Add a VAD example in the rust codebase.
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@ -110,7 +110,8 @@ This can be used as follows:
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cd stt-rs
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cargo run --features cuda -r -- bria.mp3
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```
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You can get the timestamps by adding the `--timestamps` flag.
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You can get the timestamps by adding the `--timestamps` flag, and see the output
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of the semantic VAD by adding the `--vad` flag.
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### MLX implementation
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<a href="https://huggingface.co/kyutai/stt-2.6b-en-mlx" target="_blank" style="margin: 2px;">
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@ -22,6 +22,10 @@ struct Args {
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/// Display word level timestamps.
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#[arg(long)]
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timestamps: bool,
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/// Display the level of voice activity detection (VAD).
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#[arg(long)]
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vad: bool,
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}
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fn device(cpu: bool) -> Result<Device> {
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@ -59,7 +63,7 @@ struct Config {
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}
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impl Config {
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fn model_config(&self) -> moshi::lm::Config {
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fn model_config(&self, vad: bool) -> moshi::lm::Config {
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let lm_cfg = moshi::transformer::Config {
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d_model: self.dim,
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num_heads: self.num_heads,
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@ -84,6 +88,14 @@ impl Config {
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max_seq_len: 4096 * 4,
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shared_cross_attn: false,
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};
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let extra_heads = if vad {
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Some(moshi::lm::ExtraHeadsConfig {
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num_heads: 4,
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dim: 6,
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})
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} else {
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None
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};
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moshi::lm::Config {
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transformer: lm_cfg,
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depformer: None,
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@ -92,7 +104,7 @@ impl Config {
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text_out_vocab_size: self.text_card,
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audio_codebooks: self.n_q,
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conditioners: Default::default(),
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extra_heads: None,
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extra_heads,
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}
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}
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}
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@ -101,17 +113,18 @@ struct Model {
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state: moshi::asr::State,
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text_tokenizer: sentencepiece::SentencePieceProcessor,
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timestamps: bool,
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vad: bool,
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config: Config,
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dev: Device,
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}
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impl Model {
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fn load_from_hf(hf_repo: &str, timestamps: bool, dev: &Device) -> Result<Self> {
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fn load_from_hf(args: &Args, dev: &Device) -> Result<Self> {
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let dtype = dev.bf16_default_to_f32();
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// Retrieve the model files from the Hugging Face Hub
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let api = hf_hub::api::sync::Api::new()?;
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let repo = api.model(hf_repo.to_string());
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let repo = api.model(args.hf_repo.to_string());
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let config_file = repo.get("config.json")?;
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let config: Config = serde_json::from_str(&std::fs::read_to_string(&config_file)?)?;
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let tokenizer_file = repo.get(&config.tokenizer_name)?;
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@ -123,7 +136,7 @@ impl Model {
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unsafe { candle_nn::VarBuilder::from_mmaped_safetensors(&[&model_file], dtype, dev)? };
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let audio_tokenizer = moshi::mimi::load(mimi_file.to_str().unwrap(), Some(32), dev)?;
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let lm = moshi::lm::LmModel::new(
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&config.model_config(),
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&config.model_config(args.vad),
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moshi::nn::MaybeQuantizedVarBuilder::Real(vb_lm),
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)?;
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let asr_delay_in_tokens = (config.stt_config.audio_delay_seconds * 12.5) as usize;
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@ -132,7 +145,8 @@ impl Model {
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state,
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config,
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text_tokenizer,
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timestamps,
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timestamps: args.timestamps,
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vad: args.vad,
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dev: dev.clone(),
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})
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}
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@ -151,13 +165,26 @@ impl Model {
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pcm.resize(pcm.len() + suffix + 24000, 0.0);
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let mut last_word = None;
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let mut printed_eot = false;
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for pcm in pcm.chunks(1920) {
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let pcm = Tensor::new(pcm, &self.dev)?.reshape((1, 1, ()))?;
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let asr_msgs = self.state.step_pcm(pcm, None, &().into(), |_, _, _| ())?;
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for asr_msg in asr_msgs.iter() {
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match asr_msg {
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moshi::asr::AsrMsg::Step { .. } => {}
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moshi::asr::AsrMsg::Step { prs, .. } => {
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// prs is the probability of voice activity for different time horizons.
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// The first element is the most recent time horizon.
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if self.vad && prs[2][0] > 0.5 && !printed_eot {
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printed_eot = true;
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if !self.timestamps {
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print!(" <endofturn pr={}>", prs[2][0]);
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} else {
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println!("<endofturn pr={}>", prs[2][0]);
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}
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}
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}
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moshi::asr::AsrMsg::EndWord { stop_time, .. } => {
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printed_eot = false;
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if self.timestamps {
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if let Some((word, start_time)) = last_word.take() {
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println!("[{start_time:5.2}-{stop_time:5.2}] {word}");
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@ -167,6 +194,7 @@ impl Model {
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moshi::asr::AsrMsg::Word {
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tokens, start_time, ..
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} => {
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printed_eot = false;
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let word = self
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.text_tokenizer
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.decode_piece_ids(tokens)
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@ -198,14 +226,14 @@ fn main() -> Result<()> {
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println!("Using device: {:?}", device);
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println!("Loading audio file from: {}", args.in_file);
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let (pcm, sample_rate) = kaudio::pcm_decode(args.in_file)?;
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let (pcm, sample_rate) = kaudio::pcm_decode(&args.in_file)?;
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let pcm = if sample_rate != 24_000 {
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kaudio::resample(&pcm, sample_rate as usize, 24_000)?
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} else {
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pcm
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};
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println!("Loading model from repository: {}", args.hf_repo);
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let mut model = Model::load_from_hf(&args.hf_repo, args.timestamps, &device)?;
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let mut model = Model::load_from_hf(&args, &device)?;
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println!("Running inference");
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model.run(pcm)?;
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Ok(())
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