Revived the timesynch module, which has been switched off since the introduction of the new radio API after Contiki 2.4. The new code uses explicit timestamp messages instead of piggybacking timestamps on every transmission. It is also significantly better in terms of exactness.
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@ -34,7 +34,7 @@
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*
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*
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* This file is part of the Contiki operating system.
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* This file is part of the Contiki operating system.
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*
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*
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* $Id: timesynch.c,v 1.10 2010/06/14 19:19:17 adamdunkels Exp $
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* $Id: timesynch.c,v 1.11 2010/12/16 22:47:38 adamdunkels Exp $
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*/
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*/
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/**
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/**
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@ -44,15 +44,37 @@
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* Adam Dunkels <adam@sics.se>
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* Adam Dunkels <adam@sics.se>
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*/
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*/
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#include "net/rime/timesynch.h"
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#include "contiki.h"
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#include "net/packetbuf.h"
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#include "lib/random.h"
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#include "net/rime.h"
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#include "net/rime.h"
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#include "dev/cc2420.h"
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#include "net/rime/timesynch.h"
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#if TIMESYNCH_CONF_ENABLED
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#if TIMESYNCH_CONF_ENABLED
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static int authority_level;
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static int authority_level;
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static rtimer_clock_t offset;
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static rtimer_clock_t offset;
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#define TIMESYNCH_CHANNEL 7
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struct timesynch_msg {
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uint8_t authority_level;
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uint8_t dummy;
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uint16_t authority_offset;
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uint16_t clock_fine;
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clock_time_t clock_time;
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uint32_t seconds;
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/* We need some padding so that the radio has time to update the
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timestamp at the end of the packet, after the transmission has
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started. */
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uint8_t padding[16];
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/* The timestamp must be the last two bytes. */
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uint16_t timestamp;
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};
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PROCESS(timesynch_process, "Timesynch process");
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#define MIN_INTERVAL CLOCK_SECOND * 8
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#define MAX_INTERVAL CLOCK_SECOND * 60 * 5
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/*---------------------------------------------------------------------------*/
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/*---------------------------------------------------------------------------*/
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int
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int
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timesynch_authority_level(void)
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timesynch_authority_level(void)
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@ -63,7 +85,16 @@ timesynch_authority_level(void)
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void
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void
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timesynch_set_authority_level(int level)
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timesynch_set_authority_level(int level)
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{
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{
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int old_level = authority_level;
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authority_level = level;
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authority_level = level;
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if(old_level != authority_level) {
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/* Restart the timesynch process to restart with a low
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transmission interval. */
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process_exit(×ynch_process);
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process_start(×ynch_process, NULL);
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}
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}
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}
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/*---------------------------------------------------------------------------*/
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/*---------------------------------------------------------------------------*/
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rtimer_clock_t
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rtimer_clock_t
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@ -93,42 +124,75 @@ timesynch_offset(void)
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static void
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static void
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adjust_offset(rtimer_clock_t authoritative_time, rtimer_clock_t local_time)
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adjust_offset(rtimer_clock_t authoritative_time, rtimer_clock_t local_time)
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{
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{
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offset = offset + authoritative_time - local_time;
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offset = authoritative_time - local_time;
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}
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}
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/*---------------------------------------------------------------------------*/
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/*---------------------------------------------------------------------------*/
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static void
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static void
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incoming_packet(void)
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broadcast_recv(struct broadcast_conn *c, const rimeaddr_t *from)
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{
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{
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if(packetbuf_totlen() != 0) {
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struct timesynch_msg msg;
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memcpy(&msg, packetbuf_dataptr(), sizeof(msg));
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/* We check the authority level of the sender of the incoming
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/* We check the authority level of the sender of the incoming
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packet. If the sending node has a lower authority level than we
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packet. If the sending node has a lower authority level than we
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have, we synchronize to the time of the sending node and set our
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have, we synchronize to the time of the sending node and set our
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own authority level to be one more than the sending node. */
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own authority level to be one more than the sending node. */
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if(cc2420_authority_level_of_sender < authority_level) {
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if(msg.authority_level < authority_level) {
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adjust_offset(cc2420_time_of_departure,
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adjust_offset(msg.timestamp + msg.authority_offset,
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cc2420_time_of_arrival);
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packetbuf_attr(PACKETBUF_ATTR_TIMESTAMP));
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if(cc2420_authority_level_of_sender + 1 != authority_level) {
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timesynch_set_authority_level(msg.authority_level + 1);
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authority_level = cc2420_authority_level_of_sender + 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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}
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static const struct broadcast_callbacks broadcast_call = {broadcast_recv};
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static struct broadcast_conn broadcast;
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/*---------------------------------------------------------------------------*/
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/*---------------------------------------------------------------------------*/
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#if 0
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PROCESS_THREAD(timesynch_process, ev, data)
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static void
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periodic_authority_increase(void *ptr)
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{
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{
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/* XXX the authority level should be increased over time except
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static struct etimer sendtimer, intervaltimer;
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for the sink node (which has authority 0). */
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static clock_time_t interval;
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struct timesynch_msg msg;
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PROCESS_EXITHANDLER(broadcast_close(&broadcast);)
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PROCESS_BEGIN();
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broadcast_open(&broadcast, TIMESYNCH_CHANNEL, &broadcast_call);
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interval = MIN_INTERVAL;
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while(1) {
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etimer_set(&intervaltimer, interval);
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etimer_set(&sendtimer, random_rand() % interval);
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PROCESS_WAIT_UNTIL(etimer_expired(&sendtimer));
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msg.authority_level = authority_level;
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msg.dummy = 0;
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msg.authority_offset = offset;
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msg.clock_fine = clock_fine();
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msg.clock_time = clock_time();
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msg.seconds = clock_seconds();
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msg.timestamp = 0;
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packetbuf_copyfrom(&msg, sizeof(msg));
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packetbuf_set_attr(PACKETBUF_ATTR_PACKET_TYPE,
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PACKETBUF_ATTR_PACKET_TYPE_TIMESTAMP);
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broadcast_send(&broadcast);
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PROCESS_WAIT_UNTIL(etimer_expired(&intervaltimer));
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interval *= 2;
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if(interval >= MAX_INTERVAL) {
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interval = MAX_INTERVAL;
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}
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}
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PROCESS_END();
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}
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}
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#endif
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/*---------------------------------------------------------------------------*/
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RIME_SNIFFER(sniffer, incoming_packet, NULL);
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/*---------------------------------------------------------------------------*/
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/*---------------------------------------------------------------------------*/
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void
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void
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timesynch_init(void)
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timesynch_init(void)
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{
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{
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rime_sniffer_add(&sniffer);
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process_start(×ynch_process, NULL);
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}
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}
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/*---------------------------------------------------------------------------*/
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/*---------------------------------------------------------------------------*/
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#endif /* TIMESYNCH_CONF_ENABLED */
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#endif /* TIMESYNCH_CONF_ENABLED */
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