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/* ... */
#include "stm32f4xx_hal.h"
/* ... */
/* ... */
#ifdef HAL_RTC_MODULE_ENABLED
/* ... */
/* ... */
/* ... */
HAL_StatusTypeDef HAL_RTC_Init(RTC_HandleTypeDef *hrtc)
{
HAL_StatusTypeDef status = HAL_ERROR;
if (hrtc == NULL)
{
return HAL_ERROR;
}if (hrtc == NULL) { ... }
assert_param(IS_RTC_ALL_INSTANCE(hrtc->Instance));
assert_param(IS_RTC_HOUR_FORMAT(hrtc->Init.HourFormat));
assert_param(IS_RTC_ASYNCH_PREDIV(hrtc->Init.AsynchPrediv));
assert_param(IS_RTC_SYNCH_PREDIV(hrtc->Init.SynchPrediv));
assert_param(IS_RTC_OUTPUT(hrtc->Init.OutPut));
assert_param(IS_RTC_OUTPUT_POL(hrtc->Init.OutPutPolarity));
assert_param(IS_RTC_OUTPUT_TYPE(hrtc->Init.OutPutType));
#if (USE_HAL_RTC_REGISTER_CALLBACKS == 1)
if (hrtc->State == HAL_RTC_STATE_RESET)
{
hrtc->Lock = HAL_UNLOCKED;
hrtc->AlarmAEventCallback = HAL_RTC_AlarmAEventCallback;
hrtc->AlarmBEventCallback = HAL_RTCEx_AlarmBEventCallback;
hrtc->TimeStampEventCallback = HAL_RTCEx_TimeStampEventCallback;
hrtc->WakeUpTimerEventCallback = HAL_RTCEx_WakeUpTimerEventCallback;
hrtc->Tamper1EventCallback = HAL_RTCEx_Tamper1EventCallback;
#if defined(RTC_TAMPER2_SUPPORT)
hrtc->Tamper2EventCallback = HAL_RTCEx_Tamper2EventCallback;
#endif
if (hrtc->MspInitCallback == NULL)
{
hrtc->MspInitCallback = HAL_RTC_MspInit;
}if (hrtc->MspInitCallback == NULL) { ... }
hrtc->MspInitCallback(hrtc);
if (hrtc->MspDeInitCallback == NULL)
{
hrtc->MspDeInitCallback = HAL_RTC_MspDeInit;
}if (hrtc->MspDeInitCallback == NULL) { ... }
}if (hrtc->State == HAL_RTC_STATE_RESET) { ... }
/* ... */#else
if (hrtc->State == HAL_RTC_STATE_RESET)
{
hrtc->Lock = HAL_UNLOCKED;
HAL_RTC_MspInit(hrtc);
}if (hrtc->State == HAL_RTC_STATE_RESET) { ... }
/* ... */#endif
hrtc->State = HAL_RTC_STATE_BUSY;
if (__HAL_RTC_IS_CALENDAR_INITIALIZED(hrtc) == 0U)
{
__HAL_RTC_WRITEPROTECTION_DISABLE(hrtc);
status = RTC_EnterInitMode(hrtc);
if (status == HAL_OK)
{
hrtc->Instance->CR &= ((uint32_t)~(RTC_CR_FMT | RTC_CR_OSEL | RTC_CR_POL));
hrtc->Instance->CR |= (uint32_t)(hrtc->Init.HourFormat | hrtc->Init.OutPut | hrtc->Init.OutPutPolarity);
hrtc->Instance->PRER = (uint32_t)(hrtc->Init.SynchPrediv);
hrtc->Instance->PRER |= (uint32_t)(hrtc->Init.AsynchPrediv << RTC_PRER_PREDIV_A_Pos);
status = RTC_ExitInitMode(hrtc);
}if (status == HAL_OK) { ... }
if (status == HAL_OK)
{
hrtc->Instance->TAFCR &= (uint32_t)~RTC_OUTPUT_TYPE_PUSHPULL;
hrtc->Instance->TAFCR |= (uint32_t)(hrtc->Init.OutPutType);
}if (status == HAL_OK) { ... }
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
}if (__HAL_RTC_IS_CALENDAR_INITIALIZED(hrtc) == 0U) { ... }
else
{
status = HAL_OK;
}else { ... }
if (status == HAL_OK)
{
hrtc->State = HAL_RTC_STATE_READY;
}if (status == HAL_OK) { ... }
return status;
}{ ... }
/* ... */
HAL_StatusTypeDef HAL_RTC_DeInit(RTC_HandleTypeDef *hrtc)
{
HAL_StatusTypeDef status = HAL_ERROR;
assert_param(IS_RTC_ALL_INSTANCE(hrtc->Instance));
hrtc->State = HAL_RTC_STATE_BUSY;
__HAL_RTC_WRITEPROTECTION_DISABLE(hrtc);
status = RTC_EnterInitMode(hrtc);
if (status == HAL_OK)
{
hrtc->Instance->TR = 0x00000000U;
hrtc->Instance->DR = (RTC_DR_WDU_0 | RTC_DR_MU_0 | RTC_DR_DU_0);
hrtc->Instance->CR &= 0x00000000U;
hrtc->Instance->WUTR = RTC_WUTR_WUT;
hrtc->Instance->PRER = (uint32_t)(RTC_PRER_PREDIV_A | 0x000000FFU);
hrtc->Instance->CALIBR = 0x00000000U;
hrtc->Instance->ALRMAR = 0x00000000U;
hrtc->Instance->ALRMBR = 0x00000000U;
hrtc->Instance->CALR = 0x00000000U;
hrtc->Instance->SHIFTR = 0x00000000U;
hrtc->Instance->ALRMASSR = 0x00000000U;
hrtc->Instance->ALRMBSSR = 0x00000000U;
status = RTC_ExitInitMode(hrtc);
}if (status == HAL_OK) { ... }
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
if (status == HAL_OK)
{
hrtc->Instance->TAFCR = 0x00000000U;
#if (USE_HAL_RTC_REGISTER_CALLBACKS == 1)
if (hrtc->MspDeInitCallback == NULL)
{
hrtc->MspDeInitCallback = HAL_RTC_MspDeInit;
}if (hrtc->MspDeInitCallback == NULL) { ... }
hrtc->MspDeInitCallback(hrtc);/* ... */
#else
HAL_RTC_MspDeInit(hrtc);/* ... */
#endif
hrtc->State = HAL_RTC_STATE_RESET;
}if (status == HAL_OK) { ... }
__HAL_UNLOCK(hrtc);
return status;
}{ ... }
#if (USE_HAL_RTC_REGISTER_CALLBACKS == 1)
/* ... */
HAL_StatusTypeDef HAL_RTC_RegisterCallback(RTC_HandleTypeDef *hrtc, HAL_RTC_CallbackIDTypeDef CallbackID, pRTC_CallbackTypeDef pCallback)
{
HAL_StatusTypeDef status = HAL_OK;
if (pCallback == NULL)
{
return HAL_ERROR;
}if (pCallback == NULL) { ... }
__HAL_LOCK(hrtc);
if (HAL_RTC_STATE_READY == hrtc->State)
{
switch (CallbackID)
{
case HAL_RTC_ALARM_A_EVENT_CB_ID :
hrtc->AlarmAEventCallback = pCallback;
break;
case HAL_RTC_ALARM_A_EVENT_CB_ID :
case HAL_RTC_ALARM_B_EVENT_CB_ID :
hrtc->AlarmBEventCallback = pCallback;
break;
case HAL_RTC_ALARM_B_EVENT_CB_ID :
case HAL_RTC_TIMESTAMP_EVENT_CB_ID :
hrtc->TimeStampEventCallback = pCallback;
break;
case HAL_RTC_TIMESTAMP_EVENT_CB_ID :
case HAL_RTC_WAKEUPTIMER_EVENT_CB_ID :
hrtc->WakeUpTimerEventCallback = pCallback;
break;
case HAL_RTC_WAKEUPTIMER_EVENT_CB_ID :
case HAL_RTC_TAMPER1_EVENT_CB_ID :
hrtc->Tamper1EventCallback = pCallback;
break;
#if defined(RTC_TAMPER2_SUPPORT)case HAL_RTC_TAMPER1_EVENT_CB_ID :
case HAL_RTC_TAMPER2_EVENT_CB_ID :
hrtc->Tamper2EventCallback = pCallback;
break;/* ... */
#endif
case HAL_RTC_TAMPER2_EVENT_CB_ID :
case HAL_RTC_MSPINIT_CB_ID :
hrtc->MspInitCallback = pCallback;
break;
case HAL_RTC_MSPINIT_CB_ID :
case HAL_RTC_MSPDEINIT_CB_ID :
hrtc->MspDeInitCallback = pCallback;
break;
case HAL_RTC_MSPDEINIT_CB_ID :
default :
status = HAL_ERROR;
break;default
}switch (CallbackID) { ... }
}if (HAL_RTC_STATE_READY == hrtc->State) { ... }
else if (HAL_RTC_STATE_RESET == hrtc->State)
{
switch (CallbackID)
{
case HAL_RTC_MSPINIT_CB_ID :
hrtc->MspInitCallback = pCallback;
break;
case HAL_RTC_MSPINIT_CB_ID :
case HAL_RTC_MSPDEINIT_CB_ID :
hrtc->MspDeInitCallback = pCallback;
break;
case HAL_RTC_MSPDEINIT_CB_ID :
default :
status = HAL_ERROR;
break;default
}switch (CallbackID) { ... }
}else if (HAL_RTC_STATE_RESET == hrtc->State) { ... }
else
{
status = HAL_ERROR;
}else { ... }
__HAL_UNLOCK(hrtc);
return status;
}HAL_RTC_RegisterCallback (RTC_HandleTypeDef *hrtc, HAL_RTC_CallbackIDTypeDef CallbackID, pRTC_CallbackTypeDef pCallback) { ... }
/* ... */
HAL_StatusTypeDef HAL_RTC_UnRegisterCallback(RTC_HandleTypeDef *hrtc, HAL_RTC_CallbackIDTypeDef CallbackID)
{
HAL_StatusTypeDef status = HAL_OK;
__HAL_LOCK(hrtc);
if (HAL_RTC_STATE_READY == hrtc->State)
{
switch (CallbackID)
{
case HAL_RTC_ALARM_A_EVENT_CB_ID :
hrtc->AlarmAEventCallback = HAL_RTC_AlarmAEventCallback;
break;
case HAL_RTC_ALARM_A_EVENT_CB_ID :
case HAL_RTC_ALARM_B_EVENT_CB_ID :
hrtc->AlarmBEventCallback = HAL_RTCEx_AlarmBEventCallback;
break;
case HAL_RTC_ALARM_B_EVENT_CB_ID :
case HAL_RTC_TIMESTAMP_EVENT_CB_ID :
hrtc->TimeStampEventCallback = HAL_RTCEx_TimeStampEventCallback;
break;
case HAL_RTC_TIMESTAMP_EVENT_CB_ID :
case HAL_RTC_WAKEUPTIMER_EVENT_CB_ID :
hrtc->WakeUpTimerEventCallback = HAL_RTCEx_WakeUpTimerEventCallback;
break;
case HAL_RTC_WAKEUPTIMER_EVENT_CB_ID :
case HAL_RTC_TAMPER1_EVENT_CB_ID :
hrtc->Tamper1EventCallback = HAL_RTCEx_Tamper1EventCallback;
break;
#if defined(RTC_TAMPER2_SUPPORT)case HAL_RTC_TAMPER1_EVENT_CB_ID :
case HAL_RTC_TAMPER2_EVENT_CB_ID :
hrtc->Tamper2EventCallback = HAL_RTCEx_Tamper2EventCallback;
break;/* ... */
#endif
case HAL_RTC_TAMPER2_EVENT_CB_ID :
case HAL_RTC_MSPINIT_CB_ID :
hrtc->MspInitCallback = HAL_RTC_MspInit;
break;
case HAL_RTC_MSPINIT_CB_ID :
case HAL_RTC_MSPDEINIT_CB_ID :
hrtc->MspDeInitCallback = HAL_RTC_MspDeInit;
break;
case HAL_RTC_MSPDEINIT_CB_ID :
default :
status = HAL_ERROR;
break;default
}switch (CallbackID) { ... }
}if (HAL_RTC_STATE_READY == hrtc->State) { ... }
else if (HAL_RTC_STATE_RESET == hrtc->State)
{
switch (CallbackID)
{
case HAL_RTC_MSPINIT_CB_ID :
hrtc->MspInitCallback = HAL_RTC_MspInit;
break;
case HAL_RTC_MSPINIT_CB_ID :
case HAL_RTC_MSPDEINIT_CB_ID :
hrtc->MspDeInitCallback = HAL_RTC_MspDeInit;
break;
case HAL_RTC_MSPDEINIT_CB_ID :
default :
status = HAL_ERROR;
break;default
}switch (CallbackID) { ... }
}else if (HAL_RTC_STATE_RESET == hrtc->State) { ... }
else
{
status = HAL_ERROR;
}else { ... }
__HAL_UNLOCK(hrtc);
return status;
}HAL_RTC_UnRegisterCallback (RTC_HandleTypeDef *hrtc, HAL_RTC_CallbackIDTypeDef CallbackID) { ... }
/* ... */#endif
/* ... */
__weak void HAL_RTC_MspInit(RTC_HandleTypeDef *hrtc)
{
UNUSED(hrtc);
/* ... */
}{ ... }
/* ... */
__weak void HAL_RTC_MspDeInit(RTC_HandleTypeDef *hrtc)
{
UNUSED(hrtc);
/* ... */
}{ ... }
/* ... */
/* ... */
/* ... */
HAL_StatusTypeDef HAL_RTC_SetTime(RTC_HandleTypeDef *hrtc, RTC_TimeTypeDef *sTime, uint32_t Format)
{
uint32_t tmpreg = 0U;
HAL_StatusTypeDef status;
assert_param(IS_RTC_FORMAT(Format));
assert_param(IS_RTC_DAYLIGHT_SAVING(sTime->DayLightSaving));
assert_param(IS_RTC_STORE_OPERATION(sTime->StoreOperation));
__HAL_LOCK(hrtc);
hrtc->State = HAL_RTC_STATE_BUSY;
if (Format == RTC_FORMAT_BIN)
{
if ((hrtc->Instance->CR & RTC_CR_FMT) != 0U)
{
assert_param(IS_RTC_HOUR12(sTime->Hours));
assert_param(IS_RTC_HOURFORMAT12(sTime->TimeFormat));
}if ((hrtc->Instance->CR & RTC_CR_FMT) != 0U) { ... }
else
{
sTime->TimeFormat = 0x00U;
assert_param(IS_RTC_HOUR24(sTime->Hours));
}else { ... }
assert_param(IS_RTC_MINUTES(sTime->Minutes));
assert_param(IS_RTC_SECONDS(sTime->Seconds));
tmpreg = (uint32_t)(( (uint32_t)RTC_ByteToBcd2(sTime->Hours) << RTC_TR_HU_Pos) | \
( (uint32_t)RTC_ByteToBcd2(sTime->Minutes) << RTC_TR_MNU_Pos) | \
( (uint32_t)RTC_ByteToBcd2(sTime->Seconds)) | \
(((uint32_t)sTime->TimeFormat) << RTC_TR_PM_Pos));
}if (Format == RTC_FORMAT_BIN) { ... }
else
{
if ((hrtc->Instance->CR & RTC_CR_FMT) != 0U)
{
assert_param(IS_RTC_HOUR12(RTC_Bcd2ToByte(sTime->Hours)));
assert_param(IS_RTC_HOURFORMAT12(sTime->TimeFormat));
}if ((hrtc->Instance->CR & RTC_CR_FMT) != 0U) { ... }
else
{
sTime->TimeFormat = 0x00U;
assert_param(IS_RTC_HOUR24(RTC_Bcd2ToByte(sTime->Hours)));
}else { ... }
assert_param(IS_RTC_MINUTES(RTC_Bcd2ToByte(sTime->Minutes)));
assert_param(IS_RTC_SECONDS(RTC_Bcd2ToByte(sTime->Seconds)));
tmpreg = (((uint32_t)(sTime->Hours) << RTC_TR_HU_Pos) | \
((uint32_t)(sTime->Minutes) << RTC_TR_MNU_Pos) | \
((uint32_t) sTime->Seconds) | \
((uint32_t)(sTime->TimeFormat) << RTC_TR_PM_Pos));
}else { ... }
__HAL_RTC_WRITEPROTECTION_DISABLE(hrtc);
status = RTC_EnterInitMode(hrtc);
if (status == HAL_OK)
{
hrtc->Instance->TR = (uint32_t)(tmpreg & RTC_TR_RESERVED_MASK);
hrtc->Instance->CR &= (uint32_t)~RTC_CR_BKP;
hrtc->Instance->CR |= (uint32_t)(sTime->DayLightSaving | sTime->StoreOperation);
status = RTC_ExitInitMode(hrtc);
}if (status == HAL_OK) { ... }
if (status == HAL_OK)
{
hrtc->State = HAL_RTC_STATE_READY;
}if (status == HAL_OK) { ... }
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
__HAL_UNLOCK(hrtc);
return status;
}{ ... }
/* ... */
HAL_StatusTypeDef HAL_RTC_GetTime(RTC_HandleTypeDef *hrtc, RTC_TimeTypeDef *sTime, uint32_t Format)
{
uint32_t tmpreg = 0U;
assert_param(IS_RTC_FORMAT(Format));
sTime->SubSeconds = (uint32_t)(hrtc->Instance->SSR);
sTime->SecondFraction = (uint32_t)(hrtc->Instance->PRER & RTC_PRER_PREDIV_S);
tmpreg = (uint32_t)(hrtc->Instance->TR & RTC_TR_RESERVED_MASK);
sTime->Hours = (uint8_t)((tmpreg & (RTC_TR_HT | RTC_TR_HU)) >> RTC_TR_HU_Pos);
sTime->Minutes = (uint8_t)((tmpreg & (RTC_TR_MNT | RTC_TR_MNU)) >> RTC_TR_MNU_Pos);
sTime->Seconds = (uint8_t)( tmpreg & (RTC_TR_ST | RTC_TR_SU));
sTime->TimeFormat = (uint8_t)((tmpreg & (RTC_TR_PM)) >> RTC_TR_PM_Pos);
if (Format == RTC_FORMAT_BIN)
{
sTime->Hours = (uint8_t)RTC_Bcd2ToByte(sTime->Hours);
sTime->Minutes = (uint8_t)RTC_Bcd2ToByte(sTime->Minutes);
sTime->Seconds = (uint8_t)RTC_Bcd2ToByte(sTime->Seconds);
}if (Format == RTC_FORMAT_BIN) { ... }
return HAL_OK;
}{ ... }
/* ... */
HAL_StatusTypeDef HAL_RTC_SetDate(RTC_HandleTypeDef *hrtc, RTC_DateTypeDef *sDate, uint32_t Format)
{
uint32_t datetmpreg = 0U;
HAL_StatusTypeDef status;
assert_param(IS_RTC_FORMAT(Format));
__HAL_LOCK(hrtc);
hrtc->State = HAL_RTC_STATE_BUSY;
if ((Format == RTC_FORMAT_BIN) && ((sDate->Month & 0x10U) == 0x10U))
{
sDate->Month = (uint8_t)((sDate->Month & (uint8_t)~(0x10U)) + (uint8_t)0x0AU);
}if ((Format == RTC_FORMAT_BIN) && ((sDate->Month & 0x10U) == 0x10U)) { ... }
assert_param(IS_RTC_WEEKDAY(sDate->WeekDay));
if (Format == RTC_FORMAT_BIN)
{
assert_param(IS_RTC_YEAR(sDate->Year));
assert_param(IS_RTC_MONTH(sDate->Month));
assert_param(IS_RTC_DATE(sDate->Date));
datetmpreg = (((uint32_t)RTC_ByteToBcd2(sDate->Year) << RTC_DR_YU_Pos) | \
((uint32_t)RTC_ByteToBcd2(sDate->Month) << RTC_DR_MU_Pos) | \
((uint32_t)RTC_ByteToBcd2(sDate->Date)) | \
((uint32_t)sDate->WeekDay << RTC_DR_WDU_Pos));
}if (Format == RTC_FORMAT_BIN) { ... }
else
{
assert_param(IS_RTC_YEAR(RTC_Bcd2ToByte(sDate->Year)));
assert_param(IS_RTC_MONTH(RTC_Bcd2ToByte(sDate->Month)));
assert_param(IS_RTC_DATE(RTC_Bcd2ToByte(sDate->Date)));
datetmpreg = ((((uint32_t)sDate->Year) << RTC_DR_YU_Pos) | \
(((uint32_t)sDate->Month) << RTC_DR_MU_Pos) | \
((uint32_t) sDate->Date) | \
(((uint32_t)sDate->WeekDay) << RTC_DR_WDU_Pos));
}else { ... }
__HAL_RTC_WRITEPROTECTION_DISABLE(hrtc);
status = RTC_EnterInitMode(hrtc);
if (status == HAL_OK)
{
hrtc->Instance->DR = (uint32_t)(datetmpreg & RTC_DR_RESERVED_MASK);
status = RTC_ExitInitMode(hrtc);
}if (status == HAL_OK) { ... }
if (status == HAL_OK)
{
hrtc->State = HAL_RTC_STATE_READY;
}if (status == HAL_OK) { ... }
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
__HAL_UNLOCK(hrtc);
return status;
}{ ... }
/* ... */
HAL_StatusTypeDef HAL_RTC_GetDate(RTC_HandleTypeDef *hrtc, RTC_DateTypeDef *sDate, uint32_t Format)
{
uint32_t datetmpreg = 0U;
assert_param(IS_RTC_FORMAT(Format));
datetmpreg = (uint32_t)(hrtc->Instance->DR & RTC_DR_RESERVED_MASK);
sDate->Year = (uint8_t)((datetmpreg & (RTC_DR_YT | RTC_DR_YU)) >> RTC_DR_YU_Pos);
sDate->Month = (uint8_t)((datetmpreg & (RTC_DR_MT | RTC_DR_MU)) >> RTC_DR_MU_Pos);
sDate->Date = (uint8_t) (datetmpreg & (RTC_DR_DT | RTC_DR_DU));
sDate->WeekDay = (uint8_t)((datetmpreg & (RTC_DR_WDU)) >> RTC_DR_WDU_Pos);
if (Format == RTC_FORMAT_BIN)
{
sDate->Year = (uint8_t)RTC_Bcd2ToByte(sDate->Year);
sDate->Month = (uint8_t)RTC_Bcd2ToByte(sDate->Month);
sDate->Date = (uint8_t)RTC_Bcd2ToByte(sDate->Date);
}if (Format == RTC_FORMAT_BIN) { ... }
return HAL_OK;
}{ ... }
/* ... */
/* ... */
/* ... */
HAL_StatusTypeDef HAL_RTC_SetAlarm(RTC_HandleTypeDef *hrtc, RTC_AlarmTypeDef *sAlarm, uint32_t Format)
{
uint32_t tickstart = 0U;
uint32_t tmpreg = 0U;
uint32_t subsecondtmpreg = 0U;
assert_param(IS_RTC_FORMAT(Format));
assert_param(IS_RTC_ALARM(sAlarm->Alarm));
assert_param(IS_RTC_ALARM_MASK(sAlarm->AlarmMask));
assert_param(IS_RTC_ALARM_DATE_WEEKDAY_SEL(sAlarm->AlarmDateWeekDaySel));
assert_param(IS_RTC_ALARM_SUB_SECOND_VALUE(sAlarm->AlarmTime.SubSeconds));
assert_param(IS_RTC_ALARM_SUB_SECOND_MASK(sAlarm->AlarmSubSecondMask));
__HAL_LOCK(hrtc);
hrtc->State = HAL_RTC_STATE_BUSY;
/* ... */
if (Format == RTC_FORMAT_BIN)
{
if ((hrtc->Instance->CR & RTC_CR_FMT) != 0U)
{
assert_param(IS_RTC_HOUR12(sAlarm->AlarmTime.Hours));
assert_param(IS_RTC_HOURFORMAT12(sAlarm->AlarmTime.TimeFormat));
}if ((hrtc->Instance->CR & RTC_CR_FMT) != 0U) { ... }
else
{
sAlarm->AlarmTime.TimeFormat = 0x00U;
assert_param(IS_RTC_HOUR24(sAlarm->AlarmTime.Hours));
}else { ... }
assert_param(IS_RTC_MINUTES(sAlarm->AlarmTime.Minutes));
assert_param(IS_RTC_SECONDS(sAlarm->AlarmTime.Seconds));
if (sAlarm->AlarmDateWeekDaySel == RTC_ALARMDATEWEEKDAYSEL_DATE)
{
assert_param(IS_RTC_ALARM_DATE_WEEKDAY_DATE(sAlarm->AlarmDateWeekDay));
}if (sAlarm->AlarmDateWeekDaySel == RTC_ALARMDATEWEEKDAYSEL_DATE) { ... }
else
{
assert_param(IS_RTC_ALARM_DATE_WEEKDAY_WEEKDAY(sAlarm->AlarmDateWeekDay));
}else { ... }
tmpreg = (((uint32_t)RTC_ByteToBcd2(sAlarm->AlarmTime.Hours) << RTC_ALRMAR_HU_Pos) | \
((uint32_t)RTC_ByteToBcd2(sAlarm->AlarmTime.Minutes) << RTC_ALRMAR_MNU_Pos) | \
((uint32_t)RTC_ByteToBcd2(sAlarm->AlarmTime.Seconds)) | \
((uint32_t)(sAlarm->AlarmTime.TimeFormat) << RTC_TR_PM_Pos) | \
((uint32_t)RTC_ByteToBcd2(sAlarm->AlarmDateWeekDay) << RTC_ALRMAR_DU_Pos) | \
((uint32_t)sAlarm->AlarmDateWeekDaySel) | \
((uint32_t)sAlarm->AlarmMask));
}if (Format == RTC_FORMAT_BIN) { ... }
else
{
if ((hrtc->Instance->CR & RTC_CR_FMT) != 0U)
{
assert_param(IS_RTC_HOUR12(RTC_Bcd2ToByte(sAlarm->AlarmTime.Hours)));
assert_param(IS_RTC_HOURFORMAT12(sAlarm->AlarmTime.TimeFormat));
}if ((hrtc->Instance->CR & RTC_CR_FMT) != 0U) { ... }
else
{
sAlarm->AlarmTime.TimeFormat = 0x00U;
assert_param(IS_RTC_HOUR24(RTC_Bcd2ToByte(sAlarm->AlarmTime.Hours)));
}else { ... }
assert_param(IS_RTC_MINUTES(RTC_Bcd2ToByte(sAlarm->AlarmTime.Minutes)));
assert_param(IS_RTC_SECONDS(RTC_Bcd2ToByte(sAlarm->AlarmTime.Seconds)));
if (sAlarm->AlarmDateWeekDaySel == RTC_ALARMDATEWEEKDAYSEL_DATE)
{
assert_param(IS_RTC_ALARM_DATE_WEEKDAY_DATE(RTC_Bcd2ToByte(sAlarm->AlarmDateWeekDay)));
}if (sAlarm->AlarmDateWeekDaySel == RTC_ALARMDATEWEEKDAYSEL_DATE) { ... }
else
{
assert_param(IS_RTC_ALARM_DATE_WEEKDAY_WEEKDAY(RTC_Bcd2ToByte(sAlarm->AlarmDateWeekDay)));
}else { ... }
tmpreg = (((uint32_t)(sAlarm->AlarmTime.Hours) << RTC_ALRMAR_HU_Pos) | \
((uint32_t)(sAlarm->AlarmTime.Minutes) << RTC_ALRMAR_MNU_Pos) | \
((uint32_t) sAlarm->AlarmTime.Seconds) | \
((uint32_t)(sAlarm->AlarmTime.TimeFormat) << RTC_TR_PM_Pos) | \
((uint32_t)(sAlarm->AlarmDateWeekDay) << RTC_ALRMAR_DU_Pos) | \
((uint32_t) sAlarm->AlarmDateWeekDaySel) | \
((uint32_t) sAlarm->AlarmMask));
}else { ... }
subsecondtmpreg = (uint32_t)((uint32_t)(sAlarm->AlarmTime.SubSeconds) | \
(uint32_t)(sAlarm->AlarmSubSecondMask));
__HAL_RTC_WRITEPROTECTION_DISABLE(hrtc);
if (sAlarm->Alarm == RTC_ALARM_A)
{
__HAL_RTC_ALARMA_DISABLE(hrtc);
__HAL_RTC_ALARM_DISABLE_IT(hrtc, RTC_IT_ALRA);
__HAL_RTC_ALARM_CLEAR_FLAG(hrtc, RTC_FLAG_ALRAF);
tickstart = HAL_GetTick();
while (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRAWF) == 0U)
{
if ((HAL_GetTick() - tickstart) > RTC_TIMEOUT_VALUE)
{
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
hrtc->State = HAL_RTC_STATE_TIMEOUT;
__HAL_UNLOCK(hrtc);
return HAL_TIMEOUT;
}if ((HAL_GetTick() - tickstart) > RTC_TIMEOUT_VALUE) { ... }
}while (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRAWF) == 0U) { ... }
hrtc->Instance->ALRMAR = (uint32_t)tmpreg;
hrtc->Instance->ALRMASSR = subsecondtmpreg;
__HAL_RTC_ALARMA_ENABLE(hrtc);
}if (sAlarm->Alarm == RTC_ALARM_A) { ... }
else
{
__HAL_RTC_ALARMB_DISABLE(hrtc);
__HAL_RTC_ALARM_DISABLE_IT(hrtc, RTC_IT_ALRB);
__HAL_RTC_ALARM_CLEAR_FLAG(hrtc, RTC_FLAG_ALRBF);
tickstart = HAL_GetTick();
while (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRBWF) == 0U)
{
if ((HAL_GetTick() - tickstart) > RTC_TIMEOUT_VALUE)
{
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
hrtc->State = HAL_RTC_STATE_TIMEOUT;
__HAL_UNLOCK(hrtc);
return HAL_TIMEOUT;
}if ((HAL_GetTick() - tickstart) > RTC_TIMEOUT_VALUE) { ... }
}while (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRBWF) == 0U) { ... }
hrtc->Instance->ALRMBR = (uint32_t)tmpreg;
hrtc->Instance->ALRMBSSR = subsecondtmpreg;
__HAL_RTC_ALARMB_ENABLE(hrtc);
}else { ... }
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
hrtc->State = HAL_RTC_STATE_READY;
__HAL_UNLOCK(hrtc);
return HAL_OK;
}{ ... }
/* ... */
HAL_StatusTypeDef HAL_RTC_SetAlarm_IT(RTC_HandleTypeDef *hrtc, RTC_AlarmTypeDef *sAlarm, uint32_t Format)
{
__IO uint32_t count = RTC_TIMEOUT_VALUE * (SystemCoreClock / 32U / 1000U);
uint32_t tmpreg = 0U;
uint32_t subsecondtmpreg = 0U;
assert_param(IS_RTC_FORMAT(Format));
assert_param(IS_RTC_ALARM(sAlarm->Alarm));
assert_param(IS_RTC_ALARM_MASK(sAlarm->AlarmMask));
assert_param(IS_RTC_ALARM_DATE_WEEKDAY_SEL(sAlarm->AlarmDateWeekDaySel));
assert_param(IS_RTC_ALARM_SUB_SECOND_VALUE(sAlarm->AlarmTime.SubSeconds));
assert_param(IS_RTC_ALARM_SUB_SECOND_MASK(sAlarm->AlarmSubSecondMask));
__HAL_LOCK(hrtc);
hrtc->State = HAL_RTC_STATE_BUSY;
/* ... */
if (Format == RTC_FORMAT_BIN)
{
if ((hrtc->Instance->CR & RTC_CR_FMT) != 0U)
{
assert_param(IS_RTC_HOUR12(sAlarm->AlarmTime.Hours));
assert_param(IS_RTC_HOURFORMAT12(sAlarm->AlarmTime.TimeFormat));
}if ((hrtc->Instance->CR & RTC_CR_FMT) != 0U) { ... }
else
{
sAlarm->AlarmTime.TimeFormat = 0x00U;
assert_param(IS_RTC_HOUR24(sAlarm->AlarmTime.Hours));
}else { ... }
assert_param(IS_RTC_MINUTES(sAlarm->AlarmTime.Minutes));
assert_param(IS_RTC_SECONDS(sAlarm->AlarmTime.Seconds));
if (sAlarm->AlarmDateWeekDaySel == RTC_ALARMDATEWEEKDAYSEL_DATE)
{
assert_param(IS_RTC_ALARM_DATE_WEEKDAY_DATE(sAlarm->AlarmDateWeekDay));
}if (sAlarm->AlarmDateWeekDaySel == RTC_ALARMDATEWEEKDAYSEL_DATE) { ... }
else
{
assert_param(IS_RTC_ALARM_DATE_WEEKDAY_WEEKDAY(sAlarm->AlarmDateWeekDay));
}else { ... }
tmpreg = (((uint32_t)RTC_ByteToBcd2(sAlarm->AlarmTime.Hours) << RTC_ALRMAR_HU_Pos) | \
((uint32_t)RTC_ByteToBcd2(sAlarm->AlarmTime.Minutes) << RTC_ALRMAR_MNU_Pos) | \
((uint32_t)RTC_ByteToBcd2(sAlarm->AlarmTime.Seconds)) | \
((uint32_t)(sAlarm->AlarmTime.TimeFormat) << RTC_TR_PM_Pos) | \
((uint32_t)RTC_ByteToBcd2(sAlarm->AlarmDateWeekDay) << RTC_ALRMAR_DU_Pos) | \
((uint32_t)sAlarm->AlarmDateWeekDaySel) | \
((uint32_t)sAlarm->AlarmMask));
}if (Format == RTC_FORMAT_BIN) { ... }
else
{
if ((hrtc->Instance->CR & RTC_CR_FMT) != 0U)
{
assert_param(IS_RTC_HOUR12(RTC_Bcd2ToByte(sAlarm->AlarmTime.Hours)));
assert_param(IS_RTC_HOURFORMAT12(sAlarm->AlarmTime.TimeFormat));
}if ((hrtc->Instance->CR & RTC_CR_FMT) != 0U) { ... }
else
{
sAlarm->AlarmTime.TimeFormat = 0x00U;
assert_param(IS_RTC_HOUR24(RTC_Bcd2ToByte(sAlarm->AlarmTime.Hours)));
}else { ... }
assert_param(IS_RTC_MINUTES(RTC_Bcd2ToByte(sAlarm->AlarmTime.Minutes)));
assert_param(IS_RTC_SECONDS(RTC_Bcd2ToByte(sAlarm->AlarmTime.Seconds)));
if (sAlarm->AlarmDateWeekDaySel == RTC_ALARMDATEWEEKDAYSEL_DATE)
{
assert_param(IS_RTC_ALARM_DATE_WEEKDAY_DATE(RTC_Bcd2ToByte(sAlarm->AlarmDateWeekDay)));
}if (sAlarm->AlarmDateWeekDaySel == RTC_ALARMDATEWEEKDAYSEL_DATE) { ... }
else
{
assert_param(IS_RTC_ALARM_DATE_WEEKDAY_WEEKDAY(RTC_Bcd2ToByte(sAlarm->AlarmDateWeekDay)));
}else { ... }
tmpreg = (((uint32_t)(sAlarm->AlarmTime.Hours) << RTC_ALRMAR_HU_Pos) | \
((uint32_t)(sAlarm->AlarmTime.Minutes) << RTC_ALRMAR_MNU_Pos) | \
((uint32_t) sAlarm->AlarmTime.Seconds) | \
((uint32_t)(sAlarm->AlarmTime.TimeFormat) << RTC_TR_PM_Pos) | \
((uint32_t)(sAlarm->AlarmDateWeekDay) << RTC_ALRMAR_DU_Pos) | \
((uint32_t) sAlarm->AlarmDateWeekDaySel) | \
((uint32_t) sAlarm->AlarmMask));
}else { ... }
subsecondtmpreg = (uint32_t)((uint32_t)(sAlarm->AlarmTime.SubSeconds) | \
(uint32_t)(sAlarm->AlarmSubSecondMask));
__HAL_RTC_WRITEPROTECTION_DISABLE(hrtc);
if (sAlarm->Alarm == RTC_ALARM_A)
{
__HAL_RTC_ALARMA_DISABLE(hrtc);
__HAL_RTC_ALARM_CLEAR_FLAG(hrtc, RTC_FLAG_ALRAF);
do
{
count = count - 1U;
if (count == 0U)
{
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
hrtc->State = HAL_RTC_STATE_TIMEOUT;
__HAL_UNLOCK(hrtc);
return HAL_TIMEOUT;
}if (count == 0U) { ... }
...} while (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRAWF) == 0U);
hrtc->Instance->ALRMAR = (uint32_t)tmpreg;
hrtc->Instance->ALRMASSR = subsecondtmpreg;
__HAL_RTC_ALARMA_ENABLE(hrtc);
__HAL_RTC_ALARM_ENABLE_IT(hrtc, RTC_IT_ALRA);
}if (sAlarm->Alarm == RTC_ALARM_A) { ... }
else
{
__HAL_RTC_ALARMB_DISABLE(hrtc);
__HAL_RTC_ALARM_CLEAR_FLAG(hrtc, RTC_FLAG_ALRBF);
count = RTC_TIMEOUT_VALUE * (SystemCoreClock / 32U / 1000U);
do
{
count = count - 1U;
if (count == 0U)
{
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
hrtc->State = HAL_RTC_STATE_TIMEOUT;
__HAL_UNLOCK(hrtc);
return HAL_TIMEOUT;
}if (count == 0U) { ... }
...} while (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRBWF) == 0U);
hrtc->Instance->ALRMBR = (uint32_t)tmpreg;
hrtc->Instance->ALRMBSSR = subsecondtmpreg;
__HAL_RTC_ALARMB_ENABLE(hrtc);
__HAL_RTC_ALARM_ENABLE_IT(hrtc, RTC_IT_ALRB);
}else { ... }
__HAL_RTC_ALARM_EXTI_ENABLE_IT();
__HAL_RTC_ALARM_EXTI_ENABLE_RISING_EDGE();
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
hrtc->State = HAL_RTC_STATE_READY;
__HAL_UNLOCK(hrtc);
return HAL_OK;
}{ ... }
/* ... */
HAL_StatusTypeDef HAL_RTC_DeactivateAlarm(RTC_HandleTypeDef *hrtc, uint32_t Alarm)
{
uint32_t tickstart = 0U;
assert_param(IS_RTC_ALARM(Alarm));
__HAL_LOCK(hrtc);
hrtc->State = HAL_RTC_STATE_BUSY;
__HAL_RTC_WRITEPROTECTION_DISABLE(hrtc);
if (Alarm == RTC_ALARM_A)
{
__HAL_RTC_ALARMA_DISABLE(hrtc);
__HAL_RTC_ALARM_DISABLE_IT(hrtc, RTC_IT_ALRA);
tickstart = HAL_GetTick();
while (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRAWF) == 0U)
{
if ((HAL_GetTick() - tickstart) > RTC_TIMEOUT_VALUE)
{
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
hrtc->State = HAL_RTC_STATE_TIMEOUT;
__HAL_UNLOCK(hrtc);
return HAL_TIMEOUT;
}if ((HAL_GetTick() - tickstart) > RTC_TIMEOUT_VALUE) { ... }
}while (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRAWF) == 0U) { ... }
}if (Alarm == RTC_ALARM_A) { ... }
else
{
__HAL_RTC_ALARMB_DISABLE(hrtc);
__HAL_RTC_ALARM_DISABLE_IT(hrtc, RTC_IT_ALRB);
tickstart = HAL_GetTick();
while (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRBWF) == 0U)
{
if ((HAL_GetTick() - tickstart) > RTC_TIMEOUT_VALUE)
{
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
hrtc->State = HAL_RTC_STATE_TIMEOUT;
__HAL_UNLOCK(hrtc);
return HAL_TIMEOUT;
}if ((HAL_GetTick() - tickstart) > RTC_TIMEOUT_VALUE) { ... }
}while (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRBWF) == 0U) { ... }
}else { ... }
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
hrtc->State = HAL_RTC_STATE_READY;
__HAL_UNLOCK(hrtc);
return HAL_OK;
}{ ... }
/* ... */
HAL_StatusTypeDef HAL_RTC_GetAlarm(RTC_HandleTypeDef *hrtc, RTC_AlarmTypeDef *sAlarm, uint32_t Alarm, uint32_t Format)
{
uint32_t tmpreg = 0U;
uint32_t subsecondtmpreg = 0U;
assert_param(IS_RTC_FORMAT(Format));
assert_param(IS_RTC_ALARM(Alarm));
if (Alarm == RTC_ALARM_A)
{
sAlarm->Alarm = RTC_ALARM_A;
tmpreg = (uint32_t)(hrtc->Instance->ALRMAR);
subsecondtmpreg = (uint32_t)((hrtc->Instance->ALRMASSR) & RTC_ALRMASSR_SS);
}if (Alarm == RTC_ALARM_A) { ... }
else
{
sAlarm->Alarm = RTC_ALARM_B;
tmpreg = (uint32_t)(hrtc->Instance->ALRMBR);
subsecondtmpreg = (uint32_t)((hrtc->Instance->ALRMBSSR) & RTC_ALRMBSSR_SS);
}else { ... }
sAlarm->AlarmTime.Hours = (uint8_t) ((tmpreg & (RTC_ALRMAR_HT | RTC_ALRMAR_HU)) >> RTC_ALRMAR_HU_Pos);
sAlarm->AlarmTime.Minutes = (uint8_t) ((tmpreg & (RTC_ALRMAR_MNT | RTC_ALRMAR_MNU)) >> RTC_ALRMAR_MNU_Pos);
sAlarm->AlarmTime.Seconds = (uint8_t) ( tmpreg & (RTC_ALRMAR_ST | RTC_ALRMAR_SU));
sAlarm->AlarmTime.TimeFormat = (uint8_t) ((tmpreg & RTC_ALRMAR_PM) >> RTC_TR_PM_Pos);
sAlarm->AlarmTime.SubSeconds = (uint32_t) subsecondtmpreg;
sAlarm->AlarmDateWeekDay = (uint8_t) ((tmpreg & (RTC_ALRMAR_DT | RTC_ALRMAR_DU)) >> RTC_ALRMAR_DU_Pos);
sAlarm->AlarmDateWeekDaySel = (uint32_t) (tmpreg & RTC_ALRMAR_WDSEL);
sAlarm->AlarmMask = (uint32_t) (tmpreg & RTC_ALARMMASK_ALL);
if (Format == RTC_FORMAT_BIN)
{
sAlarm->AlarmTime.Hours = RTC_Bcd2ToByte(sAlarm->AlarmTime.Hours);
sAlarm->AlarmTime.Minutes = RTC_Bcd2ToByte(sAlarm->AlarmTime.Minutes);
sAlarm->AlarmTime.Seconds = RTC_Bcd2ToByte(sAlarm->AlarmTime.Seconds);
sAlarm->AlarmDateWeekDay = RTC_Bcd2ToByte(sAlarm->AlarmDateWeekDay);
}if (Format == RTC_FORMAT_BIN) { ... }
return HAL_OK;
}{ ... }
/* ... */
void HAL_RTC_AlarmIRQHandler(RTC_HandleTypeDef *hrtc)
{
__HAL_RTC_ALARM_EXTI_CLEAR_FLAG();
if (__HAL_RTC_ALARM_GET_IT_SOURCE(hrtc, RTC_IT_ALRA) != 0U)
{
if (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRAF) != 0U)
{
__HAL_RTC_ALARM_CLEAR_FLAG(hrtc, RTC_FLAG_ALRAF);
#if (USE_HAL_RTC_REGISTER_CALLBACKS == 1)
hrtc->AlarmAEventCallback(hrtc);
#else
HAL_RTC_AlarmAEventCallback(hrtc);
#endif
}if (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRAF) != 0U) { ... }
}if (__HAL_RTC_ALARM_GET_IT_SOURCE(hrtc, RTC_IT_ALRA) != 0U) { ... }
if (__HAL_RTC_ALARM_GET_IT_SOURCE(hrtc, RTC_IT_ALRB) != 0U)
{
if (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRBF) != 0U)
{
__HAL_RTC_ALARM_CLEAR_FLAG(hrtc, RTC_FLAG_ALRBF);
#if (USE_HAL_RTC_REGISTER_CALLBACKS == 1)
hrtc->AlarmBEventCallback(hrtc);
#else
HAL_RTCEx_AlarmBEventCallback(hrtc);
#endif
}if (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRBF) != 0U) { ... }
}if (__HAL_RTC_ALARM_GET_IT_SOURCE(hrtc, RTC_IT_ALRB) != 0U) { ... }
hrtc->State = HAL_RTC_STATE_READY;
}{ ... }
/* ... */
__weak void HAL_RTC_AlarmAEventCallback(RTC_HandleTypeDef *hrtc)
{
UNUSED(hrtc);
/* ... */
}{ ... }
/* ... */
HAL_StatusTypeDef HAL_RTC_PollForAlarmAEvent(RTC_HandleTypeDef *hrtc, uint32_t Timeout)
{
uint32_t tickstart = 0U;
tickstart = HAL_GetTick();
while (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRAF) == 0U)
{
if (Timeout != HAL_MAX_DELAY)
{
if ((Timeout == 0U) || ((HAL_GetTick() - tickstart) > Timeout))
{
hrtc->State = HAL_RTC_STATE_TIMEOUT;
return HAL_TIMEOUT;
}if ((Timeout == 0U) || ((HAL_GetTick() - tickstart) > Timeout)) { ... }
}if (Timeout != HAL_MAX_DELAY) { ... }
}while (__HAL_RTC_ALARM_GET_FLAG(hrtc, RTC_FLAG_ALRAF) == 0U) { ... }
__HAL_RTC_ALARM_CLEAR_FLAG(hrtc, RTC_FLAG_ALRAF);
hrtc->State = HAL_RTC_STATE_READY;
return HAL_OK;
}{ ... }
/* ... */
/* ... */
/* ... */
HAL_StatusTypeDef HAL_RTC_WaitForSynchro(RTC_HandleTypeDef *hrtc)
{
uint32_t tickstart = 0U;
hrtc->Instance->ISR = ((uint32_t)(RTC_RSF_MASK & RTC_ISR_RESERVED_MASK));
tickstart = HAL_GetTick();
while ((hrtc->Instance->ISR & RTC_ISR_RSF) == 0U)
{
if ((HAL_GetTick() - tickstart) > RTC_TIMEOUT_VALUE)
{
return HAL_TIMEOUT;
}if ((HAL_GetTick() - tickstart) > RTC_TIMEOUT_VALUE) { ... }
}while ((hrtc->Instance->ISR & RTC_ISR_RSF) == 0U) { ... }
return HAL_OK;
}{ ... }
/* ... */
void HAL_RTC_DST_Add1Hour(RTC_HandleTypeDef *hrtc)
{
__HAL_RTC_WRITEPROTECTION_DISABLE(hrtc);
SET_BIT(hrtc->Instance->CR, RTC_CR_ADD1H);
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
}{ ... }
/* ... */
void HAL_RTC_DST_Sub1Hour(RTC_HandleTypeDef *hrtc)
{
__HAL_RTC_WRITEPROTECTION_DISABLE(hrtc);
SET_BIT(hrtc->Instance->CR, RTC_CR_SUB1H);
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
}{ ... }
/* ... */
void HAL_RTC_DST_SetStoreOperation(RTC_HandleTypeDef *hrtc)
{
__HAL_RTC_WRITEPROTECTION_DISABLE(hrtc);
SET_BIT(hrtc->Instance->CR, RTC_CR_BKP);
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
}{ ... }
/* ... */
void HAL_RTC_DST_ClearStoreOperation(RTC_HandleTypeDef *hrtc)
{
__HAL_RTC_WRITEPROTECTION_DISABLE(hrtc);
CLEAR_BIT(hrtc->Instance->CR, RTC_CR_BKP);
__HAL_RTC_WRITEPROTECTION_ENABLE(hrtc);
}{ ... }
/* ... */
uint32_t HAL_RTC_DST_ReadStoreOperation(RTC_HandleTypeDef *hrtc)
{
return READ_BIT(hrtc->Instance->CR, RTC_CR_BKP);
}{ ... }
/* ... */
/* ... */
/* ... */
HAL_RTCStateTypeDef HAL_RTC_GetState(RTC_HandleTypeDef *hrtc)
{
return hrtc->State;
}{ ... }
/* ... */
/* ... */
/* ... */
/* ... */
HAL_StatusTypeDef RTC_EnterInitMode(RTC_HandleTypeDef *hrtc)
{
uint32_t tickstart = 0U;
HAL_StatusTypeDef status = HAL_OK;
if (READ_BIT(hrtc->Instance->ISR, RTC_ISR_INITF) == 0U)
{
SET_BIT(hrtc->Instance->ISR, RTC_ISR_INIT);
tickstart = HAL_GetTick();
while ((READ_BIT(hrtc->Instance->ISR, RTC_ISR_INITF) == 0U) && (status != HAL_ERROR))
{
if ((HAL_GetTick() - tickstart) > RTC_TIMEOUT_VALUE)
{
hrtc->State = HAL_RTC_STATE_ERROR;
status = HAL_ERROR;
}if ((HAL_GetTick() - tickstart) > RTC_TIMEOUT_VALUE) { ... }
}while ((READ_BIT(hrtc->Instance->ISR, RTC_ISR_INITF) == 0U) && (status != HAL_ERROR)) { ... }
}if (READ_BIT(hrtc->Instance->ISR, RTC_ISR_INITF) == 0U) { ... }
return status;
}{ ... }
/* ... */
HAL_StatusTypeDef RTC_ExitInitMode(RTC_HandleTypeDef *hrtc)
{
HAL_StatusTypeDef status = HAL_OK;
CLEAR_BIT(hrtc->Instance->ISR, RTC_ISR_INIT);
if (READ_BIT(hrtc->Instance->CR, RTC_CR_BYPSHAD) == 0U)
{
if (HAL_RTC_WaitForSynchro(hrtc) != HAL_OK)
{
hrtc->State = HAL_RTC_STATE_ERROR;
status = HAL_ERROR;
}if (HAL_RTC_WaitForSynchro(hrtc) != HAL_OK) { ... }
}if (READ_BIT(hrtc->Instance->CR, RTC_CR_BYPSHAD) == 0U) { ... }
return status;
}{ ... }
/* ... */
uint8_t RTC_ByteToBcd2(uint8_t number)
{
uint32_t bcdhigh = 0U;
while (number >= 10U)
{
bcdhigh++;
number -= 10U;
}while (number >= 10U) { ... }
return ((uint8_t)(bcdhigh << 4U) | number);
}{ ... }
/* ... */
uint8_t RTC_Bcd2ToByte(uint8_t number)
{
uint32_t tens = 0U;
tens = (((uint32_t)number & 0xF0U) >> 4U) * 10U;
return (uint8_t)(tens + ((uint32_t)number & 0x0FU));
}{ ... }
/* ... */
/* ... */
#endif
/* ... */
/* ... */