rusefi/firmware/controllers/trigger/main_trigger_callback.cpp

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/**
* @file main_trigger_callback.cpp
* @brief Main logic is here!
*
* See http://rusefi.com/docs/html/
*
* @date Feb 7, 2013
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* @author Andrey Belomutskiy, (c) 2012-2017
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*
* This file is part of rusEfi - see http://rusefi.com
*
* rusEfi is free software; you can redistribute it and/or modify it under the terms of
* the GNU General Public License as published by the Free Software Foundation; either
* version 3 of the License, or (at your option) any later version.
*
* rusEfi is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without
* even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License along with this program.
* If not, see <http://www.gnu.org/licenses/>.
*/
#include "main.h"
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#if EFI_PROD_CODE || defined(__DOXYGEN__)
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#include <nvic.h>
#endif
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#if (!EFI_PROD_CODE && !EFI_SIMULATOR) || defined(__DOXYGEN__)
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#define chThdGetSelfX() 0
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#define getRemainingStack(x) (999999)
#endif
#if EFI_ENGINE_CONTROL || defined(__DOXYGEN__)
#include "main_trigger_callback.h"
#include "efiGpio.h"
#include "engine_math.h"
#include "trigger_central.h"
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#include "spark_logic.h"
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#include "rpm_calculator.h"
#include "signal_executor.h"
#include "engine_configuration.h"
#include "interpolation.h"
#include "advance_map.h"
#include "allsensors.h"
#include "cyclic_buffer.h"
#include "histogram.h"
#include "fuel_math.h"
#include "histogram.h"
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#include "efiGpio.h"
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#if EFI_PROD_CODE || defined(__DOXYGEN__)
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#include "rfiutil.h"
#endif /* EFI_HISTOGRAMS */
#include "LocalVersionHolder.h"
#include "event_queue.h"
#include "engine.h"
#include "efilib2.h"
EXTERN_ENGINE
;
extern bool hasFirmwareErrorFlag;
static LocalVersionHolder triggerVersion;
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static const char *prevOutputName = NULL;
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static Logging *logger;
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#if ! EFI_UNIT_TEST
static pid_s *fuelPidS = &persistentState.persistentConfiguration.engineConfiguration.fuelClosedLoopPid;
static Pid fuelPid(fuelPidS, -100, 100);
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extern TunerStudioOutputChannels tsOutputChannels;
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#endif
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// todo: figure out if this even helps?
//#if defined __GNUC__
//#define RAM_METHOD_PREFIX __attribute__((section(".ram")))
//#else
//#define RAM_METHOD_PREFIX
//#endif
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static void startSimultaniousInjection(InjectionEvent *event) {
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#if EFI_UNIT_TEST || defined(__DOXYGEN__)
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Engine *engine = event->engine;
#endif
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for (int i = 0; i < engine->engineConfiguration->specs.cylindersCount; i++) {
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enginePins.injectors[i].setHigh();
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}
}
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static void endSimultaniousInjection(InjectionEvent *event) {
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#if EFI_UNIT_TEST || defined(__DOXYGEN__)
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Engine *engine = event->engine;
EXPAND_Engine;
#endif
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for (int i = 0; i < engine->engineConfiguration->specs.cylindersCount; i++) {
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enginePins.injectors[i].setLow();
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}
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engine->injectionEvents.addFuelEventsForCylinder(event->ownIndex PASS_ENGINE_PARAMETER_SUFFIX);
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}
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static void tempTurnPinHigh(InjectorOutputPin *output) {
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output->overlappingCounter++;
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#if FUEL_MATH_EXTREME_LOGGING || defined(__DOXYGEN__)
printf("seTurnPinHigh %s %d %d\r\n", output->name, output->overlappingCounter, (int)getTimeNowUs());
#endif /* FUEL_MATH_EXTREME_LOGGING */
if (output->overlappingCounter > 1) {
// if (output->cancelNextTurningInjectorOff) {
// // how comes AutoTest.testFordAspire ends up here?
// } else {
// /**
// * #299
// * this is another kind of overlap which happens in case of a small duty cycle after a large duty cycle
// */
#if FUEL_MATH_EXTREME_LOGGING || defined(__DOXYGEN__)
printf("overlapping, no need to touch pin %s %d\r\n", output->name, (int)getTimeNowUs());
#endif /* FUEL_MATH_EXTREME_LOGGING */
// output->cancelNextTurningInjectorOff = true;
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return;
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// }
}
#if FUEL_MATH_EXTREME_LOGGING || defined(__DOXYGEN__)
const char * w = output->currentLogicValue == true ? "err" : "";
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// scheduleMsg(&sharedLogger, "^ %spin=%s eventIndex %d %d", w, output->name,
// getRevolutionCounter(), getTimeNowUs());
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#endif /* FUEL_MATH_EXTREME_LOGGING */
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output->setHigh();
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}
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// todo: make these macro? kind of a penny optimization if compiler is not smart to inline
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void seTurnPinHigh(InjectionSignalPair *pair) {
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for (int i = 0;i<MAX_WIRES_COUNT;i++) {
InjectorOutputPin *output = pair->outputs[i];
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if (output != NULL) {
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tempTurnPinHigh(output);
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}
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}
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}
static void tempTurnPinLow(InjectorOutputPin *output) {
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#if FUEL_MATH_EXTREME_LOGGING || defined(__DOXYGEN__)
printf("seTurnPinLow %s %d %d\r\n", output->name, output->overlappingCounter, (int)getTimeNowUs());
#endif /* FUEL_MATH_EXTREME_LOGGING */
if (output->cancelNextTurningInjectorOff) {
/**
* in case of fuel schedule overlap between engine cycles,
* and if engine cycle is above say 75% for batch mode on 4 cylinders,
* we will get a secondary overlap between the special injection and a normal injection on the same injector.
* In such a case want to combine these two injection into one continues injection.
* Unneeded turn of injector on is handle while scheduling that second injection, but cancellation
* of special injection end has to be taken care of dynamically
*
*/
output->cancelNextTurningInjectorOff = false;
#if EFI_SIMULATOR || defined(__DOXYGEN__)
printf("was cancelled %s %d\r\n", output->name, (int)getTimeNowUs());
#endif /* EFI_SIMULATOR */
return;
}
#if FUEL_MATH_EXTREME_LOGGING || defined(__DOXYGEN__)
const char * w = output->currentLogicValue == false ? "err" : "";
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// scheduleMsg(&sharedLogger, "- %spin=%s eventIndex %d %d", w, output->name,
// getRevolutionCounter(), getTimeNowUs());
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#endif /* FUEL_MATH_EXTREME_LOGGING */
output->overlappingCounter--;
if (output->overlappingCounter > 0) {
#if FUEL_MATH_EXTREME_LOGGING || defined(__DOXYGEN__)
printf("was overlapping, no need to touch pin %s %d\r\n", output->name, (int)getTimeNowUs());
#endif /* FUEL_MATH_EXTREME_LOGGING */
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return;
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}
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output->setLow();
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}
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void seTurnPinLow(InjectionSignalPair *pair) {
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pair->isScheduled = false;
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for (int i = 0;i<MAX_WIRES_COUNT;i++) {
InjectorOutputPin *output = pair->outputs[i];
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if (output != NULL) {
tempTurnPinLow(output);
}
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}
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efiAssertVoid(pair->event != NULL, "pair event");
#if EFI_UNIT_TEST || defined(__DOXYGEN__)
Engine *engine = pair->event->engine;
EXPAND_Engine;
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#endif
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engine->injectionEvents.addFuelEventsForCylinder(pair->event->ownIndex PASS_ENGINE_PARAMETER_SUFFIX);
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}
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static void seScheduleByTime(scheduling_s *scheduling, efitimeus_t time, schfunc_t callback, InjectionSignalPair *pair) {
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#if FUEL_MATH_EXTREME_LOGGING || defined(__DOXYGEN__)
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InjectorOutputPin *param = pair->outputs[0];
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// scheduleMsg(&sharedLogger, "schX %s %x %d", prefix, scheduling, time);
// scheduleMsg(&sharedLogger, "schX %s", param->name);
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const char *direction = callback == (schfunc_t) &seTurnPinHigh ? "up" : "down";
printf("seScheduleByTime %s %s %d sch=%d\r\n", direction, param->name, (int)time, (int)scheduling);
#endif /* FUEL_MATH_EXTREME_LOGGING || EFI_UNIT_TEST */
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scheduleByTime(scheduling, time, callback, pair);
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}
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static void scheduleFuelInjection(InjectionSignalPair *pair, efitimeus_t nowUs,
floatus_t injectionStartDelayUs, floatus_t durationUs,
InjectionEvent *event DECLARE_ENGINE_PARAMETER_SUFFIX) {
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if (durationUs < 0) {
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warning(CUSTOM_NEGATIVE_DURATION, "duration cannot be negative: %d", durationUs);
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return;
}
if (cisnan(durationUs)) {
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warning(CUSTOM_NAN_DURACTION, "NaN in scheduleFuelInjection", durationUs);
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return;
}
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InjectorOutputPin *output = event->outputs[0];
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#if EFI_PRINTF_FUEL_DETAILS || defined(__DOXYGEN__)
printf("fuelout %s duration %d total=%d\t\n", output->name, (int)durationUs,
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(int)MS2US(getCrankshaftRevolutionTimeMs(ENGINE(rpmCalculator.rpmValue))));
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#endif /*EFI_PRINTF_FUEL_DETAILS */
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if (pair->isScheduled) {
#if EFI_UNIT_TEST || EFI_SIMULATOR || defined(__DOXYGEN__)
printf("still used1 %s %d\r\n", output->name, (int)getTimeNowUs());
#endif /* EFI_UNIT_TEST || EFI_SIMULATOR */
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return; // this InjectionSignalPair is still needed for an extremely long injection scheduled previously
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}
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pair->outputs[0] = output;
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pair->outputs[1] = event->outputs[1];
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scheduling_s * sUp = &pair->signalTimerUp;
scheduling_s * sDown = &pair->signalTimerDown;
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pair->isScheduled = true;
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pair->event = event;
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efitimeus_t turnOnTime = nowUs + (int) injectionStartDelayUs;
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bool isSecondaryOverlapping = turnOnTime < output->overlappingScheduleOffTime;
if (isSecondaryOverlapping) {
output->cancelNextTurningInjectorOff = true;
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#if EFI_UNIT_TEST || EFI_SIMULATOR || defined(__DOXYGEN__)
printf("please cancel %s %d %d\r\n", output->name, (int)getTimeNowUs(), output->overlappingCounter);
#endif /* EFI_UNIT_TEST || EFI_SIMULATOR */
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} else {
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seScheduleByTime(sUp, turnOnTime, (schfunc_t) &seTurnPinHigh, pair);
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}
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efitimeus_t turnOffTime = nowUs + (int) (injectionStartDelayUs + durationUs);
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seScheduleByTime(sDown, turnOffTime, (schfunc_t) &seTurnPinLow, pair);
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}
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static ALWAYS_INLINE void handleFuelInjectionEvent(int injEventIndex, InjectionEvent *event,
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int rpm DECLARE_ENGINE_PARAMETER_SUFFIX) {
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/**
* todo: this is a bit tricky with batched injection. is it? Does the same
* wetting coefficient works the same way for any injection mode, or is something
* x2 or /2?
*/
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const floatms_t injectionDuration = ENGINE(wallFuel).adjust(event->outputs[0]->injectorIndex, ENGINE(fuelMs) PASS_ENGINE_PARAMETER_SUFFIX);
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#if EFI_PRINTF_FUEL_DETAILS || defined(__DOXYGEN__)
printf("fuel fuelMs=%f adjusted=%f\t\n", ENGINE(fuelMs), injectionDuration);
#endif /*EFI_PRINTF_FUEL_DETAILS */
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/**
* todo: pre-calculate 'numberOfInjections'
* see also injectorDutyCycle
*/
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if (!isCrankingR(rpm) && injectionDuration * getNumberOfInjections(engineConfiguration->injectionMode PASS_ENGINE_PARAMETER_SUFFIX) > getEngineCycleDuration(rpm PASS_ENGINE_PARAMETER_SUFFIX)) {
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warning(CUSTOM_TOO_LONG_FUEL_INJECTION, "Too long fuel injection %fms", injectionDuration);
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} else if (isCrankingR(rpm) && injectionDuration * getNumberOfInjections(engineConfiguration->crankingInjectionMode PASS_ENGINE_PARAMETER_SUFFIX) > getEngineCycleDuration(rpm PASS_ENGINE_PARAMETER_SUFFIX)) {
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warning(CUSTOM_TOO_LONG_CRANKING_FUEL_INJECTION, "Too long cranking fuel injection %fms", injectionDuration);
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}
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ENGINE(actualLastInjection) = injectionDuration;
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if (cisnan(injectionDuration)) {
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warning(CUSTOM_OBD_NAN_INJECTION, "NaN injection pulse");
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return;
}
if (injectionDuration < 0) {
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warning(CUSTOM_OBD_NEG_INJECTION, "Negative injection pulse %f", injectionDuration);
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return;
}
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#if FUEL_MATH_EXTREME_LOGGING || defined(__DOXYGEN__)
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scheduleMsg(logger, "handleFuel totalPerCycle=%f", totalPerCycle);
scheduleMsg(logger, "handleFuel engineCycleDuration=%f", engineCycleDuration);
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#endif /* FUEL_MATH_EXTREME_LOGGING */
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floatus_t injectionStartDelayUs = ENGINE(rpmCalculator.oneDegreeUs) * event->injectionStart.angleOffset;
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#if EFI_DEFAILED_LOGGING || defined(__DOXYGEN__)
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scheduleMsg(logger, "handleFuel pin=%s eventIndex %d duration=%fms %d", event->output->name,
eventIndex,
injectionDuration,
getRevolutionCounter());
scheduleMsg(logger, "handleFuel pin=%s delay=%f %d", event->output->name, injectionStartDelayUs,
getRevolutionCounter());
#endif /* EFI_DEFAILED_LOGGING */
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InjectionSignalPair *pair = &ENGINE(fuelActuators[injEventIndex]);
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if (event->isSimultanious) {
/**
* this is pretty much copy-paste of 'scheduleOutput'
* 'scheduleOutput' is currently only used for injection, so maybe it should be
* changed into 'scheduleInjection' and unified? todo: think about it.
*/
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scheduling_s * sUp = &pair->signalTimerUp;
// todo: sequential need this logic as well, just do not forget to clear flag pair->isScheduled = true;
scheduling_s * sDown = &pair->signalTimerDown;
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scheduleTask(sUp, (int) injectionStartDelayUs, (schfunc_t) &startSimultaniousInjection, event);
scheduleTask(sDown, (int) injectionStartDelayUs + MS2US(injectionDuration),
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(schfunc_t) &endSimultaniousInjection, event);
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} else {
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#if EFI_UNIT_TEST || defined(__DOXYGEN__)
printf("scheduling injection angle=%f/delay=%f injectionDuration=%f\r\n", event->injectionStart.angleOffset, injectionStartDelayUs, injectionDuration);
#endif
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// we are in this branch of code only in case of NOT IM_SIMULTANEOUS injection
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// we are ignoring low RPM in order not to handle "engine was stopped to engine now running" transition
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if (rpm > 2 * engineConfiguration->cranking.rpm) {
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const char *outputName = event->outputs[0]->name;
if (prevOutputName == outputName && engineConfiguration->injectionMode != IM_SIMULTANEOUS) {
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warning(CUSTOM_OBD_SKIPPED_FUEL, "looks like skipped fuel event %d %s", getRevolutionCounter(), outputName);
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}
prevOutputName = outputName;
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}
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efitimeus_t nowUs = getTimeNowUs();
floatus_t durationUs = MS2US(injectionDuration);
scheduleFuelInjection(pair, nowUs, injectionStartDelayUs, durationUs, event PASS_ENGINE_PARAMETER_SUFFIX);
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}
}
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static void fuelClosedLoopCorrection(DECLARE_ENGINE_PARAMETER_SIGNATURE) {
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#if ! EFI_UNIT_TEST
if (ENGINE(rpmCalculator.rpmValue) < CONFIG(fuelClosedLoopRpmThreshold) ||
ENGINE(sensors.clt) < CONFIG(fuelClosedLoopCltThreshold) ||
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getTPS(PASS_ENGINE_PARAMETER_SIGNATURE) > CONFIG(fuelClosedLoopTpsThreshold) ||
ENGINE(sensors.currentAfr) < engineConfiguration->fuelClosedLoopAfrLowThreshold ||
ENGINE(sensors.currentAfr) > engineConfiguration->fuelClosedLoopAfrHighThreshold) {
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engine->engineState.fuelPidCorrection = 0;
fuelPid.reset();
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return;
}
engine->engineState.fuelPidCorrection = fuelPid.getValue(ENGINE(engineState.targetAFR), ENGINE(sensors.currentAfr), 1);
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if (engineConfiguration->debugMode == DBG_FUEL_PID_CORRECTION) {
tsOutputChannels.debugFloatField1 = engine->engineState.fuelPidCorrection;
fuelPid.postState(&tsOutputChannels);
}
#endif
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}
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static ALWAYS_INLINE void handleFuel(const bool limitedFuel, uint32_t trgEventIndex, int rpm DECLARE_ENGINE_PARAMETER_SUFFIX) {
efiAssertVoid(getRemainingStack(chThdGetSelfX()) > 128, "lowstck#3");
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efiAssertVoid(trgEventIndex < engine->engineCycleEventCount, "handleFuel/event index");
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if (!isInjectionEnabled(engineConfiguration) || limitedFuel) {
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return;
}
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if (engine->isCylinderCleanupMode) {
return;
}
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/**
* Ignition events are defined by addFuelEvents() according to selected
* fueling strategy
*/
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FuelSchedule *fs = &engine->injectionEvents;
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if (!fs->isReady) {
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fs->addFuelEvents(PASS_ENGINE_PARAMETER_SIGNATURE);
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}
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#if FUEL_MATH_EXTREME_LOGGING || defined(__DOXYGEN__)
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scheduleMsg(logger, "handleFuel ind=%d %d", trgEventIndex, getRevolutionCounter());
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#endif /* FUEL_MATH_EXTREME_LOGGING */
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ENGINE(tpsAccelEnrichment.onNewValue(getTPS(PASS_ENGINE_PARAMETER_SIGNATURE) PASS_ENGINE_PARAMETER_SUFFIX));
ENGINE(engineLoadAccelEnrichment.onEngineCycle(PASS_ENGINE_PARAMETER_SIGNATURE));
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ENGINE(fuelMs) = getInjectionDuration(rpm PASS_ENGINE_PARAMETER_SUFFIX) * CONFIG(globalFuelCorrection);
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for (int injEventIndex = 0; injEventIndex < CONFIG(specs.cylindersCount); injEventIndex++) {
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InjectionEvent *event = &fs->elements[injEventIndex];
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uint32_t eventIndex = event->injectionStart.eventIndex;
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// right after trigger change we are still using old & invalid fuel schedule. good news is we do not change trigger on the fly in real life
// efiAssertVoid(eventIndex < ENGINE(triggerShape.getLength()), "handleFuel/event sch index");
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if (eventIndex != trgEventIndex) {
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continue;
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}
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handleFuelInjectionEvent(injEventIndex, event, rpm PASS_ENGINE_PARAMETER_SUFFIX);
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}
}
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#if EFI_HISTOGRAMS || defined(__DOXYGEN__)
static histogram_s mainLoopHistogram;
#endif /* EFI_HISTOGRAMS */
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void showMainHistogram(void) {
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#if EFI_HISTOGRAMS || defined(__DOXYGEN__)
printHistogram(logger, &mainLoopHistogram);
#endif /* EFI_HISTOGRAMS */
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}
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#if EFI_PROD_CODE || defined(__DOXYGEN__)
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/**
* this field is used as an Expression in IAR debugger
*/
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uint32_t *cyccnt = (uint32_t*) &DWT->CYCCNT;
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#endif
/**
* This is the main trigger event handler.
* Both injection and ignition are controlled from this method.
*/
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void mainTriggerCallback(trigger_event_e ckpSignalType, uint32_t trgEventIndex DECLARE_ENGINE_PARAMETER_SUFFIX) {
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(void) ckpSignalType;
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ENGINE(m.beforeMainTrigger) = GET_TIMESTAMP();
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if (hasFirmwareError()) {
/**
* In case on a major error we should not process any more events.
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* TODO: add 'pin shutdown' invocation somewhere - coils might be still open here!
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*/
return;
}
efiAssertVoid(getRemainingStack(chThdGetSelfX()) > 128, "lowstck#2");
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if (trgEventIndex >= engine->engineCycleEventCount) {
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/**
* this could happen in case of a trigger error, just exit silently since the trigger error is supposed to be handled already
* todo: should this check be somewhere higher so that no trigger listeners are invoked with noise?
*/
return;
}
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int rpm = ENGINE(rpmCalculator.rpmValue);
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if (rpm == 0) {
// this happens while we just start cranking
// todo: check for 'trigger->is_synchnonized?'
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// TODO: add 'pin shutdown' invocation somewhere - coils might be still open here!
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return;
}
if (rpm == NOISY_RPM) {
warning(OBD_Camshaft_Position_Sensor_Circuit_Range_Performance, "noisy trigger");
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// TODO: add 'pin shutdown' invocation somewhere - coils might be still open here!
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return;
}
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bool limitedSpark = rpm > CONFIG(rpmHardLimit);
bool limitedFuel = rpm > CONFIG(rpmHardLimit);
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if (CONFIG(boostCutPressure) !=0) {
if (getMap() > CONFIG(boostCutPressure)) {
limitedSpark = true;
limitedFuel = true;
}
}
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if (limitedSpark || limitedFuel) {
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// todo: this is not really a warning
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warning(CUSTOM_SKIPPING_STROKE, "skipping stroke due to rpm=%d", rpm);
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}
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#if (EFI_HISTOGRAMS && EFI_PROD_CODE) || defined(__DOXYGEN__)
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int beforeCallback = hal_lld_get_counter_value();
#endif
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if (trgEventIndex == 0) {
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if (triggerVersion.isOld()) {
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engine->ignitionEvents.isReady = false; // we need to rebuild ignition schedule
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engine->injectionEvents.isReady = false;
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// todo: move 'triggerIndexByAngle' change into trigger initialization, why is it invoked from here if it's only about trigger shape & optimization?
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prepareOutputSignals(PASS_ENGINE_PARAMETER_SIGNATURE);
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// we need this to apply new 'triggerIndexByAngle' values
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engine->periodicFastCallback(PASS_ENGINE_PARAMETER_SIGNATURE);
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}
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if (CONFIG(fuelClosedLoopCorrectionEnabled)) {
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fuelClosedLoopCorrection(PASS_ENGINE_PARAMETER_SIGNATURE);
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}
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}
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efiAssertVoid(!CONFIG(useOnlyRisingEdgeForTrigger) || CONFIG(ignMathCalculateAtIndex) % 2 == 0, "invalid ignMathCalculateAtIndex");
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if (trgEventIndex == CONFIG(ignMathCalculateAtIndex)) {
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if (CONFIG(externalKnockSenseAdc) != EFI_ADC_NONE) {
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float externalKnockValue = getVoltageDivided("knock", engineConfiguration->externalKnockSenseAdc);
engine->knockLogic(externalKnockValue);
}
}
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/**
* For fuel we schedule start of injection based on trigger angle, and then inject for
* specified duration of time
*/
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handleFuel(limitedFuel, trgEventIndex, rpm PASS_ENGINE_PARAMETER_SUFFIX);
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/**
* For spark we schedule both start of coil charge and actual spark based on trigger angle
*/
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handleSpark(limitedSpark, trgEventIndex, rpm PASS_ENGINE_PARAMETER_SUFFIX);
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#if EFI_HISTOGRAMS || defined(__DOXYGEN__)
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int diff = hal_lld_get_counter_value() - beforeCallback;
if (diff > 0)
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hsAdd(&mainLoopHistogram, diff);
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#endif /* EFI_HISTOGRAMS */
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if (trgEventIndex == 0) {
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ENGINE(m.mainTriggerCallbackTime) = GET_TIMESTAMP() - ENGINE(m.beforeMainTrigger);
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}
}
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#if EFI_ENGINE_SNIFFER || defined(__DOXYGEN__)
#include "engine_sniffer.h"
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#endif
static void showTriggerHistogram(void) {
printAllCallbacksHistogram();
showMainHistogram();
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#if EFI_ENGINE_SNIFFER || defined(__DOXYGEN__)
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showWaveChartHistogram();
#endif
}
static void showMainInfo(Engine *engine) {
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#if EFI_PROD_CODE || defined(__DOXYGEN__)
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int rpm = engine->rpmCalculator.getRpm(PASS_ENGINE_PARAMETER_SIGNATURE);
float el = getEngineLoadT(PASS_ENGINE_PARAMETER_SIGNATURE);
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scheduleMsg(logger, "rpm %d engine_load %f", rpm, el);
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scheduleMsg(logger, "fuel %fms timing %f", getInjectionDuration(rpm PASS_ENGINE_PARAMETER_SUFFIX), engine->engineState.timingAdvance);
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#endif
}
void initMainEventListener(Logging *sharedLogger, Engine *engine) {
logger = sharedLogger;
efiAssertVoid(engine!=NULL, "null engine");
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initSparkLogic(logger);
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#if EFI_PROD_CODE || defined(__DOXYGEN__)
addConsoleAction("performanceinfo", showTriggerHistogram);
addConsoleActionP("maininfo", (VoidPtr) showMainInfo, engine);
printMsg(logger, "initMainLoop: %d", currentTimeMillis());
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if (!isInjectionEnabled(engine->engineConfiguration))
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printMsg(logger, "!!!!!!!!!!!!!!!!!!! injection disabled");
#endif
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#if EFI_HISTOGRAMS || defined(__DOXYGEN__)
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initHistogram(&mainLoopHistogram, "main callback");
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#endif /* EFI_HISTOGRAMS */
addTriggerEventListener(mainTriggerCallback, "main loop", engine);
}
#endif /* EFI_ENGINE_CONTROL */