forked from M-Labs/thermostat
add nucleo-f429zi board leds
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1f80b456f3
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@ -0,0 +1,46 @@
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use embedded_hal::digital::OutputPin;
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use stm32f4xx_hal::gpio::{
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Output, PushPull,
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gpiob::{PB0, PB7, PB14},
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};
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type GreenPin = PB0<Output<PushPull>>;
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type BluePin = PB7<Output<PushPull>>;
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type RedPin = PB14<Output<PushPull>>;
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pub struct Led<PIN> {
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pin: PIN,
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}
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impl<PIN: OutputPin> Led<PIN> {
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fn new(pin: PIN) -> Self {
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Led { pin }
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}
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pub fn on(&mut self) {
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self.pin.set_high();
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}
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pub fn off(&mut self) {
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self.pin.set_low();
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}
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}
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impl Led<GreenPin> {
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pub fn green(pin: GreenPin) -> Self {
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Self::new(pin)
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}
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}
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impl Led<BluePin> {
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pub fn blue(pin: BluePin) -> Self {
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Self::new(pin)
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}
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}
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impl Led<RedPin> {
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pub fn red(pin: RedPin) -> Self {
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Self::new(pin)
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}
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}
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13
src/main.rs
13
src/main.rs
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@ -30,6 +30,8 @@ mod net;
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mod server;
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mod server;
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use server::Server;
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use server::Server;
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mod timer;
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mod timer;
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mod led;
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use led::Led;
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const OUTPUT_INTERVAL: u32 = 1000;
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const OUTPUT_INTERVAL: u32 = 1000;
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@ -81,6 +83,10 @@ fn main() -> ! {
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let gpioc = dp.GPIOC.split();
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let gpioc = dp.GPIOC.split();
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let gpiog = dp.GPIOG.split();
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let gpiog = dp.GPIOG.split();
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let mut led_green = Led::green(gpiob.pb0.into_push_pull_output());
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let mut led_blue = Led::blue(gpiob.pb7.into_push_pull_output());
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let mut led_red = Led::red(gpiob.pb14.into_push_pull_output());
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info!("ADC init");
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info!("ADC init");
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adc_input::setup(&mut cp.NVIC, dp.ADC1, gpioa.pa3);
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adc_input::setup(&mut cp.NVIC, dp.ADC1, gpioa.pa3);
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@ -99,23 +105,30 @@ fn main() -> ! {
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let mut last_output = 0_u32;
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let mut last_output = 0_u32;
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loop {
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loop {
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led_red.on();
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let now = timer::now().0;
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let now = timer::now().0;
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let instant = Instant::from_millis(now as i64);
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let instant = Instant::from_millis(now as i64);
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server.poll(instant);
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server.poll(instant);
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if now - last_output >= OUTPUT_INTERVAL {
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if now - last_output >= OUTPUT_INTERVAL {
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led_blue.on();
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let adc_value = adc_input::read();
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let adc_value = adc_input::read();
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adc_value.map(|adc_value| {
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adc_value.map(|adc_value| {
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write!(server, "t={},pa3={}\r\n", now, adc_value).unwrap();
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write!(server, "t={},pa3={}\r\n", now, adc_value).unwrap();
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});
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});
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last_output = now;
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last_output = now;
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led_blue.off();
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}
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}
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// Update watchdog
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// Update watchdog
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wd.feed();
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wd.feed();
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led_red.off();
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// Wait for interrupts
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// Wait for interrupts
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// if net.is_pending() {
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// if net.is_pending() {
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led_green.on();
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wfi();
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wfi();
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led_green.off();
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// }
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// }
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}
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}
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})
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})
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