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extern crate codec2_sys as ffi;
pub enum Modes {
Mode3200 = ffi::CODEC2_MODE_3200 as isize,
Mode2400 = ffi::CODEC2_MODE_2400 as isize,
Mode1600 = ffi::CODEC2_MODE_1600 as isize,
Mode1400 = ffi::CODEC2_MODE_1400 as isize,
Mode1300 = ffi::CODEC2_MODE_1300 as isize,
Mode1200 = ffi::CODEC2_MODE_1200 as isize,
Mode700C = ffi::CODEC2_MODE_700C as isize,
Mode450 = ffi::CODEC2_MODE_450 as isize,
}
pub struct Codec2(*mut ffi::CODEC2);
impl Codec2 {
pub fn new(mode: Modes) -> Self {
let c = unsafe { ffi::codec2_create(mode as i32) };
if c.is_null() {
panic!("error")
}
Codec2(c)
}
pub fn destroy(&self) {
unsafe { ffi::codec2_destroy(self.0) }
}
pub fn samples_per_frame(&self) -> usize {
unsafe { ffi::codec2_samples_per_frame(self.0).try_into().unwrap() }
}
pub fn bytes_per_frame(&self) -> usize {
unsafe { ffi::codec2_bytes_per_frame(self.0).try_into().unwrap() }
}
/// Encode an array of speech samples into an array of bits
pub fn encode(&self, speech: &[i16], bits: &mut [u8]) {
let nsamples = self.samples_per_frame();
let nbits = self.bytes_per_frame();
if speech.len() != nsamples {
panic!(
"Samples buffer must be of length {}, got {}",
nsamples,
speech.len()
);
}
if bits.len() != nbits {
panic!(
"Bits buffer must be of length {}, got {}",
nbits,
bits.len()
);
}
unsafe {
ffi::codec2_encode(self.0, bits.as_ptr() as *mut _, speech.as_ptr() as *mut _);
}
}
}
impl Drop for Codec2 {
fn drop(&mut self) {
self.destroy();
}
}
#[cfg(test)]
mod tests {
use super::{Codec2, Modes};
#[test]
fn test_codec2() {
let c = Codec2::new(Modes::Mode1400);
assert_eq!(c.bytes_per_frame(), 7);
assert_eq!(c.samples_per_frame(), 320);
}
}
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