/****************************************************************************** * Shanghai ChipON Micro-Electronic Co.,Ltd * ****************************************************************************** * $File Name$ : KF32A156_gtim.h * * $Author$ : ChipON AE/FAE Group * * $Data$ : 2021-07-08 * * $Chip Version : A02 * * $AutoSAR Version : V2.0 * * $Description$ : This file contains the headers of the GTIM * * peripherals. * ****************************************************************************** * Copyright (C) by Shanghai ChipON Micro-Electronic Co.,Ltd * * All rights reserved. * * * * This software is copyright protected and proprietary to * * Shanghai ChipON Micro-Electronic Co.,Ltd. * ****************************************************************************** * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ * * REVISON HISTORY * * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ * * Data Version Author Description * * ~~~~~~~~~~ ~~~~~~~~ ~~~~~~~~~~~~ ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ * * * * * * * *****************************************************************************/ #ifndef KF32A156_GTIM_H_ #define KF32A156_GTIM_H_ #include "KF32A156.h" /* 定时器名称校验 */ #define CHECK_GPTIM_PERIPH(PERIPH) (((PERIPH) == T0_SFR) \ || ((PERIPH) == T1_SFR) \ || ((PERIPH) == T2_SFR) \ || ((PERIPH) == T3_SFR) \ || ((PERIPH) == T4_SFR) \ || ((PERIPH) == T18_SFR) \ || ((PERIPH) == T19_SFR) \ || ((PERIPH) == T21_SFR)) /*** 通用定时器(GPTIM)、CCP相关定义 */ /** * 描述 通用定时器(GPTIM)配置信息结构体 */ typedef struct { uint32_t m_Counter; /* 定时器计数值,取值32位数据。 */ uint32_t m_Period; /* 定时器周期值,取值32位数据。 */ uint32_t m_Prescaler; /* 定时器预分频值,取值32位数据。 */ uint16_t m_CounterMode; /* 定时器计数模式, 取值为宏“GPTIM定时器计数模式”中的一个 */ uint16_t m_Clock; /* 定时器工作时钟, 取值为宏“GPTIM定时器工作时钟”中的一个 */ uint16_t m_WorkMode; /* 定时/计数模式选择 取值为宏“GPTIM定时/计数模式选择”中的一个 */ uint16_t m_MasterMode; /* 主模式选择, 取值为宏“GPTIM主模式选择”中的一个 */ uint16_t m_SlaveMode; /* 从模式选择, 取值为宏“GPTIM从模式选择”中的一个 */ uint16_t m_EXPulseSync; /* Tx计数模式外部触发脉冲输入同步控制, 取值为宏“GPTIM计数模式外部触发脉冲输入同步控制”中的一个 */ uint16_t m_MasterSlaveSync; /* 主从模式同步控制, 取值为TRUE或FALSE */ } GPTIM_InitTypeDef; /* T0/T1/T2/T3/T4/T18/T19/T20/T21 */ /** * 描述 CCP比较模式配置信息结构体 */ typedef struct { uint16_t m_Channel; /* 通道编号, 取值范围满足“CCP通道”的宏。 */ uint16_t m_CompareMode; /* 捕捉/比较器模式选择, 取值范围满足宏CHECK_CCP_CMP_MODE的约定条件。 */ uint32_t m_CompareValue; /* 与TX比较的值, 取值范围为32位数据。 */ } CCP_CompareInitTypeDef; /** * 描述 CCP捕捉模式配置信息结构体 */ typedef struct { uint16_t m_Channel; /* 通道编号, 取值范围满足“CCP通道”的宏。 */ uint16_t m_CaptureMode; /* 捕捉/比较器模式选择, 取值范围满足宏CHECK_CCP_CAP_MODE的约定条件。 */ FunctionalState m_PWMInput; /* PWM测量模式, 取值为TRUE或FALSE。 */ FunctionalState m_XORMode; /* 输入异或模式, 取值为TRUE或FALSE。 */ FunctionalState m_ChannelCompare4; /* 比较器的输出触发捕捉,只有通道4可以配置, 取值为TRUE或FALSE。 */ } CCP_CaptureInitTypeDef; /** * 描述 CCP PWM模式配置信息结构体 */ typedef struct { uint16_t m_Channel; /* 通道编号, 取值范围满足“CCP通道”的宏。 */ uint16_t m_PwmMode; /* 捕捉/比较器模式选择, 取值范围满足宏CHECK_CCP_PWM_MODE的约定条件。 */ uint32_t m_DutyRatio; /* 占空比, 取值范围为32位数据。 */ uint32_t m_OutputCtl; /* 通道输出控制, 取值为“CCP通道输出控制”中的一个。 */ uint32_t m_SinglePWM; /* 单脉冲输出模式, 取值为TRUE或FALSE。 */ uint32_t m_CloseTimer; /* 单脉冲输出模式选择, 取值为TRUE或FALSE。 */ } CCP_PWMInitTypeDef; /** * GPTIM定时器计数模式 */ #define GPTIM_COUNT_DOWN_UF ((uint32_t)0x0 << GPTIM_CTL1_TXCMS0_POS) #define GPTIM_COUNT_UP_OF ((uint32_t)0x4 << GPTIM_CTL1_TXCMS0_POS) #define GPTIM_COUNT_UP_DOWN_OF ((uint32_t)0x1 << GPTIM_CTL1_TXCMS0_POS) #define GPTIM_COUNT_UP_DOWN_UF ((uint32_t)0x2 << GPTIM_CTL1_TXCMS0_POS) #define GPTIM_COUNT_UP_DOWN_OUF ((uint32_t)0x3 << GPTIM_CTL1_TXCMS0_POS) #define CHECK_GPTIM_COUNTER_MODE(MODE) (((MODE) == GPTIM_COUNT_DOWN_UF) \ || ((MODE) == GPTIM_COUNT_UP_OF) \ || ((MODE) == GPTIM_COUNT_UP_DOWN_OF) \ || ((MODE) == GPTIM_COUNT_UP_DOWN_UF) \ || ((MODE) == GPTIM_COUNT_UP_DOWN_OUF)) /** * GPTIM定时器工作时钟 */ #define GPTIM_SCLK ((uint32_t)0x0 << GPTIM_CTL1_TXCLK0_POS) #define GPTIM_HFCLK ((uint32_t)0x1 << GPTIM_CTL1_TXCLK0_POS) #define GPTIM_LFCLK ((uint32_t)0x2 << GPTIM_CTL1_TXCLK0_POS) #define GPTIM_T0_INTLF ((uint32_t)0x3 << GPTIM_CTL1_TXCLK0_POS) #define CHECK_GPTIM_CLOCK_CONFIG(CLK) (((CLK) == GPTIM_SCLK) \ || ((CLK) == GPTIM_HFCLK) \ || ((CLK) == GPTIM_LFCLK) \ || ((CLK) == GPTIM_T0_INTLF)) /** * GPTIM定时/计数模式选择 */ #define GPTIM_TIMER_MODE ((uint32_t)0 << GPTIM_CTL1_TXCS_POS) #define GPTIM_COUNTER_MODE ((uint32_t)1 << GPTIM_CTL1_TXCS_POS) #define CHECK_GPTIM_WORK_MODE(MODE) (((MODE) == GPTIM_TIMER_MODE) \ || ((MODE) == GPTIM_COUNTER_MODE)) /** * GPTIM主模式选择 */ #define GPTIM_MASTER_TXUR_SIGNAL ((uint32_t)0 << GPTIM_CTL2_TXMMS0_POS) #define GPTIM_MASTER_TXEN_SIGNAL ((uint32_t)1 << GPTIM_CTL2_TXMMS0_POS) #define GPTIM_MASTER_TXIF_SIGNAL ((uint32_t)2 << GPTIM_CTL2_TXMMS0_POS) #define GPTIM_MASTER_CCPXCH1IF_SIGNAL ((uint32_t)3 << GPTIM_CTL2_TXMMS0_POS) #define GPTIM_MASTER_CCPXCH1_SIGNAL ((uint32_t)4 << GPTIM_CTL2_TXMMS0_POS) #define GPTIM_MASTER_CCPXCH2_SIGNAL ((uint32_t)5 << GPTIM_CTL2_TXMMS0_POS) #define GPTIM_MASTER_CCPXCH3_SIGNAL ((uint32_t)6 << GPTIM_CTL2_TXMMS0_POS) #define GPTIM_MASTER_CCPXCH4_SIGNAL ((uint32_t)7 << GPTIM_CTL2_TXMMS0_POS) #define CHECK_GPTIM_MASTER_MODE(MODE) (((MODE) == GPTIM_MASTER_TXUR_SIGNAL) \ || ((MODE) == GPTIM_MASTER_TXEN_SIGNAL) \ || ((MODE) == GPTIM_MASTER_TXIF_SIGNAL) \ || ((MODE) == GPTIM_MASTER_CCPXCH1IF_SIGNAL) \ || ((MODE) == GPTIM_MASTER_CCPXCH1_SIGNAL) \ || ((MODE) == GPTIM_MASTER_CCPXCH2_SIGNAL) \ || ((MODE) == GPTIM_MASTER_CCPXCH3_SIGNAL) \ || ((MODE) == GPTIM_MASTER_CCPXCH4_SIGNAL)) /** * GPTIM从模式选择 */ #define GPTIM_SLAVE_FORBIDDEN_MODE ((uint32_t)0 << GPTIM_CTL2_TXSMS0_POS) #define GPTIM_SLAVE_TRIGGER_MODE ((uint32_t)4 << GPTIM_CTL2_TXSMS0_POS) #define GPTIM_SLAVE_GATED_MODE ((uint32_t)5 << GPTIM_CTL2_TXSMS0_POS) #define GPTIM_SLAVE_RESET_MODE ((uint32_t)6 << GPTIM_CTL2_TXSMS0_POS) #define GPTIM_SLAVE_COUNTER_MODE ((uint32_t)7 << GPTIM_CTL2_TXSMS0_POS) #define CHECK_GPTIM_SLAVE_MODE(MODE) (((MODE) == GPTIM_SLAVE_FORBIDDEN_MODE) \ || ((MODE) == GPTIM_SLAVE_TRIGGER_MODE) \ || ((MODE) == GPTIM_SLAVE_GATED_MODE) \ || ((MODE) == GPTIM_SLAVE_RESET_MODE) \ || ((MODE) == GPTIM_SLAVE_COUNTER_MODE)) /** * GPTIM计数模式外部触发脉冲输入同步控制 */ #define GPTIM_EX_SYNC_MODE ((uint32_t)0x0 << GPTIM_CTL1_TXSY_POS) #define GPTIM_NO_SYNC_MODE ((uint32_t)0x1 << GPTIM_CTL1_TXSY_POS) #define CHECK_GPTIM_SYNC_MODE(MODE) (((MODE) == GPTIM_EX_SYNC_MODE) \ || ((MODE) == GPTIM_NO_SYNC_MODE)) /** * GPTIM触发选择 */ #define GPTIM_TRIGGER_T1 ((uint32_t)0x0 << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_T2 ((uint32_t)0x1 << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_T3 ((uint32_t)0x2 << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_T4 ((uint32_t)0x3 << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_T5 ((uint32_t)0x4 << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_T9 ((uint32_t)0x5 << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_T14 ((uint32_t)0x6 << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_T15 ((uint32_t)0x7 << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_T18 ((uint32_t)0x8 << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_T19 ((uint32_t)0x9 << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_T20 ((uint32_t)0xA << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_T21 ((uint32_t)0xB << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_TXCK ((uint32_t)0xC << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_CCPXCH1 ((uint32_t)0xD << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_CCPXCH2 ((uint32_t)0xE << GPTIM_CTL2_TXTS0_POS) #define GPTIM_TRIGGER_CCPXCH3 ((uint32_t)0xF << GPTIM_CTL2_TXTS0_POS) #define CHECK_GPTIM_TRIGGER_MODE(MODE) (((uint32_t)(MODE) & (~GPTIM_CTL2_TXTS)) == 0) /** * CCP通道 */ #define CCP_CHANNEL_1 ((uint16_t)0) #define CCP_CHANNEL_2 ((uint16_t)1) #define CCP_CHANNEL_3 ((uint16_t)2) #define CCP_CHANNEL_4 ((uint16_t)3) #define CHECK_CCP_CHANNEL(CHANNEL) (((CHANNEL) >> 2) == 0) /** * CCP通道模式选择 */ #define CCP_MODE_RST ((uint16_t)0x0) #define CCP_CMP_TOGGLE_LEVEL ((uint16_t)0x2) #define CCP_CAP_FALLING_EDGE ((uint16_t)0x4) #define CCP_CAP_RISING_EDGE ((uint16_t)0x5) #define CCP_CAP_4TH_RISING_EDGE ((uint16_t)0x6) #define CCP_CAP_16TH_RISING_EDGE ((uint16_t)0x7) #define CCP_CMP_ACTIVE_LEVEL ((uint16_t)0x8) #define CCP_CMP_INACTIVE_LEVEL ((uint16_t)0x9) #define CCP_CMP_SOFT_INT ((uint16_t)0xA) #define CCP_CMP_SPECIAL_EVENT ((uint16_t)0xB) #define CCP_PWM_MODE ((uint16_t)0xC) #define CHECK_CCP_MODE(MODE) (((MODE) == CCP_MODE_RST) \ || ((MODE) == CCP_CMP_TOGGLE_LEVEL) \ || ((MODE) == CCP_CAP_RISING_EDGE) \ || ((MODE) == CCP_CAP_FALLING_EDGE) \ || ((MODE) == CCP_CAP_4TH_RISING_EDGE) \ || ((MODE) == CCP_CAP_16TH_RISING_EDGE) \ || ((MODE) == CCP_CMP_ACTIVE_LEVEL) \ || ((MODE) == CCP_CMP_INACTIVE_LEVEL) \ || ((MODE) == CCP_CMP_SOFT_INT) \ || ((MODE) == CCP_CMP_SPECIAL_EVENT) \ || ((MODE) == CCP_PWM_MODE)) #define CHECK_CCP_CAP_MODE(MODE) (((MODE) == CCP_MODE_RST) \ || ((MODE) == CCP_CAP_RISING_EDGE) \ || ((MODE) == CCP_CAP_FALLING_EDGE) \ || ((MODE) == CCP_CAP_4TH_RISING_EDGE) \ || ((MODE) == CCP_CAP_16TH_RISING_EDGE)) #define CHECK_CCP_CMP_MODE(MODE) (((MODE) == CCP_MODE_RST) \ || ((MODE) == CCP_CMP_TOGGLE_LEVEL) \ || ((MODE) == CCP_CMP_ACTIVE_LEVEL) \ || ((MODE) == CCP_CMP_INACTIVE_LEVEL) \ || ((MODE) == CCP_CMP_SOFT_INT) \ || ((MODE) == CCP_CMP_SPECIAL_EVENT)) #define CHECK_CCP_PWM_MODE(MODE) (((MODE) == CCP_MODE_RST) \ || ((MODE) == CCP_PWM_MODE)) /** * CCP比较器检测选择 */ #define CCP_COMPARE_SELECT_1 ((uint32_t)0x0 << CCP_CTL2_PXASS0_POS) #define CCP_COMPARE_SELECT_2 ((uint32_t)0x1 << CCP_CTL2_PXASS0_POS) #define CCP_COMPARE_SELECT_3 ((uint32_t)0x2 << CCP_CTL2_PXASS0_POS) #define CHECK_CCP_COMPARE_SELECT(ASS) (((ASS) == CCP_COMPARE_SELECT_1) \ || ((ASS) == CCP_COMPARE_SELECT_2) \ || ((ASS) == CCP_COMPARE_SELECT_3)) /** * CCP通道输出控制 */ #define CCP_CHANNEL_OUTPUT_PWM_ACTIVE ((uint32_t)0x0) #define CCP_CHANNEL_OUTPUT_PWM_INACTIVE ((uint32_t)0x1) #define CCP_CHANNEL_OUTPUT_INACTIVE ((uint32_t)0x2) #define CCP_CHANNEL_OUTPUT_ACTIVE ((uint32_t)0x3) #define CHECK_CCP_CHANNEL_OUTPUT(CTL) (((CTL) >> 2) == 0) /** * 通用定时器、CCP函数定义 */ /* 通用定时器(GPTIM)初始化及配置函数定义 *********************************/ void GPTIM_Reset (GPTIM_SFRmap* GPTIMx); void GPTIM_Configuration(GPTIM_SFRmap* GPTIMx, GPTIM_InitTypeDef* gptimInitStruct); void GPTIM_Struct_Init (GPTIM_InitTypeDef* gptimInitStruct); void GPTIM_Cmd (GPTIM_SFRmap* GPTIMx, FunctionalState NewState); void GPTIM_Set_Counter (GPTIM_SFRmap* GPTIMx, uint32_t Counter); void GPTIM_Set_Period (GPTIM_SFRmap* GPTIMx, uint32_t Period); void GPTIM_Set_Prescaler (GPTIM_SFRmap* GPTIMx, uint32_t Prescaler); void GPTIM_Counter_Mode_Config (GPTIM_SFRmap* GPTIMx, uint32_t CounterMode); void GPTIM_Clock_Config (GPTIM_SFRmap* GPTIMx, uint32_t NewClock); void GPTIM_External_Pulse_Sync_Config (GPTIM_SFRmap* GPTIMx, uint32_t PulseSync); void GPTIM_Work_Mode_Config (GPTIM_SFRmap* GPTIMx, uint32_t NewState); void GPTIM_Updata_Immediately_Config (GPTIM_SFRmap* GPTIMx, FunctionalState NewState); void GPTIM_Master_Slave_Snyc_Config (GPTIM_SFRmap* GPTIMx, FunctionalState NewState); void GPTIM_Trigger_Select_Config (GPTIM_SFRmap* GPTIMx, FunctionalState TriggerSelect); void GPTIM_Slave_Mode_Config (GPTIM_SFRmap* GPTIMx, FunctionalState SlaveMode); void GPTIM_Master_Mode_Config (GPTIM_SFRmap* GPTIMx, FunctionalState MasterMode); void GPTIM_Updata_Rising_Edge_Config (GPTIM_SFRmap* GPTIMx, FunctionalState NewState); void GPTIM_Updata_Enable (GPTIM_SFRmap* GPTIMx, FunctionalState NewState); void GPTIM_Trigger_DMA_Enable (GPTIM_SFRmap* GPTIMx, FunctionalState NewState); void GPTIM_Updata_DMA_Enable (GPTIM_SFRmap* GPTIMx, FunctionalState NewState); void GPTIM_Updata_INT_Enable (GPTIM_SFRmap* GPTIMx, FunctionalState NewState); void GPTIM_Trigger_INT_Enable (GPTIM_SFRmap* GPTIMx, FunctionalState NewState); void GPTIM_Generate_Trigger_Config (GPTIM_SFRmap* GPTIMx, FunctionalState NewState); DIRStatus GPTIM_Get_Direction (GPTIM_SFRmap* GPTIMx); uint32_t GPTIM_Get_Counter (GPTIM_SFRmap* GPTIMx); uint32_t GPTIM_Get_Period (GPTIM_SFRmap* GPTIMx); uint32_t GPTIM_Get_Prescaler (GPTIM_SFRmap* GPTIMx); /* 通用定时器(GPTIM)中断及标志管理函数定义 *******************************/ void GPTIM_Overflow_INT_Enable (GPTIM_SFRmap* GPTIMx, FunctionalState NewState); RetStatus GPTIM_Clear_Overflow_INT_Flag (GPTIM_SFRmap* GPTIMx); RetStatus GPTIM_Clear_Updata_INT_Flag (GPTIM_SFRmap* GPTIMx); RetStatus GPTIM_Clear_Trigger_INT_Flag (GPTIM_SFRmap* GPTIMx); FlagStatus GPTIM_Get_Overflow_INT_Flag (GPTIM_SFRmap* GPTIMx); FlagStatus GPTIM_Get_Updata_INT_Flag (GPTIM_SFRmap* GPTIMx); FlagStatus GPTIM_Get_Trigger_INT_Flag (GPTIM_SFRmap* GPTIMx); FlagStatus GPTIM_Get_Updata_DMA_INT_Flag (GPTIM_SFRmap* GPTIMx); FlagStatus GPTIM_Get_Trigger_DMA_INT_Flag (GPTIM_SFRmap* GPTIMx); /* 通用捕捉/比较/PWM外设(CCP)捕捉功能函数定义 ****************************/ void CCP_Compare_Configuration(CCP_SFRmap* CCPx, CCP_CompareInitTypeDef* ccpInitStruct); void CCP_Compare_Struct_Init (CCP_CompareInitTypeDef* ccpInitStruct); void CCP_Capture_Configuration (CCP_SFRmap* CCPx, CCP_CaptureInitTypeDef* ccpInitStruct); void CCP_Capture_Struct_Init (CCP_CaptureInitTypeDef* ccpInitStruct); void CCP_PWM_Configuration (CCP_SFRmap* CCPx, CCP_PWMInitTypeDef* ccpInitStruct); void CCP_PWM_Struct_Init (CCP_PWMInitTypeDef* ccpInitStruct); void CCP_Capture_Mode_Config (CCP_SFRmap* CCPx, uint32_t Channel, uint32_t EdgeConfig); void CCP_Compare_Mode_Config (CCP_SFRmap* CCPx, uint32_t Channel, uint32_t EdgeConfig); void CCP_PWM_Mode_Config (CCP_SFRmap* CCPx, uint32_t Channel, uint32_t EdgeConfig); uint32_t CCP_Get_Capture_Result (CCP_SFRmap* CCPx, uint32_t Channel); void CCP_Set_Compare_Result (CCP_SFRmap* CCPx, uint32_t Channel, uint32_t Value); #define CCP_Set_PWM_Duty_Ratio(CCPX, CHANNEL, VALUE) \ CCP_Set_Compare_Result(CCPX, CHANNEL, VALUE) uint32_t CCP_Get_Compare_Result (CCP_SFRmap* CCPx, uint32_t Channel); #define CCP_Get_PWM_Duty_Ratio(CCPX, CHANNEL) \ CCP_Get_Compare_Result(CCPX, CHANNEL) void CCP_Compare_PWM_Signal_Clear (CCP_SFRmap* CCPx, uint32_t Channel, FunctionalState NewState); void CCP_Compare_Check_Config (CCP_SFRmap* CCPx, uint32_t CompareSelect); void CCP_Channel_Output_Control (CCP_SFRmap* CCPx, uint32_t Channel, uint32_t ChannelOutputCtl); void CCP_Single_Pulse_Shut_Enable (CCP_SFRmap* CCPx, FunctionalState NewState); void CCP_Single_Pulse_Enable (CCP_SFRmap* CCPx, FunctionalState NewState); void CCP_PWM_Input_Measurement_Config (CCP_SFRmap* CCPx, FunctionalState NewState); void CCP_Input_XOR_Config (CCP_SFRmap* CCPx, FunctionalState NewState); void CCP_Channel_DMA_Config (CCP_SFRmap* CCPx, uint32_t Channel, FunctionalState NewState); void CCP_Generate_Trigger_Config (CCP_SFRmap* CCPx, uint32_t Channel, FunctionalState NewState); void CCP_USART_Receive_Config (CCP_SFRmap* CCPx, FunctionalState NewState); /* 通用捕捉/比较/PWM外设(CCP)中断及标志管理函数定义 **********************/ FlagStatus CCP_Get_Channel_Trigger_INT_Flag (CCP_SFRmap* CCPx, uint32_t Channel); FlagStatus CCP_Get_Trigger_DMA_INT_Flag (CCP_SFRmap* CCPx, uint32_t Channel); void CCP_Channel_INT_Config (CCP_SFRmap* CCPx, uint32_t Channel, FunctionalState NewState); RetStatus CCP_Clear_Channel_INT_Flag (CCP_SFRmap* CCPx, uint32_t Channel); /*** 通用定时器(GPTIM)、CCP相关定义结束 */ #endif /* KF32A156_GTIM_H_ */