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  1. /**
  2.   ******************************************************************************
  3.   * @file    stm32f1xx_hal_rcc_ex.c
  4.   * @author  MCD Application Team
  5.   * @brief   Extended RCC HAL module driver.
  6.   *          This file provides firmware functions to manage the following
  7.   *          functionalities RCC extension peripheral:
  8.   *           + Extended Peripheral Control functions
  9.   *
  10.   ******************************************************************************
  11.   * @attention
  12.   *
  13.   * Copyright (c) 2016 STMicroelectronics.
  14.   * All rights reserved.
  15.   *
  16.   * This software is licensed under terms that can be found in the LICENSE file in
  17.   * the root directory of this software component.
  18.   * If no LICENSE file comes with this software, it is provided AS-IS.
  19.   ******************************************************************************
  20.   */
  21.  
  22. /* Includes ------------------------------------------------------------------*/
  23. #include "stm32f1xx_hal.h"
  24.  
  25. /** @addtogroup STM32F1xx_HAL_Driver
  26.   * @{
  27.   */
  28.  
  29. #ifdef HAL_RCC_MODULE_ENABLED
  30.  
  31. /** @defgroup RCCEx RCCEx
  32.   * @brief RCC Extension HAL module driver.
  33.   * @{
  34.   */
  35.  
  36. /* Private typedef -----------------------------------------------------------*/
  37. /* Private define ------------------------------------------------------------*/
  38. /** @defgroup RCCEx_Private_Constants RCCEx Private Constants
  39.   * @{
  40.   */
  41. /**
  42.   * @}
  43.   */
  44.  
  45. /* Private macro -------------------------------------------------------------*/
  46. /** @defgroup RCCEx_Private_Macros RCCEx Private Macros
  47.   * @{
  48.   */
  49. /**
  50.   * @}
  51.   */
  52.  
  53. /* Private variables ---------------------------------------------------------*/
  54. /* Private function prototypes -----------------------------------------------*/
  55. /* Private functions ---------------------------------------------------------*/
  56.  
  57. /** @defgroup RCCEx_Exported_Functions RCCEx Exported Functions
  58.   * @{
  59.   */
  60.  
  61. /** @defgroup RCCEx_Exported_Functions_Group1 Peripheral Control functions
  62.   *  @brief  Extended Peripheral Control functions
  63.   *
  64. @verbatim
  65.  ===============================================================================
  66.                 ##### Extended Peripheral Control functions  #####
  67.  ===============================================================================
  68.     [..]
  69.     This subsection provides a set of functions allowing to control the RCC Clocks
  70.     frequencies.
  71.     [..]
  72.     (@) Important note: Care must be taken when HAL_RCCEx_PeriphCLKConfig() is used to
  73.         select the RTC clock source; in this case the Backup domain will be reset in
  74.         order to modify the RTC Clock source, as consequence RTC registers (including
  75.         the backup registers) are set to their reset values.
  76.  
  77. @endverbatim
  78.   * @{
  79.   */
  80.  
  81. /**
  82.   * @brief  Initializes the RCC extended peripherals clocks according to the specified parameters in the
  83.   *         RCC_PeriphCLKInitTypeDef.
  84.   * @param  PeriphClkInit pointer to an RCC_PeriphCLKInitTypeDef structure that
  85.   *         contains the configuration information for the Extended Peripherals clocks(RTC clock).
  86.   *
  87.   * @note   Care must be taken when HAL_RCCEx_PeriphCLKConfig() is used to select
  88.   *         the RTC clock source; in this case the Backup domain will be reset in
  89.   *         order to modify the RTC Clock source, as consequence RTC registers (including
  90.   *         the backup registers) are set to their reset values.
  91.   *
  92.   * @note   In case of STM32F105xC or STM32F107xC devices, PLLI2S will be enabled if requested on
  93.   *         one of 2 I2S interfaces. When PLLI2S is enabled, you need to call HAL_RCCEx_DisablePLLI2S to
  94.   *         manually disable it.
  95.   *
  96.   * @retval HAL status
  97.   */
  98. HAL_StatusTypeDef HAL_RCCEx_PeriphCLKConfig(RCC_PeriphCLKInitTypeDef  *PeriphClkInit)
  99. {
  100.   uint32_t tickstart = 0U, temp_reg = 0U;
  101. #if defined(STM32F105xC) || defined(STM32F107xC)
  102.   uint32_t  pllactive = 0U;
  103. #endif /* STM32F105xC || STM32F107xC */
  104.  
  105.   /* Check the parameters */
  106.   assert_param(IS_RCC_PERIPHCLOCK(PeriphClkInit->PeriphClockSelection));
  107.  
  108.   /*------------------------------- RTC/LCD Configuration ------------------------*/
  109.   if ((((PeriphClkInit->PeriphClockSelection) & RCC_PERIPHCLK_RTC) == RCC_PERIPHCLK_RTC))
  110.   {
  111.     FlagStatus pwrclkchanged = RESET;
  112.  
  113.     /* check for RTC Parameters used to output RTCCLK */
  114.     assert_param(IS_RCC_RTCCLKSOURCE(PeriphClkInit->RTCClockSelection));
  115.  
  116.     /* As soon as function is called to change RTC clock source, activation of the
  117.        power domain is done. */
  118.     /* Requires to enable write access to Backup Domain of necessary */
  119.     if (__HAL_RCC_PWR_IS_CLK_DISABLED())
  120.     {
  121.       __HAL_RCC_PWR_CLK_ENABLE();
  122.       pwrclkchanged = SET;
  123.     }
  124.  
  125.     if (HAL_IS_BIT_CLR(PWR->CR, PWR_CR_DBP))
  126.     {
  127.       /* Enable write access to Backup domain */
  128.       SET_BIT(PWR->CR, PWR_CR_DBP);
  129.  
  130.       /* Wait for Backup domain Write protection disable */
  131.       tickstart = HAL_GetTick();
  132.  
  133.       while (HAL_IS_BIT_CLR(PWR->CR, PWR_CR_DBP))
  134.       {
  135.         if ((HAL_GetTick() - tickstart) > RCC_DBP_TIMEOUT_VALUE)
  136.         {
  137.           return HAL_TIMEOUT;
  138.         }
  139.       }
  140.     }
  141.  
  142.     /* Reset the Backup domain only if the RTC Clock source selection is modified from reset value */
  143.     temp_reg = (RCC->BDCR & RCC_BDCR_RTCSEL);
  144.     if ((temp_reg != 0x00000000U) && (temp_reg != (PeriphClkInit->RTCClockSelection & RCC_BDCR_RTCSEL)))
  145.     {
  146.       /* Store the content of BDCR register before the reset of Backup Domain */
  147.       temp_reg = (RCC->BDCR & ~(RCC_BDCR_RTCSEL));
  148.       /* RTC Clock selection can be changed only if the Backup Domain is reset */
  149.       __HAL_RCC_BACKUPRESET_FORCE();
  150.       __HAL_RCC_BACKUPRESET_RELEASE();
  151.       /* Restore the Content of BDCR register */
  152.       RCC->BDCR = temp_reg;
  153.  
  154.       /* Wait for LSERDY if LSE was enabled */
  155.       if (HAL_IS_BIT_SET(temp_reg, RCC_BDCR_LSEON))
  156.       {
  157.         /* Get Start Tick */
  158.         tickstart = HAL_GetTick();
  159.  
  160.         /* Wait till LSE is ready */
  161.         while (__HAL_RCC_GET_FLAG(RCC_FLAG_LSERDY) == RESET)
  162.         {
  163.           if ((HAL_GetTick() - tickstart) > RCC_LSE_TIMEOUT_VALUE)
  164.           {
  165.             return HAL_TIMEOUT;
  166.           }
  167.         }
  168.       }
  169.     }
  170.     __HAL_RCC_RTC_CONFIG(PeriphClkInit->RTCClockSelection);
  171.  
  172.     /* Require to disable power clock if necessary */
  173.     if (pwrclkchanged == SET)
  174.     {
  175.       __HAL_RCC_PWR_CLK_DISABLE();
  176.     }
  177.   }
  178.  
  179.   /*------------------------------ ADC clock Configuration ------------------*/
  180.   if (((PeriphClkInit->PeriphClockSelection) & RCC_PERIPHCLK_ADC) == RCC_PERIPHCLK_ADC)
  181.   {
  182.     /* Check the parameters */
  183.     assert_param(IS_RCC_ADCPLLCLK_DIV(PeriphClkInit->AdcClockSelection));
  184.  
  185.     /* Configure the ADC clock source */
  186.     __HAL_RCC_ADC_CONFIG(PeriphClkInit->AdcClockSelection);
  187.   }
  188.  
  189. #if defined(STM32F105xC) || defined(STM32F107xC)
  190.   /*------------------------------ I2S2 Configuration ------------------------*/
  191.   if (((PeriphClkInit->PeriphClockSelection) & RCC_PERIPHCLK_I2S2) == RCC_PERIPHCLK_I2S2)
  192.   {
  193.     /* Check the parameters */
  194.     assert_param(IS_RCC_I2S2CLKSOURCE(PeriphClkInit->I2s2ClockSelection));
  195.  
  196.     /* Configure the I2S2 clock source */
  197.     __HAL_RCC_I2S2_CONFIG(PeriphClkInit->I2s2ClockSelection);
  198.   }
  199.  
  200.   /*------------------------------ I2S3 Configuration ------------------------*/
  201.   if (((PeriphClkInit->PeriphClockSelection) & RCC_PERIPHCLK_I2S3) == RCC_PERIPHCLK_I2S3)
  202.   {
  203.     /* Check the parameters */
  204.     assert_param(IS_RCC_I2S3CLKSOURCE(PeriphClkInit->I2s3ClockSelection));
  205.  
  206.     /* Configure the I2S3 clock source */
  207.     __HAL_RCC_I2S3_CONFIG(PeriphClkInit->I2s3ClockSelection);
  208.   }
  209.  
  210.   /*------------------------------ PLL I2S Configuration ----------------------*/
  211.   /* Check that PLLI2S need to be enabled */
  212.   if (HAL_IS_BIT_SET(RCC->CFGR2, RCC_CFGR2_I2S2SRC) || HAL_IS_BIT_SET(RCC->CFGR2, RCC_CFGR2_I2S3SRC))
  213.   {
  214.     /* Update flag to indicate that PLL I2S should be active */
  215.     pllactive = 1;
  216.   }
  217.  
  218.   /* Check if PLL I2S need to be enabled */
  219.   if (pllactive == 1)
  220.   {
  221.     /* Enable PLL I2S only if not active */
  222.     if (HAL_IS_BIT_CLR(RCC->CR, RCC_CR_PLL3ON))
  223.     {
  224.       /* Check the parameters */
  225.       assert_param(IS_RCC_PLLI2S_MUL(PeriphClkInit->PLLI2S.PLLI2SMUL));
  226.       assert_param(IS_RCC_HSE_PREDIV2(PeriphClkInit->PLLI2S.HSEPrediv2Value));
  227.  
  228.       /* Prediv2 can be written only when the PLL2 is disabled. */
  229.       /* Return an error only if new value is different from the programmed value */
  230.       if (HAL_IS_BIT_SET(RCC->CR, RCC_CR_PLL2ON) && \
  231.           (__HAL_RCC_HSE_GET_PREDIV2() != PeriphClkInit->PLLI2S.HSEPrediv2Value))
  232.       {
  233.         return HAL_ERROR;
  234.       }
  235.  
  236.       /* Configure the HSE prediv2 factor --------------------------------*/
  237.       __HAL_RCC_HSE_PREDIV2_CONFIG(PeriphClkInit->PLLI2S.HSEPrediv2Value);
  238.  
  239.       /* Configure the main PLLI2S multiplication factors. */
  240.       __HAL_RCC_PLLI2S_CONFIG(PeriphClkInit->PLLI2S.PLLI2SMUL);
  241.  
  242.       /* Enable the main PLLI2S. */
  243.       __HAL_RCC_PLLI2S_ENABLE();
  244.  
  245.       /* Get Start Tick*/
  246.       tickstart = HAL_GetTick();
  247.  
  248.       /* Wait till PLLI2S is ready */
  249.       while (__HAL_RCC_GET_FLAG(RCC_FLAG_PLLI2SRDY)  == RESET)
  250.       {
  251.         if ((HAL_GetTick() - tickstart) > PLLI2S_TIMEOUT_VALUE)
  252.         {
  253.           return HAL_TIMEOUT;
  254.         }
  255.       }
  256.     }
  257.     else
  258.     {
  259.       /* Return an error only if user wants to change the PLLI2SMUL whereas PLLI2S is active */
  260.       if (READ_BIT(RCC->CFGR2, RCC_CFGR2_PLL3MUL) != PeriphClkInit->PLLI2S.PLLI2SMUL)
  261.       {
  262.         return HAL_ERROR;
  263.       }
  264.     }
  265.   }
  266. #endif /* STM32F105xC || STM32F107xC */
  267.  
  268. #if defined(STM32F102x6) || defined(STM32F102xB) || defined(STM32F103x6)\
  269.  || defined(STM32F103xB) || defined(STM32F103xE) || defined(STM32F103xG)\
  270.  || defined(STM32F105xC) || defined(STM32F107xC)
  271.   /*------------------------------ USB clock Configuration ------------------*/
  272.   if (((PeriphClkInit->PeriphClockSelection) & RCC_PERIPHCLK_USB) == RCC_PERIPHCLK_USB)
  273.   {
  274.     /* Check the parameters */
  275.     assert_param(IS_RCC_USBPLLCLK_DIV(PeriphClkInit->UsbClockSelection));
  276.  
  277.     /* Configure the USB clock source */
  278.     __HAL_RCC_USB_CONFIG(PeriphClkInit->UsbClockSelection);
  279.   }
  280. #endif /* STM32F102x6 || STM32F102xB || STM32F103x6 || STM32F103xB || STM32F103xE || STM32F103xG || STM32F105xC || STM32F107xC */
  281.  
  282.   return HAL_OK;
  283. }
  284.  
  285. /**
  286.   * @brief  Get the PeriphClkInit according to the internal
  287.   * RCC configuration registers.
  288.   * @param  PeriphClkInit pointer to an RCC_PeriphCLKInitTypeDef structure that
  289.   *         returns the configuration information for the Extended Peripherals clocks(RTC, I2S, ADC clocks).
  290.   * @retval None
  291.   */
  292. void HAL_RCCEx_GetPeriphCLKConfig(RCC_PeriphCLKInitTypeDef  *PeriphClkInit)
  293. {
  294.   uint32_t srcclk = 0U;
  295.  
  296.   /* Set all possible values for the extended clock type parameter------------*/
  297.   PeriphClkInit->PeriphClockSelection = RCC_PERIPHCLK_RTC;
  298.  
  299.   /* Get the RTC configuration -----------------------------------------------*/
  300.   srcclk = __HAL_RCC_GET_RTC_SOURCE();
  301.   /* Source clock is LSE or LSI*/
  302.   PeriphClkInit->RTCClockSelection = srcclk;
  303.  
  304.   /* Get the ADC clock configuration -----------------------------------------*/
  305.   PeriphClkInit->PeriphClockSelection |= RCC_PERIPHCLK_ADC;
  306.   PeriphClkInit->AdcClockSelection = __HAL_RCC_GET_ADC_SOURCE();
  307.  
  308. #if defined(STM32F105xC) || defined(STM32F107xC)
  309.   /* Get the I2S2 clock configuration -----------------------------------------*/
  310.   PeriphClkInit->PeriphClockSelection |= RCC_PERIPHCLK_I2S2;
  311.   PeriphClkInit->I2s2ClockSelection = __HAL_RCC_GET_I2S2_SOURCE();
  312.  
  313.   /* Get the I2S3 clock configuration -----------------------------------------*/
  314.   PeriphClkInit->PeriphClockSelection |= RCC_PERIPHCLK_I2S3;
  315.   PeriphClkInit->I2s3ClockSelection = __HAL_RCC_GET_I2S3_SOURCE();
  316.  
  317. #endif /* STM32F105xC || STM32F107xC */
  318.  
  319. #if defined(STM32F103xE) || defined(STM32F103xG)
  320.   /* Get the I2S2 clock configuration -----------------------------------------*/
  321.   PeriphClkInit->PeriphClockSelection |= RCC_PERIPHCLK_I2S2;
  322.   PeriphClkInit->I2s2ClockSelection = RCC_I2S2CLKSOURCE_SYSCLK;
  323.  
  324.   /* Get the I2S3 clock configuration -----------------------------------------*/
  325.   PeriphClkInit->PeriphClockSelection |= RCC_PERIPHCLK_I2S3;
  326.   PeriphClkInit->I2s3ClockSelection = RCC_I2S3CLKSOURCE_SYSCLK;
  327.  
  328. #endif /* STM32F103xE || STM32F103xG */
  329.  
  330. #if defined(STM32F102x6) || defined(STM32F102xB) || defined(STM32F103x6)\
  331.  || defined(STM32F103xB) || defined(STM32F103xE) || defined(STM32F103xG)\
  332.  || defined(STM32F105xC) || defined(STM32F107xC)
  333.   /* Get the USB clock configuration -----------------------------------------*/
  334.   PeriphClkInit->PeriphClockSelection |= RCC_PERIPHCLK_USB;
  335.   PeriphClkInit->UsbClockSelection = __HAL_RCC_GET_USB_SOURCE();
  336. #endif /* STM32F102x6 || STM32F102xB || STM32F103x6 || STM32F103xB || STM32F103xE || STM32F103xG || STM32F105xC || STM32F107xC */
  337. }
  338.  
  339. /**
  340.   * @brief  Returns the peripheral clock frequency
  341.   * @note   Returns 0 if peripheral clock is unknown
  342.   * @param  PeriphClk Peripheral clock identifier
  343.   *         This parameter can be one of the following values:
  344.   *            @arg @ref RCC_PERIPHCLK_RTC  RTC peripheral clock
  345.   *            @arg @ref RCC_PERIPHCLK_ADC  ADC peripheral clock
  346.   @if STM32F103xE
  347.   *            @arg @ref RCC_PERIPHCLK_I2S2 I2S2 peripheral clock
  348.   *            @arg @ref RCC_PERIPHCLK_I2S3 I2S3 peripheral clock
  349.   *            @arg @ref RCC_PERIPHCLK_I2S3 I2S3 peripheral clock
  350.   @endif
  351.   @if STM32F103xG
  352.   *            @arg @ref RCC_PERIPHCLK_I2S2 I2S2 peripheral clock
  353.   *            @arg @ref RCC_PERIPHCLK_I2S3 I2S3 peripheral clock
  354.   *            @arg @ref RCC_PERIPHCLK_I2S3 I2S3 peripheral clock
  355.   *            @arg @ref RCC_PERIPHCLK_I2S2 I2S2 peripheral clock
  356.   @endif
  357.   @if STM32F105xC
  358.   *            @arg @ref RCC_PERIPHCLK_I2S2 I2S2 peripheral clock
  359.   *            @arg @ref RCC_PERIPHCLK_I2S3 I2S3 peripheral clock
  360.   *            @arg @ref RCC_PERIPHCLK_I2S3 I2S3 peripheral clock
  361.   *            @arg @ref RCC_PERIPHCLK_I2S2 I2S2 peripheral clock
  362.   *            @arg @ref RCC_PERIPHCLK_I2S3 I2S3 peripheral clock
  363.   *            @arg @ref RCC_PERIPHCLK_I2S3 I2S3 peripheral clock
  364.   *            @arg @ref RCC_PERIPHCLK_I2S2 I2S2 peripheral clock
  365.   *            @arg @ref RCC_PERIPHCLK_USB  USB peripheral clock
  366.   @endif
  367.   @if STM32F107xC
  368.   *            @arg @ref RCC_PERIPHCLK_I2S2 I2S2 peripheral clock
  369.   *            @arg @ref RCC_PERIPHCLK_I2S3 I2S3 peripheral clock
  370.   *            @arg @ref RCC_PERIPHCLK_I2S3 I2S3 peripheral clock
  371.   *            @arg @ref RCC_PERIPHCLK_I2S2 I2S2 peripheral clock
  372.   *            @arg @ref RCC_PERIPHCLK_I2S3 I2S3 peripheral clock
  373.   *            @arg @ref RCC_PERIPHCLK_I2S3 I2S3 peripheral clock
  374.   *            @arg @ref RCC_PERIPHCLK_I2S2 I2S2 peripheral clock
  375.   *            @arg @ref RCC_PERIPHCLK_USB  USB peripheral clock
  376.   @endif
  377.   @if STM32F102xx
  378.   *            @arg @ref RCC_PERIPHCLK_USB  USB peripheral clock
  379.   @endif
  380.   @if STM32F103xx
  381.   *            @arg @ref RCC_PERIPHCLK_USB  USB peripheral clock
  382.   @endif
  383.   * @retval Frequency in Hz (0: means that no available frequency for the peripheral)
  384.   */
  385. uint32_t HAL_RCCEx_GetPeriphCLKFreq(uint32_t PeriphClk)
  386. {
  387. #if defined(STM32F105xC) || defined(STM32F107xC)
  388.   static const uint8_t aPLLMULFactorTable[14U] = {0, 0, 4, 5, 6, 7, 8, 9, 0, 0, 0, 0, 0, 13};
  389.   static const uint8_t aPredivFactorTable[16U] = {1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16};
  390.  
  391.   uint32_t prediv1 = 0U, pllclk = 0U, pllmul = 0U;
  392.   uint32_t pll2mul = 0U, pll3mul = 0U, prediv2 = 0U;
  393. #endif /* STM32F105xC || STM32F107xC */
  394. #if defined(STM32F102x6) || defined(STM32F102xB) || defined(STM32F103x6) || \
  395.     defined(STM32F103xB) || defined(STM32F103xE) || defined(STM32F103xG)
  396.   static const uint8_t aPLLMULFactorTable[16U] = {2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 16};
  397.   static const uint8_t aPredivFactorTable[2U] = {1, 2};
  398.  
  399.   uint32_t prediv1 = 0U, pllclk = 0U, pllmul = 0U;
  400. #endif /* STM32F102x6 || STM32F102xB || STM32F103x6 || STM32F103xB || STM32F103xE || STM32F103xG */
  401.   uint32_t temp_reg = 0U, frequency = 0U;
  402.  
  403.   /* Check the parameters */
  404.   assert_param(IS_RCC_PERIPHCLOCK(PeriphClk));
  405.  
  406.   switch (PeriphClk)
  407.   {
  408. #if defined(STM32F102x6) || defined(STM32F102xB) || defined(STM32F103x6)\
  409.  || defined(STM32F103xB) || defined(STM32F103xE) || defined(STM32F103xG)\
  410.  || defined(STM32F105xC) || defined(STM32F107xC)
  411.     case RCC_PERIPHCLK_USB:
  412.     {
  413.       /* Get RCC configuration ------------------------------------------------------*/
  414.       temp_reg = RCC->CFGR;
  415.  
  416.       /* Check if PLL is enabled */
  417.       if (HAL_IS_BIT_SET(RCC->CR, RCC_CR_PLLON))
  418.       {
  419.         pllmul = aPLLMULFactorTable[(uint32_t)(temp_reg & RCC_CFGR_PLLMULL) >> RCC_CFGR_PLLMULL_Pos];
  420.         if ((temp_reg & RCC_CFGR_PLLSRC) != RCC_PLLSOURCE_HSI_DIV2)
  421.         {
  422. #if defined(STM32F105xC) || defined(STM32F107xC) || defined(STM32F100xB)\
  423.  || defined(STM32F100xE)
  424.           prediv1 = aPredivFactorTable[(uint32_t)(RCC->CFGR2 & RCC_CFGR2_PREDIV1) >> RCC_CFGR2_PREDIV1_Pos];
  425. #else
  426.           prediv1 = aPredivFactorTable[(uint32_t)(RCC->CFGR & RCC_CFGR_PLLXTPRE) >> RCC_CFGR_PLLXTPRE_Pos];
  427. #endif /* STM32F105xC || STM32F107xC || STM32F100xB || STM32F100xE */
  428.  
  429. #if defined(STM32F105xC) || defined(STM32F107xC)
  430.           if (HAL_IS_BIT_SET(RCC->CFGR2, RCC_CFGR2_PREDIV1SRC))
  431.           {
  432.             /* PLL2 selected as Prediv1 source */
  433.             /* PLLCLK = PLL2CLK / PREDIV1 * PLLMUL with PLL2CLK = HSE/PREDIV2 * PLL2MUL */
  434.             prediv2 = ((RCC->CFGR2 & RCC_CFGR2_PREDIV2) >> RCC_CFGR2_PREDIV2_Pos) + 1;
  435.             pll2mul = ((RCC->CFGR2 & RCC_CFGR2_PLL2MUL) >> RCC_CFGR2_PLL2MUL_Pos) + 2;
  436.             pllclk = (uint32_t)((((HSE_VALUE / prediv2) * pll2mul) / prediv1) * pllmul);
  437.           }
  438.           else
  439.           {
  440.             /* HSE used as PLL clock source : PLLCLK = HSE/PREDIV1 * PLLMUL */
  441.             pllclk = (uint32_t)((HSE_VALUE / prediv1) * pllmul);
  442.           }
  443.  
  444.           /* If PLLMUL was set to 13 means that it was to cover the case PLLMUL 6.5 (avoid using float) */
  445.           /* In this case need to divide pllclk by 2 */
  446.           if (pllmul == aPLLMULFactorTable[(uint32_t)(RCC_CFGR_PLLMULL6_5) >> RCC_CFGR_PLLMULL_Pos])
  447.           {
  448.             pllclk = pllclk / 2;
  449.           }
  450. #else
  451.           if ((temp_reg & RCC_CFGR_PLLSRC) != RCC_PLLSOURCE_HSI_DIV2)
  452.           {
  453.             /* HSE used as PLL clock source : PLLCLK = HSE/PREDIV1 * PLLMUL */
  454.             pllclk = (uint32_t)((HSE_VALUE / prediv1) * pllmul);
  455.           }
  456. #endif /* STM32F105xC || STM32F107xC */
  457.         }
  458.         else
  459.         {
  460.           /* HSI used as PLL clock source : PLLCLK = HSI/2 * PLLMUL */
  461.           pllclk = (uint32_t)((HSI_VALUE >> 1) * pllmul);
  462.         }
  463.  
  464.         /* Calcul of the USB frequency*/
  465. #if defined(STM32F105xC) || defined(STM32F107xC)
  466.         /* USBCLK = PLLVCO = (2 x PLLCLK) / USB prescaler */
  467.         if (__HAL_RCC_GET_USB_SOURCE() == RCC_USBCLKSOURCE_PLL_DIV2)
  468.         {
  469.           /* Prescaler of 2 selected for USB */
  470.           frequency = pllclk;
  471.         }
  472.         else
  473.         {
  474.           /* Prescaler of 3 selected for USB */
  475.           frequency = (2 * pllclk) / 3;
  476.         }
  477. #else
  478.         /* USBCLK = PLLCLK / USB prescaler */
  479.         if (__HAL_RCC_GET_USB_SOURCE() == RCC_USBCLKSOURCE_PLL)
  480.         {
  481.           /* No prescaler selected for USB */
  482.           frequency = pllclk;
  483.         }
  484.         else
  485.         {
  486.           /* Prescaler of 1.5 selected for USB */
  487.           frequency = (pllclk * 2) / 3;
  488.         }
  489. #endif
  490.       }
  491.       break;
  492.     }
  493. #endif /* STM32F102x6 || STM32F102xB || STM32F103x6 || STM32F103xB || STM32F103xE || STM32F103xG || STM32F105xC || STM32F107xC */
  494. #if defined(STM32F103xE) || defined(STM32F103xG) || defined(STM32F105xC) || defined(STM32F107xC)
  495.     case RCC_PERIPHCLK_I2S2:
  496.     {
  497. #if defined(STM32F103xE) || defined(STM32F103xG)
  498.       /* SYSCLK used as source clock for I2S2 */
  499.       frequency = HAL_RCC_GetSysClockFreq();
  500. #else
  501.       if (__HAL_RCC_GET_I2S2_SOURCE() == RCC_I2S2CLKSOURCE_SYSCLK)
  502.       {
  503.         /* SYSCLK used as source clock for I2S2 */
  504.         frequency = HAL_RCC_GetSysClockFreq();
  505.       }
  506.       else
  507.       {
  508.         /* Check if PLLI2S is enabled */
  509.         if (HAL_IS_BIT_SET(RCC->CR, RCC_CR_PLL3ON))
  510.         {
  511.           /* PLLI2SVCO = 2 * PLLI2SCLK = 2 * (HSE/PREDIV2 * PLL3MUL) */
  512.           prediv2 = ((RCC->CFGR2 & RCC_CFGR2_PREDIV2) >> RCC_CFGR2_PREDIV2_Pos) + 1;
  513.           pll3mul = ((RCC->CFGR2 & RCC_CFGR2_PLL3MUL) >> RCC_CFGR2_PLL3MUL_Pos) + 2;
  514.           frequency = (uint32_t)(2 * ((HSE_VALUE / prediv2) * pll3mul));
  515.         }
  516.       }
  517. #endif /* STM32F103xE || STM32F103xG */
  518.       break;
  519.     }
  520.     case RCC_PERIPHCLK_I2S3:
  521.     {
  522. #if defined(STM32F103xE) || defined(STM32F103xG)
  523.       /* SYSCLK used as source clock for I2S3 */
  524.       frequency = HAL_RCC_GetSysClockFreq();
  525. #else
  526.       if (__HAL_RCC_GET_I2S3_SOURCE() == RCC_I2S3CLKSOURCE_SYSCLK)
  527.       {
  528.         /* SYSCLK used as source clock for I2S3 */
  529.         frequency = HAL_RCC_GetSysClockFreq();
  530.       }
  531.       else
  532.       {
  533.         /* Check if PLLI2S is enabled */
  534.         if (HAL_IS_BIT_SET(RCC->CR, RCC_CR_PLL3ON))
  535.         {
  536.           /* PLLI2SVCO = 2 * PLLI2SCLK = 2 * (HSE/PREDIV2 * PLL3MUL) */
  537.           prediv2 = ((RCC->CFGR2 & RCC_CFGR2_PREDIV2) >> RCC_CFGR2_PREDIV2_Pos) + 1;
  538.           pll3mul = ((RCC->CFGR2 & RCC_CFGR2_PLL3MUL) >> RCC_CFGR2_PLL3MUL_Pos) + 2;
  539.           frequency = (uint32_t)(2 * ((HSE_VALUE / prediv2) * pll3mul));
  540.         }
  541.       }
  542. #endif /* STM32F103xE || STM32F103xG */
  543.       break;
  544.     }
  545. #endif /* STM32F103xE || STM32F103xG || STM32F105xC || STM32F107xC */
  546.     case RCC_PERIPHCLK_RTC:
  547.     {
  548.       /* Get RCC BDCR configuration ------------------------------------------------------*/
  549.       temp_reg = RCC->BDCR;
  550.  
  551.       /* Check if LSE is ready if RTC clock selection is LSE */
  552.       if (((temp_reg & RCC_BDCR_RTCSEL) == RCC_RTCCLKSOURCE_LSE) && (HAL_IS_BIT_SET(temp_reg, RCC_BDCR_LSERDY)))
  553.       {
  554.         frequency = LSE_VALUE;
  555.       }
  556.       /* Check if LSI is ready if RTC clock selection is LSI */
  557.       else if (((temp_reg & RCC_BDCR_RTCSEL) == RCC_RTCCLKSOURCE_LSI) && (HAL_IS_BIT_SET(RCC->CSR, RCC_CSR_LSIRDY)))
  558.       {
  559.         frequency = LSI_VALUE;
  560.       }
  561.       else if (((temp_reg & RCC_BDCR_RTCSEL) == RCC_RTCCLKSOURCE_HSE_DIV128) && (HAL_IS_BIT_SET(RCC->CR, RCC_CR_HSERDY)))
  562.       {
  563.         frequency = HSE_VALUE / 128U;
  564.       }
  565.       /* Clock not enabled for RTC*/
  566.       else
  567.       {
  568.         /* nothing to do: frequency already initialized to 0U */
  569.       }
  570.       break;
  571.     }
  572.     case RCC_PERIPHCLK_ADC:
  573.     {
  574.       frequency = HAL_RCC_GetPCLK2Freq() / (((__HAL_RCC_GET_ADC_SOURCE() >> RCC_CFGR_ADCPRE_Pos) + 1) * 2);
  575.       break;
  576.     }
  577.     default:
  578.     {
  579.       break;
  580.     }
  581.   }
  582.   return (frequency);
  583. }
  584.  
  585. /**
  586.   * @}
  587.   */
  588.  
  589. #if defined(STM32F105xC) || defined(STM32F107xC)
  590. /** @defgroup RCCEx_Exported_Functions_Group2 PLLI2S Management function
  591.   *  @brief  PLLI2S Management functions
  592.   *
  593. @verbatim
  594.  ===============================================================================
  595.                 ##### Extended PLLI2S Management functions  #####
  596.  ===============================================================================
  597.     [..]
  598.     This subsection provides a set of functions allowing to control the PLLI2S
  599.     activation or deactivation
  600. @endverbatim
  601.   * @{
  602.   */
  603.  
  604. /**
  605.   * @brief  Enable PLLI2S
  606.   * @param  PLLI2SInit pointer to an RCC_PLLI2SInitTypeDef structure that
  607.   *         contains the configuration information for the PLLI2S
  608.   * @note   The PLLI2S configuration not modified if used by I2S2 or I2S3 Interface.
  609.   * @retval HAL status
  610.   */
  611. HAL_StatusTypeDef HAL_RCCEx_EnablePLLI2S(RCC_PLLI2SInitTypeDef  *PLLI2SInit)
  612. {
  613.   uint32_t tickstart = 0U;
  614.  
  615.   /* Check that PLL I2S has not been already enabled by I2S2 or I2S3*/
  616.   if (HAL_IS_BIT_CLR(RCC->CFGR2, RCC_CFGR2_I2S2SRC) && HAL_IS_BIT_CLR(RCC->CFGR2, RCC_CFGR2_I2S3SRC))
  617.   {
  618.     /* Check the parameters */
  619.     assert_param(IS_RCC_PLLI2S_MUL(PLLI2SInit->PLLI2SMUL));
  620.     assert_param(IS_RCC_HSE_PREDIV2(PLLI2SInit->HSEPrediv2Value));
  621.  
  622.     /* Prediv2 can be written only when the PLL2 is disabled. */
  623.     /* Return an error only if new value is different from the programmed value */
  624.     if (HAL_IS_BIT_SET(RCC->CR, RCC_CR_PLL2ON) && \
  625.         (__HAL_RCC_HSE_GET_PREDIV2() != PLLI2SInit->HSEPrediv2Value))
  626.     {
  627.       return HAL_ERROR;
  628.     }
  629.  
  630.     /* Disable the main PLLI2S. */
  631.     __HAL_RCC_PLLI2S_DISABLE();
  632.  
  633.     /* Get Start Tick*/
  634.     tickstart = HAL_GetTick();
  635.  
  636.     /* Wait till PLLI2S is ready */
  637.     while (__HAL_RCC_GET_FLAG(RCC_FLAG_PLLI2SRDY)  != RESET)
  638.     {
  639.       if ((HAL_GetTick() - tickstart) > PLLI2S_TIMEOUT_VALUE)
  640.       {
  641.         return HAL_TIMEOUT;
  642.       }
  643.     }
  644.  
  645.     /* Configure the HSE prediv2 factor --------------------------------*/
  646.     __HAL_RCC_HSE_PREDIV2_CONFIG(PLLI2SInit->HSEPrediv2Value);
  647.  
  648.  
  649.     /* Configure the main PLLI2S multiplication factors. */
  650.     __HAL_RCC_PLLI2S_CONFIG(PLLI2SInit->PLLI2SMUL);
  651.  
  652.     /* Enable the main PLLI2S. */
  653.     __HAL_RCC_PLLI2S_ENABLE();
  654.  
  655.     /* Get Start Tick*/
  656.     tickstart = HAL_GetTick();
  657.  
  658.     /* Wait till PLLI2S is ready */
  659.     while (__HAL_RCC_GET_FLAG(RCC_FLAG_PLLI2SRDY)  == RESET)
  660.     {
  661.       if ((HAL_GetTick() - tickstart) > PLLI2S_TIMEOUT_VALUE)
  662.       {
  663.         return HAL_TIMEOUT;
  664.       }
  665.     }
  666.   }
  667.   else
  668.   {
  669.     /* PLLI2S cannot be modified as already used by I2S2 or I2S3 */
  670.     return HAL_ERROR;
  671.   }
  672.  
  673.   return HAL_OK;
  674. }
  675.  
  676. /**
  677.   * @brief  Disable PLLI2S
  678.   * @note   PLLI2S is not disabled if used by I2S2 or I2S3 Interface.
  679.   * @retval HAL status
  680.   */
  681. HAL_StatusTypeDef HAL_RCCEx_DisablePLLI2S(void)
  682. {
  683.   uint32_t tickstart = 0U;
  684.  
  685.   /* Disable PLL I2S as not requested by I2S2 or I2S3*/
  686.   if (HAL_IS_BIT_CLR(RCC->CFGR2, RCC_CFGR2_I2S2SRC) && HAL_IS_BIT_CLR(RCC->CFGR2, RCC_CFGR2_I2S3SRC))
  687.   {
  688.     /* Disable the main PLLI2S. */
  689.     __HAL_RCC_PLLI2S_DISABLE();
  690.  
  691.     /* Get Start Tick*/
  692.     tickstart = HAL_GetTick();
  693.  
  694.     /* Wait till PLLI2S is ready */
  695.     while (__HAL_RCC_GET_FLAG(RCC_FLAG_PLLI2SRDY)  != RESET)
  696.     {
  697.       if ((HAL_GetTick() - tickstart) > PLLI2S_TIMEOUT_VALUE)
  698.       {
  699.         return HAL_TIMEOUT;
  700.       }
  701.     }
  702.   }
  703.   else
  704.   {
  705.     /* PLLI2S is currently used by I2S2 or I2S3. Cannot be disabled.*/
  706.     return HAL_ERROR;
  707.   }
  708.  
  709.   return HAL_OK;
  710. }
  711.  
  712. /**
  713.   * @}
  714.   */
  715.  
  716. /** @defgroup RCCEx_Exported_Functions_Group3 PLL2 Management function
  717.   *  @brief  PLL2 Management functions
  718.   *
  719. @verbatim
  720.  ===============================================================================
  721.                 ##### Extended PLL2 Management functions  #####
  722.  ===============================================================================
  723.     [..]
  724.     This subsection provides a set of functions allowing to control the PLL2
  725.     activation or deactivation
  726. @endverbatim
  727.   * @{
  728.   */
  729.  
  730. /**
  731.   * @brief  Enable PLL2
  732.   * @param  PLL2Init pointer to an RCC_PLL2InitTypeDef structure that
  733.   *         contains the configuration information for the PLL2
  734.   * @note   The PLL2 configuration not modified if used indirectly as system clock.
  735.   * @retval HAL status
  736.   */
  737. HAL_StatusTypeDef HAL_RCCEx_EnablePLL2(RCC_PLL2InitTypeDef  *PLL2Init)
  738. {
  739.   uint32_t tickstart = 0U;
  740.  
  741.   /* This bit can not be cleared if the PLL2 clock is used indirectly as system
  742.     clock (i.e. it is used as PLL clock entry that is used as system clock). */
  743.   if ((__HAL_RCC_GET_PLL_OSCSOURCE() == RCC_PLLSOURCE_HSE) && \
  744.       (__HAL_RCC_GET_SYSCLK_SOURCE() == RCC_SYSCLKSOURCE_STATUS_PLLCLK) && \
  745.       ((READ_BIT(RCC->CFGR2, RCC_CFGR2_PREDIV1SRC)) == RCC_CFGR2_PREDIV1SRC_PLL2))
  746.   {
  747.     return HAL_ERROR;
  748.   }
  749.   else
  750.   {
  751.     /* Check the parameters */
  752.     assert_param(IS_RCC_PLL2_MUL(PLL2Init->PLL2MUL));
  753.     assert_param(IS_RCC_HSE_PREDIV2(PLL2Init->HSEPrediv2Value));
  754.  
  755.     /* Prediv2 can be written only when the PLLI2S is disabled. */
  756.     /* Return an error only if new value is different from the programmed value */
  757.     if (HAL_IS_BIT_SET(RCC->CR, RCC_CR_PLL3ON) && \
  758.         (__HAL_RCC_HSE_GET_PREDIV2() != PLL2Init->HSEPrediv2Value))
  759.     {
  760.       return HAL_ERROR;
  761.     }
  762.  
  763.     /* Disable the main PLL2. */
  764.     __HAL_RCC_PLL2_DISABLE();
  765.  
  766.     /* Get Start Tick*/
  767.     tickstart = HAL_GetTick();
  768.  
  769.     /* Wait till PLL2 is disabled */
  770.     while (__HAL_RCC_GET_FLAG(RCC_FLAG_PLL2RDY) != RESET)
  771.     {
  772.       if ((HAL_GetTick() - tickstart) > PLL2_TIMEOUT_VALUE)
  773.       {
  774.         return HAL_TIMEOUT;
  775.       }
  776.     }
  777.  
  778.     /* Configure the HSE prediv2 factor --------------------------------*/
  779.     __HAL_RCC_HSE_PREDIV2_CONFIG(PLL2Init->HSEPrediv2Value);
  780.  
  781.     /* Configure the main PLL2 multiplication factors. */
  782.     __HAL_RCC_PLL2_CONFIG(PLL2Init->PLL2MUL);
  783.  
  784.     /* Enable the main PLL2. */
  785.     __HAL_RCC_PLL2_ENABLE();
  786.  
  787.     /* Get Start Tick*/
  788.     tickstart = HAL_GetTick();
  789.  
  790.     /* Wait till PLL2 is ready */
  791.     while (__HAL_RCC_GET_FLAG(RCC_FLAG_PLL2RDY)  == RESET)
  792.     {
  793.       if ((HAL_GetTick() - tickstart) > PLL2_TIMEOUT_VALUE)
  794.       {
  795.         return HAL_TIMEOUT;
  796.       }
  797.     }
  798.   }
  799.  
  800.   return HAL_OK;
  801. }
  802.  
  803. /**
  804.   * @brief  Disable PLL2
  805.   * @note   PLL2 is not disabled if used indirectly as system clock.
  806.   * @retval HAL status
  807.   */
  808. HAL_StatusTypeDef HAL_RCCEx_DisablePLL2(void)
  809. {
  810.   uint32_t tickstart = 0U;
  811.  
  812.   /* This bit can not be cleared if the PLL2 clock is used indirectly as system
  813.     clock (i.e. it is used as PLL clock entry that is used as system clock). */
  814.   if ((__HAL_RCC_GET_PLL_OSCSOURCE() == RCC_PLLSOURCE_HSE) && \
  815.       (__HAL_RCC_GET_SYSCLK_SOURCE() == RCC_SYSCLKSOURCE_STATUS_PLLCLK) && \
  816.       ((READ_BIT(RCC->CFGR2, RCC_CFGR2_PREDIV1SRC)) == RCC_CFGR2_PREDIV1SRC_PLL2))
  817.   {
  818.     return HAL_ERROR;
  819.   }
  820.   else
  821.   {
  822.     /* Disable the main PLL2. */
  823.     __HAL_RCC_PLL2_DISABLE();
  824.  
  825.     /* Get Start Tick*/
  826.     tickstart = HAL_GetTick();
  827.  
  828.     /* Wait till PLL2 is disabled */
  829.     while (__HAL_RCC_GET_FLAG(RCC_FLAG_PLL2RDY)  != RESET)
  830.     {
  831.       if ((HAL_GetTick() - tickstart) > PLL2_TIMEOUT_VALUE)
  832.       {
  833.         return HAL_TIMEOUT;
  834.       }
  835.     }
  836.   }
  837.  
  838.   return HAL_OK;
  839. }
  840.  
  841. /**
  842.   * @}
  843.   */
  844. #endif /* STM32F105xC || STM32F107xC */
  845.  
  846. /**
  847.   * @}
  848.   */
  849.  
  850. /**
  851.   * @}
  852.   */
  853.  
  854. #endif /* HAL_RCC_MODULE_ENABLED */
  855.  
  856. /**
  857.   * @}
  858.   */
  859.  
  860.  
  861.