mirror of
https://github.com/hubaldv/bioz-host-rs.git
synced 2025-12-06 05:11:17 +00:00
Included setting dft number from gui.
This commit is contained in:
35
src/app.rs
35
src/app.rs
@@ -6,7 +6,7 @@ use std::sync::atomic::{AtomicBool, Ordering};
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use atomic_float::AtomicF32;
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use tokio::{sync::mpsc::{Sender}};
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use eframe::egui::{self, Button, CollapsingHeader, Color32, DragValue, Key, Label, Layout, Modifiers};
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use eframe::egui::{self, Button, CollapsingHeader, Color32, ComboBox, DragValue, Key, Label, Layout, Modifiers};
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use egui_plot::{Corner, Legend, Line, Plot, PlotPoints, Points, PlotBounds};
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use egui_dock::{DockArea, DockState, Style};
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@@ -14,6 +14,15 @@ use crate::plot::TimeSeriesPlot;
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use crate::signals::SingleFrequencySignal;
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use crate::icd::IcdDftNum;
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const DFTNUM_VARIANTS: [IcdDftNum; 13] = [
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IcdDftNum::Num4, IcdDftNum::Num8, IcdDftNum::Num16, IcdDftNum::Num32,
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IcdDftNum::Num64, IcdDftNum::Num128, IcdDftNum::Num256, IcdDftNum::Num512,
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IcdDftNum::Num1024, IcdDftNum::Num2048, IcdDftNum::Num4096,
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IcdDftNum::Num8192, IcdDftNum::Num16384,
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];
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#[derive(Clone, Copy,Debug, PartialEq, Eq)]
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enum TabActive {
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Single,
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@@ -33,7 +42,8 @@ pub struct App {
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pub on: Arc<Mutex<bool>>,
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tab_active: TabActive,
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pub data_frequency: Arc<AtomicF32>,
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pub single_frequency: Arc<Mutex<u32>>
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pub single_frequency: Arc<Mutex<u32>>,
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pub dft_num: Arc<Mutex<IcdDftNum>>,
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}
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struct TabViewer {
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@@ -43,6 +53,7 @@ struct TabViewer {
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phase_series: Arc<Mutex<TimeSeriesPlot>>,
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on: Arc<Mutex<bool>>,
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single_frequency: Arc<Mutex<u32>>,
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dft_num: Arc<Mutex<IcdDftNum>>,
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show_settings: bool,
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show_settings_toggle: Option<bool>,
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}
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@@ -62,6 +73,21 @@ impl TabViewer {
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}
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ui.label("Hz");
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});
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ui.horizontal(|ui| {
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ui.label("ADC samples per DFT:");
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let mut dft_num = self.dft_num.lock().unwrap();
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let mut index = DFTNUM_VARIANTS.iter().position(|&x| x == *dft_num).unwrap_or(0);
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ComboBox::from_id_salt("Dftnum")
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.width(75.0)
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.show_index(ui, &mut index, DFTNUM_VARIANTS.len(), |i| {
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format!("{}", 1 << (2 + i)) // 2^2 = 4, 2^3 = 8, ..., 2^14 = 16384
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});
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let new_value = DFTNUM_VARIANTS[index];
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if *dft_num != new_value {
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*dft_num = new_value;
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info!("DFTNUM setting changed!");
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};
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});
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});
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}
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});
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@@ -155,6 +181,7 @@ impl App {
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let magnitude_series = Arc::new(Mutex::new(TimeSeriesPlot::new()));
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let phase_series = Arc::new(Mutex::new(TimeSeriesPlot::new()));
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let single_frequency = Arc::new(Mutex::new(50000));
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let dft_num = Arc::new(Mutex::new(IcdDftNum::Num2048));
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let on = Arc::new(Mutex::new(true));
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let tab_active = TabActive::Single;
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@@ -165,6 +192,7 @@ impl App {
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magnitude_series: magnitude_series.clone(),
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phase_series: phase_series.clone(),
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single_frequency: single_frequency.clone(),
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dft_num: dft_num.clone(),
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on: on.clone(),
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show_settings: false,
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show_settings_toggle: None,
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@@ -184,6 +212,7 @@ impl App {
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tab_active,
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data_frequency: Arc::new(AtomicF32::new(0.0)),
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single_frequency,
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dft_num,
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};
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app.update_start_stop();
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@@ -193,7 +222,7 @@ impl App {
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pub fn update_start_stop(&self) {
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match (self.tab_active, *self.on.lock().unwrap()) {
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(TabActive::Single, true) => {
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if let Err(e) = self.run_impedancemeter_tx.try_send(SingleFrequencySignal::Start(*self.single_frequency.lock().unwrap())) {
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if let Err(e) = self.run_impedancemeter_tx.try_send(SingleFrequencySignal::Start(*self.single_frequency.lock().unwrap(), *self.dft_num.lock().unwrap())) {
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eprintln!("Failed to send start command: {:?}", e);
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}
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},
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@@ -78,8 +78,8 @@ async fn main() {
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.subscribe_multi::<icd::ImpedanceOutputTopic>(8)
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.await
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.unwrap();
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client.start_impedancemeter(freq).await.unwrap();
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println!("Started!");
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client.start_impedancemeter(freq, bioz_icd_rs::IcdDftNum::Num2048).await.unwrap();
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println!("Started with dft_num 2048!");
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let dur = Duration::from_millis(dur.into());
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let start = Instant::now();
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@@ -97,8 +97,8 @@ async fn main() {
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};
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match client.start_impedancemeter(freq).await {
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Ok(_) => println!("Started!"),
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match client.start_impedancemeter(freq, bioz_icd_rs::IcdDftNum::Num2048).await {
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Ok(_) => println!("Started with dft_num 2048!"),
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Err(e) => println!("Error starting impedancemeter: {:?}", e),
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};
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@@ -9,6 +9,8 @@ use bioz_icd_rs::{
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StopImpedanceEndpoint,
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};
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use crate::icd::IcdDftNum;
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#[derive(Debug)]
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pub struct WorkbookClient {
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pub client: HostClient<WireError>,
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@@ -64,9 +66,10 @@ impl WorkbookClient {
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pub async fn start_impedancemeter(
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&self,
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frequency: u32,
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dft_number: IcdDftNum,
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) -> Result<(), WorkbookError<Infallible>> {
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self.client
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.send_resp::<StartImpedanceEndpoint>(&StartImpedance { update_frequency: 60, sinus_frequency: frequency })
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.send_resp::<StartImpedanceEndpoint>(&StartImpedance { update_frequency: 60, sinus_frequency: frequency, dft_number})
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.await?;
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Ok(())
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}
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@@ -90,11 +90,11 @@ pub async fn communicate_with_hardware(
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select! {
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Some(frequency) = run_impedancemeter_rx.recv() => {
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match frequency {
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SingleFrequencySignal::Start(freq) => {
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if let Err(e) = workbook_client.start_impedancemeter(freq).await {
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SingleFrequencySignal::Start(freq, dft_num) => {
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if let Err(e) = workbook_client.start_impedancemeter(freq, dft_num).await {
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error!("Failed to start impedancemeter: {:?}", e);
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} else {
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settings.frequency = Some(SingleFrequencySignal::Start(freq));
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settings.frequency = Some(SingleFrequencySignal::Start(freq, dft_num));
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info!("Impedancemeter started at frequency: {}", freq);
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}
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},
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@@ -1,5 +1,7 @@
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use crate::icd::IcdDftNum;
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#[derive(Copy, Clone)]
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pub enum SingleFrequencySignal {
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Start(u32),
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Start(u32, IcdDftNum), // frequency in Hz, DFT number
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Stop,
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}
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