#![no_std] #![no_main] #![feature(type_alias_impl_trait)] #[path = "../example_common.rs"] mod example_common; use defmt::assert_eq; use embassy_executor::Spawner; use embassy_stm32::dma::NoDma; use embassy_stm32::spi::{self, Spi}; use embassy_stm32::time::Hertz; use example_common::*; #[embassy_executor::main] async fn main(_spawner: Spawner) { let p = embassy_stm32::init(config()); info!("Hello World!"); #[cfg(feature = "stm32f103c8")] let (sck, mosi, miso) = (p.PA5, p.PA7, p.PA6); #[cfg(feature = "stm32f429zi")] let (sck, mosi, miso) = (p.PA5, p.PA7, p.PA6); #[cfg(feature = "stm32h755zi")] let (sck, mosi, miso) = (p.PA5, p.PB5, p.PA6); #[cfg(feature = "stm32g491re")] let (sck, mosi, miso) = (p.PA5, p.PA7, p.PA6); #[cfg(feature = "stm32g071rb")] let (sck, mosi, miso) = (p.PA5, p.PA7, p.PA6); #[cfg(feature = "stm32wb55rg")] let (sck, mosi, miso) = (p.PA5, p.PA7, p.PA6); #[cfg(feature = "stm32u585ai")] let (sck, mosi, miso) = (p.PE13, p.PE15, p.PE14); let mut spi = Spi::new( p.SPI1, sck, // Arduino D13 mosi, // Arduino D11 miso, // Arduino D12 NoDma, NoDma, Hertz(1_000_000), spi::Config::default(), ); let data: [u8; 9] = [0x00, 0xFF, 0xAA, 0x55, 0xC0, 0xFF, 0xEE, 0xC0, 0xDE]; // Arduino pins D11 and D12 (MOSI-MISO) are connected together with a 1K resistor. // so we should get the data we sent back. let mut buf = data; spi.blocking_transfer(&mut buf, &data).unwrap(); assert_eq!(buf, data); spi.blocking_transfer_in_place(&mut buf).unwrap(); assert_eq!(buf, data); // Check read/write don't hang. We can't check they transfer the right data // without fancier test mechanisms. spi.blocking_write(&buf).unwrap(); spi.blocking_read(&mut buf).unwrap(); spi.blocking_write(&buf).unwrap(); spi.blocking_read(&mut buf).unwrap(); spi.blocking_write(&buf).unwrap(); // Check transfer doesn't break after having done a write, due to garbage in the FIFO spi.blocking_transfer(&mut buf, &data).unwrap(); assert_eq!(buf, data); // Check zero-length operations, these should be noops. spi.blocking_transfer::(&mut [], &[]).unwrap(); spi.blocking_transfer_in_place::(&mut []).unwrap(); spi.blocking_read::(&mut []).unwrap(); spi.blocking_write::(&[]).unwrap(); info!("Test OK"); cortex_m::asm::bkpt(); }