mirror of
https://github.com/RIOT-OS/RIOT.git
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185 lines
4.7 KiB
C
185 lines
4.7 KiB
C
/*
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* Copyright (C) 2014 PHYTEC Messtechnik GmbH
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* Copyright (C) 2015 Eistec AB
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*
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* This file is subject to the terms and conditions of the GNU Lesser
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* General Public License v2.1. See the file LICENSE in the top level
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* directory for more details.
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*/
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/**
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* @ingroup cpu_kinetis
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* @ingroup drivers_periph_rtt
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*
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* @{
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*
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* @file
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* @brief Low-level RTT interface implementation for Freescale Kinetis
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* MCUs. NXP's RTC module is what RIOT calls a Real-Time
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* Timer (RTT), a simple counter which counts seconds; RIOT Real-
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* Time Clocks (RTC) counts seconds, minutes, hours etc. We provide
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* an RTT->RTC wrapper layer in a separate file to allow using the
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* RTT as a system real time clock.
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*
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* @author Johann Fischer <j.fischer@phytec.de>
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* @author Joakim Nohlgård <joakim.nohlgard@eistec.se>
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*
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* @}
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*/
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#include <time.h>
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#include "cpu.h"
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#include "bit.h"
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#include "periph/rtt.h"
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#include "periph_conf.h"
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#define ENABLE_DEBUG 0
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#include "debug.h"
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typedef struct {
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rtt_cb_t alarm_cb; /**< callback called from RTC alarm */
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void *alarm_arg; /**< argument passed to the callback */
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rtt_cb_t overflow_cb; /**< callback called when RTC overflows */
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void *overflow_arg; /**< argument passed to the callback */
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} rtt_state_t;
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static rtt_state_t rtt_callback;
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void rtt_init(void)
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{
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/* Enable module clock gate */
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RTC_CLKEN();
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/* At this point, the CPU core may be clocked by a clock derived from the
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* RTC oscillator, avoid touching the oscillator enable bit (OSCE) in RTC_CR */
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/* Enable user mode access */
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bit_set32(&RTC->CR, RTC_CR_SUP_SHIFT);
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/* Disable all RTC interrupts. */
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RTC->IER = 0;
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/* The RTC module is only reset on VBAT power on reset, we try to preserve
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* the seconds counter between reboots */
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if (RTC->SR & RTC_SR_TIF_MASK) {
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/* Time Invalid Flag is set, clear TIF by writing TSR */
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/* Stop counter to make TSR writable */
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bit_clear32(&RTC->SR, RTC_SR_TCE_SHIFT);
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RTC->TSR = 0;
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}
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/* Clear the alarm flag TAF by writing a new alarm target to TAR */
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RTC->TAR = 0xffffffff;
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/* Enable RTC interrupts */
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NVIC_EnableIRQ(RTC_IRQn);
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rtt_poweron();
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}
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void rtt_set_overflow_cb(rtt_cb_t cb, void *arg)
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{
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rtt_callback.overflow_cb = cb;
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rtt_callback.overflow_arg = arg;
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bit_set32(&RTC->IER, RTC_IER_TOIE_SHIFT);
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}
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void rtt_clear_overflow_cb(void)
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{
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bit_clear32(&RTC->IER, RTC_IER_TOIE_SHIFT);
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}
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uint32_t rtt_get_counter(void)
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{
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uint32_t t;
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for (int i = 0; i < 3; i++) {
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/* Read twice to make sure we get a stable reading */
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t = RTC->TSR;
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if (t == RTC->TSR) {
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return t;
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}
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}
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/* Fallback if we are not getting stable readings */
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return t;
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}
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void rtt_set_counter(uint32_t counter)
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{
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/* Disable time counter before writing to the timestamp register */
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bit_clear32(&RTC->SR, RTC_SR_TCE_SHIFT);
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RTC->TPR = 0;
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/* write TSR after TPR, as clearing TPR bit 14 will increment TSR */
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RTC->TSR = counter;
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/* Enable when done */
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bit_set32(&RTC->SR, RTC_SR_TCE_SHIFT);
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}
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void rtt_set_alarm(uint32_t alarm, rtt_cb_t cb, void *arg)
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{
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/* The alarm is triggered when TSR matches TAR, and TSR increments. This
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* seem counterintuitive as most users expect the alarm to trigger
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* immediately when the counter becomes equal to the alarm time.
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*
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* Workaround: Set TAF to alarm - 1
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*/
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/* Disable Timer Alarm Interrupt */
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bit_clear32(&RTC->IER, RTC_IER_TAIE_SHIFT);
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RTC->TAR = alarm - 1;
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rtt_callback.alarm_cb = cb;
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rtt_callback.alarm_arg = arg;
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/* Enable Timer Alarm Interrupt */
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bit_set32(&RTC->IER, RTC_IER_TAIE_SHIFT);
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}
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uint32_t rtt_get_alarm(void)
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{
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return RTC->TAR + 1;
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}
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void rtt_clear_alarm(void)
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{
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/* Disable Timer Alarm Interrupt */
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bit_clear32(&RTC->IER, RTC_IER_TAIE_SHIFT);
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}
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/* RTC module has independent power suply. We can not really turn it on/off. */
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void rtt_poweron(void)
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{
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/* Enable Time Counter */
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bit_set32(&RTC->SR, RTC_SR_TCE_SHIFT);
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}
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void rtt_poweroff(void)
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{
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/* Disable Time Counter */
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bit_clear32(&RTC->SR, RTC_SR_TCE_SHIFT);
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}
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void isr_rtc(void)
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{
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if (RTC->SR & RTC_SR_TAF_MASK) {
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if (rtt_callback.alarm_cb != NULL) {
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/* Disable Timer Alarm Interrupt */
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bit_clear32(&RTC->IER, RTC_IER_TAIE_SHIFT);
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rtt_callback.alarm_cb(rtt_callback.alarm_arg);
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}
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}
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if (RTC->SR & RTC_SR_TOF_MASK) {
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if (rtt_callback.overflow_cb != NULL) {
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rtt_callback.overflow_cb(rtt_callback.overflow_arg);
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}
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}
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cortexm_isr_end();
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}
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