Checkpoint
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@ -68,10 +68,13 @@ impl Gtfs {
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if trips.contains_key(&stop_time.trip_id) {
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let stop_timestamp = stop_time.departure_time.or(stop_time.arrival_time).unwrap();
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debug!("Stop timestamp {} current timestamp {}", stop_timestamp, current_timestamp);
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let trip= &self.trips.get(&stop_time.trip_id).unwrap();
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if current_timestamp < stop_timestamp.into() {
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let arrival: Arrival = Arrival {
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route: self.routes.get(&self.trips.get(&stop_time.trip_id).unwrap().route_id).unwrap(),
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route: self.routes.get(&trip.route_id).unwrap(),
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stop: self.stops.get(&stop_time.stop_id).unwrap(),
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stop_time: stop_time,
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trip: &trip,
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departure_time: NaiveTime::from_num_seconds_from_midnight_opt(stop_timestamp, 0).unwrap()
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};
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arrivals.push(arrival);
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@ -35,4 +35,6 @@ pub struct Arrival<'a> {
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pub departure_time: NaiveTime,
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pub route: &'a Route,
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pub stop: &'a Stop,
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pub stop_time: &'a RawStopTime,
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pub trip: &'a RawTrip,
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}
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31
src/main.rs
31
src/main.rs
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@ -1,6 +1,6 @@
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mod gtfs;
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mod renderer;
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use std::{collections::{HashSet, btree_map::Entry}, ops::Add, process, thread::Builder, time::SystemTime};
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use std::{collections::{HashSet, btree_map::Entry}, ops::Add, process, rc::Rc, thread::Builder, time::SystemTime};
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use chrono::{DateTime, Duration, Local, NaiveTime};
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use log::{Metadata, Record, debug, error, info};
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use sdl3::event::Event;
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@ -15,7 +15,7 @@ struct RefreshDataEvent {
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}
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fn refresh_schedule<'a>(gtfs: &'a Gtfs, screen: &'a Screen<'a>) -> Vec<Arrival<'a>> {
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fn refresh_schedule<'a>(gtfs: &'a Gtfs, screen: &mut Screen<'a>) -> Vec<Arrival<'a>> {
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let current_timestamp = SystemTime::now();
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let datetime: DateTime<Local> = current_timestamp.clone().into();
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let mut next_arrivals: Vec<Arrival<'_>> = gtfs.get_next_arrivals_for(&datetime);
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@ -32,17 +32,22 @@ fn refresh_schedule<'a>(gtfs: &'a Gtfs, screen: &'a Screen<'a>) -> Vec<Arrival<'
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// Create the DisplayData structure to render the information to screen
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let current_time = Local::now().time();
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let display_data: DisplayData = DisplayData {
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lines: Vec::<DisplayEntry<'_>>::from(next_arrivals.iter().map(|arrival| {
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DisplayEntry {
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destination: &String::from("Foo"),
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route: &arrival.route.short_name.or(arrival.route.long_name).unwrap(),
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due_in: (arrival.departure_time - current_time).num_minutes().try_into().unwrap()
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}
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}).collect()),
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let mut display_data: DisplayData = DisplayData {
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lines: Vec::<DisplayEntry>::new(),
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status: None
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};
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display_data.lines.extend(next_arrivals.iter().map(|arrival| -> DisplayEntry {
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DisplayEntry {
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destination: arrival.stop_time.stop_headsign.clone()
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.or(arrival.trip.trip_headsign.clone()
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.or(Option::Some(String::from("Unknown")
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))).unwrap(),
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route: arrival.route.short_name.clone().or(arrival.route.long_name.clone()).unwrap(),
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due_in: (arrival.departure_time - current_time).num_minutes().try_into().unwrap()
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}
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}));
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screen.update_information(&display_data);
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return next_arrivals;
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}
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@ -87,7 +92,7 @@ fn main() {
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// Init screen
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info!("Initializing screen...");
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let screen = Screen::init(&screen_prefs);
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let mut screen = Screen::init(&screen_prefs);
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info!("Startup done.");
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// Register our custom event and obtain the event-related objects to interact with the event loop
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@ -110,6 +115,8 @@ fn main() {
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};
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}).unwrap();
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// Do an initial refresh
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let _ = refresh_schedule(>fs, &mut screen);
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// Main event loop
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loop {
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@ -127,7 +134,7 @@ fn main() {
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let refresh_data = event.as_user_event_type::<RefreshDataEvent>();
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if refresh_data.is_some() {
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debug!("Received user event: {:#?}", refresh_data.unwrap());
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let _data: Vec<Arrival<'_>> = refresh_schedule(>fs, &screen);
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let _data: Vec<Arrival<'_>> = refresh_schedule(>fs, &mut screen);
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debug!("-------------------------------- Refresh done.");
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}
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}
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@ -20,7 +20,7 @@ const TEXT_SIZE: u32 = 160; // Size of the font in pixels
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const XOFFSET_ROUTE: u32 = 24;
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const XOFFSET_DESTINATION: u32 = 300;
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const XOFFSEET_TIME_LEFT: u32 = 1606;
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const INTER_LINE_SPACE: i32 = -15;
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const INTER_LINE_OVERLAP: u32 = 15;
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impl Screen<'_> {
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@ -46,12 +46,14 @@ impl Screen<'_> {
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let due_in_mins = (entry.due_in / 60) as i32;
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let arrival_color: Color = self.color_for(due_in_mins);
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self.do_print_at(line, entry.route, XOFFSET_ROUTE);
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self.do_print_at(line, entry.destination, XOFFSET_DESTINATION);
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self.color = COLOR_LCD_AMBER;
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self.do_print_at(line, &entry.route, XOFFSET_ROUTE);
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self.do_print_at(line, &entry.destination, XOFFSET_DESTINATION);
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self.color = arrival_color;
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self.do_print_at(line, &due_in_mins.to_string(), XOFFSEET_TIME_LEFT);
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};
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if display_data.status.is_none() {
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if display_data.status.is_some() {
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self.do_print_at(5, display_data.status.as_ref().unwrap(), 0);
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}
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self.do_update();
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@ -65,12 +67,12 @@ impl Screen<'_> {
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fn do_print_at(&mut self, line: u32, text: &str, left: u32) -> u32 {
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let rendered_text = self.font.render(text).solid(Color::RED).unwrap();
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let rendered_text = self.font.render(text).solid(self.color).unwrap();
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let texture_creator = self.canvas.texture_creator();
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let texture = rendered_text.as_texture(&texture_creator).unwrap();
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self.canvas.copy(&texture,
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let _= self.canvas.copy(&texture,
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Rect::new(0, 0, rendered_text.width(), rendered_text.height()),
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Rect::new(left.try_into().unwrap(), (line * rendered_text.height()).try_into().unwrap(), rendered_text.width(), rendered_text.height()));
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Rect::new(left.try_into().unwrap(), (line * (rendered_text.height() - INTER_LINE_OVERLAP)).try_into().unwrap(), rendered_text.width(), rendered_text.height()));
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return left + rendered_text.width();
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}
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@ -112,6 +114,7 @@ impl Screen<'_> {
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let mut screen: Screen = Screen {
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canvas: Box::new(window.into_canvas()),
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font: Box::new(font),
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color: COLOR_LCD_AMBER,
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context: Box::new(sdl_context),
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};
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@ -1,9 +1,10 @@
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use sdl3::{Sdl, render::Canvas, ttf::Font, video::Window};
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use sdl3::{Sdl, pixels::Color, render::Canvas, ttf::Font, video::Window};
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pub struct Screen<'a> {
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pub(crate) canvas: Box<Canvas<Window>>,
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pub(crate) font: Box<Font<'a>>,
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pub(crate) color: Color,
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pub(crate) context: Box<Sdl>
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}
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@ -14,13 +15,13 @@ pub struct Prefs {
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}
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pub struct DisplayEntry<'a> {
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pub route: &'a String,
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pub destination: &'a String,
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pub struct DisplayEntry {
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pub route: String,
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pub destination: String,
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pub due_in: i32,
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}
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pub struct DisplayData<'a> {
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pub lines: Vec<DisplayEntry<'a>>,
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pub struct DisplayData {
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pub lines: Vec<DisplayEntry>,
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pub status: Option<String>
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}
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