mirror of
https://github.com/cjfranko/NTP-Timeturner.git
synced 2025-11-08 10:22:02 +00:00
fixed to accept incoming changes,
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1 changed files with 0 additions and 285 deletions
285
src/ui.rs
285
src/ui.rs
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@ -1,287 +1,3 @@
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<<<<<<< HEAD
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// src/ui.rs
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use std::{
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io::{stdout, Write},
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process::{self, Command},
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sync::{Arc, Mutex},
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thread,
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time::{Duration, Instant},
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};
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use std::collections::VecDeque;
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use chrono::{
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DateTime, Local, Timelike, Utc,
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Duration as ChronoDuration,
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};
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use crossterm::{
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cursor::{Hide, MoveTo, Show},
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event::{poll, read, Event, KeyCode},
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execute, queue,
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style::{Color, Print, ResetColor, SetForegroundColor},
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terminal::{self, Clear, ClearType, EnterAlternateScreen, LeaveAlternateScreen},
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};
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use get_if_addrs::get_if_addrs;
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use crate::sync_logic::LtcState;
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/// Check if Chrony is active
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fn ntp_service_active() -> bool {
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if let Ok(output) = Command::new("systemctl").args(&["is-active", "chrony"]).output() {
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output.status.success()
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&& String::from_utf8_lossy(&output.stdout).trim() == "active"
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} else {
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false
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}
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}
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/// Toggle Chrony (not used yet)
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#[allow(dead_code)]
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fn ntp_service_toggle(start: bool) {
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let action = if start { "start" } else { "stop" };
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let _ = Command::new("systemctl").args(&[action, "chrony"]).status();
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}
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pub fn start_ui(
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state: Arc<Mutex<LtcState>>,
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serial_port: String,
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offset: Arc<Mutex<i64>>,
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) {
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let mut stdout = stdout();
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execute!(stdout, EnterAlternateScreen, Hide).unwrap();
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terminal::enable_raw_mode().unwrap();
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let mut logs: VecDeque<String> = VecDeque::with_capacity(10);
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let mut out_of_sync_since: Option<Instant> = None;
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let mut last_delta_update = Instant::now() - Duration::from_secs(1);
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let mut cached_delta_ms: i64 = 0;
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let mut cached_delta_frames: i64 = 0;
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loop {
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// 1️⃣ hardware offset
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let hw_offset_ms = *offset.lock().unwrap();
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// 2️⃣ Chrony + interfaces
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let ntp_active = ntp_service_active();
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let interfaces: Vec<String> = get_if_addrs()
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.unwrap_or_default()
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.into_iter()
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.filter(|ifa| !ifa.is_loopback())
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.map(|ifa| ifa.ip().to_string())
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.collect();
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// 3️⃣ jitter + Δ
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{
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let mut st = state.lock().unwrap();
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if let Some(frame) = st.latest.clone() {
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if frame.status == "LOCK" {
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// jitter
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let now_utc = Utc::now();
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let raw = (now_utc - frame.timestamp).num_milliseconds();
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let measured = raw - hw_offset_ms;
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st.record_offset(measured);
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// Δ via UTC lane
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let sub_ms = ((frame.frames as f64 / frame.frame_rate) * 1000.0).round() as i64;
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let ltc_arrival = frame.timestamp
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+ ChronoDuration::milliseconds(hw_offset_ms + sub_ms);
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let delta_ms = (Utc::now() - ltc_arrival).num_milliseconds();
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st.record_clock_delta(delta_ms);
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} else {
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st.clear_offsets();
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st.clear_clock_deltas();
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}
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}
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}
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// 4️⃣ averages & status override
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let (avg_ms, _avg_frames, _, lock_ratio, avg_delta) = {
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let st = state.lock().unwrap();
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(
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st.average_jitter(),
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st.average_frames(),
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st.timecode_match().to_string(),
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st.lock_ratio(),
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st.average_clock_delta(),
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)
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};
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let sync_status = if avg_delta.abs() <= 5 { "IN SYNC" } else { "OUT OF SYNC" };
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// 5️⃣ cache Δ once/sec
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if last_delta_update.elapsed() >= Duration::from_secs(1) {
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cached_delta_ms = avg_delta;
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cached_delta_frames = avg_ms; // or recalc from frame if you like
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last_delta_update = Instant::now();
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}
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// 6️⃣ auto‑sync
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if sync_status == "OUT OF SYNC" {
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if let Some(start) = out_of_sync_since {
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if start.elapsed() >= Duration::from_secs(5) {
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// sync exactly to LTC arrival
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if let Some(frame) = &state.lock().unwrap().latest {
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let sub_ms = ((frame.frames as f64 / frame.frame_rate) * 1000.0).round() as i64;
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let ltc_arrival = frame.timestamp
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+ ChronoDuration::milliseconds(hw_offset_ms + sub_ms);
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// format from UTC instant into local time
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let ts_local: DateTime<Local> =
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DateTime::from(ltc_arrival);
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let ts = format!(
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"{:02}:{:02}:{:02}.{:03}",
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ts_local.hour(),
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ts_local.minute(),
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ts_local.second(),
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ts_local.timestamp_subsec_millis()
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);
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let res = Command::new("sudo").arg("date").arg("-s").arg(&ts).status();
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let entry = if res.as_ref().map_or(false, |s| s.success()) {
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format!("🔄 Auto‑synced to LTC: {}", ts)
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} else {
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"❌ Auto‑sync failed".into()
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};
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if logs.len() == 10 { logs.pop_front(); }
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logs.push_back(entry);
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}
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out_of_sync_since = None;
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}
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} else {
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out_of_sync_since = Some(Instant::now());
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}
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} else {
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out_of_sync_since = None;
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}
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// 7️⃣ header
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queue!(
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stdout,
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MoveTo(0, 0), Clear(ClearType::All),
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MoveTo(2, 1), Print("Have Blue - NTP Timeturner"),
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MoveTo(2, 2), Print(format!("Serial Port : {}", serial_port)),
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MoveTo(2, 3), Print(format!("Chrony Service : {}", if ntp_active { "RUNNING" } else { "MISSING" })),
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MoveTo(2, 4), Print(format!("Interfaces : {}", interfaces.join(", "))),
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).unwrap();
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// 8️⃣ LTC & system clock
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if let Some(frame) = &state.lock().unwrap().latest {
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queue!(
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stdout,
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MoveTo(2, 6), Print(format!("LTC Status : {}", frame.status)),
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MoveTo(2, 7), Print(format!("LTC Timecode : {:02}:{:02}:{:02}:{:02}",
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frame.hours, frame.minutes, frame.seconds, frame.frames
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)),
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MoveTo(2, 8), Print(format!("Frame Rate : {:.2}fps", frame.frame_rate)),
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).unwrap();
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} else {
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queue!(
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stdout,
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MoveTo(2, 6), Print("LTC Status : (waiting)"),
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MoveTo(2, 7), Print("LTC Timecode : …"),
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MoveTo(2, 8), Print("Frame Rate : …"),
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).unwrap();
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}
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// show Pi’s own clock
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let now_local: DateTime<Local> = DateTime::from(Utc::now());
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let sys_ts = format!(
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"{:02}:{:02}:{:02}.{:03}",
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now_local.hour(),
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now_local.minute(),
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now_local.second(),
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now_local.timestamp_subsec_millis()
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);
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queue!(stdout, MoveTo(2, 9), Print(format!("System Clock : {}", sys_ts))).unwrap();
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// 9️⃣ metrics
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let dcol = if cached_delta_ms.abs() < 20 { Color::Green }
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else if cached_delta_ms.abs() < 100 { Color::Yellow }
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else { Color::Red };
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queue!(
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stdout,
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MoveTo(2, 11), SetForegroundColor(dcol),
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Print(format!("Timecode Δ : {:+} ms ({:+} frames)", cached_delta_ms, cached_delta_frames)),
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ResetColor,
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).unwrap();
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let scol = if sync_status == "IN SYNC" { Color::Green } else { Color::Red };
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queue!(
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stdout,
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MoveTo(2, 12), SetForegroundColor(scol),
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Print(format!("Sync Status : {}", sync_status)),
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ResetColor,
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).unwrap();
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let jstatus = if avg_ms.abs() < 10 { "GOOD" }
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else if avg_ms.abs() < 40 { "AVERAGE" }
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else { "BAD" };
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let jcol = if jstatus == "GOOD" { Color::Green }
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else if jstatus == "AVERAGE" { Color::Yellow }
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else { Color::Red };
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queue!(
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stdout,
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MoveTo(2, 13), SetForegroundColor(jcol),
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Print(format!("Sync Jitter : {}", jstatus)),
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ResetColor,
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).unwrap();
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queue!(
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stdout,
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MoveTo(2, 14), Print(format!("Lock Ratio : {:.1}% LOCK", lock_ratio)),
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).unwrap();
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// 10️⃣ footer + logs
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queue!(
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stdout,
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MoveTo(2, 16), Print("[S] Sync sys clock to LTC [Q] Quit"),
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).unwrap();
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for (i, msg) in logs.iter().enumerate() {
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queue!(stdout, MoveTo(2, 18 + i as u16), Print(msg)).unwrap();
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}
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stdout.flush().unwrap();
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// 11️⃣ manual sync & quit
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if poll(Duration::from_millis(50)).unwrap() {
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if let Event::Key(evt) = read().unwrap() {
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match evt.code {
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KeyCode::Char(c) if c.eq_ignore_ascii_case(&'q') => {
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execute!(stdout, Show, LeaveAlternateScreen).unwrap();
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terminal::disable_raw_mode().unwrap();
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process::exit(0);
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}
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KeyCode::Char(c) if c.eq_ignore_ascii_case(&'s') => {
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if let Some(frame) = &state.lock().unwrap().latest {
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// compute the exact timestamp again
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let sub_ms = ((frame.frames as f64 / frame.frame_rate) * 1000.0).round() as i64;
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let ltc_arrival = frame.timestamp
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+ ChronoDuration::milliseconds(hw_offset_ms + sub_ms);
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let ts_local: DateTime<Local> = DateTime::from(ltc_arrival);
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let ts = format!(
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"{:02}:{:02}:{:02}.{:03}",
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ts_local.hour(),
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ts_local.minute(),
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ts_local.second(),
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ts_local.timestamp_subsec_millis()
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);
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let res = Command::new("sudo").arg("date").arg("-s").arg(&ts).status();
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let entry = if res.as_ref().map_or(false, |s| s.success()) {
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format!("✔ Synced exactly to LTC: {}", ts)
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} else {
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"❌ date cmd failed".into()
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};
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if logs.len() == 10 { logs.pop_front() }
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logs.push_back(entry);
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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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thread::sleep(Duration::from_millis(25));
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}
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}
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=======
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// src/ui.rs
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use std::{
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@ -629,4 +345,3 @@ let (avg_ms, _avg_frames, status_str, lock_ratio, avg_delta) = {
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thread::sleep(Duration::from_millis(25));
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}
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}
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>>>>>>> d55d64ee5f8ecd1e3cbd2fce2a280c208c2c9679
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