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/**
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 * CAN Relay.
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 *
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 *
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 * @date    2006-12-17
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 * @author  Erik Larsson
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 *
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 *   ADC=Vin*1024/Vref
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 *   Vout=( 10 mV/C )( Temperature C ) + 500 mV
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 *
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 *  Transmitts: DATA: <temperature low byte> <temperature high byte> <relay status> <failsafe mode>
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 *
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 *
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 */
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#define TWO_BUTTON_MODE 0 /* If using two (or just one but nothing more) auxiliary buttons */
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/*-----------------------------------------------------------------------------
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 * Includes
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 *---------------------------------------------------------------------------*/
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/* system files */
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#include <avr/io.h>
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#include <avr/interrupt.h>
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#include <stdio.h>
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/* lib files */
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#include <bios.h>
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#include <tc1047.h>
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#include <funcdefs.h>
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/* defines */
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#define GROUP_ID        0x01
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#define RELAY_OFF           0x01
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#define RELAY_ON            0x02
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#define FAILSAFE_MODE       0x0F
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#define FAILSAFE_TRESHOLD   60  /* Degrees when nodeRelay goes into failsafe mode */
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#define RELAY_CMD_ON        0x01
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#define RELAY_CMD_OFF       0x02
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#define RELAY_CMD_TOGGLE    0x03
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#define RELAY_CMD_STATUS    0x04
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#define RELAY_CMD_RESET     0x05
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#define STATUS_SEND_PERIOD  10000 /* milliseconds */
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#define FAILSAFE_SEND_PERIOD    10000 /* milliseconds */
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#define BOUNCE_TIME         10 /* milliseconds */
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#define BUTTON1             1
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#define BUTTON2             2
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/*-------------------------------------------------------------------------
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 * Global variables
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 * -----------------------------------------------------------------------*/
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#if TWO_BUTTON_MODE
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Can_Message_t txMsg_Button;
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#endif
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uint8_t relayStatus, failsafe_flag;
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uint32_t boardTemperature = 0;
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Can_Message_t txMsg;
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/*----------------------------------------------------------------------------
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 * Functions
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 * -------------------------------------------------------------------------*/
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uint8_t relayOff();
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uint8_t relayOn();
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void relayFailsafe();
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void can_receive(Can_Message_t *msg){
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    uint32_t act;
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    uint8_t m, act_type, group, node;
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    if( ((msg->Id & CLASS_MASK)>>CLASS_MASK_BITS) == CLASS_ACT){
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        act = (msg->Id & TYPE_MASK) >> TYPE_MASK_BITS;
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        act_type = (act & ACT_TYPE_MASK) >> ACT_TYPE_BITS;
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        group = (act & ACT_GROUP_MASK) >> ACT_GROUP_BITS;
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        node = (act & ACT_NODE_MASK) >> ACT_NODE_BITS;
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        if( act_type == ACT_TYPE_RELAY && (group == GROUP_ID || node == NODE_ID) ){
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            if(msg->Data.bytes[0] == RELAY_CMD_ON){
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                // Turn relay on
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                relayStatus = relayOn();
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            }else if(msg->Data.bytes[0] == RELAY_CMD_OFF){
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                // Turn relay off
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                relayStatus = relayOff();
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            }else if(msg->Data.bytes[0] == RELAY_CMD_TOGGLE ){
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                    // Toggle relay
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                    if(relayStatus == RELAY_OFF){
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                        relayStatus = relayOn();
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                    }else{
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                        relayStatus = relayOff();
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                    }
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            }else if(msg->Data.bytes[0] == RELAY_CMD_STATUS){
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                // Send relay status to CAN
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                boardTemperature = getTC1047temperature();
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                if( (int32_t)boardTemperature >= FAILSAFE_TRESHOLD ){
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                    // Goto failsafe mode
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                    relayFailsafe();
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                }else{
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                    // Transmitt node status
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                    txMsg.Data.bytes[0] = boardTemperature & 0x00FF;
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                    txMsg.Data.bytes[1] = (boardTemperature & 0xFF00)>>8;
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                    txMsg.Data.bytes[2] = relayStatus;
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                    txMsg.DataLength = 3;
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                    bios->can_send( &txMsg );
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                }
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            }else if(msg->Data.bytes[0] == RELAY_CMD_RESET){
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                // Return to normal operation
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                failsafe_flag = 1;
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            }
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        }
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    }
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}
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/*----------------------------------------------------------------------------
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 * Interrupt routines // FIXME ordna och testa tryckknappar/rotary encoder
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 * -------------------------------------------------------------------------*/
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#if TWO_BUTTON_MODE
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ISR( PCINT2_vect )
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{
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    /*
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     * Auxiliary button pressed and released
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     * Check time between press and release to eliminate bounces
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     */
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    static uint32_t buttonTime[2];
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    txMsg_Button.RemoteFlag = 0;
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    txMsg_Button.ExtendedFlag = 1;
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    if( (PIND & (1<<PD6)) == 0){
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        /* Button pressed */
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        buttonTime[0] = Timebase_CurrentTime();
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    }else if( (PIND & (1<<PD6)) == 1){
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        if( Timebase_PassedTimeMillis( buttonTime[0] ) >= BOUNCE_TIME ){
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            /* No bounce, send message */
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            txMsg_Button.Id = BUTTON_ID;
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            txMsg_Button.DataLength = 1;
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            txMsg_Button.Data.bytes[0] = BUTTON1;
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            return;
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        }else{
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            /* Just bounces, ignore it */
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            return;
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        }
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    }
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    if( (PIND & (1<<PD7)) == 0){
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        /* Button pressed */
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        buttonTime[1] = Timebase_CurrentTime();
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    }else if( (PIND & (1<<PD7)) == 1){
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        if( Timebase_PassedTimeMillis( buttonTime[1] ) >= BOUNCE_TIME ){
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            /* No bounce, send message */
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            txMsg_Button.Id = BUTTON_ID;
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            txMsg_Button.DataLength = 1;
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            txMsg_Button.Data.bytes[0] = BUTTON2;
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            return;
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        }else{
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            /* Just bounces, ignore it */
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            return;
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        }
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    }
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}
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#endif
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/*-----------------------------------------------------------------------------
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 * Main Program
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 *---------------------------------------------------------------------------*/
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int main(void) {
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    adcTemperatureInit();
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#if TWO_BUTTON_MODE
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#error two button mode not yet tested
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    /*
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     * Initialize buttons
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     * It is possible to use ie. sensors instead
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     * but then change this
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     */
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    // Set as input and enable pull-up
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    DDRD &= ~( (1<<DDD6)|(1<<DDD7) );
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    PORTD |= (1<<PD6)|(1<<PD7);
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    // Enable IO-pin interrupt
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    PCICR |= (1<<PCIE1);
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    // Unmask PD6 and PD7
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    PCMSK2 |= (1<<PCINT22) | (1<<PCINT23);
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#endif
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    // Control channel for relay
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    DDRC |= (1<<DDC1);
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    // Set up callback for CAN messages
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    bios->can_callback = &can_receive;
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    sei();
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    // Turn relay off
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    relayStatus = relayOff();
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    uint32_t timeStamp = 0;
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    txMsg.RemoteFlag = 0;
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    txMsg.ExtendedFlag = 1;
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    txMsg.Id = ( CLASS_SNS<<CLASS_MASK_BITS )|( SNS_ACT_STATUS_RELAY<<TYPE_MASK_BITS )|(NODE_ID);
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    // Main loop
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    while (1) {
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        if( bios->timebase_get() - timeStamp >= STATUS_SEND_PERIOD ){
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            timeStamp = bios->timebase_get();
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            // Send relay status to CAN
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            boardTemperature = getTC1047temperature();
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            if( (int32_t)boardTemperature >= FAILSAFE_TRESHOLD ){
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                relayFailsafe();
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            }else{
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                txMsg.Data.bytes[0] = boardTemperature & 0x00FF;
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                txMsg.Data.bytes[1] = (boardTemperature & 0xFF00)>>8;
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                txMsg.Data.bytes[2] = relayStatus;
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                txMsg.DataLength = 3;
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                bios->can_send( &txMsg );
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            }
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        }
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    }
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    return 0;
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}
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uint8_t relayOff()
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{
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    // Turn off relay
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    PORTC &= ~(1<<PC1);
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235
    return RELAY_OFF;
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}
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uint8_t relayOn()
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{
240
    // Turn on relay
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    PORTC |= (1<<PC1);
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    return RELAY_ON;
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}
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246
void relayFailsafe()
247
{
248
    uint32_t timeStamp = 0;
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250
    relayStatus = relayOff();
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    failsafe_flag = 0;
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253
    while(1){
254
 
255
        if( failsafe_flag ){
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            // Return from failsafe mode
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            return;
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        }
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260
        if( bios->timebase_get() - timeStamp >= FAILSAFE_SEND_PERIOD ){
261
            timeStamp = bios->timebase_get();
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            // Send relay status to CAN
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            boardTemperature = getTC1047temperature();
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            txMsg.Data.bytes[0] = boardTemperature & 0x00FF;
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            txMsg.Data.bytes[1] = (boardTemperature & 0xFF00)>>8;
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            txMsg.Data.bytes[2] = relayStatus;
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            txMsg.Data.bytes[3] = FAILSAFE_MODE;
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            bios->can_send( &txMsg );
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        }
272
    }
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}
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