fixes for the wsn430
fixed vtimer for the msp430 added spi module for the wsn430 v1.3b changed some variables to uintXX_t, fixes overflow on msp430
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01f2cb2115
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@ -9,12 +9,12 @@
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#ifndef __QUEUE_H
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#define __QUEUE_H
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#include "queue.h"
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#include <stdlib.h>
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typedef struct queue_node_t {
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struct queue_node_t *next;
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unsigned int data;
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unsigned int priority;
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uint32_t priority;
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} queue_node_t;
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queue_node_t* queue_remove_head(queue_node_t* root);
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@ -89,12 +89,12 @@ void queue_print(queue_node_t* node) {
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printf("queue:\n");
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while (node->next != NULL) {
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node = node->next;
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printf("Data: %u Priority: %u\n", node->data, node->priority);
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printf("Data: %u Priority: %lu\n", node->data, node->priority);
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}
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}
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void queue_print_node(queue_node_t *node) {
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printf("Data: %u Priority: %u Next: %u\n", (unsigned int)node->data, node->priority, (unsigned int)node->next);
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printf("Data: %u Priority: %lu Next: %u\n", (unsigned int)node->data, node->priority, (unsigned int)node->next);
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}
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/*
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@ -36,6 +36,8 @@ and the mailinglist (subscription via web site)
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void (*int_handler)(int);
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extern void timerA_init(void);
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uint16_t overflow_interrupt[ARCH_MAXTIMERS+1];
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uint16_t timer_round;
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static void TA0_disable_interrupt(short timer) {
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volatile unsigned int *ptr = &TA0CCTL0 + (timer);
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@ -67,12 +69,13 @@ void TA0_unset(short timer) {
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}
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unsigned long hwtimer_arch_now() {
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return TA0R;
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return ((uint32_t)timer_round << 16)+TA0R;
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}
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void hwtimer_arch_init(void (*handler)(int), uint32_t fcpu) {
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timerA_init();
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int_handler = handler;
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TA0_enable_interrupt(0);
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}
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void hwtimer_arch_enable_interrupt(void) {
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@ -88,12 +91,14 @@ void hwtimer_arch_disable_interrupt(void) {
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}
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void hwtimer_arch_set(unsigned long offset, short timer) {
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unsigned int value = hwtimer_arch_now() + offset;
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unsigned long value = hwtimer_arch_now() + offset;
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hwtimer_arch_set_absolute(value, timer);
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}
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void hwtimer_arch_set_absolute(unsigned long value, short timer) {
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TA0_set(value,timer);
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uint16_t small_value = value % 0xFFFF;
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overflow_interrupt[timer] = (uint16_t)(value >> 16);
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TA0_set(small_value,timer);
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}
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void hwtimer_arch_unset(short timer) {
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@ -51,6 +51,6 @@ and the mailinglist (subscription via web site)
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#endif
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#define HWTIMER_SPEED 32768
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#define HWTIMER_MAXTICKS (0xFFFF)
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#define HWTIMER_MAXTICKS (0xFFFFFFFF)
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#endif // __HWTIMER_CPU_H
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@ -7,17 +7,20 @@ static uint32_t ticks = 0;
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extern void (*int_handler)(int);
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extern void TA0_unset(short timer);
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extern uint16_t overflow_interrupt[ARCH_MAXTIMERS+1];
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extern uint16_t timer_round;
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void timerA_init(void)
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{
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ticks = 0; // Set tick counter value to 0
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timer_round = 0; // Set to round 0
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TA0CTL = TASSEL_1 + TACLR; // Clear the timer counter, set ACLK
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TA0CTL &= ~TAIFG; // Clear the IFG
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TA0CTL &= ~TAIE; // Clear the IFG
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volatile unsigned int *ccr = &TA0CCR0;
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volatile unsigned int *ctl = &TA0CCTL0;
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for (int i = 0; i < ARCH_MAXTIMERS; i++) {
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volatile unsigned int *ccr = &TA0CCR0 + (i);
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volatile unsigned int *ctl = &TA0CCTL0 + (i);
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*ccr = 0;
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*ctl &= ~(CCIFG);
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*ctl &= ~(CCIE);
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@ -27,11 +30,11 @@ void timerA_init(void)
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interrupt(TIMERA0_VECTOR) __attribute__ ((naked)) timer_isr_ccr0(void) {
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__enter_isr();
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TA0_unset(0);
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int_handler(0);
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//TA0_unset(0);
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//int_handler(0);
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timer_round += 1;
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__exit_isr();
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}
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interrupt(TIMERA1_VECTOR) __attribute__ ((naked)) timer_isr(void) {
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@ -42,13 +45,15 @@ interrupt(TIMERA1_VECTOR) __attribute__ ((naked)) timer_isr(void) {
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if (taiv & TAIFG) {
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// puts("msp430/hwtimer_cpu TAIFG set!");
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// TA0CTL &= ~TAIFG;
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// ticks += 0xFFFF;
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// timer_round += 1;
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} else {
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short timer = (taiv/2);
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if(overflow_interrupt[timer] == timer_round)
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{
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TA0_unset(timer);
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int_handler(timer);
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}
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}
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__exit_isr();
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}
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@ -8,6 +8,9 @@ endif
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ifneq (,$(findstring msba2,$(BOARD)))
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DIRS += spi
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endif
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ifneq (,$(findstring wsn430-v1_3b,$(BOARD)))
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DIRS += spi
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endif
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all: $(BINDIR)$(MODULE).a
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@for i in $(DIRS) ; do $(MAKE) -C $$i ; done ;
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@ -34,7 +34,7 @@ create_hashtable(uint32_t minsize,
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struct hashtable *h;
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unsigned int pindex, size = primes[0];
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/* Check requested hashtable isn't too large */
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if (minsize > (1u << 30)) return NULL;
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if (minsize > (1UL << 30)) return NULL;
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/* Enforce size as prime */
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for (pindex=0; pindex < prime_table_length; pindex++) {
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if (primes[pindex] > minsize) { size = primes[pindex]; break; }
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@ -59,7 +59,7 @@ hash(struct hashtable *h, void *k)
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{
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/* Aim to protect against poor hash functions by adding logic here
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* - logic taken from java 1.4 hashtable source */
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unsigned int i = h->hashfn(k);
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uint32_t i = h->hashfn(k);
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i += ~(i << 9);
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i ^= ((i >> 14) | (i << 18)); /* >>> */
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i += (i << 4);
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@ -69,7 +69,7 @@ void _cc110x_ng_send_handler(char *pkt) {
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p.dst = addr;
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mesg.type = SND_PKT;
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mesg.content.ptr = (char*) &tcmd;
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printf("[cc110x] Sending packet of length %u to %hu: %s\n", p.length, p.dst, (char*) p.data);
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printf("[cc110x] Sending packet of length %u to %u: %s\n", p.length, p.dst, (char*) p.data);
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msg_send_receive(&mesg, &mesg, transceiver_pid);
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response = mesg.content.value;
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printf("[cc110x] Packet sent: %lu\n", response);
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@ -13,11 +13,11 @@
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#include <debug.h>
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#define VTIMER_THRESHOLD 20U
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#define VTIMER_BACKOFF 10U
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#define VTIMER_THRESHOLD 20UL
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#define VTIMER_BACKOFF 10UL
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#define SECONDS_PER_TICK (4096U)
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#define MICROSECONDS_PER_TICK (4096U * 1000000)
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#define MICROSECONDS_PER_TICK (4096UL * 1000000)
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void vtimer_callback(void *ptr);
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void vtimer_tick(void *ptr);
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@ -58,16 +58,16 @@ static int update_shortterm(void) {
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hwtimer_next_absolute = shortterm_queue_root.next->priority;
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unsigned int next = hwtimer_next_absolute + longterm_tick_start;
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unsigned int now = hwtimer_now();
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uint32_t next = hwtimer_next_absolute + longterm_tick_start;
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uint32_t now = HWTIMER_TICKS_TO_US(hwtimer_now());
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if((next - VTIMER_THRESHOLD - now) > MICROSECONDS_PER_TICK ) {
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next = now + VTIMER_BACKOFF;
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if((next - HWTIMER_TICKS_TO_US(VTIMER_THRESHOLD) - now) > MICROSECONDS_PER_TICK ) {
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next = now + HWTIMER_TICKS_TO_US(VTIMER_BACKOFF);
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}
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hwtimer_id = hwtimer_set_absolute(next, vtimer_callback, NULL);
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hwtimer_id = hwtimer_set_absolute(HWTIMER_TICKS(next), vtimer_callback, NULL);
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DEBUG("update_shortterm: Set hwtimer to %lu (now=%lu)\n", hwtimer_next_absolute + longterm_tick_start, hwtimer_now());
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DEBUG("update_shortterm: Set hwtimer to %lu (now=%lu)\n", next, HWTIMER_TICKS_TO_US(hwtimer_now()));
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return 0;
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}
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@ -150,6 +150,7 @@ static int vtimer_set(vtimer_t *timer) {
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normalize_to_tick(&(timer->absolute));
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DEBUG("vtimer_set(): Absolute: %lu %lu\n", timer->absolute.seconds, timer->absolute.microseconds);
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DEBUG("vtimer_set(): NOW: %lu %lu\n", vtimer_now().seconds, vtimer_now().microseconds);
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int result = 0;
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@ -185,7 +186,7 @@ static int vtimer_set(vtimer_t *timer) {
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}
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timex_t vtimer_now() {
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timex_t t = timex_set(seconds, hwtimer_now()-longterm_tick_start);
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timex_t t = timex_set(seconds, HWTIMER_TICKS_TO_US(hwtimer_now())-longterm_tick_start);
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return t;
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}
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@ -194,6 +195,8 @@ int vtimer_init() {
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int state = disableIRQ();
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seconds = 0;
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longterm_tick_start = 0;
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longterm_tick_timer.action = vtimer_tick;
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longterm_tick_timer.arg = NULL;
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