# 1 "../KF32Lib/src/kf32a156_cmp.c" # 1 "C:\\WorkSpace32\\blinkled\\Debug//" # 1 "" # 1 "../KF32Lib/src/kf32a156_cmp.c" # 29 "../KF32Lib/src/kf32a156_cmp.c" # 1 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/kf32a156_cmp.h" 1 # 30 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/kf32a156_cmp.h" # 1 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" 1 # 37 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" # 1 "C:/Program Files (x86)/ChipON IDE/KungFu32/ChipONCC32/include/Sys/stdint.h" 1 # 16 "C:/Program Files (x86)/ChipON IDE/KungFu32/ChipONCC32/include/Sys/stdint.h" # 1 "C:/Program Files (x86)/ChipON IDE/KungFu32/ChipONCC32/include/Sys/stddef.h" 1 # 24 "C:/Program Files (x86)/ChipON IDE/KungFu32/ChipONCC32/include/Sys/stddef.h" typedef int ptrdiff_t; typedef unsigned int size_t; typedef unsigned short wchar_t; # 17 "C:/Program Files (x86)/ChipON IDE/KungFu32/ChipONCC32/include/Sys/stdint.h" 2 typedef signed char int8_t; typedef unsigned char uint8_t; typedef short int16_t; typedef unsigned short uint16_t; typedef int int32_t; typedef unsigned int uint32_t; typedef long long int64_t; typedef unsigned long long uint64_t; typedef signed char int_least8_t; typedef unsigned char uint_least8_t; typedef short int_least16_t; typedef unsigned short uint_least16_t; typedef int int_least32_t; typedef unsigned int uint_least32_t; typedef long long int_least64_t; typedef unsigned long long uint_least64_t; typedef char int_fast8_t; typedef unsigned char uint_fast8_t; typedef short int_fast16_t; typedef unsigned short uint_fast16_t; typedef int int_fast32_t; typedef unsigned int uint_fast32_t; typedef long long int_fast64_t; typedef unsigned long long uint_fast64_t; # 60 "C:/Program Files (x86)/ChipON IDE/KungFu32/ChipONCC32/include/Sys/stdint.h" typedef int intptr_t; # 69 "C:/Program Files (x86)/ChipON IDE/KungFu32/ChipONCC32/include/Sys/stdint.h" typedef unsigned int uintptr_t; typedef long long intmax_t; typedef unsigned long long uintmax_t; # 38 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" 2 # 52 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef enum { FALSE = 0, TRUE = !FALSE }FunctionalState; typedef enum { RESET = 0, SET = !RESET }FlagStatus, INTStatus; typedef enum { FAILURE = 0, SUCCESS = !FAILURE }RetStatus; typedef enum { DISABLE = 0, ENABLE = !DISABLE }AbleStatus; typedef enum { DIR_DOWN = 0, DIR_UP = !DIR_DOWN } DIRStatus; # 96 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef enum { INT_Initial_SP = 0, INT_Reset = 1, INT_NMI = 2, INT_HardFault = 3, INT_Reserved4 = 4, INT_StackFault = 5, INT_AriFault = 6, INT_Reserved7 = 7, INT_Reserved8 = 8, INT_Reserved9 = 9, INT_Reserved10 = 10, INT_SVCAll = 11, INT_Reserved12 = 12, INT_Reserved13 = 13, INT_SoftSV = 14, INT_SysTick = 15, INT_WWDT = 16, INT_EINT16 = 17, INT_EINT0 = 18, INT_EINT1 = 19, INT_EINT2 = 20, INT_EINT3 = 21, INT_EINT4 = 22, INT_EINT9TO5 = 23, INT_EINT15TO10 = 24, INT_T1 = 25, INT_T3 = 26, INT_T5 = 27, INT_T6 = 28, INT_QEI0 = 29, INT_QEI1 = 30, INT_T7 = INT_QEI0, INT_T8 = INT_QEI1, INT_ECFGL = 31, INT_CAN4 = 32, INT_T14 = 33, INT_RNG = 34, INT_FDC2 = 35, INT_EXIC = 36, INT_ADC0 = 37, INT_ADC1 = 38, INT_CFGL = 39, INT_T11 = 40, INT_T0 = 41, INT_DMA0 = 42, INT_CMP = 43, INT_USART0 = 44, INT_USART1 = 45, INT_SPI0 = 46, INT_SPI1 = 47, INT_DMA1 = 48, INT_EINT19TO17 = 49, INT_CANFD6 = 50, INT_CANFD7 = 51, INT_FDC0 = 52, INT_FDC1 = 53, INT_EINT31TO20 = 54, INT_ECC = 55, INT_OSC = 56, INT_CLK = INT_OSC, INT_I2C0 = 57, INT_I2C1 = 58, INT_I2C2 = 59, INT_T12 = 60, INT_T2 = 61, INT_T4 = 62, INT_T13 = 63, INT_USART2 = 64, INT_T16 = 65, INT_USART4 = 66, INT_SPI2 = 67, INT_SPI3 = 68, INT_ADC2 = 69, INT_T18 = 70, INT_T19 = 71, INT_HRCAP0 = 72, INT_WKP0 = 73, INT_WKP1 = INT_WKP0, INT_WKP2 = INT_WKP0, INT_WKP3 = INT_WKP0, INT_WKP4 = INT_WKP0, INT_HRCAP1 = 74, INT_T21 = 75, INT_I2C3 = 76, INT_USART5 = 77, INT_HRCAP2 = 78, INT_USART7 = 79 }InterruptIndex; # 198 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct GPIO_MenMap { volatile const uint32_t PIR; volatile uint32_t POR; volatile uint32_t PUR; volatile uint32_t PDR; volatile uint32_t PODR; volatile uint32_t PMOD; volatile uint32_t OMOD; volatile uint32_t LOCK; volatile uint32_t RMP[2]; volatile uint32_t RESERVED[3]; volatile uint32_t RMP_MSB; }GPIO_SFRmap; # 912 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct IONMI_MenMap { volatile uint32_t RESERVED[15]; volatile uint32_t CTLR; }IONMI_SFRmap; # 970 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct OSC_MemMap { volatile uint32_t CTL0; volatile uint32_t CTL1; volatile uint32_t INT; volatile uint32_t CTL2; volatile uint32_t HFOSCCAL0; volatile uint32_t HFOSCCAL1; }OSC_SFRmap; typedef struct PLL_MenMap { volatile uint32_t CTL; }PLL_SFRmap; # 1293 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct INT_MemMap { volatile uint32_t CTL0; volatile uint32_t EIE0; uint32_t RESERVED1; volatile uint32_t EIE1; uint32_t RESERVED2; volatile uint32_t EIE2; uint32_t RESERVED3; volatile uint32_t EIF0; uint32_t RESERVED4; volatile uint32_t EIF1; uint32_t RESERVED5; volatile uint32_t EIF2; uint32_t RESERVED6; volatile uint32_t IP0; volatile uint32_t IP1; volatile uint32_t IP2; volatile uint32_t IP3; volatile uint32_t IP4; volatile uint32_t IP5; volatile uint32_t IP6; volatile uint32_t IP7; volatile uint32_t IP8; volatile uint32_t IP9; volatile uint32_t IP10; volatile uint32_t IP11; volatile uint32_t IP12; volatile uint32_t IP13; volatile uint32_t IP14; volatile uint32_t IP15; volatile uint32_t IP16; volatile uint32_t IP17; volatile uint32_t IP18; volatile uint32_t EINTMASK; volatile uint32_t EINTRISE; volatile uint32_t EINTFALL; volatile uint32_t EINTF; volatile uint32_t EINTLVL; volatile uint32_t EINTSS0; volatile uint32_t EINTSS1; volatile uint32_t CTL1; }INT_SFRmap; # 2733 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct SYSCTL_MemMap { volatile uint32_t PSW; volatile uint32_t MCTL; volatile uint32_t ARCTL; volatile uint32_t VECTOFF; uint32_t RESEVRVE1; volatile uint32_t RAMSPA; volatile uint32_t MEMCTL; volatile uint32_t MSPSPA; volatile uint32_t PSPSPA; }SYSCTL_SFRmap; # 2888 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct DMA_MenMap { union { struct { volatile uint32_t CTLR1; volatile uint32_t CTLR2; volatile uint32_t CTLR3; volatile uint32_t CTLR4; volatile uint32_t CTLR5; volatile uint32_t CTLR6; volatile uint32_t CTLR7; }; volatile uint32_t CTLR[7]; }; uint32_t RESERVED1; union { struct { volatile uint32_t PADDR1; volatile uint32_t PADDR2; volatile uint32_t PADDR3; volatile uint32_t PADDR4; volatile uint32_t PADDR5; volatile uint32_t PADDR6; volatile uint32_t PADDR7; }; volatile uint32_t PADDR[7]; }; uint32_t RESERVED2; union { struct { volatile uint32_t MADDR1; volatile uint32_t MADDR2; volatile uint32_t MADDR3; volatile uint32_t MADDR4; volatile uint32_t MADDR5; volatile uint32_t MADDR6; volatile uint32_t MADDR7; }; volatile uint32_t MADDR[7]; }; uint32_t RESERVED3; union { struct { volatile const uint32_t CPAR1; volatile const uint32_t CPAR2; volatile const uint32_t CPAR3; volatile const uint32_t CPAR4; volatile const uint32_t CPAR5; volatile const uint32_t CPAR6; volatile const uint32_t CPAR7; }; volatile const uint32_t CPAR[7]; }; uint32_t RESERVED4; union { struct { volatile const uint32_t CMAR1; volatile const uint32_t CMAR2; volatile const uint32_t CMAR3; volatile const uint32_t CMAR4; volatile const uint32_t CMAR5; volatile const uint32_t CMAR6; volatile const uint32_t CMAR7; }; volatile const uint32_t CMAR[7]; }; uint32_t RESERVED5; union { struct { volatile const uint32_t NCT1; volatile const uint32_t NCT2; volatile const uint32_t NCT3; volatile const uint32_t NCT4; volatile const uint32_t NCT5; volatile const uint32_t NCT6; volatile const uint32_t NCT7; }; volatile const uint32_t NCT[7]; }; uint32_t RESERVED6; volatile uint32_t LIFR; volatile uint32_t LIER; volatile uint32_t REMAP; }DMA_SFRmap; # 3560 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct SYSTICK_MemMap { volatile uint32_t CTL; volatile uint32_t RELOAD; volatile uint32_t CV; volatile uint32_t CALI; }SYSTICK_SFRmap; # 3618 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct BTIM_MemMap { volatile uint32_t CNT; volatile uint32_t CTL1; volatile uint32_t CTL2; volatile uint32_t PRSC; volatile uint32_t PPX; volatile uint32_t DIER; volatile const uint32_t SR; volatile uint32_t SRIC; }BTIM_SFRmap; # 3794 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct GPTIM_MemMap { volatile uint32_t CNT; volatile uint32_t CTL1; volatile uint32_t CTL2; volatile uint32_t PRSC; volatile uint32_t PPX; volatile uint32_t UDTIM; uint32_t RESERVED1[2]; volatile const uint32_t CCPXC1; volatile const uint32_t CCPXC2; volatile const uint32_t CCPXC3; volatile const uint32_t CCPXC4; volatile uint32_t CCPXSRIC; volatile const uint32_t CCPXDF; uint32_t RESERVED2[2]; volatile uint32_t CCPXCTL1; volatile uint32_t CCPXR1; volatile uint32_t CCPXR2; volatile uint32_t CCPXR3; volatile uint32_t CCPXR4; volatile uint32_t CCPXCTL2; volatile uint32_t CCPXCTL3; volatile uint32_t CCPXEGIF; }GPTIM_SFRmap, CCP_SFRmap; # 4271 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct ATIM_MemMap { volatile uint32_t TXCNT; volatile uint32_t TZCNT; volatile uint32_t TXPPX; volatile uint32_t TZPPZ; volatile uint32_t TXPRSC; volatile uint32_t TZPRSC; volatile uint32_t TXCCR0; volatile uint32_t TXCCR1; volatile uint32_t TZCCR0; volatile uint32_t TXCTL; volatile uint32_t TZCTL; volatile uint32_t PXPDCTL; volatile uint32_t PXASCTL; volatile uint32_t TXCCTCTL; volatile uint32_t TZCCTCTL; uint32_t RESERVED0; volatile uint32_t COMH1; volatile uint32_t COML1; volatile uint32_t FAUCTL1; volatile uint32_t DITCTL; volatile uint32_t COMH2; volatile uint32_t COML2; volatile uint32_t FAUCTL2; volatile uint32_t CCRCTL; volatile uint32_t COMH3; volatile uint32_t COML3; volatile uint32_t FAUCTL3; uint32_t RESERVED1; volatile uint32_t COMH4; volatile uint32_t COML4; volatile uint32_t FAUCTL4; uint32_t RESERVED2; volatile uint32_t ECCPXCTL1; volatile uint32_t ECCPXR1; volatile uint32_t ECCPXR2; volatile uint32_t ECCPXR3; volatile uint32_t ECCPXR4; volatile uint32_t PXUDCTL; volatile uint32_t ECCPXCTL2; volatile uint32_t PXDTCTL; volatile uint32_t PWMXOC; volatile uint32_t PXATRCTL; volatile uint32_t PXASCTL0; volatile uint32_t PXASCTL1; volatile uint32_t ZPDCTL0; volatile uint32_t ZPDCTL1; volatile uint32_t ZPDPORT; volatile uint32_t ECCPXIE; volatile uint32_t ECCPXEGIF; volatile uint32_t TXUDTIM; volatile uint32_t TZUDTIM; volatile const uint32_t ECCPXDF; volatile const uint32_t ECCPXC1; volatile const uint32_t ECCPXC2; volatile const uint32_t ECCPXC3; volatile const uint32_t ECCPXC4; uint32_t RESERVED3; volatile uint32_t ECCPXDE; volatile uint32_t ECCPXSRIC; volatile uint32_t ECCPXCTL3; }ATIM_SFRmap, ECCP_SFRmap; # 5146 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct EPWM_MemMap { volatile uint32_t CNT; volatile uint32_t PHS; volatile uint32_t PPX; volatile uint32_t PRSC; volatile uint32_t CTL; volatile uint32_t RA; volatile uint32_t RB; volatile uint32_t CTLA; volatile uint32_t CTLB; volatile uint32_t DBCTL; volatile uint32_t DBT; volatile uint32_t PCCTL; volatile uint32_t PXASCTL; volatile uint32_t ETCTL; volatile uint32_t IE; volatile const uint32_t IF; volatile uint32_t IC; volatile uint32_t DE; volatile const uint32_t DF; uint32_t RESERVED0; volatile uint32_t HRPWMCTL; volatile uint32_t HRCMP; volatile const uint32_t CAP; volatile uint32_t RC; volatile uint32_t RD; volatile uint32_t UDCTL; }EPWM_SFRmap; # 5804 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct HRCAP_MenMap { volatile uint32_t CTL; volatile const uint32_t COUNTER; volatile const uint32_t RISE[2]; volatile const uint32_t FALL[2]; volatile const uint32_t HRRISE[2]; volatile const uint32_t HRFALL[2]; volatile const uint32_t SR; volatile uint32_t SRIC; volatile uint32_t IFRC; }HRCAP_SFRmap; # 5964 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct QEI_MenMap { volatile uint32_t CTL0; volatile uint32_t CTL1; volatile uint32_t CNT; volatile uint32_t PPX; volatile uint32_t PRSC; volatile uint32_t DIER; }QEI_SFRmap; # 6083 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct ADC_MemMap { volatile uint32_t CTL0; volatile uint32_t CTL1; volatile uint32_t SCANSQ0; volatile uint32_t SCANSQ1; volatile uint32_t SCANSQ2; volatile uint32_t HSCANSQ; volatile uint32_t WDH; volatile uint32_t WDL; volatile const uint32_t DATA; volatile const uint32_t HPDATA0; volatile const uint32_t HPDATA1; volatile const uint32_t HPDATA2; volatile const uint32_t HPDATA3; volatile uint32_t HPDOFF0; volatile uint32_t HPDOFF1; volatile uint32_t HPDOFF2; volatile uint32_t HPDOFF3; volatile uint32_t SCANSQ3; uint32_t RESERVED[2]; volatile uint32_t STATE; volatile uint32_t DELAY; volatile uint32_t SCANCTL; }ADC_SFRmap; # 6788 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct DAC_MemMap { volatile uint32_t CTL; volatile uint32_t DAHD; volatile const uint32_t DATA; volatile uint32_t CTL1; uint32_t RESERVED; volatile uint32_t CAL; }DAC_SFRmap; # 6955 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct CMP_MemMap { volatile uint32_t CTL0; volatile uint32_t CTL1; volatile uint32_t CTL2; volatile uint32_t CTL3; volatile uint32_t CTL4; volatile uint32_t CTL5; volatile uint32_t TRIM0; volatile uint32_t TRIM1; volatile uint32_t TRIM2; volatile uint32_t TRIM3; }CMP_SFRmap; # 7388 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct OP_MemMap { volatile uint32_t CTL0; volatile uint32_t CTL1; volatile uint32_t TRIM0; volatile uint32_t TRIM1; volatile uint32_t TRIM2; volatile uint32_t TRIM3; }OP_SFRmap; # 7683 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct USART_MemMap { volatile uint32_t CTLR; volatile uint32_t BRGR; volatile uint32_t STR; union { volatile uint32_t TBUFR; volatile const uint32_t RBUFR; }; volatile uint32_t U7816R; volatile uint32_t IER; volatile uint32_t ADM; }USART_SFRmap; # 8031 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct SPI_MemMap { volatile uint32_t BRGR; volatile uint32_t CTLR; volatile uint32_t BUFR; volatile uint32_t STR; }SPI_SFRmap; # 8190 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct I2C_MemMap { volatile uint32_t CTLR; volatile uint32_t SR; volatile uint32_t BUFR; volatile uint32_t ADDR0; volatile uint32_t BRGR; volatile uint32_t ADDR1; volatile uint32_t ADDR2; volatile uint32_t ADDR3; volatile uint32_t IER; }I2C_SFRmap; # 8452 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef union { struct { struct { volatile uint32_t DLC :4; volatile uint32_t RESERVED0:2; volatile uint32_t RTR :1; volatile uint32_t IDE :1; volatile uint32_t RESERVED1:24; }TXINFR; struct { volatile uint32_t DATA1:8; volatile uint32_t DATA0:8; volatile uint32_t RESERVED0:5; volatile uint32_t ID:11; }TXDATA0; struct { volatile uint32_t DATA5:8; volatile uint32_t DATA4:8; volatile uint32_t DATA3:8; volatile uint32_t DATA2:8; }TXDATA1; struct { volatile uint32_t RESERVED0:8; volatile uint32_t RESERVED1:8; volatile uint32_t DATA7:8; volatile uint32_t DATA6:8; }TXDATA2; }SFF; struct { struct { volatile uint32_t DLC:4; volatile uint32_t RESERVED0:2; volatile uint32_t RTR:1; volatile uint32_t IDE:1; volatile uint32_t RESERVED1:24; }TXINFR; struct { volatile uint32_t RESERVED:3; volatile uint32_t ID:29; }TXDATA0; struct { volatile uint32_t DATA3:8; volatile uint32_t DATA2:8; volatile uint32_t DATA1:8; volatile uint32_t DATA0:8; }TXDATA1; struct { volatile uint32_t DATA7:8; volatile uint32_t DATA6:8; volatile uint32_t DATA5:8; volatile uint32_t DATA4:8; }TXDATA2; }EFF; }CanTxBufferTypeDef; typedef struct CAN_MemMap { volatile uint32_t CTLR; volatile uint32_t BRGR; volatile uint32_t RCR; volatile uint32_t EROR; volatile uint32_t ACRR; volatile uint32_t MSKR; volatile uint32_t IER; volatile uint32_t IFR; union { struct { volatile uint32_t INFR; volatile uint32_t TX0R; volatile uint32_t TX1R; volatile uint32_t TX2R; }; CanTxBufferTypeDef CanTxBuffer; }; volatile uint32_t RXDATA0; volatile uint32_t RXDATA1; volatile uint32_t RXDATA2; volatile uint32_t RXDATA3; }CAN_SFRmap; typedef struct CAN_FILTER_Map { volatile uint32_t ACR1R; volatile uint32_t MSK1R; volatile uint32_t ACR2R; volatile uint32_t MSK2R; volatile uint32_t ACR3R; volatile uint32_t MSK3R; volatile uint32_t ACR4R; volatile uint32_t MSK4R; volatile uint32_t ACR5R; volatile uint32_t MSK5R; volatile uint32_t ACR6R; volatile uint32_t MSK6R; volatile uint32_t ACR7R; volatile uint32_t MSK7R; volatile uint32_t ACR8R; volatile uint32_t MSK8R; }CAN_FILTER_SFRmap; # 9689 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct CANFD_MenMap { volatile uint32_t CTLR0; volatile uint32_t BRGR; volatile const uint32_t RCR; volatile uint32_t EROR; volatile uint32_t NOUSE1; volatile uint32_t MSKR; volatile uint32_t IER; volatile uint32_t IFR; volatile const uint32_t RX_SET1; union { struct { uint8_t RX_SET2_1; uint8_t RX_SET2_2; uint16_t RX_SET2_34; }; struct { uint32_t RX_SET2; }; }; union { volatile const uint8_t RXDATA[64]; volatile const uint32_t RXDATA_32[16]; }; volatile uint32_t TIMER; volatile const uint32_t CRC; volatile uint32_t NOUSE2; volatile uint32_t CTLR1; volatile const uint32_t AMSTA; }CANFD_SFRMap; # 10231 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct EXIC_MemMap { volatile uint32_t CTL0; volatile uint32_t CTL1; volatile uint32_t STATE; uint32_t RESERVED1; volatile uint32_t WRITEBUF; volatile uint32_t READBUF; }EXIC_SFRmap; # 10325 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct RTC_MemMap { volatile uint32_t CR; volatile uint32_t ALRA; volatile uint32_t TMR; volatile uint32_t DTR; volatile uint32_t ALRB; volatile uint32_t TMER; volatile uint32_t TCR; volatile uint32_t IER; volatile uint32_t IFR; volatile uint32_t TMBR; volatile uint32_t DTBR; }RTC_SFRmap; # 10861 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct IWDT_MemMap { volatile uint32_t CTL; volatile uint32_t FD; }IWDT_SFRmap; # 10910 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct WWDT_MemMap { volatile uint32_t CTL; volatile uint32_t CNT; volatile uint32_t CTL1; }WWDT_SFRmap; # 10989 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct EWDT_MenMap { volatile uint32_t CTL; volatile uint32_t CNT; }EWDT_SFRmap; # 11075 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct CFGL_MemMap { volatile uint32_t CTL0; volatile uint32_t CTL1; volatile uint32_t IFR; }CFGL_SFRmap; # 11262 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct ECFGL_MenMap { union { struct { volatile uint32_t ECFGL0_CTL; volatile uint32_t ECFGL1_CTL; volatile uint32_t ECFGL2_CTL; volatile uint32_t ECFGL3_CTL; volatile uint32_t ECFGL4_CTL; volatile uint32_t ECFGL5_CTL; volatile uint32_t ECFGL6_CTL; volatile uint32_t ECFGL7_CTL; volatile uint32_t ECFGL8_CTL; volatile uint32_t ECFGL9_CTL; volatile uint32_t ECFGL10_CTL; volatile uint32_t ECFGL11_CTL; volatile uint32_t ECFGL12_CTL; volatile uint32_t ECFGL13_CTL; volatile uint32_t ECFGL14_CTL; volatile uint32_t ECFGL15_CTL; }; volatile uint32_t ECFGL_CTL[16]; }; volatile uint32_t SOFTSEL; volatile uint32_t FCLK; volatile uint32_t IC; volatile uint32_t IF; volatile uint32_t RFCTL; volatile uint32_t FFCTL; volatile uint32_t ADC; volatile const uint32_t OUT; }ECFGL_SFRmap; # 11609 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct RST_MemMap { volatile uint32_t CTL0; volatile uint32_t CTL1; volatile uint32_t CTL2; volatile uint32_t CTL3; }RST_SFRmap; # 11791 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct PCLK_MemMap { volatile uint32_t CTL0; volatile uint32_t CTL1; volatile uint32_t CTL2; volatile uint32_t CTL3; }PCLK_SFRmap; # 11973 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct PM_MemMap { volatile uint32_t CTL0; volatile uint32_t CTL1; volatile const uint32_t STA0; volatile const uint32_t STA1; volatile uint32_t STAC; volatile uint32_t CTL2; volatile uint32_t CAL0; volatile uint32_t CAL1; volatile uint32_t CAL2; }PM_SFRmap; # 12451 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct BKP_MemMap { volatile uint32_t CTL; volatile uint32_t INT; uint32_t RESERVED[14]; volatile uint32_t DATA[8]; }BKP_SFRmap; # 12537 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct FLASH_MemMap { volatile uint32_t ISPCON0; volatile uint32_t ISPCON1; volatile uint32_t ISPCMD; volatile uint32_t ISPTRG; uint32_t RESERVED1; volatile uint32_t CFG; uint32_t RESERVED2; volatile uint32_t ISPADDR; volatile uint32_t STATE; uint32_t RESERVED3; volatile uint32_t NVMUNLOCK; volatile uint32_t PROUNLOCK; volatile uint32_t CFGUNLOCK; uint32_t RESERVED4; volatile uint32_t CSSTART; volatile uint32_t CSSTOP; volatile uint32_t CSRES[4]; }FLASH_SFRmap; # 12738 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct CRC_MemMap { volatile uint32_t CTL; volatile uint32_t DATA; volatile const uint32_t RSLT; volatile uint32_t INIT; volatile uint32_t PLN; volatile uint32_t RXOR; volatile uint32_t IDATA; volatile const uint32_t TEMP; }CRC_SFRmap; # 12800 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct AES_MenMap { volatile uint32_t CTL; volatile uint32_t INT; uint32_t RESERVED1; uint32_t RESERVED2; volatile uint32_t INPUT0; volatile uint32_t INPUT1; volatile uint32_t INPUT2; volatile uint32_t INPUT3; volatile const uint32_t OUTPUT0; volatile const uint32_t OUTPUT1; volatile const uint32_t OUTPUT2; volatile const uint32_t OUTPUT3; }AES_SFRmap; # 12908 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct RNG_MenMap { volatile uint32_t CTL; volatile uint32_t STATE; volatile const uint32_t SEED; volatile const uint32_t DR; }RNG_SFRmap; # 13011 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct FlexMUX_MenMap { volatile uint32_t SOU; volatile uint32_t TAR; }FlexMUX_SFRmap; # 13166 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct FDC_MenMap { volatile uint32_t CTL; volatile uint32_t MOD; volatile const uint32_t CNT; volatile uint32_t IDLY; volatile uint32_t CH0CTL; volatile uint32_t CH1CTL; volatile uint32_t CH2CTL; volatile uint32_t CH3CTL; uint32_t RESERVED[4]; volatile uint32_t CH0DLY0; volatile uint32_t CH0DLY1; volatile uint32_t CH0DLY2; uint32_t RESERVED5; volatile uint32_t CH1DLY0; volatile uint32_t CH1DLY1; volatile uint32_t CH1DLY2; uint32_t RESERVED6; volatile uint32_t CH2DLY0; volatile uint32_t CH2DLY1; volatile uint32_t CH2DLY2; uint32_t RESERVED7; volatile uint32_t CH3DLY0; volatile uint32_t CH3DLY1; volatile uint32_t CH3DLY2; uint32_t RESERVED8; volatile uint32_t PO0DLY; volatile uint32_t PO1DLY; volatile uint32_t PO2DLY; volatile uint32_t PO3DLY; }FDC_SFRmap; # 13667 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct FlexRM_MenMap { volatile uint32_t CTL; volatile uint32_t GPSR0; volatile uint32_t GPSR1; volatile uint32_t GCSR0; volatile uint32_t GCSR1; volatile uint32_t GCSR2; }FlexRM_SFRmap; # 14090 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" typedef struct CACHE_MenMap { volatile uint32_t CTLR; }CACHE_SFRmap; # 14155 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/KF32A156.h" static inline uint32_t SFR_Config (uint32_t SfrMem, uint32_t SfrMask, uint32_t WriteVal) { return ((SfrMem & SfrMask) | (WriteVal)); } # 31 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/kf32a156_cmp.h" 2 # 45 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/kf32a156_cmp.h" typedef struct { uint32_t m_PositiveInput; uint32_t m_NegativeInput; FunctionalState m_FallTriggerEnable; FunctionalState m_RiseTriggerEnable; uint32_t m_Clock; uint32_t m_FrequencyDivision; uint32_t m_SampleNumber; FunctionalState m_FilterEnable; FunctionalState m_ScopecontrolEnable; uint32_t m_OutputPolarity; FunctionalState m_CmpEnable; }CMP_InitTypeDef; # 434 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/kf32a156_cmp.h" void CMP_Reset (void); void CMP_Configuration (uint32_t CMPx_ADDR, CMP_InitTypeDef* CMPInitStruct); void CMP_Struct_Init (CMP_InitTypeDef* CMPInitStruct); void CMP_IO_Channel_Enable(FunctionalState NewState); void CMP0_POSITIVE_INPUT_SELECT (uint32_t Select); void CMP0_NEGATIVE_INPUT_SELECT (uint32_t Select); void CMP1_POSITIVE_INPUT_SELECT (uint32_t Select); void CMP1_NEGATIVE_INPUT_SELECT (uint32_t Select); void CMP2_POSITIVE_INPUT_SELECT (uint32_t Select); void CMP2_NEGATIVE_INPUT_SELECT (uint32_t Select); void CMP3_POSITIVE_INPUT_SELECT (uint32_t Select); void CMP3_NEGATIVE_INPUT_SELECT (uint32_t Select); void CMP_Up_Down_Edge_INT_Enable(uint32_t CMPx_ADDR, uint32_t UDEdge, uint32_t NewState); void CMP_OUTPUT_POL_SELECT(uint32_t CMPx_ADDR, uint32_t Polarity); void CMP_OUTPUT_SELECT (uint32_t Select); void CMP_Cmd(uint32_t CMPx_ADDR, uint32_t NewState); void CMP_Trigger_Select_Config (uint32_t TriSelect); FlagStatus CMP_Get_Output_State(uint32_t CMPx_ADDR); FlagStatus CMP_Get_INT_Flag(uint32_t CMPx_ADDR); RetStatus CMP_Clear_INT_Flag(uint32_t CMPx_ADDR); void CMP_INT_Enable(uint32_t CMPx_ADDR, uint32_t NewState); void CMP_SluggishVoltage_Select (uint32_t Select); void CMP_HALLMODE_Select (uint32_t Select); void CMP_BEMF_Enable (FunctionalState NewState); void CMP_FLTINSEL_Select (uint32_t Select); void CMP_Win_Control_TRGMUX_CH_Select (uint32_t CMPx_ADDR, uint32_t Select); void CMP_LP_Enable(FunctionalState NewState); void CMP_TRIM_PMOS_Enable(FunctionalState NewState); void CMP_TRIM_NMOS_Enable(FunctionalState NewState); void CMP_TRIM_PMOS_Cail(uint32_t CMPx_ADDR, uint8_t Value); void CMP_TRIM_PMOS_Direction_Select(uint32_t CMPx_ADDR, uint32_t Direction); void CMP_TRIM_NMOS_Cail(uint32_t CMPx_ADDR, uint8_t Value); void CMP_TRIM_NMOS_Direction_Select(uint32_t CMPx_ADDR, uint32_t Direction); void CMP_WIN_Control_CLK_Select(uint32_t CMPx_ADDR, uint32_t Select); void CMP_Filter_SampleNumber_Select(uint32_t CMPx_ADDR, uint32_t Select); void CMP_Filter_CLKSource_Select(uint32_t CMPx_ADDR, uint32_t Select); # 30 "../KF32Lib/src/kf32a156_cmp.c" 2 # 1 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/kf32a156_rst.h" 1 # 59 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/kf32a156_rst.h" void RST_CTL0_Peripheral_Reset_Enable(uint32_t RST_CTL0Periph, FunctionalState NewState); void RST_CTL1_Peripheral_Reset_Enable(uint32_t RST_CTL1Periph, FunctionalState NewState); void RST_CTL2_Peripheral_Reset_Enable(uint32_t RST_CTL2Periph, FunctionalState NewState); void RST_CTL3_Peripheral_Reset_Enable(uint32_t RST_CTL3Periph, FunctionalState NewState); # 31 "../KF32Lib/src/kf32a156_cmp.c" 2 # 1 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/kf32a156_pclk.h" 1 # 58 "C:\\WorkSpace32\\blinkled\\KF32Lib\\inc/kf32a156_pclk.h" void PCLK_CTL0_Peripheral_Clock_Enable (uint32_t PCLK_CTL0_bit,FunctionalState NewState); void PCLK_CTL1_Peripheral_Clock_Enable (uint32_t PCLK_CTL1_bit,FunctionalState NewState); void PCLK_CTL2_Peripheral_Clock_Enable (uint32_t PCLK_CTL2_bit,FunctionalState NewState); void PCLK_CTL3_Peripheral_Clock_Enable (uint32_t PCLK_CTL3_bit,FunctionalState NewState); # 32 "../KF32Lib/src/kf32a156_cmp.c" 2 # 89 "../KF32Lib/src/kf32a156_cmp.c" void CMP_Reset (void) { RST_CTL1_Peripheral_Reset_Enable(((uint32_t)1<<((16))), TRUE); RST_CTL1_Peripheral_Reset_Enable(((uint32_t)1<<((16))), FALSE); PCLK_CTL1_Peripheral_Clock_Enable(((uint32_t)1<<((16))), TRUE); } void CMP_Configuration (uint32_t CMPx_ADDR, CMP_InitTypeDef* CMPInitStruct) { uint32_t tmpreg; ((void)0); if(CMPx_ADDR==((uint32_t)0x40000800)) { ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); # 133 "../KF32Lib/src/kf32a156_cmp.c" tmpreg = ((CMPInitStruct->m_PositiveInput ) | (CMPInitStruct->m_NegativeInput) | (CMPInitStruct->m_FallTriggerEnable << (19)) | (CMPInitStruct->m_RiseTriggerEnable << (18)) | (CMPInitStruct->m_Clock) | (CMPInitStruct->m_FrequencyDivision) | (CMPInitStruct->m_SampleNumber) | (CMPInitStruct->m_FilterEnable << (3)) | (CMPInitStruct->m_ScopecontrolEnable << (2)) | (CMPInitStruct->m_OutputPolarity)); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0), ~(((uint32_t)0x0F<<((28))) | ((uint32_t)0x0F<<((24))) | ((uint32_t)1<<((19))) | ((uint32_t)1<<((18))) | ((uint32_t)0x3<<((16))) | ((uint32_t)0xFF<<((8))) | ((uint32_t)0x7<<((4))) | ((uint32_t)1<<((3))) | ((uint32_t)1<<((2))) | ((uint32_t)1<<((1)))), tmpreg); if ((CMPInitStruct->m_CmpEnable) != FALSE) { __asm volatile("SET [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((0))); } else { __asm volatile("CLR [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((0))); } } else if(CMPx_ADDR==((uint32_t)0x40000804)) { ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); # 180 "../KF32Lib/src/kf32a156_cmp.c" tmpreg = ((CMPInitStruct->m_PositiveInput ) | (CMPInitStruct->m_NegativeInput) | (CMPInitStruct->m_FallTriggerEnable << (19)) | (CMPInitStruct->m_RiseTriggerEnable << (18)) | (CMPInitStruct->m_Clock) | (CMPInitStruct->m_FrequencyDivision) | (CMPInitStruct->m_SampleNumber) | (CMPInitStruct->m_FilterEnable << (3)) | (CMPInitStruct->m_ScopecontrolEnable << (2)) | (CMPInitStruct->m_OutputPolarity)); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1), ~(((uint32_t)0x0F<<((28))) | ((uint32_t)0x0F<<((24))) | ((uint32_t)1<<((19))) | ((uint32_t)1<<((18))) | ((uint32_t)0x3<<((16))) | ((uint32_t)0xFF<<((8))) | ((uint32_t)0x7<<((4))) | ((uint32_t)1<<((3))) | ((uint32_t)1<<((2))) | ((uint32_t)1<<((1)))), tmpreg); if ((CMPInitStruct->m_CmpEnable) != FALSE) { __asm volatile("SET [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((1))); } else { __asm volatile("CLR [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((1))); } } else if(CMPx_ADDR==((uint32_t)0x40000808)) { ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); # 227 "../KF32Lib/src/kf32a156_cmp.c" tmpreg = ((CMPInitStruct->m_PositiveInput ) | (CMPInitStruct->m_NegativeInput) | (CMPInitStruct->m_FallTriggerEnable << (19)) | (CMPInitStruct->m_RiseTriggerEnable << (18)) | (CMPInitStruct->m_Clock) | (CMPInitStruct->m_FrequencyDivision) | (CMPInitStruct->m_SampleNumber) | (CMPInitStruct->m_FilterEnable << (3)) | (CMPInitStruct->m_ScopecontrolEnable << (2)) | (CMPInitStruct->m_OutputPolarity)); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2), ~(((uint32_t)0x0F<<((28))) | ((uint32_t)0x0F<<((24))) | ((uint32_t)1<<((19))) | ((uint32_t)1<<((18))) | ((uint32_t)0x3<<((16))) | ((uint32_t)0xFF<<((8))) | ((uint32_t)0x7<<((4))) | ((uint32_t)1<<((3))) | ((uint32_t)1<<((2))) | ((uint32_t)1<<((1)))), tmpreg); if ((CMPInitStruct->m_CmpEnable) != FALSE) { __asm volatile("SET [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((2))); } else { __asm volatile("CLR [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((2))); } } else if(CMPx_ADDR==((uint32_t)0x4000080C)) { ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); ((void)0); # 274 "../KF32Lib/src/kf32a156_cmp.c" tmpreg = ((CMPInitStruct->m_PositiveInput ) | (CMPInitStruct->m_NegativeInput) | (CMPInitStruct->m_FallTriggerEnable << (19)) | (CMPInitStruct->m_RiseTriggerEnable << (18)) | (CMPInitStruct->m_Clock) | (CMPInitStruct->m_FrequencyDivision) | (CMPInitStruct->m_SampleNumber) | (CMPInitStruct->m_FilterEnable << (3)) | (CMPInitStruct->m_ScopecontrolEnable << (2)) | (CMPInitStruct->m_OutputPolarity) | (CMPInitStruct->m_CmpEnable << (0))); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3), ~(((uint32_t)0x0F<<((28))) | ((uint32_t)0x0F<<((24))) | ((uint32_t)0x3<<((16))) | ((uint32_t)0xFF<<((8))) | ((uint32_t)0x7<<((4))) | ((uint32_t)1<<((3))) | ((uint32_t)1<<((2))) | ((uint32_t)1<<((1))) | (0)), tmpreg); } else { ; } (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) |= (uint32_t)1 << 10; } void CMP_Struct_Init (CMP_InitTypeDef* CMPInitStruct) { CMPInitStruct->m_PositiveInput = ((uint32_t)0 << (28)); CMPInitStruct->m_NegativeInput = ((uint32_t)0 << (24)); CMPInitStruct->m_FallTriggerEnable = FALSE; CMPInitStruct->m_RiseTriggerEnable = FALSE; CMPInitStruct->m_Clock = ((uint32_t)0x0 << (16)); CMPInitStruct->m_FrequencyDivision = 0x00; CMPInitStruct->m_SampleNumber = ((uint32_t)0x0 << (4)); CMPInitStruct->m_FilterEnable = FALSE; CMPInitStruct->m_ScopecontrolEnable = FALSE; CMPInitStruct->m_OutputPolarity =((uint32_t)0<<(1)); CMPInitStruct->m_CmpEnable =FALSE; } void CMP_IO_Channel_Enable(FunctionalState NewState) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) |= (uint32_t)NewState << (10); } # 360 "../KF32Lib/src/kf32a156_cmp.c" void CMP0_POSITIVE_INPUT_SELECT (uint32_t Select) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0), ~((uint32_t)0x0F<<((28))), Select); } # 391 "../KF32Lib/src/kf32a156_cmp.c" void CMP0_NEGATIVE_INPUT_SELECT (uint32_t Select) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0), ~((uint32_t)0x0F<<((24))), Select); } # 419 "../KF32Lib/src/kf32a156_cmp.c" void CMP1_POSITIVE_INPUT_SELECT (uint32_t Select) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1), ~((uint32_t)0x0F<<((28))), Select); } # 447 "../KF32Lib/src/kf32a156_cmp.c" void CMP1_NEGATIVE_INPUT_SELECT (uint32_t Select) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1), ~((uint32_t)0x0F<<((24))), Select); } # 474 "../KF32Lib/src/kf32a156_cmp.c" void CMP2_POSITIVE_INPUT_SELECT (uint32_t Select) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2), ~((uint32_t)0x0F<<((28))), Select); } # 501 "../KF32Lib/src/kf32a156_cmp.c" void CMP2_NEGATIVE_INPUT_SELECT (uint32_t Select) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2), ~((uint32_t)0x0F<<((24))), Select); } # 529 "../KF32Lib/src/kf32a156_cmp.c" void CMP3_POSITIVE_INPUT_SELECT (uint32_t Select) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3), ~((uint32_t)0x0F<<((28))), Select); } # 558 "../KF32Lib/src/kf32a156_cmp.c" void CMP3_NEGATIVE_INPUT_SELECT (uint32_t Select) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3), ~((uint32_t)0x0F<<((24))), Select); } # 575 "../KF32Lib/src/kf32a156_cmp.c" void CMP_OUTPUT_POL_SELECT(uint32_t CMPx_ADDR, uint32_t Polarity) { ((void)0); ((void)0); switch (CMPx_ADDR) { case ((uint32_t)0x40000800): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0), ~((uint32_t)1<<((1))), Polarity); break; case ((uint32_t)0x40000804): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1), ~((uint32_t)1<<((1))), Polarity); break; case ((uint32_t)0x40000808): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2), ~((uint32_t)1<<((1))), Polarity); break; case ((uint32_t)0x4000080C): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3), ~((uint32_t)1<<((1))), Polarity); break; default:break; } } # 608 "../KF32Lib/src/kf32a156_cmp.c" void CMP_OUTPUT_SELECT (uint32_t Select) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4), ~((uint32_t)0x03<<((20))), Select); } void CMP_Cmd(uint32_t CMPx_ADDR, uint32_t NewState) { ((void)0); ((void)0); switch (CMPx_ADDR) { case ((uint32_t)0x40000800): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4), ~((uint32_t)1<<((0))), NewState << (0)); break; case ((uint32_t)0x40000804): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4), ~((uint32_t)1<<((1))), NewState << (1)); break; case ((uint32_t)0x40000808): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4), ~((uint32_t)1<<((2))), NewState << (2)); break; case ((uint32_t)0x4000080C): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3), ~((uint32_t)1<<((0))), NewState << (0)); break; default:break; } } # 656 "../KF32Lib/src/kf32a156_cmp.c" void CMP_WIN_Control_CLK_Select(uint32_t CMPx_ADDR, uint32_t Select) { ((void)0); ((void)0); switch (CMPx_ADDR) { case ((uint32_t)0x40000800): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0), ~((uint32_t)1<<(7)), Select << (7)); break; case ((uint32_t)0x40000804): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1), ~((uint32_t)1<<(7)), Select << (7)); break; case ((uint32_t)0x40000808): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2), ~((uint32_t)1<<(7)), Select << (7)); break; case ((uint32_t)0x4000080C): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3), ~((uint32_t)1<<(7)), Select << (7)); break; default:break; } } # 689 "../KF32Lib/src/kf32a156_cmp.c" void CMP_Filter_CLKSource_Select(uint32_t CMPx_ADDR, uint32_t Select) { ((void)0); ((void)0); switch (CMPx_ADDR) { case ((uint32_t)0x40000800): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0), ~((uint32_t)0x3<<((16))), Select); break; case ((uint32_t)0x40000804): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1), ~((uint32_t)0x3<<((16))), Select); break; case ((uint32_t)0x40000808): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2), ~((uint32_t)0x3<<((16))), Select); break; case ((uint32_t)0x4000080C): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3), ~((uint32_t)0x3<<((16))), Select); break; default:break; } } # 727 "../KF32Lib/src/kf32a156_cmp.c" void CMP_Filter_SampleNumber_Select(uint32_t CMPx_ADDR, uint32_t Select) { ((void)0); ((void)0); switch (CMPx_ADDR) { case ((uint32_t)0x40000800): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0), ~((uint32_t)0x7<<((4))), Select); break; case ((uint32_t)0x40000804): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1), ~((uint32_t)0x7<<((4))), Select); break; case ((uint32_t)0x40000808): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2), ~((uint32_t)0x7<<((4))), Select); break; case ((uint32_t)0x4000080C): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3), ~((uint32_t)0x7<<((4))), Select); break; default:break; } } # 765 "../KF32Lib/src/kf32a156_cmp.c" void CMP_Up_Down_Edge_INT_Enable(uint32_t CMPx_ADDR, uint32_t UDEdge, uint32_t NewState) { ((void)0); ((void)0); ((void)0); switch (CMPx_ADDR) { case ((uint32_t)0x40000800): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL0), ~(1<CTL1) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL1), ~(1<CTL2) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL2), ~(1<CTL3) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL3), ~(1<CTL4) & ((uint32_t)1<<((28)))) >> (28)); break; case ((uint32_t)0x40000804): return (((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) & ((uint32_t)1<<((29)))) >> (29)); break; case ((uint32_t)0x40000808): return (((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) & ((uint32_t)1<<((30)))) >> (30)); break; case ((uint32_t)0x4000080C): return (((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) & ((uint32_t)1<<((31)))) >> (31)); break; default:break; } } FlagStatus CMP_Get_INT_Flag(uint32_t CMPx_ADDR) { ((void)0); switch (CMPx_ADDR) { case ((uint32_t)0x40000800): return (((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) & ((uint32_t)1<<((24)))) >> (24)); break; case ((uint32_t)0x40000804): return (((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) & ((uint32_t)1<<((25)))) >> (25)); break; case ((uint32_t)0x40000808): return (((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) & ((uint32_t)1<<((26)))) >> (26)); break; case ((uint32_t)0x4000080C): return (((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) & ((uint32_t)1<<((27)))) >> (27)); break; default:break; } } # 853 "../KF32Lib/src/kf32a156_cmp.c" void CMP_Trigger_Select_Config (uint32_t TriSelect) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4), ~((uint32_t)1<<((23))), TriSelect); } RetStatus CMP_Clear_INT_Flag(uint32_t CMPx_ADDR) { volatile uint32_t wait_flag = 0x0000; ((void)0); switch (CMPx_ADDR) { case ((uint32_t)0x40000800): __asm volatile("SET [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((16))); while(((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) & ((uint32_t)1<<((24))))&& (wait_flag != (0xFFFF))) { wait_flag++; } __asm volatile("CLR [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((16))); break; case ((uint32_t)0x40000804): __asm volatile("SET [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((17))); while(((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) & ((uint32_t)1<<((25))))&& (wait_flag != (0xFFFF))) { wait_flag++; } __asm volatile("CLR [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((17))); break; case ((uint32_t)0x40000808): __asm volatile("SET [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((18))); while(((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) & ((uint32_t)1<<((26))))&& (wait_flag != (0xFFFF))) { wait_flag++; } __asm volatile("CLR [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((18))); break; case ((uint32_t)0x4000080C): __asm volatile("SET [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((19))); while(((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) & ((uint32_t)1<<((27))))&& (wait_flag != (0xFFFF))) { wait_flag++; } __asm volatile("CLR [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((19))); break; default:break; } if(wait_flag==(0xFFFF)) { return FAILURE; } return SUCCESS; } void CMP_INT_Enable(uint32_t CMPx_ADDR, uint32_t NewState) { ((void)0); ((void)0); switch (CMPx_ADDR) { case ((uint32_t)0x40000800): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4), ~((uint32_t)1<<((12))), NewState << (12)); break; case ((uint32_t)0x40000804): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4), ~((uint32_t)1<<((13))), NewState << (13)); break; case ((uint32_t)0x40000808): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4), ~((uint32_t)1<<((14))), NewState << (14)); break; case ((uint32_t)0x4000080C): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4), ~((uint32_t)1<<((15))), NewState << (15)); break; default:break; } } # 955 "../KF32Lib/src/kf32a156_cmp.c" void CMP_SluggishVoltage_Select (uint32_t Select) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4), ~((uint32_t)0x03<<((6))), Select); } # 972 "../KF32Lib/src/kf32a156_cmp.c" void CMP_HALLMODE_Select (uint32_t Select) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4), ~((uint32_t)1<<((5))), Select); } void CMP_BEMF_Enable (FunctionalState NewState) { ((void)0); if (NewState != FALSE) { __asm volatile("SET [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((4))); } else { __asm volatile("CLR [%0], #%1"::"r"(&((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4))),"i"((4))); } } # 1011 "../KF32Lib/src/kf32a156_cmp.c" void CMP_FLTINSEL_Select (uint32_t Select) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4) = SFR_Config ((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL4), ~((uint32_t)1<<((3))), Select); } # 1031 "../KF32Lib/src/kf32a156_cmp.c" void CMP_Win_Control_TRGMUX_CH_Select (uint32_t CMPx_ADDR, uint32_t Select) { ((void)0); ((void)0); switch (CMPx_ADDR) { case ((uint32_t)0x40000800): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL5) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL5), ~((uint32_t)0x03<<((0))), Select << (0)); break; case ((uint32_t)0x40000804): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL5) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL5), ~((uint32_t)0x03<<((2))), Select << (2)); break; case ((uint32_t)0x40000808): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL5) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL5), ~((uint32_t)0x03<<((4))), Select << (4)); break; case ((uint32_t)0x4000080C): (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL5) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL5), ~((uint32_t)0x03<<((6))), Select << (6)); break; default:break; } } # 1061 "../KF32Lib/src/kf32a156_cmp.c" void CMP_LP_Enable(FunctionalState NewState) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL5) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->CTL5), ~((uint32_t)1<<((8))), NewState << (8)); } # 1076 "../KF32Lib/src/kf32a156_cmp.c" void CMP_TRIM_PMOS_Enable(FunctionalState NewState) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM0) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM0), ~((uint32_t)1<<((30))), NewState << (30)); } # 1091 "../KF32Lib/src/kf32a156_cmp.c" void CMP_TRIM_NMOS_Enable(FunctionalState NewState) { ((void)0); (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM0) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM0), ~((uint32_t)1<<((31))), NewState << (31)); } void CMP_TRIM_PMOS_Cail(uint32_t CMPx_ADDR, uint8_t Value) { ((void)0); ((void)0); switch (CMPx_ADDR) { case ((uint32_t)0x40000800): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM0) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM0), ~((uint32_t)0x3F<<((8))), Value << (8)); break; case ((uint32_t)0x40000804): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM1) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM1), ~((uint32_t)0x3F<<((8))), Value << (8)); break; case ((uint32_t)0x40000808): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM2) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM2), ~((uint32_t)0x3F<<((8))), Value << (8)); break; case ((uint32_t)0x4000080C): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM3) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM3), ~((uint32_t)0x3F<<((8))), Value << (8)); break; default:break; } } # 1137 "../KF32Lib/src/kf32a156_cmp.c" void CMP_TRIM_PMOS_Direction_Select(uint32_t CMPx_ADDR, uint32_t Direction) { ((void)0); ((void)0); switch (CMPx_ADDR) { case ((uint32_t)0x40000800): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM0) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM0), ~((uint32_t)1<<((7))), Direction << (7)); break; case ((uint32_t)0x40000804): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM1) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM1), ~((uint32_t)1<<((7))), Direction << (7)); break; case ((uint32_t)0x40000808): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM2) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM2), ~((uint32_t)1<<((7))), Direction << (7)); break; case ((uint32_t)0x4000080C): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM3) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM3), ~((uint32_t)1<<((7))), Direction << (7)); break; default:break; } } void CMP_TRIM_NMOS_Cail(uint32_t CMPx_ADDR, uint8_t Value) { ((void)0); ((void)0); switch (CMPx_ADDR) { case ((uint32_t)0x40000800): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM0) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM0), ~((uint32_t)0x3F<<((1))), Value << (1)); break; case ((uint32_t)0x40000804): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM1) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM1), ~((uint32_t)0x3F<<((1))), Value << (1)); break; case ((uint32_t)0x40000808): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM2) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM2), ~((uint32_t)0x3F<<((1))), Value << (1)); break; case ((uint32_t)0x4000080C): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM3) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM3), ~((uint32_t)0x3F<<((1))), Value << (1)); break; default:break; } } # 1199 "../KF32Lib/src/kf32a156_cmp.c" void CMP_TRIM_NMOS_Direction_Select(uint32_t CMPx_ADDR, uint32_t Direction) { ((void)0); ((void)0); switch (CMPx_ADDR) { case ((uint32_t)0x40000800): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM0) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM0), ~((uint32_t)1<<((0))), Direction << (0)); break; case ((uint32_t)0x40000804): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM1) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM1), ~((uint32_t)1<<((0))), Direction << (0)); break; case ((uint32_t)0x40000808): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM2) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM2), ~((uint32_t)1<<((0))), Direction << (0)); break; case ((uint32_t)0x4000080C): (((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM3) = SFR_Config((((CMP_SFRmap *) ((uint32_t)0x40000800))->TRIM3), ~((uint32_t)1<<((0))), Direction << (0)); break; default:break; } }