2011-02-17 11:33:15 +08:00
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/***************************************************************************//**
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* @file
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* @brief External Bus Iterface (EBI) peripheral API for EFM32
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* @author Energy Micro AS
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2011-06-20 09:56:28 +08:00
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* @version 2.0.0
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2011-02-17 11:33:15 +08:00
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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_EBI_H
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#define __EFM32_EBI_H
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#include "efm32.h"
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#if defined(EBI_COUNT) && (EBI_COUNT > 0)
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#include "efm32_bitband.h"
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#include <stdint.h>
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#include <stdbool.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 EBI
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* @{
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******************************************************************************/
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/***************************************************************************//**
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* @verbatim
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*
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* --------- ---------
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* | EBI | /| |\ | Ext. |
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* | | / --------- \ | Async |
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* |(EFM32)| \ --------- / | Device|
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* | | \| |/ | |
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* --------- ---------
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* Parallel interface
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*
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* @endverbatim
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******************************************************************************/
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/*******************************************************************************
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******************************* DEFINES ***********************************
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******************************************************************************/
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#define EBI_BANK0 (1 << 1) /**< EBI address bank 0 */
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#define EBI_BANK1 (1 << 2) /**< EBI address bank 1 */
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#define EBI_BANK2 (1 << 3) /**< EBI address bank 2 */
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#define EBI_BANK3 (1 << 4) /**< EBI address bank 3 */
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#define EBI_CS0 (1 << 1) /**< EBI chip select line 0 */
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#define EBI_CS1 (1 << 2) /**< EBI chip select line 1 */
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#define EBI_CS2 (1 << 3) /**< EBI chip select line 2 */
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#define EBI_CS3 (1 << 4) /**< EBI chip select line 3 */
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/*******************************************************************************
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******************************** ENUMS ************************************
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******************************************************************************/
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/** EBI Mode of operation */
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typedef enum
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{
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/** 8 data bits, 8 address bits */
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ebiModeD8A8 = EBI_CTRL_MODE_D8A8,
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/** 16 data bits, 16 address bits, using address latch enable */
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ebiModeD16A16ALE = EBI_CTRL_MODE_D16A16ALE,
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/** 8 data bits, 24 address bits, using address latch enable */
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ebiModeD8A24ALE = EBI_CTRL_MODE_D8A24ALE
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} EBI_Mode_TypeDef;
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/** EBI Polarity configuration */
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typedef enum
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{
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/** Active Low */
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ebiActiveLow = 0,
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/** Active High */
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ebiActiveHigh = 1
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} EBI_Polarity_TypeDef;
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/** EBI Pin Line types */
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typedef enum
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{
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/** Address Ready polarity */
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ebiLineARDY,
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/** Address Latch Enable polarity */
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ebiLineALE,
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/** Write Enable polarity */
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ebiLineWE,
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/** Read Enable polarity */
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ebiLineRE,
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/** Chip Select polarity */
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ebiLineCS
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} EBI_Line_TypeDef;
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/*******************************************************************************
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******************************* STRUCTS ***********************************
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******************************************************************************/
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/** EBI Initialization structure */
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typedef struct
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{
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/** EBI operation mode, data and address limits */
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EBI_Mode_TypeDef mode;
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/** Address Ready pin polarity, active high or low */
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EBI_Polarity_TypeDef ardyPolarity;
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/** Address Latch Enable pin polarity, active high or low */
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EBI_Polarity_TypeDef alePolarity;
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/** Write Enable pin polarity, active high or low */
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EBI_Polarity_TypeDef wePolarity;
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/** Read Enable pin polarity, active high or low */
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EBI_Polarity_TypeDef rePolarity;
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/** Chip Select pin polarity, active high or low */
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EBI_Polarity_TypeDef csPolarity;
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/** Flag to enable or disable Address Ready support */
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bool ardyEnable;
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/** Set to turn off 32 cycle timeout ability */
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bool ardyDisableTimeout;
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/** Mask of flags which selects address banks to configure EBI_BANK<0-3> */
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uint32_t banks;
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/** Mask of flags which selects chip select lines t configure EBI_CS<0-3> */
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uint32_t csLines;
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/** Number of cycles address is held after Adress Latch Enable is asserted */
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int addrSetupCycles;
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/** Number of cycles address is driven onto the ADDRDAT bus before ALE is asserted */
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int addrHoldCycles;
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/** Number of cycles for address setup before REn is asserted */
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int readSetupCycles;
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/** Number of cycles REn is held active */
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int readStrobeCycles;
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/** Number of cycles CSn is held active after REn is deasserted */
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int readHoldCycles;
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/** Number of cycles for address setup before WEn is asserted */
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int writeSetupCycles;
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/** Number of cycles WEn is held active */
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int writeStrobeCycles;
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/** Number of cycles CSn is held active after WEn is deasserted */
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int writeHoldCycles;
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/** Flag, if EBI should be enabled after configuration */
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bool enable;
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} EBI_Init_TypeDef;
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/** Default config for EBI init structures */
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#define EBI_INIT_DEFAULT \
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2011-06-20 09:56:28 +08:00
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{ ebiModeD8A8, /* 8 bit address, 8 bit data */ \
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ebiActiveLow, /* ARDY polarity */ \
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ebiActiveLow, /* ALE polarity */ \
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ebiActiveLow, /* WE polarity */ \
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ebiActiveLow, /* RE polarity */ \
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ebiActiveLow, /* CS polarity */ \
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false, /* enable ARDY */ \
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false, /* don't disable ARDY timeout */ \
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EBI_BANK0, /* enable bank 0 */ \
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EBI_CS0, /* enable chip select 0 */ \
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0, /* addr setup cycles */ \
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1, /* addr hold cycles */ \
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0, /* read setup cycles */ \
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0, /* read strobe cycles */ \
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0, /* read hold cycles */ \
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0, /* write setup cycles */ \
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0, /* write strobe cycles */ \
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1, /* write hold cycles */ \
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true, /* enable EBI */ \
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2011-02-17 11:33:15 +08:00
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}
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/*******************************************************************************
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***************************** PROTOTYPES **********************************
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******************************************************************************/
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void EBI_Init(const EBI_Init_TypeDef *ebiInit);
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void EBI_Disable(void);
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uint32_t EBI_BankAddress(uint32_t bank);
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void EBI_BankEnable(uint32_t banks, bool enable);
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void EBI_ChipSelectEnable(uint32_t banks, bool enable);
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void EBI_ReadTimingSet(int setupCycles, int strobeCycles, int holdCycles);
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void EBI_WriteTimingSet(int setupCycles, int strobeCycles, int holdCycles);
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void EBI_AddressTimingSet(int setupCycles, int holdCycles);
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void EBI_PolaritySet(EBI_Line_TypeDef line, EBI_Polarity_TypeDef polarity);
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/** @} (end addtogroup EBI) */
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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 /* defined(EBI_COUNT) && (EBI_COUNT > 0) */
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#endif /* __EFM32_EBI_H */
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