head = moq_mux::codec::opus::Config::new(48_000, 2).encode().unwrap();
let mut catalog = hang::catalog::AudioConfig::new(hang::catalog::AudioCodec::Opus, 48_000, 2);
catalog.description = Some(head);
let mut decoder = Decoder::new(&catalog).unwrap();
assert!(matches!(decoder.decode(&[0xFF; 3]), Err(Error::Decode(_))));
}
#[test]
fn pcm_rejects_incomplete_channel_frame() {
let catalog = hang::catalog::AudioConfig::new(hang::catalog::AudioCodec::Pcm, 48_000, 2);
let mut decoder = Decoder::new(&catalog).unwrap();
assert!(matches!(
decoder.decode(&[]),
Err(Error::Misaligned { got: 0, expected: 8 })
));
assert!(matches!(
decoder.decode(&[0; 4]),
Err(Error::Misaligned { got: 4, expected: 8 })
));
}
#[test]
fn decoder_rejects_unknown_codec() {
let catalog = hang::catalog::AudioConfig::new(hang::catalog::AudioCodec::Unknown("future".into()), 48_000, 2);
assert!(matches!(Decoder::new(&catalog), Err(Error::Unsupported(_))));
}
#[test]
fn pcm_rejects_incorrect_catalog_bitrate() {
let mut catalog = hang::catalog::AudioConfig::new(hang::catalog::AudioCodec::Pcm, 48_000, 2);
catalog.bitrate = Some(1);
assert!(matches!(Decoder::new(&catalog), Err(Error::Unsupported(_))));
}
}