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Software/Core/Inc/b_cccv_algo.h
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43
Software/Core/Inc/b_cccv_algo.h
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/*
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* b_cccv_algo.h
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*
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* Created on: 16.06.2023
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* Author: max
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*/
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#include <stdint.h>
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#include "stm32h7xx_hal.h"
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#ifndef INC_B_CCCV_ALGO_H_
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#define INC_B_CCCV_ALGO_H_
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#define I_GAIN 4
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#define P_GAIN 10
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#define CHARGE_CURRENT_LIMIT 10.0
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#define SIMULINKTEST
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#undef SIMULINKTEST
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typedef enum{
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NO_CHARGING,
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CHARGING_IN_PROGRESS,
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CHARGING_COMPLETED
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} CCCV_CONTROL_STATE;
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#ifdef SIMULINKTEST
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CCCV_CONTROL_STATE cccvloop(float maxcellvoltage, float voltagesetpoint, float maxcurrent, float*ccurrent);
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#else
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CCCV_CONTROL_STATE cccvloop(float maxcellvoltage, float voltagesetpoint, float maxcurrent);
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void setchargecurrent(float chargecurrent);
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void setchargevoltage(uint8_t numberofcells,float maximumcellvoltage);
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float getMaximumCellVoltage();
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void chargingloop(float maximumcellvoltage);
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void startcharging(float endvoltage);
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void initChargerAlgo(uint8_t numberofcells, float maximumcellvoltage);
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void setchargevoltage(uint8_t numberofcells,float maximumcellvoltage);
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void stopcharging();
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#endif
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float matlabvalidationwrapper(float maxcellvoltage, float voltagesetpoint, float maxcurrent);
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#endif /* INC_B_CCCV_ALGO_H_ */
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62
Software/Core/Inc/can-halal.h
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Software/Core/Inc/can-halal.h
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#ifndef CAN_HALAL_H
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#define CAN_HALAL_H
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// Define family macros if none are defined and we recognize a chip macro
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#if !defined(STM32F3) && !defined(STM32H7)
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#if defined(STM32F302x6) || defined(STM32F302x8) || defined(STM32F302xB) || \
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defined(STM32F302xC)
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#define STM32F3
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#endif
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#if defined(STM32H7A3xx)
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#define STM32H7
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#endif
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#endif
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#if defined(STM32F3)
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#include "stm32f3xx_hal.h"
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#define FTCAN_IS_BXCAN
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#define FTCAN_NUM_FILTERS 13
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#elif defined(STM32H7)
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#include "stm32h7xx_hal.h"
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#define FTCAN_IS_FDCAN
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#define FTCAN_NUM_FILTERS 13
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#else
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#error "Couldn't detect STM family"
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#endif
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#if defined(FTCAN_IS_BXCAN)
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HAL_StatusTypeDef ftcan_init(CAN_HandleTypeDef *handle);
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#elif defined(FTCAN_IS_FDCAN)
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HAL_StatusTypeDef ftcan_init(FDCAN_HandleTypeDef *handle);
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#else
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#error "Unknown CAN peripheral"
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#endif
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HAL_StatusTypeDef ftcan_transmit(uint16_t id, const uint8_t *data,
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size_t datalen);
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HAL_StatusTypeDef ftcan_add_filter(uint16_t id, uint16_t mask);
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/**
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* Define this function to be notified of incoming CAN messages
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*/
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void ftcan_msg_received_cb(uint16_t id, size_t datalen, const uint8_t *data);
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/**
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* Read num_bytes bytes from a message (unmarshalled network byte order). The
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* msg pointer is advanced by the corresponding number of bytes.
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*
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* Both methods return a 64-bit integer, but you can safely cast it to a smaller
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* integer type.
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*/
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uint64_t ftcan_unmarshal_unsigned(const uint8_t **data, size_t num_bytes);
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int64_t ftcan_unmarshal_signed(const uint8_t **data, size_t num_bytes);
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/**
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* Write num_bytes to a message (marshalled in network byte order). The pointer
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* is advanced by the corresponding number of bytes and returned.
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*/
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uint8_t *ftcan_marshal_unsigned(uint8_t *data, uint64_t val, size_t num_bytes);
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uint8_t *ftcan_marshal_signed(uint8_t *data, int64_t val, size_t num_bytes);
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#endif // CAN_HALAL_H
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22
Software/Core/Inc/can.h
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Software/Core/Inc/can.h
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/*
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* can.h
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*
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* Created on: 21.06.2023
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* Author: max
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*/
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#ifndef INC_CAN_H_
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#define INC_CAN_H_
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#include "stm32h7xx_hal.h"
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#define CAN_ID_AMS_STATUS 0x00A
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#define CAN_ID_AMS_IN 0x00B
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#define CAN_ID_SLAVE_STATUS_BASE 0x080
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#define CAN_ID_CHARGER_ACTIVE 0x200
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void initCan(FDCAN_HandleTypeDef *hcan);
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#endif /* INC_CAN_H_ */
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Software/Core/Inc/charge_ctrl_test_shell.h
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Software/Core/Inc/charge_ctrl_test_shell.h
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/*
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* charge_ctrl_test_shell.h
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*
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* Created on: May 21, 2023
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* Author: max
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*/
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#ifndef INC_CHARGE_CTRL_TEST_SHELL_H_
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#define INC_CHARGE_CTRL_TEST_SHELL_H_
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#include "stm32h7xx_hal.h"
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void charge_shell_init(UART_HandleTypeDef *huart);
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void charge_shell_loop();
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#endif /* INC_CHARGE_CTRL_TEST_SHELL_H_ */
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Software/Core/Inc/charger_control.h
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Software/Core/Inc/charger_control.h
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/*
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* charger_control.h
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*
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* Created on: May 21, 2023
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* Author: MaxMax
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*/
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#ifndef INC_CHARGER_CONTROL_H_
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#define INC_CHARGER_CONTROL_H_
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#include "stm32h7xx_hal.h"
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#define CURRENT_DAC_ADR 0x58
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#define VOLTAGE_DAC_ADR 0x5E
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#define CHARGER_ADC_ADR 0x90
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typedef struct{
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uint8_t acfail;
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uint8_t dcfail;
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uint8_t cc_status;
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uint8_t ot_status;
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uint8_t lim_status;
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uint16_t voltage;
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uint16_t current;
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}ChargerStatusHandleTypeDef;
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void charger_control_init(I2C_HandleTypeDef* hi2c);
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ChargerStatusHandleTypeDef charger_control_get_state();
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void charger_control_set_current(uint32_t current);
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void charger_control_set_voltage(uint32_t voltage);
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void charger_control_enable_charger_relay();
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void charger_control_disable_charger_relay();
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void charger_control_enable_remote();
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void charger_control_disable_remote();
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void charger_control_setup_DACs();
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#endif /* INC_CHARGER_CONTROL_H_ */
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46
Software/Core/Inc/slave_handler.h
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Software/Core/Inc/slave_handler.h
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/*
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* slave_handler.h
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*
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* Created on: Jun 21, 2023
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* Author: max
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*/
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#ifndef INC_SLAVE_HANDLER_H_
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#define INC_SLAVE_HANDLER_H_
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#include "stm32h7xx_hal.h"
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#define N_SLAVES 6
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typedef enum {
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SLAVE_ERR_NONE,
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SLAVE_ERR_TIMEOUT,
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SLAVE_ERR_OT,
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SLAVE_ERR_UT,
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SLAVE_ERR_OV,
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SLAVE_ERR_UV,
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SLAVE_ERR_UNKNOWN,
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} SlaveErrorKind;
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typedef struct {
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SlaveErrorKind kind;
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uint32_t data; // Cell/temperature ID etc
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} SlaveError;
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typedef struct {
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uint8_t id;
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SlaveError error;
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uint8_t soc;
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uint16_t min_voltage;
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uint16_t max_voltage;
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int16_t max_temp;
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uint32_t last_message;
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} SlaveHandle;
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extern SlaveHandle slaves[N_SLAVES];
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float slaves_get_maximum_voltage();
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void slaves_handle_status(const uint8_t *data);
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void slave_handler_init();
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#endif /* INC_SLAVE_HANDLER_H_ */
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