adjustments for 3.0 pcb
This commit is contained in:
parent
4d92e0c2a6
commit
d2fb6b8411
@ -68,7 +68,7 @@
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39,
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40
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],
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"visible_layers": "ffc7055_fffffff8",
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"visible_layers": "ffc7055_ffffffff",
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"zone_display_mode": 1
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},
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"git": {
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@ -60,7 +60,6 @@ pub struct Plant {
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pub pump_hour_start: u8,
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pub pump_hour_end: u8,
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pub sensor_b: bool,
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pub sensor_p: bool,
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}
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impl Default for Plant {
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fn default() -> Self {
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@ -71,8 +70,7 @@ impl Default for Plant {
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pump_hour_start: 8,
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pump_hour_end: 20,
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mode: Mode::OFF,
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sensor_b: false,
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sensor_p: false,
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sensor_b: false
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}
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}
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}
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@ -74,7 +74,6 @@ struct LightState {
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struct PlantState {
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a: Option<u8>,
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b: Option<u8>,
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p: Option<u8>,
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consecutive_pump_count: u32,
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after_p: Option<u8>,
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do_water: bool,
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@ -86,7 +85,6 @@ struct PlantState {
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no_water: bool,
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sensor_error_a: Option<SensorError>,
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sensor_error_b: Option<SensorError>,
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sensor_error_p: Option<SensorError>,
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out_of_work_hour: bool,
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next_pump: Option<DateTime<Tz>>,
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}
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@ -120,8 +118,6 @@ struct TankStateMQTT {
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struct PlantStateMQTT<'a> {
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a: &'a str,
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b: &'a str,
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p_start: &'a str,
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p_end: &'a str,
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mode: &'a str,
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consecutive_pump_count: u32,
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dry: bool,
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@ -438,18 +434,6 @@ fn safe_main() -> anyhow::Result<()> {
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let plant_config = config.plants[plant];
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if plant_config.sensor_p {
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match map_range_moisture(
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board.measure_moisture_hz(plant, plant_hal::Sensor::PUMP)? as f32,
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) {
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Ok(p) => state.p = Some(p),
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Err(err) => {
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board.fault(plant, true);
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state.sensor_error_p = Some(err);
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}
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}
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}
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println!(
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"Trying to pump for {}s with pump {} now",
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plant_config.pump_time_s, plant
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@ -463,48 +447,11 @@ fn safe_main() -> anyhow::Result<()> {
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state.active = true;
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for _ in 0..plant_config.pump_time_s {
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unsafe { vTaskDelay(CONFIG_FREERTOS_HZ) };
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let p_live_topic = format!("/plant{} p live", plant + 1);
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if plant_config.sensor_p {
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let moist = map_range_moisture(
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board.measure_moisture_hz(plant, plant_hal::Sensor::PUMP)? as f32,
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);
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if online_mode == OnlineMode::Online {
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let _ = board.mqtt_publish(
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&config,
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&p_live_topic,
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option_to_string(&moist.ok()).as_bytes(),
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);
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}
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} else {
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if online_mode == OnlineMode::Online {
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let _ =
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board.mqtt_publish(&config, &p_live_topic, "disabled".as_bytes());
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}
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}
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//info message or something?
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}
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board.pump(plant, false)?;
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}
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if plant_config.sensor_p {
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match map_range_moisture(
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board.measure_moisture_hz(plant, plant_hal::Sensor::PUMP)? as f32,
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) {
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Ok(p) => state.after_p = Some(p),
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Err(err) => {
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board.fault(plant, true);
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state.sensor_error_p = Some(err);
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}
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}
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if state.after_p.is_none()
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|| state.p.is_none()
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|| state.after_p.unwrap() < state.p.unwrap() + 5
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{
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state.pump_error = true;
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board.fault(plant, true);
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//mqtt sync pump error value
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}
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}
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}
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None => {
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println!("Nothing to do");
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@ -896,10 +843,7 @@ fn determine_next_plant(
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}
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}
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if state.sensor_error_a.is_some()
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|| state.sensor_error_b.is_some()
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|| state.sensor_error_p.is_some()
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{
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if state.sensor_error_a.is_some() || state.sensor_error_b.is_some() {
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board.fault(plant, true);
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}
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if !state.dry {
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@ -936,8 +880,6 @@ fn update_plant_state(
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let mode = format!("{:?}", plant_config.mode);
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let plant_dto = PlantStateMQTT {
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p_start: &sensor_to_string(&state.p, &state.sensor_error_p, plant_config.sensor_p),
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p_end: &sensor_to_string(&state.after_p, &state.sensor_error_p, plant_config.sensor_p),
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a: &sensor_to_string(
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&state.a,
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&state.sensor_error_a,
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@ -1108,10 +1050,3 @@ fn in_time_range(cur: &DateTime<Tz>, start: u8, end: u8) -> bool {
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return curhour > start || curhour < end;
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}
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}
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fn option_to_string(value: &Option<u8>) -> String {
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match value {
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Some(v) => v.to_string(),
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None => "Error".to_owned(),
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}
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}
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@ -1,5 +1,5 @@
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use bq34z100::{Bq34Z100Error, Bq34z100g1, Bq34z100g1Driver};
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//mod config;
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use chrono_tz::Europe::Berlin;
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use embedded_svc::wifi::{
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AccessPointConfiguration, AccessPointInfo, AuthMethod, ClientConfiguration, Configuration,
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@ -50,13 +50,8 @@ use one_wire_bus::OneWire;
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use crate::config::{self, Config, WifiConfig};
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use crate::STAY_ALIVE;
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//Only support for 8 right now!
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pub const PLANT_COUNT: usize = 8;
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const PINS_PER_PLANT: usize = 5;
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const PLANT_PUMP_OFFSET: usize = 0;
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const PLANT_FAULT_OFFSET: usize = 1;
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const PLANT_MOIST_PUMP_OFFSET: usize = 2;
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const PLANT_MOIST_A_OFFSET: usize = 3;
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const PLANT_MOIST_B_OFFSET: usize = 4;
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const SPIFFS_PARTITION_NAME: &str = "storage";
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const WIFI_CONFIG_FILE: &str = "/spiffs/wifi.cfg";
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@ -64,6 +59,51 @@ const CONFIG_FILE: &str = "/spiffs/config.cfg";
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const TANK_MULTI_SAMPLE: usize = 11;
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const PUMP8_BIT: usize = 0;
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const PUMP1_BIT: usize = 1;
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const PUMP2_BIT: usize = 2;
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const PUMP3_BIT: usize = 3;
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const PUMP4_BIT: usize = 4;
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const PUMP5_BIT: usize = 5;
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const PUMP6_BIT: usize = 6;
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const PUMP7_BIT: usize = 7;
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const MS_0: usize = 8;
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const MS_4: usize = 9;
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const MS_2: usize = 10;
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const MS_3: usize = 11;
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const SENSOR_ON: usize = 12;
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const MS_1: usize = 13;
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//unused 14
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//unused 15
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const FAULT_3: usize = 16;
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const FAULT_8: usize = 17;
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const FAULT_7: usize = 18;
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const FAULT_6: usize = 19;
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const FAULT_5: usize = 20;
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const FAULT_4: usize = 21;
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const FAULT_1: usize = 22;
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const FAULT_2: usize = 23;
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const SENSOR_A_1: u8 = 7;
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const SENSOR_A_2: u8 = 6;
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const SENSOR_A_3: u8 = 5;
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const SENSOR_A_4: u8 = 4;
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const SENSOR_A_5: u8 = 3;
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const SENSOR_A_6: u8 = 2;
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const SENSOR_A_7: u8 = 1;
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const SENSOR_A_8: u8 = 0;
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const SENSOR_B_1: u8 = 8;
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const SENSOR_B_2: u8 = 9;
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const SENSOR_B_3: u8 = 10;
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const SENSOR_B_4: u8 = 11;
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const SENSOR_B_5: u8 = 12;
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const SENSOR_B_6: u8 = 13;
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const SENSOR_B_7: u8 = 14;
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const SENSOR_B_8: u8 = 15;
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#[link_section = ".rtc.data"]
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static mut LAST_WATERING_TIMESTAMP: [i64; PLANT_COUNT] = [0; PLANT_COUNT];
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#[link_section = ".rtc.data"]
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@ -88,7 +128,6 @@ pub enum ClearConfigType {
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pub enum Sensor {
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A,
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B,
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PUMP,
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}
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pub trait PlantCtrlBoardInteraction {
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fn time(&mut self) -> Result<chrono::DateTime<Utc>>;
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@ -125,7 +164,7 @@ pub trait PlantCtrlBoardInteraction {
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//keep state during deepsleep
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fn light(&mut self, enable: bool) -> Result<()>;
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fn measure_moisture_hz(&self, plant: usize, sensor: Sensor) -> Result<i32>;
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fn measure_moisture_hz(&mut self, plant: usize, sensor: Sensor) -> Result<i32>;
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fn pump(&self, plant: usize, enable: bool) -> Result<()>;
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fn last_pump_time(&self, plant: usize) -> Option<chrono::DateTime<Utc>>;
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fn store_last_pump_time(&mut self, plant: usize, time: chrono::DateTime<Utc>);
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@ -149,6 +188,8 @@ pub trait PlantCtrlBoardInteraction {
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fn is_wifi_config_file_existant(&mut self) -> bool;
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fn mqtt(&mut self, config: &Config) -> Result<()>;
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fn mqtt_publish(&mut self, config: &Config, subtopic: &str, message: &[u8]) -> Result<()>;
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fn sensor_multiplexer(&mut self, n: u8) -> Result<()>;
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}
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pub trait CreatePlantHal<'a> {
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@ -266,7 +307,17 @@ impl PlantCtrlBoardInteraction for PlantCtrlBoard<'_> {
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}
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fn pump(&self, plant: usize, enable: bool) -> Result<()> {
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let index = plant * PINS_PER_PLANT + PLANT_PUMP_OFFSET;
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let index = match plant {
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0 => PUMP1_BIT,
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1 => PUMP2_BIT,
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2 => PUMP3_BIT,
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3 => PUMP4_BIT,
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4 => PUMP5_BIT,
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5 => PUMP6_BIT,
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6 => PUMP7_BIT,
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7 => PUMP8_BIT,
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_ => bail!("Invalid pump {plant}",),
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};
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//currently infailable error, keep for future as result anyway
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self.shift_register.decompose()[index].set_state(enable.into())?;
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Ok(())
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@ -296,7 +347,17 @@ impl PlantCtrlBoardInteraction for PlantCtrlBoard<'_> {
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}
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fn fault(&self, plant: usize, enable: bool) {
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let index = plant * PINS_PER_PLANT + PLANT_FAULT_OFFSET;
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let index = match plant {
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0 => FAULT_1,
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1 => FAULT_2,
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2 => FAULT_3,
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3 => FAULT_4,
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4 => FAULT_5,
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5 => FAULT_6,
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6 => FAULT_7,
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7 => FAULT_8,
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_ => panic!("Invalid plant id {}", plant)
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};
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self.shift_register.decompose()[index]
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.set_state(enable.into())
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.unwrap()
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@ -338,28 +399,58 @@ impl PlantCtrlBoardInteraction for PlantCtrlBoard<'_> {
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self.time()
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}
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fn measure_moisture_hz(&self, plant: usize, sensor: Sensor) -> Result<i32> {
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fn measure_moisture_hz(&mut self, plant: usize, sensor: Sensor) -> Result<i32> {
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self.signal_counter.counter_pause()?;
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self.signal_counter.counter_clear()?;
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//
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let offset = match sensor {
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Sensor::A => PLANT_MOIST_A_OFFSET,
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Sensor::B => PLANT_MOIST_B_OFFSET,
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Sensor::PUMP => PLANT_MOIST_PUMP_OFFSET,
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//Disable all
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self.shift_register.decompose()[SENSOR_ON]
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.set_high()
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.unwrap();
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let sensor_channel = match sensor {
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Sensor::A => match plant {
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0 => SENSOR_A_1,
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1 => SENSOR_A_2,
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2 => SENSOR_A_3,
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3 => SENSOR_A_4,
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4 => SENSOR_A_5,
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5 => SENSOR_A_6,
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6 => SENSOR_A_7,
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7 => SENSOR_A_8,
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_ => bail!("Invalid plant id {}", plant)
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},
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Sensor::B => match plant {
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0 => SENSOR_B_1,
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1 => SENSOR_B_2,
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2 => SENSOR_B_3,
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3 => SENSOR_B_4,
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4 => SENSOR_B_5,
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5 => SENSOR_B_6,
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6 => SENSOR_B_7,
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7 => SENSOR_B_8,
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_ => bail!("Invalid plant id {}", plant)
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},
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};
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let index = plant * PINS_PER_PLANT + offset;
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self.sensor_multiplexer(sensor_channel)?;
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self.shift_register.decompose()[SENSOR_ON]
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.set_low()
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.unwrap();
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let delay = Delay::new_default();
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let measurement = 100;
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let factor = 1000 as f32 / measurement as f32;
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self.shift_register.decompose()[index].set_high().unwrap();
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//give some time to stabilize
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delay.delay_ms(10);
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self.signal_counter.counter_resume()?;
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delay.delay_ms(measurement);
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self.signal_counter.counter_pause()?;
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self.shift_register.decompose()[index].set_low().unwrap();
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self.shift_register.decompose()[SENSOR_ON]
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.set_high()
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.unwrap();
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let unscaled = self.signal_counter.get_counter_value()? as i32;
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let hz = (unscaled as f32 * factor) as i32;
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println!("Measuring {:?} @ {} with {}", sensor, plant, hz);
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@ -605,10 +696,6 @@ impl PlantCtrlBoardInteraction for PlantCtrlBoard<'_> {
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for i in 0..8 {
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self.measure_moisture_hz(i, Sensor::B)?;
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}
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for i in 0..8 {
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self.measure_moisture_hz(i, Sensor::PUMP)?;
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}
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Ok(())
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}
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@ -887,6 +974,37 @@ impl PlantCtrlBoardInteraction for PlantCtrlBoard<'_> {
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None => bail!("Error reading State of Health bq34z100 not found"),
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}
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}
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fn sensor_multiplexer(&mut self, n: u8) -> Result<()> {
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assert!(n < 16);
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let is_bit_set = |b: u8| -> bool { n & (1 << b) != 0 };
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let pin_0 = &mut self.shift_register.decompose()[MS_0];
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let pin_1 = &mut self.shift_register.decompose()[MS_1];
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let pin_2 = &mut self.shift_register.decompose()[MS_2];
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let pin_3 = &mut self.shift_register.decompose()[MS_3];
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if is_bit_set(0) {
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pin_0.set_high()?;
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} else {
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pin_0.set_low()?;
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}
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if is_bit_set(1) {
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pin_1.set_high()?;
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} else {
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pin_1.set_low()?;
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}
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if is_bit_set(2) {
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pin_2.set_high()?;
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} else {
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pin_2.set_low()?;
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}
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if is_bit_set(3) {
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pin_3.set_high()?;
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} else {
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pin_3.set_low()?;
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}
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Ok(())
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}
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}
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fn print_battery(
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@ -988,7 +1106,10 @@ impl CreatePlantHal<'_> for PlantHal {
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let mut one_wire_pin = PinDriver::input_output_od(peripherals.pins.gpio18)?;
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one_wire_pin.set_pull(Pull::Floating).unwrap();
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//TODO make to none if not possible to init
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//disable all
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let ms4 = &mut shift_register.decompose()[MS_4];
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ms4.set_high()?;
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//init,reset rtc memory depending on cause
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let reasons = ResetReason::get();
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