rusefi/firmware/hw_layer/hardware.cpp

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/**
* @file hardware.cpp
* @brief Hardware package entry point
*
* @date May 27, 2013
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* @author Andrey Belomutskiy, (c) 2012-2018
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*/
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#include "global.h"
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#include "adc_inputs.h"
#include "can_hw.h"
#include "console_io.h"
#include "hardware.h"
#include "io_pins.h"
#include "pin_repository.h"
#include "rtc_helper.h"
#include "rfiutil.h"
#include "injector_central.h"
#include "vehicle_speed.h"
#include "trigger_input.h"
#include "eficonsole.h"
#include "max31855.h"
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#include "mpu_util.h"
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#include "accelerometer.h"
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#include "servo.h"
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#if EFI_PROD_CODE
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//#include "usb_msd.h"
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#include "AdcConfiguration.h"
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#include "electronic_throttle.h"
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#include "board_test.h"
#include "mcp3208.h"
#include "HIP9011.h"
#include "histogram.h"
#include "mmc_card.h"
#include "neo6m.h"
#include "lcd_HD44780.h"
#include "settings.h"
#include "algo.h"
#include "joystick.h"
#include "trigger_central.h"
#include "svnversion.h"
#include "engine_configuration.h"
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#include "aux_pid.h"
#endif /* EFI_PROD_CODE */
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#if EFI_SPEED_DENSITY
#include "map_averaging.h"
#endif /* EFI_SPEED_DENSITY */
#if EFI_INTERNAL_FLASH
#include "flash_main.h"
#endif /* EFI_INTERNAL_FLASH */
EXTERN_ENGINE
;
extern bool hasFirmwareErrorFlag;
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static mutex_t spiMtx;
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/**
* this depends on patch to chdebug.c
+extern int maxNesting;
ch.dbg.isr_cnt++;
+ if (ch.dbg.isr_cnt > maxNesting)
+ maxNesting = ch.dbg.isr_cnt;
port_unlock_from_isr();
*
*/
// todo: rename this to 'rusefiMaxISRNesting' one day
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int maxNesting = 0;
#if HAL_USE_SPI || defined(__DOXYGEN__)
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extern bool isSpiInitialized[5];
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/**
* #311 we want to test RTC before engine start so that we do not test it while engine is running
*/
bool rtcWorks = true;
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/**
* Only one consumer can use SPI bus at a given time
*/
void lockSpi(spi_device_e device) {
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efiAssertVoid(CUSTOM_ERR_6674, getRemainingStack(chThdGetSelfX()) > 128, "lockSpi");
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// todo: different locks for different SPI devices!
chMtxLock(&spiMtx);
}
void unlockSpi(void) {
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chMtxUnlock(&spiMtx);
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}
static void initSpiModules(board_configuration_s *boardConfiguration) {
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if (boardConfiguration->is_enabled_spi_1) {
turnOnSpi(SPI_DEVICE_1);
}
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if (boardConfiguration->is_enabled_spi_2) {
turnOnSpi(SPI_DEVICE_2);
}
if (boardConfiguration->is_enabled_spi_3) {
turnOnSpi(SPI_DEVICE_3);
}
}
SPIDriver * getSpiDevice(spi_device_e spiDevice) {
if (spiDevice == SPI_NONE) {
return NULL;
}
#if STM32_SPI_USE_SPI1 || defined(__DOXYGEN__)
if (spiDevice == SPI_DEVICE_1) {
return &SPID1;
}
#endif
#if STM32_SPI_USE_SPI2 || defined(__DOXYGEN__)
if (spiDevice == SPI_DEVICE_2) {
return &SPID2;
}
#endif
#if STM32_SPI_USE_SPI3 || defined(__DOXYGEN__)
if (spiDevice == SPI_DEVICE_3) {
return &SPID3;
}
#endif
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firmwareError(CUSTOM_ERR_UNEXPECTED_SPI, "Unexpected SPI device: %d", spiDevice);
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return NULL;
}
#endif
#if HAL_USE_I2C || defined(__DOXYGEN__)
static I2CConfig i2cfg = { OPMODE_I2C, 100000, STD_DUTY_CYCLE, };
void initI2Cmodule(void) {
print("Starting I2C module\r\n");
i2cInit();
i2cStart(&I2CD1, &i2cfg);
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efiSetPadMode("I2C clock", EFI_I2C_SCL_BRAIN_PIN, PAL_MODE_ALTERNATE(EFI_I2C_AF) | PAL_STM32_OTYPE_OPENDRAIN);
efiSetPadMode("I2C data", EFI_I2C_SDA_BRAIN_PIN, PAL_MODE_ALTERNATE(EFI_I2C_AF) | PAL_STM32_OTYPE_OPENDRAIN);
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}
//static char txbuf[1];
static void sendI2Cbyte(int addr, int data) {
// i2cAcquireBus(&I2CD1);
// txbuf[0] = data;
// i2cMasterTransmit(&I2CD1, addr, txbuf, 1, NULL, 0);
// i2cReleaseBus(&I2CD1);
}
#endif
static Logging *sharedLogger;
#if EFI_PROD_CODE
extern AdcDevice fastAdc;
#define TPS_IS_SLOW -1
static int fastMapSampleIndex;
static int hipSampleIndex;
static int tpsSampleIndex;
extern int tpsFastAdc;
/**
* This method is not in the adc* lower-level file because it is more business logic then hardware.
*/
void adc_callback_fast(ADCDriver *adcp, adcsample_t *buffer, size_t n) {
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efiAssertVoid(CUSTOM_ERR_6675, getRemainingStack(chThdGetSelfX()) > 64, "lowstck12a");
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(void) buffer;
(void) n;
/**
* Note, only in the ADC_COMPLETE state because the ADC driver fires an
* intermediate callback when the buffer is half full.
* */
if (adcp->state == ADC_COMPLETE) {
/**
* this callback is executed 10 000 times a second, it needs to be as fast as possible
*/
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efiAssertVoid(CUSTOM_ERR_6676, getRemainingStack(chThdGetSelfX()) > 128, "lowstck#9b");
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#if EFI_MAP_AVERAGING
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mapAveragingAdcCallback(fastAdc.samples[fastMapSampleIndex]);
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#endif /* EFI_MAP_AVERAGING */
#if EFI_HIP_9011 || defined(__DOXYGEN__)
if (boardConfiguration->isHip9011Enabled) {
hipAdcCallback(fastAdc.samples[hipSampleIndex]);
}
#endif
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if (tpsSampleIndex != TPS_IS_SLOW) {
// tpsFastAdc = fastAdc.samples[tpsSampleIndex];
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}
}
}
static void calcFastAdcIndexes(void) {
fastMapSampleIndex = fastAdc.internalAdcIndexByHardwareIndex[engineConfiguration->map.sensor.hwChannel];
hipSampleIndex =
engineConfiguration->hipOutputChannel == EFI_ADC_NONE ?
-1 : fastAdc.internalAdcIndexByHardwareIndex[engineConfiguration->hipOutputChannel];
if (engineConfiguration->tpsAdcChannel != EFI_ADC_NONE) {
tpsSampleIndex = fastAdc.internalAdcIndexByHardwareIndex[engineConfiguration->tpsAdcChannel];
} else {
tpsSampleIndex = TPS_IS_SLOW;
}
}
static void adcConfigListener(Engine *engine) {
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// todo: something is not right here - looks like should be a callback for each configuration change?
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calcFastAdcIndexes();
}
void turnOnHardware(Logging *sharedLogger) {
#if EFI_SHAFT_POSITION_INPUT || defined(__DOXYGEN__)
turnOnTriggerInputPins(sharedLogger);
#endif /* EFI_SHAFT_POSITION_INPUT */
}
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static void unregisterPin(brain_pin_e currentPin, brain_pin_e prevPin) {
if (currentPin != prevPin) {
unmarkPin(prevPin);
}
}
void stopSpi(spi_device_e device) {
if (!isSpiInitialized[device])
return; // not turned on
isSpiInitialized[device] = false;
unmarkPin(getSckPin(device));
unmarkPin(getMisoPin(device));
unmarkPin(getMosiPin(device));
}
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void applyNewHardwareSettings(void) {
#if EFI_SHAFT_POSITION_INPUT || defined(__DOXYGEN__)
applyNewTriggerInputPins();
#endif /* EFI_SHAFT_POSITION_INPUT */
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// all 'stop' methods need to go before we begin starting pins
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enginePins.stopInjectionPins();
enginePins.stopIgnitionPins();
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stopCanPins();
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bool etbRestartNeeded = isETBRestartNeeded();
if (etbRestartNeeded) {
stopETBPins();
}
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stopVSSPins();
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stopAuxPins();
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if (engineConfiguration->bc.is_enabled_spi_1 != activeConfiguration.bc.is_enabled_spi_1)
stopSpi(SPI_DEVICE_1);
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if (engineConfiguration->bc.is_enabled_spi_2 != activeConfiguration.bc.is_enabled_spi_2)
stopSpi(SPI_DEVICE_2);
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if (engineConfiguration->bc.is_enabled_spi_3 != activeConfiguration.bc.is_enabled_spi_3)
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stopSpi(SPI_DEVICE_3);
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unregisterPin(engineConfiguration->bc.HD44780_rs, activeConfiguration.bc.HD44780_rs);
unregisterPin(engineConfiguration->bc.HD44780_e, activeConfiguration.bc.HD44780_e);
unregisterPin(engineConfiguration->bc.HD44780_db4, activeConfiguration.bc.HD44780_db4);
unregisterPin(engineConfiguration->bc.HD44780_db5, activeConfiguration.bc.HD44780_db5);
unregisterPin(engineConfiguration->bc.HD44780_db6, activeConfiguration.bc.HD44780_db6);
unregisterPin(engineConfiguration->bc.HD44780_db7, activeConfiguration.bc.HD44780_db7);
unregisterPin(engineConfiguration->bc.clutchUpPin, activeConfiguration.bc.clutchUpPin);
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enginePins.unregisterPins();
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enginePins.startInjectionPins();
enginePins.startIgnitionPins();
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startCanPins();
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if (etbRestartNeeded) {
startETBPins();
}
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startVSSPins();
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startAuxPins();
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adcConfigListener(engine);
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}
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void setBor(int borValue) {
scheduleMsg(sharedLogger, "setting BOR to %d", borValue);
BOR_Set((BOR_Level_t)borValue);
showBor();
}
void showBor(void) {
scheduleMsg(sharedLogger, "BOR=%d", (int)BOR_Get());
}
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void initHardware(Logging *l) {
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efiAssertVoid(CUSTOM_IH_STACK, getRemainingStack(chThdGetSelfX()) > 256, "init h");
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sharedLogger = l;
engine_configuration_s *engineConfiguration = engine->engineConfiguration;
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efiAssertVoid(CUSTOM_EC_NULL, engineConfiguration!=NULL, "engineConfiguration");
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board_configuration_s *boardConfiguration = &engineConfiguration->bc;
printMsg(sharedLogger, "initHardware()");
// todo: enable protection. it's disabled because it takes
// 10 extra seconds to re-flash the chip
//flashProtect();
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chMtxObjectInit(&spiMtx);
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#if EFI_HISTOGRAMS
/**
* histograms is a data structure for CPU monitor, it does not depend on configuration
*/
initHistogramsModule();
#endif /* EFI_HISTOGRAMS */
/**
* We need the LED_ERROR pin even before we read configuration
*/
initPrimaryPins();
if (hasFirmwareError()) {
return;
}
#if EFI_INTERNAL_FLASH
palSetPadMode(CONFIG_RESET_SWITCH_PORT, CONFIG_RESET_SWITCH_PIN, PAL_MODE_INPUT_PULLUP);
initFlash(sharedLogger);
/**
* this call reads configuration from flash memory or sets default configuration
* if flash state does not look right.
*/
if (SHOULD_INGORE_FLASH()) {
engineConfiguration->engineType = DEFAULT_ENGINE_TYPE;
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resetConfigurationExt(sharedLogger, engineConfiguration->engineType PASS_ENGINE_PARAMETER_SUFFIX);
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writeToFlashNow();
} else {
readFromFlash();
}
#else
engineConfiguration->engineType = DEFAULT_ENGINE_TYPE;
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resetConfigurationExt(sharedLogger, engineConfiguration->engineType PASS_ENGINE_PARAMETER_SUFFIX);
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#endif /* EFI_INTERNAL_FLASH */
#if EFI_HD44780_LCD
// initI2Cmodule();
lcd_HD44780_init(sharedLogger);
if (hasFirmwareError())
return;
lcd_HD44780_print_string(VCS_VERSION);
#endif /* EFI_HD44780_LCD */
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if (hasFirmwareError()) {
return;
}
#if EFI_SHAFT_POSITION_INPUT || defined(__DOXYGEN__)
initTriggerDecoder();
#endif
bool isBoardTestMode_b;
if (boardConfiguration->boardTestModeJumperPin != GPIO_UNASSIGNED) {
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efiSetPadMode("board test", boardConfiguration->boardTestModeJumperPin,
PAL_MODE_INPUT_PULLUP);
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isBoardTestMode_b = (!efiReadPin(boardConfiguration->boardTestModeJumperPin));
// we can now relese this pin, it is actually used as output sometimes
unmarkPin(boardConfiguration->boardTestModeJumperPin);
} else {
isBoardTestMode_b = false;
}
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#if HAL_USE_ADC || defined(__DOXYGEN__)
initAdcInputs(isBoardTestMode_b);
#endif
if (isBoardTestMode_b) {
// this method never returns
initBoardTest();
}
initRtc();
initOutputPins();
#if EFI_MAX_31855
initMax31855(sharedLogger, getSpiDevice(boardConfiguration->max31855spiDevice), boardConfiguration->max31855_cs);
#endif /* EFI_MAX_31855 */
#if EFI_CAN_SUPPORT
initCan();
#endif /* EFI_CAN_SUPPORT */
// init_adc_mcp3208(&adcState, &SPID2);
// requestAdcValue(&adcState, 0);
#if EFI_SHAFT_POSITION_INPUT || defined(__DOXYGEN__)
// todo: figure out better startup logic
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initTriggerCentral(sharedLogger);
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#endif /* EFI_SHAFT_POSITION_INPUT */
turnOnHardware(sharedLogger);
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#if HAL_USE_SPI || defined(__DOXYGEN__)
initSpiModules(boardConfiguration);
#endif
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#if EFI_HIP_9011 || defined(__DOXYGEN__)
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initHip9011(sharedLogger);
#endif /* EFI_HIP_9011 */
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#if EFI_FILE_LOGGING || defined(__DOXYGEN__)
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initMmcCard();
#endif /* EFI_FILE_LOGGING */
#if EFI_MEMS || defined(__DOXYGEN__)
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initAccelerometer(PASS_ENGINE_PARAMETER_SIGNATURE);
#endif
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// initFixedLeds();
// initBooleanInputs();
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#if EFI_UART_GPS || defined(__DOXYGEN__)
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initGps();
#endif
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#if EFI_SERVO
initServo();
#endif
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#if ADC_SNIFFER || defined(__DOXYGEN__)
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initAdcDriver();
#endif
#if HAL_USE_I2C || defined(__DOXYGEN__)
addConsoleActionII("i2c", sendI2Cbyte);
#endif
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// USBMassStorageDriver UMSD1;
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// while (true) {
// for (int addr = 0x20; addr < 0x28; addr++) {
// sendI2Cbyte(addr, 0);
// int err = i2cGetErrors(&I2CD1);
// print("I2C: err=%x from %d\r\n", err, addr);
// chThdSleepMilliseconds(5);
// sendI2Cbyte(addr, 255);
// chThdSleepMilliseconds(5);
// }
// }
#if EFI_VEHICLE_SPEED || defined(__DOXYGEN__)
initVehicleSpeed(sharedLogger);
#endif
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#if HAL_USE_EXT || defined(__DOXYGEN__)
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initJoystick(sharedLogger);
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#endif
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calcFastAdcIndexes();
printMsg(sharedLogger, "initHardware() OK!");
}
#endif /* EFI_PROD_CODE */