Added a clock_seconds() function prototype to core/sys/clock.h, that returns seconds in 32 bit format. On platforms like the MSP430, which has a 16 bit native datatype, this cannot be implemented with an interrupt tick that increments a 32 bit value because access is not atomic. Instead, the MSP430 code increments 16 bit seconds value and converts this into a 32 bit value through an offset calculation. If the new value is smaller than the last check, the offset is incremented by 65536. This change also means that CLOCK_CONF_SECOND must be a power of two because a modulo operation is used inside the periodic tick interrupt handler.
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1 changed files with 33 additions and 4 deletions
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@ -28,7 +28,7 @@
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*
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* This file is part of the Contiki operating system.
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*
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* @(#)$Id: clock.c,v 1.13 2008/07/03 23:59:20 adamdunkels Exp $
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* @(#)$Id: clock.c,v 1.14 2008/07/07 23:38:09 adamdunkels Exp $
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*/
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@ -47,6 +47,8 @@
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#define MAX_TICKS (~((clock_time_t)0) / 2)
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static volatile unsigned short seconds;
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static volatile clock_time_t count = 0;
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/* last_tar is used for calculating clock_fine, last_ccr might be better? */
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static unsigned short last_tar = 0;
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@ -58,12 +60,24 @@ interrupt(TIMERA1_VECTOR) timera1 (void) {
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do {
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TACCR1 += INTERVAL;
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++count;
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/* Make sure the CLOCK_CONF_SECOND is a power of two, to ensure
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that the modulo operation below becomes a logical and and not
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an expensive divide. Algorithm from Wikipedia:
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http://en.wikipedia.org/wiki/Power_of_two */
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#if (CLOCK_CONF_SECOND & (CLOCK_CONF_SECOND - 1)) != 0
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#error CLOCK_CONF_SECOND must be a power of two (i.e., 1, 2, 4, 8, 16, 32, 64, ...).
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#error Change CLOCK_CONF_SECOND in contiki-conf.h.
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#endif
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if(count % CLOCK_CONF_SECOND == 0) {
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++seconds;
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}
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} while((TACCR1 - TAR) > INTERVAL);
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last_tar = TAR;
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if(etimer_pending()
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&& (etimer_next_expiration_time() - count - 1) > MAX_TICKS) {
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if(etimer_pending() &&
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(etimer_next_expiration_time() - count - 1) > MAX_TICKS) {
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etimer_request_poll();
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LPM4_EXIT;
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}
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@ -170,7 +184,22 @@ clock_set_seconds(unsigned long sec)
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unsigned long
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clock_seconds(void)
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{
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return count / CLOCK_SECOND;
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static unsigned long offset;
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static unsigned long last_time;
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unsigned long new_time;
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new_time = seconds + offset;
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/* printf("Seconds %d new_time %lu offset %lu\n", seconds, new_time, offset);*/
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if(new_time < last_time) {
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offset += 0x10000L;
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new_time += 0x10000L;
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}
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last_time = new_time;
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return new_time;
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}
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/*---------------------------------------------------------------------------*/
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rtimer_clock_t
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