2024-01-06 09:33:56 +11:00
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#![feature(async_closure)]
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2023-12-28 12:41:05 +11:00
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#[macro_use]
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extern crate rocket;
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use anyhow::Result;
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2023-12-25 21:22:08 +11:00
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use clap::{Parser, Subcommand};
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2023-12-28 12:41:05 +11:00
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2023-12-27 12:20:45 +11:00
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use serde::{Deserialize, Serialize};
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2024-01-06 09:33:56 +11:00
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use std::{
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path::PathBuf,
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time::{Duration, Instant},
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};
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use teslatte::{
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auth::{AccessToken, RefreshToken},
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FleetApi,
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};
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2023-12-26 08:58:14 +11:00
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use crate::{config::Config, errors::*};
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mod config;
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mod errors;
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mod server;
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2024-01-07 10:08:16 +11:00
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mod types;
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2023-12-25 21:22:08 +11:00
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#[derive(Parser, Debug, Clone)]
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#[clap(author, version, about, long_about = None)]
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struct Args {
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#[command(subcommand)]
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command: Commands,
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#[clap(long, default_value = "/etc/tesla-charge-controller")]
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config_dir: PathBuf,
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}
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#[derive(Subcommand, Debug, Clone)]
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enum Commands {
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/// Run charge controller server
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Watch,
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/// Print the default config file
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GenerateConfig,
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}
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#[tokio::main]
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async fn main() {
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let args = Args::parse();
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let auth_path = args.config_dir.join("auth");
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2023-12-28 12:41:05 +11:00
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let config_path = args.config_dir.join("config");
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2023-12-27 18:29:12 +11:00
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match args.command {
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Commands::GenerateConfig => {
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println!(
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"{}",
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ron::ser::to_string_pretty(&Config::default(), Default::default()).unwrap()
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);
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}
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Commands::Watch => match get_auth(auth_path).await {
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Ok(auth) => {
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let config: Config =
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ron::from_str(&std::fs::read_to_string(&config_path).unwrap()).unwrap();
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let products = auth.api().products().await;
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match products {
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Ok(res) => match res.first() {
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Some(teslatte::products::Product::Vehicle(vehicle)) => {
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server::launch_server(server::ServerState {
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config,
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auth,
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vehicle: vehicle.clone(),
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})
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.await;
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}
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_ => println!("No first item"),
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},
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Err(e) => println!("Error getting products: {e:#?}"),
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}
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}
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Err(e) => println!("{}", e.error_string()),
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},
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}
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}
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#[derive(Serialize, Deserialize, Debug, Clone, Copy)]
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pub struct Coords {
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pub latitude: f64,
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pub longitude: f64,
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}
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const COORD_PRECISION: f64 = 0.001;
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impl Coords {
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fn overlaps(&self, other: &Coords) -> bool {
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(self.latitude - other.latitude).abs() < COORD_PRECISION
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&& (self.longitude - other.longitude).abs() < COORD_PRECISION
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}
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}
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2024-01-06 09:33:56 +11:00
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async fn get_auth(auth_path: PathBuf) -> Result<FleetApiAuth, AuthLoadError> {
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let key: AuthInfo = ron::from_str(&std::fs::read_to_string(&auth_path)?)?;
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let mut api = FleetApi::new(key.access_token, key.refresh_token);
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api.refresh().await?;
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println!("Refreshed auth key");
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save_key(&auth_path, &api)?;
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// api.print_responses = teslatte::PrintResponses::Pretty;
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Ok(FleetApiAuth::new(api, Instant::now(), auth_path))
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}
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struct FleetApiAuth {
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api: FleetApi,
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last_refresh: Instant,
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auth_path: PathBuf,
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}
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const REFRESH_INTERVAL: Duration = Duration::from_secs(12 * 60 * 60);
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impl FleetApiAuth {
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fn new(api: FleetApi, last_refresh: Instant, auth_path: PathBuf) -> Self {
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Self {
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api,
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last_refresh,
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auth_path,
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}
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}
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fn api(&self) -> &FleetApi {
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&self.api
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}
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#[allow(unused)]
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async fn refresh(&mut self) {
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if Instant::now().duration_since(self.last_refresh) >= REFRESH_INTERVAL {
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match self.api.refresh().await {
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Ok(_) => {
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let now = Instant::now();
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match save_key(&self.auth_path, &self.api) {
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Ok(_) => self.last_refresh = now,
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Err(e) => eprintln!("error saving auth token: {e:?}"),
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}
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}
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Err(e) => eprintln!("error refreshing auth token: {e:?}"),
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}
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}
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}
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2023-12-27 12:20:45 +11:00
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}
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2024-01-06 09:33:56 +11:00
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#[derive(Serialize, Deserialize, Clone)]
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struct AuthInfo {
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access_token: AccessToken,
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refresh_token: Option<RefreshToken>,
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}
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fn save_key(auth_path: &PathBuf, api: &FleetApi) -> Result<(), SaveError> {
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std::fs::write(
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auth_path,
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ron::ser::to_string(&AuthInfo {
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access_token: api.access_token.clone(),
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refresh_token: api.refresh_token.clone(),
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})?,
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)?;
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println!("Auth successfully saved");
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Ok(())
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}
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