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@ -398,35 +398,8 @@ void TriggerState::decodeTriggerEvent(trigger_event_e const signal, efitime_t no
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}
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}
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runtimeStatistics();
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runtimeStatistics(signal, nowNt PASS_ENGINE_PARAMETER_SUFFIX);
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if (ENGINE(sensorChartMode) == SC_RPM_ACCEL || ENGINE(sensorChartMode) == SC_DETAILED_RPM) {
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angle_t currentAngle = TRIGGER_SHAPE(eventAngles[currentCycle.current_index]);
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// todo: make this '90' depend on cylinder count?
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angle_t prevAngle = currentAngle - 90;
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fixAngle(prevAngle, "prevAngle");
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// todo: prevIndex should be pre-calculated
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int prevIndex = TRIGGER_SHAPE(triggerIndexByAngle[(int)prevAngle]);
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// now let's get precise angle for that event
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prevAngle = TRIGGER_SHAPE(eventAngles[prevIndex]);
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// todo: re-implement this as a subclass. we need two instances of
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// uint32_t time = nowNt - timeOfLastEvent[prevIndex];
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angle_t angleDiff = currentAngle - prevAngle;
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// todo: angle diff should be pre-calculated
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fixAngle(angleDiff, "angleDiff");
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// float r = (60000000.0 / 360 * US_TO_NT_MULTIPLIER) * angleDiff / time;
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#if EFI_SENSOR_CHART || defined(__DOXYGEN__)
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if (boardConfiguration->sensorChartMode == SC_DETAILED_RPM) {
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// scAddData(currentAngle, r);
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} else {
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// scAddData(currentAngle, r / instantRpmValue[prevIndex]);
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}
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#endif
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// instantRpmValue[currentCycle.current_index] = r;
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// timeOfLastEvent[currentCycle.current_index] = nowNt;
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}
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}
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void configure3_1_cam(TriggerShape *s, operation_mode_e operationMode DECLARE_ENGINE_PARAMETER_SUFFIX) {
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@ -93,7 +93,7 @@ public:
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void reset();
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void resetRunningCounters();
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virtual void runtimeStatistics();
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virtual void runtimeStatistics(trigger_event_e const signal, efitime_t nowNt DECLARE_ENGINE_PARAMETER_SUFFIX);
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uint32_t runningRevolutionCounter;
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/**
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@ -112,11 +112,15 @@ private:
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efitime_t prevCycleDuration;
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};
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/**
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* the reason for sub-class is simply to save RAM but not having statisics in the trigger initialization instance
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*/
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class TriggerStateWithRunningStatistics : public TriggerState {
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public:
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uint32_t timeOfLastEvent[PWM_PHASE_MAX_COUNT];
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float instantRpmValue[PWM_PHASE_MAX_COUNT];
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virtual void runtimeStatistics();
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virtual void runtimeStatistics(trigger_event_e const signal, efitime_t nowNt DECLARE_ENGINE_PARAMETER_SUFFIX);
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};
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angle_t getEngineCycle(operation_mode_e operationMode);
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@ -24,6 +24,7 @@
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#include "trigger_decoder.h"
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#include "engine_math.h"
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#include "trigger_universal.h"
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#include "sensor_chart.h"
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EXTERN_ENGINE;
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@ -205,12 +206,37 @@ void TriggerState::resetRunningCounters() {
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runningOrderingErrorCounter = 0;
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}
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void TriggerState::runtimeStatistics() {
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void TriggerState::runtimeStatistics(trigger_event_e const signal, efitime_t nowNt DECLARE_ENGINE_PARAMETER_SUFFIX) {
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// empty base implementation
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}
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void TriggerStateWithRunningStatistics::runtimeStatistics() {
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// empty base implementation
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void TriggerStateWithRunningStatistics::runtimeStatistics(trigger_event_e const signal, efitime_t nowNt DECLARE_ENGINE_PARAMETER_SUFFIX) {
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if (ENGINE(sensorChartMode) == SC_RPM_ACCEL || ENGINE(sensorChartMode) == SC_DETAILED_RPM) {
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angle_t currentAngle = TRIGGER_SHAPE(eventAngles[currentCycle.current_index]);
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// todo: make this '90' depend on cylinder count?
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angle_t prevAngle = currentAngle - 90;
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fixAngle(prevAngle, "prevAngle");
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// todo: prevIndex should be pre-calculated
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int prevIndex = TRIGGER_SHAPE(triggerIndexByAngle[(int)prevAngle]);
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// now let's get precise angle for that event
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prevAngle = TRIGGER_SHAPE(eventAngles[prevIndex]);
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uint32_t time = nowNt - timeOfLastEvent[prevIndex];
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angle_t angleDiff = currentAngle - prevAngle;
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// todo: angle diff should be pre-calculated
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fixAngle(angleDiff, "angleDiff");
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float r = (60000000.0 / 360 * US_TO_NT_MULTIPLIER) * angleDiff / time;
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#if EFI_SENSOR_CHART || defined(__DOXYGEN__)
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if (boardConfiguration->sensorChartMode == SC_DETAILED_RPM) {
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scAddData(currentAngle, r);
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} else {
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scAddData(currentAngle, r / instantRpmValue[prevIndex]);
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}
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#endif
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instantRpmValue[currentCycle.current_index] = r;
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timeOfLastEvent[currentCycle.current_index] = nowNt;
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}
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}
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efitime_t TriggerState::getTotalEventCounter() {
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