minor corrections to adhere contiki code style guidelines
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aa07993d36
commit
ee556dcf14
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@ -120,9 +120,9 @@ clock_delay_usec(uint16_t dt)
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stop = now + dt * ((pic32_clock_get_system_clock() / 1000000) / 2);
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for (;;) {
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for(;;) {
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asm volatile("mfc0 %0, $9" : "=r"(now));
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if ((int32_t) (now - stop) >= 0) {
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if((int32_t)(now - stop) >= 0) {
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break;
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}
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}
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@ -150,9 +150,9 @@
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int8_t \
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pic32_uart##XX##_write(uint8_t data) \
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{ \
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while (U##XX##STAbits.UTXBF); \
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while(U##XX##STAbits.UTXBF); \
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U##XX##TXREG = data; \
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while (!U##XX##STAbits.TRMT); \
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while(!U##XX##STAbits.TRMT); \
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\
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return UART_NO_ERROR; \
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}
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@ -81,15 +81,15 @@
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ISR(_UART_##XX##_VECTOR) \
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{ \
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volatile uint8_t byte; \
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if (IFS##Y##bits.U##XX##RXIF) { \
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if ((U##XX##STAbits.PERR == 0) && (U##XX##STAbits.FERR == 0)) { \
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if(IFS##Y##bits.U##XX##RXIF) { \
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if((U##XX##STAbits.PERR == 0) && (U##XX##STAbits.FERR == 0)) { \
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CALLBACK(U##XX##RXREG); \
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} else { \
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byte = U##XX##RXREG; /* NULL READ */ \
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} \
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IFS##Y##CLR = _IFS##Y##_U##XX##RXIF_MASK; \
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} \
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if (U##XX##STAbits.OERR) { \
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if(U##XX##STAbits.OERR) { \
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U##XX##STACLR = _U##XX##STA_OERR_MASK; \
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} \
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}
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@ -127,7 +127,7 @@ PROCESS_THREAD(battery_process, ev, data)
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// start converting
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AD1CON1SET = 0b0000000000000010;
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while (!(AD1CON1 & 0b0000000000000001)) {
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while(!(AD1CON1 & 0b0000000000000001)) {
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; // wait conversion finish
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}
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@ -96,7 +96,7 @@ configure(int type, int value)
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{
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switch (type) {
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case SENSORS_ACTIVE:
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if (value) {
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if(value) {
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if(!status(SENSORS_ACTIVE)) {
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timer_set(&debouncetimer, 0);
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@ -106,8 +106,8 @@ set_long_add_mem(uint16_t addr, uint8_t val)
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const uint8_t tmp = MRF24J40_INTERRUPT_ENABLE_STAT();
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uint8_t msg[3];
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msg[0] = (((uint8_t) (addr >> 3)) & 0x7F) | 0x80;
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msg[1] = (((uint8_t) (addr << 5)) & 0xE0) | 0x10;
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msg[0] = (((uint8_t)(addr >> 3)) & 0x7F) | 0x80;
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msg[1] = (((uint8_t)(addr << 5)) & 0xE0) | 0x10;
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msg[2] = val;
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if(tmp) {
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@ -154,8 +154,8 @@ get_long_add_mem(uint16_t addr)
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uint8_t ret_val;
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uint8_t msg[2];
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msg[0] = (((uint8_t) (addr >> 3)) & 0x7F) | 0x80;
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msg[1] = ((uint8_t) (addr << 5)) & 0xE0;
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msg[0] = (((uint8_t)(addr >> 3)) & 0x7F) | 0x80;
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msg[1] = ((uint8_t)(addr << 5)) & 0xE0;
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if(tmp) {
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MRF24J40_INTERRUPT_ENABLE_CLR();
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@ -215,8 +215,8 @@ mrf24j40_set_channel(uint16_t ch)
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void
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mrf24j40_set_panid(uint16_t id)
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{
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set_short_add_mem(MRF24J40_PANIDL, (uint8_t) id);
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set_short_add_mem(MRF24J40_PANIDH, (uint8_t) (id >> 8));
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set_short_add_mem(MRF24J40_PANIDL, (uint8_t)id);
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set_short_add_mem(MRF24J40_PANIDH, (uint8_t)(id >> 8));
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}
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/*---------------------------------------------------------------------------*/
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/**
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@ -227,8 +227,8 @@ mrf24j40_set_panid(uint16_t id)
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void
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mrf24j40_set_short_mac_addr(uint16_t addr)
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{
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set_short_add_mem(MRF24J40_SADRL, (uint8_t) addr);
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set_short_add_mem(MRF24J40_SADRH, (uint8_t) (addr >> 8));
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set_short_add_mem(MRF24J40_SADRL, (uint8_t)addr);
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set_short_add_mem(MRF24J40_SADRH, (uint8_t)(addr >> 8));
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}
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/*---------------------------------------------------------------------------*/
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/**
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@ -239,14 +239,14 @@ mrf24j40_set_short_mac_addr(uint16_t addr)
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void
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mrf24j40_set_extended_mac_addr(uint64_t addr)
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{
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set_short_add_mem(MRF24J40_EADR7, (uint8_t) addr);
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set_short_add_mem(MRF24J40_EADR6, (uint8_t) (addr >> 8));
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set_short_add_mem(MRF24J40_EADR5, (uint8_t) (addr >> 16));
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set_short_add_mem(MRF24J40_EADR4, (uint8_t) (addr >> 24));
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set_short_add_mem(MRF24J40_EADR3, (uint8_t) (addr >> 32));
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set_short_add_mem(MRF24J40_EADR2, (uint8_t) (addr >> 40));
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set_short_add_mem(MRF24J40_EADR1, (uint8_t) (addr >> 48));
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set_short_add_mem(MRF24J40_EADR0, (uint8_t) (addr >> 56));
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set_short_add_mem(MRF24J40_EADR7, (uint8_t)addr);
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set_short_add_mem(MRF24J40_EADR6, (uint8_t)(addr >> 8));
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set_short_add_mem(MRF24J40_EADR5, (uint8_t)(addr >> 16));
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set_short_add_mem(MRF24J40_EADR4, (uint8_t)(addr >> 24));
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set_short_add_mem(MRF24J40_EADR3, (uint8_t)(addr >> 32));
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set_short_add_mem(MRF24J40_EADR2, (uint8_t)(addr >> 40));
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set_short_add_mem(MRF24J40_EADR1, (uint8_t)(addr >> 48));
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set_short_add_mem(MRF24J40_EADR0, (uint8_t)(addr >> 56));
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}
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/*---------------------------------------------------------------------------*/
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/**
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@ -257,8 +257,8 @@ mrf24j40_set_extended_mac_addr(uint64_t addr)
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void
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mrf24j40_get_short_mac_addr(uint16_t *addr)
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{
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*(((uint8_t *) & addr)) = get_short_add_mem(MRF24J40_SADRH);
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*(((uint8_t *) & addr) + 1) = get_short_add_mem(MRF24J40_SADRL);
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*(((uint8_t *)& addr)) = get_short_add_mem(MRF24J40_SADRH);
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*(((uint8_t *)& addr) + 1) = get_short_add_mem(MRF24J40_SADRL);
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}
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/*---------------------------------------------------------------------------*/
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/**
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@ -269,14 +269,14 @@ mrf24j40_get_short_mac_addr(uint16_t *addr)
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void
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mrf24j40_get_extended_mac_addr(uint64_t *addr)
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{
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*(((uint8_t *) & addr)) = get_short_add_mem(MRF24J40_EADR7);
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*(((uint8_t *) & addr) + 1) = get_short_add_mem(MRF24J40_EADR6);
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*(((uint8_t *) & addr) + 2) = get_short_add_mem(MRF24J40_EADR5);
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*(((uint8_t *) & addr) + 3) = get_short_add_mem(MRF24J40_EADR4);
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*(((uint8_t *) & addr) + 4) = get_short_add_mem(MRF24J40_EADR3);
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*(((uint8_t *) & addr) + 5) = get_short_add_mem(MRF24J40_EADR2);
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*(((uint8_t *) & addr) + 6) = get_short_add_mem(MRF24J40_EADR1);
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*(((uint8_t *) & addr) + 7) = get_short_add_mem(MRF24J40_EADR0);
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*(((uint8_t *)& addr)) = get_short_add_mem(MRF24J40_EADR7);
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*(((uint8_t *)& addr) + 1) = get_short_add_mem(MRF24J40_EADR6);
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*(((uint8_t *)& addr) + 2) = get_short_add_mem(MRF24J40_EADR5);
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*(((uint8_t *)& addr) + 3) = get_short_add_mem(MRF24J40_EADR4);
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*(((uint8_t *)& addr) + 4) = get_short_add_mem(MRF24J40_EADR3);
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*(((uint8_t *)& addr) + 5) = get_short_add_mem(MRF24J40_EADR2);
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*(((uint8_t *)& addr) + 6) = get_short_add_mem(MRF24J40_EADR1);
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*(((uint8_t *)& addr) + 7) = get_short_add_mem(MRF24J40_EADR0);
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}
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/*---------------------------------------------------------------------------*/
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/**
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@ -82,10 +82,10 @@ init_net(uint8_t node_id)
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memset(&shortaddr, 0, sizeof(shortaddr));
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memset(&longaddr, 0, sizeof(longaddr));
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*((uint8_t *) & shortaddr) = node_id >> 8;
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*((uint8_t *) & shortaddr + 1) = node_id;
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*((uint8_t *) & longaddr) = node_id >> 8;
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*((uint8_t *) & longaddr + 1) = node_id;
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*((uint8_t *)&shortaddr) = node_id >> 8;
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*((uint8_t *)&shortaddr + 1) = node_id;
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*((uint8_t *)&longaddr) = node_id >> 8;
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*((uint8_t *)&longaddr + 1) = node_id;
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for(i = 2; i < sizeof(longaddr); ++i) {
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((uint8_t *)&longaddr)[i] = random_rand();
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}
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*((uint8_t *) & shortaddr), *((uint8_t *) & shortaddr + 1));
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PRINTF("EXTENDED MAC ADDRESS %02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x\n",
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*((uint8_t *) & longaddr),
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*((uint8_t *) & longaddr + 1),
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*((uint8_t *) & longaddr + 2),
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*((uint8_t *) & longaddr + 3),
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*((uint8_t *) & longaddr + 4),
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*((uint8_t *) & longaddr + 5),
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*((uint8_t *) & longaddr + 6),
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*((uint8_t *) & longaddr + 7));
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*((uint8_t *)&longaddr),
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*((uint8_t *)&longaddr + 1),
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*((uint8_t *)&longaddr + 2),
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*((uint8_t *)&longaddr + 3),
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*((uint8_t *)&longaddr + 4),
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*((uint8_t *)&longaddr + 5),
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*((uint8_t *)&longaddr + 6),
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*((uint8_t *)&longaddr + 7));
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memset(&addr, 0, sizeof(rimeaddr_t));
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