Remove workaround for adc v3
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f65a96c541
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@ -74,9 +74,9 @@ pub(crate) mod sealed {
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}
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}
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#[cfg(not(any(adc_f1, adc_v1, adc_v2, adc_v4, adc_f3)))]
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#[cfg(not(any(adc_f1, adc_v1, adc_v2, adc_v3, adc_v4, adc_f3, adc_g0)))]
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pub trait Instance: sealed::Instance + crate::Peripheral<P = Self> {}
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#[cfg(any(adc_f1, adc_v1, adc_v2, adc_v4, adc_f3))]
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#[cfg(any(adc_f1, adc_v1, adc_v2, adc_v3, adc_v4, adc_f3, adc_g0))]
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pub trait Instance: sealed::Instance + crate::Peripheral<P = Self> + crate::rcc::RccPeripheral {}
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pub trait AdcPin<T: Instance>: sealed::AdcPin<T> {}
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@ -9,19 +9,6 @@ pub const VREF_DEFAULT_MV: u32 = 3300;
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/// VREF voltage used for factory calibration of VREFINTCAL register.
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pub const VREF_CALIB_MV: u32 = 3000;
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/// Sadly we cannot use `RccPeripheral::enable` since devices are quite inconsistent ADC clock
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/// configuration.
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fn enable() {
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critical_section::with(|_| {
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#[cfg(any(stm32h7, stm32wl))]
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crate::pac::RCC.apb2enr().modify(|w| w.set_adcen(true));
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#[cfg(stm32g0)]
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crate::pac::RCC.apbenr2().modify(|w| w.set_adcen(true));
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#[cfg(any(stm32l4, stm32l5, stm32wb))]
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crate::pac::RCC.ahb2enr().modify(|w| w.set_adcen(true));
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});
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}
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pub struct VrefInt;
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impl<T: Instance> AdcPin<T> for VrefInt {}
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impl<T: Instance> super::sealed::AdcPin<T> for VrefInt {
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@ -61,7 +48,7 @@ impl<T: Instance> super::sealed::AdcPin<T> for Vbat {
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impl<'d, T: Instance> Adc<'d, T> {
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pub fn new(adc: impl Peripheral<P = T> + 'd, delay: &mut impl DelayUs<u32>) -> Self {
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into_ref!(adc);
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enable();
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T::reset_and_enable();
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T::regs().cr().modify(|reg| {
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#[cfg(not(adc_g0))]
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reg.set_deeppwd(false);
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