migrate state method into state object
This commit is contained in:
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0fe0a87a09
commit
ef4b9f0630
5 changed files with 539 additions and 581 deletions
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@ -1,7 +1,6 @@
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use crate::error::WhisperError;
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use crate::whisper_params::FullParams;
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use crate::whisper_state::WhisperState;
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use crate::{WhisperToken, WhisperTokenData};
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use crate::WhisperToken;
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use std::ffi::{c_int, CStr, CString};
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/// Safe Rust wrapper around a Whisper context.
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@ -70,203 +69,7 @@ impl WhisperContext {
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Err(WhisperError::InitError)
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} else {
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// SAFETY: this is known to be a valid pointer to a `whisper_state` struct
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Ok(WhisperState::new(state))
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}
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}
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/// Convert raw PCM audio (floating point 32 bit) to log mel spectrogram.
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/// The resulting spectrogram is stored in the context transparently.
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///
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/// # Arguments
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/// * pcm: The raw PCM audio.
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/// * threads: How many threads to use. Defaults to 1. Must be at least 1, returns an error otherwise.
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///
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/// # Returns
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/// Ok(()) on success, Err(WhisperError) on failure.
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///
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/// # C++ equivalent
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/// `int whisper_pcm_to_mel(struct whisper_context * ctx, const float * samples, int n_samples, int n_threads)`
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pub fn pcm_to_mel(
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&self,
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state: &WhisperState,
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pcm: &[f32],
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threads: usize,
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) -> Result<(), WhisperError> {
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if threads < 1 {
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return Err(WhisperError::InvalidThreadCount);
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}
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let ret = unsafe {
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whisper_rs_sys::whisper_pcm_to_mel_with_state(
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self.ctx,
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state.as_ptr(),
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pcm.as_ptr(),
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pcm.len() as c_int,
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threads as c_int,
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)
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};
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if ret == -1 {
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Err(WhisperError::UnableToCalculateSpectrogram)
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} else if ret == 0 {
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Ok(())
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} else {
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Err(WhisperError::GenericError(ret))
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}
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}
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/// Convert raw PCM audio (floating point 32 bit) to log mel spectrogram.
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/// Applies a Phase Vocoder to speed up the audio x2.
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/// The resulting spectrogram is stored in the context transparently.
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///
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/// # Arguments
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/// * pcm: The raw PCM audio.
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/// * threads: How many threads to use. Defaults to 1. Must be at least 1, returns an error otherwise.
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///
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/// # Returns
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/// Ok(()) on success, Err(WhisperError) on failure.
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///
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/// # C++ equivalent
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/// `int whisper_pcm_to_mel(struct whisper_context * ctx, const float * samples, int n_samples, int n_threads)`
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pub fn pcm_to_mel_phase_vocoder(
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&self,
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state: &WhisperState,
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pcm: &[f32],
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threads: usize,
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) -> Result<(), WhisperError> {
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if threads < 1 {
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return Err(WhisperError::InvalidThreadCount);
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}
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let ret = unsafe {
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whisper_rs_sys::whisper_pcm_to_mel_phase_vocoder_with_state(
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self.ctx,
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state.as_ptr(),
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pcm.as_ptr(),
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pcm.len() as c_int,
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threads as c_int,
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)
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};
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if ret == -1 {
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Err(WhisperError::UnableToCalculateSpectrogram)
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} else if ret == 0 {
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Ok(())
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} else {
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Err(WhisperError::GenericError(ret))
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}
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}
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/// This can be used to set a custom log mel spectrogram inside the provided whisper state.
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/// Use this instead of whisper_pcm_to_mel() if you want to provide your own log mel spectrogram.
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///
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/// # Note
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/// This is a low-level function.
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/// If you're a typical user, you probably don't want to use this function.
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/// See instead [WhisperContext::pcm_to_mel].
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///
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/// # Arguments
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/// * data: The log mel spectrogram.
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///
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/// # Returns
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/// Ok(()) on success, Err(WhisperError) on failure.
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///
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/// # C++ equivalent
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/// `int whisper_set_mel(struct whisper_context * ctx, const float * data, int n_len, int n_mel)`
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pub fn set_mel(&self, state: &WhisperState, data: &[f32]) -> Result<(), WhisperError> {
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let ret = unsafe {
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whisper_rs_sys::whisper_set_mel_with_state(
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self.ctx,
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state.as_ptr(),
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data.as_ptr(),
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data.len() as c_int,
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80 as c_int,
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)
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};
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if ret == -1 {
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Err(WhisperError::InvalidMelBands)
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} else if ret == 0 {
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Ok(())
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} else {
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Err(WhisperError::GenericError(ret))
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}
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}
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/// Run the Whisper encoder on the log mel spectrogram stored inside the provided whisper context.
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/// Make sure to call [WhisperContext::pcm_to_mel] or [WhisperContext::set_mel] first.
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///
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/// # Arguments
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/// * offset: Can be used to specify the offset of the first frame in the spectrogram. Usually 0.
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/// * threads: How many threads to use. Defaults to 1. Must be at least 1, returns an error otherwise.
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///
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/// # Returns
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/// Ok(()) on success, Err(WhisperError) on failure.
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///
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/// # C++ equivalent
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/// `int whisper_encode(struct whisper_context * ctx, int offset, int n_threads)`
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pub fn encode(
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&self,
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state: &WhisperState,
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offset: usize,
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threads: usize,
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) -> Result<(), WhisperError> {
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if threads < 1 {
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return Err(WhisperError::InvalidThreadCount);
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}
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let ret = unsafe {
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whisper_rs_sys::whisper_encode_with_state(
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self.ctx,
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state.as_ptr(),
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offset as c_int,
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threads as c_int,
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)
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};
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if ret == -1 {
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Err(WhisperError::UnableToCalculateEvaluation)
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} else if ret == 0 {
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Ok(())
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} else {
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Err(WhisperError::GenericError(ret))
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}
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}
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/// Run the Whisper decoder to obtain the logits and probabilities for the next token.
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/// Make sure to call [WhisperContext::encode] first.
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/// tokens + n_tokens is the provided context for the decoder.
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///
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/// # Arguments
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/// * tokens: The tokens to decode.
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/// * n_tokens: The number of tokens to decode.
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/// * n_past: The number of past tokens to use for the decoding.
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/// * n_threads: How many threads to use. Defaults to 1. Must be at least 1, returns an error otherwise.
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///
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/// # Returns
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/// Ok(()) on success, Err(WhisperError) on failure.
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///
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/// # C++ equivalent
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/// `int whisper_decode(struct whisper_context * ctx, const whisper_token * tokens, int n_tokens, int n_past, int n_threads)`
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pub fn decode(
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&self,
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state: &WhisperState,
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tokens: &[WhisperToken],
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n_past: usize,
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threads: usize,
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) -> Result<(), WhisperError> {
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if threads < 1 {
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return Err(WhisperError::InvalidThreadCount);
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}
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let ret = unsafe {
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whisper_rs_sys::whisper_decode_with_state(
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self.ctx,
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state.as_ptr(),
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tokens.as_ptr(),
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tokens.len() as c_int,
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n_past as c_int,
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threads as c_int,
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)
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};
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if ret == -1 {
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Err(WhisperError::UnableToCalculateEvaluation)
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} else if ret == 0 {
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Ok(())
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} else {
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Err(WhisperError::GenericError(ret))
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Ok(WhisperState::new(self.ctx, state))
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}
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}
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@ -304,74 +107,6 @@ impl WhisperContext {
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}
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}
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// Language functions
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/// Use mel data at offset_ms to try and auto-detect the spoken language
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/// Make sure to call pcm_to_mel() or set_mel() first
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///
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/// # Arguments
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/// * offset_ms: The offset in milliseconds to use for the language detection.
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/// * n_threads: How many threads to use. Defaults to 1. Must be at least 1, returns an error otherwise.
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///
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/// # Returns
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/// Ok(Vec<f32>) on success, Err(WhisperError) on failure.
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///
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/// # C++ equivalent
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/// `int whisper_lang_auto_detect(struct whisper_context * ctx, int offset_ms, int n_threads, float * lang_probs)`
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pub fn lang_detect(
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&self,
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state: &WhisperState,
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offset_ms: usize,
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threads: usize,
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) -> Result<Vec<f32>, WhisperError> {
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if threads < 1 {
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return Err(WhisperError::InvalidThreadCount);
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}
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let mut lang_probs: Vec<f32> = vec![0.0; crate::standalone::get_lang_max_id() as usize + 1];
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let ret = unsafe {
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whisper_rs_sys::whisper_lang_auto_detect_with_state(
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self.ctx,
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state.as_ptr(),
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offset_ms as c_int,
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threads as c_int,
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lang_probs.as_mut_ptr(),
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)
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};
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if ret == -1 {
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Err(WhisperError::UnableToCalculateEvaluation)
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} else {
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assert_eq!(
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ret as usize,
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lang_probs.len(),
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"lang_probs length mismatch: this is a bug in whisper.cpp"
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);
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// if we're still running, double check that the length is correct, otherwise print to stderr
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// and abort, as this will cause Undefined Behavior
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// might get here due to the unwind being caught by a user-installed panic handler
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if lang_probs.len() != ret as usize {
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eprintln!(
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"lang_probs length mismatch: this is a bug in whisper.cpp, \
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aborting to avoid Undefined Behavior"
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);
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std::process::abort();
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}
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Ok(lang_probs)
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}
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}
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// model attributes
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/// Get the mel spectrogram length.
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///
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/// # Returns
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/// Ok(c_int) on success, Err(WhisperError) on failure.
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///
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/// # C++ equivalent
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/// `int whisper_n_len_from_state(struct whisper_context * ctx)`
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#[inline]
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pub fn n_len(&self, state: &WhisperState) -> Result<c_int, WhisperError> {
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Ok(unsafe { whisper_rs_sys::whisper_n_len_from_state(state.as_ptr()) })
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}
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/// Get n_vocab.
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///
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/// # Returns
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@ -561,46 +296,7 @@ impl WhisperContext {
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unsafe { whisper_rs_sys::whisper_model_type(self.ctx) }
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}
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// logit functions
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/// Get the logits obtained from the last call to [WhisperContext::decode].
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/// The logits for the last token are stored in the last row of the matrix.
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///
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/// Note: this function may be somewhat expensive depending on the size of the matrix returned, as it
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/// needs to be rebuilt from the raw data. Try to avoid calling it more than once if possible.
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///
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/// # Arguments
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/// * segment: The segment to fetch data for.
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///
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/// # Returns
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/// 2D matrix of logits. Row count is equal to n_tokens, column count is equal to n_vocab.
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///
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/// # C++ equivalent
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/// `float * whisper_get_logits(struct whisper_context * ctx)`
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pub fn get_logits(
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&self,
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state: &WhisperState,
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segment: c_int,
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) -> Result<Vec<Vec<f32>>, WhisperError> {
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let ret = unsafe { whisper_rs_sys::whisper_get_logits_from_state(state.as_ptr()) };
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if ret.is_null() {
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return Err(WhisperError::NullPointer);
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}
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let mut logits = Vec::new();
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let n_vocab = self.n_vocab();
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let n_tokens = self.full_n_tokens(state, segment)?;
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for i in 0..n_tokens {
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let mut row = Vec::new();
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for j in 0..n_vocab {
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let idx = (i * n_vocab) + j;
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let val = unsafe { *ret.offset(idx as isize) };
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row.push(val);
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}
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logits.push(row);
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}
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Ok(logits)
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}
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// token functions
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/// token functions
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/// Convert a token ID to a string.
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///
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/// # Arguments
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@ -719,249 +415,6 @@ impl WhisperContext {
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pub fn reset_timings(&self) {
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unsafe { whisper_rs_sys::whisper_reset_timings(self.ctx) }
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}
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/// Run the entire model: PCM -> log mel spectrogram -> encoder -> decoder -> text
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/// Uses the specified decoding strategy to obtain the text.
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///
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/// This is usually the only function you need to call as an end user.
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///
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/// # Arguments
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/// * params: [crate::FullParams] struct.
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/// * pcm: PCM audio data.
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///
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/// # Returns
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/// Ok(c_int) on success, Err(WhisperError) on failure.
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///
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/// # C++ equivalent
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/// `int whisper_full(struct whisper_context * ctx, struct whisper_full_params params, const float * samples, int n_samples)`
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pub fn full(
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&self,
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state: &WhisperState,
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params: FullParams,
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data: &[f32],
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) -> Result<c_int, WhisperError> {
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let ret = unsafe {
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whisper_rs_sys::whisper_full_with_state(
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self.ctx,
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state.as_ptr(),
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params.fp,
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data.as_ptr(),
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data.len() as c_int,
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)
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};
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if ret == -1 {
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Err(WhisperError::UnableToCalculateSpectrogram)
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} else if ret == 7 {
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Err(WhisperError::FailedToEncode)
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} else if ret == 8 {
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Err(WhisperError::FailedToDecode)
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} else if ret == 0 {
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Ok(ret)
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} else {
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Err(WhisperError::GenericError(ret))
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}
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}
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/// Number of generated text segments.
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/// A segment can be a few words, a sentence, or even a paragraph.
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///
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/// # C++ equivalent
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/// `int whisper_full_n_segments(struct whisper_context * ctx)`
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#[inline]
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pub fn full_n_segments(&self, state: &WhisperState) -> Result<c_int, WhisperError> {
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Ok(unsafe { whisper_rs_sys::whisper_full_n_segments_from_state(state.as_ptr()) })
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}
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/// Language ID associated with the provided state.
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///
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/// # C++ equivalent
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/// `int whisper_full_lang_id_from_state(struct whisper_state * state);`
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#[inline]
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pub fn full_lang_id_from_state(&self, state: &WhisperState) -> Result<c_int, WhisperError> {
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Ok(unsafe { whisper_rs_sys::whisper_full_lang_id_from_state(state.as_ptr()) })
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}
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/// Get the start time of the specified segment.
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///
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/// # Arguments
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/// * segment: Segment index.
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///
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/// # C++ equivalent
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/// `int64_t whisper_full_get_segment_t0(struct whisper_context * ctx, int i_segment)`
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#[inline]
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pub fn full_get_segment_t0(
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&self,
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state: &WhisperState,
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segment: c_int,
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) -> Result<i64, WhisperError> {
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Ok(unsafe {
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whisper_rs_sys::whisper_full_get_segment_t0_from_state(state.as_ptr(), segment)
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})
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}
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/// Get the end time of the specified segment.
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///
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/// # Arguments
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/// * segment: Segment index.
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///
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/// # C++ equivalent
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/// `int64_t whisper_full_get_segment_t1(struct whisper_context * ctx, int i_segment)`
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#[inline]
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pub fn full_get_segment_t1(
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&self,
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state: &WhisperState,
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segment: c_int,
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) -> Result<i64, WhisperError> {
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Ok(unsafe {
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whisper_rs_sys::whisper_full_get_segment_t1_from_state(state.as_ptr(), segment)
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})
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}
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/// Get the text of the specified segment.
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///
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/// # Arguments
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/// * segment: Segment index.
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///
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/// # Returns
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/// Ok(String) on success, Err(WhisperError) on failure.
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///
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/// # C++ equivalent
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/// `const char * whisper_full_get_segment_text(struct whisper_context * ctx, int i_segment)`
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pub fn full_get_segment_text(
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&self,
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state: &WhisperState,
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segment: c_int,
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) -> Result<String, WhisperError> {
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let ret = unsafe {
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whisper_rs_sys::whisper_full_get_segment_text_from_state(state.as_ptr(), segment)
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};
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if ret.is_null() {
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return Err(WhisperError::NullPointer);
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}
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let c_str = unsafe { CStr::from_ptr(ret) };
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let r_str = c_str.to_str()?;
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Ok(r_str.to_string())
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}
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|
||||
/// Get number of tokens in the specified segment.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * segment: Segment index.
|
||||
///
|
||||
/// # Returns
|
||||
/// c_int
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int whisper_full_n_tokens(struct whisper_context * ctx, int i_segment)`
|
||||
#[inline]
|
||||
pub fn full_n_tokens(
|
||||
&self,
|
||||
state: &WhisperState,
|
||||
segment: c_int,
|
||||
) -> Result<c_int, WhisperError> {
|
||||
Ok(unsafe { whisper_rs_sys::whisper_full_n_tokens_from_state(state.as_ptr(), segment) })
|
||||
}
|
||||
|
||||
/// Get the token text of the specified token in the specified segment.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * segment: Segment index.
|
||||
/// * token: Token index.
|
||||
///
|
||||
/// # Returns
|
||||
/// Ok(String) on success, Err(WhisperError) on failure.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `const char * whisper_full_get_token_text(struct whisper_context * ctx, int i_segment, int i_token)`
|
||||
pub fn full_get_token_text(
|
||||
&self,
|
||||
state: &WhisperState,
|
||||
segment: c_int,
|
||||
token: c_int,
|
||||
) -> Result<String, WhisperError> {
|
||||
let ret = unsafe {
|
||||
whisper_rs_sys::whisper_full_get_token_text_from_state(
|
||||
self.ctx,
|
||||
state.as_ptr(),
|
||||
segment,
|
||||
token,
|
||||
)
|
||||
};
|
||||
if ret.is_null() {
|
||||
return Err(WhisperError::NullPointer);
|
||||
}
|
||||
let c_str = unsafe { CStr::from_ptr(ret) };
|
||||
let r_str = c_str.to_str()?;
|
||||
Ok(r_str.to_string())
|
||||
}
|
||||
|
||||
/// Get the token ID of the specified token in the specified segment.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * segment: Segment index.
|
||||
/// * token: Token index.
|
||||
///
|
||||
/// # Returns
|
||||
/// [crate::WhisperToken]
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `whisper_token whisper_full_get_token_id (struct whisper_context * ctx, int i_segment, int i_token)`
|
||||
pub fn full_get_token_id(
|
||||
&self,
|
||||
state: &WhisperState,
|
||||
segment: c_int,
|
||||
token: c_int,
|
||||
) -> Result<WhisperToken, WhisperError> {
|
||||
Ok(unsafe {
|
||||
whisper_rs_sys::whisper_full_get_token_id_from_state(state.as_ptr(), segment, token)
|
||||
})
|
||||
}
|
||||
|
||||
/// Get token data for the specified token in the specified segment.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * segment: Segment index.
|
||||
/// * token: Token index.
|
||||
///
|
||||
/// # Returns
|
||||
/// [crate::WhisperTokenData]
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `whisper_token_data whisper_full_get_token_data(struct whisper_context * ctx, int i_segment, int i_token)`
|
||||
#[inline]
|
||||
pub fn full_get_token_data(
|
||||
&self,
|
||||
state: &WhisperState,
|
||||
segment: c_int,
|
||||
token: c_int,
|
||||
) -> Result<WhisperTokenData, WhisperError> {
|
||||
Ok(unsafe {
|
||||
whisper_rs_sys::whisper_full_get_token_data_from_state(state.as_ptr(), segment, token)
|
||||
})
|
||||
}
|
||||
|
||||
/// Get the probability of the specified token in the specified segment.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * segment: Segment index.
|
||||
/// * token: Token index.
|
||||
///
|
||||
/// # Returns
|
||||
/// f32
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `float whisper_full_get_token_p(struct whisper_context * ctx, int i_segment, int i_token)`
|
||||
#[inline]
|
||||
pub fn full_get_token_prob(
|
||||
&self,
|
||||
state: &WhisperState,
|
||||
segment: c_int,
|
||||
token: c_int,
|
||||
) -> Result<f32, WhisperError> {
|
||||
Ok(unsafe {
|
||||
whisper_rs_sys::whisper_full_get_token_p_from_state(state.as_ptr(), segment, token)
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
impl Drop for WhisperContext {
|
||||
|
|
|
|||
|
|
@ -1,10 +1,13 @@
|
|||
use crate::{FullParams, WhisperContext, WhisperError, WhisperToken, WhisperTokenData};
|
||||
use std::ffi::{c_int, CStr};
|
||||
use std::marker::PhantomData;
|
||||
|
||||
/// Rustified pointer to a Whisper state.
|
||||
#[derive(Debug)]
|
||||
pub struct WhisperState<'a> {
|
||||
ctx: *mut whisper_rs_sys::whisper_context,
|
||||
ptr: *mut whisper_rs_sys::whisper_state,
|
||||
_phantom: PhantomData<&'a ()>,
|
||||
_phantom: PhantomData<&'a WhisperContext>,
|
||||
}
|
||||
|
||||
unsafe impl<'a> Send for WhisperState<'a> {}
|
||||
|
|
@ -19,14 +22,516 @@ impl<'a> Drop for WhisperState<'a> {
|
|||
}
|
||||
|
||||
impl<'a> WhisperState<'a> {
|
||||
pub(crate) fn new(ptr: *mut whisper_rs_sys::whisper_state) -> Self {
|
||||
pub(crate) fn new(
|
||||
ctx: *mut whisper_rs_sys::whisper_context,
|
||||
ptr: *mut whisper_rs_sys::whisper_state,
|
||||
) -> Self {
|
||||
Self {
|
||||
ctx,
|
||||
ptr,
|
||||
_phantom: PhantomData,
|
||||
}
|
||||
}
|
||||
|
||||
pub(crate) fn as_ptr(&self) -> *mut whisper_rs_sys::whisper_state {
|
||||
self.ptr
|
||||
/// Convert raw PCM audio (floating point 32 bit) to log mel spectrogram.
|
||||
/// The resulting spectrogram is stored in the context transparently.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * pcm: The raw PCM audio.
|
||||
/// * threads: How many threads to use. Defaults to 1. Must be at least 1, returns an error otherwise.
|
||||
///
|
||||
/// # Returns
|
||||
/// Ok(()) on success, Err(WhisperError) on failure.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int whisper_pcm_to_mel(struct whisper_context * ctx, const float * samples, int n_samples, int n_threads)`
|
||||
pub fn pcm_to_mel(&mut self, pcm: &[f32], threads: usize) -> Result<(), WhisperError> {
|
||||
if threads < 1 {
|
||||
return Err(WhisperError::InvalidThreadCount);
|
||||
}
|
||||
let ret = unsafe {
|
||||
whisper_rs_sys::whisper_pcm_to_mel_with_state(
|
||||
self.ctx,
|
||||
self.ptr,
|
||||
pcm.as_ptr(),
|
||||
pcm.len() as c_int,
|
||||
threads as c_int,
|
||||
)
|
||||
};
|
||||
if ret == -1 {
|
||||
Err(WhisperError::UnableToCalculateSpectrogram)
|
||||
} else if ret == 0 {
|
||||
Ok(())
|
||||
} else {
|
||||
Err(WhisperError::GenericError(ret))
|
||||
}
|
||||
}
|
||||
|
||||
/// Convert raw PCM audio (floating point 32 bit) to log mel spectrogram.
|
||||
/// Applies a Phase Vocoder to speed up the audio x2.
|
||||
/// The resulting spectrogram is stored in the context transparently.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * pcm: The raw PCM audio.
|
||||
/// * threads: How many threads to use. Defaults to 1. Must be at least 1, returns an error otherwise.
|
||||
///
|
||||
/// # Returns
|
||||
/// Ok(()) on success, Err(WhisperError) on failure.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int whisper_pcm_to_mel(struct whisper_context * ctx, const float * samples, int n_samples, int n_threads)`
|
||||
pub fn pcm_to_mel_phase_vocoder(
|
||||
&mut self,
|
||||
pcm: &[f32],
|
||||
threads: usize,
|
||||
) -> Result<(), WhisperError> {
|
||||
if threads < 1 {
|
||||
return Err(WhisperError::InvalidThreadCount);
|
||||
}
|
||||
let ret = unsafe {
|
||||
whisper_rs_sys::whisper_pcm_to_mel_phase_vocoder_with_state(
|
||||
self.ctx,
|
||||
self.ptr,
|
||||
pcm.as_ptr(),
|
||||
pcm.len() as c_int,
|
||||
threads as c_int,
|
||||
)
|
||||
};
|
||||
if ret == -1 {
|
||||
Err(WhisperError::UnableToCalculateSpectrogram)
|
||||
} else if ret == 0 {
|
||||
Ok(())
|
||||
} else {
|
||||
Err(WhisperError::GenericError(ret))
|
||||
}
|
||||
}
|
||||
|
||||
/// This can be used to set a custom log mel spectrogram inside the provided whisper state.
|
||||
/// Use this instead of whisper_pcm_to_mel() if you want to provide your own log mel spectrogram.
|
||||
///
|
||||
/// # Note
|
||||
/// This is a low-level function.
|
||||
/// If you're a typical user, you probably don't want to use this function.
|
||||
/// See instead [WhisperContext::pcm_to_mel].
|
||||
///
|
||||
/// # Arguments
|
||||
/// * data: The log mel spectrogram.
|
||||
///
|
||||
/// # Returns
|
||||
/// Ok(()) on success, Err(WhisperError) on failure.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int whisper_set_mel(struct whisper_context * ctx, const float * data, int n_len, int n_mel)`
|
||||
pub fn set_mel(&mut self, data: &[f32]) -> Result<(), WhisperError> {
|
||||
let ret = unsafe {
|
||||
whisper_rs_sys::whisper_set_mel_with_state(
|
||||
self.ctx,
|
||||
self.ptr,
|
||||
data.as_ptr(),
|
||||
data.len() as c_int,
|
||||
80 as c_int,
|
||||
)
|
||||
};
|
||||
if ret == -1 {
|
||||
Err(WhisperError::InvalidMelBands)
|
||||
} else if ret == 0 {
|
||||
Ok(())
|
||||
} else {
|
||||
Err(WhisperError::GenericError(ret))
|
||||
}
|
||||
}
|
||||
|
||||
/// Run the Whisper encoder on the log mel spectrogram stored inside the provided whisper state.
|
||||
/// Make sure to call [WhisperContext::pcm_to_mel] or [WhisperContext::set_mel] first.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * offset: Can be used to specify the offset of the first frame in the spectrogram. Usually 0.
|
||||
/// * threads: How many threads to use. Defaults to 1. Must be at least 1, returns an error otherwise.
|
||||
///
|
||||
/// # Returns
|
||||
/// Ok(()) on success, Err(WhisperError) on failure.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int whisper_encode(struct whisper_context * ctx, int offset, int n_threads)`
|
||||
pub fn encode(&mut self, offset: usize, threads: usize) -> Result<(), WhisperError> {
|
||||
if threads < 1 {
|
||||
return Err(WhisperError::InvalidThreadCount);
|
||||
}
|
||||
let ret = unsafe {
|
||||
whisper_rs_sys::whisper_encode_with_state(
|
||||
self.ctx,
|
||||
self.ptr,
|
||||
offset as c_int,
|
||||
threads as c_int,
|
||||
)
|
||||
};
|
||||
if ret == -1 {
|
||||
Err(WhisperError::UnableToCalculateEvaluation)
|
||||
} else if ret == 0 {
|
||||
Ok(())
|
||||
} else {
|
||||
Err(WhisperError::GenericError(ret))
|
||||
}
|
||||
}
|
||||
|
||||
/// Run the Whisper decoder to obtain the logits and probabilities for the next token.
|
||||
/// Make sure to call [WhisperContext::encode] first.
|
||||
/// tokens + n_tokens is the provided context for the decoder.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * tokens: The tokens to decode.
|
||||
/// * n_tokens: The number of tokens to decode.
|
||||
/// * n_past: The number of past tokens to use for the decoding.
|
||||
/// * n_threads: How many threads to use. Defaults to 1. Must be at least 1, returns an error otherwise.
|
||||
///
|
||||
/// # Returns
|
||||
/// Ok(()) on success, Err(WhisperError) on failure.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int whisper_decode(struct whisper_context * ctx, const whisper_token * tokens, int n_tokens, int n_past, int n_threads)`
|
||||
pub fn decode(
|
||||
&mut self,
|
||||
tokens: &[WhisperToken],
|
||||
n_past: usize,
|
||||
threads: usize,
|
||||
) -> Result<(), WhisperError> {
|
||||
if threads < 1 {
|
||||
return Err(WhisperError::InvalidThreadCount);
|
||||
}
|
||||
let ret = unsafe {
|
||||
whisper_rs_sys::whisper_decode_with_state(
|
||||
self.ctx,
|
||||
self.ptr,
|
||||
tokens.as_ptr(),
|
||||
tokens.len() as c_int,
|
||||
n_past as c_int,
|
||||
threads as c_int,
|
||||
)
|
||||
};
|
||||
if ret == -1 {
|
||||
Err(WhisperError::UnableToCalculateEvaluation)
|
||||
} else if ret == 0 {
|
||||
Ok(())
|
||||
} else {
|
||||
Err(WhisperError::GenericError(ret))
|
||||
}
|
||||
}
|
||||
|
||||
// Language functions
|
||||
/// Use mel data at offset_ms to try and auto-detect the spoken language
|
||||
/// Make sure to call pcm_to_mel() or set_mel() first
|
||||
///
|
||||
/// # Arguments
|
||||
/// * offset_ms: The offset in milliseconds to use for the language detection.
|
||||
/// * n_threads: How many threads to use. Defaults to 1. Must be at least 1, returns an error otherwise.
|
||||
///
|
||||
/// # Returns
|
||||
/// Ok(Vec<f32>) on success, Err(WhisperError) on failure.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int whisper_lang_auto_detect(struct whisper_context * ctx, int offset_ms, int n_threads, float * lang_probs)`
|
||||
pub fn lang_detect(&self, offset_ms: usize, threads: usize) -> Result<Vec<f32>, WhisperError> {
|
||||
if threads < 1 {
|
||||
return Err(WhisperError::InvalidThreadCount);
|
||||
}
|
||||
|
||||
let mut lang_probs: Vec<f32> = vec![0.0; crate::standalone::get_lang_max_id() as usize + 1];
|
||||
let ret = unsafe {
|
||||
whisper_rs_sys::whisper_lang_auto_detect_with_state(
|
||||
self.ctx,
|
||||
self.ptr,
|
||||
offset_ms as c_int,
|
||||
threads as c_int,
|
||||
lang_probs.as_mut_ptr(),
|
||||
)
|
||||
};
|
||||
if ret == -1 {
|
||||
Err(WhisperError::UnableToCalculateEvaluation)
|
||||
} else {
|
||||
assert_eq!(
|
||||
ret as usize,
|
||||
lang_probs.len(),
|
||||
"lang_probs length mismatch: this is a bug in whisper.cpp"
|
||||
);
|
||||
// if we're still running, double check that the length is correct, otherwise print to stderr
|
||||
// and abort, as this will cause Undefined Behavior
|
||||
// might get here due to the unwind being caught by a user-installed panic handler
|
||||
if lang_probs.len() != ret as usize {
|
||||
eprintln!(
|
||||
"lang_probs length mismatch: this is a bug in whisper.cpp, \
|
||||
aborting to avoid Undefined Behavior"
|
||||
);
|
||||
std::process::abort();
|
||||
}
|
||||
Ok(lang_probs)
|
||||
}
|
||||
}
|
||||
|
||||
// logit functions
|
||||
/// Get the logits obtained from the last call to [WhisperContext::decode].
|
||||
/// The logits for the last token are stored in the last row of the matrix.
|
||||
///
|
||||
/// Note: this function may be somewhat expensive depending on the size of the matrix returned, as it
|
||||
/// needs to be rebuilt from the raw data. Try to avoid calling it more than once if possible.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * segment: The segment to fetch data for.
|
||||
///
|
||||
/// # Returns
|
||||
/// 2D matrix of logits. Row count is equal to n_tokens, column count is equal to n_vocab.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `float * whisper_get_logits(struct whisper_context * ctx)`
|
||||
pub fn get_logits(&self, segment: c_int) -> Result<Vec<Vec<f32>>, WhisperError> {
|
||||
let ret = unsafe { whisper_rs_sys::whisper_get_logits_from_state(self.ptr) };
|
||||
if ret.is_null() {
|
||||
return Err(WhisperError::NullPointer);
|
||||
}
|
||||
let mut logits = Vec::new();
|
||||
let n_vocab = self.n_vocab();
|
||||
let n_tokens = self.full_n_tokens(segment)?;
|
||||
for i in 0..n_tokens {
|
||||
let mut row = Vec::new();
|
||||
for j in 0..n_vocab {
|
||||
let idx = (i * n_vocab) + j;
|
||||
let val = unsafe { *ret.offset(idx as isize) };
|
||||
row.push(val);
|
||||
}
|
||||
logits.push(row);
|
||||
}
|
||||
Ok(logits)
|
||||
}
|
||||
|
||||
// model attributes
|
||||
/// Get the mel spectrogram length.
|
||||
///
|
||||
/// # Returns
|
||||
/// Ok(c_int) on success, Err(WhisperError) on failure.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int whisper_n_len_from_state(struct whisper_context * ctx)`
|
||||
#[inline]
|
||||
pub fn n_len(&self) -> Result<c_int, WhisperError> {
|
||||
Ok(unsafe { whisper_rs_sys::whisper_n_len_from_state(self.ptr) })
|
||||
}
|
||||
|
||||
/// Get n_vocab.
|
||||
///
|
||||
/// # Returns
|
||||
/// c_int
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int whisper_n_vocab (struct whisper_context * ctx)`
|
||||
#[inline]
|
||||
pub fn n_vocab(&self) -> c_int {
|
||||
unsafe { whisper_rs_sys::whisper_n_vocab(self.ctx) }
|
||||
}
|
||||
|
||||
/// Run the entire model: PCM -> log mel spectrogram -> encoder -> decoder -> text
|
||||
/// Uses the specified decoding strategy to obtain the text.
|
||||
///
|
||||
/// This is usually the only function you need to call as an end user.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * params: [crate::FullParams] struct.
|
||||
/// * pcm: PCM audio data.
|
||||
///
|
||||
/// # Returns
|
||||
/// Ok(c_int) on success, Err(WhisperError) on failure.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int whisper_full(struct whisper_context * ctx, struct whisper_full_params params, const float * samples, int n_samples)`
|
||||
pub fn full(&mut self, params: FullParams, data: &[f32]) -> Result<c_int, WhisperError> {
|
||||
let ret = unsafe {
|
||||
whisper_rs_sys::whisper_full_with_state(
|
||||
self.ctx,
|
||||
self.ptr,
|
||||
params.fp,
|
||||
data.as_ptr(),
|
||||
data.len() as c_int,
|
||||
)
|
||||
};
|
||||
if ret == -1 {
|
||||
Err(WhisperError::UnableToCalculateSpectrogram)
|
||||
} else if ret == 7 {
|
||||
Err(WhisperError::FailedToEncode)
|
||||
} else if ret == 8 {
|
||||
Err(WhisperError::FailedToDecode)
|
||||
} else if ret == 0 {
|
||||
Ok(ret)
|
||||
} else {
|
||||
Err(WhisperError::GenericError(ret))
|
||||
}
|
||||
}
|
||||
|
||||
/// Number of generated text segments.
|
||||
/// A segment can be a few words, a sentence, or even a paragraph.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int whisper_full_n_segments(struct whisper_context * ctx)`
|
||||
#[inline]
|
||||
pub fn full_n_segments(&self) -> Result<c_int, WhisperError> {
|
||||
Ok(unsafe { whisper_rs_sys::whisper_full_n_segments_from_state(self.ptr) })
|
||||
}
|
||||
|
||||
/// Language ID associated with the provided state.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int whisper_full_lang_id_from_state(struct whisper_state * state);`
|
||||
#[inline]
|
||||
pub fn full_lang_id_from_state(&self) -> Result<c_int, WhisperError> {
|
||||
Ok(unsafe { whisper_rs_sys::whisper_full_lang_id_from_state(self.ptr) })
|
||||
}
|
||||
|
||||
/// Get the start time of the specified segment.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * segment: Segment index.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int64_t whisper_full_get_segment_t0(struct whisper_context * ctx, int i_segment)`
|
||||
#[inline]
|
||||
pub fn full_get_segment_t0(&self, segment: c_int) -> Result<i64, WhisperError> {
|
||||
Ok(unsafe { whisper_rs_sys::whisper_full_get_segment_t0_from_state(self.ptr, segment) })
|
||||
}
|
||||
|
||||
/// Get the end time of the specified segment.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * segment: Segment index.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int64_t whisper_full_get_segment_t1(struct whisper_context * ctx, int i_segment)`
|
||||
#[inline]
|
||||
pub fn full_get_segment_t1(&self, segment: c_int) -> Result<i64, WhisperError> {
|
||||
Ok(unsafe { whisper_rs_sys::whisper_full_get_segment_t1_from_state(self.ptr, segment) })
|
||||
}
|
||||
|
||||
/// Get the text of the specified segment.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * segment: Segment index.
|
||||
///
|
||||
/// # Returns
|
||||
/// Ok(String) on success, Err(WhisperError) on failure.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `const char * whisper_full_get_segment_text(struct whisper_context * ctx, int i_segment)`
|
||||
pub fn full_get_segment_text(&self, segment: c_int) -> Result<String, WhisperError> {
|
||||
let ret =
|
||||
unsafe { whisper_rs_sys::whisper_full_get_segment_text_from_state(self.ptr, segment) };
|
||||
if ret.is_null() {
|
||||
return Err(WhisperError::NullPointer);
|
||||
}
|
||||
let c_str = unsafe { CStr::from_ptr(ret) };
|
||||
let r_str = c_str.to_str()?;
|
||||
Ok(r_str.to_string())
|
||||
}
|
||||
|
||||
/// Get number of tokens in the specified segment.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * segment: Segment index.
|
||||
///
|
||||
/// # Returns
|
||||
/// c_int
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `int whisper_full_n_tokens(struct whisper_context * ctx, int i_segment)`
|
||||
#[inline]
|
||||
pub fn full_n_tokens(&self, segment: c_int) -> Result<c_int, WhisperError> {
|
||||
Ok(unsafe { whisper_rs_sys::whisper_full_n_tokens_from_state(self.ptr, segment) })
|
||||
}
|
||||
|
||||
/// Get the token text of the specified token in the specified segment.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * segment: Segment index.
|
||||
/// * token: Token index.
|
||||
///
|
||||
/// # Returns
|
||||
/// Ok(String) on success, Err(WhisperError) on failure.
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `const char * whisper_full_get_token_text(struct whisper_context * ctx, int i_segment, int i_token)`
|
||||
pub fn full_get_token_text(
|
||||
&self,
|
||||
segment: c_int,
|
||||
token: c_int,
|
||||
) -> Result<String, WhisperError> {
|
||||
let ret = unsafe {
|
||||
whisper_rs_sys::whisper_full_get_token_text_from_state(
|
||||
self.ctx, self.ptr, segment, token,
|
||||
)
|
||||
};
|
||||
if ret.is_null() {
|
||||
return Err(WhisperError::NullPointer);
|
||||
}
|
||||
let c_str = unsafe { CStr::from_ptr(ret) };
|
||||
let r_str = c_str.to_str()?;
|
||||
Ok(r_str.to_string())
|
||||
}
|
||||
|
||||
/// Get the token ID of the specified token in the specified segment.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * segment: Segment index.
|
||||
/// * token: Token index.
|
||||
///
|
||||
/// # Returns
|
||||
/// [crate::WhisperToken]
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `whisper_token whisper_full_get_token_id (struct whisper_context * ctx, int i_segment, int i_token)`
|
||||
pub fn full_get_token_id(
|
||||
&self,
|
||||
segment: c_int,
|
||||
token: c_int,
|
||||
) -> Result<WhisperToken, WhisperError> {
|
||||
Ok(unsafe {
|
||||
whisper_rs_sys::whisper_full_get_token_id_from_state(self.ptr, segment, token)
|
||||
})
|
||||
}
|
||||
|
||||
/// Get token data for the specified token in the specified segment.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * segment: Segment index.
|
||||
/// * token: Token index.
|
||||
///
|
||||
/// # Returns
|
||||
/// [crate::WhisperTokenData]
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `whisper_token_data whisper_full_get_token_data(struct whisper_context * ctx, int i_segment, int i_token)`
|
||||
#[inline]
|
||||
pub fn full_get_token_data(
|
||||
&self,
|
||||
segment: c_int,
|
||||
token: c_int,
|
||||
) -> Result<WhisperTokenData, WhisperError> {
|
||||
Ok(unsafe {
|
||||
whisper_rs_sys::whisper_full_get_token_data_from_state(self.ptr, segment, token)
|
||||
})
|
||||
}
|
||||
|
||||
/// Get the probability of the specified token in the specified segment.
|
||||
///
|
||||
/// # Arguments
|
||||
/// * segment: Segment index.
|
||||
/// * token: Token index.
|
||||
///
|
||||
/// # Returns
|
||||
/// f32
|
||||
///
|
||||
/// # C++ equivalent
|
||||
/// `float whisper_full_get_token_p(struct whisper_context * ctx, int i_segment, int i_token)`
|
||||
#[inline]
|
||||
pub fn full_get_token_prob(&self, segment: c_int, token: c_int) -> Result<f32, WhisperError> {
|
||||
Ok(
|
||||
unsafe {
|
||||
whisper_rs_sys::whisper_full_get_token_p_from_state(self.ptr, segment, token)
|
||||
},
|
||||
)
|
||||
}
|
||||
}
|
||||
|
|
|
|||
Loading…
Add table
Add a link
Reference in a new issue