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  1. /**
  2.   ******************************************************************************
  3.   * @file    stm32f1xx_hal_def.h
  4.   * @author  MCD Application Team
  5.   * @brief   This file contains HAL common defines, enumeration, macros and
  6.   *          structures definitions.
  7.   ******************************************************************************
  8.   * @attention
  9.   *
  10.   * <h2><center>&copy; Copyright (c) 2017 STMicroelectronics.
  11.   * All rights reserved.</center></h2>
  12.   *
  13.   * This software component is licensed by ST under BSD 3-Clause license,
  14.   * the "License"; You may not use this file except in compliance with the
  15.   * License. You may obtain a copy of the License at:
  16.   *                        opensource.org/licenses/BSD-3-Clause
  17.   *
  18.   ******************************************************************************
  19.   */
  20.  
  21. /* Define to prevent recursive inclusion -------------------------------------*/
  22. #ifndef __STM32F1xx_HAL_DEF
  23. #define __STM32F1xx_HAL_DEF
  24.  
  25. #ifdef __cplusplus
  26. extern "C" {
  27. #endif
  28.  
  29. /* Includes ------------------------------------------------------------------*/
  30. #include "stm32f1xx.h"
  31. #include "Legacy/stm32_hal_legacy.h"
  32. #include <stddef.h>
  33.  
  34. /* Exported types ------------------------------------------------------------*/
  35.  
  36. /**
  37.   * @brief  HAL Status structures definition
  38.   */
  39. typedef enum
  40. {
  41.   HAL_OK       = 0x00U,
  42.   HAL_ERROR    = 0x01U,
  43.   HAL_BUSY     = 0x02U,
  44.   HAL_TIMEOUT  = 0x03U
  45. } HAL_StatusTypeDef;
  46.  
  47. /**
  48.   * @brief  HAL Lock structures definition
  49.   */
  50. typedef enum
  51. {
  52.   HAL_UNLOCKED = 0x00U,
  53.   HAL_LOCKED   = 0x01U
  54. } HAL_LockTypeDef;
  55.  
  56. /* Exported macro ------------------------------------------------------------*/
  57. #define HAL_MAX_DELAY      0xFFFFFFFFU
  58.  
  59. #define HAL_IS_BIT_SET(REG, BIT)         (((REG) & (BIT)) != 0U)
  60. #define HAL_IS_BIT_CLR(REG, BIT)         (((REG) & (BIT)) == 0U)
  61.  
  62. #define __HAL_LINKDMA(__HANDLE__, __PPP_DMA_FIELD__, __DMA_HANDLE__)               \
  63.                         do{                                                      \
  64.                               (__HANDLE__)->__PPP_DMA_FIELD__ = &(__DMA_HANDLE__); \
  65.                               (__DMA_HANDLE__).Parent = (__HANDLE__);             \
  66.                           } while(0U)
  67.  
  68. #define UNUSED(X) (void)X      /* To avoid gcc/g++ warnings */
  69.  
  70. /** @brief Reset the Handle's State field.
  71.   * @param __HANDLE__ specifies the Peripheral Handle.
  72.   * @note  This macro can be used for the following purpose:
  73.   *          - When the Handle is declared as local variable; before passing it as parameter
  74.   *            to HAL_PPP_Init() for the first time, it is mandatory to use this macro
  75.   *            to set to 0 the Handle's "State" field.
  76.   *            Otherwise, "State" field may have any random value and the first time the function
  77.   *            HAL_PPP_Init() is called, the low level hardware initialization will be missed
  78.   *            (i.e. HAL_PPP_MspInit() will not be executed).
  79.   *          - When there is a need to reconfigure the low level hardware: instead of calling
  80.   *            HAL_PPP_DeInit() then HAL_PPP_Init(), user can make a call to this macro then HAL_PPP_Init().
  81.   *            In this later function, when the Handle's "State" field is set to 0, it will execute the function
  82.   *            HAL_PPP_MspInit() which will reconfigure the low level hardware.
  83.   * @retval None
  84.   */
  85. #define __HAL_RESET_HANDLE_STATE(__HANDLE__) ((__HANDLE__)->State = 0U)
  86.  
  87. #if (USE_RTOS == 1U)
  88. /* Reserved for future use */
  89. #error "USE_RTOS should be 0 in the current HAL release"
  90. #else
  91. #define __HAL_LOCK(__HANDLE__)                                           \
  92.                                 do{                                        \
  93.                                     if((__HANDLE__)->Lock == HAL_LOCKED)   \
  94.                                     {                                      \
  95.                                        return HAL_BUSY;                    \
  96.                                     }                                      \
  97.                                     else                                   \
  98.                                     {                                      \
  99.                                        (__HANDLE__)->Lock = HAL_LOCKED;    \
  100.                                     }                                      \
  101.                                   }while (0U)
  102.  
  103. #define __HAL_UNLOCK(__HANDLE__)                                          \
  104.                                   do{                                       \
  105.                                       (__HANDLE__)->Lock = HAL_UNLOCKED;    \
  106.                                     }while (0U)
  107. #endif /* USE_RTOS */
  108.  
  109. #if defined (__ARMCC_VERSION) && (__ARMCC_VERSION >= 6010050) /* ARM Compiler V6 */
  110. #ifndef __weak
  111. #define __weak  __attribute__((weak))
  112. #endif
  113. #ifndef __packed
  114. #define __packed  __attribute__((packed))
  115. #endif
  116. #elif defined ( __GNUC__ ) && !defined (__CC_ARM) /* GNU Compiler */
  117. #ifndef __weak
  118. #define __weak   __attribute__((weak))
  119. #endif /* __weak */
  120. #ifndef __packed
  121. #define __packed __attribute__((__packed__))
  122. #endif /* __packed */
  123. #endif /* __GNUC__ */
  124.  
  125.  
  126. /* Macro to get variable aligned on 4-bytes, for __ICCARM__ the directive "#pragma data_alignment=4" must be used instead */
  127. #if defined (__ARMCC_VERSION) && (__ARMCC_VERSION >= 6010050) /* ARM Compiler V6 */
  128. #ifndef __ALIGN_BEGIN
  129. #define __ALIGN_BEGIN
  130. #endif
  131. #ifndef __ALIGN_END
  132. #define __ALIGN_END      __attribute__ ((aligned (4)))
  133. #endif
  134. #elif defined ( __GNUC__ ) && !defined (__CC_ARM) /* GNU Compiler */
  135. #ifndef __ALIGN_END
  136. #define __ALIGN_END    __attribute__ ((aligned (4)))
  137. #endif /* __ALIGN_END */
  138. #ifndef __ALIGN_BEGIN
  139. #define __ALIGN_BEGIN
  140. #endif /* __ALIGN_BEGIN */
  141. #else
  142. #ifndef __ALIGN_END
  143. #define __ALIGN_END
  144. #endif /* __ALIGN_END */
  145. #ifndef __ALIGN_BEGIN
  146. #if defined   (__CC_ARM)      /* ARM Compiler V5*/
  147. #define __ALIGN_BEGIN    __align(4)
  148. #elif defined (__ICCARM__)    /* IAR Compiler */
  149. #define __ALIGN_BEGIN
  150. #endif /* __CC_ARM */
  151. #endif /* __ALIGN_BEGIN */
  152. #endif /* __GNUC__ */
  153.  
  154.  
  155. /**
  156.   * @brief  __RAM_FUNC definition
  157.   */
  158. #if defined ( __CC_ARM   ) || (defined (__ARMCC_VERSION) && (__ARMCC_VERSION >= 6010050))
  159. /* ARM Compiler V4/V5 and V6
  160.    --------------------------
  161.    RAM functions are defined using the toolchain options.
  162.    Functions that are executed in RAM should reside in a separate source module.
  163.    Using the 'Options for File' dialog you can simply change the 'Code / Const'
  164.    area of a module to a memory space in physical RAM.
  165.    Available memory areas are declared in the 'Target' tab of the 'Options for Target'
  166.    dialog.
  167. */
  168. #define __RAM_FUNC
  169.  
  170. #elif defined ( __ICCARM__ )
  171. /* ICCARM Compiler
  172.    ---------------
  173.    RAM functions are defined using a specific toolchain keyword "__ramfunc".
  174. */
  175. #define __RAM_FUNC __ramfunc
  176.  
  177. #elif defined   (  __GNUC__  )
  178. /* GNU Compiler
  179.    ------------
  180.   RAM functions are defined using a specific toolchain attribute
  181.    "__attribute__((section(".RamFunc")))".
  182. */
  183. #define __RAM_FUNC __attribute__((section(".RamFunc")))
  184.  
  185. #endif
  186.  
  187. /**
  188.   * @brief  __NOINLINE definition
  189.   */
  190. #if defined ( __CC_ARM   ) || (defined (__ARMCC_VERSION) && (__ARMCC_VERSION >= 6010050)) || defined   (  __GNUC__  )
  191. /* ARM V4/V5 and V6 & GNU Compiler
  192.    -------------------------------
  193. */
  194. #define __NOINLINE __attribute__ ( (noinline) )
  195.  
  196. #elif defined ( __ICCARM__ )
  197. /* ICCARM Compiler
  198.    ---------------
  199. */
  200. #define __NOINLINE _Pragma("optimize = no_inline")
  201.  
  202. #endif
  203.  
  204. #ifdef __cplusplus
  205. }
  206. #endif
  207.  
  208. #endif /* ___STM32F1xx_HAL_DEF */
  209.  
  210. /************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/
  211.