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@@ -12,21 +12,25 @@ Format: command + ((slot_id) + data (optional))
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*/
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*/
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//Send command to set charge and discharge current to the target
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//Send command to set charge and discharge current to the target
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void controller_SetCurrent(uint8_t const TARGET_ADDRESS, uint8_t slot_id, int16_t current_mA){
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void controller_SetCurrent(uint8_t const TARGET_ADDRESS, uint8_t slot_id, int16_t current_mA){
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+ //Bitmasked: Slot id + Command
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tx_packet.txBuffer[0]= (slot_id<<4) | (CMD_SET_CURRENT & 0x0F);
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tx_packet.txBuffer[0]= (slot_id<<4) | (CMD_SET_CURRENT & 0x0F);
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+ //Filling the buffer with current value
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*((int16_t*)(&tx_packet.txBuffer[1])) = current_mA;
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*((int16_t*)(&tx_packet.txBuffer[1])) = current_mA;
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+
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+ /*I2C Communication for transmitting Charging/Discharging current for the slots*/
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//Length is calculated as 1 byte for the bitmasked slot and command+ 2 bytes of current + 1 byte of padding
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//Length is calculated as 1 byte for the bitmasked slot and command+ 2 bytes of current + 1 byte of padding
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tx_packet.txLen= 4;
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tx_packet.txLen= 4;
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DL_I2C_enableInterrupt(I2C_1_INST, DL_I2C_INTERRUPT_CONTROLLER_TXFIFO_TRIGGER);
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DL_I2C_enableInterrupt(I2C_1_INST, DL_I2C_INTERRUPT_CONTROLLER_TXFIFO_TRIGGER);
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DL_I2C_startControllerTransfer(I2C_1_INST, TARGET_ADDRESS, DL_I2C_CONTROLLER_DIRECTION_TX, tx_packet.txLen);
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DL_I2C_startControllerTransfer(I2C_1_INST, TARGET_ADDRESS, DL_I2C_CONTROLLER_DIRECTION_TX, tx_packet.txLen);
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- printf("Packet Sent:: 0x%02X 0x%02X 0x%02X 0x%02X 0x%02X \n", TARGET_ADDRESS, tx_packet.txBuffer[0], tx_packet.txBuffer[1],tx_packet.txBuffer[2], tx_packet.txBuffer[3]);
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- DL_I2C_fillControllerTXFIFO(I2C_1_INST, tx_packet.txBuffer, tx_packet.txLen);
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+ /*printf("Packet Sent:: 0x%02X 0x%02X 0x%02X 0x%02X 0x%02X \n", TARGET_ADDRESS, tx_packet.txBuffer[0], tx_packet.txBuffer[1],tx_packet.txBuffer[2], tx_packet.txBuffer[3]);
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+ DL_I2C_fillControllerTXFIFO(I2C_1_INST, tx_packet.txBuffer, tx_packet.txLen);*/
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// Wait for the bus to become not busy WITH a timeout
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// Wait for the bus to become not busy WITH a timeout
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- uint32_t timeout = 100000; // Adjust timeout value as needed
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+ uint32_t timeout = 100000;
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while ((DL_I2C_getControllerStatus(I2C_1_INST) & DL_I2C_CONTROLLER_STATUS_BUSY_BUS) && timeout > 0) {
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while ((DL_I2C_getControllerStatus(I2C_1_INST) & DL_I2C_CONTROLLER_STATUS_BUSY_BUS) && timeout > 0) {
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timeout--;
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timeout--;
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}
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}
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- printf("SetCurrent successful for slot %d with current %d mA\n", slot_id, current_mA);
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+ printf("STATUS ***SetCurrent successful for slot %d with current %d mA***\n", slot_id, current_mA);
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// Clean up and exit
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// Clean up and exit
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DL_I2C_flushControllerTXFIFO(I2C_1_INST);
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DL_I2C_flushControllerTXFIFO(I2C_1_INST);
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@@ -39,7 +43,10 @@ bool controller_GetBatteryMeasurement(uint8_t const TARGET_ADDRESS, uint8_t slot
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//Initializing BatteryMeasurement structure from battery.h of size 8
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//Initializing BatteryMeasurement structure from battery.h of size 8
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BatteryMeasurement measurement;
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BatteryMeasurement measurement;
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uint8_t rx_index=0;
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uint8_t rx_index=0;
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-
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+
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+ //Flush the TX FIFO and make the buffer ready to transmit data:
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+ DL_I2C_flushControllerTXFIFO(I2C_1_INST);
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+
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//Write Command to the target
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//Write Command to the target
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//Set the command in the tx buffer in bit masked format to the target: Upper Nibble-> Slot and Lower Nibbel -> Command
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//Set the command in the tx buffer in bit masked format to the target: Upper Nibble-> Slot and Lower Nibbel -> Command
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tx_packet.txBuffer[0]= (slot_id << 4)|(CMD_GET_MEASUREMENT & 0x0F); //shift slot_id to the left by 4 bits
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tx_packet.txBuffer[0]= (slot_id << 4)|(CMD_GET_MEASUREMENT & 0x0F); //shift slot_id to the left by 4 bits
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@@ -47,7 +54,7 @@ bool controller_GetBatteryMeasurement(uint8_t const TARGET_ADDRESS, uint8_t slot
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//Send command bytes to the target
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//Send command bytes to the target
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DL_I2C_enableInterrupt(I2C_1_INST, DL_I2C_INTERRUPT_CONTROLLER_TXFIFO_TRIGGER);
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DL_I2C_enableInterrupt(I2C_1_INST, DL_I2C_INTERRUPT_CONTROLLER_TXFIFO_TRIGGER);
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DL_I2C_startControllerTransfer(I2C_1_INST, TARGET_ADDRESS, DL_I2C_CONTROLLER_DIRECTION_TX, 1);
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DL_I2C_startControllerTransfer(I2C_1_INST, TARGET_ADDRESS, DL_I2C_CONTROLLER_DIRECTION_TX, 1);
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- printf("[MCU] TX Packet Sent:: 0x%02X\n", tx_packet.txBuffer[0]);
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+ printf("[I2C] TX Packet Sent:: 0x%02X\n", tx_packet.txBuffer[0]);
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DL_I2C_fillControllerTXFIFO(I2C_1_INST, tx_packet.txBuffer, 1);
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DL_I2C_fillControllerTXFIFO(I2C_1_INST, tx_packet.txBuffer, 1);
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// Wait for the write transaction to complete
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// Wait for the write transaction to complete
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@@ -57,32 +64,33 @@ bool controller_GetBatteryMeasurement(uint8_t const TARGET_ADDRESS, uint8_t slot
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}
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}
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//If I2C Bus is stuck then reset the controller:
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//If I2C Bus is stuck then reset the controller:
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if(DL_I2C_getControllerStatus(I2C_1_INST)& (DL_I2C_CONTROLLER_STATUS_ERROR)){
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if(DL_I2C_getControllerStatus(I2C_1_INST)& (DL_I2C_CONTROLLER_STATUS_ERROR)){
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- printf("I2C Write Error: Bus is stuck\n");
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+ printf("ERROR ***I2C Write Error: Bus is stuck***\n");
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DL_I2C_resetControllerTransfer(I2C_1_INST);
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DL_I2C_resetControllerTransfer(I2C_1_INST);
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return false;
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return false;
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}
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}
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//Clear RX FIFO for any stale data and prepare for receiving data
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//Clear RX FIFO for any stale data and prepare for receiving data
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- //DL_I2C_flushControllerRXFIFO(I2C_1_INST);
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- //Add a small delax between Read and Write
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- for (volatile int d = 0; d < 500; d++);
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- //Receive the data from the target:
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+ DL_I2C_flushControllerRXFIFO(I2C_1_INST);
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+
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+ //Adding a while wait loop
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+ uint32_t rx_timeout = 20000;
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+ while (!(DL_I2C_getControllerStatus(I2C_1_INST) & DL_I2C_CONTROLLER_STATUS_BUSY_BUS) && rx_timeout > 0) {
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+ rx_timeout--;
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+ }
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+
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//BatteryMeasurement size is 12 similar to the target side
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//BatteryMeasurement size is 12 similar to the target side
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DL_I2C_startControllerTransfer(I2C_1_INST, TARGET_ADDRESS, DL_I2C_CONTROLLER_DIRECTION_RX, sizeof(BatteryMeasurement));
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DL_I2C_startControllerTransfer(I2C_1_INST, TARGET_ADDRESS, DL_I2C_CONTROLLER_DIRECTION_RX, sizeof(BatteryMeasurement));
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- uint32_t rx_timeout = 20000;
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- while((rx_index < sizeof(BatteryMeasurement)) && (rx_timeout)){
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+ while(rx_index < sizeof(BatteryMeasurement)){
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if(!DL_I2C_isControllerRXFIFOEmpty(I2C_1_INST)){
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if(!DL_I2C_isControllerRXFIFOEmpty(I2C_1_INST)){
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//Get byte from the I2C RX FIFO of the target
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//Get byte from the I2C RX FIFO of the target
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rx_packet.rxBuffer[rx_index]= DL_I2C_receiveControllerData(I2C_1_INST);
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rx_packet.rxBuffer[rx_index]= DL_I2C_receiveControllerData(I2C_1_INST);
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printf("Received Bytes[%d]: 0x%02X\n", rx_index, rx_packet.rxBuffer[rx_index]);
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printf("Received Bytes[%d]: 0x%02X\n", rx_index, rx_packet.rxBuffer[rx_index]);
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rx_index++;
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rx_index++;
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- rx_timeout= 20000; //reset on successful read
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- }/*else{
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- rx_timeout--;
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- }*/
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+ }
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}
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}
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- //printf("index:%d\n", rx_index);
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+ //DEBUG
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+ printf("RX Index: %d\n", rx_index);
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//Check if all the data is received then store the battery limits in BatteryInfo struct:
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//Check if all the data is received then store the battery limits in BatteryInfo struct:
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if(rx_index== (sizeof(BatteryMeasurement))){
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if(rx_index== (sizeof(BatteryMeasurement))){
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measurement.voltage= rx_packet.rxBuffer[0] | (rx_packet.rxBuffer[1] << 8);
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measurement.voltage= rx_packet.rxBuffer[0] | (rx_packet.rxBuffer[1] << 8);
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@@ -90,14 +98,15 @@ bool controller_GetBatteryMeasurement(uint8_t const TARGET_ADDRESS, uint8_t slot
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measurement.temperature = rx_packet.rxBuffer[4] | (rx_packet.rxBuffer[5] << 8);
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measurement.temperature = rx_packet.rxBuffer[4] | (rx_packet.rxBuffer[5] << 8);
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measurement.slot_state = (SlotState)(rx_packet.rxBuffer[6]);
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measurement.slot_state = (SlotState)(rx_packet.rxBuffer[6]);
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battery_data[slot_id].battery_measurement= measurement;
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battery_data[slot_id].battery_measurement= measurement;
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+ //DEBUG
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+ printf("[I2C] Successfully read %d bytes from target 0x%02X\n", sizeof(BatteryMeasurement), TARGET_ADDRESS);
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}
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}
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- printf("[I2C] Successfully read %d bytes from target 0x%02X\n", sizeof(BatteryMeasurement), TARGET_ADDRESS);
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- printf("Voltage: %u\n", measurement.voltage);
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- printf("Current: %d\n", measurement.current);
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- printf("Temp: %u\n", measurement.temperature);
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- printf("Slot state: %u\n", measurement.slot_state);
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- DL_I2C_flushControllerRXFIFO(I2C_1_INST);
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- DL_I2C_flushControllerTXFIFO(I2C_1_INST);
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+ DL_I2C_flushTargetRXFIFO(I2C_1_INST);
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+ //DEBUG
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+ printf("Voltage: %u\n", battery_data[slot_id].battery_measurement.voltage);
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+ printf("Current: %d\n", battery_data[slot_id].battery_measurement.current);
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+ printf("Temp: %u\n", battery_data[slot_id].battery_measurement.temperature);
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+ printf("Slot state: %u\n", battery_data[slot_id].battery_measurement.slot_state);
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return true;
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return true;
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}
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}
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