/** ****************************************************************************** * @file stm32f4xx_hal_gpio.c * @author MCD Application Team * @brief GPIO HAL module driver. * This file provides firmware functions to manage the following * functionalities of the General Purpose Input/Output (GPIO) peripheral: * + Initialization and de-initialization functions * + IO operation functions * ****************************************************************************** * @attention * * Copyright (c) 2017 STMicroelectronics. * All rights reserved. * * This software is licensed under terms that can be found in the LICENSE file * in the root directory of this software component. * If no LICENSE file comes with this software, it is provided AS-IS. * ****************************************************************************** @verbatim ============================================================================== ##### GPIO Peripheral features ##### ============================================================================== [..] Subject to the specific hardware characteristics of each I/O port listed in the datasheet, each port bit of the General Purpose IO (GPIO) Ports, can be individually configured by software in several modes: (+) Input mode (+) Analog mode (+) Output mode (+) Alternate function mode (+) External interrupt/event lines [..] During and just after reset, the alternate functions and external interrupt lines are not active and the I/O ports are configured in input floating mode. [..] All GPIO pins have weak internal pull-up and pull-down resistors, which can be activated or not. [..] In Output or Alternate mode, each IO can be configured on open-drain or push-pull type and the IO speed can be selected depending on the VDD value. [..] All ports have external interrupt/event capability. To use external interrupt lines, the port must be configured in input mode. All available GPIO pins are connected to the 16 external interrupt/event lines from EXTI0 to EXTI15. [..] The external interrupt/event controller consists of up to 23 edge detectors (16 lines are connected to GPIO) for generating event/interrupt requests (each input line can be independently configured to select the type (interrupt or event) and the corresponding trigger event (rising or falling or both). Each line can also be masked independently. ##### How to use this driver ##### ============================================================================== [..] (#) Enable the GPIO AHB clock using the following function: __HAL_RCC_GPIOx_CLK_ENABLE(). (#) Configure the GPIO pin(s) using HAL_GPIO_Init(). (++) Configure the IO mode using "Mode" member from GPIO_InitTypeDef structure (++) Activate Pull-up, Pull-down resistor using "Pull" member from GPIO_InitTypeDef structure. (++) In case of Output or alternate function mode selection: the speed is configured through "Speed" member from GPIO_InitTypeDef structure. (++) In alternate mode is selection, the alternate function connected to the IO is configured through "Alternate" member from GPIO_InitTypeDef structure. (++) Analog mode is required when a pin is to be used as ADC channel or DAC output. (++) In case of external interrupt/event selection the "Mode" member from GPIO_InitTypeDef structure select the type (interrupt or event) and the corresponding trigger event (rising or falling or both). (#) In case of external interrupt/event mode selection, configure NVIC IRQ priority mapped to the EXTI line using HAL_NVIC_SetPriority() and enable it using HAL_NVIC_EnableIRQ(). (#) To get the level of a pin configured in input mode use HAL_GPIO_ReadPin(). (#) To set/reset the level of a pin configured in output mode use HAL_GPIO_WritePin()/HAL_GPIO_TogglePin(). (#) To lock pin configuration until next reset use HAL_GPIO_LockPin(). (#) During and just after reset, the alternate functions are not active and the GPIO pins are configured in input floating mode (except JTAG pins). (#) The LSE oscillator pins OSC32_IN and OSC32_OUT can be used as general purpose (PC14 and PC15, respectively) when the LSE oscillator is off. The LSE has priority over the GPIO function. (#) The HSE oscillator pins OSC_IN/OSC_OUT can be used as general purpose PH0 and PH1, respectively, when the HSE oscillator is off. The HSE has priority over the GPIO function. @endverbatim ****************************************************************************** *//* ... *//* Includes ------------------------------------------------------------------*/#include"stm32f4xx_hal.h"/** @addtogroup STM32F4xx_HAL_Driver * @{ *//* ... *//** @defgroup GPIO GPIO * @brief GPIO HAL module driver * @{ *//* ... */#ifdefHAL_GPIO_MODULE_ENABLED/* Private typedef -----------------------------------------------------------*//* Private define ------------------------------------------------------------*//** @addtogroup GPIO_Private_Constants GPIO Private Constants * @{ *//* ... */#defineGPIO_NUMBER16U/** * @} *//* ... */Private define/* Private macro -------------------------------------------------------------*//* Private variables ---------------------------------------------------------*//* Private function prototypes -----------------------------------------------*//* Private functions ---------------------------------------------------------*//* Exported functions --------------------------------------------------------*//** @defgroup GPIO_Exported_Functions GPIO Exported Functions * @{ *//* ... *//** @defgroup GPIO_Exported_Functions_Group1 Initialization and de-initialization functions * @brief Initialization and Configuration functions *@verbatim =============================================================================== ##### Initialization and de-initialization functions ##### =============================================================================== [..] This section provides functions allowing to initialize and de-initialize the GPIOs to be ready for use.@endverbatim * @{ *//* ... *//** * @brief Initializes the GPIOx peripheral according to the specified parameters in the GPIO_Init. * @param GPIOx where x can be (A..K) to select the GPIO peripheral for STM32F429X device or * x can be (A..I) to select the GPIO peripheral for STM32F40XX and STM32F427X devices. * @param GPIO_Init pointer to a GPIO_InitTypeDef structure that contains * the configuration information for the specified GPIO peripheral. * @retval None *//* ... */voidHAL_GPIO_Init(GPIO_TypeDef*GPIOx,GPIO_InitTypeDef*GPIO_Init){uint32_tposition;uint32_tioposition=0x00U;uint32_tiocurrent=0x00U;uint32_ttemp=0x00U;/* Check the parameters */assert_param(IS_GPIO_ALL_INSTANCE(GPIOx));assert_param(IS_GPIO_PIN(GPIO_Init->Pin));assert_param(IS_GPIO_MODE(GPIO_Init->Mode));/* Configure the port pins */for(position=0U;position<GPIO_NUMBER;position++){/* Get the IO position */ioposition=0x01U<<position;/* Get the current IO position */iocurrent=(uint32_t)(GPIO_Init->Pin)&ioposition;if(iocurrent==ioposition){/*--------------------- GPIO Mode Configuration ------------------------*//* In case of Output or Alternate function mode selection */if(((GPIO_Init->Mode&GPIO_MODE)==MODE_OUTPUT)||\(GPIO_Init->Mode&GPIO_MODE)==MODE_AF){/* Check the Speed parameter */assert_param(IS_GPIO_SPEED(GPIO_Init->Speed));/* Configure the IO Speed */temp=GPIOx->OSPEEDR;temp&=~(GPIO_OSPEEDER_OSPEEDR0<<(position*2U));temp|=(GPIO_Init->Speed<<(position*2U));GPIOx->OSPEEDR=temp;/* Configure the IO Output Type */temp=GPIOx->OTYPER;temp&=~(GPIO_OTYPER_OT_0<<position);temp|=(((GPIO_Init->Mode&OUTPUT_TYPE)>>OUTPUT_TYPE_Pos)<<position);GPIOx->OTYPER=temp;}if (((GPIO_Init->Mode & GPIO_MODE) == MODE_OUTPUT) || \ (GPIO_Init->Mode & GPIO_MODE) == MODE_AF) { ... }if((GPIO_Init->Mode&GPIO_MODE)!=MODE_ANALOG){/* Check the parameters */assert_param(IS_GPIO_PULL(GPIO_Init->Pull));/* Activate the Pull-up or Pull down resistor for the current IO */temp=GPIOx->PUPDR;temp&=~(GPIO_PUPDR_PUPDR0<<(position*2U));temp|=((GPIO_Init->Pull)<<(position*2U));GPIOx->PUPDR=temp;}if ((GPIO_Init->Mode & GPIO_MODE) != MODE_ANALOG) { ... }/* In case of Alternate function mode selection */if((GPIO_Init->Mode&GPIO_MODE)==MODE_AF){/* Check the Alternate function parameter */assert_param(IS_GPIO_AF(GPIO_Init->Alternate));/* Configure Alternate function mapped with the current IO */temp=GPIOx->AFR[position>>3U];temp&=~(0xFU<<((uint32_t)(position&0x07U)*4U));temp|=((uint32_t)(GPIO_Init->Alternate)<<(((uint32_t)position&0x07U)*4U));GPIOx->AFR[position>>3U]=temp;}if ((GPIO_Init->Mode & GPIO_MODE) == MODE_AF) { ... }/* Configure IO Direction mode (Input, Output, Alternate or Analog) */temp=GPIOx->MODER;temp&=~(GPIO_MODER_MODER0<<(position*2U));temp|=((GPIO_Init->Mode&GPIO_MODE)<<(position*2U));GPIOx->MODER=temp;--------------------- GPIO Mode Configuration/*--------------------- EXTI Mode Configuration ------------------------*//* Configure the External Interrupt or event for the current IO */if((GPIO_Init->Mode&EXTI_MODE)!=0x00U){/* Enable SYSCFG Clock */__HAL_RCC_SYSCFG_CLK_ENABLE();temp=SYSCFG->EXTICR[position>>2U];temp&=~(0x0FU<<(4U*(position&0x03U)));temp|=((uint32_t)(GPIO_GET_INDEX(GPIOx))<<(4U*(position&0x03U)));SYSCFG->EXTICR[position>>2U]=temp;/* Clear Rising Falling edge configuration */temp=EXTI->RTSR;temp&=~((uint32_t)iocurrent);if((GPIO_Init->Mode&TRIGGER_RISING)!=0x00U){temp|=iocurrent;}if ((GPIO_Init->Mode & TRIGGER_RISING) != 0x00U) { ... }EXTI->RTSR=temp;temp=EXTI->FTSR;temp&=~((uint32_t)iocurrent);if((GPIO_Init->Mode&TRIGGER_FALLING)!=0x00U){temp|=iocurrent;}if ((GPIO_Init->Mode & TRIGGER_FALLING) != 0x00U) { ... }EXTI->FTSR=temp;temp=EXTI->EMR;temp&=~((uint32_t)iocurrent);if((GPIO_Init->Mode&EXTI_EVT)!=0x00U){temp|=iocurrent;}if ((GPIO_Init->Mode & EXTI_EVT) != 0x00U) { ... }EXTI->EMR=temp;/* Clear EXTI line configuration */temp=EXTI->IMR;temp&=~((uint32_t)iocurrent);if((GPIO_Init->Mode&EXTI_IT)!=0x00U){temp|=iocurrent;}if ((GPIO_Init->Mode & EXTI_IT) != 0x00U) { ... }EXTI->IMR=temp;}if ((GPIO_Init->Mode & EXTI_MODE) != 0x00U) { ... }}if (iocurrent == ioposition) { ... }}for (position = 0U; position < GPIO_NUMBER; position++) { ... }}{ ... }/** * @brief De-initializes the GPIOx peripheral registers to their default reset values. * @param GPIOx where x can be (A..K) to select the GPIO peripheral for STM32F429X device or * x can be (A..I) to select the GPIO peripheral for STM32F40XX and STM32F427X devices. * @param GPIO_Pin specifies the port bit to be written. * This parameter can be one of GPIO_PIN_x where x can be (0..15). * @retval None *//* ... */voidHAL_GPIO_DeInit(GPIO_TypeDef*GPIOx,uint32_tGPIO_Pin){uint32_tposition;uint32_tioposition=0x00U;uint32_tiocurrent=0x00U;uint32_ttmp=0x00U;/* Check the parameters */assert_param(IS_GPIO_ALL_INSTANCE(GPIOx));/* Configure the port pins */for(position=0U;position<GPIO_NUMBER;position++){/* Get the IO position */ioposition=0x01U<<position;/* Get the current IO position */iocurrent=(GPIO_Pin)&ioposition;if(iocurrent==ioposition){/*------------------------- EXTI Mode Configuration --------------------*/tmp=SYSCFG->EXTICR[position>>2U];tmp&=(0x0FU<<(4U*(position&0x03U)));if(tmp==((uint32_t)(GPIO_GET_INDEX(GPIOx))<<(4U*(position&0x03U)))){/* Clear EXTI line configuration */EXTI->IMR&=~((uint32_t)iocurrent);EXTI->EMR&=~((uint32_t)iocurrent);/* Clear Rising Falling edge configuration */EXTI->FTSR&=~((uint32_t)iocurrent);EXTI->RTSR&=~((uint32_t)iocurrent);/* Configure the External Interrupt or event for the current IO */tmp=0x0FU<<(4U*(position&0x03U));SYSCFG->EXTICR[position>>2U]&=~tmp;}if (tmp == ((uint32_t)(GPIO_GET_INDEX(GPIOx)) << (4U * (position & 0x03U)))) { ... }------------------------- EXTI Mode Configuration/*------------------------- GPIO Mode Configuration --------------------*//* Configure IO Direction in Input Floating Mode */GPIOx->MODER&=~(GPIO_MODER_MODER0<<(position*2U));/* Configure the default Alternate Function in current IO */GPIOx->AFR[position>>3U]&=~(0xFU<<((uint32_t)(position&0x07U)*4U));/* Deactivate the Pull-up and Pull-down resistor for the current IO */GPIOx->PUPDR&=~(GPIO_PUPDR_PUPDR0<<(position*2U));/* Configure the default value IO Output Type */GPIOx->OTYPER&=~(GPIO_OTYPER_OT_0<<position);/* Configure the default value for IO Speed */GPIOx->OSPEEDR&=~(GPIO_OSPEEDER_OSPEEDR0<<(position*2U));}if (iocurrent == ioposition) { ... }}for (position = 0U; position < GPIO_NUMBER; position++) { ... }}{ ... }/** * @} *//* ... *//** @defgroup GPIO_Exported_Functions_Group2 IO operation functions * @brief GPIO Read and Write *@verbatim =============================================================================== ##### IO operation functions ##### ===============================================================================@endverbatim * @{ *//* ... *//** * @brief Reads the specified input port pin. * @param GPIOx where x can be (A..K) to select the GPIO peripheral for STM32F429X device or * x can be (A..I) to select the GPIO peripheral for STM32F40XX and STM32F427X devices. * @param GPIO_Pin specifies the port bit to read. * This parameter can be GPIO_PIN_x where x can be (0..15). * @retval The input port pin value. *//* ... */GPIO_PinStateHAL_GPIO_ReadPin(GPIO_TypeDef*GPIOx,uint16_tGPIO_Pin){GPIO_PinStatebitstatus;/* Check the parameters */assert_param(IS_GPIO_PIN(GPIO_Pin));if((GPIOx->IDR&GPIO_Pin)!=(uint32_t)GPIO_PIN_RESET){bitstatus=GPIO_PIN_SET;}if ((GPIOx->IDR & GPIO_Pin) != (uint32_t)GPIO_PIN_RESET) { ... }else{bitstatus=GPIO_PIN_RESET;}else { ... }returnbitstatus;}{ ... }/** * @brief Sets or clears the selected data port bit. * * @note This function uses GPIOx_BSRR register to allow atomic read/modify * accesses. In this way, there is no risk of an IRQ occurring between * the read and the modify access. * * @param GPIOx where x can be (A..K) to select the GPIO peripheral for STM32F429X device or * x can be (A..I) to select the GPIO peripheral for STM32F40XX and STM32F427X devices. * @param GPIO_Pin specifies the port bit to be written. * This parameter can be one of GPIO_PIN_x where x can be (0..15). * @param PinState specifies the value to be written to the selected bit. * This parameter can be one of the GPIO_PinState enum values: * @arg GPIO_PIN_RESET: to clear the port pin * @arg GPIO_PIN_SET: to set the port pin * @retval None *//* ... */voidHAL_GPIO_WritePin(GPIO_TypeDef*GPIOx,uint16_tGPIO_Pin,GPIO_PinStatePinState){/* Check the parameters */assert_param(IS_GPIO_PIN(GPIO_Pin));assert_param(IS_GPIO_PIN_ACTION(PinState));if(PinState!=GPIO_PIN_RESET){GPIOx->BSRR=GPIO_Pin;}if (PinState != GPIO_PIN_RESET) { ... }else{GPIOx->BSRR=(uint32_t)GPIO_Pin<<16U;}else { ... }}{ ... }/** * @brief Toggles the specified GPIO pins. * @param GPIOx Where x can be (A..K) to select the GPIO peripheral for STM32F429X device or * x can be (A..I) to select the GPIO peripheral for STM32F40XX and STM32F427X devices. * @param GPIO_Pin Specifies the pins to be toggled. * @retval None *//* ... */voidHAL_GPIO_TogglePin(GPIO_TypeDef*GPIOx,uint16_tGPIO_Pin){uint32_todr;/* Check the parameters */assert_param(IS_GPIO_PIN(GPIO_Pin));/* get current Output Data Register value */odr=GPIOx->ODR;/* Set selected pins that were at low level, and reset ones that were high */GPIOx->BSRR=((odr&GPIO_Pin)<<GPIO_NUMBER)|(~odr&GPIO_Pin);}{ ... }/** * @brief Locks GPIO Pins configuration registers. * @note The locked registers are GPIOx_MODER, GPIOx_OTYPER, GPIOx_OSPEEDR, * GPIOx_PUPDR, GPIOx_AFRL and GPIOx_AFRH. * @note The configuration of the locked GPIO pins can no longer be modified * until the next reset. * @param GPIOx where x can be (A..F) to select the GPIO peripheral for STM32F4 family * @param GPIO_Pin specifies the port bit to be locked. * This parameter can be any combination of GPIO_PIN_x where x can be (0..15). * @retval None *//* ... */HAL_StatusTypeDefHAL_GPIO_LockPin(GPIO_TypeDef*GPIOx,uint16_tGPIO_Pin){__IOuint32_ttmp=GPIO_LCKR_LCKK;/* Check the parameters */assert_param(IS_GPIO_PIN(GPIO_Pin));/* Apply lock key write sequence */tmp|=GPIO_Pin;/* Set LCKx bit(s): LCKK='1' + LCK[15-0] */GPIOx->LCKR=tmp;/* Reset LCKx bit(s): LCKK='0' + LCK[15-0] */GPIOx->LCKR=GPIO_Pin;/* Set LCKx bit(s): LCKK='1' + LCK[15-0] */GPIOx->LCKR=tmp;/* Read LCKR register. This read is mandatory to complete key lock sequence */tmp=GPIOx->LCKR;/* Read again in order to confirm lock is active */if((GPIOx->LCKR&GPIO_LCKR_LCKK)!=RESET){returnHAL_OK;}if ((GPIOx->LCKR & GPIO_LCKR_LCKK) != RESET) { ... }else{returnHAL_ERROR;}else { ... }}{ ... }/** * @brief This function handles EXTI interrupt request. * @param GPIO_Pin Specifies the pins connected EXTI line * @retval None *//* ... */voidHAL_GPIO_EXTI_IRQHandler(uint16_tGPIO_Pin){/* EXTI line interrupt detected */if(__HAL_GPIO_EXTI_GET_IT(GPIO_Pin)!=RESET){__HAL_GPIO_EXTI_CLEAR_IT(GPIO_Pin);HAL_GPIO_EXTI_Callback(GPIO_Pin);}if (__HAL_GPIO_EXTI_GET_IT(GPIO_Pin) != RESET) { ... }}{ ... }/** * @brief EXTI line detection callbacks. * @param GPIO_Pin Specifies the pins connected EXTI line * @retval None *//* ... */__weakvoidHAL_GPIO_EXTI_Callback(uint16_tGPIO_Pin){/* Prevent unused argument(s) compilation warning */UNUSED(GPIO_Pin);/* NOTE: This function Should not be modified, when the callback is needed, the HAL_GPIO_EXTI_Callback could be implemented in the user file *//* ... */}{ ... }/** * @} *//* ... *//** * @} *//* ... *//* ... */#endif/* HAL_GPIO_MODULE_ENABLED *//** * @} *//* ... *//** * @} *//* ... */
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