185 lines
7.5 KiB
C
185 lines
7.5 KiB
C
/*
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* @brief ADC ROM API declarations and functions
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*
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* @note
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* Copyright(C) NXP Semiconductors, 2014
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* All rights reserved.
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*
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* @par
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* Software that is described herein is for illustrative purposes only
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* which provides customers with programming information regarding the
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* LPC products. This software is supplied "AS IS" without any warranties of
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* any kind, and NXP Semiconductors and its licensor disclaim any and
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* all warranties, express or implied, including all implied warranties of
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* merchantability, fitness for a particular purpose and non-infringement of
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* intellectual property rights. NXP Semiconductors assumes no responsibility
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* or liability for the use of the software, conveys no license or rights under any
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* patent, copyright, mask work right, or any other intellectual property rights in
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* or to any products. NXP Semiconductors reserves the right to make changes
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* in the software without notification. NXP Semiconductors also makes no
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* representation or warranty that such application will be suitable for the
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* specified use without further testing or modification.
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*
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* @par
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* Permission to use, copy, modify, and distribute this software and its
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* documentation is hereby granted, under NXP Semiconductors' and its
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* licensor's relevant copyrights in the software, without fee, provided that it
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* is used in conjunction with NXP Semiconductors microcontrollers. This
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* copyright, permission, and disclaimer notice must appear in all copies of
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* this code.
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*/
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#ifndef __ROMAPI_ADC_H_
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#define __ROMAPI_ADC_H_
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#include "hw_adc_rom_api.h"
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#ifdef __cplusplus
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extern "C" {
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#endif
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/** @defgroup ROMAPI_ADC_WRAPPER CHIP: ADC ROM Driver wrapper functions
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* @ingroup ROMAPI_5410X
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* @{
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*/
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/**
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* @brief Get memory size in bytes needed for ADC driver context
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* @return Size in bytes needed for the ROM driver
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*/
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uint32_t ROM_ADC_GetMemSize(void);
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/**
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* @brief Initialize ADC ROM Driver
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* @param pMem : Pointer to memory area for driver context
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* @param baseAddr : Base address of the ADC peripheral
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* @param pUserData : Pointer to User Data
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* @return Pointer to the device context handle or NULL on alignment failure
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* @note Parameter @a pMem must be a pointer to word aligned memory
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* if the pointer is not word aligned (4-Byte) the function returns
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* NULL.
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*/
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ADC_HANDLE_T ROM_ADC_Init(void *pMem, uint32_t baseAddr, void *pUserData);
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/**
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* @brief Configure the ADC peripheral
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* @param hADC : Handle to ADC obtained using ROM_ADC_Init()
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* @param pCfg : Pointer to configuration structure #ADC_CFG_T
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* @return Always returns LPC_OK
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*/
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ErrorCode_t ROM_ADC_Configure(ADC_HANDLE_T hADC, const ADC_CFG_T *pCfg);
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/**
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* @brief Calibrate ADC upon startup or wakeup after powerdown
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* @pre ADC must be Initialized and Configured
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* @param hADC : Handle to ADC obtained using ROM_ADC_Init()
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* @param sysclk_freq : Frequency of the system
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* @return Result of calibrarion operation
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* @retval LPC_OK Calibration is successful
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* @retval ERR_ADC_NO_POWER Unable to powerup ADC
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* @retval ERR_TIME_OUT Calibration operation timed-out
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*/
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ErrorCode_t ROM_ADC_Calibrate(ADC_HANDLE_T hADC, uint32_t sysclk_freq);
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/**
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* @brief Start the ADC peripheral
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* @pre ADC must be properly initialized, Configured and Calibrated
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* @param hADC : Handle to ADC obtained using ROM_ADC_Init()
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* @param seqIndex : Index of the sequence to start must be one of #ADC_SEQ_A or #ADC_SEQ_B
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* @param pBuf : Pointer to buffer (see note below)
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* @param szBuf : Size of buffer (see note below)
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* @return Result of the start operation
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* @retval LPC_OK Successfully started ADC sampling on given sequence or
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* given buffer is queued successfully (when called from #ADC_BUFFER_DONE
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* callback handler)
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* @retval ERR_ADC_INVALID_SEQUENCE Parameter @a seqIndex is not one of #ADC_SEQ_A or #ADC_SEQ_B
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* @retval ERR_BUSY Already a buffer is active and swap buffer is also configured
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* @note The size of the buffer must be M x N where M is the number of channels enabled in
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* sequence @a seqIndex, and N is the number of samples to be converted.
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* The buffer provided by @a pBuf must be of size M x N x sizeof(uint16_t) bytes(for non-DMA).
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* Assume that channels 1, 3, 4, 8 are enabled in sequence @a seqIndex and number of
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* samples to be collected is N, the buffer will be filled with DATA_1[0], DATA_3[0],
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* DATA_4[0], DATA_8[0], ... , DATA_1[N], DATA_3[N], DATA_4[N], DATA_8[N], note
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* that the order in which the channels are enabled does not matter they will always be
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* filled up in ascending order.
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*/
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ErrorCode_t ROM_ADC_StartConversion(ADC_HANDLE_T hADC, ADC_SEQ_INDEX_T seqIndex, void *pBuf, size_t szBuf);
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/**
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* @brief Handler to handle ADC events
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* @param hADC : Handle to ADC obtained using ROM_ADC_Init()
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* @param hEvent : Type of the event
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* @return Event handling results
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* @retval LPC_OK Event successfully handled
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* @retval ERR_ADC_INVALID_SEQUENCE Event is not for the given sequence
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* @retval ERR_FAILED Internal ADC error (Channel enabled but no data available)
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* @retval ERR_ADC_PARAM Invaild event parameter for @a hEvent
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*/
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ErrorCode_t ROM_ADC_Handler(ADC_HANDLE_T hADC, ADC_HEVENT_T hEvent);
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/**
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* @brief Registers a callback function associated with an event
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* @param hADC : Handle to ADC obtained using ROM_ADC_Init()
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* @param cbIndex : Index of the call-back function (Associated with an event)
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* @param pCbFunc : Pointer to callback function
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* @return Success or failure
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* @retval LPC_OK Callback successfully registered
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* @retval ERR_ADC_PARAM Invaild event parameter for @a cbIndex
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*/
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ErrorCode_t ROM_ADC_RegisterCB(ADC_HANDLE_T hADC, ADC_CBINDEX_T cbIndex, void (*pCbFunc)(ADC_HANDLE_T,
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ADC_CBINDEX_T,
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void *));
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/**
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* @brief Setup high and low threshold values for threshold 0, 1
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* @param hADC : Handle to ADC obtained using ROM_ADC_Init()
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* @param valThr0 : Threshold 0 value (bits 31-16 has high value, bits 15-0 has low value)
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* @param valThr1 : Threshold 1 value (bits 31-16 has high value, bits 15-0 has low value)
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* @return Nothing
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*/
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void ROM_ADC_SetThreshold(ADC_HANDLE_T hADC, uint32_t valThr0, uint32_t valThr1);
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/**
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* @brief Configure a single channel
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* @param hADC : Handle to ADC obtained using ROM_ADC_Init()
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* @param chanNum : Channel number
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* @param chanOpts : Options for the channel
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* @return LPC_OK on success, ERR_ADC_PARAM if @a chanNum is invalid
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*/
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ErrorCode_t ROM_ADC_ConfigureCh(ADC_HANDLE_T hADC, uint32_t chanNum, uint32_t chanOpts);
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/**
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* @brief Stop the conversion in progress
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* @param hADC : Handle to ADC obtained using ROM_ADC_Init()
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* @param seqIndex : Sequence that needs to be stopped
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* @return LPC_OK on success, ERR_ADC_INVALID_SEQUENCE if @a seqIndex is invalid
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*/
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ErrorCode_t ROM_ADC_StopConversion(ADC_HANDLE_T hADC, ADC_SEQ_INDEX_T seqIndex);
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/**
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* @brief Generate software trigger for given sequence
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* @param hADC : Handle to ADC obtained using ROM_ADC_Init()
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* @param seqIndex : Sequence that needs to be triggered
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* @return LPC_OK on success, ERR_ADC_INVALID_SEQUENCE if @a seqIndex is invalid
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*/
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ErrorCode_t ROM_ADC_SwTrigger(ADC_HANDLE_T hADC, ADC_SEQ_INDEX_T seqIndex);
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/**
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* @brief Return the ADC ROM driver version
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* @return Driver version number
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* @note The returned driver version number consists of a major and minor
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* number, with the minor number in the lower 8 bits and the major number in
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* the upper 8 bits.
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*/
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uint16_t ROM_ADC_GetDriverVersion(void);
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/**
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* @}
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*/
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#ifdef __cplusplus
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}
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#endif
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#endif /* __ROMAPI_ADC_H_ */
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