mirror of
https://github.com/esp-rs/esp-hal.git
synced 2025-10-01 06:11:03 +00:00
125 lines
3.7 KiB
Rust
125 lines
3.7 KiB
Rust
//! Reproduction and regression test for a sneaky issue.
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//% CHIPS: esp32 esp32s2 esp32s3
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//% FEATURES: integrated-timers
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//% FEATURES: generic-queue
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#![no_std]
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#![no_main]
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use embassy_time::{Duration, Instant, Ticker};
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use esp_hal::{
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dma::{Dma, DmaPriority, DmaRxBuf, DmaTxBuf},
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dma_buffers,
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interrupt::{software::SoftwareInterruptControl, Priority},
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peripherals::SPI3,
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prelude::*,
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spi::{
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master::{Spi, SpiDma},
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FullDuplexMode,
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SpiMode,
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},
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timer::{timg::TimerGroup, AnyTimer},
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Async,
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};
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use esp_hal_embassy::InterruptExecutor;
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use hil_test as _;
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cfg_if::cfg_if! {
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if #[cfg(any(
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feature = "esp32",
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feature = "esp32s2",
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))] {
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use esp_hal::dma::Spi3DmaChannel as DmaChannel1;
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} else {
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use esp_hal::dma::DmaChannel1;
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}
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}
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macro_rules! mk_static {
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($t:ty,$val:expr) => {{
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static STATIC_CELL: static_cell::StaticCell<$t> = static_cell::StaticCell::new();
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#[deny(unused_attributes)]
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let x = STATIC_CELL.uninit().write(($val));
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x
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}};
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}
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#[embassy_executor::task]
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async fn interrupt_driven_task(spi: SpiDma<'static, SPI3, DmaChannel1, FullDuplexMode, Async>) {
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let mut ticker = Ticker::every(Duration::from_millis(1));
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let (rx_buffer, rx_descriptors, tx_buffer, tx_descriptors) = dma_buffers!(128);
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let dma_rx_buf = DmaRxBuf::new(rx_descriptors, rx_buffer).unwrap();
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let dma_tx_buf = DmaTxBuf::new(tx_descriptors, tx_buffer).unwrap();
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let mut spi = spi.with_buffers(dma_rx_buf, dma_tx_buf);
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loop {
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let mut buffer: [u8; 8] = [0; 8];
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spi.transfer_in_place_async(&mut buffer).await.unwrap();
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ticker.next().await;
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}
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}
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#[cfg(test)]
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#[embedded_test::tests(executor = esp_hal_embassy::Executor::new())]
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mod test {
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use super::*;
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#[test]
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#[timeout(3)]
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async fn run_interrupt_executor_test() {
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let peripherals = esp_hal::init(esp_hal::Config::default());
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let timg0 = TimerGroup::new(peripherals.TIMG0);
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esp_hal_embassy::init([AnyTimer::from(timg0.timer0), AnyTimer::from(timg0.timer1)]);
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let dma = Dma::new(peripherals.DMA);
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cfg_if::cfg_if! {
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if #[cfg(any(feature = "esp32", feature = "esp32s2"))] {
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let dma_channel1 = dma.spi2channel;
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let dma_channel2 = dma.spi3channel;
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} else {
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let dma_channel1 = dma.channel0;
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let dma_channel2 = dma.channel1;
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}
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}
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let (rx_buffer, rx_descriptors, tx_buffer, tx_descriptors) = dma_buffers!(1024);
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let dma_rx_buf = DmaRxBuf::new(rx_descriptors, rx_buffer).unwrap();
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let dma_tx_buf = DmaTxBuf::new(tx_descriptors, tx_buffer).unwrap();
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let mut spi = Spi::new(peripherals.SPI2, 100.kHz(), SpiMode::Mode0)
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.with_dma(dma_channel1.configure_for_async(false, DmaPriority::Priority0))
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.with_buffers(dma_rx_buf, dma_tx_buf);
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let spi2 = Spi::new(peripherals.SPI3, 100.kHz(), SpiMode::Mode0)
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.with_dma(dma_channel2.configure_for_async(false, DmaPriority::Priority0));
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let sw_ints = SoftwareInterruptControl::new(peripherals.SW_INTERRUPT);
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let interrupt_executor = mk_static!(
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InterruptExecutor<1>,
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InterruptExecutor::new(sw_ints.software_interrupt1)
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);
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let spawner = interrupt_executor.start(Priority::Priority3);
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spawner.spawn(interrupt_driven_task(spi2)).unwrap();
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let start = Instant::now();
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let mut buffer: [u8; 1024] = [0; 1024];
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loop {
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spi.transfer_in_place_async(&mut buffer).await.unwrap();
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if start.elapsed() > Duration::from_secs(1) {
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break;
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}
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}
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}
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}
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