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📄 lib_at91sam7x256.h

📁 CANopen 协议栈源码 ,实现基本的CANopen 协议
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//* ----------------------------------------------------------------------------//*         ATMEL Microcontroller Software Support  -  ROUSSET  -//* ----------------------------------------------------------------------------//* DISCLAIMER:  THIS SOFTWARE IS PROVIDED BY ATMEL "AS IS" AND ANY EXPRESS OR//* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF//* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT ARE//* DISCLAIMED. IN NO EVENT SHALL ATMEL BE LIABLE FOR ANY DIRECT, INDIRECT,//* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT//* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA,//* OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF//* LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING//* NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE,//* EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.//* ----------------------------------------------------------------------------//* File Name           : lib_AT91SAM7X256.h//* Object              : AT91SAM7X256 inlined functions//* Generated           : AT91 SW Application Group  11/02/2005 (15:17:24)//*//* CVS Reference       : /lib_dbgu.h/1.1/Thu Aug 25 12:56:22 2005////* CVS Reference       : /lib_pmc_SAM7X.h/1.4/Tue Aug 30 13:00:36 2005////* CVS Reference       : /lib_VREG_6085B.h/1.1/Tue Feb  1 16:20:47 2005////* CVS Reference       : /lib_rstc_6098A.h/1.1/Wed Oct  6 10:39:20 2004////* CVS Reference       : /lib_ssc.h/1.4/Fri Jan 31 12:19:20 2003////* CVS Reference       : /lib_wdtc_6080A.h/1.1/Wed Oct  6 10:38:30 2004////* CVS Reference       : /lib_usart.h/1.5/Thu Nov 21 16:01:54 2002////* CVS Reference       : /lib_spi2.h/1.2/Tue Aug 23 15:37:28 2005////* CVS Reference       : /lib_pitc_6079A.h/1.2/Tue Nov  9 14:43:56 2004////* CVS Reference       : /lib_aic_6075b.h/1.2/Thu Jul  7 07:48:22 2005////* CVS Reference       : /lib_twi.h/1.3/Mon Jul 19 14:27:58 2004////* CVS Reference       : /lib_adc.h/1.6/Fri Oct 17 09:12:38 2003////* CVS Reference       : /lib_rttc_6081A.h/1.1/Wed Oct  6 10:39:38 2004////* CVS Reference       : /lib_udp.h/1.5/Tue Aug 30 12:13:47 2005////* CVS Reference       : /lib_tc_1753b.h/1.1/Fri Jan 31 12:20:02 2003////* CVS Reference       : /lib_MC_SAM7X.h/1.1/Thu Mar 25 15:19:14 2004////* CVS Reference       : /lib_pio.h/1.3/Fri Jan 31 12:18:56 2003////* CVS Reference       : /lib_can_AT91.h/1.5/Tue Aug 23 15:37:07 2005////* CVS Reference       : /lib_PWM_SAM.h/1.3/Thu Jan 22 10:10:50 2004////* CVS Reference       : /lib_pdc.h/1.2/Tue Jul  2 13:29:40 2002////* ----------------------------------------------------------------------------#ifndef lib_AT91SAM7X256_H#define lib_AT91SAM7X256_H/* *****************************************************************************                SOFTWARE API FOR AIC   ***************************************************************************** */#define AT91C_AIC_BRANCH_OPCODE ((void (*) ()) 0xE51FFF20) // ldr, pc, [pc, #-&F20]//*----------------------------------------------------------------------------//* \fn    AT91F_AIC_ConfigureIt//* \brief Interrupt Handler Initialization//*----------------------------------------------------------------------------__inline unsigned int AT91F_AIC_ConfigureIt (	AT91PS_AIC pAic,  // \arg pointer to the AIC registers	unsigned int irq_id,     // \arg interrupt number to initialize	unsigned int priority,   // \arg priority to give to the interrupt	unsigned int src_type,   // \arg activation and sense of activation	void (*newHandler) () ) // \arg address of the interrupt handler{	unsigned int oldHandler;    unsigned int mask ;    oldHandler = pAic->AIC_SVR[irq_id];    mask = 0x1 << irq_id ;    //* Disable the interrupt on the interrupt controller    pAic->AIC_IDCR = mask ;    //* Save the interrupt handler routine pointer and the interrupt priority    pAic->AIC_SVR[irq_id] = (unsigned int) newHandler ;    //* Store the Source Mode Register    pAic->AIC_SMR[irq_id] = src_type | priority  ;    //* Clear the interrupt on the interrupt controller    pAic->AIC_ICCR = mask ;	return oldHandler;}//*----------------------------------------------------------------------------//* \fn    AT91F_AIC_EnableIt//* \brief Enable corresponding IT number//*----------------------------------------------------------------------------__inline void AT91F_AIC_EnableIt (	AT91PS_AIC pAic,      // \arg pointer to the AIC registers	unsigned int irq_id ) // \arg interrupt number to initialize{    //* Enable the interrupt on the interrupt controller    pAic->AIC_IECR = 0x1 << irq_id ;}//*----------------------------------------------------------------------------//* \fn    AT91F_AIC_DisableIt//* \brief Disable corresponding IT number//*----------------------------------------------------------------------------__inline void AT91F_AIC_DisableIt (	AT91PS_AIC pAic,      // \arg pointer to the AIC registers	unsigned int irq_id ) // \arg interrupt number to initialize{    unsigned int mask = 0x1 << irq_id;    //* Disable the interrupt on the interrupt controller    pAic->AIC_IDCR = mask ;    //* Clear the interrupt on the Interrupt Controller ( if one is pending )    pAic->AIC_ICCR = mask ;}//*----------------------------------------------------------------------------//* \fn    AT91F_AIC_ClearIt//* \brief Clear corresponding IT number//*----------------------------------------------------------------------------__inline void AT91F_AIC_ClearIt (	AT91PS_AIC pAic,     // \arg pointer to the AIC registers	unsigned int irq_id) // \arg interrupt number to initialize{    //* Clear the interrupt on the Interrupt Controller ( if one is pending )    pAic->AIC_ICCR = (0x1 << irq_id);}//*----------------------------------------------------------------------------//* \fn    AT91F_AIC_AcknowledgeIt//* \brief Acknowledge corresponding IT number//*----------------------------------------------------------------------------__inline void AT91F_AIC_AcknowledgeIt (	AT91PS_AIC pAic)     // \arg pointer to the AIC registers{    pAic->AIC_EOICR = pAic->AIC_EOICR;}//*----------------------------------------------------------------------------//* \fn    AT91F_AIC_SetExceptionVector//* \brief Configure vector handler//*----------------------------------------------------------------------------__inline unsigned int  AT91F_AIC_SetExceptionVector (	unsigned int *pVector, // \arg pointer to the AIC registers	void (*Handler) () )   // \arg Interrupt Handler{	unsigned int oldVector = *pVector;	if ((unsigned int) Handler == (unsigned int) AT91C_AIC_BRANCH_OPCODE)		*pVector = (unsigned int) AT91C_AIC_BRANCH_OPCODE;	else		*pVector = (((((unsigned int) Handler) - ((unsigned int) pVector) - 0x8) >> 2) & 0x00FFFFFF) | 0xEA000000;	return oldVector;}//*----------------------------------------------------------------------------//* \fn    AT91F_AIC_Trig//* \brief Trig an IT//*----------------------------------------------------------------------------__inline void  AT91F_AIC_Trig (	AT91PS_AIC pAic,     // \arg pointer to the AIC registers	unsigned int irq_id) // \arg interrupt number{	pAic->AIC_ISCR = (0x1 << irq_id) ;}//*----------------------------------------------------------------------------//* \fn    AT91F_AIC_IsActive//* \brief Test if an IT is active//*----------------------------------------------------------------------------__inline unsigned int  AT91F_AIC_IsActive (	AT91PS_AIC pAic,     // \arg pointer to the AIC registers	unsigned int irq_id) // \arg Interrupt Number{	return (pAic->AIC_ISR & (0x1 << irq_id));}//*----------------------------------------------------------------------------//* \fn    AT91F_AIC_IsPending//* \brief Test if an IT is pending//*----------------------------------------------------------------------------__inline unsigned int  AT91F_AIC_IsPending (	AT91PS_AIC pAic,     // \arg pointer to the AIC registers	unsigned int irq_id) // \arg Interrupt Number{	return (pAic->AIC_IPR & (0x1 << irq_id));}//*----------------------------------------------------------------------------//* \fn    AT91F_AIC_Open//* \brief Set exception vectors and AIC registers to default values//*----------------------------------------------------------------------------__inline void AT91F_AIC_Open(	AT91PS_AIC pAic,        // \arg pointer to the AIC registers	void (*IrqHandler) (),  // \arg Default IRQ vector exception	void (*FiqHandler) (),  // \arg Default FIQ vector exception	void (*DefaultHandler)  (), // \arg Default Handler set in ISR	void (*SpuriousHandler) (), // \arg Default Spurious Handler	unsigned int protectMode)   // \arg Debug Control Register{	int i;	// Disable all interrupts and set IVR to the default handler	for (i = 0; i < 32; ++i) {		AT91F_AIC_DisableIt(pAic, i);		AT91F_AIC_ConfigureIt(pAic, i, AT91C_AIC_PRIOR_LOWEST, AT91C_AIC_SRCTYPE_HIGH_LEVEL, DefaultHandler);	}	// Set the IRQ exception vector	AT91F_AIC_SetExceptionVector((unsigned int *) 0x18, IrqHandler);	// Set the Fast Interrupt exception vector	AT91F_AIC_SetExceptionVector((unsigned int *) 0x1C, FiqHandler);	pAic->AIC_SPU = (unsigned int) SpuriousHandler;	pAic->AIC_DCR = protectMode;}/* *****************************************************************************                SOFTWARE API FOR PDC   ***************************************************************************** *///*----------------------------------------------------------------------------//* \fn    AT91F_PDC_SetNextRx//* \brief Set the next receive transfer descriptor//*----------------------------------------------------------------------------__inline void AT91F_PDC_SetNextRx (	AT91PS_PDC pPDC,     // \arg pointer to a PDC controller	char *address,       // \arg address to the next bloc to be received	unsigned int bytes)  // \arg number of bytes to be received{	pPDC->PDC_RNPR = (unsigned int) address;	pPDC->PDC_RNCR = bytes;}//*----------------------------------------------------------------------------//* \fn    AT91F_PDC_SetNextTx//* \brief Set the next transmit transfer descriptor//*----------------------------------------------------------------------------__inline void AT91F_PDC_SetNextTx (	AT91PS_PDC pPDC,       // \arg pointer to a PDC controller	char *address,         // \arg address to the next bloc to be transmitted	unsigned int bytes)    // \arg number of bytes to be transmitted{	pPDC->PDC_TNPR = (unsigned int) address;	pPDC->PDC_TNCR = bytes;}//*----------------------------------------------------------------------------//* \fn    AT91F_PDC_SetRx//* \brief Set the receive transfer descriptor//*----------------------------------------------------------------------------__inline void AT91F_PDC_SetRx (	AT91PS_PDC pPDC,       // \arg pointer to a PDC controller	char *address,         // \arg address to the next bloc to be received	unsigned int bytes)    // \arg number of bytes to be received{	pPDC->PDC_RPR = (unsigned int) address;	pPDC->PDC_RCR = bytes;}//*----------------------------------------------------------------------------//* \fn    AT91F_PDC_SetTx//* \brief Set the transmit transfer descriptor//*----------------------------------------------------------------------------__inline void AT91F_PDC_SetTx (	AT91PS_PDC pPDC,       // \arg pointer to a PDC controller	char *address,         // \arg address to the next bloc to be transmitted	unsigned int bytes)    // \arg number of bytes to be transmitted{	pPDC->PDC_TPR = (unsigned int) address;	pPDC->PDC_TCR = bytes;}//*----------------------------------------------------------------------------//* \fn    AT91F_PDC_EnableTx//* \brief Enable transmit//*----------------------------------------------------------------------------__inline void AT91F_PDC_EnableTx (	AT91PS_PDC pPDC )       // \arg pointer to a PDC controller{	pPDC->PDC_PTCR = AT91C_PDC_TXTEN;}//*----------------------------------------------------------------------------//* \fn    AT91F_PDC_EnableRx//* \brief Enable receive//*----------------------------------------------------------------------------__inline void AT91F_PDC_EnableRx (	AT91PS_PDC pPDC )       // \arg pointer to a PDC controller{	pPDC->PDC_PTCR = AT91C_PDC_RXTEN;}//*----------------------------------------------------------------------------//* \fn    AT91F_PDC_DisableTx//* \brief Disable transmit//*----------------------------------------------------------------------------__inline void AT91F_PDC_DisableTx (	AT91PS_PDC pPDC )       // \arg pointer to a PDC controller{	pPDC->PDC_PTCR = AT91C_PDC_TXTDIS;}//*----------------------------------------------------------------------------//* \fn    AT91F_PDC_DisableRx//* \brief Disable receive//*----------------------------------------------------------------------------__inline void AT91F_PDC_DisableRx (	AT91PS_PDC pPDC )       // \arg pointer to a PDC controller{	pPDC->PDC_PTCR = AT91C_PDC_RXTDIS;}//*----------------------------------------------------------------------------//* \fn    AT91F_PDC_IsTxEmpty//* \brief Test if the current transfer descriptor has been sent//*----------------------------------------------------------------------------__inline int AT91F_PDC_IsTxEmpty ( // \return return 1 if transfer is complete	AT91PS_PDC pPDC )       // \arg pointer to a PDC controller{	return !(pPDC->PDC_TCR);}//*----------------------------------------------------------------------------//* \fn    AT91F_PDC_IsNextTxEmpty//* \brief Test if the next transfer descriptor has been moved to the current td//*----------------------------------------------------------------------------__inline int AT91F_PDC_IsNextTxEmpty ( // \return return 1 if transfer is complete	AT91PS_PDC pPDC )       // \arg pointer to a PDC controller{	return !(pPDC->PDC_TNCR);}//*----------------------------------------------------------------------------//* \fn    AT91F_PDC_IsRxEmpty//* \brief Test if the current transfer descriptor has been filled//*----------------------------------------------------------------------------__inline int AT91F_PDC_IsRxEmpty ( // \return return 1 if transfer is complete	AT91PS_PDC pPDC )       // \arg pointer to a PDC controller{	return !(pPDC->PDC_RCR);}//*----------------------------------------------------------------------------//* \fn    AT91F_PDC_IsNextRxEmpty

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