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// TI File $Revision: /main/11 $
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// Checkin $Date: May 12, 2008 14:30:08 $
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//###########################################################################
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//
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// FILE: DSP2833x_GlobalPrototypes.h
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//
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// TITLE: Global prototypes for DSP2833x Examples
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//
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//###########################################################################
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// $TI Release: $
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// $Release Date: $
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// $Copyright:
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// Copyright (C) 2009-2024 Texas Instruments Incorporated - http://www.ti.com/
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//
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions
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// are met:
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//
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// Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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//
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// Redistributions in binary form must reproduce the above copyright
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// notice, this list of conditions and the following disclaimer in the
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// documentation and/or other materials provided with the
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// distribution.
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//
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// Neither the name of Texas Instruments Incorporated nor the names of
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// its contributors may be used to endorse or promote products derived
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// from this software without specific prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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// $
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//###########################################################################
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#ifndef DSP2833x_GLOBALPROTOTYPES_H
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#define DSP2833x_GLOBALPROTOTYPES_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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// shared global function prototypes
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//
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extern void InitAdc(void);
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extern void DMAInitialize(void);
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//
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// DMA Channel 1
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//
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extern void DMACH1AddrConfig(volatile Uint16 *DMA_Dest,
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volatile Uint16 *DMA_Source);
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extern void DMACH1BurstConfig(Uint16 bsize, int16 srcbstep, int16 desbstep);
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extern void DMACH1TransferConfig(Uint16 tsize, int16 srctstep, int16 deststep);
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extern void DMACH1WrapConfig(Uint16 srcwsize, int16 srcwstep, Uint16 deswsize,
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int16 deswstep);
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extern void DMACH1ModeConfig(Uint16 persel, Uint16 perinte, Uint16 oneshot,
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Uint16 cont, Uint16 synce, Uint16 syncsel,
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Uint16 ovrinte, Uint16 datasize, Uint16 chintmode,
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Uint16 chinte);
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extern void StartDMACH1(void);
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//
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// DMA Channel 2
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//
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extern void DMACH2AddrConfig(volatile Uint16 *DMA_Dest,
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volatile Uint16 *DMA_Source);
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extern void DMACH2BurstConfig(Uint16 bsize, int16 srcbstep, int16 desbstep);
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extern void DMACH2TransferConfig(Uint16 tsize, int16 srctstep, int16 deststep);
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extern void DMACH2WrapConfig(Uint16 srcwsize, int16 srcwstep, Uint16 deswsize,
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int16 deswstep);
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extern void DMACH2ModeConfig(Uint16 persel, Uint16 perinte, Uint16 oneshot,
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Uint16 cont, Uint16 synce, Uint16 syncsel,
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Uint16 ovrinte, Uint16 datasize, Uint16 chintmode,
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Uint16 chinte);
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extern void StartDMACH2(void);
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//
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// DMA Channel 3
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//
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extern void DMACH3AddrConfig(volatile Uint16 *DMA_Dest,
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volatile Uint16 *DMA_Source);
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extern void DMACH3BurstConfig(Uint16 bsize, int16 srcbstep, int16 desbstep);
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extern void DMACH3TransferConfig(Uint16 tsize, int16 srctstep, int16 deststep);
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extern void DMACH3WrapConfig(Uint16 srcwsize, int16 srcwstep, Uint16 deswsize,
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int16 deswstep);
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extern void DMACH3ModeConfig(Uint16 persel, Uint16 perinte, Uint16 oneshot,
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Uint16 cont, Uint16 synce, Uint16 syncsel,
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Uint16 ovrinte, Uint16 datasize, Uint16 chintmode,
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Uint16 chinte);
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extern void StartDMACH3(void);
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//
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// DMA Channel 4
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//
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extern void DMACH4AddrConfig(volatile Uint16 *DMA_Dest,
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volatile Uint16 *DMA_Source);
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extern void DMACH4BurstConfig(Uint16 bsize, int16 srcbstep, int16 desbstep);
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extern void DMACH4TransferConfig(Uint16 tsize, int16 srctstep, int16 deststep);
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extern void DMACH4WrapConfig(Uint16 srcwsize, int16 srcwstep, Uint16 deswsize,
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int16 deswstep);
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extern void DMACH4ModeConfig(Uint16 persel, Uint16 perinte, Uint16 oneshot,
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Uint16 cont, Uint16 synce, Uint16 syncsel,
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Uint16 ovrinte, Uint16 datasize, Uint16 chintmode,
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Uint16 chinte);
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extern void StartDMACH4(void);
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//
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// DMA Channel 5
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//
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extern void DMACH5AddrConfig(volatile Uint16 *DMA_Dest,
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volatile Uint16 *DMA_Source);
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extern void DMACH5BurstConfig(Uint16 bsize, int16 srcbstep, int16 desbstep);
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extern void DMACH5TransferConfig(Uint16 tsize, int16 srctstep, int16 deststep);
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extern void DMACH5WrapConfig(Uint16 srcwsize, int16 srcwstep, Uint16 deswsize,
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int16 deswstep);
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extern void DMACH5ModeConfig(Uint16 persel, Uint16 perinte, Uint16 oneshot,
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Uint16 cont, Uint16 synce, Uint16 syncsel,
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Uint16 ovrinte, Uint16 datasize, Uint16 chintmode,
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Uint16 chinte);
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extern void StartDMACH5(void);
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//
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// DMA Channel 6
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//
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extern void DMACH6AddrConfig(volatile Uint16 *DMA_Dest,
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volatile Uint16 *DMA_Source);
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extern void DMACH6BurstConfig(Uint16 bsize, int16 srcbstep, int16 desbstep);
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extern void DMACH6TransferConfig(Uint16 tsize, int16 srctstep, int16 deststep);
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extern void DMACH6WrapConfig(Uint16 srcwsize, int16 srcwstep, Uint16 deswsize,
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int16 deswstep);
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extern void DMACH6ModeConfig(Uint16 persel, Uint16 perinte, Uint16 oneshot,
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Uint16 cont, Uint16 synce, Uint16 syncsel,
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Uint16 ovrinte, Uint16 datasize, Uint16 chintmode,
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Uint16 chinte);
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extern void StartDMACH6(void);
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extern void InitPeripherals(void);
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#if DSP28_ECANA
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extern void InitECan(void);
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extern void InitECana(void);
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extern void InitECanGpio(void);
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extern void InitECanaGpio(void);
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#endif // endif DSP28_ECANA
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#if DSP28_ECANB
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extern void InitECanb(void);
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extern void InitECanbGpio(void);
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#endif // endif DSP28_ECANB
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extern void InitECap(void);
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extern void InitECapGpio(void);
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extern void InitECap1Gpio(void);
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extern void InitECap2Gpio(void);
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#if DSP28_ECAP3
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extern void InitECap3Gpio(void);
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#endif // endif DSP28_ECAP3
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#if DSP28_ECAP4
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extern void InitECap4Gpio(void);
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#endif // endif DSP28_ECAP4
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#if DSP28_ECAP5
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extern void InitECap5Gpio(void);
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#endif // endif DSP28_ECAP5
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#if DSP28_ECAP6
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extern void InitECap6Gpio(void);
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#endif // endif DSP28_ECAP6
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extern void InitEPwm(void);
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extern void InitEPwmGpio(void);
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extern void InitEPwm1Gpio(void);
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extern void InitEPwm2Gpio(void);
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extern void InitEPwm3Gpio(void);
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#if DSP28_EPWM4
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extern void InitEPwm4Gpio(void);
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#endif // endif DSP28_EPWM4
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#if DSP28_EPWM5
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extern void InitEPwm5Gpio(void);
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#endif // endif DSP28_EPWM5
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#if DSP28_EPWM6
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extern void InitEPwm6Gpio(void);
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#endif // endif DSP28_EPWM6
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#if DSP28_EQEP1
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extern void InitEQep(void);
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extern void InitEQepGpio(void);
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extern void InitEQep1Gpio(void);
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#endif // if DSP28_EQEP1
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#if DSP28_EQEP2
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extern void InitEQep2Gpio(void);
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#endif // endif DSP28_EQEP2
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extern void InitGpio(void);
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extern void InitI2CGpio(void);
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extern void InitMcbsp(void);
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extern void InitMcbspa(void);
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extern void delay_loop(void);
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extern void InitMcbspaGpio(void);
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extern void InitMcbspa8bit(void);
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extern void InitMcbspa12bit(void);
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extern void InitMcbspa16bit(void);
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extern void InitMcbspa20bit(void);
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extern void InitMcbspa24bit(void);
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extern void InitMcbspa32bit(void);
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#if DSP28_MCBSPB
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extern void InitMcbspb(void);
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extern void InitMcbspbGpio(void);
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extern void InitMcbspb8bit(void);
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extern void InitMcbspb12bit(void);
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extern void InitMcbspb16bit(void);
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extern void InitMcbspb20bit(void);
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extern void InitMcbspb24bit(void);
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extern void InitMcbspb32bit(void);
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#endif // endif DSP28_MCBSPB
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extern void InitPieCtrl(void);
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extern void InitPieVectTable(void);
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extern void InitSci(void);
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extern void InitSciGpio(void);
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extern void InitSciaGpio(void);
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#if DSP28_SCIB
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extern void InitScibGpio(void);
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#endif // endif DSP28_SCIB
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#if DSP28_SCIC
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extern void InitScicGpio(void);
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#endif
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extern void InitSpi(void);
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extern void InitSpiGpio(void);
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extern void InitSpiaGpio(void);
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extern void InitSysCtrl(void);
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extern void InitTzGpio(void);
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extern void InitXIntrupt(void);
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extern void InitXintf(void);
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extern void InitXintf16Gpio();
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extern void InitXintf32Gpio();
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extern void InitPll(Uint16 pllcr, Uint16 clkindiv);
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extern void InitPeripheralClocks(void);
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extern void EnableInterrupts(void);
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extern void DSP28x_usDelay(Uint32 Count);
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extern void ADC_cal (void);
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#define KickDog ServiceDog // For compatiblity with previous versions
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extern void ServiceDog(void);
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extern void DisableDog(void);
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extern Uint16 CsmUnlock(void);
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//
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// DSP28_DBGIER.asm
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//
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extern void SetDBGIER(Uint16 dbgier);
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//
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// CAUTION
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// This function MUST be executed out of RAM. Executing it
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// out of OTP/Flash will yield unpredictable results
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//
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extern void InitFlash(void);
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void MemCopy(Uint16 *SourceAddr, Uint16* SourceEndAddr, Uint16* DestAddr);
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//
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// External symbols created by the linker cmd file
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// DSP28 examples will use these to relocate code from one LOAD location
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// in either Flash or XINTF to a different RUN location in internal
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// RAM
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//
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extern Uint16 RamfuncsLoadStart;
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extern Uint16 RamfuncsLoadEnd;
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extern Uint16 RamfuncsRunStart;
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extern Uint16 RamfuncsLoadSize;
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extern Uint16 XintffuncsLoadStart;
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extern Uint16 XintffuncsLoadEnd;
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extern Uint16 XintffuncsRunStart;
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extern Uint16 XintffuncsLoadSize;
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#ifdef __cplusplus
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}
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#endif /* extern "C" */
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#endif // - end of DSP2833x_GLOBALPROTOTYPES_H
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//
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// End of file
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//
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