Changed SweepPoints names, included KTO frequency set. Use matches! macro.

Co-authored-by: Copilot <copilot@github.com>
This commit is contained in:
2026-06-04 08:26:39 +02:00
parent b094264c9a
commit 0ea5850b3f
2 changed files with 29 additions and 13 deletions

View File

@@ -292,7 +292,7 @@ pub async fn start_sweep_impedance_handler(context: SpawnCtx, header: VarHeader,
// Init the sequencer
let response = match (rqst.lead_mode, rqst.points) {
(BioImpedanceLeadMode::TwoLead, SweepPoints::Eight) => {
(BioImpedanceLeadMode::TwoLead, SweepPoints::Partial) => {
context.impedance_setup.lock().await.running_mode = RunningMode::SweepFrequency2Lead(rqst.points);
const SIZE: usize = 8;
context
@@ -307,7 +307,7 @@ pub async fn start_sweep_impedance_handler(context: SpawnCtx, header: VarHeader,
periods_per_dft_18: Vec::new(),
})
}
(BioImpedanceLeadMode::TwoLead, SweepPoints::Eighteen) => {
(BioImpedanceLeadMode::TwoLead, SweepPoints::Full | SweepPoints::KTO) => {
context.impedance_setup.lock().await.running_mode = RunningMode::SweepFrequency2Lead(rqst.points);
const SIZE: usize = 18;
context
@@ -322,7 +322,7 @@ pub async fn start_sweep_impedance_handler(context: SpawnCtx, header: VarHeader,
periods_per_dft_18: periods,
})
}
(BioImpedanceLeadMode::FourLead, SweepPoints::Eight) => {
(BioImpedanceLeadMode::FourLead, SweepPoints::Partial) => {
info!("Start impedance spectroscopy 4-lead with 8 points");
context.impedance_setup.lock().await.running_mode = RunningMode::SweepFrequency4Lead(rqst.points);
const SIZE: usize = 8;
@@ -338,7 +338,7 @@ pub async fn start_sweep_impedance_handler(context: SpawnCtx, header: VarHeader,
periods_per_dft_18: Vec::new(),
})
}
(BioImpedanceLeadMode::FourLead, SweepPoints::Eighteen) => {
(BioImpedanceLeadMode::FourLead, SweepPoints::Full | SweepPoints::KTO) => {
info!("Start impedance spectroscopy 4-lead with 18 points");
context.impedance_setup.lock().await.running_mode = RunningMode::SweepFrequency4Lead(rqst.points);
const SIZE: usize = 18;
@@ -400,8 +400,17 @@ pub async fn start_sweep_impedance_handler(context: SpawnCtx, header: VarHeader,
pub async fn stop_impedance_handler(context: &mut Context, _header: VarHeader, _rqst: ()) -> bool {
info!("Stop impedance measurement");
let was_busy = context.impedance_setup.lock().await.running_mode;
if was_busy == RunningMode::SingleFrequency2Lead || was_busy == RunningMode::SingleFrequency4Lead || was_busy == RunningMode::SweepFrequency2Lead(SweepPoints::Eight) || was_busy == RunningMode::SweepFrequency2Lead(SweepPoints::Eighteen) || was_busy == RunningMode::SweepFrequency4Lead(SweepPoints::Eight) || was_busy == RunningMode::SweepFrequency4Lead(SweepPoints::Eighteen) {
let is_impedance_running = matches!(
was_busy,
RunningMode::SingleFrequency2Lead |
RunningMode::SingleFrequency4Lead |
RunningMode::SweepFrequency2Lead(_) |
RunningMode::SweepFrequency4Lead(_)
);
if is_impedance_running {
STOP.signal(());
}
was_busy == RunningMode::SingleFrequency2Lead || was_busy == RunningMode::SingleFrequency4Lead || was_busy == RunningMode::SweepFrequency2Lead(SweepPoints::Eight) || was_busy == RunningMode::SweepFrequency2Lead(SweepPoints::Eighteen) || was_busy == RunningMode::SweepFrequency4Lead(SweepPoints::Eight) || was_busy == RunningMode::SweepFrequency4Lead(SweepPoints::Eighteen)
is_impedance_running
}

View File

@@ -609,11 +609,11 @@ impl ImpedanceSetup {
// Calibrate Rtia
match number_of_points {
SweepPoints::Eight => {
SweepPoints::Partial => {
let results = self.calibrate_rtia_multiple::<8>(number_of_points).await.unwrap();
self.rtia_calibrated = RtiaCalibrated::Vec8(results);
},
SweepPoints::Eighteen => {
SweepPoints::Full | SweepPoints::KTO => {
let results = self.calibrate_rtia_multiple::<18>(number_of_points).await.unwrap();
self.rtia_calibrated = RtiaCalibrated::Vec18(results);
},
@@ -772,7 +772,14 @@ pub async fn impedance_setup_readout_task(mut pin: ExtiInput<'static>, impedance
let mut impedance_setup = impedance_setup.lock().await;
// Trigger the sequencer again
if impedance_setup.running_mode == RunningMode::SingleFrequency2Lead || impedance_setup.running_mode == RunningMode::SingleFrequency4Lead || impedance_setup.running_mode == RunningMode::SweepFrequency2Lead(SweepPoints::Eight) || impedance_setup.running_mode == RunningMode::SweepFrequency2Lead(SweepPoints::Eighteen) || impedance_setup.running_mode == RunningMode::SweepFrequency4Lead(SweepPoints::Eight) || impedance_setup.running_mode == RunningMode::SweepFrequency4Lead(SweepPoints::Eighteen) {
let is_impedance_running = matches! {
impedance_setup.running_mode,
RunningMode::SingleFrequency2Lead |
RunningMode::SingleFrequency4Lead |
RunningMode::SweepFrequency2Lead(_) |
RunningMode::SweepFrequency4Lead(_)
};
if is_impedance_running {
impedance_setup.start_measurement().await;
}
@@ -850,11 +857,11 @@ pub async fn impedance_setup_readout_task(mut pin: ExtiInput<'static>, impedance
let result = calculate_impedance_2_lead(chunk.try_into().unwrap());
match points {
SweepPoints::Eight => {
SweepPoints::Partial => {
impedance_output.magnitudes_8.push(result.magnitude).ok();
impedance_output.phases_8.push(result.phase).ok();
}
SweepPoints::Eighteen => {
SweepPoints::Full | SweepPoints::KTO => {
impedance_output.magnitudes_18.push(result.magnitude).ok();
impedance_output.phases_18.push(result.phase).ok();
}
@@ -885,7 +892,7 @@ pub async fn impedance_setup_readout_task(mut pin: ExtiInput<'static>, impedance
};
match (&points, &impedance_setup.rtia_calibrated) {
(SweepPoints::Eight, RtiaCalibrated::Vec8(cal_vec)) => {
(SweepPoints::Partial, RtiaCalibrated::Vec8(cal_vec)) => {
// Take 4 samples per frequency point
for (i, chunk) in data_slice.chunks(4).enumerate() {
let cal = &cal_vec[i];
@@ -895,7 +902,7 @@ pub async fn impedance_setup_readout_task(mut pin: ExtiInput<'static>, impedance
impedance_output.phases_8.push(result.phase).ok();
}
},
(SweepPoints::Eighteen, RtiaCalibrated::Vec18(cal_vec)) => {
(SweepPoints::Full | SweepPoints::KTO, RtiaCalibrated::Vec18(cal_vec)) => {
// Take 4 samples per frequency point
for (i, chunk) in data_slice.chunks(4).enumerate() {
let cal = &cal_vec[i];