mirror of
https://github.com/embassy-rs/embassy.git
synced 2024-11-21 22:32:29 +00:00
commit
8ac5c1a963
3
ci.sh
3
ci.sh
@ -201,6 +201,9 @@ cargo batch \
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$BUILD_EXTRA
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rm out/tests/stm32wb55rg/wpan_mac
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rm out/tests/stm32wb55rg/wpan_ble
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if [[ -z "${TELEPROBE_TOKEN-}" ]]; then
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echo No teleprobe token found, skipping running HIL tests
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@ -59,7 +59,7 @@ sdio-host = "0.5.0"
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embedded-sdmmc = { git = "https://github.com/embassy-rs/embedded-sdmmc-rs", rev = "a4f293d3a6f72158385f79c98634cb8a14d0d2fc", optional = true }
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critical-section = "1.1"
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atomic-polyfill = "1.0.1"
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stm32-metapac = { git = "https://github.com/embassy-rs/stm32-data-generated", tag = "stm32-data-8ee2862086886cd8ebaf5fd5e3bd6cfbe5baa840" }
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stm32-metapac = { git = "https://github.com/embassy-rs/stm32-data-generated", tag = "stm32-data-06d13dfd245cc9bf86fd88c35b401bdb84c079c4" }
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vcell = "0.1.3"
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bxcan = "0.7.0"
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nb = "1.0.0"
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@ -78,7 +78,7 @@ critical-section = { version = "1.1", features = ["std"] }
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[build-dependencies]
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proc-macro2 = "1.0.36"
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quote = "1.0.15"
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stm32-metapac = { git = "https://github.com/embassy-rs/stm32-data-generated", tag = "stm32-data-8ee2862086886cd8ebaf5fd5e3bd6cfbe5baa840", default-features = false, features = ["metadata"]}
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stm32-metapac = { git = "https://github.com/embassy-rs/stm32-data-generated", tag = "stm32-data-06d13dfd245cc9bf86fd88c35b401bdb84c079c4", default-features = false, features = ["metadata"]}
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[features]
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@ -810,6 +810,20 @@ fn main() {
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}
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}
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if regs.kind == "opamp" {
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if !pin.signal.starts_with("VP") {
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continue;
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}
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let peri = format_ident!("{}", p.name);
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let pin_name = format_ident!("{}", pin.pin);
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let ch: u8 = pin.signal.strip_prefix("VP").unwrap().parse().unwrap();
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g.extend(quote! {
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impl_opamp_pin!( #peri, #pin_name, #ch);
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})
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}
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// DAC is special
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if regs.kind == "dac" {
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let peri = format_ident!("{}", p.name);
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@ -49,6 +49,8 @@ pub mod i2s;
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pub mod ipcc;
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#[cfg(feature = "low-power")]
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pub mod low_power;
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#[cfg(opamp)]
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pub mod opamp;
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#[cfg(quadspi)]
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pub mod qspi;
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#[cfg(rng)]
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133
embassy-stm32/src/opamp.rs
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133
embassy-stm32/src/opamp.rs
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@ -0,0 +1,133 @@
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#![macro_use]
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use embassy_hal_internal::{into_ref, PeripheralRef};
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use crate::Peripheral;
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#[cfg(opamp_f3)]
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pub struct OpAmpOutput<'d, 'p, T: Instance, P: NonInvertingPin<T>> {
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_inner: &'d OpAmp<'d, T>,
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_input: &'p mut P,
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}
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pub struct OpAmp<'d, T: Instance> {
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_inner: PeripheralRef<'d, T>,
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}
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impl<'d, T: Instance> OpAmp<'d, T> {
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pub fn new(opamp: impl Peripheral<P = T> + 'd) -> Self {
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Self::new_inner(opamp)
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}
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fn new_inner(opamp: impl Peripheral<P = T> + 'd) -> Self {
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into_ref!(opamp);
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#[cfg(opamp_f3)]
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T::regs().opampcsr().modify(|w| {
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w.set_opampen(true);
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});
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#[cfg(opamp_g4)]
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T::regs().opamp_csr().modify(|w| {
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w.set_opaen(true);
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});
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Self { _inner: opamp }
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}
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#[cfg(opamp_f3)]
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pub fn buffer_for<'a, 'b, P>(&'a mut self, pin: &'b mut P) -> OpAmpOutput<'a, 'b, T, P>
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where
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P: NonInvertingPin<T>,
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{
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#[cfg(opamp_f3)]
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T::regs().opampcsr().modify(|w| {
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w.set_vp_sel(pin.channel());
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});
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OpAmpOutput {
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_inner: self,
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_input: pin,
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}
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}
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}
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pub trait Instance: sealed::Instance + 'static {}
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pub(crate) mod sealed {
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pub trait Instance {
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fn regs() -> crate::pac::opamp::Opamp;
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}
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pub trait NonInvertingPin<T: Instance> {
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fn channel(&self) -> u8;
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}
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pub trait InvertingPin<T: Instance> {
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fn channel(&self) -> u8;
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}
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}
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pub trait NonInvertingPin<T: Instance>: sealed::NonInvertingPin<T> {}
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pub trait InvertingPin<T: Instance>: sealed::InvertingPin<T> {}
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#[cfg(opamp_f3)]
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macro_rules! impl_opamp_output {
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($inst:ident, $adc:ident, $ch:expr) => {
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impl<'d, 'p, P: NonInvertingPin<crate::peripherals::$inst>> crate::adc::sealed::AdcPin<crate::peripherals::$adc>
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for OpAmpOutput<'d, 'p, crate::peripherals::$inst, P>
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{
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fn channel(&self) -> u8 {
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$ch
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}
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}
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impl<'d, 'p, P: NonInvertingPin<crate::peripherals::$inst>> crate::adc::AdcPin<crate::peripherals::$adc>
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for OpAmpOutput<'d, 'p, crate::peripherals::$inst, P>
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{
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}
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};
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}
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#[cfg(opamp_f3)]
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foreach_peripheral!(
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(opamp, OPAMP1) => {
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impl_opamp_output!(OPAMP1, ADC1, 3);
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};
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(opamp, OPAMP2) => {
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impl_opamp_output!(OPAMP2, ADC2, 3);
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};
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(opamp, OPAMP3) => {
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impl_opamp_output!(OPAMP3, ADC3, 1);
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};
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(opamp, OPAMP4) => {
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impl_opamp_output!(OPAMP4, ADC4, 3);
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};
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);
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foreach_peripheral! {
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(opamp, $inst:ident) => {
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impl sealed::Instance for crate::peripherals::$inst {
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fn regs() -> crate::pac::opamp::Opamp {
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crate::pac::$inst
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}
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}
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impl Instance for crate::peripherals::$inst {
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}
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};
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}
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#[allow(unused_macros)]
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macro_rules! impl_opamp_pin {
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($inst:ident, $pin:ident, $ch:expr) => {
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impl crate::opamp::NonInvertingPin<peripherals::$inst> for crate::peripherals::$pin {}
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impl crate::opamp::sealed::NonInvertingPin<peripherals::$inst> for crate::peripherals::$pin {
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fn channel(&self) -> u8 {
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$ch
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}
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}
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};
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}
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59
examples/stm32f334/src/bin/opamp.rs
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59
examples/stm32f334/src/bin/opamp.rs
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@ -0,0 +1,59 @@
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#![no_std]
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#![no_main]
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#![feature(type_alias_impl_trait)]
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use defmt::info;
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use embassy_executor::Spawner;
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use embassy_stm32::adc::{Adc, SampleTime};
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use embassy_stm32::opamp::OpAmp;
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use embassy_stm32::peripherals::ADC2;
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use embassy_stm32::rcc::AdcClockSource;
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use embassy_stm32::time::mhz;
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use embassy_stm32::{adc, bind_interrupts, Config};
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use embassy_time::{Delay, Duration, Timer};
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use {defmt_rtt as _, panic_probe as _};
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bind_interrupts!(struct Irqs {
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ADC1_2 => adc::InterruptHandler<ADC2>;
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});
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#[embassy_executor::main]
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async fn main(_spawner: Spawner) -> ! {
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let mut config = Config::default();
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config.rcc.sysclk = Some(mhz(64));
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config.rcc.hclk = Some(mhz(64));
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config.rcc.pclk1 = Some(mhz(32));
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config.rcc.pclk2 = Some(mhz(64));
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config.rcc.adc = Some(AdcClockSource::PllDiv1);
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let mut p = embassy_stm32::init(config);
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info!("create adc...");
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let mut adc = Adc::new(p.ADC2, Irqs, &mut Delay);
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let mut opamp = OpAmp::new(p.OPAMP2);
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adc.set_sample_time(SampleTime::Cycles601_5);
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info!("enable vrefint...");
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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_for(&mut p.PA7);
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loop {
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let vref = adc.read(&mut vrefint).await;
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info!("read vref: {} (should be {})", vref, vrefint.value());
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let temp = adc.read(&mut temperature).await;
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info!("read temperature: {}", temp);
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let buffer = adc.read(&mut buffer).await;
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info!("read buffer: {}", buffer);
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let pin_mv = (buffer as u32 * vrefint.value() as u32 / vref as u32) * 3300 / 4095;
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info!("computed pin mv: {}", pin_mv);
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Timer::after(Duration::from_millis(500)).await;
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}
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}
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