esp-hal/esp32h2-hal/examples/embassy_i2s_read.rs

112 lines
2.9 KiB
Rust

//! This shows how to continuously receive data via I2S
//!
//! Pins used
//! MCLK GPIO4
//! BCLK GPIO1
//! WS GPIO2
//! DIN GPIO5
//!
//! Without an additional I2S source device you can connect 3V3 or GND to DIN to
//! read 0 or 0xFF or connect DIN to WS to read two different values
//!
//! You can also inspect the MCLK, BCLK and WS with a logic analyzer
#![no_std]
#![no_main]
#![feature(type_alias_impl_trait)]
use embassy_executor::Spawner;
use esp32h2_hal::{
clock::ClockControl,
dma::DmaPriority,
embassy,
gdma::Gdma,
i2s::{asynch::*, DataFormat, I2s, I2s0New, MclkPin, PinsBclkWsDin, Standard},
peripherals::Peripherals,
prelude::*,
IO,
};
use esp_backtrace as _;
use esp_println::println;
#[main]
async fn main(_spawner: Spawner) -> ! {
#[cfg(feature = "log")]
esp_println::logger::init_logger_from_env();
println!("Init!");
let peripherals = Peripherals::take();
let system = peripherals.SYSTEM.split();
let clocks = ClockControl::boot_defaults(system.clock_control).freeze();
#[cfg(feature = "embassy-time-systick")]
embassy::init(
&clocks,
esp32h2_hal::systimer::SystemTimer::new(peripherals.SYSTIMER),
);
#[cfg(feature = "embassy-time-timg0")]
embassy::init(
&clocks,
esp32h2_hal::timer::TimerGroup::new(peripherals.TIMG0, &clocks).timer0,
);
let io = IO::new(peripherals.GPIO, peripherals.IO_MUX);
let dma = Gdma::new(peripherals.DMA);
let dma_channel = dma.channel0;
let mut tx_descriptors = [0u32; 20 * 3];
let mut rx_descriptors = [0u32; 8 * 3];
let i2s = I2s::new(
peripherals.I2S0,
MclkPin::new(io.pins.gpio4),
Standard::Philips,
DataFormat::Data16Channel16,
44100u32.Hz(),
dma_channel.configure(
false,
&mut tx_descriptors,
&mut rx_descriptors,
DmaPriority::Priority0,
),
&clocks,
);
let i2s_rx = i2s.i2s_rx.with_pins(PinsBclkWsDin::new(
io.pins.gpio1,
io.pins.gpio2,
io.pins.gpio3,
));
// you need to manually enable the DMA channel's interrupt!
esp32h2_hal::interrupt::enable(
esp32h2_hal::peripherals::Interrupt::DMA_IN_CH0,
esp32h2_hal::interrupt::Priority::Priority1,
)
.unwrap();
let buffer = dma_buffer();
println!("Start");
let mut data = [0u8; 5000];
let mut transaction = i2s_rx.read_dma_circular_async(buffer).unwrap();
loop {
let avail = transaction.available().await;
println!("available {}", avail);
let count = transaction.pop(&mut data).await.unwrap();
println!(
"got {} bytes, {:x?}..{:x?}",
count,
&data[..10],
&data[count - 10..count]
);
}
}
fn dma_buffer() -> &'static mut [u8; 4092 * 4] {
static mut BUFFER: [u8; 4092 * 4] = [0u8; 4092 * 4];
unsafe { &mut BUFFER }
}