REG= { PWMA_PPR=1074003968, PWMA_CSR=1074003972, PWMA_PCR=1074003976, PWMA_CNR0=1074003980, PWMA_CMR0=1074003984, PWMA_PDR0=1074003988, PWMA_CNR1=1074003992, PWMA_CMR1=1074003996, PWMA_PDR1=1074004000, PWMA_CNR2=1074004004, PWMA_CMR2=1074004008, PWMA_PDR2=1074004012, PWMA_CNR3=1074004016, PWMA_CMR3=1074004020, PWMA_PDR3=1074004024, PWMA_PBCR=1074004028, PWMA_PIER=1074004032, PWMA_PIIR=1074004036, PWMA_CCR0=1074004048, PWMA_CCR2=1074004052, PWMA_CRLR0=1074004056, PWMA_CFLR0=1074004060, PWMA_CRLR1=1074004064, PWMA_CFLR1=1074004068, PWMA_CRLR2=1074004072, PWMA_CFLR2=1074004076, PWMA_CRLR3=1074004080, PWMA_CFLR3=1074004084, PWMA_CAPENR=1074004088, PWMA_POE=1074004092, PWMA_TCON=1074004096, PWMA_TSTATUS=1074004100, PWMA_SYNCBUSY0=1074004104, PWMA_SYNCBUSY1=1074004108, PWMA_SYNCBUSY2=1074004112, PWMA_SYNCBUSY3=1074004116, PWMA_CAPPDMACTL=1074004160, PWMA_CAP0PDMA=1074004164, PWMA_CAP1PDMA=1074004168, PWMA_CAP2PDMA=1074004172, PWMA_CAP3PDMA=1074004176, ADC_ADDR0=1074659328, ADC_ADDR1=1074659332, ADC_ADDR2=1074659336, ADC_ADDR3=1074659340, ADC_ADDR4=1074659344, ADC_ADDR5=1074659348, ADC_ADDR6=1074659352, ADC_ADDR7=1074659356, ADC_ADCR=1074659360, ADC_ADCHER=1074659364, ADC_ADCMPR0=1074659368, ADC_ADCMPR1=1074659372, ADC_ADSR=1074659376, ADC_ADPDMA=1074659392, CLK_PWRCON=1342177792, CLK_AHBCLK=1342177796, CLK_APBCLK=1342177800, CLK_CLKSTATUS=1342177804, CLK_CLKSEL0=1342177808, CLK_CLKSEL1=1342177812, CLK_CLKSEL2=1342177820, CLK_CLKDIV=1342177816, CLK_PLLCON=1342177824, CLK_FRQDIV=1342177828, CLK_APBDIV=1342177836, FMC_ISPCON=1342226432, FMC_ISPADR=1342226436, FMC_ISPDAT=1342226440, FMC_ISPCMD=1342226444, FMC_ISPTRG=1342226448, FMC_DFBADR=1342226452, FMC_FATCON=1342226456, GCR_PDID=1342177280, GCR_RSTSRC=1342177284, GCR_IPRSTC1=1342177288, GCR_IPRSTC2=1342177292, GCR_BODCR=1342177304, GCR_PORCR=1342177316, GCR_GPA_MFP=1342177328, GCR_GPB_MFP=1342177332, GCR_GPC_MFP=1342177336, GCR_GPD_MFP=1342177340, GCR_GPF_MFP=1342177348, GCR_ALT_MFP=1342177360, GCR_ALT_MFP1=1342177364, GCR_GPA_IOCR=1342177472, GCR_GPB_IOCR=1342177476, GCR_GPD_IOCR=1342177484, GCR_REGWRPROT=1342177536, GCR_MFP_CSS=1342177580, GCR_GPA_MFPH=1342177588, GCR_GPB_MFPL=1342177592, GCR_GPB_MFPH=1342177596, GCR_GPC_MFPL=1342177600, GCR_GPC_MFPH=1342177604, GCR_GPD_MFPL=1342177608, GCR_GPD_MFPH=1342177612, GCR_GPF_MFPL=1342177624, GP_GPIOA_PMD=1342193664, GP_GPIOA_OFFD=1342193668, GP_GPIOA_DOUT=1342193672, GP_GPIOA_DMASK=1342193676, GP_GPIOA_PIN=1342193680, GP_GPIOA_DBEN=1342193684, GP_GPIOA_IMD=1342193688, GP_GPIOA_IEN=1342193692, GP_GPIOA_ISRC=1342193696, GP_GPIOB_PMD=1342193728, GP_GPIOB_OFFD=1342193732, GP_GPIOB_DOUT=1342193736, GP_GPIOB_DMASK=1342193740, GP_GPIOB_PIN=1342193744, GP_GPIOB_DBEN=1342193748, GP_GPIOB_IMD=1342193752, GP_GPIOB_IEN=1342193756, GP_GPIOB_ISRC=1342193760, GP_GPIOC_PMD=1342193792, GP_GPIOC_OFFD=1342193796, GP_GPIOC_DOUT=1342193800, GP_GPIOC_DMASK=1342193804, GP_GPIOC_PIN=1342193808, GP_GPIOC_DBEN=1342193812, GP_GPIOC_IMD=1342193816, GP_GPIOC_IEN=1342193820, GP_GPIOC_ISRC=1342193824, GP_GPIOD_PMD=1342193856, GP_GPIOD_OFFD=1342193860, GP_GPIOD_DOUT=1342193864, GP_GPIOD_DMASK=1342193868, GP_GPIOD_PIN=1342193872, GP_GPIOD_DBEN=1342193876, GP_GPIOD_IMD=1342193880, GP_GPIOD_IEN=1342193884, GP_GPIOD_ISRC=1342193888, GP_GPIOF_PMD=1342193984, GP_GPIOF_OFFD=1342193988, GP_GPIOF_DOUT=1342193992, GP_GPIOF_DMASK=1342193996, GP_GPIOF_PIN=1342194000, GP_GPIOF_DBEN=1342194004, GP_GPIOF_IMD=1342194008, GP_GPIOF_IEN=1342194012, GP_GPIOF_ISRC=1342194016, GP_DBNCECON=1342194048, GP_GPIOA10_DOUT=1342194216, GP_GPIOA11_DOUT=1342194220, GP_GPIOA12_DOUT=1342194224, GP_GPIOA13_DOUT=1342194228, GP_GPIOA14_DOUT=1342194232, GP_GPIOA15_DOUT=1342194236, GP_GPIOB0_DOUT=1342194240, GP_GPIOB1_DOUT=1342194244, GP_GPIOB2_DOUT=1342194248, GP_GPIOB3_DOUT=1342194252, GP_GPIOB4_DOUT=1342194256, GP_GPIOB5_DOUT=1342194260, GP_GPIOB6_DOUT=1342194264, GP_GPIOB7_DOUT=1342194268, GP_GPIOB8_DOUT=1342194272, GP_GPIOB9_DOUT=1342194276, GP_GPIOB10_DOUT=1342194280, GP_GPIOB12_DOUT=1342194288, GP_GPIOB13_DOUT=1342194292, GP_GPIOB14_DOUT=1342194296, GP_GPIOB15_DOUT=1342194300, GP_GPIOC0_DOUT=1342194304, GP_GPIOC1_DOUT=1342194308, GP_GPIOC2_DOUT=1342194312, GP_GPIOC3_DOUT=1342194316, GP_GPIOC4_DOUT=1342194320, GP_GPIOC5_DOUT=1342194324, GP_GPIOC8_DOUT=1342194336, GP_GPIOC9_DOUT=1342194340, GP_GPIOC10_DOUT=1342194344, GP_GPIOC11_DOUT=1342194348, GP_GPIOC12_DOUT=1342194352, GP_GPIOC13_DOUT=1342194356, GP_GPIOD0_DOUT=1342194368, GP_GPIOD1_DOUT=1342194372, GP_GPIOD2_DOUT=1342194376, GP_GPIOD3_DOUT=1342194380, GP_GPIOD4_DOUT=1342194384, GP_GPIOD5_DOUT=1342194388, GP_GPIOD8_DOUT=1342194400, GP_GPIOD9_DOUT=1342194404, GP_GPIOD10_DOUT=1342194408, GP_GPIOD11_DOUT=1342194412, GP_GPIOF0_DOUT=1342194496, GP_GPIOF1_DOUT=1342194500, GP_GPIOF2_DOUT=1342194504, GP_GPIOF3_DOUT=1342194508, I2C0_I2CON=1073872896, I2C0_I2CADDR0=1073872900, I2C0_I2CDAT=1073872904, I2C0_I2CSTATUS=1073872908, I2C0_I2CLK=1073872912, I2C0_I2CTOC=1073872916, I2C0_I2CADDR1=1073872920, I2C0_I2CADDR2=1073872924, I2C0_I2CADDR3=1073872928, I2C0_I2CADM0=1073872932, I2C0_I2CADM1=1073872936, I2C0_I2CADM2=1073872940, I2C0_I2CADM3=1073872944, I2C0_I2CWKUPCON=1073872956, I2C0_I2CWKUPSTS=1073872960, I2C1_I2CON=1074921472, I2C1_I2CADDR0=1074921476, I2C1_I2CDAT=1074921480, I2C1_I2CSTATUS=1074921484, I2C1_I2CLK=1074921488, I2C1_I2CTOC=1074921492, I2C1_I2CADDR1=1074921496, I2C1_I2CADDR2=1074921500, I2C1_I2CADDR3=1074921504, I2C1_I2CADM0=1074921508, I2C1_I2CADM1=1074921512, I2C1_I2CADM2=1074921516, I2C1_I2CADM3=1074921520, I2C1_I2CWKUPCON=1074921532, I2C1_I2CWKUPSTS=1074921536, I2S_I2S_CON=1075445760, I2S_I2S_CLKDIV=1075445764, I2S_I2S_IE=1075445768, I2S_I2S_STATUS=1075445772, I2S_I2S_TXFIFO=1075445776, I2S_I2S_RXFIFO=1075445780, INT_IRQ0_SRC=1342178048, INT_IRQ1_SRC=1342178052, INT_IRQ2_SRC=1342178056, INT_IRQ3_SRC=1342178060, INT_IRQ4_SRC=1342178064, INT_IRQ5_SRC=1342178068, INT_IRQ6_SRC=1342178072, INT_IRQ7_SRC=1342178076, INT_IRQ8_SRC=1342178080, INT_IRQ9_SRC=1342178084, INT_IRQ10_SRC=1342178088, INT_IRQ11_SRC=1342178092, INT_IRQ12_SRC=1342178096, INT_IRQ13_SRC=1342178100, INT_IRQ14_SRC=1342178104, INT_IRQ15_SRC=1342178108, INT_IRQ16_SRC=1342178112, INT_IRQ17_SRC=1342178116, INT_IRQ18_SRC=1342178120, INT_IRQ19_SRC=1342178124, INT_IRQ20_SRC=1342178128, INT_IRQ21_SRC=1342178132, INT_IRQ22_SRC=1342178136, INT_IRQ23_SRC=1342178140, INT_IRQ24_SRC=1342178144, INT_IRQ25_SRC=1342178148, INT_IRQ26_SRC=1342178152, INT_IRQ27_SRC=1342178156, INT_IRQ28_SRC=1342178160, INT_IRQ29_SRC=1342178164, INT_IRQ30_SRC=1342178168, INT_IRQ31_SRC=1342178172, INT_NMI_SEL=1342178176, INT_MCU_IRQ=1342178180, PDMA0_PDMA_CSRx=1342210048, PDMA0_PDMA_SARx=1342210052, PDMA0_PDMA_DARx=1342210056, PDMA0_PDMA_BCRx=1342210060, PDMA0_PDMA_POINTx=1342210064, PDMA0_PDMA_CSARx=1342210068, PDMA0_PDMA_CDARx=1342210072, PDMA0_PDMA_CBCRx=1342210076, PDMA0_PDMA_IERx=1342210080, PDMA0_PDMA_ISRx=1342210084, PDMA0_PDMA_SBUF0_cx=1342210176, PDMA1_PDMA_CSRx=1342210304, PDMA1_PDMA_SARx=1342210308, PDMA1_PDMA_DARx=1342210312, PDMA1_PDMA_BCRx=1342210316, PDMA1_PDMA_POINTx=1342210320, PDMA1_PDMA_CSARx=1342210324, PDMA1_PDMA_CDARx=1342210328, PDMA1_PDMA_CBCRx=1342210332, PDMA1_PDMA_IERx=1342210336, PDMA1_PDMA_ISRx=1342210340, PDMA1_PDMA_SBUF0_cx=1342210432, PDMA2_PDMA_CSRx=1342210560, PDMA2_PDMA_SARx=1342210564, PDMA2_PDMA_DARx=1342210568, PDMA2_PDMA_BCRx=1342210572, PDMA2_PDMA_POINTx=1342210576, PDMA2_PDMA_CSARx=1342210580, PDMA2_PDMA_CDARx=1342210584, PDMA2_PDMA_CBCRx=1342210588, PDMA2_PDMA_IERx=1342210592, PDMA2_PDMA_ISRx=1342210596, PDMA2_PDMA_SBUF0_cx=1342210688, PDMA3_PDMA_CSRx=1342210816, PDMA3_PDMA_SARx=1342210820, PDMA3_PDMA_DARx=1342210824, PDMA3_PDMA_BCRx=1342210828, PDMA3_PDMA_POINTx=1342210832, PDMA3_PDMA_CSARx=1342210836, PDMA3_PDMA_CDARx=1342210840, PDMA3_PDMA_CBCRx=1342210844, PDMA3_PDMA_IERx=1342210848, PDMA3_PDMA_ISRx=1342210852, PDMA3_PDMA_SBUF0_cx=1342210944, PDMA4_PDMA_CSRx=1342211072, PDMA4_PDMA_SARx=1342211076, PDMA4_PDMA_DARx=1342211080, PDMA4_PDMA_BCRx=1342211084, PDMA4_PDMA_POINTx=1342211088, PDMA4_PDMA_CSARx=1342211092, PDMA4_PDMA_CDARx=1342211096, PDMA4_PDMA_CBCRx=1342211100, PDMA4_PDMA_IERx=1342211104, PDMA4_PDMA_ISRx=1342211108, PDMA4_PDMA_SBUF0_cx=1342211200, PDMA5_PDMA_CSRx=1342211328, PDMA5_PDMA_SARx=1342211332, PDMA5_PDMA_DARx=1342211336, PDMA5_PDMA_BCRx=1342211340, PDMA5_PDMA_POINTx=1342211344, PDMA5_PDMA_CSARx=1342211348, PDMA5_PDMA_CDARx=1342211352, PDMA5_PDMA_CBCRx=1342211356, PDMA5_PDMA_IERx=1342211360, PDMA5_PDMA_ISRx=1342211364, PDMA5_PDMA_SBUF0_cx=1342211456, PDMA_GCR_PDMA_GCRCSR=1342213888, PDMA_GCR_PDSSR0=1342213892, PDMA_GCR_PDSSR1=1342213896, PDMA_GCR_PDMA_GCRISR=1342213900, PDMA_GCR_PDSSR2=1342213904, PS2_PS2CON=1074790400, PS2_PS2TXDATA0=1074790404, PS2_PS2TXDATA1=1074790408, PS2_PS2TXDATA2=1074790412, PS2_PS2TXDATA3=1074790416, PS2_PS2RXDATA=1074790420, PS2_PS2STATUS=1074790424, PS2_PS2INTID=1074790428, SCS_CPUID=3758157056, SCS_ICSR=3758157060, SCS_AIRCR=3758157068, SCS_SCR=3758157072, SCS_SHPR2=3758157084, SCS_SHPR3=3758157088, SPI0_SPI_CNTRL=1073938432, SPI0_SPI_DIVIDER=1073938436, SPI0_SPI_SSR=1073938440, SPI0_SPI_RX0=1073938448, SPI0_SPI_RX1=1073938452, SPI0_SPI_TX0=1073938464, SPI0_SPI_TX1=1073938468, SPI0_SPI_VARCLK=1073938484, SPI0_SPI_DMA=1073938488, SPI0_SPI_CNTRL2=1073938492, SPI0_SPI_FIFO_CTL=1073938496, SPI0_SPI_STATUS=1073938500, SPI1_SPI_CNTRL=1073954816, SPI1_SPI_DIVIDER=1073954820, SPI1_SPI_SSR=1073954824, SPI1_SPI_RX0=1073954832, SPI1_SPI_RX1=1073954836, SPI1_SPI_TX0=1073954848, SPI1_SPI_TX1=1073954852, SPI1_SPI_VARCLK=1073954868, SPI1_SPI_DMA=1073954872, SPI1_SPI_CNTRL2=1073954876, SPI1_SPI_FIFO_CTL=1073954880, SPI1_SPI_STATUS=1073954884, SPI2_SPI_CNTRL=1074987008, SPI2_SPI_DIVIDER=1074987012, SPI2_SPI_SSR=1074987016, SPI2_SPI_RX0=1074987024, SPI2_SPI_RX1=1074987028, SPI2_SPI_TX0=1074987040, SPI2_SPI_TX1=1074987044, SPI2_SPI_VARCLK=1074987060, SPI2_SPI_DMA=1074987064, SPI2_SPI_CNTRL2=1074987068, SPI2_SPI_FIFO_CTL=1074987072, SPI2_SPI_STATUS=1074987076, TMR_TCSR0=1073807360, TMR_TCMPR0=1073807364, TMR_TISR0=1073807368, TMR_TDR0=1073807372, TMR_TCAP0=1073807376, TMR_TEXCON0=1073807380, TMR_TEXISR0=1073807384, TMR_TCSR1=1073807392, TMR_TCMPR1=1073807396, TMR_TISR1=1073807400, TMR_TDR1=1073807404, TMR_TCAP1=1073807408, TMR_TEXCON1=1073807412, TMR_TEXISR1=1073807416, TMR_TCSR2=1074855936, TMR_TCMPR2=1074855940, TMR_TISR2=1074855944, TMR_TDR2=1074855948, TMR_TCAP2=1074855952, TMR_TEXCON2=1074855956, TMR_TEXISR2=1074855960, TMR_TCSR3=1074855968, TMR_TCMPR3=1074855972, TMR_TISR3=1074855976, TMR_TDR3=1074855980, TMR_TCAP3=1074855984, TMR_TEXCON3=1074855988, TMR_TEXISR3=1074855992, UART0_UA_RBR=1074069504, UART0_UA_THR=1074069504, UART0_UA_IER=1074069508, UART0_UA_FCR=1074069512, UART0_UA_LCR=1074069516, UART0_UA_MCR=1074069520, UART0_UA_MSR=1074069524, UART0_UA_FSR=1074069528, UART0_UA_ISR=1074069532, UART0_UA_TOR=1074069536, UART0_UA_BAUD=1074069540, UART0_UA_IRCR=1074069544, UART0_UA_ALT_CSR=1074069548, UART0_UA_FUN_SEL=1074069552, UART1_UA_RBR=1075118080, UART1_UA_THR=1075118080, UART1_UA_IER=1075118084, UART1_UA_FCR=1075118088, UART1_UA_LCR=1075118092, UART1_UA_MCR=1075118096, UART1_UA_MSR=1075118100, UART1_UA_FSR=1075118104, UART1_UA_ISR=1075118108, UART1_UA_TOR=1075118112, UART1_UA_BAUD=1075118116, UART1_UA_IRCR=1075118120, UART1_UA_ALT_CSR=1075118124, UART1_UA_FUN_SEL=1075118128, USB_USB_INTEN=1074135040, USB_USB_INTSTS=1074135044, USB_USB_FADDR=1074135048, USB_USB_EPSTS=1074135052, USB_USB_ATTR=1074135056, USB_USB_FLDET=1074135060, USB_USB_BUFSEG=1074135064, USB_USB_BUFSEG0=1074135072, USB_USB_MXPLD0=1074135076, USB_USB_CFG0=1074135080, USB_USB_CFGP0=1074135084, USB_USB_BUFSEG1=1074135088, USB_USB_MXPLD1=1074135092, USB_USB_CFG1=1074135096, USB_USB_CFGP1=1074135100, USB_USB_BUFSEG2=1074135104, USB_USB_MXPLD2=1074135108, USB_USB_CFG2=1074135112, USB_USB_CFGP2=1074135116, USB_USB_BUFSEG3=1074135120, USB_USB_MXPLD3=1074135124, USB_USB_CFG3=1074135128, USB_USB_CFGP3=1074135132, USB_USB_BUFSEG4=1074135136, USB_USB_MXPLD4=1074135140, USB_USB_CFG4=1074135144, USB_USB_CFGP4=1074135148, USB_USB_BUFSEG5=1074135152, USB_USB_MXPLD5=1074135156, USB_USB_CFG5=1074135160, USB_USB_CFGP5=1074135164, USB_USB_DRVSE0=1074135184, USB_USB_PDMA=1074135204, USB_USB_BUFSEG0=1074136320, USB_USB_MXPLD0=1074136324, USB_USB_CFG0=1074136328, USB_USB_CFGP0=1074136332, USB_USB_BUFSEG1=1074136336, USB_USB_MXPLD1=1074136340, USB_USB_CFG1=1074136344, USB_USB_CFGP1=1074136348, USB_USB_BUFSEG2=1074136352, USB_USB_MXPLD2=1074136356, USB_USB_CFG2=1074136360, USB_USB_CFGP2=1074136364, USB_USB_BUFSEG3=1074136368, USB_USB_MXPLD3=1074136372, USB_USB_CFG3=1074136376, USB_USB_CFGP3=1074136380, USB_USB_BUFSEG4=1074136384, USB_USB_MXPLD4=1074136388, USB_USB_CFG4=1074136392, USB_USB_CFGP4=1074136396, USB_USB_BUFSEG5=1074136400, USB_USB_MXPLD5=1074136404, USB_USB_CFG5=1074136408, USB_USB_CFGP5=1074136412, USB_USB_BUFSEG6=1074136416, USB_USB_MXPLD6=1074136420, USB_USB_CFG6=1074136424, USB_USB_CFGP6=1074136428, USB_USB_BUFSEG7=1074136432, USB_USB_MXPLD7=1074136436, USB_USB_CFG7=1074136440, USB_USB_CFGP7=1074136444, } g_NUC123_regs=REG function read_NUC123_Registers(e,e,e,e) local e={} e["GCR_GPA_MFP"], e["GCR_GPB_MFP"], e["GCR_GPC_MFP"], e["GCR_GPD_MFP"], e["GCR_GPE_MFP"], e["GCR_GPF_MFP"], e["REG_DUMMY0"], e["REG_DUMMY1"], e["GCR_ALT_MFP"], e["GCR_ALT_MFP1"]=ice:ReadMem32(g_NUC123_regs.GCR_GPA_MFP,10) e["GCR_GPA_MFPH"], e["GCR_GPB_MFPL"], e["GCR_GPB_MFPH"], e["GCR_GPC_MFPL"], e["GCR_GPC_MFPH"], e["GCR_GPD_MFPL"], e["GCR_GPD_MFPH"]=ice:ReadMem32(g_NUC123_regs.GCR_GPA_MFPH,7) e["GCR_GPF_MFPL"], e["GCR_MFP_CSS"]=ice:ReadMemMulti(g_NUC123_regs.GCR_GPF_MFPL, g_NUC123_regs.GCR_MFP_CSS) e["GP_GPIOA_PMD"], e["GP_GPIOA_OFFD"], e["GP_GPIOA_DOUT"], e["GP_GPIOA_DMASK"], e["GP_GPIOA_PIN"]=ice:ReadMem32(g_NUC123_regs.GP_GPIOA_PMD,5) e["GP_GPIOB_PMD"], e["GP_GPIOB_OFFD"], e["GP_GPIOB_DOUT"], e["GP_GPIOB_DMASK"], e["GP_GPIOB_PIN"]=ice:ReadMem32(g_NUC123_regs.GP_GPIOB_PMD,5) e["GP_GPIOC_PMD"], e["GP_GPIOC_OFFD"], e["GP_GPIOC_DOUT"], e["GP_GPIOC_DMASK"], e["GP_GPIOC_PIN"]=ice:ReadMem32(g_NUC123_regs.GP_GPIOC_PMD,5) e["GP_GPIOD_PMD"], e["GP_GPIOD_OFFD"], e["GP_GPIOD_DOUT"], e["GP_GPIOD_DMASK"], e["GP_GPIOD_PIN"]=ice:ReadMem32(g_NUC123_regs.GP_GPIOD_PMD,5) e["GP_GPIOF_PMD"], e["GP_GPIOF_OFFD"], e["GP_GPIOF_DOUT"], e["GP_GPIOF_DMASK"], e["GP_GPIOF_PIN"]=ice:ReadMem32(g_NUC123_regs.GP_GPIOF_PMD,5) e["CLK_PWRCON"], e["CLK_AHBCLK"], e["CLK_APBCLK"], e["CLK_CLKSTATUS"], e["CLK_CLKSEL0"], e["CLK_CLKSEL1"], e["CLK_CLKDIV"], e["CLK_CLKSEL2"], e["CLK_PLLCON"], e["CLK_FRQDIV"]=ice:ReadMem32(g_NUC123_regs.CLK_PWRCON,10) e["CLK_APBDIV"]=ice:ReadMem32(g_NUC123_regs.CLK_APBDIV) e["I2S_I2S_CON"], e["I2S_I2S_CLKDIV"]=ice:ReadMemMulti(g_NUC123_regs.I2S_I2S_CON, g_NUC123_regs.I2S_I2S_CLKDIV) e["PWMA_PPR"], e["PWMA_CSR"]=ice:ReadMemMulti(g_NUC123_regs.PWMA_PPR, g_NUC123_regs.PWMA_CSR) e["UART0_UA_BAUD"], e["UART1_UA_BAUD"]=ice:ReadMemMulti(g_NUC123_regs.UART0_UA_BAUD, g_NUC123_regs.UART1_UA_BAUD) e["SPI0_SPI_CNTRL"], e["SPI0_SPI_DIVIDER"], e["SPI1_SPI_CNTRL"], e["SPI1_SPI_DIVIDER"]=ice:ReadMemMulti(g_NUC123_regs.SPI0_SPI_CNTRL, g_NUC123_regs.SPI0_SPI_DIVIDER, g_NUC123_regs.SPI1_SPI_CNTRL, g_NUC123_regs.SPI1_SPI_DIVIDER) e["SPI2_SPI_CNTRL"], e["SPI2_SPI_DIVIDER"]=ice:ReadMemMulti(g_NUC123_regs.SPI2_SPI_CNTRL, g_NUC123_regs.SPI2_SPI_DIVIDER) e["SPI0_SPI_CNTRL2"], e["SPI1_SPI_CNTRL2"], e["SPI2_SPI_CNTRL2"]=ice:ReadMemMulti(g_NUC123_regs.SPI0_SPI_CNTRL2, g_NUC123_regs.SPI1_SPI_CNTRL2, g_NUC123_regs.SPI2_SPI_CNTRL2) e["I2C0_I2CON"], e["I2C0_I2CLK"], e["I2C1_I2CON"], e["I2C1_I2CLK"]=ice:ReadMemMulti(g_NUC123_regs.I2C0_I2CON, g_NUC123_regs.I2C0_I2CLK, g_NUC123_regs.I2C1_I2CON, g_NUC123_regs.I2C1_I2CLK) e["TMR_TCSR0"], e["TMR_TCSR1"], e["TMR_TCSR2"], e["TMR_TCSR3"]=ice:ReadMemMulti(g_NUC123_regs.TMR_TCSR0, g_NUC123_regs.TMR_TCSR1, g_NUC123_regs.TMR_TCSR2, g_NUC123_regs.TMR_TCSR3) return e end local n={ [0]=kPinDirection_In, [1]=kPinDirection_PushPullOut, [2]=kPinDirection_OpenDrainOut, [3]=kPinDirection_Bi, } local m={ [0]="INPUT", [1]="OUTPUT", [2]="Open-Drain", [3]="Quasi-bidirectional", } function get_mfp_regs(a,o,s,i,n) local t=get_chip_info()["series_group"] local e if t==0 then e={"GCR_GP"..o.."_MFP"} else local t=ext.band(a["GCR_MFP_CSS"],1) if t==0 then e={"GCR_GP"..o.."_MFP"} else local t if s>=0 and s<=7 then t="L" else t="H" end e={"GCR_GP"..o.."_MFP"..t} end table.insert(e,"GCR_MFP_CSS") end if i~=nil then table.insert(e,i)end if n~=nil then table.insert(e,n)end if#e>1 then return reg2str("Multi-Function registers",g_NUC123_regs,a,e) else return reg2str("Multi-Function register",g_NUC123_regs,a,e) end end function fill_NUC123_GPIO(o,s,t,e,r,u,c) if r==nil then r=string.format("P%s.%d",t,e)end local a=s["GP_GPIO"..t.."_PMD"] local f=s["GP_GPIO"..t.."_OFFD"] local d=s["GP_GPIO"..t.."_DOUT"] local h=s["GP_GPIO"..t.."_DMASK"] local l=s["GP_GPIO"..t.."_PIN"] o["highlight_text"]=r o["normal_color"]=kColor_Invalid o["highlight_color"]=kColor_GPIO o["pin_bg_color"]=kBgColor_GPIO local i=ext.band(ext.rshift(a,e*2),3) o["direction"]=n[i] if n[i]==kPinDirection_In or n[i]==kPinDirection_Bi then if ext.band(l,ext.lshift(1,e))==0 then o["status"]=kPinStatus_Low else o["status"]=kPinStatus_High end else if ext.band(h,ext.lshift(1,e))~=0 then o["status"]=kPinStatus_Unknown elseif ext.band(d,ext.lshift(1,e))==0 then o["status"]=kPinStatus_Low else o["status"]=kPinStatus_High end end local a=string.format("P%s.%d is in %s mode
", t,e,m[i]) if n[i]==kPinDirection_In or n[i]==kPinDirection_Bi then if ext.band(l,ext.lshift(1,e))==0 then a=a.."Pin input low
" else a=a.."Pin input high
" end end if n[i]==kPinDirection_PushPullOut or n[i]==kPinDirection_OpenDrainOut or n[i]==kPinDirection_Bi then if ext.band(h,ext.lshift(1,e))~=0 then a=a.."Pin output masked
" elseif ext.band(d,ext.lshift(1,e))==0 then a=a.."Pin output low
" else a=a.."Pin output high
" end end if ext.band(f,ext.lshift(1,e+16))==0 then a=a.."IO digital input path enabled
" else a=a.."IO digital input path disabled(digital input tied to low)
" end local h="" if n[i]==kPinDirection_PushPullOut or n[i]==kPinDirection_Bi then if ext.band(d,ext.lshift(1,e))==0 and ext.band(l,ext.lshift(1,e))~=0 then h=string.format("Leakage warning: GP%s_DOUT[%d] = 0, GP%s_PIN[%d] = 1
",t,e,t,e) elseif ext.band(d,ext.lshift(1,e))~=0 and ext.band(l,ext.lshift(1,e))==0 then h=string.format("Leakage warning: GP%s_DOUT[%d] = 1, GP%s_PIN[%d] = 0
",t,e,t,e) end end if h~=""then o["pin_no_color"]=kBgColor_Error h=""..h.."" end local i={ "GP_GPIO"..t.."_PMD", "GP_GPIO"..t.."_OFFD", "GP_GPIO"..t.."_DOUT", "GP_GPIO"..t.."_DMASK", "GP_GPIO"..t.."_PIN"} local i=reg2str("GPIO setting registers",g_NUC123_regs,s,i) o["information"]=string.format( "%s
%s
".. "%s%s".. "Information
".. "%s", r, h, get_mfp_regs(s,t,e,u,c), i, a) end function fill_invalid_GPIO(e,n,a,t,s,i) e["highlight_text"]=string.format("P%s.%d",a,t) e["normal_color"]=kColor_Invalid e["highlight_color"]=kColor_Invalid e["pin_bg_color"]=kBgColor_Invalid e["direction"]=kPinDirection_Unknown e["status"]=kPinStatus_Unknown e["pin_no_color"]=kBgColor_Error local o="Undefined setting in Multi-Function registers for this pin
" e["information"]=string.format( "P%s.%d
%s
".. "%s", a,t, o, get_mfp_regs(n,a,t,s,i)) end function get_XTL12M_clock(a,o) local e local t table.insert(o,"CLK_PWRCON") local a=ext.band(a["CLK_PWRCON"],1) if a==0 then e=0 t="invalid external 4~24M high speed crystal clock (see PWRCON[0].XTL12M_EN)" else e=12000000 t="external 4~24M high speed crystal clock, when external input clock is 12M" end return e,t end function get_OSC22M_clock(o,a) local e local t table.insert(a,"CLK_PWRCON") local a=ext.band(o["CLK_PWRCON"],4) if a==0 then e=0 t="invalid internal 22.1184MHz high speed oscillator clock (see PWRCON[2].OSC22M_EN)" else e=22118400 t="internal 22.1184MHz high speed oscillator clock" end return e,t end function get_OSC10K_clock(o,a) local t local e table.insert(a,"CLK_PWRCON") local a=ext.band(o["CLK_PWRCON"],8) if a==0 then t=0 e="invalid internal 10kHz low speed oscillator clock (see PWRCON[3].OSC10K_EN)" else t=10000 e="internal 10kHz low speed oscillator clock" end return t,e end function get_PLL_clock(a,o) local t local e table.insert(o,"CLK_PLLCON") if ext.band(a["CLK_PLLCON"],65536)~=0 then t=0 e="invalid PLL clock, PLL is in power down mode (see PLLCON[16].PD)" else if ext.band(a["CLK_PLLCON"],524288)~=0 then t,e=get_OSC22M_clock(a,o) else t,e=get_XTL12M_clock(a,o) end if t~=0 then if ext.band(a["CLK_PLLCON"],131072)~=0 then e=string.format("PLL clock (%sHz), bypassed from %s",val2str(t),e) else local o={1,2,2,4} local i=ext.band(a["CLK_PLLCON"],511)+2 local n=ext.rshift(ext.band(a["CLK_PLLCON"],15872),9)+2 local a=o[ext.rshift(ext.band(a["CLK_PLLCON"],49152),14)+1] t=t*i/n/a e=string.format("PLL clock (%sHz), from %s",val2str(t),e) end else e="PLL clock from "..e end end return t,e end function get_sys_clock(a,o,n) local e local t table.insert(o,"CLK_CLKSEL0") local i=ext.band(a["CLK_CLKSEL0"],7) if i==0 then e,t=get_XTL12M_clock(a,o) elseif i==1 then e,t=get_PLL_clock(a,o) e=e/2 elseif i==2 then e,t=get_PLL_clock(a,o) elseif i==3 then e,t=get_OSC10K_clock(a,o) elseif i==7 then e,t=get_OSC22M_clock(a,o) else e=0 t="invalid "..n.." clock (see CLKSEL0[2:0].HCLK_S)" return e,t end if e==0 then t=""..n.." clock from "..t else table.insert(o,"CLK_CLKDIV") local a=ext.band(a["CLK_CLKDIV"],15) e=e/(a+1) t=string.format("%s clock (%sHz), from %s",n,val2str(e),t) end return e,t end function get_HCLK_clock(t,e) return get_sys_clock(t,e,"HCLK") end function get_PCLK_clock(a,o) local t local e t,e=get_HCLK_clock(a,o) if t==0 then e="PCLK clock from "..e else table.insert(o,"CLK_APBDIV") local a=ext.band(a["CLK_APBDIV"],1) if a~=0 then t=t/2 end e=string.format("PCLK clock (%sHz), from %s",val2str(t),e) end return t,e end function get_clk_informnation(e,t) return reg2str("Clock setting registers",g_NUC123_regs,e,t) end function fill_NUC123_PS2(e,i,s) local a="" local t="" local o={} e["highlight_text"]=s e["normal_color"]=kColor_Invalid e["highlight_color"]=kColor_Normal e["pin_bg_color"]=kBgColor_Normal e["direction"]=kPinDirection_Unknown e["status"]=kPinStatus_Unknown table.insert(o,"CLK_APBCLK") if ext.band(i["CLK_APBCLK"],2147483648)~=0 then local n local e n,e=get_OSC22M_clock(i,o) if n~=0 then a="PS2 clock from "..e..".
" else t="PS2 clock is not available, "..e..".
" end else t="PS2 clock is not available (see APBCLK[31].PS2_EN).
" end if t~=""then t=""..t.."" e["pin_no_color"]=kBgColor_Error end if a~=""then a="Information
"..a end e["information"]=string.format( "%s
%s
".. "%s%s", s, t, get_clk_informnation(i,o), a) end function fill_NUC123_I2S(i,t,d,r,h,l,u) local e="" local n="" local o={} i["highlight_text"]=h i["normal_color"]=kColor_Invalid i["highlight_color"]=kColor_I2S i["pin_bg_color"]=kBgColor_I2S i["direction"]=kPinDirection_Unknown i["status"]=kPinStatus_Unknown table.insert(o,"CLK_APBCLK") if ext.band(t["CLK_APBCLK"],536870912)~=0 then table.insert(o,"CLK_CLKSEL2") local s=ext.band(t["CLK_CLKSEL2"],3) local a local i if s==0 then a,i=get_XTL12M_clock(t,o) elseif s==1 then a,i=get_PLL_clock(t,o) elseif s==2 then a,i=get_HCLK_clock(t,o) else a,i=get_OSC22M_clock(t,o) end if a~=0 then table.insert(o,"I2S_I2S_CLKDIV") table.insert(o,"I2S_I2S_CON") local o=ext.band(t["I2S_I2S_CON"],1) if o~=0 then e="I2S is enabled
" else e="I2S is disabled, (see I2S_CON[0].I2SEN)
" end e=e..string.format("I2S clock frequency: %sHz, from %s.
",val2str(a),i) local o=ext.band(ext.rshift(t["I2S_I2S_CLKDIV"],8),255) local t=ext.band(t["I2S_I2S_CLKDIV"],7) local i=a/(2*(o+1)) local o=a if t~=0 then o=a/(2*t) end e=e..string.format("I2S BCLK frequency: %sHz
",val2str(i)) e=e..string.format("I2S MCLK frequency: %sHz
",val2str(o)) else n="I2S clock is not available, "..i..".
" end else n="I2S clock is not available (see APBCLK[29].I2S_EN).
" end if n~=""then n=""..n.."" i["pin_no_color"]=kBgColor_Error end if e~=""then e="Information
"..e end i["information"]=string.format( "%s
%s
%s%s%s", h, n, get_mfp_regs(t,d,r,l,u), get_clk_informnation(t,o), e) end function fill_NUC123_ADC(a,e,r,l,h,d,u) local i="" local o="" local t={} a["highlight_text"]=h a["normal_color"]=kColor_Invalid a["highlight_color"]=kColor_ADC a["pin_bg_color"]=kBgColor_ADC a["direction"]=kPinDirection_In a["status"]=kPinStatus_Unknown table.insert(t,"CLK_APBCLK") if ext.band(e["CLK_APBCLK"],268435456)~=0 then table.insert(t,"CLK_CLKSEL1") local s=ext.rshift(ext.band(e["CLK_CLKSEL1"],12),2) local h=ext.rshift(ext.band(e["CLK_CLKDIV"],16711680),16) local n local a if s==0 then n,a=get_XTL12M_clock(e,t) elseif s==1 then n,a=get_PLL_clock(e,t) elseif s==3 then n,a=get_OSC22M_clock(e,t) else n,a=get_HCLK_clock(e,t) end if o==""then local e=n/(h+1) if e~=0 then table.insert(t,"CLK_CLKDIV") i=string.format("ADC clock frequency: %sHz, from %s.
",val2str(e),a) else o="ADC clock is not available, "..a..".
" end end else o="ADC clock is not available (see APBCLK[28].ADC_EN).
" end if o~=""then o=""..o.."" a["pin_no_color"]=kBgColor_Error end if i~=""then i="Information
"..i end a["information"]=string.format( "%s
%s
%s%s%s", h, o, get_mfp_regs(e,r,l,d,u), get_clk_informnation(e,t), i) end function fill_NUC123_USB(e,i,s) local a="" local t="" local o={} e["highlight_text"]=s e["normal_color"]=kColor_Invalid e["highlight_color"]=kColor_USB e["pin_bg_color"]=kBgColor_USB e["direction"]=kPinDirection_Unknown e["status"]=kPinStatus_Unknown table.insert(o,"CLK_APBCLK") if ext.band(i["CLK_APBCLK"],134217728)~=0 then local e local n e,n=get_PLL_clock(i,o) if e~=0 then table.insert(o,"CLK_CLKDIV") local t=ext.band(ext.rshift(i["CLK_CLKDIV"],4),15) local e=e/(t+1) a=string.format("USB clock frequency: %sHz, from %s.
",val2str(e),n) else t="USB clock is not available, "..n..".
" end else t="USB clock is not available (see APBCLK[27].USBD_EN).
" end if t~=""then t=""..t.."" e["pin_no_color"]=kBgColor_Error end if a~=""then a="Information
"..a end e["information"]=string.format( "%s
%s
".. "%s%s", s, t, get_clk_informnation(i,o), a) end function fill_NUC123_PWM(s,a,y,p,m,w,f) local l="" local o="" local i={} local t=tonumber((m:gsub("^PWM",""))) local e=ext.rshift(t,1) local n=ext.rshift(e,1) local c='PWMA' s["highlight_text"]=m s["normal_color"]=kColor_Invalid s["highlight_color"]=kColor_PWM s["pin_bg_color"]=kBgColor_PWM s["direction"]=kPinDirection_Unknown s["status"]=kPinStatus_Unknown table.insert(i,"CLK_APBCLK") local r=ext.band(a["CLK_APBCLK"],ext.lshift(1048576,e)) local h local d if r~=0 then local u local m if e==0 then u="CLKSEL1" m="[29:28]" h=ext.rshift(ext.band(a["CLK_CLKSEL1"],805306368),28) else u="CLKSEL1" m="[31:30]" h=ext.rshift(ext.band(a["CLK_CLKSEL1"],3221225472),30) end d=ext.band(ext.rshift(a["CLK_CLKSEL2"],8+e),1) table.insert(i,"CLK_"..u) local r local s if d==0 and h==0 then r,s=get_XTL12M_clock(a,i) elseif d==0 and h==2 then r,s=get_HCLK_clock(a,i) elseif d==0 and h==3 then r,s=get_OSC22M_clock(a,i) elseif d==1 and h==3 then r,s=get_OSC10K_clock(a,i) else o=string.format("PWM%d clock is not available (see "..u.. m..".PWM%d%d_S and CLKSEL2[%d].PWM%d%d_S[2]).
", t,e*2,e*2+1,e+8,e*2,e*2+1) end if o==""then if r==0 then o=string.format("PWM%d clock is not available, %s.
",t,s) else local d=c.."_CSR" local h=c.."_PPR" table.insert(i,d) table.insert(i,h) local i=ext.band(ext.rshift(a[d],4*(t-4*n)),7) local i=({2,4,8,16,1,0,0,0})[i+1] local a=ext.band(ext.rshift(a[h],8*(e-2*n)),255) if a==0 then o=string.format("PWM%d counter will be stopped since %s_PPR[%d:%d].CP%d%d = 0
", t,c, 8*(e-2*n)+7, 8*(e-2*n), (e-2*n)*2, (e-2*n)*2+1) elseif i==0 then o=string.format("PWM%d counter clock is not available (see %s_CSR[%d:%d].CSR%d).
", t,c, 4*(t-4*n)+3, 4*(t-4*n), (t-4*n)) else local e=r/(a+1) local a=e/i l=string.format("PWM%d clock frequency: %sHz (Pre-Scaled), from %s.
".. "PWM%d counter frequency: %sHz
", t,val2str(e),s, t,val2str(a)) end end end else o=string.format("PWM%d clock is not available (see APBCLK[%d].PWM%d%d_EN).
", t,e+20,e*2,e*2+1) end if o~=""then o=""..o.."" s["pin_no_color"]=kBgColor_Error end if l~=""then l="Information
"..l end s["information"]=string.format( "%s
%s
".. "%s%s%s", m, o, get_mfp_regs(a,y,p,w,f), get_clk_informnation(a,i), l) end function fill_NUC123_UART(i,e,l,u,d,a,c,m) local n="" local t="" local o={} local h=0 i["highlight_text"]=d i["normal_color"]=kColor_Invalid i["highlight_color"]=kColor_UART i["pin_bg_color"]=kBgColor_UART i["direction"]=kPinDirection_Unknown i["status"]=kPinStatus_Unknown function get_uart_baudate(i) local n=string.format("UART%d",a) local t=string.format("UART%d_UA_BAUD",a) table.insert(o,t) local s=ext.band(e[t],536870912) local o=ext.band(e[t],268435456) local h=ext.rshift(ext.band(e[t],251658240),24) local t=ext.band(e[t],65535) local e=0 local a="" if s==0 and o==0 then e=i/(16*(t+2)) elseif s~=0 and o==0 then if h>=8 then e=i/((h+1)*(t+2)) else a="invalid "..n.."'s UA_BAUD value, DIVIDER_X must >= 8" end elseif s~=0 and o~=0 then if t>=8 then e=i/(t+2) else a="invalid "..n.."'s UA_BAUD value, BRD must >= 8" end else a="invalid "..n.."'s UA_BAUD value" end return e,a end table.insert(o,"CLK_APBCLK") if ext.band(e["CLK_APBCLK"],ext.lshift(65536,a))~=0 then table.insert(o,"CLK_CLKSEL1") local r=ext.band(ext.rshift(e["CLK_CLKSEL1"],24),3) local d=ext.band(ext.rshift(e["CLK_CLKDIV"],8),15) local s local i if r==0 then s,i=get_XTL12M_clock(e,o) elseif r==1 then s,i=get_PLL_clock(e,o) elseif r==3 then s,i=get_OSC22M_clock(e,o) else t=string.format("UART%d clock is not available (see CLKSEL1[25:24].UART_S).
",a) end if t==""then h=s/(d+1) if h~=0 then table.insert(o,"CLK_CLKDIV") n=string.format("UART%d clock frequency: %sHz, from %s.
",a,val2str(h),i) else t=string.format("UART%d clock is not available, %s.
",a,i) end end else t=string.format("UART%d clock is not available (see APBCLK[%d].UART%d_EN).
", a,a+16,a) end if t==""then local e,a=get_uart_baudate(h) if e~=0 then n=n..string.format("UART baudrate: %d
",e) else t=a..".
" end end if t~=""then t=""..t.."" i["pin_no_color"]=kBgColor_Error end if n~=""then n="Information
"..n end i["information"]=string.format( "%s
%s
".. "%s%s%s", d, t, get_mfp_regs(e,l,u,c,m), get_clk_informnation(e,o), n) end function fill_NUC123_SPI(o,t,m,f,d,e,c,u) local a="" local n="" local i={} o["highlight_text"]=d o["normal_color"]=kColor_Invalid o["highlight_color"]=kColor_SPI o["pin_bg_color"]=kBgColor_SPI o["direction"]=kPinDirection_Unknown o["status"]=kPinStatus_Unknown table.insert(i,"CLK_APBCLK") if ext.band(t["CLK_APBCLK"],ext.lshift(4096,e))~=0 then local o,s local h=ext.band(ext.rshift(t["CLK_CLKSEL1"],e+4),1) if h==0 then o,s=get_PLL_clock(t,i) else o,s=get_HCLK_clock(t,i) end if o~=0 then local n=string.format("SPI%d_SPI_CNTRL",e) local r=string.format("SPI%d_SPI_CNTRL2",e) local h=string.format("SPI%d_SPI_DIVIDER",e) table.insert(i,n) local d=ext.band(t[n],262144) if d~=0 then a=string.format("SPI%d is in slave mode.
",e) else a=string.format("SPI%d is in master mode.
",e) table.insert(i,h) table.insert(i,r) local d=ext.band(t[h],255) local l=ext.band(ext.rshift(t[h],16),255) local h=ext.band(t[r],2147483648) local i=0 if h~=0 then i=o/(d+1) else i=o/((d+1)*2) end local o=o/((l+1)*2) local t=ext.band(t[n],8388608) if t~=0 then a=a..string.format("SPI%d clock frequency is variable: %sHz or %sHz, from %s.
", e,val2str(i),val2str(o),s) else a=a..string.format("SPI%d clock frequency: %sHz, from %s.
", e,val2str(i),s) end end else n=string.format("SPI%d clock is not available, %s.
",e,s) end else n=string.format("SPI%d clock is not available (see APBCLK[%d].SPI%d_EN).
",e,e+12,e) end if n~=""then n=""..n.."" o["pin_no_color"]=kBgColor_Error end if a~=""then a="Information
"..a end o["information"]=string.format( "%s
%s
".. "%s%s%s", d, n, get_mfp_regs(t,m,f,c,u), get_clk_informnation(t,i), a) end function fill_NUC123_SPI_IO(e,a,o,t) local o=string.format("SPI%d_SPI_CNTRL",o) local a=ext.band(a[o],262144) if a==0 then if t then e["direction"]=kPinDirection_In else e["direction"]=kPinDirection_PushPullOut end else if t then e["direction"]=kPinDirection_PushPullOut else e["direction"]=kPinDirection_In end end end function fill_NUC123_I2C(t,o,u,l,r,e,d,c) local i="" local a="" local n={} t["highlight_text"]=r t["normal_color"]=kColor_Invalid t["highlight_color"]=kColor_I2C t["pin_bg_color"]=kBgColor_I2C t["direction"]=kPinDirection_Unknown t["status"]=kPinStatus_Unknown table.insert(n,"CLK_APBCLK") if ext.band(o["CLK_APBCLK"],ext.lshift(256,e))~=0 then local s=string.format("I2C%d_I2CON",e) local t=string.format("I2C%d_I2CLK",e) table.insert(n,s) local s=ext.band(o[s],64) if s~=0 then local h,s=get_PCLK_clock(o,n) if h~=0 then table.insert(n,t) local t=ext.band(o[t],255) local t=h/(4*(t+1)) i=string.format("I2C%d clock frequency: %sHz, from %s.
",e,val2str(t),s) else a=string.format("I2C%d clock is not available, %s.
",e,s) end else a=string.format("I2C%d controller disabled (see I2C%d.I2CON[6].ENS1).
",e,e) end else a=string.format("I2C%d clock is not available (see APBCLK[%d].I2C%d_EN).
",e,8+e,e) end if a~=""then a=""..a.."" t["pin_no_color"]=kBgColor_Error end if i~=""then i="Information
"..i end t["information"]=string.format( "%s
%s
".. "%s%s%s", r, a, get_mfp_regs(o,u,l,d,c), get_clk_informnation(o,n), i) end function fill_NUC123_CLKO(o,t,u,d,h,l,r) local i="" local e="" local a={} o["highlight_text"]=h o["normal_color"]=kColor_Invalid o["highlight_color"]=kColor_CLK o["pin_bg_color"]=kBgColor_CLK o["direction"]=kPinDirection_PushPullOut o["status"]=kPinStatus_Unknown table.insert(a,"CLK_APBCLK") if ext.band(t["CLK_APBCLK"],64)~=0 then table.insert(a,"CLK_FRQDIV") if ext.band(t["CLK_FRQDIV"],16)~=0 then table.insert(a,"CLK_CLKSEL2") local s=ext.rshift(ext.band(t["CLK_CLKSEL2"],12),2) local h=ext.band(t["CLK_FRQDIV"],15) local n local o if s==0 then n,o=get_XTL12M_clock(t,a) elseif s==2 then n,o=get_HCLK_clock(t,a) elseif s==3 then n,o=get_OSC22M_clock(t,a) else e="Frequency divider is not available (see CLKSEL2[3:2].FRQDIV_S).
" end if e==""then local t=n/ext.lshift(1,(h+1)) if t~=0 then table.insert(a,"CLK_FRQDIV") i=string.format("FRQDIV clock frequency: %sHz, from %s.
",val2str(t),o) else e="FRQDIV clock is not available, "..o..".
" end end else e="Frequency divider disabled (see FRQDIV[4].DIVIDER_EN).
" end else e="FRQDIV clock is not available (see APBCLK[6].FDIV_EN).
" end if e~=""then e=""..e.."" o["pin_no_color"]=kBgColor_Error end if i~=""then i="Information
"..i end o["information"]=string.format( "%s
%s
".. "%s%s%s", h, e, get_mfp_regs(t,u,d,l,r), get_clk_informnation(t,a), i) end function fill_NUC123_TM(o,t,c,u,d,e,l,m) local r=get_chip_info()["series_group"] local i="" local n="" local a={} o["highlight_text"]=d o["normal_color"]=kColor_Invalid o["highlight_color"]=kColor_TM o["pin_bg_color"]=kBgColor_TM o["direction"]=kPinDirection_Unknown o["status"]=kPinStatus_Unknown table.insert(a,"CLK_APBCLK") local h=ext.band(t["CLK_APBCLK"],ext.lshift(4,e)) local s if h~=0 then local o=string.format("TMR_TCSR%d",e) table.insert(a,o) local o=ext.band(t[o],16777216) if o~=0 then i=string.format("Timer%d external counter mode enabled.
",e) else table.insert(a,"CLK_CLKSEL1") s=ext.band(ext.rshift(t["CLK_CLKSEL1"],8+e*4),7) local o local h if s==0 then o,h=get_XTL12M_clock(t,a) elseif s==2 then o,h=get_HCLK_clock(t,a) elseif s==3 then i=string.format("Timer%d clock source is from external trigger.
",e) elseif s==4 and r==0 then o,h=get_OSC10K_clock(t,a) elseif s==5 and r==1 then o,h=get_OSC10K_clock(t,a) elseif s==7 then o,h=get_OSC22M_clock(t,a) else n=string.format("Timer%d clock source is undefined (see CLKSEL1[%d:%d].TMR%d_S).
", e,8+e*4+2,8+e*4,e) end if n==""and i==""then if o~=0 then i=string.format("Timer%d clock frequency: %sHz, from %s
", e,val2str(o),h) else n=string.format("Timer%d clock is not available, %s.
",e,h) end end end else n=string.format("Timer%d clock is disabled (see APBCLK[%d].TMR%d_EN).
",e,(e+2),e) end if n~=""then n=""..n.."" o["pin_no_color"]=kBgColor_Error end if i~=""then i="Information
"..i end o["information"]=string.format( "%s
%s
".. "%s%s%s", d, n, get_mfp_regs(t,c,u,l,m), get_clk_informnation(t,a), i) end function fill_NUC123_Normal(e,n,a,o,t,i,h) local s="" e["highlight_text"]=t e["normal_color"]=kColor_Invalid e["highlight_color"]=kColor_Normal e["pin_bg_color"]=kBgColor_Normal e["direction"]=kPinDirection_Unknown e["status"]=kPinStatus_Unknown s=t.."
" if a==nil or o==nil then e["information"]=string.format( "%s
", t) else e["information"]=string.format( "%s

".. "%s", t, get_mfp_regs(n,a,o,i,h)) end end