mirror of https://github.com/rusefi/rusefi.git
unused parameters
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3315aa9434
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1302f780b2
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@ -195,14 +195,14 @@ void FuelSchedule::addFuelEvents() {
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isReady = true;
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}
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void FuelSchedule::onTriggerTooth(int rpm, efitick_t nowNt, float currentPhase, float nextPhase) {
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void FuelSchedule::onTriggerTooth(efitick_t nowNt, float currentPhase, float nextPhase) {
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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->cylindersCount; i++) {
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elements[i].onTriggerTooth(rpm, nowNt, currentPhase, nextPhase);
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elements[i].onTriggerTooth(nowNt, currentPhase, nextPhase);
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}
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}
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@ -20,7 +20,7 @@ public:
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bool update();
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// Call this every decoded trigger tooth. It will schedule any relevant events for this injector.
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void onTriggerTooth(int rpm, efitick_t nowNt, float currentPhase, float nextPhase);
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void onTriggerTooth(efitick_t nowNt, float currentPhase, float nextPhase);
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WallFuel& getWallFuel();
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@ -66,7 +66,7 @@ public:
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void invalidate();
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// Call this every trigger tooth. It will schedule all required injector events.
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void onTriggerTooth(int rpm, efitick_t nowNt, float currentPhase, float nextPhase);
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void onTriggerTooth(efitick_t nowNt, float currentPhase, float nextPhase);
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/**
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* this method schedules all fuel events for an engine cycle
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@ -64,7 +64,7 @@ void turnInjectionPinLow(InjectionEvent *event) {
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event->update();
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}
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void InjectionEvent::onTriggerTooth(int rpm, efitick_t nowNt, float currentPhase, float nextPhase) {
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void InjectionEvent::onTriggerTooth(efitick_t nowNt, float currentPhase, float nextPhase) {
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auto eventAngle = injectionStartAngle;
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// Determine whether our angle is going to happen before (or near) the next tooth
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@ -164,7 +164,7 @@ void InjectionEvent::onTriggerTooth(int rpm, efitick_t nowNt, float currentPhase
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#endif /* EFI_DEFAILED_LOGGING */
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}
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static void handleFuel(int rpm, efitick_t nowNt, float currentPhase, float nextPhase) {
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static void handleFuel(efitick_t nowNt, float currentPhase, float nextPhase) {
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ScopePerf perf(PE::HandleFuel);
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efiAssertVoid(ObdCode::CUSTOM_STACK_6627, hasLotsOfRemainingStack(), "lowstck#3");
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@ -191,7 +191,7 @@ static void handleFuel(int rpm, efitick_t nowNt, float currentPhase, float nextP
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}
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#endif /* FUEL_MATH_EXTREME_LOGGING */
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fs->onTriggerTooth(rpm, nowNt, currentPhase, nextPhase);
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fs->onTriggerTooth(nowNt, currentPhase, nextPhase);
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}
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/**
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@ -240,7 +240,7 @@ void mainTriggerCallback(uint32_t trgEventIndex, efitick_t edgeTimestamp, angle_
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* For fuel we schedule start of injection based on trigger angle, and then inject for
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* specified duration of time
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*/
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handleFuel(rpm, edgeTimestamp, currentPhase, nextPhase);
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handleFuel(edgeTimestamp, currentPhase, nextPhase);
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engine->module<TriggerScheduler>()->scheduleEventsUntilNextTriggerTooth(
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rpm, edgeTimestamp, currentPhase, nextPhase);
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@ -43,7 +43,7 @@ TEST(injectionScheduling, InjectionIsScheduled) {
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event.injectionStartAngle = 125;
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// We are at 120 degrees now, next tooth 130
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event.onTriggerTooth(1000, nowNt, 120, 130);
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event.onTriggerTooth(nowNt, 120, 130);
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}
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TEST(injectionScheduling, InjectionIsScheduledBeforeWraparound) {
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@ -82,7 +82,7 @@ TEST(injectionScheduling, InjectionIsScheduledBeforeWraparound) {
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event.injectionStartAngle = 715;
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// We are at 710 degrees now, next tooth 010
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event.onTriggerTooth(1000, nowNt, 710, 010);
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event.onTriggerTooth(nowNt, 710, 010);
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}
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TEST(injectionScheduling, InjectionIsScheduledAfterWraparound) {
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@ -121,7 +121,7 @@ TEST(injectionScheduling, InjectionIsScheduledAfterWraparound) {
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event.injectionStartAngle = 5;
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// We are at 710 degrees now, next tooth 010
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event.onTriggerTooth(1000, nowNt, 710, 010);
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event.onTriggerTooth(nowNt, 710, 010);
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}
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TEST(injectionScheduling, InjectionNotScheduled) {
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@ -155,5 +155,5 @@ TEST(injectionScheduling, InjectionNotScheduled) {
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event.injectionStartAngle = 125;
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// We are at 130 degrees now, next tooth 140
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event.onTriggerTooth(1000, nowNt, 130, 140);
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event.onTriggerTooth(nowNt, 130, 140);
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}
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