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

195 lines
6.3 KiB
C
Raw Normal View History

2022-01-17 15:36:52 +01:00
#ifndef MISSION_DEVICES_DEVICEDEFINITIONS_BPXBATTERYDEFINITIONS_H_
#define MISSION_DEVICES_DEVICEDEFINITIONS_BPXBATTERYDEFINITIONS_H_
2022-01-17 16:44:20 +01:00
#include <fsfw/datapoollocal/StaticLocalDataSet.h>
2022-01-17 16:21:33 +01:00
#include <fsfw/serialize/SerialLinkedListAdapter.h>
2022-01-17 16:44:20 +01:00
2022-01-17 16:21:33 +01:00
#include <cstdint>
2022-01-17 15:36:52 +01:00
namespace BpxBattery {
2022-01-17 16:44:20 +01:00
enum BpxPoolIds {
CHARGE_CURRENT = 0,
DISCHARGE_CURRENT = 1,
HEATER_CURRENT = 2,
BATT_VOLTAGE = 3,
BATT_TEMP_1 = 4,
BATT_TEMP_2 = 5,
BATT_TEMP_3 = 6,
BATT_TEMP_4 = 7,
REBOOT_COUNTER = 8,
BOOTCAUSE = 9
};
static constexpr uint32_t HK_SET_ID = 0;
2022-01-17 16:21:33 +01:00
static constexpr uint8_t PORT_PING = 1;
static constexpr uint8_t PORT_REBOOT = 4;
static constexpr uint8_t PORT_GET_HK = 9;
static constexpr uint8_t PORT_RESET_COUNTERS = 15;
static constexpr uint8_t PORT_CONFIG_CMD = 17;
static constexpr uint8_t PORT_CONFIG_GET = 18;
static constexpr uint8_t PORT_CONFIG_SET = 19;
static constexpr uint8_t PORT_MAN_HEAT_ON = 20;
static constexpr uint8_t PORT_MAN_HEAT_OFF = 21;
2022-01-17 16:44:20 +01:00
static constexpr uint8_t HK_ENTRIES = 10;
2022-01-17 16:21:33 +01:00
// Taken from BPX manual 3.14
typedef struct __attribute__((packed)) {
//! Mode for battheater [0=OFF,1=Auto]
uint8_t battheater_mode;
int8_t battheater_low;
//! Turn heater on at [degC]
int8_t battheater_high;
//! Turn heater off at [degC]
} bpx_config_t;
2022-01-17 16:44:20 +01:00
//! Not used for more but might still be useful
class BpxHkDeserializer : public SerialLinkedListAdapter<SerializeIF> {
public:
BpxHkDeserializer() { setLinks(); }
2022-01-17 16:21:33 +01:00
//! Charge current in mA
SerializeElement<uint16_t> chargeCurrent;
//! Discharge current in mA
SerializeElement<uint16_t> dischargeCurrent;
//! Heater current in mA
SerializeElement<uint16_t> heaterCurrent;
//! Battery voltage in mV
SerializeElement<uint16_t> battVoltage;
//! Battery temperature 1 in degC
2022-01-17 16:44:20 +01:00
SerializeElement<int16_t> battTemp1;
2022-01-17 16:21:33 +01:00
//! Battery temperature 2 in degC
2022-01-17 16:44:20 +01:00
SerializeElement<int16_t> battTemp2;
2022-01-17 16:21:33 +01:00
//! Battery temperature 3 in degC
2022-01-17 16:44:20 +01:00
SerializeElement<int16_t> battTemp3;
2022-01-17 16:21:33 +01:00
//! Battery temperature 4 in degC
2022-01-17 16:44:20 +01:00
SerializeElement<int16_t> battTemp4;
2022-01-17 16:21:33 +01:00
SerializeElement<uint32_t> rebootCounter;
SerializeElement<uint8_t> bootcause;
2022-01-17 16:44:20 +01:00
private:
2022-01-17 16:21:33 +01:00
void setLinks() {
setStart(&chargeCurrent);
chargeCurrent.setNext(&dischargeCurrent);
dischargeCurrent.setNext(&heaterCurrent);
heaterCurrent.setNext(&battVoltage);
battVoltage.setNext(&battTemp1);
battTemp1.setNext(&battTemp2);
battTemp2.setNext(&battTemp3);
battTemp3.setNext(&battTemp4);
battTemp4.setNext(&rebootCounter);
rebootCounter.setNext(&bootcause);
}
};
2022-01-17 16:44:20 +01:00
/**
* @brief BPX HK data holder
*/
class BpxBatteryHk : public StaticLocalDataSet<HK_ENTRIES> {
public:
/**
* Constructor for data users
* @param gyroId
*/
BpxBatteryHk(object_id_t bpxId) : StaticLocalDataSet(sid_t(bpxId, BpxBattery::HK_SET_ID)) {
setAllVariablesReadOnly();
}
ReturnValue_t parseRawHk(const uint8_t* data, size_t size) {
size_t remSize = size;
ReturnValue_t result =
chargeCurrent.deSerialize(&data, &remSize, SerializeIF::Endianness::NETWORK);
if (result != HasReturnvaluesIF::RETURN_OK) {
return result;
}
result = dischargeCurrent.deSerialize(&data, &remSize, SerializeIF::Endianness::NETWORK);
if (result != HasReturnvaluesIF::RETURN_OK) {
return result;
}
result = heaterCurrent.deSerialize(&data, &remSize, SerializeIF::Endianness::NETWORK);
if (result != HasReturnvaluesIF::RETURN_OK) {
return result;
}
result = battVoltage.deSerialize(&data, &remSize, SerializeIF::Endianness::NETWORK);
if (result != HasReturnvaluesIF::RETURN_OK) {
return result;
}
result = battTemp1.deSerialize(&data, &remSize, SerializeIF::Endianness::NETWORK);
if (result != HasReturnvaluesIF::RETURN_OK) {
return result;
}
result = battTemp2.deSerialize(&data, &remSize, SerializeIF::Endianness::NETWORK);
if (result != HasReturnvaluesIF::RETURN_OK) {
return result;
}
result = battTemp3.deSerialize(&data, &remSize, SerializeIF::Endianness::NETWORK);
if (result != HasReturnvaluesIF::RETURN_OK) {
return result;
}
result = battTemp4.deSerialize(&data, &remSize, SerializeIF::Endianness::NETWORK);
if (result != HasReturnvaluesIF::RETURN_OK) {
return result;
}
result = rebootCounter.deSerialize(&data, &remSize, SerializeIF::Endianness::NETWORK);
if (result != HasReturnvaluesIF::RETURN_OK) {
return result;
}
result = bootcause.deSerialize(&data, &remSize, SerializeIF::Endianness::NETWORK);
if (result != HasReturnvaluesIF::RETURN_OK) {
return result;
}
return result;
}
BpxBatteryHk();
private:
//! Charge current in mA
lp_var_t<uint16_t> chargeCurrent =
lp_var_t<uint16_t>(sid.objectId, BpxBattery::BpxPoolIds::CHARGE_CURRENT, this);
//! Discharge current in mA
lp_var_t<uint16_t> dischargeCurrent =
lp_var_t<uint16_t>(sid.objectId, BpxBattery::BpxPoolIds::DISCHARGE_CURRENT, this);
//! Heater current in mA
lp_var_t<uint16_t> heaterCurrent =
lp_var_t<uint16_t>(sid.objectId, BpxBattery::BpxPoolIds::HEATER_CURRENT, this);
//! Battery voltage in mV
lp_var_t<uint16_t> battVoltage =
lp_var_t<uint16_t>(sid.objectId, BpxBattery::BpxPoolIds::BATT_VOLTAGE, this);
//! Battery temperature 1 in degC
SerializeElement<int16_t> battTemp1 =
lp_var_t<int16_t>(sid.objectId, BpxBattery::BpxPoolIds::BATT_TEMP_1, this);
//! Battery temperature 2 in degC
SerializeElement<int16_t> battTemp2 =
lp_var_t<int16_t>(sid.objectId, BpxBattery::BpxPoolIds::BATT_TEMP_2, this);
//! Battery temperature 3 in degC
SerializeElement<int16_t> battTemp3 =
lp_var_t<int16_t>(sid.objectId, BpxBattery::BpxPoolIds::BATT_TEMP_3, this);
//! Battery temperature 4 in degC
SerializeElement<int16_t> battTemp4 =
lp_var_t<int16_t>(sid.objectId, BpxBattery::BpxPoolIds::BATT_TEMP_4, this);
SerializeElement<uint32_t> rebootCounter =
lp_var_t<uint32_t>(sid.objectId, BpxBattery::BpxPoolIds::REBOOT_COUNTER, this);
SerializeElement<uint8_t> bootcause =
lp_var_t<uint8_t>(sid.objectId, BpxBattery::BpxPoolIds::BOOTCAUSE, this);
friend class BpxBatteryHandler;
/**
* Constructor for data creator
* @param hkOwner
*/
BpxBatteryHk(HasLocalDataPoolIF* hkOwner) : StaticLocalDataSet(hkOwner, BpxBattery::HK_SET_ID) {}
};
};
2022-01-17 15:36:52 +01:00
#endif /* MISSION_DEVICES_DEVICEDEFINITIONS_BPXBATTERYDEFINITIONS_H_ */