288 lines
11 KiB
C
288 lines
11 KiB
C
/***************************************************************************//**
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* @file
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* @brief Energy management unit (EMU) peripheral API for EFM32.
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* @author Energy Micro AS
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* @version 2.3.2
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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_EMU_H
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#define __EFM32_EMU_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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#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 EMU
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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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#if defined(_EFM32_GIANT_FAMILY)
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/** EM4 duty oscillator */
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typedef enum
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{
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/** Select ULFRCO as duty oscillator in EM4 */
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emuEM4Osc_ULFRCO = EMU_EM4CONF_OSC_ULFRCO,
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/** Select LFXO as duty oscillator in EM4 */
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emuEM4Osc_LFXO = EMU_EM4CONF_OSC_LFXO,
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/** Select LFRCO as duty oscillator in EM4 */
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emuEM4Osc_LFRCO = EMU_EM4CONF_OSC_LFRCO
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} EMU_EM4Osc_TypeDef;
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/** Backup Power Voltage Probe types */
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typedef enum
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{
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/** Disable voltage probe */
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emuProbe_Disable = EMU_BUCTRL_PROBE_DISABLE,
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/** Connect probe to VDD_DREG */
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emuProbe_VDDDReg = EMU_BUCTRL_PROBE_VDDDREG,
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/** Connect probe to BU_IN */
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emuProbe_BUIN = EMU_BUCTRL_PROBE_BUIN,
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/** Connect probe to BU_OUT */
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emuProbe_BUOUT = EMU_BUCTRL_PROBE_BUOUT
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} EMU_Probe_TypeDef;
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/** Backup Power Domain resistor selection */
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typedef enum
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{
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/** Main power and backup power connected with RES0 series resistance */
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emuRes_Res0 = EMU_PWRCONF_PWRRES_RES0,
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/** Main power and backup power connected with RES1 series resistance */
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emuRes_Res1 = EMU_PWRCONF_PWRRES_RES1,
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/** Main power and backup power connected with RES2 series resistance */
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emuRes_Res2 = EMU_PWRCONF_PWRRES_RES2,
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/** Main power and backup power connected with RES3 series resistance */
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emuRes_Res3 = EMU_PWRCONF_PWRRES_RES3,
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} EMU_Resistor_TypeDef;
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/** Backup Power Domain power connection */
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typedef enum
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{
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/** No connection between main and backup power */
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emuPower_None = EMU_BUINACT_PWRCON_NONE,
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/** Main power and backup power connected through diode,
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allowing current from backup to main only */
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emuPower_BUMain = EMU_BUINACT_PWRCON_BUMAIN,
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/** Main power and backup power connected through diode,
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allowing current from main to backup only */
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emuPower_MainBU = EMU_BUINACT_PWRCON_MAINBU,
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/** Main power and backup power connected without diode */
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emuPower_NoDiode = EMU_BUINACT_PWRCON_NODIODE,
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} EMU_Power_TypeDef;
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#endif
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/*******************************************************************************
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******************************* STRUCTS ***********************************
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******************************************************************************/
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#if defined(_EFM32_GIANT_FAMILY)
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/** Energy Mode 4 initialization structure */
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typedef struct
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{
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/** Lock configuration of regulator, BOD and oscillator */
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bool lockConfig;
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/** EM4 duty oscillator */
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EMU_EM4Osc_TypeDef osc;
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/** Wake up on EM4 BURTC interrupt */
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bool buRtcWakeup;
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/** Enable EM4 voltage regulator */
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bool vreg;
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} EMU_EM4Init_TypeDef;
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/** Default initialization of EM4 configuration */
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#define EMU_EM4INIT_DEFAULT \
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{ false, /* Dont't lock configuration after it's been set */ \
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emuEM4Osc_ULFRCO, /* Use default ULFRCO oscillator */ \
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true, /* Wake up on EM4 BURTC interrupt */ \
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true, /* Enable VREG */ \
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}
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/** Backup Power Domain Initialization structure */
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typedef struct
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{
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/* Backup Power Domain power configuration */
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/** Voltage probe select, selects ADC voltage */
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EMU_Probe_TypeDef probe;
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/** Enable BOD calibration mode */
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bool bodCal;
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/** Enable BU_STAT status pin for active BU mode */
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bool statusPinEnable;
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/* Backup Power Domain connection configuration */
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/** Power domain resistor */
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EMU_Resistor_TypeDef resistor;
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/** BU_VOUT strong enable */
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bool voutStrong;
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/** BU_VOUT medium enable */
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bool voutMed;
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/** BU_VOUT weak enable */
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bool voutWeak;
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/* Backup Power Domain inactive configuration */
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/** Power connection, when not in Backup Mode */
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EMU_Power_TypeDef inactivePower;
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/** Threshold range for backup BOD sensing on VDD_DREG, when not in Backup Mode */
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uint32_t inactiveThresRange;
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/** Threshold for backup BOD sesning on VDD_DREG, when not in Backup Mode */
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uint32_t inactiveThreshold;
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/* Backup Power Domain active configuration */
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/** Power connection, when in Backup Mode */
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EMU_Power_TypeDef activePower;
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/** Threshold range for backup BOD sensing when in Backup Mode */
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uint32_t activeThresRange;
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/** Threshold for backup BOD sesning on VDD_DREG, when in Backup Mode */
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uint32_t activeThreshold;
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/** Enable backup power domain, and release reset, enable BU_VIN pin */
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bool enable;
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} EMU_BUPDInit_TypeDef;
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/** Default */
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#define EMU_BUPDINIT_DEFAULT \
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{ emuProbe_Disable, /* Do not enable voltage probe */ \
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false, /* Disable BOD calibration mode */ \
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false, /* Disable BU_STAT pin for backup mode indication */ \
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\
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emuRes_Res0, /* RES0 series resistance between main and backup power */ \
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false, /* Don't enable strong switch */ \
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false, /* Don't enable medium switch */ \
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false, /* Don't enable weak switch */ \
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\
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emuPower_None, /* No connection between main and backup power (inactive mode) */ \
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0, /* Default threshold range for backup BOD sense (inactive mode) */ \
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0, /* Default threshold for backup BOD snese (inactive mode) */ \
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\
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emuPower_None, /* No connection between main and backup power (active mode) */ \
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0, /* Default threshold range for backup BOD sense (active mode) */ \
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0, /* Default threshold for backup BOD snese (active mode) */ \
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\
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true /* Enable BUPD enter on BOD, enable BU_VIN pin, release BU reset */ \
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}
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#endif
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/*******************************************************************************
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***************************** PROTOTYPES **********************************
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******************************************************************************/
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/***************************************************************************//**
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* @brief
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* Enter energy mode 1 (EM1).
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******************************************************************************/
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static __INLINE void EMU_EnterEM1(void)
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{
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/* Just enter Cortex-M3 sleep mode */
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SCB->SCR &= ~SCB_SCR_SLEEPDEEP_Msk;
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__WFI();
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}
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void EMU_EnterEM2(bool restore);
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void EMU_EnterEM3(bool restore);
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void EMU_EnterEM4(void);
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void EMU_MemPwrDown(uint32_t blocks);
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void EMU_UpdateOscConfig(void);
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#if defined(_EFM32_GIANT_FAMILY)
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void EMU_EM4Init(EMU_EM4Init_TypeDef *em4init);
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void EMU_BUPDInit(EMU_BUPDInit_TypeDef *budpdInit);
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/***************************************************************************//**
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* @brief
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* Disable BU_VIN support
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* @param[in] enable
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* If true, enables BU_VIN input pin support, if false disables it
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******************************************************************************/
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static __INLINE void EMU_BUPinEnable(bool enable)
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{
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BITBAND_Peripheral(&(EMU->ROUTE), _EMU_ROUTE_BUVINPEN_SHIFT, enable);
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}
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#endif
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/***************************************************************************//**
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* @brief
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* Lock the EMU in order to protect all its registers against unintended
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* modification.
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*
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* @note
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* If locking the EMU registers, they must be unlocked prior to using any
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* EMU API functions modifying EMU registers. An exception to this is the
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* energy mode entering API (EMU_EnterEMn()), which can be used when the
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* EMU registers are locked.
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******************************************************************************/
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static __INLINE void EMU_Lock(void)
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{
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EMU->LOCK = EMU_LOCK_LOCKKEY_LOCK;
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}
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/***************************************************************************//**
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* @brief
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* Unlock the EMU so that writing to locked registers again is possible.
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******************************************************************************/
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static __INLINE void EMU_Unlock(void)
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{
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EMU->LOCK = EMU_LOCK_LOCKKEY_UNLOCK;
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}
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/***************************************************************************//**
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* @brief
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* Block entering EM2 or higher number energy modes.
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******************************************************************************/
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static __INLINE void EMU_EM2Block(void)
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{
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BITBAND_Peripheral(&(EMU->CTRL), _EMU_CTRL_EM2BLOCK_SHIFT, 1U);
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}
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/***************************************************************************//**
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* @brief
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* Unblock entering EM2 or higher number energy modes.
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******************************************************************************/
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static __INLINE void EMU_EM2UnBlock(void)
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{
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BITBAND_Peripheral(&(EMU->CTRL), _EMU_CTRL_EM2BLOCK_SHIFT, 0U);
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}
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/** @} (end addtogroup EMU) */
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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_EMU_H */
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