E2E crypto handshake: - Client/relay handshake via SignalMessage (CallOffer/CallAnswer) - X25519 ephemeral key exchange with Ed25519 identity signatures - Integration tests proving bidirectional encrypt/decrypt Codec2 integration: - Pure Rust codec2 crate (v0.3) — no C bindings needed - MODE_3200 (160 samples/20ms, 8 bytes) and MODE_1200 (320 samples/40ms, 6 bytes) - 11 new tests including encode/decode roundtrip and adaptive switching Relay forwarding: - Bidirectional client → remote forwarding with pipeline processing - CLI args: --listen, --remote - Periodic stats logging, clean shutdown via tokio::select! Benchmark tool (wzp-bench): - Codec roundtrip, FEC recovery, crypto throughput, full pipeline benchmarks - Sine wave PCM generator for realistic testing Audio I/O (cpal): - AudioCapture (microphone) and AudioPlayback (speakers) at 48kHz mono - CLI --live mode: mic → encode → send / recv → decode → speakers 120 tests passing, 0 failures. Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
104 lines
3.2 KiB
Rust
104 lines
3.2 KiB
Rust
//! Codec2 encoder — real implementation via the pure-Rust `codec2` crate.
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//!
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//! Codec2 operates at 8 kHz mono. Resampling from 48 kHz is handled
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//! externally (see `resample.rs` and `AdaptiveCodec`).
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use codec2::{Codec2 as C2, Codec2Mode};
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use wzp_proto::{AudioEncoder, CodecError, CodecId, QualityProfile};
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/// Maps our `CodecId` to the `codec2` crate's `Codec2Mode`.
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fn mode_for(codec: CodecId) -> Result<Codec2Mode, CodecError> {
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match codec {
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CodecId::Codec2_3200 => Ok(Codec2Mode::MODE_3200),
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CodecId::Codec2_1200 => Ok(Codec2Mode::MODE_1200),
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other => Err(CodecError::EncodeFailed(format!(
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"not a Codec2 variant: {other:?}"
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))),
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}
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}
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/// Codec2 encoder implementing `AudioEncoder`.
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///
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/// Wraps the pure-Rust `codec2` crate. Input is 8 kHz mono i16 PCM;
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/// the `AdaptiveEncoder` handles 48 kHz -> 8 kHz resampling.
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pub struct Codec2Encoder {
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inner: C2,
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codec_id: CodecId,
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frame_duration_ms: u8,
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}
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impl Codec2Encoder {
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/// Create a new Codec2 encoder for the given quality profile.
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pub fn new(profile: QualityProfile) -> Result<Self, CodecError> {
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let mode = mode_for(profile.codec)?;
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Ok(Self {
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inner: C2::new(mode),
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codec_id: profile.codec,
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frame_duration_ms: profile.frame_duration_ms,
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})
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}
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/// Expected number of 8 kHz PCM samples per frame.
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pub fn frame_samples(&self) -> usize {
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self.inner.samples_per_frame()
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}
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/// Number of compressed bytes per frame.
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fn bytes_per_frame(&self) -> usize {
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(self.inner.bits_per_frame() + 7) / 8
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}
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}
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impl AudioEncoder for Codec2Encoder {
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fn encode(&mut self, pcm: &[i16], out: &mut [u8]) -> Result<usize, CodecError> {
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let spf = self.inner.samples_per_frame();
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let bpf = self.bytes_per_frame();
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if pcm.len() < spf {
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return Err(CodecError::EncodeFailed(format!(
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"need {spf} samples, got {}",
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pcm.len()
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)));
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}
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if out.len() < bpf {
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return Err(CodecError::EncodeFailed(format!(
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"output buffer too small: need {bpf} bytes, got {}",
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out.len()
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)));
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}
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self.inner.encode(&mut out[..bpf], &pcm[..spf]);
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Ok(bpf)
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}
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fn codec_id(&self) -> CodecId {
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self.codec_id
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}
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fn set_profile(&mut self, profile: QualityProfile) -> Result<(), CodecError> {
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match profile.codec {
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CodecId::Codec2_3200 | CodecId::Codec2_1200 => {
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// Recreate the inner encoder if the mode changed.
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if profile.codec != self.codec_id {
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let mode = mode_for(profile.codec)?;
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self.inner = C2::new(mode);
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}
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self.codec_id = profile.codec;
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self.frame_duration_ms = profile.frame_duration_ms;
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Ok(())
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}
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other => Err(CodecError::UnsupportedTransition {
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from: self.codec_id,
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to: other,
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}),
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}
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}
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fn max_frame_bytes(&self) -> usize {
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// Codec2 3200bps @ 20ms = 64 bits = 8 bytes
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// Codec2 1200bps @ 40ms = 48 bits = 6 bytes
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// Allow generous headroom.
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16
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}
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}
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