PWM WS2812B example and per sequence config
Demonstrates how to set the colour of a WS2812B to blue using PWM, and the use of multiple sequences along with their own config. This required an API change.
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@ -8,7 +8,7 @@ use defmt::*;
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use embassy::executor::Spawner;
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use embassy::time::{Duration, Timer};
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use embassy_nrf::gpio::NoPin;
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use embassy_nrf::pwm::{Prescaler, SequenceConfig, SequenceMode, SequencePwm};
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use embassy_nrf::pwm::{Config, Prescaler, SequenceMode, SequencePwm};
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use embassy_nrf::Peripherals;
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#[embassy::main]
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@ -16,26 +16,39 @@ async fn main(_spawner: Spawner, p: Peripherals) {
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let seq_values_1: [u16; 5] = [1000, 250, 100, 50, 0];
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let seq_values_2: [u16; 5] = [0, 50, 100, 250, 1000];
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let mut config = SequenceConfig::default();
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let mut config = Config::default();
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config.prescaler = Prescaler::Div128;
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// 1 period is 1000 * (128/16mhz = 0.000008s = 0.008ms) = 8us
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// but say we want to hold the value for 5000ms
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// so we want to repeat our value as many times as necessary until 5000ms passes
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// want 5000/8 = 625 periods total to occur, so 624 (we get the one period for free remember)
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config.refresh = 624;
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let mut seq_config = Config::default();
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seq_config.refresh = 624;
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// thus our sequence takes 5 * 5000ms or 25 seconds
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let mut pwm = unwrap!(SequencePwm::new(
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p.PWM0, p.P0_13, NoPin, NoPin, NoPin, config,
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));
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let _ = pwm.start(&seq_values_1, SequenceMode::Infinite);
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let _ = pwm.start(
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&seq_values_1,
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seq_config,
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None,
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None,
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SeqSequenceMode::Infinite,
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);
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info!("pwm started!");
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Timer::after(Duration::from_millis(20000)).await;
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info!("pwm starting with another sequence!");
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let _ = pwm.start(&seq_values_2, SequenceMode::Infinite);
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let _ = pwm.start(
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&seq_values_2,
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seq_config,
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None,
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None,
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SequenceMode::Infinite,
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);
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// we can abort a sequence if we need to before its complete with pwm.stop()
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// or stop is also implicitly called when the pwm peripheral is dropped
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@ -11,26 +11,27 @@ use embassy::executor::Spawner;
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use embassy_nrf::gpio::{Input, NoPin, Pull};
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use embassy_nrf::gpiote::{InputChannel, InputChannelPolarity};
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use embassy_nrf::ppi::Ppi;
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use embassy_nrf::pwm::{Prescaler, SequenceConfig, SequenceMode, SequencePwm};
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use embassy_nrf::pwm::{Config, Prescaler, SequenceConfig, SequenceMode, SequencePwm};
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use embassy_nrf::Peripherals;
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#[embassy::main]
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async fn main(_spawner: Spawner, p: Peripherals) {
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let seq_values: [u16; 5] = [1000, 250, 100, 50, 0];
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let mut config = SequenceConfig::default();
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let mut config = Config::default();
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config.prescaler = Prescaler::Div128;
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// 1 period is 1000 * (128/16mhz = 0.000008s = 0.008ms) = 8us
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// but say we want to hold the value for 250ms 250ms/8 = 31.25 periods
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// so round to 31 - 1 (we get the one period for free remember)
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// thus our sequence takes 5 * 250ms or 1.25 seconds
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config.refresh = 30;
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let mut seq_config = SequenceConfig::default();
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seq_config.refresh = 30;
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let mut pwm = unwrap!(SequencePwm::new(
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p.PWM0, p.P0_13, NoPin, NoPin, NoPin, config,
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));
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let _ = pwm.start(&seq_values, SequenceMode::Times(1));
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let _ = pwm.start(&seq_values, seq_config, None, None, SequenceMode::Infinite);
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// pwm.stop() deconfigures pins, and then the task_start_seq0 task cant work
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// so its going to have to start running in order load the configuration
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60
examples/nrf/src/bin/pwm_sequence_ws2812b.rs
Normal file
60
examples/nrf/src/bin/pwm_sequence_ws2812b.rs
Normal file
@ -0,0 +1,60 @@
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#![no_std]
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#![no_main]
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#![feature(type_alias_impl_trait)]
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#[path = "../example_common.rs"]
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mod example_common;
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use defmt::*;
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use embassy::executor::Spawner;
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use embassy::time::{Duration, Timer};
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use embassy_nrf::gpio::NoPin;
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use embassy_nrf::pwm::{
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Config, Prescaler, SequenceConfig, SequenceLoad, SequenceMode, SequencePwm,
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};
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use embassy_nrf::Peripherals;
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// WS2812B LED light demonstration. Drives just one light.
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// The following reference on WS2812B may be of use:
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// https://cdn-shop.adafruit.com/datasheets/WS2812B.pdf
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// In the following declarations, setting the high bit tells the PWM
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// to reverse polarity, which is what the WS2812B expects.
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const T1H: u16 = 0x8000 | 13; // Duty = 13/20 ticks (0.8us/1.25us) for a 1
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const T0H: u16 = 0x8000 | 7; // Duty 7/20 ticks (0.4us/1.25us) for a 0
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const RES: u16 = 0x8000;
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// Provides data to a WS2812b (Neopixel) LED and makes it go blue. The data
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// line is assumed to be P1_05.
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#[embassy::main]
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async fn main(_spawner: Spawner, p: Peripherals) {
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// Declare the bits of 24 bits
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let mut blue_seq: [u16; 8 * 3] = [
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T0H, T0H, T0H, T0H, T0H, T0H, T0H, T0H, // G
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T0H, T0H, T0H, T0H, T0H, T0H, T0H, T0H, // R
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T1H, T1H, T1H, T1H, T1H, T1H, T1H, T1H, // B
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];
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let reset_seq = [RES; 1];
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let mut config = Config::default();
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config.sequence_load = SequenceLoad::Common;
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config.prescaler = Prescaler::Div1;
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config.max_duty = 20; // 1.25us (1s / 16Mhz * 20)
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let mut pwm = unwrap!(SequencePwm::new(
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p.PWM0, p.P1_05, NoPin, NoPin, NoPin, config,
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));
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let blue_seq_config = SequenceConfig::default();
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let mut reset_seq_config = SequenceConfig::default();
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reset_seq_config.end_delay = 799; // 50us (20 ticks * 40) - 1 tick because we've already got one RES
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unwrap!(pwm.start(
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&blue_seq,
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blue_seq_config,
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Some(&reset_seq),
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Some(reset_seq_config),
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SequenceMode::Times(2)
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));
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Timer::after(Duration::from_millis(20000)).await;
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info!("Program stopped");
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}
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