eive-obsw/mission/devices/devicedefinitions/GyroADIS1650XDefinitions.h

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#ifndef MISSION_DEVICES_DEVICEDEFINITIONS_GYROADIS16507DEFINITIONS_H_
#define MISSION_DEVICES_DEVICEDEFINITIONS_GYROADIS16507DEFINITIONS_H_
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#include <cstddef>
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#include "fsfw/datapoollocal/StaticLocalDataSet.h"
#include "fsfw/devicehandlers/DeviceHandlerIF.h"
namespace ADIS1650X {
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enum class Type { ADIS16505, ADIS16507 };
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static constexpr size_t MAXIMUM_REPLY_SIZE = 64;
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static constexpr uint8_t WRITE_MASK = 0b1000'0000;
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// Ranges in deg / s
static constexpr double RANGE_UNSET = 0.0;
static constexpr double RANGE_1BMLZ = 125.0;
static constexpr double RANGE_2BMLZ = 500.0;
static constexpr double RANGE_3BMLZ = 2000.0;
// Sensitivities in deg/s/LSB
static constexpr double SENSITIVITY_UNSET = 0.0;
static constexpr double SENSITIVITY_1BMLZ = 0.00625;
static constexpr double SENSITIVITY_2BMLZ = 0.025;
static constexpr double SENSITIVITY_3BMLZ = 0.1;
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enum RangMdlBitfield {
RANGE_125_1BMLZ = 0b00,
RANGE_500_2BMLZ = 0b01,
RESERVED = 0b10,
RANGE_2000_3BMLZ = 0b11
};
static constexpr uint32_t ACCELEROMETER_RANGE_16507 = 392;
static constexpr float ACCELEROMETER_RANGE_16505 = 78.4;
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static constexpr uint32_t STALL_TIME_MICROSECONDS = 16;
static constexpr uint16_t PROD_ID_16507 = 16507;
static constexpr uint16_t PROD_ID_16505 = 16505;
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static constexpr std::array<uint8_t, 2> BURST_READ_ENABLE = {0x68, 0x00};
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static constexpr dur_millis_t START_UP_TIME = 310;
static constexpr dur_millis_t SW_RESET_BREAK = 255;
static constexpr dur_millis_t FACTORY_CALIBRATION_BREAK = 136;
static constexpr dur_millis_t FLASH_MEMORY_UPDATE_BREAK = 70;
static constexpr dur_millis_t FLASH_MEMORY_TEST_BREAK = 30;
static constexpr dur_millis_t SELF_TEST_BREAK = 24;
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static constexpr uint8_t DIAG_STAT_REG = 0x02;
static constexpr uint8_t FILTER_CTRL_REG = 0x5c;
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static constexpr uint8_t RANG_MDL_REG = 0x5e;
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static constexpr uint8_t MSC_CTRL_REG = 0x60;
static constexpr uint8_t DEC_RATE_REG = 0x64;
static constexpr uint8_t GLOB_CMD = 0x68;
static constexpr uint8_t PROD_ID_REG = 0x72;
static constexpr DeviceCommandId_t READ_SENSOR_DATA = 0;
static constexpr DeviceCommandId_t READ_OUT_CONFIG = 1;
static constexpr DeviceCommandId_t SELF_TEST_SENSORS = 2;
static constexpr DeviceCommandId_t SELF_TEST_MEMORY = 3;
static constexpr DeviceCommandId_t UPDATE_NV_CONFIGURATION = 4;
static constexpr DeviceCommandId_t SELECT_BURST_READ_MODE = 5;
static constexpr DeviceCommandId_t RESET_SENSOR_CONFIGURATION = 30;
static constexpr DeviceCommandId_t SW_RESET = 31;
static constexpr DeviceCommandId_t PRINT_CURRENT_CONFIGURATION = 32;
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static constexpr uint16_t BURST_32_BIT = 1 << 9;
static constexpr uint16_t BURST_SEL_BIT = 1 << 8;
static constexpr uint16_t LIN_ACCEL_COMPENSATION_BIT = 1 << 7;
static constexpr uint16_t POINT_PERCUSSION_COMPENSATION_BIT = 1 << 6;
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static constexpr size_t CONFIG_READOUT_SIZE = 12 + 2;
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static constexpr size_t SENSOR_READOUT_SIZE = 20 + 2;
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static constexpr uint32_t ADIS_DATASET_ID = READ_SENSOR_DATA;
static constexpr uint32_t ADIS_CFG_DATASET_ID = READ_OUT_CONFIG;
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enum GlobCmds : uint8_t {
FACTORY_CALIBRATION = 0b0000'0010,
SENSOR_SELF_TEST = 0b0000'0100,
FLASH_MEMORY_UPDATE = 0b0000'1000,
FLASH_MEMORY_TEST = 0b0001'0000,
SOFTWARE_RESET = 0b1000'0000
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};
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enum PrimaryPoolIds : lp_id_t {
ANG_VELOC_X,
ANG_VELOC_Y,
ANG_VELOC_Z,
ACCELERATION_X,
ACCELERATION_Y,
ACCELERATION_Z,
TEMPERATURE,
DIAG_STAT_REGISTER,
FILTER_SETTINGS,
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RANG_MDL,
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MSC_CTRL_REGISTER,
DEC_RATE_REGISTER,
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};
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enum FilterSettings : uint8_t {
NO_FILTER = 0,
TWO_TAPS = 1,
FOUR_TAPS = 2,
EIGHT_TAPS = 3,
SIXTEEN_TAPS = 4,
THIRTYTWO_TAPS = 5,
SIXTYFOUR_TAPS = 6
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};
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} // namespace ADIS1650X
class AdisGyroPrimaryDataset : public StaticLocalDataSet<8> {
public:
/** Constructor for data users like controllers */
AdisGyroPrimaryDataset(object_id_t adisId)
: StaticLocalDataSet(sid_t(adisId, ADIS1650X::ADIS_DATASET_ID)) {
setAllVariablesReadOnly();
}
/* Angular velocities in degrees per second (DPS) */
lp_var_t<double> angVelocX = lp_var_t<double>(sid.objectId, ADIS1650X::ANG_VELOC_X, this);
lp_var_t<double> angVelocY = lp_var_t<double>(sid.objectId, ADIS1650X::ANG_VELOC_Y, this);
lp_var_t<double> angVelocZ = lp_var_t<double>(sid.objectId, ADIS1650X::ANG_VELOC_Z, this);
lp_var_t<double> accelX = lp_var_t<double>(sid.objectId, ADIS1650X::ACCELERATION_X, this);
lp_var_t<double> accelY = lp_var_t<double>(sid.objectId, ADIS1650X::ACCELERATION_Y, this);
lp_var_t<double> accelZ = lp_var_t<double>(sid.objectId, ADIS1650X::ACCELERATION_Z, this);
lp_var_t<float> temperature = lp_var_t<float>(sid.objectId, ADIS1650X::TEMPERATURE, this);
private:
friend class GyroADIS1650XHandler;
friend class GyroAdisDummy;
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/** Constructor for the data creator */
AdisGyroPrimaryDataset(HasLocalDataPoolIF* hkOwner)
: StaticLocalDataSet(hkOwner, ADIS1650X::ADIS_DATASET_ID) {}
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};
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class AdisGyroConfigDataset : public StaticLocalDataSet<5> {
public:
/** Constructor for data users like controllers */
AdisGyroConfigDataset(object_id_t adisId)
: StaticLocalDataSet(sid_t(adisId, ADIS1650X::ADIS_CFG_DATASET_ID)) {
setAllVariablesReadOnly();
}
lp_var_t<uint16_t> diagStatReg = lp_var_t<uint16_t>(sid.objectId, ADIS1650X::DIAG_STAT_REGISTER);
lp_var_t<uint8_t> filterSetting = lp_var_t<uint8_t>(sid.objectId, ADIS1650X::FILTER_SETTINGS);
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lp_var_t<uint16_t> rangMdl = lp_var_t<uint16_t>(sid.objectId, ADIS1650X::RANG_MDL);
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lp_var_t<uint16_t> mscCtrlReg = lp_var_t<uint16_t>(sid.objectId, ADIS1650X::MSC_CTRL_REGISTER);
lp_var_t<uint16_t> decRateReg = lp_var_t<uint16_t>(sid.objectId, ADIS1650X::DEC_RATE_REGISTER);
private:
friend class GyroADIS1650XHandler;
/** Constructor for the data creator */
AdisGyroConfigDataset(HasLocalDataPoolIF* hkOwner)
: StaticLocalDataSet(hkOwner, ADIS1650X::ADIS_CFG_DATASET_ID) {}
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};
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#endif /* MISSION_DEVICES_DEVICEDEFINITIONS_GYROADIS16507DEFINITIONS_H_ */