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765 lines
23 KiB
765 lines
23 KiB
/** |
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****************************************************************************** |
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* @file stm32wlxx_hal_flash.c |
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* @author MCD Application Team |
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* @brief FLASH HAL module driver. |
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* This file provides firmware functions to manage the following |
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* functionalities of the internal FLASH memory: |
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* + Program operations functions |
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* + Memory Control functions |
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* + Peripheral Errors functions |
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* |
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****************************************************************************** |
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* @attention |
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* |
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* Copyright (c) 2020 STMicroelectronics. |
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* All rights reserved. |
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* |
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* This software is licensed under terms that can be found in the LICENSE file |
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* in the root directory of this software component. |
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* If no LICENSE file comes with this software, it is provided AS-IS. |
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* |
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****************************************************************************** |
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@verbatim |
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============================================================================== |
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##### FLASH peripheral features ##### |
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============================================================================== |
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[..] The Flash memory interface manages CPU AHB I-Code and D-Code accesses |
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to the Flash memory. It implements the erase and program Flash memory operations |
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and the read and write protection mechanisms. |
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[..] The Flash memory interface accelerates code execution with a system of instruction |
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prefetch and cache lines. |
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|
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[..] The FLASH main features are: |
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(+) Flash memory read operations |
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(+) Flash memory program/erase operations |
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(+) Program and Erase suspension |
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(+) Read / write protections (2 areas per features) |
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(+) CPU2 Security area |
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(+) Option bytes programming |
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(+) Prefetch on CPU1 I-Code and CPU2 S-bus |
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(+) 32 instruction cache lines of 4*64 bits on I-Code for CPU1 |
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(+) 8 data cache lines of 4*64 bits on D-Code for CPU1 |
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(+) 4 instruction cache lines of 1*64 bits on S-bus for CPU2 |
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(+) 4 data cache lines of 1*64 bits on S-Bus for CPU2 |
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(+) Error code correction (ECC) : Data in flash are 72-bits word |
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(8 bits added per double word) |
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##### How to use this driver ##### |
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============================================================================== |
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[..] |
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This driver provides functions and macros to configure and program the FLASH |
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memory of all STM32WLxx devices. |
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(#) Flash Memory IO Programming functions: |
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(++) Lock and Unlock the FLASH interface using HAL_FLASH_Unlock() and |
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HAL_FLASH_Lock() functions |
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(++) Program functions: double word and fast program (full row programming) |
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(++) There are two modes of programming: |
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(+++) Polling mode using HAL_FLASH_Program() function |
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(+++) Interrupt mode using HAL_FLASH_Program_IT() function |
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|
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(#) Interrupts and flags management functions: |
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(++) Handle FLASH interrupts by calling HAL_FLASH_IRQHandler() |
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(++) Callback functions are called when the flash operations are finished : |
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HAL_FLASH_EndOfOperationCallback() when everything is ok, otherwise |
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HAL_FLASH_OperationErrorCallback() |
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(++) Get error flag status by calling HAL_GetError() |
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|
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(#) Option bytes management functions : |
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(++) Lock and Unlock the option bytes using HAL_FLASH_OB_Unlock() and |
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HAL_FLASH_OB_Lock() functions |
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(++) Launch the reload of the option bytes using HAL_FLASH_OB_Launch() function. |
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In this case, a reset is generated |
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[..] |
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In addition to these functions, this driver includes a set of macros allowing |
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to handle the following operations: |
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(+) Set the latency |
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(+) Enable/Disable the prefetch buffer |
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(+) Enable/Disable the suspend program or erase request |
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(+) Enable/Disable the Instruction cache and the Data cache |
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(+) Reset the Instruction cache and the Data cache |
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(+) Enable/Disable the Flash interrupts |
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(+) Monitor the Flash flags status |
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@endverbatim |
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****************************************************************************** |
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*/ |
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/* Includes ------------------------------------------------------------------*/ |
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#include "stm32wlxx_hal.h" |
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/** @addtogroup STM32WLxx_HAL_Driver |
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* @{ |
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*/ |
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|
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/** @defgroup FLASH FLASH |
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* @brief FLASH HAL module driver |
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* @{ |
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*/ |
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#ifdef HAL_FLASH_MODULE_ENABLED |
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/* Private typedef -----------------------------------------------------------*/ |
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/* Private defines -----------------------------------------------------------*/ |
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/** @addtogroup FLASH_Private_Constants |
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* @{ |
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*/ |
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#define FLASH_NB_DOUBLE_WORDS_IN_ROW 32 |
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/** |
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* @} |
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*/ |
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/* Private macros ------------------------------------------------------------*/ |
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/* Private variables ---------------------------------------------------------*/ |
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/** @defgroup FLASH_Private_Variables FLASH Private Variables |
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* @{ |
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*/ |
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/** |
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* @brief Variable used for Program/Erase sectors under interruption |
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*/ |
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FLASH_ProcessTypeDef pFlash = {.Lock = HAL_UNLOCKED, \ |
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.ErrorCode = HAL_FLASH_ERROR_NONE, \ |
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.ProcedureOnGoing = 0U, \ |
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.Address = 0U, \ |
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.Page = 0U, \ |
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.NbPagesToErase = 0U |
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}; |
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/** |
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* @} |
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*/ |
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/* Private function prototypes -----------------------------------------------*/ |
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/** @defgroup FLASH_Private_Functions FLASH Private Functions |
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* @{ |
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*/ |
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static void FLASH_Program_DoubleWord(uint32_t Address, uint64_t Data); |
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static void FLASH_Program_Fast(uint32_t Address, uint32_t DataAddress); |
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/** |
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* @} |
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*/ |
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/* Exported functions --------------------------------------------------------*/ |
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/** @defgroup FLASH_Exported_Functions FLASH Exported Functions |
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* @{ |
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*/ |
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/** @defgroup FLASH_Exported_Functions_Group1 Programming operation functions |
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* @brief Programming operation functions |
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* |
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@verbatim |
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=============================================================================== |
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##### Programming operation functions ##### |
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=============================================================================== |
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[..] |
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This subsection provides a set of functions allowing to manage the FLASH |
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program operations. |
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@endverbatim |
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* @{ |
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*/ |
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/** |
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* @brief Program double word or fast program of a row at a specified address. |
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* @note Before any operation, it is possible to check there is no operation suspended |
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* by call HAL_FLASHEx_IsOperationSuspended() |
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* @param TypeProgram Indicate the way to program at a specified address |
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* This parameter can be a value of @ref FLASH_TYPE_PROGRAM |
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* @param Address Specifies the address to be programmed. |
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* @param Data Specifies the data to be programmed |
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* This parameter is the data for the double word program and the address where |
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* are stored the data for the row fast program. |
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* |
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* @retval HAL_StatusTypeDef HAL Status |
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*/ |
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HAL_StatusTypeDef HAL_FLASH_Program(uint32_t TypeProgram, uint32_t Address, uint64_t Data) |
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{ |
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HAL_StatusTypeDef status; |
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/* Check the parameters */ |
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assert_param(IS_FLASH_TYPEPROGRAM(TypeProgram)); |
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assert_param(IS_ADDR_ALIGNED_64BITS(Address)); |
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assert_param(IS_FLASH_PROGRAM_ADDRESS(Address)); |
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/* Process Locked */ |
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__HAL_LOCK(&pFlash); |
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/* Reset error code */ |
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pFlash.ErrorCode = HAL_FLASH_ERROR_NONE; |
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/* Verify that next operation can be proceed */ |
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status = FLASH_WaitForLastOperation(FLASH_TIMEOUT_VALUE); |
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if (status == HAL_OK) |
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{ |
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if (TypeProgram == FLASH_TYPEPROGRAM_DOUBLEWORD) |
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{ |
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/* Check the parameters */ |
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assert_param(IS_FLASH_PROGRAM_ADDRESS(Address)); |
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/* Program double-word (64-bit) at a specified address */ |
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FLASH_Program_DoubleWord(Address, Data); |
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} |
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else |
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{ |
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/* Check the parameters */ |
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assert_param(IS_FLASH_FAST_PROGRAM_ADDRESS(Address)); |
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/* Fast program a 32 double-word (64-bit) row at a specified address */ |
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FLASH_Program_Fast(Address, (uint32_t)Data); |
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} |
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/* Wait for last operation to be completed */ |
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status = FLASH_WaitForLastOperation(FLASH_TIMEOUT_VALUE); |
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/* If the program operation is completed, disable the PG or FSTPG Bit */ |
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#ifdef CORE_CM0PLUS |
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CLEAR_BIT(FLASH->C2CR, TypeProgram); |
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#else |
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CLEAR_BIT(FLASH->CR, TypeProgram); |
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#endif |
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} |
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/* Process Unlocked */ |
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__HAL_UNLOCK(&pFlash); |
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/* return status */ |
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return status; |
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} |
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/** |
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* @brief Program double word or fast program of a row at a specified address with interrupt enabled. |
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* @note Before any operation, it is possible to check there is no operation suspended |
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* by call HAL_FLASHEx_IsOperationSuspended() |
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* @param TypeProgram Indicate the way to program at a specified address. |
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* This parameter can be a value of @ref FLASH_TYPE_PROGRAM |
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* @param Address Specifies the address to be programmed. |
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* @param Data Specifies the data to be programmed |
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* This parameter is the data for the double word program and the address where |
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* are stored the data for the row fast program. |
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* |
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* @retval HAL Status |
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*/ |
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HAL_StatusTypeDef HAL_FLASH_Program_IT(uint32_t TypeProgram, uint32_t Address, uint64_t Data) |
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{ |
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HAL_StatusTypeDef status; |
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/* Check the parameters */ |
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assert_param(IS_FLASH_TYPEPROGRAM(TypeProgram)); |
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assert_param(IS_ADDR_ALIGNED_64BITS(Address)); |
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assert_param(IS_FLASH_PROGRAM_ADDRESS(Address)); |
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/* Process Locked */ |
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__HAL_LOCK(&pFlash); |
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/* Reset error code */ |
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pFlash.ErrorCode = HAL_FLASH_ERROR_NONE; |
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/* Verify that next operation can be proceed */ |
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status = FLASH_WaitForLastOperation(FLASH_TIMEOUT_VALUE); |
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if (status != HAL_OK) |
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{ |
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/* Process Unlocked */ |
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__HAL_UNLOCK(&pFlash); |
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} |
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else |
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{ |
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/* Set internal variables used by the IRQ handler */ |
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pFlash.ProcedureOnGoing = TypeProgram; |
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pFlash.Address = Address; |
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/* Enable End of Operation and Error interrupts */ |
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__HAL_FLASH_ENABLE_IT(FLASH_IT_EOP | FLASH_IT_OPERR | FLASH_IT_ECCC); |
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if (TypeProgram == FLASH_TYPEPROGRAM_DOUBLEWORD) |
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{ |
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/* Check the parameters */ |
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assert_param(IS_FLASH_PROGRAM_ADDRESS(Address)); |
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/* Program double-word (64-bit) at a specified address */ |
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FLASH_Program_DoubleWord(Address, Data); |
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} |
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else |
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{ |
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/* Check the parameters */ |
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assert_param(IS_FLASH_FAST_PROGRAM_ADDRESS(Address)); |
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/* Fast program a 32 double-word (64-bit) row at a specified address */ |
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FLASH_Program_Fast(Address, (uint32_t)Data); |
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} |
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} |
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/* return status */ |
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return status; |
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} |
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/** |
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* @brief Handle FLASH interrupt request. |
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* @retval None |
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*/ |
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void HAL_FLASH_IRQHandler(void) |
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{ |
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uint32_t param = 0xFFFFFFFFU; |
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uint32_t error; |
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/* Save flash errors. Only ECC detection can be checked here as ECCC |
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generates NMI */ |
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#ifdef CORE_CM0PLUS |
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error = (FLASH->C2SR & FLASH_FLAG_SR_ERRORS); |
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/* Clear Current operation */ |
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CLEAR_BIT(FLASH->C2CR, pFlash.ProcedureOnGoing); |
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#else |
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error = (FLASH->SR & FLASH_FLAG_SR_ERRORS); |
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/* Clear Current operation */ |
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CLEAR_BIT(FLASH->CR, pFlash.ProcedureOnGoing); |
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#endif |
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/* A] Set parameter for user or error callbacks */ |
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/* check operation was a program or erase */ |
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if ((pFlash.ProcedureOnGoing & (FLASH_TYPEPROGRAM_DOUBLEWORD | FLASH_TYPEPROGRAM_FAST)) != 0U) |
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{ |
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/* return address being programmed */ |
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param = pFlash.Address; |
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} |
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else if ((pFlash.ProcedureOnGoing & (FLASH_TYPEERASE_MASSERASE | FLASH_TYPEERASE_PAGES)) != 0U) |
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{ |
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/* return page number being erased (0 for mass erase) */ |
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param = pFlash.Page; |
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} |
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else |
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{ |
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/* No Procedure on-going */ |
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/* Nothing to do, but check error if any */ |
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} |
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/* B] Check errors */ |
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if (error != 0U) |
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{ |
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/*Save the error code*/ |
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pFlash.ErrorCode |= error; |
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/* clear error flags */ |
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__HAL_FLASH_CLEAR_FLAG(error); |
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/*Stop the procedure ongoing*/ |
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pFlash.ProcedureOnGoing = FLASH_TYPENONE; |
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/* Error callback */ |
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HAL_FLASH_OperationErrorCallback(param); |
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} |
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/* C] Check FLASH End of Operation flag */ |
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if (__HAL_FLASH_GET_FLAG(FLASH_FLAG_EOP)) |
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{ |
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/* Clear FLASH End of Operation pending bit */ |
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__HAL_FLASH_CLEAR_FLAG(FLASH_FLAG_EOP); |
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if (pFlash.ProcedureOnGoing == FLASH_TYPEERASE_PAGES) |
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{ |
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/* Nb of pages to erased can be decreased */ |
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pFlash.NbPagesToErase--; |
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/* Check if there are still pages to erase*/ |
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if (pFlash.NbPagesToErase != 0U) |
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{ |
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/* Increment page number */ |
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pFlash.Page++; |
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FLASH_PageErase(pFlash.Page); |
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} |
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else |
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{ |
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/* No more pages to erase: stop erase pages procedure */ |
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pFlash.ProcedureOnGoing = FLASH_TYPENONE; |
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} |
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} |
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else |
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{ |
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/*Stop the ongoing procedure */ |
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pFlash.ProcedureOnGoing = FLASH_TYPENONE; |
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} |
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/* User callback */ |
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HAL_FLASH_EndOfOperationCallback(param); |
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} |
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if (pFlash.ProcedureOnGoing == FLASH_TYPENONE) |
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{ |
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/* Disable End of Operation and Error interrupts */ |
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__HAL_FLASH_DISABLE_IT(FLASH_IT_EOP | FLASH_IT_OPERR | FLASH_IT_ECCC); |
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/* Process Unlocked */ |
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__HAL_UNLOCK(&pFlash); |
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} |
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} |
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/** |
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* @brief FLASH end of operation interrupt callback. |
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* @param ReturnValue The value saved in this parameter depends on the ongoing procedure |
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* Mass Erase: 0 |
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* Page Erase: Page which has been erased |
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* Program: Address which was selected for data program |
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* @retval None |
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*/ |
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__weak void HAL_FLASH_EndOfOperationCallback(uint32_t ReturnValue) |
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{ |
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/* Prevent unused argument(s) compilation warning */ |
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UNUSED(ReturnValue); |
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/* NOTE : This function should not be modified, when the callback is needed, |
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the HAL_FLASH_EndOfOperationCallback could be implemented in the user file |
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*/ |
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} |
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/** |
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* @brief FLASH operation error interrupt callback. |
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* @param ReturnValue The value saved in this parameter depends on the ongoing procedure |
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* Mass Erase: 0 |
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* Page Erase: Page number which returned an error |
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* Program: Address which was selected for data program |
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* @retval None |
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*/ |
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__weak void HAL_FLASH_OperationErrorCallback(uint32_t ReturnValue) |
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{ |
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/* Prevent unused argument(s) compilation warning */ |
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UNUSED(ReturnValue); |
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/* NOTE : This function should not be modified, when the callback is needed, |
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the HAL_FLASH_OperationErrorCallback could be implemented in the user file |
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*/ |
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} |
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/** |
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* @} |
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*/ |
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/** @defgroup FLASH_Exported_Functions_Group2 Peripheral Control functions |
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* @brief Management functions |
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* |
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@verbatim |
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=============================================================================== |
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##### Peripheral Control functions ##### |
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=============================================================================== |
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[..] |
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This subsection provides a set of functions allowing to control the FLASH |
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memory operations. |
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|
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@endverbatim |
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* @{ |
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*/ |
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/** |
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* @brief Unlock the FLASH control register access. |
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* @retval HAL Status |
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*/ |
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HAL_StatusTypeDef HAL_FLASH_Unlock(void) |
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{ |
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HAL_StatusTypeDef status = HAL_OK; |
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if (READ_BIT(FLASH->CR, FLASH_CR_LOCK) != 0U) |
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{ |
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/* Authorize the FLASH Registers access */ |
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WRITE_REG(FLASH->KEYR, FLASH_KEY1); |
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WRITE_REG(FLASH->KEYR, FLASH_KEY2); |
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/* verify Flash is unlock */ |
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if (READ_BIT(FLASH->CR, FLASH_CR_LOCK) != 0U) |
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{ |
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status = HAL_ERROR; |
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} |
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} |
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return status; |
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} |
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/** |
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* @brief Lock the FLASH control register access. |
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* @retval HAL Status |
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*/ |
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HAL_StatusTypeDef HAL_FLASH_Lock(void) |
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{ |
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HAL_StatusTypeDef status = HAL_OK; |
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/* Set the LOCK Bit to lock the FLASH Registers access */ |
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/* @Note The lock and unlock procedure is done only using CR registers even from CPU2 */ |
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SET_BIT(FLASH->CR, FLASH_CR_LOCK); |
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/* verify Flash is locked */ |
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if (READ_BIT(FLASH->CR, FLASH_CR_LOCK) == 0U) |
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{ |
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status = HAL_ERROR; |
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} |
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return status; |
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} |
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/** |
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* @brief Unlock the FLASH Option Bytes Registers access. |
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* @retval HAL Status |
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*/ |
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HAL_StatusTypeDef HAL_FLASH_OB_Unlock(void) |
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{ |
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HAL_StatusTypeDef status = HAL_ERROR; |
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|
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/* @Note The lock and unlock procedure is done only using CR registers even from CPU2 */ |
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if (READ_BIT(FLASH->CR, FLASH_CR_OPTLOCK) != 0U) |
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{ |
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/* Authorizes the Option Byte register programming */ |
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WRITE_REG(FLASH->OPTKEYR, FLASH_OPTKEY1); |
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WRITE_REG(FLASH->OPTKEYR, FLASH_OPTKEY2); |
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/* verify option bytes are unlocked */ |
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if (READ_BIT(FLASH->CR, FLASH_CR_OPTLOCK) == 0U) |
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{ |
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status = HAL_OK; |
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} |
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} |
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return status; |
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} |
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/** |
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* @brief Lock the FLASH Option Bytes Registers access. |
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* @retval HAL Status |
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*/ |
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HAL_StatusTypeDef HAL_FLASH_OB_Lock(void) |
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{ |
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HAL_StatusTypeDef status = HAL_OK; |
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|
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/* Set the OPTLOCK Bit to lock the FLASH Option Byte Registers access */ |
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/* @Note The lock and unlock procedure is done only using CR registers even from CPU2 */ |
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SET_BIT(FLASH->CR, FLASH_CR_OPTLOCK); |
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/* verify option bytes are lock */ |
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if (READ_BIT(FLASH->CR, FLASH_CR_OPTLOCK) == 0U) |
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{ |
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status = HAL_ERROR; |
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} |
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return status; |
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} |
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/** |
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* @brief Launch the option byte loading. |
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* @retval HAL Status |
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*/ |
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HAL_StatusTypeDef HAL_FLASH_OB_Launch(void) |
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{ |
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/* Set the bit to force the option byte reloading */ |
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/* The OB launch is done from the same register either from CPU1 or CPU2 */ |
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SET_BIT(FLASH->CR, FLASH_CR_OBL_LAUNCH); |
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/* We should not reach here : Option byte launch generates Option byte reset |
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so return error */ |
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return HAL_ERROR; |
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} |
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/** |
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* @} |
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*/ |
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/** @defgroup FLASH_Exported_Functions_Group3 Peripheral State and Errors functions |
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* @brief Peripheral Errors functions |
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* |
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@verbatim |
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=============================================================================== |
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##### Peripheral Errors functions ##### |
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=============================================================================== |
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[..] |
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This subsection permits to get in run-time Errors of the FLASH peripheral. |
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|
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@endverbatim |
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* @{ |
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*/ |
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/** |
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* @brief Get the specific FLASH error flag. |
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* @retval FLASH_ErrorCode The returned value can be |
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* @arg @ref HAL_FLASH_ERROR_NONE No error set |
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* @arg @ref HAL_FLASH_ERROR_OP FLASH Operation error |
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* @arg @ref HAL_FLASH_ERROR_PROG FLASH Programming error |
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* @arg @ref HAL_FLASH_ERROR_WRP FLASH Write protection error |
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* @arg @ref HAL_FLASH_ERROR_PGA FLASH Programming alignment error |
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* @arg @ref HAL_FLASH_ERROR_SIZ FLASH Size error |
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* @arg @ref HAL_FLASH_ERROR_PGS FLASH Programming sequence error |
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* @arg @ref HAL_FLASH_ERROR_MIS FLASH Fast programming data miss error |
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* @arg @ref HAL_FLASH_ERROR_FAST FLASH Fast programming error |
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* @arg @ref HAL_FLASH_ERROR_RD FLASH Read Protection error (PCROP) |
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* @arg @ref HAL_FLASH_ERROR_OPTV FLASH Option validity error |
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*/ |
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uint32_t HAL_FLASH_GetError(void) |
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{ |
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return pFlash.ErrorCode; |
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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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*/ |
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/* Private functions ---------------------------------------------------------*/ |
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|
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/** @addtogroup FLASH_Private_Functions |
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* @{ |
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*/ |
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|
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/** |
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* @brief Wait for a FLASH operation to complete. |
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* @param Timeout Maximum flash operation timeout |
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* @retval HAL_StatusTypeDef HAL Status |
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*/ |
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HAL_StatusTypeDef FLASH_WaitForLastOperation(uint32_t Timeout) |
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{ |
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uint32_t error; |
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uint32_t tickstart = HAL_GetTick(); |
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|
|
/* Wait for the FLASH operation to complete by polling on BUSY flag to be reset. |
|
Even if the FLASH operation fails, the BUSY flag will be reset and an error |
|
flag will be set */ |
|
while (__HAL_FLASH_GET_FLAG(FLASH_FLAG_BSY)) |
|
{ |
|
if ((HAL_GetTick() - tickstart) >= Timeout) |
|
{ |
|
return HAL_TIMEOUT; |
|
} |
|
} |
|
|
|
/* check flash errors. Only ECC correction can be checked here as ECCD |
|
generates NMI */ |
|
#ifdef CORE_CM0PLUS |
|
error = FLASH->C2SR; |
|
#else |
|
error = FLASH->SR; |
|
#endif |
|
|
|
/* Check FLASH End of Operation flag */ |
|
if ((error & FLASH_FLAG_EOP) != 0U) |
|
{ |
|
/* Clear FLASH End of Operation pending bit */ |
|
__HAL_FLASH_CLEAR_FLAG(FLASH_FLAG_EOP); |
|
} |
|
|
|
/* Now update error variable to only error value */ |
|
error &= FLASH_FLAG_SR_ERRORS; |
|
|
|
/* clear error flags */ |
|
__HAL_FLASH_CLEAR_FLAG(error); |
|
|
|
if (error != 0U) |
|
{ |
|
/*Save the error code*/ |
|
pFlash.ErrorCode = error; |
|
|
|
return HAL_ERROR; |
|
} |
|
|
|
/* Wait for control register to be written */ |
|
while (__HAL_FLASH_GET_FLAG(FLASH_FLAG_CFGBSY)) |
|
{ |
|
if ((HAL_GetTick() - tickstart) >= Timeout) |
|
{ |
|
return HAL_TIMEOUT; |
|
} |
|
} |
|
|
|
return HAL_OK; |
|
} |
|
|
|
/** |
|
* @brief Program double-word (64-bit) at a specified address. |
|
* @param Address Specifies the address to be programmed. |
|
* @param Data Specifies the data to be programmed. |
|
* @retval None |
|
*/ |
|
static void FLASH_Program_DoubleWord(uint32_t Address, uint64_t Data) |
|
{ |
|
#ifdef CORE_CM0PLUS |
|
/* Set PG bit */ |
|
SET_BIT(FLASH->C2CR, FLASH_CR_PG); |
|
#else |
|
/* Set PG bit */ |
|
SET_BIT(FLASH->CR, FLASH_CR_PG); |
|
#endif |
|
|
|
/* Program first word */ |
|
*(uint32_t *)Address = (uint32_t)Data; |
|
|
|
/* Barrier to ensure programming is performed in 2 steps, in right order |
|
(independently of compiler optimization behavior) */ |
|
__ISB(); |
|
|
|
/* Program second word */ |
|
*(uint32_t *)(Address + 4U) = (uint32_t)(Data >> 32U); |
|
} |
|
|
|
/** |
|
* @brief Fast program a 32 row double-word (64-bit) at a specified address. |
|
* @param Address Specifies the address to be programmed. |
|
* @param DataAddress Specifies the address where the data are stored. |
|
* @retval None |
|
*/ |
|
#ifdef CORE_CM0PLUS |
|
static __RAM_FUNC void FLASH_Program_Fast(uint32_t Address, uint32_t DataAddress) |
|
#else |
|
static void FLASH_Program_Fast(uint32_t Address, uint32_t DataAddress) |
|
#endif |
|
{ |
|
uint8_t row_index = (2 * FLASH_NB_DOUBLE_WORDS_IN_ROW); |
|
__IO uint32_t *dest_addr = (__IO uint32_t *)Address; |
|
__IO uint32_t *src_addr = (__IO uint32_t *)DataAddress; |
|
uint32_t primask_bit; |
|
|
|
/* Set FSTPG bit */ |
|
#ifdef CORE_CM0PLUS |
|
SET_BIT(FLASH->C2CR, FLASH_CR_FSTPG); |
|
#else |
|
SET_BIT(FLASH->CR, FLASH_CR_FSTPG); |
|
#endif |
|
|
|
/* Enter critical section: row programming should not be longer than 7 ms */ |
|
primask_bit = __get_PRIMASK(); |
|
__disable_irq(); |
|
|
|
/* Program the double word of the row */ |
|
do |
|
{ |
|
*dest_addr = *src_addr; |
|
dest_addr++; |
|
src_addr++; |
|
row_index--; |
|
} |
|
while (row_index != 0U); |
|
|
|
/* wait for BSY in order to be sure that flash operation is ended before |
|
allowing prefetch in flash. Timeout does not return status, as it will |
|
be anyway done later */ |
|
while (__HAL_FLASH_GET_FLAG(FLASH_FLAG_BSY) != 0U) |
|
{ |
|
} |
|
|
|
/* Exit critical section: restore previous priority mask */ |
|
__set_PRIMASK(primask_bit); |
|
} |
|
|
|
/** |
|
* @} |
|
*/ |
|
|
|
#endif /* HAL_FLASH_MODULE_ENABLED */ |
|
|
|
/** |
|
* @} |
|
*/ |
|
|
|
/** |
|
* @} |
|
*/ |
|
|
|
|