440 lines
16 KiB
C
440 lines
16 KiB
C
/***************************************************************************//**
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* @file
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* @brief General Purpose IO (GPIO) peripheral API for EFM32.
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* @author Energy Micro AS
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* @version 2.3.0
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*******************************************************************************
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* @section License
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* <b>(C) Copyright 2010 Energy Micro AS, http://www.energymicro.com</b>
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*******************************************************************************
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*
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* This source code is the property of Energy Micro AS. The source and compiled
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* code may only be used on Energy Micro "EFM32" microcontrollers.
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*
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* This copyright notice may not be removed from the source code nor changed.
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*
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* DISCLAIMER OF WARRANTY/LIMITATION OF REMEDIES: Energy Micro AS has no
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* obligation to support this Software. Energy Micro AS is providing the
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* Software "AS IS", with no express or implied warranties of any kind,
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* including, but not limited to, any implied warranties of merchantability
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* or fitness for any particular purpose or warranties against infringement
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* of any proprietary rights of a third party.
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*
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* Energy Micro AS will not be liable for any consequential, incidental, or
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* special damages, or any other relief, or for any claim by any third party,
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* arising from your use of this Software.
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*
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******************************************************************************/
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#ifndef __EFM32_GPIO_H
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#define __EFM32_GPIO_H
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#include <stdbool.h>
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#include "efm32.h"
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#include "efm32_bitband.h"
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#include "efm32_assert.h"
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#ifdef __cplusplus
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extern "C" {
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#endif
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/***************************************************************************//**
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* @addtogroup EFM32_Library
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* @{
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******************************************************************************/
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/***************************************************************************//**
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* @addtogroup GPIO
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* @{
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******************************************************************************/
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/*******************************************************************************
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******************************** ENUMS ************************************
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******************************************************************************/
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/** GPIO ports identificator. */
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typedef enum
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{
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gpioPortA = 0, /**< Port A */
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gpioPortB = 1, /**< Port B */
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gpioPortC = 2, /**< Port C */
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gpioPortD = 3, /**< Port D */
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gpioPortE = 4, /**< Port E */
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gpioPortF = 5 /**< Port F */
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} GPIO_Port_TypeDef;
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/** GPIO drive mode. */
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typedef enum
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{
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/** Default 6mA */
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gpioDriveModeStandard = GPIO_P_CTRL_DRIVEMODE_STANDARD,
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/** 0.5 mA */
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gpioDriveModeLowest = GPIO_P_CTRL_DRIVEMODE_LOWEST,
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/** 20 mA */
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gpioDriveModeHigh = GPIO_P_CTRL_DRIVEMODE_HIGH,
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/** 2 mA */
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gpioDriveModeLow = GPIO_P_CTRL_DRIVEMODE_LOW
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} GPIO_DriveMode_TypeDef;
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/** Pin mode. For more details on each mode, please refer to the EFM32
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* reference manual. */
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typedef enum
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{
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/** Input disabled. Pullup if DOUT is set. */
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gpioModeDisabled = _GPIO_P_MODEL_MODE0_DISABLED,
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/** Input enabled. Filter if DOUT is set */
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gpioModeInput = _GPIO_P_MODEL_MODE0_INPUT,
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/** Input enabled. DOUT determines pull direction */
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gpioModeInputPull = _GPIO_P_MODEL_MODE0_INPUTPULL,
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/** Input enabled with filter. DOUT determines pull direction */
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gpioModeInputPullFilter = _GPIO_P_MODEL_MODE0_INPUTPULLFILTER,
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/** Push-pull output */
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gpioModePushPull = _GPIO_P_MODEL_MODE0_PUSHPULL,
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/** Push-pull output with drive-strength set by DRIVEMODE */
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gpioModePushPullDrive = _GPIO_P_MODEL_MODE0_PUSHPULLDRIVE,
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/** Wired-or output */
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gpioModeWiredOr = _GPIO_P_MODEL_MODE0_WIREDOR,
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/** Wired-or output with pull-down */
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gpioModeWiredOrPullDown = _GPIO_P_MODEL_MODE0_WIREDORPULLDOWN,
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/** Open-drain output */
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gpioModeWiredAnd = _GPIO_P_MODEL_MODE0_WIREDAND,
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/** Open-drain output with filter */
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gpioModeWiredAndFilter = _GPIO_P_MODEL_MODE0_WIREDANDFILTER,
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/** Open-drain output with pullup */
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gpioModeWiredAndPullUp = _GPIO_P_MODEL_MODE0_WIREDANDPULLUP,
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/** Open-drain output with filter and pullup */
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gpioModeWiredAndPullUpFilter = _GPIO_P_MODEL_MODE0_WIREDANDPULLUPFILTER,
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/** Open-drain output with drive-strength set by DRIVEMODE */
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gpioModeWiredAndDrive = _GPIO_P_MODEL_MODE0_WIREDANDDRIVE,
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/** Open-drain output with filter and drive-strength set by DRIVEMODE */
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gpioModeWiredAndDriveFilter = _GPIO_P_MODEL_MODE0_WIREDANDDRIVEFILTER,
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/** Open-drain output with pullup and drive-strength set by DRIVEMODE */
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gpioModeWiredAndDrivePullUp = _GPIO_P_MODEL_MODE0_WIREDANDDRIVEPULLUP,
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/** Open-drain output with filter, pullup and drive-strength set by DRIVEMODE */
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gpioModeWiredAndDrivePullUpFilter = _GPIO_P_MODEL_MODE0_WIREDANDDRIVEPULLUPFILTER
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} GPIO_Mode_TypeDef;
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/*******************************************************************************
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***************************** PROTOTYPES **********************************
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******************************************************************************/
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void GPIO_DbgLocationSet(unsigned int location);
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#if defined(_EFM32_GIANT_FAMILY) || defined(_EFM32_TINY_FAMILY)
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static __INLINE void GPIO_EM4SetPinRetention(bool enable);
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#endif
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/***************************************************************************//**
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* @brief
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* Enable/disable serial wire clock pin.
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*
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* @note
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* Disabling SWDClk will disable the debug interface, which may result in
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* a lockout if done early in startup (before debugger is able to halt core).
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*
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* @param[in] enable
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* @li false - disable serial wire clock.
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* @li true - enable serial wire clock (default after reset).
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******************************************************************************/
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static __INLINE void GPIO_DbgSWDClkEnable(bool enable)
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{
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BITBAND_Peripheral(&(GPIO->ROUTE), _GPIO_ROUTE_SWCLKPEN_SHIFT, (unsigned int)enable);
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}
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/***************************************************************************//**
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* @brief
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* Enable/disable serial wire data pin.
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*
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* @note
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* Disabling SWDClk will disable the debug interface, which may result in
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* a lockout if done early in startup (before debugger is able to halt core).
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*
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* @param[in] enable
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* @li false - disable serial wire data pin.
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* @li true - enable serial wire data pin (default after reset).
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******************************************************************************/
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static __INLINE void GPIO_DbgSWDIOEnable(bool enable)
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{
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BITBAND_Peripheral(&(GPIO->ROUTE), _GPIO_ROUTE_SWDIOPEN_SHIFT, (unsigned int)enable);
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}
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/***************************************************************************//**
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* @brief
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* Enable/Disable serial wire output pin.
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*
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* @note
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* Enabling this pin is not sufficient to fully enable serial wire output
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* which is also dependent on issues outside the GPIO module. Please refer to
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* DBG_SWOEnable().
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*
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* @param[in] enable
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* @li false - disable serial wire viewer pin (default after reset).
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* @li true - enable serial wire viewer pin.
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******************************************************************************/
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static __INLINE void GPIO_DbgSWOEnable(bool enable)
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{
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BITBAND_Peripheral(&(GPIO->ROUTE), _GPIO_ROUTE_SWOPEN_SHIFT, (unsigned int)enable);
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}
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void GPIO_DriveModeSet(GPIO_Port_TypeDef port, GPIO_DriveMode_TypeDef mode);
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#if defined(_EFM32_GIANT_FAMILY) || defined(_EFM32_TINY_FAMILY)
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/**************************************************************************//**
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* @brief
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* Disable GPIO pin wake-up from EM4.
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*
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* @param[in] pinmask
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* Bitmask containing the bitwise logic OR of which GPIO pin(s) to disable.
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* Refer to Reference Manuals for pinmask to GPIO port/pin mapping.
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*****************************************************************************/
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static __INLINE void GPIO_EM4DisablePinWakeup(uint32_t pinmask)
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{
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EFM_ASSERT((pinmask & ~_GPIO_EM4WUEN_MASK) == 0);
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GPIO->EM4WUEN &= ~pinmask;
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}
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/**************************************************************************//**
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* @brief
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* Enable GPIO pin wake-up from EM4. When the function exits,
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* EM4 mode can be safely entered.
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*
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* @note
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* It is assumed that the GPIO pin modes are set correctly.
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* Valid modes are @ref gpioModeInput and @ref gpioModeInputPull.
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*
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* @param[in] pinmask
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* Bitmask containing the bitwise logic OR of which GPIO pin(s) to enable.
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* Refer to Reference Manuals for pinmask to GPIO port/pin mapping.
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* @param[in] polaritymask
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* Bitmask containing the bitwise logic OR of GPIO pin(s) wake-up polarity.
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* Refer to Reference Manuals for pinmask to GPIO port/pin mapping.
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*****************************************************************************/
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static __INLINE void GPIO_EM4EnablePinWakeup(uint32_t pinmask,
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uint32_t polaritymask)
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{
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EFM_ASSERT((pinmask & ~_GPIO_EM4WUEN_MASK) == 0);
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EFM_ASSERT((polaritymask & ~_GPIO_EM4WUPOL_MASK) == 0);
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GPIO->EM4WUPOL &= ~pinmask; /* Set wakeup polarity */
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GPIO->EM4WUPOL |= pinmask & polaritymask;
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GPIO->EM4WUEN |= pinmask; /* Enable wakeup */
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GPIO_EM4SetPinRetention(true); /* Enable pin retention */
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GPIO->CMD = GPIO_CMD_EM4WUCLR; /* Clear wake-up logic */
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}
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/**************************************************************************//**
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* @brief
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* Check which GPIO pin(s) that caused a wake-up from EM4.
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*
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* @return
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* Bitmask containing the bitwise logic OR of which GPIO pin(s) caused the
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* wake-up. Refer to Reference Manuals for pinmask to GPIO port/pin mapping.
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*****************************************************************************/
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static __INLINE uint32_t GPIO_EM4GetPinWakeupCause(void)
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{
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return GPIO->EM4WUCAUSE & _GPIO_EM4WUCAUSE_MASK;
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}
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/**************************************************************************//**
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* @brief
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* Enable GPIO pin retention of output enable, output value, pull enable and
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* pull direction in EM4.
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*
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* @param[in] enable
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* @li true - enable EM4 pin retention.
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* @li false - disable EM4 pin retention.
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*****************************************************************************/
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static __INLINE void GPIO_EM4SetPinRetention(bool enable)
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{
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if (enable)
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{
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GPIO->CTRL |= GPIO_CTRL_EM4RET;
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}
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else
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{
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GPIO->CTRL &= ~GPIO_CTRL_EM4RET;
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}
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}
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#endif
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/***************************************************************************//**
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* @brief
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* Enable/disable input sensing.
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*
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* @details
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* Disabling input sensing if not used, can save some energy consumption.
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*
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* @param[in] val
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* Bitwise logic OR of one or more of:
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* @li GPIO_INSENSE_INTSENSE - interrupt input sensing.
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* @li GPIO_INSENSE_PRSSENSE - peripheral reflex system input sensing.
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*
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* @param[in] mask
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* Mask containing bitwise logic OR of bits similar as for @p val used to indicate
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* which input sense options to disable/enable.
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******************************************************************************/
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static __INLINE void GPIO_InputSenseSet(uint32_t val, uint32_t mask)
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{
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GPIO->INSENSE = (GPIO->INSENSE & ~mask) | (val & mask);
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}
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/***************************************************************************//**
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* @brief
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* Clear one or more pending GPIO interrupts.
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*
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* @param[in] flags
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* Bitwise logic OR of GPIO interrupt sources to clear.
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******************************************************************************/
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static __INLINE void GPIO_IntClear(uint32_t flags)
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{
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GPIO->IFC = flags;
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}
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void GPIO_IntConfig(GPIO_Port_TypeDef port,
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unsigned int pin,
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bool risingEdge,
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bool fallingEdge,
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bool enable);
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/***************************************************************************//**
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* @brief
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* Disable one or more GPIO interrupts.
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*
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* @param[in] flags
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* GPIO interrupt sources to disable.
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******************************************************************************/
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static __INLINE void GPIO_IntDisable(uint32_t flags)
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{
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GPIO->IEN &= ~flags;
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}
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/***************************************************************************//**
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* @brief
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* Enable one or more GPIO interrupts.
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*
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* @note
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* Depending on the use, a pending interrupt may already be set prior to
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* enabling the interrupt. Consider using GPIO_IntClear() prior to enabling
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* if such a pending interrupt should be ignored.
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*
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* @param[in] flags
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* GPIO interrupt sources to enable.
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******************************************************************************/
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static __INLINE void GPIO_IntEnable(uint32_t flags)
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{
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GPIO->IEN |= flags;
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}
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/***************************************************************************//**
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* @brief
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* Get pending GPIO interrupts.
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*
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* @return
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* GPIO interrupt sources pending.
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******************************************************************************/
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static __INLINE uint32_t GPIO_IntGet(void)
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{
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return(GPIO->IF);
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}
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/***************************************************************************//**
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* @brief
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* Get enabled and pending GPIO interrupt flags.
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* Useful for handling more interrupt sources in the same interrupt handler.
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*
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* @note
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* Interrupt flags are not cleared by the use of this function.
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*
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* @return
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* Pending and enabled GPIO interrupt sources.
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* The return value is the bitwise AND combination of
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* - the OR combination of enabled interrupt sources in GPIO_IEN register
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* and
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* - the OR combination of valid interrupt flags in GPIO_IF register.
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******************************************************************************/
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static __INLINE uint32_t GPIO_IntGetEnabled(void)
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{
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uint32_t tmp;
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/* Store GPIO->IEN in temporary variable in order to define explicit order
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* of volatile accesses. */
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tmp = GPIO->IEN;
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/* Bitwise AND of pending and enabled interrupts */
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return GPIO->IF & tmp;
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}
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/**************************************************************************//**
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* @brief
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* Set one or more pending GPIO interrupts from SW.
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*
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* @param[in] flags
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* GPIO interrupt sources to set to pending.
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*****************************************************************************/
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static __INLINE void GPIO_IntSet(uint32_t flags)
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{
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GPIO->IFS = flags;
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}
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/***************************************************************************//**
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* @brief
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* Locks the GPIO configuration.
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******************************************************************************/
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static __INLINE void GPIO_Lock(void)
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{
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GPIO->LOCK = GPIO_LOCK_LOCKKEY_LOCK;
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}
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unsigned int GPIO_PinInGet(GPIO_Port_TypeDef port, unsigned int pin);
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void GPIO_PinModeSet(GPIO_Port_TypeDef port,
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unsigned int pin,
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GPIO_Mode_TypeDef mode,
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unsigned int out);
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void GPIO_PinOutClear(GPIO_Port_TypeDef port, unsigned int pin);
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unsigned int GPIO_PinOutGet(GPIO_Port_TypeDef port, unsigned int pin);
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void GPIO_PinOutSet(GPIO_Port_TypeDef port, unsigned int pin);
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void GPIO_PinOutToggle(GPIO_Port_TypeDef port, unsigned int pin);
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uint32_t GPIO_PortInGet(GPIO_Port_TypeDef port);
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void GPIO_PortOutClear(GPIO_Port_TypeDef port, uint32_t pins);
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uint32_t GPIO_PortOutGet(GPIO_Port_TypeDef port);
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void GPIO_PortOutSet(GPIO_Port_TypeDef port, uint32_t pins);
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void GPIO_PortOutSetVal(GPIO_Port_TypeDef port, uint32_t val, uint32_t mask);
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void GPIO_PortOutToggle(GPIO_Port_TypeDef port, uint32_t pins);
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/***************************************************************************//**
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* @brief
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* Unlocks the GPIO configuration.
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******************************************************************************/
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static __INLINE void GPIO_Unlock(void)
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{
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GPIO->LOCK = GPIO_LOCK_LOCKKEY_UNLOCK;
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}
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/** @} (end addtogroup GPIO) */
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/** @} (end addtogroup EFM32_Library) */
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#ifdef __cplusplus
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}
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#endif
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#endif /* __EFM32_GPIO_H */
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