192 lines
6.0 KiB
Rust
192 lines
6.0 KiB
Rust
use std::{fs::File, io::Write};
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use chrono::{Datelike, Timelike, NaiveDateTime};
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use chrono_tz::Europe::Berlin;
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use esp_idf_hal::delay::Delay;
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use esp_idf_svc::http::server::EspHttpServer;
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use plant_hal::{PlantCtrlBoardInteraction, PlantHal, CreatePlantHal, PLANT_COUNT};
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use anyhow::{Context, Result};
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use webserver::webserver::httpd;
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pub mod plant_hal;
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mod config;
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mod webserver {
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pub mod webserver;
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}
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fn main() -> Result<()>{
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// It is necessary to call this function once. Otherwise some patches to the runtime
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// implemented by esp-idf-sys might not link properly. See https://github.com/esp-rs/esp-idf-template/issues/71
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esp_idf_svc::sys::link_patches();
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// Bind the log crate to the ESP Logging facilities
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esp_idf_svc::log::EspLogger::initialize_default();
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log::info!("Startup Rust");
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let git_hash = env!("VERGEN_GIT_DESCRIBE");
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println!("Version useing git has {}", git_hash);
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let mut board = PlantHal::create()?;
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println!("Board hal init");
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let time = board.time();
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let mut cur = match time {
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Ok(cur) => cur,
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Err(err) => {
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log::error!("time error {}", err);
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NaiveDateTime::from_timestamp_millis(0).unwrap().and_utc()
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}
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};
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//check if we know the time current > 2020
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if cur.year() < 2020 {
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if board.is_day() {
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//assume TZ safe times ;)
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cur = *cur.with_hour(15).get_or_insert(cur);
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} else {
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cur = *cur.with_hour(3).get_or_insert(cur);
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}
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}
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println!("cur is {}", cur);
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//continous/interrupt?
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//check if boot button is pressed, if longer than 5s delete config and reboot into config mode
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let config = board.get_config();
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match config {
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Ok(conf) => {
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},
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Err(err) => {
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},
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}
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// let proceed = config.unwrap();
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//check if we have a config file
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// if not found or parsing error -> error very fast blink general fault
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//if this happens after a firmeware upgrade (check image state), mark as invalid
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//blink general fault error_reading_config_after_upgrade, reboot after
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// open accesspoint with webserver for wlan mqtt setup
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//blink general fault error_no_config_after_upgrade
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//once config is set store it and reboot
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//if proceed.tank_sensor_enabled() {
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//}
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//is tank sensor enabled in config?
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//measure tank level (without wifi due to interference)
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//TODO this should be a result// detect invalid measurement value
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let tank_value = board.tank_sensor_mv();
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match tank_value {
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Ok(tank_raw) => {
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println!("Tank sensor returned {}", tank_raw);
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},
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Err(_) => {
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//if not possible value, blink general fault error_tank_sensor_fault
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board.general_fault(true);
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//set general fault persistent
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//set tank sensor state to fault
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},
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}
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//measure each plant moisture
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let mut initial_measurements_a: [i32;PLANT_COUNT] = [0;PLANT_COUNT];
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let mut initial_measurements_b: [i32;PLANT_COUNT] = [0;PLANT_COUNT];
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let mut initial_measurements_p: [i32;PLANT_COUNT] = [0;PLANT_COUNT];
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for plant in 0..PLANT_COUNT {
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initial_measurements_a[plant] = board.measure_moisture_hz(plant, plant_hal::Sensor::A)?;
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initial_measurements_b[plant] = board.measure_moisture_hz(plant, plant_hal::Sensor::B)?;
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initial_measurements_p[plant] = board.measure_moisture_hz(plant, plant_hal::Sensor::PUMP)?;
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}
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match board.wifi("C3MA", Some("chaosimquadrat"), 10000) {
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Ok(_) => println!("online mode"),
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Err(_) => {
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println!("Offline mode");
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},
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}
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//try connect wifi and do mqtt roundtrip
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// if no wifi, set general fault persistent
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//if no mqtt, set general fault persistent
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match board.sntp(1000*120) {
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Ok(new_time) => cur = new_time,
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Err(err) => {
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println!("sntp error: {}", err);
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}
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}
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println!("Running logic at utc {}", cur);
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let europe_time = cur.with_timezone(&Berlin);
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println!("Running logic at europe/berlin {}", europe_time);
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//if config battery mode
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//read battery level
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//if not possible set general fault persistent, but do continue
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//else
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//assume 12v and max capacity
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//if tank sensor is enabled
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//if tank sensor fault abort if config require is set
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//check if water is > minimum allowed || fault
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//if not, set all plants requiring water to persistent fault
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//for each plant
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//check if moisture is < target
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//state += dry
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//check if in cooldown
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//state += cooldown
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//check if consecutive pumps > limit
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//state += notworking
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//set plant fault persistent
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//pump one cycle
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// set last pump time to now
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//during pump state += active
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//after pump check if Pump moisture value is increased by config delta x
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// state -= active
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// state += cooldown
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// if not set plant error persistent fault
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// state += notworking
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//set consecutive pumps+=1
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//check if during light time
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//lightstate += out of worktime
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//check battery level
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//lightstate += battery empty
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//check solar level if config requires
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//lightstate += stillday
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//if no preventing lightstate, enable light
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//lightstate = active
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//keep webserver in scope
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let webserver = httpd(true);
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let delay = Delay::new_default();
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loop {
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//let freertos do shit
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delay.delay_ms(1001);
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}
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return Ok(())
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}
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//error codes
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//error_reading_config_after_upgrade
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//error_no_config_after_upgrade
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//error_tank_sensor_fault
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