354 lines
7.8 KiB
C++
354 lines
7.8 KiB
C++
/**
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* @file engine.h
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*
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* @date May 21, 2014
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* @author Andrey Belomutskiy, (c) 2012-2015
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*/
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#ifndef ENGINE_H_
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#define ENGINE_H_
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#include "main.h"
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#include "engine_configuration.h"
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#include "rpm_calculator.h"
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#include "global.h"
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#include "engine_configuration.h"
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#include "event_registry.h"
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#include "trigger_structure.h"
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#include "table_helper.h"
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#include "listener_array.h"
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#include "accel_enrichment.h"
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#include "trigger_central.h"
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/**
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* This class knows about when to inject fuel
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*/
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class FuelSchedule {
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public:
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FuelSchedule();
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InjectionEventList injectionEvents;
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/**
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* this method schedules all fuel events for an engine cycle
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*/
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void addFuelEvents(injection_mode_e mode DECLARE_ENGINE_PARAMETER_S);
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/**
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* This is a performance optimization for https://sourceforge.net/p/rusefi/tickets/64/
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* TODO: better data structure? better algorithm?
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*/
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uint8_t hasEvents[PWM_PHASE_MAX_COUNT];
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/**
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* How many trigger events have injection? This depends on fuel strategy & trigger shape
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*/
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int eventsCount;
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private:
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void clear();
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void registerInjectionEvent(int injectorIndex, float angle, bool_t isSimultanious DECLARE_ENGINE_PARAMETER_S);
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};
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/**
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* this part of the structure is separate just because so far
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* these fields are not integrated with Tuner Studio. Step by step :)
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*/
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class engine_configuration2_s {
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// todo: move these fields into Engine class, eliminate this class
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public:
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engine_configuration2_s();
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#if EFI_ENGINE_CONTROL || defined(__DOXYGEN__)
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FuelSchedule crankingInjectionEvents;
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FuelSchedule injectionEvents;
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#endif
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float fsioLastValue[LE_COMMAND_COUNT];
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/**
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* We are alternating two event lists in order to avoid a potential issue around revolution boundary
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* when an event is scheduled within the next revolution.
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*/
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IgnitionEventList ignitionEvents[2];
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};
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class ThermistorMath {
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public:
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ThermistorMath();
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thermistor_curve_s curve;
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void init(thermistor_conf_s *config);
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private:
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thermistor_conf_s currentConfig;
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};
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class EngineState {
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public:
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EngineState();
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/**
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* WIP: accessing these values here would be a performance optimization since log() function needed for
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* thermistor logic is relatively heavy
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* Access to these two fields is not synchronized in any way - that should work since float read/write are atomic.
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*/
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float iat;
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float clt;
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float airMass;
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/**
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* that's fuel in tank - just a gauge
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*/
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percent_t fuelLevel;
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ThermistorMath iatCurve;
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ThermistorMath cltCurve;
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/**
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* MAP averaging angle start, in relation to 'mapAveragingSchedulingAtIndex' trigger index index
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*/
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angle_t mapAveragingStart[INJECTION_PIN_COUNT];
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angle_t mapAveragingDuration;
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// spark-related
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floatms_t sparkDwell;
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angle_t timingAdvance;
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/**
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* ignition dwell duration as crankshaft angle
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*/
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angle_t dwellAngle;
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angle_t advance;
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// fuel-related;
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float iatFuelCorrection;
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float cltFuelCorrection;
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float injectorLag;
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float baroCorrection;
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// speed density
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float tChargeK;
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float currentVE;
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float targerAFR;
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/**
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* pre-calculated value from simple fuel lookup
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*/
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float baseTableFuel;
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/**
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* fuel regardless of fuel logic mode
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*/
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float baseFuel;
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angle_t injectionOffset;
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};
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class RpmCalculator;
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#define MAF_DECODING_CACHE_SIZE 256
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#define MAF_DECODING_CACHE_MULT (MAF_DECODING_CACHE_SIZE / 5.0)
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typedef struct {
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uint32_t beforeMainTrigger;
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uint32_t mainTriggerCallbackTime;
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uint32_t beforeIgnitionMath;
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uint32_t ignitionMathTime;
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uint32_t beforeIgnitionSch;
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uint32_t ignitionSchTime;
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uint32_t beforeInjectonSch;
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uint32_t injectonSchTime;
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uint32_t beforeZeroTest;
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uint32_t zeroTestTime;
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uint32_t beforeAdvance;
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uint32_t advanceLookupTime;
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uint32_t beforeFuelCalc;
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uint32_t fuelCalcTime;
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uint32_t beforeMapAveragingCb;
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uint32_t mapAveragingCbTime;
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uint32_t beforeHipCb;
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uint32_t hipCbTime;
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uint32_t beforeRpmCb;
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uint32_t rpmCbTime;
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} monitoring_timestamps_s;
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class Engine;
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typedef void (*configuration_callback_t)(Engine*);
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class Engine {
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public:
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Engine(persistent_config_s *config);
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void init();
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RpmCalculator rpmCalculator;
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persistent_config_s *config;
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engine_configuration_s *engineConfiguration;
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engine_configuration2_s *engineConfiguration2;
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/**
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* this is about 'stopengine' command
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*/
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efitick_t stopEngineRequestTimeNt;
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AccelEnrichmemnt mapAccelEnrichment;
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AccelEnrichmemnt tpsAccelEnrichment;
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TriggerCentral triggerCentral;
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/**
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* Fuel injection duration for current engine cycle, without wall wetting
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*/
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floatms_t fuelMs;
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float totalFuelCorrection;
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floatms_t wallFuelCorrection;
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/**
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* This one with wall wetting accounted for, used for logging.
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*/
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floatms_t actualLastInjection;
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void periodicFastCallback(DECLARE_ENGINE_PARAMETER_F);
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bool_t clutchUpState;
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bool_t clutchDownState;
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bool_t isRunningPwmTest;
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/**
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* Are we experiencing knock right now?
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*/
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bool_t knockNow;
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/**
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* Have we experienced knock since engine was started?
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*/
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bool_t knockEver;
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/**
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* KnockCount is directly proportional to the degrees of ignition
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* advance removed
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*/
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int knockCount;
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float knockVolts;
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bool_t knockDebug;
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efitimeus_t timeOfLastKnockEvent;
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/**
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* are we running any kind of functional test? this affect
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* some areas
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*/
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bool_t isTestMode;
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TriggerShape triggerShape;
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/**
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* pre-calculated offset for given sequence index within engine cycle
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* (not cylinder ID)
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* todo: better name?
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*/
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angle_t angleExtra[IGNITION_PIN_COUNT];
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/**
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* pre-calculated reference to which output pin should be used for
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* given sequence index within engine cycle
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*/
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NamedOutputPin *ignitionPin[IGNITION_PIN_COUNT];
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void onTriggerEvent(efitick_t nowNt);
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EngineState engineState;
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efitick_t lastTriggerEventTimeNt;
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/**
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* this value depends on a slow-changing VBatt value, so
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* we update it once in a while
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*/
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float injectorLagMs;
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/**
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* This coefficient translates ADC value directly into voltage adjusted according to
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* voltage divider configuration. This is a future (?) performance optimization.
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*/
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float adcToVoltageInputDividerCoefficient;
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/**
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* This field is true if we are in 'cylinder cleanup' state right now
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* see isCylinderCleanupEnabled
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*/
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bool_t isCylinderCleanupMode;
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/**
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* value of 'triggerShape.getLength()'
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* pre-calculating this value is a performance optimization
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*/
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int engineCycleEventCount;
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/**
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* fast spark dwell time interpolation helper
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* todo: finish the implementation and
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*/
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Table2D<DWELL_CURVE_SIZE> sparkTable;
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/**
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* fast kg/hour MAF decoding lookup table with ~0.2 volt step
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* This table is build based on MAF decoding curve
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*/
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float mafDecodingLookup[MAF_DECODING_CACHE_SIZE];
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void preCalculate();
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void addConfigurationListener(configuration_callback_t callback);
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void updateSlowSensors();
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void watchdog();
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/**
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* here we have all the listeners which should be notified about a configuration
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* change
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*/
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IntListenerArray configurationListeners;
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monitoring_timestamps_s m;
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void knockLogic(float knockVolts);
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void printKnockState(void);
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private:
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/**
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* By the way:
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* 'cranking' means engine is not stopped and the rpm are below crankingRpm
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* 'running' means RPM are above crankingRpm
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* 'spinning' means the engine is not stopped
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*/
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bool_t isSpinning;
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bool_t stopPins();
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};
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/**
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* 6 crossing over 50% TPS means pressing and releasing three times
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*/
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#define PUMPS_TO_PRIME 6
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class StartupFuelPumping {
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public:
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StartupFuelPumping();
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void update(DECLARE_ENGINE_PARAMETER_F);
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bool isTpsAbove50;
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int pumpsCounter;
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private:
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void setPumpsCounter(engine_configuration_s *engineConfiguration, int newValue);
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};
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void prepareShapes(DECLARE_ENGINE_PARAMETER_F);
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void resetConfigurationExt(Logging * logger, engine_type_e engineType DECLARE_ENGINE_PARAMETER_S);
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void applyNonPersistentConfiguration(Logging * logger DECLARE_ENGINE_PARAMETER_S);
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void prepareOutputSignals(DECLARE_ENGINE_PARAMETER_F);
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#endif /* ENGINE_H_ */
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