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STM32 opamp: use impl Peripheral instead of directly taking pins
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2386619f1f
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@ -31,12 +31,9 @@ impl From<OpAmpSpeed> for crate::pac::opamp::vals::OpampCsrOpahsm {
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/// OpAmp external outputs, wired to a GPIO pad.
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///
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/// The GPIO output pad is held by this struct to ensure it cannot be used elsewhere.
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///
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/// This struct can also be used as an ADC input.
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pub struct OpAmpOutput<'d, 'p, T: Instance, P: OutputPin<T>> {
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pub struct OpAmpOutput<'d, T: Instance> {
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_inner: &'d OpAmp<'d, T>,
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_output: &'p mut P,
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}
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/// OpAmp internal outputs, wired directly to ADC inputs.
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@ -76,16 +73,14 @@ impl<'d, T: Instance> OpAmp<'d, T> {
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/// preventing it being used elsewhere. The `OpAmpOutput` can then be
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/// directly used as an ADC input. The opamp will be disabled when the
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/// [`OpAmpOutput`] is dropped.
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pub fn buffer_ext<'a, 'b, IP, OP>(
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&'a mut self,
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in_pin: &IP,
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out_pin: &'b mut OP,
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pub fn buffer_ext(
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&'d mut self,
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in_pin: impl Peripheral<P = impl NonInvertingPin<T> + crate::gpio::sealed::Pin>,
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out_pin: impl Peripheral<P = impl OutputPin<T> + crate::gpio::sealed::Pin> + 'd,
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gain: OpAmpGain,
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) -> OpAmpOutput<'a, 'b, T, OP>
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where
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IP: NonInvertingPin<T> + crate::gpio::sealed::Pin,
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OP: OutputPin<T> + crate::gpio::sealed::Pin,
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{
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) -> OpAmpOutput<'d, T> {
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into_ref!(in_pin);
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into_ref!(out_pin);
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in_pin.set_as_analog();
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out_pin.set_as_analog();
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@ -116,10 +111,7 @@ impl<'d, T: Instance> OpAmp<'d, T> {
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w.set_opaen(true);
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});
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OpAmpOutput {
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_inner: self,
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_output: out_pin,
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}
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OpAmpOutput { _inner: self }
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}
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/// Configure the OpAmp as a buffer for the provided input pin,
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@ -131,10 +123,12 @@ impl<'d, T: Instance> OpAmp<'d, T> {
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/// The returned `OpAmpInternalOutput` struct may be used as an ADC input.
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/// The opamp output will be disabled when it is dropped.
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#[cfg(opamp_g4)]
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pub fn buffer_int<'a, P>(&'a mut self, pin: &P, gain: OpAmpGain) -> OpAmpInternalOutput<'a, T>
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where
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P: NonInvertingPin<T> + crate::gpio::sealed::Pin,
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{
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pub fn buffer_int(
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&'d mut self,
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pin: impl Peripheral<P = impl NonInvertingPin<T> + crate::gpio::sealed::Pin>,
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gain: OpAmpGain,
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) -> OpAmpInternalOutput<'d, T> {
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into_ref!(pin);
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pin.set_as_analog();
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let (vm_sel, pga_gain) = match gain {
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@ -158,7 +152,7 @@ impl<'d, T: Instance> OpAmp<'d, T> {
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}
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}
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impl<'d, 'p, T: Instance, P: OutputPin<T>> Drop for OpAmpOutput<'d, 'p, T, P> {
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impl<'d, T: Instance> Drop for OpAmpOutput<'d, T> {
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fn drop(&mut self) {
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#[cfg(opamp_f3)]
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T::regs().opampcsr().modify(|w| {
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@ -212,16 +206,16 @@ macro_rules! impl_opamp_external_output {
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($inst:ident, $adc:ident, $ch:expr) => {
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foreach_adc!(
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($adc, $common_inst:ident, $adc_clock:ident) => {
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impl<'d, 'p, P: OutputPin<crate::peripherals::$inst>> crate::adc::sealed::AdcPin<crate::peripherals::$adc>
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for OpAmpOutput<'d, 'p, crate::peripherals::$inst, P>
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impl<'d> crate::adc::sealed::AdcPin<crate::peripherals::$adc>
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for OpAmpOutput<'d, crate::peripherals::$inst>
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{
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fn channel(&self) -> u8 {
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$ch
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}
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}
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impl<'d, 'p, P: OutputPin<crate::peripherals::$inst>> crate::adc::AdcPin<crate::peripherals::$adc>
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for OpAmpOutput<'d, 'p, crate::peripherals::$inst, P>
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impl<'d> crate::adc::AdcPin<crate::peripherals::$adc>
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for OpAmpOutput<'d, crate::peripherals::$inst>
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{
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}
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};
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@ -39,7 +39,7 @@ async fn main(_spawner: Spawner) -> ! {
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let mut vrefint = adc.enable_vref(&mut Delay);
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let mut temperature = adc.enable_temperature();
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let mut buffer = opamp.buffer_ext(&p.PA7, &mut p.PA6, OpAmpGain::Mul1);
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let mut buffer = opamp.buffer_ext(&mut p.PA7, &mut p.PA6, OpAmpGain::Mul1);
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loop {
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let vref = adc.read(&mut vrefint).await;
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