/** ****************************************************************************** * @file stm8l10x_beep.c * @brief This file contains all the functions for the BEEP peripheral. * @author STMicroelectronics - MCD Application Team * @version V1.1.0 * @date 09/14/2009 ****************************************************************************** * * THE PRESENT FIRMWARE WHICH IS FOR GUIDANCE ONLY AIMS AT PROVIDING CUSTOMERS * WITH CODING INFORMATION REGARDING THEIR PRODUCTS IN ORDER FOR THEM TO SAVE * TIME. AS A RESULT, STMICROELECTRONICS SHALL NOT BE HELD LIABLE FOR ANY * DIRECT, INDIRECT OR CONSEQUENTIAL DAMAGES WITH RESPECT TO ANY CLAIMS ARISING * FROM THE CONTENT OF SUCH FIRMWARE AND/OR THE USE MADE BY CUSTOMERS OF THE * CODING INFORMATION CONTAINED HEREIN IN CONNECTION WITH THEIR PRODUCTS. * *

© COPYRIGHT 2009 STMicroelectronics

* @image html logo.bmp ****************************************************************************** */ /* Includes ------------------------------------------------------------------*/ #include "stm8l10x_beep.h" /* Private typedef -----------------------------------------------------------*/ /* Private define ------------------------------------------------------------*/ /* Private macro -------------------------------------------------------------*/ /* Private variables ---------------------------------------------------------*/ /* Private function prototypes -----------------------------------------------*/ /* Private functions ---------------------------------------------------------*/ /* Public functions ----------------------------------------------------------*/ /** * @addtogroup BEEP_Public_Functions * @{ */ /** * @brief Deinitializes the BEEP peripheral registers to their default reset * values. * @par Parameters: * None * @retval None */ void BEEP_DeInit(void) { BEEP->CSR = BEEP_CSR_RESET_VALUE; } /** * @brief Initializes the BEEP function according to the specified parameters. * @param[in] BEEP_Frequency Frequency selection. * can be one of the values of @ref BEEP_Frequency_TypeDef. * @retval None * @par Required preconditions: * The LS RC calibration must be performed before calling this function. */ void BEEP_Init(BEEP_Frequency_TypeDef BEEP_Frequency) { /* Check parameter */ assert_param(IS_BEEP_FREQUENCY(BEEP_Frequency)); /* Set a default calibration value if no calibration is done */ if ((BEEP->CSR & BEEP_CSR_BEEPDIV) == BEEP_CSR_BEEPDIV) { BEEP->CSR &= (uint8_t)(~BEEP_CSR_BEEPDIV); /* Clear bits */ BEEP->CSR |= BEEP_CALIBRATION_DEFAULT; } /* Select the output frequency */ BEEP->CSR &= (uint8_t)(~BEEP_CSR_BEEPSEL); BEEP->CSR |= (uint8_t)(BEEP_Frequency); } /** * @brief Enable or disable the BEEP function. * @param[in] NewState Indicates the new state of the BEEP function. * @retval None * @par Required preconditions: * Initialisation of BEEP and LS RC calibration must be done before. */ void BEEP_Cmd(FunctionalState NewState) { assert_param(IS_FUNCTIONAL_STATE(NewState)); if (NewState != DISABLE) { /* Enable the BEEP peripheral */ BEEP->CSR |= BEEP_CSR_BEEPEN; } else { /* Disable the BEEP peripheral */ BEEP->CSR &= (uint8_t)(~BEEP_CSR_BEEPEN); } } /** * @brief Update CSR register with the measured LSI frequency. * @par Note on the APR calculation: * A is the integer part of LSIFreqkHz/4 and x the decimal part. * x <= A/(1+2A) is equivalent to A >= x(1+2A) and also to 4A >= 4x(1+2A) [F1] * but we know that A + x = LSIFreqkHz/4 ==> 4x = LSIFreqkHz-4A * so [F1] can be written : * 4A >= (LSIFreqkHz-4A)(1+2A) * @param[in] LSIFreqHz Low Speed RC frequency measured by timer (in Hz). * @retval None * @par Required preconditions: * - BEEP must be disabled to avoid unwanted interrupts. */ void BEEP_LSICalibrationConfig(uint32_t LSIFreqHz) { uint16_t lsifreqkhz; uint16_t A; /* Check parameter */ assert_param(IS_LSI_FREQUENCY(LSIFreqHz)); lsifreqkhz = (uint16_t)(LSIFreqHz / 1000); /* Converts value in kHz */ /* Calculation of BEEPER calibration value */ BEEP->CSR &= (uint8_t)(~BEEP_CSR_BEEPDIV); /* Clear bits */ A = (uint16_t)(lsifreqkhz >> 3U); /* Division by 8, keep integer part only */ if ((8U * A) >= ((lsifreqkhz - (8U * A)) * (1U + (2U * A)))) { BEEP->CSR |= (uint8_t)(A - 2U); } else { BEEP->CSR |= (uint8_t)(A - 1U); } /* Set the AWU MR bit to load the new value to the prescalers */ AWU->CSR |= AWU_CSR_MR; } /** * @} */ /******************* (C) COPYRIGHT 2009 STMicroelectronics *****END OF FILE****/