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amiro-os / modules / NUCLEO-F767ZI / board.c @ bc7aed20

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1 21e5be0b Thomas Schöpping
/*
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AMiRo-OS is an operating system designed for the Autonomous Mini Robot (AMiRo) platform.
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Copyright (C) 2016..2019  Thomas Schöpping et al.
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program.  If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "hal.h"
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#include "stm32_gpio.h"
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/*===========================================================================*/
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/* Driver local definitions.                                                 */
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/*===========================================================================*/
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/*===========================================================================*/
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/* Driver exported variables.                                                */
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/*===========================================================================*/
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/*===========================================================================*/
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/* Driver local variables and types.                                         */
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/*===========================================================================*/
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/**
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 * @brief   Type of STM32 GPIO port setup.
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 */
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typedef struct {
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  uint32_t              moder;
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  uint32_t              otyper;
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  uint32_t              ospeedr;
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  uint32_t              pupdr;
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  uint32_t              odr;
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  uint32_t              afrl;
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  uint32_t              afrh;
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} gpio_setup_t;
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/**
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 * @brief   Type of STM32 GPIO initialization data.
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 */
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typedef struct {
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#if STM32_HAS_GPIOA || defined(__DOXYGEN__)
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  gpio_setup_t          PAData;
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#endif
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#if STM32_HAS_GPIOB || defined(__DOXYGEN__)
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  gpio_setup_t          PBData;
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#endif
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#if STM32_HAS_GPIOC || defined(__DOXYGEN__)
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  gpio_setup_t          PCData;
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#endif
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#if STM32_HAS_GPIOD || defined(__DOXYGEN__)
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  gpio_setup_t          PDData;
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#endif
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#if STM32_HAS_GPIOE || defined(__DOXYGEN__)
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  gpio_setup_t          PEData;
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#endif
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#if STM32_HAS_GPIOF || defined(__DOXYGEN__)
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  gpio_setup_t          PFData;
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#endif
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#if STM32_HAS_GPIOG || defined(__DOXYGEN__)
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  gpio_setup_t          PGData;
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#endif
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#if STM32_HAS_GPIOH || defined(__DOXYGEN__)
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  gpio_setup_t          PHData;
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#endif
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#if STM32_HAS_GPIOI || defined(__DOXYGEN__)
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  gpio_setup_t          PIData;
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#endif
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#if STM32_HAS_GPIOJ || defined(__DOXYGEN__)
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  gpio_setup_t          PJData;
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#endif
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#if STM32_HAS_GPIOK || defined(__DOXYGEN__)
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  gpio_setup_t          PKData;
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#endif
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} gpio_config_t;
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/**
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 * @brief   STM32 GPIO static initialization data.
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 */
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static const gpio_config_t gpio_default_config = {
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#if STM32_HAS_GPIOA
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  {VAL_GPIOA_MODER, VAL_GPIOA_OTYPER, VAL_GPIOA_OSPEEDR, VAL_GPIOA_PUPDR,
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   VAL_GPIOA_ODR,   VAL_GPIOA_AFRL,   VAL_GPIOA_AFRH},
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#endif
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#if STM32_HAS_GPIOB
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  {VAL_GPIOB_MODER, VAL_GPIOB_OTYPER, VAL_GPIOB_OSPEEDR, VAL_GPIOB_PUPDR,
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   VAL_GPIOB_ODR,   VAL_GPIOB_AFRL,   VAL_GPIOB_AFRH},
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#endif
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#if STM32_HAS_GPIOC
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  {VAL_GPIOC_MODER, VAL_GPIOC_OTYPER, VAL_GPIOC_OSPEEDR, VAL_GPIOC_PUPDR,
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   VAL_GPIOC_ODR,   VAL_GPIOC_AFRL,   VAL_GPIOC_AFRH},
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#endif
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#if STM32_HAS_GPIOD
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  {VAL_GPIOD_MODER, VAL_GPIOD_OTYPER, VAL_GPIOD_OSPEEDR, VAL_GPIOD_PUPDR,
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   VAL_GPIOD_ODR,   VAL_GPIOD_AFRL,   VAL_GPIOD_AFRH},
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#endif
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#if STM32_HAS_GPIOE
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  {VAL_GPIOE_MODER, VAL_GPIOE_OTYPER, VAL_GPIOE_OSPEEDR, VAL_GPIOE_PUPDR,
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   VAL_GPIOE_ODR,   VAL_GPIOE_AFRL,   VAL_GPIOE_AFRH},
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#endif
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#if STM32_HAS_GPIOF
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  {VAL_GPIOF_MODER, VAL_GPIOF_OTYPER, VAL_GPIOF_OSPEEDR, VAL_GPIOF_PUPDR,
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   VAL_GPIOF_ODR,   VAL_GPIOF_AFRL,   VAL_GPIOF_AFRH},
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#endif
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#if STM32_HAS_GPIOG
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  {VAL_GPIOG_MODER, VAL_GPIOG_OTYPER, VAL_GPIOG_OSPEEDR, VAL_GPIOG_PUPDR,
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   VAL_GPIOG_ODR,   VAL_GPIOG_AFRL,   VAL_GPIOG_AFRH},
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#endif
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#if STM32_HAS_GPIOH
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  {VAL_GPIOH_MODER, VAL_GPIOH_OTYPER, VAL_GPIOH_OSPEEDR, VAL_GPIOH_PUPDR,
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   VAL_GPIOH_ODR,   VAL_GPIOH_AFRL,   VAL_GPIOH_AFRH},
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#endif
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#if STM32_HAS_GPIOI
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  {VAL_GPIOI_MODER, VAL_GPIOI_OTYPER, VAL_GPIOI_OSPEEDR, VAL_GPIOI_PUPDR,
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   VAL_GPIOI_ODR,   VAL_GPIOI_AFRL,   VAL_GPIOI_AFRH},
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#endif
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#if STM32_HAS_GPIOJ
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  {VAL_GPIOJ_MODER, VAL_GPIOJ_OTYPER, VAL_GPIOJ_OSPEEDR, VAL_GPIOJ_PUPDR,
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   VAL_GPIOJ_ODR,   VAL_GPIOJ_AFRL,   VAL_GPIOJ_AFRH},
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#endif
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#if STM32_HAS_GPIOK
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  {VAL_GPIOK_MODER, VAL_GPIOK_OTYPER, VAL_GPIOK_OSPEEDR, VAL_GPIOK_PUPDR,
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   VAL_GPIOK_ODR,   VAL_GPIOK_AFRL,   VAL_GPIOK_AFRH}
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#endif
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};
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/*===========================================================================*/
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/* Driver local functions.                                                   */
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/*===========================================================================*/
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static void gpio_init(stm32_gpio_t *gpiop, const gpio_setup_t *config) {
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  gpiop->OTYPER  = config->otyper;
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  gpiop->OSPEEDR = config->ospeedr;
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  gpiop->PUPDR   = config->pupdr;
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  gpiop->ODR     = config->odr;
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  gpiop->AFRL    = config->afrl;
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  gpiop->AFRH    = config->afrh;
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  gpiop->MODER   = config->moder;
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}
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static void stm32_gpio_init(void) {
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  /* Enabling GPIO-related clocks, the mask comes from the
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     registry header file.*/
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  rccResetAHB1(STM32_GPIO_EN_MASK);
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  rccEnableAHB1(STM32_GPIO_EN_MASK, true);
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  /* Initializing all the defined GPIO ports.*/
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#if STM32_HAS_GPIOA
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  gpio_init(GPIOA, &gpio_default_config.PAData);
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#endif
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#if STM32_HAS_GPIOB
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  gpio_init(GPIOB, &gpio_default_config.PBData);
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#endif
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#if STM32_HAS_GPIOC
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  gpio_init(GPIOC, &gpio_default_config.PCData);
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#endif
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#if STM32_HAS_GPIOD
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  gpio_init(GPIOD, &gpio_default_config.PDData);
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#endif
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#if STM32_HAS_GPIOE
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  gpio_init(GPIOE, &gpio_default_config.PEData);
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#endif
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#if STM32_HAS_GPIOF
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  gpio_init(GPIOF, &gpio_default_config.PFData);
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#endif
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#if STM32_HAS_GPIOG
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  gpio_init(GPIOG, &gpio_default_config.PGData);
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#endif
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#if STM32_HAS_GPIOH
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  gpio_init(GPIOH, &gpio_default_config.PHData);
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#endif
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#if STM32_HAS_GPIOI
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  gpio_init(GPIOI, &gpio_default_config.PIData);
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#endif
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#if STM32_HAS_GPIOJ
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  gpio_init(GPIOJ, &gpio_default_config.PJData);
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#endif
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#if STM32_HAS_GPIOK
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  gpio_init(GPIOK, &gpio_default_config.PKData);
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#endif
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}
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/*===========================================================================*/
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/* Driver interrupt handlers.                                                */
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/*===========================================================================*/
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/*===========================================================================*/
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/* Driver exported functions.                                                */
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/*===========================================================================*/
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/**
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 * @brief   Early initialization code.
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 * @details GPIO ports and system clocks are initialized before everything
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 *          else.
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 */
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void __early_init(void) {
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  stm32_gpio_init();
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  stm32_clock_init();
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}
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#if HAL_USE_SDC || defined(__DOXYGEN__)
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/**
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 * @brief   SDC card detection.
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 */
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bool sdc_lld_is_card_inserted(SDCDriver *sdcp) {
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  (void)sdcp;
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  /* TODO: Fill the implementation.*/
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  return true;
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}
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/**
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 * @brief   SDC card write protection detection.
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 */
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bool sdc_lld_is_write_protected(SDCDriver *sdcp) {
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  (void)sdcp;
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  /* TODO: Fill the implementation.*/
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  return false;
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}
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#endif /* HAL_USE_SDC */
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#if HAL_USE_MMC_SPI || defined(__DOXYGEN__)
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/**
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 * @brief   MMC_SPI card detection.
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 */
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bool mmc_lld_is_card_inserted(MMCDriver *mmcp) {
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  (void)mmcp;
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  /* TODO: Fill the implementation.*/
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  return true;
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}
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/**
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 * @brief   MMC_SPI card write protection detection.
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 */
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bool mmc_lld_is_write_protected(MMCDriver *mmcp) {
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  (void)mmcp;
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  /* TODO: Fill the implementation.*/
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  return false;
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}
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#endif
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/**
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 * @brief   Board-specific initialization code.
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 * @todo    Add your board-specific code, if any.
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 */
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void boardInit(void) {
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}