287 lines
7.1 KiB
C
287 lines
7.1 KiB
C
/*""FILE COMMENT""*******************************************************
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* System Name : Interrupt program for RX62Nxx
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* File Name : Interrupt_TMR.c
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* Version : 1.02
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* Contents : Interrupt handlers for the Timer units
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* Customer :
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* Model :
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* Order :
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* CPU : RX
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* Compiler : RXC
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* OS : Nothing
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* Programmer :
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* Note :
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************************************************************************
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* Copyright, 2011. Renesas Electronics Corporation
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* and Renesas Solutions Corporation
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************************************************************************
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* History : 2011.04.08
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* : Ver 1.02
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* : CS-5 release.
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*""FILE COMMENT END""**************************************************/
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#include "r_pdl_tmr.h"
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#include "r_pdl_definitions.h"
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#include "r_pdl_user_definitions.h"
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/*""FUNC COMMENT""***************************************************
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* Module outline : Timer interrupt processing
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*-------------------------------------------------------------------
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* Declaration : void Interrupt_TMRn_XXX(void)
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*-------------------------------------------------------------------
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* Function : Interrupt processing function for Timer TMR channel n
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*-------------------------------------------------------------------
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* Argument : Nothing
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*-------------------------------------------------------------------
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* Return value : Nothing
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*-------------------------------------------------------------------
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* Input :
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* Output :
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*-------------------------------------------------------------------
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* Use function : R_TmrOverflowFunc[n](), R_TmrCMAFunc[n]() or
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* : R_TmrCMBFunc[n]() as appropriate.
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*-------------------------------------------------------------------
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* Notes :
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*-------------------------------------------------------------------
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* History : 2011.04.08
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* : Ver 1.02
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* : CS-5 release.
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*""FUNC COMMENT END""**********************************************/
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#if FAST_INTC_VECTOR == VECT_TMR0_CMIA0
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__fast_interrupt void Interrupt_TMR0_CMA(void)
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#else
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#pragma vector = VECT_TMR0_CMIA0
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__interrupt void Interrupt_TMR0_CMA(void)
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#endif
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{
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/* Call the user function? */
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if (rpdl_TMR_CMA_callback_func[0] != PDL_NO_FUNC)
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{
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/* Call the user function */
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rpdl_TMR_CMA_callback_func[0]();
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}
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}
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#if FAST_INTC_VECTOR == VECT_TMR0_CMIB0
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__fast_interrupt void Interrupt_TMR0_CMB(void)
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#else
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#pragma vector = VECT_TMR0_CMIB0
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__interrupt void Interrupt_TMR0_CMB(void)
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#endif
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{
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if (rpdl_TMR_one_shot[0] != false)
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{
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/* Channel mode? */
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if (rpdl_TMR_one_shot[0] == CHANNEL_MODE)
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{
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/* Stop the channel 0 clock input */
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TMR0.TCCR.BYTE = 0x00u;
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}
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/* Unit mode? */
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else
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{
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/* Stop the channel 1 clock input */
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TMR1.TCCR.BYTE = 0x00u;
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}
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rpdl_TMR_one_shot[0] = false;
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/* Clear the interrupt request flag (the timer may have set it again) */
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ICU.IR[VECT_TMR0_CMIB0].BIT.IR = 0;
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}
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/* Call the user function? */
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if (rpdl_TMR_CMB_callback_func[0] != PDL_NO_FUNC)
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{
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rpdl_TMR_CMB_callback_func[0]();
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}
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}
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#if FAST_INTC_VECTOR == VECT_TMR0_OVI0
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__fast_interrupt void Interrupt_TMR0_OV(void)
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#else
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#pragma vector = VECT_TMR0_OVI0
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__interrupt void Interrupt_TMR0_OV(void)
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#endif
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{
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/* Call the user function */
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if (rpdl_TMR_Overflow_callback_func[0] != PDL_NO_FUNC)
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{
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rpdl_TMR_Overflow_callback_func[0]();
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}
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}
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#if FAST_INTC_VECTOR == VECT_TMR1_CMIA1
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__fast_interrupt void Interrupt_TMR1_CMA(void)
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#else
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#pragma vector = VECT_TMR1_CMIA1
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__interrupt void Interrupt_TMR1_CMA(void)
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#endif
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{
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/* Call the user function? */
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if (rpdl_TMR_CMA_callback_func[1] != PDL_NO_FUNC)
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{
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/* Call the user function */
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rpdl_TMR_CMA_callback_func[1]();
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}
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}
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#if FAST_INTC_VECTOR == VECT_TMR1_CMIB1
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__fast_interrupt void Interrupt_TMR1_CMB(void)
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#else
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#pragma vector = VECT_TMR1_CMIB1
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__interrupt void Interrupt_TMR1_CMB(void)
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#endif
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{
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if (rpdl_TMR_one_shot[1] != false)
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{
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/* Stop the channel 1 clock input */
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TMR1.TCCR.BYTE = 0x00u;
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rpdl_TMR_one_shot[1] = false;
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/* Clear the interrupt request flag (the timer may have set it again) */
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ICU.IR[VECT_TMR1_CMIB1].BIT.IR = 0u;
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}
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/* Call the user function? */
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if (rpdl_TMR_CMB_callback_func[1] != PDL_NO_FUNC)
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{
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rpdl_TMR_CMB_callback_func[1]();
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}
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}
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#if FAST_INTC_VECTOR == VECT_TMR1_OVI1
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__fast_interrupt void Interrupt_TMR1_OV(void)
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#else
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#pragma vector = VECT_TMR1_OVI1
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__interrupt void Interrupt_TMR1_OV(void)
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#endif
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{
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/* Call the user function */
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if (rpdl_TMR_Overflow_callback_func[1] != PDL_NO_FUNC)
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{
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rpdl_TMR_Overflow_callback_func[1]();
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}
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}
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#if FAST_INTC_VECTOR == VECT_TMR2_CMIA2
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__fast_interrupt void Interrupt_TMR2_CMA(void)
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#else
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#pragma vector = VECT_TMR2_CMIA2
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__interrupt void Interrupt_TMR2_CMA(void)
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#endif
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{
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/* Call the user function? */
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if (rpdl_TMR_CMA_callback_func[2] != PDL_NO_FUNC)
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{
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/* Call the user function */
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rpdl_TMR_CMA_callback_func[2]();
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}
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}
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#if FAST_INTC_VECTOR == VECT_TMR2_CMIB2
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__fast_interrupt void Interrupt_TMR2_CMB(void)
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#else
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#pragma vector = VECT_TMR2_CMIB2
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__interrupt void Interrupt_TMR2_CMB(void)
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#endif
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{
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if (rpdl_TMR_one_shot[2] != false)
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{
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/* Channel mode? */
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if (rpdl_TMR_one_shot[2] == CHANNEL_MODE)
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{
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/* Stop the channel 2 clock input */
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TMR2.TCCR.BYTE = 0x00u;
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}
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/* Unit mode? */
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else
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{
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/* Stop the channel 3 clock input */
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TMR3.TCCR.BYTE = 0x00u;
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}
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rpdl_TMR_one_shot[2] = false;
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/* Clear the interrupt request flag (the timer may have set it again) */
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ICU.IR[VECT_TMR2_CMIB2].BIT.IR = 0;
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}
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/* Call the user function? */
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if (rpdl_TMR_CMB_callback_func[2] != PDL_NO_FUNC)
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{
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rpdl_TMR_CMB_callback_func[2]();
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}
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}
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#if FAST_INTC_VECTOR == VECT_TMR2_OVI2
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__fast_interrupt void Interrupt_TMR2_OV(void)
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#else
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#pragma vector = VECT_TMR2_OVI2
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__interrupt void Interrupt_TMR2_OV(void)
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#endif
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{
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/* Call the user function */
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if (rpdl_TMR_Overflow_callback_func[2] != PDL_NO_FUNC)
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{
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rpdl_TMR_Overflow_callback_func[2]();
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}
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}
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#if FAST_INTC_VECTOR == VECT_TMR3_CMIA3
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__fast_interrupt void Interrupt_TMR3_CMA(void)
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#else
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#pragma vector = VECT_TMR3_CMIA3
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__interrupt void Interrupt_TMR3_CMA(void)
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#endif
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{
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/* Call the user function? */
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if (rpdl_TMR_CMA_callback_func[3] != PDL_NO_FUNC)
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{
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/* Call the user function */
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rpdl_TMR_CMA_callback_func[3]();
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}
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}
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#if FAST_INTC_VECTOR == VECT_TMR3_CMIB3
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__fast_interrupt void Interrupt_TMR3_CMB(void)
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#else
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#pragma vector = VECT_TMR3_CMIB3
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__interrupt void Interrupt_TMR3_CMB(void)
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#endif
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{
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if (rpdl_TMR_one_shot[3] != false)
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{
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/* Stop the channel 3 clock input */
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TMR3.TCCR.BYTE = 0x00u;
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rpdl_TMR_one_shot[3] = false;
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/* Clear the interrupt request flag (the timer may have set it again) */
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ICU.IR[VECT_TMR3_CMIB3].BIT.IR = 0;
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}
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/* Call the user function? */
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if (rpdl_TMR_CMB_callback_func[3] != PDL_NO_FUNC)
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{
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rpdl_TMR_CMB_callback_func[3]();
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}
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}
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#if FAST_INTC_VECTOR == VECT_TMR3_OVI3
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__fast_interrupt void Interrupt_TMR3_OV(void)
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#else
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#pragma vector = VECT_TMR3_OVI3
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__interrupt void Interrupt_TMR3_OV(void)
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#endif
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{
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/* Call the user function */
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if (rpdl_TMR_Overflow_callback_func[3] != PDL_NO_FUNC)
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{
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rpdl_TMR_Overflow_callback_func[3]();
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}
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}
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/* End of file */
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