//! This shows using Parallel IO to input 4 bit parallel data at 1MHz clock //! rate. //! //! Uses GPIO 1, 2, 3 and 4 as the data pins. #![no_std] #![no_main] use esp32h2_hal::{ clock::ClockControl, dma::DmaPriority, dma_buffers, gdma::Gdma, gpio::IO, parl_io::{BitPackOrder, NoClkPin, ParlIoRxOnly, RxFourBits}, peripherals::Peripherals, prelude::*, Delay, }; use esp_backtrace as _; use esp_println::println; #[entry] fn main() -> ! { let peripherals = Peripherals::take(); let system = peripherals.SYSTEM.split(); let clocks = ClockControl::boot_defaults(system.clock_control).freeze(); let io = IO::new(peripherals.GPIO, peripherals.IO_MUX); let (_, mut tx_descriptors, rx_buffer, mut rx_descriptors) = dma_buffers!(0, 32000); let dma = Gdma::new(peripherals.DMA); let dma_channel = dma.channel0; let rx_pins = RxFourBits::new(io.pins.gpio1, io.pins.gpio2, io.pins.gpio3, io.pins.gpio4); let parl_io = ParlIoRxOnly::new( peripherals.PARL_IO, dma_channel.configure( false, &mut tx_descriptors, &mut rx_descriptors, DmaPriority::Priority0, ), 1u32.MHz(), &clocks, ) .unwrap(); let mut parl_io_rx = parl_io .rx .with_config(rx_pins, NoClkPin, BitPackOrder::Msb, Some(0xfff)) .unwrap(); let mut buffer = rx_buffer; buffer.fill(0u8); let mut delay = Delay::new(&clocks); loop { let transfer = parl_io_rx.read_dma(buffer).unwrap(); // the buffer and driver is moved into the transfer and we can get it back via // `wait` (buffer, parl_io_rx) = transfer.wait().unwrap(); println!("Received: {:02x?} ...", &buffer[..30]); delay.delay_ms(500u32); } }