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	* Update `esp32-hal` examples * Update `esp32c2-hal` examples * Update `esp32c3-hal` examples * Update `esp32c6-hal` examples * Update `esp32h2-hal` examples * Update `esp32s2-hal` examples * Update `esp32s3-hal` examples * Fix the `ram.rs` examples
		
			
				
	
	
		
			63 lines
		
	
	
		
			1.5 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
			
		
		
	
	
			63 lines
		
	
	
		
			1.5 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
//! Demonstrates generating pulse sequences with RMT
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//! Connect a logic analyzer to GPIO1 to see the generated pulses.
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#![no_std]
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#![no_main]
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use esp32h2_hal::{
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    clock::ClockControl,
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    gpio::IO,
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    peripherals::Peripherals,
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    prelude::*,
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    rmt::{PulseCode, TxChannel, TxChannelConfig, TxChannelCreator},
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    Delay,
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    Rmt,
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};
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use esp_backtrace as _;
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#[entry]
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fn main() -> ! {
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    let peripherals = Peripherals::take();
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    let system = peripherals.PCR.split();
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    let mut clock_control = system.peripheral_clock_control;
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    let clocks = ClockControl::boot_defaults(system.clock_control).freeze();
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    let io = IO::new(peripherals.GPIO, peripherals.IO_MUX);
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    let rmt = Rmt::new(peripherals.RMT, 8u32.MHz(), &mut clock_control, &clocks).unwrap();
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    let mut channel = rmt
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        .channel0
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        .configure(
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            io.pins.gpio1,
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            TxChannelConfig {
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                clk_divider: 255,
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                ..TxChannelConfig::default()
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            },
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        )
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        .unwrap();
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    let mut delay = Delay::new(&clocks);
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    let mut data = [PulseCode {
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        level1: true,
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        length1: 200,
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        level2: false,
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        length2: 50,
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    }; 20];
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    data[data.len() - 2] = PulseCode {
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        level1: true,
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        length1: 3000,
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        level2: false,
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        length2: 500,
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    };
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    data[data.len() - 1] = PulseCode::default();
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    loop {
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        let transaction = channel.transmit(&data);
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        channel = transaction.wait().unwrap();
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        delay.delay_ms(500u32);
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    }
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}
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