531 lines
18 KiB
C++
531 lines
18 KiB
C++
/**
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* @file custom_engine.cpp
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*
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*
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* set engine_type 49
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* FRANKENSO_QA_ENGINE
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* See also DEFAULT_ENGINE_TYPE
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* Frankenso QA 12 cylinder engine
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*
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* @date Jan 18, 2015
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* @author Andrey Belomutskiy, (c) 2012-2018
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*/
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#ifndef CONFIG_ENGINES_CUSTOM_ENGINE_CPP_
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#define CONFIG_ENGINES_CUSTOM_ENGINE_CPP_
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#include "custom_engine.h"
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#include "allsensors.h"
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#include "engine_math.h"
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#include "fsio_impl.h"
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#if EFI_PROD_CODE
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#include "can_hw.h"
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#include "scheduler.h"
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#include "electronic_throttle.h"
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#endif /* EFI_PROD_CODE */
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EXTERN_ENGINE;
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#if EFI_PROD_CODE
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static int periodIndex = 0;
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static OutputPin testPin;
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scheduling_s scheduling;
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static int test557[] = {5, 5, 10, 10, 20, 20, 50, 50, 100, 100, 200, 200, 500, 500, 500, 500};
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#define TEST_LEN 16
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efitimeus_t testTime;
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static void toggleTestAndScheduleNext() {
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testPin.toggle();
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periodIndex = (periodIndex + 1) % TEST_LEN;
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testTime += test557[periodIndex];
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engine->executor.scheduleByTimestamp(&scheduling, testTime, (schfunc_t) &toggleTestAndScheduleNext, NULL);
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}
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/**
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* https://github.com/rusefi/rusefi/issues/557 common rail / direct injection scheduling control test
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*/
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void runSchedulingPrecisionTestIfNeeded(void) {
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if (engineConfiguration->test557pin == GPIO_UNASSIGNED) {
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return;
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}
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testPin.initPin("test", engineConfiguration->test557pin);
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testPin.setValue(0);
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testTime = getTimeNowUs();
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toggleTestAndScheduleNext();
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}
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#endif /* EFI_PROD_CODE */
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void setFrankenso_01_LCD(board_configuration_s *boardConfiguration) {
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engineConfiguration->displayMode = DM_HD44780;
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boardConfiguration->HD44780_rs = GPIOE_7;
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boardConfiguration->HD44780_e = GPIOE_9;
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boardConfiguration->HD44780_db4 = GPIOE_11;
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boardConfiguration->HD44780_db5 = GPIOE_13;
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boardConfiguration->HD44780_db6 = GPIOE_15;
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boardConfiguration->HD44780_db7 = GPIOB_10;
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}
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void disableLCD(board_configuration_s *boardConfiguration) {
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boardConfiguration->HD44780_rs = GPIO_UNASSIGNED;
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boardConfiguration->HD44780_e = GPIO_UNASSIGNED;
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boardConfiguration->HD44780_db4 = GPIO_UNASSIGNED;
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boardConfiguration->HD44780_db5 = GPIO_UNASSIGNED;
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boardConfiguration->HD44780_db6 = GPIO_UNASSIGNED;
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boardConfiguration->HD44780_db7 = GPIO_UNASSIGNED;
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}
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// todo: should this be part of more default configurations?
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void setFrankensoConfiguration(DECLARE_CONFIG_PARAMETER_SIGNATURE) {
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engineConfiguration->trigger.type = TT_ONE_PLUS_ONE;
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setFrankenso_01_LCD(boardConfiguration);
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commonFrankensoAnalogInputs(engineConfiguration);
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setFrankenso0_1_joystick(engineConfiguration);
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/**
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* Frankenso analog #1 PC2 ADC12 CLT
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* Frankenso analog #2 PC1 ADC11 IAT
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* Frankenso analog #3 PA0 ADC0 MAP
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* Frankenso analog #4 PC3 ADC13 WBO / O2
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* Frankenso analog #5 PA2 ADC2 TPS
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* Frankenso analog #6 PA1 ADC1
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* Frankenso analog #7 PA4 ADC4
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* Frankenso analog #8 PA3 ADC3
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* Frankenso analog #9 PA7 ADC7
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* Frankenso analog #10 PA6 ADC6
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* Frankenso analog #11 PC5 ADC15
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* Frankenso analog #12 PC4 ADC14 VBatt
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*/
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engineConfiguration->tps1_1AdcChannel = EFI_ADC_2; // PA2
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engineConfiguration->map.sensor.hwChannel = EFI_ADC_0;
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engineConfiguration->clt.adcChannel = EFI_ADC_12;
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engineConfiguration->iat.adcChannel = EFI_ADC_11;
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engineConfiguration->afr.hwChannel = EFI_ADC_13;
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setCommonNTCSensor(&engineConfiguration->clt);
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engineConfiguration->clt.config.bias_resistor = 2700;
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setCommonNTCSensor(&engineConfiguration->iat);
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engineConfiguration->iat.config.bias_resistor = 2700;
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/**
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* http://rusefi.com/wiki/index.php?title=Manual:Hardware_Frankenso_board
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*/
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// Frankenso low out #1: PE6
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// Frankenso low out #2: PE5
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// Frankenso low out #3: PD7 Main Relay
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// Frankenso low out #4: PC13 Idle valve solenoid
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// Frankenso low out #5: PE3
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// Frankenso low out #6: PE4 fuel pump relay
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// Frankenso low out #7: PE1 (do not use with discovery!)
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// Frankenso low out #8: PE2 injector #2
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// Frankenso low out #9: PB9 injector #1
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// Frankenso low out #10: PE0 (do not use with discovery!)
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// Frankenso low out #11: PB8 injector #3
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// Frankenso low out #12: PB7 injector #4
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boardConfiguration->fuelPumpPin = GPIOE_4;
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boardConfiguration->mainRelayPin = GPIOD_7;
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boardConfiguration->idle.solenoidPin = GPIOC_13;
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boardConfiguration->fanPin = GPIOE_5;
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boardConfiguration->injectionPins[0] = GPIOB_9; // #1
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boardConfiguration->injectionPins[1] = GPIOE_2; // #2
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boardConfiguration->injectionPins[2] = GPIOB_8; // #3
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#ifndef EFI_INJECTOR_PIN3
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boardConfiguration->injectionPins[3] = GPIOB_7; // #4
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#else /* EFI_INJECTOR_PIN3 */
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boardConfiguration->injectionPins[3] = EFI_INJECTOR_PIN3; // #4
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#endif /* EFI_INJECTOR_PIN3 */
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setAlgorithm(LM_SPEED_DENSITY PASS_CONFIG_PARAMETER_SUFFIX);
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#if EFI_PWM_TESTER
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boardConfiguration->injectionPins[4] = GPIOC_8; // #5
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boardConfiguration->injectionPins[5] = GPIOD_10; // #6
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boardConfiguration->injectionPins[6] = GPIOD_9;
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boardConfiguration->injectionPins[7] = GPIOD_11;
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boardConfiguration->injectionPins[8] = GPIOD_0;
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boardConfiguration->injectionPins[9] = GPIOB_11;
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boardConfiguration->injectionPins[10] = GPIOC_7;
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boardConfiguration->injectionPins[11] = GPIOE_4;
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/**
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* We want to initialize all outputs for test
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*/
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engineConfiguration->specs.cylindersCount = 12;
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engineConfiguration->displayMode = DM_NONE;
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#else /* EFI_PWM_TESTER */
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boardConfiguration->injectionPins[4] = GPIO_UNASSIGNED;
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boardConfiguration->injectionPins[5] = GPIO_UNASSIGNED;
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boardConfiguration->injectionPins[6] = GPIO_UNASSIGNED;
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boardConfiguration->injectionPins[7] = GPIO_UNASSIGNED;
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boardConfiguration->injectionPins[8] = GPIO_UNASSIGNED;
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boardConfiguration->injectionPins[9] = GPIO_UNASSIGNED;
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boardConfiguration->injectionPins[10] = GPIO_UNASSIGNED;
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boardConfiguration->injectionPins[11] = GPIO_UNASSIGNED;
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boardConfiguration->ignitionPins[0] = GPIOE_14;
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boardConfiguration->ignitionPins[1] = GPIOC_7;
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boardConfiguration->ignitionPins[2] = GPIOC_9;
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// set_ignition_pin 4 PE10
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boardConfiguration->ignitionPins[3] = GPIOE_10;
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#endif /* EFI_PWM_TESTER */
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// todo: 8.2 or 10k?
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engineConfiguration->vbattDividerCoeff = ((float) (10 + 33)) / 10 * 2;
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#if EFI_CAN_SUPPORT
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enableFrankensoCan();
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#endif /* EFI_CAN_SUPPORT */
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}
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void setFrankensoBoardTestConfiguration(DECLARE_CONFIG_PARAMETER_SIGNATURE) {
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setFrankensoConfiguration(PASS_CONFIG_PARAMETER_SIGNATURE);
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engineConfiguration->directSelfStimulation = true; // this engine type is used for board validation
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boardConfiguration->triggerSimulatorFrequency = 300;
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engineConfiguration->cranking.rpm = 100;
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engineConfiguration->specs.cylindersCount = 12;
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engineConfiguration->specs.firingOrder = FO_1_7_5_11_3_9_6_12_2_8_4_10;
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// set ignition_mode 1
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engineConfiguration->ignitionMode = IM_INDIVIDUAL_COILS;
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boardConfiguration->injectionPins[0] = GPIOB_7; // injector in default pinout
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boardConfiguration->injectionPins[1] = GPIOB_8; // injector in default pinout
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boardConfiguration->injectionPins[2] = GPIOB_9; // injector in default pinout
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boardConfiguration->injectionPins[3] = GPIOC_13;
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boardConfiguration->injectionPins[4] = GPIOD_3;
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boardConfiguration->injectionPins[5] = GPIOD_5;
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boardConfiguration->injectionPins[6] = GPIOD_7;
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boardConfiguration->injectionPins[7] = GPIOE_2; // injector in default pinout
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boardConfiguration->injectionPins[8] = GPIOE_3;
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boardConfiguration->injectionPins[9] = GPIOE_4;
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boardConfiguration->injectionPins[10] = GPIOE_5;
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boardConfiguration->injectionPins[11] = GPIOE_6;
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boardConfiguration->fuelPumpPin = GPIO_UNASSIGNED;
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boardConfiguration->mainRelayPin = GPIO_UNASSIGNED;
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boardConfiguration->idle.solenoidPin = GPIO_UNASSIGNED;
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boardConfiguration->fanPin = GPIO_UNASSIGNED;
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boardConfiguration->ignitionPins[0] = GPIOC_9; // coil in default pinout
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boardConfiguration->ignitionPins[1] = GPIOC_7; // coil in default pinout
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boardConfiguration->ignitionPins[2] = GPIOE_10; // coil in default pinout
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boardConfiguration->ignitionPins[3] = GPIOE_8; // Miata VVT tach
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boardConfiguration->ignitionPins[4] = GPIOE_14; // coil in default pinout
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boardConfiguration->ignitionPins[5] = GPIOE_12;
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boardConfiguration->ignitionPins[6] = GPIOD_8;
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boardConfiguration->ignitionPins[7] = GPIOD_9;
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boardConfiguration->ignitionPins[8] = GPIOE_0; // brain board, not discovery
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boardConfiguration->ignitionPins[9] = GPIOE_1; // brain board, not discovery
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}
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void setBoschVNH2SP30Curve(DECLARE_ENGINE_PARAMETER_SIGNATURE) {
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engineConfiguration->etbBiasBins[0] = 0;
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engineConfiguration->etbBiasBins[1] = 1;
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engineConfiguration->etbBiasBins[2] = 5;
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/**
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* This specific throttle has default position of about 7% open
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*/
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engineConfiguration->etbBiasBins[3] = 7;
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engineConfiguration->etbBiasBins[4] = 14;
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engineConfiguration->etbBiasBins[5] = 65;
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engineConfiguration->etbBiasBins[6] = 66;
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engineConfiguration->etbBiasBins[7] = 100;
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/**
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* Some negative bias for below-default position
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*/
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engineConfiguration->etbBiasValues[0] = -15;
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engineConfiguration->etbBiasValues[1] = -15;
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engineConfiguration->etbBiasValues[2] = -10;
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/**
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* Zero bias for index which corresponds to default throttle position, when no current is applied
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* This specific throttle has default position of about 7% open
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*/
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engineConfiguration->etbBiasValues[3] = 0;
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engineConfiguration->etbBiasValues[4] = 19;
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engineConfiguration->etbBiasValues[5] = 20;
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engineConfiguration->etbBiasValues[6] = 26;
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engineConfiguration->etbBiasValues[7] = 28;
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}
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// ETB_BENCH_ENGINE
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// set engine_type 58
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void setEtbTestConfiguration(DECLARE_CONFIG_PARAMETER_SIGNATURE) {
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// VAG test ETB
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// set tps_min 54
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engineConfiguration->tpsMin = 54;
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// by the way this ETB has default position of ADC=74 which is about 4%
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// set tps_max 540
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engineConfiguration->tpsMax = 540;
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boardConfiguration->ignitionPins[0] = GPIO_UNASSIGNED;
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boardConfiguration->ignitionPins[1] = GPIO_UNASSIGNED;
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boardConfiguration->ignitionPins[2] = GPIO_UNASSIGNED;
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boardConfiguration->ignitionPins[3] = GPIO_UNASSIGNED;
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/**
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* remember that some H-bridges require 5v control lines, not just 3v logic outputs we have on stm32
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*/
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CONFIGB(etb1.directionPin1) = GPIOC_7;
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CONFIGB(etb1.directionPin2) = GPIOC_9;
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CONFIGB(etb1.controlPin1) = GPIOE_14;
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#if EFI_ELECTRONIC_THROTTLE_BODY
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setBoschVNH2SP30Curve(PASS_CONFIG_PARAMETER_SIGNATURE);
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// setDefaultEtbParameters(PASS_CONFIG_PARAMETER_SIGNATURE);
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// values are above 100% since we have feedforward part of the total summation
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engineConfiguration->etb.minValue = -200;
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engineConfiguration->etb.maxValue = 200;
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#endif /* EFI_ELECTRONIC_THROTTLE_BODY */
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engineConfiguration->tps1_1AdcChannel = EFI_ADC_2; // PA2
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engineConfiguration->throttlePedalPositionAdcChannel = EFI_ADC_9; // PB1
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engineConfiguration->debugMode = DBG_ELECTRONIC_THROTTLE_PID;
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// turning off other PWMs to simplify debugging
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engineConfiguration->bc.triggerSimulatorFrequency = 0;
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engineConfiguration->stepperEnablePin = GPIO_UNASSIGNED;
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CONFIGB(idle).stepperStepPin = GPIO_UNASSIGNED;
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CONFIGB(idle).stepperDirectionPin = GPIO_UNASSIGNED;
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boardConfiguration->useStepperIdle = true;
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// no analog dividers - all sensors with 3v supply, naked discovery bench setup
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engineConfiguration->analogInputDividerCoefficient = 1;
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// EFI_ADC_15 = PC5
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engineConfiguration->clt.adcChannel = EFI_ADC_15;
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set10K_4050K(&engineConfiguration->clt);
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engineConfiguration->clt.config.bias_resistor = 10000;
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// see also setDefaultEtbBiasCurve
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}
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void setIssue898(DECLARE_CONFIG_PARAMETER_SIGNATURE) {
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engineConfiguration->trigger.type = TT_MAZDA_MIATA_NA;
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}
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// TLE8888_BENCH_ENGINE
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// set engine_type 59
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void setTle8888TestConfiguration(DECLARE_CONFIG_PARAMETER_SIGNATURE) {
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engineConfiguration->specs.cylindersCount = 8;
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engineConfiguration->specs.firingOrder = FO_1_8_7_2_6_5_4_3;
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engineConfiguration->ignitionMode = IM_INDIVIDUAL_COILS;
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engineConfiguration->crankingInjectionMode = IM_SEQUENTIAL;
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engineConfiguration->directSelfStimulation = true;
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#if defined(STM32_HAS_GPIOG) && STM32_HAS_GPIOG
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boardConfiguration->ignitionPins[0] = GPIOG_3;
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boardConfiguration->ignitionPins[1] = GPIOG_4;
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boardConfiguration->ignitionPins[2] = GPIOG_5;
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boardConfiguration->ignitionPins[3] = GPIOG_6;
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boardConfiguration->ignitionPins[4] = GPIOG_7;
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boardConfiguration->ignitionPins[5] = GPIOG_8;
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#endif /* STM32_HAS_GPIOG */
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boardConfiguration->ignitionPins[6] = GPIOC_6;
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boardConfiguration->ignitionPins[7] = GPIOC_7;
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#if (BOARD_TLE8888_COUNT > 0)
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engineConfiguration->tle8888spiDevice = SPI_DEVICE_1;
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engineConfiguration->tle8888_cs = GPIOD_5;
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// PB3 is nicely both SWO and SPI1 SCK so logic analyzer could be used on SWO header
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boardConfiguration->spi1mosiPin = GPIOB_5;
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boardConfiguration->spi1misoPin = GPIOB_4;
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boardConfiguration->spi1sckPin = GPIOB_3; // please note that this pin is also SWO/SWD - Single Wire debug Output
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boardConfiguration->is_enabled_spi_1 = true;
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engineConfiguration->debugMode = DBG_TLE8888;
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boardConfiguration->fuelPumpPin = TLE8888_PIN_20;
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#endif /* BOARD_TLE8888_COUNT */
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engineConfiguration->throttlePedalPositionAdcChannel = EFI_ADC_9; // PB1 // just any non-empty value for now
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// ETB #1 top one - closer to 121 connector
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// DIS PF12
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// EN PF13
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// IN1 PF15
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// IN2 PF14
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// SF PF11
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#if defined(STM32_HAS_GPIOF) && STM32_HAS_GPIOF
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#if EFI_FSIO
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setFsio(12, GPIOF_12, "0" PASS_CONFIG_PARAMETER_SUFFIX);
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setFsio(14, GPIOF_13, "1" PASS_CONFIG_PARAMETER_SUFFIX);
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#endif
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CONFIGB(etb1.directionPin1) = GPIOF_15;
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CONFIGB(etb1.directionPin2) = GPIOF_14;
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#endif /* STM32_HAS_GPIOF */
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CONFIG(etb1_use_two_wires) = true;
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boardConfiguration->isHip9011Enabled = false;
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// ETB #2
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// DIS PE5
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// EN PE6
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// IN1 PE2
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// IN2 PE4
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// SF PE3
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#if EFI_FSIO
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setFsio(13, GPIOE_5, "0" PASS_CONFIG_PARAMETER_SUFFIX);
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setFsio(15, GPIOE_6, "1" PASS_CONFIG_PARAMETER_SUFFIX);
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#endif
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CONFIG(etb2_use_two_wires) = true;
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CONFIG(etb2.directionPin1) = GPIOE_2;
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CONFIG(etb2.directionPin2) = GPIOE_4;
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engineConfiguration->tps1_1AdcChannel = EFI_ADC_3; // PA3
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engineConfiguration->throttlePedalPositionAdcChannel = EFI_ADC_7; // PA7
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// engineConfiguration->etb.pFactor = 1.07;
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// engineConfiguration->etb.iFactor = 0.18;
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// engineConfiguration->etb.dFactor = 0.24;
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// engineConfiguration->etb.offset = 80;
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engineConfiguration->etb.pFactor = 22;
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engineConfiguration->etb.iFactor = 0;
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engineConfiguration->etb.dFactor = 0;
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engineConfiguration->etb.offset = 0;
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#if EFI_PROD_CODE
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engineConfiguration->etb.periodMs = (1000 / DEFAULT_ETB_LOOP_FREQUENCY);
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engineConfiguration->etbFreq = DEFAULT_ETB_PWM_FREQUENCY;
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#endif
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engineConfiguration->etb_iTermMin = -300;
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engineConfiguration->etb_iTermMax = 300;
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// VAG test ETB, no divider on red board - direct 3v TPS sensor
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// set tps_min 332
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engineConfiguration->tpsMin = 332;
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// by the way this ETB has default position of ADC=74 which is about 4%
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// set tps_max 540
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engineConfiguration->tpsMax = 799;
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}
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/**
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* set engine_type 30
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*/
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void mreBoardTest(DECLARE_CONFIG_PARAMETER_SIGNATURE) {
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engineConfiguration->directSelfStimulation = true; // this engine type is used for board validation
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boardConfiguration->triggerSimulatorFrequency = 60;
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// set cranking_rpm 500
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engineConfiguration->cranking.rpm = 100;
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// set cranking_dwell 200
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engineConfiguration->ignitionDwellForCrankingMs = 200;
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// set cranking_fuel 300
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engineConfiguration->cranking.baseFuel = 190;
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engineConfiguration->injectionMode = IM_SEQUENTIAL;
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engineConfiguration->crankingInjectionMode = IM_SEQUENTIAL;
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// EFI_ADC_1: "23 - AN temp 2"
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// test harness: Red/Green, 2K PD. expected 2.0v
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// iat in microrusefi/board_configuration.cpp
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// EFI_ADC_2: "24 - AN temp 3"
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// test harness: Blue/White, 2K PD. expected 2.0v
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// EFI_ADC_10: "27 - AN volt 1"
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// test harness: Blue/Red, 3.84K PD / 5.3 PU. expected 1.6v
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engineConfiguration->mafAdcChannel = EFI_ADC_10;
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// EFI_ADC_14: "32 - AN volt 6"
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// test harness: Red/White 3.6K PD / 5.2 PU. expected 1.6v
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engineConfiguration->throttlePedalPositionAdcChannel = EFI_ADC_14;
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// EFI_ADC_4: "28 - AN volt 10"
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// test harness: Red/Yellow
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engineConfiguration->afr.hwChannel = EFI_ADC_4;
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// EFI_ADC_7: "31 - AN volt 3"
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// test harness: White/Red
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engineConfiguration->map.sensor.hwChannel = EFI_ADC_7;
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//engineConfiguration->baroSensor.hwChannel
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//engineConfiguration->oilPressure.hwChannel
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//engineConfiguration->fuelLevelSensor
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// TPS tps1_1AdcChannel EFI_ADC_13
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|
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engineConfiguration->specs.cylindersCount = 10;
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engineConfiguration->specs.firingOrder = FO_1_10_9_4_3_6_5_8_7_2;
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// red LED #1
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boardConfiguration->ignitionPins[1 - 1] = GPIOD_4;
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boardConfiguration->ignitionPins[10 - 1] = GPIOD_3;
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boardConfiguration->ignitionPins[9 - 1] = GPIOD_6;
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boardConfiguration->ignitionPins[4 - 1] = GPIOD_7;
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boardConfiguration->ignitionPins[3 - 1] = GPIOD_1;
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boardConfiguration->ignitionPins[6 - 1] = GPIOD_2;
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boardConfiguration->ignitionPins[1] = GPIO_UNASSIGNED;
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boardConfiguration->ignitionPins[4] = GPIO_UNASSIGNED;
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boardConfiguration->ignitionPins[6] = GPIO_UNASSIGNED;
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boardConfiguration->ignitionPins[7] = GPIO_UNASSIGNED;
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|
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// LED #1
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// GPIOE_7: "34 - GP Out 2"
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boardConfiguration->injectionPins[1 - 1] = TLE8888_PIN_22;//GPIOE_7;
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|
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// LED #2
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// TLE8888_PIN_23: "33 - GP Out 3"
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boardConfiguration->injectionPins[10 - 1] = TLE8888_PIN_23;
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|
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// LED #3 - INJ#1
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boardConfiguration->injectionPins[9 - 1] = GPIOE_13;
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|
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// LED #4 - INJ#2
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boardConfiguration->injectionPins[4 - 1] = GPIOE_14;
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|
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// LED #5 - INJ#3
|
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boardConfiguration->injectionPins[3 - 1] = GPIOE_12;
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|
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// LED #6 - INJ#4
|
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boardConfiguration->injectionPins[6 - 1] = GPIOE_11;
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|
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// LED #7
|
|
// TLE8888_PIN_24: "43 - GP Out 4"
|
|
boardConfiguration->injectionPins[5 - 1] = TLE8888_PIN_24;
|
|
|
|
// LED #8
|
|
// TLE8888 half bridges (pushpull, lowside, or high-low) IN12
|
|
// GPIOE_8: "35 - GP Out 1"
|
|
boardConfiguration->injectionPins[8 - 1] = GPIOE_8;
|
|
|
|
// LED #9
|
|
// TLE8888 high current low side: IN10
|
|
// GPIOE_9: "7 - Lowside 1"
|
|
boardConfiguration->injectionPins[7 - 1] = GPIOE_9;
|
|
|
|
// LED #10
|
|
// TLE8888 high current low side: VVT2 IN9 / OUT5
|
|
// GPIOE_10: "3 - Lowside 2"
|
|
boardConfiguration->injectionPins[2 - 1] = GPIOE_10;
|
|
}
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|
|
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#endif /* CONFIG_ENGINES_CUSTOM_ENGINE_CPP_ */
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