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spi_001.h
Go to the documentation of this file.
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/*
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* @brief SPI registers and control functions
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*
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* @note
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* Copyright(C) NXP Semiconductors, 2012
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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 __SPI_001_H_
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#define __SPI_001_H_
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#include "sys_config.h"
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#include "cmsis.h"
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#ifdef __cplusplus
39
extern
"C"
{
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#endif
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typedef
struct
{
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__IO
uint32_t
CR
;
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__I
uint32_t
SR
;
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__IO
uint32_t
DR
;
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__IO
uint32_t
CCR
;
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__I
uint32_t
RESERVED0[3];
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__IO
uint32_t
INT
;
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}
IP_SPI_001_T
;
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/*
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* Macro defines for SPI Control register
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*/
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/* SPI CFG Register BitMask */
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#define SPI_CR_BITMASK ((uint32_t) 0xFFC)
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#define SPI_CR_BIT_EN ((uint32_t) (1 << 2))
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#define SPI_CR_BITS_MASK ((uint32_t) 0xF00)
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#define SPI_CR_BITS(n) ((uint32_t) ((n << 8) & 0xF00))
/* n is in range 8-16 */
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#define SPI_CR_CPHA_FIRST ((uint32_t) (0))
/*Capture data on the first edge, Change data on the following edge*/
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#define SPI_CR_CPHA_SECOND ((uint32_t) (1 << 3))
/*Change data on the first edge, Capture data on the following edge*/
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#define SPI_CR_CPOL_LO ((uint32_t) (0))
/* The rest state of the clock (between frames) is low.*/
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#define SPI_CR_CPOL_HI ((uint32_t) (1 << 4))
/* The rest state of the clock (between frames) is high.*/
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#define SPI_CR_SLAVE_EN ((uint32_t) 0)
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#define SPI_CR_MASTER_EN ((uint32_t) (1 << 5))
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#define SPI_CR_MSB_FIRST_EN ((uint32_t) 0)
/*Data will be transmitted and received in standard order (MSB first).*/
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#define SPI_CR_LSB_FIRST_EN ((uint32_t) (1 << 6))
/*Data will be transmitted and received in reverse order (LSB first).*/
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#define SPI_CR_INT_EN ((uint32_t) (1 << 7))
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/*
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* Macro defines for SPI Status register
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*/
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#define SPI_SR_BITMASK ((uint32_t) 0xF8)
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#define SPI_SR_ABRT ((uint32_t) (1 << 3))
/* When 1, this bit indicates that a slave abort has occurred. */
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/* Mode fault Flag */
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#define SPI_SR_MODF ((uint32_t) (1 << 4))
/* when 1, this bit indicates that a Mode fault error has occurred. */
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#define SPI_SR_ROVR ((uint32_t) (1 << 5))
/* When 1, this bit indicates that a read overrun has occurred. */
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#define SPI_SR_WCOL ((uint32_t) (1 << 6))
/* When 1, this bit indicates that a write collision has occurred.. */
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#define SPI_SR_SPIF ((uint32_t) (1 << 7))
/* When 1, this bit indicates when a SPI data transfer is complete.. */
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#define SPI_SR_ERROR (SPI_SR_ABRT | SPI_SR_MODF | SPI_SR_ROVR | SPI_SR_WCOL)
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/*
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* Macro defines for SPI Test Control Register register
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*/
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/*Enable SPI Test Mode */
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#define SPI_TCR_TEST(n) ((uint32_t) ((n & 0x3F) << 1))
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/*
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* Macro defines for SPI Interrupt register
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*/
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#define SPI_INT_SPIF ((uint32_t) (1 << 0))
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#define SPI_DR_DATA(n) ((uint32_t) ((n) & 0xFFFF))
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typedef
enum
IP_SPI_MODE {
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SPI_MODE_MASTER
=
SPI_CR_MASTER_EN
,
/* Master Mode */
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SPI_MODE_SLAVE
=
SPI_CR_SLAVE_EN
,
/* Slave Mode */
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}
IP_SPI_MODE_T
;
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typedef
enum
IP_SPI_CLOCK_MODE {
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SPI_CLOCK_CPHA0_CPOL0
=
SPI_CR_CPOL_LO
|
SPI_CR_CPHA_FIRST
,
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SPI_CLOCK_CPHA0_CPOL1
=
SPI_CR_CPOL_HI
|
SPI_CR_CPHA_FIRST
,
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SPI_CLOCK_CPHA1_CPOL0
=
SPI_CR_CPOL_LO
|
SPI_CR_CPHA_SECOND
,
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SPI_CLOCK_CPHA1_CPOL1
=
SPI_CR_CPOL_HI
|
SPI_CR_CPHA_SECOND
,
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SPI_CLOCK_MODE0
=
SPI_CLOCK_CPHA0_CPOL0
,
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SPI_CLOCK_MODE1
=
SPI_CLOCK_CPHA1_CPOL0
,
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SPI_CLOCK_MODE2
=
SPI_CLOCK_CPHA0_CPOL1
,
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SPI_CLOCK_MODE3
=
SPI_CLOCK_CPHA1_CPOL1
,
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}
IP_SPI_CLOCK_MODE_T
;
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typedef
enum
IP_SPI_DATA_ORDER {
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SPI_DATA_MSB_FIRST
=
SPI_CR_MSB_FIRST_EN
,
/* Standard Order */
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SPI_DATA_LSB_FIRST
=
SPI_CR_LSB_FIRST_EN
,
/* Reverse Order */
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}
IP_SPI_DATA_ORDER_T
;
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/*
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* @brief Number of bits per frame
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*/
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typedef
enum
IP_SPI_BITS {
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SPI_BITS_8
=
SPI_CR_BITS
(8),
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SPI_BITS_9
=
SPI_CR_BITS
(9),
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SPI_BITS_10
=
SPI_CR_BITS
(10),
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SPI_BITS_11
=
SPI_CR_BITS
(11),
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SPI_BITS_12
=
SPI_CR_BITS
(12),
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SPI_BITS_13
=
SPI_CR_BITS
(13),
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SPI_BITS_14
=
SPI_CR_BITS
(14),
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SPI_BITS_15
=
SPI_CR_BITS
(15),
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SPI_BITS_16
=
SPI_CR_BITS
(16),
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}
IP_SPI_BITS_T
;
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STATIC
INLINE
uint32_t
IP_SPI_GetStatus
(
IP_SPI_001_T
*pSPI)
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{
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return
pSPI->
SR
;
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}
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STATIC
INLINE
void
IP_SPI_IntEnable
(
IP_SPI_001_T
*pSPI)
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{
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pSPI->
CR
|=
SPI_CR_INT_EN
;
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}
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STATIC
INLINE
void
IP_SPI_IntDisable
(
IP_SPI_001_T
*pSPI)
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{
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pSPI->
CR
&= ~
SPI_CR_INT_EN
;
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}
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STATIC
INLINE
uint32_t
IP_SPI_GetIntStatus
(
IP_SPI_001_T
*pSPI)
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{
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return
pSPI->
INT
;
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}
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STATIC
INLINE
void
IP_SPI_ClearIntStatus
(
IP_SPI_001_T
*pSPI,
uint32_t
mask)
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{
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pSPI->
INT
= mask;
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}
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STATIC
INLINE
void
IP_SPI_SendFrame
(
IP_SPI_001_T
*pSPI, uint16_t data)
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{
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pSPI->
DR
=
SPI_DR_DATA
(data);
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}
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STATIC
INLINE
uint16_t
IP_SPI_ReceiveFrame
(
IP_SPI_001_T
*pSPI)
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{
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return
SPI_DR_DATA
(pSPI->
DR
);
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}
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STATIC
INLINE
void
IP_SPI_SetClockCounter
(
IP_SPI_001_T
*pSPI,
uint32_t
counter
)
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{
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pSPI->
CCR
=
counter
;
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}
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STATIC
INLINE
void
IP_SPI_SetFormat
(
IP_SPI_001_T
*pSPI,
IP_SPI_BITS_T
bits,
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IP_SPI_CLOCK_MODE_T
clockMode,
IP_SPI_DATA_ORDER_T
order)
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{
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pSPI->
CR
= (pSPI->
CR
& (~0xF1C)) |
SPI_CR_BIT_EN
| bits | clockMode | order;
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}
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STATIC
INLINE
IP_SPI_BITS_T
IP_SPI_GetDataSize
(
IP_SPI_001_T
*pSPI)
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{
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return
(pSPI->
CR
&
SPI_CR_BIT_EN
) ? ((
IP_SPI_BITS_T
) (pSPI->
CR
&
SPI_CR_BITS_MASK
)) :
SPI_BITS_8
;
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}
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STATIC
INLINE
IP_SPI_CLOCK_MODE_T
IP_SPI_GetClockMode
(
IP_SPI_001_T
*pSPI)
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{
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return
(
IP_SPI_CLOCK_MODE_T
) (pSPI->
CR
& (3 << 3));
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}
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STATIC
INLINE
void
IP_SPI_SetMode
(
IP_SPI_001_T
*pSPI,
IP_SPI_MODE_T
mode)
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{
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pSPI->
CR
= (pSPI->
CR
& (~(1 << 5))) | mode;
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}
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STATIC
INLINE
IP_SPI_MODE_T
IP_SPI_GetMode
(
IP_SPI_001_T
*pSPI)
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{
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return
(
IP_SPI_MODE_T
) (pSPI->
CR
& (1 << 5));
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}
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#ifdef __cplusplus
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}
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#endif
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#endif
/* __SPI_001_H_ */
software
lpc_core
lpc_ip
spi_001.h
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