Code style fixes: sensinode
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e38b419e84
commit
b4bb51e811
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@ -91,7 +91,7 @@ struct flash_address {
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static struct flash_address f;
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static struct record r;
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static struct sensors_sensor * s;
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static struct sensors_sensor *s;
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static struct etimer et;
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#define FLASH_START_ADDR 0x1E0000
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#define FLASH_END_ADDR 0x1FFFFF
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@ -201,7 +201,7 @@ PROCESS_THREAD(batmon_process, ev, data)
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PRINTF("BatMon\n", sizeof(r));
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s = sensors_find(ADC_SENSOR);
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if (!s) {
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if(!s) {
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PRINTF("BatMon: ADC not found\n");
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PROCESS_EXIT();
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}
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@ -77,7 +77,7 @@ fade(int l) CC_NON_BANKED
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volatile int i, a;
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int k, j;
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for(k = 0; k < 400; ++k) {
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j = k > 200? 400 - k: k;
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j = k > 200 ? 400 - k : k;
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leds_on(l);
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for(i = 0; i < j; ++i) {
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@ -96,7 +96,7 @@ set_rime_addr(void) CC_NON_BANKED
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uint8_t *addr_long = NULL;
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uint16_t addr_short = 0;
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char i;
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__code unsigned char * macp;
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__code unsigned char *macp;
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PUTSTRING("Rime is 0x");
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PUTHEX(sizeof(rimeaddr_t));
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@ -119,7 +119,7 @@ set_rime_addr(void) CC_NON_BANKED
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FMAP = 3;
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/* Set our pointer to the correct address and fetch 8 bytes of MAC */
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macp = (__code unsigned char *) 0xFFF8;
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macp = (__code unsigned char *)0xFFF8;
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for(i = (RIMEADDR_SIZE - 1); i >= 0; --i) {
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rimeaddr_node_addr.u8[i] = *macp;
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@ -343,7 +343,7 @@ main(void)
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nop
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__endasm;
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if (SLEEP & SLEEP_MODE0) {
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if(SLEEP & SLEEP_MODE0) {
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#endif /* LPM_MODE==LPM_MODE_PM2 */
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ENERGEST_OFF(ENERGEST_TYPE_CPU);
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@ -54,7 +54,7 @@ putdec(uint8_t c)
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c %= div;
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if((disp != 0) || (hassent) || (div == 1)) {
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hassent = 1;
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putchar('0'+disp);
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putchar('0' + disp);
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}
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}
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}
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@ -134,8 +134,8 @@ value(int type)
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static int
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status(int type)
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{
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return ready;
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}
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return ready;
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}
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/*---------------------------------------------------------------------------*/
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/*
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* On N740 we can control Ill and Acc individually:
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@ -203,9 +203,9 @@ configure(int type, int value)
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ready |= ADC_VAL_LIGHT_ON;
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}
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#endif /* LIGHT_SENSOR_ON */
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n740_ser_par_set(ser_par_val);
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n740_ser_par_set(ser_par_val);
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#endif /* MODEL_N740 */
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}
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}
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return ready;
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}
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@ -59,25 +59,25 @@ HWCONF_PORT_0_IRQ(BUTTON_2, 7)
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#endif /* MODEL_N711 */
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/*---------------------------------------------------------------------------*/
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static
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int value_b1(int type)
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static int
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value_b1(int type)
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{
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return BUTTON_1_READ() || !timer_expired(&debouncetimer[0]);
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}
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/*---------------------------------------------------------------------------*/
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static
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int status_b1(int type)
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static int
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status_b1(int type)
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{
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switch (type) {
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switch(type) {
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case SENSORS_ACTIVE:
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case SENSORS_READY:
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return BUTTON_1_IRQ_ENABLED();
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}
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}
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return 0;
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}
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/*---------------------------------------------------------------------------*/
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static
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int configure_b1(int type, int value)
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static int
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configure_b1(int type, int value)
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{
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switch(type) {
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case SENSORS_HW_INIT:
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@ -92,7 +92,7 @@ int configure_b1(int type, int value)
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timer_set(&debouncetimer[0], 0);
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BUTTON_1_IRQ_FLAG_OFF();
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BUTTON_1_ENABLE_IRQ();
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}
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}
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} else {
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BUTTON_1_DISABLE_IRQ();
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}
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@ -101,16 +101,16 @@ int configure_b1(int type, int value)
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return 0;
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}
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/*---------------------------------------------------------------------------*/
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static
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int value_b2(int type)
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static int
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value_b2(int type)
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{
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return BUTTON_2_READ() || !timer_expired(&debouncetimer[1]);
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}
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/*---------------------------------------------------------------------------*/
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static
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int status_b2(int type)
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static int
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status_b2(int type)
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{
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switch (type) {
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switch(type) {
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case SENSORS_ACTIVE:
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case SENSORS_READY:
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return BUTTON_2_IRQ_ENABLED();
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@ -118,8 +118,8 @@ int status_b2(int type)
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return 0;
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}
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/*---------------------------------------------------------------------------*/
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static
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int configure_b2(int type, int value)
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static int
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configure_b2(int type, int value)
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{
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switch(type) {
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case SENSORS_HW_INIT:
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@ -146,7 +146,7 @@ m25p16_wrdi()
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}
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/*---------------------------------------------------------------------------*/
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void
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m25p16_rdid(struct m25p16_rdid * rdid)
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m25p16_rdid(struct m25p16_rdid *rdid)
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{
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uint8_t i;
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@ -237,7 +237,7 @@ m25p16_pp(uint8_t * addr, uint8_t * buff, uint8_t buff_len)
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}
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/* Write the bytes */
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for(i=0; i<buff_len; i++) {
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for(i = 0; i < buff_len; i++) {
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bit_bang_write(~buff[i]);
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}
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ENERGEST_OFF(ENERGEST_TYPE_FLASH_WRITE);
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@ -281,7 +281,8 @@ m25p16_dp()
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* Release Deep Power Down. We do NOT read the Electronic Signature
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*/
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void
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m25p16_res() {
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m25p16_res()
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{
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select();
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bit_bang_write(M25P16_I_RES);
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deselect();
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@ -296,7 +297,8 @@ m25p16_res() {
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* \return The old style Electronic Signature. This must be 0x14
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*/
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uint8_t
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m25p16_res_res() {
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m25p16_res_res()
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{
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uint8_t rv;
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select();
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@ -91,11 +91,11 @@
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* CFD bytes programmed to 0x00.
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*/
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struct m25p16_rdid {
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uint8_t man_id; /** Manufacturer ID */
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uint8_t mem_type; /** Memory Type */
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uint8_t mem_size; /** Memory Size */
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uint8_t uid_len; /** Unique ID length */
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uint8_t uid[16]; /** Unique ID */
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uint8_t man_id; /** Manufacturer ID */
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uint8_t mem_type; /** Memory Type */
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uint8_t mem_size; /** Memory Size */
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uint8_t uid_len; /** Unique ID length */
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uint8_t uid[16]; /** Unique ID */
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};
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/*---------------------------------------------------------------------------*/
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/**
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@ -144,7 +144,7 @@ void m25p16_wrdi();
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* \param rdid Pointer to a struct which will hold the information returned
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* by the RDID instruction
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*/
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void m25p16_rdid(struct m25p16_rdid * rdid);
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void m25p16_rdid(struct m25p16_rdid *rdid);
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/**
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* \brief Read Status Register (RDSR) instruction
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@ -64,7 +64,7 @@
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/* Serial/Parallel Shift Register (74HC595D) Functions */
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void n740_ser_par_init(void);
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void n740_ser_par_set(uint8_t data) ;
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void n740_ser_par_set(uint8_t data);
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uint8_t n740_ser_par_get(void);
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/* Analog Switch (U5 - 74HC4053D) Functions */
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@ -44,13 +44,13 @@
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const struct sensors_sensor *sensors[] = {
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#if ADC_SENSOR_ON
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&adc_sensor,
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&adc_sensor,
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#endif
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#if BUTTON_SENSOR_ON
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&button_1_sensor,
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&button_2_sensor,
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&button_1_sensor,
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&button_2_sensor,
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#endif
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0
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0
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};
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unsigned char sensors_flags[(sizeof(sensors) / sizeof(struct sensors_sensor *))];
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@ -61,7 +61,7 @@ sensinode_sensors_activate()
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{
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struct sensors_sensor *sensor;
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sensor = sensors_first();
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while (sensor) {
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while(sensor) {
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sensor->configure(SENSORS_ACTIVE, 1);
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sensor = sensors_next(sensor);
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}
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@ -73,7 +73,7 @@ sensinode_sensors_deactivate()
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{
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struct sensors_sensor *sensor;
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sensor = sensors_first();
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while (sensor) {
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while(sensor) {
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sensor->configure(SENSORS_ACTIVE, 0);
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sensor = sensors_next(sensor);
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}
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@ -76,7 +76,7 @@ void batmon_log(uint8_t trigger);
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#endif
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/*---------------------------------------------------------------------------*/
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static struct uip_udp_conn *server_conn;
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static struct disco_request_pdu * req;
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static struct disco_request_pdu *req;
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static struct disco_response_pdu resp;
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static struct disco_seed seed;
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static uint8_t state;
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@ -92,7 +92,7 @@ extern void *uip_appdata;
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__xdata __at(BOOTTY_CMD_LOCATION) static uint8_t bd;
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/*---------------------------------------------------------------------------*/
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static void timer_handler(void * p);
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static void timer_handler(void *p);
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/*---------------------------------------------------------------------------*/
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static void
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abort() CC_NON_BANKED
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@ -116,9 +116,9 @@ restart_timer(uint16_t t) CC_NON_BANKED
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}
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/*---------------------------------------------------------------------------*/
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static void
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timer_handler(void * p)
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timer_handler(void *p)
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{
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uint8_t * s = p;
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uint8_t *s = p;
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uint8_t wip;
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PRINTF("Disco: @ %lu, s: %u\n", clock_seconds(), *s);
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@ -213,7 +213,8 @@ cmd_init() CC_NON_BANKED
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static uint8_t
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cmd_write() CC_NON_BANKED
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{
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PRINTF("Disco: Write 0x%02x%02x%02x\n", req->addr[0], req->addr[1], req->addr[2]);
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PRINTF("Disco: Write 0x%02x%02x%02x\n", req->addr[0], req->addr[1],
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req->addr[2]);
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if(uip_datalen() != DISCO_LEN_WRITE) {
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resp.status = DISCO_ERR_BAD_LEN;
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return DISCO_RESP_LEN_ERR;
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@ -168,7 +168,7 @@ process_request() CC_NON_BANKED
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}
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}
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}
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} else if (buf[0] == REQUEST_TYPE_DRT) {
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} else if(buf[0] == REQUEST_TYPE_DRT) {
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uint32_t flip = 0;
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PRINTF("Default Routes\n");
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for(i = buf[1]; i < UIP_DS6_DEFRT_NB; i++) {
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}
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}
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}
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} else if (buf[0] == REQUEST_TYPE_ADDR) {
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} else if(buf[0] == REQUEST_TYPE_ADDR) {
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PRINTF("Unicast Addresses\n");
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for(i = buf[1]; i < UIP_DS6_ADDR_NB; i++) {
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if(uip_ds6_if.addr_list[i].isused) {
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}
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}
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}
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} else if (buf[0] == REQUEST_TYPE_TOTALS) {
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} else if(buf[0] == REQUEST_TYPE_TOTALS) {
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memset(&buf[2], 0, 4);
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for(i = 0; i < UIP_DS6_ADDR_NB; i++) {
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if(uip_ds6_if.addr_list[i].isused) {
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