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📄 44btest.c

📁 这个是在windows下用ADS开发的s3c44b0的硬件测试程序
💻 C
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#include <stdlib.h>
#include <string.h>
#include "..\inc\option.h"
#include "..\inc\44b.h"
#include "..\inc\44blib.h"
#include "..\inc\def.h"
#include "..\inc\cache.h"
#include "..\inc\lcd.h"
#include "..\inc\lcdlib.h"
#include "..\inc\glib.h"
#include "..\inc\clcd.h"
#include "..\inc\adc.h"
#include "..\inc\uart.h"
#include "..\inc\power.h"
#include "..\inc\zdma.h"
#include "..\inc\timer.h"
#include "..\inc\sio.h"
#include "..\inc\rtc.h"
#include "..\inc\etc.h"
#include "..\inc\iic.h"
#include "..\inc\eint.h"
#include "..\inc\flash.h"
#include "..\inc\iis.h"
#include "..\inc\stop.h"
#include "..\inc\idle.h"
#include "..\inc\extzdma.h"
#include "..\inc\nwait.h"
#include "..\inc\Am29f800.h"
#include "..\inc\uda1341.h"
#include "..\inc\km29ux.h"
#include "..\inc\nflash.h"
#include "..\inc\ps2key.h"

void AutoTest(void);
void Isr_Init(void);
void HaltUndef(void);
void HaltSwi(void);
void HaltPabort(void);
void HaltDabort(void);

/****************************************************************
 *		  S3C44B0X developer's notes							*  
 ****************************************************************

 1. 99.6.6:KIW: For H/W vectored interrupt test, add the codes in Isr_Init()
 2. 99.8.27:    Stop,SL_IDLE mode is modified.
 3. 99.10.13:   check KS32C41000 date:A937 or after.
 4. 99.10.19:   AM29LV800 flash writing routine is added
 5. 00.4.25:KWT: Modify for S3C44B0X
 ***************************************************************/


void * function[][2]=
{
	#if 	(LCD_TYPE==MLCD_320_240)
			(void *)Test_LcdMono,	 	"Lcd Mono        ",
			(void *)Test_LcdG4,	 		"Lcd G4          ",
			(void *)Test_LcdG16,	 	"Lcd G16         ",
	#elif 	(LCD_TYPE==CLCD_240_320)
        	(void *)Test_LcdColor,  	"Lcd Color       ",
	#endif
	(void *)Test_Uart0, 	 	"UART0 TEST      ",
	//(void *)Test_Uart0Fifo,	 	"UART 0 FIFO     ",
	(void *)Test_Uart1,	 		"UART1 TEST      ",
	//(void *)Test_Uart1Fifo,	 	"UART 1 FIFO     ",
	(void *)Test_Adc,	 		"ADC TEST        ",
	//(void *)Test_DMA_Adc,		"Adc with DMA    ",  delected
	(void *)Display_Rtc,	 	"RTC TEST        ",
	//(void *)Test_Rtc_Alarm,	 	"RTC(Test)       ",
	//(void *)Test_Rtc_Tick,	 	"RTC Tick        ",
	//(void *)Test_Timer,      	"Tout test       ",
    (void *)Test_TimerInt,	 	"PWM Timer test  ",
    (void *)Test_WDTimer,	 	"WDTimer         ",
    (void *)Test_Cache, 	 	"Cache           ",
    (void *)Test_Zdma0,	 		"Zdma0           ",
	(void *)Test_Zdma1,	 		"Zdma1           ",
	(void *)Test_PLL,        	"Change PLL      ",
	(void *)Test_SlowMode,	 	"SLOW Mode       ",
	(void *)Test_HoldMode,	 	"HOLD Mode       ",
	(void *)Test_StopMode,	 	"STOP Mode       ", 
	(void *)Test_IdleMode,		"IDLE Mode       ",
	(void *)Test_ZDma0Xdreq, 	"nXDREQ0         ",
	(void *)Test_SLIdleMode, 	"SL_IDLE Mode    ",
	(void *)Test_SLIdleMode20, 	"SL_IDLE Mode20  ",
	(void *)Test_IdleModeHard,	"IDLE(hard)      ",
	(void *)Test_WaitPin,	 	"nWAIT pin       ",	
	(void *)Test_Sio,	 		"SIO Tx/Rx       ",	
	(void *)Test_SIOTX_BDMA0,	"SIO Tx BDMA0    ",
	(void *)Test_SIORX_BDMA1,	"SIO Rx BDMA1    ",
	(void *)Test_Iic,	 		"IIC(KS24C080)   ",
	(void *)Test_Iis,        	"IIS(uda1341)    ",
	(void *)Iis_Tx,		 		"IIS Tx(Slave)   ",
	(void *)Iis_Rx,		 		"IIS Rx(Master)  ",
	(void *)Test_Eint,	 		"Ext. Int        ",
	(void *)Etc,		 		"Etc...          ",
	//(void *)Test_UartAFC_Tx, 	"Test AFC(Tx)    ",    	delected
	//(void *)Test_UartAFC_Rx, 	"Test AFC(Rx)    ",		delected	
	(void *)ProgramFlash, 		"Write flash     ",
	(void *)Disp_KeyDat,		"PS2_Key test	 ",
	0,0
};


void Main(void)
{
    int i;

    rSYSCFG=CACHECFG;
    
    __rt_lib_init(); //for ADS 1.0

    Port_Init();
    Isr_Init();

    Uart_Init(0,115200);
	
    //rSBUSCON=(1<<31)|(3<<6)|(2<<4)|(1<<2)|(0);  //nBREQ>BDMA>ZDMA>LCD_DMA

    Uart_Select(0);
    Delay(0);  //calibrate Delay()
	Beep(0x01);
	Led_Display(0xf);

    while(1)
    {
	i=0;
        Uart_Printf("\n\nS3C44B0X Test Program Ver 0.00 rSYSCFG=0x%x MCLK=%d\n\n",rSYSCFG,MCLK);
	Beep(0x00);
	while(1)
	{   //display menu
	    Uart_Printf("%2d:%s",i,function[i][1]);
	    i++;
	    if((int)(function[i][0])==0)
	    {
		Uart_Printf("\n");
		break;
	    }
	    if((i%4)==0)
		Uart_Printf("\n");
	}
	Led_Display(0x0);
	Uart_Printf("\nSelect the function to test?");
	
	i=Uart_GetIntNum();
	Uart_Printf("\n");
	if(i>=0 && (i<(sizeof(function)/8)) ) 
	    ( (void (*)(void)) (function[i][0]) )();
    }
}



void Isr_Init(void)
{
    pISR_UNDEF=(unsigned)HaltUndef;
    pISR_SWI  =(unsigned)HaltSwi;
    pISR_PABORT=(unsigned)HaltPabort;
    pISR_DABORT=(unsigned)HaltDabort;

    //rINTCON=0x1;	  // Vectored Int. IRQ enable,FIQ disable    
    rINTCON=0x5;	  // Non-vectored,IRQ enable,FIQ disable    

    rINTMOD=0x0;	  // All=IRQ mode
    rINTMSK=BIT_GLOBAL;	  // All interrupt is masked.
}


void HaltUndef(void)
{
    Uart_Printf("Undefined instruction exception!!!\n");
    while(1);
}

void HaltSwi(void)
{
    Uart_Printf("SWI exception!!!\n");
    while(1);
}

void HaltPabort(void)
{
    Uart_Printf("Pabort exception!!!\n");
    while(1);
}

void HaltDabort(void)
{
    Uart_Printf("Dabort exception!!!\n");
    while(1);
}

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