use core::marker::PhantomData;
use crate::analog::adc::{
AdcCalEfuse,
AdcCalScheme,
AdcCalSource,
AdcConfig,
Attenuation,
CalibrationAccess,
};
#[derive(Clone, Copy)]
pub struct AdcCalBasic<ADCX> {
cal_val: u16,
#[cfg(esp32c5)]
chan_compens: i32,
_phantom: PhantomData<ADCX>,
}
impl<ADCX> crate::private::Sealed for AdcCalBasic<ADCX> {}
impl<ADCX> AdcCalScheme<ADCX> for AdcCalBasic<ADCX>
where
ADCX: AdcCalEfuse + CalibrationAccess,
{
fn new_cal(atten: Attenuation) -> Self {
let cal_val = ADCX::init_code(atten).unwrap_or_else(|| {
AdcConfig::<ADCX>::adc_calibrate(atten, AdcCalSource::Gnd)
});
#[cfg(esp32c5)]
let chan_compens = ADCX::cal_chan_compens(atten, ADCX::ADC_CAL_CHANNEL).unwrap_or(0);
Self {
cal_val,
#[cfg(esp32c5)]
chan_compens,
_phantom: PhantomData,
}
}
fn adc_cal(&self) -> u16 {
self.cal_val
}
#[cfg(esp32c5)]
fn adc_val(&self, val: u16) -> u16 {
val.saturating_sub(self.chan_compens as u16)
.clamp(0, ADCX::ADC_VAL_MASK)
}
}