mirror of https://github.com/ARMmbed/mbed-os.git
202 lines
5.5 KiB
C
202 lines
5.5 KiB
C
/***************************************************************************//**
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* @file lp_ticker.c
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*******************************************************************************
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* @section License
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* <b>(C) Copyright 2015 Silicon Labs, http://www.silabs.com</b>
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*******************************************************************************
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*
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* SPDX-License-Identifier: Apache-2.0
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*
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* Licensed under the Apache License, Version 2.0 (the "License"); you may
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* not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*
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******************************************************************************/
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#include "device.h"
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#include "clocking.h"
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#if DEVICE_LOWPOWERTIMER
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#include "rtc_api.h"
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#include "rtc_api_HAL.h"
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#include "lp_ticker_api.h"
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#include "mbed_critical.h"
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#if (defined RTCC_COUNT) && (RTCC_COUNT > 0)
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#include "em_rtcc.h"
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#endif
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static int rtc_reserved = 0;
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void lp_ticker_init()
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{
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if(!rtc_reserved) {
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core_util_critical_section_enter();
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rtc_init_real(RTC_INIT_LPTIMER);
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rtc_set_comp0_handler((uint32_t)lp_ticker_irq_handler);
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rtc_reserved = 1;
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core_util_critical_section_exit();
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}
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}
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void lp_ticker_free()
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{
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if(rtc_reserved) {
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core_util_critical_section_enter();
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rtc_free_real(RTC_INIT_LPTIMER);
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rtc_reserved = 0;
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core_util_critical_section_exit();
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}
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}
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#ifndef RTCC_COUNT
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/* RTC API */
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void lp_ticker_set_interrupt(timestamp_t timestamp)
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{
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uint64_t timestamp_ticks;
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uint64_t current_ticks = RTC_CounterGet();
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timestamp_t current_time = ((uint64_t)(current_ticks * 1000000) / (LOW_ENERGY_CLOCK_FREQUENCY / RTC_CLOCKDIV_INT));
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/* Initialize RTC */
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lp_ticker_init();
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/* calculate offset value */
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timestamp_t offset = timestamp - current_time;
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if(offset > 0xEFFFFFFF) offset = 100;
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/* map offset to RTC value */
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// ticks = offset * RTC frequency div 1000000
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timestamp_ticks = ((uint64_t)offset * (LOW_ENERGY_CLOCK_FREQUENCY / RTC_CLOCKDIV_INT)) / 1000000;
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timestamp_ticks += current_ticks;
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/* RTC has 24 bit resolution */
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timestamp_ticks &= 0xFFFFFF;
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/* check for RTC limitation */
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if((timestamp_ticks - RTC_CounterGet()) >= 0x800000) timestamp_ticks = RTC_CounterGet() + 2;
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/* Set callback */
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RTC_FreezeEnable(true);
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RTC_CompareSet(0, (uint32_t)timestamp_ticks);
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RTC_IntEnable(RTC_IF_COMP0);
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RTC_FreezeEnable(false);
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}
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void lp_ticker_fire_interrupt(void)
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{
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RTC_IntSet(RTC_IFS_COMP0);
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}
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inline void lp_ticker_disable_interrupt()
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{
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RTC_IntDisable(RTC_IF_COMP0);
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}
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inline void lp_ticker_clear_interrupt()
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{
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RTC_IntClear(RTC_IF_COMP0);
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}
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timestamp_t lp_ticker_read()
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{
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lp_ticker_init();
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uint64_t ticks_temp;
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uint64_t ticks = RTC_CounterGet();
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/* ticks = counter tick value
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* timestamp = value in microseconds
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* timestamp = ticks * 1.000.000 / RTC frequency
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*/
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ticks_temp = (ticks * 1000000) / (LOW_ENERGY_CLOCK_FREQUENCY / RTC_CLOCKDIV_INT);
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return (timestamp_t) (ticks_temp & 0xFFFFFFFF);
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}
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#else
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/* RTCC API */
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void lp_ticker_set_interrupt(timestamp_t timestamp)
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{
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uint64_t timestamp_ticks;
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uint64_t current_ticks = RTCC_CounterGet();
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timestamp_t current_time = ((uint64_t)(current_ticks * 1000000) / (LOW_ENERGY_CLOCK_FREQUENCY / RTC_CLOCKDIV_INT));
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/* Initialize RTC */
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lp_ticker_init();
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/* calculate offset value */
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timestamp_t offset = timestamp - current_time;
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if(offset > 0xEFFFFFFF) offset = 100;
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/* map offset to RTC value */
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// ticks = offset * RTC frequency div 1000000
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timestamp_ticks = ((uint64_t)offset * (LOW_ENERGY_CLOCK_FREQUENCY / RTC_CLOCKDIV_INT)) / 1000000;
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// checking the rounding. If timeout is wanted between RTCC ticks, irq should be configured to
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// trigger in the latter RTCC-tick. Otherwise ticker-api fails to send timer event to its client
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if(((timestamp_ticks * 1000000) / (LOW_ENERGY_CLOCK_FREQUENCY / RTC_CLOCKDIV_INT)) < offset){
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timestamp_ticks++;
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}
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timestamp_ticks += current_ticks;
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/* RTCC has 32 bit resolution */
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timestamp_ticks &= 0xFFFFFFFF;
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/* check for RTCC limitation */
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if((timestamp_ticks - RTCC_CounterGet()) >= 0x80000000) timestamp_ticks = RTCC_CounterGet() + 2;
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/* init channel */
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RTCC_CCChConf_TypeDef ccchConf = RTCC_CH_INIT_COMPARE_DEFAULT;
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RTCC_ChannelInit(0,&ccchConf);
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/* Set callback */
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RTCC_ChannelCCVSet(0, (uint32_t)timestamp_ticks);
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RTCC_IntEnable(RTCC_IF_CC0);
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}
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void lp_ticker_fire_interrupt(void)
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{
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RTCC_IntSet(RTCC_IFS_CC0);
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}
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inline void lp_ticker_disable_interrupt()
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{
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RTCC_IntDisable(RTCC_IF_CC0);
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}
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inline void lp_ticker_clear_interrupt()
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{
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RTCC_IntClear(RTCC_IF_CC0);
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}
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timestamp_t lp_ticker_read()
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{
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lp_ticker_init();
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uint64_t ticks_temp;
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uint64_t ticks = RTCC_CounterGet();
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/* ticks = counter tick value
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* timestamp = value in microseconds
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* timestamp = ticks * 1.000.000 / RTC frequency
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*/
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ticks_temp = (ticks * 1000000) / (LOW_ENERGY_CLOCK_FREQUENCY / RTC_CLOCKDIV_INT);
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return (timestamp_t) (ticks_temp & 0xFFFFFFFF);
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}
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#endif /* RTCC */
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#endif
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