adc.rs 1.5 KB

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  1. #![deny(unsafe_code)]
  2. #![no_main]
  3. #![no_std]
  4. use panic_semihosting as _;
  5. use cortex_m_rt::entry;
  6. use stm32f1xx_hal::{adc, pac, prelude::*};
  7. use cortex_m_semihosting::hprintln;
  8. #[entry]
  9. fn main() -> ! {
  10. // Acquire peripherals
  11. let p = pac::Peripherals::take().unwrap();
  12. let mut flash = p.FLASH.constrain();
  13. let mut rcc = p.RCC.constrain();
  14. // Configure ADC clocks
  15. // Default value is the slowest possible ADC clock: PCLK2 / 8. Meanwhile ADC
  16. // clock is configurable. So its frequency may be tweaked to meet certain
  17. // practical needs. User specified value is be approximated using supported
  18. // prescaler values 2/4/6/8.
  19. let clocks = rcc.cfgr.adcclk(2.mhz()).freeze(&mut flash.acr);
  20. hprintln!("adc freq: {}", clocks.adcclk().0).unwrap();
  21. // Setup ADC
  22. let mut adc1 = adc::Adc::adc1(p.ADC1, &mut rcc.apb2, clocks);
  23. #[cfg(feature = "stm32f103")]
  24. let mut adc2 = adc::Adc::adc2(p.ADC2, &mut rcc.apb2, clocks);
  25. // Setup GPIOB
  26. let mut gpiob = p.GPIOB.split(&mut rcc.apb2);
  27. // Configure pb0, pb1 as an analog input
  28. let mut ch0 = gpiob.pb0.into_analog(&mut gpiob.crl);
  29. #[cfg(feature = "stm32f103")]
  30. let mut ch1 = gpiob.pb1.into_analog(&mut gpiob.crl);
  31. loop {
  32. let data: u16 = adc1.read(&mut ch0).unwrap();
  33. hprintln!("adc1: {}", data).unwrap();
  34. #[cfg(feature = "stm32f103")]
  35. {
  36. let data1: u16 = adc2.read(&mut ch1).unwrap();
  37. hprintln!("adc2: {}", data1).unwrap();
  38. }
  39. }
  40. }