174 lines
5.9 KiB
C++
174 lines
5.9 KiB
C++
/**
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* @file fuel_schedule.cpp
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*
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* Handles injection scheduling
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*/
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#include "pch.h"
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#include "event_registry.h"
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#if EFI_ENGINE_CONTROL
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FuelSchedule::FuelSchedule() {
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for (int cylinderIndex = 0; cylinderIndex < MAX_CYLINDER_COUNT; cylinderIndex++) {
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elements[cylinderIndex].ownIndex = cylinderIndex;
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}
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}
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void FuelSchedule::invalidate() {
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isReady = false;
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}
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void FuelSchedule::resetOverlapping() {
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for (size_t i = 0; i < efi::size(enginePins.injectors); i++) {
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enginePins.injectors[i].reset();
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}
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}
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// Determines how much to adjust injection opening angle based on the injection's duration and the current phasing mode
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static float getInjectionAngleCorrection(float fuelMs, float oneDegreeUs) {
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auto mode = engineConfiguration->injectionTimingMode;
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if (mode == InjectionTimingMode::Start) {
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// Start of injection gets no correction for duration
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return 0;
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}
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efiAssert(CUSTOM_ERR_ASSERT, !cisnan(fuelMs), "NaN fuelMs", false);
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angle_t injectionDurationAngle = MS2US(fuelMs) / oneDegreeUs;
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efiAssert(CUSTOM_ERR_ASSERT, !cisnan(injectionDurationAngle), "NaN injectionDurationAngle", false);
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assertAngleRange(injectionDurationAngle, "injectionDuration_r", CUSTOM_INJ_DURATION);
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if (mode == InjectionTimingMode::Center) {
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// Center of injection is half-corrected for duration
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return injectionDurationAngle * 0.5f;
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} else {
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// End of injection gets "full correction" so we advance opening by the full duration
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return injectionDurationAngle;
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}
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}
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/**
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* @returns false in case of error, true if success
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*/
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bool FuelSchedule::addFuelEventsForCylinder(int i ) {
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floatus_t oneDegreeUs = engine->rpmCalculator.oneDegreeUs; // local copy
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if (cisnan(oneDegreeUs)) {
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// in order to have fuel schedule we need to have current RPM
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// wonder if this line slows engine startup?
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return false;
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}
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// injection phase may be scheduled by injection end, so we need to step the angle back
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// for the duration of the injection
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angle_t injectionDurationAngle = getInjectionAngleCorrection(engine->injectionDuration, oneDegreeUs);
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// User configured offset - degrees after TDC combustion
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floatus_t injectionOffset = engine->engineState.injectionOffset;
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if (cisnan(injectionOffset)) {
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// injection offset map not ready - we are not ready to schedule fuel events
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return false;
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}
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angle_t openingAngle = injectionOffset - injectionDurationAngle;
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assertAngleRange(openingAngle, "openingAngle_r", CUSTOM_ERR_6554);
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injection_mode_e mode = engine->getCurrentInjectionMode();
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// We need two outputs if:
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// - we are running batch fuel, and have "use two wire batch" enabled
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// - running mode is sequential, but cranking mode is batch, so we should run two wire batch while cranking
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// (if we didn't, only half of injectors would fire while cranking)
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bool isTwoWireBatch = engineConfiguration->twoWireBatchInjection || (engineConfiguration->injectionMode == IM_SEQUENTIAL);
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int injectorIndex;
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if (mode == IM_SIMULTANEOUS || mode == IM_SINGLE_POINT) {
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// These modes only have one injector
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injectorIndex = 0;
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} else if (mode == IM_SEQUENTIAL || (mode == IM_BATCH && isTwoWireBatch)) {
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// Map order index -> cylinder index (firing order)
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injectorIndex = getCylinderId(i) - 1;
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} else if (mode == IM_BATCH) {
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// Loop over the first half of the firing order twice
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injectorIndex = i % (engineConfiguration->specs.cylindersCount / 2);
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} else {
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firmwareError(CUSTOM_OBD_UNEXPECTED_INJECTION_MODE, "Unexpected injection mode %d", mode);
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injectorIndex = 0;
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}
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InjectorOutputPin *secondOutput;
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if (mode == IM_BATCH && isTwoWireBatch) {
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/**
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* also fire the 2nd half of the injectors so that we can implement a batch mode on individual wires
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*/
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// Compute the position of this cylinder's twin in the firing order
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// Each injector gets fired as a primary (the same as sequential), but also
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// fires the injector 360 degrees later in the firing order.
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int secondOrder = (i + (engineConfiguration->specs.cylindersCount / 2)) % engineConfiguration->specs.cylindersCount;
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int secondIndex = getCylinderId(secondOrder) - 1;
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secondOutput = &enginePins.injectors[secondIndex];
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} else {
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secondOutput = nullptr;
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}
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InjectorOutputPin *output = &enginePins.injectors[injectorIndex];
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bool isSimultanious = mode == IM_SIMULTANEOUS;
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InjectionEvent *ev = &elements[i];
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ev->outputs[0] = output;
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ev->outputs[1] = secondOutput;
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ev->isSimultanious = isSimultanious;
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// Stash the cylinder number so we can select the correct fueling bank later
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ev->cylinderNumber = injectorIndex;
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if (!isSimultanious && !output->isInitialized()) {
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// todo: extract method for this index math
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warning(CUSTOM_OBD_INJECTION_NO_PIN_ASSIGNED, "no_pin_inj #%s", output->name);
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}
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// Convert from cylinder-relative to cylinder-1-relative
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openingAngle += getCylinderAngle(i, ev->cylinderNumber);
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if (TRIGGER_WAVEFORM(getSize()) < 1) {
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warning(CUSTOM_ERR_NOT_INITIALIZED_TRIGGER, "uninitialized TriggerWaveform");
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return false;
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}
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efiAssert(CUSTOM_ERR_ASSERT, !cisnan(openingAngle), "findAngle#3", false);
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assertAngleRange(openingAngle, "findAngle#a33", CUSTOM_ERR_6544);
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ev->injectionStart.setAngle(openingAngle);
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#if EFI_UNIT_TEST
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printf("registerInjectionEvent openingAngle=%.2f trgIndex=%d inj %d\r\n", openingAngle, ev->injectionStart.triggerEventIndex, injectorIndex);
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#endif
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return true;
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}
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void FuelSchedule::addFuelEvents() {
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for (size_t cylinderIndex = 0; cylinderIndex < engineConfiguration->specs.cylindersCount; cylinderIndex++) {
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bool result = addFuelEventsForCylinder(cylinderIndex);
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if (!result) {
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invalidate();
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return;
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}
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}
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// We made it through all cylinders, mark the schedule as ready so it can be used
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isReady = true;
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}
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void FuelSchedule::onTriggerTooth(size_t toothIndex, int rpm, efitick_t nowNt) {
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// Wait for schedule to be built - this happens the first time we get RPM
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if (!isReady) {
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return;
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}
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for (size_t i = 0; i < engineConfiguration->specs.cylindersCount; i++) {
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elements[i].onTriggerTooth(toothIndex, rpm, nowNt);
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}
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}
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#endif
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