feat: blink, voltage detection.
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5058005031
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@ -17,8 +17,10 @@ pio = ["esp-idf-sys/pio"]
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[dependencies]
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[dependencies]
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anyhow = "1"
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anyhow = "1"
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embedded-hal = "0.2.7"
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embedded-svc = "0.22.0"
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embedded-svc = "0.22.0"
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env_logger = "0.9.0"
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env_logger = "0.9.0"
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esp-idf-hal = "0.38.0"
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esp-idf-svc = "0.42.1"
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esp-idf-svc = "0.42.1"
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esp-idf-sys = { version = "0.31.6", features = ["binstart"] }
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esp-idf-sys = { version = "0.31.6", features = ["binstart"] }
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log = "0.4.17"
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log = "0.4.17"
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47
src/blink.rs
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47
src/blink.rs
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@ -0,0 +1,47 @@
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use embedded_hal::digital::v2::OutputPin;
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use std::thread;
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use std::time::Duration;
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pub struct Blink<T>
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where
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T: OutputPin,
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{
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state: bool,
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pin: T,
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stopped: bool,
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}
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impl<T> Blink<T>
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where
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T: OutputPin,
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{
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pub fn new(pin: T) -> Blink<T> {
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return Blink {
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state: false,
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pin,
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stopped: false,
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};
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}
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pub fn toggle(&mut self) -> Result<(), T::Error> {
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self.state = !self.state;
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if self.state {
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self.pin.set_high()
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} else {
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self.pin.set_low()
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}
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}
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pub fn play(&mut self) where <T as embedded_hal::digital::v2::OutputPin>::Error: std::fmt::Debug {
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loop {
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if self.stopped {
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break;
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}
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self.toggle().unwrap();
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thread::sleep(Duration::from_millis(30));
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self.toggle().unwrap();
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thread::sleep(Duration::from_millis(1930));
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}
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}
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}
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58
src/main.rs
58
src/main.rs
@ -1,13 +1,22 @@
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use std::{env, thread::sleep, time::{Duration}};
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use embedded_svc::mqtt::client::{Publish, QoS};
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use embedded_svc::mqtt::client::{Publish, QoS};
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use esp_idf_sys as _;
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use esp_idf_sys as _;
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use log::*;
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use log::*;
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use std::{
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env,
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thread::{self, sleep},
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time::Duration,
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};
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mod blink;
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mod message_queue;
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mod message_queue;
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mod wifi;
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mod time;
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mod time;
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mod wifi;
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mod voltage_detection;
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use crate::{
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message_queue::MessageQueue, time::Time, wifi::Internet, voltage_detection::VoltageDetection,
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};
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use crate::{message_queue::MessageQueue, wifi::Internet, time::Time};
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fn main() {
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fn main() {
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env::set_var("DEFMT_LOG", "trace");
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env::set_var("DEFMT_LOG", "trace");
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env::set_var("RUST_BACKTRACE", "1");
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env::set_var("RUST_BACKTRACE", "1");
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@ -18,7 +27,31 @@ fn main() {
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// or else some patches to the runtime implemented by esp-idf-sys might not link properly.
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// or else some patches to the runtime implemented by esp-idf-sys might not link properly.
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esp_idf_sys::link_patches();
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esp_idf_sys::link_patches();
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println!("Hello, world!");
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info!("Hello, world!");
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let peripherals = esp_idf_hal::peripherals::Peripherals::take().unwrap();
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let blink_pin = peripherals.pins.gpio5;
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let beep_pin = peripherals.pins.gpio6;
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let ledc_timer0 = peripherals.ledc.timer0;
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let ledc_channel0 = peripherals.ledc.channel0;
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let dc_out_ctl_pin = peripherals.pins.gpio3;
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let i2c0 = peripherals.i2c0;
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let sda_pin = peripherals.pins.gpio4;
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let scl_pin = peripherals.pins.gpio10;
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thread::spawn(move || {
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let mut blink = blink::Blink::new(
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blink_pin
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.into_output()
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.expect("Failed to set GPIO5 as output"),
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);
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blink.play();
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});
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let mut voltage_detection = VoltageDetection::new();
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voltage_detection.watching().expect("Can not watch voltages.");
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let _wifi = Internet::new().unwrap();
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let _wifi = Internet::new().unwrap();
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@ -34,14 +67,15 @@ fn main() {
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let timestamps = time.get_time().as_millis();
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let timestamps = time.get_time().as_millis();
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info!("timestamps {}", timestamps);
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info!("timestamps {}", timestamps);
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mq_client.publish(
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mq_client
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"ups-0.2/heartbeat",
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.publish(
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QoS::AtMostOnce,
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"ups-0.2/heartbeat",
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false,
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QoS::AtMostOnce,
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timestamps.to_string().as_bytes(),
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false,
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).map_err(|err| {
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timestamps.to_string().as_bytes(),
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warn!("publish heartbeat failed {}", err)
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)
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}).unwrap();
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.map_err(|err| warn!("publish heartbeat failed {}", err))
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.unwrap();
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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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@ -24,7 +24,7 @@ impl MessageQueue {
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};
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};
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let (mut client, mut connection) =
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let (mut client, mut connection) =
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EspMqttClient::new_with_conn("mqtt://192.168.31.8:1883", &conf)?;
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EspMqttClient::new_with_conn("mqtt://192.168.31.11:1883", &conf)?;
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info!("MQTT client started");
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info!("MQTT client started");
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thread::spawn(move || {
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thread::spawn(move || {
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124
src/voltage_detection.rs
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124
src/voltage_detection.rs
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@ -0,0 +1,124 @@
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use std::{
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sync::{Arc, Mutex},
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time::Duration,
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};
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use embedded_hal::{adc::Channel, prelude::_embedded_hal_adc_OneShot, digital::v2::OutputPin};
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use embedded_svc::timer::{PeriodicTimer, TimerService};
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use esp_idf_hal::{
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adc::{
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config::{self},
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Analog, PoweredAdc, ADC1,
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},
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gpio::{Gpio1, Gpio2, Gpio3, Input, Pull},
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};
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use esp_idf_svc::timer::{EspTimer, EspTimerService};
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use log::{info, warn};
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pub struct VoltageDetection {
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pub worker: VoltageDetectionWorker,
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watch_timer: Option<EspTimer>,
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}
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#[derive(Clone, Copy)]
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pub struct VoltageDetectionWorker {
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pub adapter_voltage: u16,
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pub battery_voltage: u16,
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pub output_voltage: u16,
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}
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impl VoltageDetection {
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pub fn new() -> Self {
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return Self {
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worker: VoltageDetectionWorker::new(),
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watch_timer: None,
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};
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}
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pub fn watching(&mut self) -> anyhow::Result<()> {
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let worker = Arc::new(Mutex::new(self.worker));
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let mut timer = EspTimerService::new()?.timer(move || {
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info!("One-shot timer triggered");
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match worker.as_ref().lock().as_mut() {
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Ok(worker) => {
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if let Err(err) = worker.read_once() {
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warn!("Read Failed. {}", err);
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}
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info!(
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"Adapter: {},\tBattery: {},\t Output: {}",
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worker.adapter_voltage, worker.battery_voltage, worker.output_voltage
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);
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}
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Err(err) => {
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warn!("Lock VoltageDetection Worker Failed. {}", err)
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}
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}
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})?;
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timer.every(Duration::from_secs(1))?;
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self.watch_timer = Some(timer);
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return anyhow::Ok(());
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}
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}
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impl VoltageDetectionWorker {
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pub fn new() -> Self {
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return Self {
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adapter_voltage: 0,
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battery_voltage: 0,
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output_voltage: 0,
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};
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}
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pub fn read_once(&mut self) -> anyhow::Result<()> {
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let adapter_pin = unsafe { Gpio1::<Input>::new() }
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.into_analog_atten_11db()
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.map_err(|err| anyhow::anyhow!("Failed to set GPIO 1 as analog input. {}", err))?;
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match self.read_pin_once(adapter_pin) {
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Ok(voltage) => {
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self.adapter_voltage = voltage;
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}
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Err(err) => {
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warn!("Adapter Voltage read failed: {:?}", err);
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}
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}
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let battery_pin = unsafe { Gpio2::<Input>::new() }
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.into_analog_atten_11db()
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.map_err(|err| anyhow::anyhow!("Failed to set GPIO 1 as analog input. {}", err))?;
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match self.read_pin_once(battery_pin) {
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Ok(voltage) => {
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self.battery_voltage = voltage;
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}
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Err(err) => {
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warn!("Adapter Voltage read failed: {:?}", err);
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}
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}
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let output_pin = unsafe { Gpio3::<Input>::new() }
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.into_analog_atten_11db()
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.map_err(|err| anyhow::anyhow!("Failed to set GPIO 1 as analog input. {}", err))?;
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match self.read_pin_once(output_pin) {
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Ok(voltage) => {
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self.output_voltage = voltage;
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}
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Err(err) => {
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warn!("Adapter Voltage read failed: {:?}", err);
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}
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}
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return anyhow::Ok(());
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}
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pub fn read_pin_once<AN: Analog<ADC1>, PIN: Channel<AN, ID = u8>>(
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&mut self,
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mut pin: PIN,
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) -> anyhow::Result<u16> {
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let mut adc = PoweredAdc::new(unsafe { ADC1::new() }, config::Config::new())?;
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let voltage = adc.read(&mut pin);
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match voltage {
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Ok(voltage) => anyhow::Ok((self.adapter_voltage + voltage * 10) / 11),
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Err(err) => {
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anyhow::bail!("Adapter Voltage read failed: {:?}", err)
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}
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}
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}
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}
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