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ring_buffer.h
Go to the documentation of this file.
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/*
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* @brief Common ring buffer support 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 __RING_BUFFER_H_
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#define __RING_BUFFER_H_
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#include "
lpc_types.h
"
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typedef
struct
{
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void
*
data
;
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int
count
;
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int
itemSz
;
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uint32_t
head
;
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uint32_t
tail
;
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uint32_t
valid
;
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}
RINGBUFF_T
;
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/* Ring buffer validity signature */
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#define RB_SIGNATURE 0x51DEF00D
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#define RB_VHEAD(rb) (*(volatile uint32_t *) &(rb)->head)
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#define RB_VTAIL(rb) (*(volatile uint32_t *) &(rb)->tail)
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#define RingBuffer_IsValid(rb) ((rb)->valid == RB_SIGNATURE)
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int
RingBuffer_Init
(
RINGBUFF_T
*RingBuff,
void
*
buffer
,
int
itemSize,
int
count);
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STATIC
INLINE
void
RingBuffer_Flush
(
RINGBUFF_T
*RingBuff)
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{
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RingBuff->
head
= RingBuff->
tail
= 0;
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}
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STATIC
INLINE
int
RingBuffer_GetSize
(
RINGBUFF_T
*RingBuff)
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{
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return
RingBuff->
count
;
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}
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STATIC
INLINE
int
RingBuffer_GetCount
(
RINGBUFF_T
*RingBuff)
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{
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return
RB_VHEAD
(RingBuff) -
RB_VTAIL
(RingBuff);
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}
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STATIC
INLINE
int
RingBuffer_GetFree
(
RINGBUFF_T
*RingBuff)
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{
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return
RingBuff->
count
-
RingBuffer_GetCount
(RingBuff);
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}
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STATIC
INLINE
int
RingBuffer_IsFull
(
RINGBUFF_T
*RingBuff)
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{
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return
(
RingBuffer_GetCount
(RingBuff) >= RingBuff->
count
);
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}
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STATIC
INLINE
int
RingBuffer_IsEmpty
(
RINGBUFF_T
*RingBuff)
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{
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return
RB_VHEAD
(RingBuff) ==
RB_VTAIL
(RingBuff);
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}
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int
RingBuffer_Insert
(
RINGBUFF_T
*RingBuff,
const
void
*data);
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int
RingBuffer_InsertMult
(
RINGBUFF_T
*RingBuff,
const
void
*data,
int
num);
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int
RingBuffer_Pop
(
RINGBUFF_T
*RingBuff,
void
*data);
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int
RingBuffer_PopMult
(
RINGBUFF_T
*RingBuff,
void
*data,
int
num);
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#endif
/* __RING_BUFFER_H_ */
software
lpc_core
lpc_chip
chip_common
ring_buffer.h
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