354 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			C
		
	
	
	
			
		
		
	
	
			354 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			C
		
	
	
	
/**
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  ******************************************************************************
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  * @file    FSMC/FSMC_NOR/Src/main.c
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  * @author  MCD Application Team
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  * @brief   This sample code shows how to use STM32F1xx FSMC HAL API to access
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  *          by read and write operation the NOR external memory device.
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  ******************************************************************************
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  * @attention
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  *
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  * <h2><center>© Copyright (c) 2016 STMicroelectronics.
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  * All rights reserved.</center></h2>
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  *
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  * This software component is licensed by ST under BSD 3-Clause license,
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  * the "License"; You may not use this file except in compliance with the
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  * License. You may obtain a copy of the License at:
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  *                        opensource.org/licenses/BSD-3-Clause
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  *
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  ******************************************************************************
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  */
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/* Includes ------------------------------------------------------------------*/
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#include "main.h"
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/** @addtogroup STM32F1xx_HAL_Examples
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  * @{
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  */
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/** @addtogroup FSMC_NOR
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  * @{
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  */
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/* Private typedef -----------------------------------------------------------*/
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/* Private define ------------------------------------------------------------*/
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#define BUFFER_SIZE         ((uint32_t)0x400)
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#define WRITE_READ_ADDR     ((uint32_t)0x8000)
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#define MANUFACTURER_CODE   ((uint16_t)0x0020)
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#define DEVICE_CODE1        ((uint16_t)0x227E)
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#define DEVICE_CODE2        ((uint16_t)0x2221)
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#define DEVICE_CODE3        ((uint16_t)0x2200)  /*00h for M29W128GL.*/
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#define NOR_BANK_ADDR       ((uint32_t)0x64000000)
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#define NOR_TIMEOUT_VALUE   ((uint32_t)0xFFFF)
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/* Private macro -------------------------------------------------------------*/
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/* Private variables ---------------------------------------------------------*/
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NOR_HandleTypeDef hNor;
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FSMC_NORSRAM_TimingTypeDef NOR_Timing;
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/* NOR IDs structure */
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static NOR_IDTypeDef NOR_Id;
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/* Read/Write Buffers */
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uint16_t aTxBuffer[BUFFER_SIZE];
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uint16_t aRxBuffer[BUFFER_SIZE];
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/* Status variables */
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__IO uint32_t uwWriteReadStatus = 0;
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/* Counter index */
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uint32_t uwIndex = 0;
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/* Private function prototypes -----------------------------------------------*/
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void SystemClock_Config(void);
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static void Error_Handler(void);
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static void Fill_Buffer(uint16_t *pBuffer, uint32_t uwBufferLength, uint16_t uwOffset);
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static TestStatus Buffercmp(uint16_t *pBuffer1, uint16_t *pBuffer2, uint16_t BufferLength);
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/* Private functions ---------------------------------------------------------*/
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/**
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  * @brief  Main program
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  * @param  None
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  * @retval None
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  */
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int main(void)
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{
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  /* STM32F103xG HAL library initialization:
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       - Configure the Flash prefetch
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       - Systick timer is configured by default as source of time base, but user 
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         can eventually implement his proper time base source (a general purpose 
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         timer for example or other time source), keeping in mind that Time base 
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         duration should be kept 1ms since PPP_TIMEOUT_VALUEs are defined and 
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         handled in milliseconds basis.
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       - Set NVIC Group Priority to 4
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       - Low Level Initialization
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     */
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  uint16_t *pdata = NULL;
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  uint32_t index  = 0;
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  uint32_t startaddress = 0;
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  HAL_Init();
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  /* Configure LED1, LED2 and LED3 */
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  BSP_LED_Init(LED1);
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  BSP_LED_Init(LED2);
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  BSP_LED_Init(LED3);
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  /* Configure the system clock to 72 MHz */
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  SystemClock_Config();
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  /*##-1- Configure the NOR device ##########################################*/
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  /* NOR device configuration */
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  hNor.Instance  = FSMC_NORSRAM_DEVICE;
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  hNor.Extended  = FSMC_NORSRAM_EXTENDED_DEVICE;
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  /* NOR device configuration */  
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  NOR_Timing.AddressSetupTime       = 2;
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  NOR_Timing.AddressHoldTime        = 1;
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  NOR_Timing.DataSetupTime          = 5;
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  NOR_Timing.BusTurnAroundDuration  = 1;
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  NOR_Timing.CLKDivision            = 2;
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  NOR_Timing.DataLatency            = 1;
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  NOR_Timing.AccessMode             = FSMC_ACCESS_MODE_B;
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  hNor.Init.NSBank                 = FSMC_NORSRAM_BANK2;
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  hNor.Init.DataAddressMux         = FSMC_DATA_ADDRESS_MUX_DISABLE;
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  hNor.Init.MemoryType             = FSMC_MEMORY_TYPE_NOR;
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  hNor.Init.MemoryDataWidth        = FSMC_NORSRAM_MEM_BUS_WIDTH_16;
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  hNor.Init.BurstAccessMode        = FSMC_BURST_ACCESS_MODE_DISABLE;
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  hNor.Init.WaitSignalPolarity     = FSMC_WAIT_SIGNAL_POLARITY_LOW;
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  hNor.Init.WrapMode               = FSMC_WRAP_MODE_DISABLE;
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  hNor.Init.WaitSignalActive       = FSMC_WAIT_TIMING_BEFORE_WS;
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  hNor.Init.WriteOperation         = FSMC_WRITE_OPERATION_ENABLE;
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  hNor.Init.WaitSignal             = FSMC_WAIT_SIGNAL_DISABLE;
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  hNor.Init.ExtendedMode           = FSMC_EXTENDED_MODE_DISABLE;
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  hNor.Init.AsynchronousWait       = FSMC_ASYNCHRONOUS_WAIT_DISABLE;
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  hNor.Init.WriteBurst             = FSMC_WRITE_BURST_DISABLE;
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  /* Initialize the NOR controller */
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  if(HAL_NOR_Init(&hNor, &NOR_Timing, &NOR_Timing) != HAL_OK)
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  {
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    /* Initialization Error */
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    Error_Handler();
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  }
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  /* Read NOR memory ID */
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  if(HAL_NOR_Read_ID(&hNor, &NOR_Id) != HAL_OK)
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  {
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    /* NOR read ID Error */
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    Error_Handler();
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  }
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   /* Test the NOR ID correctness */
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  if((NOR_Id.Manufacturer_Code != (uint16_t)MANUFACTURER_CODE) ||
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     (NOR_Id.Device_Code1 != (uint16_t)DEVICE_CODE1) ||
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     (NOR_Id.Device_Code2 != (uint16_t)DEVICE_CODE2) ||
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     (NOR_Id.Device_Code3 != (uint16_t)DEVICE_CODE3))
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  {
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    /* NOR ID not correct */
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    Error_Handler();
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  }
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  /* Return to read mode */
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  HAL_NOR_ReturnToReadMode(&hNor);
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  /* Erase the NOR memory block to write on */
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  HAL_NOR_Erase_Block(&hNor, WRITE_READ_ADDR, NOR_BANK_ADDR);
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  /* Return the NOR memory status */  
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  if(HAL_NOR_GetStatus(&hNor, NOR_BANK_ADDR, NOR_TIMEOUT_VALUE) != HAL_NOR_STATUS_SUCCESS)
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  {
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    /* Erase Error */
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    Error_Handler();
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  }
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  /*##-2- NOR memory read/write access ######################################*/
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  /* Fill the buffer to write */
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  Fill_Buffer(aTxBuffer, BUFFER_SIZE, 0xC20F);
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  /* Write data to the NOR memory */
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  pdata = aTxBuffer;
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  index = BUFFER_SIZE;
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  startaddress = NOR_BANK_ADDR + WRITE_READ_ADDR;
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  while(index > 0)
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  {
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    /* Write data to NOR */
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    HAL_NOR_Program(&hNor, (uint32_t *)startaddress, pdata);
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    /* Read NOR device status */
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    if(HAL_NOR_GetStatus(&hNor, NOR_BANK_ADDR, NOR_TIMEOUT_VALUE) != HAL_NOR_STATUS_SUCCESS)
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    {
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      Error_Handler();
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    }
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    /* Update the counters */
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    index--;
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    startaddress += 2;
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    pdata++; 
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  }
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  /* Read back data from the NOR memory */
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  if(HAL_NOR_ReadBuffer(&hNor, NOR_BANK_ADDR + WRITE_READ_ADDR, aRxBuffer, BUFFER_SIZE) != HAL_OK)
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  {
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      Error_Handler();
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  }
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  /*##-3- Checking data integrity ############################################*/
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  uwWriteReadStatus = Buffercmp(aTxBuffer, aRxBuffer, BUFFER_SIZE);
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  if(uwWriteReadStatus != PASSED)
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  {
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    /* KO */
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    /* Turn on LED2 */
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    BSP_LED_On(LED2);
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  }
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  else
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  {
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    /* OK */
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    /* Turn on LED1 */
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    BSP_LED_On(LED1);
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  }
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  /* Infinite loop */
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  while (1)
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  {
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  }
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}
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/**
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  * @brief  System Clock Configuration
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  *         The system Clock is configured as follow : 
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  *            System Clock source            = PLL (HSE)
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  *            SYSCLK(Hz)                     = 72000000
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  *            HCLK(Hz)                       = 72000000
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  *            AHB Prescaler                  = 1
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  *            APB1 Prescaler                 = 2
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  *            APB2 Prescaler                 = 1
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  *            HSE Frequency(Hz)              = 8000000
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  *            HSE PREDIV1                    = 1
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  *            PLLMUL                         = 9
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  *            Flash Latency(WS)              = 2
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  * @param  None
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  * @retval None
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  */
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void SystemClock_Config(void)
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{
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  RCC_ClkInitTypeDef clkinitstruct = {0};
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  RCC_OscInitTypeDef oscinitstruct = {0};
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  /* Enable HSE Oscillator and activate PLL with HSE as source */
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  oscinitstruct.OscillatorType  = RCC_OSCILLATORTYPE_HSE;
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  oscinitstruct.HSEState        = RCC_HSE_ON;
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  oscinitstruct.HSEPredivValue  = RCC_HSE_PREDIV_DIV1;
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  oscinitstruct.PLL.PLLState    = RCC_PLL_ON;
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  oscinitstruct.PLL.PLLSource   = RCC_PLLSOURCE_HSE;
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  oscinitstruct.PLL.PLLMUL      = RCC_PLL_MUL9;
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  if (HAL_RCC_OscConfig(&oscinitstruct)!= HAL_OK)
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  {
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    /* Initialization Error */
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    while(1);
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  }
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  /* Select PLL as system clock source and configure the HCLK, PCLK1 and PCLK2 
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     clocks dividers */
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  clkinitstruct.ClockType = (RCC_CLOCKTYPE_SYSCLK | RCC_CLOCKTYPE_HCLK | RCC_CLOCKTYPE_PCLK1 | RCC_CLOCKTYPE_PCLK2);
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  clkinitstruct.SYSCLKSource = RCC_SYSCLKSOURCE_PLLCLK;
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  clkinitstruct.AHBCLKDivider = RCC_SYSCLK_DIV1;
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  clkinitstruct.APB2CLKDivider = RCC_HCLK_DIV1;
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  clkinitstruct.APB1CLKDivider = RCC_HCLK_DIV2;  
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  if (HAL_RCC_ClockConfig(&clkinitstruct, FLASH_LATENCY_2)!= HAL_OK)
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  {
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    /* Initialization Error */
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    while(1);
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  }
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}
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/**
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  * @brief  This function is executed in case of error occurrence.
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  * @param  None
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  * @retval None
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  */
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static void Error_Handler(void)
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{
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  /* Turn LED3 on */
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  BSP_LED_On(LED3);
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  while (1)
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  {
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  }
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}
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/**
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  * @brief  Fills buffer with user predefined data.
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  * @param  pBuffer: pointer on the buffer to fill
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  * @param  uwBufferLength: size of the buffer to fill
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  * @param  uwOffset: first value to fill on the buffer
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  * @retval None
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  */
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static void Fill_Buffer(uint16_t *pBuffer, uint32_t uwBufferLength, uint16_t uwOffset)
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{
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  uint16_t tmpIndex = 0;
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  /* Put in global buffer different values */
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  for (tmpIndex = 0; tmpIndex < uwBufferLength; tmpIndex++)
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  {
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    pBuffer[tmpIndex] = tmpIndex + uwOffset;
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  }
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}
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/**
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  * @brief  Compares two buffers.
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  * @param  pBuffer1, pBuffer2: buffers to be compared.
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  * @param  BufferLength: buffer's length
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  * @retval PASSED: pBuffer identical to pBuffer1
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  *         FAILED: pBuffer differs from pBuffer1
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  */
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static TestStatus Buffercmp(uint16_t *pBuffer1, uint16_t *pBuffer2, uint16_t BufferLength)
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{
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  while (BufferLength--)
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  {
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    if (*pBuffer1 != *pBuffer2)
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    {
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      return FAILED;
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    }
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    pBuffer1++;
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    pBuffer2++;
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  }
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  return PASSED;
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}
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#ifdef  USE_FULL_ASSERT
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/**
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  * @brief  Reports the name of the source file and the source line number
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  *         where the assert_param error has occurred.
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  * @param  file: pointer to the source file name
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  * @param  line: assert_param error line source number
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  * @retval None
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  */
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void assert_failed(uint8_t *file, uint32_t line)
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{
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  /* User can add his own implementation to report the file name and line number,
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     ex: printf("Wrong parameters value: file %s on line %d\r\n", file, line) */
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  /* Infinite loop */
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  while (1)
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  {
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  }
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}
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#endif
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/**
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  * @}
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  */
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/**
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  * @}
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  */
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/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/
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